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816 Commits

Author SHA1 Message Date
Roberto Ierusalimschy
7ea44b56a8 details (typos in comments) 2013-11-21 15:26:16 -02:00
Roberto Ierusalimschy
63048dc9b7 'LUA_VERSION_RELEASE' updated to 5.2.3. 2013-11-11 10:09:16 -02:00
Roberto Ierusalimschy
6867055546 bug: Resuming the running coroutine makes it unyieldable 2013-11-08 16:22:50 -02:00
Roberto Ierusalimschy
2fb7d94bd6 bug: Call to macro 'luai_userstateclose' should be done only
after the calls to __gc methods.
2013-11-08 15:45:31 -02:00
Roberto Ierusalimschy
c23f705349 BUG: GC can collect a long string still in use during parser 2013-08-30 12:49:41 -03:00
Roberto Ierusalimschy
42cf5f8214 avoid undefined shift of LUA_NBITS in rotate operations 2013-07-09 15:01:41 -03:00
Roberto Ierusalimschy
d2209c0741 bug: Wrong error message in some short-cut expressions 2013-05-16 13:04:15 -03:00
Roberto Ierusalimschy
39808bb970 bug: Wrong assert when reporting concatenation errors. 2013-05-06 14:20:22 -03:00
Roberto Ierusalimschy
dcd35b4595 bug: garbage collector can trigger too many times in recursive loops,
because it was not computing the size of CallInfo structures in threads
2013-04-26 15:22:05 -03:00
Roberto Ierusalimschy
c2ea18726a BUG: stack overflow in vararg functions with many fixed
parameters called with few arguments
2013-04-19 18:03:23 -03:00
Roberto Ierusalimschy
2ca5181413 Branch 5.2 - new releases for 5.2 go from here, main trunk goes
for next version
2013-04-12 15:48:47 -03:00
Roberto Ierusalimschy
f5ae26ec6c official branch for Lua 5.1 2007-12-27 11:02:25 -02:00
Roberto Ierusalimschy
98194db429 details 2006-06-09 14:31:14 -03:00
Roberto Ierusalimschy
fad7582c9a explicit test for common error (due to compatibility issue) 2006-06-07 09:37:17 -03:00
Roberto Ierusalimschy
a62fca1ebb BUG: debug hooks may get wrong when mixed with coroutines 2006-06-05 16:36:45 -03:00
Roberto Ierusalimschy
2b5c1f99e5 small simplifications 2006-06-05 16:35:57 -03:00
Roberto Ierusalimschy
e2dc5f5d15 extra assertion 2006-06-05 12:58:59 -03:00
Roberto Ierusalimschy
ed64346b9d details 2006-06-05 12:57:59 -03:00
Roberto Ierusalimschy
475b0ecbf1 new macro LUA_RELEASE 2006-06-02 12:34:00 -03:00
Roberto Ierusalimschy
414359b2f1 new version number 2006-05-31 13:50:40 -03:00
Roberto Ierusalimschy
0079efc479 bug: collector did not compensate enough for userdata with finalizers 2006-05-24 11:34:06 -03:00
Roberto Ierusalimschy
ad0765b4f0 subtle problem with the garbage collector 2006-05-24 11:33:49 -03:00
Roberto Ierusalimschy
20f4bbdc3a does not accept garbage after options (e.g., -ixxx) 2006-05-24 11:16:39 -03:00
Roberto Ierusalimschy
c408158047 only destroy state after running all finalizers 2006-05-24 11:15:50 -03:00
Roberto Ierusalimschy
55e323190e files should not be operated after fclose, even when fclose fails 2006-05-08 17:14:16 -03:00
Roberto Ierusalimschy
fe8f4c06f1 detail (better error message for invalid format) 2006-04-26 17:41:19 -03:00
Roberto Ierusalimschy
c351392940 details 2006-04-26 15:19:49 -03:00
Roberto Ierusalimschy
18330b6091 lua_dostring/lua_dofile should return any values returned by the chunk 2006-04-12 17:31:15 -03:00
Roberto Ierusalimschy
8487913697 BUG: option '%q' for string.format does not handle '\r' correctly 2006-04-12 17:13:52 -03:00
Roberto Ierusalimschy
672bb67ee6 environment variable names should be configurable 2006-04-10 15:27:23 -03:00
Roberto Ierusalimschy
90df6b7a54 detail 2006-03-23 15:23:32 -03:00
Roberto Ierusalimschy
0238a0b01e BUG: luaL_checkudata may show wrong error message 2006-03-21 16:31:09 -03:00
Roberto Ierusalimschy
1ae0b6c0bf BUG: should copy the union, not (some of) its fields 2006-03-21 16:28:49 -03:00
Roberto Ierusalimschy
e1dda047b2 unused macro 2006-03-21 16:28:03 -03:00
Roberto Ierusalimschy
2c8206d448 bug in Lua 4.0.2: weak tables that survive one collection are never collected 2006-03-20 09:49:30 -03:00
Roberto Ierusalimschy
ae76307847 comment 2006-03-14 16:04:44 -03:00
Roberto Ierusalimschy
3d61c31e5a 'lparser.h' should not include 'ltable.h' 2006-03-09 15:15:48 -03:00
Roberto Ierusalimschy
44a9bd6a8c detail 2006-03-09 15:08:22 -03:00
Roberto Ierusalimschy
69ea087dff small change to strip file names when stripping debug information 2006-02-17 13:51:03 -02:00
Roberto Ierusalimschy
c05aaf3bf0 avoid warning in OS X - ansi 2006-02-10 15:44:06 -02:00
Roberto Ierusalimschy
298ae7e230 complete support for hexadecimal constants 2006-02-10 15:43:52 -02:00
Roberto Ierusalimschy
6316a866a3 compiler warning 2006-02-06 16:28:16 -02:00
Roberto Ierusalimschy
ea2cc2bc47 small improvements for allignments 2006-02-06 16:27:59 -02:00
Roberto Ierusalimschy
64205e91a3 empty string may cause out-of-bound access 2006-01-28 10:59:13 -02:00
Roberto Ierusalimschy
8173688542 detail 2006-01-27 11:54:39 -02:00
Roberto Ierusalimschy
3ef5a6797f detail 2006-01-23 18:06:19 -02:00
Roberto Ierusalimschy
9e6e43984d details 2006-01-23 17:51:43 -02:00
Roberto Ierusalimschy
baffc37f5c detail 2006-01-18 09:49:12 -02:00
Roberto Ierusalimschy
440113bbe8 unused macro removed 2006-01-18 09:37:34 -02:00
Roberto Ierusalimschy
73ebc5d8f6 compat code should keep compatibility 2006-01-16 10:42:21 -02:00
Roberto Ierusalimschy
a666752b1d detail 2006-01-13 17:36:28 -02:00
Roberto Ierusalimschy
f8b7a5581e avoid unnecessary exports 2006-01-10 11:13:06 -02:00
Roberto Ierusalimschy
ffb798e1e2 avoids type punning for table keys 2006-01-10 10:51:53 -02:00
Roberto Ierusalimschy
fa936f8fa9 detail 2006-01-10 10:50:13 -02:00
Roberto Ierusalimschy
dd1221582b details 2006-01-10 10:50:00 -02:00
Roberto Ierusalimschy
bfdcbbcd76 small optimizations (lua_newtable -> lua_createtable) 2005-12-29 14:23:32 -02:00
Roberto Ierusalimschy
30eebb2d1c detail (stop collector while openning libraries) 2005-12-29 10:30:16 -02:00
Roberto Ierusalimschy
0fd6466957 lua_assert is an internal matter, not to be configured 2005-12-27 15:12:00 -02:00
Roberto Ierusalimschy
6a516878e9 collectgarbage"count" returns kilobytes (where K = 1024) 2005-12-27 15:10:11 -02:00
Roberto Ierusalimschy
a486090a5c copyright will be 2006 2005-12-27 15:09:50 -02:00
Roberto Ierusalimschy
0160591998 removal of dead code 2005-12-26 11:35:47 -02:00
Roberto Ierusalimschy
c505f341d6 small changes in casts 2005-12-22 14:19:56 -02:00
Roberto Ierusalimschy
428325baec detail 2005-12-21 10:59:43 -02:00
Roberto Ierusalimschy
0561f71f0f (much) better error messages for 'require' 2005-12-19 18:56:39 -02:00
Roberto Ierusalimschy
9fbefdf69c integer formats in 'string.format' may need to operate with larger-than-int
types
2005-12-15 16:53:34 -02:00
Roberto Ierusalimschy
43c61fc113 details 2005-12-15 16:17:49 -02:00
Roberto Ierusalimschy
ea6b1b42c7 more robust way to test for decimal point separator 2005-12-08 13:50:54 -02:00
Roberto Ierusalimschy
87024e257d details 2005-12-07 13:43:05 -02:00
Roberto Ierusalimschy
6cd461633d clearer error message for uninstalled loadlib 2005-12-07 13:42:32 -02:00
Roberto Ierusalimschy
16fd4abaf6 corrects decimal point to follow current locale 2005-12-07 13:33:27 -02:00
Roberto Ierusalimschy
f26b85c5b7 small detail 2005-12-02 16:42:08 -02:00
Roberto Ierusalimschy
3592c08a2c avoid printing two copyright messages with '-v -i' options 2005-11-28 12:44:48 -02:00
Roberto Ierusalimschy
db724e14e0 new macro luai_numisnan 2005-11-25 11:29:32 -02:00
Roberto Ierusalimschy
1702953293 new macro LUA_WIN + new macro luai_numisnan 2005-11-25 11:29:11 -02:00
Roberto Ierusalimschy
33b4dec1cb no more "auto-detection" 2005-11-16 14:25:08 -02:00
Roberto Ierusalimschy
7dd10a1d7e new macro LUA_USE_POSIX to control POSIX-related macros 2005-11-16 09:56:28 -02:00
Roberto Ierusalimschy
521a452f28 'mod' may also raise an error when applied to zero 2005-11-16 09:55:27 -02:00
Roberto Ierusalimschy
2753134a38 new versions by lhf 2005-11-16 09:55:07 -02:00
Roberto Ierusalimschy
cbbde11a8a better position for lua_number2int (it is related to lua_Number) 2005-11-08 17:45:58 -02:00
Roberto Ierusalimschy
7b89cf3aeb unused include's 2005-11-08 17:45:36 -02:00
Roberto Ierusalimschy
d2811e8097 simpler checking for numbers (strtod does the rest) 2005-11-08 17:45:14 -02:00
Roberto Ierusalimschy
e43e95553f more privacy 2005-11-08 17:44:31 -02:00
Roberto Ierusalimschy
930018e273 lua_getlocal/setlocal work also for C locals and temporaries 2005-11-01 14:08:52 -02:00
Roberto Ierusalimschy
a160266c3d details 2005-11-01 14:08:45 -02:00
Roberto Ierusalimschy
d4c99b2673 new function 'getregistry' 2005-11-01 14:08:32 -02:00
Roberto Ierusalimschy
88f9843eee better error message 2005-10-26 11:28:19 -02:00
Roberto Ierusalimschy
9b5ae6faf9 better control of which values macros use 2005-10-25 11:36:28 -02:00
Roberto Ierusalimschy
caf3cfc6ac try to ensure that macros actually use their arguments 2005-10-24 15:39:21 -02:00
Roberto Ierusalimschy
ff7638b0ed VC warnings 2005-10-24 15:38:47 -02:00
Roberto Ierusalimschy
8e48ebb638 no more L in numer-operator macros (some functions that use those macros
have no access to L)
2005-10-24 15:37:52 -02:00
Roberto Ierusalimschy
c2bd68d2c3 detail 2005-10-24 15:37:33 -02:00
Roberto Ierusalimschy
201288b4df small bug 2005-10-23 15:52:42 -02:00
Roberto Ierusalimschy
62367dda44 string.gsub accepts a table as the replacement value 2005-10-23 15:46:30 -02:00
Roberto Ierusalimschy
056b6a8ef4 more robust implementation for table.insert 2005-10-23 15:38:15 -02:00
Roberto Ierusalimschy
502d8f9a06 comments 2005-10-23 15:37:55 -02:00
Roberto Ierusalimschy
7f376e6ea8 do a complete garbage collection in case of errors 2005-10-21 11:48:31 -02:00
Roberto Ierusalimschy
053e873145 new macro luaL_opt to avoid evaluating defaults when no needed 2005-10-21 11:47:42 -02:00
Roberto Ierusalimschy
9f4211310f more precision for gc count 2005-10-20 09:35:50 -02:00
Roberto Ierusalimschy
515d556832 access to metamethods and metafields should be raw 2005-10-20 09:35:25 -02:00
Roberto Ierusalimschy
ed7039024d avoid some warnings 2005-10-19 11:05:11 -02:00
Roberto Ierusalimschy
5511bf6b9d avoid comparisons between (void *) and (int *) 2005-10-17 16:01:51 -02:00
Roberto Ierusalimschy
86704cffe9 detail in usage message 2005-10-14 15:34:23 -03:00
Roberto Ierusalimschy
fa41fafa6e reorganization of argument handling 2005-10-14 15:15:46 -03:00
Roberto Ierusalimschy
ebf646efb5 detail 2005-10-14 13:24:11 -03:00
Roberto Ierusalimschy
b3f81f1d1d small bug when debugging dead threads 2005-10-14 13:23:33 -03:00
Roberto Ierusalimschy
a24eb3ef17 different organization for platform dependencies 2005-10-13 09:22:53 -03:00
Roberto Ierusalimschy
4385e2ada4 "conceptually", OP_TEST may change reg. A 2005-10-13 09:22:05 -03:00
Roberto Ierusalimschy
e9b06c506f small optimization 2005-10-13 09:21:51 -03:00
Roberto Ierusalimschy
cd12ab2597 details (more uniform coding) 2005-10-13 09:21:26 -03:00
Roberto Ierusalimschy
e251e84e0f constant folding optimizations 2005-10-09 17:05:48 -03:00
Roberto Ierusalimschy
e6bfbc38b5 'luaopen_package' was missing in new states 2005-10-06 17:47:32 -03:00
Roberto Ierusalimschy
d31c04c049 missing macros 'luai_userstate*' 2005-10-06 17:46:25 -03:00
Roberto Ierusalimschy
522481a788 avoid some warnings 2005-10-06 17:46:10 -03:00
Roberto Ierusalimschy
37b49aa451 detail 2005-10-06 17:44:22 -03:00
Roberto Ierusalimschy
0fa9b16148 details 2005-10-06 17:43:44 -03:00
Roberto Ierusalimschy
e41fb9a604 registry._LOADED created "on demand" 2005-10-03 11:36:45 -03:00
Roberto Ierusalimschy
5fc92cce12 registry._LOADED created "on demand" and baselib created as module _G 2005-10-03 11:36:45 -03:00
Roberto Ierusalimschy
6dd0c6ccbc numeral expressions keep their values in struct 'expdesc' 2005-10-03 11:02:40 -03:00
Roberto Ierusalimschy
a77413acd0 include of math.h depends on luaconf 2005-10-03 11:01:26 -03:00
Roberto Ierusalimschy
5dbb870815 small optimization for local declarations without initializations 2005-09-30 11:23:33 -03:00
Roberto Ierusalimschy
ede19c9138 2005-09-30 11:21:56 -03:00
Roberto Ierusalimschy
9e88b336b4 unused assignment 2005-09-30 10:50:05 -03:00
Roberto Ierusalimschy
0fae476ed4 new function 'table.maxn' 2005-09-20 14:56:47 -03:00
Roberto Ierusalimschy
361a9adba7 smaller initial tables (for programs that create many states) 2005-09-20 14:55:53 -03:00
Roberto Ierusalimschy
d8f1cca16e new function 'lua_setallocf' 2005-09-20 14:55:10 -03:00
Roberto Ierusalimschy
bf96d3fdd9 'string.find' as it was in 5.0 2005-09-19 10:49:12 -03:00
Roberto Ierusalimschy
c8c2e06899 'select' accepts negative indices 2005-09-16 15:22:48 -03:00
Roberto Ierusalimschy
8dcc6bc532 avoid the use of global lock 2005-09-14 14:48:57 -03:00
Roberto Ierusalimschy
38f585d271 separated macros for thread creation and state creation 2005-09-14 14:44:48 -03:00
Roberto Ierusalimschy
6887f91799 ":" is not a good mark as it is not valid in Windows file names 2005-09-14 14:23:03 -03:00
Roberto Ierusalimschy
7fbbf1adc6 explicit macro to control use of _longjmp 2005-09-09 15:24:42 -03:00
Roberto Ierusalimschy
6dd3a73ca2 detail (macro evaluates twice its arguments) 2005-09-09 15:23:35 -03:00
Roberto Ierusalimschy
1e6a559b29 does not set isdst when undefined 2005-09-09 15:22:46 -03:00
Roberto Ierusalimschy
2d2f955763 detail 2005-09-09 15:16:28 -03:00
Roberto Ierusalimschy
669f6306be small corrections 2005-09-06 14:21:03 -03:00
Roberto Ierusalimschy
2bcbd3c725 avoid 'PathRemoveFileSpec' (not very portable) 2005-09-06 14:20:25 -03:00
Roberto Ierusalimschy
5fa6604f00 detail 2005-09-06 14:20:11 -03:00
Roberto Ierusalimschy
ce67a9be31 avoid exporting undefined functions 2005-09-06 14:19:51 -03:00
Roberto Ierusalimschy
506c89cef8 just in case, flush all output 2005-09-06 14:19:33 -03:00
Roberto Ierusalimschy
8ead2ec358 wrong syntax for Windows-specific options 2005-09-02 16:53:25 -03:00
Roberto Ierusalimschy
c3cc4de3fd small bug (zero is not error code) 2005-09-01 14:42:22 -03:00
Roberto Ierusalimschy
351f7dad6b default for 'module' is opaque (with option 'seeall') 2005-08-31 20:17:29 -03:00
Roberto Ierusalimschy
3b19af44b0 new method to handle tests without values (negative values) 2005-08-29 17:49:21 -03:00
Roberto Ierusalimschy
3390f9a35a detail 2005-08-26 14:36:32 -03:00
Roberto Ierusalimschy
9273fbd131 no more 'luaL_get/setfield' (replaced by more direct luaL_findtable) 2005-08-26 14:32:05 -03:00
Roberto Ierusalimschy
be666a662b detail 2005-08-25 16:55:38 -03:00
Roberto Ierusalimschy
39cdbce23e no more '-w' option + new way to check module existence 2005-08-25 12:39:16 -03:00
Roberto Ierusalimschy
8974b59e40 no more compatibility for {;} and similar syntax 2005-08-24 14:41:10 -03:00
Roberto Ierusalimschy
4ff1e5b4e1 details 2005-08-24 14:06:36 -03:00
Roberto Ierusalimschy
98296f6b45 some bugs related to stack reallocation 2005-08-24 13:15:49 -03:00
Roberto Ierusalimschy
23b79c5945 small changes to facilitate external C coroutines 2005-08-22 16:58:29 -03:00
Roberto Ierusalimschy
6fcd334ca0 small improvements 2005-08-22 15:54:49 -03:00
Roberto Ierusalimschy
43ad0637ca small optimizations 2005-08-22 15:54:32 -03:00
Roberto Ierusalimschy
027e9e99ca simpler implementation for userdata types 2005-08-18 17:36:26 -03:00
Roberto Ierusalimschy
3b828d9e48 luaL_setfield does a non-raw set 2005-08-18 13:04:05 -03:00
Roberto Ierusalimschy
68548a02d3 fancier code ;) 2005-08-17 17:09:31 -03:00
Roberto Ierusalimschy
2f2b4a42a9 luaL_checkudata raises an error if value is not correct
(like other luaL_check functions)
2005-08-17 16:05:04 -03:00
Roberto Ierusalimschy
074352911f new coding for while and repeat (with new scoping for repeat) 2005-08-17 15:32:09 -03:00
Roberto Ierusalimschy
5e8a9e324c luaL_openlib -> luaL_register, luaL_putchar -> luaL_addchar 2005-08-15 11:12:32 -03:00
Roberto Ierusalimschy
16ddf86168 luaL_openlib -> luaL_register and new function luaL_loadstring 2005-08-15 11:12:32 -03:00
Roberto Ierusalimschy
e4d369c9b7 comments 2005-08-12 10:34:15 -03:00
Roberto Ierusalimschy
42a662334a simpler implementation for unary minus 2005-08-10 17:20:13 -03:00
Roberto Ierusalimschy
39c0f391c6 detail 2005-08-10 15:47:09 -03:00
Roberto Ierusalimschy
c7b4f44772 correct name to open package library 2005-08-10 15:06:58 -03:00
Roberto Ierusalimschy
44b19075c0 small changes (to easy integration with Coco) 2005-08-09 16:49:04 -03:00
Roberto Ierusalimschy
ab3dfa5594 store some configuration information 2005-08-09 14:58:09 -03:00
Roberto Ierusalimschy
62f786e08c new version (and new copyright)... 2005-08-09 14:57:54 -03:00
Roberto Ierusalimschy
bbfd28959d attempt to better control use of _longjmp 2005-08-09 14:57:29 -03:00
Roberto Ierusalimschy
894cd31c52 #string is primitive 2005-08-09 14:42:02 -03:00
Roberto Ierusalimschy
f01a95d4a0 detail 2005-08-09 09:30:19 -03:00
Roberto Ierusalimschy
680fc88cc2 a small bug 2005-08-04 10:37:38 -03:00
Roberto Ierusalimschy
d96f088a26 'lua_lock' and similars should be hard to use 2005-08-04 10:37:10 -03:00
Roberto Ierusalimschy
d8be9a6326 small changes 2005-08-01 12:05:09 -03:00
Roberto Ierusalimschy
95f3eefa5b small optimization 2005-08-01 01:22:23 -03:00
Roberto Ierusalimschy
e82bdb24f3 new loader for "all-in-one" C packages 2005-08-01 01:21:17 -03:00
Roberto Ierusalimschy
1a343814d8 details 2005-07-31 14:12:32 -03:00
Roberto Ierusalimschy
280f7becb8 "%0" stands for the whole pattern (in gsub) 2005-07-31 13:47:34 -03:00
Roberto Ierusalimschy
d6ff5d9f46 searchpath is "private affair" of loadlib 2005-07-13 16:02:42 -03:00
Roberto Ierusalimschy
a05190fa3b elimination of common code + better error message 2005-07-12 18:17:46 -03:00
Roberto Ierusalimschy
a569099b70 no more path for loadfile + function lists sorted 2005-07-12 15:15:11 -03:00
Roberto Ierusalimschy
20131e54d3 no more "getc" when testing if file exists 2005-07-12 11:32:48 -03:00
Roberto Ierusalimschy
80ac5e83fd details (alphabetical order for list of functions) 2005-07-12 11:32:08 -03:00
Roberto Ierusalimschy
289b5dc67a details (function list in alphabetical order) 2005-07-11 20:58:35 -03:00
Roberto Ierusalimschy
c2f065f405 detail 2005-07-11 15:48:02 -03:00
Roberto Ierusalimschy
b261cd110f new macro for conversion double->int + small changes 2005-07-11 14:10:35 -03:00
Roberto Ierusalimschy
e4324f54b9 ';;' in a path is replaced by default path + '!' (in Windows) is
replaced by executable's directory
2005-07-11 13:41:57 -03:00
Roberto Ierusalimschy
3d08aa591d details 2005-07-11 13:41:51 -03:00
Roberto Ierusalimschy
0f30d00c87 warnings from Visual C 2005-07-11 11:01:37 -03:00
Roberto Ierusalimschy
e86dab2dae details 2005-07-11 11:01:28 -03:00
Roberto Ierusalimschy
64b57db377 new test function for conversion from num to int 2005-07-11 11:00:59 -03:00
Roberto Ierusalimschy
575637319e better recovery at panic 2005-07-11 11:00:31 -03:00
Roberto Ierusalimschy
87be01598b warnings Visual C 2005-07-11 10:59:03 -03:00
Roberto Ierusalimschy
e84b11a494 avoid names starting with '_' 2005-07-09 10:22:34 -03:00
Roberto Ierusalimschy
bbf2cea9a1 more "polite" way to change a thread's environment 2005-07-07 12:48:29 -03:00
Roberto Ierusalimschy
b3f7a43019 lua_setfenv/lua_getfenv should also manipulate threads 2005-07-06 15:07:30 -03:00
Roberto Ierusalimschy
7f97ec286e parent modules are also imported toghether with the module itself 2005-07-05 16:29:03 -03:00
Roberto Ierusalimschy
e82b41aac2 several small improvements 2005-07-05 11:31:45 -03:00
Roberto Ierusalimschy
ee1edd5734 detail 2005-07-05 11:31:20 -03:00
Roberto Ierusalimschy
8efb44b5e0 changes in 'string.find' and 'string.gfind' (new 'string.match' and
'string.gmatch')
2005-07-05 11:30:38 -03:00
Roberto Ierusalimschy
f7720bebe3 more precise way to check incomplete lines 2005-06-28 10:01:50 -03:00
Roberto Ierusalimschy
69cc0a12fe small bug 2005-06-28 10:01:31 -03:00
Roberto Ierusalimschy
2f0955b99b detail 2005-06-27 14:24:40 -03:00
Roberto Ierusalimschy
999d55d887 several updates 2005-06-13 18:20:28 -03:00
Roberto Ierusalimschy
1f9f97e3cf 'math.mod' -> 'math.fmod' 2005-06-13 18:20:14 -03:00
Roberto Ierusalimschy
34aac33c15 detail 2005-06-13 18:17:59 -03:00
Roberto Ierusalimschy
3c2cf9db67 some extra consistency checks 2005-06-13 11:39:19 -03:00
Roberto Ierusalimschy
0b71bfd6af syntax for length changed from '*' to '#' 2005-06-13 11:25:29 -03:00
Roberto Ierusalimschy
0d1685d751 bug: last tag is not the number of tags... 2005-06-13 11:19:00 -03:00
Roberto Ierusalimschy
bf2b342ac1 better control for compatibility code for varargs 2005-06-13 11:15:54 -03:00
Roberto Ierusalimschy
5fa2bec1f0 bug: current line should work for call hook 2005-06-13 11:15:22 -03:00
Roberto Ierusalimschy
746a1d612b small bug (type error) 2005-06-07 15:53:45 -03:00
Roberto Ierusalimschy
3ad03b331d optional size for 'setvbuf' 2005-06-06 15:42:21 -03:00
Roberto Ierusalimschy
86add535d8 'popen' is back 2005-06-06 10:30:52 -03:00
Roberto Ierusalimschy
d987cf1f81 new mark LUAI_DATA for extern data 2005-06-06 10:30:25 -03:00
Roberto Ierusalimschy
eca9fa02d2 small improvement 2005-06-03 17:16:16 -03:00
Roberto Ierusalimschy
e33d7bae45 __STRICT_ANSI__ -> LUA_ANSI (definition is independent of gcc) 2005-06-01 14:07:45 -03:00
Roberto Ierusalimschy
d628795940 lua_objsize -> lua_objlen (more compatible with use of `len´ in other
places [opcode name, metamethod index, etc.])
2005-05-31 11:34:02 -03:00
Roberto Ierusalimschy
05348d834b better error message 2005-05-31 11:31:50 -03:00
Roberto Ierusalimschy
90de38bf1f warnings in VS .Net 2005-05-31 11:25:18 -03:00
Roberto Ierusalimschy
e8a7ecb982 luaL_findstring -> luaL_checkoption 2005-05-25 10:21:26 -03:00
Roberto Ierusalimschy
38da9d568a better use defined/undefined as flag values for macros 2005-05-20 16:09:05 -03:00
Roberto Ierusalimschy
f21e9c172f details 2005-05-20 12:53:42 -03:00
Roberto Ierusalimschy
67578ec51f several small details 2005-05-17 16:49:15 -03:00
Roberto Ierusalimschy
c2bb9abcec better quotes for strings in error messages 2005-05-16 18:19:00 -03:00
Roberto Ierusalimschy
da32450c3d new API function `lua_tolstring' 2005-05-16 16:21:11 -03:00
Roberto Ierusalimschy
a2b78aad49 debug information for active lines 2005-05-16 15:45:15 -03:00
Roberto Ierusalimschy
c6293a76cc LUA_DL_DLOPEN is for internal use; makefile should use LUA_USE_DLOPEN 2005-05-09 10:14:14 -03:00
Roberto Ierusalimschy
1ab2b93462 debug information for last line of a function definition 2005-05-05 17:47:02 -03:00
Roberto Ierusalimschy
6cf85dcc90 metatables for all types 2005-05-05 12:34:03 -03:00
Roberto Ierusalimschy
65f4a0f636 no more compatibility code for traversing tables 2005-05-04 17:42:28 -03:00
Roberto Ierusalimschy
12acca7bd8 comments 2005-05-04 13:36:23 -03:00
Roberto Ierusalimschy
d5fd44d747 corrected definition of lua_number2int for Windows 2005-05-03 16:30:17 -03:00
Roberto Ierusalimschy
b0abc2ca03 better control of local variables in luaV_execute 2005-05-03 16:01:17 -03:00
Roberto Ierusalimschy
b320d37a80 better tests for correctness of `savedpc' 2005-05-03 16:01:17 -03:00
Roberto Ierusalimschy
9b8d136e1c `*' operator is primitive only for tables 2005-05-02 14:49:43 -03:00
Roberto Ierusalimschy
9832f6b186 small bug 2005-04-29 10:54:05 -03:00
Roberto Ierusalimschy
8e696dd14a detail 2005-04-29 10:53:59 -03:00
Roberto Ierusalimschy
c3939f5786 comment 2005-04-29 09:43:47 -03:00
Roberto Ierusalimschy
bcc4089a7d comment 2005-04-27 15:53:53 -03:00
Roberto Ierusalimschy
cf5d1bdd76 nesting of long strings only in compatibility mode 2005-04-27 15:37:51 -03:00
Roberto Ierusalimschy
8718fda9b2 added LUAI_FUNC to functions not in the API 2005-04-25 16:24:10 -03:00
Roberto Ierusalimschy
8c3c3e7691 small bug for tail-recursive debugging 2005-04-14 10:30:47 -03:00
Roberto Ierusalimschy
04f657c7f8 new protocol to open standard libraries 2005-04-13 14:24:20 -03:00
Roberto Ierusalimschy
2873d4efff stack could overflow with too many command-line arguments 2005-04-11 15:01:35 -03:00
Roberto Ierusalimschy
a7ea0c71e8 detail 2005-04-11 15:01:29 -03:00
Roberto Ierusalimschy
b1957b1e8e detail for Windows (untested) 2005-04-07 10:52:45 -03:00
Roberto Ierusalimschy
a17e1fe124 new organization using only one library 2005-04-07 10:52:19 -03:00
Roberto Ierusalimschy
fabf5db237 C stack is the same for the parser and the interpreter, so depth
control should be unified in both parts.
2005-04-07 10:09:07 -03:00
Roberto Ierusalimschy
de0bfe33b7 new definition for `lua_number2int' for Windows (not tested yet!) 2005-04-06 14:30:13 -03:00
Roberto Ierusalimschy
9768e2f681 detail 2005-04-05 12:57:59 -03:00
Roberto Ierusalimschy
71eb824036 details 2005-04-05 12:35:15 -03:00
Roberto Ierusalimschy
7b6c3b463e small optimizations 2005-04-05 10:41:29 -03:00
Roberto Ierusalimschy
0316308c0d removed dirt optimizations that gave small gains 2005-04-04 15:12:51 -03:00
Roberto Ierusalimschy
409ee99900 detail 2005-04-01 10:51:37 -03:00
Roberto Ierusalimschy
445eda7ead details 2005-03-30 16:50:29 -03:00
Roberto Ierusalimschy
092dc95b06 using require' to implement -l' 2005-03-29 13:47:48 -03:00
Roberto Ierusalimschy
e6e543a534 better control for compatibility code 2005-03-29 13:20:48 -03:00
Roberto Ierusalimschy
1c9c886974 standard configuration should run out-of-the-box in "any" system 2005-03-29 11:30:16 -03:00
Roberto Ierusalimschy
ade585bdf9 no more LUA_FIRSTINDEX 2005-03-28 14:17:53 -03:00
Roberto Ierusalimschy
04c41444e2 wrong comment corrected 2005-03-28 09:53:40 -03:00
Roberto Ierusalimschy
03fb3c39d4 change #ifdef' for #if defined' 2005-03-23 14:51:11 -03:00
Roberto Ierusalimschy
8af1ca02e0 LUA_USERCONFIG is no longer necessary 2005-03-23 14:50:49 -03:00
Roberto Ierusalimschy
f1eb79fdf4 some line-edit facilities must free the line after its use 2005-03-22 13:55:35 -03:00
Roberto Ierusalimschy
408cb71795 avoid name conflict with some spurious included header files 2005-03-22 13:54:29 -03:00
Roberto Ierusalimschy
390256edf7 better name for GC pause 2005-03-22 13:04:29 -03:00
Roberto Ierusalimschy
ad24cff0f1 lua_gc(STEP) returns whether collection cycle finished 2005-03-21 15:12:21 -03:00
Roberto Ierusalimschy
6d475731ca cleaner configuration for lua.c 2005-03-21 15:12:07 -03:00
Roberto Ierusalimschy
f41fc0eb0e small bug: a GC step was not proportional to its "size" 2005-03-18 17:11:28 -03:00
Roberto Ierusalimschy
d872090248 small errors in previous `ci' of luaconf.h. 2005-03-18 15:55:45 -03:00
Roberto Ierusalimschy
fb0f95a2b7 call limit may be larger than shorts 2005-03-18 15:55:09 -03:00
Roberto Ierusalimschy
d3a6d95b9a more cleaning on configurations 2005-03-18 15:02:04 -03:00
Roberto Ierusalimschy
47984a0cc2 internal definitions have prefix `luai_' 2005-03-18 15:01:37 -03:00
Roberto Ierusalimschy
086d6b09ce avoid name colision with `close' function 2005-03-18 15:01:14 -03:00
Roberto Ierusalimschy
bfe2905618 avoid too much configuration options 2005-03-18 13:38:43 -03:00
Roberto Ierusalimschy
2cbd9eecfb try to avoid warnings 2005-03-18 13:38:02 -03:00
Roberto Ierusalimschy
4494094031 detail 2005-03-16 17:02:48 -03:00
Roberto Ierusalimschy
04bbd01171 new operation *t (for size of t) (may yet be removed...) 2005-03-16 13:59:21 -03:00
Roberto Ierusalimschy
9ffae705ee new "primitive" getn 2005-03-16 13:58:41 -03:00
Roberto Ierusalimschy
6bfef60e77 bug: rawset/rawget do not ignore extra arguments 2005-03-11 12:51:08 -03:00
Roberto Ierusalimschy
370d31a559 luac´ -> luai' (to avoid confusion with other luac stuff) 2005-03-09 13:28:07 -03:00
Roberto Ierusalimschy
f8df21bd20 `luaconf.h´ exports all its definitions always (so all of them
must have a lua/LUA prefix).
2005-03-08 17:10:05 -03:00
Roberto Ierusalimschy
d3902cfa81 entries `{[...] = ...}' need space too. 2005-03-08 15:16:45 -03:00
Roberto Ierusalimschy
b5b230d95c fewer #include's in luaconf.h 2005-03-08 15:09:16 -03:00
Roberto Ierusalimschy
7d57ea70bc new mod' (%') operator 2005-03-08 15:00:16 -03:00
Roberto Ierusalimschy
2d5b923759 details 2005-03-08 10:37:55 -03:00
Roberto Ierusalimschy
192d185492 C module names may have an optional `l' prefix 2005-03-08 10:27:36 -03:00
Roberto Ierusalimschy
e010ef8948 detail 2005-03-07 15:27:34 -03:00
Roberto Ierusalimschy
1e48b20ce0 loadlib' not global anymore (packaged inside package') 2005-03-07 15:07:34 -03:00
Roberto Ierusalimschy
d1ed6e4c07 small bug: must use original (previous) base 2005-03-07 13:59:01 -03:00
Roberto Ierusalimschy
b6a7983b65 USHRT_MAX may not fit in a (16-bit) int 2005-03-07 13:58:27 -03:00
Roberto Ierusalimschy
49f90ffdeb new functions (to complete math.h) 2005-03-04 15:57:03 -03:00
Roberto Ierusalimschy
dcabf721f8 "coroutine.current" -> "running" (compatible with "running" status) 2005-02-28 14:24:41 -03:00
Roberto Ierusalimschy
5eeff89f32 comments 2005-02-28 12:59:11 -03:00
Roberto Ierusalimschy
d6143b1d7b avoid access to undefined global variables 2005-02-28 12:58:48 -03:00
Roberto Ierusalimschy
d55bb795fa details 2005-02-23 14:30:22 -03:00
Roberto Ierusalimschy
d84cc9d2db small bug 2005-02-18 10:50:08 -02:00
Roberto Ierusalimschy
7d45a5f48f C functions and userdata also have environments 2005-02-18 10:40:02 -02:00
Roberto Ierusalimschy
73d7640244 more secure way to stop GC cycles during finalizers 2005-02-14 11:19:50 -02:00
Roberto Ierusalimschy
a9af455b32 detail 2005-02-14 11:19:44 -02:00
Roberto Ierusalimschy
678d2fb2ac all collected userdata must go to the end of the list of finalizers 2005-02-11 18:03:35 -02:00
Roberto Ierusalimschy
af39352632 LUA_PATH_SEP -> LUA_PATHSEP 2005-02-10 15:12:02 -02:00
Roberto Ierusalimschy
4df8800a01 cleaner way to free all objects 2005-02-10 11:25:02 -02:00
Roberto Ierusalimschy
0e60572606 values holded in open upvalues of suspended threads may be
incorrectly collected
2005-01-19 15:03:47 -02:00
Roberto Ierusalimschy
621ef9f767 better control over GC collors of upvalues 2005-01-19 13:54:26 -02:00
Roberto Ierusalimschy
d89a56f869 small warning in C++ 2005-01-18 15:23:25 -02:00
Roberto Ierusalimschy
334ba8132b cleaner way to remark open upvalues 2005-01-18 15:18:09 -02:00
Roberto Ierusalimschy
ac71a0891d detail 2005-01-17 21:50:55 -02:00
Roberto Ierusalimschy
8e346d875a auxiliar patch to monitor garbage collection 2005-01-14 12:21:16 -02:00
Roberto Ierusalimschy
5be517602e no more generational collector (and no more `noinc' mode) 2005-01-14 12:19:42 -02:00
Roberto Ierusalimschy
d2bda8046c new implementation for loaders 2005-01-14 12:17:18 -02:00
Roberto Ierusalimschy
a72fbf794d detail 2005-01-10 17:16:29 -02:00
Roberto Ierusalimschy
8ddfe3df29 macros for all arithmetic operations over lua_Numbers 2005-01-10 16:17:39 -02:00
Roberto Ierusalimschy
6eb68ba57a all function declarations surround name with parentheses 2005-01-10 15:31:50 -02:00
Roberto Ierusalimschy
a27497aa03 debug.traceback' gets an optional initial level' parameter 2005-01-10 15:21:10 -02:00
Roberto Ierusalimschy
0480ea0886 gets `debug.traceback' current when error occurs 2005-01-10 15:21:10 -02:00
Roberto Ierusalimschy
162b66624d no more `lua_userinit' macro 2005-01-10 14:31:30 -02:00
Roberto Ierusalimschy
e791f025c0 no more `_TRACEBACK' variable 2005-01-10 14:30:59 -02:00
Roberto Ierusalimschy
f61d435a7d a^b calls `pow´ (from math.h) directly 2005-01-07 18:00:33 -02:00
Roberto Ierusalimschy
071b2ae0e1 details 2005-01-07 17:53:32 -02:00
Roberto Ierusalimschy
e2498e079e change in hash algorithm so that it does not need empty slot
(tables can be 100% full)
2005-01-05 16:20:51 -02:00
Roberto Ierusalimschy
65726f3e2e cleaner interface to `ltable' 2005-01-04 13:55:12 -02:00
Roberto Ierusalimschy
9fe2d0266a better configuration for Windows 2005-01-04 10:46:04 -02:00
Roberto Ierusalimschy
e22cdf7752 better error messages when require fails for C module 2004-12-29 16:56:34 -02:00
Roberto Ierusalimschy
a5eb48a3e6 redesigned loadlib (Windows version not tested yet) 2004-12-27 13:58:15 -02:00
Roberto Ierusalimschy
49fe79e9fd small change 2004-12-27 13:58:15 -02:00
Roberto Ierusalimschy
96727c61b8 several improvements/corrections 2004-12-22 15:43:27 -02:00
Roberto Ierusalimschy
d5ebc3ff6d small changes 2004-12-22 11:05:33 -02:00
Roberto Ierusalimschy
3d19aee78f `luac' may generate code without upvalue names 2004-12-20 13:50:00 -02:00
Roberto Ierusalimschy
4194de70e7 details 2004-12-20 11:47:29 -02:00
Roberto Ierusalimschy
c6254dceff a different option for the GC 2004-12-13 10:15:11 -02:00
Roberto Ierusalimschy
a56d889f72 corrections for `absent' implementation 2004-12-13 10:14:21 -02:00
Roberto Ierusalimschy
2ec4fc4295 simpler code for `print' 2004-12-07 16:31:34 -02:00
Roberto Ierusalimschy
70751dd27c details 2004-12-07 16:31:16 -02:00
Roberto Ierusalimschy
39a8082f50 more options for controling the GC 2004-12-06 15:53:42 -02:00
Roberto Ierusalimschy
531874f6ce better (correct?) way to handle `next' over removed keys 2004-12-04 16:10:22 -02:00
Roberto Ierusalimschy
61a888518f details 2004-12-03 18:54:12 -02:00
Roberto Ierusalimschy
c78940f21a static names do not need `luaX_' prefix 2004-12-03 18:50:25 -02:00
Roberto Ierusalimschy
8b239eeba1 details 2004-12-03 18:44:19 -02:00
Roberto Ierusalimschy
a5330b77f3 static names do not need `luaX_' prefix 2004-12-03 18:35:33 -02:00
Roberto Ierusalimschy
e1c2fb6eed details 2004-12-02 10:59:10 -02:00
Roberto Ierusalimschy
12dacd3c0e added an `L' parameter to macros L_TRY & L_THROW (someone may need it). 2004-12-01 13:52:54 -02:00
Roberto Ierusalimschy
23b38176a7 `LUA_FIRSTINDEX' should not be configurable 2004-12-01 13:50:18 -02:00
Roberto Ierusalimschy
97e2dab1fb better control of overflows in size computations 2004-12-01 13:46:18 -02:00
Roberto Ierusalimschy
0ed8519127 detail 2004-12-01 13:46:06 -02:00
Roberto Ierusalimschy
0e002005b1 better names for `luaM_free...' macros 2004-11-24 17:20:21 -02:00
Roberto Ierusalimschy
1d99a7360b details 2004-11-24 17:16:03 -02:00
Roberto Ierusalimschy
2f82bf6fe9 better support for 64-bit machines 2004-11-24 16:55:56 -02:00
Roberto Ierusalimschy
087df82a61 detail 2004-11-24 16:55:42 -02:00
Roberto Ierusalimschy
10e48b9160 details 2004-11-19 14:59:08 -02:00
Roberto Ierusalimschy
6f1ea817f5 better control over memory-size overflows 2004-11-19 13:52:40 -02:00
Roberto Ierusalimschy
cdcb236747 needs to include stdlib.h' to access getenv' 2004-11-19 13:52:12 -02:00
Roberto Ierusalimschy
9be5844713 first full implementation of new package system 2004-11-18 17:53:49 -02:00
Roberto Ierusalimschy
497f042fad detail 2004-11-17 10:02:41 -02:00
Roberto Ierusalimschy
2ed07ea8c1 towards "requiring" C libraries 2004-11-11 13:42:57 -02:00
Roberto Ierusalimschy
cfd7bc478f better patch for buffer overflow error 2004-11-03 10:22:39 -02:00
Roberto Ierusalimschy
737ec947d3 better implementation for `floating-point bytes' 2004-11-01 12:06:50 -03:00
Roberto Ierusalimschy
45d566f676 small corrections (thanks to Mike Pall) 2004-11-01 11:33:33 -03:00
Roberto Ierusalimschy
cfb79b1751 more secure way to compute final string length 2004-10-28 14:45:51 -03:00
Roberto Ierusalimschy
3e1a1f2836 better configuration for loadlib + tested Mac OS X version 2004-10-18 15:07:31 -03:00
Roberto Ierusalimschy
b32e9a46d2 better configuration for loadlib 2004-10-18 15:07:31 -03:00
Roberto Ierusalimschy
e5cfa7a367 use of parentheses around macro parameters in call lists, to avoid
problems with comma expressions
2004-10-18 09:51:44 -03:00
Roberto Ierusalimschy
aae1612747 avoid name chash in `all.c' 2004-10-08 15:57:16 -03:00
Roberto Ierusalimschy
8050e75f9d bug: gc metamethod must disable GC steps (to avoid nested calls) 2004-10-08 13:00:34 -03:00
Roberto Ierusalimschy
3bec76abe3 first version of loadlib for Mac OS X (not tested yet!!) 2004-10-07 14:27:20 -03:00
Roberto Ierusalimschy
5cb6037d49 cannot jump to a setlist count 2004-10-07 14:27:00 -03:00
Roberto Ierusalimschy
f1c2dd3aed detail 2004-10-06 15:34:47 -03:00
Roberto Ierusalimschy
bd38017ddf small optimization for table size in machines with double allignment 2004-10-06 15:34:16 -03:00
Roberto Ierusalimschy
652f885c30 detail 2004-10-04 16:07:42 -03:00
Roberto Ierusalimschy
f7e9465a0c new format for SETLIST opcode 2004-10-04 16:04:34 -03:00
Roberto Ierusalimschy
5ee87acd6b small optimization for boolean constants + new format for SETLIST opcode 2004-10-04 16:01:53 -03:00
Roberto Ierusalimschy
5d834bdf57 function constants may include boolean values 2004-10-04 16:01:12 -03:00
Roberto Ierusalimschy
67391a35da details 2004-09-29 18:03:42 -03:00
Roberto Ierusalimschy
36541dec9b towards new package system 2004-09-29 18:03:14 -03:00
Roberto Ierusalimschy
cf2a194edc better API for luaL_getfield/setfield 2004-09-29 18:00:25 -03:00
Roberto Ierusalimschy
66845f415f small optimizations 2004-09-27 15:54:45 -03:00
Roberto Ierusalimschy
b2820f39a2 long string delimiter changed from [*[' to [=[' 2004-09-22 11:02:00 -03:00
Roberto Ierusalimschy
8b5bb6056b removal of unused variable 2004-09-22 09:37:52 -03:00
Roberto Ierusalimschy
4973682294 small bug with coroutine tracebacks 2004-09-21 14:58:06 -03:00
Roberto Ierusalimschy
6acfb91c8d new auxiliary functions to implement new package system 2004-09-21 13:54:32 -03:00
Roberto Ierusalimschy
2419f2bf02 cleaner API for coroutines 2004-09-15 17:39:42 -03:00
Roberto Ierusalimschy
0e54d2be36 bug: barrier was wrong for generational phase 2004-09-15 17:38:15 -03:00
Roberto Ierusalimschy
226c57fec0 simpler configuration to turn on all asserts 2004-09-10 14:30:46 -03:00
Roberto Ierusalimschy
0de2065f4e tighter tests for stack overflow 2004-09-08 11:23:09 -03:00
Roberto Ierusalimschy
ee165043ef two bugs related to varargs 2004-09-03 12:48:56 -03:00
Roberto Ierusalimschy
3c394b12f9 detail 2004-09-03 10:17:14 -03:00
Roberto Ierusalimschy
79fc7dea43 simpler implementation for generic reader 2004-09-03 10:16:48 -03:00
Roberto Ierusalimschy
9c34e23214 new libs loslib´ and linit´ 2004-09-01 10:49:20 -03:00
Roberto Ierusalimschy
2aba14b623 details 2004-09-01 10:47:31 -03:00
Roberto Ierusalimschy
1dd8c9b6b6 detail 2004-08-31 14:57:33 -03:00
Roberto Ierusalimschy
7d309480dd new way to handle _PATH (old LUA_PATH) 2004-08-30 15:35:14 -03:00
Roberto Ierusalimschy
bcb2cb59ac select' returns all values after given n' 2004-08-30 12:28:32 -03:00
Roberto Ierusalimschy
0b06241483 better control for GC cycles 2004-08-30 10:44:44 -03:00
Roberto Ierusalimschy
857253cdfc detail 2004-08-30 10:44:04 -03:00
Roberto Ierusalimschy
5dcd908add detail 2004-08-26 11:19:55 -03:00
Roberto Ierusalimschy
32d4f304db first implementation of generational GC 2004-08-24 17:12:06 -03:00
Roberto Ierusalimschy
4b12eff801 small correction (less conservative write barrier for tables) 2004-08-24 17:09:11 -03:00
Roberto Ierusalimschy
271e05917f bug: lua_getupvalue and setupvalue do not check for index too small. 2004-08-17 14:45:45 -03:00
Roberto Ierusalimschy
fe8c365281 default state (created by `luaL_newstate´) has a default panic function 2004-08-13 16:52:53 -03:00
Roberto Ierusalimschy
2d8b099274 better checking for read errors (with `ferror´) 2004-08-13 16:52:13 -03:00
Roberto Ierusalimschy
ff4f8fe59a small bug: calls to upvalues were not correctly traced 2004-08-13 15:02:36 -03:00
Roberto Ierusalimschy
a7c74c06b9 small bug: lua_gc(count) was falling through to next option 2004-08-12 14:02:51 -03:00
Roberto Ierusalimschy
c7dda42c2f bug (due to new handling of varargs) 2004-08-12 11:19:51 -03:00
Roberto Ierusalimschy
26ae992129 less conservative write barrier for tables 2004-08-10 16:17:23 -03:00
Roberto Ierusalimschy
f87057690b `io.lines' also can give the file name in its error message 2004-08-09 11:35:59 -03:00
Roberto Ierusalimschy
9e6aa878c9 string.byte truncates indices out of range 2004-08-09 10:30:33 -03:00
Roberto Ierusalimschy
c0fdaf5842 string.byte may return multiple values 2004-08-06 14:35:38 -03:00
Roberto Ierusalimschy
2430d3cb28 small changes (due to Rici Lake) to allow testing non-supported OS functions 2004-08-05 16:30:37 -03:00
Roberto Ierusalimschy
6bddbbde7a details (opcode may not be the first field) 2004-08-04 17:18:13 -03:00
Roberto Ierusalimschy
31e48f26ed small bug 2004-07-16 10:30:53 -03:00
Roberto Ierusalimschy
0d9007b642 no more LUA_OPNAMES 2004-07-16 10:17:00 -03:00
Roberto Ierusalimschy
9609236fbb no more LUA_OPNAMES; it is simpler to "waste" 400 bytes 2004-07-16 10:15:32 -03:00
Roberto Ierusalimschy
942496d767 small bug 2004-07-13 17:11:32 -03:00
Roberto Ierusalimschy
a535ad6fee several small changes (mainly function names) 2004-07-13 16:56:44 -03:00
Roberto Ierusalimschy
4206d7ed60 `lua_Chunkwriter' returns 0 in case of success 2004-07-09 15:24:41 -03:00
Roberto Ierusalimschy
7a796a0682 new macro `luaL_typename' 2004-07-09 15:23:17 -03:00
Roberto Ierusalimschy
76d8b8db06 lua_pushfstring' now supports %p' option too 2004-07-09 13:01:38 -03:00
Roberto Ierusalimschy
ce455481ab separation between io lib and os lib 2004-07-09 12:47:48 -03:00
Roberto Ierusalimschy
85f1d70e68 OS lib (finally separated from io lib) 2004-07-09 12:47:48 -03:00
Roberto Ierusalimschy
31f6540fba back with an "open all libs" function 2004-07-09 11:29:29 -03:00
Roberto Ierusalimschy
eab1965c05 bug: `lua_setfenv' needs a write barrier 2004-07-09 11:20:22 -03:00
Roberto Ierusalimschy
3d5187f6e5 require' uses its private reference to _LOADED' table 2004-07-02 15:09:11 -03:00
Roberto Ierusalimschy
80ec81926c `lua.c' also needs the default path, so auxlib should provide it 2004-07-01 11:26:28 -03:00
Roberto Ierusalimschy
96917ff42a "step" option in lua_gc also need to lock Lua. 2004-06-30 11:15:23 -03:00
Roberto Ierusalimschy
a6179adf12 detail 2004-06-30 09:58:44 -03:00
Roberto Ierusalimschy
02a2c01ccd new way to code RK values 2004-06-29 15:49:02 -03:00
Roberto Ierusalimschy
23e08a68f5 detail 2004-06-29 14:05:00 -03:00
Roberto Ierusalimschy
0f5a497ed9 new interface for search-path function + small changes in require 2004-06-29 13:58:17 -03:00
Roberto Ierusalimschy
753625c3f3 new interface for search-path function 2004-06-29 13:57:56 -03:00
Roberto Ierusalimschy
42b74ccf1d libraries may want to use `lua_assert' too... 2004-06-23 12:57:29 -03:00
Roberto Ierusalimschy
0c49857c1a new scheme to search paths 2004-06-21 17:05:29 -03:00
Roberto Ierusalimschy
6b41e84da5 `assert' returns all its parameters (not only the first) 2004-06-21 13:45:09 -03:00
Roberto Ierusalimschy
359840c2f8 new coroutines inherit hook from creator 2004-06-17 11:25:31 -03:00
Roberto Ierusalimschy
dba17070ac optional error for accesss to undefined variables/fields 2004-06-17 11:06:52 -03:00
Roberto Ierusalimschy
569eefbf73 detail 2004-06-16 17:22:43 -03:00
Roberto Ierusalimschy
5e4ea9a831 `setn' returns its "self" (the table) 2004-06-15 10:37:21 -03:00
Roberto Ierusalimschy
6311e3109f `setfenv' returns "self" 2004-06-15 10:31:30 -03:00
Roberto Ierusalimschy
9b854e6dbc BUG: string concatenation may cause arithmetic overflow, leading
to a buffer overflow.
2004-06-08 13:23:58 -03:00
Roberto Ierusalimschy
2b2d8ecd7a details 2004-06-08 11:31:15 -03:00
Roberto Ierusalimschy
75057dfced 2004-06-08 11:31:00 -03:00
Roberto Ierusalimschy
345379b5ff option for garbage-collector `step' 2004-06-04 12:30:53 -03:00
Roberto Ierusalimschy
118e471fa0 details 2004-06-02 16:09:36 -03:00
Roberto Ierusalimschy
ba9878fcb8 lock stuff defined in `luaconf.h' 2004-06-02 16:09:21 -03:00
Roberto Ierusalimschy
fa38421cea `testC' can operate on other states 2004-06-02 16:08:52 -03:00
Roberto Ierusalimschy
e8d4fe7236 new macro lua_threadyield' + lock stuff in luaconf.h' + details 2004-06-02 16:07:55 -03:00
Roberto Ierusalimschy
b8691f13a8 `getn' uses binary search if it has to count elements 2004-06-02 16:06:14 -03:00
Roberto Ierusalimschy
f4718544de what is provided by lauxlib.c should be defined at lauxlib.h 2004-06-02 14:37:03 -03:00
Roberto Ierusalimschy
50f9cd201e no more `__fenv' 2004-06-02 11:20:08 -03:00
Roberto Ierusalimschy
9d8426bab4 better error messages for `loadfile' 2004-06-02 10:50:46 -03:00
Roberto Ierusalimschy
557f0009c4 clear definition for `lua_number2int' 2004-06-02 10:24:43 -03:00
Roberto Ierusalimschy
0dfd04eb60 lua_strlen' upgraded to lua_objsize' (which also works with userdata) 2004-05-31 16:41:52 -03:00
Roberto Ierusalimschy
1e0aaf2156 luaL_dofile' and luaL_dostring' are deprecated 2004-05-31 16:27:14 -03:00
Roberto Ierusalimschy
616438fe9a new way to use vararg' parameters (with ...') 2004-05-31 15:51:50 -03:00
Roberto Ierusalimschy
47eda6ebd8 main must return status from original main! 2004-05-31 15:50:48 -03:00
Roberto Ierusalimschy
0f49b3e62d new function `select' 2004-05-31 15:50:30 -03:00
Roberto Ierusalimschy
0733c83b8c other modules may need FILEHANDLE definition 2004-05-28 15:35:05 -03:00
Roberto Ierusalimschy
e9844a4f1d `popen' is not ANSI and therefore was removed from the basic library 2004-05-28 15:32:51 -03:00
Roberto Ierusalimschy
c61bb89dba details 2004-05-17 09:34:00 -03:00
Roberto Ierusalimschy
0bda88e6cd small steps towards yields in iterators and tag methods 2004-05-14 16:25:09 -03:00
Roberto Ierusalimschy
7966a4acae avoid name clashes among different files 2004-05-11 13:52:08 -03:00
Roberto Ierusalimschy
37cd986532 in time', uses default if isdst' is absent 2004-05-10 17:26:37 -03:00
Roberto Ierusalimschy
a17dd24b34 no more USE_DEGREES option 2004-05-10 15:11:32 -03:00
Roberto Ierusalimschy
b072e4ea0b tinsert' and tremove' also use LUA_FIRSTINDEX 2004-05-10 15:06:14 -03:00
Roberto Ierusalimschy
7e41612eb2 code parameterized by LUA_FIRSTINDEX (first index of an array) 2004-05-10 14:50:51 -03:00
Roberto Ierusalimschy
b0f341ee52 LUAL_BUFFERSIZE is used in `lauxlib.h' and so everybody may need it 2004-05-10 10:58:26 -03:00
Roberto Ierusalimschy
1c459b881f accept `\r' as newline when looking for line end 2004-05-03 09:30:41 -03:00
Roberto Ierusalimschy
9629508a98 configuration file for Lua project 2004-05-03 09:28:43 -03:00
Roberto Ierusalimschy
763b8fba1b more stuff goes to configuration file 2004-05-03 09:28:43 -03:00
Roberto Ierusalimschy
b4cd38ba6c new scheme for configuration through `luaconf.h' 2004-04-30 17:13:38 -03:00
Roberto Ierusalimschy
079facab40 ensures own top is corrected after calling function with multiple results 2004-04-05 11:43:17 -03:00
Roberto Ierusalimschy
4c5d7b2ddd small optimization for {f()} 2004-03-26 11:02:41 -03:00
Roberto Ierusalimschy
d7cb622866 `unpack' has two optional arguments (to give a range) 2004-03-26 10:25:17 -03:00
Roberto Ierusalimschy
26a9b249db details 2004-03-24 12:46:49 -03:00
Roberto Ierusalimschy
227bddafe8 new copyright year 2004-03-24 10:55:46 -03:00
Roberto Ierusalimschy
5008e3d7d1 new states must use controlled malloc, too 2004-03-23 14:07:53 -03:00
Roberto Ierusalimschy
21bc05c920 write barrier for C upvalues 2004-03-23 14:07:34 -03:00
Roberto Ierusalimschy
29a13b4128 detail 2004-03-23 13:38:43 -03:00
Roberto Ierusalimschy
ef8c0d7d90 better message for errors with upvalues 2004-03-23 10:10:16 -03:00
Roberto Ierusalimschy
178246062c reuse `sweeplist' for all lists 2004-03-23 09:57:12 -03:00
Roberto Ierusalimschy
24f2d1183c detail 2004-03-16 09:31:40 -03:00
Roberto Ierusalimschy
8e1f25e3f8 bug in `dofile' 2004-03-15 18:09:55 -03:00
Roberto Ierusalimschy
48a8d78102 new tests to check memory consistency (for incremental GC) 2004-03-15 18:04:54 -03:00
Roberto Ierusalimschy
a4e1230f95 better way to control open upvalues 2004-03-15 18:04:33 -03:00
Roberto Ierusalimschy
9804467eeb detail 2004-03-13 10:32:09 -03:00
Roberto Ierusalimschy
a003e89125 better error messages for some limits 2004-03-12 16:53:56 -03:00
Roberto Ierusalimschy
b876ec61c0 new (temporary?) API for garbage collector 2004-03-09 14:34:35 -03:00
Roberto Ierusalimschy
898e8a6794 added include to stdarg.h (as it uses vararg facilities) 2004-02-20 13:01:05 -03:00
Roberto Ierusalimschy
1edea34666 details 2004-02-18 10:40:03 -03:00
Roberto Ierusalimschy
2aaf7394ad more and better tools (assertions & inspectors) to check incremental GC 2004-02-16 16:09:52 -03:00
Roberto Ierusalimschy
b3ce450529 avoid calling `memcmp' with a NULL argument 2004-01-15 10:40:26 -02:00
Roberto Ierusalimschy
24434b59f7 '%' must be '%%' to avoid formatting problems 2004-01-02 09:54:14 -02:00
Roberto Ierusalimschy
beb2aa5a46 atomic operations are not GC "states" 2003-12-12 16:29:34 -02:00
Roberto Ierusalimschy
47fc57a252 TObject' renamed to TValue' + other name changes and better assertions
for incremental garbage collection
2003-12-10 10:13:36 -02:00
Roberto Ierusalimschy
4d5fe1f54b detail 2003-12-10 09:04:54 -02:00
Roberto Ierusalimschy
df429f163a First version of incremental GC 2003-12-09 14:56:11 -02:00
Roberto Ierusalimschy
fe595a45c2 `grayagain' list 2003-12-04 16:52:23 -02:00
Roberto Ierusalimschy
9db1942bac sweep of strings also incremental 2003-12-04 15:22:42 -02:00
Roberto Ierusalimschy
c6eac44a94 two different white flags (to distinguish dead elements from new ones) 2003-12-03 18:03:07 -02:00
Roberto Ierusalimschy
8878554b85 single list for all collectible objects, with udata separated at the
end of the list
2003-12-03 10:30:41 -02:00
Roberto Ierusalimschy
af850484a9 default metatable can be NULL 2003-12-01 16:22:56 -02:00
Roberto Ierusalimschy
1d10acb355 incremental GC phases 2003-12-01 14:33:30 -02:00
Roberto Ierusalimschy
da61624756 avoid overflow when doubling size 2003-11-27 16:18:37 -02:00
Roberto Ierusalimschy
8b97b072cd details 2003-11-27 16:05:14 -02:00
Roberto Ierusalimschy
5ee63257f9 macros for closure sizes are global 2003-11-24 16:50:36 -02:00
Roberto Ierusalimschy
8bc6c68021 details 2003-11-19 17:59:18 -02:00
Roberto Ierusalimschy
57b6ed6815 initial implementation of white/gray/black coloring 2003-11-19 17:41:57 -02:00
Roberto Ierusalimschy
9b9cdfee8b gclist for upvalues must be available even when upvalue is still open 2003-11-19 17:41:30 -02:00
Roberto Ierusalimschy
366e4af3c9 towards incremental GC 2003-11-18 12:55:11 -02:00
Roberto Ierusalimschy
53c7f86194 details 2003-11-18 08:44:53 -02:00
Roberto Ierusalimschy
ab7d9bfd0c cleaner code for manipulation of `marked' field 2003-11-17 17:50:05 -02:00
Roberto Ierusalimschy
921b1723e2 comments 2003-11-11 14:34:17 -02:00
Roberto Ierusalimschy
fa198197a0 lua_(set)getglobal are ok to use 2003-11-05 09:59:14 -02:00
Roberto Ierusalimschy
1e944de6cb towards a "stackless" call of metamethods (?) 2003-10-27 17:14:31 -02:00
Roberto Ierusalimschy
275c150b17 error()' (and error(nil)') generates errors with no error messages 2003-10-23 16:06:22 -02:00
Roberto Ierusalimschy
d6d896b953 lua_set(get)global may use lua_set(get)field 2003-10-21 08:58:58 -02:00
Roberto Ierusalimschy
07201066bd core does not look for function name in globals (too particular) 2003-10-20 16:42:28 -02:00
Roberto Ierusalimschy
97b838d9ab new semantics for setn/getn (no more changes to `n') 2003-10-20 16:32:55 -02:00
Roberto Ierusalimschy
c51bcf4796 it's ok to dump functions with upvalues 2003-10-20 15:42:41 -02:00
Roberto Ierusalimschy
03bab90303 new function `lua_getallocf' to retrieve allocation function and data 2003-10-20 10:25:23 -02:00
Roberto Ierusalimschy
8502331f69 `luaX_errorline' was used only in one place 2003-10-20 10:24:34 -02:00
Roberto Ierusalimschy
9914e1bcdd detail 2003-10-20 10:24:26 -02:00
Roberto Ierusalimschy
10de467c79 new function `lua_createtable' 2003-10-10 10:29:28 -03:00
Roberto Ierusalimschy
533737f26e new functions lua_getfield' and lua_setfield' 2003-10-10 09:57:55 -03:00
Roberto Ierusalimschy
a41d60e1d1 debugger can only see `local function' after it has a meaningful value 2003-10-09 14:56:23 -03:00
Roberto Ierusalimschy
f04fe526cd new functions `lua_tointeger' and lua_pushinteger' 2003-10-07 17:13:41 -03:00
Roberto Ierusalimschy
21947deddc new bug + correction in path for coroutine bug 2003-10-07 09:34:21 -03:00
Roberto Ierusalimschy
3087636c76 detail 2003-10-03 13:07:44 -03:00
Roberto Ierusalimschy
7b8504840f buffer should better use `size_t' for its size 2003-10-03 13:05:34 -03:00
Roberto Ierusalimschy
3a508b8bd7 avoid the use of `strlen' (strings are literals) 2003-10-03 13:04:24 -03:00
Roberto Ierusalimschy
6becdb3e70 details 2003-10-03 13:04:11 -03:00
Roberto Ierusalimschy
b97fb932ec Lua kernel does not use malloc/free functions. 2003-10-02 17:31:17 -03:00
Roberto Ierusalimschy
c7cf92e6f3 avoid unecessary includes of `stdlib' 2003-10-02 16:21:09 -03:00
Roberto Ierusalimschy
a62d39aa1c detail: `luaL_where' does not use the name information 2003-10-01 13:50:53 -03:00
Roberto Ierusalimschy
5d4bf35ec9 bug: syntax `local function' does not increment stack size 2003-09-29 13:41:35 -03:00
Roberto Ierusalimschy
6063c5c61f bug: cannot invalidate a running coroutine 2003-09-05 11:30:59 -03:00
Roberto Ierusalimschy
2a70107581 detail 2003-09-05 11:00:27 -03:00
Roberto Ierusalimschy
7dae7899b1 main thread and global state are allocated in a single block 2003-09-04 17:19:07 -03:00
Roberto Ierusalimschy
30e51f09b9 some changes in error reporting 2003-09-04 17:00:28 -03:00
Roberto Ierusalimschy
994a37c8e8 IBM AS400 (OS400) has sizeof(void *)==16, and a `%p' may generate
up to 60 characters in a `printf'. That causes a buffer overflow in
`tostring'..
2003-08-29 13:50:02 -03:00
Roberto Ierusalimschy
0ff1596476 new form of long strings: `[***[...]***]' 2003-08-29 13:48:14 -03:00
Roberto Ierusalimschy
b27664e0db simpler manipulation of buffer count in scanner 2003-08-28 11:38:46 -03:00
Roberto Ierusalimschy
beb896b082 new function (generic) `load' 2003-08-27 18:02:08 -03:00
Roberto Ierusalimschy
8332d5c8a5 parser fully reentrant(!) 2003-08-27 18:01:44 -03:00
Roberto Ierusalimschy
885961be1d reader runs outside core Lua 2003-08-27 17:57:52 -03:00
Roberto Ierusalimschy
b114142799 new auxiliary function `luaH_setstr' 2003-08-26 09:04:13 -03:00
Roberto Ierusalimschy
4b2e71ddb6 ZIO passes Lua state to chunk reader 2003-08-25 17:00:50 -03:00
Roberto Ierusalimschy
9fcc485176 zio does not keep "source" name (nobody uses it) 2003-08-25 16:51:54 -03:00
Roberto Ierusalimschy
64066359dd bug: IBM AS400 (OS400) has sizeof(void *)==16, and a `%p' may generate
up to 60 characters in a `printf'. That causes a buffer overflow in
`tostring'..
2003-08-25 16:49:47 -03:00
Roberto Ierusalimschy
97af24ea32 newlines can be \n', \r', \r\n', or \n\r' 2003-08-21 11:16:43 -03:00
Roberto Ierusalimschy
433cb1d13a no more checks for non-default compilation options + luaU_dump has
new option to strip debug info
2003-08-15 10:48:53 -03:00
Roberto Ierusalimschy
d66198719d several bugs for Lua 5.0 + new format for bug entries 2003-07-29 16:27:46 -03:00
Roberto Ierusalimschy
91bf77534c no need for a maximum number of parameters (maximum number of locals
take care of that).
2003-07-29 16:26:34 -03:00
Roberto Ierusalimschy
a0a384a6b1 bug: userdata to be collected still counts into new GC threshold,
increasing memory consumption
2003-07-29 16:25:37 -03:00
Roberto Ierusalimschy
e89945aaa1 syntax ...=var' changed to var=...' 2003-07-29 15:51:00 -03:00
Roberto Ierusalimschy
d407d3fe0e details 2003-07-28 15:31:20 -03:00
Roberto Ierusalimschy
522407e23a we do not need a default panic (that does nothing anyway...) 2003-07-16 17:51:47 -03:00
Roberto Ierusalimschy
fa26d294ae new way to control `pc' of running functions 2003-07-16 17:49:02 -03:00
Roberto Ierusalimschy
5a761e3a15 opcode number may be invalid 2003-07-10 08:59:06 -03:00
Roberto Ierusalimschy
265530478b more changes to reduce stack usage by the parser 2003-07-09 17:11:30 -03:00
Roberto Ierusalimschy
00180bb133 small changes to reduce stack usage by the parser 2003-07-09 12:36:38 -03:00
Roberto Ierusalimschy
66ed154c89 details 2003-07-09 09:08:43 -03:00
Roberto Ierusalimschy
f52f357a55 correct handling when a thread turns on line hooks in another thread 2003-07-07 10:37:56 -03:00
Roberto Ierusalimschy
79fee99024 `debug' library can operate over other threads 2003-07-07 10:37:08 -03:00
Roberto Ierusalimschy
a73ded2153 Move nothing when there is nothing to move 2003-07-07 10:34:25 -03:00
Roberto Ierusalimschy
0ec4c473df bug: file:close cannot be called without a file. 2003-07-07 10:32:52 -03:00
Roberto Ierusalimschy
9e05503ffa bug: C functions also may have stacks larger than current top 2003-07-07 10:32:19 -03:00
Roberto Ierusalimschy
17f695157c define a `lua_isthread' for completeness 2003-07-07 10:30:57 -03:00
Roberto Ierusalimschy
b93f67f2ce detail 2003-06-10 09:36:26 -03:00
Roberto Ierusalimschy
60aa01d8f7 fully-weak tables are more efficient 2003-05-16 15:59:08 -03:00
Roberto Ierusalimschy
ecf5730c0c (much) smarter way to clear weak tables 2003-05-16 15:58:39 -03:00
Roberto Ierusalimschy
b10bfd4934 comments 2003-05-15 16:46:03 -03:00
Roberto Ierusalimschy
176cd7d1a3 `#!' is detected by loadfile, not by the lexer 2003-05-15 09:20:24 -03:00
Roberto Ierusalimschy
859c7f7ce0 LUA_SIGNATURE is public 2003-05-15 09:20:04 -03:00
Roberto Ierusalimschy
56c5e749cc no more compatibility code (`lua_pushupvalues') 2003-05-14 18:10:07 -03:00
Roberto Ierusalimschy
9ec9a012e7 details 2003-05-14 18:09:53 -03:00
Roberto Ierusalimschy
dae99205cf no more compatibility code 2003-05-14 18:06:56 -03:00
Roberto Ierusalimschy
9eb0f25a29 no more compatibility code for 4.0 2003-05-14 18:02:39 -03:00
Roberto Ierusalimschy
f93051155c ok to use #elif' and #if defined()' 2003-05-14 18:01:53 -03:00
Roberto Ierusalimschy
524ae9fc3d new function `setvbuf' 2003-05-14 16:03:43 -03:00
Roberto Ierusalimschy
0ddedaee92 new function `string.reverse' 2003-05-14 11:35:54 -03:00
Roberto Ierusalimschy
5cc448386a new syntax: `... [= name]' 2003-05-14 09:32:46 -03:00
Roberto Ierusalimschy
c116dcb92b better information about instruction behavior (use of arguments) 2003-05-14 09:09:12 -03:00
Roberto Ierusalimschy
6d268b0b00 new semantics for "for" local variables 2003-05-13 17:15:59 -03:00
Roberto Ierusalimschy
c767747191 new (internal) macros for error handling 2003-05-13 16:22:19 -03:00
Roberto Ierusalimschy
f966404ed6 simpler implementation for valid/acceptable indices 2003-05-09 17:16:54 -03:00
Roberto Ierusalimschy
ee07ad346d `getn' doesn't need this field (values cannot be nil) 2003-05-07 13:02:16 -03:00
Roberto Ierusalimschy
fee9e473f2 inlining of `luaV_gettable' were too complex (dirty) 2003-05-05 15:39:57 -03:00
Roberto Ierusalimschy
82dfacbcf7 detail 2003-04-30 17:24:38 -03:00
Roberto Ierusalimschy
26097b6c4b uses integers as keys to standard i/o files 2003-04-30 17:15:55 -03:00
Roberto Ierusalimschy
f1f8f0ca22 simpler way to check maximum gc threshold 2003-04-28 16:58:06 -03:00
Roberto Ierusalimschy
bcc5f1406b test function for lua_setgcthreshold 2003-04-28 16:58:06 -03:00
Roberto Ierusalimschy
b1b752fb2b comments 2003-04-28 16:57:50 -03:00
Roberto Ierusalimschy
572a69df78 Lua does not need all those different types... 2003-04-28 16:26:16 -03:00
Roberto Ierusalimschy
943c82b376 avoid unnecessary call to log2 on too large indices 2003-04-28 10:31:46 -03:00
Roberto Ierusalimschy
17149b7d43 avoid warnings (Instruction' may not fit into an int') 2003-04-28 10:31:06 -03:00
Roberto Ierusalimschy
01b303c87e simpler log2 implementation 2003-04-28 10:30:14 -03:00
Roberto Ierusalimschy
762c737037 last changes by lhf 2003-04-10 14:39:41 -03:00
Roberto Ierusalimschy
de57dc2653 new scheme to control `loadlib' configuration (default for dlopen
implementation is not to include it)
2003-04-07 17:11:53 -03:00
Roberto Ierusalimschy
d1df829f8d lua_getmetatable must accept any acceptable index 2003-04-07 11:36:08 -03:00
Roberto Ierusalimschy
2ad947fe03 new test options for luaL_getn/setn 2003-04-07 11:35:00 -03:00
Roberto Ierusalimschy
f0cc013afa luaL_getn/setn must operate correctly over negative indices 2003-04-07 11:35:00 -03:00
Roberto Ierusalimschy
0d88545b82 warnings from several compilers (mainly typecasts when lua_Number is float) 2003-04-03 10:35:34 -03:00
Roberto Ierusalimschy
f84c5a5fc6 avoid conflicts in (re)definition of `isatty' 2003-04-03 10:34:42 -03:00
Roberto Ierusalimschy
05d35d8f3c comments 2003-04-02 10:09:14 -03:00
Roberto Ierusalimschy
3a6230ef7c error-message format 2003-04-01 14:52:31 -03:00
Roberto Ierusalimschy
a424a112b5 clearance of debuging code (left by mistake) 2003-03-31 10:00:25 -03:00
Roberto Ierusalimschy
b858161fbc new hash method for lua_Number (double) (due to a performance problem) 2003-03-24 11:18:42 -03:00
Roberto Ierusalimschy
80bac182db do not mix --help' with --' 2003-03-24 09:40:01 -03:00
Roberto Ierusalimschy
30a411ab3c chars from zio are always unsigned 2003-03-24 09:39:34 -03:00
Roberto Ierusalimschy
5bb5a1831d details 2003-03-20 17:26:33 -03:00
Roberto Ierusalimschy
b518d14071 bug: zio mixes a 255 as first char in a buffer with EOZ 2003-03-20 13:00:56 -03:00
Roberto Ierusalimschy
15dbb53461 towards 5.0 final 2003-03-19 18:27:30 -03:00
Roberto Ierusalimschy
abc304f9da avoid name colision (for alllua.c) 2003-03-19 18:24:04 -03:00
Roberto Ierusalimschy
1a553f9199 better error messages 2003-03-19 18:16:12 -03:00
Roberto Ierusalimschy
0ca225d33a better error message 2003-03-19 18:15:18 -03:00
Roberto Ierusalimschy
70e2b7ab86 name changes to avoid name collision between macros and variables 2003-03-19 18:14:53 -03:00
Roberto Ierusalimschy
5a144e891a __globals' -> __fenv' 2003-03-19 18:14:34 -03:00
Roberto Ierusalimschy
b12776f29c `luaL_getmetafield' was leaving extra value on the stack 2003-03-18 15:48:31 -03:00
Roberto Ierusalimschy
ab9e062928 name changes to avoid name collision between macros and variables 2003-03-18 09:50:04 -03:00
Roberto Ierusalimschy
81cdbabf09 detail (change place of a prototype) 2003-03-18 09:31:39 -03:00
Roberto Ierusalimschy
40cfb0691e new auxiliary functions for `type' manipulation 2003-03-18 09:25:32 -03:00
Roberto Ierusalimschy
9b7af7e45b tests for Windows version 2003-03-18 09:25:01 -03:00
Roberto Ierusalimschy
2e66248f8a unused argument 2003-03-18 09:24:38 -03:00
Roberto Ierusalimschy
79db75101e detail 2003-03-18 09:24:26 -03:00
Roberto Ierusalimschy
b0c40e2405 first version of `loadlib' 2003-03-17 10:04:58 -03:00
Roberto Ierusalimschy
4734e2de05 `loadlib' now an official library 2003-03-17 10:01:48 -03:00
Roberto Ierusalimschy
7ea180af6e detail 2003-03-14 16:08:11 -03:00
Roberto Ierusalimschy
05d567d52e io.input'/io.output' always return current file 2003-03-14 16:00:16 -03:00
Roberto Ierusalimschy
d8a3a00d84 `string.find' also accepts out-of-range indices 2003-03-14 15:59:53 -03:00
Roberto Ierusalimschy
c9ea94ec92 out-of-bound upvalues (in C) are acceptable indices 2003-03-14 15:59:21 -03:00
Roberto Ierusalimschy
fa4b4c1100 loadstring/loadfile use global environment + setfenv(0) changes
global environment
2003-03-11 15:17:43 -03:00
Roberto Ierusalimschy
4039bf457d ^ operator is defined by global `__pow' 2003-03-11 09:30:37 -03:00
Roberto Ierusalimschy
034de1fe73 new names for functions that open C libraries 2003-03-11 09:24:34 -03:00
Roberto Ierusalimschy
430d6db928 LUA_PATH components may have multiple interrogation marks 2003-03-11 09:08:13 -03:00
Roberto Ierusalimschy
7c3857cded comments 2003-03-07 10:21:31 -03:00
Roberto Ierusalimschy
8ce6f0b418 avoid including system headers after program headers 2003-03-06 16:37:42 -03:00
Roberto Ierusalimschy
572bddc0b0 LUA_USETMPNAME -> USE_TMPNAME 2003-03-06 16:36:44 -03:00
Roberto Ierusalimschy
3684f67771 details (text of an error message) 2003-03-06 16:36:16 -03:00
Roberto Ierusalimschy
69dd9461e5 bug: GC metamethod calls could mess C/Lua stack syncronization 2003-02-28 16:45:15 -03:00
Roberto Ierusalimschy
6b6bc532a4 better error message for (deprecated) "%global" 2003-02-28 14:19:47 -03:00
Roberto Ierusalimschy
ea16ee41a8 no more attempt to optimize GC when parsing new modules (too complex) 2003-02-28 12:42:08 -03:00
Roberto Ierusalimschy
60d11ec316 by default, gcc does not get tmpname 2003-02-27 09:39:05 -03:00
Roberto Ierusalimschy
e1a424e8a3 avoid the identifier index' (clashes with BSD index' function) 2003-02-27 09:33:07 -03:00
Roberto Ierusalimschy
59ce42dbd5 detail 2003-02-27 09:32:30 -03:00
Roberto Ierusalimschy
92f6e0c1bf no-nonsense debug information about tail calls 2003-02-27 08:52:30 -03:00
Roberto Ierusalimschy
5cd99b82b7 set/getenvtable' -> set/getfenv' 2003-02-24 13:54:20 -03:00
Roberto Ierusalimschy
07e210e655 `require' returns value returned by package 2003-02-24 13:50:41 -03:00
Roberto Ierusalimschy
feb724c122 ULONG_MAX>>10 may not fit into an int (old bug) 2003-02-21 16:00:14 -03:00
Roberto Ierusalimschy
67f9a2a98f details 2003-02-20 17:12:39 -03:00
Roberto Ierusalimschy
c4f9c887fc expressions too complex for an ARM compiler... 2003-02-19 07:28:58 -03:00
Roberto Ierusalimschy
9866fb0ef1 set/getglobals' -> set/getenvtable' 2003-02-18 13:13:15 -03:00
Roberto Ierusalimschy
60c83ded30 small optimization for sizes of array constructors 2003-02-18 13:02:56 -03:00
Roberto Ierusalimschy
07948c3181 restore _REQUIREDNAME after requiring a file 2003-02-18 13:02:13 -03:00
Roberto Ierusalimschy
dce9a49a08 final version 2003-02-18 13:01:57 -03:00
Roberto Ierusalimschy
15db58a2f5 create arg table with correct size 2003-02-13 14:08:47 -02:00
Roberto Ierusalimschy
d6826dbc80 simpler way to count uses 2003-02-13 14:08:32 -02:00
Roberto Ierusalimschy
e75a6ae9ee `defaultmeta' is always empty, but registry needs some space for
names and numbers (references)
2003-02-13 14:07:57 -02:00
Roberto Ierusalimschy
2866fb2dd0 reset _REQUIREDNAME after loading module 2003-02-13 14:07:37 -02:00
Roberto Ierusalimschy
4b6f436d67 unpack' uses getn' to get table size 2003-02-12 07:11:01 -02:00
Roberto Ierusalimschy
8f105d6b59 string.byte returns nil if index is out-of-range 2003-02-12 07:10:41 -02:00
Roberto Ierusalimschy
2fef8c772b auxiliary function to check userdata with types 2003-02-11 13:32:31 -02:00
Roberto Ierusalimschy
7285fa393b use C names for C types 2003-02-11 13:31:50 -02:00
Roberto Ierusalimschy
5085f09ce5 small optimizations 2003-02-11 13:24:52 -02:00
Roberto Ierusalimschy
d674626392 compatibility with '%' syntax is optional 2003-02-11 08:49:53 -02:00
Roberto Ierusalimschy
7a40cdbda0 different variables for number of upvalues and size of upvalue array
(makes code clearer)
2003-02-11 08:46:24 -02:00
Roberto Ierusalimschy
3cdeacbbfb reference system also uses getn/setn (plus small corrections) 2003-02-11 07:44:38 -02:00
Roberto Ierusalimschy
6f207b15fb resist errors in finalizers during lua_close 2003-02-10 15:32:50 -02:00
Roberto Ierusalimschy
3184314bf3 warning 2003-02-10 15:31:13 -02:00
Roberto Ierusalimschy
7964f7cbbd more complete information for coroutine errors 2003-02-10 08:21:31 -02:00
Roberto Ierusalimschy
383a6e88f9 argv[0] may be NULL 2003-01-29 11:23:45 -02:00
Roberto Ierusalimschy
871166d7db test for panic function 2003-01-29 08:27:53 -02:00
Roberto Ierusalimschy
592cf2334e "panic" cannot happen in lua.c, with lua_cpcall +
argv[0] may be empty
2003-01-29 08:27:07 -02:00
Roberto Ierusalimschy
0175f8d5d1 dump/undump of upvalue names 2003-01-27 13:52:57 -02:00
Roberto Ierusalimschy
e79bf02f33 correct semantics for comparison metamethods (they are only valid
when both operands have the same metamethod).
2003-01-27 13:12:52 -02:00
Roberto Ierusalimschy
41ed3c4771 getn/setn in C moved to lauxlib 2003-01-27 11:46:16 -02:00
Roberto Ierusalimschy
635b7c707d details 2003-01-27 11:00:43 -02:00
Roberto Ierusalimschy
83f0d6ef1a DEPRECATED (new manual uses an independent format instead of LaTeX) 2003-01-24 14:38:18 -02:00
Roberto Ierusalimschy
3088ebd95b last changes before leaving Latex 2003-01-24 07:14:54 -02:00
Roberto Ierusalimschy
797d964df9 detail 2003-01-23 09:34:18 -02:00
Roberto Ierusalimschy
e44e579dc1 bug: luaD_protectedparser must protect its garbage collection too 2003-01-23 09:31:38 -02:00
Roberto Ierusalimschy
a153cafd8d starting translation to new format (@comand{...}). 2003-01-22 14:29:38 -02:00
Roberto Ierusalimschy
3b5158f2a1 corrections from Asko Kauppi 2003-01-21 15:45:11 -02:00
Roberto Ierusalimschy
60a8b94fd0 corrections/suggestions by Ed Ferguson 2003-01-20 09:03:05 -02:00
Roberto Ierusalimschy
c499442e5f compatibility macros must be available by default 2003-01-17 13:28:09 -02:00
Roberto Ierusalimschy
9a5bab82ff use the more modern _POSIX_C_SOURCE instead of older _POSIX_SOURCE 2003-01-17 13:27:28 -02:00
Roberto Ierusalimschy
32fd039bb5 `openlib' functions return new module 2002-12-20 08:26:33 -02:00
Roberto Ierusalimschy
75f73172c4 bug: `resume' was checking the wrong value for stack overflow 2002-12-20 07:55:56 -02:00
Roberto Ierusalimschy
754c630754 details 2002-12-19 11:21:08 -02:00
Roberto Ierusalimschy
dd8edecae1 new functions to manipulate upvales (get/setupvalue) 2002-12-19 09:11:55 -02:00
Roberto Ierusalimschy
28021c5c66 better explanation (+ example) for coroutines 2002-12-11 11:43:15 -02:00
Roberto Ierusalimschy
73517e86b0 OP_TFORLOOP uses extra stack space 2002-12-11 10:34:22 -02:00
Roberto Ierusalimschy
9e8face8d8 must move call results in the last iteration, too 2002-12-11 10:34:22 -02:00
Roberto Ierusalimschy
64864f094b new options for debugging Lua (HARDSTACKTESTS & EXTERNMEMCHECK) 2002-12-06 15:20:45 -02:00
Roberto Ierusalimschy
9bd3fc1039 TFORLOOP makes a call that affects all values above it on the stack 2002-12-06 15:15:35 -02:00
Roberto Ierusalimschy
cc4a22ebe2 bug: scope of generic for variables is not sound 2002-12-06 15:09:00 -02:00
Roberto Ierusalimschy
acf62ddfbe "load*" creates chunk with same global table than caller 2002-12-06 15:05:15 -02:00
Roberto Ierusalimschy
04f95ce879 hook counts are integers now 2002-12-05 15:50:10 -02:00
Roberto Ierusalimschy
27c6b4d422 each .c file defines its own name 2002-12-04 15:38:31 -02:00
Roberto Ierusalimschy
0bb8eb5151 new function `lua_cpcall' 2002-12-04 15:29:32 -02:00
Roberto Ierusalimschy
38da8c0d7d new facilities to test memory overflow in main.c 2002-12-04 15:29:05 -02:00
Roberto Ierusalimschy
76de732745 avoid non-raw accesses to globals when variable may not exist 2002-12-04 13:38:25 -02:00
Roberto Ierusalimschy
90d7892007 new function `io.type' 2002-12-04 13:27:17 -02:00
Roberto Ierusalimschy
041cb96992 small bug: `write' must return three values in case of errors 2002-12-04 13:17:36 -02:00
Roberto Ierusalimschy
c75c3cfd19 avoid names `str...' (may conflict with string.h) 2002-12-02 10:06:10 -02:00
Roberto Ierusalimschy
24471525d7 details 2002-12-02 10:06:10 -02:00
Roberto Ierusalimschy
1f55dbc699 details 2002-11-26 10:53:29 -02:00
Roberto Ierusalimschy
c194a46bc5 detail 2002-11-26 06:59:48 -02:00
Roberto Ierusalimschy
8954bdc706 new `coroutine.status' function 2002-11-26 06:45:36 -02:00
Roberto Ierusalimschy
5a228bb1d8 new function `lua_version' 2002-11-25 15:50:14 -02:00
Roberto Ierusalimschy
5f698f8b6f simpler interface to hooks + use of `int' to count hooks 2002-11-25 15:47:13 -02:00
Roberto Ierusalimschy
9b1c586b2f renaming stringdump' -> string.dump' 2002-11-25 15:33:33 -02:00
Roberto Ierusalimschy
d9340154ac `__tostring' for files + small bug (could do invalid read inside
a userdata when it was not a file)
2002-11-25 13:05:39 -02:00
Roberto Ierusalimschy
e47baca75a warnings from Visual C++ 2002-11-25 10:38:47 -02:00
Roberto Ierusalimschy
b8a680c114 resets hook count even in case of errors 2002-11-25 09:20:29 -02:00
Roberto Ierusalimschy
709b27b456 ULONG_MAX>>10 may not fit into an int 2002-11-25 09:16:48 -02:00
Roberto Ierusalimschy
dbc5451bea comments 2002-11-22 16:01:46 -02:00
Roberto Ierusalimschy
2d2d45976c separated control over C recursion level 2002-11-22 15:16:52 -02:00
Roberto Ierusalimschy
0050d983fc make more clear "primitive" recursive definitions 2002-11-22 14:42:53 -02:00
Roberto Ierusalimschy
04b143ddf9 avoid C stack overflow during parsing 2002-11-22 14:35:20 -02:00
Roberto Ierusalimschy
007f229568 detail 2002-11-22 11:59:04 -02:00
Roberto Ierusalimschy
84488c5670 small bug: previous call may change `base' 2002-11-21 15:19:42 -02:00
Roberto Ierusalimschy
5142e630bf new macro `condhardstacktests' to control hard stack tests 2002-11-21 15:19:11 -02:00
Roberto Ierusalimschy
010bbd9d9c simpler definition for incr_top 2002-11-21 14:46:16 -02:00
Roberto Ierusalimschy
be00cd2a6b easier way to keep `base' correct 2002-11-21 13:46:44 -02:00
Roberto Ierusalimschy
2e4e888de0 Lua functions must have a frame or a saved pc. 2002-11-21 13:46:20 -02:00
Roberto Ierusalimschy
ddc144e4d2 keep L->ci->base in L->base for faster access 2002-11-21 13:16:04 -02:00
Roberto Ierusalimschy
b48c6e7680 no problem keeping some dead meat while doing collection 2002-11-21 12:18:01 -02:00
Roberto Ierusalimschy
aff97fffc4 C functions cannot increase its top without filling the stack 2002-11-21 12:17:15 -02:00
Roberto Ierusalimschy
1648674653 must check GC every time it can create new objects 2002-11-21 12:16:52 -02:00
Roberto Ierusalimschy
d404f0c276 global_State must be deallocated (and so allocated) with NULL also
(otherwise it trys to decrement inside itself after its own free)
2002-11-21 12:14:42 -02:00
Roberto Ierusalimschy
48e42261ac details 2002-11-19 15:42:32 -02:00
Roberto Ierusalimschy
be762f38bd better organization of "malloc responsabilities" 2002-11-19 12:12:13 -02:00
Roberto Ierusalimschy
c8a79057f7 option -l does a require', instead of dofile' 2002-11-19 11:49:43 -02:00
Roberto Ierusalimschy
642af82e81 small bugs (state could keep its CI_HASFRAME attribute after returning) 2002-11-19 06:50:56 -02:00
Roberto Ierusalimschy
636c629e56 new assertions 2002-11-18 16:45:38 -02:00
Roberto Ierusalimschy
96ba5d0bc2 include file name in error messages 2002-11-18 14:53:19 -02:00
Roberto Ierusalimschy
f0185f7628 support for tests of yield inside hooks + better support for tests
with valgrind and other memory checkers
2002-11-18 13:24:27 -02:00
Roberto Ierusalimschy
9bab2cf55d support for yield inside hooks 2002-11-18 13:24:11 -02:00
Roberto Ierusalimschy
c4ae00a3d1 details 2002-11-18 13:23:43 -02:00
Roberto Ierusalimschy
f4d3bc52f4 towards 5.0 beta 2002-11-18 12:39:34 -02:00
Roberto Ierusalimschy
18765d900e messages 2002-11-18 09:20:01 -02:00
Roberto Ierusalimschy
43013b39cc new representation for hooks (to allow asynchronous calls to sethook) 2002-11-18 09:01:55 -02:00
Roberto Ierusalimschy
94912d99fc details 2002-11-14 14:59:16 -02:00
Roberto Ierusalimschy
b40c9f7a3c better code to signal write barriers 2002-11-14 14:16:21 -02:00
Roberto Ierusalimschy
41fd639cab documentation for write barriers 2002-11-14 14:15:53 -02:00
Roberto Ierusalimschy
a845a46cc8 C function may leave garbage on the stack (besides return values) 2002-11-14 13:42:05 -02:00
Roberto Ierusalimschy
097edd3884 better names for auxiliar functions 2002-11-14 13:41:38 -02:00
Roberto Ierusalimschy
5c5d9b2703 back to `__mode' metafield to specify weakness 2002-11-14 10:01:35 -02:00
Roberto Ierusalimschy
43d1a6af12 detail 2002-11-14 09:51:23 -02:00
Roberto Ierusalimschy
3010eb0536 all objects with several children (tables, closures, stacks, prototypes)
go to `gray' queue
2002-11-13 09:49:19 -02:00
Roberto Ierusalimschy
2f91f95d94 better control over GCObjects 2002-11-13 09:32:26 -02:00
Roberto Ierusalimschy
42dd080a2e details 2002-11-12 12:34:18 -02:00
Roberto Ierusalimschy
9957f7d598 better way to open libraries 2002-11-11 11:28:06 -02:00
Roberto Ierusalimschy
ac27b7a842 avoid traversing extra elements when cleaning weak tables 2002-11-11 09:52:43 -02:00
Roberto Ierusalimschy
81e142fc14 detail (`key' is always on stack) 2002-11-07 14:03:33 -02:00
Roberto Ierusalimschy
63633c5b5f better name for `lua_movethread' 2002-11-07 13:39:23 -02:00
Roberto Ierusalimschy
dff9be4224 new macros to distinguish different types of object moves (for future GC
evolution).
2002-11-07 13:37:10 -02:00
Roberto Ierusalimschy
118347d8c3 new API for coroutines 2002-11-06 17:08:00 -02:00
Roberto Ierusalimschy
6820da5096 detail 2002-11-04 10:31:44 -02:00
Roberto Ierusalimschy
c3eb4675b9 new module, ldump.c 2002-10-25 18:38:17 -03:00
Roberto Ierusalimschy
7e0f880bc5 C++ demands cast from void to specific types 2002-10-25 18:36:54 -03:00
Roberto Ierusalimschy
118e9cd843 new facility for dumping chunks 2002-10-25 18:31:28 -03:00
Roberto Ierusalimschy
de00d0d0ad module for dumping chunks 2002-10-25 18:31:28 -03:00
Roberto Ierusalimschy
1713b64065 Writer type must be public (so, in lua.h) 2002-10-25 18:30:49 -03:00
Roberto Ierusalimschy
671dc6eec2 new version (from lhf) 2002-10-25 18:30:41 -03:00
Roberto Ierusalimschy
e356a43dc0 C needs "union" (unlike C++) 2002-10-25 18:30:00 -03:00
Roberto Ierusalimschy
f36038e42a assertion must be always valid (not only in debug mode) 2002-10-25 18:29:20 -03:00
Roberto Ierusalimschy
96e15b8501 threads now are real Lua objects, subject to garbage collection 2002-10-25 17:05:28 -03:00
Roberto Ierusalimschy
0fd91b1b08 optional limits for table.concat 2002-10-23 16:08:23 -03:00
Roberto Ierusalimschy
a2b353e044 details 2002-10-23 16:08:13 -03:00
Roberto Ierusalimschy
92a2ef9dca field `__globals' protect global tables 2002-10-22 16:41:08 -03:00
Roberto Ierusalimschy
4fb9110a6e tests for compatibility functions lua_dostring/lua_dofile 2002-10-22 15:07:55 -03:00
Roberto Ierusalimschy
11886dc7b0 print error on stderr when _ALERT is not defined 2002-10-22 15:07:55 -03:00
Roberto Ierusalimschy
81bc5711a8 only one instance of registry and default metatable per global state 2002-10-22 14:58:14 -03:00
Roberto Ierusalimschy
6a77a6b73f avoid too much precision when printing numbers 2002-10-22 14:21:25 -03:00
Roberto Ierusalimschy
84e0b1bc97 small changes in type configuration facilities 2002-10-22 14:18:28 -03:00
Roberto Ierusalimschy
6823a2f57f better tokens for error messages 2002-10-22 13:45:52 -03:00
Roberto Ierusalimschy
313b2fe902 detail 2002-10-21 17:43:38 -03:00
Roberto Ierusalimschy
425e5813b0 free prototype in (more or less) the same order it is created by
`undump'
2002-10-21 17:41:46 -03:00
Roberto Ierusalimschy
6505503b49 do not pretend that file is closed when close fails 2002-10-21 17:41:24 -03:00
Roberto Ierusalimschy
ec748fcb0a correct handling of opened files in presence of memory allocation
errors
2002-10-16 17:41:35 -03:00
Roberto Ierusalimschy
c196348717 in case of memory allocation errors, sizecode and sizelineinfo can
be different
2002-10-16 17:40:58 -03:00
Roberto Ierusalimschy
669129a6d8 io.lines() iterate over the standard input file 2002-10-11 17:40:32 -03:00
Roberto Ierusalimschy
46b063ef59 `undump' also uses private buffer 2002-10-09 10:42:01 -03:00
Roberto Ierusalimschy
e1d5153a33 details 2002-10-09 10:00:08 -03:00
Roberto Ierusalimschy
b3d0682fb9 use of different buffers for scanner and concatenation 2002-10-08 15:46:08 -03:00
Roberto Ierusalimschy
02afc892d5 new ANSI C does not assure that realloc(p,0) == free(p) 2002-10-08 15:45:07 -03:00
Roberto Ierusalimschy
fa2f1ec7ba to avoid `strerror', define itself to something else;
nil has a special, fixed reference
2002-10-04 11:31:40 -03:00
Roberto Ierusalimschy
829befcc41 small optimization for object comparison 2002-10-04 11:31:03 -03:00
Roberto Ierusalimschy
d477e4ffd6 detail 2002-10-04 11:30:31 -03:00
Roberto Ierusalimschy
ce09af1e25 easier to define api_check' using assert' 2002-09-20 14:01:24 -03:00
Roberto Ierusalimschy
98d0b79613 EXIT_SUCCESS may be different from 0 2002-09-20 10:32:56 -03:00
Roberto Ierusalimschy
e8f35fc4ff unification of __index & __gettable (and __newindex & __settable) 2002-09-19 17:12:47 -03:00
Roberto Ierusalimschy
6fb0fd5063 avoid `reclearing' weak tables 2002-09-19 16:54:22 -03:00
Roberto Ierusalimschy
565e6d74e1 state's buffer is used only for chars 2002-09-19 10:03:53 -03:00
Roberto Ierusalimschy
f6bc7884be new generators for reading a file line by line 2002-09-17 17:35:54 -03:00
Roberto Ierusalimschy
32a5d96dfc `setmetatable' cannot change protected objects 2002-09-16 16:49:45 -03:00
Roberto Ierusalimschy
8dae071f42 details 2002-09-16 16:18:01 -03:00
Roberto Ierusalimschy
afe1305b1a avoid luaS_resize (which may need extra memory) during `main' activities 2002-09-05 16:57:40 -03:00
Roberto Ierusalimschy
728fa167d2 cannot raise memory error when realloc to smaller block 2002-09-05 16:57:08 -03:00
Roberto Ierusalimschy
1bdde38bd2 no more newlines at the end of error messages 2002-09-05 16:45:42 -03:00
Roberto Ierusalimschy
b2bc3b44b6 no more reserved word "global" 2002-09-03 08:57:38 -03:00
Roberto Ierusalimschy
7c0ccdfd61 avoid the use of "enum" in the API, as they do not have a fixed representation 2002-09-02 17:00:41 -03:00
Roberto Ierusalimschy
4964e7c8a0 details 2002-09-02 16:54:49 -03:00
Roberto Ierusalimschy
2c670baf24 avoid the use of "obvious" names in header files to avoid conflicts 2002-08-30 17:00:59 -03:00
Roberto Ierusalimschy
fdafd4f4a8 new structure for collectable objects, sharing a common header 2002-08-30 16:09:21 -03:00
Roberto Ierusalimschy
beeff4ccaf GC metamethod stored in a weak metatable being collected together with
userdata may not be cleared properly
2002-08-30 16:08:30 -03:00
Roberto Ierusalimschy
12c4e48506 `frontier' patterns 2002-08-23 16:45:24 -03:00
Roberto Ierusalimschy
c78aaa9a70 better line number for function definitions 2002-08-22 16:51:08 -03:00
Roberto Ierusalimschy
4d7a554921 style for switch statements 2002-08-21 16:39:31 -03:00
Roberto Ierusalimschy
fbc23d0245 details 2002-08-21 15:56:33 -03:00
Roberto Ierusalimschy
81a8845e4f detail 2002-08-21 11:57:48 -03:00
Roberto Ierusalimschy
6c283b2f4f new simetric format for ABC instructions, to avoid exchanging operands
for `commutative' operators
2002-08-20 17:03:05 -03:00
Roberto Ierusalimschy
576bded513 details 2002-08-16 17:02:13 -03:00
Roberto Ierusalimschy
ecc7769de2 names... 2002-08-16 17:00:28 -03:00
Roberto Ierusalimschy
da19c436cc cleaning the stage for generational collection 2002-08-16 11:45:55 -03:00
Roberto Ierusalimschy
0039feb9da warning from Visual C 2002-08-16 11:45:18 -03:00
62 changed files with 15122 additions and 11874 deletions

288
bugs
View File

@@ -1,288 +0,0 @@
** lua.stx / llex.c
Tue Dec 2 10:45:48 EDT 1997
>> BUG: "lastline" was not reset on function entry, so debug information
>> started only in the 2nd line of a function.
=================================================================
--- Version 3.1 alpha
** lua.c
Thu Jan 15 14:34:58 EDT 1998
>> must include "stdlib.h" (for "exit()").
** lbuiltin.c / lobject.h
Thu Jan 15 14:34:58 EDT 1998
>> MAX_WORD may be bigger than MAX_INT
(by lhf)
** llex.c
Mon Jan 19 18:17:18 EDT 1998
>> wrong line number (+1) in error report when file starts with "#..."
** lstrlib.c
Tue Jan 27 15:27:49 EDT 1998
>> formats like "%020d" were considered too big (3 digits); moreover,
>> some sistems limit printf to at most 500 chars, so we can limit sizes
>> to 2 digits (99).
** lapi.c
Tue Jan 27 17:12:36 EDT 1998
>> "lua_getstring" may create a new string, so should check GC
** lstring.c / ltable.c
Wed Jan 28 14:48:12 EDT 1998
>> tables can become full of "empty" slots, and keep growing without limits.
** lstrlib.c
Mon Mar 9 15:26:09 EST 1998
>> gsub('a', '(b?)%1*' ...) loops (because the capture is empty).
** lstrlib.c
Mon May 18 19:20:00 EST 1998
>> arguments for "format" 'x', 'X', 'o' and 'u' must be unsigned int.
=================================================================
--- Version 3.1
** liolib.c / lauxlib.c
Mon Sep 7 15:57:02 EST 1998
>> function "luaL_argerror" prints wrong argument number (from a user's point
of view) when functions have upvalues.
** lstrlib.c
Tue Nov 10 17:29:36 EDT 1998
>> gsub/strfind do not check whether captures are properly finished.
(by roberto/tomas)
** lbuiltin.c
Fri Dec 18 11:22:55 EDT 1998
>> "tonumber" goes crazy with negative numbers in other bases (not 10),
because "strtol" returns long, not unsigned long.
(by Visual C++)
** lstrlib.c
Mon Jan 4 10:41:40 EDT 1999
>> "format" does not check size of format item (such as "%00000...00000d").
** lapi.c
Wed Feb 3 14:40:21 EDT 1999
>> getlocal cannot return the local itself, since lua_isstring and
lua_isnumber can modify it.
** lstrlib.c
Thu Feb 4 17:08:50 EDT 1999
>> format "%s" may break limit of "sprintf" on some machines.
(by Marcelo Sales)
** lzio.c
Thu Mar 4 11:49:37 EST 1999
>> file stream cannot call fread after EOF.
(by lhf)
=================================================================
--- Version 3.2 (beta)
** lstrlib.c
Fri Apr 30 11:10:20 EST 1999
>> '$' at end of pattern was matching regular '$', too.
(by anna; since 2.5)
** lbuiltin.c
Fri May 21 17:15:11 EST 1999
>> foreach, foreachi, foreachvar points to function in stack when stack
can be reallocated.
(by tomas; since 3.2 beta)
** lparser.c
Wed Jun 16 10:32:46 EST 1999
>> cannot assign to unlimited variables, because it causes overflow in
the number of returns of a function.
(since 3.1)
=================================================================
--- Version 3.2
** lmathlib.c
Wed Aug 18 11:28:38 EST 1999
>> random(0) and random(x,0) are wrong (0 is read as no argument!).
(by Dave Bollinger; since 3.1)
** lparser.c
Thu Sep 2 10:07:20 EST 1999
>> in the (old) expression << ls->fs->f->consts[checkname(ls)] >>, checkname
could realloc f->consts.
(by Supratik Champati; since 3.2 beta)
** lobject.c / lbuiltin.c
Wed Sep 8 17:41:54 EST 1999
>> tonumber'e1' and tonumber(' ', x), for x!=10, gave 0 instead of nil.
(since 3.1)
** lstrlib.c
Thu Nov 11 14:36:30 EDT 1999
>> `strfind' does not handle \0 in plain search.
(by Jon Kleiser; since 3.1)
** lparser.c
Wed Dec 29 16:05:43 EDT 1999
>> return gives wrong line in debug information
(by lhf; since 3.2 [at least])
** ldo.c
Thu Dec 30 16:39:33 EDT 1999
>> cannot reopen stdin (for binary mode)
(by lhf & roberto; since 3.1)
** lapi.c
Thu Mar 2 09:41:53 EST 2000
>> lua_settable should check stack space (it could call a T.M.)
(by lhf & celes; since 3.2; it was already fixed by fixed stack)
** lparser.c
Mon Apr 3 09:59:06 EST 2000
>> '%' should be in expfollow
(by Edgar Toernig; since 3.1; it was already fixed)
** lbuiltin.c
Mon Apr 3 10:05:05 EST 2000
>> tostring() without arguments gives seg. fault.
(by Edgar Toernig; since 3.0)
=================================================================
--- Version 4.0 alpha
Tested with full test suites (as locked in Mon Apr 24 14:23:11 EST 2000)
in the following platforms:
* Linux - gcc, g++
* AIX - gcc
* Solaris - gcc, cc
* IRIX - cc, cc-purify
* Windows - Visual C++ (.c e .cpp, warning level=4)
** lstrlib.c
Tue May 2 15:27:58 EST 2000
>> `strfind' gets wrong subject length when there is an offset
(by Jon Kleiser; since 4.0a)
** lparser.c
Fri May 12 15:11:12 EST 2000
>> first element in a list constructor is not adjusted to one value
>> (e.g. «a = {gsub('a','a','')}»)
(by Tomas; since 4.0a)
** lparser.c
Wed May 24 14:50:16 EST 2000
>> record-constructor starting with an upvalue name gets an error
>> (e.g. «local a; function f() x = {a=1} end»)
(by Edgar Toernig; since 3.1)
** lparser.c
Tue Aug 29 15:56:05 EST 2000
>> error message for `for' uses `while'
(since 4.0a; already corrected)
** lgc.c
Tue Aug 29 15:57:41 EST 2000
>> gc tag method for nil could call line hook
(by ry; since ?)
=================================================================
--- Version 4.0 Beta
** liolib.c
Fri Sep 22 15:12:37 EST 2000
>> `read("*w")' should return nil at EOF
(by roberto; since 4.0b)
** lvm.c
Mon Sep 25 11:47:48 EST 2000
>> lua_gettable does not get key from stack top
(by Philip Yi; since 4.0b)
** lgc.c
Mon Sep 25 11:50:48 EST 2000
>> GC may crash when checking locked C closures
(by Philip Yi; since 4.0b)
** lapi.c
Wed Sep 27 09:50:19 EST 2000
>> lua_tag should return LUA_NOTAG for non-valid indices
(by Paul Hankin; since 4.0b)
** llex.h / llex.c / lparser.c
Wed Sep 27 13:39:45 EST 2000
>> parser overwrites semantic information when looking ahead
>> (e.g. «a = {print'foo'}»)
(by Edgar Toernig; since 4.0b, deriving from previous bug)
** liolib.c
Thu Oct 26 10:50:46 EDT 2000
>> in function `read_file', realloc() doesn't free the buffer if it can't
>> allocate new memory
(by Mauro Vezzosi; since 4.0b)
=================================================================
--- Version 4.0
** lparser.c
Wed Nov 29 09:51:44 EDT 2000
>> parser does not accept a `;' after a `return'
(by lhf; since 4.0b)
** liolib.c
Fri Dec 22 15:30:42 EDT 2000
>> when `read' fails it must return nil (and not no value)
(by cassino; since at least 3.1)
** lstring.c/lapi.c
Thu Feb 1 11:55:45 EDT 2001
>> lua_pushuserdata(L, NULL) is buggy
(by Edgar Toernig; since 4.0)
** ldo.c
Fri Feb 2 14:06:40 EDT 2001
>> «while 1 dostring[[print('hello\n')]] end» never reclaims memory
(by Andrew Paton; since 4.0b)
** lbaselib.c
Tue Feb 6 11:57:13 EDT 2001
>> ESC (which starts precompiled code) in C is \33, not \27
(by Edgar Toernig and lhf; since 4.0b)
** lparser.c
Tue Jul 10 16:59:18 EST 2001
>> error message for `%a' gave wrong line number
(by Leonardo Constantino; since 4.0)
** lbaselib.c
Fri Dec 21 15:21:05 EDT 2001
>> seg. fault when rawget/rawset get extra arguments
(by Eric Mauger; since 4.0b)
** lvm.c
Wed Jun 19 13:28:20 EST 2002
>> line hook gets wrong `ar'
(by Daniel C. Sinclair; since 4.0.b)
** ldo.c
Wed Jun 19 13:31:49 EST 2002
>> `protectedparser' may run GC, and then collect `filename'
>> (in function `parse_file')
(by Alex Bilyk; since 4.0)

1145
lapi.c

File diff suppressed because it is too large Load Diff

14
lapi.h
View File

@@ -1,5 +1,5 @@
/*
** $Id: lapi.h,v 1.20 2000/08/31 14:08:27 roberto Exp roberto $
** $Id: lapi.h,v 2.7 2009/11/27 15:37:59 roberto Exp $
** Auxiliary functions from Lua API
** See Copyright Notice in lua.h
*/
@@ -8,9 +8,17 @@
#define lapi_h
#include "lobject.h"
#include "llimits.h"
#include "lstate.h"
#define api_incr_top(L) {L->top++; api_check(L, L->top <= L->ci->top, \
"stack overflow");}
#define adjustresults(L,nres) \
{ if ((nres) == LUA_MULTRET && L->ci->top < L->top) L->ci->top = L->top; }
#define api_checknelems(L,n) api_check(L, (n) < (L->top - L->ci->func), \
"not enough elements in the stack")
void luaA_pushobject (lua_State *L, const TObject *o);
#endif

927
lauxlib.c

File diff suppressed because it is too large Load Diff

212
lauxlib.h
View File

@@ -1,5 +1,5 @@
/*
** $Id: lauxlib.h,v 1.51 2002/07/01 19:23:58 roberto Exp roberto $
** $Id: lauxlib.h,v 1.120 2011/11/29 15:55:08 roberto Exp $
** Auxiliary functions for building Lua libraries
** See Copyright Notice in lua.h
*/
@@ -15,49 +15,88 @@
#include "lua.h"
#ifndef LUALIB_API
#define LUALIB_API extern
#endif
/* extra error code for `luaL_load' */
#define LUA_ERRFILE (LUA_ERRERR+1)
typedef struct luaL_reg {
typedef struct luaL_Reg {
const char *name;
lua_CFunction func;
} luaL_reg;
} luaL_Reg;
LUALIB_API void luaL_openlib (lua_State *L, const luaL_reg *l, int nup);
LUALIB_API void luaL_opennamedlib (lua_State *L, const char *libname,
const luaL_reg *l, int nup);
LUALIB_API int luaL_callmeta (lua_State *L, int obj, const char *event);
LUALIB_API int luaL_typerror (lua_State *L, int narg, const char *tname);
LUALIB_API int luaL_argerror (lua_State *L, int numarg, const char *extramsg);
LUALIB_API const char *luaL_check_lstr (lua_State *L, int numArg,
size_t *len);
LUALIB_API const char *luaL_opt_lstr (lua_State *L, int numArg,
const char *def, size_t *len);
LUALIB_API lua_Number luaL_check_number (lua_State *L, int numArg);
LUALIB_API lua_Number luaL_opt_number (lua_State *L, int nArg, lua_Number def);
LUALIB_API void (luaL_checkversion_) (lua_State *L, lua_Number ver);
#define luaL_checkversion(L) luaL_checkversion_(L, LUA_VERSION_NUM)
LUALIB_API void luaL_check_stack (lua_State *L, int space, const char *msg);
LUALIB_API void luaL_check_type (lua_State *L, int narg, int t);
LUALIB_API void luaL_check_any (lua_State *L, int narg);
LUALIB_API int (luaL_getmetafield) (lua_State *L, int obj, const char *e);
LUALIB_API int (luaL_callmeta) (lua_State *L, int obj, const char *e);
LUALIB_API const char *(luaL_tolstring) (lua_State *L, int idx, size_t *len);
LUALIB_API int (luaL_argerror) (lua_State *L, int numarg, const char *extramsg);
LUALIB_API const char *(luaL_checklstring) (lua_State *L, int numArg,
size_t *l);
LUALIB_API const char *(luaL_optlstring) (lua_State *L, int numArg,
const char *def, size_t *l);
LUALIB_API lua_Number (luaL_checknumber) (lua_State *L, int numArg);
LUALIB_API lua_Number (luaL_optnumber) (lua_State *L, int nArg, lua_Number def);
LUALIB_API void luaL_where (lua_State *L, int level);
LUALIB_API int luaL_error (lua_State *L, const char *fmt, ...);
LUALIB_API lua_Integer (luaL_checkinteger) (lua_State *L, int numArg);
LUALIB_API lua_Integer (luaL_optinteger) (lua_State *L, int nArg,
lua_Integer def);
LUALIB_API lua_Unsigned (luaL_checkunsigned) (lua_State *L, int numArg);
LUALIB_API lua_Unsigned (luaL_optunsigned) (lua_State *L, int numArg,
lua_Unsigned def);
LUALIB_API int luaL_findstring (const char *name,
const char *const list[]);
LUALIB_API void (luaL_checkstack) (lua_State *L, int sz, const char *msg);
LUALIB_API void (luaL_checktype) (lua_State *L, int narg, int t);
LUALIB_API void (luaL_checkany) (lua_State *L, int narg);
LUALIB_API int luaL_ref (lua_State *L, int t);
LUALIB_API void luaL_unref (lua_State *L, int t, int ref);
LUALIB_API int (luaL_newmetatable) (lua_State *L, const char *tname);
LUALIB_API void (luaL_setmetatable) (lua_State *L, const char *tname);
LUALIB_API void *(luaL_testudata) (lua_State *L, int ud, const char *tname);
LUALIB_API void *(luaL_checkudata) (lua_State *L, int ud, const char *tname);
LUALIB_API int luaL_loadfile (lua_State *L, const char *filename);
LUALIB_API int luaL_loadbuffer (lua_State *L, const char *buff, size_t size,
const char *name);
LUALIB_API void (luaL_where) (lua_State *L, int lvl);
LUALIB_API int (luaL_error) (lua_State *L, const char *fmt, ...);
LUALIB_API int (luaL_checkoption) (lua_State *L, int narg, const char *def,
const char *const lst[]);
LUALIB_API int (luaL_fileresult) (lua_State *L, int stat, const char *fname);
LUALIB_API int (luaL_execresult) (lua_State *L, int stat);
/* pre-defined references */
#define LUA_NOREF (-2)
#define LUA_REFNIL (-1)
LUALIB_API int (luaL_ref) (lua_State *L, int t);
LUALIB_API void (luaL_unref) (lua_State *L, int t, int ref);
LUALIB_API int (luaL_loadfilex) (lua_State *L, const char *filename,
const char *mode);
#define luaL_loadfile(L,f) luaL_loadfilex(L,f,NULL)
LUALIB_API int (luaL_loadbufferx) (lua_State *L, const char *buff, size_t sz,
const char *name, const char *mode);
LUALIB_API int (luaL_loadstring) (lua_State *L, const char *s);
LUALIB_API lua_State *(luaL_newstate) (void);
LUALIB_API int (luaL_len) (lua_State *L, int idx);
LUALIB_API const char *(luaL_gsub) (lua_State *L, const char *s, const char *p,
const char *r);
LUALIB_API void (luaL_setfuncs) (lua_State *L, const luaL_Reg *l, int nup);
LUALIB_API int (luaL_getsubtable) (lua_State *L, int idx, const char *fname);
LUALIB_API void (luaL_traceback) (lua_State *L, lua_State *L1,
const char *msg, int level);
LUALIB_API void (luaL_requiref) (lua_State *L, const char *modname,
lua_CFunction openf, int glb);
/*
** ===============================================================
@@ -65,14 +104,34 @@ LUALIB_API int luaL_loadbuffer (lua_State *L, const char *buff, size_t size,
** ===============================================================
*/
#define luaL_arg_check(L, cond,numarg,extramsg) if (!(cond)) \
luaL_argerror(L, numarg,extramsg)
#define luaL_check_string(L,n) (luaL_check_lstr(L, (n), NULL))
#define luaL_opt_string(L,n,d) (luaL_opt_lstr(L, (n), (d), NULL))
#define luaL_check_int(L,n) ((int)luaL_check_number(L, n))
#define luaL_check_long(L,n) ((long)luaL_check_number(L, n))
#define luaL_opt_int(L,n,d) ((int)luaL_opt_number(L, n,d))
#define luaL_opt_long(L,n,d) ((long)luaL_opt_number(L, n,d))
#define luaL_newlibtable(L,l) \
lua_createtable(L, 0, sizeof(l)/sizeof((l)[0]) - 1)
#define luaL_newlib(L,l) (luaL_newlibtable(L,l), luaL_setfuncs(L,l,0))
#define luaL_argcheck(L, cond,numarg,extramsg) \
((void)((cond) || luaL_argerror(L, (numarg), (extramsg))))
#define luaL_checkstring(L,n) (luaL_checklstring(L, (n), NULL))
#define luaL_optstring(L,n,d) (luaL_optlstring(L, (n), (d), NULL))
#define luaL_checkint(L,n) ((int)luaL_checkinteger(L, (n)))
#define luaL_optint(L,n,d) ((int)luaL_optinteger(L, (n), (d)))
#define luaL_checklong(L,n) ((long)luaL_checkinteger(L, (n)))
#define luaL_optlong(L,n,d) ((long)luaL_optinteger(L, (n), (d)))
#define luaL_typename(L,i) lua_typename(L, lua_type(L,(i)))
#define luaL_dofile(L, fn) \
(luaL_loadfile(L, fn) || lua_pcall(L, 0, LUA_MULTRET, 0))
#define luaL_dostring(L, s) \
(luaL_loadstring(L, s) || lua_pcall(L, 0, LUA_MULTRET, 0))
#define luaL_getmetatable(L,n) (lua_getfield(L, LUA_REGISTRYINDEX, (n)))
#define luaL_opt(L,f,n,d) (lua_isnoneornil(L,(n)) ? (d) : f(L,(n)))
#define luaL_loadbuffer(L,s,sz,n) luaL_loadbufferx(L,s,sz,n,NULL)
/*
@@ -81,48 +140,71 @@ LUALIB_API int luaL_loadbuffer (lua_State *L, const char *buff, size_t size,
** =======================================================
*/
#ifndef LUAL_BUFFERSIZE
#define LUAL_BUFFERSIZE BUFSIZ
#endif
typedef struct luaL_Buffer {
char *p; /* current position in buffer */
int level;
char *b; /* buffer address */
size_t size; /* buffer size */
size_t n; /* number of characters in buffer */
lua_State *L;
char buffer[LUAL_BUFFERSIZE];
char initb[LUAL_BUFFERSIZE]; /* initial buffer */
} luaL_Buffer;
#define luaL_putchar(B,c) \
((void)((B)->p < ((B)->buffer+LUAL_BUFFERSIZE) || luaL_prepbuffer(B)), \
(*(B)->p++ = (char)(c)))
#define luaL_addsize(B,n) ((B)->p += (n))
#define luaL_addchar(B,c) \
((void)((B)->n < (B)->size || luaL_prepbuffsize((B), 1)), \
((B)->b[(B)->n++] = (c)))
LUALIB_API void luaL_buffinit (lua_State *L, luaL_Buffer *B);
LUALIB_API char *luaL_prepbuffer (luaL_Buffer *B);
LUALIB_API void luaL_addlstring (luaL_Buffer *B, const char *s, size_t l);
LUALIB_API void luaL_addstring (luaL_Buffer *B, const char *s);
LUALIB_API void luaL_addvalue (luaL_Buffer *B);
LUALIB_API void luaL_pushresult (luaL_Buffer *B);
#define luaL_addsize(B,s) ((B)->n += (s))
LUALIB_API void (luaL_buffinit) (lua_State *L, luaL_Buffer *B);
LUALIB_API char *(luaL_prepbuffsize) (luaL_Buffer *B, size_t sz);
LUALIB_API void (luaL_addlstring) (luaL_Buffer *B, const char *s, size_t l);
LUALIB_API void (luaL_addstring) (luaL_Buffer *B, const char *s);
LUALIB_API void (luaL_addvalue) (luaL_Buffer *B);
LUALIB_API void (luaL_pushresult) (luaL_Buffer *B);
LUALIB_API void (luaL_pushresultsize) (luaL_Buffer *B, size_t sz);
LUALIB_API char *(luaL_buffinitsize) (lua_State *L, luaL_Buffer *B, size_t sz);
#define luaL_prepbuffer(B) luaL_prepbuffsize(B, LUAL_BUFFERSIZE)
/* }====================================================== */
/*
** Compatibility macros
** {======================================================
** File handles for IO library
** =======================================================
*/
#define luaL_checktype luaL_check_type
#define luaL_checkany luaL_check_any
/*
** A file handle is a userdata with metatable 'LUA_FILEHANDLE' and
** initial structure 'luaL_Stream' (it may contain other fields
** after that initial structure).
*/
LUALIB_API int lua_dofile (lua_State *L, const char *filename);
LUALIB_API int lua_dostring (lua_State *L, const char *str);
LUALIB_API int lua_dobuffer (lua_State *L, const char *buff, size_t size,
const char *name);
#define LUA_FILEHANDLE "FILE*"
typedef struct luaL_Stream {
FILE *f; /* stream (NULL for incompletely created streams) */
lua_CFunction closef; /* to close stream (NULL for closed streams) */
} luaL_Stream;
/* }====================================================== */
/* compatibility with old module system */
#if defined(LUA_COMPAT_MODULE)
LUALIB_API void (luaL_pushmodule) (lua_State *L, const char *modname,
int sizehint);
LUALIB_API void (luaL_openlib) (lua_State *L, const char *libname,
const luaL_Reg *l, int nup);
#define luaL_register(L,n,l) (luaL_openlib(L,(n),(l),0))
#endif
#endif

View File

@@ -1,5 +1,5 @@
/*
** $Id: lbaselib.c,v 1.96 2002/08/06 18:54:18 roberto Exp roberto $
** $Id: lbaselib.c,v 1.276 2013/02/21 13:44:53 roberto Exp $
** Basic library
** See Copyright Notice in lua.h
*/
@@ -11,203 +11,207 @@
#include <stdlib.h>
#include <string.h>
#define lbaselib_c
#define LUA_LIB
#include "lua.h"
#include "lauxlib.h"
#include "lualib.h"
/*
** If your system does not support `stdout', you can just remove this function.
** If you need, you can define your own `print' function, following this
** model but changing `fputs' to put the strings at a proper place
** (a console window or a log file, for instance).
*/
static int luaB_print (lua_State *L) {
int n = lua_gettop(L); /* number of arguments */
int i;
lua_getglobal(L, "tostring");
for (i=1; i<=n; i++) {
const char *s;
size_t l;
lua_pushvalue(L, -1); /* function to be called */
lua_pushvalue(L, i); /* value to print */
lua_call(L, 1, 1);
s = lua_tostring(L, -1); /* get result */
s = lua_tolstring(L, -1, &l); /* get result */
if (s == NULL)
return luaL_error(L, "`tostring' must return a string to `print'");
if (i>1) fputs("\t", stdout);
fputs(s, stdout);
return luaL_error(L,
LUA_QL("tostring") " must return a string to " LUA_QL("print"));
if (i>1) luai_writestring("\t", 1);
luai_writestring(s, l);
lua_pop(L, 1); /* pop result */
}
fputs("\n", stdout);
luai_writeline();
return 0;
}
#define SPACECHARS " \f\n\r\t\v"
static int luaB_tonumber (lua_State *L) {
int base = luaL_opt_int(L, 2, 10);
if (base == 10) { /* standard conversion */
luaL_check_any(L, 1);
if (lua_isnumber(L, 1)) {
lua_pushnumber(L, lua_tonumber(L, 1));
if (lua_isnoneornil(L, 2)) { /* standard conversion */
int isnum;
lua_Number n = lua_tonumberx(L, 1, &isnum);
if (isnum) {
lua_pushnumber(L, n);
return 1;
}
} /* else not a number; must be something */
luaL_checkany(L, 1);
}
else {
const char *s1 = luaL_check_string(L, 1);
char *s2;
unsigned long n;
luaL_arg_check(L, 2 <= base && base <= 36, 2, "base out of range");
n = strtoul(s1, &s2, base);
if (s1 != s2) { /* at least one valid digit? */
while (isspace((unsigned char)(*s2))) s2++; /* skip trailing spaces */
if (*s2 == '\0') { /* no invalid trailing characters? */
lua_pushnumber(L, n);
size_t l;
const char *s = luaL_checklstring(L, 1, &l);
const char *e = s + l; /* end point for 's' */
int base = luaL_checkint(L, 2);
int neg = 0;
luaL_argcheck(L, 2 <= base && base <= 36, 2, "base out of range");
s += strspn(s, SPACECHARS); /* skip initial spaces */
if (*s == '-') { s++; neg = 1; } /* handle signal */
else if (*s == '+') s++;
if (isalnum((unsigned char)*s)) {
lua_Number n = 0;
do {
int digit = (isdigit((unsigned char)*s)) ? *s - '0'
: toupper((unsigned char)*s) - 'A' + 10;
if (digit >= base) break; /* invalid numeral; force a fail */
n = n * (lua_Number)base + (lua_Number)digit;
s++;
} while (isalnum((unsigned char)*s));
s += strspn(s, SPACECHARS); /* skip trailing spaces */
if (s == e) { /* no invalid trailing characters? */
lua_pushnumber(L, (neg) ? -n : n);
return 1;
}
}
} /* else not a number */
} /* else not a number */
}
lua_pushnil(L); /* else not a number */
lua_pushnil(L); /* not a number */
return 1;
}
static int luaB_error (lua_State *L) {
int level = luaL_opt_int(L, 2, 1);
luaL_check_any(L, 1);
if (!lua_isstring(L, 1) || level == 0)
lua_pushvalue(L, 1); /* propagate error mesage without changes */
else { /* add extra information */
int level = luaL_optint(L, 2, 1);
lua_settop(L, 1);
if (lua_isstring(L, 1) && level > 0) { /* add extra information? */
luaL_where(L, level);
lua_pushvalue(L, 1);
lua_pushliteral(L, "\n");
lua_concat(L, 3);
lua_concat(L, 2);
}
return lua_error(L);
}
static int luaB_getmode (lua_State *L) {
luaL_check_type(L, 1, LUA_TTABLE);
lua_pushstring(L, lua_getmode(L, 1));
return 1;
}
static int luaB_setmode (lua_State *L) {
luaL_check_type(L, 1, LUA_TTABLE);
lua_setmode(L, 1, luaL_check_string(L, 2));
lua_settop(L, 1);
return 1;
}
static int luaB_getmetatable (lua_State *L) {
luaL_check_any(L, 1);
luaL_checkany(L, 1);
if (!lua_getmetatable(L, 1)) {
lua_pushnil(L);
return 1; /* no metatable */
}
else {
lua_pushliteral(L, "__metatable");
lua_rawget(L, -2);
if (lua_isnil(L, -1))
lua_pop(L, 1);
/* otherwise returns metatable.__metatable */
}
return 1;
luaL_getmetafield(L, 1, "__metatable");
return 1; /* returns either __metatable field (if present) or metatable */
}
static int luaB_setmetatable (lua_State *L) {
int t = lua_type(L, 2);
luaL_check_type(L, 1, LUA_TTABLE);
luaL_arg_check(L, t == LUA_TNIL || t == LUA_TTABLE, 2,
luaL_checktype(L, 1, LUA_TTABLE);
luaL_argcheck(L, t == LUA_TNIL || t == LUA_TTABLE, 2,
"nil or table expected");
if (luaL_getmetafield(L, 1, "__metatable"))
return luaL_error(L, "cannot change a protected metatable");
lua_settop(L, 2);
lua_setmetatable(L, 1);
return 1;
}
static void getfunc (lua_State *L) {
if (lua_isfunction(L, 1)) lua_pushvalue(L, 1);
else {
lua_Debug ar;
int level = luaL_opt_int(L, 1, 1);
luaL_arg_check(L, level >= 0, 1, "level must be non-negative");
if (lua_getstack(L, level, &ar) == 0)
luaL_argerror(L, 1, "invalid level");
lua_getinfo(L, "f", &ar);
}
}
static int luaB_getglobals (lua_State *L) {
getfunc(L);
lua_getglobals(L, -1);
return 1;
}
static int luaB_setglobals (lua_State *L) {
luaL_check_type(L, 2, LUA_TTABLE);
getfunc(L);
lua_pushvalue(L, 2);
if (lua_setglobals(L, -2) == 0)
luaL_error(L, "cannot change global table of given function");
return 0;
}
static int luaB_rawequal (lua_State *L) {
luaL_check_any(L, 1);
luaL_check_any(L, 2);
luaL_checkany(L, 1);
luaL_checkany(L, 2);
lua_pushboolean(L, lua_rawequal(L, 1, 2));
return 1;
}
static int luaB_rawlen (lua_State *L) {
int t = lua_type(L, 1);
luaL_argcheck(L, t == LUA_TTABLE || t == LUA_TSTRING, 1,
"table or string expected");
lua_pushinteger(L, lua_rawlen(L, 1));
return 1;
}
static int luaB_rawget (lua_State *L) {
luaL_check_type(L, 1, LUA_TTABLE);
luaL_check_any(L, 2);
luaL_checktype(L, 1, LUA_TTABLE);
luaL_checkany(L, 2);
lua_settop(L, 2);
lua_rawget(L, 1);
return 1;
}
static int luaB_rawset (lua_State *L) {
luaL_check_type(L, 1, LUA_TTABLE);
luaL_check_any(L, 2);
luaL_check_any(L, 3);
luaL_checktype(L, 1, LUA_TTABLE);
luaL_checkany(L, 2);
luaL_checkany(L, 3);
lua_settop(L, 3);
lua_rawset(L, 1);
return 1;
}
static int luaB_gcinfo (lua_State *L) {
lua_pushnumber(L, lua_getgccount(L));
lua_pushnumber(L, lua_getgcthreshold(L));
return 2;
}
static int luaB_collectgarbage (lua_State *L) {
lua_setgcthreshold(L, luaL_opt_int(L, 1, 0));
return 0;
static const char *const opts[] = {"stop", "restart", "collect",
"count", "step", "setpause", "setstepmul",
"setmajorinc", "isrunning", "generational", "incremental", NULL};
static const int optsnum[] = {LUA_GCSTOP, LUA_GCRESTART, LUA_GCCOLLECT,
LUA_GCCOUNT, LUA_GCSTEP, LUA_GCSETPAUSE, LUA_GCSETSTEPMUL,
LUA_GCSETMAJORINC, LUA_GCISRUNNING, LUA_GCGEN, LUA_GCINC};
int o = optsnum[luaL_checkoption(L, 1, "collect", opts)];
int ex = luaL_optint(L, 2, 0);
int res = lua_gc(L, o, ex);
switch (o) {
case LUA_GCCOUNT: {
int b = lua_gc(L, LUA_GCCOUNTB, 0);
lua_pushnumber(L, res + ((lua_Number)b/1024));
lua_pushinteger(L, b);
return 2;
}
case LUA_GCSTEP: case LUA_GCISRUNNING: {
lua_pushboolean(L, res);
return 1;
}
default: {
lua_pushinteger(L, res);
return 1;
}
}
}
static int luaB_type (lua_State *L) {
luaL_check_any(L, 1);
lua_pushstring(L, lua_typename(L, lua_type(L, 1)));
luaL_checkany(L, 1);
lua_pushstring(L, luaL_typename(L, 1));
return 1;
}
static int pairsmeta (lua_State *L, const char *method, int iszero,
lua_CFunction iter) {
if (!luaL_getmetafield(L, 1, method)) { /* no metamethod? */
luaL_checktype(L, 1, LUA_TTABLE); /* argument must be a table */
lua_pushcfunction(L, iter); /* will return generator, */
lua_pushvalue(L, 1); /* state, */
if (iszero) lua_pushinteger(L, 0); /* and initial value */
else lua_pushnil(L);
}
else {
lua_pushvalue(L, 1); /* argument 'self' to metamethod */
lua_call(L, 1, 3); /* get 3 values from metamethod */
}
return 3;
}
static int luaB_next (lua_State *L) {
luaL_check_type(L, 1, LUA_TTABLE);
luaL_checktype(L, 1, LUA_TTABLE);
lua_settop(L, 2); /* create a 2nd argument if there isn't one */
if (lua_next(L, 1))
return 2;
@@ -219,407 +223,236 @@ static int luaB_next (lua_State *L) {
static int luaB_pairs (lua_State *L) {
luaL_check_type(L, 1, LUA_TTABLE);
lua_getglobal(L, "next"); /* return generator, */
lua_pushvalue(L, 1); /* state, */
lua_pushnil(L); /* and initial value */
return 3;
return pairsmeta(L, "__pairs", 0, luaB_next);
}
static int ipairsaux (lua_State *L) {
int i = luaL_checkint(L, 2);
luaL_checktype(L, 1, LUA_TTABLE);
i++; /* next value */
lua_pushinteger(L, i);
lua_rawgeti(L, 1, i);
return (lua_isnil(L, -1)) ? 1 : 2;
}
static int luaB_ipairs (lua_State *L) {
lua_Number i = lua_tonumber(L, 2);
luaL_check_type(L, 1, LUA_TTABLE);
if (i == 0 && lua_isnull(L, 2)) { /* `for' start? */
lua_getglobal(L, "ipairs"); /* return generator, */
lua_pushvalue(L, 1); /* state, */
lua_pushnumber(L, 0); /* and initial value */
return 3;
}
else { /* `for' step */
i++; /* next value */
lua_pushnumber(L, i);
lua_rawgeti(L, 1, (int)i);
return (lua_isnil(L, -1)) ? 0 : 2;
}
return pairsmeta(L, "__ipairs", 1, ipairsaux);
}
static int passresults (lua_State *L, int status) {
if (status == 0) return 1;
else {
static int load_aux (lua_State *L, int status, int envidx) {
if (status == LUA_OK) {
if (envidx != 0) { /* 'env' parameter? */
lua_pushvalue(L, envidx); /* environment for loaded function */
if (!lua_setupvalue(L, -2, 1)) /* set it as 1st upvalue */
lua_pop(L, 1); /* remove 'env' if not used by previous call */
}
return 1;
}
else { /* error (message is on top of the stack) */
lua_pushnil(L);
lua_insert(L, -2);
return 2;
lua_insert(L, -2); /* put before error message */
return 2; /* return nil plus error message */
}
}
static int luaB_loadstring (lua_State *L) {
size_t l;
const char *s = luaL_check_lstr(L, 1, &l);
const char *chunkname = luaL_opt_string(L, 2, s);
return passresults(L, luaL_loadbuffer(L, s, l, chunkname));
}
static int luaB_loadfile (lua_State *L) {
const char *fname = luaL_opt_string(L, 1, NULL);
return passresults(L, luaL_loadfile(L, fname));
const char *fname = luaL_optstring(L, 1, NULL);
const char *mode = luaL_optstring(L, 2, NULL);
int env = (!lua_isnone(L, 3) ? 3 : 0); /* 'env' index or 0 if no 'env' */
int status = luaL_loadfilex(L, fname, mode);
return load_aux(L, status, env);
}
static int luaB_dofile (lua_State *L) {
const char *fname = luaL_opt_string(L, 1, NULL);
int status = luaL_loadfile(L, fname);
if (status != 0) lua_error(L);
lua_call(L, 0, LUA_MULTRET);
/*
** {======================================================
** Generic Read function
** =======================================================
*/
/*
** reserved slot, above all arguments, to hold a copy of the returned
** string to avoid it being collected while parsed. 'load' has four
** optional arguments (chunk, source name, mode, and environment).
*/
#define RESERVEDSLOT 5
/*
** Reader for generic `load' function: `lua_load' uses the
** stack for internal stuff, so the reader cannot change the
** stack top. Instead, it keeps its resulting string in a
** reserved slot inside the stack.
*/
static const char *generic_reader (lua_State *L, void *ud, size_t *size) {
(void)(ud); /* not used */
luaL_checkstack(L, 2, "too many nested functions");
lua_pushvalue(L, 1); /* get function */
lua_call(L, 0, 1); /* call it */
if (lua_isnil(L, -1)) {
lua_pop(L, 1); /* pop result */
*size = 0;
return NULL;
}
else if (!lua_isstring(L, -1))
luaL_error(L, "reader function must return a string");
lua_replace(L, RESERVEDSLOT); /* save string in reserved slot */
return lua_tolstring(L, RESERVEDSLOT, size);
}
static int luaB_load (lua_State *L) {
int status;
size_t l;
const char *s = lua_tolstring(L, 1, &l);
const char *mode = luaL_optstring(L, 3, "bt");
int env = (!lua_isnone(L, 4) ? 4 : 0); /* 'env' index or 0 if no 'env' */
if (s != NULL) { /* loading a string? */
const char *chunkname = luaL_optstring(L, 2, s);
status = luaL_loadbufferx(L, s, l, chunkname, mode);
}
else { /* loading from a reader function */
const char *chunkname = luaL_optstring(L, 2, "=(load)");
luaL_checktype(L, 1, LUA_TFUNCTION);
lua_settop(L, RESERVEDSLOT); /* create reserved slot */
status = lua_load(L, generic_reader, NULL, chunkname, mode);
}
return load_aux(L, status, env);
}
/* }====================================================== */
static int dofilecont (lua_State *L) {
return lua_gettop(L) - 1;
}
static int luaB_assert (lua_State *L) {
luaL_check_any(L, 1);
if (!lua_toboolean(L, 1))
return luaL_error(L, "%s", luaL_opt_string(L, 2, "assertion failed!"));
static int luaB_dofile (lua_State *L) {
const char *fname = luaL_optstring(L, 1, NULL);
lua_settop(L, 1);
return 1;
if (luaL_loadfile(L, fname) != LUA_OK)
return lua_error(L);
lua_callk(L, 0, LUA_MULTRET, 0, dofilecont);
return dofilecont(L);
}
static int luaB_unpack (lua_State *L) {
int n, i;
luaL_check_type(L, 1, LUA_TTABLE);
lua_pushliteral(L, "n");
lua_rawget(L, 1);
n = (lua_isnumber(L, -1)) ? (int)lua_tonumber(L, -1) : -1;
for (i=0; i<n || n==-1; i++) { /* push arg[1...n] */
luaL_check_stack(L, LUA_MINSTACK, "table too big to unpack");
lua_rawgeti(L, 1, i+1);
if (n == -1) { /* no explicit limit? */
if (lua_isnil(L, -1)) { /* stop at first `nil' element */
lua_pop(L, 1); /* remove `nil' */
break;
}
}
static int luaB_assert (lua_State *L) {
if (!lua_toboolean(L, 1))
return luaL_error(L, "%s", luaL_optstring(L, 2, "assertion failed!"));
return lua_gettop(L);
}
static int luaB_select (lua_State *L) {
int n = lua_gettop(L);
if (lua_type(L, 1) == LUA_TSTRING && *lua_tostring(L, 1) == '#') {
lua_pushinteger(L, n-1);
return 1;
}
return i;
else {
int i = luaL_checkint(L, 1);
if (i < 0) i = n + i;
else if (i > n) i = n;
luaL_argcheck(L, 1 <= i, 1, "index out of range");
return n - i;
}
}
static int finishpcall (lua_State *L, int status) {
if (!lua_checkstack(L, 1)) { /* no space for extra boolean? */
lua_settop(L, 0); /* create space for return values */
lua_pushboolean(L, 0);
lua_pushstring(L, "stack overflow");
return 2; /* return false, msg */
}
lua_pushboolean(L, status); /* first result (status) */
lua_replace(L, 1); /* put first result in first slot */
return lua_gettop(L);
}
static int pcallcont (lua_State *L) {
int status = lua_getctx(L, NULL);
return finishpcall(L, (status == LUA_YIELD));
}
static int luaB_pcall (lua_State *L) {
int status;
luaL_check_any(L, 1);
status = lua_pcall(L, lua_gettop(L) - 1, LUA_MULTRET, 0);
lua_pushboolean(L, (status == 0));
lua_insert(L, 1);
return lua_gettop(L); /* return status + all results */
luaL_checkany(L, 1);
lua_pushnil(L);
lua_insert(L, 1); /* create space for status result */
status = lua_pcallk(L, lua_gettop(L) - 2, LUA_MULTRET, 0, 0, pcallcont);
return finishpcall(L, (status == LUA_OK));
}
static int luaB_xpcall (lua_State *L) {
int status;
luaL_check_any(L, 2);
lua_settop(L, 2);
lua_insert(L, 1); /* put error function under function to be called */
status = lua_pcall(L, 0, LUA_MULTRET, 1);
lua_pushboolean(L, (status == 0));
lua_replace(L, 1);
return lua_gettop(L); /* return status + all results */
int n = lua_gettop(L);
luaL_argcheck(L, n >= 2, 2, "value expected");
lua_pushvalue(L, 1); /* exchange function... */
lua_copy(L, 2, 1); /* ...and error handler */
lua_replace(L, 2);
status = lua_pcallk(L, n - 2, LUA_MULTRET, 1, 0, pcallcont);
return finishpcall(L, (status == LUA_OK));
}
static int luaB_tostring (lua_State *L) {
char buff[64];
luaL_checkany(L, 1);
if (luaL_callmeta(L, 1, "__tostring")) /* is there a metafield? */
return 1; /* use its value */
switch (lua_type(L, 1)) {
case LUA_TNUMBER:
lua_pushstring(L, lua_tostring(L, 1));
return 1;
case LUA_TSTRING:
lua_pushvalue(L, 1);
return 1;
case LUA_TBOOLEAN:
lua_pushstring(L, (lua_toboolean(L, 1) ? "true" : "false"));
return 1;
case LUA_TTABLE:
sprintf(buff, "table: %p", lua_topointer(L, 1));
break;
case LUA_TFUNCTION:
sprintf(buff, "function: %p", lua_topointer(L, 1));
break;
case LUA_TUSERDATA:
case LUA_TLIGHTUSERDATA:
sprintf(buff, "userdata: %p", lua_touserdata(L, 1));
break;
case LUA_TNIL:
lua_pushliteral(L, "nil");
return 1;
}
lua_pushstring(L, buff);
luaL_tolstring(L, 1, NULL);
return 1;
}
static int luaB_newproxy (lua_State *L) {
lua_settop(L, 1);
lua_newuserdata(L, 0); /* create proxy */
if (lua_toboolean(L, 1) == 0)
return 1; /* no metatable */
else if (lua_isboolean(L, 1)) {
lua_newtable(L); /* create a new metatable `m' ... */
lua_pushvalue(L, -1); /* ... and mark `m' as a valid metatable */
lua_pushboolean(L, 1);
lua_rawset(L, lua_upvalueindex(1)); /* weaktable[m] = true */
}
else {
int validproxy = 0; /* to check if weaktable[metatable(u)] == true */
if (lua_getmetatable(L, 1)) {
lua_rawget(L, lua_upvalueindex(1));
validproxy = lua_toboolean(L, -1);
lua_pop(L, 1); /* remove value */
}
luaL_arg_check(L, validproxy, 1, "boolean/proxy expected");
lua_getmetatable(L, 1); /* metatable is valid; get it */
}
lua_setmetatable(L, 2);
return 1;
}
/*
** {======================================================
** `require' function
** =======================================================
*/
/* name of global that holds table with loaded packages */
#define REQTAB "_LOADED"
/* name of global that holds the search path for packages */
#define LUA_PATH "LUA_PATH"
#ifndef LUA_PATH_SEP
#define LUA_PATH_SEP ';'
#endif
#ifndef LUA_PATH_DEFAULT
#define LUA_PATH_DEFAULT "?;?.lua"
#endif
static const char *getpath (lua_State *L) {
const char *path;
lua_getglobal(L, LUA_PATH); /* try global variable */
path = lua_tostring(L, -1);
lua_pop(L, 1);
if (path) return path;
path = getenv(LUA_PATH); /* else try environment variable */
if (path) return path;
return LUA_PATH_DEFAULT; /* else use default */
}
static const char *pushnextpath (lua_State *L, const char *path) {
const char *l;
if (*path == '\0') return NULL; /* no more pathes */
if (*path == LUA_PATH_SEP) path++; /* skip separator */
l = strchr(path, LUA_PATH_SEP); /* find next separator */
if (l == NULL) l = path+strlen(path);
lua_pushlstring(L, path, l - path); /* directory name */
return l;
}
static void pushcomposename (lua_State *L) {
const char *path = lua_tostring(L, -1);
const char *wild = strchr(path, '?');
if (wild == NULL) return; /* no wild char; path is the file name */
lua_pushlstring(L, path, wild - path);
lua_pushvalue(L, 1); /* package name */
lua_pushstring(L, wild + 1);
lua_concat(L, 3);
}
static int luaB_require (lua_State *L) {
const char *path;
int status = LUA_ERRFILE; /* not found (yet) */
luaL_check_string(L, 1);
lua_settop(L, 1);
lua_pushvalue(L, 1);
lua_setglobal(L, "_REQUIREDNAME");
lua_getglobal(L, REQTAB);
if (!lua_istable(L, 2)) return luaL_error(L, "`" REQTAB "' is not a table");
path = getpath(L);
lua_pushvalue(L, 1); /* check package's name in book-keeping table */
lua_rawget(L, 2);
if (!lua_isnil(L, -1)) /* is it there? */
return 0; /* package is already loaded */
else { /* must load it */
while (status == LUA_ERRFILE) {
lua_settop(L, 3); /* reset stack position */
if ((path = pushnextpath(L, path)) == NULL) break;
pushcomposename(L);
status = luaL_loadfile(L, lua_tostring(L, -1)); /* try to load it */
}
}
switch (status) {
case 0: {
lua_call(L, 0, 0); /* run loaded module */
lua_pushvalue(L, 1);
lua_pushboolean(L, 1);
lua_rawset(L, 2); /* mark it as loaded */
return 0;
}
case LUA_ERRFILE: { /* file not found */
return luaL_error(L, "could not load package `%s' from path `%s'",
lua_tostring(L, 1), getpath(L));
}
default: {
return luaL_error(L, "error loading package\n%s", lua_tostring(L, -1));
}
}
}
/* }====================================================== */
static const luaL_reg base_funcs[] = {
static const luaL_Reg base_funcs[] = {
{"assert", luaB_assert},
{"collectgarbage", luaB_collectgarbage},
{"dofile", luaB_dofile},
{"error", luaB_error},
{"getmetatable", luaB_getmetatable},
{"setmetatable", luaB_setmetatable},
{"getglobals", luaB_getglobals},
{"setglobals", luaB_setglobals},
{"getmode", luaB_getmode},
{"setmode", luaB_setmode},
{"next", luaB_next},
{"ipairs", luaB_ipairs},
{"loadfile", luaB_loadfile},
{"load", luaB_load},
#if defined(LUA_COMPAT_LOADSTRING)
{"loadstring", luaB_load},
#endif
{"next", luaB_next},
{"pairs", luaB_pairs},
{"pcall", luaB_pcall},
{"print", luaB_print},
{"rawequal", luaB_rawequal},
{"rawlen", luaB_rawlen},
{"rawget", luaB_rawget},
{"rawset", luaB_rawset},
{"select", luaB_select},
{"setmetatable", luaB_setmetatable},
{"tonumber", luaB_tonumber},
{"tostring", luaB_tostring},
{"type", luaB_type},
{"assert", luaB_assert},
{"unpack", luaB_unpack},
{"rawequal", luaB_rawequal},
{"rawget", luaB_rawget},
{"rawset", luaB_rawset},
{"pcall", luaB_pcall},
{"xpcall", luaB_xpcall},
{"collectgarbage", luaB_collectgarbage},
{"gcinfo", luaB_gcinfo},
{"loadfile", luaB_loadfile},
{"dofile", luaB_dofile},
{"loadstring", luaB_loadstring},
{"require", luaB_require},
{NULL, NULL}
};
/*
** {======================================================
** Coroutine library
** =======================================================
*/
static int luaB_resume (lua_State *L) {
lua_State *co = (lua_State *)lua_unboxpointer(L, lua_upvalueindex(1));
int status;
lua_settop(L, 0);
status = lua_resume(L, co);
if (status != 0)
return lua_error(L);
return lua_gettop(L);
}
static int gc_coroutine (lua_State *L) {
lua_State *co = (lua_State *)lua_unboxpointer(L, 1);
lua_closethread(L, co);
return 0;
}
static int luaB_coroutine (lua_State *L) {
lua_State *NL;
int ref;
int i;
int n = lua_gettop(L);
luaL_arg_check(L, lua_isfunction(L, 1) && !lua_iscfunction(L, 1), 1,
"Lua function expected");
NL = lua_newthread(L);
if (NL == NULL) return luaL_error(L, "unable to create new thread");
/* move function and arguments from L to NL */
for (i=0; i<n; i++) {
ref = lua_ref(L, 1);
lua_getref(NL, ref);
lua_insert(NL, 1);
lua_unref(L, ref);
}
lua_cobegin(NL, n-1);
lua_boxpointer(L, NL);
lua_pushliteral(L, "Coroutine");
lua_rawget(L, LUA_REGISTRYINDEX);
lua_setmetatable(L, -2);
lua_pushcclosure(L, luaB_resume, 1);
LUAMOD_API int luaopen_base (lua_State *L) {
/* set global _G */
lua_pushglobaltable(L);
lua_pushglobaltable(L);
lua_setfield(L, -2, "_G");
/* open lib into global table */
luaL_setfuncs(L, base_funcs, 0);
lua_pushliteral(L, LUA_VERSION);
lua_setfield(L, -2, "_VERSION"); /* set global _VERSION */
return 1;
}
static int luaB_yield (lua_State *L) {
return lua_yield(L, lua_gettop(L));
}
static const luaL_reg co_funcs[] = {
{"create", luaB_coroutine},
{"yield", luaB_yield},
{NULL, NULL}
};
static void co_open (lua_State *L) {
luaL_opennamedlib(L, LUA_COLIBNAME, co_funcs, 0);
/* create metatable for coroutines */
lua_pushliteral(L, "Coroutine");
lua_newtable(L);
lua_pushliteral(L, "__gc");
lua_pushcfunction(L, gc_coroutine);
lua_rawset(L, -3);
lua_rawset(L, LUA_REGISTRYINDEX);
}
/* }====================================================== */
static void base_open (lua_State *L) {
lua_pushliteral(L, "_G");
lua_pushvalue(L, LUA_GLOBALSINDEX);
luaL_openlib(L, base_funcs, 0); /* open lib into global table */
lua_pushliteral(L, "_VERSION");
lua_pushliteral(L, LUA_VERSION);
lua_rawset(L, -3); /* set global _VERSION */
/* `newproxy' needs a weaktable as upvalue */
lua_pushliteral(L, "newproxy");
lua_newtable(L); /* new table `w' */
lua_setmode(L, -1, "k");
lua_pushcclosure(L, luaB_newproxy, 1);
lua_rawset(L, -3); /* set global `newproxy' */
lua_rawset(L, -1); /* set global _G */
}
LUALIB_API int lua_baselibopen (lua_State *L) {
base_open(L);
co_open(L);
lua_newtable(L);
lua_setglobal(L, REQTAB);
return 0;
}

212
lbitlib.c Normal file
View File

@@ -0,0 +1,212 @@
/*
** $Id: lbitlib.c,v 1.18.1.1 2013/04/12 18:48:47 roberto Exp roberto $
** Standard library for bitwise operations
** See Copyright Notice in lua.h
*/
#define lbitlib_c
#define LUA_LIB
#include "lua.h"
#include "lauxlib.h"
#include "lualib.h"
/* number of bits to consider in a number */
#if !defined(LUA_NBITS)
#define LUA_NBITS 32
#endif
#define ALLONES (~(((~(lua_Unsigned)0) << (LUA_NBITS - 1)) << 1))
/* macro to trim extra bits */
#define trim(x) ((x) & ALLONES)
/* builds a number with 'n' ones (1 <= n <= LUA_NBITS) */
#define mask(n) (~((ALLONES << 1) << ((n) - 1)))
typedef lua_Unsigned b_uint;
static b_uint andaux (lua_State *L) {
int i, n = lua_gettop(L);
b_uint r = ~(b_uint)0;
for (i = 1; i <= n; i++)
r &= luaL_checkunsigned(L, i);
return trim(r);
}
static int b_and (lua_State *L) {
b_uint r = andaux(L);
lua_pushunsigned(L, r);
return 1;
}
static int b_test (lua_State *L) {
b_uint r = andaux(L);
lua_pushboolean(L, r != 0);
return 1;
}
static int b_or (lua_State *L) {
int i, n = lua_gettop(L);
b_uint r = 0;
for (i = 1; i <= n; i++)
r |= luaL_checkunsigned(L, i);
lua_pushunsigned(L, trim(r));
return 1;
}
static int b_xor (lua_State *L) {
int i, n = lua_gettop(L);
b_uint r = 0;
for (i = 1; i <= n; i++)
r ^= luaL_checkunsigned(L, i);
lua_pushunsigned(L, trim(r));
return 1;
}
static int b_not (lua_State *L) {
b_uint r = ~luaL_checkunsigned(L, 1);
lua_pushunsigned(L, trim(r));
return 1;
}
static int b_shift (lua_State *L, b_uint r, int i) {
if (i < 0) { /* shift right? */
i = -i;
r = trim(r);
if (i >= LUA_NBITS) r = 0;
else r >>= i;
}
else { /* shift left */
if (i >= LUA_NBITS) r = 0;
else r <<= i;
r = trim(r);
}
lua_pushunsigned(L, r);
return 1;
}
static int b_lshift (lua_State *L) {
return b_shift(L, luaL_checkunsigned(L, 1), luaL_checkint(L, 2));
}
static int b_rshift (lua_State *L) {
return b_shift(L, luaL_checkunsigned(L, 1), -luaL_checkint(L, 2));
}
static int b_arshift (lua_State *L) {
b_uint r = luaL_checkunsigned(L, 1);
int i = luaL_checkint(L, 2);
if (i < 0 || !(r & ((b_uint)1 << (LUA_NBITS - 1))))
return b_shift(L, r, -i);
else { /* arithmetic shift for 'negative' number */
if (i >= LUA_NBITS) r = ALLONES;
else
r = trim((r >> i) | ~(~(b_uint)0 >> i)); /* add signal bit */
lua_pushunsigned(L, r);
return 1;
}
}
static int b_rot (lua_State *L, int i) {
b_uint r = luaL_checkunsigned(L, 1);
i &= (LUA_NBITS - 1); /* i = i % NBITS */
r = trim(r);
if (i != 0) /* avoid undefined shift of LUA_NBITS when i == 0 */
r = (r << i) | (r >> (LUA_NBITS - i));
lua_pushunsigned(L, trim(r));
return 1;
}
static int b_lrot (lua_State *L) {
return b_rot(L, luaL_checkint(L, 2));
}
static int b_rrot (lua_State *L) {
return b_rot(L, -luaL_checkint(L, 2));
}
/*
** get field and width arguments for field-manipulation functions,
** checking whether they are valid.
** ('luaL_error' called without 'return' to avoid later warnings about
** 'width' being used uninitialized.)
*/
static int fieldargs (lua_State *L, int farg, int *width) {
int f = luaL_checkint(L, farg);
int w = luaL_optint(L, farg + 1, 1);
luaL_argcheck(L, 0 <= f, farg, "field cannot be negative");
luaL_argcheck(L, 0 < w, farg + 1, "width must be positive");
if (f + w > LUA_NBITS)
luaL_error(L, "trying to access non-existent bits");
*width = w;
return f;
}
static int b_extract (lua_State *L) {
int w;
b_uint r = luaL_checkunsigned(L, 1);
int f = fieldargs(L, 2, &w);
r = (r >> f) & mask(w);
lua_pushunsigned(L, r);
return 1;
}
static int b_replace (lua_State *L) {
int w;
b_uint r = luaL_checkunsigned(L, 1);
b_uint v = luaL_checkunsigned(L, 2);
int f = fieldargs(L, 3, &w);
int m = mask(w);
v &= m; /* erase bits outside given width */
r = (r & ~(m << f)) | (v << f);
lua_pushunsigned(L, r);
return 1;
}
static const luaL_Reg bitlib[] = {
{"arshift", b_arshift},
{"band", b_and},
{"bnot", b_not},
{"bor", b_or},
{"bxor", b_xor},
{"btest", b_test},
{"extract", b_extract},
{"lrotate", b_lrot},
{"lshift", b_lshift},
{"replace", b_replace},
{"rrotate", b_rrot},
{"rshift", b_rshift},
{NULL, NULL}
};
LUAMOD_API int luaopen_bit32 (lua_State *L) {
luaL_newlib(L, bitlib);
return 1;
}

667
lcode.c

File diff suppressed because it is too large Load Diff

80
lcode.h
View File

@@ -1,5 +1,5 @@
/*
** $Id: lcode.h,v 1.36 2002/05/13 13:07:48 roberto Exp roberto $
** $Id: lcode.h,v 1.58 2011/08/30 16:26:41 roberto Exp $
** Code generator for Lua
** See Copyright Notice in lua.h
*/
@@ -21,53 +21,63 @@
/*
** grep "ORDER OPR" if you change these enums
** grep "ORDER OPR" if you change these enums (ORDER OP)
*/
typedef enum BinOpr {
OPR_ADD, OPR_SUB, OPR_MULT, OPR_DIV, OPR_POW,
OPR_ADD, OPR_SUB, OPR_MUL, OPR_DIV, OPR_MOD, OPR_POW,
OPR_CONCAT,
OPR_NE, OPR_EQ,
OPR_LT, OPR_LE, OPR_GT, OPR_GE,
OPR_EQ, OPR_LT, OPR_LE,
OPR_NE, OPR_GT, OPR_GE,
OPR_AND, OPR_OR,
OPR_NOBINOPR
} BinOpr;
#define binopistest(op) ((op) >= OPR_NE)
typedef enum UnOpr { OPR_MINUS, OPR_NOT, OPR_NOUNOPR } UnOpr;
typedef enum UnOpr { OPR_MINUS, OPR_NOT, OPR_LEN, OPR_NOUNOPR } UnOpr;
#define getcode(fs,e) ((fs)->f->code[(e)->info])
#define getcode(fs,e) ((fs)->f->code[(e)->u.info])
#define luaK_codeAsBx(fs,o,A,sBx) luaK_codeABx(fs,o,A,(sBx)+MAXARG_sBx)
int luaK_code (FuncState *fs, Instruction i, int line);
int luaK_codeABx (FuncState *fs, OpCode o, int A, unsigned int Bx);
int luaK_codeABC (FuncState *fs, OpCode o, int A, int B, int C);
void luaK_fixline (FuncState *fs, int line);
void luaK_nil (FuncState *fs, int from, int n);
void luaK_reserveregs (FuncState *fs, int n);
int luaK_stringK (FuncState *fs, TString *s);
int luaK_numberK (FuncState *fs, lua_Number r);
void luaK_dischargevars (FuncState *fs, expdesc *e);
int luaK_exp2anyreg (FuncState *fs, expdesc *e);
void luaK_exp2nextreg (FuncState *fs, expdesc *e);
void luaK_exp2val (FuncState *fs, expdesc *e);
int luaK_exp2RK (FuncState *fs, expdesc *e);
void luaK_self (FuncState *fs, expdesc *e, expdesc *key);
void luaK_indexed (FuncState *fs, expdesc *t, expdesc *k);
void luaK_goiftrue (FuncState *fs, expdesc *e);
void luaK_goiffalse (FuncState *fs, expdesc *e);
void luaK_storevar (FuncState *fs, expdesc *var, expdesc *e);
void luaK_setcallreturns (FuncState *fs, expdesc *var, int nresults);
int luaK_jump (FuncState *fs);
void luaK_patchlist (FuncState *fs, int list, int target);
void luaK_patchtohere (FuncState *fs, int list);
void luaK_concat (FuncState *fs, int *l1, int l2);
int luaK_getlabel (FuncState *fs);
void luaK_prefix (FuncState *fs, UnOpr op, expdesc *v);
void luaK_infix (FuncState *fs, BinOpr op, expdesc *v);
void luaK_posfix (FuncState *fs, BinOpr op, expdesc *v1, expdesc *v2);
#define luaK_setmultret(fs,e) luaK_setreturns(fs, e, LUA_MULTRET)
#define luaK_jumpto(fs,t) luaK_patchlist(fs, luaK_jump(fs), t)
LUAI_FUNC int luaK_codeABx (FuncState *fs, OpCode o, int A, unsigned int Bx);
LUAI_FUNC int luaK_codeABC (FuncState *fs, OpCode o, int A, int B, int C);
LUAI_FUNC int luaK_codek (FuncState *fs, int reg, int k);
LUAI_FUNC void luaK_fixline (FuncState *fs, int line);
LUAI_FUNC void luaK_nil (FuncState *fs, int from, int n);
LUAI_FUNC void luaK_reserveregs (FuncState *fs, int n);
LUAI_FUNC void luaK_checkstack (FuncState *fs, int n);
LUAI_FUNC int luaK_stringK (FuncState *fs, TString *s);
LUAI_FUNC int luaK_numberK (FuncState *fs, lua_Number r);
LUAI_FUNC void luaK_dischargevars (FuncState *fs, expdesc *e);
LUAI_FUNC int luaK_exp2anyreg (FuncState *fs, expdesc *e);
LUAI_FUNC void luaK_exp2anyregup (FuncState *fs, expdesc *e);
LUAI_FUNC void luaK_exp2nextreg (FuncState *fs, expdesc *e);
LUAI_FUNC void luaK_exp2val (FuncState *fs, expdesc *e);
LUAI_FUNC int luaK_exp2RK (FuncState *fs, expdesc *e);
LUAI_FUNC void luaK_self (FuncState *fs, expdesc *e, expdesc *key);
LUAI_FUNC void luaK_indexed (FuncState *fs, expdesc *t, expdesc *k);
LUAI_FUNC void luaK_goiftrue (FuncState *fs, expdesc *e);
LUAI_FUNC void luaK_goiffalse (FuncState *fs, expdesc *e);
LUAI_FUNC void luaK_storevar (FuncState *fs, expdesc *var, expdesc *e);
LUAI_FUNC void luaK_setreturns (FuncState *fs, expdesc *e, int nresults);
LUAI_FUNC void luaK_setoneret (FuncState *fs, expdesc *e);
LUAI_FUNC int luaK_jump (FuncState *fs);
LUAI_FUNC void luaK_ret (FuncState *fs, int first, int nret);
LUAI_FUNC void luaK_patchlist (FuncState *fs, int list, int target);
LUAI_FUNC void luaK_patchtohere (FuncState *fs, int list);
LUAI_FUNC void luaK_patchclose (FuncState *fs, int list, int level);
LUAI_FUNC void luaK_concat (FuncState *fs, int *l1, int l2);
LUAI_FUNC int luaK_getlabel (FuncState *fs);
LUAI_FUNC void luaK_prefix (FuncState *fs, UnOpr op, expdesc *v, int line);
LUAI_FUNC void luaK_infix (FuncState *fs, BinOpr op, expdesc *v);
LUAI_FUNC void luaK_posfix (FuncState *fs, BinOpr op, expdesc *v1,
expdesc *v2, int line);
LUAI_FUNC void luaK_setlist (FuncState *fs, int base, int nelems, int tostore);
#endif

155
lcorolib.c Normal file
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@@ -0,0 +1,155 @@
/*
** $Id: lcorolib.c,v 1.5 2013/02/21 13:44:53 roberto Exp $
** Coroutine Library
** See Copyright Notice in lua.h
*/
#include <stdlib.h>
#define lcorolib_c
#define LUA_LIB
#include "lua.h"
#include "lauxlib.h"
#include "lualib.h"
static int auxresume (lua_State *L, lua_State *co, int narg) {
int status;
if (!lua_checkstack(co, narg)) {
lua_pushliteral(L, "too many arguments to resume");
return -1; /* error flag */
}
if (lua_status(co) == LUA_OK && lua_gettop(co) == 0) {
lua_pushliteral(L, "cannot resume dead coroutine");
return -1; /* error flag */
}
lua_xmove(L, co, narg);
status = lua_resume(co, L, narg);
if (status == LUA_OK || status == LUA_YIELD) {
int nres = lua_gettop(co);
if (!lua_checkstack(L, nres + 1)) {
lua_pop(co, nres); /* remove results anyway */
lua_pushliteral(L, "too many results to resume");
return -1; /* error flag */
}
lua_xmove(co, L, nres); /* move yielded values */
return nres;
}
else {
lua_xmove(co, L, 1); /* move error message */
return -1; /* error flag */
}
}
static int luaB_coresume (lua_State *L) {
lua_State *co = lua_tothread(L, 1);
int r;
luaL_argcheck(L, co, 1, "coroutine expected");
r = auxresume(L, co, lua_gettop(L) - 1);
if (r < 0) {
lua_pushboolean(L, 0);
lua_insert(L, -2);
return 2; /* return false + error message */
}
else {
lua_pushboolean(L, 1);
lua_insert(L, -(r + 1));
return r + 1; /* return true + `resume' returns */
}
}
static int luaB_auxwrap (lua_State *L) {
lua_State *co = lua_tothread(L, lua_upvalueindex(1));
int r = auxresume(L, co, lua_gettop(L));
if (r < 0) {
if (lua_isstring(L, -1)) { /* error object is a string? */
luaL_where(L, 1); /* add extra info */
lua_insert(L, -2);
lua_concat(L, 2);
}
return lua_error(L); /* propagate error */
}
return r;
}
static int luaB_cocreate (lua_State *L) {
lua_State *NL;
luaL_checktype(L, 1, LUA_TFUNCTION);
NL = lua_newthread(L);
lua_pushvalue(L, 1); /* move function to top */
lua_xmove(L, NL, 1); /* move function from L to NL */
return 1;
}
static int luaB_cowrap (lua_State *L) {
luaB_cocreate(L);
lua_pushcclosure(L, luaB_auxwrap, 1);
return 1;
}
static int luaB_yield (lua_State *L) {
return lua_yield(L, lua_gettop(L));
}
static int luaB_costatus (lua_State *L) {
lua_State *co = lua_tothread(L, 1);
luaL_argcheck(L, co, 1, "coroutine expected");
if (L == co) lua_pushliteral(L, "running");
else {
switch (lua_status(co)) {
case LUA_YIELD:
lua_pushliteral(L, "suspended");
break;
case LUA_OK: {
lua_Debug ar;
if (lua_getstack(co, 0, &ar) > 0) /* does it have frames? */
lua_pushliteral(L, "normal"); /* it is running */
else if (lua_gettop(co) == 0)
lua_pushliteral(L, "dead");
else
lua_pushliteral(L, "suspended"); /* initial state */
break;
}
default: /* some error occurred */
lua_pushliteral(L, "dead");
break;
}
}
return 1;
}
static int luaB_corunning (lua_State *L) {
int ismain = lua_pushthread(L);
lua_pushboolean(L, ismain);
return 2;
}
static const luaL_Reg co_funcs[] = {
{"create", luaB_cocreate},
{"resume", luaB_coresume},
{"running", luaB_corunning},
{"status", luaB_costatus},
{"wrap", luaB_cowrap},
{"yield", luaB_yield},
{NULL, NULL}
};
LUAMOD_API int luaopen_coroutine (lua_State *L) {
luaL_newlib(L, co_funcs);
return 1;
}

52
lctype.c Normal file
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@@ -0,0 +1,52 @@
/*
** $Id: lctype.c,v 1.11 2011/10/03 16:19:23 roberto Exp $
** 'ctype' functions for Lua
** See Copyright Notice in lua.h
*/
#define lctype_c
#define LUA_CORE
#include "lctype.h"
#if !LUA_USE_CTYPE /* { */
#include <limits.h>
LUAI_DDEF const lu_byte luai_ctype_[UCHAR_MAX + 2] = {
0x00, /* EOZ */
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, /* 0. */
0x00, 0x08, 0x08, 0x08, 0x08, 0x08, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, /* 1. */
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
0x0c, 0x04, 0x04, 0x04, 0x04, 0x04, 0x04, 0x04, /* 2. */
0x04, 0x04, 0x04, 0x04, 0x04, 0x04, 0x04, 0x04,
0x16, 0x16, 0x16, 0x16, 0x16, 0x16, 0x16, 0x16, /* 3. */
0x16, 0x16, 0x04, 0x04, 0x04, 0x04, 0x04, 0x04,
0x04, 0x15, 0x15, 0x15, 0x15, 0x15, 0x15, 0x05, /* 4. */
0x05, 0x05, 0x05, 0x05, 0x05, 0x05, 0x05, 0x05,
0x05, 0x05, 0x05, 0x05, 0x05, 0x05, 0x05, 0x05, /* 5. */
0x05, 0x05, 0x05, 0x04, 0x04, 0x04, 0x04, 0x05,
0x04, 0x15, 0x15, 0x15, 0x15, 0x15, 0x15, 0x05, /* 6. */
0x05, 0x05, 0x05, 0x05, 0x05, 0x05, 0x05, 0x05,
0x05, 0x05, 0x05, 0x05, 0x05, 0x05, 0x05, 0x05, /* 7. */
0x05, 0x05, 0x05, 0x04, 0x04, 0x04, 0x04, 0x00,
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, /* 8. */
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, /* 9. */
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, /* a. */
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, /* b. */
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, /* c. */
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, /* d. */
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, /* e. */
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, /* f. */
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
};
#endif /* } */

95
lctype.h Normal file
View File

@@ -0,0 +1,95 @@
/*
** $Id: lctype.h,v 1.12 2011/07/15 12:50:29 roberto Exp $
** 'ctype' functions for Lua
** See Copyright Notice in lua.h
*/
#ifndef lctype_h
#define lctype_h
#include "lua.h"
/*
** WARNING: the functions defined here do not necessarily correspond
** to the similar functions in the standard C ctype.h. They are
** optimized for the specific needs of Lua
*/
#if !defined(LUA_USE_CTYPE)
#if 'A' == 65 && '0' == 48
/* ASCII case: can use its own tables; faster and fixed */
#define LUA_USE_CTYPE 0
#else
/* must use standard C ctype */
#define LUA_USE_CTYPE 1
#endif
#endif
#if !LUA_USE_CTYPE /* { */
#include <limits.h>
#include "llimits.h"
#define ALPHABIT 0
#define DIGITBIT 1
#define PRINTBIT 2
#define SPACEBIT 3
#define XDIGITBIT 4
#define MASK(B) (1 << (B))
/*
** add 1 to char to allow index -1 (EOZ)
*/
#define testprop(c,p) (luai_ctype_[(c)+1] & (p))
/*
** 'lalpha' (Lua alphabetic) and 'lalnum' (Lua alphanumeric) both include '_'
*/
#define lislalpha(c) testprop(c, MASK(ALPHABIT))
#define lislalnum(c) testprop(c, (MASK(ALPHABIT) | MASK(DIGITBIT)))
#define lisdigit(c) testprop(c, MASK(DIGITBIT))
#define lisspace(c) testprop(c, MASK(SPACEBIT))
#define lisprint(c) testprop(c, MASK(PRINTBIT))
#define lisxdigit(c) testprop(c, MASK(XDIGITBIT))
/*
** this 'ltolower' only works for alphabetic characters
*/
#define ltolower(c) ((c) | ('A' ^ 'a'))
/* two more entries for 0 and -1 (EOZ) */
LUAI_DDEC const lu_byte luai_ctype_[UCHAR_MAX + 2];
#else /* }{ */
/*
** use standard C ctypes
*/
#include <ctype.h>
#define lislalpha(c) (isalpha(c) || (c) == '_')
#define lislalnum(c) (isalnum(c) || (c) == '_')
#define lisdigit(c) (isdigit(c))
#define lisspace(c) (isspace(c))
#define lisprint(c) (isprint(c))
#define lisxdigit(c) (isxdigit(c))
#define ltolower(c) (tolower(c))
#endif /* } */
#endif

492
ldblib.c
View File

@@ -1,5 +1,5 @@
/*
** $Id: ldblib.c,v 1.66 2002/08/06 18:01:50 roberto Exp roberto $
** $Id: ldblib.c,v 1.132 2012/01/19 20:14:44 roberto Exp $
** Interface from Lua to its debug API
** See Copyright Notice in lua.h
*/
@@ -9,133 +9,281 @@
#include <stdlib.h>
#include <string.h>
#define ldblib_c
#define LUA_LIB
#include "lua.h"
#include "lauxlib.h"
#include "lualib.h"
static void settabss (lua_State *L, const char *i, const char *v) {
lua_pushstring(L, i);
lua_pushstring(L, v);
lua_rawset(L, -3);
}
#define HOOKKEY "_HKEY"
static void settabsi (lua_State *L, const char *i, int v) {
lua_pushstring(L, i);
lua_pushnumber(L, v);
lua_rawset(L, -3);
}
static int getinfo (lua_State *L) {
lua_Debug ar;
const char *options = luaL_opt_string(L, 2, "flnSu");
if (lua_isnumber(L, 1)) {
if (!lua_getstack(L, (int)(lua_tonumber(L, 1)), &ar)) {
lua_pushnil(L); /* level out of range */
return 1;
}
}
else if (lua_isfunction(L, 1)) {
lua_pushfstring(L, ">%s", options);
options = lua_tostring(L, -1);
lua_pushvalue(L, 1);
}
else
return luaL_argerror(L, 1, "function or level expected");
if (!lua_getinfo(L, options, &ar))
return luaL_argerror(L, 2, "invalid option");
lua_newtable(L);
for (; *options; options++) {
switch (*options) {
case 'S':
settabss(L, "source", ar.source);
settabss(L, "short_src", ar.short_src);
settabsi(L, "linedefined", ar.linedefined);
settabss(L, "what", ar.what);
break;
case 'l':
settabsi(L, "currentline", ar.currentline);
break;
case 'u':
settabsi(L, "nups", ar.nups);
break;
case 'n':
settabss(L, "name", ar.name);
settabss(L, "namewhat", ar.namewhat);
break;
case 'f':
lua_pushliteral(L, "func");
lua_pushvalue(L, -3);
lua_rawset(L, -3);
break;
}
}
return 1; /* return table */
}
static int getlocal (lua_State *L) {
lua_Debug ar;
const char *name;
if (!lua_getstack(L, luaL_check_int(L, 1), &ar)) /* level out of range? */
return luaL_argerror(L, 1, "level out of range");
name = lua_getlocal(L, &ar, luaL_check_int(L, 2));
if (name) {
lua_pushstring(L, name);
lua_pushvalue(L, -2);
return 2;
}
else {
lua_pushnil(L);
return 1;
}
}
static int setlocal (lua_State *L) {
lua_Debug ar;
if (!lua_getstack(L, luaL_check_int(L, 1), &ar)) /* level out of range? */
return luaL_argerror(L, 1, "level out of range");
luaL_check_any(L, 3);
lua_pushstring(L, lua_setlocal(L, &ar, luaL_check_int(L, 2)));
static int db_getregistry (lua_State *L) {
lua_pushvalue(L, LUA_REGISTRYINDEX);
return 1;
}
static int db_getmetatable (lua_State *L) {
luaL_checkany(L, 1);
if (!lua_getmetatable(L, 1)) {
lua_pushnil(L); /* no metatable */
}
return 1;
}
static const char KEY_HOOK = 'h';
static int db_setmetatable (lua_State *L) {
int t = lua_type(L, 2);
luaL_argcheck(L, t == LUA_TNIL || t == LUA_TTABLE, 2,
"nil or table expected");
lua_settop(L, 2);
lua_setmetatable(L, 1);
return 1; /* return 1st argument */
}
static int db_getuservalue (lua_State *L) {
if (lua_type(L, 1) != LUA_TUSERDATA)
lua_pushnil(L);
else
lua_getuservalue(L, 1);
return 1;
}
static int db_setuservalue (lua_State *L) {
if (lua_type(L, 1) == LUA_TLIGHTUSERDATA)
luaL_argerror(L, 1, "full userdata expected, got light userdata");
luaL_checktype(L, 1, LUA_TUSERDATA);
if (!lua_isnoneornil(L, 2))
luaL_checktype(L, 2, LUA_TTABLE);
lua_settop(L, 2);
lua_setuservalue(L, 1);
return 1;
}
static void settabss (lua_State *L, const char *i, const char *v) {
lua_pushstring(L, v);
lua_setfield(L, -2, i);
}
static void settabsi (lua_State *L, const char *i, int v) {
lua_pushinteger(L, v);
lua_setfield(L, -2, i);
}
static void settabsb (lua_State *L, const char *i, int v) {
lua_pushboolean(L, v);
lua_setfield(L, -2, i);
}
static lua_State *getthread (lua_State *L, int *arg) {
if (lua_isthread(L, 1)) {
*arg = 1;
return lua_tothread(L, 1);
}
else {
*arg = 0;
return L;
}
}
static void treatstackoption (lua_State *L, lua_State *L1, const char *fname) {
if (L == L1) {
lua_pushvalue(L, -2);
lua_remove(L, -3);
}
else
lua_xmove(L1, L, 1);
lua_setfield(L, -2, fname);
}
static int db_getinfo (lua_State *L) {
lua_Debug ar;
int arg;
lua_State *L1 = getthread(L, &arg);
const char *options = luaL_optstring(L, arg+2, "flnStu");
if (lua_isnumber(L, arg+1)) {
if (!lua_getstack(L1, (int)lua_tointeger(L, arg+1), &ar)) {
lua_pushnil(L); /* level out of range */
return 1;
}
}
else if (lua_isfunction(L, arg+1)) {
lua_pushfstring(L, ">%s", options);
options = lua_tostring(L, -1);
lua_pushvalue(L, arg+1);
lua_xmove(L, L1, 1);
}
else
return luaL_argerror(L, arg+1, "function or level expected");
if (!lua_getinfo(L1, options, &ar))
return luaL_argerror(L, arg+2, "invalid option");
lua_createtable(L, 0, 2);
if (strchr(options, 'S')) {
settabss(L, "source", ar.source);
settabss(L, "short_src", ar.short_src);
settabsi(L, "linedefined", ar.linedefined);
settabsi(L, "lastlinedefined", ar.lastlinedefined);
settabss(L, "what", ar.what);
}
if (strchr(options, 'l'))
settabsi(L, "currentline", ar.currentline);
if (strchr(options, 'u')) {
settabsi(L, "nups", ar.nups);
settabsi(L, "nparams", ar.nparams);
settabsb(L, "isvararg", ar.isvararg);
}
if (strchr(options, 'n')) {
settabss(L, "name", ar.name);
settabss(L, "namewhat", ar.namewhat);
}
if (strchr(options, 't'))
settabsb(L, "istailcall", ar.istailcall);
if (strchr(options, 'L'))
treatstackoption(L, L1, "activelines");
if (strchr(options, 'f'))
treatstackoption(L, L1, "func");
return 1; /* return table */
}
static int db_getlocal (lua_State *L) {
int arg;
lua_State *L1 = getthread(L, &arg);
lua_Debug ar;
const char *name;
int nvar = luaL_checkint(L, arg+2); /* local-variable index */
if (lua_isfunction(L, arg + 1)) { /* function argument? */
lua_pushvalue(L, arg + 1); /* push function */
lua_pushstring(L, lua_getlocal(L, NULL, nvar)); /* push local name */
return 1;
}
else { /* stack-level argument */
if (!lua_getstack(L1, luaL_checkint(L, arg+1), &ar)) /* out of range? */
return luaL_argerror(L, arg+1, "level out of range");
name = lua_getlocal(L1, &ar, nvar);
if (name) {
lua_xmove(L1, L, 1); /* push local value */
lua_pushstring(L, name); /* push name */
lua_pushvalue(L, -2); /* re-order */
return 2;
}
else {
lua_pushnil(L); /* no name (nor value) */
return 1;
}
}
}
static int db_setlocal (lua_State *L) {
int arg;
lua_State *L1 = getthread(L, &arg);
lua_Debug ar;
if (!lua_getstack(L1, luaL_checkint(L, arg+1), &ar)) /* out of range? */
return luaL_argerror(L, arg+1, "level out of range");
luaL_checkany(L, arg+3);
lua_settop(L, arg+3);
lua_xmove(L, L1, 1);
lua_pushstring(L, lua_setlocal(L1, &ar, luaL_checkint(L, arg+2)));
return 1;
}
static int auxupvalue (lua_State *L, int get) {
const char *name;
int n = luaL_checkint(L, 2);
luaL_checktype(L, 1, LUA_TFUNCTION);
name = get ? lua_getupvalue(L, 1, n) : lua_setupvalue(L, 1, n);
if (name == NULL) return 0;
lua_pushstring(L, name);
lua_insert(L, -(get+1));
return get + 1;
}
static int db_getupvalue (lua_State *L) {
return auxupvalue(L, 1);
}
static int db_setupvalue (lua_State *L) {
luaL_checkany(L, 3);
return auxupvalue(L, 0);
}
static int checkupval (lua_State *L, int argf, int argnup) {
lua_Debug ar;
int nup = luaL_checkint(L, argnup);
luaL_checktype(L, argf, LUA_TFUNCTION);
lua_pushvalue(L, argf);
lua_getinfo(L, ">u", &ar);
luaL_argcheck(L, 1 <= nup && nup <= ar.nups, argnup, "invalid upvalue index");
return nup;
}
static int db_upvalueid (lua_State *L) {
int n = checkupval(L, 1, 2);
lua_pushlightuserdata(L, lua_upvalueid(L, 1, n));
return 1;
}
static int db_upvaluejoin (lua_State *L) {
int n1 = checkupval(L, 1, 2);
int n2 = checkupval(L, 3, 4);
luaL_argcheck(L, !lua_iscfunction(L, 1), 1, "Lua function expected");
luaL_argcheck(L, !lua_iscfunction(L, 3), 3, "Lua function expected");
lua_upvaluejoin(L, 1, n1, 3, n2);
return 0;
}
#define gethooktable(L) luaL_getsubtable(L, LUA_REGISTRYINDEX, HOOKKEY)
static void hookf (lua_State *L, lua_Debug *ar) {
static const char *const hooknames[] = {"call", "return", "line", "count"};
lua_pushlightuserdata(L, (void *)&KEY_HOOK);
lua_rawget(L, LUA_REGISTRYINDEX);
static const char *const hooknames[] =
{"call", "return", "line", "count", "tail call"};
gethooktable(L);
lua_pushthread(L);
lua_rawget(L, -2);
if (lua_isfunction(L, -1)) {
lua_pushstring(L, hooknames[(int)ar->event]);
if (ar->currentline >= 0) lua_pushnumber(L, ar->currentline);
if (ar->currentline >= 0)
lua_pushinteger(L, ar->currentline);
else lua_pushnil(L);
lua_assert(lua_getinfo(L, "lS", ar));
lua_call(L, 2, 0);
}
else
lua_pop(L, 1); /* pop result from gettable */
}
static unsigned long makemask (const char *smask, int count) {
unsigned long mask = 0;
static int makemask (const char *smask, int count) {
int mask = 0;
if (strchr(smask, 'c')) mask |= LUA_MASKCALL;
if (strchr(smask, 'r')) mask |= LUA_MASKRET;
if (strchr(smask, 'l')) mask |= LUA_MASKLINE;
return mask | LUA_MASKCOUNT(count);
if (count > 0) mask |= LUA_MASKCOUNT;
return mask;
}
static char *unmakemask (unsigned long mask, char *smask) {
static char *unmakemask (int mask, char *smask) {
int i = 0;
if (mask & LUA_MASKCALL) smask[i++] = 'c';
if (mask & LUA_MASKRET) smask[i++] = 'r';
@@ -145,120 +293,106 @@ static char *unmakemask (unsigned long mask, char *smask) {
}
static int sethook (lua_State *L) {
if (lua_isnoneornil(L, 1)) {
lua_settop(L, 1);
lua_sethook(L, NULL, 0); /* turn off hooks */
static int db_sethook (lua_State *L) {
int arg, mask, count;
lua_Hook func;
lua_State *L1 = getthread(L, &arg);
if (lua_isnoneornil(L, arg+1)) {
lua_settop(L, arg+1);
func = NULL; mask = 0; count = 0; /* turn off hooks */
}
else {
const char *smask = luaL_check_string(L, 2);
lua_Number count = luaL_opt_number(L, 3, 0);
luaL_check_type(L, 1, LUA_TFUNCTION);
luaL_arg_check(L, count <= LUA_MAXCOUNT, 2, "count too large (>= 2^24)");
lua_sethook(L, hookf, makemask(smask, count));
const char *smask = luaL_checkstring(L, arg+2);
luaL_checktype(L, arg+1, LUA_TFUNCTION);
count = luaL_optint(L, arg+3, 0);
func = hookf; mask = makemask(smask, count);
}
lua_pushlightuserdata(L, (void *)&KEY_HOOK);
lua_pushvalue(L, 1);
lua_rawset(L, LUA_REGISTRYINDEX); /* set new hook */
if (gethooktable(L) == 0) { /* creating hook table? */
lua_pushstring(L, "k");
lua_setfield(L, -2, "__mode"); /** hooktable.__mode = "k" */
lua_pushvalue(L, -1);
lua_setmetatable(L, -2); /* setmetatable(hooktable) = hooktable */
}
lua_pushthread(L1); lua_xmove(L1, L, 1);
lua_pushvalue(L, arg+1);
lua_rawset(L, -3); /* set new hook */
lua_sethook(L1, func, mask, count); /* set hooks */
return 0;
}
static int gethook (lua_State *L) {
static int db_gethook (lua_State *L) {
int arg;
lua_State *L1 = getthread(L, &arg);
char buff[5];
unsigned long mask = lua_gethookmask(L);
lua_pushlightuserdata(L, (void *)&KEY_HOOK);
lua_rawget(L, LUA_REGISTRYINDEX); /* get hook */
int mask = lua_gethookmask(L1);
lua_Hook hook = lua_gethook(L1);
if (hook != NULL && hook != hookf) /* external hook? */
lua_pushliteral(L, "external hook");
else {
gethooktable(L);
lua_pushthread(L1); lua_xmove(L1, L, 1);
lua_rawget(L, -2); /* get hook */
lua_remove(L, -2); /* remove hook table */
}
lua_pushstring(L, unmakemask(mask, buff));
lua_pushnumber(L, lua_getmaskcount(mask));
lua_pushinteger(L, lua_gethookcount(L1));
return 3;
}
static int debug (lua_State *L) {
static int db_debug (lua_State *L) {
for (;;) {
char buffer[250];
fputs("lua_debug> ", stderr);
luai_writestringerror("%s", "lua_debug> ");
if (fgets(buffer, sizeof(buffer), stdin) == 0 ||
strcmp(buffer, "cont\n") == 0)
return 0;
lua_dostring(L, buffer);
if (luaL_loadbuffer(L, buffer, strlen(buffer), "=(debug command)") ||
lua_pcall(L, 0, 0, 0))
luai_writestringerror("%s\n", lua_tostring(L, -1));
lua_settop(L, 0); /* remove eventual returns */
}
}
#define LEVELS1 12 /* size of the first part of the stack */
#define LEVELS2 10 /* size of the second part of the stack */
static int errorfb (lua_State *L) {
int level = 1; /* skip level 0 (it's this function) */
int firstpart = 1; /* still before eventual `...' */
lua_Debug ar;
if (lua_gettop(L) == 0)
lua_pushliteral(L, "");
else if (!lua_isstring(L, 1)) return 1; /* no string message */
lua_pushliteral(L, "stack traceback:\n");
while (lua_getstack(L, level++, &ar)) {
if (level > LEVELS1 && firstpart) {
/* no more than `LEVELS2' more levels? */
if (!lua_getstack(L, level+LEVELS2, &ar))
level--; /* keep going */
else {
lua_pushliteral(L, "\t...\n"); /* too many levels */
while (lua_getstack(L, level+LEVELS2, &ar)) /* find last levels */
level++;
}
firstpart = 0;
continue;
}
lua_pushliteral(L, "\t");
lua_getinfo(L, "Snl", &ar);
lua_pushfstring(L, "%s:", ar.short_src);
if (ar.currentline > 0)
lua_pushfstring(L, "%d:", ar.currentline);
switch (*ar.namewhat) {
case 'g': /* global */
case 'l': /* local */
case 'f': /* field */
case 'm': /* method */
lua_pushfstring(L, " in function `%s'", ar.name);
break;
default: {
if (*ar.what == 'm') /* main? */
lua_pushfstring(L, " in main chunk");
else if (*ar.what == 'C') /* C function? */
lua_pushfstring(L, "%s", ar.short_src);
else
lua_pushfstring(L, " in function <%s:%d>",
ar.short_src, ar.linedefined);
}
}
lua_pushliteral(L, "\n");
lua_concat(L, lua_gettop(L));
static int db_traceback (lua_State *L) {
int arg;
lua_State *L1 = getthread(L, &arg);
const char *msg = lua_tostring(L, arg + 1);
if (msg == NULL && !lua_isnoneornil(L, arg + 1)) /* non-string 'msg'? */
lua_pushvalue(L, arg + 1); /* return it untouched */
else {
int level = luaL_optint(L, arg + 2, (L == L1) ? 1 : 0);
luaL_traceback(L, L1, msg, level);
}
lua_concat(L, lua_gettop(L));
return 1;
}
static const luaL_reg dblib[] = {
{"getlocal", getlocal},
{"getinfo", getinfo},
{"gethook", gethook},
{"sethook", sethook},
{"setlocal", setlocal},
{"debug", debug},
{"traceback", errorfb},
static const luaL_Reg dblib[] = {
{"debug", db_debug},
{"getuservalue", db_getuservalue},
{"gethook", db_gethook},
{"getinfo", db_getinfo},
{"getlocal", db_getlocal},
{"getregistry", db_getregistry},
{"getmetatable", db_getmetatable},
{"getupvalue", db_getupvalue},
{"upvaluejoin", db_upvaluejoin},
{"upvalueid", db_upvalueid},
{"setuservalue", db_setuservalue},
{"sethook", db_sethook},
{"setlocal", db_setlocal},
{"setmetatable", db_setmetatable},
{"setupvalue", db_setupvalue},
{"traceback", db_traceback},
{NULL, NULL}
};
LUALIB_API int lua_dblibopen (lua_State *L) {
luaL_opennamedlib(L, LUA_DBLIBNAME, dblib, 0);
lua_pushliteral(L, "_TRACEBACK");
lua_pushcfunction(L, errorfb);
lua_settable(L, LUA_GLOBALSINDEX);
return 0;
LUAMOD_API int luaopen_debug (lua_State *L) {
luaL_newlib(L, dblib);
return 1;
}

737
ldebug.c
View File

@@ -1,13 +1,18 @@
/*
** $Id: ldebug.c,v 1.131 2002/08/08 20:08:41 roberto Exp roberto $
** $Id: ldebug.c,v 2.90.1.2 2013/05/06 17:20:22 roberto Exp roberto $
** Debug Interface
** See Copyright Notice in lua.h
*/
#include <stdlib.h>
#include <stdarg.h>
#include <stddef.h>
#include <string.h>
#define ldebug_c
#define LUA_CORE
#include "lua.h"
#include "lapi.h"
@@ -25,44 +30,37 @@
static const char *getfuncname (CallInfo *ci, const char **name);
#define noLuaClosure(f) ((f) == NULL || (f)->c.tt == LUA_TCCL)
#define isLua(ci) (!((ci)->state & CI_C))
static const char *getfuncname (lua_State *L, CallInfo *ci, const char **name);
static int currentpc (CallInfo *ci) {
if (!isLua(ci)) return -1; /* function is not a Lua function? */
if (ci->state & CI_HASFRAME) /* function has a frame? */
ci->u.l.savedpc = *ci->u.l.pc; /* use `pc' from there */
/* function's pc is saved */
return pcRel(ci->u.l.savedpc, ci_func(ci)->l.p);
lua_assert(isLua(ci));
return pcRel(ci->u.l.savedpc, ci_func(ci)->p);
}
static int currentline (CallInfo *ci) {
int pc = currentpc(ci);
if (pc < 0)
return -1; /* only active lua functions have current-line information */
else
return getline(ci_func(ci)->l.p, pc);
return getfuncline(ci_func(ci)->p, currentpc(ci));
}
LUA_API int lua_sethook (lua_State *L, lua_Hook func, unsigned long mask) {
int allow;
CallInfo *ci;
lua_lock(L);
allow = allowhook(L);
if (func == NULL) mask = 0;
else if (mask == 0) func = NULL;
/*
** this function can be called asynchronous (e.g. during a signal)
*/
LUA_API int lua_sethook (lua_State *L, lua_Hook func, int mask, int count) {
if (func == NULL || mask == 0) { /* turn off hooks? */
mask = 0;
func = NULL;
}
if (isLua(L->ci))
L->oldpc = L->ci->u.l.savedpc;
L->hook = func;
L->hookmask = mask;
setallowhook(L, allow);
L->basehookcount = count;
resethookcount(L);
for (ci = L->ci; ci != L->base_ci; ci--) /* update all `savedpc's */
currentpc(ci);
lua_unlock(L);
L->hookmask = cast_byte(mask);
return 1;
}
@@ -72,41 +70,93 @@ LUA_API lua_Hook lua_gethook (lua_State *L) {
}
LUA_API unsigned long lua_gethookmask (lua_State *L) {
LUA_API int lua_gethookmask (lua_State *L) {
return L->hookmask;
}
LUA_API int lua_gethookcount (lua_State *L) {
return L->basehookcount;
}
LUA_API int lua_getstack (lua_State *L, int level, lua_Debug *ar) {
int status;
CallInfo *ci;
if (level < 0) return 0; /* invalid (negative) level */
lua_lock(L);
if (L->ci - L->base_ci <= level) status = 0; /* there is no such level */
else {
ar->i_ci = (L->ci - L->base_ci) - level;
for (ci = L->ci; level > 0 && ci != &L->base_ci; ci = ci->previous)
level--;
if (level == 0 && ci != &L->base_ci) { /* level found? */
status = 1;
ar->i_ci = ci;
}
else status = 0; /* no such level */
lua_unlock(L);
return status;
}
static Proto *getluaproto (CallInfo *ci) {
return (isLua(ci) ? ci_func(ci)->l.p : NULL);
static const char *upvalname (Proto *p, int uv) {
TString *s = check_exp(uv < p->sizeupvalues, p->upvalues[uv].name);
if (s == NULL) return "?";
else return getstr(s);
}
static const char *findvararg (CallInfo *ci, int n, StkId *pos) {
int nparams = clLvalue(ci->func)->p->numparams;
if (n >= ci->u.l.base - ci->func - nparams)
return NULL; /* no such vararg */
else {
*pos = ci->func + nparams + n;
return "(*vararg)"; /* generic name for any vararg */
}
}
static const char *findlocal (lua_State *L, CallInfo *ci, int n,
StkId *pos) {
const char *name = NULL;
StkId base;
if (isLua(ci)) {
if (n < 0) /* access to vararg values? */
return findvararg(ci, -n, pos);
else {
base = ci->u.l.base;
name = luaF_getlocalname(ci_func(ci)->p, n, currentpc(ci));
}
}
else
base = ci->func + 1;
if (name == NULL) { /* no 'standard' name? */
StkId limit = (ci == L->ci) ? L->top : ci->next->func;
if (limit - base >= n && n > 0) /* is 'n' inside 'ci' stack? */
name = "(*temporary)"; /* generic name for any valid slot */
else
return NULL; /* no name */
}
*pos = base + (n - 1);
return name;
}
LUA_API const char *lua_getlocal (lua_State *L, const lua_Debug *ar, int n) {
const char *name;
CallInfo *ci;
Proto *fp;
lua_lock(L);
name = NULL;
ci = L->base_ci + ar->i_ci;
fp = getluaproto(ci);
if (fp) { /* is a Lua function? */
name = luaF_getlocalname(fp, n, currentpc(ci));
if (name)
luaA_pushobject(L, ci->base+(n-1)); /* push value */
if (ar == NULL) { /* information about non-active function? */
if (!isLfunction(L->top - 1)) /* not a Lua function? */
name = NULL;
else /* consider live variables at function start (parameters) */
name = luaF_getlocalname(clLvalue(L->top - 1)->p, n, 0);
}
else { /* active function; get information through 'ar' */
StkId pos = 0; /* to avoid warnings */
name = findlocal(L, ar->i_ci, n, &pos);
if (name) {
setobj2s(L, L->top, pos);
api_incr_top(L);
}
}
lua_unlock(L);
return name;
@@ -114,119 +164,131 @@ LUA_API const char *lua_getlocal (lua_State *L, const lua_Debug *ar, int n) {
LUA_API const char *lua_setlocal (lua_State *L, const lua_Debug *ar, int n) {
const char *name;
CallInfo *ci;
Proto *fp;
StkId pos = 0; /* to avoid warnings */
const char *name = findlocal(L, ar->i_ci, n, &pos);
lua_lock(L);
name = NULL;
ci = L->base_ci + ar->i_ci;
fp = getluaproto(ci);
L->top--; /* pop new value */
if (fp) { /* is a Lua function? */
name = luaF_getlocalname(fp, n, currentpc(ci));
if (!name || name[0] == '(') /* `(' starts private locals */
name = NULL;
else
setobj(ci->base+(n-1), L->top);
}
if (name)
setobjs2s(L, pos, L->top - 1);
L->top--; /* pop value */
lua_unlock(L);
return name;
}
static void infoLproto (lua_Debug *ar, Proto *f) {
ar->source = getstr(f->source);
ar->linedefined = f->lineDefined;
ar->what = "Lua";
}
static void funcinfo (lua_State *L, lua_Debug *ar, StkId func) {
Closure *cl;
if (ttisfunction(func))
cl = clvalue(func);
else {
luaG_runerror(L, "value for `lua_getinfo' is not a function");
cl = NULL; /* to avoid warnings */
}
if (cl->c.isC) {
static void funcinfo (lua_Debug *ar, Closure *cl) {
if (noLuaClosure(cl)) {
ar->source = "=[C]";
ar->linedefined = -1;
ar->lastlinedefined = -1;
ar->what = "C";
}
else
infoLproto(ar, cl->l.p);
luaO_chunkid(ar->short_src, ar->source, LUA_IDSIZE);
if (ar->linedefined == 0)
ar->what = "main";
}
static const char *travglobals (lua_State *L, const TObject *o) {
Table *g = hvalue(gt(L));
int i = sizenode(g);
while (i--) {
Node *n = node(g, i);
if (luaO_rawequalObj(o, val(n)) && ttisstring(key(n)))
return getstr(tsvalue(key(n)));
else {
Proto *p = cl->l.p;
ar->source = p->source ? getstr(p->source) : "=?";
ar->linedefined = p->linedefined;
ar->lastlinedefined = p->lastlinedefined;
ar->what = (ar->linedefined == 0) ? "main" : "Lua";
}
return NULL;
luaO_chunkid(ar->short_src, ar->source, LUA_IDSIZE);
}
static void getname (lua_State *L, const TObject *f, lua_Debug *ar) {
/* try to find a name for given function */
if ((ar->name = travglobals(L, f)) != NULL)
ar->namewhat = "global";
else ar->namewhat = ""; /* not found */
}
LUA_API int lua_getinfo (lua_State *L, const char *what, lua_Debug *ar) {
StkId f;
CallInfo *ci;
int status = 1;
lua_lock(L);
if (*what != '>') { /* function is active? */
ci = L->base_ci + ar->i_ci;
f = ci->base - 1;
static void collectvalidlines (lua_State *L, Closure *f) {
if (noLuaClosure(f)) {
setnilvalue(L->top);
api_incr_top(L);
}
else {
what++; /* skip the `>' */
ci = NULL;
f = L->top - 1;
int i;
TValue v;
int *lineinfo = f->l.p->lineinfo;
Table *t = luaH_new(L); /* new table to store active lines */
sethvalue(L, L->top, t); /* push it on stack */
api_incr_top(L);
setbvalue(&v, 1); /* boolean 'true' to be the value of all indices */
for (i = 0; i < f->l.p->sizelineinfo; i++) /* for all lines with code */
luaH_setint(L, t, lineinfo[i], &v); /* table[line] = true */
}
}
static int auxgetinfo (lua_State *L, const char *what, lua_Debug *ar,
Closure *f, CallInfo *ci) {
int status = 1;
for (; *what; what++) {
switch (*what) {
case 'S': {
funcinfo(L, ar, f);
funcinfo(ar, f);
break;
}
case 'l': {
ar->currentline = (ci) ? currentline(ci) : -1;
ar->currentline = (ci && isLua(ci)) ? currentline(ci) : -1;
break;
}
case 'u': {
ar->nups = (ttisfunction(f)) ? clvalue(f)->c.nupvalues : 0;
ar->nups = (f == NULL) ? 0 : f->c.nupvalues;
if (noLuaClosure(f)) {
ar->isvararg = 1;
ar->nparams = 0;
}
else {
ar->isvararg = f->l.p->is_vararg;
ar->nparams = f->l.p->numparams;
}
break;
}
case 't': {
ar->istailcall = (ci) ? ci->callstatus & CIST_TAIL : 0;
break;
}
case 'n': {
ar->namewhat = (ci) ? getfuncname(ci, &ar->name) : NULL;
if (ar->namewhat == NULL)
getname(L, f, ar);
/* calling function is a known Lua function? */
if (ci && !(ci->callstatus & CIST_TAIL) && isLua(ci->previous))
ar->namewhat = getfuncname(L, ci->previous, &ar->name);
else
ar->namewhat = NULL;
if (ar->namewhat == NULL) {
ar->namewhat = ""; /* not found */
ar->name = NULL;
}
break;
}
case 'f': {
setobj(L->top, f);
status = 2;
case 'L':
case 'f': /* handled by lua_getinfo */
break;
}
default: status = 0; /* invalid option */
}
}
if (!ci) L->top--; /* pop function */
if (status == 2) incr_top(L);
return status;
}
LUA_API int lua_getinfo (lua_State *L, const char *what, lua_Debug *ar) {
int status;
Closure *cl;
CallInfo *ci;
StkId func;
lua_lock(L);
if (*what == '>') {
ci = NULL;
func = L->top - 1;
api_check(L, ttisfunction(func), "function expected");
what++; /* skip the '>' */
L->top--; /* pop function */
}
else {
ci = ar->i_ci;
func = ci->func;
lua_assert(ttisfunction(ci->func));
}
cl = ttisclosure(func) ? clvalue(func) : NULL;
status = auxgetinfo(L, what, ar, cl, ci);
if (strchr(what, 'f')) {
setobjs2s(L, L->top, func);
api_incr_top(L);
}
if (strchr(what, 'L'))
collectvalidlines(L, cl);
lua_unlock(L);
return status;
}
@@ -234,315 +296,294 @@ LUA_API int lua_getinfo (lua_State *L, const char *what, lua_Debug *ar) {
/*
** {======================================================
** Symbolic Execution and code checker
** Symbolic Execution
** =======================================================
*/
#define check(x) if (!(x)) return 0;
#define checkjump(pt,pc) check(0 <= pc && pc < pt->sizecode)
#define checkreg(pt,reg) check((reg) < (pt)->maxstacksize)
static const char *getobjname (Proto *p, int lastpc, int reg,
const char **name);
static int precheck (const Proto *pt) {
check(pt->maxstacksize <= MAXSTACK);
lua_assert(pt->numparams+pt->is_vararg <= pt->maxstacksize);
check(GET_OPCODE(pt->code[pt->sizecode-1]) == OP_RETURN);
return 1;
}
static int checkopenop (const Proto *pt, int pc) {
Instruction i = pt->code[pc+1];
switch (GET_OPCODE(i)) {
case OP_CALL:
case OP_TAILCALL:
case OP_RETURN: {
check(GETARG_B(i) == 0);
return 1;
/*
** find a "name" for the RK value 'c'
*/
static void kname (Proto *p, int pc, int c, const char **name) {
if (ISK(c)) { /* is 'c' a constant? */
TValue *kvalue = &p->k[INDEXK(c)];
if (ttisstring(kvalue)) { /* literal constant? */
*name = svalue(kvalue); /* it is its own name */
return;
}
case OP_SETLISTO: return 1;
default: return 0; /* invalid instruction after an open call */
/* else no reasonable name found */
}
else { /* 'c' is a register */
const char *what = getobjname(p, pc, c, name); /* search for 'c' */
if (what && *what == 'c') { /* found a constant name? */
return; /* 'name' already filled */
}
/* else no reasonable name found */
}
*name = "?"; /* no reasonable name found */
}
static Instruction luaG_symbexec (const Proto *pt, int lastpc, int reg) {
static int filterpc (int pc, int jmptarget) {
if (pc < jmptarget) /* is code conditional (inside a jump)? */
return -1; /* cannot know who sets that register */
else return pc; /* current position sets that register */
}
/*
** try to find last instruction before 'lastpc' that modified register 'reg'
*/
static int findsetreg (Proto *p, int lastpc, int reg) {
int pc;
int last; /* stores position of last instruction that changed `reg' */
last = pt->sizecode-1; /* points to final return (a `neutral' instruction) */
check(precheck(pt));
int setreg = -1; /* keep last instruction that changed 'reg' */
int jmptarget = 0; /* any code before this address is conditional */
for (pc = 0; pc < lastpc; pc++) {
const Instruction i = pt->code[pc];
Instruction i = p->code[pc];
OpCode op = GET_OPCODE(i);
int a = GETARG_A(i);
int b = 0;
int c = 0;
checkreg(pt, a);
switch (getOpMode(op)) {
case iABC: {
b = GETARG_B(i);
c = GETARG_C(i);
if (testOpMode(op, OpModeBreg))
checkreg(pt, b);
if (testOpMode(op, OpModeCreg))
check(c < pt->maxstacksize ||
(c >= MAXSTACK && c-MAXSTACK < pt->sizek));
break;
}
case iABx: {
b = GETARG_Bx(i);
if (testOpMode(op, OpModeK)) check(b < pt->sizek);
break;
}
case iAsBx: {
b = GETARG_sBx(i);
break;
}
}
if (testOpMode(op, OpModesetA)) {
if (a == reg) last = pc; /* change register `a' */
}
if (testOpMode(op, OpModeT)) {
check(pc+2 < pt->sizecode); /* check skip */
check(GET_OPCODE(pt->code[pc+1]) == OP_JMP);
}
switch (op) {
case OP_LOADBOOL: {
check(c == 0 || pc+2 < pt->sizecode); /* check its jump */
break;
}
case OP_LOADNIL: {
if (a <= reg && reg <= b)
last = pc; /* set registers from `a' to `b' */
int b = GETARG_B(i);
if (a <= reg && reg <= a + b) /* set registers from 'a' to 'a+b' */
setreg = filterpc(pc, jmptarget);
break;
}
case OP_GETUPVAL:
case OP_SETUPVAL: {
check(b < pt->nupvalues);
break;
}
case OP_GETGLOBAL:
case OP_SETGLOBAL: {
check(ttisstring(&pt->k[b]));
break;
}
case OP_SELF: {
checkreg(pt, a+1);
if (reg == a+1) last = pc;
break;
}
case OP_CONCAT: {
/* `c' is a register, and at least two operands */
check(c < MAXSTACK && b < c);
break;
}
case OP_TFORLOOP:
checkreg(pt, a+2+c);
/* go through */
case OP_FORLOOP:
checkreg(pt, a+2);
/* go through */
case OP_JMP: {
int dest = pc+1+b;
check(0 <= dest && dest < pt->sizecode);
/* not full check and jump is forward and do not skip `lastpc'? */
if (reg != NO_REG && pc < dest && dest <= lastpc)
pc += b; /* do the jump */
case OP_TFORCALL: {
if (reg >= a + 2) /* affect all regs above its base */
setreg = filterpc(pc, jmptarget);
break;
}
case OP_CALL:
case OP_TAILCALL: {
if (b != 0) {
checkreg(pt, a+b-1);
}
c--; /* c = num. returns */
if (c == LUA_MULTRET) {
check(checkopenop(pt, pc));
}
else if (c != 0)
checkreg(pt, a+c-1);
if (reg >= a) last = pc; /* affect all registers above base */
if (reg >= a) /* affect all registers above base */
setreg = filterpc(pc, jmptarget);
break;
}
case OP_RETURN: {
b--; /* b = num. returns */
if (b > 0) checkreg(pt, a+b-1);
break;
}
case OP_SETLIST: {
checkreg(pt, a + (b&(LFIELDS_PER_FLUSH-1)) + 1);
break;
}
case OP_CLOSURE: {
int nup;
check(b < pt->sizep);
nup = pt->p[b]->nupvalues;
check(pc + nup < pt->sizecode);
for (; nup>0; nup--) {
OpCode op1 = GET_OPCODE(pt->code[pc+nup]);
check(op1 == OP_GETUPVAL || op1 == OP_MOVE);
case OP_JMP: {
int b = GETARG_sBx(i);
int dest = pc + 1 + b;
/* jump is forward and do not skip `lastpc'? */
if (pc < dest && dest <= lastpc) {
if (dest > jmptarget)
jmptarget = dest; /* update 'jmptarget' */
}
break;
}
default: break;
case OP_TEST: {
if (reg == a) /* jumped code can change 'a' */
setreg = filterpc(pc, jmptarget);
break;
}
default:
if (testAMode(op) && reg == a) /* any instruction that set A */
setreg = filterpc(pc, jmptarget);
break;
}
}
return pt->code[last];
return setreg;
}
#undef check
#undef checkjump
#undef checkreg
static const char *getobjname (Proto *p, int lastpc, int reg,
const char **name) {
int pc;
*name = luaF_getlocalname(p, reg + 1, lastpc);
if (*name) /* is a local? */
return "local";
/* else try symbolic execution */
pc = findsetreg(p, lastpc, reg);
if (pc != -1) { /* could find instruction? */
Instruction i = p->code[pc];
OpCode op = GET_OPCODE(i);
switch (op) {
case OP_MOVE: {
int b = GETARG_B(i); /* move from 'b' to 'a' */
if (b < GETARG_A(i))
return getobjname(p, pc, b, name); /* get name for 'b' */
break;
}
case OP_GETTABUP:
case OP_GETTABLE: {
int k = GETARG_C(i); /* key index */
int t = GETARG_B(i); /* table index */
const char *vn = (op == OP_GETTABLE) /* name of indexed variable */
? luaF_getlocalname(p, t + 1, pc)
: upvalname(p, t);
kname(p, pc, k, name);
return (vn && strcmp(vn, LUA_ENV) == 0) ? "global" : "field";
}
case OP_GETUPVAL: {
*name = upvalname(p, GETARG_B(i));
return "upvalue";
}
case OP_LOADK:
case OP_LOADKX: {
int b = (op == OP_LOADK) ? GETARG_Bx(i)
: GETARG_Ax(p->code[pc + 1]);
if (ttisstring(&p->k[b])) {
*name = svalue(&p->k[b]);
return "constant";
}
break;
}
case OP_SELF: {
int k = GETARG_C(i); /* key index */
kname(p, pc, k, name);
return "method";
}
default: break; /* go through to return NULL */
}
}
return NULL; /* could not find reasonable name */
}
static const char *getfuncname (lua_State *L, CallInfo *ci, const char **name) {
TMS tm;
Proto *p = ci_func(ci)->p; /* calling function */
int pc = currentpc(ci); /* calling instruction index */
Instruction i = p->code[pc]; /* calling instruction */
switch (GET_OPCODE(i)) {
case OP_CALL:
case OP_TAILCALL: /* get function name */
return getobjname(p, pc, GETARG_A(i), name);
case OP_TFORCALL: { /* for iterator */
*name = "for iterator";
return "for iterator";
}
/* all other instructions can call only through metamethods */
case OP_SELF:
case OP_GETTABUP:
case OP_GETTABLE: tm = TM_INDEX; break;
case OP_SETTABUP:
case OP_SETTABLE: tm = TM_NEWINDEX; break;
case OP_EQ: tm = TM_EQ; break;
case OP_ADD: tm = TM_ADD; break;
case OP_SUB: tm = TM_SUB; break;
case OP_MUL: tm = TM_MUL; break;
case OP_DIV: tm = TM_DIV; break;
case OP_MOD: tm = TM_MOD; break;
case OP_POW: tm = TM_POW; break;
case OP_UNM: tm = TM_UNM; break;
case OP_LEN: tm = TM_LEN; break;
case OP_LT: tm = TM_LT; break;
case OP_LE: tm = TM_LE; break;
case OP_CONCAT: tm = TM_CONCAT; break;
default:
return NULL; /* else no useful name can be found */
}
*name = getstr(G(L)->tmname[tm]);
return "metamethod";
}
/* }====================================================== */
int luaG_checkcode (const Proto *pt) {
return luaG_symbexec(pt, pt->sizecode, NO_REG);
}
static const char *kname (Proto *p, int c) {
c = c - MAXSTACK;
if (c >= 0 && ttisstring(&p->k[c]))
return svalue(&p->k[c]);
else
return "?";
}
static const char *getobjname (CallInfo *ci, int stackpos, const char **name) {
if (isLua(ci)) { /* a Lua function? */
Proto *p = ci_func(ci)->l.p;
int pc = currentpc(ci);
Instruction i;
*name = luaF_getlocalname(p, stackpos+1, pc);
if (*name) /* is a local? */
return "local";
i = luaG_symbexec(p, pc, stackpos); /* try symbolic execution */
lua_assert(pc != -1);
switch (GET_OPCODE(i)) {
case OP_GETGLOBAL: {
lua_assert(ttisstring(&p->k[GETARG_Bx(i)]));
*name = svalue(&p->k[GETARG_Bx(i)]);
return "global";
}
case OP_MOVE: {
int a = GETARG_A(i);
int b = GETARG_B(i); /* move from `b' to `a' */
if (b < a)
return getobjname(ci, b, name); /* get name for `b' */
break;
}
case OP_GETTABLE: {
*name = kname(p, GETARG_C(i));
return "field";
}
case OP_SELF: {
*name = kname(p, GETARG_C(i));
return "method";
}
default: break;
}
}
return NULL; /* no useful name found */
}
static Instruction getcurrentinstr (CallInfo *ci) {
return (!isLua(ci)) ? (Instruction)(-1) :
ci_func(ci)->l.p->code[currentpc(ci)];
}
static const char *getfuncname (CallInfo *ci, const char **name) {
Instruction i;
ci--; /* calling function */
i = getcurrentinstr(ci);
return (GET_OPCODE(i) == OP_CALL ? getobjname(ci, GETARG_A(i), name)
: NULL); /* no useful name found */
}
/* only ANSI way to check whether a pointer points to an array */
static int isinstack (CallInfo *ci, const TObject *o) {
/*
** only ANSI way to check whether a pointer points to an array
** (used only for error messages, so efficiency is not a big concern)
*/
static int isinstack (CallInfo *ci, const TValue *o) {
StkId p;
for (p = ci->base; p < ci->top; p++)
for (p = ci->u.l.base; p < ci->top; p++)
if (o == p) return 1;
return 0;
}
void luaG_typeerror (lua_State *L, const TObject *o, const char *op) {
static const char *getupvalname (CallInfo *ci, const TValue *o,
const char **name) {
LClosure *c = ci_func(ci);
int i;
for (i = 0; i < c->nupvalues; i++) {
if (c->upvals[i]->v == o) {
*name = upvalname(c->p, i);
return "upvalue";
}
}
return NULL;
}
l_noret luaG_typeerror (lua_State *L, const TValue *o, const char *op) {
CallInfo *ci = L->ci;
const char *name = NULL;
const char *t = luaT_typenames[ttype(o)];
const char *kind = (isinstack(L->ci, o)) ?
getobjname(L->ci, o - L->ci->base, &name) : NULL;
const char *t = objtypename(o);
const char *kind = NULL;
if (isLua(ci)) {
kind = getupvalname(ci, o, &name); /* check whether 'o' is an upvalue */
if (!kind && isinstack(ci, o)) /* no? try a register */
kind = getobjname(ci_func(ci)->p, currentpc(ci),
cast_int(o - ci->u.l.base), &name);
}
if (kind)
luaG_runerror(L, "attempt to %s %s `%s' (a %s value)",
luaG_runerror(L, "attempt to %s %s " LUA_QS " (a %s value)",
op, kind, name, t);
else
luaG_runerror(L, "attempt to %s a %s value", op, t);
}
void luaG_concaterror (lua_State *L, StkId p1, StkId p2) {
if (ttisstring(p1)) p1 = p2;
lua_assert(!ttisstring(p1));
luaG_typeerror(L, p1, "concat");
l_noret luaG_concaterror (lua_State *L, StkId p1, StkId p2) {
if (ttisstring(p1) || ttisnumber(p1)) p1 = p2;
lua_assert(!ttisstring(p1) && !ttisnumber(p1));
luaG_typeerror(L, p1, "concatenate");
}
void luaG_aritherror (lua_State *L, StkId p1, const TObject *p2) {
TObject temp;
l_noret luaG_aritherror (lua_State *L, const TValue *p1, const TValue *p2) {
TValue temp;
if (luaV_tonumber(p1, &temp) == NULL)
p2 = p1; /* first operand is wrong */
luaG_typeerror(L, p2, "perform arithmetic on");
}
int luaG_ordererror (lua_State *L, const TObject *p1, const TObject *p2) {
const char *t1 = luaT_typenames[ttype(p1)];
const char *t2 = luaT_typenames[ttype(p2)];
if (t1[2] == t2[2])
l_noret luaG_ordererror (lua_State *L, const TValue *p1, const TValue *p2) {
const char *t1 = objtypename(p1);
const char *t2 = objtypename(p2);
if (t1 == t2)
luaG_runerror(L, "attempt to compare two %s values", t1);
else
luaG_runerror(L, "attempt to compare %s with %s", t1, t2);
return 0;
}
static void addinfo (lua_State *L, const char *msg) {
CallInfo *ci = L->ci;
if (!isLua(ci)) { /* no Lua code? */
luaO_pushfstring(L, "%s\n", msg); /* no extra info; just add '\n' */
}
else { /* add file:line information */
char buff[LUA_IDSIZE];
if (isLua(ci)) { /* is Lua code? */
char buff[LUA_IDSIZE]; /* add file:line information */
int line = currentline(ci);
luaO_chunkid(buff, getstr(getluaproto(ci)->source), LUA_IDSIZE);
luaO_pushfstring(L, "%s:%d: %s\n", buff, line, msg);
TString *src = ci_func(ci)->p->source;
if (src)
luaO_chunkid(buff, getstr(src), LUA_IDSIZE);
else { /* no source available; use "?" instead */
buff[0] = '?'; buff[1] = '\0';
}
luaO_pushfstring(L, "%s:%d: %s", buff, line, msg);
}
}
void luaG_errormsg (lua_State *L) {
l_noret luaG_errormsg (lua_State *L) {
if (L->errfunc != 0) { /* is there an error handling function? */
StkId errfunc = restorestack(L, L->errfunc);
if (!ttisfunction(errfunc)) luaD_throw(L, LUA_ERRERR);
setobj(L->top, L->top - 1); /* move argument */
setobj(L->top - 1, errfunc); /* push function */
incr_top(L);
luaD_call(L, L->top - 2, 1); /* call it */
setobjs2s(L, L->top, L->top - 1); /* move argument */
setobjs2s(L, L->top - 1, errfunc); /* push function */
L->top++;
luaD_call(L, L->top - 2, 1, 0); /* call it */
}
luaD_throw(L, LUA_ERRRUN);
}
void luaG_runerror (lua_State *L, const char *fmt, ...) {
l_noret luaG_runerror (lua_State *L, const char *fmt, ...) {
va_list argp;
va_start(argp, fmt);
addinfo(L, luaO_pushvfstring(L, fmt, argp));

View File

@@ -1,5 +1,5 @@
/*
** $Id: ldebug.h,v 1.29 2002/08/08 20:08:41 roberto Exp roberto $
** $Id: ldebug.h,v 2.7 2011/10/07 20:45:19 roberto Exp $
** Auxiliary functions from Debug Interface module
** See Copyright Notice in lua.h
*/
@@ -13,21 +13,22 @@
#define pcRel(pc, p) (cast(int, (pc) - (p)->code) - 1)
#define getline(f,pc) (((f)->lineinfo) ? (f)->lineinfo[pc] : 0)
#define getfuncline(f,pc) (((f)->lineinfo) ? (f)->lineinfo[pc] : 0)
#define resethookcount(L) (L->hookcount = lua_getmaskcount(L->hookmask))
#define resethookcount(L) (L->hookcount = L->basehookcount)
#define setallowhook(L,cond) ((L->hookmask) = ((L->hookmask) & ~1) | (cond))
#define allowhook(L) ((L->hookmask) & 1)
/* Active Lua function (given call info) */
#define ci_func(ci) (clLvalue((ci)->func))
void luaG_typeerror (lua_State *L, const TObject *o, const char *opname);
void luaG_concaterror (lua_State *L, StkId p1, StkId p2);
void luaG_aritherror (lua_State *L, StkId p1, const TObject *p2);
int luaG_ordererror (lua_State *L, const TObject *p1, const TObject *p2);
void luaG_runerror (lua_State *L, const char *fmt, ...);
void luaG_errormsg (lua_State *L);
int luaG_checkcode (const Proto *pt);
LUAI_FUNC l_noret luaG_typeerror (lua_State *L, const TValue *o,
const char *opname);
LUAI_FUNC l_noret luaG_concaterror (lua_State *L, StkId p1, StkId p2);
LUAI_FUNC l_noret luaG_aritherror (lua_State *L, const TValue *p1,
const TValue *p2);
LUAI_FUNC l_noret luaG_ordererror (lua_State *L, const TValue *p1,
const TValue *p2);
LUAI_FUNC l_noret luaG_runerror (lua_State *L, const char *fmt, ...);
LUAI_FUNC l_noret luaG_errormsg (lua_State *L);
#endif

792
ldo.c
View File

@@ -1,5 +1,5 @@
/*
** $Id: ldo.c,v 1.191 2002/08/07 19:22:39 roberto Exp roberto $
** $Id: ldo.c,v 2.108.1.2 2013/04/19 21:03:23 roberto Exp roberto $
** Stack and Call structure of Lua
** See Copyright Notice in lua.h
*/
@@ -9,8 +9,12 @@
#include <stdlib.h>
#include <string.h>
#define ldo_c
#define LUA_CORE
#include "lua.h"
#include "lapi.h"
#include "ldebug.h"
#include "ldo.h"
#include "lfunc.h"
@@ -29,253 +33,354 @@
/*
** {======================================================
** Error-recovery functions (based on long jumps)
** Error-recovery functions
** =======================================================
*/
/*
** LUAI_THROW/LUAI_TRY define how Lua does exception handling. By
** default, Lua handles errors with exceptions when compiling as
** C++ code, with _longjmp/_setjmp when asked to use them, and with
** longjmp/setjmp otherwise.
*/
#if !defined(LUAI_THROW)
#if defined(__cplusplus) && !defined(LUA_USE_LONGJMP)
/* C++ exceptions */
#define LUAI_THROW(L,c) throw(c)
#define LUAI_TRY(L,c,a) \
try { a } catch(...) { if ((c)->status == 0) (c)->status = -1; }
#define luai_jmpbuf int /* dummy variable */
#elif defined(LUA_USE_ULONGJMP)
/* in Unix, try _longjmp/_setjmp (more efficient) */
#define LUAI_THROW(L,c) _longjmp((c)->b, 1)
#define LUAI_TRY(L,c,a) if (_setjmp((c)->b) == 0) { a }
#define luai_jmpbuf jmp_buf
#else
/* default handling with long jumps */
#define LUAI_THROW(L,c) longjmp((c)->b, 1)
#define LUAI_TRY(L,c,a) if (setjmp((c)->b) == 0) { a }
#define luai_jmpbuf jmp_buf
#endif
#endif
/* chain list of long jump buffers */
struct lua_longjmp {
struct lua_longjmp *previous;
jmp_buf b;
luai_jmpbuf b;
volatile int status; /* error code */
};
static void seterrorobj (lua_State *L, int errcode) {
static void seterrorobj (lua_State *L, int errcode, StkId oldtop) {
switch (errcode) {
case LUA_ERRMEM: {
setsvalue(L->top, luaS_new(L, MEMERRMSG));
case LUA_ERRMEM: { /* memory error? */
setsvalue2s(L, oldtop, G(L)->memerrmsg); /* reuse preregistered msg. */
break;
}
case LUA_ERRERR: {
setsvalue(L->top, luaS_new(L, "error in error handling"));
setsvalue2s(L, oldtop, luaS_newliteral(L, "error in error handling"));
break;
}
case LUA_ERRSYNTAX:
case LUA_ERRRUN: {
return; /* error message already on top */
default: {
setobjs2s(L, oldtop, L->top - 1); /* error message on current top */
break;
}
}
L->top++;
L->top = oldtop + 1;
}
void luaD_throw (lua_State *L, int errcode) {
if (L->errorJmp) {
L->errorJmp->status = errcode;
longjmp(L->errorJmp->b, 1);
l_noret luaD_throw (lua_State *L, int errcode) {
if (L->errorJmp) { /* thread has an error handler? */
L->errorJmp->status = errcode; /* set status */
LUAI_THROW(L, L->errorJmp); /* jump to it */
}
else {
G(L)->panic(L);
exit(EXIT_FAILURE);
else { /* thread has no error handler */
L->status = cast_byte(errcode); /* mark it as dead */
if (G(L)->mainthread->errorJmp) { /* main thread has a handler? */
setobjs2s(L, G(L)->mainthread->top++, L->top - 1); /* copy error obj. */
luaD_throw(G(L)->mainthread, errcode); /* re-throw in main thread */
}
else { /* no handler at all; abort */
if (G(L)->panic) { /* panic function? */
lua_unlock(L);
G(L)->panic(L); /* call it (last chance to jump out) */
}
abort();
}
}
}
int luaD_rawrunprotected (lua_State *L, Pfunc f, void *ud) {
unsigned short oldnCcalls = L->nCcalls;
struct lua_longjmp lj;
lj.status = 0;
lj.status = LUA_OK;
lj.previous = L->errorJmp; /* chain new error handler */
L->errorJmp = &lj;
if (setjmp(lj.b) == 0)
LUAI_TRY(L, &lj,
(*f)(L, ud);
);
L->errorJmp = lj.previous; /* restore old error handler */
L->nCcalls = oldnCcalls;
return lj.status;
}
static void restore_stack_limit (lua_State *L) {
L->stack_last = L->stack+L->stacksize-1;
if (L->size_ci > LUA_MAXCALLS) { /* there was an overflow? */
int inuse = (L->ci - L->base_ci);
if (inuse + 1 < LUA_MAXCALLS) /* can `undo' overflow? */
luaD_reallocCI(L, LUA_MAXCALLS);
}
}
/* }====================================================== */
static void correctstack (lua_State *L, TObject *oldstack) {
static void correctstack (lua_State *L, TValue *oldstack) {
CallInfo *ci;
UpVal *up;
GCObject *up;
L->top = (L->top - oldstack) + L->stack;
for (up = L->openupval; up != NULL; up = up->next)
up->v = (up->v - oldstack) + L->stack;
for (ci = L->base_ci; ci <= L->ci; ci++) {
ci->base = (ci->base - oldstack) + L->stack;
for (up = L->openupval; up != NULL; up = up->gch.next)
gco2uv(up)->v = (gco2uv(up)->v - oldstack) + L->stack;
for (ci = L->ci; ci != NULL; ci = ci->previous) {
ci->top = (ci->top - oldstack) + L->stack;
if (ci->state & CI_HASFRAME) /* Lua function with active frame? */
*ci->u.l.pb = (*ci->u.l.pb - oldstack) + L->stack; /* correct frame */
ci->func = (ci->func - oldstack) + L->stack;
if (isLua(ci))
ci->u.l.base = (ci->u.l.base - oldstack) + L->stack;
}
}
/* some space for error handling */
#define ERRORSTACKSIZE (LUAI_MAXSTACK + 200)
void luaD_reallocstack (lua_State *L, int newsize) {
TObject *oldstack = L->stack;
luaM_reallocvector(L, L->stack, L->stacksize, newsize, TObject);
TValue *oldstack = L->stack;
int lim = L->stacksize;
lua_assert(newsize <= LUAI_MAXSTACK || newsize == ERRORSTACKSIZE);
lua_assert(L->stack_last - L->stack == L->stacksize - EXTRA_STACK);
luaM_reallocvector(L, L->stack, L->stacksize, newsize, TValue);
for (; lim < newsize; lim++)
setnilvalue(L->stack + lim); /* erase new segment */
L->stacksize = newsize;
L->stack_last = L->stack+newsize-1-EXTRA_STACK;
L->stack_last = L->stack + newsize - EXTRA_STACK;
correctstack(L, oldstack);
}
void luaD_reallocCI (lua_State *L, int newsize) {
CallInfo *oldci = L->base_ci;
luaM_reallocvector(L, L->base_ci, L->size_ci, newsize, CallInfo);
L->size_ci = newsize;
L->ci = (L->ci - oldci) + L->base_ci;
L->end_ci = L->base_ci + L->size_ci;
}
void luaD_growstack (lua_State *L, int n) {
if (n <= L->stacksize) /* double size is enough? */
luaD_reallocstack(L, 2*L->stacksize);
else
luaD_reallocstack(L, L->stacksize + n + EXTRA_STACK);
}
static void luaD_growCI (lua_State *L) {
if (L->size_ci > LUA_MAXCALLS) /* overflow while handling overflow? */
int size = L->stacksize;
if (size > LUAI_MAXSTACK) /* error after extra size? */
luaD_throw(L, LUA_ERRERR);
else {
luaD_reallocCI(L, 2*L->size_ci);
if (L->size_ci > LUA_MAXCALLS)
int needed = cast_int(L->top - L->stack) + n + EXTRA_STACK;
int newsize = 2 * size;
if (newsize > LUAI_MAXSTACK) newsize = LUAI_MAXSTACK;
if (newsize < needed) newsize = needed;
if (newsize > LUAI_MAXSTACK) { /* stack overflow? */
luaD_reallocstack(L, ERRORSTACKSIZE);
luaG_runerror(L, "stack overflow");
}
else
luaD_reallocstack(L, newsize);
}
}
void luaD_callhook (lua_State *L, lua_Hookevent event, int line) {
static int stackinuse (lua_State *L) {
CallInfo *ci;
StkId lim = L->top;
for (ci = L->ci; ci != NULL; ci = ci->previous) {
lua_assert(ci->top <= L->stack_last);
if (lim < ci->top) lim = ci->top;
}
return cast_int(lim - L->stack) + 1; /* part of stack in use */
}
void luaD_shrinkstack (lua_State *L) {
int inuse = stackinuse(L);
int goodsize = inuse + (inuse / 8) + 2*EXTRA_STACK;
if (goodsize > LUAI_MAXSTACK) goodsize = LUAI_MAXSTACK;
if (inuse > LUAI_MAXSTACK || /* handling stack overflow? */
goodsize >= L->stacksize) /* would grow instead of shrink? */
condmovestack(L); /* don't change stack (change only for debugging) */
else
luaD_reallocstack(L, goodsize); /* shrink it */
}
void luaD_hook (lua_State *L, int event, int line) {
lua_Hook hook = L->hook;
if (hook && allowhook(L)) {
if (hook && L->allowhook) {
CallInfo *ci = L->ci;
ptrdiff_t top = savestack(L, L->top);
ptrdiff_t ci_top = savestack(L, L->ci->top);
ptrdiff_t ci_top = savestack(L, ci->top);
lua_Debug ar;
ar.event = event;
ar.currentline = line;
ar.i_ci = L->ci - L->base_ci;
ar.i_ci = ci;
luaD_checkstack(L, LUA_MINSTACK); /* ensure minimum stack size */
L->ci->top = L->top + LUA_MINSTACK;
setallowhook(L, 0); /* cannot call hooks inside a hook */
ci->top = L->top + LUA_MINSTACK;
lua_assert(ci->top <= L->stack_last);
L->allowhook = 0; /* cannot call hooks inside a hook */
ci->callstatus |= CIST_HOOKED;
lua_unlock(L);
(*hook)(L, &ar);
lua_lock(L);
lua_assert(!allowhook(L));
setallowhook(L, 1);
L->ci->top = restorestack(L, ci_top);
lua_assert(!L->allowhook);
L->allowhook = 1;
ci->top = restorestack(L, ci_top);
L->top = restorestack(L, top);
ci->callstatus &= ~CIST_HOOKED;
}
}
static void adjust_varargs (lua_State *L, int nfixargs, StkId base) {
int i;
Table *htab;
TObject nname;
int actual = L->top - base; /* actual number of arguments */
if (actual < nfixargs) {
luaD_checkstack(L, nfixargs - actual);
for (; actual < nfixargs; ++actual)
setnilvalue(L->top++);
static void callhook (lua_State *L, CallInfo *ci) {
int hook = LUA_HOOKCALL;
ci->u.l.savedpc++; /* hooks assume 'pc' is already incremented */
if (isLua(ci->previous) &&
GET_OPCODE(*(ci->previous->u.l.savedpc - 1)) == OP_TAILCALL) {
ci->callstatus |= CIST_TAIL;
hook = LUA_HOOKTAILCALL;
}
actual -= nfixargs; /* number of extra arguments */
htab = luaH_new(L, 0, 0); /* create `arg' table */
for (i=0; i<actual; i++) /* put extra arguments into `arg' table */
setobj(luaH_setnum(L, htab, i+1), L->top - actual + i);
/* store counter in field `n' */
setsvalue(&nname, luaS_newliteral(L, "n"));
setnvalue(luaH_set(L, htab, &nname), actual);
L->top -= actual; /* remove extra elements from the stack */
sethvalue(L->top, htab);
incr_top(L);
luaD_hook(L, hook, -1);
ci->u.l.savedpc--; /* correct 'pc' */
}
static StkId adjust_varargs (lua_State *L, Proto *p, int actual) {
int i;
int nfixargs = p->numparams;
StkId base, fixed;
lua_assert(actual >= nfixargs);
/* move fixed parameters to final position */
luaD_checkstack(L, p->maxstacksize); /* check again for new 'base' */
fixed = L->top - actual; /* first fixed argument */
base = L->top; /* final position of first argument */
for (i=0; i<nfixargs; i++) {
setobjs2s(L, L->top++, fixed + i);
setnilvalue(fixed + i);
}
return base;
}
static StkId tryfuncTM (lua_State *L, StkId func) {
const TObject *tm = luaT_gettmbyobj(L, func, TM_CALL);
const TValue *tm = luaT_gettmbyobj(L, func, TM_CALL);
StkId p;
ptrdiff_t funcr = savestack(L, func);
if (!ttisfunction(tm))
luaG_typeerror(L, func, "call");
/* Open a hole inside the stack at `func' */
for (p = L->top; p > func; p--) setobj(p, p-1);
for (p = L->top; p > func; p--) setobjs2s(L, p, p-1);
incr_top(L);
func = restorestack(L, funcr); /* previous call may change stack */
setobj(func, tm); /* tag method is the new function to be called */
setobj2s(L, func, tm); /* tag method is the new function to be called */
return func;
}
StkId luaD_precall (lua_State *L, StkId func) {
LClosure *cl;
#define next_ci(L) (L->ci = (L->ci->next ? L->ci->next : luaE_extendCI(L)))
/*
** returns true if function has been executed (C function)
*/
int luaD_precall (lua_State *L, StkId func, int nresults) {
lua_CFunction f;
CallInfo *ci;
int n; /* number of arguments (Lua) or returns (C) */
ptrdiff_t funcr = savestack(L, func);
if (!ttisfunction(func)) /* `func' is not a function? */
func = tryfuncTM(L, func); /* check the `function' tag method */
if (L->ci + 1 == L->end_ci) luaD_growCI(L);
cl = &clvalue(func)->l;
if (!cl->isC) { /* Lua function? prepare its call */
CallInfo *ci;
Proto *p = cl->p;
if (p->is_vararg) /* varargs? */
adjust_varargs(L, p->numparams, func+1);
luaD_checkstack(L, p->maxstacksize);
ci = ++L->ci; /* now `enter' new function */
ci->base = restorestack(L, funcr) + 1;
ci->top = ci->base + p->maxstacksize;
ci->u.l.savedpc = p->code; /* starting point */
ci->state = CI_SAVEDPC;
while (L->top < ci->top)
setnilvalue(L->top++);
L->top = ci->top;
return NULL;
}
else { /* if is a C function, call it */
CallInfo *ci;
int n;
luaD_checkstack(L, LUA_MINSTACK); /* ensure minimum stack size */
ci = ++L->ci; /* now `enter' new function */
ci->base = restorestack(L, funcr) + 1;
ci->top = L->top + LUA_MINSTACK;
ci->state = CI_C; /* a C function */
if (L->hookmask & LUA_MASKCALL) {
luaD_callhook(L, LUA_HOOKCALL, -1);
ci = L->ci; /* previous call may realocate `ci' */
switch (ttype(func)) {
case LUA_TLCF: /* light C function */
f = fvalue(func);
goto Cfunc;
case LUA_TCCL: { /* C closure */
f = clCvalue(func)->f;
Cfunc:
luaD_checkstack(L, LUA_MINSTACK); /* ensure minimum stack size */
ci = next_ci(L); /* now 'enter' new function */
ci->nresults = nresults;
ci->func = restorestack(L, funcr);
ci->top = L->top + LUA_MINSTACK;
lua_assert(ci->top <= L->stack_last);
ci->callstatus = 0;
luaC_checkGC(L); /* stack grow uses memory */
if (L->hookmask & LUA_MASKCALL)
luaD_hook(L, LUA_HOOKCALL, -1);
lua_unlock(L);
n = (*f)(L); /* do the actual call */
lua_lock(L);
api_checknelems(L, n);
luaD_poscall(L, L->top - n);
return 1;
}
case LUA_TLCL: { /* Lua function: prepare its call */
StkId base;
Proto *p = clLvalue(func)->p;
n = cast_int(L->top - func) - 1; /* number of real arguments */
luaD_checkstack(L, p->maxstacksize);
for (; n < p->numparams; n++)
setnilvalue(L->top++); /* complete missing arguments */
if (!p->is_vararg) {
func = restorestack(L, funcr);
base = func + 1;
}
else {
base = adjust_varargs(L, p, n);
func = restorestack(L, funcr); /* previous call can change stack */
}
ci = next_ci(L); /* now 'enter' new function */
ci->nresults = nresults;
ci->func = func;
ci->u.l.base = base;
ci->top = base + p->maxstacksize;
lua_assert(ci->top <= L->stack_last);
ci->u.l.savedpc = p->code; /* starting point */
ci->callstatus = CIST_LUA;
L->top = ci->top;
luaC_checkGC(L); /* stack grow uses memory */
if (L->hookmask & LUA_MASKCALL)
callhook(L, ci);
return 0;
}
default: { /* not a function */
func = tryfuncTM(L, func); /* retry with 'function' tag method */
return luaD_precall(L, func, nresults); /* now it must be a function */
}
lua_unlock(L);
#ifdef LUA_COMPATUPVALUES
lua_pushupvalues(L);
#endif
n = (*clvalue(ci->base-1)->c.f)(L); /* do the actual call */
lua_lock(L);
return L->top - n;
}
}
void luaD_poscall (lua_State *L, int wanted, StkId firstResult) {
int luaD_poscall (lua_State *L, StkId firstResult) {
StkId res;
if (L->hookmask & LUA_MASKRET) {
ptrdiff_t fr = savestack(L, firstResult); /* next call may change stack */
luaD_callhook(L, LUA_HOOKRET, -1);
firstResult = restorestack(L, fr);
int wanted, i;
CallInfo *ci = L->ci;
if (L->hookmask & (LUA_MASKRET | LUA_MASKLINE)) {
if (L->hookmask & LUA_MASKRET) {
ptrdiff_t fr = savestack(L, firstResult); /* hook may change stack */
luaD_hook(L, LUA_HOOKRET, -1);
firstResult = restorestack(L, fr);
}
L->oldpc = ci->previous->u.l.savedpc; /* 'oldpc' for caller function */
}
res = L->ci->base - 1; /* res == final position of 1st result */
L->ci--;
res = ci->func; /* res == final position of 1st result */
wanted = ci->nresults;
L->ci = ci = ci->previous; /* back to caller */
/* move results to correct place */
while (wanted != 0 && firstResult < L->top) {
setobj(res++, firstResult++);
wanted--;
}
while (wanted-- > 0)
for (i = wanted; i != 0 && firstResult < L->top; i--)
setobjs2s(L, res++, firstResult++);
while (i-- > 0)
setnilvalue(res++);
L->top = res;
luaC_checkGC(L);
return (wanted - LUA_MULTRET); /* 0 iff wanted == LUA_MULTRET */
}
@@ -284,177 +389,292 @@ void luaD_poscall (lua_State *L, int wanted, StkId firstResult) {
** The arguments are on the stack, right after the function.
** When returns, all the results are on the stack, starting at the original
** function position.
*/
void luaD_call (lua_State *L, StkId func, int nResults) {
StkId firstResult = luaD_precall(L, func);
if (firstResult == NULL) { /* is a Lua function? */
firstResult = luaV_execute(L); /* call it */
if (firstResult == NULL) {
luaD_poscall(L, 0, L->top);
luaG_runerror(L, "attempt to yield across tag-method/C-call boundary");
*/
void luaD_call (lua_State *L, StkId func, int nResults, int allowyield) {
if (++L->nCcalls >= LUAI_MAXCCALLS) {
if (L->nCcalls == LUAI_MAXCCALLS)
luaG_runerror(L, "C stack overflow");
else if (L->nCcalls >= (LUAI_MAXCCALLS + (LUAI_MAXCCALLS>>3)))
luaD_throw(L, LUA_ERRERR); /* error while handing stack error */
}
if (!allowyield) L->nny++;
if (!luaD_precall(L, func, nResults)) /* is a Lua function? */
luaV_execute(L); /* call it */
if (!allowyield) L->nny--;
L->nCcalls--;
}
static void finishCcall (lua_State *L) {
CallInfo *ci = L->ci;
int n;
lua_assert(ci->u.c.k != NULL); /* must have a continuation */
lua_assert(L->nny == 0);
if (ci->callstatus & CIST_YPCALL) { /* was inside a pcall? */
ci->callstatus &= ~CIST_YPCALL; /* finish 'lua_pcall' */
L->errfunc = ci->u.c.old_errfunc;
}
/* finish 'lua_callk'/'lua_pcall' */
adjustresults(L, ci->nresults);
/* call continuation function */
if (!(ci->callstatus & CIST_STAT)) /* no call status? */
ci->u.c.status = LUA_YIELD; /* 'default' status */
lua_assert(ci->u.c.status != LUA_OK);
ci->callstatus = (ci->callstatus & ~(CIST_YPCALL | CIST_STAT)) | CIST_YIELDED;
lua_unlock(L);
n = (*ci->u.c.k)(L);
lua_lock(L);
api_checknelems(L, n);
/* finish 'luaD_precall' */
luaD_poscall(L, L->top - n);
}
static void unroll (lua_State *L, void *ud) {
UNUSED(ud);
for (;;) {
if (L->ci == &L->base_ci) /* stack is empty? */
return; /* coroutine finished normally */
if (!isLua(L->ci)) /* C function? */
finishCcall(L);
else { /* Lua function */
luaV_finishOp(L); /* finish interrupted instruction */
luaV_execute(L); /* execute down to higher C 'boundary' */
}
}
luaD_poscall(L, nResults, firstResult);
}
LUA_API void lua_cobegin (lua_State *L, int nargs) {
lua_lock(L);
luaD_precall(L, L->top - (nargs+1));
lua_unlock(L);
}
static void move_results (lua_State *L, TObject *from, TObject *to) {
while (from < to) {
setobj(L->top, from);
from++;
incr_top(L);
}
}
static void resume (lua_State *L, void *ud) {
StkId firstResult;
CallInfo *ci = L->ci;
if (ci->state & CI_C) { /* not first time (i.e. inside a yield)? */
/* finish interrupted execution of `OP_CALL' */
int nresults;
lua_assert((ci-1)->state & CI_SAVEDPC);
lua_assert(GET_OPCODE(*((ci-1)->u.l.savedpc - 1)) == OP_CALL ||
GET_OPCODE(*((ci-1)->u.l.savedpc - 1)) == OP_TAILCALL);
nresults = GETARG_C(*((ci-1)->u.l.savedpc - 1)) - 1;
luaD_poscall(L, nresults, L->top); /* complete it */
if (nresults >= 0) L->top = L->ci->top;
}
firstResult = luaV_execute(L);
if (firstResult == NULL) /* yield? */
*cast(int *, ud) = L->ci->u.c.yield_results;
else { /* return */
*cast(int *, ud) = L->top - firstResult;
luaD_poscall(L, LUA_MULTRET, firstResult); /* finalize this coroutine */
}
}
LUA_API int lua_resume (lua_State *L, lua_State *co) {
CallInfo *ci;
int numres;
int status;
lua_lock(L);
ci = co->ci;
if (ci == co->base_ci) /* no activation record? ?? */
luaG_runerror(L, "cannot resume dead thread");
if (co->errorJmp != NULL) /* ?? */
luaG_runerror(L, "cannot resume active thread");
status = luaD_rawrunprotected(co, resume, &numres);
if (status == 0)
move_results(L, co->top - numres, co->top);
else {
setobj(L->top++, co->top - 1); /* move error message to other stack */
co->ci = co->base_ci; /* `kill' thread */
}
lua_unlock(L);
return status;
}
LUA_API int lua_yield (lua_State *L, int nresults) {
CallInfo *ci;
lua_lock(L);
ci = L->ci;
if ((ci-1)->state & CI_C)
luaG_runerror(L, "cannot yield a C function");
lua_assert(ci->state & CI_C); /* current function is not Lua */
ci->u.c.yield_results = nresults;
lua_unlock(L);
return -1;
}
/*
** Execute a protected call.
** check whether thread has a suspended protected call
*/
struct CallS { /* data to `f_call' */
StkId func;
int nresults;
};
static void f_call (lua_State *L, void *ud) {
struct CallS *c = cast(struct CallS *, ud);
luaD_call(L, c->func, c->nresults);
static CallInfo *findpcall (lua_State *L) {
CallInfo *ci;
for (ci = L->ci; ci != NULL; ci = ci->previous) { /* search for a pcall */
if (ci->callstatus & CIST_YPCALL)
return ci;
}
return NULL; /* no pending pcall */
}
int luaD_pcall (lua_State *L, int nargs, int nresults, ptrdiff_t errfunc) {
struct CallS c;
static int recover (lua_State *L, int status) {
StkId oldtop;
CallInfo *ci = findpcall(L);
if (ci == NULL) return 0; /* no recovery point */
/* "finish" luaD_pcall */
oldtop = restorestack(L, ci->extra);
luaF_close(L, oldtop);
seterrorobj(L, status, oldtop);
L->ci = ci;
L->allowhook = ci->u.c.old_allowhook;
L->nny = 0; /* should be zero to be yieldable */
luaD_shrinkstack(L);
L->errfunc = ci->u.c.old_errfunc;
ci->callstatus |= CIST_STAT; /* call has error status */
ci->u.c.status = status; /* (here it is) */
return 1; /* continue running the coroutine */
}
/*
** signal an error in the call to 'resume', not in the execution of the
** coroutine itself. (Such errors should not be handled by any coroutine
** error handler and should not kill the coroutine.)
*/
static l_noret resume_error (lua_State *L, const char *msg, StkId firstArg) {
L->top = firstArg; /* remove args from the stack */
setsvalue2s(L, L->top, luaS_new(L, msg)); /* push error message */
api_incr_top(L);
luaD_throw(L, -1); /* jump back to 'lua_resume' */
}
/*
** do the work for 'lua_resume' in protected mode
*/
static void resume (lua_State *L, void *ud) {
int nCcalls = L->nCcalls;
StkId firstArg = cast(StkId, ud);
CallInfo *ci = L->ci;
if (nCcalls >= LUAI_MAXCCALLS)
resume_error(L, "C stack overflow", firstArg);
if (L->status == LUA_OK) { /* may be starting a coroutine */
if (ci != &L->base_ci) /* not in base level? */
resume_error(L, "cannot resume non-suspended coroutine", firstArg);
/* coroutine is in base level; start running it */
if (!luaD_precall(L, firstArg - 1, LUA_MULTRET)) /* Lua function? */
luaV_execute(L); /* call it */
}
else if (L->status != LUA_YIELD)
resume_error(L, "cannot resume dead coroutine", firstArg);
else { /* resuming from previous yield */
L->status = LUA_OK;
ci->func = restorestack(L, ci->extra);
if (isLua(ci)) /* yielded inside a hook? */
luaV_execute(L); /* just continue running Lua code */
else { /* 'common' yield */
if (ci->u.c.k != NULL) { /* does it have a continuation? */
int n;
ci->u.c.status = LUA_YIELD; /* 'default' status */
ci->callstatus |= CIST_YIELDED;
lua_unlock(L);
n = (*ci->u.c.k)(L); /* call continuation */
lua_lock(L);
api_checknelems(L, n);
firstArg = L->top - n; /* yield results come from continuation */
}
luaD_poscall(L, firstArg); /* finish 'luaD_precall' */
}
unroll(L, NULL);
}
lua_assert(nCcalls == L->nCcalls);
}
LUA_API int lua_resume (lua_State *L, lua_State *from, int nargs) {
int status;
ptrdiff_t old_top = savestack(L, L->top);
ptrdiff_t old_ci = saveci(L, L->ci);
int old_allowhooks = allowhook(L);
int oldnny = L->nny; /* save 'nny' */
lua_lock(L);
luai_userstateresume(L, nargs);
L->nCcalls = (from) ? from->nCcalls + 1 : 1;
L->nny = 0; /* allow yields */
api_checknelems(L, (L->status == LUA_OK) ? nargs + 1 : nargs);
status = luaD_rawrunprotected(L, resume, L->top - nargs);
if (status == -1) /* error calling 'lua_resume'? */
status = LUA_ERRRUN;
else { /* yield or regular error */
while (status != LUA_OK && status != LUA_YIELD) { /* error? */
if (recover(L, status)) /* recover point? */
status = luaD_rawrunprotected(L, unroll, NULL); /* run continuation */
else { /* unrecoverable error */
L->status = cast_byte(status); /* mark thread as `dead' */
seterrorobj(L, status, L->top);
L->ci->top = L->top;
break;
}
}
lua_assert(status == L->status);
}
L->nny = oldnny; /* restore 'nny' */
L->nCcalls--;
lua_assert(L->nCcalls == ((from) ? from->nCcalls : 0));
lua_unlock(L);
return status;
}
LUA_API int lua_yieldk (lua_State *L, int nresults, int ctx, lua_CFunction k) {
CallInfo *ci = L->ci;
luai_userstateyield(L, nresults);
lua_lock(L);
api_checknelems(L, nresults);
if (L->nny > 0) {
if (L != G(L)->mainthread)
luaG_runerror(L, "attempt to yield across a C-call boundary");
else
luaG_runerror(L, "attempt to yield from outside a coroutine");
}
L->status = LUA_YIELD;
ci->extra = savestack(L, ci->func); /* save current 'func' */
if (isLua(ci)) { /* inside a hook? */
api_check(L, k == NULL, "hooks cannot continue after yielding");
}
else {
if ((ci->u.c.k = k) != NULL) /* is there a continuation? */
ci->u.c.ctx = ctx; /* save context */
ci->func = L->top - nresults - 1; /* protect stack below results */
luaD_throw(L, LUA_YIELD);
}
lua_assert(ci->callstatus & CIST_HOOKED); /* must be inside a hook */
lua_unlock(L);
return 0; /* return to 'luaD_hook' */
}
int luaD_pcall (lua_State *L, Pfunc func, void *u,
ptrdiff_t old_top, ptrdiff_t ef) {
int status;
CallInfo *old_ci = L->ci;
lu_byte old_allowhooks = L->allowhook;
unsigned short old_nny = L->nny;
ptrdiff_t old_errfunc = L->errfunc;
L->errfunc = errfunc;
c.func = L->top - (nargs+1); /* function to be called */
c.nresults = nresults;
status = luaD_rawrunprotected(L, &f_call, &c);
if (status != 0) { /* an error occurred? */
StkId err; /* error msg. position */
seterrorobj(L, status);
err = L->top - 1;
/* remove parameters and func from the stack */
L->top = restorestack(L, old_top) - (nargs+1);
setobj(L->top++, err); /* copy error message to corrected top */
luaF_close(L, L->top); /* close eventual pending closures */
L->ci = restoreci(L, old_ci);
setallowhook(L, old_allowhooks);
restore_stack_limit(L);
L->errfunc = ef;
status = luaD_rawrunprotected(L, func, u);
if (status != LUA_OK) { /* an error occurred? */
StkId oldtop = restorestack(L, old_top);
luaF_close(L, oldtop); /* close possible pending closures */
seterrorobj(L, status, oldtop);
L->ci = old_ci;
L->allowhook = old_allowhooks;
L->nny = old_nny;
luaD_shrinkstack(L);
}
L->errfunc = old_errfunc;
return status;
}
/*
** Execute a protected parser.
*/
struct SParser { /* data to `f_parser' */
ZIO *z;
int bin;
Mbuffer buff; /* dynamic structure used by the scanner */
Dyndata dyd; /* dynamic structures used by the parser */
const char *mode;
const char *name;
};
static void f_parser (lua_State *L, void *ud) {
struct SParser *p = cast(struct SParser *, ud);
Proto *tf = p->bin ? luaU_undump(L, p->z) : luaY_parser(L, p->z);
Closure *cl = luaF_newLclosure(L, 0, gt(L));
cl->l.p = tf;
setclvalue(L->top, cl);
incr_top(L);
static void checkmode (lua_State *L, const char *mode, const char *x) {
if (mode && strchr(mode, x[0]) == NULL) {
luaO_pushfstring(L,
"attempt to load a %s chunk (mode is " LUA_QS ")", x, mode);
luaD_throw(L, LUA_ERRSYNTAX);
}
}
int luaD_protectedparser (lua_State *L, ZIO *z, int bin) {
static void f_parser (lua_State *L, void *ud) {
int i;
Closure *cl;
struct SParser *p = cast(struct SParser *, ud);
int c = zgetc(p->z); /* read first character */
if (c == LUA_SIGNATURE[0]) {
checkmode(L, p->mode, "binary");
cl = luaU_undump(L, p->z, &p->buff, p->name);
}
else {
checkmode(L, p->mode, "text");
cl = luaY_parser(L, p->z, &p->buff, &p->dyd, p->name, c);
}
lua_assert(cl->l.nupvalues == cl->l.p->sizeupvalues);
for (i = 0; i < cl->l.nupvalues; i++) { /* initialize upvalues */
UpVal *up = luaF_newupval(L);
cl->l.upvals[i] = up;
luaC_objbarrier(L, cl, up);
}
}
int luaD_protectedparser (lua_State *L, ZIO *z, const char *name,
const char *mode) {
struct SParser p;
lu_mem old_blocks;
int status;
ptrdiff_t oldtopr = savestack(L, L->top); /* save current top */
p.z = z; p.bin = bin;
/* before parsing, give a (good) chance to GC */
if (G(L)->nblocks + G(L)->nblocks/4 >= G(L)->GCthreshold)
luaC_collectgarbage(L);
old_blocks = G(L)->nblocks;
status = luaD_rawrunprotected(L, f_parser, &p);
if (status == 0) {
/* add new memory to threshold (as it probably will stay) */
lua_assert(G(L)->nblocks >= old_blocks);
G(L)->GCthreshold += (G(L)->nblocks - old_blocks);
}
else { /* error */
StkId oldtop = restorestack(L, oldtopr);
seterrorobj(L, status);
setobj(oldtop, L->top - 1); /* copy error message to old top */
L->top = oldtop+1;
}
L->nny++; /* cannot yield during parsing */
p.z = z; p.name = name; p.mode = mode;
p.dyd.actvar.arr = NULL; p.dyd.actvar.size = 0;
p.dyd.gt.arr = NULL; p.dyd.gt.size = 0;
p.dyd.label.arr = NULL; p.dyd.label.size = 0;
luaZ_initbuffer(L, &p.buff);
status = luaD_pcall(L, f_parser, &p, savestack(L, L->top), L->errfunc);
luaZ_freebuffer(L, &p.buff);
luaM_freearray(L, p.dyd.actvar.arr, p.dyd.actvar.size);
luaM_freearray(L, p.dyd.gt.arr, p.dyd.gt.size);
luaM_freearray(L, p.dyd.label.arr, p.dyd.label.size);
L->nny--;
return status;
}

48
ldo.h
View File

@@ -1,5 +1,5 @@
/*
** $Id: ldo.h,v 1.50 2002/08/06 15:32:22 roberto Exp roberto $
** $Id: ldo.h,v 2.20 2011/11/29 15:55:08 roberto Exp $
** Stack and Call structure of Lua
** See Copyright Notice in lua.h
*/
@@ -13,40 +13,34 @@
#include "lzio.h"
/*
** macro to increment stack top.
** There must be always an empty slot at the L->stack.top
*/
#define incr_top(L) \
{if (L->top >= L->stack_last) luaD_growstack(L, 1); L->top++;}
#define luaD_checkstack(L,n) if (L->stack_last - L->top <= (n)) \
luaD_growstack(L, n); else condmovestack(L);
#define luaD_checkstack(L,n) \
if ((char *)L->stack_last - (char *)L->top <= (n)*(int)sizeof(TObject)) \
luaD_growstack(L, n)
#define incr_top(L) {L->top++; luaD_checkstack(L,0);}
#define savestack(L,p) ((char *)(p) - (char *)L->stack)
#define restorestack(L,n) ((TObject *)((char *)L->stack + (n)))
#define saveci(L,p) ((char *)(p) - (char *)L->base_ci)
#define restoreci(L,n) ((CallInfo *)((char *)L->base_ci + (n)))
#define restorestack(L,n) ((TValue *)((char *)L->stack + (n)))
/* type of protected functions, to be ran by `runprotected' */
typedef void (*Pfunc) (lua_State *L, void *ud);
void luaD_resetprotection (lua_State *L);
int luaD_protectedparser (lua_State *L, ZIO *z, int bin);
void luaD_callhook (lua_State *L, lua_Hookevent event, int line);
StkId luaD_precall (lua_State *L, StkId func);
void luaD_call (lua_State *L, StkId func, int nResults);
int luaD_pcall (lua_State *L, int nargs, int nresults, ptrdiff_t errfunc);
void luaD_poscall (lua_State *L, int wanted, StkId firstResult);
void luaD_reallocCI (lua_State *L, int newsize);
void luaD_reallocstack (lua_State *L, int newsize);
void luaD_growstack (lua_State *L, int n);
void luaD_throw (lua_State *L, int errcode);
int luaD_rawrunprotected (lua_State *L, Pfunc f, void *ud);
LUAI_FUNC int luaD_protectedparser (lua_State *L, ZIO *z, const char *name,
const char *mode);
LUAI_FUNC void luaD_hook (lua_State *L, int event, int line);
LUAI_FUNC int luaD_precall (lua_State *L, StkId func, int nresults);
LUAI_FUNC void luaD_call (lua_State *L, StkId func, int nResults,
int allowyield);
LUAI_FUNC int luaD_pcall (lua_State *L, Pfunc func, void *u,
ptrdiff_t oldtop, ptrdiff_t ef);
LUAI_FUNC int luaD_poscall (lua_State *L, StkId firstResult);
LUAI_FUNC void luaD_reallocstack (lua_State *L, int newsize);
LUAI_FUNC void luaD_growstack (lua_State *L, int n);
LUAI_FUNC void luaD_shrinkstack (lua_State *L);
LUAI_FUNC l_noret luaD_throw (lua_State *L, int errcode);
LUAI_FUNC int luaD_rawrunprotected (lua_State *L, Pfunc f, void *ud);
#endif

173
ldump.c Normal file
View File

@@ -0,0 +1,173 @@
/*
** $Id: ldump.c,v 2.17 2012/01/23 23:02:10 roberto Exp $
** save precompiled Lua chunks
** See Copyright Notice in lua.h
*/
#include <stddef.h>
#define ldump_c
#define LUA_CORE
#include "lua.h"
#include "lobject.h"
#include "lstate.h"
#include "lundump.h"
typedef struct {
lua_State* L;
lua_Writer writer;
void* data;
int strip;
int status;
} DumpState;
#define DumpMem(b,n,size,D) DumpBlock(b,(n)*(size),D)
#define DumpVar(x,D) DumpMem(&x,1,sizeof(x),D)
static void DumpBlock(const void* b, size_t size, DumpState* D)
{
if (D->status==0)
{
lua_unlock(D->L);
D->status=(*D->writer)(D->L,b,size,D->data);
lua_lock(D->L);
}
}
static void DumpChar(int y, DumpState* D)
{
char x=(char)y;
DumpVar(x,D);
}
static void DumpInt(int x, DumpState* D)
{
DumpVar(x,D);
}
static void DumpNumber(lua_Number x, DumpState* D)
{
DumpVar(x,D);
}
static void DumpVector(const void* b, int n, size_t size, DumpState* D)
{
DumpInt(n,D);
DumpMem(b,n,size,D);
}
static void DumpString(const TString* s, DumpState* D)
{
if (s==NULL)
{
size_t size=0;
DumpVar(size,D);
}
else
{
size_t size=s->tsv.len+1; /* include trailing '\0' */
DumpVar(size,D);
DumpBlock(getstr(s),size*sizeof(char),D);
}
}
#define DumpCode(f,D) DumpVector(f->code,f->sizecode,sizeof(Instruction),D)
static void DumpFunction(const Proto* f, DumpState* D);
static void DumpConstants(const Proto* f, DumpState* D)
{
int i,n=f->sizek;
DumpInt(n,D);
for (i=0; i<n; i++)
{
const TValue* o=&f->k[i];
DumpChar(ttypenv(o),D);
switch (ttypenv(o))
{
case LUA_TNIL:
break;
case LUA_TBOOLEAN:
DumpChar(bvalue(o),D);
break;
case LUA_TNUMBER:
DumpNumber(nvalue(o),D);
break;
case LUA_TSTRING:
DumpString(rawtsvalue(o),D);
break;
default: lua_assert(0);
}
}
n=f->sizep;
DumpInt(n,D);
for (i=0; i<n; i++) DumpFunction(f->p[i],D);
}
static void DumpUpvalues(const Proto* f, DumpState* D)
{
int i,n=f->sizeupvalues;
DumpInt(n,D);
for (i=0; i<n; i++)
{
DumpChar(f->upvalues[i].instack,D);
DumpChar(f->upvalues[i].idx,D);
}
}
static void DumpDebug(const Proto* f, DumpState* D)
{
int i,n;
DumpString((D->strip) ? NULL : f->source,D);
n= (D->strip) ? 0 : f->sizelineinfo;
DumpVector(f->lineinfo,n,sizeof(int),D);
n= (D->strip) ? 0 : f->sizelocvars;
DumpInt(n,D);
for (i=0; i<n; i++)
{
DumpString(f->locvars[i].varname,D);
DumpInt(f->locvars[i].startpc,D);
DumpInt(f->locvars[i].endpc,D);
}
n= (D->strip) ? 0 : f->sizeupvalues;
DumpInt(n,D);
for (i=0; i<n; i++) DumpString(f->upvalues[i].name,D);
}
static void DumpFunction(const Proto* f, DumpState* D)
{
DumpInt(f->linedefined,D);
DumpInt(f->lastlinedefined,D);
DumpChar(f->numparams,D);
DumpChar(f->is_vararg,D);
DumpChar(f->maxstacksize,D);
DumpCode(f,D);
DumpConstants(f,D);
DumpUpvalues(f,D);
DumpDebug(f,D);
}
static void DumpHeader(DumpState* D)
{
lu_byte h[LUAC_HEADERSIZE];
luaU_header(h);
DumpBlock(h,LUAC_HEADERSIZE,D);
}
/*
** dump Lua function as precompiled chunk
*/
int luaU_dump (lua_State* L, const Proto* f, lua_Writer w, void* data, int strip)
{
DumpState D;
D.L=L;
D.writer=w;
D.data=data;
D.strip=strip;
D.status=0;
DumpHeader(&D);
DumpFunction(f,&D);
return D.status;
}

150
lfunc.c
View File

@@ -1,117 +1,145 @@
/*
** $Id: lfunc.c,v 1.56 2002/05/02 13:06:20 roberto Exp roberto $
** $Id: lfunc.c,v 2.30 2012/10/03 12:36:46 roberto Exp $
** Auxiliary functions to manipulate prototypes and closures
** See Copyright Notice in lua.h
*/
#include <stdlib.h>
#include <stddef.h>
#define lfunc_c
#define LUA_CORE
#include "lua.h"
#include "lfunc.h"
#include "lgc.h"
#include "lmem.h"
#include "lobject.h"
#include "lstate.h"
#define sizeCclosure(n) (cast(int, sizeof(CClosure)) + \
cast(int, sizeof(TObject)*((n)-1)))
#define sizeLclosure(n) (cast(int, sizeof(LClosure)) + \
cast(int, sizeof(TObject *)*((n)-1)))
Closure *luaF_newCclosure (lua_State *L, int nelems) {
Closure *c = cast(Closure *, luaM_malloc(L, sizeCclosure(nelems)));
c->c.isC = 1;
c->c.next = G(L)->rootcl;
G(L)->rootcl = c;
c->c.marked = 0;
c->c.nupvalues = cast(lu_byte, nelems);
Closure *luaF_newCclosure (lua_State *L, int n) {
Closure *c = &luaC_newobj(L, LUA_TCCL, sizeCclosure(n), NULL, 0)->cl;
c->c.nupvalues = cast_byte(n);
return c;
}
Closure *luaF_newLclosure (lua_State *L, int nelems, TObject *gt) {
Closure *c = cast(Closure *, luaM_malloc(L, sizeLclosure(nelems)));
c->l.isC = 0;
c->c.next = G(L)->rootcl;
G(L)->rootcl = c;
c->l.marked = 0;
c->l.g = *gt;
c->l.nupvalues = cast(lu_byte, nelems);
Closure *luaF_newLclosure (lua_State *L, int n) {
Closure *c = &luaC_newobj(L, LUA_TLCL, sizeLclosure(n), NULL, 0)->cl;
c->l.p = NULL;
c->l.nupvalues = cast_byte(n);
while (n--) c->l.upvals[n] = NULL;
return c;
}
UpVal *luaF_newupval (lua_State *L) {
UpVal *uv = &luaC_newobj(L, LUA_TUPVAL, sizeof(UpVal), NULL, 0)->uv;
uv->v = &uv->u.value;
setnilvalue(uv->v);
return uv;
}
UpVal *luaF_findupval (lua_State *L, StkId level) {
UpVal **pp = &L->openupval;
global_State *g = G(L);
GCObject **pp = &L->openupval;
UpVal *p;
while ((p = *pp) != NULL && p->v >= level) {
if (p->v == level) return p;
UpVal *uv;
while (*pp != NULL && (p = gco2uv(*pp))->v >= level) {
GCObject *o = obj2gco(p);
lua_assert(p->v != &p->u.value);
lua_assert(!isold(o) || isold(obj2gco(L)));
if (p->v == level) { /* found a corresponding upvalue? */
if (isdead(g, o)) /* is it dead? */
changewhite(o); /* resurrect it */
return p;
}
pp = &p->next;
}
p = luaM_new(L, UpVal); /* not found: create a new one */
p->v = level; /* current value lives in the stack */
p->next = *pp; /* chain it in the proper position */
*pp = p;
return p;
/* not found: create a new one */
uv = &luaC_newobj(L, LUA_TUPVAL, sizeof(UpVal), pp, 0)->uv;
uv->v = level; /* current value lives in the stack */
uv->u.l.prev = &g->uvhead; /* double link it in `uvhead' list */
uv->u.l.next = g->uvhead.u.l.next;
uv->u.l.next->u.l.prev = uv;
g->uvhead.u.l.next = uv;
lua_assert(uv->u.l.next->u.l.prev == uv && uv->u.l.prev->u.l.next == uv);
return uv;
}
static void unlinkupval (UpVal *uv) {
lua_assert(uv->u.l.next->u.l.prev == uv && uv->u.l.prev->u.l.next == uv);
uv->u.l.next->u.l.prev = uv->u.l.prev; /* remove from `uvhead' list */
uv->u.l.prev->u.l.next = uv->u.l.next;
}
void luaF_freeupval (lua_State *L, UpVal *uv) {
if (uv->v != &uv->u.value) /* is it open? */
unlinkupval(uv); /* remove from open list */
luaM_free(L, uv); /* free upvalue */
}
void luaF_close (lua_State *L, StkId level) {
UpVal *p;
while ((p = L->openupval) != NULL && p->v >= level) {
setobj(&p->value, p->v); /* save current value */
p->v = &p->value; /* now current value lives here */
L->openupval = p->next; /* remove from `open' list */
p->next = G(L)->rootupval; /* chain in `closed' list */
G(L)->rootupval = p;
UpVal *uv;
global_State *g = G(L);
while (L->openupval != NULL && (uv = gco2uv(L->openupval))->v >= level) {
GCObject *o = obj2gco(uv);
lua_assert(!isblack(o) && uv->v != &uv->u.value);
L->openupval = uv->next; /* remove from `open' list */
if (isdead(g, o))
luaF_freeupval(L, uv); /* free upvalue */
else {
unlinkupval(uv); /* remove upvalue from 'uvhead' list */
setobj(L, &uv->u.value, uv->v); /* move value to upvalue slot */
uv->v = &uv->u.value; /* now current value lives here */
gch(o)->next = g->allgc; /* link upvalue into 'allgc' list */
g->allgc = o;
luaC_checkupvalcolor(g, uv);
}
}
}
Proto *luaF_newproto (lua_State *L) {
Proto *f = luaM_new(L, Proto);
Proto *f = &luaC_newobj(L, LUA_TPROTO, sizeof(Proto), NULL, 0)->p;
f->k = NULL;
f->sizek = 0;
f->p = NULL;
f->sizep = 0;
f->code = NULL;
f->cache = NULL;
f->sizecode = 0;
f->nupvalues = 0;
f->lineinfo = NULL;
f->sizelineinfo = 0;
f->upvalues = NULL;
f->sizeupvalues = 0;
f->numparams = 0;
f->is_vararg = 0;
f->maxstacksize = 0;
f->marked = 0;
f->lineinfo = NULL;
f->sizelocvars = 0;
f->locvars = NULL;
f->lineDefined = 0;
f->sizelocvars = 0;
f->linedefined = 0;
f->lastlinedefined = 0;
f->source = NULL;
f->next = G(L)->rootproto; /* chain in list of protos */
G(L)->rootproto = f;
return f;
}
void luaF_freeproto (lua_State *L, Proto *f) {
luaM_freearray(L, f->code, f->sizecode, Instruction);
if (f->lineinfo)
luaM_freearray(L, f->lineinfo, f->sizecode, int);
luaM_freearray(L, f->locvars, f->sizelocvars, struct LocVar);
luaM_freearray(L, f->k, f->sizek, TObject);
luaM_freearray(L, f->p, f->sizep, Proto *);
luaM_freelem(L, f);
}
void luaF_freeclosure (lua_State *L, Closure *c) {
int size = (c->c.isC) ? sizeCclosure(c->c.nupvalues) :
sizeLclosure(c->l.nupvalues);
luaM_free(L, c, size);
luaM_freearray(L, f->code, f->sizecode);
luaM_freearray(L, f->p, f->sizep);
luaM_freearray(L, f->k, f->sizek);
luaM_freearray(L, f->lineinfo, f->sizelineinfo);
luaM_freearray(L, f->locvars, f->sizelocvars);
luaM_freearray(L, f->upvalues, f->sizeupvalues);
luaM_free(L, f);
}

26
lfunc.h
View File

@@ -1,5 +1,5 @@
/*
** $Id: lfunc.h,v 1.19 2001/11/29 20:22:22 roberto Exp roberto $
** $Id: lfunc.h,v 2.8 2012/05/08 13:53:33 roberto Exp $
** Auxiliary functions to manipulate prototypes and closures
** See Copyright Notice in lua.h
*/
@@ -11,15 +11,23 @@
#include "lobject.h"
Proto *luaF_newproto (lua_State *L);
Closure *luaF_newCclosure (lua_State *L, int nelems);
Closure *luaF_newLclosure (lua_State *L, int nelems, TObject *gt);
UpVal *luaF_findupval (lua_State *L, StkId level);
void luaF_close (lua_State *L, StkId level);
void luaF_freeproto (lua_State *L, Proto *f);
void luaF_freeclosure (lua_State *L, Closure *c);
#define sizeCclosure(n) (cast(int, sizeof(CClosure)) + \
cast(int, sizeof(TValue)*((n)-1)))
const char *luaF_getlocalname (const Proto *func, int local_number, int pc);
#define sizeLclosure(n) (cast(int, sizeof(LClosure)) + \
cast(int, sizeof(TValue *)*((n)-1)))
LUAI_FUNC Proto *luaF_newproto (lua_State *L);
LUAI_FUNC Closure *luaF_newCclosure (lua_State *L, int nelems);
LUAI_FUNC Closure *luaF_newLclosure (lua_State *L, int nelems);
LUAI_FUNC UpVal *luaF_newupval (lua_State *L);
LUAI_FUNC UpVal *luaF_findupval (lua_State *L, StkId level);
LUAI_FUNC void luaF_close (lua_State *L, StkId level);
LUAI_FUNC void luaF_freeproto (lua_State *L, Proto *f);
LUAI_FUNC void luaF_freeupval (lua_State *L, UpVal *uv);
LUAI_FUNC const char *luaF_getlocalname (const Proto *func, int local_number,
int pc);
#endif

1472
lgc.c

File diff suppressed because it is too large Load Diff

146
lgc.h
View File

@@ -1,5 +1,5 @@
/*
** $Id: lgc.h,v 1.1 2001/11/29 22:14:34 rieru Exp rieru $
** $Id: lgc.h,v 2.58 2012/09/11 12:53:08 roberto Exp $
** Garbage Collector
** See Copyright Notice in lua.h
*/
@@ -9,15 +9,149 @@
#include "lobject.h"
#include "lstate.h"
/*
** Collectable objects may have one of three colors: white, which
** means the object is not marked; gray, which means the
** object is marked, but its references may be not marked; and
** black, which means that the object and all its references are marked.
** The main invariant of the garbage collector, while marking objects,
** is that a black object can never point to a white one. Moreover,
** any gray object must be in a "gray list" (gray, grayagain, weak,
** allweak, ephemeron) so that it can be visited again before finishing
** the collection cycle. These lists have no meaning when the invariant
** is not being enforced (e.g., sweep phase).
*/
#define luaC_checkGC(L) if (G(L)->nblocks >= G(L)->GCthreshold) \
luaC_collectgarbage(L)
/* how much to allocate before next GC step */
#if !defined(GCSTEPSIZE)
/* ~100 small strings */
#define GCSTEPSIZE (cast_int(100 * sizeof(TString)))
#endif
void luaC_callallgcTM (lua_State *L);
void luaC_collect (lua_State *L, int all);
void luaC_collectgarbage (lua_State *L);
/*
** Possible states of the Garbage Collector
*/
#define GCSpropagate 0
#define GCSatomic 1
#define GCSsweepstring 2
#define GCSsweepudata 3
#define GCSsweep 4
#define GCSpause 5
#define issweepphase(g) \
(GCSsweepstring <= (g)->gcstate && (g)->gcstate <= GCSsweep)
#define isgenerational(g) ((g)->gckind == KGC_GEN)
/*
** macros to tell when main invariant (white objects cannot point to black
** ones) must be kept. During a non-generational collection, the sweep
** phase may break the invariant, as objects turned white may point to
** still-black objects. The invariant is restored when sweep ends and
** all objects are white again. During a generational collection, the
** invariant must be kept all times.
*/
#define keepinvariant(g) (isgenerational(g) || g->gcstate <= GCSatomic)
/*
** Outside the collector, the state in generational mode is kept in
** 'propagate', so 'keepinvariant' is always true.
*/
#define keepinvariantout(g) \
check_exp(g->gcstate == GCSpropagate || !isgenerational(g), \
g->gcstate <= GCSatomic)
/*
** some useful bit tricks
*/
#define resetbits(x,m) ((x) &= cast(lu_byte, ~(m)))
#define setbits(x,m) ((x) |= (m))
#define testbits(x,m) ((x) & (m))
#define bitmask(b) (1<<(b))
#define bit2mask(b1,b2) (bitmask(b1) | bitmask(b2))
#define l_setbit(x,b) setbits(x, bitmask(b))
#define resetbit(x,b) resetbits(x, bitmask(b))
#define testbit(x,b) testbits(x, bitmask(b))
/* Layout for bit use in `marked' field: */
#define WHITE0BIT 0 /* object is white (type 0) */
#define WHITE1BIT 1 /* object is white (type 1) */
#define BLACKBIT 2 /* object is black */
#define FINALIZEDBIT 3 /* object has been separated for finalization */
#define SEPARATED 4 /* object is in 'finobj' list or in 'tobefnz' */
#define FIXEDBIT 5 /* object is fixed (should not be collected) */
#define OLDBIT 6 /* object is old (only in generational mode) */
/* bit 7 is currently used by tests (luaL_checkmemory) */
#define WHITEBITS bit2mask(WHITE0BIT, WHITE1BIT)
#define iswhite(x) testbits((x)->gch.marked, WHITEBITS)
#define isblack(x) testbit((x)->gch.marked, BLACKBIT)
#define isgray(x) /* neither white nor black */ \
(!testbits((x)->gch.marked, WHITEBITS | bitmask(BLACKBIT)))
#define isold(x) testbit((x)->gch.marked, OLDBIT)
/* MOVE OLD rule: whenever an object is moved to the beginning of
a GC list, its old bit must be cleared */
#define resetoldbit(o) resetbit((o)->gch.marked, OLDBIT)
#define otherwhite(g) (g->currentwhite ^ WHITEBITS)
#define isdeadm(ow,m) (!(((m) ^ WHITEBITS) & (ow)))
#define isdead(g,v) isdeadm(otherwhite(g), (v)->gch.marked)
#define changewhite(x) ((x)->gch.marked ^= WHITEBITS)
#define gray2black(x) l_setbit((x)->gch.marked, BLACKBIT)
#define valiswhite(x) (iscollectable(x) && iswhite(gcvalue(x)))
#define luaC_white(g) cast(lu_byte, (g)->currentwhite & WHITEBITS)
#define luaC_condGC(L,c) \
{if (G(L)->GCdebt > 0) {c;}; condchangemem(L);}
#define luaC_checkGC(L) luaC_condGC(L, luaC_step(L);)
#define luaC_barrier(L,p,v) { if (valiswhite(v) && isblack(obj2gco(p))) \
luaC_barrier_(L,obj2gco(p),gcvalue(v)); }
#define luaC_barrierback(L,p,v) { if (valiswhite(v) && isblack(obj2gco(p))) \
luaC_barrierback_(L,p); }
#define luaC_objbarrier(L,p,o) \
{ if (iswhite(obj2gco(o)) && isblack(obj2gco(p))) \
luaC_barrier_(L,obj2gco(p),obj2gco(o)); }
#define luaC_objbarrierback(L,p,o) \
{ if (iswhite(obj2gco(o)) && isblack(obj2gco(p))) luaC_barrierback_(L,p); }
#define luaC_barrierproto(L,p,c) \
{ if (isblack(obj2gco(p))) luaC_barrierproto_(L,p,c); }
LUAI_FUNC void luaC_freeallobjects (lua_State *L);
LUAI_FUNC void luaC_step (lua_State *L);
LUAI_FUNC void luaC_forcestep (lua_State *L);
LUAI_FUNC void luaC_runtilstate (lua_State *L, int statesmask);
LUAI_FUNC void luaC_fullgc (lua_State *L, int isemergency);
LUAI_FUNC GCObject *luaC_newobj (lua_State *L, int tt, size_t sz,
GCObject **list, int offset);
LUAI_FUNC void luaC_barrier_ (lua_State *L, GCObject *o, GCObject *v);
LUAI_FUNC void luaC_barrierback_ (lua_State *L, GCObject *o);
LUAI_FUNC void luaC_barrierproto_ (lua_State *L, Proto *p, Closure *c);
LUAI_FUNC void luaC_checkfinalizer (lua_State *L, GCObject *o, Table *mt);
LUAI_FUNC void luaC_checkupvalcolor (global_State *g, UpVal *uv);
LUAI_FUNC void luaC_changemode (lua_State *L, int mode);
#endif

65
linit.c
View File

@@ -1,8 +1,67 @@
/*
** $Id: linit.c,v 1.5 2000/06/16 17:22:43 roberto Exp roberto $
** Initialization of libraries for lua.c
** $Id: linit.c,v 1.32 2011/04/08 19:17:36 roberto Exp $
** Initialization of libraries for lua.c and other clients
** See Copyright Notice in lua.h
*/
>>>>>>> This module is now obsolete, and is not part of Lua. <<<<<<<<<
/*
** If you embed Lua in your program and need to open the standard
** libraries, call luaL_openlibs in your program. If you need a
** different set of libraries, copy this file to your project and edit
** it to suit your needs.
*/
#define linit_c
#define LUA_LIB
#include "lua.h"
#include "lualib.h"
#include "lauxlib.h"
/*
** these libs are loaded by lua.c and are readily available to any Lua
** program
*/
static const luaL_Reg loadedlibs[] = {
{"_G", luaopen_base},
{LUA_LOADLIBNAME, luaopen_package},
{LUA_COLIBNAME, luaopen_coroutine},
{LUA_TABLIBNAME, luaopen_table},
{LUA_IOLIBNAME, luaopen_io},
{LUA_OSLIBNAME, luaopen_os},
{LUA_STRLIBNAME, luaopen_string},
{LUA_BITLIBNAME, luaopen_bit32},
{LUA_MATHLIBNAME, luaopen_math},
{LUA_DBLIBNAME, luaopen_debug},
{NULL, NULL}
};
/*
** these libs are preloaded and must be required before used
*/
static const luaL_Reg preloadedlibs[] = {
{NULL, NULL}
};
LUALIB_API void luaL_openlibs (lua_State *L) {
const luaL_Reg *lib;
/* call open functions from 'loadedlibs' and set results to global table */
for (lib = loadedlibs; lib->func; lib++) {
luaL_requiref(L, lib->name, lib->func, 1);
lua_pop(L, 1); /* remove lib */
}
/* add open functions from 'preloadedlibs' into 'package.preload' table */
luaL_getsubtable(L, LUA_REGISTRYINDEX, "_PRELOAD");
for (lib = preloadedlibs; lib->func; lib++) {
lua_pushcfunction(L, lib->func);
lua_setfield(L, -2, lib->name);
}
lua_pop(L, 1); /* remove _PRELOAD table */
}

784
liolib.c

File diff suppressed because it is too large Load Diff

739
llex.c
View File

@@ -1,132 +1,178 @@
/*
** $Id: llex.c,v 1.107 2002/07/08 18:14:36 roberto Exp roberto $
** $Id: llex.c,v 2.63.1.1 2013/04/12 18:48:47 roberto Exp roberto $
** Lexical Analyzer
** See Copyright Notice in lua.h
*/
#include <ctype.h>
#include <locale.h>
#include <string.h>
#define llex_c
#define LUA_CORE
#include "lua.h"
#include "lctype.h"
#include "ldo.h"
#include "llex.h"
#include "lobject.h"
#include "lparser.h"
#include "lstate.h"
#include "lstring.h"
#include "ltable.h"
#include "lzio.h"
#define next(LS) (LS->current = zgetc(LS->z))
#define next(ls) (ls->current = zgetc(ls->z))
#define currIsNewline(ls) (ls->current == '\n' || ls->current == '\r')
/* ORDER RESERVED */
static const char *const token2string [] = {
static const char *const luaX_tokens [] = {
"and", "break", "do", "else", "elseif",
"end", "false", "for", "function", "global", "if",
"end", "false", "for", "function", "goto", "if",
"in", "local", "nil", "not", "or", "repeat",
"return", "then", "true", "until", "while", "*name",
"..", "...", "==", ">=", "<=", "~=",
"*number", "*string", "<eof>"
"return", "then", "true", "until", "while",
"..", "...", "==", ">=", "<=", "~=", "::", "<eof>",
"<number>", "<name>", "<string>"
};
#define save_and_next(ls) (save(ls, ls->current), next(ls))
static l_noret lexerror (LexState *ls, const char *msg, int token);
static void save (LexState *ls, int c) {
Mbuffer *b = ls->buff;
if (luaZ_bufflen(b) + 1 > luaZ_sizebuffer(b)) {
size_t newsize;
if (luaZ_sizebuffer(b) >= MAX_SIZET/2)
lexerror(ls, "lexical element too long", 0);
newsize = luaZ_sizebuffer(b) * 2;
luaZ_resizebuffer(ls->L, b, newsize);
}
b->buffer[luaZ_bufflen(b)++] = cast(char, c);
}
void luaX_init (lua_State *L) {
int i;
for (i=0; i<NUM_RESERVED; i++) {
TString *ts = luaS_new(L, token2string[i]);
lua_assert(strlen(token2string[i])+1 <= TOKEN_LEN);
ts->tsv.marked = cast(unsigned short, RESERVEDMARK+i); /* reserved word */
TString *ts = luaS_new(L, luaX_tokens[i]);
luaS_fix(ts); /* reserved words are never collected */
ts->tsv.extra = cast_byte(i+1); /* reserved word */
}
}
#define MAXSRC 80
void luaX_checklimit (LexState *ls, int val, int limit, const char *msg) {
if (val > limit) {
msg = luaO_pushfstring(ls->L, "too many %s (limit=%d)", msg, limit);
luaX_syntaxerror(ls, msg);
}
}
static void luaX_error (LexState *ls, const char *s, const char *token) {
lua_State *L = ls->L;
char buff[MAXSRC];
luaO_chunkid(buff, getstr(ls->source), MAXSRC);
luaO_pushfstring(L, "%s:%d: %s near `%s'\n", buff, ls->linenumber, s, token);
luaD_throw(L, LUA_ERRSYNTAX);
}
void luaX_syntaxerror (LexState *ls, const char *msg) {
const char *lasttoken;
switch (ls->t.token) {
case TK_NAME:
lasttoken = luaO_pushfstring(ls->L, "%s", getstr(ls->t.seminfo.ts));
break;
case TK_STRING:
lasttoken = luaO_pushfstring(ls->L, "\"%s\"", getstr(ls->t.seminfo.ts));
break;
case TK_NUMBER:
lasttoken = luaO_pushfstring(ls->L, "%f", ls->t.seminfo.r);
break;
default:
lasttoken = luaX_token2str(ls, ls->t.token);
break;
}
luaX_error(ls, msg, lasttoken);
}
const char *luaX_token2str (LexState *ls, int token) {
if (token < FIRST_RESERVED) {
lua_assert(token == (char)token);
return luaO_pushfstring(ls->L, "%c", token);
if (token < FIRST_RESERVED) { /* single-byte symbols? */
lua_assert(token == cast(unsigned char, token));
return (lisprint(token)) ? luaO_pushfstring(ls->L, LUA_QL("%c"), token) :
luaO_pushfstring(ls->L, "char(%d)", token);
}
else
return token2string[token-FIRST_RESERVED];
}
static void luaX_lexerror (LexState *ls, const char *s, int token) {
if (token == TK_EOS)
luaX_error(ls, s, luaX_token2str(ls, token));
else
luaX_error(ls, s, cast(char *, G(ls->L)->Mbuffer));
}
static void inclinenumber (LexState *LS) {
next(LS); /* skip `\n' */
++LS->linenumber;
luaX_checklimit(LS, LS->linenumber, MAX_INT, "lines in a chunk");
}
void luaX_setinput (lua_State *L, LexState *LS, ZIO *z, TString *source) {
LS->L = L;
LS->lookahead.token = TK_EOS; /* no look-ahead token */
LS->z = z;
LS->fs = NULL;
LS->linenumber = 1;
LS->lastline = 1;
LS->source = source;
next(LS); /* read first char */
if (LS->current == '#') {
do { /* skip first line */
next(LS);
} while (LS->current != '\n' && LS->current != EOZ);
else {
const char *s = luaX_tokens[token - FIRST_RESERVED];
if (token < TK_EOS) /* fixed format (symbols and reserved words)? */
return luaO_pushfstring(ls->L, LUA_QS, s);
else /* names, strings, and numerals */
return s;
}
}
static const char *txtToken (LexState *ls, int token) {
switch (token) {
case TK_NAME:
case TK_STRING:
case TK_NUMBER:
save(ls, '\0');
return luaO_pushfstring(ls->L, LUA_QS, luaZ_buffer(ls->buff));
default:
return luaX_token2str(ls, token);
}
}
static l_noret lexerror (LexState *ls, const char *msg, int token) {
char buff[LUA_IDSIZE];
luaO_chunkid(buff, getstr(ls->source), LUA_IDSIZE);
msg = luaO_pushfstring(ls->L, "%s:%d: %s", buff, ls->linenumber, msg);
if (token)
luaO_pushfstring(ls->L, "%s near %s", msg, txtToken(ls, token));
luaD_throw(ls->L, LUA_ERRSYNTAX);
}
l_noret luaX_syntaxerror (LexState *ls, const char *msg) {
lexerror(ls, msg, ls->t.token);
}
/*
** creates a new string and anchors it in function's table so that
** it will not be collected until the end of the function's compilation
** (by that time it should be anchored in function's prototype)
*/
TString *luaX_newstring (LexState *ls, const char *str, size_t l) {
lua_State *L = ls->L;
TValue *o; /* entry for `str' */
TString *ts = luaS_newlstr(L, str, l); /* create new string */
setsvalue2s(L, L->top++, ts); /* temporarily anchor it in stack */
o = luaH_set(L, ls->fs->h, L->top - 1);
if (ttisnil(o)) { /* not in use yet? (see 'addK') */
/* boolean value does not need GC barrier;
table has no metatable, so it does not need to invalidate cache */
setbvalue(o, 1); /* t[string] = true */
luaC_checkGC(L);
}
else { /* string already present */
ts = rawtsvalue(keyfromval(o)); /* re-use value previously stored */
}
L->top--; /* remove string from stack */
return ts;
}
/*
** increment line number and skips newline sequence (any of
** \n, \r, \n\r, or \r\n)
*/
static void inclinenumber (LexState *ls) {
int old = ls->current;
lua_assert(currIsNewline(ls));
next(ls); /* skip `\n' or `\r' */
if (currIsNewline(ls) && ls->current != old)
next(ls); /* skip `\n\r' or `\r\n' */
if (++ls->linenumber >= MAX_INT)
luaX_syntaxerror(ls, "chunk has too many lines");
}
void luaX_setinput (lua_State *L, LexState *ls, ZIO *z, TString *source,
int firstchar) {
ls->decpoint = '.';
ls->L = L;
ls->current = firstchar;
ls->lookahead.token = TK_EOS; /* no look-ahead token */
ls->z = z;
ls->fs = NULL;
ls->linenumber = 1;
ls->lastline = 1;
ls->source = source;
ls->envn = luaS_new(L, LUA_ENV); /* create env name */
luaS_fix(ls->envn); /* never collect this name */
luaZ_resizebuffer(ls->L, ls->buff, LUA_MINBUFFER); /* initialize buffer */
}
/*
** =======================================================
@@ -135,275 +181,350 @@ void luaX_setinput (lua_State *L, LexState *LS, ZIO *z, TString *source) {
*/
/* use Mbuffer to store names, literal strings and numbers */
#define EXTRABUFF 128
#define checkbuffer(L, len) \
if (((len)+10)*sizeof(char) > G(L)->Mbuffsize) \
luaO_openspace(L, (len)+EXTRABUFF, char)
#define save(L, c, l) (cast(char *, G(L)->Mbuffer)[l++] = cast(char, c))
#define save_and_next(L, LS, l) (save(L, LS->current, l), next(LS))
static int check_next (LexState *ls, const char *set) {
if (ls->current == '\0' || !strchr(set, ls->current))
return 0;
save_and_next(ls);
return 1;
}
static size_t readname (LexState *LS) {
lua_State *L = LS->L;
size_t l = 0;
checkbuffer(L, l);
do {
checkbuffer(L, l);
save_and_next(L, LS, l);
} while (isalnum(LS->current) || LS->current == '_');
save(L, '\0', l);
return l-1;
/*
** change all characters 'from' in buffer to 'to'
*/
static void buffreplace (LexState *ls, char from, char to) {
size_t n = luaZ_bufflen(ls->buff);
char *p = luaZ_buffer(ls->buff);
while (n--)
if (p[n] == from) p[n] = to;
}
#if !defined(getlocaledecpoint)
#define getlocaledecpoint() (localeconv()->decimal_point[0])
#endif
#define buff2d(b,e) luaO_str2d(luaZ_buffer(b), luaZ_bufflen(b) - 1, e)
/*
** in case of format error, try to change decimal point separator to
** the one defined in the current locale and check again
*/
static void trydecpoint (LexState *ls, SemInfo *seminfo) {
char old = ls->decpoint;
ls->decpoint = getlocaledecpoint();
buffreplace(ls, old, ls->decpoint); /* try new decimal separator */
if (!buff2d(ls->buff, &seminfo->r)) {
/* format error with correct decimal point: no more options */
buffreplace(ls, ls->decpoint, '.'); /* undo change (for error message) */
lexerror(ls, "malformed number", TK_NUMBER);
}
}
/* LUA_NUMBER */
static void read_numeral (LexState *LS, int comma, SemInfo *seminfo) {
lua_State *L = LS->L;
size_t l = 0;
checkbuffer(L, l);
if (comma) save(L, '.', l);
while (isdigit(LS->current)) {
checkbuffer(L, l);
save_and_next(L, LS, l);
}
if (LS->current == '.') {
save_and_next(L, LS, l);
if (LS->current == '.') {
save_and_next(L, LS, l);
save(L, '\0', l);
luaX_lexerror(LS,
"ambiguous syntax (decimal point x string concatenation)",
TK_NUMBER);
}
}
while (isdigit(LS->current)) {
checkbuffer(L, l);
save_and_next(L, LS, l);
}
if (LS->current == 'e' || LS->current == 'E') {
save_and_next(L, LS, l); /* read `E' */
if (LS->current == '+' || LS->current == '-')
save_and_next(L, LS, l); /* optional exponent sign */
while (isdigit(LS->current)) {
checkbuffer(L, l);
save_and_next(L, LS, l);
}
}
save(L, '\0', l);
if (!luaO_str2d(cast(char *, G(L)->Mbuffer), &seminfo->r))
luaX_lexerror(LS, "malformed number", TK_NUMBER);
}
static void read_long_string (LexState *LS, SemInfo *seminfo) {
lua_State *L = LS->L;
int cont = 0;
size_t l = 0;
checkbuffer(L, l);
save(L, '[', l); /* save first `[' */
save_and_next(L, LS, l); /* pass the second `[' */
if (LS->current == '\n') /* string starts with a newline? */
inclinenumber(LS); /* skip it */
/*
** this function is quite liberal in what it accepts, as 'luaO_str2d'
** will reject ill-formed numerals.
*/
static void read_numeral (LexState *ls, SemInfo *seminfo) {
const char *expo = "Ee";
int first = ls->current;
lua_assert(lisdigit(ls->current));
save_and_next(ls);
if (first == '0' && check_next(ls, "Xx")) /* hexadecimal? */
expo = "Pp";
for (;;) {
checkbuffer(L, l);
switch (LS->current) {
case EOZ:
save(L, '\0', l);
luaX_lexerror(LS, (seminfo) ? "unfinished long string" :
"unfinished long comment", TK_EOS);
break; /* to avoid warnings */
case '[':
save_and_next(L, LS, l);
if (LS->current == '[') {
cont++;
save_and_next(L, LS, l);
}
continue;
case ']':
save_and_next(L, LS, l);
if (LS->current == ']') {
if (cont == 0) goto endloop;
cont--;
save_and_next(L, LS, l);
}
continue;
case '\n':
save(L, '\n', l);
inclinenumber(LS);
if (!seminfo) l = 0; /* reset buffer to avoid wasting space */
continue;
default:
save_and_next(L, LS, l);
}
} endloop:
save_and_next(L, LS, l); /* skip the second `]' */
save(L, '\0', l);
if (seminfo)
seminfo->ts = luaS_newlstr(L, cast(char *, G(L)->Mbuffer)+2, l-5);
if (check_next(ls, expo)) /* exponent part? */
check_next(ls, "+-"); /* optional exponent sign */
if (lisxdigit(ls->current) || ls->current == '.')
save_and_next(ls);
else break;
}
save(ls, '\0');
buffreplace(ls, '.', ls->decpoint); /* follow locale for decimal point */
if (!buff2d(ls->buff, &seminfo->r)) /* format error? */
trydecpoint(ls, seminfo); /* try to update decimal point separator */
}
static void read_string (LexState *LS, int del, SemInfo *seminfo) {
lua_State *L = LS->L;
size_t l = 0;
checkbuffer(L, l);
save_and_next(L, LS, l);
while (LS->current != del) {
checkbuffer(L, l);
switch (LS->current) {
/*
** skip a sequence '[=*[' or ']=*]' and return its number of '='s or
** -1 if sequence is malformed
*/
static int skip_sep (LexState *ls) {
int count = 0;
int s = ls->current;
lua_assert(s == '[' || s == ']');
save_and_next(ls);
while (ls->current == '=') {
save_and_next(ls);
count++;
}
return (ls->current == s) ? count : (-count) - 1;
}
static void read_long_string (LexState *ls, SemInfo *seminfo, int sep) {
save_and_next(ls); /* skip 2nd `[' */
if (currIsNewline(ls)) /* string starts with a newline? */
inclinenumber(ls); /* skip it */
for (;;) {
switch (ls->current) {
case EOZ:
save(L, '\0', l);
luaX_lexerror(LS, "unfinished string", TK_EOS);
lexerror(ls, (seminfo) ? "unfinished long string" :
"unfinished long comment", TK_EOS);
break; /* to avoid warnings */
case '\n':
save(L, '\0', l);
luaX_lexerror(LS, "unfinished string", TK_STRING);
break; /* to avoid warnings */
case '\\':
next(LS); /* do not save the `\' */
switch (LS->current) {
case 'a': save(L, '\a', l); next(LS); break;
case 'b': save(L, '\b', l); next(LS); break;
case 'f': save(L, '\f', l); next(LS); break;
case 'n': save(L, '\n', l); next(LS); break;
case 'r': save(L, '\r', l); next(LS); break;
case 't': save(L, '\t', l); next(LS); break;
case 'v': save(L, '\v', l); next(LS); break;
case '\n': save(L, '\n', l); inclinenumber(LS); break;
case EOZ: break; /* will raise an error next loop */
default: {
if (!isdigit(LS->current))
save_and_next(L, LS, l); /* handles \\, \", \', and \? */
else { /* \xxx */
int c = 0;
int i = 0;
do {
c = 10*c + (LS->current-'0');
next(LS);
} while (++i<3 && isdigit(LS->current));
if (c > UCHAR_MAX) {
save(L, '\0', l);
luaX_lexerror(LS, "escape sequence too large", TK_STRING);
}
save(L, c, l);
}
}
case ']': {
if (skip_sep(ls) == sep) {
save_and_next(ls); /* skip 2nd `]' */
goto endloop;
}
break;
default:
save_and_next(L, LS, l);
}
case '\n': case '\r': {
save(ls, '\n');
inclinenumber(ls);
if (!seminfo) luaZ_resetbuffer(ls->buff); /* avoid wasting space */
break;
}
default: {
if (seminfo) save_and_next(ls);
else next(ls);
}
}
}
save_and_next(L, LS, l); /* skip delimiter */
save(L, '\0', l);
seminfo->ts = luaS_newlstr(L, cast(char *, G(L)->Mbuffer)+1, l-3);
} endloop:
if (seminfo)
seminfo->ts = luaX_newstring(ls, luaZ_buffer(ls->buff) + (2 + sep),
luaZ_bufflen(ls->buff) - 2*(2 + sep));
}
int luaX_lex (LexState *LS, SemInfo *seminfo) {
for (;;) {
switch (LS->current) {
static void escerror (LexState *ls, int *c, int n, const char *msg) {
int i;
luaZ_resetbuffer(ls->buff); /* prepare error message */
save(ls, '\\');
for (i = 0; i < n && c[i] != EOZ; i++)
save(ls, c[i]);
lexerror(ls, msg, TK_STRING);
}
case '\n': {
inclinenumber(LS);
continue;
static int readhexaesc (LexState *ls) {
int c[3], i; /* keep input for error message */
int r = 0; /* result accumulator */
c[0] = 'x'; /* for error message */
for (i = 1; i < 3; i++) { /* read two hexadecimal digits */
c[i] = next(ls);
if (!lisxdigit(c[i]))
escerror(ls, c, i + 1, "hexadecimal digit expected");
r = (r << 4) + luaO_hexavalue(c[i]);
}
return r;
}
static int readdecesc (LexState *ls) {
int c[3], i;
int r = 0; /* result accumulator */
for (i = 0; i < 3 && lisdigit(ls->current); i++) { /* read up to 3 digits */
c[i] = ls->current;
r = 10*r + c[i] - '0';
next(ls);
}
if (r > UCHAR_MAX)
escerror(ls, c, i, "decimal escape too large");
return r;
}
static void read_string (LexState *ls, int del, SemInfo *seminfo) {
save_and_next(ls); /* keep delimiter (for error messages) */
while (ls->current != del) {
switch (ls->current) {
case EOZ:
lexerror(ls, "unfinished string", TK_EOS);
break; /* to avoid warnings */
case '\n':
case '\r':
lexerror(ls, "unfinished string", TK_STRING);
break; /* to avoid warnings */
case '\\': { /* escape sequences */
int c; /* final character to be saved */
next(ls); /* do not save the `\' */
switch (ls->current) {
case 'a': c = '\a'; goto read_save;
case 'b': c = '\b'; goto read_save;
case 'f': c = '\f'; goto read_save;
case 'n': c = '\n'; goto read_save;
case 'r': c = '\r'; goto read_save;
case 't': c = '\t'; goto read_save;
case 'v': c = '\v'; goto read_save;
case 'x': c = readhexaesc(ls); goto read_save;
case '\n': case '\r':
inclinenumber(ls); c = '\n'; goto only_save;
case '\\': case '\"': case '\'':
c = ls->current; goto read_save;
case EOZ: goto no_save; /* will raise an error next loop */
case 'z': { /* zap following span of spaces */
next(ls); /* skip the 'z' */
while (lisspace(ls->current)) {
if (currIsNewline(ls)) inclinenumber(ls);
else next(ls);
}
goto no_save;
}
default: {
if (!lisdigit(ls->current))
escerror(ls, &ls->current, 1, "invalid escape sequence");
/* digital escape \ddd */
c = readdecesc(ls);
goto only_save;
}
}
read_save: next(ls); /* read next character */
only_save: save(ls, c); /* save 'c' */
no_save: break;
}
case '-': {
next(LS);
if (LS->current != '-') return '-';
default:
save_and_next(ls);
}
}
save_and_next(ls); /* skip delimiter */
seminfo->ts = luaX_newstring(ls, luaZ_buffer(ls->buff) + 1,
luaZ_bufflen(ls->buff) - 2);
}
static int llex (LexState *ls, SemInfo *seminfo) {
luaZ_resetbuffer(ls->buff);
for (;;) {
switch (ls->current) {
case '\n': case '\r': { /* line breaks */
inclinenumber(ls);
break;
}
case ' ': case '\f': case '\t': case '\v': { /* spaces */
next(ls);
break;
}
case '-': { /* '-' or '--' (comment) */
next(ls);
if (ls->current != '-') return '-';
/* else is a comment */
next(LS);
if (LS->current == '[' && (next(LS), LS->current == '['))
read_long_string(LS, NULL); /* long comment */
else /* short comment */
while (LS->current != '\n' && LS->current != EOZ)
next(LS);
continue;
next(ls);
if (ls->current == '[') { /* long comment? */
int sep = skip_sep(ls);
luaZ_resetbuffer(ls->buff); /* `skip_sep' may dirty the buffer */
if (sep >= 0) {
read_long_string(ls, NULL, sep); /* skip long comment */
luaZ_resetbuffer(ls->buff); /* previous call may dirty the buff. */
break;
}
}
/* else short comment */
while (!currIsNewline(ls) && ls->current != EOZ)
next(ls); /* skip until end of line (or end of file) */
break;
}
case '[': {
next(LS);
if (LS->current != '[') return '[';
else {
read_long_string(LS, seminfo);
case '[': { /* long string or simply '[' */
int sep = skip_sep(ls);
if (sep >= 0) {
read_long_string(ls, seminfo, sep);
return TK_STRING;
}
else if (sep == -1) return '[';
else lexerror(ls, "invalid long string delimiter", TK_STRING);
}
case '=': {
next(LS);
if (LS->current != '=') return '=';
else { next(LS); return TK_EQ; }
next(ls);
if (ls->current != '=') return '=';
else { next(ls); return TK_EQ; }
}
case '<': {
next(LS);
if (LS->current != '=') return '<';
else { next(LS); return TK_LE; }
next(ls);
if (ls->current != '=') return '<';
else { next(ls); return TK_LE; }
}
case '>': {
next(LS);
if (LS->current != '=') return '>';
else { next(LS); return TK_GE; }
next(ls);
if (ls->current != '=') return '>';
else { next(ls); return TK_GE; }
}
case '~': {
next(LS);
if (LS->current != '=') return '~';
else { next(LS); return TK_NE; }
next(ls);
if (ls->current != '=') return '~';
else { next(ls); return TK_NE; }
}
case '"':
case '\'': {
read_string(LS, LS->current, seminfo);
case ':': {
next(ls);
if (ls->current != ':') return ':';
else { next(ls); return TK_DBCOLON; }
}
case '"': case '\'': { /* short literal strings */
read_string(ls, ls->current, seminfo);
return TK_STRING;
}
case '.': {
next(LS);
if (LS->current == '.') {
next(LS);
if (LS->current == '.') {
next(LS);
return TK_DOTS; /* ... */
}
else return TK_CONCAT; /* .. */
}
else if (!isdigit(LS->current)) return '.';
else {
read_numeral(LS, 1, seminfo);
return TK_NUMBER;
case '.': { /* '.', '..', '...', or number */
save_and_next(ls);
if (check_next(ls, ".")) {
if (check_next(ls, "."))
return TK_DOTS; /* '...' */
else return TK_CONCAT; /* '..' */
}
else if (!lisdigit(ls->current)) return '.';
/* else go through */
}
case '0': case '1': case '2': case '3': case '4':
case '5': case '6': case '7': case '8': case '9': {
read_numeral(ls, seminfo);
return TK_NUMBER;
}
case EOZ: {
return TK_EOS;
}
default: {
if (isspace(LS->current)) {
next(LS);
continue;
}
else if (isdigit(LS->current)) {
read_numeral(LS, 0, seminfo);
return TK_NUMBER;
}
else if (isalpha(LS->current) || LS->current == '_') {
/* identifier or reserved word */
size_t l = readname(LS);
TString *ts = luaS_newlstr(LS->L, cast(char *, G(LS->L)->Mbuffer), l);
if (ts->tsv.marked >= RESERVEDMARK) /* reserved word? */
return ts->tsv.marked-RESERVEDMARK+FIRST_RESERVED;
if (lislalpha(ls->current)) { /* identifier or reserved word? */
TString *ts;
do {
save_and_next(ls);
} while (lislalnum(ls->current));
ts = luaX_newstring(ls, luaZ_buffer(ls->buff),
luaZ_bufflen(ls->buff));
seminfo->ts = ts;
return TK_NAME;
if (isreserved(ts)) /* reserved word? */
return ts->tsv.extra - 1 + FIRST_RESERVED;
else {
return TK_NAME;
}
}
else {
int c = LS->current;
if (iscntrl(c))
luaX_error(LS, "invalid control char",
luaO_pushfstring(LS->L, "char(%d)", c));
next(LS);
return c; /* single-char tokens (+ - / ...) */
else { /* single-char tokens (+ - / ...) */
int c = ls->current;
next(ls);
return c;
}
}
}
}
}
#undef next
void luaX_next (LexState *ls) {
ls->lastline = ls->linenumber;
if (ls->lookahead.token != TK_EOS) { /* is there a look-ahead token? */
ls->t = ls->lookahead; /* use this one */
ls->lookahead.token = TK_EOS; /* and discharge it */
}
else
ls->t.token = llex(ls, &ls->t.seminfo); /* read next token */
}
int luaX_lookahead (LexState *ls) {
lua_assert(ls->lookahead.token == TK_EOS);
ls->lookahead.token = llex(ls, &ls->lookahead.seminfo);
return ls->lookahead.token;
}

34
llex.h
View File

@@ -1,5 +1,5 @@
/*
** $Id: llex.h,v 1.42 2002/02/08 22:42:41 roberto Exp roberto $
** $Id: llex.h,v 1.72 2011/11/30 12:43:51 roberto Exp $
** Lexical Analyzer
** See Copyright Notice in lua.h
*/
@@ -13,8 +13,6 @@
#define FIRST_RESERVED 257
/* maximum length of a reserved word */
#define TOKEN_LEN (sizeof("function")/sizeof(char))
/*
@@ -25,11 +23,11 @@ enum RESERVED {
/* terminal symbols denoted by reserved words */
TK_AND = FIRST_RESERVED, TK_BREAK,
TK_DO, TK_ELSE, TK_ELSEIF, TK_END, TK_FALSE, TK_FOR, TK_FUNCTION,
TK_GLOBAL, TK_IF, TK_IN, TK_LOCAL, TK_NIL, TK_NOT, TK_OR, TK_REPEAT,
TK_GOTO, TK_IF, TK_IN, TK_LOCAL, TK_NIL, TK_NOT, TK_OR, TK_REPEAT,
TK_RETURN, TK_THEN, TK_TRUE, TK_UNTIL, TK_WHILE,
/* other terminal symbols */
TK_NAME, TK_CONCAT, TK_DOTS, TK_EQ, TK_GE, TK_LE, TK_NE, TK_NUMBER,
TK_STRING, TK_EOS
TK_CONCAT, TK_DOTS, TK_EQ, TK_GE, TK_LE, TK_NE, TK_DBCOLON, TK_EOS,
TK_NUMBER, TK_NAME, TK_STRING
};
/* number of reserved words */
@@ -48,25 +46,33 @@ typedef struct Token {
} Token;
/* state of the lexer plus state of the parser when shared by all
functions */
typedef struct LexState {
int current; /* current character (charint) */
int linenumber; /* input line counter */
int lastline; /* line of last token `consumed' */
Token t; /* current token */
Token lookahead; /* look ahead token */
struct FuncState *fs; /* `FuncState' is private to the parser */
struct FuncState *fs; /* current function (parser) */
struct lua_State *L;
struct zio *z; /* input stream */
ZIO *z; /* input stream */
Mbuffer *buff; /* buffer for tokens */
struct Dyndata *dyd; /* dynamic structures used by the parser */
TString *source; /* current source name */
TString *envn; /* environment variable name */
char decpoint; /* locale decimal point */
} LexState;
void luaX_init (lua_State *L);
void luaX_setinput (lua_State *L, LexState *LS, ZIO *z, TString *source);
int luaX_lex (LexState *LS, SemInfo *seminfo);
void luaX_checklimit (LexState *ls, int val, int limit, const char *msg);
void luaX_syntaxerror (LexState *ls, const char *s);
const char *luaX_token2str (LexState *ls, int token);
LUAI_FUNC void luaX_init (lua_State *L);
LUAI_FUNC void luaX_setinput (lua_State *L, LexState *ls, ZIO *z,
TString *source, int firstchar);
LUAI_FUNC TString *luaX_newstring (LexState *ls, const char *str, size_t l);
LUAI_FUNC void luaX_next (LexState *ls);
LUAI_FUNC int luaX_lookahead (LexState *ls);
LUAI_FUNC l_noret luaX_syntaxerror (LexState *ls, const char *s);
LUAI_FUNC const char *luaX_token2str (LexState *ls, int token);
#endif

324
llimits.h
View File

@@ -1,5 +1,5 @@
/*
** $Id: llimits.h,v 1.44 2002/06/13 13:45:31 roberto Exp roberto $
** $Id: llimits.h,v 1.103 2013/02/20 14:08:56 roberto Exp $
** Limits, basic types, and some other `installation-dependent' definitions
** See Copyright Notice in lua.h
*/
@@ -15,54 +15,24 @@
#include "lua.h"
/*
** try to find number of bits in an integer
*/
#ifndef BITS_INT
/* avoid overflows in comparison */
#if INT_MAX-20 < 32760
#define BITS_INT 16
#else
#if INT_MAX > 2147483640L
/* machine has at least 32 bits */
#define BITS_INT 32
#else
#error "you must define BITS_INT with number of bits in an integer"
#endif
#endif
#endif
typedef unsigned LUA_INT32 lu_int32;
typedef LUAI_UMEM lu_mem;
typedef LUAI_MEM l_mem;
/*
** the following types define integer types for values that may not
** fit in a `small int' (16 bits), but may waste space in a
** `large long' (64 bits). The current definitions should work in
** any machine, but may not be optimal.
*/
/* an unsigned integer to hold hash values */
typedef unsigned int lu_hash;
/* its signed equivalent */
typedef int ls_hash;
/* an unsigned integer big enough to count the total memory used by Lua; */
/* it should be at least as large as size_t */
typedef unsigned long lu_mem;
/* an integer big enough to count the number of strings in use */
typedef long ls_nstr;
/* an integer big enough to count the number of steps when calling a
** `count' hook */
typedef long ls_count;
/* chars used as small naturals (so that `char' is reserved for characteres) */
/* chars used as small naturals (so that `char' is reserved for characters) */
typedef unsigned char lu_byte;
#define MAX_SIZET ((size_t)(~(size_t)0)-2)
#define MAX_LUMEM ((lu_mem)(~(lu_mem)0)-2)
#define MAX_LMEM ((l_mem) ((MAX_LUMEM >> 1) - 2))
#define MAX_INT (INT_MAX-2) /* maximum value of an int (-2 for safety) */
@@ -71,83 +41,269 @@ typedef unsigned char lu_byte;
** this is for hashing only; there is no problem if the integer
** cannot hold the whole pointer value
*/
#define IntPoint(p) ((lu_hash)(p))
#define IntPoint(p) ((unsigned int)(lu_mem)(p))
/* type to ensure maximum alignment */
#ifndef LUSER_ALIGNMENT_T
#define LUSER_ALIGNMENT_T double
#endif
union L_Umaxalign { LUSER_ALIGNMENT_T u; void *s; long l; };
#ifndef lua_assert
#define lua_assert(c) /* empty */
#if !defined(LUAI_USER_ALIGNMENT_T)
#define LUAI_USER_ALIGNMENT_T union { double u; void *s; long l; }
#endif
typedef LUAI_USER_ALIGNMENT_T L_Umaxalign;
#ifndef check_exp
#define check_exp(c,e) (e)
/* result of a `usual argument conversion' over lua_Number */
typedef LUAI_UACNUMBER l_uacNumber;
/* internal assertions for in-house debugging */
#if defined(lua_assert)
#define check_exp(c,e) (lua_assert(c), (e))
/* to avoid problems with conditions too long */
#define lua_longassert(c) { if (!(c)) lua_assert(0); }
#else
#define lua_assert(c) ((void)0)
#define check_exp(c,e) (e)
#define lua_longassert(c) ((void)0)
#endif
/*
** assertion for checking API calls
*/
#if !defined(luai_apicheck)
#ifndef UNUSED
#if defined(LUA_USE_APICHECK)
#include <assert.h>
#define luai_apicheck(L,e) assert(e)
#else
#define luai_apicheck(L,e) lua_assert(e)
#endif
#endif
#define api_check(l,e,msg) luai_apicheck(l,(e) && msg)
#if !defined(UNUSED)
#define UNUSED(x) ((void)(x)) /* to avoid warnings */
#endif
#ifndef cast
#define cast(t, exp) ((t)(exp))
#define cast_byte(i) cast(lu_byte, (i))
#define cast_num(i) cast(lua_Number, (i))
#define cast_int(i) cast(int, (i))
#define cast_uchar(i) cast(unsigned char, (i))
/*
** non-return type
*/
#if defined(__GNUC__)
#define l_noret void __attribute__((noreturn))
#elif defined(_MSC_VER)
#define l_noret void __declspec(noreturn)
#else
#define l_noret void
#endif
/*
** maximum depth for nested C calls and syntactical nested non-terminals
** in a program. (Value must fit in an unsigned short int.)
*/
#if !defined(LUAI_MAXCCALLS)
#define LUAI_MAXCCALLS 200
#endif
/*
** maximum number of upvalues in a closure (both C and Lua). (Value
** must fit in an unsigned char.)
*/
#define MAXUPVAL UCHAR_MAX
/*
** type for virtual-machine instructions
** must be an unsigned with (at least) 4 bytes (see details in lopcodes.h)
*/
typedef unsigned long Instruction;
typedef lu_int32 Instruction;
/* maximum depth for calls */
#ifndef LUA_MAXCALLS
#define LUA_MAXCALLS 4096
#endif
/* maximum size for the C stack */
#ifndef LUA_MAXCSTACK
#define LUA_MAXCSTACK 2048
#endif
/* maximum stack for a Lua function */
#define MAXSTACK 250
/* maximum number of variables declared in a function */
#ifndef MAXVARS
#define MAXVARS 200 /* arbitrary limit (<MAXSTACK) */
#endif
/* maximum number of upvalues per function */
#ifndef MAXUPVALUES
#define MAXUPVALUES 32
#endif
/* maximum number of parameters in a function */
#ifndef MAXPARAMS
#define MAXPARAMS 100 /* arbitrary limit (<MAXLOCALS) */
#endif
/* minimum size for the string table (must be power of 2) */
#ifndef MINSTRTABSIZE
#if !defined(MINSTRTABSIZE)
#define MINSTRTABSIZE 32
#endif
/* minimum size for string buffer */
#if !defined(LUA_MINBUFFER)
#define LUA_MINBUFFER 32
#endif
#if !defined(lua_lock)
#define lua_lock(L) ((void) 0)
#define lua_unlock(L) ((void) 0)
#endif
#if !defined(luai_threadyield)
#define luai_threadyield(L) {lua_unlock(L); lua_lock(L);}
#endif
/*
** these macros allow user-specific actions on threads when you defined
** LUAI_EXTRASPACE and need to do something extra when a thread is
** created/deleted/resumed/yielded.
*/
#if !defined(luai_userstateopen)
#define luai_userstateopen(L) ((void)L)
#endif
#if !defined(luai_userstateclose)
#define luai_userstateclose(L) ((void)L)
#endif
#if !defined(luai_userstatethread)
#define luai_userstatethread(L,L1) ((void)L)
#endif
#if !defined(luai_userstatefree)
#define luai_userstatefree(L,L1) ((void)L)
#endif
#if !defined(luai_userstateresume)
#define luai_userstateresume(L,n) ((void)L)
#endif
#if !defined(luai_userstateyield)
#define luai_userstateyield(L,n) ((void)L)
#endif
/*
** lua_number2int is a macro to convert lua_Number to int.
** lua_number2integer is a macro to convert lua_Number to lua_Integer.
** lua_number2unsigned is a macro to convert a lua_Number to a lua_Unsigned.
** lua_unsigned2number is a macro to convert a lua_Unsigned to a lua_Number.
** luai_hashnum is a macro to hash a lua_Number value into an integer.
** The hash must be deterministic and give reasonable values for
** both small and large values (outside the range of integers).
*/
#if defined(MS_ASMTRICK) || defined(LUA_MSASMTRICK) /* { */
/* trick with Microsoft assembler for X86 */
#define lua_number2int(i,n) __asm {__asm fld n __asm fistp i}
#define lua_number2integer(i,n) lua_number2int(i, n)
#define lua_number2unsigned(i,n) \
{__int64 l; __asm {__asm fld n __asm fistp l} i = (unsigned int)l;}
#elif defined(LUA_IEEE754TRICK) /* }{ */
/* the next trick should work on any machine using IEEE754 with
a 32-bit int type */
union luai_Cast { double l_d; LUA_INT32 l_p[2]; };
#if !defined(LUA_IEEEENDIAN) /* { */
#define LUAI_EXTRAIEEE \
static const union luai_Cast ieeeendian = {-(33.0 + 6755399441055744.0)};
#define LUA_IEEEENDIANLOC (ieeeendian.l_p[1] == 33)
#else
#define LUA_IEEEENDIANLOC LUA_IEEEENDIAN
#define LUAI_EXTRAIEEE /* empty */
#endif /* } */
#define lua_number2int32(i,n,t) \
{ LUAI_EXTRAIEEE \
volatile union luai_Cast u; u.l_d = (n) + 6755399441055744.0; \
(i) = (t)u.l_p[LUA_IEEEENDIANLOC]; }
#define luai_hashnum(i,n) \
{ volatile union luai_Cast u; u.l_d = (n) + 1.0; /* avoid -0 */ \
(i) = u.l_p[0]; (i) += u.l_p[1]; } /* add double bits for his hash */
#define lua_number2int(i,n) lua_number2int32(i, n, int)
#define lua_number2unsigned(i,n) lua_number2int32(i, n, lua_Unsigned)
/* the trick can be expanded to lua_Integer when it is a 32-bit value */
#if defined(LUA_IEEELL)
#define lua_number2integer(i,n) lua_number2int32(i, n, lua_Integer)
#endif
#endif /* } */
/* the following definitions always work, but may be slow */
#if !defined(lua_number2int)
#define lua_number2int(i,n) ((i)=(int)(n))
#endif
#if !defined(lua_number2integer)
#define lua_number2integer(i,n) ((i)=(lua_Integer)(n))
#endif
#if !defined(lua_number2unsigned) /* { */
/* the following definition assures proper modulo behavior */
#if defined(LUA_NUMBER_DOUBLE) || defined(LUA_NUMBER_FLOAT)
#include <math.h>
#define SUPUNSIGNED ((lua_Number)(~(lua_Unsigned)0) + 1)
#define lua_number2unsigned(i,n) \
((i)=(lua_Unsigned)((n) - floor((n)/SUPUNSIGNED)*SUPUNSIGNED))
#else
#define lua_number2unsigned(i,n) ((i)=(lua_Unsigned)(n))
#endif
#endif /* } */
#if !defined(lua_unsigned2number)
/* on several machines, coercion from unsigned to double is slow,
so it may be worth to avoid */
#define lua_unsigned2number(u) \
(((u) <= (lua_Unsigned)INT_MAX) ? (lua_Number)(int)(u) : (lua_Number)(u))
#endif
#if defined(ltable_c) && !defined(luai_hashnum)
#include <float.h>
#include <math.h>
#define luai_hashnum(i,n) { int e; \
n = l_mathop(frexp)(n, &e) * (lua_Number)(INT_MAX - DBL_MAX_EXP); \
lua_number2int(i, n); i += e; }
#endif
/*
** macro to control inclusion of some hard tests on stack reallocation
*/
#if !defined(HARDSTACKTESTS)
#define condmovestack(L) ((void)0)
#else
/* realloc stack keeping its size */
#define condmovestack(L) luaD_reallocstack((L), (L)->stacksize)
#endif
#if !defined(HARDMEMTESTS)
#define condchangemem(L) condmovestack(L)
#else
#define condchangemem(L) \
((void)(!(G(L)->gcrunning) || (luaC_fullgc(L, 0), 1)))
#endif
#endif

View File

@@ -1,5 +1,5 @@
/*
** $Id: lmathlib.c,v 1.50 2002/08/14 20:07:43 roberto Exp roberto $
** $Id: lmathlib.c,v 1.83 2013/03/07 18:21:32 roberto Exp $
** Standard mathematical library
** See Copyright Notice in lua.h
*/
@@ -8,6 +8,9 @@
#include <stdlib.h>
#include <math.h>
#define lmathlib_c
#define LUA_LIB
#include "lua.h"
#include "lauxlib.h"
@@ -15,123 +18,150 @@
#undef PI
#define PI (3.14159265358979323846)
#define RADIANS_PER_DEGREE (PI/180.0)
#define PI ((lua_Number)(3.1415926535897932384626433832795))
#define RADIANS_PER_DEGREE ((lua_Number)(PI/180.0))
/*
** If you want Lua to operate in degrees (instead of radians),
** define USE_DEGREES
*/
#ifdef USE_DEGREES
#define FROMRAD(a) ((a)/RADIANS_PER_DEGREE)
#define TORAD(a) ((a)*RADIANS_PER_DEGREE)
#else
#define FROMRAD(a) (a)
#define TORAD(a) (a)
#endif
static int math_abs (lua_State *L) {
lua_pushnumber(L, fabs(luaL_check_number(L, 1)));
lua_pushnumber(L, l_mathop(fabs)(luaL_checknumber(L, 1)));
return 1;
}
static int math_sin (lua_State *L) {
lua_pushnumber(L, sin(TORAD(luaL_check_number(L, 1))));
lua_pushnumber(L, l_mathop(sin)(luaL_checknumber(L, 1)));
return 1;
}
static int math_sinh (lua_State *L) {
lua_pushnumber(L, l_mathop(sinh)(luaL_checknumber(L, 1)));
return 1;
}
static int math_cos (lua_State *L) {
lua_pushnumber(L, cos(TORAD(luaL_check_number(L, 1))));
lua_pushnumber(L, l_mathop(cos)(luaL_checknumber(L, 1)));
return 1;
}
static int math_cosh (lua_State *L) {
lua_pushnumber(L, l_mathop(cosh)(luaL_checknumber(L, 1)));
return 1;
}
static int math_tan (lua_State *L) {
lua_pushnumber(L, tan(TORAD(luaL_check_number(L, 1))));
lua_pushnumber(L, l_mathop(tan)(luaL_checknumber(L, 1)));
return 1;
}
static int math_tanh (lua_State *L) {
lua_pushnumber(L, l_mathop(tanh)(luaL_checknumber(L, 1)));
return 1;
}
static int math_asin (lua_State *L) {
lua_pushnumber(L, FROMRAD(asin(luaL_check_number(L, 1))));
lua_pushnumber(L, l_mathop(asin)(luaL_checknumber(L, 1)));
return 1;
}
static int math_acos (lua_State *L) {
lua_pushnumber(L, FROMRAD(acos(luaL_check_number(L, 1))));
lua_pushnumber(L, l_mathop(acos)(luaL_checknumber(L, 1)));
return 1;
}
static int math_atan (lua_State *L) {
lua_pushnumber(L, FROMRAD(atan(luaL_check_number(L, 1))));
lua_pushnumber(L, l_mathop(atan)(luaL_checknumber(L, 1)));
return 1;
}
static int math_atan2 (lua_State *L) {
lua_pushnumber(L, FROMRAD(atan2(luaL_check_number(L, 1), luaL_check_number(L, 2))));
lua_pushnumber(L, l_mathop(atan2)(luaL_checknumber(L, 1),
luaL_checknumber(L, 2)));
return 1;
}
static int math_ceil (lua_State *L) {
lua_pushnumber(L, ceil(luaL_check_number(L, 1)));
lua_pushnumber(L, l_mathop(ceil)(luaL_checknumber(L, 1)));
return 1;
}
static int math_floor (lua_State *L) {
lua_pushnumber(L, floor(luaL_check_number(L, 1)));
lua_pushnumber(L, l_mathop(floor)(luaL_checknumber(L, 1)));
return 1;
}
static int math_mod (lua_State *L) {
lua_pushnumber(L, fmod(luaL_check_number(L, 1), luaL_check_number(L, 2)));
static int math_fmod (lua_State *L) {
lua_pushnumber(L, l_mathop(fmod)(luaL_checknumber(L, 1),
luaL_checknumber(L, 2)));
return 1;
}
static int math_modf (lua_State *L) {
lua_Number ip;
lua_Number fp = l_mathop(modf)(luaL_checknumber(L, 1), &ip);
lua_pushnumber(L, ip);
lua_pushnumber(L, fp);
return 2;
}
static int math_sqrt (lua_State *L) {
lua_pushnumber(L, sqrt(luaL_check_number(L, 1)));
lua_pushnumber(L, l_mathop(sqrt)(luaL_checknumber(L, 1)));
return 1;
}
static int math_pow (lua_State *L) {
lua_pushnumber(L, pow(luaL_check_number(L, 1), luaL_check_number(L, 2)));
lua_Number x = luaL_checknumber(L, 1);
lua_Number y = luaL_checknumber(L, 2);
lua_pushnumber(L, l_mathop(pow)(x, y));
return 1;
}
static int math_log (lua_State *L) {
lua_pushnumber(L, log(luaL_check_number(L, 1)));
lua_Number x = luaL_checknumber(L, 1);
lua_Number res;
if (lua_isnoneornil(L, 2))
res = l_mathop(log)(x);
else {
lua_Number base = luaL_checknumber(L, 2);
if (base == (lua_Number)10.0) res = l_mathop(log10)(x);
else res = l_mathop(log)(x)/l_mathop(log)(base);
}
lua_pushnumber(L, res);
return 1;
}
#if defined(LUA_COMPAT_LOG10)
static int math_log10 (lua_State *L) {
lua_pushnumber(L, log10(luaL_check_number(L, 1)));
lua_pushnumber(L, l_mathop(log10)(luaL_checknumber(L, 1)));
return 1;
}
#endif
static int math_exp (lua_State *L) {
lua_pushnumber(L, exp(luaL_check_number(L, 1)));
lua_pushnumber(L, l_mathop(exp)(luaL_checknumber(L, 1)));
return 1;
}
static int math_deg (lua_State *L) {
lua_pushnumber(L, luaL_check_number(L, 1)/RADIANS_PER_DEGREE);
lua_pushnumber(L, luaL_checknumber(L, 1)/RADIANS_PER_DEGREE);
return 1;
}
static int math_rad (lua_State *L) {
lua_pushnumber(L, luaL_check_number(L, 1)*RADIANS_PER_DEGREE);
lua_pushnumber(L, luaL_checknumber(L, 1)*RADIANS_PER_DEGREE);
return 1;
}
static int math_frexp (lua_State *L) {
int e;
lua_pushnumber(L, frexp(luaL_check_number(L, 1), &e));
lua_pushnumber(L, e);
lua_pushnumber(L, l_mathop(frexp)(luaL_checknumber(L, 1), &e));
lua_pushinteger(L, e);
return 2;
}
static int math_ldexp (lua_State *L) {
lua_pushnumber(L, ldexp(luaL_check_number(L, 1), luaL_check_int(L, 2)));
lua_Number x = luaL_checknumber(L, 1);
int ep = luaL_checkint(L, 2);
lua_pushnumber(L, l_mathop(ldexp)(x, ep));
return 1;
}
@@ -139,10 +169,10 @@ static int math_ldexp (lua_State *L) {
static int math_min (lua_State *L) {
int n = lua_gettop(L); /* number of arguments */
lua_Number dmin = luaL_check_number(L, 1);
lua_Number dmin = luaL_checknumber(L, 1);
int i;
for (i=2; i<=n; i++) {
lua_Number d = luaL_check_number(L, i);
lua_Number d = luaL_checknumber(L, i);
if (d < dmin)
dmin = d;
}
@@ -153,10 +183,10 @@ static int math_min (lua_State *L) {
static int math_max (lua_State *L) {
int n = lua_gettop(L); /* number of arguments */
lua_Number dmax = luaL_check_number(L, 1);
lua_Number dmax = luaL_checknumber(L, 1);
int i;
for (i=2; i<=n; i++) {
lua_Number d = luaL_check_number(L, i);
lua_Number d = luaL_checknumber(L, i);
if (d > dmax)
dmax = d;
}
@@ -175,16 +205,16 @@ static int math_random (lua_State *L) {
break;
}
case 1: { /* only upper limit */
int u = luaL_check_int(L, 1);
luaL_arg_check(L, 1<=u, 1, "interval is empty");
lua_pushnumber(L, (int)floor(r*u)+1); /* int between 1 and `u' */
lua_Number u = luaL_checknumber(L, 1);
luaL_argcheck(L, (lua_Number)1.0 <= u, 1, "interval is empty");
lua_pushnumber(L, l_mathop(floor)(r*u) + (lua_Number)(1.0)); /* [1, u] */
break;
}
case 2: { /* lower and upper limits */
int l = luaL_check_int(L, 1);
int u = luaL_check_int(L, 2);
luaL_arg_check(L, l<=u, 2, "interval is empty");
lua_pushnumber(L, (int)floor(r*(u-l+1))+l); /* int between `l' and `u' */
lua_Number l = luaL_checknumber(L, 1);
lua_Number u = luaL_checknumber(L, 2);
luaL_argcheck(L, l <= u, 2, "interval is empty");
lua_pushnumber(L, l_mathop(floor)(r*(u-l+1)) + l); /* [l, u] */
break;
}
default: return luaL_error(L, "wrong number of arguments");
@@ -194,36 +224,43 @@ static int math_random (lua_State *L) {
static int math_randomseed (lua_State *L) {
srand(luaL_check_int(L, 1));
srand(luaL_checkunsigned(L, 1));
(void)rand(); /* discard first value to avoid undesirable correlations */
return 0;
}
static const luaL_reg mathlib[] = {
static const luaL_Reg mathlib[] = {
{"abs", math_abs},
{"sin", math_sin},
{"cos", math_cos},
{"tan", math_tan},
{"asin", math_asin},
{"acos", math_acos},
{"atan", math_atan},
{"asin", math_asin},
{"atan2", math_atan2},
{"atan", math_atan},
{"ceil", math_ceil},
{"cosh", math_cosh},
{"cos", math_cos},
{"deg", math_deg},
{"exp", math_exp},
{"floor", math_floor},
{"mod", math_mod},
{"fmod", math_fmod},
{"frexp", math_frexp},
{"ldexp", math_ldexp},
{"sqrt", math_sqrt},
{"min", math_min},
{"max", math_max},
{"log", math_log},
#if defined(LUA_COMPAT_LOG10)
{"log10", math_log10},
{"exp", math_exp},
{"deg", math_deg},
#endif
{"log", math_log},
{"max", math_max},
{"min", math_min},
{"modf", math_modf},
{"pow", math_pow},
{"rad", math_rad},
{"random", math_random},
{"randomseed", math_randomseed},
{"sinh", math_sinh},
{"sin", math_sin},
{"sqrt", math_sqrt},
{"tanh", math_tanh},
{"tan", math_tan},
{NULL, NULL}
};
@@ -231,17 +268,12 @@ static const luaL_reg mathlib[] = {
/*
** Open math library
*/
LUALIB_API int lua_mathlibopen (lua_State *L) {
lua_pushliteral(L, LUA_MATHLIBNAME);
lua_newtable(L);
luaL_openlib(L, mathlib, 0);
lua_pushliteral(L, "pi");
LUAMOD_API int luaopen_math (lua_State *L) {
luaL_newlib(L, mathlib);
lua_pushnumber(L, PI);
lua_settable(L, -3);
lua_settable(L, LUA_GLOBALSINDEX);
lua_pushliteral(L, "__pow");
lua_pushcfunction(L, math_pow);
lua_settable(L, LUA_REGISTRYINDEX);
return 0;
lua_setfield(L, -2, "pi");
lua_pushnumber(L, HUGE_VAL);
lua_setfield(L, -2, "huge");
return 1;
}

102
lmem.c
View File

@@ -1,16 +1,20 @@
/*
** $Id: lmem.c,v 1.56 2002/06/11 16:23:47 roberto Exp roberto $
** $Id: lmem.c,v 1.84 2012/05/23 15:41:53 roberto Exp $
** Interface to Memory Manager
** See Copyright Notice in lua.h
*/
#include <stdlib.h>
#include <stddef.h>
#define lmem_c
#define LUA_CORE
#include "lua.h"
#include "ldebug.h"
#include "ldo.h"
#include "lgc.h"
#include "lmem.h"
#include "lobject.h"
#include "lstate.h"
@@ -18,62 +22,78 @@
/*
** definition for realloc function. It must assure that
** l_realloc(block, x, 0) frees the block, and l_realloc(NULL, 0, x)
** allocates a new block (ANSI C assures that).
** (`os' is the old block size; some allocators may use that.)
** About the realloc function:
** void * frealloc (void *ud, void *ptr, size_t osize, size_t nsize);
** (`osize' is the old size, `nsize' is the new size)
**
** * frealloc(ud, NULL, x, s) creates a new block of size `s' (no
** matter 'x').
**
** * frealloc(ud, p, x, 0) frees the block `p'
** (in this specific case, frealloc must return NULL);
** particularly, frealloc(ud, NULL, 0, 0) does nothing
** (which is equivalent to free(NULL) in ANSI C)
**
** frealloc returns NULL if it cannot create or reallocate the area
** (any reallocation to an equal or smaller size cannot fail!)
*/
#ifndef l_realloc
#define l_realloc(b,os,s) realloc(b,s)
#endif
#define MINSIZEARRAY 4
void *luaM_growaux (lua_State *L, void *block, int *size, int size_elems,
int limit, const char *errormsg) {
void *luaM_growaux_ (lua_State *L, void *block, int *size, size_t size_elems,
int limit, const char *what) {
void *newblock;
int newsize = (*size)*2;
if (newsize < MINSIZEARRAY)
newsize = MINSIZEARRAY; /* minimum size */
else if (*size >= limit/2) { /* cannot double it? */
if (*size < limit - MINSIZEARRAY) /* try something smaller... */
newsize = limit; /* still have at least MINSIZEARRAY free places */
else luaG_runerror(L, errormsg);
int newsize;
if (*size >= limit/2) { /* cannot double it? */
if (*size >= limit) /* cannot grow even a little? */
luaG_runerror(L, "too many %s (limit is %d)", what, limit);
newsize = limit; /* still have at least one free place */
}
newblock = luaM_realloc(L, block,
cast(lu_mem, *size)*cast(lu_mem, size_elems),
cast(lu_mem, newsize)*cast(lu_mem, size_elems));
else {
newsize = (*size)*2;
if (newsize < MINSIZEARRAY)
newsize = MINSIZEARRAY; /* minimum size */
}
newblock = luaM_reallocv(L, block, *size, newsize, size_elems);
*size = newsize; /* update only when everything else is OK */
return newblock;
}
l_noret luaM_toobig (lua_State *L) {
luaG_runerror(L, "memory allocation error: block too big");
}
/*
** generic allocation routine.
*/
void *luaM_realloc (lua_State *L, void *block, lu_mem oldsize, lu_mem size) {
if (size == 0) {
if (block != NULL) {
l_realloc(block, oldsize, size);
block = NULL;
void *luaM_realloc_ (lua_State *L, void *block, size_t osize, size_t nsize) {
void *newblock;
global_State *g = G(L);
size_t realosize = (block) ? osize : 0;
lua_assert((realosize == 0) == (block == NULL));
#if defined(HARDMEMTESTS)
if (nsize > realosize && g->gcrunning)
luaC_fullgc(L, 1); /* force a GC whenever possible */
#endif
newblock = (*g->frealloc)(g->ud, block, osize, nsize);
if (newblock == NULL && nsize > 0) {
api_check(L, nsize > realosize,
"realloc cannot fail when shrinking a block");
if (g->gcrunning) {
luaC_fullgc(L, 1); /* try to free some memory... */
newblock = (*g->frealloc)(g->ud, block, osize, nsize); /* try again */
}
if (newblock == NULL)
luaD_throw(L, LUA_ERRMEM);
}
else if (size >= MAX_SIZET)
luaG_runerror(L, "memory allocation error: block too big");
else {
block = l_realloc(block, oldsize, size);
if (block == NULL) {
if (L)
luaD_throw(L, LUA_ERRMEM);
else return NULL; /* error before creating state! */
}
}
if (L && G(L)) {
G(L)->nblocks -= oldsize;
G(L)->nblocks += size;
}
return block;
lua_assert((nsize == 0) == (newblock == NULL));
g->GCdebt = (g->GCdebt + nsize) - realosize;
return newblock;
}

49
lmem.h
View File

@@ -1,5 +1,5 @@
/*
** $Id: lmem.h,v 1.25 2001/11/28 20:13:13 roberto Exp roberto $
** $Id: lmem.h,v 1.40 2013/02/20 14:08:21 roberto Exp $
** Interface to Memory Manager
** See Copyright Notice in lua.h
*/
@@ -13,32 +13,45 @@
#include "llimits.h"
#include "lua.h"
#define MEMERRMSG "not enough memory"
/*
** This macro avoids the runtime division MAX_SIZET/(e), as 'e' is
** always constant.
** The macro is somewhat complex to avoid warnings:
** +1 avoids warnings of "comparison has constant result";
** cast to 'void' avoids warnings of "value unused".
*/
#define luaM_reallocv(L,b,on,n,e) \
(cast(void, \
(cast(size_t, (n)+1) > MAX_SIZET/(e)) ? (luaM_toobig(L), 0) : 0), \
luaM_realloc_(L, (b), (on)*(e), (n)*(e)))
void *luaM_realloc (lua_State *L, void *oldblock, lu_mem oldsize, lu_mem size);
#define luaM_freemem(L, b, s) luaM_realloc_(L, (b), (s), 0)
#define luaM_free(L, b) luaM_realloc_(L, (b), sizeof(*(b)), 0)
#define luaM_freearray(L, b, n) luaM_reallocv(L, (b), n, 0, sizeof((b)[0]))
void *luaM_growaux (lua_State *L, void *block, int *size, int size_elem,
int limit, const char *errormsg);
#define luaM_malloc(L,s) luaM_realloc_(L, NULL, 0, (s))
#define luaM_new(L,t) cast(t *, luaM_malloc(L, sizeof(t)))
#define luaM_newvector(L,n,t) \
cast(t *, luaM_reallocv(L, NULL, 0, n, sizeof(t)))
#define luaM_free(L, b, s) luaM_realloc(L, (b), (s), 0)
#define luaM_freelem(L, b) luaM_realloc(L, (b), sizeof(*(b)), 0)
#define luaM_freearray(L, b, n, t) luaM_realloc(L, (b), \
cast(lu_mem, n)*cast(lu_mem, sizeof(t)), 0)
#define luaM_malloc(L, t) luaM_realloc(L, NULL, 0, (t))
#define luaM_new(L, t) cast(t *, luaM_malloc(L, sizeof(t)))
#define luaM_newvector(L, n,t) cast(t *, luaM_malloc(L, \
cast(lu_mem, n)*cast(lu_mem, sizeof(t))))
#define luaM_newobject(L,tag,s) luaM_realloc_(L, NULL, tag, (s))
#define luaM_growvector(L,v,nelems,size,t,limit,e) \
if (((nelems)+1) > (size)) \
((v)=cast(t *, luaM_growaux(L,v,&(size),sizeof(t),limit,e)))
if ((nelems)+1 > (size)) \
((v)=cast(t *, luaM_growaux_(L,v,&(size),sizeof(t),limit,e)))
#define luaM_reallocvector(L, v,oldn,n,t) \
((v)=cast(t *, luaM_realloc(L, v,cast(lu_mem, oldn)*cast(lu_mem, sizeof(t)), \
cast(lu_mem, n)*cast(lu_mem, sizeof(t)))))
((v)=cast(t *, luaM_reallocv(L, v, oldn, n, sizeof(t))))
LUAI_FUNC l_noret luaM_toobig (lua_State *L);
/* not to be called directly */
LUAI_FUNC void *luaM_realloc_ (lua_State *L, void *block, size_t oldsize,
size_t size);
LUAI_FUNC void *luaM_growaux_ (lua_State *L, void *block, int *size,
size_t size_elem, int limit,
const char *what);
#endif

725
loadlib.c Normal file
View File

@@ -0,0 +1,725 @@
/*
** $Id: loadlib.c,v 1.111 2012/05/30 12:33:44 roberto Exp $
** Dynamic library loader for Lua
** See Copyright Notice in lua.h
**
** This module contains an implementation of loadlib for Unix systems
** that have dlfcn, an implementation for Windows, and a stub for other
** systems.
*/
/*
** if needed, includes windows header before everything else
*/
#if defined(_WIN32)
#include <windows.h>
#endif
#include <stdlib.h>
#include <string.h>
#define loadlib_c
#define LUA_LIB
#include "lua.h"
#include "lauxlib.h"
#include "lualib.h"
/*
** LUA_PATH and LUA_CPATH are the names of the environment
** variables that Lua check to set its paths.
*/
#if !defined(LUA_PATH)
#define LUA_PATH "LUA_PATH"
#endif
#if !defined(LUA_CPATH)
#define LUA_CPATH "LUA_CPATH"
#endif
#define LUA_PATHSUFFIX "_" LUA_VERSION_MAJOR "_" LUA_VERSION_MINOR
#define LUA_PATHVERSION LUA_PATH LUA_PATHSUFFIX
#define LUA_CPATHVERSION LUA_CPATH LUA_PATHSUFFIX
/*
** LUA_PATH_SEP is the character that separates templates in a path.
** LUA_PATH_MARK is the string that marks the substitution points in a
** template.
** LUA_EXEC_DIR in a Windows path is replaced by the executable's
** directory.
** LUA_IGMARK is a mark to ignore all before it when building the
** luaopen_ function name.
*/
#if !defined (LUA_PATH_SEP)
#define LUA_PATH_SEP ";"
#endif
#if !defined (LUA_PATH_MARK)
#define LUA_PATH_MARK "?"
#endif
#if !defined (LUA_EXEC_DIR)
#define LUA_EXEC_DIR "!"
#endif
#if !defined (LUA_IGMARK)
#define LUA_IGMARK "-"
#endif
/*
** LUA_CSUBSEP is the character that replaces dots in submodule names
** when searching for a C loader.
** LUA_LSUBSEP is the character that replaces dots in submodule names
** when searching for a Lua loader.
*/
#if !defined(LUA_CSUBSEP)
#define LUA_CSUBSEP LUA_DIRSEP
#endif
#if !defined(LUA_LSUBSEP)
#define LUA_LSUBSEP LUA_DIRSEP
#endif
/* prefix for open functions in C libraries */
#define LUA_POF "luaopen_"
/* separator for open functions in C libraries */
#define LUA_OFSEP "_"
/* table (in the registry) that keeps handles for all loaded C libraries */
#define CLIBS "_CLIBS"
#define LIB_FAIL "open"
/* error codes for ll_loadfunc */
#define ERRLIB 1
#define ERRFUNC 2
#define setprogdir(L) ((void)0)
/*
** system-dependent functions
*/
static void ll_unloadlib (void *lib);
static void *ll_load (lua_State *L, const char *path, int seeglb);
static lua_CFunction ll_sym (lua_State *L, void *lib, const char *sym);
#if defined(LUA_USE_DLOPEN)
/*
** {========================================================================
** This is an implementation of loadlib based on the dlfcn interface.
** The dlfcn interface is available in Linux, SunOS, Solaris, IRIX, FreeBSD,
** NetBSD, AIX 4.2, HPUX 11, and probably most other Unix flavors, at least
** as an emulation layer on top of native functions.
** =========================================================================
*/
#include <dlfcn.h>
static void ll_unloadlib (void *lib) {
dlclose(lib);
}
static void *ll_load (lua_State *L, const char *path, int seeglb) {
void *lib = dlopen(path, RTLD_NOW | (seeglb ? RTLD_GLOBAL : RTLD_LOCAL));
if (lib == NULL) lua_pushstring(L, dlerror());
return lib;
}
static lua_CFunction ll_sym (lua_State *L, void *lib, const char *sym) {
lua_CFunction f = (lua_CFunction)dlsym(lib, sym);
if (f == NULL) lua_pushstring(L, dlerror());
return f;
}
/* }====================================================== */
#elif defined(LUA_DL_DLL)
/*
** {======================================================================
** This is an implementation of loadlib for Windows using native functions.
** =======================================================================
*/
#undef setprogdir
/*
** optional flags for LoadLibraryEx
*/
#if !defined(LUA_LLE_FLAGS)
#define LUA_LLE_FLAGS 0
#endif
static void setprogdir (lua_State *L) {
char buff[MAX_PATH + 1];
char *lb;
DWORD nsize = sizeof(buff)/sizeof(char);
DWORD n = GetModuleFileNameA(NULL, buff, nsize);
if (n == 0 || n == nsize || (lb = strrchr(buff, '\\')) == NULL)
luaL_error(L, "unable to get ModuleFileName");
else {
*lb = '\0';
luaL_gsub(L, lua_tostring(L, -1), LUA_EXEC_DIR, buff);
lua_remove(L, -2); /* remove original string */
}
}
static void pusherror (lua_State *L) {
int error = GetLastError();
char buffer[128];
if (FormatMessageA(FORMAT_MESSAGE_IGNORE_INSERTS | FORMAT_MESSAGE_FROM_SYSTEM,
NULL, error, 0, buffer, sizeof(buffer)/sizeof(char), NULL))
lua_pushstring(L, buffer);
else
lua_pushfstring(L, "system error %d\n", error);
}
static void ll_unloadlib (void *lib) {
FreeLibrary((HMODULE)lib);
}
static void *ll_load (lua_State *L, const char *path, int seeglb) {
HMODULE lib = LoadLibraryExA(path, NULL, LUA_LLE_FLAGS);
(void)(seeglb); /* not used: symbols are 'global' by default */
if (lib == NULL) pusherror(L);
return lib;
}
static lua_CFunction ll_sym (lua_State *L, void *lib, const char *sym) {
lua_CFunction f = (lua_CFunction)GetProcAddress((HMODULE)lib, sym);
if (f == NULL) pusherror(L);
return f;
}
/* }====================================================== */
#else
/*
** {======================================================
** Fallback for other systems
** =======================================================
*/
#undef LIB_FAIL
#define LIB_FAIL "absent"
#define DLMSG "dynamic libraries not enabled; check your Lua installation"
static void ll_unloadlib (void *lib) {
(void)(lib); /* not used */
}
static void *ll_load (lua_State *L, const char *path, int seeglb) {
(void)(path); (void)(seeglb); /* not used */
lua_pushliteral(L, DLMSG);
return NULL;
}
static lua_CFunction ll_sym (lua_State *L, void *lib, const char *sym) {
(void)(lib); (void)(sym); /* not used */
lua_pushliteral(L, DLMSG);
return NULL;
}
/* }====================================================== */
#endif
static void *ll_checkclib (lua_State *L, const char *path) {
void *plib;
lua_getfield(L, LUA_REGISTRYINDEX, CLIBS);
lua_getfield(L, -1, path);
plib = lua_touserdata(L, -1); /* plib = CLIBS[path] */
lua_pop(L, 2); /* pop CLIBS table and 'plib' */
return plib;
}
static void ll_addtoclib (lua_State *L, const char *path, void *plib) {
lua_getfield(L, LUA_REGISTRYINDEX, CLIBS);
lua_pushlightuserdata(L, plib);
lua_pushvalue(L, -1);
lua_setfield(L, -3, path); /* CLIBS[path] = plib */
lua_rawseti(L, -2, luaL_len(L, -2) + 1); /* CLIBS[#CLIBS + 1] = plib */
lua_pop(L, 1); /* pop CLIBS table */
}
/*
** __gc tag method for CLIBS table: calls 'll_unloadlib' for all lib
** handles in list CLIBS
*/
static int gctm (lua_State *L) {
int n = luaL_len(L, 1);
for (; n >= 1; n--) { /* for each handle, in reverse order */
lua_rawgeti(L, 1, n); /* get handle CLIBS[n] */
ll_unloadlib(lua_touserdata(L, -1));
lua_pop(L, 1); /* pop handle */
}
return 0;
}
static int ll_loadfunc (lua_State *L, const char *path, const char *sym) {
void *reg = ll_checkclib(L, path); /* check loaded C libraries */
if (reg == NULL) { /* must load library? */
reg = ll_load(L, path, *sym == '*');
if (reg == NULL) return ERRLIB; /* unable to load library */
ll_addtoclib(L, path, reg);
}
if (*sym == '*') { /* loading only library (no function)? */
lua_pushboolean(L, 1); /* return 'true' */
return 0; /* no errors */
}
else {
lua_CFunction f = ll_sym(L, reg, sym);
if (f == NULL)
return ERRFUNC; /* unable to find function */
lua_pushcfunction(L, f); /* else create new function */
return 0; /* no errors */
}
}
static int ll_loadlib (lua_State *L) {
const char *path = luaL_checkstring(L, 1);
const char *init = luaL_checkstring(L, 2);
int stat = ll_loadfunc(L, path, init);
if (stat == 0) /* no errors? */
return 1; /* return the loaded function */
else { /* error; error message is on stack top */
lua_pushnil(L);
lua_insert(L, -2);
lua_pushstring(L, (stat == ERRLIB) ? LIB_FAIL : "init");
return 3; /* return nil, error message, and where */
}
}
/*
** {======================================================
** 'require' function
** =======================================================
*/
static int readable (const char *filename) {
FILE *f = fopen(filename, "r"); /* try to open file */
if (f == NULL) return 0; /* open failed */
fclose(f);
return 1;
}
static const char *pushnexttemplate (lua_State *L, const char *path) {
const char *l;
while (*path == *LUA_PATH_SEP) path++; /* skip separators */
if (*path == '\0') return NULL; /* no more templates */
l = strchr(path, *LUA_PATH_SEP); /* find next separator */
if (l == NULL) l = path + strlen(path);
lua_pushlstring(L, path, l - path); /* template */
return l;
}
static const char *searchpath (lua_State *L, const char *name,
const char *path,
const char *sep,
const char *dirsep) {
luaL_Buffer msg; /* to build error message */
luaL_buffinit(L, &msg);
if (*sep != '\0') /* non-empty separator? */
name = luaL_gsub(L, name, sep, dirsep); /* replace it by 'dirsep' */
while ((path = pushnexttemplate(L, path)) != NULL) {
const char *filename = luaL_gsub(L, lua_tostring(L, -1),
LUA_PATH_MARK, name);
lua_remove(L, -2); /* remove path template */
if (readable(filename)) /* does file exist and is readable? */
return filename; /* return that file name */
lua_pushfstring(L, "\n\tno file " LUA_QS, filename);
lua_remove(L, -2); /* remove file name */
luaL_addvalue(&msg); /* concatenate error msg. entry */
}
luaL_pushresult(&msg); /* create error message */
return NULL; /* not found */
}
static int ll_searchpath (lua_State *L) {
const char *f = searchpath(L, luaL_checkstring(L, 1),
luaL_checkstring(L, 2),
luaL_optstring(L, 3, "."),
luaL_optstring(L, 4, LUA_DIRSEP));
if (f != NULL) return 1;
else { /* error message is on top of the stack */
lua_pushnil(L);
lua_insert(L, -2);
return 2; /* return nil + error message */
}
}
static const char *findfile (lua_State *L, const char *name,
const char *pname,
const char *dirsep) {
const char *path;
lua_getfield(L, lua_upvalueindex(1), pname);
path = lua_tostring(L, -1);
if (path == NULL)
luaL_error(L, LUA_QL("package.%s") " must be a string", pname);
return searchpath(L, name, path, ".", dirsep);
}
static int checkload (lua_State *L, int stat, const char *filename) {
if (stat) { /* module loaded successfully? */
lua_pushstring(L, filename); /* will be 2nd argument to module */
return 2; /* return open function and file name */
}
else
return luaL_error(L, "error loading module " LUA_QS
" from file " LUA_QS ":\n\t%s",
lua_tostring(L, 1), filename, lua_tostring(L, -1));
}
static int searcher_Lua (lua_State *L) {
const char *filename;
const char *name = luaL_checkstring(L, 1);
filename = findfile(L, name, "path", LUA_LSUBSEP);
if (filename == NULL) return 1; /* module not found in this path */
return checkload(L, (luaL_loadfile(L, filename) == LUA_OK), filename);
}
static int loadfunc (lua_State *L, const char *filename, const char *modname) {
const char *funcname;
const char *mark;
modname = luaL_gsub(L, modname, ".", LUA_OFSEP);
mark = strchr(modname, *LUA_IGMARK);
if (mark) {
int stat;
funcname = lua_pushlstring(L, modname, mark - modname);
funcname = lua_pushfstring(L, LUA_POF"%s", funcname);
stat = ll_loadfunc(L, filename, funcname);
if (stat != ERRFUNC) return stat;
modname = mark + 1; /* else go ahead and try old-style name */
}
funcname = lua_pushfstring(L, LUA_POF"%s", modname);
return ll_loadfunc(L, filename, funcname);
}
static int searcher_C (lua_State *L) {
const char *name = luaL_checkstring(L, 1);
const char *filename = findfile(L, name, "cpath", LUA_CSUBSEP);
if (filename == NULL) return 1; /* module not found in this path */
return checkload(L, (loadfunc(L, filename, name) == 0), filename);
}
static int searcher_Croot (lua_State *L) {
const char *filename;
const char *name = luaL_checkstring(L, 1);
const char *p = strchr(name, '.');
int stat;
if (p == NULL) return 0; /* is root */
lua_pushlstring(L, name, p - name);
filename = findfile(L, lua_tostring(L, -1), "cpath", LUA_CSUBSEP);
if (filename == NULL) return 1; /* root not found */
if ((stat = loadfunc(L, filename, name)) != 0) {
if (stat != ERRFUNC)
return checkload(L, 0, filename); /* real error */
else { /* open function not found */
lua_pushfstring(L, "\n\tno module " LUA_QS " in file " LUA_QS,
name, filename);
return 1;
}
}
lua_pushstring(L, filename); /* will be 2nd argument to module */
return 2;
}
static int searcher_preload (lua_State *L) {
const char *name = luaL_checkstring(L, 1);
lua_getfield(L, LUA_REGISTRYINDEX, "_PRELOAD");
lua_getfield(L, -1, name);
if (lua_isnil(L, -1)) /* not found? */
lua_pushfstring(L, "\n\tno field package.preload['%s']", name);
return 1;
}
static void findloader (lua_State *L, const char *name) {
int i;
luaL_Buffer msg; /* to build error message */
luaL_buffinit(L, &msg);
lua_getfield(L, lua_upvalueindex(1), "searchers"); /* will be at index 3 */
if (!lua_istable(L, 3))
luaL_error(L, LUA_QL("package.searchers") " must be a table");
/* iterate over available searchers to find a loader */
for (i = 1; ; i++) {
lua_rawgeti(L, 3, i); /* get a searcher */
if (lua_isnil(L, -1)) { /* no more searchers? */
lua_pop(L, 1); /* remove nil */
luaL_pushresult(&msg); /* create error message */
luaL_error(L, "module " LUA_QS " not found:%s",
name, lua_tostring(L, -1));
}
lua_pushstring(L, name);
lua_call(L, 1, 2); /* call it */
if (lua_isfunction(L, -2)) /* did it find a loader? */
return; /* module loader found */
else if (lua_isstring(L, -2)) { /* searcher returned error message? */
lua_pop(L, 1); /* remove extra return */
luaL_addvalue(&msg); /* concatenate error message */
}
else
lua_pop(L, 2); /* remove both returns */
}
}
static int ll_require (lua_State *L) {
const char *name = luaL_checkstring(L, 1);
lua_settop(L, 1); /* _LOADED table will be at index 2 */
lua_getfield(L, LUA_REGISTRYINDEX, "_LOADED");
lua_getfield(L, 2, name); /* _LOADED[name] */
if (lua_toboolean(L, -1)) /* is it there? */
return 1; /* package is already loaded */
/* else must load package */
lua_pop(L, 1); /* remove 'getfield' result */
findloader(L, name);
lua_pushstring(L, name); /* pass name as argument to module loader */
lua_insert(L, -2); /* name is 1st argument (before search data) */
lua_call(L, 2, 1); /* run loader to load module */
if (!lua_isnil(L, -1)) /* non-nil return? */
lua_setfield(L, 2, name); /* _LOADED[name] = returned value */
lua_getfield(L, 2, name);
if (lua_isnil(L, -1)) { /* module did not set a value? */
lua_pushboolean(L, 1); /* use true as result */
lua_pushvalue(L, -1); /* extra copy to be returned */
lua_setfield(L, 2, name); /* _LOADED[name] = true */
}
return 1;
}
/* }====================================================== */
/*
** {======================================================
** 'module' function
** =======================================================
*/
#if defined(LUA_COMPAT_MODULE)
/*
** changes the environment variable of calling function
*/
static void set_env (lua_State *L) {
lua_Debug ar;
if (lua_getstack(L, 1, &ar) == 0 ||
lua_getinfo(L, "f", &ar) == 0 || /* get calling function */
lua_iscfunction(L, -1))
luaL_error(L, LUA_QL("module") " not called from a Lua function");
lua_pushvalue(L, -2); /* copy new environment table to top */
lua_setupvalue(L, -2, 1);
lua_pop(L, 1); /* remove function */
}
static void dooptions (lua_State *L, int n) {
int i;
for (i = 2; i <= n; i++) {
if (lua_isfunction(L, i)) { /* avoid 'calling' extra info. */
lua_pushvalue(L, i); /* get option (a function) */
lua_pushvalue(L, -2); /* module */
lua_call(L, 1, 0);
}
}
}
static void modinit (lua_State *L, const char *modname) {
const char *dot;
lua_pushvalue(L, -1);
lua_setfield(L, -2, "_M"); /* module._M = module */
lua_pushstring(L, modname);
lua_setfield(L, -2, "_NAME");
dot = strrchr(modname, '.'); /* look for last dot in module name */
if (dot == NULL) dot = modname;
else dot++;
/* set _PACKAGE as package name (full module name minus last part) */
lua_pushlstring(L, modname, dot - modname);
lua_setfield(L, -2, "_PACKAGE");
}
static int ll_module (lua_State *L) {
const char *modname = luaL_checkstring(L, 1);
int lastarg = lua_gettop(L); /* last parameter */
luaL_pushmodule(L, modname, 1); /* get/create module table */
/* check whether table already has a _NAME field */
lua_getfield(L, -1, "_NAME");
if (!lua_isnil(L, -1)) /* is table an initialized module? */
lua_pop(L, 1);
else { /* no; initialize it */
lua_pop(L, 1);
modinit(L, modname);
}
lua_pushvalue(L, -1);
set_env(L);
dooptions(L, lastarg);
return 1;
}
static int ll_seeall (lua_State *L) {
luaL_checktype(L, 1, LUA_TTABLE);
if (!lua_getmetatable(L, 1)) {
lua_createtable(L, 0, 1); /* create new metatable */
lua_pushvalue(L, -1);
lua_setmetatable(L, 1);
}
lua_pushglobaltable(L);
lua_setfield(L, -2, "__index"); /* mt.__index = _G */
return 0;
}
#endif
/* }====================================================== */
/* auxiliary mark (for internal use) */
#define AUXMARK "\1"
/*
** return registry.LUA_NOENV as a boolean
*/
static int noenv (lua_State *L) {
int b;
lua_getfield(L, LUA_REGISTRYINDEX, "LUA_NOENV");
b = lua_toboolean(L, -1);
lua_pop(L, 1); /* remove value */
return b;
}
static void setpath (lua_State *L, const char *fieldname, const char *envname1,
const char *envname2, const char *def) {
const char *path = getenv(envname1);
if (path == NULL) /* no environment variable? */
path = getenv(envname2); /* try alternative name */
if (path == NULL || noenv(L)) /* no environment variable? */
lua_pushstring(L, def); /* use default */
else {
/* replace ";;" by ";AUXMARK;" and then AUXMARK by default path */
path = luaL_gsub(L, path, LUA_PATH_SEP LUA_PATH_SEP,
LUA_PATH_SEP AUXMARK LUA_PATH_SEP);
luaL_gsub(L, path, AUXMARK, def);
lua_remove(L, -2);
}
setprogdir(L);
lua_setfield(L, -2, fieldname);
}
static const luaL_Reg pk_funcs[] = {
{"loadlib", ll_loadlib},
{"searchpath", ll_searchpath},
#if defined(LUA_COMPAT_MODULE)
{"seeall", ll_seeall},
#endif
{NULL, NULL}
};
static const luaL_Reg ll_funcs[] = {
#if defined(LUA_COMPAT_MODULE)
{"module", ll_module},
#endif
{"require", ll_require},
{NULL, NULL}
};
static void createsearcherstable (lua_State *L) {
static const lua_CFunction searchers[] =
{searcher_preload, searcher_Lua, searcher_C, searcher_Croot, NULL};
int i;
/* create 'searchers' table */
lua_createtable(L, sizeof(searchers)/sizeof(searchers[0]) - 1, 0);
/* fill it with pre-defined searchers */
for (i=0; searchers[i] != NULL; i++) {
lua_pushvalue(L, -2); /* set 'package' as upvalue for all searchers */
lua_pushcclosure(L, searchers[i], 1);
lua_rawseti(L, -2, i+1);
}
}
LUAMOD_API int luaopen_package (lua_State *L) {
/* create table CLIBS to keep track of loaded C libraries */
luaL_getsubtable(L, LUA_REGISTRYINDEX, CLIBS);
lua_createtable(L, 0, 1); /* metatable for CLIBS */
lua_pushcfunction(L, gctm);
lua_setfield(L, -2, "__gc"); /* set finalizer for CLIBS table */
lua_setmetatable(L, -2);
/* create `package' table */
luaL_newlib(L, pk_funcs);
createsearcherstable(L);
#if defined(LUA_COMPAT_LOADERS)
lua_pushvalue(L, -1); /* make a copy of 'searchers' table */
lua_setfield(L, -3, "loaders"); /* put it in field `loaders' */
#endif
lua_setfield(L, -2, "searchers"); /* put it in field 'searchers' */
/* set field 'path' */
setpath(L, "path", LUA_PATHVERSION, LUA_PATH, LUA_PATH_DEFAULT);
/* set field 'cpath' */
setpath(L, "cpath", LUA_CPATHVERSION, LUA_CPATH, LUA_CPATH_DEFAULT);
/* store config information */
lua_pushliteral(L, LUA_DIRSEP "\n" LUA_PATH_SEP "\n" LUA_PATH_MARK "\n"
LUA_EXEC_DIR "\n" LUA_IGMARK "\n");
lua_setfield(L, -2, "config");
/* set field `loaded' */
luaL_getsubtable(L, LUA_REGISTRYINDEX, "_LOADED");
lua_setfield(L, -2, "loaded");
/* set field `preload' */
luaL_getsubtable(L, LUA_REGISTRYINDEX, "_PRELOAD");
lua_setfield(L, -2, "preload");
lua_pushglobaltable(L);
lua_pushvalue(L, -2); /* set 'package' as upvalue for next lib */
luaL_setfuncs(L, ll_funcs, 1); /* open lib into global table */
lua_pop(L, 1); /* pop global table */
return 1; /* return 'package' table */
}

356
lobject.c
View File

@@ -1,16 +1,21 @@
/*
** $Id: lobject.c,v 1.85 2002/07/17 16:25:13 roberto Exp roberto $
** $Id: lobject.c,v 2.58 2013/02/20 14:08:56 roberto Exp $
** Some generic functions over Lua objects
** See Copyright Notice in lua.h
*/
#include <ctype.h>
#include <stdarg.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#define lobject_c
#define LUA_CORE
#include "lua.h"
#include "lctype.h"
#include "ldebug.h"
#include "ldo.h"
#include "lmem.h"
#include "lobject.h"
@@ -19,133 +24,208 @@
#include "lvm.h"
/* function to convert a string to a lua_Number */
#ifndef lua_str2number
#define lua_str2number(s,p) strtod((s), (p))
LUAI_DDEF const TValue luaO_nilobject_ = {NILCONSTANT};
/*
** converts an integer to a "floating point byte", represented as
** (eeeeexxx), where the real value is (1xxx) * 2^(eeeee - 1) if
** eeeee != 0 and (xxx) otherwise.
*/
int luaO_int2fb (unsigned int x) {
int e = 0; /* exponent */
if (x < 8) return x;
while (x >= 0x10) {
x = (x+1) >> 1;
e++;
}
return ((e+1) << 3) | (cast_int(x) - 8);
}
/* converts back */
int luaO_fb2int (int x) {
int e = (x >> 3) & 0x1f;
if (e == 0) return x;
else return ((x & 7) + 8) << (e - 1);
}
int luaO_ceillog2 (unsigned int x) {
static const lu_byte log_2[256] = {
0,1,2,2,3,3,3,3,4,4,4,4,4,4,4,4,5,5,5,5,5,5,5,5,5,5,5,5,5,5,5,5,
6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,
7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,
7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,
8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,
8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,
8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,
8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8,8
};
int l = 0;
x--;
while (x >= 256) { l += 8; x >>= 8; }
return l + log_2[x];
}
lua_Number luaO_arith (int op, lua_Number v1, lua_Number v2) {
switch (op) {
case LUA_OPADD: return luai_numadd(NULL, v1, v2);
case LUA_OPSUB: return luai_numsub(NULL, v1, v2);
case LUA_OPMUL: return luai_nummul(NULL, v1, v2);
case LUA_OPDIV: return luai_numdiv(NULL, v1, v2);
case LUA_OPMOD: return luai_nummod(NULL, v1, v2);
case LUA_OPPOW: return luai_numpow(NULL, v1, v2);
case LUA_OPUNM: return luai_numunm(NULL, v1);
default: lua_assert(0); return 0;
}
}
int luaO_hexavalue (int c) {
if (lisdigit(c)) return c - '0';
else return ltolower(c) - 'a' + 10;
}
#if !defined(lua_strx2number)
#include <math.h>
static int isneg (const char **s) {
if (**s == '-') { (*s)++; return 1; }
else if (**s == '+') (*s)++;
return 0;
}
static lua_Number readhexa (const char **s, lua_Number r, int *count) {
for (; lisxdigit(cast_uchar(**s)); (*s)++) { /* read integer part */
r = (r * cast_num(16.0)) + cast_num(luaO_hexavalue(cast_uchar(**s)));
(*count)++;
}
return r;
}
/*
** convert an hexadecimal numeric string to a number, following
** C99 specification for 'strtod'
*/
static lua_Number lua_strx2number (const char *s, char **endptr) {
lua_Number r = 0.0;
int e = 0, i = 0;
int neg = 0; /* 1 if number is negative */
*endptr = cast(char *, s); /* nothing is valid yet */
while (lisspace(cast_uchar(*s))) s++; /* skip initial spaces */
neg = isneg(&s); /* check signal */
if (!(*s == '0' && (*(s + 1) == 'x' || *(s + 1) == 'X'))) /* check '0x' */
return 0.0; /* invalid format (no '0x') */
s += 2; /* skip '0x' */
r = readhexa(&s, r, &i); /* read integer part */
if (*s == '.') {
s++; /* skip dot */
r = readhexa(&s, r, &e); /* read fractional part */
}
if (i == 0 && e == 0)
return 0.0; /* invalid format (no digit) */
e *= -4; /* each fractional digit divides value by 2^-4 */
*endptr = cast(char *, s); /* valid up to here */
if (*s == 'p' || *s == 'P') { /* exponent part? */
int exp1 = 0;
int neg1;
s++; /* skip 'p' */
neg1 = isneg(&s); /* signal */
if (!lisdigit(cast_uchar(*s)))
goto ret; /* must have at least one digit */
while (lisdigit(cast_uchar(*s))) /* read exponent */
exp1 = exp1 * 10 + *(s++) - '0';
if (neg1) exp1 = -exp1;
e += exp1;
}
*endptr = cast(char *, s); /* valid up to here */
ret:
if (neg) r = -r;
return l_mathop(ldexp)(r, e);
}
#endif
const TObject luaO_nilobject = {LUA_TNIL, {NULL}};
int luaO_log2 (unsigned int x) {
static const lu_byte log_8[255] = {
0,
1,1,
2,2,2,2,
3,3,3,3,3,3,3,3,
4,4,4,4,4,4,4,4,4,4,4,4,4,4,4,4,
5,5,5,5,5,5,5,5,5,5,5,5,5,5,5,5,5,5,5,5,5,5,5,5,5,5,5,5,5,5,5,5,
6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,
6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,6,
7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,
7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,
7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,
7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7,7
};
if (x >= 0x00010000) {
if (x >= 0x01000000) return log_8[((x>>24) & 0xff) - 1]+24;
else return log_8[((x>>16) & 0xff) - 1]+16;
}
else {
if (x >= 0x00000100) return log_8[((x>>8) & 0xff) - 1]+8;
else if (x) return log_8[(x & 0xff) - 1];
return -1; /* special `log' for 0 */
}
}
int luaO_rawequalObj (const TObject *t1, const TObject *t2) {
if (ttype(t1) != ttype(t2)) return 0;
switch (ttype(t1)) {
case LUA_TNUMBER:
return nvalue(t1) == nvalue(t2);
case LUA_TNIL:
return 1;
case LUA_TSTRING:
return tsvalue(t1) == tsvalue(t2);
case LUA_TBOOLEAN:
return bvalue(t1) == bvalue(t2); /* boolean true must be 1 !! */
case LUA_TLIGHTUSERDATA:
return pvalue(t1) == pvalue(t2);
case LUA_TUSERDATA:
return uvalue(t1) == uvalue(t2);
case LUA_TTABLE:
return hvalue(t1) == hvalue(t2);
case LUA_TFUNCTION:
return clvalue(t1) == clvalue(t2);
}
lua_assert(0);
return 0; /* to avoid warnings */
}
void *luaO_openspaceaux (lua_State *L, size_t n) {
if (n > G(L)->Mbuffsize) {
G(L)->Mbuffer = luaM_realloc(L, G(L)->Mbuffer, G(L)->Mbuffsize, n);
G(L)->Mbuffsize = n;
}
return G(L)->Mbuffer;
}
int luaO_str2d (const char *s, lua_Number *result) {
int luaO_str2d (const char *s, size_t len, lua_Number *result) {
char *endptr;
lua_Number res = lua_str2number(s, &endptr);
if (endptr == s) return 0; /* no conversion */
while (isspace((unsigned char)(*endptr))) endptr++;
if (*endptr != '\0') return 0; /* invalid trailing characters? */
*result = res;
return 1;
if (strpbrk(s, "nN")) /* reject 'inf' and 'nan' */
return 0;
else if (strpbrk(s, "xX")) /* hexa? */
*result = lua_strx2number(s, &endptr);
else
*result = lua_str2number(s, &endptr);
if (endptr == s) return 0; /* nothing recognized */
while (lisspace(cast_uchar(*endptr))) endptr++;
return (endptr == s + len); /* OK if no trailing characters */
}
static void pushstr (lua_State *L, const char *str) {
setsvalue(L->top, luaS_new(L, str));
incr_top(L);
static void pushstr (lua_State *L, const char *str, size_t l) {
setsvalue2s(L, L->top++, luaS_newlstr(L, str, l));
}
/* this function handles only `%d', `%c', %f, and `%s' formats */
/* this function handles only `%d', `%c', %f, %p, and `%s' formats */
const char *luaO_pushvfstring (lua_State *L, const char *fmt, va_list argp) {
int n = 1;
pushstr(L, "");
int n = 0;
for (;;) {
const char *e = strchr(fmt, '%');
if (e == NULL) break;
setsvalue(L->top, luaS_newlstr(L, fmt, e-fmt));
incr_top(L);
luaD_checkstack(L, 2); /* fmt + item */
pushstr(L, fmt, e - fmt);
switch (*(e+1)) {
case 's':
pushstr(L, va_arg(argp, char *));
break;
case 'c': {
char buff[2];
buff[0] = cast(char, va_arg(argp, int));
buff[1] = '\0';
pushstr(L, buff);
case 's': {
const char *s = va_arg(argp, char *);
if (s == NULL) s = "(null)";
pushstr(L, s, strlen(s));
break;
}
case 'd':
setnvalue(L->top, va_arg(argp, int));
incr_top(L);
case 'c': {
char buff;
buff = cast(char, va_arg(argp, int));
pushstr(L, &buff, 1);
break;
case 'f':
setnvalue(L->top, va_arg(argp, lua_Number));
incr_top(L);
}
case 'd': {
setnvalue(L->top++, cast_num(va_arg(argp, int)));
break;
case '%':
pushstr(L, "%");
}
case 'f': {
setnvalue(L->top++, cast_num(va_arg(argp, l_uacNumber)));
break;
default: lua_assert(0);
}
case 'p': {
char buff[4*sizeof(void *) + 8]; /* should be enough space for a `%p' */
int l = sprintf(buff, "%p", va_arg(argp, void *));
pushstr(L, buff, l);
break;
}
case '%': {
pushstr(L, "%", 1);
break;
}
default: {
luaG_runerror(L,
"invalid option " LUA_QL("%%%c") " to " LUA_QL("lua_pushfstring"),
*(e + 1));
}
}
n += 2;
fmt = e+2;
}
pushstr(L, fmt);
luaV_concat(L, n+1, L->top - L->ci->base - 1);
L->top -= n;
luaD_checkstack(L, 1);
pushstr(L, fmt, strlen(fmt));
if (n > 0) luaV_concat(L, n + 1);
return svalue(L->top - 1);
}
@@ -160,36 +240,48 @@ const char *luaO_pushfstring (lua_State *L, const char *fmt, ...) {
}
void luaO_chunkid (char *out, const char *source, int bufflen) {
if (*source == '=') {
strncpy(out, source+1, bufflen); /* remove first char */
out[bufflen-1] = '\0'; /* ensures null termination */
/* number of chars of a literal string without the ending \0 */
#define LL(x) (sizeof(x)/sizeof(char) - 1)
#define RETS "..."
#define PRE "[string \""
#define POS "\"]"
#define addstr(a,b,l) ( memcpy(a,b,(l) * sizeof(char)), a += (l) )
void luaO_chunkid (char *out, const char *source, size_t bufflen) {
size_t l = strlen(source);
if (*source == '=') { /* 'literal' source */
if (l <= bufflen) /* small enough? */
memcpy(out, source + 1, l * sizeof(char));
else { /* truncate it */
addstr(out, source + 1, bufflen - 1);
*out = '\0';
}
}
else { /* out = "source", or "...source" */
if (*source == '@') {
int l;
source++; /* skip the `@' */
bufflen -= sizeof(" `...' ");
l = strlen(source);
strcpy(out, "");
if (l>bufflen) {
source += (l-bufflen); /* get last part of file name */
strcat(out, "...");
}
strcat(out, source);
else if (*source == '@') { /* file name */
if (l <= bufflen) /* small enough? */
memcpy(out, source + 1, l * sizeof(char));
else { /* add '...' before rest of name */
addstr(out, RETS, LL(RETS));
bufflen -= LL(RETS);
memcpy(out, source + 1 + l - bufflen, bufflen * sizeof(char));
}
else { /* out = [string "string"] */
int len = strcspn(source, "\n"); /* stop at first newline */
bufflen -= sizeof(" [string \"...\"] ");
if (len > bufflen) len = bufflen;
strcpy(out, "[string \"");
if (source[len] != '\0') { /* must truncate? */
strncat(out, source, len);
strcat(out, "...");
}
else
strcat(out, source);
strcat(out, "\"]");
}
else { /* string; format as [string "source"] */
const char *nl = strchr(source, '\n'); /* find first new line (if any) */
addstr(out, PRE, LL(PRE)); /* add prefix */
bufflen -= LL(PRE RETS POS) + 1; /* save space for prefix+suffix+'\0' */
if (l < bufflen && nl == NULL) { /* small one-line source? */
addstr(out, source, l); /* keep it */
}
else {
if (nl != NULL) l = nl - source; /* stop at first newline */
if (l > bufflen) l = bufflen;
addstr(out, source, l);
addstr(out, RETS, LL(RETS));
}
memcpy(out, POS, (LL(POS) + 1) * sizeof(char));
}
}

660
lobject.h
View File

@@ -1,153 +1,459 @@
/*
** $Id: lobject.h,v 1.141 2002/08/05 14:08:02 roberto Exp roberto $
** $Id: lobject.h,v 2.71 2012/09/11 18:21:44 roberto Exp $
** Type definitions for Lua objects
** See Copyright Notice in lua.h
*/
#ifndef lobject_h
#define lobject_h
#include <stdarg.h>
#include "llimits.h"
#include "lua.h"
/* tags for values visible from Lua */
#define NUM_TAGS LUA_TFUNCTION
/*
** Extra tags for non-values
*/
#define LUA_TPROTO LUA_NUMTAGS
#define LUA_TUPVAL (LUA_NUMTAGS+1)
#define LUA_TDEADKEY (LUA_NUMTAGS+2)
typedef union {
void *p;
union TString *ts;
union Udata *u;
union Closure *cl;
struct Table *h;
lua_Number n;
int b;
} Value;
typedef struct lua_TObject {
int tt;
Value value;
} TObject;
/* Macros to test type */
#define ttisnil(o) (ttype(o) == LUA_TNIL)
#define ttisnumber(o) (ttype(o) == LUA_TNUMBER)
#define ttisstring(o) (ttype(o) == LUA_TSTRING)
#define ttistable(o) (ttype(o) == LUA_TTABLE)
#define ttisfunction(o) (ttype(o) == LUA_TFUNCTION)
#define ttisboolean(o) (ttype(o) == LUA_TBOOLEAN)
#define ttisuserdata(o) (ttype(o) == LUA_TUSERDATA)
#define ttislightuserdata(o) (ttype(o) == LUA_TLIGHTUSERDATA)
/* Macros to access values */
#define ttype(o) ((o)->tt)
#define pvalue(o) check_exp(ttislightuserdata(o), (o)->value.p)
#define nvalue(o) check_exp(ttisnumber(o), (o)->value.n)
#define tsvalue(o) check_exp(ttisstring(o), (o)->value.ts)
#define uvalue(o) check_exp(ttisuserdata(o), (o)->value.u)
#define clvalue(o) check_exp(ttisfunction(o), (o)->value.cl)
#define hvalue(o) check_exp(ttistable(o), (o)->value.h)
#define bvalue(o) check_exp(ttisboolean(o), (o)->value.b)
#define l_isfalse(o) (ttisnil(o) || (ttisboolean(o) && bvalue(o) == 0))
/* Macros to set values */
#define setnvalue(obj,x) \
{ TObject *i_o=(obj); i_o->tt=LUA_TNUMBER; i_o->value.n=(x); }
#define chgnvalue(obj,x) \
check_exp(ttype(obj)==LUA_TNUMBER, (obj)->value.n=(x))
#define setpvalue(obj,x) \
{ TObject *i_o=(obj); i_o->tt=LUA_TLIGHTUSERDATA; i_o->value.p=(x); }
#define setbvalue(obj,x) \
{ TObject *i_o=(obj); i_o->tt=LUA_TBOOLEAN; i_o->value.b=(x); }
#define setsvalue(obj,x) \
{ TObject *i_o=(obj); i_o->tt=LUA_TSTRING; i_o->value.ts=(x); }
#define setuvalue(obj,x) \
{ TObject *i_o=(obj); i_o->tt=LUA_TUSERDATA; i_o->value.u=(x); }
#define setclvalue(obj,x) \
{ TObject *i_o=(obj); i_o->tt=LUA_TFUNCTION; i_o->value.cl=(x); }
#define sethvalue(obj,x) \
{ TObject *i_o=(obj); i_o->tt=LUA_TTABLE; i_o->value.h=(x); }
#define setnilvalue(obj) ((obj)->tt=LUA_TNIL)
#define setobj(obj1,obj2) \
{ const TObject *o2=(obj2); TObject *o1=(obj1); \
o1->tt=o2->tt; o1->value = o2->value; }
#define setttype(obj, tt) (ttype(obj) = (tt))
typedef TObject *StkId; /* index to stack elements */
/*
** number of all possible tags (including LUA_TNONE but excluding DEADKEY)
*/
#define LUA_TOTALTAGS (LUA_TUPVAL+2)
/*
** String headers for string table
** tags for Tagged Values have the following use of bits:
** bits 0-3: actual tag (a LUA_T* value)
** bits 4-5: variant bits
** bit 6: whether value is collectable
*/
#define VARBITS (3 << 4)
/*
** LUA_TFUNCTION variants:
** 0 - Lua function
** 1 - light C function
** 2 - regular C function (closure)
*/
/* Variant tags for functions */
#define LUA_TLCL (LUA_TFUNCTION | (0 << 4)) /* Lua closure */
#define LUA_TLCF (LUA_TFUNCTION | (1 << 4)) /* light C function */
#define LUA_TCCL (LUA_TFUNCTION | (2 << 4)) /* C closure */
/* Variant tags for strings */
#define LUA_TSHRSTR (LUA_TSTRING | (0 << 4)) /* short strings */
#define LUA_TLNGSTR (LUA_TSTRING | (1 << 4)) /* long strings */
/* Bit mark for collectable types */
#define BIT_ISCOLLECTABLE (1 << 6)
/* mark a tag as collectable */
#define ctb(t) ((t) | BIT_ISCOLLECTABLE)
/*
** Union of all collectable objects
*/
typedef union GCObject GCObject;
/*
** Common Header for all collectable objects (in macro form, to be
** included in other objects)
*/
#define CommonHeader GCObject *next; lu_byte tt; lu_byte marked
/*
** Common header in struct form
*/
typedef struct GCheader {
CommonHeader;
} GCheader;
/*
** Union of all Lua values
*/
typedef union Value Value;
#define numfield lua_Number n; /* numbers */
/*
** Tagged Values. This is the basic representation of values in Lua,
** an actual value plus a tag with its type.
*/
#define TValuefields Value value_; int tt_
typedef struct lua_TValue TValue;
/* macro defining a nil value */
#define NILCONSTANT {NULL}, LUA_TNIL
#define val_(o) ((o)->value_)
#define num_(o) (val_(o).n)
/* raw type tag of a TValue */
#define rttype(o) ((o)->tt_)
/* tag with no variants (bits 0-3) */
#define novariant(x) ((x) & 0x0F)
/* type tag of a TValue (bits 0-3 for tags + variant bits 4-5) */
#define ttype(o) (rttype(o) & 0x3F)
/* type tag of a TValue with no variants (bits 0-3) */
#define ttypenv(o) (novariant(rttype(o)))
/* Macros to test type */
#define checktag(o,t) (rttype(o) == (t))
#define checktype(o,t) (ttypenv(o) == (t))
#define ttisnumber(o) checktag((o), LUA_TNUMBER)
#define ttisnil(o) checktag((o), LUA_TNIL)
#define ttisboolean(o) checktag((o), LUA_TBOOLEAN)
#define ttislightuserdata(o) checktag((o), LUA_TLIGHTUSERDATA)
#define ttisstring(o) checktype((o), LUA_TSTRING)
#define ttisshrstring(o) checktag((o), ctb(LUA_TSHRSTR))
#define ttislngstring(o) checktag((o), ctb(LUA_TLNGSTR))
#define ttistable(o) checktag((o), ctb(LUA_TTABLE))
#define ttisfunction(o) checktype(o, LUA_TFUNCTION)
#define ttisclosure(o) ((rttype(o) & 0x1F) == LUA_TFUNCTION)
#define ttisCclosure(o) checktag((o), ctb(LUA_TCCL))
#define ttisLclosure(o) checktag((o), ctb(LUA_TLCL))
#define ttislcf(o) checktag((o), LUA_TLCF)
#define ttisuserdata(o) checktag((o), ctb(LUA_TUSERDATA))
#define ttisthread(o) checktag((o), ctb(LUA_TTHREAD))
#define ttisdeadkey(o) checktag((o), LUA_TDEADKEY)
#define ttisequal(o1,o2) (rttype(o1) == rttype(o2))
/* Macros to access values */
#define nvalue(o) check_exp(ttisnumber(o), num_(o))
#define gcvalue(o) check_exp(iscollectable(o), val_(o).gc)
#define pvalue(o) check_exp(ttislightuserdata(o), val_(o).p)
#define rawtsvalue(o) check_exp(ttisstring(o), &val_(o).gc->ts)
#define tsvalue(o) (&rawtsvalue(o)->tsv)
#define rawuvalue(o) check_exp(ttisuserdata(o), &val_(o).gc->u)
#define uvalue(o) (&rawuvalue(o)->uv)
#define clvalue(o) check_exp(ttisclosure(o), &val_(o).gc->cl)
#define clLvalue(o) check_exp(ttisLclosure(o), &val_(o).gc->cl.l)
#define clCvalue(o) check_exp(ttisCclosure(o), &val_(o).gc->cl.c)
#define fvalue(o) check_exp(ttislcf(o), val_(o).f)
#define hvalue(o) check_exp(ttistable(o), &val_(o).gc->h)
#define bvalue(o) check_exp(ttisboolean(o), val_(o).b)
#define thvalue(o) check_exp(ttisthread(o), &val_(o).gc->th)
/* a dead value may get the 'gc' field, but cannot access its contents */
#define deadvalue(o) check_exp(ttisdeadkey(o), cast(void *, val_(o).gc))
#define l_isfalse(o) (ttisnil(o) || (ttisboolean(o) && bvalue(o) == 0))
#define iscollectable(o) (rttype(o) & BIT_ISCOLLECTABLE)
/* Macros for internal tests */
#define righttt(obj) (ttype(obj) == gcvalue(obj)->gch.tt)
#define checkliveness(g,obj) \
lua_longassert(!iscollectable(obj) || \
(righttt(obj) && !isdead(g,gcvalue(obj))))
/* Macros to set values */
#define settt_(o,t) ((o)->tt_=(t))
#define setnvalue(obj,x) \
{ TValue *io=(obj); num_(io)=(x); settt_(io, LUA_TNUMBER); }
#define setnilvalue(obj) settt_(obj, LUA_TNIL)
#define setfvalue(obj,x) \
{ TValue *io=(obj); val_(io).f=(x); settt_(io, LUA_TLCF); }
#define setpvalue(obj,x) \
{ TValue *io=(obj); val_(io).p=(x); settt_(io, LUA_TLIGHTUSERDATA); }
#define setbvalue(obj,x) \
{ TValue *io=(obj); val_(io).b=(x); settt_(io, LUA_TBOOLEAN); }
#define setgcovalue(L,obj,x) \
{ TValue *io=(obj); GCObject *i_g=(x); \
val_(io).gc=i_g; settt_(io, ctb(gch(i_g)->tt)); }
#define setsvalue(L,obj,x) \
{ TValue *io=(obj); \
TString *x_ = (x); \
val_(io).gc=cast(GCObject *, x_); settt_(io, ctb(x_->tsv.tt)); \
checkliveness(G(L),io); }
#define setuvalue(L,obj,x) \
{ TValue *io=(obj); \
val_(io).gc=cast(GCObject *, (x)); settt_(io, ctb(LUA_TUSERDATA)); \
checkliveness(G(L),io); }
#define setthvalue(L,obj,x) \
{ TValue *io=(obj); \
val_(io).gc=cast(GCObject *, (x)); settt_(io, ctb(LUA_TTHREAD)); \
checkliveness(G(L),io); }
#define setclLvalue(L,obj,x) \
{ TValue *io=(obj); \
val_(io).gc=cast(GCObject *, (x)); settt_(io, ctb(LUA_TLCL)); \
checkliveness(G(L),io); }
#define setclCvalue(L,obj,x) \
{ TValue *io=(obj); \
val_(io).gc=cast(GCObject *, (x)); settt_(io, ctb(LUA_TCCL)); \
checkliveness(G(L),io); }
#define sethvalue(L,obj,x) \
{ TValue *io=(obj); \
val_(io).gc=cast(GCObject *, (x)); settt_(io, ctb(LUA_TTABLE)); \
checkliveness(G(L),io); }
#define setdeadvalue(obj) settt_(obj, LUA_TDEADKEY)
#define setobj(L,obj1,obj2) \
{ const TValue *io2=(obj2); TValue *io1=(obj1); \
io1->value_ = io2->value_; io1->tt_ = io2->tt_; \
checkliveness(G(L),io1); }
/*
** different types of assignments, according to destination
*/
/* from stack to (same) stack */
#define setobjs2s setobj
/* to stack (not from same stack) */
#define setobj2s setobj
#define setsvalue2s setsvalue
#define sethvalue2s sethvalue
#define setptvalue2s setptvalue
/* from table to same table */
#define setobjt2t setobj
/* to table */
#define setobj2t setobj
/* to new object */
#define setobj2n setobj
#define setsvalue2n setsvalue
/* check whether a number is valid (useful only for NaN trick) */
#define luai_checknum(L,o,c) { /* empty */ }
/*
** {======================================================
** NaN Trick
** =======================================================
*/
#if defined(LUA_NANTRICK)
/*
** numbers are represented in the 'd_' field. All other values have the
** value (NNMARK | tag) in 'tt__'. A number with such pattern would be
** a "signaled NaN", which is never generated by regular operations by
** the CPU (nor by 'strtod')
*/
/* allows for external implementation for part of the trick */
#if !defined(NNMARK) /* { */
#if !defined(LUA_IEEEENDIAN)
#error option 'LUA_NANTRICK' needs 'LUA_IEEEENDIAN'
#endif
#define NNMARK 0x7FF7A500
#define NNMASK 0x7FFFFF00
#undef TValuefields
#undef NILCONSTANT
#if (LUA_IEEEENDIAN == 0) /* { */
/* little endian */
#define TValuefields \
union { struct { Value v__; int tt__; } i; double d__; } u
#define NILCONSTANT {{{NULL}, tag2tt(LUA_TNIL)}}
/* field-access macros */
#define v_(o) ((o)->u.i.v__)
#define d_(o) ((o)->u.d__)
#define tt_(o) ((o)->u.i.tt__)
#else /* }{ */
/* big endian */
#define TValuefields \
union { struct { int tt__; Value v__; } i; double d__; } u
#define NILCONSTANT {{tag2tt(LUA_TNIL), {NULL}}}
/* field-access macros */
#define v_(o) ((o)->u.i.v__)
#define d_(o) ((o)->u.d__)
#define tt_(o) ((o)->u.i.tt__)
#endif /* } */
#endif /* } */
/* correspondence with standard representation */
#undef val_
#define val_(o) v_(o)
#undef num_
#define num_(o) d_(o)
#undef numfield
#define numfield /* no such field; numbers are the entire struct */
/* basic check to distinguish numbers from non-numbers */
#undef ttisnumber
#define ttisnumber(o) ((tt_(o) & NNMASK) != NNMARK)
#define tag2tt(t) (NNMARK | (t))
#undef rttype
#define rttype(o) (ttisnumber(o) ? LUA_TNUMBER : tt_(o) & 0xff)
#undef settt_
#define settt_(o,t) (tt_(o) = tag2tt(t))
#undef setnvalue
#define setnvalue(obj,x) \
{ TValue *io_=(obj); num_(io_)=(x); lua_assert(ttisnumber(io_)); }
#undef setobj
#define setobj(L,obj1,obj2) \
{ const TValue *o2_=(obj2); TValue *o1_=(obj1); \
o1_->u = o2_->u; \
checkliveness(G(L),o1_); }
/*
** these redefinitions are not mandatory, but these forms are more efficient
*/
#undef checktag
#undef checktype
#define checktag(o,t) (tt_(o) == tag2tt(t))
#define checktype(o,t) (ctb(tt_(o) | VARBITS) == ctb(tag2tt(t) | VARBITS))
#undef ttisequal
#define ttisequal(o1,o2) \
(ttisnumber(o1) ? ttisnumber(o2) : (tt_(o1) == tt_(o2)))
#undef luai_checknum
#define luai_checknum(L,o,c) { if (!ttisnumber(o)) c; }
#endif
/* }====================================================== */
/*
** {======================================================
** types and prototypes
** =======================================================
*/
union Value {
GCObject *gc; /* collectable objects */
void *p; /* light userdata */
int b; /* booleans */
lua_CFunction f; /* light C functions */
numfield /* numbers */
};
struct lua_TValue {
TValuefields;
};
typedef TValue *StkId; /* index to stack elements */
/*
** Header for string value; string bytes follow the end of this structure
*/
typedef union TString {
union L_Umaxalign dummy; /* ensures maximum alignment for strings */
L_Umaxalign dummy; /* ensures maximum alignment for strings */
struct {
lu_hash hash;
size_t len;
int marked;
union TString *nexthash; /* chain for hash table */
CommonHeader;
lu_byte extra; /* reserved words for short strings; "has hash" for longs */
unsigned int hash;
size_t len; /* number of characters in string */
} tsv;
} TString;
/* get the actual string (array of bytes) from a TString */
#define getstr(ts) cast(const char *, (ts) + 1)
#define svalue(o) getstr(tsvalue(o))
/* get the actual string (array of bytes) from a Lua value */
#define svalue(o) getstr(rawtsvalue(o))
/*
** Header for userdata; memory area follows the end of this structure
*/
typedef union Udata {
union L_Umaxalign dummy; /* ensures maximum alignment for `local' udata */
L_Umaxalign dummy; /* ensures maximum alignment for `local' udata */
struct {
CommonHeader;
struct Table *metatable;
union Udata *next; /* chain for list of all udata */
size_t len; /* least 2 bits reserved for gc mark */
struct Table *env;
size_t len; /* number of bytes */
} uv;
} Udata;
/*
** Description of an upvalue for function prototypes
*/
typedef struct Upvaldesc {
TString *name; /* upvalue name (for debug information) */
lu_byte instack; /* whether it is in stack */
lu_byte idx; /* index of upvalue (in stack or in outer function's list) */
} Upvaldesc;
/*
** Function Prototypes
** Description of a local variable for function prototypes
** (used for debug information)
*/
typedef struct Proto {
TObject *k; /* constants used by the function */
Instruction *code;
struct Proto **p; /* functions defined inside the function */
struct Proto *next;
int *lineinfo; /* map from opcodes to source lines */
struct LocVar *locvars; /* information about local variables */
TString *source;
int sizek; /* size of `k' */
int sizecode;
int sizep; /* size of `p' */
int sizelocvars;
int lineDefined;
lu_byte nupvalues;
lu_byte numparams;
lu_byte is_vararg;
lu_byte maxstacksize;
lu_byte marked;
} Proto;
typedef struct LocVar {
TString *varname;
int startpc; /* first point where variable is active */
@@ -155,15 +461,48 @@ typedef struct LocVar {
} LocVar;
/*
** Function Prototypes
*/
typedef struct Proto {
CommonHeader;
TValue *k; /* constants used by the function */
Instruction *code;
struct Proto **p; /* functions defined inside the function */
int *lineinfo; /* map from opcodes to source lines (debug information) */
LocVar *locvars; /* information about local variables (debug information) */
Upvaldesc *upvalues; /* upvalue information */
union Closure *cache; /* last created closure with this prototype */
TString *source; /* used for debug information */
int sizeupvalues; /* size of 'upvalues' */
int sizek; /* size of `k' */
int sizecode;
int sizelineinfo;
int sizep; /* size of `p' */
int sizelocvars;
int linedefined;
int lastlinedefined;
GCObject *gclist;
lu_byte numparams; /* number of fixed parameters */
lu_byte is_vararg;
lu_byte maxstacksize; /* maximum stack used by this function */
} Proto;
/*
** Upvalues
** Lua Upvalues
*/
typedef struct UpVal {
TObject *v; /* points to stack or to its own value */
struct UpVal *next;
TObject value; /* the value (when closed) */
CommonHeader;
TValue *v; /* points to stack or to its own value */
union {
TValue value; /* the value (when closed) */
struct { /* double linked list (when open) */
struct UpVal *prev;
struct UpVal *next;
} l;
} u;
} UpVal;
@@ -171,24 +510,20 @@ typedef struct UpVal {
** Closures
*/
#define ClosureHeader \
CommonHeader; lu_byte nupvalues; GCObject *gclist
typedef struct CClosure {
lu_byte isC; /* 0 for Lua functions, 1 for C functions */
lu_byte nupvalues;
lu_byte marked;
union Closure *next;
ClosureHeader;
lua_CFunction f;
TObject upvalue[1];
TValue upvalue[1]; /* list of upvalues */
} CClosure;
typedef struct LClosure {
lu_byte isC;
lu_byte nupvalues;
lu_byte marked;
union Closure *next; /* first four fields must be equal to CClosure!! */
ClosureHeader;
struct Proto *p;
TObject g; /* global table for this closure */
UpVal *upvals[1];
UpVal *upvals[1]; /* list of upvalues */
} LClosure;
@@ -198,66 +533,75 @@ typedef union Closure {
} Closure;
#define iscfunction(o) (ttype(o) == LUA_TFUNCTION && clvalue(o)->c.isC)
#define isLfunction(o) (ttype(o) == LUA_TFUNCTION && !clvalue(o)->c.isC)
#define isLfunction(o) ttisLclosure(o)
#define getproto(o) (clLvalue(o)->p)
/*
** Tables
*/
typedef union TKey {
struct {
TValuefields;
struct Node *next; /* for chaining */
} nk;
TValue tvk;
} TKey;
typedef struct Node {
TObject i_key;
TObject i_val;
struct Node *next; /* for chaining */
TValue i_val;
TKey i_key;
} Node;
typedef struct Table {
struct Table *metatable;
TObject *array; /* array part */
Node *node;
Node *firstfree; /* this position is free; all positions after it are full */
struct Table *next;
struct Table *mark; /* marked tables (point to itself when not marked) */
int sizearray; /* size of `array' array */
lu_byte flags; /* 1<<p means tagmethod(p) is not present */
CommonHeader;
lu_byte flags; /* 1<<p means tagmethod(p) is not present */
lu_byte lsizenode; /* log2 of size of `node' array */
lu_byte mode;
struct Table *metatable;
TValue *array; /* array part */
Node *node;
Node *lastfree; /* any free position is before this position */
GCObject *gclist;
int sizearray; /* size of `array' array */
} Table;
/* bit masks for `mode' */
#define WEAKKEY 1
#define WEAKVALUE 2
/*
** `module' operation for hashing (size is always a power of 2)
*/
#define lmod(s,size) \
check_exp((size&(size-1))==0, (cast(int, (s) & ((size)-1))))
(check_exp((size&(size-1))==0, (cast(int, (s) & ((size)-1)))))
#define twoto(x) (1<<(x))
#define sizenode(t) (twoto((t)->lsizenode))
#define sizearray(t) ((t)->sizearray)
extern const TObject luaO_nilobject;
int luaO_log2 (unsigned int x);
/*
** (address of) a fixed nil value
*/
#define luaO_nilobject (&luaO_nilobject_)
#define luaO_openspace(L,n,t) cast(t *, luaO_openspaceaux(L,(n)*sizeof(t)))
void *luaO_openspaceaux (lua_State *L, size_t n);
LUAI_DDEC const TValue luaO_nilobject_;
int luaO_rawequalObj (const TObject *t1, const TObject *t2);
int luaO_str2d (const char *s, lua_Number *result);
const char *luaO_pushvfstring (lua_State *L, const char *fmt, va_list argp);
const char *luaO_pushfstring (lua_State *L, const char *fmt, ...);
void luaO_chunkid (char *out, const char *source, int len);
LUAI_FUNC int luaO_int2fb (unsigned int x);
LUAI_FUNC int luaO_fb2int (int x);
LUAI_FUNC int luaO_ceillog2 (unsigned int x);
LUAI_FUNC lua_Number luaO_arith (int op, lua_Number v1, lua_Number v2);
LUAI_FUNC int luaO_str2d (const char *s, size_t len, lua_Number *result);
LUAI_FUNC int luaO_hexavalue (int c);
LUAI_FUNC const char *luaO_pushvfstring (lua_State *L, const char *fmt,
va_list argp);
LUAI_FUNC const char *luaO_pushfstring (lua_State *L, const char *fmt, ...);
LUAI_FUNC void luaO_chunkid (char *out, const char *source, size_t len);
#endif

View File

@@ -1,28 +1,29 @@
/*
** $Id: lopcodes.c,v 1.19 2002/05/13 13:09:00 roberto Exp roberto $
** extracted automatically from lopcodes.h by mkprint.lua
** DO NOT EDIT
** $Id: lopcodes.c,v 1.49 2012/05/14 13:34:18 roberto Exp $
** Opcodes for Lua virtual machine
** See Copyright Notice in lua.h
*/
#include "lua.h"
#define lopcodes_c
#define LUA_CORE
#include "lobject.h"
#include "lopcodes.h"
#ifdef LUA_OPNAMES
/* ORDER OP */
const char *const luaP_opnames[] = {
LUAI_DDEF const char *const luaP_opnames[NUM_OPCODES+1] = {
"MOVE",
"LOADK",
"LOADKX",
"LOADBOOL",
"LOADNIL",
"GETUPVAL",
"GETGLOBAL",
"GETTABUP",
"GETTABLE",
"SETGLOBAL",
"SETTABUP",
"SETUPVAL",
"SETTABLE",
"NEWTABLE",
@@ -31,74 +32,76 @@ const char *const luaP_opnames[] = {
"SUB",
"MUL",
"DIV",
"MOD",
"POW",
"UNM",
"NOT",
"LEN",
"CONCAT",
"JMP",
"EQ",
"LT",
"LE",
"GT",
"GE",
"TEST",
"TESTSET",
"CALL",
"TAILCALL",
"RETURN",
"FORLOOP",
"FORPREP",
"TFORCALL",
"TFORLOOP",
"TFORPREP",
"SETLIST",
"SETLISTO",
"CLOSE",
"CLOSURE"
"CLOSURE",
"VARARG",
"EXTRAARG",
NULL
};
#endif
#define opmode(t,x,b,c,sa,k,m) (((t)<<OpModeT) | \
((b)<<OpModeBreg) | ((c)<<OpModeCreg) | \
((sa)<<OpModesetA) | ((k)<<OpModeK) | (m))
#define opmode(t,a,b,c,m) (((t)<<7) | ((a)<<6) | ((b)<<4) | ((c)<<2) | (m))
const lu_byte luaP_opmodes[NUM_OPCODES] = {
/* T _ B C sA K mode opcode */
opmode(0,0,1,0, 1,0,iABC) /* OP_MOVE */
,opmode(0,0,0,0, 1,1,iABx) /* OP_LOADK */
,opmode(0,0,0,0, 1,0,iABC) /* OP_LOADBOOL */
,opmode(0,0,1,0, 1,0,iABC) /* OP_LOADNIL */
,opmode(0,0,0,0, 1,0,iABC) /* OP_GETUPVAL */
,opmode(0,0,0,0, 1,1,iABx) /* OP_GETGLOBAL */
,opmode(0,0,1,1, 1,0,iABC) /* OP_GETTABLE */
,opmode(0,0,0,0, 0,1,iABx) /* OP_SETGLOBAL */
,opmode(0,0,0,0, 0,0,iABC) /* OP_SETUPVAL */
,opmode(0,0,1,1, 0,0,iABC) /* OP_SETTABLE */
,opmode(0,0,0,0, 1,0,iABC) /* OP_NEWTABLE */
,opmode(0,0,1,1, 1,0,iABC) /* OP_SELF */
,opmode(0,0,1,1, 1,0,iABC) /* OP_ADD */
,opmode(0,0,1,1, 1,0,iABC) /* OP_SUB */
,opmode(0,0,1,1, 1,0,iABC) /* OP_MUL */
,opmode(0,0,1,1, 1,0,iABC) /* OP_DIV */
,opmode(0,0,1,1, 1,0,iABC) /* OP_POW */
,opmode(0,0,1,0, 1,0,iABC) /* OP_UNM */
,opmode(0,0,1,0, 1,0,iABC) /* OP_NOT */
,opmode(0,0,1,1, 1,0,iABC) /* OP_CONCAT */
,opmode(0,0,0,0, 0,0,iAsBx) /* OP_JMP */
,opmode(1,0,0,1, 0,0,iABC) /* OP_EQ */
,opmode(1,0,0,1, 0,0,iABC) /* OP_LT */
,opmode(1,0,0,1, 0,0,iABC) /* OP_LE */
,opmode(1,0,0,1, 0,0,iABC) /* OP_GT */
,opmode(1,0,0,1, 0,0,iABC) /* OP_GE */
,opmode(1,0,0,1, 1,0,iABC) /* OP_TEST */
,opmode(0,0,0,0, 0,0,iABC) /* OP_CALL */
,opmode(0,0,0,0, 0,0,iABC) /* OP_TAILCALL */
,opmode(0,0,0,0, 0,0,iABC) /* OP_RETURN */
,opmode(0,0,0,0, 0,0,iAsBx) /* OP_FORLOOP */
,opmode(1,0,0,0, 0,0,iABC) /* OP_TFORLOOP */
,opmode(0,0,0,0, 0,0,iAsBx) /* OP_TFORPREP */
,opmode(0,0,0,0, 0,0,iABx) /* OP_SETLIST */
,opmode(0,0,0,0, 0,0,iABx) /* OP_SETLISTO */
,opmode(0,0,0,0, 0,0,iABC) /* OP_CLOSE */
,opmode(0,0,0,0, 1,0,iABx) /* OP_CLOSURE */
LUAI_DDEF const lu_byte luaP_opmodes[NUM_OPCODES] = {
/* T A B C mode opcode */
opmode(0, 1, OpArgR, OpArgN, iABC) /* OP_MOVE */
,opmode(0, 1, OpArgK, OpArgN, iABx) /* OP_LOADK */
,opmode(0, 1, OpArgN, OpArgN, iABx) /* OP_LOADKX */
,opmode(0, 1, OpArgU, OpArgU, iABC) /* OP_LOADBOOL */
,opmode(0, 1, OpArgU, OpArgN, iABC) /* OP_LOADNIL */
,opmode(0, 1, OpArgU, OpArgN, iABC) /* OP_GETUPVAL */
,opmode(0, 1, OpArgU, OpArgK, iABC) /* OP_GETTABUP */
,opmode(0, 1, OpArgR, OpArgK, iABC) /* OP_GETTABLE */
,opmode(0, 0, OpArgK, OpArgK, iABC) /* OP_SETTABUP */
,opmode(0, 0, OpArgU, OpArgN, iABC) /* OP_SETUPVAL */
,opmode(0, 0, OpArgK, OpArgK, iABC) /* OP_SETTABLE */
,opmode(0, 1, OpArgU, OpArgU, iABC) /* OP_NEWTABLE */
,opmode(0, 1, OpArgR, OpArgK, iABC) /* OP_SELF */
,opmode(0, 1, OpArgK, OpArgK, iABC) /* OP_ADD */
,opmode(0, 1, OpArgK, OpArgK, iABC) /* OP_SUB */
,opmode(0, 1, OpArgK, OpArgK, iABC) /* OP_MUL */
,opmode(0, 1, OpArgK, OpArgK, iABC) /* OP_DIV */
,opmode(0, 1, OpArgK, OpArgK, iABC) /* OP_MOD */
,opmode(0, 1, OpArgK, OpArgK, iABC) /* OP_POW */
,opmode(0, 1, OpArgR, OpArgN, iABC) /* OP_UNM */
,opmode(0, 1, OpArgR, OpArgN, iABC) /* OP_NOT */
,opmode(0, 1, OpArgR, OpArgN, iABC) /* OP_LEN */
,opmode(0, 1, OpArgR, OpArgR, iABC) /* OP_CONCAT */
,opmode(0, 0, OpArgR, OpArgN, iAsBx) /* OP_JMP */
,opmode(1, 0, OpArgK, OpArgK, iABC) /* OP_EQ */
,opmode(1, 0, OpArgK, OpArgK, iABC) /* OP_LT */
,opmode(1, 0, OpArgK, OpArgK, iABC) /* OP_LE */
,opmode(1, 0, OpArgN, OpArgU, iABC) /* OP_TEST */
,opmode(1, 1, OpArgR, OpArgU, iABC) /* OP_TESTSET */
,opmode(0, 1, OpArgU, OpArgU, iABC) /* OP_CALL */
,opmode(0, 1, OpArgU, OpArgU, iABC) /* OP_TAILCALL */
,opmode(0, 0, OpArgU, OpArgN, iABC) /* OP_RETURN */
,opmode(0, 1, OpArgR, OpArgN, iAsBx) /* OP_FORLOOP */
,opmode(0, 1, OpArgR, OpArgN, iAsBx) /* OP_FORPREP */
,opmode(0, 0, OpArgN, OpArgU, iABC) /* OP_TFORCALL */
,opmode(0, 1, OpArgR, OpArgN, iAsBx) /* OP_TFORLOOP */
,opmode(0, 0, OpArgU, OpArgU, iABC) /* OP_SETLIST */
,opmode(0, 1, OpArgU, OpArgN, iABx) /* OP_CLOSURE */
,opmode(0, 1, OpArgU, OpArgN, iABC) /* OP_VARARG */
,opmode(0, 0, OpArgU, OpArgU, iAx) /* OP_EXTRAARG */
};

View File

@@ -1,5 +1,5 @@
/*
** $Id: lopcodes.h,v 1.99 2002/06/12 14:51:31 roberto Exp $
** $Id: lopcodes.h,v 1.142 2011/07/15 12:50:29 roberto Exp $
** Opcodes for Lua virtual machine
** See Copyright Notice in lua.h
*/
@@ -14,9 +14,10 @@
We assume that instructions are unsigned numbers.
All instructions have an opcode in the first 6 bits.
Instructions can have the following fields:
`A' : 8 bits (25-32)
`B' : 8 bits (17-24)
`C' : 10 bits (7-16)
`A' : 8 bits
`B' : 9 bits
`C' : 9 bits
'Ax' : 26 bits ('A', 'B', and 'C' together)
`Bx' : 18 bits (`B' and `C' together)
`sBx' : signed Bx
@@ -28,31 +29,34 @@
===========================================================================*/
enum OpMode {iABC, iABx, iAsBx}; /* basic instruction format */
enum OpMode {iABC, iABx, iAsBx, iAx}; /* basic instruction format */
/*
** size and position of opcode arguments.
*/
#define SIZE_C 10
#define SIZE_B 8
#define SIZE_C 9
#define SIZE_B 9
#define SIZE_Bx (SIZE_C + SIZE_B)
#define SIZE_A 8
#define SIZE_Ax (SIZE_C + SIZE_B + SIZE_A)
#define SIZE_OP 6
#define POS_C SIZE_OP
#define POS_OP 0
#define POS_A (POS_OP + SIZE_OP)
#define POS_C (POS_A + SIZE_A)
#define POS_B (POS_C + SIZE_C)
#define POS_Bx POS_C
#define POS_A (POS_B + SIZE_B)
#define POS_Ax POS_A
/*
** limits for opcode arguments.
** we use (signed) int to manipulate most arguments,
** so they must fit in BITS_INT-1 bits (-1 for sign)
** so they must fit in LUAI_BITSINT-1 bits (-1 for sign)
*/
#if SIZE_Bx < BITS_INT-1
#if SIZE_Bx < LUAI_BITSINT-1
#define MAXARG_Bx ((1<<SIZE_Bx)-1)
#define MAXARG_sBx (MAXARG_Bx>>1) /* `sBx' is signed */
#else
@@ -60,6 +64,12 @@ enum OpMode {iABC, iABx, iAsBx}; /* basic instruction format */
#define MAXARG_sBx MAX_INT
#endif
#if SIZE_Ax < LUAI_BITSINT-1
#define MAXARG_Ax ((1<<SIZE_Ax)-1)
#else
#define MAXARG_Ax MAX_INT
#endif
#define MAXARG_A ((1<<SIZE_A)-1)
#define MAXARG_B ((1<<SIZE_B)-1)
@@ -67,7 +77,7 @@ enum OpMode {iABC, iABx, iAsBx}; /* basic instruction format */
/* creates a mask with `n' 1 bits at position `p' */
#define MASK1(n,p) ((~((~(Instruction)0)<<n))<<p)
#define MASK1(n,p) ((~((~(Instruction)0)<<(n)))<<(p))
/* creates a mask with `n' 0 bits at position `p' */
#define MASK0(n,p) (~MASK1(n,p))
@@ -76,52 +86,80 @@ enum OpMode {iABC, iABx, iAsBx}; /* basic instruction format */
** the following macros help to manipulate instructions
*/
#define GET_OPCODE(i) (cast(OpCode, (i)&MASK1(SIZE_OP,0)))
#define SET_OPCODE(i,o) ((i) = (((i)&MASK0(SIZE_OP,0)) | cast(Instruction, o)))
#define GET_OPCODE(i) (cast(OpCode, ((i)>>POS_OP) & MASK1(SIZE_OP,0)))
#define SET_OPCODE(i,o) ((i) = (((i)&MASK0(SIZE_OP,POS_OP)) | \
((cast(Instruction, o)<<POS_OP)&MASK1(SIZE_OP,POS_OP))))
#define GETARG_A(i) (cast(int, (i)>>POS_A))
#define SETARG_A(i,u) ((i) = (((i)&MASK0(SIZE_A,POS_A)) | \
((cast(Instruction, u)<<POS_A)&MASK1(SIZE_A,POS_A))))
#define getarg(i,pos,size) (cast(int, ((i)>>pos) & MASK1(size,0)))
#define setarg(i,v,pos,size) ((i) = (((i)&MASK0(size,pos)) | \
((cast(Instruction, v)<<pos)&MASK1(size,pos))))
#define GETARG_B(i) (cast(int, ((i)>>POS_B) & MASK1(SIZE_B,0)))
#define SETARG_B(i,b) ((i) = (((i)&MASK0(SIZE_B,POS_B)) | \
((cast(Instruction, b)<<POS_B)&MASK1(SIZE_B,POS_B))))
#define GETARG_A(i) getarg(i, POS_A, SIZE_A)
#define SETARG_A(i,v) setarg(i, v, POS_A, SIZE_A)
#define GETARG_C(i) (cast(int, ((i)>>POS_C) & MASK1(SIZE_C,0)))
#define SETARG_C(i,b) ((i) = (((i)&MASK0(SIZE_C,POS_C)) | \
((cast(Instruction, b)<<POS_C)&MASK1(SIZE_C,POS_C))))
#define GETARG_B(i) getarg(i, POS_B, SIZE_B)
#define SETARG_B(i,v) setarg(i, v, POS_B, SIZE_B)
#define GETARG_Bx(i) (cast(int, ((i)>>POS_Bx) & MASK1(SIZE_Bx,0)))
#define SETARG_Bx(i,b) ((i) = (((i)&MASK0(SIZE_Bx,POS_Bx)) | \
((cast(Instruction, b)<<POS_Bx)&MASK1(SIZE_Bx,POS_Bx))))
#define GETARG_C(i) getarg(i, POS_C, SIZE_C)
#define SETARG_C(i,v) setarg(i, v, POS_C, SIZE_C)
#define GETARG_Bx(i) getarg(i, POS_Bx, SIZE_Bx)
#define SETARG_Bx(i,v) setarg(i, v, POS_Bx, SIZE_Bx)
#define GETARG_Ax(i) getarg(i, POS_Ax, SIZE_Ax)
#define SETARG_Ax(i,v) setarg(i, v, POS_Ax, SIZE_Ax)
#define GETARG_sBx(i) (GETARG_Bx(i)-MAXARG_sBx)
#define SETARG_sBx(i,b) SETARG_Bx((i),cast(unsigned int, (b)+MAXARG_sBx))
#define CREATE_ABC(o,a,b,c) (cast(Instruction, o) \
#define CREATE_ABC(o,a,b,c) ((cast(Instruction, o)<<POS_OP) \
| (cast(Instruction, a)<<POS_A) \
| (cast(Instruction, b)<<POS_B) \
| (cast(Instruction, c)<<POS_C))
#define CREATE_ABx(o,a,bc) (cast(Instruction, o) \
#define CREATE_ABx(o,a,bc) ((cast(Instruction, o)<<POS_OP) \
| (cast(Instruction, a)<<POS_A) \
| (cast(Instruction, bc)<<POS_Bx))
#define CREATE_Ax(o,a) ((cast(Instruction, o)<<POS_OP) \
| (cast(Instruction, a)<<POS_Ax))
/*
** invalid registers that fits in 8 bits
** Macros to operate RK indices
*/
/* this bit 1 means constant (0 means register) */
#define BITRK (1 << (SIZE_B - 1))
/* test whether value is a constant */
#define ISK(x) ((x) & BITRK)
/* gets the index of the constant */
#define INDEXK(r) ((int)(r) & ~BITRK)
#define MAXINDEXRK (BITRK - 1)
/* code a constant index as a RK value */
#define RKASK(x) ((x) | BITRK)
/*
** invalid register that fits in 8 bits
*/
#define NO_REG MAXARG_A
#define NO_REG1 (NO_REG+1)
/*
** R(x) - register
** Kst(x) - constant (in constant table)
** R/K(x) == if x < MAXSTACK then R(x) else Kst(x-MAXSTACK)
** RK(x) == if ISK(x) then Kst(INDEXK(x)) else R(x)
*/
/*
** grep "ORDER OP" if you change these enums
*/
typedef enum {
@@ -130,104 +168,121 @@ name args description
------------------------------------------------------------------------*/
OP_MOVE,/* A B R(A) := R(B) */
OP_LOADK,/* A Bx R(A) := Kst(Bx) */
OP_LOADBOOL,/* A B C R(A) := (Bool)B; if (C) PC++ */
OP_LOADNIL,/* A B R(A) := ... := R(B) := nil */
OP_LOADKX,/* A R(A) := Kst(extra arg) */
OP_LOADBOOL,/* A B C R(A) := (Bool)B; if (C) pc++ */
OP_LOADNIL,/* A B R(A), R(A+1), ..., R(A+B) := nil */
OP_GETUPVAL,/* A B R(A) := UpValue[B] */
OP_GETGLOBAL,/* A Bx R(A) := Gbl[Kst(Bx)] */
OP_GETTABLE,/* A B C R(A) := R(B)[R/K(C)] */
OP_GETTABUP,/* A B C R(A) := UpValue[B][RK(C)] */
OP_GETTABLE,/* A B C R(A) := R(B)[RK(C)] */
OP_SETGLOBAL,/* A Bx Gbl[Kst(Bx)] := R(A) */
OP_SETTABUP,/* A B C UpValue[A][RK(B)] := RK(C) */
OP_SETUPVAL,/* A B UpValue[B] := R(A) */
OP_SETTABLE,/* A B C R(B)[R/K(C)] := R(A) */
OP_SETTABLE,/* A B C R(A)[RK(B)] := RK(C) */
OP_NEWTABLE,/* A B C R(A) := {} (size = B,C) */
OP_SELF,/* A B C R(A+1) := R(B); R(A) := R(B)[R/K(C)] */
OP_SELF,/* A B C R(A+1) := R(B); R(A) := R(B)[RK(C)] */
OP_ADD,/* A B C R(A) := R(B) + R/K(C) */
OP_SUB,/* A B C R(A) := R(B) - R/K(C) */
OP_MUL,/* A B C R(A) := R(B) * R/K(C) */
OP_DIV,/* A B C R(A) := R(B) / R/K(C) */
OP_POW,/* A B C R(A) := R(B) ^ R/K(C) */
OP_ADD,/* A B C R(A) := RK(B) + RK(C) */
OP_SUB,/* A B C R(A) := RK(B) - RK(C) */
OP_MUL,/* A B C R(A) := RK(B) * RK(C) */
OP_DIV,/* A B C R(A) := RK(B) / RK(C) */
OP_MOD,/* A B C R(A) := RK(B) % RK(C) */
OP_POW,/* A B C R(A) := RK(B) ^ RK(C) */
OP_UNM,/* A B R(A) := -R(B) */
OP_NOT,/* A B R(A) := not R(B) */
OP_LEN,/* A B R(A) := length of R(B) */
OP_CONCAT,/* A B C R(A) := R(B).. ... ..R(C) */
OP_JMP,/* sBx PC += sBx */
OP_JMP,/* A sBx pc+=sBx; if (A) close all upvalues >= R(A) + 1 */
OP_EQ,/* A B C if ((RK(B) == RK(C)) ~= A) then pc++ */
OP_LT,/* A B C if ((RK(B) < RK(C)) ~= A) then pc++ */
OP_LE,/* A B C if ((RK(B) <= RK(C)) ~= A) then pc++ */
OP_EQ,/* A B C if ((R(A) == R/K(C)) ~= B) then pc++ */
OP_LT,/* A B C if ((R(A) < R/K(C)) ~= B) then pc++ */
OP_LE,/* A B C if ((R(A) <= R/K(C)) ~= B) then pc++ */
OP_GT,/* A B C if ((R(A) > R/K(C)) ~= B) then pc++ */
OP_GE,/* A B C if ((R(A) >= R/K(C)) ~= B) then pc++ */
OP_TEST,/* A B C if (R(C) <=> B) then R(A) := R(C) else pc++ */
OP_TEST,/* A C if not (R(A) <=> C) then pc++ */
OP_TESTSET,/* A B C if (R(B) <=> C) then R(A) := R(B) else pc++ */
OP_CALL,/* A B C R(A), ... ,R(A+C-2) := R(A)(R(A+1), ... ,R(A+B-1)) */
OP_TAILCALL,/* A B C return R(A)(R(A+1), ... ,R(A+B-1)) */
OP_RETURN,/* A B return R(A), ... ,R(A+B-2) (see note) */
OP_FORLOOP,/* A sBx R(A)+=R(A+2); if R(A) <?= R(A+1) then PC+= sBx */
OP_FORLOOP,/* A sBx R(A)+=R(A+2);
if R(A) <?= R(A+1) then { pc+=sBx; R(A+3)=R(A) }*/
OP_FORPREP,/* A sBx R(A)-=R(A+2); pc+=sBx */
OP_TFORLOOP,/* A C R(A+2), ... ,R(A+2+C) := R(A)(R(A+1), R(A+2));
if R(A+2) ~= nil then pc++ */
OP_TFORPREP,/* A sBx if type(R(A)) == table then R(A+1):=R(A), R(A):=next;
PC += sBx */
OP_TFORCALL,/* A C R(A+3), ... ,R(A+2+C) := R(A)(R(A+1), R(A+2)); */
OP_TFORLOOP,/* A sBx if R(A+1) ~= nil then { R(A)=R(A+1); pc += sBx }*/
OP_SETLIST,/* A Bx R(A)[Bx-Bx%FPF+i] := R(A+i), 1 <= i <= Bx%FPF+1 */
OP_SETLISTO,/* A Bx */
OP_SETLIST,/* A B C R(A)[(C-1)*FPF+i] := R(A+i), 1 <= i <= B */
OP_CLOSE,/* A close all variables in the stack up to (>=) R(A)*/
OP_CLOSURE/* A Bx R(A) := closure(KPROTO[Bx], R(A), ... ,R(A+n)) */
OP_CLOSURE,/* A Bx R(A) := closure(KPROTO[Bx]) */
OP_VARARG,/* A B R(A), R(A+1), ..., R(A+B-2) = vararg */
OP_EXTRAARG/* Ax extra (larger) argument for previous opcode */
} OpCode;
#define NUM_OPCODES (cast(int, OP_CLOSURE+1))
#define NUM_OPCODES (cast(int, OP_EXTRAARG) + 1)
/*===========================================================================
Notes:
(1) In OP_CALL, if (B == 0) then B = top. C is the number of returns - 1,
and can be 0: OP_CALL then sets `top' to last_result+1, so
next open instruction (OP_CALL, OP_RETURN, OP_SETLIST) may use `top'.
(*) In OP_CALL, if (B == 0) then B = top. If (C == 0), then `top' is
set to last_result+1, so next open instruction (OP_CALL, OP_RETURN,
OP_SETLIST) may use `top'.
(2) In OP_RETURN, if (B == 0) then return up to `top'
(*) In OP_VARARG, if (B == 0) then use actual number of varargs and
set top (like in OP_CALL with C == 0).
(3) For comparisons, B specifies what conditions the test should accept.
(*) In OP_RETURN, if (B == 0) then return up to `top'.
(*) In OP_SETLIST, if (B == 0) then B = `top'; if (C == 0) then next
'instruction' is EXTRAARG(real C).
(*) In OP_LOADKX, the next 'instruction' is always EXTRAARG.
(*) For comparisons, A specifies what condition the test should accept
(true or false).
(*) All `skips' (pc++) assume that next instruction is a jump.
(4) All `skips' (pc++) assume that next instruction is a jump
===========================================================================*/
/*
** masks for instruction properties
*/
enum OpModeMask {
OpModeBreg = 2, /* B is a register */
OpModeCreg, /* C is a register/constant */
OpModesetA, /* instruction set register A */
OpModeK, /* Bx is a constant */
OpModeT /* operator is a test */
** masks for instruction properties. The format is:
** bits 0-1: op mode
** bits 2-3: C arg mode
** bits 4-5: B arg mode
** bit 6: instruction set register A
** bit 7: operator is a test (next instruction must be a jump)
*/
enum OpArgMask {
OpArgN, /* argument is not used */
OpArgU, /* argument is used */
OpArgR, /* argument is a register or a jump offset */
OpArgK /* argument is a constant or register/constant */
};
extern const lu_byte luaP_opmodes[NUM_OPCODES];
LUAI_DDEC const lu_byte luaP_opmodes[NUM_OPCODES];
#define getOpMode(m) (cast(enum OpMode, luaP_opmodes[m] & 3))
#define testOpMode(m, b) (luaP_opmodes[m] & (1 << (b)))
#define getOpMode(m) (cast(enum OpMode, luaP_opmodes[m] & 3))
#define getBMode(m) (cast(enum OpArgMask, (luaP_opmodes[m] >> 4) & 3))
#define getCMode(m) (cast(enum OpArgMask, (luaP_opmodes[m] >> 2) & 3))
#define testAMode(m) (luaP_opmodes[m] & (1 << 6))
#define testTMode(m) (luaP_opmodes[m] & (1 << 7))
#ifdef LUA_OPNAMES
extern const char *const luaP_opnames[]; /* opcode names */
#endif
LUAI_DDEC const char *const luaP_opnames[NUM_OPCODES+1]; /* opcode names */
/* number of list items to accumulate before a SETLIST instruction */
/* (must be a power of 2) */
#define LFIELDS_PER_FLUSH 32
#define LFIELDS_PER_FLUSH 50
#endif

323
loslib.c Normal file
View File

@@ -0,0 +1,323 @@
/*
** $Id: loslib.c,v 1.40 2012/10/19 15:54:02 roberto Exp $
** Standard Operating System library
** See Copyright Notice in lua.h
*/
#include <errno.h>
#include <locale.h>
#include <stdlib.h>
#include <string.h>
#include <time.h>
#define loslib_c
#define LUA_LIB
#include "lua.h"
#include "lauxlib.h"
#include "lualib.h"
/*
** list of valid conversion specifiers for the 'strftime' function
*/
#if !defined(LUA_STRFTIMEOPTIONS)
#if !defined(LUA_USE_POSIX)
#define LUA_STRFTIMEOPTIONS { "aAbBcdHIjmMpSUwWxXyYz%", "" }
#else
#define LUA_STRFTIMEOPTIONS \
{ "aAbBcCdDeFgGhHIjmMnprRStTuUVwWxXyYzZ%", "" \
"", "E", "cCxXyY", \
"O", "deHImMSuUVwWy" }
#endif
#endif
/*
** By default, Lua uses tmpnam except when POSIX is available, where it
** uses mkstemp.
*/
#if defined(LUA_USE_MKSTEMP)
#include <unistd.h>
#define LUA_TMPNAMBUFSIZE 32
#define lua_tmpnam(b,e) { \
strcpy(b, "/tmp/lua_XXXXXX"); \
e = mkstemp(b); \
if (e != -1) close(e); \
e = (e == -1); }
#elif !defined(lua_tmpnam)
#define LUA_TMPNAMBUFSIZE L_tmpnam
#define lua_tmpnam(b,e) { e = (tmpnam(b) == NULL); }
#endif
/*
** By default, Lua uses gmtime/localtime, except when POSIX is available,
** where it uses gmtime_r/localtime_r
*/
#if defined(LUA_USE_GMTIME_R)
#define l_gmtime(t,r) gmtime_r(t,r)
#define l_localtime(t,r) localtime_r(t,r)
#elif !defined(l_gmtime)
#define l_gmtime(t,r) ((void)r, gmtime(t))
#define l_localtime(t,r) ((void)r, localtime(t))
#endif
static int os_execute (lua_State *L) {
const char *cmd = luaL_optstring(L, 1, NULL);
int stat = system(cmd);
if (cmd != NULL)
return luaL_execresult(L, stat);
else {
lua_pushboolean(L, stat); /* true if there is a shell */
return 1;
}
}
static int os_remove (lua_State *L) {
const char *filename = luaL_checkstring(L, 1);
return luaL_fileresult(L, remove(filename) == 0, filename);
}
static int os_rename (lua_State *L) {
const char *fromname = luaL_checkstring(L, 1);
const char *toname = luaL_checkstring(L, 2);
return luaL_fileresult(L, rename(fromname, toname) == 0, NULL);
}
static int os_tmpname (lua_State *L) {
char buff[LUA_TMPNAMBUFSIZE];
int err;
lua_tmpnam(buff, err);
if (err)
return luaL_error(L, "unable to generate a unique filename");
lua_pushstring(L, buff);
return 1;
}
static int os_getenv (lua_State *L) {
lua_pushstring(L, getenv(luaL_checkstring(L, 1))); /* if NULL push nil */
return 1;
}
static int os_clock (lua_State *L) {
lua_pushnumber(L, ((lua_Number)clock())/(lua_Number)CLOCKS_PER_SEC);
return 1;
}
/*
** {======================================================
** Time/Date operations
** { year=%Y, month=%m, day=%d, hour=%H, min=%M, sec=%S,
** wday=%w+1, yday=%j, isdst=? }
** =======================================================
*/
static void setfield (lua_State *L, const char *key, int value) {
lua_pushinteger(L, value);
lua_setfield(L, -2, key);
}
static void setboolfield (lua_State *L, const char *key, int value) {
if (value < 0) /* undefined? */
return; /* does not set field */
lua_pushboolean(L, value);
lua_setfield(L, -2, key);
}
static int getboolfield (lua_State *L, const char *key) {
int res;
lua_getfield(L, -1, key);
res = lua_isnil(L, -1) ? -1 : lua_toboolean(L, -1);
lua_pop(L, 1);
return res;
}
static int getfield (lua_State *L, const char *key, int d) {
int res, isnum;
lua_getfield(L, -1, key);
res = (int)lua_tointegerx(L, -1, &isnum);
if (!isnum) {
if (d < 0)
return luaL_error(L, "field " LUA_QS " missing in date table", key);
res = d;
}
lua_pop(L, 1);
return res;
}
static const char *checkoption (lua_State *L, const char *conv, char *buff) {
static const char *const options[] = LUA_STRFTIMEOPTIONS;
unsigned int i;
for (i = 0; i < sizeof(options)/sizeof(options[0]); i += 2) {
if (*conv != '\0' && strchr(options[i], *conv) != NULL) {
buff[1] = *conv;
if (*options[i + 1] == '\0') { /* one-char conversion specifier? */
buff[2] = '\0'; /* end buffer */
return conv + 1;
}
else if (*(conv + 1) != '\0' &&
strchr(options[i + 1], *(conv + 1)) != NULL) {
buff[2] = *(conv + 1); /* valid two-char conversion specifier */
buff[3] = '\0'; /* end buffer */
return conv + 2;
}
}
}
luaL_argerror(L, 1,
lua_pushfstring(L, "invalid conversion specifier '%%%s'", conv));
return conv; /* to avoid warnings */
}
static int os_date (lua_State *L) {
const char *s = luaL_optstring(L, 1, "%c");
time_t t = luaL_opt(L, (time_t)luaL_checknumber, 2, time(NULL));
struct tm tmr, *stm;
if (*s == '!') { /* UTC? */
stm = l_gmtime(&t, &tmr);
s++; /* skip `!' */
}
else
stm = l_localtime(&t, &tmr);
if (stm == NULL) /* invalid date? */
lua_pushnil(L);
else if (strcmp(s, "*t") == 0) {
lua_createtable(L, 0, 9); /* 9 = number of fields */
setfield(L, "sec", stm->tm_sec);
setfield(L, "min", stm->tm_min);
setfield(L, "hour", stm->tm_hour);
setfield(L, "day", stm->tm_mday);
setfield(L, "month", stm->tm_mon+1);
setfield(L, "year", stm->tm_year+1900);
setfield(L, "wday", stm->tm_wday+1);
setfield(L, "yday", stm->tm_yday+1);
setboolfield(L, "isdst", stm->tm_isdst);
}
else {
char cc[4];
luaL_Buffer b;
cc[0] = '%';
luaL_buffinit(L, &b);
while (*s) {
if (*s != '%') /* no conversion specifier? */
luaL_addchar(&b, *s++);
else {
size_t reslen;
char buff[200]; /* should be big enough for any conversion result */
s = checkoption(L, s + 1, cc);
reslen = strftime(buff, sizeof(buff), cc, stm);
luaL_addlstring(&b, buff, reslen);
}
}
luaL_pushresult(&b);
}
return 1;
}
static int os_time (lua_State *L) {
time_t t;
if (lua_isnoneornil(L, 1)) /* called without args? */
t = time(NULL); /* get current time */
else {
struct tm ts;
luaL_checktype(L, 1, LUA_TTABLE);
lua_settop(L, 1); /* make sure table is at the top */
ts.tm_sec = getfield(L, "sec", 0);
ts.tm_min = getfield(L, "min", 0);
ts.tm_hour = getfield(L, "hour", 12);
ts.tm_mday = getfield(L, "day", -1);
ts.tm_mon = getfield(L, "month", -1) - 1;
ts.tm_year = getfield(L, "year", -1) - 1900;
ts.tm_isdst = getboolfield(L, "isdst");
t = mktime(&ts);
}
if (t == (time_t)(-1))
lua_pushnil(L);
else
lua_pushnumber(L, (lua_Number)t);
return 1;
}
static int os_difftime (lua_State *L) {
lua_pushnumber(L, difftime((time_t)(luaL_checknumber(L, 1)),
(time_t)(luaL_optnumber(L, 2, 0))));
return 1;
}
/* }====================================================== */
static int os_setlocale (lua_State *L) {
static const int cat[] = {LC_ALL, LC_COLLATE, LC_CTYPE, LC_MONETARY,
LC_NUMERIC, LC_TIME};
static const char *const catnames[] = {"all", "collate", "ctype", "monetary",
"numeric", "time", NULL};
const char *l = luaL_optstring(L, 1, NULL);
int op = luaL_checkoption(L, 2, "all", catnames);
lua_pushstring(L, setlocale(cat[op], l));
return 1;
}
static int os_exit (lua_State *L) {
int status;
if (lua_isboolean(L, 1))
status = (lua_toboolean(L, 1) ? EXIT_SUCCESS : EXIT_FAILURE);
else
status = luaL_optint(L, 1, EXIT_SUCCESS);
if (lua_toboolean(L, 2))
lua_close(L);
if (L) exit(status); /* 'if' to avoid warnings for unreachable 'return' */
return 0;
}
static const luaL_Reg syslib[] = {
{"clock", os_clock},
{"date", os_date},
{"difftime", os_difftime},
{"execute", os_execute},
{"exit", os_exit},
{"getenv", os_getenv},
{"remove", os_remove},
{"rename", os_rename},
{"setlocale", os_setlocale},
{"time", os_time},
{"tmpname", os_tmpname},
{NULL, NULL}
};
/* }====================================================== */
LUAMOD_API int luaopen_os (lua_State *L) {
luaL_newlib(L, syslib);
return 1;
}

1481
lparser.c

File diff suppressed because it is too large Load Diff

View File

@@ -1,5 +1,5 @@
/*
** $Id: lparser.h,v 1.43 2002/05/10 19:22:11 roberto Exp roberto $
** $Id: lparser.h,v 1.70 2012/05/08 13:53:33 roberto Exp $
** Lua Parser
** See Copyright Notice in lua.h
*/
@@ -9,7 +9,6 @@
#include "llimits.h"
#include "lobject.h"
#include "ltable.h"
#include "lzio.h"
@@ -23,24 +22,73 @@ typedef enum {
VTRUE,
VFALSE,
VK, /* info = index of constant in `k' */
VKNUM, /* nval = numerical value */
VNONRELOC, /* info = result register */
VLOCAL, /* info = local register */
VUPVAL, /* info = index of upvalue in `upvalues' */
VGLOBAL, /* info = index of table; aux = index of global name in `k' */
VINDEXED, /* info = table register; aux = index register (or `k') */
VUPVAL, /* info = index of upvalue in 'upvalues' */
VINDEXED, /* t = table register/upvalue; idx = index R/K */
VJMP, /* info = instruction pc */
VRELOCABLE, /* info = instruction pc */
VNONRELOC, /* info = result register */
VCALL /* info = result register */
VCALL, /* info = instruction pc */
VVARARG /* info = instruction pc */
} expkind;
#define vkisvar(k) (VLOCAL <= (k) && (k) <= VINDEXED)
#define vkisinreg(k) ((k) == VNONRELOC || (k) == VLOCAL)
typedef struct expdesc {
expkind k;
int info, aux;
union {
struct { /* for indexed variables (VINDEXED) */
short idx; /* index (R/K) */
lu_byte t; /* table (register or upvalue) */
lu_byte vt; /* whether 't' is register (VLOCAL) or upvalue (VUPVAL) */
} ind;
int info; /* for generic use */
lua_Number nval; /* for VKNUM */
} u;
int t; /* patch list of `exit when true' */
int f; /* patch list of `exit when false' */
} expdesc;
/* description of active local variable */
typedef struct Vardesc {
short idx; /* variable index in stack */
} Vardesc;
/* description of pending goto statements and label statements */
typedef struct Labeldesc {
TString *name; /* label identifier */
int pc; /* position in code */
int line; /* line where it appeared */
lu_byte nactvar; /* local level where it appears in current block */
} Labeldesc;
/* list of labels or gotos */
typedef struct Labellist {
Labeldesc *arr; /* array */
int n; /* number of entries in use */
int size; /* array size */
} Labellist;
/* dynamic structures used by the parser */
typedef struct Dyndata {
struct { /* list of active local variables */
Vardesc *arr;
int n;
int size;
} actvar;
Labellist gt; /* list of pending gotos */
Labellist label; /* list of active labels */
} Dyndata;
/* control of blocks */
struct BlockCnt; /* defined in lparser.c */
@@ -50,22 +98,22 @@ typedef struct FuncState {
Table *h; /* table to find (and reuse) elements in `k' */
struct FuncState *prev; /* enclosing function */
struct LexState *ls; /* lexical state */
struct lua_State *L; /* copy of the Lua state */
struct BlockCnt *bl; /* chain of current blocks */
int pc; /* next position to code (equivalent to `ncode') */
int lasttarget; /* `pc' of last `jump target' */
int lasttarget; /* 'label' of last 'jump label' */
int jpc; /* list of pending jumps to `pc' */
int freereg; /* first free register */
int nk; /* number of elements in `k' */
int np; /* number of elements in `p' */
int nlocvars; /* number of elements in `locvars' */
int nactvar; /* number of active local variables */
expdesc upvalues[MAXUPVALUES]; /* upvalues */
int actvar[MAXVARS]; /* declared-variable stack */
int firstlocal; /* index of first local var (in Dyndata array) */
short nlocvars; /* number of elements in 'f->locvars' */
lu_byte nactvar; /* number of active local variables */
lu_byte nups; /* number of upvalues */
lu_byte freereg; /* first free register */
} FuncState;
Proto *luaY_parser (lua_State *L, ZIO *z);
LUAI_FUNC Closure *luaY_parser (lua_State *L, ZIO *z, Mbuffer *buff,
Dyndata *dyd, const char *name, int firstchar);
#endif

379
lstate.c
View File

@@ -1,12 +1,19 @@
/*
** $Id: lstate.c,v 1.102 2002/08/06 15:32:22 roberto Exp roberto $
** $Id: lstate.c,v 2.99.1.1 2013/04/12 18:48:47 roberto Exp roberto $
** Global State
** See Copyright Notice in lua.h
*/
#include <stddef.h>
#include <string.h>
#define lstate_c
#define LUA_CORE
#include "lua.h"
#include "lapi.h"
#include "ldebug.h"
#include "ldo.h"
#include "lfunc.h"
@@ -19,174 +26,298 @@
#include "ltm.h"
#if !defined(LUAI_GCPAUSE)
#define LUAI_GCPAUSE 200 /* 200% */
#endif
#if !defined(LUAI_GCMAJOR)
#define LUAI_GCMAJOR 200 /* 200% */
#endif
#if !defined(LUAI_GCMUL)
#define LUAI_GCMUL 200 /* GC runs 'twice the speed' of memory allocation */
#endif
static void close_state (lua_State *L);
#define MEMERRMSG "not enough memory"
/*
** you can change this function through the official API
** call `lua_setpanicf'
** a macro to help the creation of a unique random seed when a state is
** created; the seed is used to randomize hashes.
*/
static int default_panic (lua_State *L) {
UNUSED(L);
return 0;
}
#if !defined(luai_makeseed)
#include <time.h>
#define luai_makeseed() cast(unsigned int, time(NULL))
#endif
static void stack_init (lua_State *L, lua_State *OL) {
L->stack = luaM_newvector(OL, BASIC_STACK_SIZE + EXTRA_STACK, TObject);
L->stacksize = BASIC_STACK_SIZE + EXTRA_STACK;
L->top = L->stack;
L->stack_last = L->stack+(L->stacksize - EXTRA_STACK)-1;
L->base_ci = luaM_newvector(OL, BASIC_CI_SIZE, CallInfo);
L->ci = L->base_ci;
L->ci->state = CI_C; /* not a Lua function */
setnilvalue(L->top++); /* `function' entry for this `ci' */
L->ci->base = L->top;
L->ci->top = L->top + LUA_MINSTACK;
L->size_ci = BASIC_CI_SIZE;
L->end_ci = L->base_ci + L->size_ci;
/*
** thread state + extra space
*/
typedef struct LX {
#if defined(LUAI_EXTRASPACE)
char buff[LUAI_EXTRASPACE];
#endif
lua_State l;
} LX;
/*
** Main thread combines a thread state and the global state
*/
typedef struct LG {
LX l;
global_State g;
} LG;
#define fromstate(L) (cast(LX *, cast(lu_byte *, (L)) - offsetof(LX, l)))
/*
** Compute an initial seed as random as possible. In ANSI, rely on
** Address Space Layout Randomization (if present) to increase
** randomness..
*/
#define addbuff(b,p,e) \
{ size_t t = cast(size_t, e); \
memcpy(buff + p, &t, sizeof(t)); p += sizeof(t); }
static unsigned int makeseed (lua_State *L) {
char buff[4 * sizeof(size_t)];
unsigned int h = luai_makeseed();
int p = 0;
addbuff(buff, p, L); /* heap variable */
addbuff(buff, p, &h); /* local variable */
addbuff(buff, p, luaO_nilobject); /* global variable */
addbuff(buff, p, &lua_newstate); /* public function */
lua_assert(p == sizeof(buff));
return luaS_hash(buff, p, h);
}
/*
** open parts that may cause memory-allocation errors
** set GCdebt to a new value keeping the value (totalbytes + GCdebt)
** invariant
*/
void luaE_setdebt (global_State *g, l_mem debt) {
g->totalbytes -= (debt - g->GCdebt);
g->GCdebt = debt;
}
CallInfo *luaE_extendCI (lua_State *L) {
CallInfo *ci = luaM_new(L, CallInfo);
lua_assert(L->ci->next == NULL);
L->ci->next = ci;
ci->previous = L->ci;
ci->next = NULL;
return ci;
}
void luaE_freeCI (lua_State *L) {
CallInfo *ci = L->ci;
CallInfo *next = ci->next;
ci->next = NULL;
while ((ci = next) != NULL) {
next = ci->next;
luaM_free(L, ci);
}
}
static void stack_init (lua_State *L1, lua_State *L) {
int i; CallInfo *ci;
/* initialize stack array */
L1->stack = luaM_newvector(L, BASIC_STACK_SIZE, TValue);
L1->stacksize = BASIC_STACK_SIZE;
for (i = 0; i < BASIC_STACK_SIZE; i++)
setnilvalue(L1->stack + i); /* erase new stack */
L1->top = L1->stack;
L1->stack_last = L1->stack + L1->stacksize - EXTRA_STACK;
/* initialize first ci */
ci = &L1->base_ci;
ci->next = ci->previous = NULL;
ci->callstatus = 0;
ci->func = L1->top;
setnilvalue(L1->top++); /* 'function' entry for this 'ci' */
ci->top = L1->top + LUA_MINSTACK;
L1->ci = ci;
}
static void freestack (lua_State *L) {
if (L->stack == NULL)
return; /* stack not completely built yet */
L->ci = &L->base_ci; /* free the entire 'ci' list */
luaE_freeCI(L);
luaM_freearray(L, L->stack, L->stacksize); /* free stack array */
}
/*
** Create registry table and its predefined values
*/
static void init_registry (lua_State *L, global_State *g) {
TValue mt;
/* create registry */
Table *registry = luaH_new(L);
sethvalue(L, &g->l_registry, registry);
luaH_resize(L, registry, LUA_RIDX_LAST, 0);
/* registry[LUA_RIDX_MAINTHREAD] = L */
setthvalue(L, &mt, L);
luaH_setint(L, registry, LUA_RIDX_MAINTHREAD, &mt);
/* registry[LUA_RIDX_GLOBALS] = table of globals */
sethvalue(L, &mt, luaH_new(L));
luaH_setint(L, registry, LUA_RIDX_GLOBALS, &mt);
}
/*
** open parts of the state that may cause memory-allocation errors
*/
static void f_luaopen (lua_State *L, void *ud) {
global_State *g = G(L);
UNUSED(ud);
/* create a new global state */
L->l_G = luaM_new(L, global_State);
G(L)->GCthreshold = 0; /* mark it as unfinished state */
G(L)->strt.size = 0;
G(L)->strt.nuse = 0;
G(L)->strt.hash = NULL;
G(L)->Mbuffer = NULL;
G(L)->Mbuffsize = 0;
G(L)->panic = &default_panic;
G(L)->rootproto = NULL;
G(L)->rootcl = NULL;
G(L)->roottable = NULL;
G(L)->rootupval = NULL;
G(L)->rootudata = NULL;
G(L)->tmudata = NULL;
setnilvalue(key(G(L)->dummynode));
setnilvalue(val(G(L)->dummynode));
G(L)->dummynode->next = NULL;
G(L)->nblocks = sizeof(lua_State) + sizeof(global_State);
stack_init(L, L); /* init stack */
/* create default meta table with a dummy table, and then close the loop */
sethvalue(defaultmeta(L), NULL);
sethvalue(defaultmeta(L), luaH_new(L, 0, 4));
hvalue(defaultmeta(L))->metatable = hvalue(defaultmeta(L));
sethvalue(gt(L), luaH_new(L, 0, 4)); /* table of globals */
sethvalue(registry(L), luaH_new(L, 0, 0)); /* registry */
init_registry(L, g);
luaS_resize(L, MINSTRTABSIZE); /* initial size of string table */
luaT_init(L);
luaX_init(L);
luaS_fix(luaS_newliteral(L, MEMERRMSG));
G(L)->GCthreshold = 4*G(L)->nblocks;
/* pre-create memory-error message */
g->memerrmsg = luaS_newliteral(L, MEMERRMSG);
luaS_fix(g->memerrmsg); /* it should never be collected */
g->gcrunning = 1; /* allow gc */
g->version = lua_version(NULL);
luai_userstateopen(L);
}
static void preinit_state (lua_State *L) {
/*
** preinitialize a state with consistent values without allocating
** any memory (to avoid errors)
*/
static void preinit_state (lua_State *L, global_State *g) {
G(L) = g;
L->stack = NULL;
L->ci = NULL;
L->stacksize = 0;
L->errorJmp = NULL;
L->nCcalls = 0;
L->hook = NULL;
L->hookmask = 0;
setallowhook(L, 1);
L->basehookcount = 0;
L->allowhook = 1;
resethookcount(L);
L->openupval = NULL;
L->size_ci = 0;
L->base_ci = L->ci = NULL;
L->nny = 1;
L->status = LUA_OK;
L->errfunc = 0;
setnilvalue(defaultmeta(L));
setnilvalue(gt(L));
setnilvalue(registry(L));
}
LUA_API lua_State *lua_newthread (lua_State *OL) {
lua_State *L;
lua_lock(OL);
L = luaM_new(OL, lua_State);
preinit_state(L);
L->l_G = OL->l_G;
OL->next->previous = L; /* insert L into linked list */
L->next = OL->next;
OL->next = L;
L->previous = OL;
stack_init(L, OL); /* init stack */
setobj(defaultmeta(L), defaultmeta(OL)); /* share default meta table */
setobj(gt(L), gt(OL)); /* share table of globals */
setobj(registry(L), registry(OL)); /* share registry */
lua_unlock(OL);
lua_userstateopen(L);
return L;
}
LUA_API lua_State *lua_open (void) {
lua_State *L;
L = luaM_new(NULL, lua_State);
if (L) { /* allocation OK? */
preinit_state(L);
L->l_G = NULL;
L->next = L->previous = L;
if (luaD_rawrunprotected(L, f_luaopen, NULL) != 0) {
/* memory allocation error: free partial state */
close_state(L);
L = NULL;
}
}
lua_userstateopen(L);
return L;
}
void luaE_closethread (lua_State *OL, lua_State *L) {
luaF_close(L, L->stack); /* close all upvalues for this thread */
lua_assert(L->openupval == NULL);
L->previous->next = L->next;
L->next->previous = L->previous;
luaM_freearray(OL, L->base_ci, L->size_ci, CallInfo);
luaM_freearray(OL, L->stack, L->stacksize, TObject);
luaM_freelem(OL, L);
}
static void close_state (lua_State *L) {
global_State *g = G(L);
luaF_close(L, L->stack); /* close all upvalues for this thread */
if (G(L)) { /* close global state */
luaC_collect(L, 1); /* collect all elements */
lua_assert(G(L)->rootproto == NULL);
lua_assert(G(L)->rootudata == NULL);
lua_assert(G(L)->rootcl == NULL);
lua_assert(G(L)->rootupval == NULL);
lua_assert(G(L)->roottable == NULL);
luaS_freeall(L);
luaM_freearray(L, G(L)->Mbuffer, G(L)->Mbuffsize, char);
luaM_freelem(NULL, L->l_G);
}
luaE_closethread(NULL, L);
luaC_freeallobjects(L); /* collect all objects */
if (g->version) /* closing a fully built state? */
luai_userstateclose(L);
luaM_freearray(L, G(L)->strt.hash, G(L)->strt.size);
luaZ_freebuffer(L, &g->buff);
freestack(L);
lua_assert(gettotalbytes(g) == sizeof(LG));
(*g->frealloc)(g->ud, fromstate(L), sizeof(LG), 0); /* free main block */
}
LUA_API void lua_closethread (lua_State *L, lua_State *thread) {
LUA_API lua_State *lua_newthread (lua_State *L) {
lua_State *L1;
lua_lock(L);
if (L == thread) luaG_runerror(L, "cannot close only thread of a state");
luaE_closethread(L, thread);
luaC_checkGC(L);
L1 = &luaC_newobj(L, LUA_TTHREAD, sizeof(LX), NULL, offsetof(LX, l))->th;
setthvalue(L, L->top, L1);
api_incr_top(L);
preinit_state(L1, G(L));
L1->hookmask = L->hookmask;
L1->basehookcount = L->basehookcount;
L1->hook = L->hook;
resethookcount(L1);
luai_userstatethread(L, L1);
stack_init(L1, L); /* init stack */
lua_unlock(L);
return L1;
}
void luaE_freethread (lua_State *L, lua_State *L1) {
LX *l = fromstate(L1);
luaF_close(L1, L1->stack); /* close all upvalues for this thread */
lua_assert(L1->openupval == NULL);
luai_userstatefree(L, L1);
freestack(L1);
luaM_free(L, l);
}
LUA_API lua_State *lua_newstate (lua_Alloc f, void *ud) {
int i;
lua_State *L;
global_State *g;
LG *l = cast(LG *, (*f)(ud, NULL, LUA_TTHREAD, sizeof(LG)));
if (l == NULL) return NULL;
L = &l->l.l;
g = &l->g;
L->next = NULL;
L->tt = LUA_TTHREAD;
g->currentwhite = bit2mask(WHITE0BIT, FIXEDBIT);
L->marked = luaC_white(g);
g->gckind = KGC_NORMAL;
preinit_state(L, g);
g->frealloc = f;
g->ud = ud;
g->mainthread = L;
g->seed = makeseed(L);
g->uvhead.u.l.prev = &g->uvhead;
g->uvhead.u.l.next = &g->uvhead;
g->gcrunning = 0; /* no GC while building state */
g->GCestimate = 0;
g->strt.size = 0;
g->strt.nuse = 0;
g->strt.hash = NULL;
setnilvalue(&g->l_registry);
luaZ_initbuffer(L, &g->buff);
g->panic = NULL;
g->version = NULL;
g->gcstate = GCSpause;
g->allgc = NULL;
g->finobj = NULL;
g->tobefnz = NULL;
g->sweepgc = g->sweepfin = NULL;
g->gray = g->grayagain = NULL;
g->weak = g->ephemeron = g->allweak = NULL;
g->totalbytes = sizeof(LG);
g->GCdebt = 0;
g->gcpause = LUAI_GCPAUSE;
g->gcmajorinc = LUAI_GCMAJOR;
g->gcstepmul = LUAI_GCMUL;
for (i=0; i < LUA_NUMTAGS; i++) g->mt[i] = NULL;
if (luaD_rawrunprotected(L, f_luaopen, NULL) != LUA_OK) {
/* memory allocation error: free partial state */
close_state(L);
L = NULL;
}
return L;
}
LUA_API void lua_close (lua_State *L) {
L = G(L)->mainthread; /* only the main thread can be closed */
lua_lock(L);
luaC_callallgcTM(L); /* call GC tag methods for all udata */
lua_assert(G(L)->tmudata == NULL);
while (L->next != L) /* then, close all other threads */
luaE_closethread(L, L->next);
close_state(L);
}

230
lstate.h
View File

@@ -1,5 +1,5 @@
/*
** $Id: lstate.h,v 1.93 2002/08/07 19:22:39 roberto Exp roberto $
** $Id: lstate.h,v 2.82 2012/07/02 13:37:04 roberto Exp $
** Global State
** See Copyright Notice in lua.h
*/
@@ -11,129 +11,140 @@
#include "lobject.h"
#include "ltm.h"
#include "lzio.h"
/*
** macros for thread syncronization inside Lua core machine:
** all accesses to the global state and to global objects are syncronized.
** Because threads can read the stack of other threads
** (when running garbage collection),
** a thread must also syncronize any write-access to its own stack.
** Unsyncronized accesses are allowed only when reading its own stack,
** or when reading immutable fields from global objects
** (such as string values and udata values).
** Some notes about garbage-collected objects: All objects in Lua must
** be kept somehow accessible until being freed.
**
** Lua keeps most objects linked in list g->allgc. The link uses field
** 'next' of the CommonHeader.
**
** Strings are kept in several lists headed by the array g->strt.hash.
**
** Open upvalues are not subject to independent garbage collection. They
** are collected together with their respective threads. Lua keeps a
** double-linked list with all open upvalues (g->uvhead) so that it can
** mark objects referred by them. (They are always gray, so they must
** be remarked in the atomic step. Usually their contents would be marked
** when traversing the respective threads, but the thread may already be
** dead, while the upvalue is still accessible through closures.)
**
** Objects with finalizers are kept in the list g->finobj.
**
** The list g->tobefnz links all objects being finalized.
*/
#ifndef lua_lock
#define lua_lock(L) ((void) 0)
#endif
#ifndef lua_unlock
#define lua_unlock(L) ((void) 0)
#endif
/*
** macro to allow the inclusion of user information in Lua state
*/
#ifndef LUA_USERSTATE
#define LUA_USERSTATE
#endif
#ifndef lua_userstateopen
#define lua_userstateopen(l)
#endif
struct lua_longjmp; /* defined in ldo.c */
/*
** array of `global' objects
*/
#define NUMGLOBS 3
/* default meta table (both for tables and udata) */
#define defaultmeta(L) (L->globs)
/* table of globals */
#define gt(L) (L->globs + 1)
/* registry */
#define registry(L) (L->globs + 2)
/* extra stack space to handle TM calls and some other extras */
#define EXTRA_STACK 5
#define BASIC_CI_SIZE 8
#define BASIC_STACK_SIZE (2*LUA_MINSTACK)
/* kinds of Garbage Collection */
#define KGC_NORMAL 0
#define KGC_EMERGENCY 1 /* gc was forced by an allocation failure */
#define KGC_GEN 2 /* generational collection */
typedef struct stringtable {
TString **hash;
ls_nstr nuse; /* number of elements */
GCObject **hash;
lu_int32 nuse; /* number of elements */
int size;
} stringtable;
/*
** informations about a call
** information about a call
*/
typedef struct CallInfo {
StkId base; /* base for called function */
StkId func; /* function index in the stack */
StkId top; /* top for this function */
int state; /* bit fields; see below */
struct CallInfo *previous, *next; /* dynamic call link */
short nresults; /* expected number of results from this function */
lu_byte callstatus;
ptrdiff_t extra;
union {
struct { /* for Lua functions */
struct { /* only for Lua functions */
StkId base; /* base for this function */
const Instruction *savedpc;
const Instruction **pc; /* points to `pc' variable in `luaV_execute' */
StkId *pb; /* points to `base' variable in `luaV_execute' */
} l;
struct { /* for C functions */
int yield_results;
struct { /* only for C functions */
int ctx; /* context info. in case of yields */
lua_CFunction k; /* continuation in case of yields */
ptrdiff_t old_errfunc;
lu_byte old_allowhook;
lu_byte status;
} c;
} u;
} CallInfo;
/*
** bit fields for `CallInfo.state'
** Bits in CallInfo status
*/
#define CI_C 1 /* 1 if function is a C function */
/* 1 if (Lua) function has an active `luaV_execute' running it */
#define CI_HASFRAME 2
/* 1 if Lua function is calling another Lua function (and therefore its
`pc' is being used by the other, and therefore CI_SAVEDPC is 1 too) */
#define CI_CALLING 4
#define CI_SAVEDPC 8 /* 1 if `savedpc' is updated */
#define CIST_LUA (1<<0) /* call is running a Lua function */
#define CIST_HOOKED (1<<1) /* call is running a debug hook */
#define CIST_REENTRY (1<<2) /* call is running on same invocation of
luaV_execute of previous call */
#define CIST_YIELDED (1<<3) /* call reentered after suspension */
#define CIST_YPCALL (1<<4) /* call is a yieldable protected call */
#define CIST_STAT (1<<5) /* call has an error status (pcall) */
#define CIST_TAIL (1<<6) /* call was tail called */
#define CIST_HOOKYIELD (1<<7) /* last hook called yielded */
#define ci_func(ci) (clvalue((ci)->base - 1))
#define isLua(ci) ((ci)->callstatus & CIST_LUA)
/*
** `global state', shared by all threads of this state
*/
typedef struct global_State {
lua_Alloc frealloc; /* function to reallocate memory */
void *ud; /* auxiliary data to `frealloc' */
lu_mem totalbytes; /* number of bytes currently allocated - GCdebt */
l_mem GCdebt; /* bytes allocated not yet compensated by the collector */
lu_mem GCmemtrav; /* memory traversed by the GC */
lu_mem GCestimate; /* an estimate of the non-garbage memory in use */
stringtable strt; /* hash table for strings */
Proto *rootproto; /* list of all prototypes */
Closure *rootcl; /* list of all closures */
Table *roottable; /* list of all tables */
UpVal *rootupval; /* list of closed up values */
Udata *rootudata; /* list of all userdata */
Udata *tmudata; /* list of userdata to be GC */
void *Mbuffer; /* global buffer */
size_t Mbuffsize; /* size of Mbuffer */
lu_mem GCthreshold;
lu_mem nblocks; /* number of `bytes' currently allocated */
TValue l_registry;
unsigned int seed; /* randomized seed for hashes */
lu_byte currentwhite;
lu_byte gcstate; /* state of garbage collector */
lu_byte gckind; /* kind of GC running */
lu_byte gcrunning; /* true if GC is running */
int sweepstrgc; /* position of sweep in `strt' */
GCObject *allgc; /* list of all collectable objects */
GCObject *finobj; /* list of collectable objects with finalizers */
GCObject **sweepgc; /* current position of sweep in list 'allgc' */
GCObject **sweepfin; /* current position of sweep in list 'finobj' */
GCObject *gray; /* list of gray objects */
GCObject *grayagain; /* list of objects to be traversed atomically */
GCObject *weak; /* list of tables with weak values */
GCObject *ephemeron; /* list of ephemeron tables (weak keys) */
GCObject *allweak; /* list of all-weak tables */
GCObject *tobefnz; /* list of userdata to be GC */
UpVal uvhead; /* head of double-linked list of all open upvalues */
Mbuffer buff; /* temporary buffer for string concatenation */
int gcpause; /* size of pause between successive GCs */
int gcmajorinc; /* pause between major collections (only in gen. mode) */
int gcstepmul; /* GC `granularity' */
lua_CFunction panic; /* to be called in unprotected errors */
Node dummynode[1]; /* common node array for all empty tables */
struct lua_State *mainthread;
const lua_Number *version; /* pointer to version number */
TString *memerrmsg; /* memory-error message */
TString *tmname[TM_N]; /* array with tag-method names */
struct Table *mt[LUA_NUMTAGS]; /* metatables for basic types */
} global_State;
@@ -141,32 +152,77 @@ typedef struct global_State {
** `per thread' state
*/
struct lua_State {
LUA_USERSTATE
CommonHeader;
lu_byte status;
StkId top; /* first free slot in the stack */
global_State *l_G;
CallInfo *ci; /* call info for current function */
const Instruction *oldpc; /* last pc traced */
StkId stack_last; /* last free slot in the stack */
StkId stack; /* stack base */
int stacksize;
CallInfo *end_ci; /* points after end of ci array*/
CallInfo *base_ci; /* array of CallInfo's */
int size_ci; /* size of array `base_ci' */
unsigned long hookmask;
ls_count hookcount;
unsigned short nny; /* number of non-yieldable calls in stack */
unsigned short nCcalls; /* number of nested C calls */
lu_byte hookmask;
lu_byte allowhook;
int basehookcount;
int hookcount;
lua_Hook hook;
UpVal *openupval; /* list of open upvalues in this stack */
GCObject *openupval; /* list of open upvalues in this stack */
GCObject *gclist;
struct lua_longjmp *errorJmp; /* current error recover point */
ptrdiff_t errfunc; /* current error handling function (stack index) */
lua_State *next; /* circular double linked list of states */
lua_State *previous;
TObject globs[NUMGLOBS]; /* registry, table of globals, etc. */
CallInfo base_ci; /* CallInfo for first level (C calling Lua) */
};
#define G(L) (L->l_G)
void luaE_closethread (lua_State *OL, lua_State *L);
/*
** Union of all collectable objects
*/
union GCObject {
GCheader gch; /* common header */
union TString ts;
union Udata u;
union Closure cl;
struct Table h;
struct Proto p;
struct UpVal uv;
struct lua_State th; /* thread */
};
#define gch(o) (&(o)->gch)
/* macros to convert a GCObject into a specific value */
#define rawgco2ts(o) \
check_exp(novariant((o)->gch.tt) == LUA_TSTRING, &((o)->ts))
#define gco2ts(o) (&rawgco2ts(o)->tsv)
#define rawgco2u(o) check_exp((o)->gch.tt == LUA_TUSERDATA, &((o)->u))
#define gco2u(o) (&rawgco2u(o)->uv)
#define gco2lcl(o) check_exp((o)->gch.tt == LUA_TLCL, &((o)->cl.l))
#define gco2ccl(o) check_exp((o)->gch.tt == LUA_TCCL, &((o)->cl.c))
#define gco2cl(o) \
check_exp(novariant((o)->gch.tt) == LUA_TFUNCTION, &((o)->cl))
#define gco2t(o) check_exp((o)->gch.tt == LUA_TTABLE, &((o)->h))
#define gco2p(o) check_exp((o)->gch.tt == LUA_TPROTO, &((o)->p))
#define gco2uv(o) check_exp((o)->gch.tt == LUA_TUPVAL, &((o)->uv))
#define gco2th(o) check_exp((o)->gch.tt == LUA_TTHREAD, &((o)->th))
/* macro to convert any Lua object into a GCObject */
#define obj2gco(v) (cast(GCObject *, (v)))
/* actual number of total bytes allocated */
#define gettotalbytes(g) ((g)->totalbytes + (g)->GCdebt)
LUAI_FUNC void luaE_setdebt (global_State *g, l_mem debt);
LUAI_FUNC void luaE_freethread (lua_State *L, lua_State *L1);
LUAI_FUNC CallInfo *luaE_extendCI (lua_State *L);
LUAI_FUNC void luaE_freeCI (lua_State *L);
#endif

186
lstring.c
View File

@@ -1,5 +1,5 @@
/*
** $Id: lstring.c,v 1.73 2002/03/20 18:37:13 roberto Exp roberto $
** $Id: lstring.c,v 2.26 2013/01/08 13:50:10 roberto Exp $
** String table (keeps all strings handled by Lua)
** See Copyright Notice in lua.h
*/
@@ -7,6 +7,9 @@
#include <string.h>
#define lstring_c
#define LUA_CORE
#include "lua.h"
#include "lmem.h"
@@ -15,83 +18,168 @@
#include "lstring.h"
/*
** Lua will use at most ~(2^LUAI_HASHLIMIT) bytes from a string to
** compute its hash
*/
#if !defined(LUAI_HASHLIMIT)
#define LUAI_HASHLIMIT 5
#endif
void luaS_freeall (lua_State *L) {
lua_assert(G(L)->strt.nuse==0);
luaM_freearray(L, G(L)->strt.hash, G(L)->strt.size, TString *);
/*
** equality for long strings
*/
int luaS_eqlngstr (TString *a, TString *b) {
size_t len = a->tsv.len;
lua_assert(a->tsv.tt == LUA_TLNGSTR && b->tsv.tt == LUA_TLNGSTR);
return (a == b) || /* same instance or... */
((len == b->tsv.len) && /* equal length and ... */
(memcmp(getstr(a), getstr(b), len) == 0)); /* equal contents */
}
/*
** equality for strings
*/
int luaS_eqstr (TString *a, TString *b) {
return (a->tsv.tt == b->tsv.tt) &&
(a->tsv.tt == LUA_TSHRSTR ? eqshrstr(a, b) : luaS_eqlngstr(a, b));
}
unsigned int luaS_hash (const char *str, size_t l, unsigned int seed) {
unsigned int h = seed ^ cast(unsigned int, l);
size_t l1;
size_t step = (l >> LUAI_HASHLIMIT) + 1;
for (l1 = l; l1 >= step; l1 -= step)
h = h ^ ((h<<5) + (h>>2) + cast_byte(str[l1 - 1]));
return h;
}
/*
** resizes the string table
*/
void luaS_resize (lua_State *L, int newsize) {
TString **newhash = luaM_newvector(L, newsize, TString *);
stringtable *tb = &G(L)->strt;
int i;
for (i=0; i<newsize; i++) newhash[i] = NULL;
stringtable *tb = &G(L)->strt;
/* cannot resize while GC is traversing strings */
luaC_runtilstate(L, ~bitmask(GCSsweepstring));
if (newsize > tb->size) {
luaM_reallocvector(L, tb->hash, tb->size, newsize, GCObject *);
for (i = tb->size; i < newsize; i++) tb->hash[i] = NULL;
}
/* rehash */
for (i=0; i<tb->size; i++) {
TString *p = tb->hash[i];
GCObject *p = tb->hash[i];
tb->hash[i] = NULL;
while (p) { /* for each node in the list */
TString *next = p->tsv.nexthash; /* save next */
lu_hash h = p->tsv.hash;
int h1 = lmod(h, newsize); /* new position */
lua_assert(cast(int, h%newsize) == lmod(h, newsize));
p->tsv.nexthash = newhash[h1]; /* chain it in new position */
newhash[h1] = p;
GCObject *next = gch(p)->next; /* save next */
unsigned int h = lmod(gco2ts(p)->hash, newsize); /* new position */
gch(p)->next = tb->hash[h]; /* chain it */
tb->hash[h] = p;
resetoldbit(p); /* see MOVE OLD rule */
p = next;
}
}
luaM_freearray(L, tb->hash, tb->size, TString *);
if (newsize < tb->size) {
/* shrinking slice must be empty */
lua_assert(tb->hash[newsize] == NULL && tb->hash[tb->size - 1] == NULL);
luaM_reallocvector(L, tb->hash, tb->size, newsize, GCObject *);
}
tb->size = newsize;
tb->hash = newhash;
}
static TString *newlstr (lua_State *L, const char *str, size_t l, lu_hash h) {
TString *ts = cast(TString *, luaM_malloc(L, sizestring(l)));
stringtable *tb;
ts->tsv.nexthash = NULL;
/*
** creates a new string object
*/
static TString *createstrobj (lua_State *L, const char *str, size_t l,
int tag, unsigned int h, GCObject **list) {
TString *ts;
size_t totalsize; /* total size of TString object */
totalsize = sizeof(TString) + ((l + 1) * sizeof(char));
ts = &luaC_newobj(L, tag, totalsize, list, 0)->ts;
ts->tsv.len = l;
ts->tsv.hash = h;
ts->tsv.marked = 0;
ts->tsv.extra = 0;
memcpy(ts+1, str, l*sizeof(char));
((char *)(ts+1))[l] = '\0'; /* ending 0 */
tb = &G(L)->strt;
h = lmod(h, tb->size);
ts->tsv.nexthash = tb->hash[h]; /* chain new entry */
tb->hash[h] = ts;
tb->nuse++;
if (tb->nuse > cast(ls_nstr, tb->size) && tb->size <= MAX_INT/2)
luaS_resize(L, tb->size*2); /* too crowded */
return ts;
}
TString *luaS_newlstr (lua_State *L, const char *str, size_t l) {
TString *ts;
lu_hash h = (lu_hash)l; /* seed */
size_t step = (l>>5)+1; /* if string is too long, don't hash all its chars */
size_t l1;
for (l1=l; l1>=step; l1-=step) /* compute hash */
h = h ^ ((h<<5)+(h>>2)+(unsigned char)(str[l1-1]));
for (ts = G(L)->strt.hash[lmod(h, G(L)->strt.size)];
ts != NULL;
ts = ts->tsv.nexthash) {
if (ts->tsv.len == l && (memcmp(str, getstr(ts), l) == 0))
return ts;
}
return newlstr(L, str, l, h); /* not found */
/*
** creates a new short string, inserting it into string table
*/
static TString *newshrstr (lua_State *L, const char *str, size_t l,
unsigned int h) {
GCObject **list; /* (pointer to) list where it will be inserted */
stringtable *tb = &G(L)->strt;
TString *s;
if (tb->nuse >= cast(lu_int32, tb->size) && tb->size <= MAX_INT/2)
luaS_resize(L, tb->size*2); /* too crowded */
list = &tb->hash[lmod(h, tb->size)];
s = createstrobj(L, str, l, LUA_TSHRSTR, h, list);
tb->nuse++;
return s;
}
Udata *luaS_newudata (lua_State *L, size_t s) {
/*
** checks whether short string exists and reuses it or creates a new one
*/
static TString *internshrstr (lua_State *L, const char *str, size_t l) {
GCObject *o;
global_State *g = G(L);
unsigned int h = luaS_hash(str, l, g->seed);
for (o = g->strt.hash[lmod(h, g->strt.size)];
o != NULL;
o = gch(o)->next) {
TString *ts = rawgco2ts(o);
if (h == ts->tsv.hash &&
l == ts->tsv.len &&
(memcmp(str, getstr(ts), l * sizeof(char)) == 0)) {
if (isdead(G(L), o)) /* string is dead (but was not collected yet)? */
changewhite(o); /* resurrect it */
return ts;
}
}
return newshrstr(L, str, l, h); /* not found; create a new string */
}
/*
** new string (with explicit length)
*/
TString *luaS_newlstr (lua_State *L, const char *str, size_t l) {
if (l <= LUAI_MAXSHORTLEN) /* short string? */
return internshrstr(L, str, l);
else {
if (l + 1 > (MAX_SIZET - sizeof(TString))/sizeof(char))
luaM_toobig(L);
return createstrobj(L, str, l, LUA_TLNGSTR, G(L)->seed, NULL);
}
}
/*
** new zero-terminated string
*/
TString *luaS_new (lua_State *L, const char *str) {
return luaS_newlstr(L, str, strlen(str));
}
Udata *luaS_newudata (lua_State *L, size_t s, Table *e) {
Udata *u;
s = (s+3) & (~(size_t)3); /* make sure size is multiple of 4 */
u = cast(Udata *, luaM_malloc(L, sizeudata(s)));
if (s > MAX_SIZET - sizeof(Udata))
luaM_toobig(L);
u = &luaC_newobj(L, LUA_TUSERDATA, sizeof(Udata) + s, NULL, 0)->u;
u->uv.len = s;
u->uv.metatable = hvalue(defaultmeta(L));
/* chain it on udata list */
u->uv.next = G(L)->rootudata;
G(L)->rootudata = u;
u->uv.metatable = NULL;
u->uv.env = e;
return u;
}

View File

@@ -1,5 +1,5 @@
/*
** $Id: lstring.h,v 1.35 2001/11/28 20:13:13 roberto Exp roberto $
** $Id: lstring.h,v 1.49 2012/02/01 21:57:15 roberto Exp $
** String table (keep all strings handled by Lua)
** See Copyright Notice in lua.h
*/
@@ -7,35 +7,40 @@
#ifndef lstring_h
#define lstring_h
#include "lgc.h"
#include "lobject.h"
#include "lstate.h"
#define sizestring(s) (sizeof(union TString)+((s)->len+1)*sizeof(char))
/*
** any TString with mark>=FIXMARK is never collected.
** Marks>=RESERVEDMARK are used to identify reserved words.
*/
#define FIXMARK 2
#define RESERVEDMARK 3
#define sizeudata(u) (sizeof(union Udata)+(u)->len)
#define sizestring(l) (cast(lu_mem, sizeof(union TString))+ \
(cast(lu_mem, l)+1)*sizeof(char))
#define sizeudata(l) (cast(lu_mem, sizeof(union Udata))+(l))
#define luaS_new(L, s) (luaS_newlstr(L, s, strlen(s)))
#define luaS_newliteral(L, s) (luaS_newlstr(L, "" s, \
(sizeof(s)/sizeof(char))-1))
#define luaS_fix(s) ((s)->tsv.marked = FIXMARK)
#define luaS_fix(s) l_setbit((s)->tsv.marked, FIXEDBIT)
void luaS_resize (lua_State *L, int newsize);
Udata *luaS_newudata (lua_State *L, size_t s);
void luaS_freeall (lua_State *L);
TString *luaS_newlstr (lua_State *L, const char *str, size_t l);
/*
** test whether a string is a reserved word
*/
#define isreserved(s) ((s)->tsv.tt == LUA_TSHRSTR && (s)->tsv.extra > 0)
/*
** equality for short strings, which are always internalized
*/
#define eqshrstr(a,b) check_exp((a)->tsv.tt == LUA_TSHRSTR, (a) == (b))
LUAI_FUNC unsigned int luaS_hash (const char *str, size_t l, unsigned int seed);
LUAI_FUNC int luaS_eqlngstr (TString *a, TString *b);
LUAI_FUNC int luaS_eqstr (TString *a, TString *b);
LUAI_FUNC void luaS_resize (lua_State *L, int newsize);
LUAI_FUNC Udata *luaS_newudata (lua_State *L, size_t s, Table *e);
LUAI_FUNC TString *luaS_newlstr (lua_State *L, const char *str, size_t l);
LUAI_FUNC TString *luaS_new (lua_State *L, const char *str);
#endif

853
lstrlib.c

File diff suppressed because it is too large Load Diff

609
ltable.c
View File

@@ -1,5 +1,5 @@
/*
** $Id: ltable.c,v 1.115 2002/08/05 14:45:32 roberto Exp roberto $
** $Id: ltable.c,v 2.72 2012/09/11 19:37:16 roberto Exp $
** Lua tables (hash)
** See Copyright Notice in lua.h
*/
@@ -15,82 +15,108 @@
** A main invariant of these tables is that, if an element is not
** in its main position (i.e. the `original' position that its hash gives
** to it), then the colliding element is in its own main position.
** In other words, there are collisions only when two elements have the
** same main position (i.e. the same hash values for that table size).
** Because of that, the load factor of these tables can be 100% without
** performance penalties.
** Hence even when the load factor reaches 100%, performance remains good.
*/
#include <string.h>
#define ltable_c
#define LUA_CORE
#include "lua.h"
#include "ldebug.h"
#include "ldo.h"
#include "lgc.h"
#include "lmem.h"
#include "lobject.h"
#include "lstate.h"
#include "lstring.h"
#include "ltable.h"
#include "lvm.h"
/*
** max size of array part is 2^MAXBITS
*/
#if BITS_INT > 26
#define MAXBITS 24
#if LUAI_BITSINT >= 32
#define MAXBITS 30
#else
#define MAXBITS (BITS_INT-2)
#define MAXBITS (LUAI_BITSINT-2)
#endif
/* check whether `x' < 2^MAXBITS */
#define toobig(x) ((((x)-1) >> MAXBITS) != 0)
#define MAXASIZE (1 << MAXBITS)
/* function to convert a lua_Number to int (with any rounding method) */
#ifndef lua_number2int
#define lua_number2int(i,n) ((i)=(int)(n))
#endif
#define hashpow2(t,n) (gnode(t, lmod((n), sizenode(t))))
#define hashstr(t,str) hashpow2(t, (str)->tsv.hash)
#define hashboolean(t,p) hashpow2(t, p)
#define hashnum(t,n) \
(node(t, lmod(cast(lu_hash, cast(ls_hash, n)), sizenode(t))))
#define hashstr(t,str) (node(t, lmod((str)->tsv.hash, sizenode(t))))
#define hashboolean(t,p) (node(t, lmod(p, sizenode(t))))
/*
** avoid modulus by power of 2 for pointers, as they tend to have many
** 2 factors.
** for some types, it is better to avoid modulus by power of 2, as
** they tend to have many 2 factors.
*/
#define hashpointer(t,p) (node(t, (IntPoint(p) % ((sizenode(t)-1)|1))))
#define hashmod(t,n) (gnode(t, ((n) % ((sizenode(t)-1)|1))))
#define hashpointer(t,p) hashmod(t, IntPoint(p))
#define dummynode (&dummynode_)
#define isdummy(n) ((n) == dummynode)
static const Node dummynode_ = {
{NILCONSTANT}, /* value */
{{NILCONSTANT, NULL}} /* key */
};
/*
** hash for lua_Numbers
*/
static Node *hashnum (const Table *t, lua_Number n) {
int i;
luai_hashnum(i, n);
if (i < 0) {
if (cast(unsigned int, i) == 0u - i) /* use unsigned to avoid overflows */
i = 0; /* handle INT_MIN */
i = -i; /* must be a positive value */
}
return hashmod(t, i);
}
/*
** returns the `main' position of an element in a table (that is, the index
** of its hash value)
*/
Node *luaH_mainposition (const Table *t, const TObject *key) {
static Node *mainposition (const Table *t, const TValue *key) {
switch (ttype(key)) {
case LUA_TNUMBER: {
int ikey;
lua_number2int(ikey, nvalue(key));
return hashnum(t, ikey);
case LUA_TNUMBER:
return hashnum(t, nvalue(key));
case LUA_TLNGSTR: {
TString *s = rawtsvalue(key);
if (s->tsv.extra == 0) { /* no hash? */
s->tsv.hash = luaS_hash(getstr(s), s->tsv.len, s->tsv.hash);
s->tsv.extra = 1; /* now it has its hash */
}
return hashstr(t, rawtsvalue(key));
}
case LUA_TSTRING:
return hashstr(t, tsvalue(key));
case LUA_TSHRSTR:
return hashstr(t, rawtsvalue(key));
case LUA_TBOOLEAN:
return hashboolean(t, bvalue(key));
case LUA_TLIGHTUSERDATA:
return hashpointer(t, pvalue(key));
case LUA_TUSERDATA:
return hashpointer(t, uvalue(key));
case LUA_TFUNCTION:
return hashpointer(t, clvalue(key));
case LUA_TTABLE:
return hashpointer(t, hvalue(key));
case LUA_TLCF:
return hashpointer(t, fvalue(key));
default:
return hashpointer(t, gcvalue(key));
}
lua_assert(0);
return 0; /* to avoid warnings */
}
@@ -98,11 +124,12 @@ Node *luaH_mainposition (const Table *t, const TObject *key) {
** returns the index for `key' if `key' is an appropriate key to live in
** the array part of the table, -1 otherwise.
*/
static int arrayindex (const TObject *key) {
static int arrayindex (const TValue *key) {
if (ttisnumber(key)) {
lua_Number n = nvalue(key);
int k;
lua_number2int(k, (nvalue(key)));
if (cast(lua_Number, k) == nvalue(key) && k >= 1 && !toobig(k))
lua_number2int(k, n);
if (luai_numeq(cast_num(k), n))
return k;
}
return -1; /* `key' did not match some condition */
@@ -112,39 +139,46 @@ static int arrayindex (const TObject *key) {
/*
** returns the index of a `key' for table traversals. First goes all
** elements in the array part, then elements in the hash part. The
** beginning and end of a traversal are signalled by -1.
** beginning of a traversal is signaled by -1.
*/
static int luaH_index (lua_State *L, Table *t, const TObject *key) {
static int findindex (lua_State *L, Table *t, StkId key) {
int i;
if (ttisnil(key)) return -1; /* first iteration */
i = arrayindex(key);
if (0 <= i && i <= t->sizearray) { /* is `key' inside array part? */
if (0 < i && i <= t->sizearray) /* is `key' inside array part? */
return i-1; /* yes; that's the index (corrected to C) */
}
else {
const TObject *v = luaH_get(t, key);
if (v == &luaO_nilobject)
luaG_runerror(L, "invalid key for `next'");
i = cast(int, (cast(const lu_byte *, v) -
cast(const lu_byte *, val(node(t, 0)))) / sizeof(Node));
return i + t->sizearray; /* hash elements are numbered after array ones */
Node *n = mainposition(t, key);
for (;;) { /* check whether `key' is somewhere in the chain */
/* key may be dead already, but it is ok to use it in `next' */
if (luaV_rawequalobj(gkey(n), key) ||
(ttisdeadkey(gkey(n)) && iscollectable(key) &&
deadvalue(gkey(n)) == gcvalue(key))) {
i = cast_int(n - gnode(t, 0)); /* key index in hash table */
/* hash elements are numbered after array ones */
return i + t->sizearray;
}
else n = gnext(n);
if (n == NULL)
luaG_runerror(L, "invalid key to " LUA_QL("next")); /* key not found */
}
}
}
int luaH_next (lua_State *L, Table *t, TObject *key) {
int i = luaH_index(L, t, key); /* find original element */
int luaH_next (lua_State *L, Table *t, StkId key) {
int i = findindex(L, t, key); /* find original element */
for (i++; i < t->sizearray; i++) { /* try first array part */
if (!ttisnil(&t->array[i])) { /* a non-nil value? */
setnvalue(key, i+1);
setobj(key+1, &t->array[i]);
setnvalue(key, cast_num(i+1));
setobj2s(L, key+1, &t->array[i]);
return 1;
}
}
for (i -= t->sizearray; i < sizenode(t); i++) { /* then hash part */
if (!ttisnil(val(node(t, i)))) { /* a non-nil value? */
setobj(key, key(node(t, i)));
setobj(key+1, val(node(t, i)));
if (!ttisnil(gval(gnode(t, i)))) { /* a non-nil value? */
setobj2s(L, key, gkey(gnode(t, i)));
setobj2s(L, key+1, gval(gnode(t, i)));
return 1;
}
}
@@ -159,140 +193,169 @@ int luaH_next (lua_State *L, Table *t, TObject *key) {
*/
static void computesizes (int nums[], int ntotal, int *narray, int *nhash) {
static int computesizes (int nums[], int *narray) {
int i;
int a = nums[0]; /* number of elements smaller than 2^i */
int na = a; /* number of elements to go to array part */
int n = (na == 0) ? -1 : 0; /* (log of) optimal size for array part */
for (i = 1; i <= MAXBITS && *narray >= twoto(i-1); i++) {
int twotoi; /* 2^i */
int a = 0; /* number of elements smaller than 2^i */
int na = 0; /* number of elements to go to array part */
int n = 0; /* optimal size for array part */
for (i = 0, twotoi = 1; twotoi/2 < *narray; i++, twotoi *= 2) {
if (nums[i] > 0) {
a += nums[i];
if (a >= twoto(i-1)) { /* more than half elements in use? */
n = i;
na = a;
if (a > twotoi/2) { /* more than half elements present? */
n = twotoi; /* optimal size (till now) */
na = a; /* all elements smaller than n will go to array part */
}
}
if (a == *narray) break; /* all elements already counted */
}
lua_assert(na <= *narray && *narray <= ntotal);
*nhash = ntotal - na;
*narray = (n == -1) ? 0 : twoto(n);
lua_assert(na <= *narray && na >= *narray/2);
*narray = n;
lua_assert(*narray/2 <= na && na <= *narray);
return na;
}
static void numuse (const Table *t, int *narray, int *nhash) {
int nums[MAXBITS+1];
int i;
int totaluse = 0;
for (i=0; i<=MAXBITS; i++) nums[i] = 0; /* init `nums' */
/* count elements in array part */
i = luaO_log2(t->sizearray) + 1; /* number of `slices' */
while (i--) { /* for each slice [2^(i-1) to 2^i) */
int to = twoto(i);
int from = to/2;
if (to > t->sizearray) to = t->sizearray;
for (; from < to; from++)
if (!ttisnil(&t->array[from])) {
nums[i]++;
totaluse++;
}
static int countint (const TValue *key, int *nums) {
int k = arrayindex(key);
if (0 < k && k <= MAXASIZE) { /* is `key' an appropriate array index? */
nums[luaO_ceillog2(k)]++; /* count as such */
return 1;
}
*narray = totaluse; /* all previous uses were in array part */
/* count elements in hash part */
i = sizenode(t);
else
return 0;
}
static int numusearray (const Table *t, int *nums) {
int lg;
int ttlg; /* 2^lg */
int ause = 0; /* summation of `nums' */
int i = 1; /* count to traverse all array keys */
for (lg=0, ttlg=1; lg<=MAXBITS; lg++, ttlg*=2) { /* for each slice */
int lc = 0; /* counter */
int lim = ttlg;
if (lim > t->sizearray) {
lim = t->sizearray; /* adjust upper limit */
if (i > lim)
break; /* no more elements to count */
}
/* count elements in range (2^(lg-1), 2^lg] */
for (; i <= lim; i++) {
if (!ttisnil(&t->array[i-1]))
lc++;
}
nums[lg] += lc;
ause += lc;
}
return ause;
}
static int numusehash (const Table *t, int *nums, int *pnasize) {
int totaluse = 0; /* total number of elements */
int ause = 0; /* summation of `nums' */
int i = sizenode(t);
while (i--) {
if (!ttisnil(val(&t->node[i]))) {
int k = arrayindex(key(&t->node[i]));
if (k >= 0) { /* is `key' an appropriate array index? */
nums[luaO_log2(k-1)+1]++; /* count as such */
(*narray)++;
}
Node *n = &t->node[i];
if (!ttisnil(gval(n))) {
ause += countint(gkey(n), nums);
totaluse++;
}
}
computesizes(nums, totaluse, narray, nhash);
*pnasize += ause;
return totaluse;
}
static void setarrayvector (lua_State *L, Table *t, int size) {
int i;
luaM_reallocvector(L, t->array, t->sizearray, size, TObject);
luaM_reallocvector(L, t->array, t->sizearray, size, TValue);
for (i=t->sizearray; i<size; i++)
setnilvalue(&t->array[i]);
t->sizearray = size;
}
static void setnodevector (lua_State *L, Table *t, int lsize) {
int i;
int size = twoto(lsize);
if (lsize > MAXBITS)
luaG_runerror(L, "table overflow");
if (lsize == 0) { /* no elements to hash part? */
t->node = G(L)->dummynode; /* use common `dummynode' */
lua_assert(ttisnil(key(t->node))); /* assert invariants: */
lua_assert(ttisnil(val(t->node)));
lua_assert(t->node->next == NULL); /* (`dummynode' must be empty) */
static void setnodevector (lua_State *L, Table *t, int size) {
int lsize;
if (size == 0) { /* no elements to hash part? */
t->node = cast(Node *, dummynode); /* use common `dummynode' */
lsize = 0;
}
else {
int i;
lsize = luaO_ceillog2(size);
if (lsize > MAXBITS)
luaG_runerror(L, "table overflow");
size = twoto(lsize);
t->node = luaM_newvector(L, size, Node);
for (i=0; i<size; i++) {
t->node[i].next = NULL;
setnilvalue(key(node(t, i)));
setnilvalue(val(node(t, i)));
Node *n = gnode(t, i);
gnext(n) = NULL;
setnilvalue(gkey(n));
setnilvalue(gval(n));
}
}
t->lsizenode = cast(lu_byte, lsize);
t->firstfree = node(t, size-1); /* first free position to be used */
t->lsizenode = cast_byte(lsize);
t->lastfree = gnode(t, size); /* all positions are free */
}
static void resize (lua_State *L, Table *t, int nasize, int nhsize) {
void luaH_resize (lua_State *L, Table *t, int nasize, int nhsize) {
int i;
int oldasize = t->sizearray;
int oldhsize = t->lsizenode;
Node *nold;
Node temp[1];
if (oldhsize)
nold = t->node; /* save old hash ... */
else { /* old hash is `dummynode' */
lua_assert(t->node == G(L)->dummynode);
temp[0] = t->node[0]; /* copy it to `temp' */
nold = temp;
setnilvalue(key(G(L)->dummynode)); /* restate invariant */
setnilvalue(val(G(L)->dummynode));
lua_assert(G(L)->dummynode->next == NULL);
}
Node *nold = t->node; /* save old hash ... */
if (nasize > oldasize) /* array part must grow? */
setarrayvector(L, t, nasize);
/* create new hash part with appropriate size */
setnodevector(L, t, nhsize);
/* re-insert elements */
setnodevector(L, t, nhsize);
if (nasize < oldasize) { /* array part must shrink? */
t->sizearray = nasize;
/* re-insert elements from vanishing slice */
for (i=nasize; i<oldasize; i++) {
if (!ttisnil(&t->array[i]))
setobj(luaH_setnum(L, t, i+1), &t->array[i]);
luaH_setint(L, t, i + 1, &t->array[i]);
}
/* shrink array */
luaM_reallocvector(L, t->array, oldasize, nasize, TObject);
luaM_reallocvector(L, t->array, oldasize, nasize, TValue);
}
/* re-insert elements in hash part */
/* re-insert elements from hash part */
for (i = twoto(oldhsize) - 1; i >= 0; i--) {
Node *old = nold+i;
if (!ttisnil(val(old)))
setobj(luaH_set(L, t, key(old)), val(old));
if (!ttisnil(gval(old))) {
/* doesn't need barrier/invalidate cache, as entry was
already present in the table */
setobjt2t(L, luaH_set(L, t, gkey(old)), gval(old));
}
}
if (oldhsize)
luaM_freearray(L, nold, twoto(oldhsize), Node); /* free old array */
if (!isdummy(nold))
luaM_freearray(L, nold, cast(size_t, twoto(oldhsize))); /* free old array */
}
static void rehash (lua_State *L, Table *t) {
int nasize, nhsize;
numuse(t, &nasize, &nhsize); /* compute new sizes for array and hash parts */
resize(L, t, nasize, luaO_log2(nhsize)+1);
void luaH_resizearray (lua_State *L, Table *t, int nasize) {
int nsize = isdummy(t->node) ? 0 : sizenode(t);
luaH_resize(L, t, nasize, nsize);
}
static void rehash (lua_State *L, Table *t, const TValue *ek) {
int nasize, na;
int nums[MAXBITS+1]; /* nums[i] = number of keys with 2^(i-1) < k <= 2^i */
int i;
int totaluse;
for (i=0; i<=MAXBITS; i++) nums[i] = 0; /* reset counts */
nasize = numusearray(t, nums); /* count keys in array part */
totaluse = nasize; /* all those keys are integer keys */
totaluse += numusehash(t, nums, &nasize); /* count keys in hash part */
/* count extra key */
nasize += countint(ek, nums);
totaluse++;
/* compute new size for array part */
na = computesizes(nums, &nasize);
/* resize the table to new computed sizes */
luaH_resize(L, t, nasize, totaluse - na);
}
@@ -302,188 +365,224 @@ static void rehash (lua_State *L, Table *t) {
*/
Table *luaH_new (lua_State *L, int narray, int lnhash) {
Table *t = luaM_new(L, Table);
t->metatable = hvalue(defaultmeta(L));
t->next = G(L)->roottable;
G(L)->roottable = t;
t->mark = t;
t->flags = cast(lu_byte, ~0);
t->mode = 0;
/* temporary values (kept only if some malloc fails) */
Table *luaH_new (lua_State *L) {
Table *t = &luaC_newobj(L, LUA_TTABLE, sizeof(Table), NULL, 0)->h;
t->metatable = NULL;
t->flags = cast_byte(~0);
t->array = NULL;
t->sizearray = 0;
t->lsizenode = 0;
t->node = NULL;
setarrayvector(L, t, narray);
setnodevector(L, t, lnhash);
setnodevector(L, t, 0);
return t;
}
void luaH_free (lua_State *L, Table *t) {
if (t->lsizenode)
luaM_freearray(L, t->node, sizenode(t), Node);
luaM_freearray(L, t->array, t->sizearray, TObject);
luaM_freelem(L, t);
if (!isdummy(t->node))
luaM_freearray(L, t->node, cast(size_t, sizenode(t)));
luaM_freearray(L, t->array, t->sizearray);
luaM_free(L, t);
}
#if 0
/*
** try to remove an element from a hash table; cannot move any element
** (because gc can call `remove' during a table traversal)
*/
void luaH_remove (Table *t, Node *e) {
Node *mp = luaH_mainposition(t, key(e));
if (e != mp) { /* element not in its main position? */
while (mp->next != e) mp = mp->next; /* find previous */
mp->next = e->next; /* remove `e' from its list */
static Node *getfreepos (Table *t) {
while (t->lastfree > t->node) {
t->lastfree--;
if (ttisnil(gkey(t->lastfree)))
return t->lastfree;
}
else {
if (e->next != NULL) ??
}
lua_assert(ttisnil(val(node)));
setnilvalue(key(e)); /* clear node `e' */
e->next = NULL;
return NULL; /* could not find a free place */
}
#endif
/*
** inserts a new key into a hash table; first, check whether key's main
** position is free. If not, check whether colliding node is in its main
** position or not: if it is not, move colliding node to an empty place and
** put new key in its main position; otherwise (colliding node is in its main
** position), new key goes to an empty position.
** inserts a new key into a hash table; first, check whether key's main
** position is free. If not, check whether colliding node is in its main
** position or not: if it is not, move colliding node to an empty place and
** put new key in its main position; otherwise (colliding node is in its main
** position), new key goes to an empty position.
*/
static TObject *newkey (lua_State *L, Table *t, const TObject *key) {
TObject *val;
Node *mp = luaH_mainposition(t, key);
if (!ttisnil(val(mp))) { /* main position is not free? */
Node *othern = luaH_mainposition(t, key(mp)); /* `mp' of colliding node */
Node *n = t->firstfree; /* get a free place */
TValue *luaH_newkey (lua_State *L, Table *t, const TValue *key) {
Node *mp;
if (ttisnil(key)) luaG_runerror(L, "table index is nil");
else if (ttisnumber(key) && luai_numisnan(L, nvalue(key)))
luaG_runerror(L, "table index is NaN");
mp = mainposition(t, key);
if (!ttisnil(gval(mp)) || isdummy(mp)) { /* main position is taken? */
Node *othern;
Node *n = getfreepos(t); /* get a free place */
if (n == NULL) { /* cannot find a free place? */
rehash(L, t, key); /* grow table */
/* whatever called 'newkey' take care of TM cache and GC barrier */
return luaH_set(L, t, key); /* insert key into grown table */
}
lua_assert(!isdummy(n));
othern = mainposition(t, gkey(mp));
if (othern != mp) { /* is colliding node out of its main position? */
/* yes; move colliding node into free position */
while (othern->next != mp) othern = othern->next; /* find previous */
othern->next = n; /* redo the chain with `n' in place of `mp' */
while (gnext(othern) != mp) othern = gnext(othern); /* find previous */
gnext(othern) = n; /* redo the chain with `n' in place of `mp' */
*n = *mp; /* copy colliding node into free pos. (mp->next also goes) */
mp->next = NULL; /* now `mp' is free */
setnilvalue(val(mp));
gnext(mp) = NULL; /* now `mp' is free */
setnilvalue(gval(mp));
}
else { /* colliding node is in its own main position */
/* new node will go into free position */
n->next = mp->next; /* chain new position */
mp->next = n;
gnext(n) = gnext(mp); /* chain new position */
gnext(mp) = n;
mp = n;
}
}
setobj(key(mp), key);
lua_assert(ttisnil(val(mp)));
for (;;) { /* correct `firstfree' */
if (ttisnil(key(t->firstfree)))
return val(mp); /* OK; table still has a free place */
else if (t->firstfree == t->node) break; /* cannot decrement from here */
else (t->firstfree)--;
}
/* no more free places; must create one */
setbvalue(val(mp), 0); /* avoid new key being removed */
rehash(L, t); /* grow table */
val = cast(TObject *, luaH_get(t, key)); /* get new position */
lua_assert(ttisboolean(val));
setnilvalue(val);
return val;
}
/*
** generic search function
*/
static const TObject *luaH_getany (Table *t, const TObject *key) {
if (ttisnil(key)) return &luaO_nilobject;
else {
Node *n = luaH_mainposition(t, key);
do { /* check whether `key' is somewhere in the chain */
if (luaO_rawequalObj(key(n), key)) return val(n); /* that's it */
else n = n->next;
} while (n);
return &luaO_nilobject;
}
setobj2t(L, gkey(mp), key);
luaC_barrierback(L, obj2gco(t), key);
lua_assert(ttisnil(gval(mp)));
return gval(mp);
}
/*
** search function for integers
*/
const TObject *luaH_getnum (Table *t, int key) {
if (1 <= key && key <= t->sizearray)
const TValue *luaH_getint (Table *t, int key) {
/* (1 <= key && key <= t->sizearray) */
if (cast(unsigned int, key-1) < cast(unsigned int, t->sizearray))
return &t->array[key-1];
else {
Node *n = hashnum(t, key);
lua_Number nk = cast_num(key);
Node *n = hashnum(t, nk);
do { /* check whether `key' is somewhere in the chain */
if (ttisnumber(key(n)) && nvalue(key(n)) == (lua_Number)key)
return val(n); /* that's it */
else n = n->next;
if (ttisnumber(gkey(n)) && luai_numeq(nvalue(gkey(n)), nk))
return gval(n); /* that's it */
else n = gnext(n);
} while (n);
return &luaO_nilobject;
return luaO_nilobject;
}
}
/*
** search function for strings
** search function for short strings
*/
const TObject *luaH_getstr (Table *t, TString *key) {
const TValue *luaH_getstr (Table *t, TString *key) {
Node *n = hashstr(t, key);
lua_assert(key->tsv.tt == LUA_TSHRSTR);
do { /* check whether `key' is somewhere in the chain */
if (ttisstring(key(n)) && tsvalue(key(n)) == key)
return val(n); /* that's it */
else n = n->next;
if (ttisshrstring(gkey(n)) && eqshrstr(rawtsvalue(gkey(n)), key))
return gval(n); /* that's it */
else n = gnext(n);
} while (n);
return &luaO_nilobject;
return luaO_nilobject;
}
/*
** main search function
*/
const TObject *luaH_get (Table *t, const TObject *key) {
const TValue *luaH_get (Table *t, const TValue *key) {
switch (ttype(key)) {
case LUA_TSTRING: return luaH_getstr(t, tsvalue(key));
case LUA_TSHRSTR: return luaH_getstr(t, rawtsvalue(key));
case LUA_TNIL: return luaO_nilobject;
case LUA_TNUMBER: {
int k;
lua_number2int(k, (nvalue(key)));
if (cast(lua_Number, k) == nvalue(key)) /* is an integer index? */
return luaH_getnum(t, k); /* use specialized version */
lua_Number n = nvalue(key);
lua_number2int(k, n);
if (luai_numeq(cast_num(k), n)) /* index is int? */
return luaH_getint(t, k); /* use specialized version */
/* else go through */
}
default: return luaH_getany(t, key);
default: {
Node *n = mainposition(t, key);
do { /* check whether `key' is somewhere in the chain */
if (luaV_rawequalobj(gkey(n), key))
return gval(n); /* that's it */
else n = gnext(n);
} while (n);
return luaO_nilobject;
}
}
}
TObject *luaH_set (lua_State *L, Table *t, const TObject *key) {
const TObject *p = luaH_get(t, key);
t->flags = 0;
if (p != &luaO_nilobject)
return cast(TObject *, p);
/*
** beware: when using this function you probably need to check a GC
** barrier and invalidate the TM cache.
*/
TValue *luaH_set (lua_State *L, Table *t, const TValue *key) {
const TValue *p = luaH_get(t, key);
if (p != luaO_nilobject)
return cast(TValue *, p);
else return luaH_newkey(L, t, key);
}
void luaH_setint (lua_State *L, Table *t, int key, TValue *value) {
const TValue *p = luaH_getint(t, key);
TValue *cell;
if (p != luaO_nilobject)
cell = cast(TValue *, p);
else {
if (ttisnil(key)) luaG_runerror(L, "table index is nil");
else if (ttisnumber(key) && nvalue(key) != nvalue(key))
luaG_runerror(L, "table index is NaN");
return newkey(L, t, key);
TValue k;
setnvalue(&k, cast_num(key));
cell = luaH_newkey(L, t, &k);
}
setobj2t(L, cell, value);
}
TObject *luaH_setnum (lua_State *L, Table *t, int key) {
const TObject *p = luaH_getnum(t, key);
if (p != &luaO_nilobject)
return cast(TObject *, p);
else {
TObject k;
setnvalue(&k, key);
return newkey(L, t, &k);
static int unbound_search (Table *t, unsigned int j) {
unsigned int i = j; /* i is zero or a present index */
j++;
/* find `i' and `j' such that i is present and j is not */
while (!ttisnil(luaH_getint(t, j))) {
i = j;
j *= 2;
if (j > cast(unsigned int, MAX_INT)) { /* overflow? */
/* table was built with bad purposes: resort to linear search */
i = 1;
while (!ttisnil(luaH_getint(t, i))) i++;
return i - 1;
}
}
/* now do a binary search between them */
while (j - i > 1) {
unsigned int m = (i+j)/2;
if (ttisnil(luaH_getint(t, m))) j = m;
else i = m;
}
return i;
}
/*
** Try to find a boundary in table `t'. A `boundary' is an integer index
** such that t[i] is non-nil and t[i+1] is nil (and 0 if t[1] is nil).
*/
int luaH_getn (Table *t) {
unsigned int j = t->sizearray;
if (j > 0 && ttisnil(&t->array[j - 1])) {
/* there is a boundary in the array part: (binary) search for it */
unsigned int i = 0;
while (j - i > 1) {
unsigned int m = (i+j)/2;
if (ttisnil(&t->array[m - 1])) j = m;
else i = m;
}
return i;
}
/* else must find a boundary in hash part */
else if (isdummy(t->node)) /* hash part is empty? */
return j; /* that is easy... */
else return unbound_search(t, j);
}
#if defined(LUA_DEBUG)
Node *luaH_mainposition (const Table *t, const TValue *key) {
return mainposition(t, key);
}
int luaH_isdummy (Node *n) { return isdummy(n); }
#endif

View File

@@ -1,5 +1,5 @@
/*
** $Id: ltable.h,v 1.41 2002/03/11 12:45:00 roberto Exp roberto $
** $Id: ltable.h,v 2.16.1.1 2013/04/12 18:48:47 roberto Exp roberto $
** Lua tables (hash)
** See Copyright Notice in lua.h
*/
@@ -10,22 +10,36 @@
#include "lobject.h"
#define node(t,i) (&(t)->node[i])
#define key(n) (&(n)->i_key)
#define val(n) (&(n)->i_val)
#define gnode(t,i) (&(t)->node[i])
#define gkey(n) (&(n)->i_key.tvk)
#define gval(n) (&(n)->i_val)
#define gnext(n) ((n)->i_key.nk.next)
#define invalidateTMcache(t) ((t)->flags = 0)
/* returns the key, given the value of a table entry */
#define keyfromval(v) \
(gkey(cast(Node *, cast(char *, (v)) - offsetof(Node, i_val))))
const TObject *luaH_getnum (Table *t, int key);
TObject *luaH_setnum (lua_State *L, Table *t, int key);
const TObject *luaH_getstr (Table *t, TString *key);
const TObject *luaH_get (Table *t, const TObject *key);
TObject *luaH_set (lua_State *L, Table *t, const TObject *key);
Table *luaH_new (lua_State *L, int narray, int lnhash);
void luaH_free (lua_State *L, Table *t);
int luaH_next (lua_State *L, Table *t, TObject *key);
LUAI_FUNC const TValue *luaH_getint (Table *t, int key);
LUAI_FUNC void luaH_setint (lua_State *L, Table *t, int key, TValue *value);
LUAI_FUNC const TValue *luaH_getstr (Table *t, TString *key);
LUAI_FUNC const TValue *luaH_get (Table *t, const TValue *key);
LUAI_FUNC TValue *luaH_newkey (lua_State *L, Table *t, const TValue *key);
LUAI_FUNC TValue *luaH_set (lua_State *L, Table *t, const TValue *key);
LUAI_FUNC Table *luaH_new (lua_State *L);
LUAI_FUNC void luaH_resize (lua_State *L, Table *t, int nasize, int nhsize);
LUAI_FUNC void luaH_resizearray (lua_State *L, Table *t, int nasize);
LUAI_FUNC void luaH_free (lua_State *L, Table *t);
LUAI_FUNC int luaH_next (lua_State *L, Table *t, StkId key);
LUAI_FUNC int luaH_getn (Table *t);
/* exported only for debugging */
Node *luaH_mainposition (const Table *t, const TObject *key);
#if defined(LUA_DEBUG)
LUAI_FUNC Node *luaH_mainposition (const Table *t, const TValue *key);
LUAI_FUNC int luaH_isdummy (Node *n);
#endif
#endif

271
ltablib.c
View File

@@ -1,5 +1,5 @@
/*
** $Id: ltablib.c,v 1.11 2002/08/06 17:06:56 roberto Exp roberto $
** $Id: ltablib.c,v 1.65 2013/03/07 18:17:24 roberto Exp $
** Library for Table Manipulation
** See Copyright Notice in lua.h
*/
@@ -7,172 +7,157 @@
#include <stddef.h>
#define ltablib_c
#define LUA_LIB
#include "lua.h"
#include "lauxlib.h"
#include "lualib.h"
static int checkint (lua_State *L) {
int n = (int)lua_tonumber(L, -1);
if (n == 0 && !lua_isnumber(L, -1)) n = -1;
lua_pop(L, 1);
return n;
}
#define aux_getn(L,n) (luaL_checktype(L, n, LUA_TTABLE), luaL_len(L, n))
static void aux_setn (lua_State *L, int t, int n) {
lua_pushliteral(L, "n");
lua_rawget(L, t);
if (checkint(L) >= 0) {
lua_pushliteral(L, "n"); /* use it */
lua_pushnumber(L, n);
lua_rawset(L, t);
}
else { /* use N */
lua_pushvalue(L, t);
lua_pushnumber(L, n);
lua_rawset(L, lua_upvalueindex(1)); /* N[t] = n */
}
}
static int aux_getn (lua_State *L, int t) {
int n;
luaL_check_type(L, t, LUA_TTABLE);
lua_pushliteral(L, "n"); /* try t.n */
lua_rawget(L, t);
if ((n = checkint(L)) >= 0) return n;
lua_pushvalue(L, t); /* try N[t] */
lua_rawget(L, lua_upvalueindex(1));
if ((n = checkint(L)) >= 0) return n;
else { /* must count elements */
n = 0;
for (;;) {
lua_rawgeti(L, t, ++n);
if (lua_isnil(L, -1)) break;
lua_pop(L, 1);
}
lua_pop(L, 1);
aux_setn(L, t, n - 1);
return n - 1;
}
}
static int luaB_foreachi (lua_State *L) {
int i;
int n = aux_getn(L, 1);
luaL_check_type(L, 2, LUA_TFUNCTION);
for (i=1; i<=n; i++) {
lua_pushvalue(L, 2); /* function */
lua_pushnumber(L, i); /* 1st argument */
lua_rawgeti(L, 1, i); /* 2nd argument */
lua_call(L, 2, 1);
if (!lua_isnil(L, -1))
return 1;
lua_pop(L, 1); /* remove nil result */
}
return 0;
}
static int luaB_foreach (lua_State *L) {
luaL_check_type(L, 1, LUA_TTABLE);
luaL_check_type(L, 2, LUA_TFUNCTION);
#if defined(LUA_COMPAT_MAXN)
static int maxn (lua_State *L) {
lua_Number max = 0;
luaL_checktype(L, 1, LUA_TTABLE);
lua_pushnil(L); /* first key */
for (;;) {
if (lua_next(L, 1) == 0)
return 0;
lua_pushvalue(L, 2); /* function */
lua_pushvalue(L, -3); /* key */
lua_pushvalue(L, -3); /* value */
lua_call(L, 2, 1);
if (!lua_isnil(L, -1))
return 1;
lua_pop(L, 2); /* remove value and result */
while (lua_next(L, 1)) {
lua_pop(L, 1); /* remove value */
if (lua_type(L, -1) == LUA_TNUMBER) {
lua_Number v = lua_tonumber(L, -1);
if (v > max) max = v;
}
}
}
static int luaB_getn (lua_State *L) {
lua_pushnumber(L, aux_getn(L, 1));
lua_pushnumber(L, max);
return 1;
}
#endif
static int luaB_setn (lua_State *L) {
luaL_check_type(L, 1, LUA_TTABLE);
aux_setn(L, 1, luaL_check_int(L, 2));
return 0;
}
static int luaB_tinsert (lua_State *L) {
int v = lua_gettop(L); /* number of arguments */
int n = aux_getn(L, 1) + 1;
static int tinsert (lua_State *L) {
int e = aux_getn(L, 1) + 1; /* first empty element */
int pos; /* where to insert new element */
if (v == 2) /* called with only 2 arguments */
pos = n; /* insert new element at the end */
else {
pos = luaL_check_int(L, 2); /* 2nd argument is the position */
if (pos > n) n = pos; /* `grow' array if necessary */
v = 3; /* function may be called with more than 3 args */
switch (lua_gettop(L)) {
case 2: { /* called with only 2 arguments */
pos = e; /* insert new element at the end */
break;
}
case 3: {
int i;
pos = luaL_checkint(L, 2); /* 2nd argument is the position */
luaL_argcheck(L, 1 <= pos && pos <= e, 2, "position out of bounds");
for (i = e; i > pos; i--) { /* move up elements */
lua_rawgeti(L, 1, i-1);
lua_rawseti(L, 1, i); /* t[i] = t[i-1] */
}
break;
}
default: {
return luaL_error(L, "wrong number of arguments to " LUA_QL("insert"));
}
}
aux_setn(L, 1, n); /* new size */
while (--n >= pos) { /* move up elements */
lua_rawgeti(L, 1, n);
lua_rawseti(L, 1, n+1); /* t[n+1] = t[n] */
}
lua_pushvalue(L, v);
lua_rawseti(L, 1, pos); /* t[pos] = v */
return 0;
}
static int luaB_tremove (lua_State *L) {
int n = aux_getn(L, 1);
int pos = luaL_opt_int(L, 2, n);
if (n <= 0) return 0; /* table is `empty' */
aux_setn(L, 1, n-1); /* t.n = n-1 */
static int tremove (lua_State *L) {
int size = aux_getn(L, 1);
int pos = luaL_optint(L, 2, size);
if (pos != size) /* validate 'pos' if given */
luaL_argcheck(L, 1 <= pos && pos <= size + 1, 1, "position out of bounds");
lua_rawgeti(L, 1, pos); /* result = t[pos] */
for ( ;pos<n; pos++) {
for ( ; pos < size; pos++) {
lua_rawgeti(L, 1, pos+1);
lua_rawseti(L, 1, pos); /* t[pos] = t[pos+1] */
}
lua_pushnil(L);
lua_rawseti(L, 1, n); /* t[n] = nil */
lua_rawseti(L, 1, pos); /* t[pos] = nil */
return 1;
}
static int str_concat (lua_State *L) {
static void addfield (lua_State *L, luaL_Buffer *b, int i) {
lua_rawgeti(L, 1, i);
if (!lua_isstring(L, -1))
luaL_error(L, "invalid value (%s) at index %d in table for "
LUA_QL("concat"), luaL_typename(L, -1), i);
luaL_addvalue(b);
}
static int tconcat (lua_State *L) {
luaL_Buffer b;
int n = aux_getn(L, 1);
size_t lsep;
const char *sep = luaL_opt_lstr(L, 2, "", &lsep);
int i;
int i, last;
const char *sep = luaL_optlstring(L, 2, "", &lsep);
luaL_checktype(L, 1, LUA_TTABLE);
i = luaL_optint(L, 3, 1);
last = luaL_opt(L, luaL_checkint, 4, luaL_len(L, 1));
luaL_buffinit(L, &b);
for (i=1; i<=n; i++) {
lua_rawgeti(L, 1, i);
luaL_arg_check(L, lua_isstring(L, -1), 1,
"table contains non-strings");
luaL_addvalue(&b);
if (i != n)
luaL_addlstring(&b, sep, lsep);
for (; i < last; i++) {
addfield(L, &b, i);
luaL_addlstring(&b, sep, lsep);
}
if (i == last) /* add last value (if interval was not empty) */
addfield(L, &b, i);
luaL_pushresult(&b);
return 1;
}
/*
** {======================================================
** Pack/unpack
** =======================================================
*/
static int pack (lua_State *L) {
int n = lua_gettop(L); /* number of elements to pack */
lua_createtable(L, n, 1); /* create result table */
lua_pushinteger(L, n);
lua_setfield(L, -2, "n"); /* t.n = number of elements */
if (n > 0) { /* at least one element? */
int i;
lua_pushvalue(L, 1);
lua_rawseti(L, -2, 1); /* insert first element */
lua_replace(L, 1); /* move table into index 1 */
for (i = n; i >= 2; i--) /* assign other elements */
lua_rawseti(L, 1, i);
}
return 1; /* return table */
}
static int unpack (lua_State *L) {
int i, e, n;
luaL_checktype(L, 1, LUA_TTABLE);
i = luaL_optint(L, 2, 1);
e = luaL_opt(L, luaL_checkint, 3, luaL_len(L, 1));
if (i > e) return 0; /* empty range */
n = e - i + 1; /* number of elements */
if (n <= 0 || !lua_checkstack(L, n)) /* n <= 0 means arith. overflow */
return luaL_error(L, "too many results to unpack");
lua_rawgeti(L, 1, i); /* push arg[i] (avoiding overflow problems) */
while (i++ < e) /* push arg[i + 1...e] */
lua_rawgeti(L, 1, i);
return n;
}
/* }====================================================== */
/*
** {======================================================
** Quicksort
** (based on `Algorithms in MODULA-3', Robert Sedgewick;
** Addison-Wesley, 1993.)
** =======================================================
*/
@@ -193,7 +178,7 @@ static int sort_comp (lua_State *L, int a, int b) {
return res;
}
else /* a < b? */
return lua_lessthan(L, a, b);
return lua_compare(L, a, b, LUA_OPLT);
}
static void auxsort (lua_State *L, int l, int u) {
@@ -230,12 +215,12 @@ static void auxsort (lua_State *L, int l, int u) {
for (;;) { /* invariant: a[l..i] <= P <= a[j..u] */
/* repeat ++i until a[i] >= P */
while (lua_rawgeti(L, 1, ++i), sort_comp(L, -1, -2)) {
if (i>u) luaL_error(L, "invalid order function for sorting");
if (i>=u) luaL_error(L, "invalid order function for sorting");
lua_pop(L, 1); /* remove a[i] */
}
/* repeat --j until a[j] <= P */
while (lua_rawgeti(L, 1, --j), sort_comp(L, -3, -1)) {
if (j<l) luaL_error(L, "invalid order function for sorting");
if (j<=l) luaL_error(L, "invalid order function for sorting");
lua_pop(L, 1); /* remove a[j] */
}
if (j<i) {
@@ -259,11 +244,11 @@ static void auxsort (lua_State *L, int l, int u) {
} /* repeat the routine for the larger one */
}
static int luaB_sort (lua_State *L) {
static int sort (lua_State *L) {
int n = aux_getn(L, 1);
luaL_check_stack(L, 40, ""); /* assume array is smaller than 2^40 */
luaL_checkstack(L, 40, ""); /* assume array is smaller than 2^40 */
if (!lua_isnoneornil(L, 2)) /* is there a 2nd argument? */
luaL_check_type(L, 2, LUA_TFUNCTION);
luaL_checktype(L, 2, LUA_TFUNCTION);
lua_settop(L, 2); /* make sure there is two arguments */
auxsort(L, 1, n);
return 0;
@@ -272,23 +257,27 @@ static int luaB_sort (lua_State *L) {
/* }====================================================== */
static const luaL_reg tab_funcs[] = {
{"concat", str_concat},
{"foreach", luaB_foreach},
{"foreachi", luaB_foreachi},
{"getn", luaB_getn},
{"setn", luaB_setn},
{"sort", luaB_sort},
{"insert", luaB_tinsert},
{"remove", luaB_tremove},
static const luaL_Reg tab_funcs[] = {
{"concat", tconcat},
#if defined(LUA_COMPAT_MAXN)
{"maxn", maxn},
#endif
{"insert", tinsert},
{"pack", pack},
{"unpack", unpack},
{"remove", tremove},
{"sort", sort},
{NULL, NULL}
};
LUALIB_API int lua_tablibopen (lua_State *L) {
lua_newtable(L); /* create N (table to store num. elements in tables) */
lua_setmode(L, -1, "k"); /* make it a weak table */
luaL_opennamedlib(L, LUA_TABLIBNAME, tab_funcs, 1);
return 0;
LUAMOD_API int luaopen_table (lua_State *L) {
luaL_newlib(L, tab_funcs);
#if defined(LUA_COMPAT_UNPACK)
/* _G.unpack = table.unpack */
lua_getfield(L, -1, "unpack");
lua_setglobal(L, "unpack");
#endif
return 1;
}

1296
ltests.c

File diff suppressed because it is too large Load Diff

View File

@@ -1,5 +1,5 @@
/*
** $Id: ltests.h,v 1.14 2002/06/13 13:45:31 roberto Exp roberto $
** $Id: ltests.h,v 2.33 2010/07/28 15:51:59 roberto Exp $
** Internal Header for Debugging of the Lua Implementation
** See Copyright Notice in lua.h
*/
@@ -10,16 +10,14 @@
#include <stdlib.h>
/* do not use compatibility macros in Lua code */
#undef LUA_COMPAT_API
#define LUA_DEBUG
#define LUA_OPNAMES
#undef NDEBUG
#include <assert.h>
#define lua_assert(c) assert(c)
#define check_exp(c,e) (lua_assert(c), (e))
#define api_check(L, o) lua_assert(o)
/* to avoid warnings, and to make sure value is really unused */
@@ -27,35 +25,69 @@
/* memory allocator control variables */
extern unsigned long memdebug_numblocks;
extern unsigned long memdebug_total;
extern unsigned long memdebug_maxmem;
extern unsigned long memdebug_memlimit;
typedef struct Memcontrol {
unsigned long numblocks;
unsigned long total;
unsigned long maxmem;
unsigned long memlimit;
unsigned long objcount[LUA_NUMTAGS];
} Memcontrol;
extern Memcontrol l_memcontrol;
#define l_realloc(b, os, s) debug_realloc(b, os, s)
/*
** generic variable for debug tricks
*/
extern void *l_Trick;
void *debug_realloc (void *block, size_t oldsize, size_t size);
void *debug_realloc (void *ud, void *block, size_t osize, size_t nsize);
typedef struct CallInfo *pCallInfo;
int lua_checkmemory (lua_State *L);
/* test for lock/unlock */
extern int islocked;
#define LUA_USERSTATE int *lock;
#define lua_userstateopen(l) if (l != NULL) *cast(int **, l) = &islocked;
#define lua_lock(L) lua_assert((**cast(int **, L))++ == 0)
#define lua_unlock(L) lua_assert(--(**cast(int **, L)) == 0)
#undef luai_userstateopen
#undef luai_userstatethread
#undef lua_lock
#undef lua_unlock
struct L_EXTRA { int lock; int *plock; };
#define LUAI_EXTRASPACE sizeof(struct L_EXTRA)
#define getlock(l) (cast(struct L_EXTRA *, l) - 1)
#define luai_userstateopen(l) \
(getlock(l)->lock = 0, getlock(l)->plock = &(getlock(l)->lock))
#define luai_userstatethread(l,l1) (getlock(l1)->plock = getlock(l)->plock)
#define luai_userstatefree(l,l1) \
lua_assert(getlock(l)->plock == getlock(l1)->plock)
#define lua_lock(l) lua_assert((*getlock(l)->plock)++ == 0)
#define lua_unlock(l) lua_assert(--(*getlock(l)->plock) == 0)
int luaB_opentests (lua_State *L);
#define lua_userinit(L) (luaB_opentests(L) + openstdlibs(L))
#if defined(lua_c)
#define luaL_newstate() lua_newstate(debug_realloc, &l_memcontrol)
#define luaL_openlibs(L) \
{ (luaL_openlibs)(L); luaL_requiref(L, "T", luaB_opentests, 1); }
#endif
/* change some sizes to give some bugs a chance */
#define LUAL_BUFFERSIZE 27
#undef LUAL_BUFFERSIZE
#define LUAL_BUFFERSIZE 23
#define MINSTRTABSIZE 2
#undef LUAI_USER_ALIGNMENT_T
#define LUAI_USER_ALIGNMENT_T union { char b[32]; }
#endif

40
ltm.c
View File

@@ -1,5 +1,5 @@
/*
** $Id: ltm.c,v 1.99 2002/08/05 14:09:06 roberto Exp roberto $
** $Id: ltm.c,v 2.14 2011/06/02 19:31:40 roberto Exp $
** Tag methods
** See Copyright Notice in lua.h
*/
@@ -7,6 +7,9 @@
#include <string.h>
#define ltm_c
#define LUA_CORE
#include "lua.h"
#include "lobject.h"
@@ -16,19 +19,21 @@
#include "ltm.h"
static const char udatatypename[] = "userdata";
const char *const luaT_typenames[] = {
"nil", "number", "string", "boolean", "table",
"function", "userdata", "userdata"
LUAI_DDEF const char *const luaT_typenames_[LUA_TOTALTAGS] = {
"no value",
"nil", "boolean", udatatypename, "number",
"string", "table", "function", udatatypename, "thread",
"proto", "upval" /* these last two cases are used for tests only */
};
void luaT_init (lua_State *L) {
static const char *const luaT_eventname[] = { /* ORDER TM */
"__index", "__newindex",
"__gc", "__eq",
"__gettable", "__settable",
"__add", "__sub", "__mul", "__div",
"__gc", "__mode", "__len", "__eq",
"__add", "__sub", "__mul", "__div", "__mod",
"__pow", "__unm", "__lt", "__le",
"__concat", "__call"
};
@@ -44,26 +49,29 @@ void luaT_init (lua_State *L) {
** function to be used with macro "fasttm": optimized for absence of
** tag methods
*/
const TObject *luaT_gettm (Table *events, TMS event, TString *ename) {
const TObject *tm = luaH_getstr(events, ename);
const TValue *luaT_gettm (Table *events, TMS event, TString *ename) {
const TValue *tm = luaH_getstr(events, ename);
lua_assert(event <= TM_EQ);
if (ttisnil(tm)) { /* no tag method? */
events->flags |= (1u<<event); /* cache this fact */
events->flags |= cast_byte(1u<<event); /* cache this fact */
return NULL;
}
else return tm;
}
const TObject *luaT_gettmbyobj (lua_State *L, const TObject *o, TMS event) {
TString *ename = G(L)->tmname[event];
switch (ttype(o)) {
const TValue *luaT_gettmbyobj (lua_State *L, const TValue *o, TMS event) {
Table *mt;
switch (ttypenv(o)) {
case LUA_TTABLE:
return luaH_getstr(hvalue(o)->metatable, ename);
mt = hvalue(o)->metatable;
break;
case LUA_TUSERDATA:
return luaH_getstr(uvalue(o)->uv.metatable, ename);
mt = uvalue(o)->metatable;
break;
default:
return &luaO_nilobject;
mt = G(L)->mt[ttypenv(o)];
}
return (mt ? luaH_getstr(mt, G(L)->tmname[event]) : luaO_nilobject);
}

27
ltm.h
View File

@@ -1,5 +1,5 @@
/*
** $Id: ltm.h,v 1.38 2002/07/01 17:06:58 roberto Exp roberto $
** $Id: ltm.h,v 2.11 2011/02/28 17:32:10 roberto Exp $
** Tag methods
** See Copyright Notice in lua.h
*/
@@ -19,13 +19,14 @@ typedef enum {
TM_INDEX,
TM_NEWINDEX,
TM_GC,
TM_MODE,
TM_LEN,
TM_EQ, /* last tag method with `fast' access */
TM_GETTABLE,
TM_SETTABLE,
TM_ADD,
TM_SUB,
TM_MUL,
TM_DIV,
TM_MOD,
TM_POW,
TM_UNM,
TM_LT,
@@ -37,14 +38,20 @@ typedef enum {
#define fasttm(l,et,e) \
(((et)->flags & (1u<<(e))) ? NULL : luaT_gettm(et, e, G(l)->tmname[e]))
#define gfasttm(g,et,e) ((et) == NULL ? NULL : \
((et)->flags & (1u<<(e))) ? NULL : luaT_gettm(et, e, (g)->tmname[e]))
#define fasttm(l,et,e) gfasttm(G(l), et, e)
#define ttypename(x) luaT_typenames_[(x) + 1]
#define objtypename(x) ttypename(ttypenv(x))
LUAI_DDEC const char *const luaT_typenames_[LUA_TOTALTAGS];
const TObject *luaT_gettm (Table *events, TMS event, TString *ename);
const TObject *luaT_gettmbyobj (lua_State *L, const TObject *o, TMS event);
void luaT_init (lua_State *L);
extern const char *const luaT_typenames[];
LUAI_FUNC const TValue *luaT_gettm (Table *events, TMS event, TString *ename);
LUAI_FUNC const TValue *luaT_gettmbyobj (lua_State *L, const TValue *o,
TMS event);
LUAI_FUNC void luaT_init (lua_State *L);
#endif

656
lua.c
View File

@@ -1,5 +1,5 @@
/*
** $Id: lua.c,v 1.102 2002/08/12 17:23:12 roberto Exp roberto $
** $Id: lua.c,v 1.206 2012/09/29 20:07:06 roberto Exp $
** Lua stand-alone interpreter
** See Copyright Notice in lua.h
*/
@@ -10,376 +10,488 @@
#include <stdlib.h>
#include <string.h>
#define lua_c
#include "lua.h"
#include "lauxlib.h"
#include "lualib.h"
#if !defined(LUA_PROMPT)
#define LUA_PROMPT "> "
#define LUA_PROMPT2 ">> "
#endif
#if !defined(LUA_PROGNAME)
#define LUA_PROGNAME "lua"
#endif
#if !defined(LUA_MAXINPUT)
#define LUA_MAXINPUT 512
#endif
#if !defined(LUA_INIT)
#define LUA_INIT "LUA_INIT"
#endif
#define LUA_INITVERSION \
LUA_INIT "_" LUA_VERSION_MAJOR "_" LUA_VERSION_MINOR
/*
** generic extra include file
** lua_stdin_is_tty detects whether the standard input is a 'tty' (that
** is, whether we're running lua interactively).
*/
#ifdef LUA_USERCONFIG
#include LUA_USERCONFIG
#endif
#ifdef _POSIX_SOURCE
#if defined(LUA_USE_ISATTY)
#include <unistd.h>
#define lua_stdin_is_tty() isatty(0)
#elif defined(LUA_WIN)
#include <io.h>
#include <stdio.h>
#define lua_stdin_is_tty() _isatty(_fileno(stdin))
#else
static int isatty (int x) { return x==0; } /* assume stdin is a tty */
#define lua_stdin_is_tty() 1 /* assume stdin is a tty */
#endif
/*
** lua_readline defines how to show a prompt and then read a line from
** the standard input.
** lua_saveline defines how to "save" a read line in a "history".
** lua_freeline defines how to free a line read by lua_readline.
*/
#if defined(LUA_USE_READLINE)
#include <stdio.h>
#include <readline/readline.h>
#include <readline/history.h>
#define lua_readline(L,b,p) ((void)L, ((b)=readline(p)) != NULL)
#define lua_saveline(L,idx) \
if (lua_rawlen(L,idx) > 0) /* non-empty line? */ \
add_history(lua_tostring(L, idx)); /* add it to history */
#define lua_freeline(L,b) ((void)L, free(b))
#elif !defined(lua_readline)
#define lua_readline(L,b,p) \
((void)L, fputs(p, stdout), fflush(stdout), /* show prompt */ \
fgets(b, LUA_MAXINPUT, stdin) != NULL) /* get line */
#define lua_saveline(L,idx) { (void)L; (void)idx; }
#define lua_freeline(L,b) { (void)L; (void)b; }
#endif
#ifndef PROMPT
#define PROMPT "> "
#endif
static lua_State *globalL = NULL;
static const char *progname = LUA_PROGNAME;
#ifndef PROMPT2
#define PROMPT2 ">> "
#endif
#ifndef lua_userinit
#define lua_userinit(L) openstdlibs(L)
#endif
static lua_State *L = NULL;
static const char *progname;
static lua_Hook old_hook = NULL;
static unsigned long old_mask = 0;
static void lstop (lua_State *l, lua_Debug *ar) {
static void lstop (lua_State *L, lua_Debug *ar) {
(void)ar; /* unused arg. */
lua_sethook(l, old_hook, old_mask);
luaL_error(l, "interrupted!");
lua_sethook(L, NULL, 0, 0);
luaL_error(L, "interrupted!");
}
static void laction (int i) {
signal(i, SIG_DFL); /* if another SIGINT happens before lstop,
terminate process (default action) */
old_hook = lua_gethook(L);
old_mask = lua_gethookmask(L);
lua_sethook(L, lstop, LUA_MASKCALL | LUA_MASKRET | LUA_MASKCOUNT(1));
lua_sethook(globalL, lstop, LUA_MASKCALL | LUA_MASKRET | LUA_MASKCOUNT, 1);
}
static void print_usage (void) {
fprintf(stderr,
"usage: %s [options] [prog [args]].\n"
static void print_usage (const char *badoption) {
luai_writestringerror("%s: ", progname);
if (badoption[1] == 'e' || badoption[1] == 'l')
luai_writestringerror("'%s' needs argument\n", badoption);
else
luai_writestringerror("unrecognized option '%s'\n", badoption);
luai_writestringerror(
"usage: %s [options] [script [args]]\n"
"Available options are:\n"
" - execute stdin as a file\n"
" -e stat execute string `stat'\n"
" -i enter interactive mode after executing `prog'\n"
" -l name execute file `name'\n"
" -v print version information\n"
" -- stop handling options\n" ,
" -e stat execute string " LUA_QL("stat") "\n"
" -i enter interactive mode after executing " LUA_QL("script") "\n"
" -l name require library " LUA_QL("name") "\n"
" -v show version information\n"
" -E ignore environment variables\n"
" -- stop handling options\n"
" - stop handling options and execute stdin\n"
,
progname);
}
static void l_message (const char *pname, const char *msg) {
size_t l = strlen(msg);
if (pname) fprintf(stderr, "%s: ", pname);
fprintf(stderr, "%s", msg);
if (l > 0 && msg[l-1] != '\n') /* does not end with newline? */
fprintf(stderr, "\n"); /* add a newline */
if (pname) luai_writestringerror("%s: ", pname);
luai_writestringerror("%s\n", msg);
}
static void report (int status) {
const char *msg;
if (status) {
msg = lua_tostring(L, -1);
if (msg == NULL) msg = "(error with no message)";
static int report (lua_State *L, int status) {
if (status != LUA_OK && !lua_isnil(L, -1)) {
const char *msg = lua_tostring(L, -1);
if (msg == NULL) msg = "(error object is not a string)";
l_message(progname, msg);
lua_pop(L, 1);
/* force a complete garbage collection in case of errors */
lua_gc(L, LUA_GCCOLLECT, 0);
}
return status;
}
/* the next function is called unprotected, so it must avoid errors */
static void finalreport (lua_State *L, int status) {
if (status != LUA_OK) {
const char *msg = (lua_type(L, -1) == LUA_TSTRING) ? lua_tostring(L, -1)
: NULL;
if (msg == NULL) msg = "(error object is not a string)";
l_message(progname, msg);
lua_pop(L, 1);
}
}
static int lcall (int clear) {
int status;
int top = lua_gettop(L);
lua_getglobal(L, "_TRACEBACK"); /* get traceback function */
lua_insert(L, top); /* put it under chunk */
signal(SIGINT, laction);
status = lua_pcall(L, 0, LUA_MULTRET, -2);
signal(SIGINT, SIG_DFL);
lua_remove(L, top); /* remove traceback function */
if (status == 0 && clear)
lua_settop(L, top); /* remove eventual results */
return status;
static int traceback (lua_State *L) {
const char *msg = lua_tostring(L, 1);
if (msg)
luaL_traceback(L, L, msg, 1);
else if (!lua_isnoneornil(L, 1)) { /* is there an error object? */
if (!luaL_callmeta(L, 1, "__tostring")) /* try its 'tostring' metamethod */
lua_pushliteral(L, "(no error message)");
}
return 1;
}
static int l_panic (lua_State *l) {
(void)l;
l_message(progname, "unable to recover; exiting");
return 0;
static int docall (lua_State *L, int narg, int nres) {
int status;
int base = lua_gettop(L) - narg; /* function index */
lua_pushcfunction(L, traceback); /* push traceback function */
lua_insert(L, base); /* put it under chunk and args */
globalL = L; /* to be available to 'laction' */
signal(SIGINT, laction);
status = lua_pcall(L, narg, nres, base);
signal(SIGINT, SIG_DFL);
lua_remove(L, base); /* remove traceback function */
return status;
}
static void print_version (void) {
l_message(NULL, LUA_VERSION " " LUA_COPYRIGHT);
luai_writestring(LUA_COPYRIGHT, strlen(LUA_COPYRIGHT));
luai_writeline();
}
static void getargs (char *argv[], int n) {
static int getargs (lua_State *L, char **argv, int n) {
int narg;
int i;
lua_newtable(L);
for (i=0; argv[i]; i++) {
lua_pushnumber(L, i - n);
int argc = 0;
while (argv[argc]) argc++; /* count total number of arguments */
narg = argc - (n + 1); /* number of arguments to the script */
luaL_checkstack(L, narg + 3, "too many arguments to script");
for (i=n+1; i < argc; i++)
lua_pushstring(L, argv[i]);
lua_rawset(L, -3);
lua_createtable(L, narg, n + 1);
for (i=0; i < argc; i++) {
lua_pushstring(L, argv[i]);
lua_rawseti(L, -2, i - n);
}
/* arg.n = maximum index in table `arg' */
lua_pushliteral(L, "n");
lua_pushnumber(L, i-n-1);
lua_rawset(L, -3);
return narg;
}
static int docall (int status) {
if (status == 0) status = lcall(1);
report(status);
return status;
static int dofile (lua_State *L, const char *name) {
int status = luaL_loadfile(L, name);
if (status == LUA_OK) status = docall(L, 0, 0);
return report(L, status);
}
static int file_input (const char *name) {
return docall(luaL_loadfile(L, name));
static int dostring (lua_State *L, const char *s, const char *name) {
int status = luaL_loadbuffer(L, s, strlen(s), name);
if (status == LUA_OK) status = docall(L, 0, 0);
return report(L, status);
}
static int dostring (const char *s, const char *name) {
return docall(luaL_loadbuffer(L, s, strlen(s), name));
static int dolibrary (lua_State *L, const char *name) {
int status;
lua_getglobal(L, "require");
lua_pushstring(L, name);
status = docall(L, 1, 1); /* call 'require(name)' */
if (status == LUA_OK)
lua_setglobal(L, name); /* global[name] = require return */
return report(L, status);
}
/*
** this macro can be used by some `history' system to save lines
** read in manual input
*/
#ifndef lua_saveline
#define lua_saveline(L,line) /* empty */
#endif
/*
** this macro defines a function to show the prompt and reads the
** next line for manual input
*/
#ifndef lua_readline
#define lua_readline(L,prompt) readline(L,prompt)
/* maximum length of an input line */
#ifndef MAXINPUT
#define MAXINPUT 512
#endif
static int readline (lua_State *l, const char *prompt) {
static char buffer[MAXINPUT];
if (prompt) {
fputs(prompt, stdout);
fflush(stdout);
}
if (fgets(buffer, sizeof(buffer), stdin) == NULL)
return 0; /* read fails */
else {
lua_pushstring(l, buffer);
return 1;
}
}
#endif
static const char *get_prompt (int firstline) {
const char *p = NULL;
static const char *get_prompt (lua_State *L, int firstline) {
const char *p;
lua_getglobal(L, firstline ? "_PROMPT" : "_PROMPT2");
p = lua_tostring(L, -1);
if (p == NULL) p = (firstline ? PROMPT : PROMPT2);
lua_pop(L, 1); /* remove global */
if (p == NULL) p = (firstline ? LUA_PROMPT : LUA_PROMPT2);
return p;
}
/* mark in error messages for incomplete statements */
#define EOFMARK "<eof>"
#define marklen (sizeof(EOFMARK)/sizeof(char) - 1)
static int incomplete (int status) {
if (status == LUA_ERRSYNTAX &&
strstr(lua_tostring(L, -1), "near `<eof>'") != NULL) {
lua_pop(L, 1);
return 1;
static int incomplete (lua_State *L, int status) {
if (status == LUA_ERRSYNTAX) {
size_t lmsg;
const char *msg = lua_tolstring(L, -1, &lmsg);
if (lmsg >= marklen && strcmp(msg + lmsg - marklen, EOFMARK) == 0) {
lua_pop(L, 1);
return 1;
}
}
else
return 0;
return 0; /* else... */
}
static int load_string (void) {
static int pushline (lua_State *L, int firstline) {
char buffer[LUA_MAXINPUT];
char *b = buffer;
size_t l;
const char *prmt = get_prompt(L, firstline);
int readstatus = lua_readline(L, b, prmt);
lua_pop(L, 1); /* remove result from 'get_prompt' */
if (readstatus == 0)
return 0; /* no input */
l = strlen(b);
if (l > 0 && b[l-1] == '\n') /* line ends with newline? */
b[l-1] = '\0'; /* remove it */
if (firstline && b[0] == '=') /* first line starts with `=' ? */
lua_pushfstring(L, "return %s", b+1); /* change it to `return' */
else
lua_pushstring(L, b);
lua_freeline(L, b);
return 1;
}
static int loadline (lua_State *L) {
int status;
lua_settop(L, 0);
if (lua_readline(L, get_prompt(1)) == 0) /* no input? */
return -1;
if (lua_tostring(L, -1)[0] == '=') { /* line starts with `=' ? */
lua_pushfstring(L, "return %s", lua_tostring(L, -1)+1);/* `=' -> `return' */
lua_remove(L, -2); /* remove original line */
}
if (!pushline(L, 1))
return -1; /* no input */
for (;;) { /* repeat until gets a complete line */
status = luaL_loadbuffer(L, lua_tostring(L, 1), lua_strlen(L, 1), "=stdin");
if (!incomplete(status)) break; /* cannot try to add lines? */
if (lua_readline(L, get_prompt(0)) == 0) /* no more input? */
size_t l;
const char *line = lua_tolstring(L, 1, &l);
status = luaL_loadbuffer(L, line, l, "=stdin");
if (!incomplete(L, status)) break; /* cannot try to add lines? */
if (!pushline(L, 0)) /* no more input? */
return -1;
lua_concat(L, lua_gettop(L)); /* join lines */
lua_pushliteral(L, "\n"); /* add a new line... */
lua_insert(L, -2); /* ...between the two lines */
lua_concat(L, 3); /* join them */
}
lua_saveline(L, lua_tostring(L, 1));
lua_saveline(L, 1);
lua_remove(L, 1); /* remove line */
return status;
}
static void manual_input (void) {
static void dotty (lua_State *L) {
int status;
const char *oldprogname = progname;
progname = NULL;
while ((status = load_string()) != -1) {
if (status == 0) status = lcall(0);
report(status);
if (status == 0 && lua_gettop(L) > 0) { /* any result to print? */
while ((status = loadline(L)) != -1) {
if (status == LUA_OK) status = docall(L, 0, LUA_MULTRET);
report(L, status);
if (status == LUA_OK && lua_gettop(L) > 0) { /* any result to print? */
luaL_checkstack(L, LUA_MINSTACK, "too many results to print");
lua_getglobal(L, "print");
lua_insert(L, 1);
if (lua_pcall(L, lua_gettop(L)-1, 0, 0) != 0)
l_message(progname, "error calling `print'");
if (lua_pcall(L, lua_gettop(L)-1, 0, 0) != LUA_OK)
l_message(progname, lua_pushfstring(L,
"error calling " LUA_QL("print") " (%s)",
lua_tostring(L, -1)));
}
}
lua_settop(L, 0); /* clear stack */
fputs("\n", stdout);
luai_writeline();
progname = oldprogname;
}
static int handle_argv (char *argv[], int *interactive) {
if (argv[1] == NULL) { /* no more arguments? */
if (isatty(0)) {
print_version();
manual_input();
}
else
file_input(NULL); /* executes stdin as a file */
}
else { /* other arguments; loop over them */
int i;
for (i = 1; argv[i] != NULL; i++) {
if (argv[i][0] != '-') break; /* not an option? */
switch (argv[i][1]) { /* option */
case '-': { /* `--' */
i++; /* skip this argument */
goto endloop; /* stop handling arguments */
}
case '\0': {
file_input(NULL); /* executes stdin as a file */
break;
}
case 'i': {
*interactive = 1;
break;
}
case 'v': {
print_version();
break;
}
case 'e': {
const char *chunk = argv[i] + 2;
if (*chunk == '\0') chunk = argv[++i];
if (chunk == NULL) {
print_usage();
return EXIT_FAILURE;
}
if (dostring(chunk, "=<command line>") != 0)
return EXIT_FAILURE;
break;
}
case 'l': {
const char *filename = argv[i] + 2;
if (*filename == '\0') filename = argv[++i];
if (filename == NULL) {
print_usage();
return EXIT_FAILURE;
}
if (file_input(filename))
return EXIT_FAILURE; /* stop if file fails */
break;
}
case 'c': {
l_message(progname, "option `-c' is deprecated");
break;
}
case 's': {
l_message(progname, "option `-s' is deprecated");
break;
}
default: {
print_usage();
return EXIT_FAILURE;
}
}
} endloop:
if (argv[i] != NULL) {
const char *filename = argv[i];
getargs(argv, i); /* collect remaining arguments */
lua_setglobal(L, "arg");
return file_input(filename); /* stop scanning arguments */
}
}
return EXIT_SUCCESS;
}
static int openstdlibs (lua_State *l) {
int res = 0;
res += lua_baselibopen(l);
res += lua_tablibopen(l);
res += lua_iolibopen(l);
res += lua_strlibopen(l);
res += lua_mathlibopen(l);
res += lua_dblibopen(l);
/* add your libraries here */
return res;
}
static int handle_luainit (void) {
const char *init = getenv("LUA_INIT");
if (init == NULL) return 0; /* status OK */
else if (init[0] == '@')
return file_input(init+1);
else
return dostring(init, "=LUA_INIT");
}
int main (int argc, char *argv[]) {
static int handle_script (lua_State *L, char **argv, int n) {
int status;
int interactive = 0;
(void)argc; /* to avoid warnings */
progname = argv[0];
L = lua_open(); /* create state */
lua_atpanic(L, l_panic);
lua_pop(L, lua_userinit(L)); /* open libraries, discard any results */
status = handle_luainit();
if (status != 0) return status;
status = handle_argv(argv, &interactive);
if (status == 0 && interactive) manual_input();
lua_close(L);
return status;
const char *fname;
int narg = getargs(L, argv, n); /* collect arguments */
lua_setglobal(L, "arg");
fname = argv[n];
if (strcmp(fname, "-") == 0 && strcmp(argv[n-1], "--") != 0)
fname = NULL; /* stdin */
status = luaL_loadfile(L, fname);
lua_insert(L, -(narg+1));
if (status == LUA_OK)
status = docall(L, narg, LUA_MULTRET);
else
lua_pop(L, narg);
return report(L, status);
}
/* check that argument has no extra characters at the end */
#define noextrachars(x) {if ((x)[2] != '\0') return -1;}
/* indices of various argument indicators in array args */
#define has_i 0 /* -i */
#define has_v 1 /* -v */
#define has_e 2 /* -e */
#define has_E 3 /* -E */
#define num_has 4 /* number of 'has_*' */
static int collectargs (char **argv, int *args) {
int i;
for (i = 1; argv[i] != NULL; i++) {
if (argv[i][0] != '-') /* not an option? */
return i;
switch (argv[i][1]) { /* option */
case '-':
noextrachars(argv[i]);
return (argv[i+1] != NULL ? i+1 : 0);
case '\0':
return i;
case 'E':
args[has_E] = 1;
break;
case 'i':
noextrachars(argv[i]);
args[has_i] = 1; /* go through */
case 'v':
noextrachars(argv[i]);
args[has_v] = 1;
break;
case 'e':
args[has_e] = 1; /* go through */
case 'l': /* both options need an argument */
if (argv[i][2] == '\0') { /* no concatenated argument? */
i++; /* try next 'argv' */
if (argv[i] == NULL || argv[i][0] == '-')
return -(i - 1); /* no next argument or it is another option */
}
break;
default: /* invalid option; return its index... */
return -i; /* ...as a negative value */
}
}
return 0;
}
static int runargs (lua_State *L, char **argv, int n) {
int i;
for (i = 1; i < n; i++) {
lua_assert(argv[i][0] == '-');
switch (argv[i][1]) { /* option */
case 'e': {
const char *chunk = argv[i] + 2;
if (*chunk == '\0') chunk = argv[++i];
lua_assert(chunk != NULL);
if (dostring(L, chunk, "=(command line)") != LUA_OK)
return 0;
break;
}
case 'l': {
const char *filename = argv[i] + 2;
if (*filename == '\0') filename = argv[++i];
lua_assert(filename != NULL);
if (dolibrary(L, filename) != LUA_OK)
return 0; /* stop if file fails */
break;
}
default: break;
}
}
return 1;
}
static int handle_luainit (lua_State *L) {
const char *name = "=" LUA_INITVERSION;
const char *init = getenv(name + 1);
if (init == NULL) {
name = "=" LUA_INIT;
init = getenv(name + 1); /* try alternative name */
}
if (init == NULL) return LUA_OK;
else if (init[0] == '@')
return dofile(L, init+1);
else
return dostring(L, init, name);
}
static int pmain (lua_State *L) {
int argc = (int)lua_tointeger(L, 1);
char **argv = (char **)lua_touserdata(L, 2);
int script;
int args[num_has];
args[has_i] = args[has_v] = args[has_e] = args[has_E] = 0;
if (argv[0] && argv[0][0]) progname = argv[0];
script = collectargs(argv, args);
if (script < 0) { /* invalid arg? */
print_usage(argv[-script]);
return 0;
}
if (args[has_v]) print_version();
if (args[has_E]) { /* option '-E'? */
lua_pushboolean(L, 1); /* signal for libraries to ignore env. vars. */
lua_setfield(L, LUA_REGISTRYINDEX, "LUA_NOENV");
}
/* open standard libraries */
luaL_checkversion(L);
lua_gc(L, LUA_GCSTOP, 0); /* stop collector during initialization */
luaL_openlibs(L); /* open libraries */
lua_gc(L, LUA_GCRESTART, 0);
if (!args[has_E] && handle_luainit(L) != LUA_OK)
return 0; /* error running LUA_INIT */
/* execute arguments -e and -l */
if (!runargs(L, argv, (script > 0) ? script : argc)) return 0;
/* execute main script (if there is one) */
if (script && handle_script(L, argv, script) != LUA_OK) return 0;
if (args[has_i]) /* -i option? */
dotty(L);
else if (script == 0 && !args[has_e] && !args[has_v]) { /* no arguments? */
if (lua_stdin_is_tty()) {
print_version();
dotty(L);
}
else dofile(L, NULL); /* executes stdin as a file */
}
lua_pushboolean(L, 1); /* signal no errors */
return 1;
}
int main (int argc, char **argv) {
int status, result;
lua_State *L = luaL_newstate(); /* create state */
if (L == NULL) {
l_message(argv[0], "cannot create state: not enough memory");
return EXIT_FAILURE;
}
/* call 'pmain' in protected mode */
lua_pushcfunction(L, &pmain);
lua_pushinteger(L, argc); /* 1st argument */
lua_pushlightuserdata(L, argv); /* 2nd argument */
status = lua_pcall(L, 2, 1, 0);
result = lua_toboolean(L, -1); /* get result */
finalreport(L, status);
lua_close(L);
return (result && status == LUA_OK) ? EXIT_SUCCESS : EXIT_FAILURE;
}

462
lua.h
View File

@@ -1,8 +1,7 @@
/*
** $Id: lua.h,v 1.153 2002/08/06 18:54:18 roberto Exp roberto $
** Lua - An Extensible Extension Language
** Tecgraf: Computer Graphics Technology Group, PUC-Rio, Brazil
** http://www.lua.org mailto:info@lua.org
** $Id: lua.h,v 1.285.1.1 2013/04/12 18:48:47 roberto Exp roberto $
** Lua - A Scripting Language
** Lua.org, PUC-Rio, Brazil (http://www.lua.org)
** See Copyright Notice at the end of this file
*/
@@ -10,40 +9,46 @@
#ifndef lua_h
#define lua_h
/* definition of `va_list' */
#include <stdarg.h>
/* definition of `size_t' */
#include <stddef.h>
#define LUA_VERSION "Lua 5.0 (alpha)"
#define LUA_COPYRIGHT "Copyright (C) 1994-2002 Tecgraf, PUC-Rio"
#define LUA_AUTHORS "W. Celes, R. Ierusalimschy & L. H. de Figueiredo"
#include "luaconf.h"
#define LUA_VERSION_MAJOR "5"
#define LUA_VERSION_MINOR "2"
#define LUA_VERSION_NUM 502
#define LUA_VERSION_RELEASE "3"
/* option for multiple returns in `lua_pcall' and `lua_call' */
#define LUA_VERSION "Lua " LUA_VERSION_MAJOR "." LUA_VERSION_MINOR
#define LUA_RELEASE LUA_VERSION "." LUA_VERSION_RELEASE
#define LUA_COPYRIGHT LUA_RELEASE " Copyright (C) 1994-2013 Lua.org, PUC-Rio"
#define LUA_AUTHORS "R. Ierusalimschy, L. H. de Figueiredo, W. Celes"
/* mark for precompiled code ('<esc>Lua') */
#define LUA_SIGNATURE "\033Lua"
/* option for multiple returns in 'lua_pcall' and 'lua_call' */
#define LUA_MULTRET (-1)
/*
** pseudo-indices
*/
#define LUA_REGISTRYINDEX (-10000)
#define LUA_GLOBALSINDEX (-10001)
#define lua_upvalueindex(i) (LUA_GLOBALSINDEX-(i))
#define LUA_REGISTRYINDEX LUAI_FIRSTPSEUDOIDX
#define lua_upvalueindex(i) (LUA_REGISTRYINDEX - (i))
/* error codes for `lua_load' and `lua_pcall' */
#define LUA_ERRRUN 1
#define LUA_ERRFILE 2
/* thread status */
#define LUA_OK 0
#define LUA_YIELD 1
#define LUA_ERRRUN 2
#define LUA_ERRSYNTAX 3
#define LUA_ERRMEM 4
#define LUA_ERRERR 5
#define LUA_ERRTHROW 6
#define LUA_ERRGCMM 5
#define LUA_ERRERR 6
typedef struct lua_State lua_State;
@@ -52,254 +57,294 @@ typedef int (*lua_CFunction) (lua_State *L);
/*
** functions that read blocks when loading Lua chunk
** functions that read/write blocks when loading/dumping Lua chunks
*/
typedef const char * (*lua_Chunkreader) (lua_State *L, void *ud, size_t *size);
typedef const char * (*lua_Reader) (lua_State *L, void *ud, size_t *sz);
typedef int (*lua_Writer) (lua_State *L, const void* p, size_t sz, void* ud);
/*
** prototype for memory-allocation functions
*/
typedef void * (*lua_Alloc) (void *ud, void *ptr, size_t osize, size_t nsize);
/*
** basic types
*/
#define LUA_TNONE (-1)
#define LUA_TNONE (-1)
#define LUA_TNIL 0
#define LUA_TBOOLEAN 1
#define LUA_TLIGHTUSERDATA 2
#define LUA_TNUMBER 3
#define LUA_TSTRING 4
#define LUA_TTABLE 5
#define LUA_TFUNCTION 6
#define LUA_TUSERDATA 7
#define LUA_TTHREAD 8
#define LUA_NUMTAGS 9
#define LUA_TNIL 0
#define LUA_TNUMBER 1
#define LUA_TSTRING 2
#define LUA_TBOOLEAN 3
#define LUA_TTABLE 4
#define LUA_TFUNCTION 5
#define LUA_TUSERDATA 6
#define LUA_TLIGHTUSERDATA 7
/* minimum Lua stack available to a C function */
#define LUA_MINSTACK 20
/* predefined values in the registry */
#define LUA_RIDX_MAINTHREAD 1
#define LUA_RIDX_GLOBALS 2
#define LUA_RIDX_LAST LUA_RIDX_GLOBALS
/* type of numbers in Lua */
typedef LUA_NUMBER lua_Number;
/* type for integer functions */
typedef LUA_INTEGER lua_Integer;
/* unsigned integer type */
typedef LUA_UNSIGNED lua_Unsigned;
/*
** generic extra include file
*/
#ifdef LUA_USER_H
#if defined(LUA_USER_H)
#include LUA_USER_H
#endif
/* type of Numbers in Lua */
#ifndef LUA_NUMBER
#define LUA_NUMBER double
#endif
typedef LUA_NUMBER lua_Number;
/* mark for all API functions */
#ifndef LUA_API
#define LUA_API extern
#endif
/*
** RCS ident string
*/
extern const char lua_ident[];
/*
** state manipulation
*/
LUA_API lua_State *lua_open (void);
LUA_API void lua_close (lua_State *L);
LUA_API lua_State *lua_newthread (lua_State *L);
LUA_API void lua_closethread (lua_State *L, lua_State *thread);
LUA_API lua_State *(lua_newstate) (lua_Alloc f, void *ud);
LUA_API void (lua_close) (lua_State *L);
LUA_API lua_State *(lua_newthread) (lua_State *L);
LUA_API lua_CFunction lua_atpanic (lua_State *L, lua_CFunction panicf);
LUA_API lua_CFunction (lua_atpanic) (lua_State *L, lua_CFunction panicf);
LUA_API const lua_Number *(lua_version) (lua_State *L);
/*
** basic stack manipulation
*/
LUA_API int lua_gettop (lua_State *L);
LUA_API void lua_settop (lua_State *L, int index);
LUA_API void lua_pushvalue (lua_State *L, int index);
LUA_API void lua_remove (lua_State *L, int index);
LUA_API void lua_insert (lua_State *L, int index);
LUA_API void lua_replace (lua_State *L, int index);
LUA_API int lua_checkstack (lua_State *L, int size);
LUA_API int (lua_absindex) (lua_State *L, int idx);
LUA_API int (lua_gettop) (lua_State *L);
LUA_API void (lua_settop) (lua_State *L, int idx);
LUA_API void (lua_pushvalue) (lua_State *L, int idx);
LUA_API void (lua_remove) (lua_State *L, int idx);
LUA_API void (lua_insert) (lua_State *L, int idx);
LUA_API void (lua_replace) (lua_State *L, int idx);
LUA_API void (lua_copy) (lua_State *L, int fromidx, int toidx);
LUA_API int (lua_checkstack) (lua_State *L, int sz);
LUA_API void (lua_xmove) (lua_State *from, lua_State *to, int n);
/*
** access functions (stack -> C)
*/
LUA_API int lua_isnumber (lua_State *L, int index);
LUA_API int lua_isstring (lua_State *L, int index);
LUA_API int lua_iscfunction (lua_State *L, int index);
LUA_API int lua_type (lua_State *L, int index);
LUA_API const char *lua_typename (lua_State *L, int type);
LUA_API int (lua_isnumber) (lua_State *L, int idx);
LUA_API int (lua_isstring) (lua_State *L, int idx);
LUA_API int (lua_iscfunction) (lua_State *L, int idx);
LUA_API int (lua_isuserdata) (lua_State *L, int idx);
LUA_API int (lua_type) (lua_State *L, int idx);
LUA_API const char *(lua_typename) (lua_State *L, int tp);
LUA_API int lua_equal (lua_State *L, int index1, int index2);
LUA_API int lua_rawequal (lua_State *L, int index1, int index2);
LUA_API int lua_lessthan (lua_State *L, int index1, int index2);
LUA_API lua_Number (lua_tonumberx) (lua_State *L, int idx, int *isnum);
LUA_API lua_Integer (lua_tointegerx) (lua_State *L, int idx, int *isnum);
LUA_API lua_Unsigned (lua_tounsignedx) (lua_State *L, int idx, int *isnum);
LUA_API int (lua_toboolean) (lua_State *L, int idx);
LUA_API const char *(lua_tolstring) (lua_State *L, int idx, size_t *len);
LUA_API size_t (lua_rawlen) (lua_State *L, int idx);
LUA_API lua_CFunction (lua_tocfunction) (lua_State *L, int idx);
LUA_API void *(lua_touserdata) (lua_State *L, int idx);
LUA_API lua_State *(lua_tothread) (lua_State *L, int idx);
LUA_API const void *(lua_topointer) (lua_State *L, int idx);
LUA_API lua_Number lua_tonumber (lua_State *L, int index);
LUA_API int lua_toboolean (lua_State *L, int index);
LUA_API const char *lua_tostring (lua_State *L, int index);
LUA_API size_t lua_strlen (lua_State *L, int index);
LUA_API lua_CFunction lua_tocfunction (lua_State *L, int index);
LUA_API void *lua_touserdata (lua_State *L, int index);
LUA_API const void *lua_topointer (lua_State *L, int index);
/*
** Comparison and arithmetic functions
*/
#define LUA_OPADD 0 /* ORDER TM */
#define LUA_OPSUB 1
#define LUA_OPMUL 2
#define LUA_OPDIV 3
#define LUA_OPMOD 4
#define LUA_OPPOW 5
#define LUA_OPUNM 6
LUA_API void (lua_arith) (lua_State *L, int op);
#define LUA_OPEQ 0
#define LUA_OPLT 1
#define LUA_OPLE 2
LUA_API int (lua_rawequal) (lua_State *L, int idx1, int idx2);
LUA_API int (lua_compare) (lua_State *L, int idx1, int idx2, int op);
/*
** push functions (C -> stack)
*/
LUA_API void lua_pushnil (lua_State *L);
LUA_API void lua_pushnumber (lua_State *L, lua_Number n);
LUA_API void lua_pushlstring (lua_State *L, const char *s, size_t len);
LUA_API void lua_pushstring (lua_State *L, const char *s);
LUA_API const char *lua_pushvfstring (lua_State *L, const char *fmt,
va_list argp);
LUA_API const char *lua_pushfstring (lua_State *L, const char *fmt, ...);
LUA_API void lua_pushcclosure (lua_State *L, lua_CFunction fn, int n);
LUA_API void lua_pushboolean (lua_State *L, int b);
LUA_API void lua_pushlightuserdata (lua_State *L, void *p);
LUA_API void (lua_pushnil) (lua_State *L);
LUA_API void (lua_pushnumber) (lua_State *L, lua_Number n);
LUA_API void (lua_pushinteger) (lua_State *L, lua_Integer n);
LUA_API void (lua_pushunsigned) (lua_State *L, lua_Unsigned n);
LUA_API const char *(lua_pushlstring) (lua_State *L, const char *s, size_t l);
LUA_API const char *(lua_pushstring) (lua_State *L, const char *s);
LUA_API const char *(lua_pushvfstring) (lua_State *L, const char *fmt,
va_list argp);
LUA_API const char *(lua_pushfstring) (lua_State *L, const char *fmt, ...);
LUA_API void (lua_pushcclosure) (lua_State *L, lua_CFunction fn, int n);
LUA_API void (lua_pushboolean) (lua_State *L, int b);
LUA_API void (lua_pushlightuserdata) (lua_State *L, void *p);
LUA_API int (lua_pushthread) (lua_State *L);
/*
** get functions (Lua -> stack)
*/
LUA_API void lua_gettable (lua_State *L, int index);
LUA_API void lua_rawget (lua_State *L, int index);
LUA_API void lua_rawgeti (lua_State *L, int index, int n);
LUA_API void lua_newtable (lua_State *L);
LUA_API int lua_getmetatable (lua_State *L, int objindex);
LUA_API const char *lua_getmode (lua_State *L, int index);
LUA_API void lua_getglobals (lua_State *L, int index);
LUA_API void (lua_getglobal) (lua_State *L, const char *var);
LUA_API void (lua_gettable) (lua_State *L, int idx);
LUA_API void (lua_getfield) (lua_State *L, int idx, const char *k);
LUA_API void (lua_rawget) (lua_State *L, int idx);
LUA_API void (lua_rawgeti) (lua_State *L, int idx, int n);
LUA_API void (lua_rawgetp) (lua_State *L, int idx, const void *p);
LUA_API void (lua_createtable) (lua_State *L, int narr, int nrec);
LUA_API void *(lua_newuserdata) (lua_State *L, size_t sz);
LUA_API int (lua_getmetatable) (lua_State *L, int objindex);
LUA_API void (lua_getuservalue) (lua_State *L, int idx);
/*
** set functions (stack -> Lua)
*/
LUA_API void lua_settable (lua_State *L, int index);
LUA_API void lua_rawset (lua_State *L, int index);
LUA_API void lua_rawseti (lua_State *L, int index, int n);
LUA_API void lua_setmode (lua_State *L, int index, const char *mode);
LUA_API int lua_setmetatable (lua_State *L, int objindex);
LUA_API int lua_setglobals (lua_State *L, int index);
LUA_API void (lua_setglobal) (lua_State *L, const char *var);
LUA_API void (lua_settable) (lua_State *L, int idx);
LUA_API void (lua_setfield) (lua_State *L, int idx, const char *k);
LUA_API void (lua_rawset) (lua_State *L, int idx);
LUA_API void (lua_rawseti) (lua_State *L, int idx, int n);
LUA_API void (lua_rawsetp) (lua_State *L, int idx, const void *p);
LUA_API int (lua_setmetatable) (lua_State *L, int objindex);
LUA_API void (lua_setuservalue) (lua_State *L, int idx);
/*
** `load' and `call' functions (load and run Lua code)
** 'load' and 'call' functions (load and run Lua code)
*/
LUA_API void lua_call (lua_State *L, int nargs, int nresults);
LUA_API int lua_pcall (lua_State *L, int nargs, int nresults, int errfunc);
LUA_API int lua_load (lua_State *L, lua_Chunkreader reader, void *data,
const char *chunkname);
LUA_API void (lua_callk) (lua_State *L, int nargs, int nresults, int ctx,
lua_CFunction k);
#define lua_call(L,n,r) lua_callk(L, (n), (r), 0, NULL)
LUA_API int (lua_getctx) (lua_State *L, int *ctx);
LUA_API int (lua_pcallk) (lua_State *L, int nargs, int nresults, int errfunc,
int ctx, lua_CFunction k);
#define lua_pcall(L,n,r,f) lua_pcallk(L, (n), (r), (f), 0, NULL)
LUA_API int (lua_load) (lua_State *L, lua_Reader reader, void *dt,
const char *chunkname,
const char *mode);
LUA_API int (lua_dump) (lua_State *L, lua_Writer writer, void *data);
/*
** coroutine functions
*/
LUA_API void lua_cobegin (lua_State *L, int nargs);
LUA_API int lua_yield (lua_State *L, int nresults);
LUA_API int lua_resume (lua_State *L, lua_State *co);
LUA_API int (lua_yieldk) (lua_State *L, int nresults, int ctx,
lua_CFunction k);
#define lua_yield(L,n) lua_yieldk(L, (n), 0, NULL)
LUA_API int (lua_resume) (lua_State *L, lua_State *from, int narg);
LUA_API int (lua_status) (lua_State *L);
/*
** Garbage-collection functions
** garbage-collection function and options
*/
LUA_API int lua_getgcthreshold (lua_State *L);
LUA_API int lua_getgccount (lua_State *L);
LUA_API void lua_setgcthreshold (lua_State *L, int newthreshold);
#define LUA_GCSTOP 0
#define LUA_GCRESTART 1
#define LUA_GCCOLLECT 2
#define LUA_GCCOUNT 3
#define LUA_GCCOUNTB 4
#define LUA_GCSTEP 5
#define LUA_GCSETPAUSE 6
#define LUA_GCSETSTEPMUL 7
#define LUA_GCSETMAJORINC 8
#define LUA_GCISRUNNING 9
#define LUA_GCGEN 10
#define LUA_GCINC 11
LUA_API int (lua_gc) (lua_State *L, int what, int data);
/*
** miscellaneous functions
*/
LUA_API int lua_error (lua_State *L);
LUA_API int (lua_error) (lua_State *L);
LUA_API int lua_next (lua_State *L, int index);
LUA_API int (lua_next) (lua_State *L, int idx);
LUA_API void lua_concat (lua_State *L, int n);
LUA_API void (lua_concat) (lua_State *L, int n);
LUA_API void (lua_len) (lua_State *L, int idx);
LUA_API void *lua_newuserdata (lua_State *L, size_t size);
LUA_API lua_Alloc (lua_getallocf) (lua_State *L, void **ud);
LUA_API void (lua_setallocf) (lua_State *L, lua_Alloc f, void *ud);
/*
/*
** ===============================================================
** some useful macros
** ===============================================================
*/
#define lua_boxpointer(L,u) \
(*(void **)(lua_newuserdata(L, sizeof(void *))) = (u))
#define lua_unboxpointer(L,i) (*(void **)(lua_touserdata(L, i)))
#define lua_tonumber(L,i) lua_tonumberx(L,i,NULL)
#define lua_tointeger(L,i) lua_tointegerx(L,i,NULL)
#define lua_tounsigned(L,i) lua_tounsignedx(L,i,NULL)
#define lua_pop(L,n) lua_settop(L, -(n)-1)
#define lua_register(L,n,f) \
(lua_pushstring(L, n), \
lua_pushcfunction(L, f), \
lua_settable(L, LUA_GLOBALSINDEX))
#define lua_newtable(L) lua_createtable(L, 0, 0)
#define lua_pushcfunction(L,f) lua_pushcclosure(L, f, 0)
#define lua_register(L,n,f) (lua_pushcfunction(L, (f)), lua_setglobal(L, (n)))
#define lua_isfunction(L,n) (lua_type(L,n) == LUA_TFUNCTION)
#define lua_istable(L,n) (lua_type(L,n) == LUA_TTABLE)
#define lua_isuserdata(L,n) (lua_type(L,n) >= LUA_TUSERDATA)
#define lua_islightuserdata(L,n) (lua_type(L,n) == LUA_TLIGHTUSERDATA)
#define lua_isnil(L,n) (lua_type(L,n) == LUA_TNIL)
#define lua_isboolean(L,n) (lua_type(L,n) == LUA_TBOOLEAN)
#define lua_isnone(L,n) (lua_type(L,n) == LUA_TNONE)
#define lua_isnoneornil(L, n) (lua_type(L,n) <= 0)
#define lua_pushcfunction(L,f) lua_pushcclosure(L, (f), 0)
#define lua_isfunction(L,n) (lua_type(L, (n)) == LUA_TFUNCTION)
#define lua_istable(L,n) (lua_type(L, (n)) == LUA_TTABLE)
#define lua_islightuserdata(L,n) (lua_type(L, (n)) == LUA_TLIGHTUSERDATA)
#define lua_isnil(L,n) (lua_type(L, (n)) == LUA_TNIL)
#define lua_isboolean(L,n) (lua_type(L, (n)) == LUA_TBOOLEAN)
#define lua_isthread(L,n) (lua_type(L, (n)) == LUA_TTHREAD)
#define lua_isnone(L,n) (lua_type(L, (n)) == LUA_TNONE)
#define lua_isnoneornil(L, n) (lua_type(L, (n)) <= 0)
#define lua_pushliteral(L, s) \
lua_pushlstring(L, "" s, (sizeof(s)/sizeof(char))-1)
#define lua_pushglobaltable(L) \
lua_rawgeti(L, LUA_REGISTRYINDEX, LUA_RIDX_GLOBALS)
#define lua_tostring(L,i) lua_tolstring(L, (i), NULL)
/*
** compatibility macros and functions
*/
LUA_API int lua_pushupvalues (lua_State *L);
#define lua_getregistry(L) lua_pushvalue(L, LUA_REGISTRYINDEX)
#define lua_setglobal(L,s) \
(lua_pushstring(L, s), lua_insert(L, -2), lua_settable(L, LUA_GLOBALSINDEX))
#define lua_getglobal(L,s) \
(lua_pushstring(L, s), lua_gettable(L, LUA_GLOBALSINDEX))
#define lua_isnull lua_isnone
/* compatibility with ref system */
/* pre-defined references */
#define LUA_NOREF (-2)
#define LUA_REFNIL (-1)
#define lua_ref(L,lock) ((lock) ? luaL_ref(L, LUA_REGISTRYINDEX) : \
(lua_pushstring(L, "unlocked references are obsolete"), lua_error(L), 0))
#define lua_unref(L,ref) luaL_unref(L, LUA_REGISTRYINDEX, (ref))
#define lua_getref(L,ref) lua_rawgeti(L, LUA_REGISTRYINDEX, ref)
/*
** {======================================================================
** useful definitions for Lua kernel and libraries
** =======================================================================
*/
/* formats for Lua numbers */
#ifndef LUA_NUMBER_SCAN
#define LUA_NUMBER_SCAN "%lf"
#endif
#ifndef LUA_NUMBER_FMT
#define LUA_NUMBER_FMT "%.16g"
#endif
/* }====================================================================== */
/*
@@ -308,55 +353,72 @@ LUA_API int lua_pushupvalues (lua_State *L);
** =======================================================================
*/
typedef enum lua_Hookevent {
LUA_HOOKCALL, LUA_HOOKRET, LUA_HOOKLINE, LUA_HOOKCOUNT
} lua_Hookevent;
/*
** Event codes
*/
#define LUA_HOOKCALL 0
#define LUA_HOOKRET 1
#define LUA_HOOKLINE 2
#define LUA_HOOKCOUNT 3
#define LUA_HOOKTAILCALL 4
#define LUA_MASKCALL (2 << LUA_HOOKCALL)
#define LUA_MASKRET (2 << LUA_HOOKRET)
#define LUA_MASKLINE (2 << LUA_HOOKLINE)
#define LUA_MASKCOUNT(count) ((unsigned long)(count) << 8)
#define lua_getmaskcount(mask) ((mask) >> 8)
#define LUA_MAXCOUNT ((1<<24) - 1)
/*
** Event masks
*/
#define LUA_MASKCALL (1 << LUA_HOOKCALL)
#define LUA_MASKRET (1 << LUA_HOOKRET)
#define LUA_MASKLINE (1 << LUA_HOOKLINE)
#define LUA_MASKCOUNT (1 << LUA_HOOKCOUNT)
typedef struct lua_Debug lua_Debug; /* activation record */
/* Functions to be called by the debugger in specific events */
typedef void (*lua_Hook) (lua_State *L, lua_Debug *ar);
LUA_API int lua_getstack (lua_State *L, int level, lua_Debug *ar);
LUA_API int lua_getinfo (lua_State *L, const char *what, lua_Debug *ar);
LUA_API const char *lua_getlocal (lua_State *L, const lua_Debug *ar, int n);
LUA_API const char *lua_setlocal (lua_State *L, const lua_Debug *ar, int n);
LUA_API int (lua_getstack) (lua_State *L, int level, lua_Debug *ar);
LUA_API int (lua_getinfo) (lua_State *L, const char *what, lua_Debug *ar);
LUA_API const char *(lua_getlocal) (lua_State *L, const lua_Debug *ar, int n);
LUA_API const char *(lua_setlocal) (lua_State *L, const lua_Debug *ar, int n);
LUA_API const char *(lua_getupvalue) (lua_State *L, int funcindex, int n);
LUA_API const char *(lua_setupvalue) (lua_State *L, int funcindex, int n);
LUA_API int lua_sethook (lua_State *L, lua_Hook func, unsigned long mask);
LUA_API lua_Hook lua_gethook (lua_State *L);
LUA_API unsigned long lua_gethookmask (lua_State *L);
LUA_API void *(lua_upvalueid) (lua_State *L, int fidx, int n);
LUA_API void (lua_upvaluejoin) (lua_State *L, int fidx1, int n1,
int fidx2, int n2);
LUA_API int (lua_sethook) (lua_State *L, lua_Hook func, int mask, int count);
LUA_API lua_Hook (lua_gethook) (lua_State *L);
LUA_API int (lua_gethookmask) (lua_State *L);
LUA_API int (lua_gethookcount) (lua_State *L);
#define LUA_IDSIZE 60
struct lua_Debug {
lua_Hookevent event;
int event;
const char *name; /* (n) */
const char *namewhat; /* (n) `global', `local', `field', `method' */
const char *what; /* (S) `Lua' function, `C' function, Lua `main' */
const char *namewhat; /* (n) 'global', 'local', 'field', 'method' */
const char *what; /* (S) 'Lua', 'C', 'main', 'tail' */
const char *source; /* (S) */
int currentline; /* (l) */
int nups; /* (u) number of upvalues */
int linedefined; /* (S) */
int lastlinedefined; /* (S) */
unsigned char nups; /* (u) number of upvalues */
unsigned char nparams;/* (u) number of parameters */
char isvararg; /* (u) */
char istailcall; /* (t) */
char short_src[LUA_IDSIZE]; /* (S) */
/* private part */
int i_ci; /* active function */
struct CallInfo *i_ci; /* active function */
};
/* }====================================================================== */
/******************************************************************************
* Copyright (C) 2002 Tecgraf, PUC-Rio. All rights reserved.
* Copyright (C) 1994-2013 Lua.org, PUC-Rio.
*
* Permission is hereby granted, free of charge, to any person obtaining
* a copy of this software and associated documentation files (the

551
luaconf.h Normal file
View File

@@ -0,0 +1,551 @@
/*
** $Id: luaconf.h,v 1.176.1.1 2013/04/12 18:48:47 roberto Exp roberto $
** Configuration file for Lua
** See Copyright Notice in lua.h
*/
#ifndef lconfig_h
#define lconfig_h
#include <limits.h>
#include <stddef.h>
/*
** ==================================================================
** Search for "@@" to find all configurable definitions.
** ===================================================================
*/
/*
@@ LUA_ANSI controls the use of non-ansi features.
** CHANGE it (define it) if you want Lua to avoid the use of any
** non-ansi feature or library.
*/
#if !defined(LUA_ANSI) && defined(__STRICT_ANSI__)
#define LUA_ANSI
#endif
#if !defined(LUA_ANSI) && defined(_WIN32) && !defined(_WIN32_WCE)
#define LUA_WIN /* enable goodies for regular Windows platforms */
#endif
#if defined(LUA_WIN)
#define LUA_DL_DLL
#define LUA_USE_AFORMAT /* assume 'printf' handles 'aA' specifiers */
#endif
#if defined(LUA_USE_LINUX)
#define LUA_USE_POSIX
#define LUA_USE_DLOPEN /* needs an extra library: -ldl */
#define LUA_USE_READLINE /* needs some extra libraries */
#define LUA_USE_STRTODHEX /* assume 'strtod' handles hex formats */
#define LUA_USE_AFORMAT /* assume 'printf' handles 'aA' specifiers */
#define LUA_USE_LONGLONG /* assume support for long long */
#endif
#if defined(LUA_USE_MACOSX)
#define LUA_USE_POSIX
#define LUA_USE_DLOPEN /* does not need -ldl */
#define LUA_USE_READLINE /* needs an extra library: -lreadline */
#define LUA_USE_STRTODHEX /* assume 'strtod' handles hex formats */
#define LUA_USE_AFORMAT /* assume 'printf' handles 'aA' specifiers */
#define LUA_USE_LONGLONG /* assume support for long long */
#endif
/*
@@ LUA_USE_POSIX includes all functionality listed as X/Open System
@* Interfaces Extension (XSI).
** CHANGE it (define it) if your system is XSI compatible.
*/
#if defined(LUA_USE_POSIX)
#define LUA_USE_MKSTEMP
#define LUA_USE_ISATTY
#define LUA_USE_POPEN
#define LUA_USE_ULONGJMP
#define LUA_USE_GMTIME_R
#endif
/*
@@ LUA_PATH_DEFAULT is the default path that Lua uses to look for
@* Lua libraries.
@@ LUA_CPATH_DEFAULT is the default path that Lua uses to look for
@* C libraries.
** CHANGE them if your machine has a non-conventional directory
** hierarchy or if you want to install your libraries in
** non-conventional directories.
*/
#if defined(_WIN32) /* { */
/*
** In Windows, any exclamation mark ('!') in the path is replaced by the
** path of the directory of the executable file of the current process.
*/
#define LUA_LDIR "!\\lua\\"
#define LUA_CDIR "!\\"
#define LUA_PATH_DEFAULT \
LUA_LDIR"?.lua;" LUA_LDIR"?\\init.lua;" \
LUA_CDIR"?.lua;" LUA_CDIR"?\\init.lua;" ".\\?.lua"
#define LUA_CPATH_DEFAULT \
LUA_CDIR"?.dll;" LUA_CDIR"loadall.dll;" ".\\?.dll"
#else /* }{ */
#define LUA_VDIR LUA_VERSION_MAJOR "." LUA_VERSION_MINOR "/"
#define LUA_ROOT "/usr/local/"
#define LUA_LDIR LUA_ROOT "share/lua/" LUA_VDIR
#define LUA_CDIR LUA_ROOT "lib/lua/" LUA_VDIR
#define LUA_PATH_DEFAULT \
LUA_LDIR"?.lua;" LUA_LDIR"?/init.lua;" \
LUA_CDIR"?.lua;" LUA_CDIR"?/init.lua;" "./?.lua"
#define LUA_CPATH_DEFAULT \
LUA_CDIR"?.so;" LUA_CDIR"loadall.so;" "./?.so"
#endif /* } */
/*
@@ LUA_DIRSEP is the directory separator (for submodules).
** CHANGE it if your machine does not use "/" as the directory separator
** and is not Windows. (On Windows Lua automatically uses "\".)
*/
#if defined(_WIN32)
#define LUA_DIRSEP "\\"
#else
#define LUA_DIRSEP "/"
#endif
/*
@@ LUA_ENV is the name of the variable that holds the current
@@ environment, used to access global names.
** CHANGE it if you do not like this name.
*/
#define LUA_ENV "_ENV"
/*
@@ LUA_API is a mark for all core API functions.
@@ LUALIB_API is a mark for all auxiliary library functions.
@@ LUAMOD_API is a mark for all standard library opening functions.
** CHANGE them if you need to define those functions in some special way.
** For instance, if you want to create one Windows DLL with the core and
** the libraries, you may want to use the following definition (define
** LUA_BUILD_AS_DLL to get it).
*/
#if defined(LUA_BUILD_AS_DLL) /* { */
#if defined(LUA_CORE) || defined(LUA_LIB) /* { */
#define LUA_API __declspec(dllexport)
#else /* }{ */
#define LUA_API __declspec(dllimport)
#endif /* } */
#else /* }{ */
#define LUA_API extern
#endif /* } */
/* more often than not the libs go together with the core */
#define LUALIB_API LUA_API
#define LUAMOD_API LUALIB_API
/*
@@ LUAI_FUNC is a mark for all extern functions that are not to be
@* exported to outside modules.
@@ LUAI_DDEF and LUAI_DDEC are marks for all extern (const) variables
@* that are not to be exported to outside modules (LUAI_DDEF for
@* definitions and LUAI_DDEC for declarations).
** CHANGE them if you need to mark them in some special way. Elf/gcc
** (versions 3.2 and later) mark them as "hidden" to optimize access
** when Lua is compiled as a shared library. Not all elf targets support
** this attribute. Unfortunately, gcc does not offer a way to check
** whether the target offers that support, and those without support
** give a warning about it. To avoid these warnings, change to the
** default definition.
*/
#if defined(__GNUC__) && ((__GNUC__*100 + __GNUC_MINOR__) >= 302) && \
defined(__ELF__) /* { */
#define LUAI_FUNC __attribute__((visibility("hidden"))) extern
#define LUAI_DDEC LUAI_FUNC
#define LUAI_DDEF /* empty */
#else /* }{ */
#define LUAI_FUNC extern
#define LUAI_DDEC extern
#define LUAI_DDEF /* empty */
#endif /* } */
/*
@@ LUA_QL describes how error messages quote program elements.
** CHANGE it if you want a different appearance.
*/
#define LUA_QL(x) "'" x "'"
#define LUA_QS LUA_QL("%s")
/*
@@ LUA_IDSIZE gives the maximum size for the description of the source
@* of a function in debug information.
** CHANGE it if you want a different size.
*/
#define LUA_IDSIZE 60
/*
@@ luai_writestring/luai_writeline define how 'print' prints its results.
** They are only used in libraries and the stand-alone program. (The #if
** avoids including 'stdio.h' everywhere.)
*/
#if defined(LUA_LIB) || defined(lua_c)
#include <stdio.h>
#define luai_writestring(s,l) fwrite((s), sizeof(char), (l), stdout)
#define luai_writeline() (luai_writestring("\n", 1), fflush(stdout))
#endif
/*
@@ luai_writestringerror defines how to print error messages.
** (A format string with one argument is enough for Lua...)
*/
#define luai_writestringerror(s,p) \
(fprintf(stderr, (s), (p)), fflush(stderr))
/*
@@ LUAI_MAXSHORTLEN is the maximum length for short strings, that is,
** strings that are internalized. (Cannot be smaller than reserved words
** or tags for metamethods, as these strings must be internalized;
** #("function") = 8, #("__newindex") = 10.)
*/
#define LUAI_MAXSHORTLEN 40
/*
** {==================================================================
** Compatibility with previous versions
** ===================================================================
*/
/*
@@ LUA_COMPAT_ALL controls all compatibility options.
** You can define it to get all options, or change specific options
** to fit your specific needs.
*/
#if defined(LUA_COMPAT_ALL) /* { */
/*
@@ LUA_COMPAT_UNPACK controls the presence of global 'unpack'.
** You can replace it with 'table.unpack'.
*/
#define LUA_COMPAT_UNPACK
/*
@@ LUA_COMPAT_LOADERS controls the presence of table 'package.loaders'.
** You can replace it with 'package.searchers'.
*/
#define LUA_COMPAT_LOADERS
/*
@@ macro 'lua_cpcall' emulates deprecated function lua_cpcall.
** You can call your C function directly (with light C functions).
*/
#define lua_cpcall(L,f,u) \
(lua_pushcfunction(L, (f)), \
lua_pushlightuserdata(L,(u)), \
lua_pcall(L,1,0,0))
/*
@@ LUA_COMPAT_LOG10 defines the function 'log10' in the math library.
** You can rewrite 'log10(x)' as 'log(x, 10)'.
*/
#define LUA_COMPAT_LOG10
/*
@@ LUA_COMPAT_LOADSTRING defines the function 'loadstring' in the base
** library. You can rewrite 'loadstring(s)' as 'load(s)'.
*/
#define LUA_COMPAT_LOADSTRING
/*
@@ LUA_COMPAT_MAXN defines the function 'maxn' in the table library.
*/
#define LUA_COMPAT_MAXN
/*
@@ The following macros supply trivial compatibility for some
** changes in the API. The macros themselves document how to
** change your code to avoid using them.
*/
#define lua_strlen(L,i) lua_rawlen(L, (i))
#define lua_objlen(L,i) lua_rawlen(L, (i))
#define lua_equal(L,idx1,idx2) lua_compare(L,(idx1),(idx2),LUA_OPEQ)
#define lua_lessthan(L,idx1,idx2) lua_compare(L,(idx1),(idx2),LUA_OPLT)
/*
@@ LUA_COMPAT_MODULE controls compatibility with previous
** module functions 'module' (Lua) and 'luaL_register' (C).
*/
#define LUA_COMPAT_MODULE
#endif /* } */
/* }================================================================== */
/*
@@ LUAI_BITSINT defines the number of bits in an int.
** CHANGE here if Lua cannot automatically detect the number of bits of
** your machine. Probably you do not need to change this.
*/
/* avoid overflows in comparison */
#if INT_MAX-20 < 32760 /* { */
#define LUAI_BITSINT 16
#elif INT_MAX > 2147483640L /* }{ */
/* int has at least 32 bits */
#define LUAI_BITSINT 32
#else /* }{ */
#error "you must define LUA_BITSINT with number of bits in an integer"
#endif /* } */
/*
@@ LUA_INT32 is a signed integer with exactly 32 bits.
@@ LUAI_UMEM is an unsigned integer big enough to count the total
@* memory used by Lua.
@@ LUAI_MEM is a signed integer big enough to count the total memory
@* used by Lua.
** CHANGE here if for some weird reason the default definitions are not
** good enough for your machine. Probably you do not need to change
** this.
*/
#if LUAI_BITSINT >= 32 /* { */
#define LUA_INT32 int
#define LUAI_UMEM size_t
#define LUAI_MEM ptrdiff_t
#else /* }{ */
/* 16-bit ints */
#define LUA_INT32 long
#define LUAI_UMEM unsigned long
#define LUAI_MEM long
#endif /* } */
/*
@@ LUAI_MAXSTACK limits the size of the Lua stack.
** CHANGE it if you need a different limit. This limit is arbitrary;
** its only purpose is to stop Lua from consuming unlimited stack
** space (and to reserve some numbers for pseudo-indices).
*/
#if LUAI_BITSINT >= 32
#define LUAI_MAXSTACK 1000000
#else
#define LUAI_MAXSTACK 15000
#endif
/* reserve some space for error handling */
#define LUAI_FIRSTPSEUDOIDX (-LUAI_MAXSTACK - 1000)
/*
@@ LUAL_BUFFERSIZE is the buffer size used by the lauxlib buffer system.
** CHANGE it if it uses too much C-stack space.
*/
#define LUAL_BUFFERSIZE BUFSIZ
/*
** {==================================================================
@@ LUA_NUMBER is the type of numbers in Lua.
** CHANGE the following definitions only if you want to build Lua
** with a number type different from double. You may also need to
** change lua_number2int & lua_number2integer.
** ===================================================================
*/
#define LUA_NUMBER_DOUBLE
#define LUA_NUMBER double
/*
@@ LUAI_UACNUMBER is the result of an 'usual argument conversion'
@* over a number.
*/
#define LUAI_UACNUMBER double
/*
@@ LUA_NUMBER_SCAN is the format for reading numbers.
@@ LUA_NUMBER_FMT is the format for writing numbers.
@@ lua_number2str converts a number to a string.
@@ LUAI_MAXNUMBER2STR is maximum size of previous conversion.
*/
#define LUA_NUMBER_SCAN "%lf"
#define LUA_NUMBER_FMT "%.14g"
#define lua_number2str(s,n) sprintf((s), LUA_NUMBER_FMT, (n))
#define LUAI_MAXNUMBER2STR 32 /* 16 digits, sign, point, and \0 */
/*
@@ l_mathop allows the addition of an 'l' or 'f' to all math operations
*/
#define l_mathop(x) (x)
/*
@@ lua_str2number converts a decimal numeric string to a number.
@@ lua_strx2number converts an hexadecimal numeric string to a number.
** In C99, 'strtod' does both conversions. C89, however, has no function
** to convert floating hexadecimal strings to numbers. For these
** systems, you can leave 'lua_strx2number' undefined and Lua will
** provide its own implementation.
*/
#define lua_str2number(s,p) strtod((s), (p))
#if defined(LUA_USE_STRTODHEX)
#define lua_strx2number(s,p) strtod((s), (p))
#endif
/*
@@ The luai_num* macros define the primitive operations over numbers.
*/
/* the following operations need the math library */
#if defined(lobject_c) || defined(lvm_c)
#include <math.h>
#define luai_nummod(L,a,b) ((a) - l_mathop(floor)((a)/(b))*(b))
#define luai_numpow(L,a,b) (l_mathop(pow)(a,b))
#endif
/* these are quite standard operations */
#if defined(LUA_CORE)
#define luai_numadd(L,a,b) ((a)+(b))
#define luai_numsub(L,a,b) ((a)-(b))
#define luai_nummul(L,a,b) ((a)*(b))
#define luai_numdiv(L,a,b) ((a)/(b))
#define luai_numunm(L,a) (-(a))
#define luai_numeq(a,b) ((a)==(b))
#define luai_numlt(L,a,b) ((a)<(b))
#define luai_numle(L,a,b) ((a)<=(b))
#define luai_numisnan(L,a) (!luai_numeq((a), (a)))
#endif
/*
@@ LUA_INTEGER is the integral type used by lua_pushinteger/lua_tointeger.
** CHANGE that if ptrdiff_t is not adequate on your machine. (On most
** machines, ptrdiff_t gives a good choice between int or long.)
*/
#define LUA_INTEGER ptrdiff_t
/*
@@ LUA_UNSIGNED is the integral type used by lua_pushunsigned/lua_tounsigned.
** It must have at least 32 bits.
*/
#define LUA_UNSIGNED unsigned LUA_INT32
/*
** Some tricks with doubles
*/
#if defined(LUA_NUMBER_DOUBLE) && !defined(LUA_ANSI) /* { */
/*
** The next definitions activate some tricks to speed up the
** conversion from doubles to integer types, mainly to LUA_UNSIGNED.
**
@@ LUA_MSASMTRICK uses Microsoft assembler to avoid clashes with a
** DirectX idiosyncrasy.
**
@@ LUA_IEEE754TRICK uses a trick that should work on any machine
** using IEEE754 with a 32-bit integer type.
**
@@ LUA_IEEELL extends the trick to LUA_INTEGER; should only be
** defined when LUA_INTEGER is a 32-bit integer.
**
@@ LUA_IEEEENDIAN is the endianness of doubles in your machine
** (0 for little endian, 1 for big endian); if not defined, Lua will
** check it dynamically for LUA_IEEE754TRICK (but not for LUA_NANTRICK).
**
@@ LUA_NANTRICK controls the use of a trick to pack all types into
** a single double value, using NaN values to represent non-number
** values. The trick only works on 32-bit machines (ints and pointers
** are 32-bit values) with numbers represented as IEEE 754-2008 doubles
** with conventional endianess (12345678 or 87654321), in CPUs that do
** not produce signaling NaN values (all NaNs are quiet).
*/
/* Microsoft compiler on a Pentium (32 bit) ? */
#if defined(LUA_WIN) && defined(_MSC_VER) && defined(_M_IX86) /* { */
#define LUA_MSASMTRICK
#define LUA_IEEEENDIAN 0
#define LUA_NANTRICK
/* pentium 32 bits? */
#elif defined(__i386__) || defined(__i386) || defined(__X86__) /* }{ */
#define LUA_IEEE754TRICK
#define LUA_IEEELL
#define LUA_IEEEENDIAN 0
#define LUA_NANTRICK
/* pentium 64 bits? */
#elif defined(__x86_64) /* }{ */
#define LUA_IEEE754TRICK
#define LUA_IEEEENDIAN 0
#elif defined(__POWERPC__) || defined(__ppc__) /* }{ */
#define LUA_IEEE754TRICK
#define LUA_IEEEENDIAN 1
#else /* }{ */
/* assume IEEE754 and a 32-bit integer type */
#define LUA_IEEE754TRICK
#endif /* } */
#endif /* } */
/* }================================================================== */
/* =================================================================== */
/*
** Local configuration. You can use this space to add your redefinitions
** without modifying the main part of the file.
*/
#endif

View File

@@ -1,5 +1,5 @@
/*
** $Id: lualib.h,v 1.24 2002/06/18 17:42:52 roberto Exp roberto $
** $Id: lualib.h,v 1.43 2011/12/08 12:11:37 roberto Exp $
** Lua standard libraries
** See Copyright Notice in lua.h
*/
@@ -11,34 +11,45 @@
#include "lua.h"
#ifndef LUALIB_API
#define LUALIB_API extern
#endif
LUAMOD_API int (luaopen_base) (lua_State *L);
#define LUA_COLIBNAME "coroutine"
LUALIB_API int lua_baselibopen (lua_State *L);
LUAMOD_API int (luaopen_coroutine) (lua_State *L);
#define LUA_TABLIBNAME "table"
LUALIB_API int lua_tablibopen (lua_State *L);
LUAMOD_API int (luaopen_table) (lua_State *L);
#define LUA_IOLIBNAME "io"
LUAMOD_API int (luaopen_io) (lua_State *L);
#define LUA_OSLIBNAME "os"
LUALIB_API int lua_iolibopen (lua_State *L);
LUAMOD_API int (luaopen_os) (lua_State *L);
#define LUA_STRLIBNAME "string"
LUALIB_API int lua_strlibopen (lua_State *L);
LUAMOD_API int (luaopen_string) (lua_State *L);
#define LUA_BITLIBNAME "bit32"
LUAMOD_API int (luaopen_bit32) (lua_State *L);
#define LUA_MATHLIBNAME "math"
LUALIB_API int lua_mathlibopen (lua_State *L);
LUAMOD_API int (luaopen_math) (lua_State *L);
#define LUA_DBLIBNAME "debug"
LUALIB_API int lua_dblibopen (lua_State *L);
LUAMOD_API int (luaopen_debug) (lua_State *L);
#define LUA_LOADLIBNAME "package"
LUAMOD_API int (luaopen_package) (lua_State *L);
/* to help testing the libraries */
#ifndef lua_assert
#define lua_assert(c) /* empty */
/* open all previous libraries */
LUALIB_API void (luaL_openlibs) (lua_State *L);
#if !defined(lua_assert)
#define lua_assert(x) ((void)0)
#endif
#endif

356
lundump.c
View File

@@ -1,274 +1,258 @@
/*
** $Id: lundump.c,v 1.43 2002/08/07 00:36:03 lhf Exp $
** load pre-compiled Lua chunks
** $Id: lundump.c,v 2.22 2012/05/08 13:53:33 roberto Exp $
** load precompiled Lua chunks
** See Copyright Notice in lua.h
*/
#include <string.h>
#define lundump_c
#define LUA_CORE
#include "lua.h"
#include "ldebug.h"
#include "ldo.h"
#include "lfunc.h"
#include "lmem.h"
#include "lopcodes.h"
#include "lobject.h"
#include "lstring.h"
#include "lundump.h"
#include "lzio.h"
#define LoadByte (lu_byte) ezgetc
typedef struct {
lua_State* L;
ZIO* Z;
int swap;
Mbuffer* b;
const char* name;
} LoadState;
static void unexpectedEOZ (LoadState* S)
static l_noret error(LoadState* S, const char* why)
{
luaG_runerror(S->L,"unexpected end of file in %s",S->name);
luaO_pushfstring(S->L,"%s: %s precompiled chunk",S->name,why);
luaD_throw(S->L,LUA_ERRSYNTAX);
}
static int ezgetc (LoadState* S)
#define LoadMem(S,b,n,size) LoadBlock(S,b,(n)*(size))
#define LoadByte(S) (lu_byte)LoadChar(S)
#define LoadVar(S,x) LoadMem(S,&x,1,sizeof(x))
#define LoadVector(S,b,n,size) LoadMem(S,b,n,size)
#if !defined(luai_verifycode)
#define luai_verifycode(L,b,f) /* empty */
#endif
static void LoadBlock(LoadState* S, void* b, size_t size)
{
int c=zgetc(S->Z);
if (c==EOZ) unexpectedEOZ(S);
return c;
if (luaZ_read(S->Z,b,size)!=0) error(S,"truncated");
}
static void ezread (LoadState* S, void* b, int n)
static int LoadChar(LoadState* S)
{
int r=luaZ_read(S->Z,b,n);
if (r!=0) unexpectedEOZ(S);
char x;
LoadVar(S,x);
return x;
}
static void LoadBlock (LoadState* S, void* b, size_t size)
{
if (S->swap)
{
char *p=(char*) b+size-1;
int n=size;
while (n--) *p--=(char)ezgetc(S);
}
else
ezread(S,b,size);
}
static void LoadVector (LoadState* S, void* b, int m, size_t size)
{
if (S->swap)
{
char *q=(char*) b;
while (m--)
{
char *p=q+size-1;
int n=size;
while (n--) *p--=(char)ezgetc(S);
q+=size;
}
}
else
ezread(S,b,m*size);
}
static int LoadInt (LoadState* S)
static int LoadInt(LoadState* S)
{
int x;
LoadBlock(S,&x,sizeof(x));
if (x<0) luaG_runerror(S->L,"bad integer in %s",S->name);
LoadVar(S,x);
if (x<0) error(S,"corrupted");
return x;
}
static size_t LoadSize (LoadState* S)
{
size_t x;
LoadBlock(S,&x,sizeof(x));
return x;
}
static lua_Number LoadNumber (LoadState* S)
static lua_Number LoadNumber(LoadState* S)
{
lua_Number x;
LoadBlock(S,&x,sizeof(x));
LoadVar(S,x);
return x;
}
static TString* LoadString (LoadState* S)
static TString* LoadString(LoadState* S)
{
size_t size=LoadSize(S);
size_t size;
LoadVar(S,size);
if (size==0)
return NULL;
else
{
char* s=luaO_openspace(S->L,size,char);
ezread(S,s,size);
return luaS_newlstr(S->L,s,size-1); /* remove trailing '\0' */
char* s=luaZ_openspace(S->L,S->b,size);
LoadBlock(S,s,size*sizeof(char));
return luaS_newlstr(S->L,s,size-1); /* remove trailing '\0' */
}
}
static void LoadCode (LoadState* S, Proto* f)
static void LoadCode(LoadState* S, Proto* f)
{
int size=LoadInt(S);
f->code=luaM_newvector(S->L,size,Instruction);
f->sizecode=size;
LoadVector(S,f->code,size,sizeof(*f->code));
int n=LoadInt(S);
f->code=luaM_newvector(S->L,n,Instruction);
f->sizecode=n;
LoadVector(S,f->code,n,sizeof(Instruction));
}
static void LoadLocals (LoadState* S, Proto* f)
static void LoadFunction(LoadState* S, Proto* f);
static void LoadConstants(LoadState* S, Proto* f)
{
int i,n;
n=LoadInt(S);
f->k=luaM_newvector(S->L,n,TValue);
f->sizek=n;
for (i=0; i<n; i++) setnilvalue(&f->k[i]);
for (i=0; i<n; i++)
{
TValue* o=&f->k[i];
int t=LoadChar(S);
switch (t)
{
case LUA_TNIL:
setnilvalue(o);
break;
case LUA_TBOOLEAN:
setbvalue(o,LoadChar(S));
break;
case LUA_TNUMBER:
setnvalue(o,LoadNumber(S));
break;
case LUA_TSTRING:
setsvalue2n(S->L,o,LoadString(S));
break;
default: lua_assert(0);
}
}
n=LoadInt(S);
f->p=luaM_newvector(S->L,n,Proto*);
f->sizep=n;
for (i=0; i<n; i++) f->p[i]=NULL;
for (i=0; i<n; i++)
{
f->p[i]=luaF_newproto(S->L);
LoadFunction(S,f->p[i]);
}
}
static void LoadUpvalues(LoadState* S, Proto* f)
{
int i,n;
n=LoadInt(S);
f->upvalues=luaM_newvector(S->L,n,Upvaldesc);
f->sizeupvalues=n;
for (i=0; i<n; i++) f->upvalues[i].name=NULL;
for (i=0; i<n; i++)
{
f->upvalues[i].instack=LoadByte(S);
f->upvalues[i].idx=LoadByte(S);
}
}
static void LoadDebug(LoadState* S, Proto* f)
{
int i,n;
f->source=LoadString(S);
n=LoadInt(S);
f->lineinfo=luaM_newvector(S->L,n,int);
f->sizelineinfo=n;
LoadVector(S,f->lineinfo,n,sizeof(int));
n=LoadInt(S);
f->locvars=luaM_newvector(S->L,n,LocVar);
f->sizelocvars=n;
for (i=0; i<n; i++) f->locvars[i].varname=NULL;
for (i=0; i<n; i++)
{
f->locvars[i].varname=LoadString(S);
f->locvars[i].startpc=LoadInt(S);
f->locvars[i].endpc=LoadInt(S);
}
n=LoadInt(S);
for (i=0; i<n; i++) f->upvalues[i].name=LoadString(S);
}
static void LoadLines (LoadState* S, Proto* f)
static void LoadFunction(LoadState* S, Proto* f)
{
int n;
n=LoadInt(S);
f->lineinfo=luaM_newvector(S->L,n,int);
LoadVector(S,f->lineinfo,n,sizeof(*f->lineinfo));
}
static Proto* LoadFunction (LoadState* S, TString* p);
static void LoadConstants (LoadState* S, Proto* f)
{
int i,n;
n=LoadInt(S);
f->k=luaM_newvector(S->L,n,TObject);
f->sizek=n;
for (i=0; i<n; i++)
{
TObject* o=&f->k[i];
int t=LoadByte(S);
switch (t)
{
case LUA_TNUMBER:
setnvalue(o,LoadNumber(S));
break;
case LUA_TSTRING:
setsvalue(o,LoadString(S));
break;
case LUA_TNIL:
setnilvalue(o);
break;
default:
luaG_runerror(S->L,"bad constant type (%d) in %s",t,S->name);
break;
}
}
n=LoadInt(S);
f->p=luaM_newvector(S->L,n,Proto*);
f->sizep=n;
for (i=0; i<n; i++) f->p[i]=LoadFunction(S,f->source);
}
static Proto* LoadFunction (LoadState* S, TString* p)
{
Proto* f=luaF_newproto(S->L);
f->source=LoadString(S); if (f->source==NULL) f->source=p;
f->lineDefined=LoadInt(S);
f->nupvalues=LoadByte(S);
f->linedefined=LoadInt(S);
f->lastlinedefined=LoadInt(S);
f->numparams=LoadByte(S);
f->is_vararg=LoadByte(S);
f->maxstacksize=LoadByte(S);
LoadLocals(S,f);
LoadLines(S,f);
LoadConstants(S,f);
LoadCode(S,f);
#ifndef TRUST_BINARIES
if (!luaG_checkcode(f)) luaG_runerror(S->L,"bad code in %s",S->name);
#endif
return f;
LoadConstants(S,f);
LoadUpvalues(S,f);
LoadDebug(S,f);
}
static void LoadSignature (LoadState* S)
{
const char* s=LUA_SIGNATURE;
while (*s!=0 && ezgetc(S)==*s)
++s;
if (*s!=0) luaG_runerror(S->L,"bad signature in %s",S->name);
}
/* the code below must be consistent with the code in luaU_header */
#define N0 LUAC_HEADERSIZE
#define N1 (sizeof(LUA_SIGNATURE)-sizeof(char))
#define N2 N1+2
#define N3 N2+6
static void TestSize (LoadState* S, int s, const char* what)
static void LoadHeader(LoadState* S)
{
int r=LoadByte(S);
if (r!=s)
luaG_runerror(S->L,"virtual machine mismatch in %s: "
"size of %s is %d but read %d",S->name,what,s,r);
}
#define TESTSIZE(s,w) TestSize(S,s,w)
#define V(v) v/16,v%16
static void LoadHeader (LoadState* S)
{
int version;
lua_Number x=0,tx=TEST_NUMBER;
LoadSignature(S);
version=LoadByte(S);
if (version>VERSION)
luaG_runerror(S->L,"%s too new: "
"read version %d.%d; expected at most %d.%d",
S->name,V(version),V(VERSION));
if (version<VERSION0) /* check last major change */
luaG_runerror(S->L,"%s too old: "
"read version %d.%d; expected at least %d.%d",
S->name,V(version),V(VERSION0));
S->swap=(luaU_endianness()!=LoadByte(S)); /* need to swap bytes? */
TESTSIZE(sizeof(int),"int");
TESTSIZE(sizeof(size_t), "size_t");
TESTSIZE(sizeof(Instruction), "Instruction");
TESTSIZE(SIZE_OP, "OP");
TESTSIZE(SIZE_A, "A");
TESTSIZE(SIZE_B, "B");
TESTSIZE(SIZE_C, "C");
TESTSIZE(sizeof(lua_Number), "number");
x=LoadNumber(S);
if ((long)x!=(long)tx) /* disregard errors in last bits of fraction */
luaG_runerror(S->L,"unknown number format in %s: read %f; expected %f",
S->name,x,tx);
}
static Proto* LoadChunk (LoadState* S)
{
LoadHeader(S);
return LoadFunction(S,NULL);
lu_byte h[LUAC_HEADERSIZE];
lu_byte s[LUAC_HEADERSIZE];
luaU_header(h);
memcpy(s,h,sizeof(char)); /* first char already read */
LoadBlock(S,s+sizeof(char),LUAC_HEADERSIZE-sizeof(char));
if (memcmp(h,s,N0)==0) return;
if (memcmp(h,s,N1)!=0) error(S,"not a");
if (memcmp(h,s,N2)!=0) error(S,"version mismatch in");
if (memcmp(h,s,N3)!=0) error(S,"incompatible"); else error(S,"corrupted");
}
/*
** load one chunk from a file or buffer
** load precompiled chunk
*/
Proto* luaU_undump (lua_State* L, ZIO* Z)
Closure* luaU_undump (lua_State* L, ZIO* Z, Mbuffer* buff, const char* name)
{
LoadState S;
Proto* f;
const char* s=zname(Z);
if (*s=='@' || *s=='=')
S.name=s+1;
else if (*s==LUA_SIGNATURE[0])
Closure* cl;
if (*name=='@' || *name=='=')
S.name=name+1;
else if (*name==LUA_SIGNATURE[0])
S.name="binary string";
else
S.name=s;
S.name=name;
S.L=L;
S.Z=Z;
f=LoadChunk(&S);
if (zgetc(Z)!=EOZ)
luaG_runerror(L,"%s apparently contains more than one chunk",S.name);
return f;
S.b=buff;
LoadHeader(&S);
cl=luaF_newLclosure(L,1);
setclLvalue(L,L->top,cl); incr_top(L);
cl->l.p=luaF_newproto(L);
LoadFunction(&S,cl->l.p);
if (cl->l.p->sizeupvalues != 1)
{
Proto* p=cl->l.p;
cl=luaF_newLclosure(L,cl->l.p->sizeupvalues);
cl->l.p=p;
setclLvalue(L,L->top-1,cl);
}
luai_verifycode(L,buff,cl->l.p);
return cl;
}
#define MYINT(s) (s[0]-'0')
#define VERSION MYINT(LUA_VERSION_MAJOR)*16+MYINT(LUA_VERSION_MINOR)
#define FORMAT 0 /* this is the official format */
/*
** find byte order
* make header for precompiled chunks
* if you change the code below be sure to update LoadHeader and FORMAT above
* and LUAC_HEADERSIZE in lundump.h
*/
int luaU_endianness (void)
void luaU_header (lu_byte* h)
{
int x=1;
return *(char*)&x;
memcpy(h,LUA_SIGNATURE,sizeof(LUA_SIGNATURE)-sizeof(char));
h+=sizeof(LUA_SIGNATURE)-sizeof(char);
*h++=cast_byte(VERSION);
*h++=cast_byte(FORMAT);
*h++=cast_byte(*(char*)&x); /* endianness */
*h++=cast_byte(sizeof(int));
*h++=cast_byte(sizeof(size_t));
*h++=cast_byte(sizeof(Instruction));
*h++=cast_byte(sizeof(lua_Number));
*h++=cast_byte(((lua_Number)0.5)==0); /* is lua_Number integral? */
memcpy(h,LUAC_TAIL,sizeof(LUAC_TAIL)-sizeof(char));
}

View File

@@ -1,6 +1,6 @@
/*
** $Id: lundump.h,v 1.26 2002/08/07 00:36:03 lhf Exp $
** load pre-compiled Lua chunks
** $Id: lundump.h,v 1.39 2012/05/08 13:53:33 roberto Exp $
** load precompiled Lua chunks
** See Copyright Notice in lua.h
*/
@@ -10,27 +10,19 @@
#include "lobject.h"
#include "lzio.h"
typedef int (*Writer)(const void* p, size_t size, void* u);
/* load one chunk; from lundump.c */
Proto* luaU_undump (lua_State* L, ZIO* Z);
LUAI_FUNC Closure* luaU_undump (lua_State* L, ZIO* Z, Mbuffer* buff, const char* name);
/* find byte order; from lundump.c */
int luaU_endianness (void);
/* make header; from lundump.c */
LUAI_FUNC void luaU_header (lu_byte* h);
/* dump one chunk; from dump.c */
void luaU_dump (const Proto* Main, Writer w, void* data);
/* dump one chunk; from ldump.c */
LUAI_FUNC int luaU_dump (lua_State* L, const Proto* f, lua_Writer w, void* data, int strip);
/* print one chunk; from print.c */
void luaU_print (const Proto* Main);
/* data to catch conversion errors */
#define LUAC_TAIL "\x19\x93\r\n\x1a\n"
/* definitions for headers of binary files */
#define LUA_SIGNATURE "\033Lua" /* binary files start with <esc>Lua */
#define VERSION 0x50 /* last format change was in 5.0 */
#define VERSION0 0x50 /* last major change was in 5.0 */
/* a multiple of PI for testing native format */
/* multiplying by 1E8 gives non-trivial integer values */
#define TEST_NUMBER 3.14159265358979323846E8
/* size in bytes of header of binary files */
#define LUAC_HEADERSIZE (sizeof(LUA_SIGNATURE)-sizeof(char)+2+6+sizeof(LUAC_TAIL)-sizeof(char))
#endif

1244
lvm.c

File diff suppressed because it is too large Load Diff

39
lvm.h
View File

@@ -1,5 +1,5 @@
/*
** $Id: lvm.h,v 1.45 2002/08/05 17:36:24 roberto Exp roberto $
** $Id: lvm.h,v 2.18 2013/01/08 14:06:55 roberto Exp $
** Lua virtual machine
** See Copyright Notice in lua.h
*/
@@ -13,23 +13,32 @@
#include "ltm.h"
#define tostring(L,o) ((ttype(o) == LUA_TSTRING) || (luaV_tostring(L, o)))
#define tostring(L,o) (ttisstring(o) || (luaV_tostring(L, o)))
#define tonumber(o,n) (ttype(o) == LUA_TNUMBER || \
(((o) = luaV_tonumber(o,n)) != NULL))
#define tonumber(o,n) (ttisnumber(o) || (((o) = luaV_tonumber(o,n)) != NULL))
#define equalobj(L,o1,o2) \
(ttype(o1) == ttype(o2) && luaV_equalval(L, o1, o2))
#define equalobj(L,o1,o2) (ttisequal(o1, o2) && luaV_equalobj_(L, o1, o2))
#define luaV_rawequalobj(o1,o2) equalobj(NULL,o1,o2)
int luaV_lessthan (lua_State *L, const TObject *l, const TObject *r);
int luaV_equalval (lua_State *L, const TObject *t1, const TObject *t2);
const TObject *luaV_tonumber (const TObject *obj, TObject *n);
int luaV_tostring (lua_State *L, TObject *obj);
const TObject *luaV_gettable (lua_State *L, const TObject *t, TObject *key,
int loop);
void luaV_settable (lua_State *L, const TObject *t, TObject *key, StkId val);
StkId luaV_execute (lua_State *L);
void luaV_concat (lua_State *L, int total, int last);
/* not to called directly */
LUAI_FUNC int luaV_equalobj_ (lua_State *L, const TValue *t1, const TValue *t2);
LUAI_FUNC int luaV_lessthan (lua_State *L, const TValue *l, const TValue *r);
LUAI_FUNC int luaV_lessequal (lua_State *L, const TValue *l, const TValue *r);
LUAI_FUNC const TValue *luaV_tonumber (const TValue *obj, TValue *n);
LUAI_FUNC int luaV_tostring (lua_State *L, StkId obj);
LUAI_FUNC void luaV_gettable (lua_State *L, const TValue *t, TValue *key,
StkId val);
LUAI_FUNC void luaV_settable (lua_State *L, const TValue *t, TValue *key,
StkId val);
LUAI_FUNC void luaV_finishOp (lua_State *L);
LUAI_FUNC void luaV_execute (lua_State *L);
LUAI_FUNC void luaV_concat (lua_State *L, int total);
LUAI_FUNC void luaV_arith (lua_State *L, StkId ra, const TValue *rb,
const TValue *rc, TMS op);
LUAI_FUNC void luaV_objlen (lua_State *L, StkId ra, const TValue *rb);
#endif

58
lzio.c
View File

@@ -1,44 +1,42 @@
/*
** $Id: lzio.c,v 1.20 2002/08/05 18:45:02 roberto Exp roberto $
** a generic input stream interface
** $Id: lzio.c,v 1.35 2012/05/14 13:34:18 roberto Exp $
** Buffered streams
** See Copyright Notice in lua.h
*/
#include <string.h>
#define lzio_c
#define LUA_CORE
#include "lua.h"
#include "llimits.h"
#include "lmem.h"
#include "lstate.h"
#include "lzio.h"
int luaZ_fill (ZIO *z) {
size_t size;
const char *buff = z->reader(NULL, z->data, &size);
if (buff == NULL || size == 0) return EOZ;
z->n = size - 1;
lua_State *L = z->L;
const char *buff;
lua_unlock(L);
buff = z->reader(L, z->data, &size);
lua_lock(L);
if (buff == NULL || size == 0)
return EOZ;
z->n = size - 1; /* discount char being returned */
z->p = buff;
return *(z->p++);
return cast_uchar(*(z->p++));
}
int luaZ_lookahead (ZIO *z) {
if (z->n == 0) {
int c = luaZ_fill(z);
if (c == EOZ) return c;
z->n++;
z->p--;
}
return *z->p;
}
void luaZ_init (ZIO *z, lua_Chunkreader reader, void *data, const char *name) {
void luaZ_init (lua_State *L, ZIO *z, lua_Reader reader, void *data) {
z->L = L;
z->reader = reader;
z->data = data;
z->name = name;
z->n = 0;
z->p = NULL;
}
@@ -48,12 +46,12 @@ void luaZ_init (ZIO *z, lua_Chunkreader reader, void *data, const char *name) {
size_t luaZ_read (ZIO *z, void *b, size_t n) {
while (n) {
size_t m;
if (z->n == 0) {
if (luaZ_fill(z) == EOZ)
return n; /* return number of missing bytes */
if (z->n == 0) { /* no bytes in buffer? */
if (luaZ_fill(z) == EOZ) /* try to read more */
return n; /* no more input; return number of missing bytes */
else {
++z->n; /* filbuf removed first byte; put back it */
--z->p;
z->n++; /* luaZ_fill consumed first byte; put it back */
z->p--;
}
}
m = (n <= z->n) ? n : z->n; /* min. between n and z->n */
@@ -66,3 +64,13 @@ size_t luaZ_read (ZIO *z, void *b, size_t n) {
return 0;
}
/* ------------------------------------------------------------------------ */
char *luaZ_openspace (lua_State *L, Mbuffer *buff, size_t n) {
if (n > buff->buffsize) {
if (n < LUA_MINBUFFER) n = LUA_MINBUFFER;
luaZ_resizebuffer(L, buff, n);
}
return buff->buffer;
}

49
lzio.h
View File

@@ -1,5 +1,5 @@
/*
** $Id: lzio.h,v 1.12 2002/06/06 12:40:22 roberto Exp roberto $
** $Id: lzio.h,v 1.26 2011/07/15 12:48:03 roberto Exp $
** Buffered streams
** See Copyright Notice in lua.h
*/
@@ -10,33 +10,56 @@
#include "lua.h"
#include "lmem.h"
#define EOZ (-1) /* end of stream */
typedef struct zio ZIO;
typedef struct Zio ZIO;
#define zgetc(z) (((z)->n--)>0 ? \
cast(int, cast(unsigned char, *(z)->p++)) : \
luaZ_fill(z))
#define zgetc(z) (((z)->n--)>0 ? cast_uchar(*(z)->p++) : luaZ_fill(z))
#define zname(z) ((z)->name)
void luaZ_init (ZIO *z, lua_Chunkreader reader, void *data, const char *name);
size_t luaZ_read (ZIO* z, void* b, size_t n); /* read next n bytes */
int luaZ_lookahead (ZIO *z);
typedef struct Mbuffer {
char *buffer;
size_t n;
size_t buffsize;
} Mbuffer;
#define luaZ_initbuffer(L, buff) ((buff)->buffer = NULL, (buff)->buffsize = 0)
#define luaZ_buffer(buff) ((buff)->buffer)
#define luaZ_sizebuffer(buff) ((buff)->buffsize)
#define luaZ_bufflen(buff) ((buff)->n)
#define luaZ_resetbuffer(buff) ((buff)->n = 0)
#define luaZ_resizebuffer(L, buff, size) \
(luaM_reallocvector(L, (buff)->buffer, (buff)->buffsize, size, char), \
(buff)->buffsize = size)
#define luaZ_freebuffer(L, buff) luaZ_resizebuffer(L, buff, 0)
LUAI_FUNC char *luaZ_openspace (lua_State *L, Mbuffer *buff, size_t n);
LUAI_FUNC void luaZ_init (lua_State *L, ZIO *z, lua_Reader reader,
void *data);
LUAI_FUNC size_t luaZ_read (ZIO* z, void* b, size_t n); /* read next n bytes */
/* --------- Private Part ------------------ */
struct zio {
struct Zio {
size_t n; /* bytes still unread */
const char *p; /* current position in buffer */
lua_Chunkreader reader;
lua_Reader reader; /* reader function */
void* data; /* additional data */
const char *name;
lua_State *L; /* Lua state (for reader) */
};
int luaZ_fill (ZIO *z);
LUAI_FUNC int luaZ_fill (ZIO *z);
#endif

263
makefile
View File

@@ -1,160 +1,155 @@
#
## $Id: makefile,v 1.35 2002/03/18 18:18:35 roberto Exp roberto $
## Makefile
## See Copyright Notice in lua.h
#
# makefile for building Lua
# see INSTALL for installation instructions
# see ../Makefile and luaconf.h for further customization
# == CHANGE THE SETTINGS BELOW TO SUIT YOUR ENVIRONMENT =======================
CWARNS= -pedantic -Waggregate-return -Wcast-align \
-Wmissing-prototypes -Wpointer-arith -Wshadow \
-Wsign-compare -Wstrict-prototypes -Wundef -Wwrite-strings
# -Wcast-qual
# -DEXTERNMEMCHECK -DHARDSTACKTESTS
# -g -DLUA_USER_H='"ltests.h"'
# -fomit-frame-pointer #-pg -malign-double
TESTS= -g -DLUA_USER_H='"ltests.h"'
LOCAL = $(TESTS) $(CWARNS)
#CONFIGURATION
CC= gcc
CFLAGS= -Wall $(MYCFLAGS) -O2
AR= ar rcu
RANLIB= ranlib
RM= rm -f
# define (undefine) POPEN if your system (does not) support piped I/O
#
# define (undefine) _POSIX_SOURCE if your system is (not) POSIX compliant
#
# define LUA_NUM_TYPE if you need numbers to be different from double
# (for instance, -DLUA_NUM_TYPE=float)
# you may need to adapat the code, too.
MYCFLAGS= $(LOCAL)
MYLDFLAGS=
MYLIBS=
# DEBUG = -g -DLUA_USER_H='"ltests.h"'
OPTIMIZE = -O2 \
-D'lua_number2int(i,d)=__asm__("fldl %1\nfistpl %0":"=m"(i):"m"(d))' \
-fomit-frame-pointer
CONFIG = -D_POSIX_SOURCE -DPOPEN $(DEBUG) $(OPTIMIZE)
# enable Linux goodies
MYCFLAGS= $(LOCAL) -DLUA_USE_LINUX
MYLDFLAGS= -Wl,-E
MYLIBS= -ldl -lreadline -lhistory -lncurses
# Compilation parameters
CC = gcc
CWARNS = -Wall -pedantic \
-Waggregate-return \
-Wcast-align \
-Wmissing-prototypes \
-Wstrict-prototypes \
-Wnested-externs \
-Wpointer-arith \
-Wshadow \
-Wwrite-strings \
# -Wtraditional \
# -Wcast-qual
CFLAGS = $(CONFIG) $(CWARNS) -ansi
# == END OF USER SETTINGS. NO NEED TO CHANGE ANYTHING BELOW THIS LINE =========
# To make early versions
CO_OPTIONS =
LIBS = -lm
CORE_T= liblua.a
CORE_O= lapi.o lcode.o ldebug.o ldo.o ldump.o lfunc.o lgc.o llex.o lmem.o \
lobject.o lopcodes.o lparser.o lstate.o lstring.o ltable.o ltm.o \
lundump.o lvm.o lzio.o ltests.o
AUX_O= lauxlib.o
LIB_O= lbaselib.o ldblib.o liolib.o lmathlib.o loslib.o ltablib.o lstrlib.o \
loadlib.o linit.o
AR = ar
ARFLAGS = rvl
LUA_T= lua
LUA_O= lua.o
LUAC_T= luac
LUAC_O= luac.o print.o
# Aplication modules
LUAOBJS = \
lstate.o \
lapi.o \
lmem.o \
lstring.o \
ltable.o \
ltm.o \
lvm.o \
ldo.o \
lobject.o \
lfunc.o \
lgc.o \
lcode.o \
lparser.o \
llex.o \
lopcodes.o \
lundump.o \
lzio.o \
ldebug.o \
ltests.o
ALL_T= $(CORE_T) $(LUA_T) $(LUAC_T)
ALL_O= $(CORE_O) $(LUA_O) $(LUAC_O) $(AUX_O) $(LIB_O)
ALL_A= $(CORE_T)
LIBOBJS = \
lauxlib.o \
lbaselib.o \
ltablib.o \
lmathlib.o \
liolib.o \
lstrlib.o \
ldblib.o
all: $(ALL_T)
o: $(ALL_O)
lua : lua.o liblua.a liblualib.a
$(CC) $(CFLAGS) -o $@ lua.o -L. -llua -llualib -lm
a: $(ALL_A)
liblua.a : $(LUAOBJS)
$(AR) $(ARFLAGS) $@ $?
ranlib $@
$(CORE_T): $(CORE_O) $(AUX_O) $(LIB_O)
$(AR) $@ $?
$(RANLIB) $@
liblualib.a : $(LIBOBJS)
$(AR) $(ARFLAGS) $@ $?
ranlib $@
$(LUA_T): $(LUA_O) $(CORE_T)
$(CC) -o $@ $(MYLDFLAGS) $(LUA_O) $(CORE_T) $(LIBS) $(MYLIBS) $(DL)
liblua.so.1.0 : lua.o
ld -o liblua.so.1.0 $(LUAOBJS)
$(LUAC_T): $(LUAC_O) $(CORE_T)
$(CC) -o $@ $(MYLDFLAGS) $(LUAC_O) $(CORE_T) $(LIBS) $(MYLIBS)
clean:
rcsclean -u
$(RM) $(ALL_T) $(ALL_O)
clear :
rcsclean
rm -f *.o *.a
depend:
@$(CC) $(CFLAGS) -MM *.c
echo:
@echo "CC = $(CC)"
@echo "CFLAGS = $(CFLAGS)"
@echo "AR = $(AR)"
@echo "RANLIB = $(RANLIB)"
@echo "RM = $(RM)"
@echo "MYCFLAGS = $(MYCFLAGS)"
@echo "MYLDFLAGS = $(MYLDFLAGS)"
@echo "MYLIBS = $(MYLIBS)"
@echo "DL = $(DL)"
%.h : RCS/%.h,v
co $(CO_OPTIONS) $@
# DO NOT DELETE
%.c : RCS/%.c,v
co $(CO_OPTIONS) $@
lapi.o: lapi.c lua.h luaconf.h lapi.h lobject.h llimits.h ldebug.h \
lstate.h ltm.h lzio.h lmem.h ldo.h lfunc.h lgc.h lstring.h ltable.h \
lundump.h lvm.h
lauxlib.o: lauxlib.c lua.h luaconf.h lauxlib.h
lbaselib.o: lbaselib.c lua.h luaconf.h lauxlib.h lualib.h
lcode.o: lcode.c lua.h luaconf.h lcode.h llex.h lobject.h llimits.h \
lzio.h lmem.h lopcodes.h lparser.h ltable.h ldebug.h lstate.h ltm.h \
ldo.h lgc.h
ldblib.o: ldblib.c lua.h luaconf.h lauxlib.h lualib.h
ldebug.o: ldebug.c lua.h luaconf.h lapi.h lobject.h llimits.h lcode.h \
llex.h lzio.h lmem.h lopcodes.h lparser.h ltable.h ldebug.h lstate.h \
ltm.h ldo.h lfunc.h lstring.h lgc.h lvm.h
ldo.o: ldo.c lua.h luaconf.h ldebug.h lstate.h lobject.h llimits.h ltm.h \
lzio.h lmem.h ldo.h lfunc.h lgc.h lopcodes.h lparser.h ltable.h \
lstring.h lundump.h lvm.h
ldump.o: ldump.c lua.h luaconf.h lobject.h llimits.h lopcodes.h lstate.h \
ltm.h lzio.h lmem.h lundump.h
lfunc.o: lfunc.c lua.h luaconf.h lfunc.h lobject.h llimits.h lgc.h lmem.h \
lstate.h ltm.h lzio.h
lgc.o: lgc.c lua.h luaconf.h ldebug.h lstate.h lobject.h llimits.h ltm.h \
lzio.h lmem.h ldo.h lfunc.h lgc.h lstring.h ltable.h
linit.o: linit.c lua.h luaconf.h lualib.h lauxlib.h
liolib.o: liolib.c lua.h luaconf.h lauxlib.h lualib.h
llex.o: llex.c lua.h luaconf.h ldo.h lobject.h llimits.h lstate.h ltm.h \
lzio.h lmem.h llex.h lparser.h ltable.h lstring.h lgc.h
lmathlib.o: lmathlib.c lua.h luaconf.h lauxlib.h lualib.h
lmem.o: lmem.c lua.h luaconf.h ldebug.h lstate.h lobject.h llimits.h \
ltm.h lzio.h lmem.h ldo.h
loadlib.o: loadlib.c lua.h luaconf.h lauxlib.h lualib.h
lobject.o: lobject.c lua.h luaconf.h ldo.h lobject.h llimits.h lstate.h \
ltm.h lzio.h lmem.h lstring.h lgc.h lvm.h
lopcodes.o: lopcodes.c lua.h luaconf.h lobject.h llimits.h lopcodes.h
loslib.o: loslib.c lua.h luaconf.h lauxlib.h lualib.h
lparser.o: lparser.c lua.h luaconf.h lcode.h llex.h lobject.h llimits.h \
lzio.h lmem.h lopcodes.h lparser.h ltable.h ldebug.h lstate.h ltm.h \
ldo.h lfunc.h lstring.h lgc.h
lstate.o: lstate.c lua.h luaconf.h ldebug.h lstate.h lobject.h llimits.h \
ltm.h lzio.h lmem.h ldo.h lfunc.h lgc.h llex.h lstring.h ltable.h
lstring.o: lstring.c lua.h luaconf.h lmem.h llimits.h lobject.h lstate.h \
ltm.h lzio.h lstring.h lgc.h
lstrlib.o: lstrlib.c lua.h luaconf.h lauxlib.h lualib.h
ltable.o: ltable.c lua.h luaconf.h ldebug.h lstate.h lobject.h llimits.h \
ltm.h lzio.h lmem.h ldo.h lgc.h ltable.h
ltablib.o: ltablib.c lua.h luaconf.h lauxlib.h lualib.h
ltests.o: ltests.c lua.h luaconf.h lapi.h lobject.h llimits.h lauxlib.h \
lcode.h llex.h lzio.h lmem.h lopcodes.h lparser.h ltable.h ldebug.h \
lstate.h ltm.h ldo.h lfunc.h lstring.h lgc.h lualib.h
ltm.o: ltm.c lua.h luaconf.h lobject.h llimits.h lstate.h ltm.h lzio.h \
lmem.h lstring.h lgc.h ltable.h
lua.o: lua.c lua.h luaconf.h lauxlib.h lualib.h
lundump.o: lundump.c lua.h luaconf.h ldebug.h lstate.h lobject.h \
llimits.h ltm.h lzio.h lmem.h ldo.h lfunc.h lopcodes.h lstring.h lgc.h \
lundump.h
lvm.o: lvm.c lua.h luaconf.h ldebug.h lstate.h lobject.h llimits.h ltm.h \
lzio.h lmem.h ldo.h lfunc.h lgc.h lopcodes.h lstring.h ltable.h lvm.h
lzio.o: lzio.c lua.h luaconf.h llimits.h lmem.h lstate.h lobject.h ltm.h \
lzio.h
lapi.o: lapi.c lua.h lapi.h lobject.h llimits.h ldebug.h lstate.h \
ltm.h ldo.h lzio.h lfunc.h lgc.h lmem.h lstring.h ltable.h lundump.h \
lvm.h
lauxlib.o: lauxlib.c lua.h lauxlib.h
lbaselib.o: lbaselib.c lua.h lauxlib.h lualib.h
lcode.o: lcode.c lua.h lcode.h llex.h lobject.h llimits.h lzio.h \
lopcodes.h lparser.h ltable.h ldebug.h lstate.h ltm.h ldo.h lmem.h
ldblib.o: ldblib.c lua.h lauxlib.h lualib.h
ldebug.o: ldebug.c lua.h lapi.h lobject.h llimits.h lcode.h llex.h \
lzio.h lopcodes.h lparser.h ltable.h ldebug.h lstate.h ltm.h ldo.h \
lfunc.h lstring.h lvm.h
ldo.o: ldo.c lua.h ldebug.h lstate.h lobject.h llimits.h ltm.h ldo.h \
lzio.h lfunc.h lgc.h lmem.h lopcodes.h lparser.h ltable.h lstring.h \
lundump.h lvm.h
lfunc.o: lfunc.c lua.h lfunc.h lobject.h llimits.h lmem.h lstate.h \
ltm.h
lgc.o: lgc.c lua.h ldebug.h lstate.h lobject.h llimits.h ltm.h ldo.h \
lzio.h lfunc.h lgc.h lmem.h lstring.h ltable.h
liolib.o: liolib.c lua.h lauxlib.h lualib.h
llex.o: llex.c lua.h ldo.h lobject.h llimits.h lstate.h ltm.h lzio.h \
llex.h lparser.h ltable.h lstring.h
lmathlib.o: lmathlib.c lua.h lauxlib.h lualib.h
lmem.o: lmem.c lua.h ldebug.h lstate.h lobject.h llimits.h ltm.h ldo.h \
lzio.h lmem.h
lobject.o: lobject.c lua.h ldo.h lobject.h llimits.h lstate.h ltm.h \
lzio.h lmem.h lstring.h lvm.h
lopcodes.o: lopcodes.c lua.h lobject.h llimits.h lopcodes.h
lparser.o: lparser.c lua.h lcode.h llex.h lobject.h llimits.h lzio.h \
lopcodes.h lparser.h ltable.h ldebug.h lstate.h ltm.h lfunc.h lmem.h \
lstring.h
lstate.o: lstate.c lua.h ldebug.h lstate.h lobject.h llimits.h ltm.h \
ldo.h lzio.h lfunc.h lgc.h llex.h lmem.h lstring.h ltable.h
lstring.o: lstring.c lua.h lmem.h llimits.h lobject.h lstate.h ltm.h \
lstring.h
lstrlib.o: lstrlib.c lua.h lauxlib.h lualib.h
ltable.o: ltable.c lua.h ldebug.h lstate.h lobject.h llimits.h ltm.h \
ldo.h lzio.h lmem.h ltable.h
ltablib.o: ltablib.c lua.h lauxlib.h lualib.h
ltests.o: ltests.c lua.h lapi.h lobject.h llimits.h lauxlib.h lcode.h \
llex.h lzio.h lopcodes.h lparser.h ltable.h ldebug.h lstate.h ltm.h \
ldo.h lfunc.h lmem.h lstring.h lualib.h
ltm.o: ltm.c lua.h lobject.h llimits.h lstate.h ltm.h lstring.h \
ltable.h
lua.o: lua.c lua.h lauxlib.h lualib.h
lundump.o: lundump.c lua.h ldebug.h lstate.h lobject.h llimits.h ltm.h \
lfunc.h lmem.h lopcodes.h lstring.h lundump.h lzio.h
lvm.o: lvm.c lua.h ldebug.h lstate.h lobject.h llimits.h ltm.h ldo.h \
lzio.h lfunc.h lgc.h lopcodes.h lstring.h ltable.h lvm.h
lzio.o: lzio.c lua.h llimits.h lzio.h
# (end of Makefile)

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