ltablib.c 9.7 KB

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  1. /*
  2. ** $Id: ltablib.c,v 1.76 2014/09/22 06:42:15 roberto Exp roberto $
  3. ** Library for Table Manipulation
  4. ** See Copyright Notice in lua.h
  5. */
  6. #include <limits.h>
  7. #include <stddef.h>
  8. #define ltablib_c
  9. #define LUA_LIB
  10. #include "lua.h"
  11. #include "lauxlib.h"
  12. #include "lualib.h"
  13. /*
  14. ** Structure with table-access functions
  15. */
  16. typedef struct {
  17. int (*geti) (lua_State *L, int idx, lua_Integer n);
  18. void (*seti) (lua_State *L, int idx, lua_Integer n);
  19. } TabA;
  20. /*
  21. ** Check that 'arg' has a table and set access functions in 'ta' to raw
  22. ** or non-raw according to the presence of corresponding metamethods.
  23. */
  24. static void checktab (lua_State *L, int arg, TabA *ta) {
  25. ta->geti = NULL; ta->seti = NULL;
  26. if (lua_getmetatable(L, arg)) {
  27. lua_pushliteral(L, "__index"); /* 'index' metamethod */
  28. if (lua_rawget(L, -2) != LUA_TNIL)
  29. ta->geti = lua_geti;
  30. lua_pushliteral(L, "__newindex"); /* 'newindex' metamethod */
  31. if (lua_rawget(L, -3) != LUA_TNIL)
  32. ta->seti = lua_seti;
  33. lua_pop(L, 3); /* pop metatable plus both metamethods */
  34. }
  35. if (ta->geti == NULL || ta->seti == NULL) {
  36. luaL_checktype(L, arg, LUA_TTABLE); /* must be table for raw methods */
  37. if (ta->geti == NULL) ta->geti = lua_rawgeti;
  38. if (ta->seti == NULL) ta->seti = lua_rawseti;
  39. }
  40. }
  41. #define aux_getn(L,n,ta) (checktab(L, n, ta), luaL_len(L, n))
  42. #if defined(LUA_COMPAT_MAXN)
  43. static int maxn (lua_State *L) {
  44. lua_Number max = 0;
  45. luaL_checktype(L, 1, LUA_TTABLE);
  46. lua_pushnil(L); /* first key */
  47. while (lua_next(L, 1)) {
  48. lua_pop(L, 1); /* remove value */
  49. if (lua_type(L, -1) == LUA_TNUMBER) {
  50. lua_Number v = lua_tonumber(L, -1);
  51. if (v > max) max = v;
  52. }
  53. }
  54. lua_pushnumber(L, max);
  55. return 1;
  56. }
  57. #endif
  58. static int tinsert (lua_State *L) {
  59. TabA ta;
  60. lua_Integer e = aux_getn(L, 1, &ta) + 1; /* first empty element */
  61. lua_Integer pos; /* where to insert new element */
  62. switch (lua_gettop(L)) {
  63. case 2: { /* called with only 2 arguments */
  64. pos = e; /* insert new element at the end */
  65. break;
  66. }
  67. case 3: {
  68. lua_Integer i;
  69. pos = luaL_checkinteger(L, 2); /* 2nd argument is the position */
  70. luaL_argcheck(L, 1 <= pos && pos <= e, 2, "position out of bounds");
  71. for (i = e; i > pos; i--) { /* move up elements */
  72. (*ta.geti)(L, 1, i - 1);
  73. (*ta.seti)(L, 1, i); /* t[i] = t[i - 1] */
  74. }
  75. break;
  76. }
  77. default: {
  78. return luaL_error(L, "wrong number of arguments to 'insert'");
  79. }
  80. }
  81. (*ta.seti)(L, 1, pos); /* t[pos] = v */
  82. return 0;
  83. }
  84. static int tremove (lua_State *L) {
  85. TabA ta;
  86. lua_Integer size = aux_getn(L, 1, &ta);
  87. lua_Integer pos = luaL_optinteger(L, 2, size);
  88. if (pos != size) /* validate 'pos' if given */
  89. luaL_argcheck(L, 1 <= pos && pos <= size + 1, 1, "position out of bounds");
  90. (*ta.geti)(L, 1, pos); /* result = t[pos] */
  91. for ( ; pos < size; pos++) {
  92. (*ta.geti)(L, 1, pos + 1);
  93. (*ta.seti)(L, 1, pos); /* t[pos] = t[pos + 1] */
  94. }
  95. lua_pushnil(L);
  96. (*ta.seti)(L, 1, pos); /* t[pos] = nil */
  97. return 1;
  98. }
  99. static int tmove (lua_State *L) {
  100. TabA ta;
  101. lua_Integer f = luaL_checkinteger(L, 2);
  102. lua_Integer e = luaL_checkinteger(L, 3);
  103. lua_Integer t = luaL_checkinteger(L, 4);
  104. int tt = !lua_isnoneornil(L, 5) ? 5 : 1; /* destination table */
  105. /* the following restriction avoids several problems with overflows */
  106. luaL_argcheck(L, f > 0, 2, "initial position must be positive");
  107. if (e >= f) { /* otherwise, nothing to move */
  108. lua_Integer n, i;
  109. ta.geti = (luaL_getmetafield(L, 1, "__index") == LUA_TNIL)
  110. ? (luaL_checktype(L, 1, LUA_TTABLE), lua_rawgeti)
  111. : lua_geti;
  112. ta.seti = (luaL_getmetafield(L, tt, "__newindex") == LUA_TNIL)
  113. ? (luaL_checktype(L, tt, LUA_TTABLE), lua_rawseti)
  114. : lua_seti;
  115. n = e - f + 1; /* number of elements to move */
  116. if (t > f) {
  117. for (i = n - 1; i >= 0; i--) {
  118. (*ta.geti)(L, 1, f + i);
  119. (*ta.seti)(L, tt, t + i);
  120. }
  121. }
  122. else {
  123. for (i = 0; i < n; i++) {
  124. (*ta.geti)(L, 1, f + i);
  125. (*ta.seti)(L, tt, t + i);
  126. }
  127. }
  128. }
  129. lua_pushvalue(L, tt); /* return "to table" */
  130. return 1;
  131. }
  132. static void addfield (lua_State *L, luaL_Buffer *b, TabA *ta, lua_Integer i) {
  133. (*ta->geti)(L, 1, i);
  134. if (!lua_isstring(L, -1))
  135. luaL_error(L, "invalid value (%s) at index %d in table for 'concat'",
  136. luaL_typename(L, -1), i);
  137. luaL_addvalue(b);
  138. }
  139. static int tconcat (lua_State *L) {
  140. TabA ta;
  141. luaL_Buffer b;
  142. size_t lsep;
  143. lua_Integer i, last;
  144. const char *sep = luaL_optlstring(L, 2, "", &lsep);
  145. checktab(L, 1, &ta);
  146. i = luaL_optinteger(L, 3, 1);
  147. last = luaL_opt(L, luaL_checkinteger, 4, luaL_len(L, 1));
  148. luaL_buffinit(L, &b);
  149. for (; i < last; i++) {
  150. addfield(L, &b, &ta, i);
  151. luaL_addlstring(&b, sep, lsep);
  152. }
  153. if (i == last) /* add last value (if interval was not empty) */
  154. addfield(L, &b, &ta, i);
  155. luaL_pushresult(&b);
  156. return 1;
  157. }
  158. /*
  159. ** {======================================================
  160. ** Pack/unpack
  161. ** =======================================================
  162. */
  163. static int pack (lua_State *L) {
  164. int i;
  165. int n = lua_gettop(L); /* number of elements to pack */
  166. lua_createtable(L, n, 1); /* create result table */
  167. lua_insert(L, 1); /* put it at index 1 */
  168. for (i = n; i >= 1; i--) /* assign elements */
  169. lua_rawseti(L, 1, i);
  170. lua_pushinteger(L, n);
  171. lua_setfield(L, 1, "n"); /* t.n = number of elements */
  172. return 1; /* return table */
  173. }
  174. static int unpack (lua_State *L) {
  175. TabA ta;
  176. lua_Integer i, e;
  177. lua_Unsigned n;
  178. checktab(L, 1, &ta);
  179. i = luaL_optinteger(L, 2, 1);
  180. e = luaL_opt(L, luaL_checkinteger, 3, luaL_len(L, 1));
  181. if (i > e) return 0; /* empty range */
  182. n = (lua_Unsigned)e - i; /* number of elements minus 1 (avoid overflows) */
  183. if (n >= (unsigned int)INT_MAX || !lua_checkstack(L, (int)(++n)))
  184. return luaL_error(L, "too many results to unpack");
  185. do { /* must have at least one element */
  186. (*ta.geti)(L, 1, i); /* push arg[i..e] */
  187. } while (i++ < e);
  188. return (int)n;
  189. }
  190. /* }====================================================== */
  191. /*
  192. ** {======================================================
  193. ** Quicksort
  194. ** (based on `Algorithms in MODULA-3', Robert Sedgewick;
  195. ** Addison-Wesley, 1993.)
  196. ** =======================================================
  197. */
  198. static void set2 (lua_State *L, TabA *ta, int i, int j) {
  199. (*ta->seti)(L, 1, i);
  200. (*ta->seti)(L, 1, j);
  201. }
  202. static int sort_comp (lua_State *L, int a, int b) {
  203. if (!lua_isnil(L, 2)) { /* function? */
  204. int res;
  205. lua_pushvalue(L, 2);
  206. lua_pushvalue(L, a-1); /* -1 to compensate function */
  207. lua_pushvalue(L, b-2); /* -2 to compensate function and `a' */
  208. lua_call(L, 2, 1);
  209. res = lua_toboolean(L, -1);
  210. lua_pop(L, 1);
  211. return res;
  212. }
  213. else /* a < b? */
  214. return lua_compare(L, a, b, LUA_OPLT);
  215. }
  216. static void auxsort (lua_State *L, TabA *ta, int l, int u) {
  217. while (l < u) { /* for tail recursion */
  218. int i, j;
  219. /* sort elements a[l], a[(l+u)/2] and a[u] */
  220. (*ta->geti)(L, 1, l);
  221. (*ta->geti)(L, 1, u);
  222. if (sort_comp(L, -1, -2)) /* a[u] < a[l]? */
  223. set2(L, ta, l, u); /* swap a[l] - a[u] */
  224. else
  225. lua_pop(L, 2);
  226. if (u-l == 1) break; /* only 2 elements */
  227. i = (l+u)/2;
  228. (*ta->geti)(L, 1, i);
  229. (*ta->geti)(L, 1, l);
  230. if (sort_comp(L, -2, -1)) /* a[i]<a[l]? */
  231. set2(L, ta, i, l);
  232. else {
  233. lua_pop(L, 1); /* remove a[l] */
  234. (*ta->geti)(L, 1, u);
  235. if (sort_comp(L, -1, -2)) /* a[u]<a[i]? */
  236. set2(L, ta, i, u);
  237. else
  238. lua_pop(L, 2);
  239. }
  240. if (u-l == 2) break; /* only 3 elements */
  241. (*ta->geti)(L, 1, i); /* Pivot */
  242. lua_pushvalue(L, -1);
  243. (*ta->geti)(L, 1, u-1);
  244. set2(L, ta, i, u-1);
  245. /* a[l] <= P == a[u-1] <= a[u], only need to sort from l+1 to u-2 */
  246. i = l; j = u-1;
  247. for (;;) { /* invariant: a[l..i] <= P <= a[j..u] */
  248. /* repeat ++i until a[i] >= P */
  249. while ((*ta->geti)(L, 1, ++i), sort_comp(L, -1, -2)) {
  250. if (i>=u) luaL_error(L, "invalid order function for sorting");
  251. lua_pop(L, 1); /* remove a[i] */
  252. }
  253. /* repeat --j until a[j] <= P */
  254. while ((*ta->geti)(L, 1, --j), sort_comp(L, -3, -1)) {
  255. if (j<=l) luaL_error(L, "invalid order function for sorting");
  256. lua_pop(L, 1); /* remove a[j] */
  257. }
  258. if (j<i) {
  259. lua_pop(L, 3); /* pop pivot, a[i], a[j] */
  260. break;
  261. }
  262. set2(L, ta, i, j);
  263. }
  264. (*ta->geti)(L, 1, u-1);
  265. (*ta->geti)(L, 1, i);
  266. set2(L, ta, u-1, i); /* swap pivot (a[u-1]) with a[i] */
  267. /* a[l..i-1] <= a[i] == P <= a[i+1..u] */
  268. /* adjust so that smaller half is in [j..i] and larger one in [l..u] */
  269. if (i-l < u-i) {
  270. j=l; i=i-1; l=i+2;
  271. }
  272. else {
  273. j=i+1; i=u; u=j-2;
  274. }
  275. auxsort(L, ta, j, i); /* call recursively the smaller one */
  276. } /* repeat the routine for the larger one */
  277. }
  278. static int sort (lua_State *L) {
  279. TabA ta;
  280. int n = (int)aux_getn(L, 1, &ta);
  281. luaL_checkstack(L, 50, ""); /* assume array is smaller than 2^50 */
  282. if (!lua_isnoneornil(L, 2)) /* is there a 2nd argument? */
  283. luaL_checktype(L, 2, LUA_TFUNCTION);
  284. lua_settop(L, 2); /* make sure there are two arguments */
  285. auxsort(L, &ta, 1, n);
  286. return 0;
  287. }
  288. /* }====================================================== */
  289. static const luaL_Reg tab_funcs[] = {
  290. {"concat", tconcat},
  291. #if defined(LUA_COMPAT_MAXN)
  292. {"maxn", maxn},
  293. #endif
  294. {"insert", tinsert},
  295. {"pack", pack},
  296. {"unpack", unpack},
  297. {"remove", tremove},
  298. {"move", tmove},
  299. {"sort", sort},
  300. {NULL, NULL}
  301. };
  302. LUAMOD_API int luaopen_table (lua_State *L) {
  303. luaL_newlib(L, tab_funcs);
  304. #if defined(LUA_COMPAT_UNPACK)
  305. /* _G.unpack = table.unpack */
  306. lua_getfield(L, -1, "unpack");
  307. lua_setglobal(L, "unpack");
  308. #endif
  309. return 1;
  310. }