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Side by Side Diff: runtime/vm/intrinsifier_x64.cc

Issue 22825023: Uses an object pool on x64 (Closed) Base URL: http://dart.googlecode.com/svn/branches/bleeding_edge/dart/
Patch Set: Created 7 years, 3 months ago
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1 // Copyright (c) 2013, the Dart project authors. Please see the AUTHORS file 1 // Copyright (c) 2013, the Dart project authors. Please see the AUTHORS file
2 // for details. All rights reserved. Use of this source code is governed by a 2 // for details. All rights reserved. Use of this source code is governed by a
3 // BSD-style license that can be found in the LICENSE file. 3 // BSD-style license that can be found in the LICENSE file.
4 4
5 #include "vm/globals.h" // Needed here to get TARGET_ARCH_X64. 5 #include "vm/globals.h" // Needed here to get TARGET_ARCH_X64.
6 #if defined(TARGET_ARCH_X64) 6 #if defined(TARGET_ARCH_X64)
7 7
8 #include "vm/intrinsifier.h" 8 #include "vm/intrinsifier.h"
9 9
10 #include "vm/assembler.h" 10 #include "vm/assembler.h"
(...skipping 99 matching lines...) Expand 10 before | Expand all | Expand 10 after
110 __ movq(RDI, Address(RSP, kArrayLengthOffset)); // Array Length. 110 __ movq(RDI, Address(RSP, kArrayLengthOffset)); // Array Length.
111 __ StoreIntoObjectNoBarrier(RAX, 111 __ StoreIntoObjectNoBarrier(RAX,
112 FieldAddress(RAX, Array::length_offset()), 112 FieldAddress(RAX, Array::length_offset()),
113 RDI); 113 RDI);
114 114
115 // Initialize all array elements to raw_null. 115 // Initialize all array elements to raw_null.
116 // RAX: new object start as a tagged pointer. 116 // RAX: new object start as a tagged pointer.
117 // RCX: new object end address. 117 // RCX: new object end address.
118 // RDI: iterator which initially points to the start of the variable 118 // RDI: iterator which initially points to the start of the variable
119 // data area to be initialized. 119 // data area to be initialized.
120 const Immediate& raw_null = 120 __ LoadObject(R12, Object::Handle(), PP);
121 Immediate(reinterpret_cast<intptr_t>(Object::null()));
122 __ leaq(RDI, FieldAddress(RAX, sizeof(RawArray))); 121 __ leaq(RDI, FieldAddress(RAX, sizeof(RawArray)));
123 Label done; 122 Label done;
124 Label init_loop; 123 Label init_loop;
125 __ Bind(&init_loop); 124 __ Bind(&init_loop);
126 __ cmpq(RDI, RCX); 125 __ cmpq(RDI, RCX);
127 __ j(ABOVE_EQUAL, &done, Assembler::kNearJump); 126 __ j(ABOVE_EQUAL, &done, Assembler::kNearJump);
128 __ movq(Address(RDI, 0), raw_null); 127 __ movq(Address(RDI, 0), R12);
129 __ addq(RDI, Immediate(kWordSize)); 128 __ addq(RDI, Immediate(kWordSize));
130 __ jmp(&init_loop, Assembler::kNearJump); 129 __ jmp(&init_loop, Assembler::kNearJump);
131 __ Bind(&done); 130 __ Bind(&done);
132 __ ret(); // returns the newly allocated object in RAX. 131 __ ret(); // returns the newly allocated object in RAX.
133 132
134 __ Bind(&fall_through); 133 __ Bind(&fall_through);
135 } 134 }
136 135
137 136
138 void Intrinsifier::Array_getLength(Assembler* assembler) { 137 void Intrinsifier::Array_getLength(Assembler* assembler) {
(...skipping 246 matching lines...) Expand 10 before | Expand all | Expand 10 after
385 __ j(EQUAL, &fall_through); // Must grow data. 384 __ j(EQUAL, &fall_through); // Must grow data.
386 const Immediate& value_one = 385 const Immediate& value_one =
387 Immediate(reinterpret_cast<int64_t>(Smi::New(1))); 386 Immediate(reinterpret_cast<int64_t>(Smi::New(1)));
388 // len = len + 1; 387 // len = len + 1;
389 __ addq(FieldAddress(RAX, GrowableObjectArray::length_offset()), value_one); 388 __ addq(FieldAddress(RAX, GrowableObjectArray::length_offset()), value_one);
390 __ movq(RAX, Address(RSP, + 1 * kWordSize)); // Value 389 __ movq(RAX, Address(RSP, + 1 * kWordSize)); // Value
391 ASSERT(kSmiTagShift == 1); 390 ASSERT(kSmiTagShift == 1);
392 __ StoreIntoObject(RDX, 391 __ StoreIntoObject(RDX,
393 FieldAddress(RDX, RCX, TIMES_4, Array::data_offset()), 392 FieldAddress(RDX, RCX, TIMES_4, Array::data_offset()),
394 RAX); 393 RAX);
395 const Immediate& raw_null = 394 __ LoadObject(RAX, Object::Handle(), PP);
396 Immediate(reinterpret_cast<int64_t>(Object::null()));
397 __ movq(RAX, raw_null);
398 __ ret(); 395 __ ret();
399 __ Bind(&fall_through); 396 __ Bind(&fall_through);
400 } 397 }
401 398
402 399
403 #define TYPED_ARRAY_ALLOCATION(type_name, cid, max_len, scale_factor) \ 400 #define TYPED_ARRAY_ALLOCATION(type_name, cid, max_len, scale_factor) \
404 Label fall_through; \ 401 Label fall_through; \
405 const intptr_t kArrayLengthStackOffset = 1 * kWordSize; \ 402 const intptr_t kArrayLengthStackOffset = 1 * kWordSize; \
406 __ movq(RDI, Address(RSP, kArrayLengthStackOffset)); /* Array length. */ \ 403 __ movq(RDI, Address(RSP, kArrayLengthStackOffset)); /* Array length. */ \
407 /* Check that length is a positive Smi. */ \ 404 /* Check that length is a positive Smi. */ \
(...skipping 464 matching lines...) Expand 10 before | Expand all | Expand 10 after
872 __ Bind(&fall_through); 869 __ Bind(&fall_through);
873 } 870 }
874 871
875 872
876 static void CompareIntegers(Assembler* assembler, Condition true_condition) { 873 static void CompareIntegers(Assembler* assembler, Condition true_condition) {
877 Label fall_through, true_label; 874 Label fall_through, true_label;
878 TestBothArgumentsSmis(assembler, &fall_through); 875 TestBothArgumentsSmis(assembler, &fall_through);
879 // RAX contains the right argument. 876 // RAX contains the right argument.
880 __ cmpq(Address(RSP, + 2 * kWordSize), RAX); 877 __ cmpq(Address(RSP, + 2 * kWordSize), RAX);
881 __ j(true_condition, &true_label, Assembler::kNearJump); 878 __ j(true_condition, &true_label, Assembler::kNearJump);
882 __ LoadObject(RAX, Bool::False()); 879 __ LoadObject(RAX, Bool::False(), PP);
883 __ ret(); 880 __ ret();
884 __ Bind(&true_label); 881 __ Bind(&true_label);
885 __ LoadObject(RAX, Bool::True()); 882 __ LoadObject(RAX, Bool::True(), PP);
886 __ ret(); 883 __ ret();
887 __ Bind(&fall_through); 884 __ Bind(&fall_through);
888 } 885 }
889 886
890 887
891 888
892 void Intrinsifier::Integer_lessThan(Assembler* assembler) { 889 void Intrinsifier::Integer_lessThan(Assembler* assembler) {
893 return CompareIntegers(assembler, LESS); 890 return CompareIntegers(assembler, LESS);
894 } 891 }
895 892
(...skipping 16 matching lines...) Expand all
912 void Intrinsifier::Integer_greaterEqualThan(Assembler* assembler) { 909 void Intrinsifier::Integer_greaterEqualThan(Assembler* assembler) {
913 return CompareIntegers(assembler, GREATER_EQUAL); 910 return CompareIntegers(assembler, GREATER_EQUAL);
914 } 911 }
915 912
916 913
917 // This is called for Smi, Mint and Bigint receivers. The right argument 914 // This is called for Smi, Mint and Bigint receivers. The right argument
918 // can be Smi, Mint, Bigint or double. 915 // can be Smi, Mint, Bigint or double.
919 void Intrinsifier::Integer_equalToInteger(Assembler* assembler) { 916 void Intrinsifier::Integer_equalToInteger(Assembler* assembler) {
920 Label fall_through, true_label, check_for_mint; 917 Label fall_through, true_label, check_for_mint;
921 // For integer receiver '===' check first. 918 // For integer receiver '===' check first.
922 __ movq(RAX, Address(RSP, + 1 * kWordSize)); 919 // Entering a dart frame so we can use the PP for loading True and False.
923 __ movq(RCX, Address(RSP, + 2 * kWordSize)); 920 __ EnterDartFrame(0);
921 __ movq(RAX, Address(RSP, + 4 * kWordSize));
922 __ movq(RCX, Address(RSP, + 5 * kWordSize));
924 __ cmpq(RAX, RCX); 923 __ cmpq(RAX, RCX);
925 __ j(EQUAL, &true_label, Assembler::kNearJump); 924 __ j(EQUAL, &true_label, Assembler::kNearJump);
926 __ orq(RAX, RCX); 925 __ orq(RAX, RCX);
927 __ testq(RAX, Immediate(kSmiTagMask)); 926 __ testq(RAX, Immediate(kSmiTagMask));
928 __ j(NOT_ZERO, &check_for_mint, Assembler::kNearJump); 927 __ j(NOT_ZERO, &check_for_mint, Assembler::kNearJump);
929 // Both arguments are smi, '===' is good enough. 928 // Both arguments are smi, '===' is good enough.
930 __ LoadObject(RAX, Bool::False()); 929 __ LoadObject(RAX, Bool::False(), PP);
930 __ LeaveFrameWithPP();
931 __ ret(); 931 __ ret();
932 __ Bind(&true_label); 932 __ Bind(&true_label);
933 __ LoadObject(RAX, Bool::True()); 933 __ LoadObject(RAX, Bool::True(), PP);
934 __ LeaveFrameWithPP();
934 __ ret(); 935 __ ret();
935 936
936 // At least one of the arguments was not Smi. 937 // At least one of the arguments was not Smi.
937 Label receiver_not_smi; 938 Label receiver_not_smi;
938 __ Bind(&check_for_mint); 939 __ Bind(&check_for_mint);
939 __ movq(RAX, Address(RSP, + 2 * kWordSize)); // Receiver. 940 __ movq(RAX, Address(RSP, + 5 * kWordSize)); // Receiver.
940 __ testq(RAX, Immediate(kSmiTagMask)); 941 __ testq(RAX, Immediate(kSmiTagMask));
941 __ j(NOT_ZERO, &receiver_not_smi); 942 __ j(NOT_ZERO, &receiver_not_smi);
942 943
943 // Left (receiver) is Smi, return false if right is not Double. 944 // Left (receiver) is Smi, return false if right is not Double.
944 // Note that an instance of Mint or Bigint never contains a value that can be 945 // Note that an instance of Mint or Bigint never contains a value that can be
945 // represented by Smi. 946 // represented by Smi.
946 __ movq(RAX, Address(RSP, + 1 * kWordSize)); 947 __ movq(RAX, Address(RSP, + 4 * kWordSize));
947 __ CompareClassId(RAX, kDoubleCid); 948 __ CompareClassId(RAX, kDoubleCid);
948 __ j(EQUAL, &fall_through); 949 __ j(EQUAL, &fall_through);
949 __ LoadObject(RAX, Bool::False()); 950 __ LoadObject(RAX, Bool::False(), PP);
951 __ LeaveFrameWithPP();
950 __ ret(); 952 __ ret();
951 953
952 __ Bind(&receiver_not_smi); 954 __ Bind(&receiver_not_smi);
953 // RAX:: receiver. 955 // RAX:: receiver.
954 __ CompareClassId(RAX, kMintCid); 956 __ CompareClassId(RAX, kMintCid);
955 __ j(NOT_EQUAL, &fall_through); 957 __ j(NOT_EQUAL, &fall_through);
956 // Receiver is Mint, return false if right is Smi. 958 // Receiver is Mint, return false if right is Smi.
957 __ movq(RAX, Address(RSP, + 1 * kWordSize)); // Right argument. 959 __ movq(RAX, Address(RSP, + 4 * kWordSize)); // Right argument.
958 __ testq(RAX, Immediate(kSmiTagMask)); 960 __ testq(RAX, Immediate(kSmiTagMask));
959 __ j(NOT_ZERO, &fall_through); 961 __ j(NOT_ZERO, &fall_through);
960 __ LoadObject(RAX, Bool::False()); // Smi == Mint -> false. 962 // Smi == Mint -> false.
963 __ LoadObject(RAX, Bool::False(), PP);
964 __ LeaveFrameWithPP();
961 __ ret(); 965 __ ret();
962 // TODO(srdjan): Implement Mint == Mint comparison. 966 // TODO(srdjan): Implement Mint == Mint comparison.
963 967
964 __ Bind(&fall_through); 968 __ Bind(&fall_through);
969 __ LeaveFrameWithPP();
965 } 970 }
966 971
967 972
968 void Intrinsifier::Integer_equal(Assembler* assembler) { 973 void Intrinsifier::Integer_equal(Assembler* assembler) {
969 return Integer_equalToInteger(assembler); 974 return Integer_equalToInteger(assembler);
970 } 975 }
971 976
972 977
973 void Intrinsifier::Integer_sar(Assembler* assembler) { 978 void Intrinsifier::Integer_sar(Assembler* assembler) {
974 Label fall_through, shift_count_ok; 979 Label fall_through, shift_count_ok;
(...skipping 59 matching lines...) Expand 10 before | Expand all | Expand 10 after
1034 // Both arguments are double, right operand is in RAX. 1039 // Both arguments are double, right operand is in RAX.
1035 __ movsd(XMM1, FieldAddress(RAX, Double::value_offset())); 1040 __ movsd(XMM1, FieldAddress(RAX, Double::value_offset()));
1036 __ Bind(&double_op); 1041 __ Bind(&double_op);
1037 __ movq(RAX, Address(RSP, + 2 * kWordSize)); // Left argument. 1042 __ movq(RAX, Address(RSP, + 2 * kWordSize)); // Left argument.
1038 __ movsd(XMM0, FieldAddress(RAX, Double::value_offset())); 1043 __ movsd(XMM0, FieldAddress(RAX, Double::value_offset()));
1039 __ comisd(XMM0, XMM1); 1044 __ comisd(XMM0, XMM1);
1040 __ j(PARITY_EVEN, &is_false, Assembler::kNearJump); // NaN -> false; 1045 __ j(PARITY_EVEN, &is_false, Assembler::kNearJump); // NaN -> false;
1041 __ j(true_condition, &is_true, Assembler::kNearJump); 1046 __ j(true_condition, &is_true, Assembler::kNearJump);
1042 // Fall through false. 1047 // Fall through false.
1043 __ Bind(&is_false); 1048 __ Bind(&is_false);
1044 __ LoadObject(RAX, Bool::False()); 1049 __ LoadObject(RAX, Bool::False(), PP);
1045 __ ret(); 1050 __ ret();
1046 __ Bind(&is_true); 1051 __ Bind(&is_true);
1047 __ LoadObject(RAX, Bool::True()); 1052 __ LoadObject(RAX, Bool::True(), PP);
1048 __ ret(); 1053 __ ret();
1049 __ Bind(&is_smi); 1054 __ Bind(&is_smi);
1050 __ SmiUntag(RAX); 1055 __ SmiUntag(RAX);
1051 __ cvtsi2sd(XMM1, RAX); 1056 __ cvtsi2sd(XMM1, RAX);
1052 __ jmp(&double_op); 1057 __ jmp(&double_op);
1053 __ Bind(&fall_through); 1058 __ Bind(&fall_through);
1054 } 1059 }
1055 1060
1056 1061
1057 void Intrinsifier::Double_greaterThan(Assembler* assembler) { 1062 void Intrinsifier::Double_greaterThan(Assembler* assembler) {
(...skipping 113 matching lines...) Expand 10 before | Expand all | Expand 10 after
1171 __ Bind(&fall_through); 1176 __ Bind(&fall_through);
1172 } 1177 }
1173 1178
1174 1179
1175 void Intrinsifier::Double_getIsNaN(Assembler* assembler) { 1180 void Intrinsifier::Double_getIsNaN(Assembler* assembler) {
1176 Label is_true; 1181 Label is_true;
1177 __ movq(RAX, Address(RSP, +1 * kWordSize)); 1182 __ movq(RAX, Address(RSP, +1 * kWordSize));
1178 __ movsd(XMM0, FieldAddress(RAX, Double::value_offset())); 1183 __ movsd(XMM0, FieldAddress(RAX, Double::value_offset()));
1179 __ comisd(XMM0, XMM0); 1184 __ comisd(XMM0, XMM0);
1180 __ j(PARITY_EVEN, &is_true, Assembler::kNearJump); // NaN -> true; 1185 __ j(PARITY_EVEN, &is_true, Assembler::kNearJump); // NaN -> true;
1181 __ LoadObject(RAX, Bool::False()); 1186 __ LoadObject(RAX, Bool::False(), PP);
1182 __ ret(); 1187 __ ret();
1183 __ Bind(&is_true); 1188 __ Bind(&is_true);
1184 __ LoadObject(RAX, Bool::True()); 1189 __ LoadObject(RAX, Bool::True(), PP);
1185 __ ret(); 1190 __ ret();
1186 } 1191 }
1187 1192
1188 1193
1189 void Intrinsifier::Double_getIsNegative(Assembler* assembler) { 1194 void Intrinsifier::Double_getIsNegative(Assembler* assembler) {
1190 Label is_false, is_true, is_zero; 1195 Label is_false, is_true, is_zero;
1191 __ movq(RAX, Address(RSP, +1 * kWordSize)); 1196 __ movq(RAX, Address(RSP, +1 * kWordSize));
1192 __ movsd(XMM0, FieldAddress(RAX, Double::value_offset())); 1197 __ movsd(XMM0, FieldAddress(RAX, Double::value_offset()));
1193 __ xorpd(XMM1, XMM1); // 0.0 -> XMM1. 1198 __ xorpd(XMM1, XMM1); // 0.0 -> XMM1.
1194 __ comisd(XMM0, XMM1); 1199 __ comisd(XMM0, XMM1);
1195 __ j(PARITY_EVEN, &is_false, Assembler::kNearJump); // NaN -> false. 1200 __ j(PARITY_EVEN, &is_false, Assembler::kNearJump); // NaN -> false.
1196 __ j(EQUAL, &is_zero, Assembler::kNearJump); // Check for negative zero. 1201 __ j(EQUAL, &is_zero, Assembler::kNearJump); // Check for negative zero.
1197 __ j(ABOVE_EQUAL, &is_false, Assembler::kNearJump); // >= 0 -> false. 1202 __ j(ABOVE_EQUAL, &is_false, Assembler::kNearJump); // >= 0 -> false.
1198 __ Bind(&is_true); 1203 __ Bind(&is_true);
1199 __ LoadObject(RAX, Bool::True()); 1204 __ LoadObject(RAX, Bool::True(), PP);
1200 __ ret(); 1205 __ ret();
1201 __ Bind(&is_false); 1206 __ Bind(&is_false);
1202 __ LoadObject(RAX, Bool::False()); 1207 __ LoadObject(RAX, Bool::False(), PP);
1203 __ ret(); 1208 __ ret();
1204 __ Bind(&is_zero); 1209 __ Bind(&is_zero);
1205 // Check for negative zero (get the sign bit). 1210 // Check for negative zero (get the sign bit).
1206 __ movmskpd(RAX, XMM0); 1211 __ movmskpd(RAX, XMM0);
1207 __ testq(RAX, Immediate(1)); 1212 __ testq(RAX, Immediate(1));
1208 __ j(NOT_ZERO, &is_true, Assembler::kNearJump); 1213 __ j(NOT_ZERO, &is_true, Assembler::kNearJump);
1209 __ jmp(&is_false, Assembler::kNearJump); 1214 __ jmp(&is_false, Assembler::kNearJump);
1210 } 1215 }
1211 1216
1212 1217
(...skipping 127 matching lines...) Expand 10 before | Expand all | Expand 10 after
1340 __ imulq(RCX, RAX); 1345 __ imulq(RCX, RAX);
1341 __ movl(RDX, addr_1); 1346 __ movl(RDX, addr_1);
1342 __ addq(RDX, RCX); 1347 __ addq(RDX, RCX);
1343 __ movl(addr_0, RDX); 1348 __ movl(addr_0, RDX);
1344 __ shrq(RDX, Immediate(32)); 1349 __ shrq(RDX, Immediate(32));
1345 __ movl(addr_1, RDX); 1350 __ movl(addr_1, RDX);
1346 __ ret(); 1351 __ ret();
1347 } 1352 }
1348 1353
1349 1354
1350
1351 // Identity comparison. 1355 // Identity comparison.
1352 void Intrinsifier::Object_equal(Assembler* assembler) { 1356 void Intrinsifier::Object_equal(Assembler* assembler) {
1353 Label is_true; 1357 Label is_true;
1354 __ movq(RAX, Address(RSP, + 1 * kWordSize)); 1358 // This intrinsic is used from the API even when we have not entered any
1355 __ cmpq(RAX, Address(RSP, + 2 * kWordSize)); 1359 // Dart frame, yet, so the PP would otherwise be null in this case unless
1360 // we enter a Dart frame here.
1361 __ EnterDartFrame(0);
1362 __ movq(RAX, Address(RSP, + 4 * kWordSize));
1363 __ cmpq(RAX, Address(RSP, + 5 * kWordSize));
1356 __ j(EQUAL, &is_true, Assembler::kNearJump); 1364 __ j(EQUAL, &is_true, Assembler::kNearJump);
1357 __ LoadObject(RAX, Bool::False()); 1365 __ movq(RAX, Immediate(reinterpret_cast<int64_t>(Bool::False().raw())));
1366 __ LoadObject(RAX, Bool::False(), PP);
1367 __ LeaveFrameWithPP();
1358 __ ret(); 1368 __ ret();
1359 __ Bind(&is_true); 1369 __ Bind(&is_true);
1360 __ LoadObject(RAX, Bool::True()); 1370 __ LoadObject(RAX, Bool::True(), PP);
1371 __ LeaveFrameWithPP();
1361 __ ret(); 1372 __ ret();
1362 } 1373 }
1363 1374
1364 1375
1365 void Intrinsifier::String_getHashCode(Assembler* assembler) { 1376 void Intrinsifier::String_getHashCode(Assembler* assembler) {
1366 Label fall_through; 1377 Label fall_through;
1367 __ movq(RAX, Address(RSP, + 1 * kWordSize)); // String object. 1378 __ movq(RAX, Address(RSP, + 1 * kWordSize)); // String object.
1368 __ movq(RAX, FieldAddress(RAX, String::hash_offset())); 1379 __ movq(RAX, FieldAddress(RAX, String::hash_offset()));
1369 __ cmpq(RAX, Immediate(0)); 1380 __ cmpq(RAX, Immediate(0));
1370 __ j(EQUAL, &fall_through, Assembler::kNearJump); 1381 __ j(EQUAL, &fall_through, Assembler::kNearJump);
(...skipping 39 matching lines...) Expand 10 before | Expand all | Expand 10 after
1410 } 1421 }
1411 1422
1412 1423
1413 void Intrinsifier::String_getIsEmpty(Assembler* assembler) { 1424 void Intrinsifier::String_getIsEmpty(Assembler* assembler) {
1414 Label is_true; 1425 Label is_true;
1415 // Get length. 1426 // Get length.
1416 __ movq(RAX, Address(RSP, + 1 * kWordSize)); // String object. 1427 __ movq(RAX, Address(RSP, + 1 * kWordSize)); // String object.
1417 __ movq(RAX, FieldAddress(RAX, String::length_offset())); 1428 __ movq(RAX, FieldAddress(RAX, String::length_offset()));
1418 __ cmpq(RAX, Immediate(Smi::RawValue(0))); 1429 __ cmpq(RAX, Immediate(Smi::RawValue(0)));
1419 __ j(EQUAL, &is_true, Assembler::kNearJump); 1430 __ j(EQUAL, &is_true, Assembler::kNearJump);
1420 __ LoadObject(RAX, Bool::False()); 1431 __ LoadObject(RAX, Bool::False(), PP);
1421 __ ret(); 1432 __ ret();
1422 __ Bind(&is_true); 1433 __ Bind(&is_true);
1423 __ LoadObject(RAX, Bool::True()); 1434 __ LoadObject(RAX, Bool::True(), PP);
1424 __ ret(); 1435 __ ret();
1425 } 1436 }
1426 1437
1427 1438
1428 void Intrinsifier::OneByteString_getHashCode(Assembler* assembler) { 1439 void Intrinsifier::OneByteString_getHashCode(Assembler* assembler) {
1429 Label compute_hash; 1440 Label compute_hash;
1430 __ movq(RBX, Address(RSP, + 1 * kWordSize)); // OneByteString object. 1441 __ movq(RBX, Address(RSP, + 1 * kWordSize)); // OneByteString object.
1431 __ movq(RAX, FieldAddress(RBX, String::hash_offset())); 1442 __ movq(RAX, FieldAddress(RBX, String::hash_offset()));
1432 __ cmpq(RAX, Immediate(0)); 1443 __ cmpq(RAX, Immediate(0));
1433 __ j(EQUAL, &compute_hash, Assembler::kNearJump); 1444 __ j(EQUAL, &compute_hash, Assembler::kNearJump);
(...skipping 204 matching lines...) Expand 10 before | Expand all | Expand 10 after
1638 1649
1639 __ Bind(&fall_through); 1650 __ Bind(&fall_through);
1640 } 1651 }
1641 1652
1642 1653
1643 #undef __ 1654 #undef __
1644 1655
1645 } // namespace dart 1656 } // namespace dart
1646 1657
1647 #endif // defined TARGET_ARCH_X64 1658 #endif // defined TARGET_ARCH_X64
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