advapi32/tests: Do not assume the test is called with an absolute path.
[wine.git] / dlls / jscript / jsutils.c
blobd795e7dacf362a3184eef929c655658f23e8e968
1 /*
2 * Copyright 2008 Jacek Caban for CodeWeavers
4 * This library is free software; you can redistribute it and/or
5 * modify it under the terms of the GNU Lesser General Public
6 * License as published by the Free Software Foundation; either
7 * version 2.1 of the License, or (at your option) any later version.
9 * This library is distributed in the hope that it will be useful,
10 * but WITHOUT ANY WARRANTY; without even the implied warranty of
11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
12 * Lesser General Public License for more details.
14 * You should have received a copy of the GNU Lesser General Public
15 * License along with this library; if not, write to the Free Software
16 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
19 #include "config.h"
20 #include "wine/port.h"
22 #include <math.h>
24 #include "jscript.h"
25 #include "engine.h"
27 #include "wine/debug.h"
29 WINE_DEFAULT_DEBUG_CHANNEL(jscript);
30 WINE_DECLARE_DEBUG_CHANNEL(heap);
32 const char *debugstr_variant(const VARIANT *v)
34 if(!v)
35 return "(null)";
37 switch(V_VT(v)) {
38 case VT_EMPTY:
39 return "{VT_EMPTY}";
40 case VT_NULL:
41 return "{VT_NULL}";
42 case VT_I4:
43 return wine_dbg_sprintf("{VT_I4: %d}", V_I4(v));
44 case VT_UI4:
45 return wine_dbg_sprintf("{VT_UI4: %u}", V_UI4(v));
46 case VT_R8:
47 return wine_dbg_sprintf("{VT_R8: %lf}", V_R8(v));
48 case VT_BSTR:
49 return wine_dbg_sprintf("{VT_BSTR: %s}", debugstr_w(V_BSTR(v)));
50 case VT_DISPATCH:
51 return wine_dbg_sprintf("{VT_DISPATCH: %p}", V_DISPATCH(v));
52 case VT_BOOL:
53 return wine_dbg_sprintf("{VT_BOOL: %x}", V_BOOL(v));
54 default:
55 return wine_dbg_sprintf("{vt %d}", V_VT(v));
59 #define MIN_BLOCK_SIZE 128
60 #define ARENA_FREE_FILLER 0xaa
62 static inline DWORD block_size(DWORD block)
64 return MIN_BLOCK_SIZE << block;
67 void jsheap_init(jsheap_t *heap)
69 memset(heap, 0, sizeof(*heap));
70 list_init(&heap->custom_blocks);
73 void *jsheap_alloc(jsheap_t *heap, DWORD size)
75 struct list *list;
76 void *tmp;
78 if(!heap->block_cnt) {
79 if(!heap->blocks) {
80 heap->blocks = heap_alloc(sizeof(void*));
81 if(!heap->blocks)
82 return NULL;
85 tmp = heap_alloc(block_size(0));
86 if(!tmp)
87 return NULL;
89 heap->blocks[0] = tmp;
90 heap->block_cnt = 1;
93 if(heap->offset + size <= block_size(heap->last_block)) {
94 tmp = ((BYTE*)heap->blocks[heap->last_block])+heap->offset;
95 heap->offset += size;
96 return tmp;
99 if(size <= block_size(heap->last_block+1)) {
100 if(heap->last_block+1 == heap->block_cnt) {
101 tmp = heap_realloc(heap->blocks, (heap->block_cnt+1)*sizeof(void*));
102 if(!tmp)
103 return NULL;
105 heap->blocks = tmp;
106 heap->blocks[heap->block_cnt] = heap_alloc(block_size(heap->block_cnt));
107 if(!heap->blocks[heap->block_cnt])
108 return NULL;
110 heap->block_cnt++;
113 heap->last_block++;
114 heap->offset = size;
115 return heap->blocks[heap->last_block];
118 list = heap_alloc(size + sizeof(struct list));
119 if(!list)
120 return NULL;
122 list_add_head(&heap->custom_blocks, list);
123 return list+1;
126 void *jsheap_grow(jsheap_t *heap, void *mem, DWORD size, DWORD inc)
128 if(mem == (BYTE*)heap->blocks[heap->last_block] + heap->offset-size
129 && heap->offset+inc < block_size(heap->last_block)) {
130 heap->offset += inc;
131 return mem;
134 return jsheap_alloc(heap, size+inc);
137 void jsheap_clear(jsheap_t *heap)
139 struct list *tmp;
141 if(!heap)
142 return;
144 while((tmp = list_next(&heap->custom_blocks, &heap->custom_blocks))) {
145 list_remove(tmp);
146 heap_free(tmp);
149 if(WARN_ON(heap)) {
150 DWORD i;
152 for(i=0; i < heap->block_cnt; i++)
153 memset(heap->blocks[i], ARENA_FREE_FILLER, block_size(i));
156 heap->last_block = heap->offset = 0;
157 heap->mark = FALSE;
160 void jsheap_free(jsheap_t *heap)
162 DWORD i;
164 jsheap_clear(heap);
166 for(i=0; i < heap->block_cnt; i++)
167 heap_free(heap->blocks[i]);
168 heap_free(heap->blocks);
170 jsheap_init(heap);
173 jsheap_t *jsheap_mark(jsheap_t *heap)
175 if(heap->mark)
176 return NULL;
178 heap->mark = TRUE;
179 return heap;
182 /* ECMA-262 3rd Edition 9.1 */
183 HRESULT to_primitive(script_ctx_t *ctx, VARIANT *v, jsexcept_t *ei, VARIANT *ret, hint_t hint)
185 switch(V_VT(v)) {
186 case VT_EMPTY:
187 case VT_NULL:
188 case VT_BOOL:
189 case VT_I4:
190 case VT_R8:
191 *ret = *v;
192 break;
193 case VT_BSTR:
194 V_VT(ret) = VT_BSTR;
195 V_BSTR(ret) = SysAllocString(V_BSTR(v));
196 break;
197 case VT_DISPATCH: {
198 jsdisp_t *jsdisp;
199 DISPID id;
200 DISPPARAMS dp = {NULL, NULL, 0, 0};
201 HRESULT hres;
203 static const WCHAR toStringW[] = {'t','o','S','t','r','i','n','g',0};
204 static const WCHAR valueOfW[] = {'v','a','l','u','e','O','f',0};
206 if(!V_DISPATCH(v)) {
207 V_VT(ret) = VT_NULL;
208 break;
211 jsdisp = iface_to_jsdisp((IUnknown*)V_DISPATCH(v));
212 if(!jsdisp) {
213 V_VT(ret) = VT_EMPTY;
214 return disp_propget(ctx, V_DISPATCH(v), DISPID_VALUE, ret, ei, NULL /*FIXME*/);
217 if(hint == NO_HINT)
218 hint = is_class(jsdisp, JSCLASS_DATE) ? HINT_STRING : HINT_NUMBER;
220 /* Native implementation doesn't throw TypeErrors, returns strange values */
222 hres = jsdisp_get_id(jsdisp, hint == HINT_STRING ? toStringW : valueOfW, 0, &id);
223 if(SUCCEEDED(hres)) {
224 hres = jsdisp_call(jsdisp, id, DISPATCH_METHOD, &dp, ret, ei, NULL /*FIXME*/);
225 if(FAILED(hres)) {
226 WARN("call error - forwarding exception\n");
227 jsdisp_release(jsdisp);
228 return hres;
230 else if(V_VT(ret) != VT_DISPATCH) {
231 jsdisp_release(jsdisp);
232 return S_OK;
234 else
235 IDispatch_Release(V_DISPATCH(ret));
238 hres = jsdisp_get_id(jsdisp, hint == HINT_STRING ? valueOfW : toStringW, 0, &id);
239 if(SUCCEEDED(hres)) {
240 hres = jsdisp_call(jsdisp, id, DISPATCH_METHOD, &dp, ret, ei, NULL /*FIXME*/);
241 if(FAILED(hres)) {
242 WARN("call error - forwarding exception\n");
243 jsdisp_release(jsdisp);
244 return hres;
246 else if(V_VT(ret) != VT_DISPATCH) {
247 jsdisp_release(jsdisp);
248 return S_OK;
250 else
251 IDispatch_Release(V_DISPATCH(ret));
254 jsdisp_release(jsdisp);
256 WARN("failed\n");
257 return throw_type_error(ctx, ei, JS_E_TO_PRIMITIVE, NULL);
259 default:
260 FIXME("Unimplemented for vt %d\n", V_VT(v));
261 return E_NOTIMPL;
264 return S_OK;
267 /* ECMA-262 3rd Edition 9.2 */
268 HRESULT to_boolean(VARIANT *v, VARIANT_BOOL *b)
270 switch(V_VT(v)) {
271 case VT_EMPTY:
272 case VT_NULL:
273 *b = VARIANT_FALSE;
274 break;
275 case VT_I4:
276 *b = V_I4(v) ? VARIANT_TRUE : VARIANT_FALSE;
277 break;
278 case VT_R8:
279 if(isnan(V_R8(v))) *b = VARIANT_FALSE;
280 else *b = V_R8(v) ? VARIANT_TRUE : VARIANT_FALSE;
281 break;
282 case VT_BSTR:
283 *b = V_BSTR(v) && *V_BSTR(v) ? VARIANT_TRUE : VARIANT_FALSE;
284 break;
285 case VT_DISPATCH:
286 *b = V_DISPATCH(v) ? VARIANT_TRUE : VARIANT_FALSE;
287 break;
288 case VT_BOOL:
289 *b = V_BOOL(v);
290 break;
291 default:
292 FIXME("unimplemented for vt %d\n", V_VT(v));
293 return E_NOTIMPL;
296 return S_OK;
299 static int hex_to_int(WCHAR c)
301 if('0' <= c && c <= '9')
302 return c-'0';
304 if('a' <= c && c <= 'f')
305 return c-'a'+10;
307 if('A' <= c && c <= 'F')
308 return c-'A'+10;
310 return -1;
313 /* ECMA-262 3rd Edition 9.3.1 */
314 static HRESULT str_to_number(BSTR str, VARIANT *ret)
316 const WCHAR *ptr = str;
317 BOOL neg = FALSE;
318 DOUBLE d = 0.0;
320 static const WCHAR infinityW[] = {'I','n','f','i','n','i','t','y'};
322 while(isspaceW(*ptr))
323 ptr++;
325 if(*ptr == '-') {
326 neg = TRUE;
327 ptr++;
328 }else if(*ptr == '+') {
329 ptr++;
332 if(!strncmpW(ptr, infinityW, sizeof(infinityW)/sizeof(WCHAR))) {
333 ptr += sizeof(infinityW)/sizeof(WCHAR);
334 while(*ptr && isspaceW(*ptr))
335 ptr++;
337 if(*ptr)
338 num_set_nan(ret);
339 else
340 num_set_inf(ret, !neg);
341 return S_OK;
344 if(*ptr == '0' && ptr[1] == 'x') {
345 DWORD l = 0;
347 ptr += 2;
348 while((l = hex_to_int(*ptr)) != -1) {
349 d = d*16 + l;
350 ptr++;
353 num_set_val(ret, d);
354 return S_OK;
357 while(isdigitW(*ptr))
358 d = d*10 + (*ptr++ - '0');
360 if(*ptr == 'e' || *ptr == 'E') {
361 BOOL eneg = FALSE;
362 LONG l = 0;
364 ptr++;
365 if(*ptr == '-') {
366 ptr++;
367 eneg = TRUE;
368 }else if(*ptr == '+') {
369 ptr++;
372 while(isdigitW(*ptr))
373 l = l*10 + (*ptr++ - '0');
374 if(eneg)
375 l = -l;
377 d *= pow(10, l);
378 }else if(*ptr == '.') {
379 DOUBLE dec = 0.1;
381 ptr++;
382 while(isdigitW(*ptr)) {
383 d += dec * (*ptr++ - '0');
384 dec *= 0.1;
388 while(isspaceW(*ptr))
389 ptr++;
391 if(*ptr) {
392 num_set_nan(ret);
393 return S_OK;
396 if(neg)
397 d = -d;
399 num_set_val(ret, d);
400 return S_OK;
403 /* ECMA-262 3rd Edition 9.3 */
404 HRESULT to_number(script_ctx_t *ctx, VARIANT *v, jsexcept_t *ei, VARIANT *ret)
406 switch(V_VT(v)) {
407 case VT_EMPTY:
408 num_set_nan(ret);
409 break;
410 case VT_NULL:
411 V_VT(ret) = VT_I4;
412 V_I4(ret) = 0;
413 break;
414 case VT_I4:
415 case VT_R8:
416 *ret = *v;
417 break;
418 case VT_BSTR:
419 return str_to_number(V_BSTR(v), ret);
420 case VT_DISPATCH: {
421 VARIANT prim;
422 HRESULT hres;
424 hres = to_primitive(ctx, v, ei, &prim, HINT_NUMBER);
425 if(FAILED(hres))
426 return hres;
428 hres = to_number(ctx, &prim, ei, ret);
429 VariantClear(&prim);
430 return hres;
432 case VT_BOOL:
433 V_VT(ret) = VT_I4;
434 V_I4(ret) = V_BOOL(v) ? 1 : 0;
435 break;
436 default:
437 FIXME("unimplemented for vt %d\n", V_VT(v));
438 return E_NOTIMPL;
441 return S_OK;
444 /* ECMA-262 3rd Edition 9.4 */
445 HRESULT to_integer(script_ctx_t *ctx, VARIANT *v, jsexcept_t *ei, VARIANT *ret)
447 VARIANT num;
448 HRESULT hres;
450 hres = to_number(ctx, v, ei, &num);
451 if(FAILED(hres))
452 return hres;
454 if(V_VT(&num) == VT_I4) {
455 *ret = num;
456 }else if(isnan(V_R8(&num))) {
457 V_VT(ret) = VT_I4;
458 V_I4(ret) = 0;
459 }else {
460 num_set_val(ret, V_R8(&num) >= 0.0 ? floor(V_R8(&num)) : -floor(-V_R8(&num)));
463 return S_OK;
466 /* ECMA-262 3rd Edition 9.5 */
467 HRESULT to_int32(script_ctx_t *ctx, VARIANT *v, jsexcept_t *ei, INT *ret)
469 VARIANT num;
470 HRESULT hres;
472 hres = to_number(ctx, v, ei, &num);
473 if(FAILED(hres))
474 return hres;
476 if(V_VT(&num) == VT_I4)
477 *ret = V_I4(&num);
478 else
479 *ret = isnan(V_R8(&num)) || isinf(V_R8(&num)) ? 0 : (INT)V_R8(&num);
480 return S_OK;
483 /* ECMA-262 3rd Edition 9.6 */
484 HRESULT to_uint32(script_ctx_t *ctx, VARIANT *v, jsexcept_t *ei, DWORD *ret)
486 VARIANT num;
487 HRESULT hres;
489 hres = to_number(ctx, v, ei, &num);
490 if(FAILED(hres))
491 return hres;
493 if(V_VT(&num) == VT_I4)
494 *ret = V_I4(&num);
495 else
496 *ret = isnan(V_R8(&num)) || isinf(V_R8(&num)) ? 0 : (DWORD)V_R8(&num);
497 return S_OK;
500 static BSTR int_to_bstr(INT i)
502 WCHAR buf[12], *p;
503 BOOL neg = FALSE;
505 if(!i) {
506 static const WCHAR zeroW[] = {'0',0};
507 return SysAllocString(zeroW);
510 if(i < 0) {
511 neg = TRUE;
512 i = -i;
515 p = buf + sizeof(buf)/sizeof(*buf)-1;
516 *p-- = 0;
517 while(i) {
518 *p-- = i%10 + '0';
519 i /= 10;
522 if(neg)
523 *p = '-';
524 else
525 p++;
527 return SysAllocString(p);
530 /* ECMA-262 3rd Edition 9.8 */
531 HRESULT to_string(script_ctx_t *ctx, VARIANT *v, jsexcept_t *ei, BSTR *str)
533 const WCHAR undefinedW[] = {'u','n','d','e','f','i','n','e','d',0};
534 const WCHAR nullW[] = {'n','u','l','l',0};
535 const WCHAR trueW[] = {'t','r','u','e',0};
536 const WCHAR falseW[] = {'f','a','l','s','e',0};
537 const WCHAR NaNW[] = {'N','a','N',0};
538 const WCHAR InfinityW[] = {'-','I','n','f','i','n','i','t','y',0};
540 switch(V_VT(v)) {
541 case VT_EMPTY:
542 *str = SysAllocString(undefinedW);
543 break;
544 case VT_NULL:
545 *str = SysAllocString(nullW);
546 break;
547 case VT_I4:
548 *str = int_to_bstr(V_I4(v));
549 break;
550 case VT_R8: {
551 if(isnan(V_R8(v)))
552 *str = SysAllocString(NaNW);
553 else if(isinf(V_R8(v)))
554 *str = SysAllocString(V_R8(v)<0 ? InfinityW : InfinityW+1);
555 else {
556 VARIANT strv;
557 HRESULT hres;
559 V_VT(&strv) = VT_EMPTY;
560 hres = VariantChangeTypeEx(&strv, v, MAKELCID(MAKELANGID(LANG_ENGLISH,SUBLANG_ENGLISH_US),SORT_DEFAULT), 0, VT_BSTR);
561 if(FAILED(hres))
562 return hres;
564 *str = V_BSTR(&strv);
565 return S_OK;
567 break;
569 case VT_BSTR:
570 *str = SysAllocString(V_BSTR(v));
571 break;
572 case VT_DISPATCH: {
573 VARIANT prim;
574 HRESULT hres;
576 hres = to_primitive(ctx, v, ei, &prim, HINT_STRING);
577 if(FAILED(hres))
578 return hres;
580 hres = to_string(ctx, &prim, ei, str);
581 VariantClear(&prim);
582 return hres;
584 case VT_BOOL:
585 *str = SysAllocString(V_BOOL(v) ? trueW : falseW);
586 break;
587 default:
588 FIXME("unsupported vt %d\n", V_VT(v));
589 return E_NOTIMPL;
592 return *str ? S_OK : E_OUTOFMEMORY;
595 /* ECMA-262 3rd Edition 9.9 */
596 HRESULT to_object(script_ctx_t *ctx, VARIANT *v, IDispatch **disp)
598 jsdisp_t *dispex;
599 HRESULT hres;
601 switch(V_VT(v)) {
602 case VT_BSTR:
603 hres = create_string(ctx, V_BSTR(v), SysStringLen(V_BSTR(v)), &dispex);
604 if(FAILED(hres))
605 return hres;
607 *disp = to_disp(dispex);
608 break;
609 case VT_I4:
610 case VT_R8:
611 hres = create_number(ctx, v, &dispex);
612 if(FAILED(hres))
613 return hres;
615 *disp = to_disp(dispex);
616 break;
617 case VT_DISPATCH:
618 if(V_DISPATCH(v)) {
619 IDispatch_AddRef(V_DISPATCH(v));
620 *disp = V_DISPATCH(v);
621 }else {
622 jsdisp_t *obj;
624 hres = create_object(ctx, NULL, &obj);
625 if(FAILED(hres))
626 return hres;
628 *disp = to_disp(obj);
630 break;
631 case VT_BOOL:
632 hres = create_bool(ctx, V_BOOL(v), &dispex);
633 if(FAILED(hres))
634 return hres;
636 *disp = to_disp(dispex);
637 break;
638 case VT_ARRAY|VT_VARIANT:
639 hres = create_vbarray(ctx, V_ARRAY(v), &dispex);
640 if(FAILED(hres))
641 return hres;
643 *disp = to_disp(dispex);
644 break;
645 default:
646 FIXME("unsupported vt %d\n", V_VT(v));
647 return E_NOTIMPL;
650 return S_OK;