blob: 751ee441c82d3aed5f9185b938cc2bb9434332ec [file] [log] [blame]
Ben Murdoch4a90d5f2016-03-22 12:00:34 +00001// Copyright 2008-2009 the V8 project authors. All rights reserved.
2// Use of this source code is governed by a BSD-style license that can be
3// found in the LICENSE file.
4
5#include "src/regexp/regexp-macro-assembler-irregexp.h"
6
7#include "src/ast/ast.h"
8#include "src/regexp/bytecodes-irregexp.h"
9#include "src/regexp/regexp-macro-assembler.h"
10#include "src/regexp/regexp-macro-assembler-irregexp-inl.h"
11
12
13namespace v8 {
14namespace internal {
15
16#ifdef V8_INTERPRETED_REGEXP
17
18RegExpMacroAssemblerIrregexp::RegExpMacroAssemblerIrregexp(Isolate* isolate,
19 Vector<byte> buffer,
20 Zone* zone)
21 : RegExpMacroAssembler(isolate, zone),
22 buffer_(buffer),
23 pc_(0),
24 own_buffer_(false),
25 advance_current_end_(kInvalidPC),
26 isolate_(isolate) {}
27
28
29RegExpMacroAssemblerIrregexp::~RegExpMacroAssemblerIrregexp() {
30 if (backtrack_.is_linked()) backtrack_.Unuse();
31 if (own_buffer_) buffer_.Dispose();
32}
33
34
35RegExpMacroAssemblerIrregexp::IrregexpImplementation
36RegExpMacroAssemblerIrregexp::Implementation() {
37 return kBytecodeImplementation;
38}
39
40
41void RegExpMacroAssemblerIrregexp::Bind(Label* l) {
42 advance_current_end_ = kInvalidPC;
43 DCHECK(!l->is_bound());
44 if (l->is_linked()) {
45 int pos = l->pos();
46 while (pos != 0) {
47 int fixup = pos;
48 pos = *reinterpret_cast<int32_t*>(buffer_.start() + fixup);
49 *reinterpret_cast<uint32_t*>(buffer_.start() + fixup) = pc_;
50 }
51 }
52 l->bind_to(pc_);
53}
54
55
56void RegExpMacroAssemblerIrregexp::EmitOrLink(Label* l) {
57 if (l == NULL) l = &backtrack_;
58 if (l->is_bound()) {
59 Emit32(l->pos());
60 } else {
61 int pos = 0;
62 if (l->is_linked()) {
63 pos = l->pos();
64 }
65 l->link_to(pc_);
66 Emit32(pos);
67 }
68}
69
70
71void RegExpMacroAssemblerIrregexp::PopRegister(int register_index) {
72 DCHECK(register_index >= 0);
73 DCHECK(register_index <= kMaxRegister);
74 Emit(BC_POP_REGISTER, register_index);
75}
76
77
78void RegExpMacroAssemblerIrregexp::PushRegister(
79 int register_index,
80 StackCheckFlag check_stack_limit) {
81 DCHECK(register_index >= 0);
82 DCHECK(register_index <= kMaxRegister);
83 Emit(BC_PUSH_REGISTER, register_index);
84}
85
86
87void RegExpMacroAssemblerIrregexp::WriteCurrentPositionToRegister(
88 int register_index, int cp_offset) {
89 DCHECK(register_index >= 0);
90 DCHECK(register_index <= kMaxRegister);
91 Emit(BC_SET_REGISTER_TO_CP, register_index);
92 Emit32(cp_offset); // Current position offset.
93}
94
95
96void RegExpMacroAssemblerIrregexp::ClearRegisters(int reg_from, int reg_to) {
97 DCHECK(reg_from <= reg_to);
98 for (int reg = reg_from; reg <= reg_to; reg++) {
99 SetRegister(reg, -1);
100 }
101}
102
103
104void RegExpMacroAssemblerIrregexp::ReadCurrentPositionFromRegister(
105 int register_index) {
106 DCHECK(register_index >= 0);
107 DCHECK(register_index <= kMaxRegister);
108 Emit(BC_SET_CP_TO_REGISTER, register_index);
109}
110
111
112void RegExpMacroAssemblerIrregexp::WriteStackPointerToRegister(
113 int register_index) {
114 DCHECK(register_index >= 0);
115 DCHECK(register_index <= kMaxRegister);
116 Emit(BC_SET_REGISTER_TO_SP, register_index);
117}
118
119
120void RegExpMacroAssemblerIrregexp::ReadStackPointerFromRegister(
121 int register_index) {
122 DCHECK(register_index >= 0);
123 DCHECK(register_index <= kMaxRegister);
124 Emit(BC_SET_SP_TO_REGISTER, register_index);
125}
126
127
128void RegExpMacroAssemblerIrregexp::SetCurrentPositionFromEnd(int by) {
129 DCHECK(is_uint24(by));
130 Emit(BC_SET_CURRENT_POSITION_FROM_END, by);
131}
132
133
134void RegExpMacroAssemblerIrregexp::SetRegister(int register_index, int to) {
135 DCHECK(register_index >= 0);
136 DCHECK(register_index <= kMaxRegister);
137 Emit(BC_SET_REGISTER, register_index);
138 Emit32(to);
139}
140
141
142void RegExpMacroAssemblerIrregexp::AdvanceRegister(int register_index, int by) {
143 DCHECK(register_index >= 0);
144 DCHECK(register_index <= kMaxRegister);
145 Emit(BC_ADVANCE_REGISTER, register_index);
146 Emit32(by);
147}
148
149
150void RegExpMacroAssemblerIrregexp::PopCurrentPosition() {
151 Emit(BC_POP_CP, 0);
152}
153
154
155void RegExpMacroAssemblerIrregexp::PushCurrentPosition() {
156 Emit(BC_PUSH_CP, 0);
157}
158
159
160void RegExpMacroAssemblerIrregexp::Backtrack() {
161 Emit(BC_POP_BT, 0);
162}
163
164
165void RegExpMacroAssemblerIrregexp::GoTo(Label* l) {
166 if (advance_current_end_ == pc_) {
167 // Combine advance current and goto.
168 pc_ = advance_current_start_;
169 Emit(BC_ADVANCE_CP_AND_GOTO, advance_current_offset_);
170 EmitOrLink(l);
171 advance_current_end_ = kInvalidPC;
172 } else {
173 // Regular goto.
174 Emit(BC_GOTO, 0);
175 EmitOrLink(l);
176 }
177}
178
179
180void RegExpMacroAssemblerIrregexp::PushBacktrack(Label* l) {
181 Emit(BC_PUSH_BT, 0);
182 EmitOrLink(l);
183}
184
185
186bool RegExpMacroAssemblerIrregexp::Succeed() {
187 Emit(BC_SUCCEED, 0);
188 return false; // Restart matching for global regexp not supported.
189}
190
191
192void RegExpMacroAssemblerIrregexp::Fail() {
193 Emit(BC_FAIL, 0);
194}
195
196
197void RegExpMacroAssemblerIrregexp::AdvanceCurrentPosition(int by) {
198 DCHECK(by >= kMinCPOffset);
199 DCHECK(by <= kMaxCPOffset);
200 advance_current_start_ = pc_;
201 advance_current_offset_ = by;
202 Emit(BC_ADVANCE_CP, by);
203 advance_current_end_ = pc_;
204}
205
206
207void RegExpMacroAssemblerIrregexp::CheckGreedyLoop(
208 Label* on_tos_equals_current_position) {
209 Emit(BC_CHECK_GREEDY, 0);
210 EmitOrLink(on_tos_equals_current_position);
211}
212
213
214void RegExpMacroAssemblerIrregexp::LoadCurrentCharacter(int cp_offset,
215 Label* on_failure,
216 bool check_bounds,
217 int characters) {
218 DCHECK(cp_offset >= kMinCPOffset);
219 DCHECK(cp_offset <= kMaxCPOffset);
220 int bytecode;
221 if (check_bounds) {
222 if (characters == 4) {
223 bytecode = BC_LOAD_4_CURRENT_CHARS;
224 } else if (characters == 2) {
225 bytecode = BC_LOAD_2_CURRENT_CHARS;
226 } else {
227 DCHECK(characters == 1);
228 bytecode = BC_LOAD_CURRENT_CHAR;
229 }
230 } else {
231 if (characters == 4) {
232 bytecode = BC_LOAD_4_CURRENT_CHARS_UNCHECKED;
233 } else if (characters == 2) {
234 bytecode = BC_LOAD_2_CURRENT_CHARS_UNCHECKED;
235 } else {
236 DCHECK(characters == 1);
237 bytecode = BC_LOAD_CURRENT_CHAR_UNCHECKED;
238 }
239 }
240 Emit(bytecode, cp_offset);
241 if (check_bounds) EmitOrLink(on_failure);
242}
243
244
245void RegExpMacroAssemblerIrregexp::CheckCharacterLT(uc16 limit,
246 Label* on_less) {
247 Emit(BC_CHECK_LT, limit);
248 EmitOrLink(on_less);
249}
250
251
252void RegExpMacroAssemblerIrregexp::CheckCharacterGT(uc16 limit,
253 Label* on_greater) {
254 Emit(BC_CHECK_GT, limit);
255 EmitOrLink(on_greater);
256}
257
258
259void RegExpMacroAssemblerIrregexp::CheckCharacter(uint32_t c, Label* on_equal) {
260 if (c > MAX_FIRST_ARG) {
261 Emit(BC_CHECK_4_CHARS, 0);
262 Emit32(c);
263 } else {
264 Emit(BC_CHECK_CHAR, c);
265 }
266 EmitOrLink(on_equal);
267}
268
269
270void RegExpMacroAssemblerIrregexp::CheckAtStart(Label* on_at_start) {
271 Emit(BC_CHECK_AT_START, 0);
272 EmitOrLink(on_at_start);
273}
274
275
276void RegExpMacroAssemblerIrregexp::CheckNotAtStart(int cp_offset,
277 Label* on_not_at_start) {
278 Emit(BC_CHECK_NOT_AT_START, cp_offset);
279 EmitOrLink(on_not_at_start);
280}
281
282
283void RegExpMacroAssemblerIrregexp::CheckNotCharacter(uint32_t c,
284 Label* on_not_equal) {
285 if (c > MAX_FIRST_ARG) {
286 Emit(BC_CHECK_NOT_4_CHARS, 0);
287 Emit32(c);
288 } else {
289 Emit(BC_CHECK_NOT_CHAR, c);
290 }
291 EmitOrLink(on_not_equal);
292}
293
294
295void RegExpMacroAssemblerIrregexp::CheckCharacterAfterAnd(
296 uint32_t c,
297 uint32_t mask,
298 Label* on_equal) {
299 if (c > MAX_FIRST_ARG) {
300 Emit(BC_AND_CHECK_4_CHARS, 0);
301 Emit32(c);
302 } else {
303 Emit(BC_AND_CHECK_CHAR, c);
304 }
305 Emit32(mask);
306 EmitOrLink(on_equal);
307}
308
309
310void RegExpMacroAssemblerIrregexp::CheckNotCharacterAfterAnd(
311 uint32_t c,
312 uint32_t mask,
313 Label* on_not_equal) {
314 if (c > MAX_FIRST_ARG) {
315 Emit(BC_AND_CHECK_NOT_4_CHARS, 0);
316 Emit32(c);
317 } else {
318 Emit(BC_AND_CHECK_NOT_CHAR, c);
319 }
320 Emit32(mask);
321 EmitOrLink(on_not_equal);
322}
323
324
325void RegExpMacroAssemblerIrregexp::CheckNotCharacterAfterMinusAnd(
326 uc16 c,
327 uc16 minus,
328 uc16 mask,
329 Label* on_not_equal) {
330 Emit(BC_MINUS_AND_CHECK_NOT_CHAR, c);
331 Emit16(minus);
332 Emit16(mask);
333 EmitOrLink(on_not_equal);
334}
335
336
337void RegExpMacroAssemblerIrregexp::CheckCharacterInRange(
338 uc16 from,
339 uc16 to,
340 Label* on_in_range) {
341 Emit(BC_CHECK_CHAR_IN_RANGE, 0);
342 Emit16(from);
343 Emit16(to);
344 EmitOrLink(on_in_range);
345}
346
347
348void RegExpMacroAssemblerIrregexp::CheckCharacterNotInRange(
349 uc16 from,
350 uc16 to,
351 Label* on_not_in_range) {
352 Emit(BC_CHECK_CHAR_NOT_IN_RANGE, 0);
353 Emit16(from);
354 Emit16(to);
355 EmitOrLink(on_not_in_range);
356}
357
358
359void RegExpMacroAssemblerIrregexp::CheckBitInTable(
360 Handle<ByteArray> table, Label* on_bit_set) {
361 Emit(BC_CHECK_BIT_IN_TABLE, 0);
362 EmitOrLink(on_bit_set);
363 for (int i = 0; i < kTableSize; i += kBitsPerByte) {
364 int byte = 0;
365 for (int j = 0; j < kBitsPerByte; j++) {
366 if (table->get(i + j) != 0) byte |= 1 << j;
367 }
368 Emit8(byte);
369 }
370}
371
372
373void RegExpMacroAssemblerIrregexp::CheckNotBackReference(int start_reg,
374 bool read_backward,
375 Label* on_not_equal) {
376 DCHECK(start_reg >= 0);
377 DCHECK(start_reg <= kMaxRegister);
378 Emit(read_backward ? BC_CHECK_NOT_BACK_REF_BACKWARD : BC_CHECK_NOT_BACK_REF,
379 start_reg);
380 EmitOrLink(on_not_equal);
381}
382
383
384void RegExpMacroAssemblerIrregexp::CheckNotBackReferenceIgnoreCase(
385 int start_reg, bool read_backward, Label* on_not_equal) {
386 DCHECK(start_reg >= 0);
387 DCHECK(start_reg <= kMaxRegister);
388 Emit(read_backward ? BC_CHECK_NOT_BACK_REF_NO_CASE_BACKWARD
389 : BC_CHECK_NOT_BACK_REF_NO_CASE,
390 start_reg);
391 EmitOrLink(on_not_equal);
392}
393
394
395void RegExpMacroAssemblerIrregexp::IfRegisterLT(int register_index,
396 int comparand,
397 Label* on_less_than) {
398 DCHECK(register_index >= 0);
399 DCHECK(register_index <= kMaxRegister);
400 Emit(BC_CHECK_REGISTER_LT, register_index);
401 Emit32(comparand);
402 EmitOrLink(on_less_than);
403}
404
405
406void RegExpMacroAssemblerIrregexp::IfRegisterGE(int register_index,
407 int comparand,
408 Label* on_greater_or_equal) {
409 DCHECK(register_index >= 0);
410 DCHECK(register_index <= kMaxRegister);
411 Emit(BC_CHECK_REGISTER_GE, register_index);
412 Emit32(comparand);
413 EmitOrLink(on_greater_or_equal);
414}
415
416
417void RegExpMacroAssemblerIrregexp::IfRegisterEqPos(int register_index,
418 Label* on_eq) {
419 DCHECK(register_index >= 0);
420 DCHECK(register_index <= kMaxRegister);
421 Emit(BC_CHECK_REGISTER_EQ_POS, register_index);
422 EmitOrLink(on_eq);
423}
424
425
426Handle<HeapObject> RegExpMacroAssemblerIrregexp::GetCode(
427 Handle<String> source) {
428 Bind(&backtrack_);
429 Emit(BC_POP_BT, 0);
430 Handle<ByteArray> array = isolate_->factory()->NewByteArray(length());
431 Copy(array->GetDataStartAddress());
432 return array;
433}
434
435
436int RegExpMacroAssemblerIrregexp::length() {
437 return pc_;
438}
439
440
441void RegExpMacroAssemblerIrregexp::Copy(Address a) {
442 MemCopy(a, buffer_.start(), length());
443}
444
445
446void RegExpMacroAssemblerIrregexp::Expand() {
447 bool old_buffer_was_our_own = own_buffer_;
448 Vector<byte> old_buffer = buffer_;
449 buffer_ = Vector<byte>::New(old_buffer.length() * 2);
450 own_buffer_ = true;
451 MemCopy(buffer_.start(), old_buffer.start(), old_buffer.length());
452 if (old_buffer_was_our_own) {
453 old_buffer.Dispose();
454 }
455}
456
457#endif // V8_INTERPRETED_REGEXP
458
459} // namespace internal
460} // namespace v8