sq_sqlite3.cpp 55 KB

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  1. /* Code generated by script */
  2. #include "squirrel.h"
  3. #include "sqlite3.h"
  4. #include <string.h>
  5. #include <stdio.h>
  6. #include "sqstdblobimpl.h"
  7. typedef struct sq_sqlite3_sdb sq_sqlite3_sdb;
  8. typedef struct sq_sqlite3_sdb_func sq_sqlite3_sdb_func;
  9. /* to use as C user data so i know what function sqlite is calling */
  10. struct sq_sqlite3_sdb_func {
  11. /* references to associated lua values */
  12. HSQOBJECT fn_step;
  13. HSQOBJECT fn_finalize;
  14. HSQOBJECT udata;
  15. sq_sqlite3_sdb *sdb;
  16. sq_sqlite3_sdb_func *next;
  17. };
  18. /* information about database */
  19. struct sq_sqlite3_sdb {
  20. /* associated squirrel vm */
  21. HSQUIRRELVM v;
  22. /* sqlite database handle */
  23. sqlite3 *db;
  24. /* sql functions stack usage */
  25. sq_sqlite3_sdb_func *func; /* top SQL function being called */
  26. /* references */
  27. HSQOBJECT busy_cb; /* busy callback */
  28. HSQOBJECT busy_udata;
  29. HSQOBJECT progress_cb; /* progress handler */
  30. HSQOBJECT progress_udata;
  31. HSQOBJECT trace_cb; /* trace callback */
  32. HSQOBJECT trace_udata;
  33. HSQOBJECT null_value;
  34. };
  35. SQ_OPT_STRING_STRLEN();
  36. static const SQChar *SQLite3_TAG = "SQLite3";
  37. static const SQChar *SQLite3_Stmt_TAG = "SQLite3Stmt";
  38. static const SQChar sqlite3_NULL_Name[] = _SC("sqlite3_NULL");
  39. static const SQChar nullName[] = _SC("NULL");
  40. static SQRESULT sqlite3_NULL_tostring(HSQUIRRELVM v){
  41. sq_pushstring(v, "", 0);
  42. return 1;
  43. }
  44. SQRegFunction sqlite3_NULL_methods[]={
  45. {_SC("_tostring"),sqlite3_NULL_tostring,1, _SC(".")},
  46. {0,0}
  47. };
  48. static SQRESULT get_sqlite3_instance(HSQUIRRELVM v, SQInteger idx, sq_sqlite3_sdb **sdb){
  49. SQRESULT _rc_;
  50. if((_rc_ = sq_getinstanceup(v,idx,(SQUserPointer*)sdb,(void*)SQLite3_TAG)) < 0) return _rc_;
  51. if(!*sdb) return sq_throwerror(v, _SC("database is closed"));
  52. }
  53. static SQRESULT get_sqlite3_stmt_instance(HSQUIRRELVM v, SQInteger idx, sqlite3_stmt **stmt){
  54. SQRESULT _rc_;
  55. if((_rc_ = sq_getinstanceup(v,idx,(SQUserPointer*)stmt,(void*)SQLite3_Stmt_TAG)) < 0) return _rc_;
  56. if(!*stmt) return sq_throwerror(v, _SC("statement is closed"));
  57. }
  58. //#define push_sqlite3_null(v) sq_getonregistrytable(v, sqlite3_NULL_Name, sizeof(sqlite3_NULL_Name)-1);
  59. //#define push_sqlite3_null(v) sq_pushobject(v, sqlite3_NULL);
  60. //#define push_sqlite3_null(v) sq_getbyname(v, 1, nullName, sizeof(nullName)-1)
  61. //#define push_sqlite3_null(v) sq_pushfromregistrytable(v, nullName, sizeof(nullName)-1)
  62. //#define push_sqlite3_null(v) {sq_pushregistrytable(v);sq_pushstring(v, sqlite3_NULL_Name, sizeof(sqlite3_NULL_Name)-1);sq_get(v, -2);sq_remove(v,-2);}
  63. //the line bellow is the fastest one, any other attempt till now was slower
  64. #define push_sqlite3_null(v) {sq_pushstring(v, nullName, sizeof(nullName)-1);sq_get(v, 1);}
  65. #define GET_sqlite3_INSTANCE_AT(idx) \
  66. sq_sqlite3_sdb *sdb=NULL; \
  67. if((_rc_ = get_sqlite3_instance(v,idx,&sdb)) < 0) return _rc_;\
  68. sqlite3 *self = sdb->db;
  69. #define GET_sqlite3_INSTANCE() GET_sqlite3_INSTANCE_AT(1)
  70. //#define GET_sqlite3_INSTANCE() SQ_GET_INSTANCE(v, 1, sqlite3, SQLite3_TAG)
  71. #define GET_sqlite3_stmt_INSTANCE() \
  72. sqlite3_stmt *self=NULL; \
  73. if((_rc_ = get_sqlite3_stmt_instance(v,1,&self)) < 0) return _rc_;
  74. enum e_type_result {tr_first_row_first_col, tr_first_row, tr_all_rows, tr_ddml};
  75. #define AS_STRING_ALWAYS 0x01
  76. #define NULL_AS_EMPTY_STR 0x02
  77. static void sqlite3_stmt_push_string(HSQUIRRELVM v, sqlite3_stmt *stmt, int col, int flags){
  78. const char *value = (const char*) sqlite3_column_text(stmt, col);
  79. if(value) sq_pushstring(v, value, sqlite3_column_bytes(stmt, col));
  80. else push_sqlite3_null(v);
  81. }
  82. static SQRESULT sqlite3_stmt_push_value(HSQUIRRELVM v, sqlite3_stmt *stmt, int col, int flags){
  83. const char *value;
  84. if(flags & AS_STRING_ALWAYS) sqlite3_stmt_push_string(v, stmt, col, flags);
  85. else
  86. {
  87. switch (sqlite3_column_type(stmt, col)) {
  88. case SQLITE_INTEGER:
  89. {
  90. sqlite_int64 i64 = sqlite3_column_int64(stmt, col);
  91. SQInteger n = (SQInteger)i64;
  92. if (n == i64)
  93. sq_pushinteger(v, n);
  94. else
  95. sq_pushstring(v, (const char*) sqlite3_column_text(stmt, col), sqlite3_column_bytes(stmt, col));
  96. }
  97. break;
  98. case SQLITE_FLOAT:
  99. sq_pushfloat(v, sqlite3_column_double(stmt, col));
  100. break;
  101. case SQLITE_TEXT:
  102. sqlite3_stmt_push_string(v, stmt, col, flags);
  103. break;
  104. case SQLITE_BLOB:
  105. value = (const char*) sqlite3_column_blob(stmt, col);
  106. if(value) sq_pushstring(v, value, sqlite3_column_bytes(stmt, col));
  107. else push_sqlite3_null(v);
  108. break;
  109. case SQLITE_NULL:
  110. push_sqlite3_null(v);
  111. break;
  112. default:
  113. push_sqlite3_null(v);
  114. break;
  115. }
  116. }
  117. return 1;
  118. }
  119. static void sqlite3_stmt_row_asArray(HSQUIRRELVM v, sqlite3_stmt *stmt, int flags){
  120. int col_count = sqlite3_column_count(stmt);
  121. sq_newarray(v, col_count);
  122. for(int i=0; i<col_count; ++i){
  123. sq_pushinteger(v, i);
  124. sqlite3_stmt_push_value(v, stmt, i, flags);
  125. sq_rawset(v, -3);
  126. }
  127. }
  128. static void sqlite3_stmt_row_asTable(HSQUIRRELVM v, sqlite3_stmt *stmt, int flags){
  129. int col_count = sqlite3_column_count(stmt);
  130. sq_newtable(v);
  131. for(int i=0; i<col_count; ++i){
  132. sq_pushstring(v, sqlite3_column_name(stmt, i), -1);
  133. sqlite3_stmt_push_value(v, stmt, i, flags);
  134. sq_rawset(v, -3);
  135. }
  136. }
  137. static void sqlite3_stmt_asArrayOfArrays(HSQUIRRELVM v, sqlite3_stmt *stmt, int flags){
  138. sq_newarray(v, 0);
  139. while(sqlite3_step(stmt) == SQLITE_ROW){
  140. sqlite3_stmt_row_asArray(v, stmt, flags);
  141. sq_arrayappend(v, -2);
  142. }
  143. }
  144. static void sqlite3_stmt_asArrayOfTables(HSQUIRRELVM v, sqlite3_stmt *stmt, int flags){
  145. sq_newarray(v, 0);
  146. while(sqlite3_step(stmt) == SQLITE_ROW){
  147. sqlite3_stmt_row_asTable(v, stmt, flags);
  148. sq_arrayappend(v, -2);
  149. }
  150. }
  151. static SQRESULT sqlite3_stmt_bind_value(HSQUIRRELVM v, sqlite3_stmt *stmt, int npar, int argn){
  152. int _rc_;
  153. SQObjectType ptype = sq_gettype(v, argn);
  154. switch(ptype){
  155. case OT_BOOL:
  156. SQ_GET_BOOL(v, argn, param_bool);
  157. _rc_ = sqlite3_bind_int(stmt, npar, param_bool == SQTrue ? 1 : 0);
  158. break;
  159. case OT_INTEGER:
  160. SQ_GET_INTEGER(v, argn, param_integer);
  161. _rc_ = sqlite3_bind_int64(stmt, npar, param_integer);
  162. break;
  163. case OT_FLOAT:
  164. SQ_GET_FLOAT(v, argn, param_float);
  165. _rc_ = sqlite3_bind_double(stmt, npar, param_float);
  166. break;
  167. case OT_STRING:{
  168. SQ_GET_STRING(v, argn, param_string);
  169. _rc_ = sqlite3_bind_text(stmt, npar, param_string, param_string_size, SQLITE_TRANSIENT);
  170. }
  171. break;
  172. case OT_NULL:
  173. _rc_ = sqlite3_bind_null(stmt, npar);
  174. break;
  175. default:
  176. return sq_throwerror(v, "Invalid bind parameter %d", npar);
  177. }
  178. return 1;
  179. }
  180. static SQRESULT sqlite3_stmt_prepare(HSQUIRRELVM v, sqlite3 *db, sqlite3_stmt **stmt, int params_start){
  181. SQ_FUNC_VARS(v);
  182. SQ_GET_STRING(v, params_start, szSQL);
  183. const char* szTail=0;
  184. if(sqlite3_prepare_v2(db, szSQL, -1, stmt, &szTail) != SQLITE_OK)
  185. {
  186. return sq_throwerror(v, sqlite3_errmsg(db));
  187. }
  188. if(_top_ > params_start){
  189. int nparams = sqlite3_bind_parameter_count(*stmt);
  190. int nparams_given = _top_-params_start;
  191. if(nparams != nparams_given){
  192. return sq_throwerror(v, "expect %d parameters but only %d given", nparams, nparams_given);
  193. }
  194. for(int i=1; i <= nparams; ++i){
  195. int argn = i+params_start;
  196. _rc_ = sqlite3_stmt_bind_value(v, *stmt, i, argn);
  197. if(_rc_ < 0) return _rc_;
  198. }
  199. }
  200. return 1;
  201. }
  202. static SQRESULT sq_sqlite3_stmt_releasehook(SQUserPointer p, SQInteger size, HSQUIRRELVM v)
  203. {
  204. sqlite3_stmt *stmt = ((sqlite3_stmt *)p);
  205. if(stmt) sqlite3_finalize(stmt);
  206. return 0;
  207. }
  208. static SQRESULT sq_sqlite3_stmt_constructor(HSQUIRRELVM v)
  209. {
  210. SQ_FUNC_VARS(v);
  211. GET_sqlite3_INSTANCE_AT(2);
  212. sqlite3_stmt *stmt = 0;
  213. if(_top_ > 2){
  214. _rc_ = sqlite3_stmt_prepare(v, self, &stmt, 3);
  215. }
  216. else
  217. {
  218. const char* szTail=0;
  219. if(sqlite3_prepare_v2(self, "select 'statement not prepared';", -1, &stmt, &szTail) != SQLITE_OK)
  220. {
  221. return sq_throwerror(v, sqlite3_errmsg(self));
  222. }
  223. }
  224. if(stmt){
  225. sq_setinstanceup(v, 1, stmt); //replace self for this instance with this new sqlite3_stmt
  226. sq_setreleasehook(v,1, sq_sqlite3_stmt_releasehook);
  227. }
  228. return _rc_;
  229. }
  230. static SQRESULT sq_sqlite3_stmt_finalize(HSQUIRRELVM v){
  231. SQ_FUNC_VARS_NO_TOP(v);
  232. GET_sqlite3_stmt_INSTANCE();
  233. if(sqlite3_finalize(self) == SQLITE_OK){
  234. sq_setinstanceup(v, 1, 0); //next calls will fail with "statement is closed"
  235. }
  236. else {
  237. sqlite3 *db = sqlite3_db_handle(self);
  238. return sq_throwerror(v, sqlite3_errmsg(db));
  239. }
  240. return 0;
  241. }
  242. static SQRESULT sq_sqlite3_stmt_prepare(HSQUIRRELVM v){
  243. SQ_FUNC_VARS_NO_TOP(v);
  244. GET_sqlite3_stmt_INSTANCE();
  245. sqlite3 *db = sqlite3_db_handle(self);
  246. sqlite3_stmt *stmt = 0;
  247. _rc_ = sqlite3_stmt_prepare(v, db, &stmt, 2);
  248. if(stmt){
  249. sqlite3_finalize(self); //finalize the previous sqlite3_stmt
  250. sq_setinstanceup(v, 1, stmt); //replace self for this instance with this new sqlite3_stmt
  251. }
  252. return _rc_;
  253. }
  254. static SQRESULT sq_sqlite3_stmt_get_sql(HSQUIRRELVM v){
  255. SQ_FUNC_VARS_NO_TOP(v);
  256. GET_sqlite3_stmt_INSTANCE();
  257. sq_pushstring(v, sqlite3_sql(self), -1);
  258. return 1;
  259. }
  260. static SQRESULT sq_sqlite3_stmt_bind(HSQUIRRELVM v){
  261. SQ_FUNC_VARS_NO_TOP(v);
  262. GET_sqlite3_stmt_INSTANCE();
  263. SQ_GET_INTEGER(v, 2, npar);
  264. return sqlite3_stmt_bind_value(v, self, npar, 3);
  265. }
  266. static SQRESULT sq_sqlite3_stmt_bind_parameter_index(HSQUIRRELVM v){
  267. SQ_FUNC_VARS_NO_TOP(v);
  268. GET_sqlite3_stmt_INSTANCE();
  269. SQ_GET_STRING(v, 2, spar);
  270. sq_pushinteger(v, sqlite3_bind_parameter_index(self, spar));
  271. return 1;
  272. }
  273. static SQRESULT sq_sqlite3_stmt_reset(HSQUIRRELVM v){
  274. SQ_FUNC_VARS_NO_TOP(v);
  275. GET_sqlite3_stmt_INSTANCE();
  276. sq_pushinteger(v, sqlite3_reset(self));
  277. return 1;
  278. }
  279. static SQRESULT sq_sqlite3_stmt_step(HSQUIRRELVM v){
  280. SQ_FUNC_VARS_NO_TOP(v);
  281. GET_sqlite3_stmt_INSTANCE();
  282. sq_pushinteger(v, sqlite3_step(self));
  283. return 1;
  284. }
  285. static SQRESULT sq_sqlite3_stmt_next_row(HSQUIRRELVM v){
  286. SQ_FUNC_VARS_NO_TOP(v);
  287. GET_sqlite3_stmt_INSTANCE();
  288. sq_pushbool(v, sqlite3_step(self) == SQLITE_ROW);
  289. return 1;
  290. }
  291. static SQRESULT sq_sqlite3_stmt_col_count(HSQUIRRELVM v){
  292. SQ_FUNC_VARS_NO_TOP(v);
  293. GET_sqlite3_stmt_INSTANCE();
  294. sq_pushinteger(v, sqlite3_column_count(self));
  295. return 1;
  296. }
  297. static SQRESULT sq_sqlite3_stmt_colsAsArray(HSQUIRRELVM v){
  298. SQ_FUNC_VARS_NO_TOP(v);
  299. GET_sqlite3_stmt_INSTANCE();
  300. int col_count = sqlite3_column_count(self);
  301. sq_newarray(v, col_count);
  302. for(int i=0; i<col_count; ++i){
  303. sq_pushinteger(v, i);
  304. sq_pushstring(v, sqlite3_column_name(self, i), -1);
  305. sq_rawset(v, -3);
  306. }
  307. return 1;
  308. }
  309. static SQRESULT sq_sqlite3_stmt_colsAsTable(HSQUIRRELVM v){
  310. SQ_FUNC_VARS_NO_TOP(v);
  311. GET_sqlite3_stmt_INSTANCE();
  312. int col_count = sqlite3_column_count(self);
  313. sq_newtable(v);
  314. for(int i=0; i<col_count; ++i){
  315. sq_pushstring(v, sqlite3_column_name(self, i), -1);
  316. sq_pushinteger(v, i);
  317. sq_rawset(v, -3);
  318. }
  319. return 1;
  320. }
  321. static SQRESULT sq_sqlite3_stmt_col_name(HSQUIRRELVM v){
  322. SQ_FUNC_VARS_NO_TOP(v);
  323. GET_sqlite3_stmt_INSTANCE();
  324. SQ_GET_INTEGER(v, 2, col);
  325. sq_pushstring(v, sqlite3_column_name(self, col), -1);
  326. return 1;
  327. }
  328. static SQRESULT sq_sqlite3_stmt_col_type(HSQUIRRELVM v){
  329. SQ_FUNC_VARS_NO_TOP(v);
  330. GET_sqlite3_stmt_INSTANCE();
  331. SQ_GET_INTEGER(v, 2, col);
  332. sq_pushinteger(v, sqlite3_column_type(self, col));
  333. return 1;
  334. }
  335. static SQRESULT sq_sqlite3_stmt_col_declared_type(HSQUIRRELVM v){
  336. SQ_FUNC_VARS_NO_TOP(v);
  337. GET_sqlite3_stmt_INSTANCE();
  338. SQ_GET_INTEGER(v, 2, col);
  339. sq_pushstring(v, sqlite3_column_decltype(self, col), -1);
  340. return 1;
  341. }
  342. static int get_col_index(HSQUIRRELVM v, sqlite3_stmt *self){
  343. SQInteger _rc_, col;
  344. switch(sq_gettype(v, 2)){
  345. case OT_INTEGER:
  346. sq_getinteger(v, 2, &col);
  347. break;
  348. case OT_STRING:{
  349. SQ_GET_STRING(v, 2, col_name);
  350. if(col_name_size == 0) return sq_throwerror(v, "column name can not be empty");
  351. col = -1;
  352. for(int i=0, len=sqlite3_column_count(self); i<len; ++i){
  353. if(strcasecmp(col_name, sqlite3_column_name(self, i)) == 0){
  354. col = i;
  355. break;
  356. }
  357. }
  358. if(col == -1) return sq_throwerror(v, "column name not found \"%s\"", col_name);
  359. }
  360. break;
  361. default:
  362. return sq_throwerror(v, "wrong parameter expected integer|string");
  363. }
  364. return col;
  365. }
  366. static SQRESULT sq_sqlite3_stmt_col(HSQUIRRELVM v){
  367. SQ_FUNC_VARS_NO_TOP(v);
  368. GET_sqlite3_stmt_INSTANCE();
  369. int col = get_col_index(v, self);
  370. if(col < 0) return col;
  371. sqlite3_stmt_push_value(v, self, col, 0);
  372. return 1;
  373. }
  374. static SQRESULT sq_sqlite3_stmt_asBool(HSQUIRRELVM v){
  375. SQ_FUNC_VARS_NO_TOP(v);
  376. GET_sqlite3_stmt_INSTANCE();
  377. int col = get_col_index(v, self);
  378. if(col < 0) return col;
  379. const unsigned char *b = sqlite3_column_text(self, col);
  380. sq_pushbool(v, b && *b == '1');
  381. return 1;
  382. }
  383. static SQRESULT sq_sqlite3_stmt_asInteger(HSQUIRRELVM v){
  384. SQ_FUNC_VARS_NO_TOP(v);
  385. GET_sqlite3_stmt_INSTANCE();
  386. int col = get_col_index(v, self);
  387. if(col < 0) return col;
  388. sq_pushinteger(v, sqlite3_column_int64(self, col));
  389. return 1;
  390. }
  391. static SQRESULT sq_sqlite3_stmt_asFloat(HSQUIRRELVM v){
  392. SQ_FUNC_VARS_NO_TOP(v);
  393. GET_sqlite3_stmt_INSTANCE();
  394. int col = get_col_index(v, self);
  395. if(col < 0) return col;
  396. sq_pushfloat(v, sqlite3_column_double(self, col));
  397. return 1;
  398. }
  399. static SQRESULT sq_sqlite3_stmt_StringOrNull(HSQUIRRELVM v, int withNull){
  400. SQ_FUNC_VARS_NO_TOP(v);
  401. GET_sqlite3_stmt_INSTANCE();
  402. int col = get_col_index(v, self);
  403. if(col < 0) return col;
  404. sqlite3_stmt_push_string(v, self, col, withNull ? 0 : NULL_AS_EMPTY_STR);
  405. return 1;
  406. }
  407. static SQRESULT sq_sqlite3_stmt_asString(HSQUIRRELVM v){
  408. return sq_sqlite3_stmt_StringOrNull(v, 0);
  409. }
  410. static SQRESULT sq_sqlite3_stmt_asStringOrNull(HSQUIRRELVM v){
  411. return sq_sqlite3_stmt_StringOrNull(v, 1);
  412. }
  413. static SQRESULT sq_sqlite3_stmt_asTable(HSQUIRRELVM v){
  414. SQ_FUNC_VARS(v);
  415. GET_sqlite3_stmt_INSTANCE();
  416. SQ_OPT_INTEGER(v, 2, flags, 0);
  417. sqlite3_stmt_row_asTable(v, self, flags);
  418. return 1;
  419. }
  420. static SQRESULT sq_sqlite3_stmt_asArray(HSQUIRRELVM v){
  421. SQ_FUNC_VARS(v);
  422. GET_sqlite3_stmt_INSTANCE();
  423. SQ_OPT_INTEGER(v, 2, flags, 0);
  424. sqlite3_stmt_row_asArray(v, self, flags);
  425. return 1;
  426. }
  427. static SQRESULT sq_sqlite3_stmt_asArrayOfArrays(HSQUIRRELVM v){
  428. SQ_FUNC_VARS(v);
  429. GET_sqlite3_stmt_INSTANCE();
  430. SQ_OPT_INTEGER(v, 2, flags, 0);
  431. sqlite3_stmt_asArrayOfArrays(v, self, flags);
  432. sqlite3_reset(self);
  433. return 1;
  434. }
  435. static SQRESULT sq_sqlite3_stmt_asArrayOfTables(HSQUIRRELVM v){
  436. SQ_FUNC_VARS(v);
  437. GET_sqlite3_stmt_INSTANCE();
  438. SQ_OPT_INTEGER(v, 2, flags, 0);
  439. sqlite3_stmt_asArrayOfTables(v, self, flags);
  440. sqlite3_reset(self);
  441. return 1;
  442. }
  443. /*utility functions*/
  444. static void append_escaping_json(SQBlob &json, const char *sz){
  445. if(sz){ //escape string
  446. int last_idx, idx;
  447. idx = last_idx = 0;
  448. for(; sz[idx]; ++idx){
  449. char c = sz[idx];
  450. switch(c){
  451. case '"':
  452. case '\n':
  453. case '\r':
  454. case '\\':{
  455. json.Write(sz+last_idx, idx-last_idx);
  456. last_idx = idx;
  457. if(c == '\n') {
  458. json.Write("\\n", 2);
  459. ++last_idx;
  460. }
  461. else if(c == '\r'){
  462. //skip it
  463. ++last_idx;
  464. }
  465. else
  466. {
  467. json.Write("\\", 1);
  468. }
  469. }
  470. }
  471. }
  472. //last part
  473. json.Write(sz+last_idx, idx-last_idx);
  474. }
  475. }
  476. static SQRESULT sq_sqlite3_stmt_asJsonArray(HSQUIRRELVM v) {
  477. SQ_FUNC_VARS(v);
  478. GET_sqlite3_stmt_INSTANCE();
  479. SQ_OPT_INTEGER(v, 3, withMetadata, 0);
  480. int col_count = sqlite3_column_count(self);
  481. int i;
  482. const char* value;
  483. SQBlob json(0, 8192);
  484. if(withMetadata){
  485. json.WriteZstr("{\n\"columns\":[\n");
  486. for(i=0; i < col_count; ++i){
  487. json.WriteZstr((i == 0 ? "\"" : ",\""));
  488. json.WriteZstr(sqlite3_column_name(self, i));
  489. json.WriteZstr("\"");
  490. }
  491. json.WriteZstr("\n],\n\"column_types\":[\n");
  492. for(i=0; i < col_count; ++i){
  493. json.WriteZstr((i == 0 ? "\"" : ",\""));
  494. json.WriteZstr(sqlite3_column_decltype(self, i));
  495. json.WriteZstr("\"");
  496. }
  497. json.WriteZstr("\n],\n\"rows\":[\n");
  498. }
  499. else {
  500. json.WriteZstr("[\n");
  501. }
  502. int row_count = 0;
  503. while(sqlite3_step(self) == SQLITE_ROW){
  504. json.WriteZstr((row_count++ == 0 ? "[" : ",["));
  505. for(i=0; i < col_count; ++i){
  506. json.WriteZstr((i == 0 ? "\"" : ",\""));
  507. value = (const char*)sqlite3_column_text(self, i);
  508. if(value)
  509. {
  510. switch(sqlite3_column_type(self, i))
  511. {
  512. case SQLITE_TEXT:
  513. {
  514. append_escaping_json(json, value);
  515. }
  516. break;
  517. default:
  518. json.WriteZstr(value);
  519. }
  520. }
  521. json.WriteZstr("\"");
  522. }
  523. json.WriteZstr("]\n");
  524. }
  525. json.WriteZstr("]");
  526. if(withMetadata) json.WriteZstr("\n}");
  527. sq_pushstring(v, (const SQChar*)json.GetBuf(), json.Len());
  528. return 1;
  529. }
  530. static SQRESULT sq_sqlite3_stmt_asJsonObject(HSQUIRRELVM v) {
  531. SQ_FUNC_VARS_NO_TOP(v);
  532. GET_sqlite3_stmt_INSTANCE();
  533. int col_count = sqlite3_column_count(self);
  534. int i;
  535. const char* value;
  536. SQBlob json(0, 8192);
  537. json.WriteZstr("{");
  538. if(sqlite3_step(self) == SQLITE_ROW){
  539. for(i=0; i < col_count; ++i){
  540. json.WriteZstr((i == 0 ? "\"" : "\",\""));
  541. append_escaping_json(json, (const char*)sqlite3_column_name(self, i));
  542. json.WriteZstr("\":\"");
  543. value = (const char*)sqlite3_column_text(self, i);
  544. if(value)
  545. {
  546. switch(sqlite3_column_type(self, i))
  547. {
  548. case SQLITE_TEXT:
  549. {
  550. append_escaping_json(json, value);
  551. }
  552. break;
  553. default:
  554. json.WriteZstr(value);
  555. }
  556. }
  557. }
  558. json.WriteZstr("\"");
  559. }
  560. json.WriteZstr("}");
  561. sq_pushstring(v, (const SQChar*)json.GetBuf(), json.Len());
  562. return 1;
  563. }
  564. #define UNSIGNED(n) n##U
  565. #define IBYTE1 UNSIGNED(255)
  566. #define IBYTE2 UNSIGNED(255*255)
  567. #define IBYTE3 UNSIGNED(255*255*255)
  568. #define IBYTE4 UNSIGNED(255*255*255*255)
  569. #define SIZE1BYTE 250
  570. #define SIZE2BYTE 251
  571. #define SIZE3BYTE 252
  572. #define SIZE4BYTE 253
  573. #define SLEMARK 254
  574. #define SLEEND 255
  575. static SQRESULT sle2array(HSQUIRRELVM v, const unsigned char *p, size_t sle_size, const unsigned char **next)
  576. {
  577. size_t size, data_count = 1, data_len = 0;
  578. if(sle_size == 0) {
  579. *next = 0;
  580. return 0;
  581. }
  582. while(*p != SLEEND) //data finished now follow digest
  583. {
  584. size = *p++;
  585. if(size >= SIZE1BYTE)
  586. {
  587. if(size == SIZE1BYTE)
  588. {
  589. //data bigger than 250 and less 500 next byte has more info
  590. size += *p++;
  591. }
  592. else if(size == SIZE2BYTE)
  593. {
  594. //data bigger than 250 next two bytes has more info
  595. size = (*p++ * IBYTE1);
  596. size += *p++;
  597. }
  598. else if(size == SIZE3BYTE)
  599. {
  600. //data bigger than 250 next three bytes has more info
  601. size = (*p++ * IBYTE2);
  602. size += (*p++ * IBYTE1);
  603. size += *p++;
  604. }
  605. else if(size == SIZE4BYTE)
  606. {
  607. //data bigger than 250 next four bytes has more info
  608. size = (*p++ * IBYTE3);
  609. size += (*p++ * IBYTE2);
  610. size += (*p++ * IBYTE1);
  611. size += *p++;
  612. }
  613. else if(size == SLEMARK)
  614. {
  615. //reserved can be used for multi part data, metadata, digest, ...
  616. break;
  617. }
  618. }
  619. sq_pushstring(v, (const char*)p, size);
  620. sq_arrayappend(v, -2);
  621. p += size;
  622. data_len += size;
  623. if(data_len > sle_size)
  624. {
  625. //something went wrong here
  626. return sq_throwerror(v, "We got more data than expected !");
  627. }
  628. }
  629. *next = ++p;
  630. return 0;
  631. }
  632. static SQRESULT sle2vec(HSQUIRRELVM v, const unsigned char *sle,
  633. size_t sle_size,
  634. const unsigned char **next)
  635. {
  636. int rc;
  637. sq_newarray(v, 0);
  638. if(sle[0] != '[') {
  639. return sq_throwerror(v, "Invalid encoded vector !");
  640. }
  641. if(sle[1] == ']') {
  642. *next = sle+2; //empty array
  643. return 0;
  644. }
  645. if((rc = sle2array(v, sle+1, sle_size-1, next)) < 0) return rc;
  646. if(!*next || *next[0] != ']'){
  647. return sq_throwerror(v, "Invalid end of vector !");
  648. }
  649. *next++;
  650. return 0;
  651. }
  652. static SQRESULT sle2vecOfvec(HSQUIRRELVM v)
  653. {
  654. SQ_FUNC_VARS(v);
  655. SQ_GET_STRING(v, 2, sle);
  656. SQ_OPT_INTEGER(v, 3, start, 0);
  657. int rc, data_count = 1;
  658. sq_newarray(v, 0);
  659. const unsigned char *next;
  660. if(sle[0] != '[') {
  661. return sq_throwerror(v, "Invalid encoded vector !");
  662. }
  663. if(sle[1] == ']') {
  664. //sq_pushinteger(v, start+2);
  665. return 1; //empty array
  666. }
  667. int saved_top = sq_gettop(v);
  668. if((rc=sle2vec(v, (const unsigned char *)sle+1, sle_size-1, &next)) < 0) return rc;
  669. while(next && *next == '['){
  670. sq_arrayappend(v, -2);
  671. data_count++;
  672. if((rc=sle2vec(v, next, sle_size - (next - (const unsigned char *)sle), &next)) < 0) return rc;
  673. }
  674. if(sq_gettop(v) != saved_top){
  675. //last added table left
  676. sq_arrayappend(v, -2);
  677. data_count++;
  678. }
  679. if(!next || *next != ']'){
  680. return sq_throwerror(v, "Invalid end of vector !");
  681. }
  682. //sq_pushinteger(v, ++next - sle);
  683. return 1;
  684. }
  685. typedef unsigned char slebuf_t[8];
  686. static int sleSize2buf(slebuf_t sle, size_t size){
  687. size_t next_size, tmp_size;
  688. if(size < SIZE1BYTE)
  689. {
  690. sle[0] = size;
  691. return 1;
  692. }
  693. else if(size < (SIZE1BYTE*2))
  694. {
  695. sle[0] = SIZE1BYTE;
  696. next_size = size - 250;
  697. sle[1] = next_size;
  698. return 2;
  699. }
  700. else if(size < IBYTE2)
  701. {
  702. sle[0] = SIZE2BYTE;
  703. next_size = size/IBYTE1;
  704. sle[1] = next_size;
  705. next_size = size%IBYTE1;
  706. sle[2] = next_size;
  707. return 3;
  708. }
  709. else if(size < IBYTE3)
  710. {
  711. sle[0] = SIZE3BYTE;
  712. next_size = size/IBYTE2;
  713. sle[1] = next_size;
  714. tmp_size = size%IBYTE2;
  715. next_size = tmp_size/IBYTE1;
  716. sle[2] = next_size;
  717. next_size = tmp_size%IBYTE1;
  718. sle[3] = next_size;
  719. return 4;
  720. }
  721. else if(size < IBYTE4)
  722. {
  723. sle[0] = SIZE4BYTE;
  724. next_size = size/IBYTE3;
  725. sle[1] = next_size;
  726. tmp_size = size%IBYTE3;
  727. next_size = tmp_size/IBYTE2;
  728. sle[2] = next_size;
  729. tmp_size = tmp_size%IBYTE2;
  730. next_size = tmp_size/IBYTE1;
  731. sle[3] = next_size;
  732. next_size = tmp_size%IBYTE1;
  733. sle[5] = next_size;
  734. return 5;
  735. }
  736. return 0;
  737. }
  738. static SQRESULT get_sle_size(HSQUIRRELVM v){
  739. SQ_FUNC_VARS_NO_TOP(v);
  740. slebuf_t slebuf;
  741. SQ_GET_INTEGER(v, 2, size);
  742. int slesize = sleSize2buf(slebuf, size);
  743. if(slesize) {
  744. sq_pushstring(v, (const char *)slebuf, slesize);
  745. return 1;
  746. }
  747. return 0;
  748. }
  749. static int add2sle(SQBlob &sle, const char *str, size_t size){
  750. slebuf_t slebuf;
  751. int slesize = sleSize2buf(slebuf, size);
  752. if(slesize) sle.Write((const char *)slebuf, slesize);
  753. if(size) sle.Write(str, size);
  754. return size;
  755. }
  756. static SQRESULT sq_sqlite3_stmt_asSleArray(HSQUIRRELVM v) {
  757. SQ_FUNC_VARS_NO_TOP(v);
  758. GET_sqlite3_stmt_INSTANCE();
  759. int col_count = sqlite3_column_count(self);
  760. int i;
  761. const char *value;
  762. SQBlob sle(0, 8192);
  763. sle.WriteZstr("[[");
  764. for(i=0; i < col_count; ++i){
  765. value = sqlite3_column_name(self, i);
  766. add2sle(sle, value, strlen(value));
  767. }
  768. sle.WriteChar(SLEEND);
  769. sle.WriteChar(']');
  770. while(sqlite3_step(self) == SQLITE_ROW){
  771. sle.WriteChar('[');
  772. for(i=0; i < col_count; ++i){
  773. switch(sqlite3_column_type(self, i))
  774. {
  775. case SQLITE_BLOB:
  776. {
  777. add2sle(sle, (const char*)sqlite3_column_blob(self, i),
  778. sqlite3_column_bytes(self, i));
  779. }
  780. break;
  781. default:
  782. add2sle(sle, (const char*)sqlite3_column_text(self, i),
  783. sqlite3_column_bytes(self, i));
  784. }
  785. }
  786. sle.WriteChar(SLEEND);
  787. sle.WriteChar(']');
  788. }
  789. sle.WriteChar(']');
  790. sq_pushstring(v, (const SQChar*)sle.GetBuf(), sle.Len());
  791. return 1;
  792. }
  793. #define _DECL_FUNC(name,nparams,tycheck) {_SC(#name), sq_sqlite3_stmt_##name,nparams,tycheck}
  794. static SQRegFunction sq_sqlite3_stmt_methods[] =
  795. {
  796. _DECL_FUNC(constructor, -2, _SC("xxs s|n|b|o")),
  797. _DECL_FUNC(finalize, 1, _SC("x")),
  798. _DECL_FUNC(prepare, -2, _SC("xs s|n|b|o")),
  799. _DECL_FUNC(get_sql, 1, _SC("x")),
  800. _DECL_FUNC(bind, 3, _SC("xi s|n|b|o")),
  801. _DECL_FUNC(bind_parameter_index, 2, _SC("xs")),
  802. _DECL_FUNC(step, 1, _SC("x")),
  803. _DECL_FUNC(reset, 1, _SC("x")),
  804. _DECL_FUNC(next_row, 1, _SC("x")),
  805. _DECL_FUNC(colsAsArray, 1, _SC("x")),
  806. _DECL_FUNC(colsAsTable, 1, _SC("x")),
  807. _DECL_FUNC(col_count, 1, _SC("x")),
  808. _DECL_FUNC(col_name, 2, _SC("xi")),
  809. _DECL_FUNC(col_type, 2, _SC("xi")),
  810. _DECL_FUNC(col_declared_type, 2, _SC("xi")),
  811. _DECL_FUNC(asArray, -1, _SC("xi")),
  812. _DECL_FUNC(asTable, -1, _SC("xi")),
  813. _DECL_FUNC(asArrayOfArrays, -1, _SC("xi")),
  814. _DECL_FUNC(asArrayOfTables, -1, _SC("xi")),
  815. _DECL_FUNC(col, 2, _SC("x i|s")),
  816. _DECL_FUNC(asString, 2, _SC("x i|s")),
  817. _DECL_FUNC(asStringOrNull, 2, _SC("x i|s")),
  818. _DECL_FUNC(asInteger, 2, _SC("x i|s")),
  819. _DECL_FUNC(asBool, 2, _SC("x i|s")),
  820. _DECL_FUNC(asFloat, 2, _SC("x i|s")),
  821. {0,0}
  822. };
  823. #undef _DECL_FUNC
  824. static SQRESULT sqlite3_exec_fmt(HSQUIRRELVM v, e_type_result type_result, int null_as_empty_str=1){
  825. SQ_FUNC_VARS_NO_TOP(v);
  826. GET_sqlite3_INSTANCE();
  827. SQ_GET_STRING(v, 2, szSQL);
  828. sqlite3_stmt *stmt = 0;
  829. _rc_ = sqlite3_stmt_prepare(v, self, &stmt, 2);
  830. if(_rc_ < 0){
  831. if(stmt) sqlite3_finalize(stmt);
  832. return _rc_;
  833. }
  834. int rc = sqlite3_step(stmt);
  835. if(type_result == tr_ddml) {
  836. if(rc != SQLITE_DONE) {
  837. sqlite3_finalize(stmt);
  838. return sq_throwerror(v, "SQL is not a DDML %d %s", rc, sqlite3_errmsg(self));
  839. }
  840. sq_pushinteger(v, sqlite3_changes(sqlite3_db_handle(stmt)));
  841. }
  842. else
  843. {
  844. if(rc != SQLITE_ROW) {
  845. sqlite3_finalize(stmt);
  846. return sq_throwerror(v, "%d %s", rc, sqlite3_errmsg(self));
  847. }
  848. switch(type_result){
  849. case tr_first_row_first_col:
  850. sqlite3_stmt_push_value(v, stmt, 0, 0);
  851. break;
  852. case tr_first_row:
  853. sqlite3_stmt_row_asArray(v, stmt, NULL_AS_EMPTY_STR|AS_STRING_ALWAYS);
  854. break;
  855. case tr_all_rows:
  856. sqlite3_stmt_asArrayOfArrays(v, stmt, NULL_AS_EMPTY_STR|AS_STRING_ALWAYS);
  857. break;
  858. default:
  859. sqlite3_finalize(stmt);
  860. return sq_throwerror(v, "Unknown requested return type %d", type_result);
  861. }
  862. }
  863. sqlite3_finalize(stmt);
  864. return 1;
  865. }
  866. static SQRESULT sq_sqlite3_releasehook(SQUserPointer p, SQInteger size, HSQUIRRELVM v)
  867. {
  868. sq_sqlite3_sdb *sdb = ((sq_sqlite3_sdb *)p);
  869. if(sdb){
  870. sqlite3_close_v2(sdb->db);
  871. if(sdb->func){
  872. sq_sqlite3_sdb_func *func, *func_next;
  873. func = sdb->func;
  874. while (func) {
  875. func_next = func->next;
  876. sq_release(sdb->v, &func->fn_step);
  877. sq_release(sdb->v, &func->fn_finalize);
  878. sq_release(sdb->v, &func->udata);
  879. sq_free(func, sizeof(sq_sqlite3_sdb_func));
  880. func = func_next;
  881. }
  882. sdb->func = NULL;
  883. }
  884. /* 'free' all references */
  885. sq_release(sdb->v, &sdb->busy_cb);
  886. sq_release(sdb->v, &sdb->busy_udata);
  887. sq_release(sdb->v, &sdb->progress_cb);
  888. sq_release(sdb->v, &sdb->progress_udata);
  889. sq_release(sdb->v, &sdb->trace_cb);
  890. sq_release(sdb->v, &sdb->trace_udata);
  891. sq_release(sdb->v, &sdb->null_value);
  892. sq_free(sdb, sizeof(sq_sqlite3_sdb));
  893. }
  894. return 0;
  895. }
  896. static SQRESULT sq_sqlite3_constructor(HSQUIRRELVM v)
  897. {
  898. SQ_FUNC_VARS(v);
  899. SQ_GET_STRING(v, 2, dbname);
  900. SQ_OPT_INTEGER(v, 3, flags, SQLITE_OPEN_CREATE | SQLITE_OPEN_READWRITE | SQLITE_OPEN_SHAREDCACHE | SQLITE_OPEN_SUBLATIN_NA_LIKE);
  901. sqlite3 *db;
  902. int rc = sqlite3_open_v2(dbname, &db, flags, 0);
  903. if(rc != SQLITE_OK) return sq_throwerror(v, "Failed to open database ! %d", rc);
  904. sq_sqlite3_sdb *sdb = (sq_sqlite3_sdb *)sq_malloc(sizeof(sq_sqlite3_sdb));
  905. memset(sdb, 0, sizeof(sq_sqlite3_sdb));
  906. sdb->db = db;
  907. sdb->v = v;
  908. sq_resetobject(&sdb->busy_cb);
  909. sq_resetobject(&sdb->busy_udata);
  910. sq_resetobject(&sdb->progress_cb);
  911. sq_resetobject(&sdb->progress_udata);
  912. sq_resetobject(&sdb->trace_cb);
  913. sq_resetobject(&sdb->trace_udata);
  914. sq_setinstanceup(v, 1, sdb);
  915. sq_setreleasehook(v,1, sq_sqlite3_releasehook);
  916. return 1;
  917. }
  918. static SQRESULT sq_sqlite3_close(HSQUIRRELVM v){
  919. SQ_FUNC_VARS_NO_TOP(v);
  920. GET_sqlite3_INSTANCE();
  921. if(sqlite3_close_v2(self) == SQLITE_OK){
  922. sq_setinstanceup(v, 1, 0); //next calls will fail with "database is closed"
  923. }
  924. else {
  925. return sq_throwerror(v, sqlite3_errmsg(self));
  926. }
  927. return 0;
  928. }
  929. /* bool IsAutoCommitOn( ) */
  930. static SQRESULT sq_sqlite3_IsAutoCommitOn(HSQUIRRELVM v){
  931. SQ_FUNC_VARS_NO_TOP(v);
  932. GET_sqlite3_INSTANCE();
  933. sq_pushbool(v, sqlite3_get_autocommit(self) ? SQTrue : SQFalse);
  934. return 1;
  935. }
  936. /* int changes( ) */
  937. static SQRESULT sq_sqlite3_changes(HSQUIRRELVM v){
  938. SQ_FUNC_VARS_NO_TOP(v);
  939. GET_sqlite3_INSTANCE();
  940. sq_pushinteger(v, sqlite3_total_changes(self));
  941. return 1;
  942. }
  943. static SQRESULT sq_sqlite3_exec(HSQUIRRELVM v){
  944. return sqlite3_exec_fmt(v, tr_all_rows);
  945. }
  946. /* int exec_dml( const char * szSQL ) */
  947. static SQRESULT sq_sqlite3_exec_dml(HSQUIRRELVM v){
  948. return sqlite3_exec_fmt(v, tr_ddml);
  949. }
  950. /* bool exec_get_one( std::string & result , const char * szSQL ) */
  951. static SQRESULT sq_sqlite3_exec_get_one(HSQUIRRELVM v){
  952. return sqlite3_exec_fmt(v, tr_first_row_first_col);
  953. }
  954. static SQRESULT sq_sqlite3_exec_get_first_row(HSQUIRRELVM v){
  955. return sqlite3_exec_fmt(v, tr_first_row);
  956. }
  957. /* const char * get_db_name( ) */
  958. static SQRESULT sq_sqlite3_get_db_name(HSQUIRRELVM v){
  959. SQ_FUNC_VARS_NO_TOP(v);
  960. GET_sqlite3_INSTANCE();
  961. sq_pushstring(v, sqlite3_db_filename(self, "main"), -1);
  962. return 1;
  963. }
  964. /* sqlite3_int64 last_row_id( ) */
  965. static SQRESULT sq_sqlite3_last_row_id(HSQUIRRELVM v){
  966. SQ_FUNC_VARS_NO_TOP(v);
  967. GET_sqlite3_INSTANCE();
  968. sq_pushinteger(v, sqlite3_last_insert_rowid(self));
  969. return 1;
  970. }
  971. /* stmt * prepare( const char * sql ) */
  972. static SQRESULT sq_sqlite3_prepare(HSQUIRRELVM v){
  973. SQ_FUNC_VARS_NO_TOP(v);
  974. GET_sqlite3_INSTANCE();
  975. SQ_GET_STRING(v, 2, sql);
  976. sq_pushstring(v, SQLite3_Stmt_TAG, -1);
  977. if(sq_getonroottable(v) == SQ_ERROR) return SQ_ERROR;
  978. sq_pushroottable(v);
  979. sq_push(v, 1);
  980. sq_push(v, 2);
  981. if(sq_call(v, 3, SQTrue, SQFalse) != SQ_OK) return SQ_ERROR;
  982. return 1;
  983. }
  984. /* void set_busy_timeout( int nMillisecs ) */
  985. static SQRESULT sq_sqlite3_set_busy_timeout(HSQUIRRELVM v){
  986. SQ_FUNC_VARS_NO_TOP(v);
  987. GET_sqlite3_INSTANCE();
  988. SQ_GET_INTEGER(v, 2, nMillisecs);
  989. //self->set_busy_timeout(nMillisecs);
  990. return 0;
  991. }
  992. /* int total_changes( ) */
  993. static SQRESULT sq_sqlite3_total_changes(HSQUIRRELVM v){
  994. SQ_FUNC_VARS_NO_TOP(v);
  995. GET_sqlite3_INSTANCE();
  996. sq_pushinteger(v, sqlite3_total_changes(self));
  997. return 1;
  998. }
  999. static SQRESULT sq_sqlite3_enable_shared_cache(HSQUIRRELVM v) {
  1000. SQ_FUNC_VARS_NO_TOP(v);
  1001. SQ_GET_BOOL(v, 2, bhow);
  1002. sq_pushbool(v, sqlite3_enable_shared_cache(bhow) == SQLITE_OK);
  1003. return 1;
  1004. }
  1005. static SQRESULT sq_sqlite3_sleep(HSQUIRRELVM v) {
  1006. SQ_FUNC_VARS_NO_TOP(v);
  1007. SQ_GET_INTEGER(v, 2, n);
  1008. sqlite3_sleep(n);
  1009. return 0;
  1010. }
  1011. static SQRESULT sq_sqlite3_version(HSQUIRRELVM v) {
  1012. sq_pushstring(v, sqlite3_libversion(), -1);
  1013. return 1;
  1014. }
  1015. static SQRESULT sq_sqlite3_errcode(HSQUIRRELVM v) {
  1016. SQ_FUNC_VARS_NO_TOP(v);
  1017. GET_sqlite3_INSTANCE();
  1018. sq_pushinteger(v, sqlite3_errcode(self));
  1019. return 1;
  1020. }
  1021. static SQRESULT sq_sqlite3_errmsg(HSQUIRRELVM v) {
  1022. SQ_FUNC_VARS_NO_TOP(v);
  1023. GET_sqlite3_INSTANCE();
  1024. sq_pushstring(v, sqlite3_errmsg(self), -1);
  1025. return 1;
  1026. }
  1027. #ifndef WIN32
  1028. static SQRESULT sq_sqlite3_temp_directory(HSQUIRRELVM v) {
  1029. SQ_FUNC_VARS(v);
  1030. const char *oldtemp = sqlite3_temp_directory;
  1031. if (_top_ > 1) {
  1032. SQ_GET_STRING(v, 2, temp);
  1033. if (sqlite3_temp_directory) {
  1034. sqlite3_free((char*)sqlite3_temp_directory);
  1035. }
  1036. if (temp && temp_size) {
  1037. sqlite3_temp_directory = sqlite3_mprintf("%s", temp);
  1038. }
  1039. else {
  1040. sqlite3_temp_directory = NULL;
  1041. }
  1042. }
  1043. sq_pushstring(v, oldtemp, -1);
  1044. return 1;
  1045. }
  1046. #endif
  1047. #ifdef SQLITE_HAS_CODEC
  1048. //#include "codecext.h"
  1049. /*
  1050. ** Params: db, sql
  1051. ** returns: code, compiled length or error message
  1052. */
  1053. static SQRESULT sq_sqlite3_key(HSQUIRRELVM v) {
  1054. SQ_FUNC_VARS_NO_TOP(v);
  1055. GET_sqlite3_INSTANCE();
  1056. SQ_GET_STRING(v, 2, key);
  1057. sq_pushinteger(v, sqlite3_key(self, key, key_size));
  1058. return 1;
  1059. }
  1060. /*
  1061. ** Params: db, sql
  1062. ** returns: code, compiled length or error message
  1063. */
  1064. static SQRESULT sq_sqlite3_rekey(HSQUIRRELVM v) {
  1065. SQ_FUNC_VARS_NO_TOP(v);
  1066. GET_sqlite3_INSTANCE();
  1067. SQ_GET_STRING(v, 2, key);
  1068. sq_pushinteger(v, sqlite3_rekey(self, key, key_size));
  1069. return 1;
  1070. }
  1071. #endif
  1072. #if !defined(SQLITE_OMIT_PROGRESS_CALLBACK) || !SQLITE_OMIT_PROGRESS_CALLBACK
  1073. /*
  1074. ** progress handler:
  1075. ** Params: database, number of opcodes, callback function, userdata
  1076. **
  1077. ** callback function:
  1078. ** Params: userdata
  1079. ** returns: 0 to return immediatly and return SQLITE_ABORT, non-zero to continue
  1080. */
  1081. static int db_progress_callback(void *user) {
  1082. int result = 1; /* abort by default */
  1083. sq_sqlite3_sdb *sdb = (sq_sqlite3_sdb*)user;
  1084. HSQUIRRELVM v = sdb->v;
  1085. int top = sq_gettop(v);
  1086. sq_pushobject(v, sdb->progress_cb);
  1087. sq_pushroottable(v); //this
  1088. sq_pushobject(v, sdb->progress_udata);
  1089. /* call lua function */
  1090. if (sq_call(v, 2, SQTrue, SQFalse) == SQ_OK)
  1091. sq_getinteger(v, -1, &result);
  1092. sq_settop(v, top);
  1093. return result;
  1094. }
  1095. static SQRESULT sq_sqlite3_progress_handler(HSQUIRRELVM v) {
  1096. SQ_FUNC_VARS(v);
  1097. GET_sqlite3_INSTANCE();
  1098. if (_top_ < 2 || sq_gettype(v, 2) == OT_NULL) {
  1099. sq_release(v, &sdb->progress_cb);
  1100. sq_release(v, &sdb->progress_udata);
  1101. sq_resetobject(&sdb->progress_cb);
  1102. sq_resetobject(&sdb->progress_udata);
  1103. /* clear busy handler */
  1104. sqlite3_progress_handler(self, 0, NULL, NULL);
  1105. }
  1106. else {
  1107. SQ_GET_INTEGER(v, 2, nop);
  1108. if(sq_gettype(v, 3) != OT_CLOSURE)
  1109. return sq_throwerror(v, _SC("invalid second parameter expected closure"));
  1110. sq_getstackobj(v, 3, &sdb->progress_cb);
  1111. sq_addref(v, &sdb->progress_cb);
  1112. if(_top_ > 3){
  1113. sq_getstackobj(v, 4, &sdb->progress_udata);
  1114. sq_addref(v, &sdb->progress_udata);
  1115. }
  1116. /* set progress callback */
  1117. sqlite3_progress_handler(self, nop, db_progress_callback, sdb);
  1118. }
  1119. return 0;
  1120. }
  1121. #else /* #if !defined(SQLITE_OMIT_PROGRESS_CALLBACK) || !SQLITE_OMIT_PROGRESS_CALLBACK */
  1122. static SQRESULT sq_sqlite3_progress_handler(HSQUIRRELVM v) {
  1123. return sq_throwerror(v, _SC("progress callback support disabled at compile time"));
  1124. return 0;
  1125. }
  1126. #endif /* #if !defined(SQLITE_OMIT_PROGRESS_CALLBACK) || !SQLITE_OMIT_PROGRESS_CALLBACK */
  1127. /*
  1128. ** trace callback:
  1129. ** Params: database, callback function, userdata
  1130. **
  1131. ** callback function:
  1132. ** Params: userdata, sql
  1133. */
  1134. static void db_trace_callback(void *user, const char *sql) {
  1135. sq_sqlite3_sdb *sdb = (sq_sqlite3_sdb*)user;
  1136. HSQUIRRELVM v = sdb->v;
  1137. int top = sq_gettop(v);
  1138. /* setup squirrel callback call */
  1139. sq_pushobject(v, sdb->trace_cb);
  1140. sq_pushroottable(v);
  1141. sq_pushobject(v, sdb->trace_udata);
  1142. sq_pushstring(v, sql, -1); /* traced sql statement */
  1143. /* call squirrel function */
  1144. sq_call(v, 3, SQFalse, SQFalse);
  1145. /* ignore any error generated by this function */
  1146. sq_settop(v, top);
  1147. }
  1148. static SQRESULT sq_sqlite3_trace(HSQUIRRELVM v) {
  1149. SQ_FUNC_VARS(v);
  1150. GET_sqlite3_INSTANCE();
  1151. if (_top_ < 2 || sq_gettype(v, 2) == OT_NULL) {
  1152. sq_release(v, &sdb->trace_cb);
  1153. sq_release(v, &sdb->trace_udata);
  1154. sq_resetobject(&sdb->trace_cb);
  1155. sq_resetobject(&sdb->trace_udata);
  1156. /* clear trace handler */
  1157. sqlite3_trace(self, NULL, NULL);
  1158. }
  1159. else {
  1160. if(sq_gettype(v, 2) != OT_CLOSURE)
  1161. return sq_throwerror(v, _SC("invalid fisrt parameter expected closure"));
  1162. sq_getstackobj(v, 2, &sdb->trace_cb);
  1163. sq_addref(v, &sdb->trace_cb);
  1164. if(_top_ > 2){
  1165. sq_getstackobj(v, 3, &sdb->trace_udata);
  1166. sq_addref(v, &sdb->trace_udata);
  1167. }
  1168. /* set trace callback */
  1169. sqlite3_trace(self, db_trace_callback, sdb);
  1170. }
  1171. return 0;
  1172. }
  1173. /*
  1174. ** busy handler:
  1175. ** Params: database, callback function, userdata
  1176. **
  1177. ** callback function:
  1178. ** Params: userdata, number of tries
  1179. ** returns: 0 to return immediatly and return SQLITE_BUSY, non-zero to try again
  1180. */
  1181. static int db_busy_callback(void *user, int tries) {
  1182. SQBool retry = SQFalse; /* abort by default */
  1183. sq_sqlite3_sdb *sdb = (sq_sqlite3_sdb*)user;
  1184. HSQUIRRELVM v = sdb->v;
  1185. int top = sq_gettop(v);
  1186. sq_pushobject(v, sdb->busy_cb);
  1187. sq_pushroottable(v);
  1188. sq_pushobject(v, sdb->busy_udata);
  1189. sq_pushinteger(v, tries);
  1190. /* call lua function */
  1191. if (sq_call(v, 3, SQTrue, SQFalse) == SQ_OK)
  1192. sq_getbool(v, -1, &retry);
  1193. sq_settop(v, top);
  1194. return retry == SQTrue;
  1195. }
  1196. static SQRESULT sq_sqlite3_busy_handler(HSQUIRRELVM v) {
  1197. SQ_FUNC_VARS(v);
  1198. GET_sqlite3_INSTANCE();
  1199. if (_top_ < 2 || sq_gettype(v, 2) == OT_NULL) {
  1200. sq_release(v, &sdb->busy_cb);
  1201. sq_release(v, &sdb->busy_udata);
  1202. sq_resetobject(&sdb->busy_cb);
  1203. sq_resetobject(&sdb->busy_udata);
  1204. /* clear busy handler */
  1205. sqlite3_busy_handler(self, NULL, NULL);
  1206. }
  1207. else {
  1208. if(sq_gettype(v, 2) != OT_CLOSURE)
  1209. return sq_throwerror(v, _SC("invalid fisrt parameter expected closure"));
  1210. sq_getstackobj(v, 2, &sdb->busy_cb);
  1211. sq_addref(v, &sdb->busy_cb);
  1212. if(_top_ > 2){
  1213. sq_getstackobj(v, 3, &sdb->busy_udata);
  1214. sq_addref(v, &sdb->busy_udata);
  1215. }
  1216. /* set busy callback */
  1217. sqlite3_busy_handler(self, db_busy_callback, sdb);
  1218. }
  1219. return 0;
  1220. }
  1221. static SQRESULT sq_sqlite3_busy_timeout(HSQUIRRELVM v) {
  1222. SQ_FUNC_VARS_NO_TOP(v);
  1223. GET_sqlite3_INSTANCE();
  1224. SQ_GET_INTEGER(v, 2, timeout);
  1225. sqlite3_busy_timeout(self, timeout);
  1226. /* if there was a timeout callback registered, it is now
  1227. ** invalid/useless. free any references we may have */
  1228. sq_release(v, &sdb->busy_cb);
  1229. sq_resetobject(&sdb->busy_cb);
  1230. sq_release(v, &sdb->busy_udata);
  1231. sq_resetobject(&sdb->busy_udata);
  1232. return 0;
  1233. }
  1234. static SQRESULT sq_sqlite3_interrupt(HSQUIRRELVM v) {
  1235. SQ_FUNC_VARS_NO_TOP(v);
  1236. GET_sqlite3_INSTANCE();
  1237. sqlite3_interrupt(self);
  1238. return 0;
  1239. }
  1240. /*
  1241. ** =======================================================
  1242. ** User Defined Functions - Context Methods
  1243. ** =======================================================
  1244. */
  1245. typedef struct {
  1246. sqlite3_context *ctx;
  1247. HSQOBJECT udata;
  1248. } sq_sqlite3_context_st;
  1249. static const SQChar sq_sqlite3_context_TAG[] = _SC(":sqlite3:ctx");
  1250. static SQRESULT sq_sqlite3_context_releasehook(SQUserPointer p, SQInteger size, HSQUIRRELVM v)
  1251. {
  1252. sq_sqlite3_context_st *ctx = ((sq_sqlite3_context_st *)p);
  1253. /* 'free' all references */
  1254. sq_free(ctx, sizeof(sq_sqlite3_context_st));
  1255. return 0;
  1256. }
  1257. static SQRESULT sq_sqlite3_context_constructor(HSQUIRRELVM v) {
  1258. sq_sqlite3_context_st *ctx = (sq_sqlite3_context_st*)sq_malloc(sizeof(sq_sqlite3_context_st));
  1259. ctx->ctx = NULL;
  1260. sq_resetobject(&ctx->udata);
  1261. sq_setinstanceup(v, 1, ctx);
  1262. sq_setreleasehook(v,1, sq_sqlite3_context_releasehook);
  1263. return 1;
  1264. }
  1265. #define SQ_SQLITE3_GETCONTEXT(v, idx) \
  1266. sq_sqlite3_context_st *self;\
  1267. if((_rc_ = sq_getinstanceup(v, idx, (void**)&self, (void*)sq_sqlite3_context_TAG)) < 0) return _rc_;
  1268. #define GET_sqlite3_context_INSTANCE() SQ_SQLITE3_GETCONTEXT(v,1)
  1269. static SQRESULT sq_sqlite3_context__tostring(HSQUIRRELVM v) {
  1270. SQ_FUNC_VARS_NO_TOP(v);
  1271. GET_sqlite3_context_INSTANCE();
  1272. char buff[64];
  1273. snprintf(buff, sizeof(buff), "sqlite function context (%p)", self);
  1274. sq_pushstring(v, buff, -1);
  1275. return 1;
  1276. }
  1277. static SQRESULT sq_sqlite3_context_check_aggregate(HSQUIRRELVM v, sq_sqlite3_context_st *ctx) {
  1278. sq_sqlite3_sdb_func *func = (sq_sqlite3_sdb_func*)sqlite3_user_data(ctx->ctx);
  1279. if (sq_isclosure(func->fn_finalize)) {
  1280. return sq_throwerror(v, "attempt to call aggregate method from scalar function");
  1281. }
  1282. return 1;
  1283. }
  1284. static SQRESULT sq_sqlite3_context_user_data(HSQUIRRELVM v) {
  1285. SQ_FUNC_VARS_NO_TOP(v);
  1286. GET_sqlite3_context_INSTANCE();
  1287. sq_sqlite3_sdb_func *func = (sq_sqlite3_sdb_func*)sqlite3_user_data(self->ctx);
  1288. sq_pushobject(v, func->udata);
  1289. return 1;
  1290. }
  1291. static SQRESULT sq_sqlite3_context_aggregate_data(HSQUIRRELVM v) {
  1292. SQ_FUNC_VARS(v);
  1293. GET_sqlite3_context_INSTANCE();
  1294. sq_sqlite3_context_check_aggregate(v, self);
  1295. if(_top_ < 2){
  1296. sq_pushobject(v, self->udata);
  1297. }
  1298. else
  1299. {
  1300. sq_release(v, &self->udata);
  1301. sq_getstackobj(v, 2, &self->udata);
  1302. sq_addref(v, &self->udata);
  1303. }
  1304. return 0;
  1305. }
  1306. static SQRESULT sq_sqlite3_context_aggregate_count(HSQUIRRELVM v) {
  1307. SQ_FUNC_VARS_NO_TOP(v);
  1308. GET_sqlite3_context_INSTANCE();
  1309. sq_sqlite3_context_check_aggregate(v, self);
  1310. sq_pushinteger(v, sqlite3_aggregate_count(self->ctx));
  1311. return 1;
  1312. }
  1313. #if 0
  1314. void *sqlite3_get_auxdata(sqlite3_context*, int);
  1315. void sqlite3_set_auxdata(sqlite3_context*, int, void*, void (*)(void*));
  1316. #endif
  1317. static SQRESULT sq_sqlite3_context_result_blob(HSQUIRRELVM v) {
  1318. SQ_FUNC_VARS_NO_TOP(v);
  1319. GET_sqlite3_context_INSTANCE();
  1320. SQ_GET_STRING(v, 2, blob);
  1321. sqlite3_result_blob(self->ctx, (const void*)blob, blob_size, SQLITE_TRANSIENT);
  1322. return 0;
  1323. }
  1324. static SQRESULT sq_sqlite3_context_result_double(HSQUIRRELVM v) {
  1325. SQ_FUNC_VARS_NO_TOP(v);
  1326. GET_sqlite3_context_INSTANCE();
  1327. SQ_GET_FLOAT(v, 2, d);
  1328. sqlite3_result_double(self->ctx, d);
  1329. return 0;
  1330. }
  1331. static SQRESULT sq_sqlite3_context_result_error(HSQUIRRELVM v) {
  1332. SQ_FUNC_VARS_NO_TOP(v);
  1333. GET_sqlite3_context_INSTANCE();
  1334. SQ_GET_STRING(v,2, err);
  1335. sqlite3_result_error(self->ctx, err, err_size);
  1336. return 0;
  1337. }
  1338. static SQRESULT sq_sqlite3_context_result_int(HSQUIRRELVM v) {
  1339. SQ_FUNC_VARS_NO_TOP(v);
  1340. GET_sqlite3_context_INSTANCE();
  1341. SQ_GET_INTEGER(v, 2, i);
  1342. sqlite3_result_int(self->ctx, i);
  1343. return 0;
  1344. }
  1345. static SQRESULT sq_sqlite3_context_result_null(HSQUIRRELVM v) {
  1346. SQ_FUNC_VARS_NO_TOP(v);
  1347. GET_sqlite3_context_INSTANCE();
  1348. sqlite3_result_null(self->ctx);
  1349. return 0;
  1350. }
  1351. static SQRESULT sq_sqlite3_context_result_text(HSQUIRRELVM v) {
  1352. SQ_FUNC_VARS_NO_TOP(v);
  1353. GET_sqlite3_context_INSTANCE();
  1354. SQ_GET_STRING(v, 2, text);
  1355. sqlite3_result_text(self->ctx, text, text_size, SQLITE_TRANSIENT);
  1356. return 0;
  1357. }
  1358. #define _DECL_FUNC(name,nparams,tycheck) {_SC(#name), sq_sqlite3_context_##name,nparams,tycheck}
  1359. static SQRegFunction sq_sqlite3_context_methods[] =
  1360. {
  1361. _DECL_FUNC(constructor, 1, _SC("x")),
  1362. _DECL_FUNC(user_data, 1, _SC("x")),
  1363. _DECL_FUNC(aggregate_data, -1, _SC("x.")),
  1364. _DECL_FUNC(aggregate_count, 1, _SC("x")),
  1365. _DECL_FUNC(result_null, 1, _SC("x")),
  1366. _DECL_FUNC(result_double, 2, _SC("xf")),
  1367. _DECL_FUNC(result_int, 2, _SC("xi")),
  1368. _DECL_FUNC(result_text, 2, _SC("xs")),
  1369. _DECL_FUNC(result_blob, 2, _SC("xs")),
  1370. _DECL_FUNC(result_error, 2, _SC("xs")),
  1371. _DECL_FUNC(_tostring, -1, _SC("x")),
  1372. {0,0}
  1373. };
  1374. #undef _DECL_FUNC
  1375. /*
  1376. ** callback functions used when calling registered sql functions
  1377. */
  1378. static void sqlite3_push_value(HSQUIRRELVM v, sqlite3_value *value) {
  1379. const char *tmp_value;
  1380. switch (sqlite3_value_type(value)) {
  1381. case SQLITE_TEXT:
  1382. tmp_value = (const char*) sqlite3_value_text(value);
  1383. if(tmp_value) sq_pushstring(v, tmp_value, sqlite3_value_bytes(value));
  1384. else push_sqlite3_null(v);
  1385. break;
  1386. case SQLITE_INTEGER:
  1387. {
  1388. sqlite_int64 i64 = sqlite3_value_int64(value);
  1389. SQInteger n = (SQInteger)i64;
  1390. if (n == i64)
  1391. sq_pushinteger(v, n);
  1392. else
  1393. sq_pushstring(v, (const char*) sqlite3_value_text(value), sqlite3_value_bytes(value));
  1394. }
  1395. break;
  1396. case SQLITE_FLOAT:
  1397. sq_pushfloat(v, sqlite3_value_double(value));
  1398. break;
  1399. case SQLITE_BLOB:
  1400. tmp_value = (const char*) sqlite3_value_blob(value);
  1401. if(tmp_value) sq_pushstring(v, tmp_value, sqlite3_value_bytes(value));
  1402. else push_sqlite3_null(v);
  1403. break;
  1404. case SQLITE_NULL:
  1405. push_sqlite3_null(v);
  1406. break;
  1407. default:
  1408. /* things done properly (SQLite + Lua SQLite)
  1409. ** this should never happen */
  1410. push_sqlite3_null(v);
  1411. break;
  1412. }
  1413. }
  1414. //#if 0
  1415. static SQRESULT new_context_instance(HSQUIRRELVM v, sq_sqlite3_context_st **ctx){
  1416. sq_pushregistrytable(v);
  1417. sq_pushstring(v,_SC("sqite3_context"),-1);
  1418. int rc = sq_rawget(v, -2);
  1419. sq_remove(v, -2); //remove registrytable
  1420. sq_pushroottable(v);
  1421. rc = sq_call(v, 1, SQTrue, SQFalse);
  1422. sq_remove(v, -2); //class
  1423. rc = sq_getinstanceup(v, -1, (void**)ctx, (void*)sq_sqlite3_context_TAG);
  1424. return rc;
  1425. }
  1426. /* scalar function to be called
  1427. ** callback params: context, values... */
  1428. static void db_sql_normal_function(sqlite3_context *context, int argc, sqlite3_value **argv) {
  1429. sq_sqlite3_sdb_func *func = (sq_sqlite3_sdb_func*)sqlite3_user_data(context);
  1430. HSQUIRRELVM v = func->sdb->v;
  1431. int n, rc;
  1432. sq_sqlite3_context_st *ctx;
  1433. int top = sq_gettop(v);
  1434. /* ensure there is enough space in the stack */
  1435. sq_reservestack(v, argc + 5);
  1436. sq_pushobject(v, func->fn_step);
  1437. sq_pushroottable(v);
  1438. if (!sq_isclosure(func->fn_finalize)) {
  1439. new_context_instance(v, &ctx);
  1440. }
  1441. else {
  1442. /* reuse context userdata value */
  1443. void *p = sqlite3_aggregate_context(context, 1);
  1444. /* i think it is OK to use assume that using a light user data
  1445. ** as an entry on LUA REGISTRY table will be unique */
  1446. sq_pushregistrytable(v);
  1447. sq_pushuserpointer(v, p);
  1448. /* context table */
  1449. if(sq_rawget(v, -2) != SQ_OK){
  1450. /* not yet created? */
  1451. sq_poptop(v); //remove null
  1452. new_context_instance(v, &ctx);
  1453. sq_pushuserpointer(v, p);
  1454. sq_push(v, -2);
  1455. sq_rawset(v, -4); //insert into registrytable
  1456. }
  1457. sq_remove(v, -2); //remove registrytable
  1458. }
  1459. /* push params */
  1460. for (n = 0; n < argc; ++n) {
  1461. sqlite3_push_value(v, argv[n]);
  1462. }
  1463. /* set context */
  1464. ctx->ctx = context;
  1465. if (sq_call(v, argc + 2, SQFalse, SQFalse) != SQ_OK) { //2 = roottable + ctx
  1466. sqlite3_result_error(context, sq_getlasterror_str(v), -1);
  1467. }
  1468. /* invalidate context */
  1469. ctx->ctx = NULL;
  1470. if (!sq_isclosure(func->fn_finalize)) {
  1471. sq_release(v, &ctx->udata);
  1472. sq_resetobject(&ctx->udata);
  1473. }
  1474. sq_settop(v, top);
  1475. }
  1476. static void db_sql_finalize_function(sqlite3_context *context) {
  1477. sq_sqlite3_sdb_func *func = (sq_sqlite3_sdb_func*)sqlite3_user_data(context);
  1478. HSQUIRRELVM v = func->sdb->v;
  1479. void *p = sqlite3_aggregate_context(context, 1); /* minimal mem usage */
  1480. sq_sqlite3_context_st *ctx;
  1481. int top = sq_gettop(v);
  1482. sq_pushobject(v, func->fn_finalize);
  1483. sq_pushroottable(v);
  1484. /* i think it is OK to use assume that using a light user data
  1485. ** as an entry on LUA REGISTRY table will be unique */
  1486. sq_pushregistrytable(v);
  1487. sq_pushuserpointer(v, p);
  1488. /* remove it from registry but we'll use it last time here */
  1489. /* context table */
  1490. if(sq_deleteslot(v, -2, SQTrue) != SQ_OK){
  1491. /* not yet created? - shouldn't happen in finalize function */
  1492. sq_pop(v, 1);
  1493. new_context_instance(v, &ctx);
  1494. sq_pushuserpointer(v, p);
  1495. sq_push(v, -2);
  1496. sq_rawset(v, -4);
  1497. }
  1498. sq_remove(v, -2); //registrytable
  1499. /* set context */
  1500. ctx->ctx = context;
  1501. if (sq_call(v, 1, SQFalse, SQFalse) != SQ_OK) {
  1502. sqlite3_result_error(context, sq_getlasterror_str(v), -1);
  1503. }
  1504. /* invalidate context */
  1505. ctx->ctx = NULL;
  1506. /* cleanup context */
  1507. sq_release(v, &ctx->udata);
  1508. sq_resetobject(&ctx->udata);
  1509. sq_settop(v, top);
  1510. }
  1511. /*
  1512. ** Register a normal function
  1513. ** Params: db, function name, number arguments, [ callback | step, finalize], user data
  1514. ** Returns: true on sucess
  1515. **
  1516. ** Normal function:
  1517. ** Params: context, params
  1518. **
  1519. ** Aggregate function:
  1520. ** Params of step: context, params
  1521. ** Params of finalize: context
  1522. */
  1523. static SQRESULT db_register_function(HSQUIRRELVM v, int aggregate) {
  1524. SQ_FUNC_VARS(v);
  1525. GET_sqlite3_INSTANCE();
  1526. SQ_GET_STRING(v, 2, name);
  1527. SQ_GET_INTEGER(v, 3, nargs);
  1528. if(sq_gettype(v, 4) != OT_CLOSURE)
  1529. return sq_throwerror(v, "invalid parameter 3 expected closure");
  1530. if (aggregate) {
  1531. if(sq_gettype(v,5) != OT_CLOSURE)
  1532. return sq_throwerror(v, "invalid parameter 4 expected closure");
  1533. }
  1534. sq_sqlite3_sdb_func *func;
  1535. /* maybe an alternative way to allocate memory should be used/avoided */
  1536. func = (sq_sqlite3_sdb_func*)sq_malloc(sizeof(sq_sqlite3_sdb_func));
  1537. memset(func, 0, sizeof(sq_sqlite3_sdb_func));
  1538. _rc_ = sqlite3_create_function(
  1539. self, name, nargs, SQLITE_UTF8, func,
  1540. aggregate ? NULL : db_sql_normal_function,
  1541. aggregate ? db_sql_normal_function : NULL,
  1542. aggregate ? db_sql_finalize_function : NULL
  1543. );
  1544. if (_rc_ == SQLITE_OK) {
  1545. /* save registered function in db function list */
  1546. func->sdb = sdb;
  1547. func->next = sdb->func;
  1548. sdb->func = func;
  1549. /* save the setp/normal function callback */
  1550. sq_resetobject(&func->fn_step);
  1551. sq_getstackobj(v, 4, &func->fn_step);
  1552. sq_addref(v, &func->fn_step);
  1553. /* save the finalize function callback */
  1554. sq_resetobject(&func->fn_finalize);
  1555. if (aggregate) {
  1556. sq_getstackobj(v, 5, &func->fn_finalize);
  1557. sq_addref(v, &func->fn_finalize);
  1558. }
  1559. /* save user data */
  1560. sq_resetobject(&func->udata);
  1561. int udata_idx = aggregate ? 6 : 5;
  1562. if(_top_ >= udata_idx){
  1563. sq_getstackobj(v, udata_idx, &func->udata);
  1564. sq_addref(v, &func->udata);
  1565. }
  1566. }
  1567. else {
  1568. /* free allocated memory */
  1569. sq_free(func, sizeof(sq_sqlite3_sdb_func));
  1570. }
  1571. sq_pushbool(v, _rc_ == SQLITE_OK ? 1 : 0);
  1572. return 1;
  1573. }
  1574. //#endif
  1575. static SQRESULT sq_sqlite3_create_function(HSQUIRRELVM v) {
  1576. return db_register_function(v, 0);
  1577. }
  1578. static SQRESULT sq_sqlite3_create_aggregate(HSQUIRRELVM v) {
  1579. return db_register_function(v, 1);
  1580. }
  1581. #define _DECL_FUNC(name,nparams,tycheck) {_SC(#name), sq_sqlite3_##name,nparams,tycheck}
  1582. static SQRegFunction sq_sqlite3_methods[] =
  1583. {
  1584. _DECL_FUNC(constructor, 2, _SC("xsi")),
  1585. _DECL_FUNC(close, 1, _SC("x")),
  1586. _DECL_FUNC(IsAutoCommitOn, 1, _SC("x")),
  1587. _DECL_FUNC(version, 1, _SC("x")),
  1588. _DECL_FUNC(errcode, 1, _SC("x")),
  1589. _DECL_FUNC(errmsg, 1, _SC("x")),
  1590. _DECL_FUNC(sleep, 1, _SC("x")),
  1591. _DECL_FUNC(interrupt, 1, _SC("x")),
  1592. _DECL_FUNC(progress_handler, -2, _SC("x i|o c .")),
  1593. _DECL_FUNC(trace, -2, _SC("x c|o .")),
  1594. _DECL_FUNC(busy_handler, -2, _SC("x c|o .")),
  1595. _DECL_FUNC(busy_timeout, 2, _SC("xi")),
  1596. _DECL_FUNC(create_function, 4, _SC("xsic")),
  1597. _DECL_FUNC(create_aggregate, 5, _SC("xsicc")),
  1598. _DECL_FUNC(temp_directory, -2, _SC("xs")),
  1599. _DECL_FUNC(enable_shared_cache, 2, _SC("xb")),
  1600. _DECL_FUNC(changes, 1, _SC("x")),
  1601. _DECL_FUNC(exec, -2, _SC("xs")),
  1602. _DECL_FUNC(exec_dml, -2, _SC("xs")),
  1603. _DECL_FUNC(exec_get_first_row, -2, _SC("xs")),
  1604. _DECL_FUNC(exec_get_one, -2, _SC("xs")),
  1605. _DECL_FUNC(get_db_name, 1, _SC("x")),
  1606. _DECL_FUNC(last_row_id, 1, _SC("x")),
  1607. _DECL_FUNC(prepare, -2, _SC("xs")),
  1608. _DECL_FUNC(set_busy_timeout, -1, _SC("xi")),
  1609. _DECL_FUNC(total_changes, 1, _SC("x")),
  1610. #ifdef SQLITE_HAS_CODEC
  1611. _DECL_FUNC(key, 2, _SC("xs")),
  1612. _DECL_FUNC(rekey, 2, _SC("xs")),
  1613. #endif
  1614. {0,0}
  1615. };
  1616. #undef _DECL_FUNC
  1617. #define INT_CONST(v,num) sq_pushstring(v,_SC(#num),-1);sq_pushinteger(v,num);sq_newslot(v,-3,SQTrue);
  1618. #ifdef __cplusplus
  1619. extern "C" {
  1620. #endif
  1621. SQRESULT sqstd_register_SQLite3(HSQUIRRELVM v)
  1622. {
  1623. HSQOBJECT sqlite3_NULL;
  1624. sq_pushregistrytable(v);
  1625. sq_pushstring(v, sqlite3_NULL_Name,-1);
  1626. sq_newuserdata(v, sizeof(void*));
  1627. sq_resetobject(&sqlite3_NULL);
  1628. sq_getstackobj(v, -1, &sqlite3_NULL);
  1629. sq_newtable(v);
  1630. sq_insert_reg_funcs(v, sqlite3_NULL_methods);
  1631. sq_setdelegate(v, -2);
  1632. sq_newslot(v,-3,SQTrue);
  1633. sq_pushstring(v,_SC("sqite3_context"),-1);
  1634. sq_newclass(v,SQFalse);
  1635. sq_settypetag(v,-1,(void*)sq_sqlite3_context_TAG);
  1636. sq_insert_reg_funcs(v, sq_sqlite3_context_methods);
  1637. sq_newslot(v,-3,SQTrue);
  1638. sq_poptop(v); //remove registrytable
  1639. sq_pushstring(v,SQLite3_TAG,-1);
  1640. sq_newclass(v,SQFalse);
  1641. sq_settypetag(v,-1,(void*)SQLite3_TAG);
  1642. sq_insert_reg_funcs(v, sq_sqlite3_methods);
  1643. INT_CONST(v,SQLITE_OPEN_CREATE);
  1644. INT_CONST(v,SQLITE_OPEN_READWRITE);
  1645. INT_CONST(v,SQLITE_OPEN_SHAREDCACHE);
  1646. INT_CONST(v,SQLITE_OPEN_SUBLATIN_NA_LIKE);
  1647. INT_CONST(v,SQLITE_OK);
  1648. //push sqlite3_NULL as a member
  1649. sq_pushstring(v, nullName,-1);
  1650. sq_pushobject(v, sqlite3_NULL);
  1651. sq_newslot(v,-3,SQTrue);
  1652. sq_newslot(v,-3,SQTrue);
  1653. sq_pushstring(v, SQLite3_Stmt_TAG,-1);
  1654. sq_newclass(v,SQFalse);
  1655. sq_settypetag(v,-1,(void*)SQLite3_Stmt_TAG);
  1656. sq_insert_reg_funcs(v, sq_sqlite3_stmt_methods);
  1657. INT_CONST(v,SQLITE_OK);
  1658. INT_CONST(v,SQLITE_ROW);
  1659. INT_CONST(v,SQLITE_DONE);
  1660. INT_CONST(v,AS_STRING_ALWAYS);
  1661. INT_CONST(v,NULL_AS_EMPTY_STR);
  1662. //push sqlite3_NULL as a member
  1663. sq_pushstring(v, nullName,-1);
  1664. sq_pushobject(v, sqlite3_NULL);
  1665. sq_newslot(v,-3,SQTrue);
  1666. sq_newslot(v,-3,SQTrue);
  1667. return 1;
  1668. }
  1669. #ifdef __cplusplus
  1670. }
  1671. #endif