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Ben Murdoch3ef787d2012-04-12 10:51:47 +01001// Copyright 2012 the V8 project authors. All rights reserved.
Ben Murdochb8a8cc12014-11-26 15:28:44 +00002// Use of this source code is governed by a BSD-style license that can be
3// found in the LICENSE file.
Steve Blocka7e24c12009-10-30 11:49:00 +00004
5#ifndef V8_X64_ASSEMBLER_X64_INL_H_
6#define V8_X64_ASSEMBLER_X64_INL_H_
7
Ben Murdochb8a8cc12014-11-26 15:28:44 +00008#include "src/x64/assembler-x64.h"
Ben Murdoch3ef787d2012-04-12 10:51:47 +01009
Ben Murdochb8a8cc12014-11-26 15:28:44 +000010#include "src/base/cpu.h"
Ben Murdoch4a90d5f2016-03-22 12:00:34 +000011#include "src/debug/debug.h"
Ben Murdochb8a8cc12014-11-26 15:28:44 +000012#include "src/v8memory.h"
Steve Blocka7e24c12009-10-30 11:49:00 +000013
14namespace v8 {
15namespace internal {
16
Ben Murdochb8a8cc12014-11-26 15:28:44 +000017bool CpuFeatures::SupportsCrankshaft() { return true; }
18
Steve Blocka7e24c12009-10-30 11:49:00 +000019
20// -----------------------------------------------------------------------------
21// Implementation of Assembler
22
23
Ben Murdochb8a8cc12014-11-26 15:28:44 +000024static const byte kCallOpcode = 0xE8;
25// The length of pushq(rbp), movp(rbp, rsp), Push(rsi) and Push(rdi).
26static const int kNoCodeAgeSequenceLength = kPointerSize == kInt64Size ? 6 : 17;
27
28
Steve Blocka7e24c12009-10-30 11:49:00 +000029void Assembler::emitl(uint32_t x) {
30 Memory::uint32_at(pc_) = x;
31 pc_ += sizeof(uint32_t);
32}
33
34
Ben Murdochb8a8cc12014-11-26 15:28:44 +000035void Assembler::emitp(void* x, RelocInfo::Mode rmode) {
36 uintptr_t value = reinterpret_cast<uintptr_t>(x);
37 Memory::uintptr_at(pc_) = value;
38 if (!RelocInfo::IsNone(rmode)) {
39 RecordRelocInfo(rmode, value);
Steve Blocka7e24c12009-10-30 11:49:00 +000040 }
Ben Murdochb8a8cc12014-11-26 15:28:44 +000041 pc_ += sizeof(uintptr_t);
42}
43
44
45void Assembler::emitq(uint64_t x) {
46 Memory::uint64_at(pc_) = x;
Steve Blocka7e24c12009-10-30 11:49:00 +000047 pc_ += sizeof(uint64_t);
48}
49
50
51void Assembler::emitw(uint16_t x) {
52 Memory::uint16_at(pc_) = x;
53 pc_ += sizeof(uint16_t);
54}
55
56
Ben Murdoch257744e2011-11-30 15:57:28 +000057void Assembler::emit_code_target(Handle<Code> target,
58 RelocInfo::Mode rmode,
Ben Murdochb8a8cc12014-11-26 15:28:44 +000059 TypeFeedbackId ast_id) {
60 DCHECK(RelocInfo::IsCodeTarget(rmode) ||
61 rmode == RelocInfo::CODE_AGE_SEQUENCE);
62 if (rmode == RelocInfo::CODE_TARGET && !ast_id.IsNone()) {
63 RecordRelocInfo(RelocInfo::CODE_TARGET_WITH_ID, ast_id.ToInt());
Ben Murdoch257744e2011-11-30 15:57:28 +000064 } else {
65 RecordRelocInfo(rmode);
66 }
Steve Block3ce2e202009-11-05 08:53:23 +000067 int current = code_targets_.length();
68 if (current > 0 && code_targets_.last().is_identical_to(target)) {
69 // Optimization if we keep jumping to the same code target.
70 emitl(current - 1);
71 } else {
72 code_targets_.Add(target);
73 emitl(current);
74 }
75}
76
77
Ben Murdochb8a8cc12014-11-26 15:28:44 +000078void Assembler::emit_runtime_entry(Address entry, RelocInfo::Mode rmode) {
79 DCHECK(RelocInfo::IsRuntimeEntry(rmode));
80 RecordRelocInfo(rmode);
Ben Murdochc5610432016-08-08 18:44:38 +010081 emitl(static_cast<uint32_t>(
82 entry - isolate()->heap()->memory_allocator()->code_range()->start()));
Ben Murdochb8a8cc12014-11-26 15:28:44 +000083}
84
85
Steve Blocka7e24c12009-10-30 11:49:00 +000086void Assembler::emit_rex_64(Register reg, Register rm_reg) {
87 emit(0x48 | reg.high_bit() << 2 | rm_reg.high_bit());
88}
89
90
91void Assembler::emit_rex_64(XMMRegister reg, Register rm_reg) {
92 emit(0x48 | (reg.code() & 0x8) >> 1 | rm_reg.code() >> 3);
93}
94
95
Steve Block6ded16b2010-05-10 14:33:55 +010096void Assembler::emit_rex_64(Register reg, XMMRegister rm_reg) {
97 emit(0x48 | (reg.code() & 0x8) >> 1 | rm_reg.code() >> 3);
98}
99
100
Steve Blocka7e24c12009-10-30 11:49:00 +0000101void Assembler::emit_rex_64(Register reg, const Operand& op) {
102 emit(0x48 | reg.high_bit() << 2 | op.rex_);
103}
104
105
106void Assembler::emit_rex_64(XMMRegister reg, const Operand& op) {
107 emit(0x48 | (reg.code() & 0x8) >> 1 | op.rex_);
108}
109
110
111void Assembler::emit_rex_64(Register rm_reg) {
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000112 DCHECK_EQ(rm_reg.code() & 0xf, rm_reg.code());
Steve Blocka7e24c12009-10-30 11:49:00 +0000113 emit(0x48 | rm_reg.high_bit());
114}
115
116
117void Assembler::emit_rex_64(const Operand& op) {
118 emit(0x48 | op.rex_);
119}
120
121
122void Assembler::emit_rex_32(Register reg, Register rm_reg) {
123 emit(0x40 | reg.high_bit() << 2 | rm_reg.high_bit());
124}
125
126
127void Assembler::emit_rex_32(Register reg, const Operand& op) {
128 emit(0x40 | reg.high_bit() << 2 | op.rex_);
129}
130
131
132void Assembler::emit_rex_32(Register rm_reg) {
133 emit(0x40 | rm_reg.high_bit());
134}
135
136
137void Assembler::emit_rex_32(const Operand& op) {
138 emit(0x40 | op.rex_);
139}
140
141
142void Assembler::emit_optional_rex_32(Register reg, Register rm_reg) {
143 byte rex_bits = reg.high_bit() << 2 | rm_reg.high_bit();
144 if (rex_bits != 0) emit(0x40 | rex_bits);
145}
146
147
148void Assembler::emit_optional_rex_32(Register reg, const Operand& op) {
149 byte rex_bits = reg.high_bit() << 2 | op.rex_;
150 if (rex_bits != 0) emit(0x40 | rex_bits);
151}
152
153
154void Assembler::emit_optional_rex_32(XMMRegister reg, const Operand& op) {
155 byte rex_bits = (reg.code() & 0x8) >> 1 | op.rex_;
156 if (rex_bits != 0) emit(0x40 | rex_bits);
157}
158
159
160void Assembler::emit_optional_rex_32(XMMRegister reg, XMMRegister base) {
161 byte rex_bits = (reg.code() & 0x8) >> 1 | (base.code() & 0x8) >> 3;
162 if (rex_bits != 0) emit(0x40 | rex_bits);
163}
164
165
166void Assembler::emit_optional_rex_32(XMMRegister reg, Register base) {
167 byte rex_bits = (reg.code() & 0x8) >> 1 | (base.code() & 0x8) >> 3;
168 if (rex_bits != 0) emit(0x40 | rex_bits);
169}
170
171
Steve Block6ded16b2010-05-10 14:33:55 +0100172void Assembler::emit_optional_rex_32(Register reg, XMMRegister base) {
173 byte rex_bits = (reg.code() & 0x8) >> 1 | (base.code() & 0x8) >> 3;
174 if (rex_bits != 0) emit(0x40 | rex_bits);
175}
176
177
Steve Blocka7e24c12009-10-30 11:49:00 +0000178void Assembler::emit_optional_rex_32(Register rm_reg) {
179 if (rm_reg.high_bit()) emit(0x41);
180}
181
182
Emily Bernierd0a1eb72015-03-24 16:35:39 -0400183void Assembler::emit_optional_rex_32(XMMRegister rm_reg) {
184 if (rm_reg.high_bit()) emit(0x41);
185}
186
187
Steve Blocka7e24c12009-10-30 11:49:00 +0000188void Assembler::emit_optional_rex_32(const Operand& op) {
189 if (op.rex_ != 0) emit(0x40 | op.rex_);
190}
191
192
Emily Bernierd0a1eb72015-03-24 16:35:39 -0400193// byte 1 of 3-byte VEX
194void Assembler::emit_vex3_byte1(XMMRegister reg, XMMRegister rm,
195 LeadingOpcode m) {
196 byte rxb = ~((reg.high_bit() << 2) | rm.high_bit()) << 5;
197 emit(rxb | m);
198}
199
200
201// byte 1 of 3-byte VEX
202void Assembler::emit_vex3_byte1(XMMRegister reg, const Operand& rm,
203 LeadingOpcode m) {
204 byte rxb = ~((reg.high_bit() << 2) | rm.rex_) << 5;
205 emit(rxb | m);
206}
207
208
209// byte 1 of 2-byte VEX
210void Assembler::emit_vex2_byte1(XMMRegister reg, XMMRegister v, VectorLength l,
211 SIMDPrefix pp) {
212 byte rv = ~((reg.high_bit() << 4) | v.code()) << 3;
213 emit(rv | l | pp);
214}
215
216
217// byte 2 of 3-byte VEX
218void Assembler::emit_vex3_byte2(VexW w, XMMRegister v, VectorLength l,
219 SIMDPrefix pp) {
220 emit(w | ((~v.code() & 0xf) << 3) | l | pp);
221}
222
223
224void Assembler::emit_vex_prefix(XMMRegister reg, XMMRegister vreg,
225 XMMRegister rm, VectorLength l, SIMDPrefix pp,
226 LeadingOpcode mm, VexW w) {
227 if (rm.high_bit() || mm != k0F || w != kW0) {
228 emit_vex3_byte0();
229 emit_vex3_byte1(reg, rm, mm);
230 emit_vex3_byte2(w, vreg, l, pp);
231 } else {
232 emit_vex2_byte0();
233 emit_vex2_byte1(reg, vreg, l, pp);
234 }
235}
236
237
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000238void Assembler::emit_vex_prefix(Register reg, Register vreg, Register rm,
239 VectorLength l, SIMDPrefix pp, LeadingOpcode mm,
240 VexW w) {
241 XMMRegister ireg = {reg.code()};
242 XMMRegister ivreg = {vreg.code()};
243 XMMRegister irm = {rm.code()};
244 emit_vex_prefix(ireg, ivreg, irm, l, pp, mm, w);
245}
246
247
Emily Bernierd0a1eb72015-03-24 16:35:39 -0400248void Assembler::emit_vex_prefix(XMMRegister reg, XMMRegister vreg,
249 const Operand& rm, VectorLength l,
250 SIMDPrefix pp, LeadingOpcode mm, VexW w) {
251 if (rm.rex_ || mm != k0F || w != kW0) {
252 emit_vex3_byte0();
253 emit_vex3_byte1(reg, rm, mm);
254 emit_vex3_byte2(w, vreg, l, pp);
255 } else {
256 emit_vex2_byte0();
257 emit_vex2_byte1(reg, vreg, l, pp);
258 }
259}
260
261
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000262void Assembler::emit_vex_prefix(Register reg, Register vreg, const Operand& rm,
263 VectorLength l, SIMDPrefix pp, LeadingOpcode mm,
264 VexW w) {
265 XMMRegister ireg = {reg.code()};
266 XMMRegister ivreg = {vreg.code()};
267 emit_vex_prefix(ireg, ivreg, rm, l, pp, mm, w);
268}
269
270
271Address Assembler::target_address_at(Address pc, Address constant_pool) {
Steve Block3ce2e202009-11-05 08:53:23 +0000272 return Memory::int32_at(pc) + pc + 4;
Steve Blocka7e24c12009-10-30 11:49:00 +0000273}
274
275
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000276void Assembler::set_target_address_at(Isolate* isolate, Address pc,
277 Address constant_pool, Address target,
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000278 ICacheFlushMode icache_flush_mode) {
Steve Blockd0582a62009-12-15 09:54:21 +0000279 Memory::int32_at(pc) = static_cast<int32_t>(target - pc - 4);
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000280 if (icache_flush_mode != SKIP_ICACHE_FLUSH) {
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000281 Assembler::FlushICache(isolate, pc, sizeof(int32_t));
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000282 }
Steve Blocka7e24c12009-10-30 11:49:00 +0000283}
284
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000285
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000286void Assembler::deserialization_set_target_internal_reference_at(
287 Isolate* isolate, Address pc, Address target, RelocInfo::Mode mode) {
288 Memory::Address_at(pc) = target;
289}
290
291
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000292Address Assembler::target_address_from_return_address(Address pc) {
293 return pc - kCallTargetAddressOffset;
294}
295
296
Steve Block3ce2e202009-11-05 08:53:23 +0000297Handle<Object> Assembler::code_target_object_handle_at(Address pc) {
298 return code_targets_[Memory::int32_at(pc)];
299}
Steve Blocka7e24c12009-10-30 11:49:00 +0000300
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000301
302Address Assembler::runtime_entry_at(Address pc) {
Ben Murdochc5610432016-08-08 18:44:38 +0100303 return Memory::int32_at(pc) +
304 isolate()->heap()->memory_allocator()->code_range()->start();
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000305}
306
Steve Blocka7e24c12009-10-30 11:49:00 +0000307// -----------------------------------------------------------------------------
308// Implementation of RelocInfo
309
310// The modes possibly affected by apply must be in kApplyMask.
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000311void RelocInfo::apply(intptr_t delta) {
312 if (IsCodeTarget(rmode_) || IsRuntimeEntry(rmode_)) {
Steve Blockd0582a62009-12-15 09:54:21 +0000313 Memory::int32_at(pc_) -= static_cast<int32_t>(delta);
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000314 } else if (IsCodeAgeSequence(rmode_)) {
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000315 if (*pc_ == kCallOpcode) {
316 int32_t* p = reinterpret_cast<int32_t*>(pc_ + 1);
317 *p -= static_cast<int32_t>(delta); // Relocate entry.
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000318 }
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000319 } else if (IsInternalReference(rmode_)) {
320 // absolute code pointer inside code object moves with the code object.
321 Memory::Address_at(pc_) += delta;
Steve Blocka7e24c12009-10-30 11:49:00 +0000322 }
323}
324
325
326Address RelocInfo::target_address() {
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000327 DCHECK(IsCodeTarget(rmode_) || IsRuntimeEntry(rmode_));
328 return Assembler::target_address_at(pc_, host_);
Steve Blocka7e24c12009-10-30 11:49:00 +0000329}
330
Steve Blocka7e24c12009-10-30 11:49:00 +0000331Address RelocInfo::target_address_address() {
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000332 DCHECK(IsCodeTarget(rmode_) || IsRuntimeEntry(rmode_)
Ben Murdoch3ef787d2012-04-12 10:51:47 +0100333 || rmode_ == EMBEDDED_OBJECT
334 || rmode_ == EXTERNAL_REFERENCE);
Steve Blocka7e24c12009-10-30 11:49:00 +0000335 return reinterpret_cast<Address>(pc_);
336}
337
338
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000339Address RelocInfo::constant_pool_entry_address() {
340 UNREACHABLE();
341 return NULL;
342}
343
344
Leon Clarkef7060e22010-06-03 12:02:55 +0100345int RelocInfo::target_address_size() {
346 if (IsCodedSpecially()) {
Ben Murdoch3ef787d2012-04-12 10:51:47 +0100347 return Assembler::kSpecialTargetSize;
Leon Clarkef7060e22010-06-03 12:02:55 +0100348 } else {
Ben Murdoch3ef787d2012-04-12 10:51:47 +0100349 return kPointerSize;
Leon Clarkef7060e22010-06-03 12:02:55 +0100350 }
351}
352
353
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000354void RelocInfo::set_target_address(Address target,
355 WriteBarrierMode write_barrier_mode,
356 ICacheFlushMode icache_flush_mode) {
357 DCHECK(IsCodeTarget(rmode_) || IsRuntimeEntry(rmode_));
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000358 Assembler::set_target_address_at(isolate_, pc_, host_, target,
359 icache_flush_mode);
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000360 if (write_barrier_mode == UPDATE_WRITE_BARRIER && host() != NULL &&
361 IsCodeTarget(rmode_)) {
Ben Murdoch3ef787d2012-04-12 10:51:47 +0100362 Object* target_code = Code::GetCodeFromTargetAddress(target);
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000363 host()->GetHeap()->incremental_marking()->RecordWriteIntoCode(
364 host(), this, HeapObject::cast(target_code));
Steve Block3ce2e202009-11-05 08:53:23 +0000365 }
Steve Blocka7e24c12009-10-30 11:49:00 +0000366}
367
Steve Blocka7e24c12009-10-30 11:49:00 +0000368Object* RelocInfo::target_object() {
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000369 DCHECK(IsCodeTarget(rmode_) || rmode_ == EMBEDDED_OBJECT);
Steve Block3ce2e202009-11-05 08:53:23 +0000370 return Memory::Object_at(pc_);
371}
372
373
Ben Murdoch3ef787d2012-04-12 10:51:47 +0100374Handle<Object> RelocInfo::target_object_handle(Assembler* origin) {
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000375 DCHECK(IsCodeTarget(rmode_) || rmode_ == EMBEDDED_OBJECT);
Steve Block3ce2e202009-11-05 08:53:23 +0000376 if (rmode_ == EMBEDDED_OBJECT) {
377 return Memory::Object_Handle_at(pc_);
378 } else {
379 return origin->code_target_object_handle_at(pc_);
380 }
Steve Blocka7e24c12009-10-30 11:49:00 +0000381}
382
383
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000384Address RelocInfo::target_external_reference() {
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000385 DCHECK(rmode_ == RelocInfo::EXTERNAL_REFERENCE);
386 return Memory::Address_at(pc_);
Steve Blocka7e24c12009-10-30 11:49:00 +0000387}
388
389
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000390Address RelocInfo::target_internal_reference() {
391 DCHECK(rmode_ == INTERNAL_REFERENCE);
392 return Memory::Address_at(pc_);
393}
394
395
396Address RelocInfo::target_internal_reference_address() {
397 DCHECK(rmode_ == INTERNAL_REFERENCE);
398 return reinterpret_cast<Address>(pc_);
399}
400
401
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000402void RelocInfo::set_target_object(Object* target,
403 WriteBarrierMode write_barrier_mode,
404 ICacheFlushMode icache_flush_mode) {
405 DCHECK(IsCodeTarget(rmode_) || rmode_ == EMBEDDED_OBJECT);
Ben Murdoch3ef787d2012-04-12 10:51:47 +0100406 Memory::Object_at(pc_) = target;
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000407 if (icache_flush_mode != SKIP_ICACHE_FLUSH) {
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000408 Assembler::FlushICache(isolate_, pc_, sizeof(Address));
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000409 }
410 if (write_barrier_mode == UPDATE_WRITE_BARRIER &&
Ben Murdoch3ef787d2012-04-12 10:51:47 +0100411 host() != NULL &&
412 target->IsHeapObject()) {
Ben Murdochda12d292016-06-02 14:46:10 +0100413 host()->GetHeap()->incremental_marking()->RecordWriteIntoCode(
414 host(), this, HeapObject::cast(target));
Ben Murdoch3ef787d2012-04-12 10:51:47 +0100415 }
Steve Blocka7e24c12009-10-30 11:49:00 +0000416}
417
418
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000419Address RelocInfo::target_runtime_entry(Assembler* origin) {
420 DCHECK(IsRuntimeEntry(rmode_));
421 return origin->runtime_entry_at(pc_);
Ben Murdochb0fe1622011-05-05 13:52:32 +0100422}
423
424
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000425void RelocInfo::set_target_runtime_entry(Address target,
426 WriteBarrierMode write_barrier_mode,
427 ICacheFlushMode icache_flush_mode) {
428 DCHECK(IsRuntimeEntry(rmode_));
429 if (target_address() != target) {
430 set_target_address(target, write_barrier_mode, icache_flush_mode);
431 }
Ben Murdochb0fe1622011-05-05 13:52:32 +0100432}
433
434
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000435Handle<Cell> RelocInfo::target_cell_handle() {
436 DCHECK(rmode_ == RelocInfo::CELL);
437 Address address = Memory::Address_at(pc_);
438 return Handle<Cell>(reinterpret_cast<Cell**>(address));
439}
440
441
442Cell* RelocInfo::target_cell() {
443 DCHECK(rmode_ == RelocInfo::CELL);
444 return Cell::FromValueAddress(Memory::Address_at(pc_));
445}
446
447
448void RelocInfo::set_target_cell(Cell* cell,
449 WriteBarrierMode write_barrier_mode,
450 ICacheFlushMode icache_flush_mode) {
451 DCHECK(rmode_ == RelocInfo::CELL);
452 Address address = cell->address() + Cell::kValueOffset;
Ben Murdochb0fe1622011-05-05 13:52:32 +0100453 Memory::Address_at(pc_) = address;
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000454 if (icache_flush_mode != SKIP_ICACHE_FLUSH) {
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000455 Assembler::FlushICache(isolate_, pc_, sizeof(Address));
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000456 }
457 if (write_barrier_mode == UPDATE_WRITE_BARRIER &&
Ben Murdoch3ef787d2012-04-12 10:51:47 +0100458 host() != NULL) {
Ben Murdoch097c5b22016-05-18 11:27:45 +0100459 host()->GetHeap()->incremental_marking()->RecordWriteIntoCode(host(), this,
460 cell);
Ben Murdoch3ef787d2012-04-12 10:51:47 +0100461 }
Ben Murdochb0fe1622011-05-05 13:52:32 +0100462}
463
464
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000465void RelocInfo::WipeOut() {
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000466 if (IsEmbeddedObject(rmode_) || IsExternalReference(rmode_) ||
467 IsInternalReference(rmode_)) {
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000468 Memory::Address_at(pc_) = NULL;
469 } else if (IsCodeTarget(rmode_) || IsRuntimeEntry(rmode_)) {
470 // Effectively write zero into the relocation.
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000471 Assembler::set_target_address_at(isolate_, pc_, host_,
472 pc_ + sizeof(int32_t));
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000473 } else {
474 UNREACHABLE();
475 }
476}
477
478
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000479Handle<Object> RelocInfo::code_age_stub_handle(Assembler* origin) {
480 DCHECK(rmode_ == RelocInfo::CODE_AGE_SEQUENCE);
481 DCHECK(*pc_ == kCallOpcode);
482 return origin->code_target_object_handle_at(pc_ + 1);
483}
484
485
486Code* RelocInfo::code_age_stub() {
487 DCHECK(rmode_ == RelocInfo::CODE_AGE_SEQUENCE);
488 DCHECK(*pc_ == kCallOpcode);
489 return Code::GetCodeFromTargetAddress(
490 Assembler::target_address_at(pc_ + 1, host_));
491}
492
493
494void RelocInfo::set_code_age_stub(Code* stub,
495 ICacheFlushMode icache_flush_mode) {
496 DCHECK(*pc_ == kCallOpcode);
497 DCHECK(rmode_ == RelocInfo::CODE_AGE_SEQUENCE);
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000498 Assembler::set_target_address_at(
499 isolate_, pc_ + 1, host_, stub->instruction_start(), icache_flush_mode);
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000500}
501
502
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000503Address RelocInfo::debug_call_address() {
504 DCHECK(IsDebugBreakSlot(rmode()) && IsPatchedDebugBreakSlotSequence());
505 return Memory::Address_at(pc_ + Assembler::kPatchDebugBreakSlotAddressOffset);
Steve Blocka7e24c12009-10-30 11:49:00 +0000506}
507
508
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000509void RelocInfo::set_debug_call_address(Address target) {
510 DCHECK(IsDebugBreakSlot(rmode()) && IsPatchedDebugBreakSlotSequence());
511 Memory::Address_at(pc_ + Assembler::kPatchDebugBreakSlotAddressOffset) =
Steve Block3ce2e202009-11-05 08:53:23 +0000512 target;
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000513 Assembler::FlushICache(isolate_,
514 pc_ + Assembler::kPatchDebugBreakSlotAddressOffset,
515 sizeof(Address));
Ben Murdoch3ef787d2012-04-12 10:51:47 +0100516 if (host() != NULL) {
517 Object* target_code = Code::GetCodeFromTargetAddress(target);
518 host()->GetHeap()->incremental_marking()->RecordWriteIntoCode(
519 host(), this, HeapObject::cast(target_code));
520 }
Steve Blocka7e24c12009-10-30 11:49:00 +0000521}
522
Ben Murdochc5610432016-08-08 18:44:38 +0100523template <typename ObjectVisitor>
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000524void RelocInfo::Visit(Isolate* isolate, ObjectVisitor* visitor) {
Leon Clarkef7060e22010-06-03 12:02:55 +0100525 RelocInfo::Mode mode = rmode();
526 if (mode == RelocInfo::EMBEDDED_OBJECT) {
Ben Murdoch3ef787d2012-04-12 10:51:47 +0100527 visitor->VisitEmbeddedPointer(this);
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000528 Assembler::FlushICache(isolate, pc_, sizeof(Address));
Leon Clarkef7060e22010-06-03 12:02:55 +0100529 } else if (RelocInfo::IsCodeTarget(mode)) {
530 visitor->VisitCodeTarget(this);
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000531 } else if (mode == RelocInfo::CELL) {
532 visitor->VisitCell(this);
Leon Clarkef7060e22010-06-03 12:02:55 +0100533 } else if (mode == RelocInfo::EXTERNAL_REFERENCE) {
Ben Murdoch3ef787d2012-04-12 10:51:47 +0100534 visitor->VisitExternalReference(this);
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000535 } else if (mode == RelocInfo::INTERNAL_REFERENCE) {
536 visitor->VisitInternalReference(this);
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000537 } else if (RelocInfo::IsCodeAgeSequence(mode)) {
538 visitor->VisitCodeAgeSequence(this);
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000539 } else if (RelocInfo::IsDebugBreakSlot(mode) &&
540 IsPatchedDebugBreakSlotSequence()) {
Leon Clarkef7060e22010-06-03 12:02:55 +0100541 visitor->VisitDebugTarget(this);
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000542 } else if (RelocInfo::IsRuntimeEntry(mode)) {
Leon Clarkef7060e22010-06-03 12:02:55 +0100543 visitor->VisitRuntimeEntry(this);
544 }
545}
546
547
Iain Merrick75681382010-08-19 15:07:18 +0100548template<typename StaticVisitor>
Steve Block44f0eee2011-05-26 01:26:41 +0100549void RelocInfo::Visit(Heap* heap) {
Iain Merrick75681382010-08-19 15:07:18 +0100550 RelocInfo::Mode mode = rmode();
551 if (mode == RelocInfo::EMBEDDED_OBJECT) {
Ben Murdoch3ef787d2012-04-12 10:51:47 +0100552 StaticVisitor::VisitEmbeddedPointer(heap, this);
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000553 Assembler::FlushICache(heap->isolate(), pc_, sizeof(Address));
Iain Merrick75681382010-08-19 15:07:18 +0100554 } else if (RelocInfo::IsCodeTarget(mode)) {
Ben Murdoch8b112d22011-06-08 16:22:53 +0100555 StaticVisitor::VisitCodeTarget(heap, this);
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000556 } else if (mode == RelocInfo::CELL) {
557 StaticVisitor::VisitCell(heap, this);
Iain Merrick75681382010-08-19 15:07:18 +0100558 } else if (mode == RelocInfo::EXTERNAL_REFERENCE) {
Ben Murdoch3ef787d2012-04-12 10:51:47 +0100559 StaticVisitor::VisitExternalReference(this);
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000560 } else if (mode == RelocInfo::INTERNAL_REFERENCE) {
561 StaticVisitor::VisitInternalReference(this);
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000562 } else if (RelocInfo::IsCodeAgeSequence(mode)) {
563 StaticVisitor::VisitCodeAgeSequence(heap, this);
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000564 } else if (RelocInfo::IsDebugBreakSlot(mode) &&
565 IsPatchedDebugBreakSlotSequence()) {
Ben Murdoch8b112d22011-06-08 16:22:53 +0100566 StaticVisitor::VisitDebugTarget(heap, this);
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000567 } else if (RelocInfo::IsRuntimeEntry(mode)) {
Iain Merrick75681382010-08-19 15:07:18 +0100568 StaticVisitor::VisitRuntimeEntry(this);
569 }
570}
571
572
Steve Blocka7e24c12009-10-30 11:49:00 +0000573// -----------------------------------------------------------------------------
574// Implementation of Operand
575
576void Operand::set_modrm(int mod, Register rm_reg) {
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000577 DCHECK(is_uint2(mod));
Steve Blocka7e24c12009-10-30 11:49:00 +0000578 buf_[0] = mod << 6 | rm_reg.low_bits();
579 // Set REX.B to the high bit of rm.code().
580 rex_ |= rm_reg.high_bit();
581}
582
583
584void Operand::set_sib(ScaleFactor scale, Register index, Register base) {
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000585 DCHECK(len_ == 1);
586 DCHECK(is_uint2(scale));
Steve Blocka7e24c12009-10-30 11:49:00 +0000587 // Use SIB with no index register only for base rsp or r12. Otherwise we
588 // would skip the SIB byte entirely.
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000589 DCHECK(!index.is(rsp) || base.is(rsp) || base.is(r12));
Steve Block1e0659c2011-05-24 12:43:12 +0100590 buf_[1] = (scale << 6) | (index.low_bits() << 3) | base.low_bits();
Steve Blocka7e24c12009-10-30 11:49:00 +0000591 rex_ |= index.high_bit() << 1 | base.high_bit();
592 len_ = 2;
593}
594
595void Operand::set_disp8(int disp) {
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000596 DCHECK(is_int8(disp));
597 DCHECK(len_ == 1 || len_ == 2);
Steve Blocka7e24c12009-10-30 11:49:00 +0000598 int8_t* p = reinterpret_cast<int8_t*>(&buf_[len_]);
599 *p = disp;
600 len_ += sizeof(int8_t);
601}
602
603void Operand::set_disp32(int disp) {
Ben Murdochb8a8cc12014-11-26 15:28:44 +0000604 DCHECK(len_ == 1 || len_ == 2);
Steve Blocka7e24c12009-10-30 11:49:00 +0000605 int32_t* p = reinterpret_cast<int32_t*>(&buf_[len_]);
606 *p = disp;
607 len_ += sizeof(int32_t);
608}
609
Ben Murdoch4a90d5f2016-03-22 12:00:34 +0000610void Operand::set_disp64(int64_t disp) {
611 DCHECK_EQ(1, len_);
612 int64_t* p = reinterpret_cast<int64_t*>(&buf_[len_]);
613 *p = disp;
614 len_ += sizeof(disp);
615}
616} // namespace internal
617} // namespace v8
Steve Blocka7e24c12009-10-30 11:49:00 +0000618
619#endif // V8_X64_ASSEMBLER_X64_INL_H_