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Side by Side Diff: src/x64/assembler-x64.cc

Issue 3388004: Add support for near labels.... (Closed) Base URL: http://v8.googlecode.com/svn/branches/bleeding_edge/
Patch Set: Created 10 years, 3 months ago
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1 // Copyright 2009 the V8 project authors. All rights reserved. 1 // Copyright 2009 the V8 project authors. All rights reserved.
2 // Redistribution and use in source and binary forms, with or without 2 // Redistribution and use in source and binary forms, with or without
3 // modification, are permitted provided that the following conditions are 3 // modification, are permitted provided that the following conditions are
4 // met: 4 // met:
5 // 5 //
6 // * Redistributions of source code must retain the above copyright 6 // * Redistributions of source code must retain the above copyright
7 // notice, this list of conditions and the following disclaimer. 7 // notice, this list of conditions and the following disclaimer.
8 // * Redistributions in binary form must reproduce the above 8 // * Redistributions in binary form must reproduce the above
9 // copyright notice, this list of conditions and the following 9 // copyright notice, this list of conditions and the following
10 // disclaimer in the documentation and/or other materials provided 10 // disclaimer in the documentation and/or other materials provided
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411 } 411 }
412 L->bind_to(pos); 412 L->bind_to(pos);
413 } 413 }
414 414
415 415
416 void Assembler::bind(Label* L) { 416 void Assembler::bind(Label* L) {
417 bind_to(L, pc_offset()); 417 bind_to(L, pc_offset());
418 } 418 }
419 419
420 420
421 void Assembler::bind(NearLabel* L) {
422 ASSERT(!L->is_bound());
423 last_pc_ = NULL;
424 while (L->unresolved_branches_ > 0) {
425 int branch_pos = L->unresolved_positions_[L->unresolved_branches_ - 1];
426 int disp = pc_offset() - branch_pos;
427 ASSERT(is_int8(disp));
428 set_byte_at(branch_pos - sizeof(int8_t), disp);
429 L->unresolved_branches_--;
430 }
431 L->bind_to(pc_offset());
432 }
433
434
421 void Assembler::GrowBuffer() { 435 void Assembler::GrowBuffer() {
422 ASSERT(buffer_overflow()); 436 ASSERT(buffer_overflow());
423 if (!own_buffer_) FATAL("external code buffer is too small"); 437 if (!own_buffer_) FATAL("external code buffer is too small");
424 438
425 // Compute new buffer size. 439 // Compute new buffer size.
426 CodeDesc desc; // the new buffer 440 CodeDesc desc; // the new buffer
427 if (buffer_size_ < 4*KB) { 441 if (buffer_size_ < 4*KB) {
428 desc.buffer_size = 4*KB; 442 desc.buffer_size = 4*KB;
429 } else { 443 } else {
430 desc.buffer_size = 2*buffer_size_; 444 desc.buffer_size = 2*buffer_size_;
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1220 EnsureSpace ensure_space(this); 1234 EnsureSpace ensure_space(this);
1221 last_pc_ = pc_; 1235 last_pc_ = pc_;
1222 ASSERT(is_uint4(cc)); 1236 ASSERT(is_uint4(cc));
1223 // 0000 1111 1000 tttn #32-bit disp. 1237 // 0000 1111 1000 tttn #32-bit disp.
1224 emit(0x0F); 1238 emit(0x0F);
1225 emit(0x80 | cc); 1239 emit(0x80 | cc);
1226 emit_code_target(target, rmode); 1240 emit_code_target(target, rmode);
1227 } 1241 }
1228 1242
1229 1243
1244 void Assembler::j(Condition cc, NearLabel* L, Hint hint) {
1245 EnsureSpace ensure_space(this);
1246 last_pc_ = pc_;
1247 ASSERT(0 <= cc && cc < 16);
1248 if (FLAG_emit_branch_hints && hint != no_hint) emit(hint);
1249 if (L->is_bound()) {
1250 const int short_size = 2;
1251 int offs = L->pos() - pc_offset();
1252 ASSERT(offs <= 0);
1253 ASSERT(is_int8(offs - short_size));
1254 // 0111 tttn #8-bit disp
1255 emit(0x70 | cc);
1256 emit((offs - short_size) & 0xFF);
1257 } else {
1258 emit(0x70 | cc);
1259 emit(0x00); // The displacement will be resolved later.
1260 L->link_to(pc_offset());
1261 }
1262 }
1263
1264
1230 void Assembler::jmp(Label* L) { 1265 void Assembler::jmp(Label* L) {
1231 EnsureSpace ensure_space(this); 1266 EnsureSpace ensure_space(this);
1232 last_pc_ = pc_; 1267 last_pc_ = pc_;
1233 const int short_size = sizeof(int8_t); 1268 const int short_size = sizeof(int8_t);
1234 const int long_size = sizeof(int32_t); 1269 const int long_size = sizeof(int32_t);
1235 if (L->is_bound()) { 1270 if (L->is_bound()) {
1236 int offs = L->pos() - pc_offset() - 1; 1271 int offs = L->pos() - pc_offset() - 1;
1237 ASSERT(offs <= 0); 1272 ASSERT(offs <= 0);
1238 if (is_int8(offs - short_size)) { 1273 if (is_int8(offs - short_size)) {
1239 // 1110 1011 #8-bit disp. 1274 // 1110 1011 #8-bit disp.
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1262 1297
1263 void Assembler::jmp(Handle<Code> target, RelocInfo::Mode rmode) { 1298 void Assembler::jmp(Handle<Code> target, RelocInfo::Mode rmode) {
1264 EnsureSpace ensure_space(this); 1299 EnsureSpace ensure_space(this);
1265 last_pc_ = pc_; 1300 last_pc_ = pc_;
1266 // 1110 1001 #32-bit disp. 1301 // 1110 1001 #32-bit disp.
1267 emit(0xE9); 1302 emit(0xE9);
1268 emit_code_target(target, rmode); 1303 emit_code_target(target, rmode);
1269 } 1304 }
1270 1305
1271 1306
1307 void Assembler::jmp(NearLabel* L) {
1308 EnsureSpace ensure_space(this);
1309 last_pc_ = pc_;
1310 if (L->is_bound()) {
1311 const int short_size = sizeof(int8_t);
1312 int offs = L->pos() - pc_offset();
1313 ASSERT(offs <= 0);
1314 ASSERT(is_int8(offs - short_size));
1315 // 1110 1011 #8-bit disp.
1316 emit(0xEB);
1317 emit((offs - short_size) & 0xFF);
1318 } else {
1319 emit(0xEB);
1320 emit(0x00); // The displacement will be resolved later.
1321 L->link_to(pc_offset());
1322 }
1323 }
1324
1325
1272 void Assembler::jmp(Register target) { 1326 void Assembler::jmp(Register target) {
1273 EnsureSpace ensure_space(this); 1327 EnsureSpace ensure_space(this);
1274 last_pc_ = pc_; 1328 last_pc_ = pc_;
1275 // Opcode FF/4 r64. 1329 // Opcode FF/4 r64.
1276 emit_optional_rex_32(target); 1330 emit_optional_rex_32(target);
1277 emit(0xFF); 1331 emit(0xFF);
1278 emit_modrm(0x4, target); 1332 emit_modrm(0x4, target);
1279 } 1333 }
1280 1334
1281 1335
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2950 // specially coded on x64 means that it is a relative 32 bit address, as used 3004 // specially coded on x64 means that it is a relative 32 bit address, as used
2951 // by branch instructions. 3005 // by branch instructions.
2952 return (1 << rmode_) & kApplyMask; 3006 return (1 << rmode_) & kApplyMask;
2953 } 3007 }
2954 3008
2955 3009
2956 3010
2957 } } // namespace v8::internal 3011 } } // namespace v8::internal
2958 3012
2959 #endif // V8_TARGET_ARCH_X64 3013 #endif // V8_TARGET_ARCH_X64
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