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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_ARM. | 5 #include "vm/globals.h" // Needed here to get TARGET_ARCH_ARM. |
| 6 #if defined(TARGET_ARCH_ARM) | 6 #if defined(TARGET_ARCH_ARM) |
| 7 | 7 |
| 8 #include "vm/intrinsifier.h" | 8 #include "vm/intrinsifier.h" |
| 9 | 9 |
| 10 #include "vm/assembler.h" | 10 #include "vm/assembler.h" |
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| 906 // TODO(regis): Implement. | 906 // TODO(regis): Implement. |
| 907 } | 907 } |
| 908 | 908 |
| 909 | 909 |
| 910 void Intrinsifier::Bigint_absSub(Assembler* assembler) { | 910 void Intrinsifier::Bigint_absSub(Assembler* assembler) { |
| 911 // TODO(regis): Implement. | 911 // TODO(regis): Implement. |
| 912 } | 912 } |
| 913 | 913 |
| 914 | 914 |
| 915 void Intrinsifier::Bigint_mulAdd(Assembler* assembler) { | 915 void Intrinsifier::Bigint_mulAdd(Assembler* assembler) { |
| 916 // TODO(regis): Implement. | 916 if (TargetCPUFeatures::arm_version() != ARMv7) return; |
|
Cutch
2014/10/08 15:22:26
if (TargetCPUFeatures::arm_version() != ARMv7) {
regis
2014/10/08 16:58:00
Done.
| |
| 917 // Pseudo code: | |
| 918 // static void _mulAdd(Uint32List x_digits, int xi, | |
| 919 // Uint32List m_digits, int i, | |
| 920 // Uint32List a_digits, int j, int n) { | |
| 921 // uint32_t x = x_digits[xi >> 1]; // xi is Smi. | |
| 922 // if (x == 0 || n == 0) { | |
| 923 // return; | |
| 924 // } | |
| 925 // uint32_t* mip = &m_digits[i >> 1]; // i is Smi. | |
| 926 // uint32_t* ajp = &a_digits[j >> 1]; // j is Smi. | |
| 927 // uint32_t c = 0; | |
| 928 // SmiUntag(n); | |
| 929 // do { | |
| 930 // uint32_t mi = *mip++; | |
| 931 // uint32_t aj = *ajp; | |
| 932 // uint64_t t = x*mi + aj + c; // 32-bit * 32-bit -> 64-bit. | |
| 933 // *ajp++ = low32(t); | |
| 934 // c = high32(t); | |
| 935 // } while (--n > 0); | |
| 936 // while (c != 0) { | |
| 937 // uint64_t t = *ajp + c; | |
| 938 // *ajp++ = low32(t); | |
| 939 // c = high32(t); // c == 0 or 1. | |
| 940 // } | |
| 941 // } | |
| 942 | |
| 943 Label done; | |
| 944 // R3 = x, no_op if x == 0 | |
| 945 __ ldr(R1, Address(SP, 6 * kWordSize)); // x_digits | |
| 946 __ ldr(R0, Address(SP, 5 * kWordSize)); // xi is Smi | |
| 947 __ add(R1, R1, Operand(R0, LSL, 1)); | |
| 948 __ ldr(R3, FieldAddress(R1, TypedData::data_offset())); | |
| 949 __ tst(R3, Operand(R3)); | |
| 950 __ b(&done, EQ); | |
| 951 | |
| 952 // R6 = SmiUntag(n), no_op if n == 0 | |
| 953 __ ldr(R6, Address(SP, 0 * kWordSize)); | |
| 954 __ Asrs(R6, R6, Operand(kSmiTagSize)); | |
| 955 __ b(&done, EQ); | |
| 956 | |
| 957 // R4 = mip = &m_digits[i >> 1] | |
| 958 __ ldr(R1, Address(SP, 4 * kWordSize)); // m_digits | |
| 959 __ ldr(R0, Address(SP, 3 * kWordSize)); // i is Smi | |
| 960 __ add(R1, R1, Operand(R0, LSL, 1)); | |
| 961 __ add(R4, R1, Operand(TypedData::data_offset() - kHeapObjectTag)); | |
| 962 | |
| 963 // R5 = ajp = &a_digits[j >> 1] | |
| 964 __ ldr(R1, Address(SP, 2 * kWordSize)); // a_digits | |
| 965 __ ldr(R0, Address(SP, 1 * kWordSize)); // j is Smi | |
| 966 __ add(R1, R1, Operand(R0, LSL, 1)); | |
| 967 __ add(R5, R1, Operand(TypedData::data_offset() - kHeapObjectTag)); | |
| 968 | |
| 969 // R1 = c = 0 | |
| 970 __ mov(R1, Operand(0)); | |
| 971 | |
| 972 Label muladd_loop; | |
| 973 __ Bind(&muladd_loop); | |
| 974 // x: R3 | |
| 975 // mip: R4 | |
| 976 // ajp: R5 | |
| 977 // c: R1 | |
| 978 // n: R6 | |
| 979 | |
| 980 // uint32_t mi = *mip++ | |
| 981 __ ldr(R2, Address(R4, kWordSize, Address::PostIndex)); | |
| 982 | |
| 983 // uint32_t aj = *ajp | |
| 984 __ ldr(R0, Address(R5, 0)); | |
| 985 | |
| 986 // uint64_t t = x*mi + aj + c | |
| 987 __ umaal(R0, R1, R2, R3); // R1:R0 = R2*R3 + R1 + R0. | |
| 988 | |
| 989 // *ajp++ = low32(t) = R0 | |
| 990 __ str(R0, Address(R5, kWordSize, Address::PostIndex)); | |
| 991 | |
| 992 // c = high32(t) = R1 | |
| 993 | |
| 994 // while (--n > 0) | |
| 995 __ subs(R6, R6, Operand(1)); // --n | |
| 996 __ b(&muladd_loop, NE); | |
| 997 | |
| 998 __ tst(R1, Operand(R1)); | |
| 999 __ b(&done, EQ); | |
| 1000 | |
| 1001 // *ajp++ += c | |
| 1002 __ ldr(R0, Address(R5, 0)); | |
| 1003 __ adds(R0, R0, Operand(R1)); | |
| 1004 __ str(R0, Address(R5, kWordSize, Address::PostIndex)); | |
| 1005 __ b(&done, CC); | |
| 1006 | |
| 1007 Label propagate_carry_loop; | |
| 1008 __ Bind(&propagate_carry_loop); | |
| 1009 __ ldr(R0, Address(R5, 0)); | |
| 1010 __ adds(R0, R0, Operand(1)); | |
| 1011 __ str(R0, Address(R5, kWordSize, Address::PostIndex)); | |
| 1012 __ b(&propagate_carry_loop, CS); | |
| 1013 | |
| 1014 __ Bind(&done); | |
| 1015 __ Ret(); | |
| 917 } | 1016 } |
| 918 | 1017 |
| 919 | 1018 |
| 920 void Intrinsifier::Bigint_sqrAdd(Assembler* assembler) { | 1019 void Intrinsifier::Bigint_sqrAdd(Assembler* assembler) { |
| 921 // TODO(regis): Implement. | 1020 if (TargetCPUFeatures::arm_version() != ARMv7) return; |
| 1021 // Pseudo code: | |
| 1022 // static void _sqrAdd(Uint32List x_digits, int i, | |
| 1023 // Uint32List a_digits, int used) { | |
| 1024 // uint32_t* xip = &x_digits[i >> 1]; // i is Smi. | |
| 1025 // uint32_t x = *xip++; | |
| 1026 // if (x == 0) return; | |
| 1027 // uint32_t* ajp = &a_digits[i]; // j == 2*i, i is Smi. | |
| 1028 // uint32_t aj = *ajp; | |
| 1029 // uint64_t t = x*x + aj; | |
| 1030 // *ajp++ = low32(t); | |
| 1031 // uint64_t c = high32(t); | |
| 1032 // int n = ((used - i) >> 1) - 1; // used and i are Smi. | |
| 1033 // while (--n >= 0) { | |
| 1034 // uint32_t xi = *xip++; | |
| 1035 // uint32_t aj = *ajp; | |
| 1036 // uint96_t t = 2*x*xi + aj + c; // 2-bit * 32-bit * 32-bit -> 65-bit. | |
| 1037 // *ajp++ = low32(t); | |
| 1038 // c = high64(t); // 33-bit. | |
| 1039 // } | |
| 1040 // uint32_t aj = *ajp; | |
| 1041 // uint64_t t = aj + c; // 32-bit + 33-bit -> 34-bit. | |
| 1042 // *ajp++ = low32(t); | |
| 1043 // *ajp = high32(t); | |
| 1044 // } | |
| 1045 | |
| 1046 // R4 = xip = &x_digits[i >> 1] | |
| 1047 __ ldr(R1, Address(SP, 3 * kWordSize)); // x_digits | |
| 1048 __ ldr(R6, Address(SP, 2 * kWordSize)); // i is Smi | |
| 1049 __ add(R1, R1, Operand(R6, LSL, 1)); | |
| 1050 __ add(R4, R1, Operand(TypedData::data_offset() - kHeapObjectTag)); | |
| 1051 | |
| 1052 // R3 = x = *xip++, return if x == 0 | |
| 1053 Label x_zero; | |
| 1054 __ ldr(R3, Address(R4, kWordSize, Address::PostIndex)); | |
| 1055 __ tst(R3, Operand(R3)); | |
| 1056 __ b(&x_zero, EQ); | |
| 1057 | |
| 1058 // R5 = ajp = &a_digits[i] | |
| 1059 __ ldr(R1, Address(SP, 1 * kWordSize)); // a_digits | |
| 1060 __ add(R1, R1, Operand(R6, LSL, 2)); // j == 2*i, i is Smi. | |
| 1061 __ add(R5, R1, Operand(TypedData::data_offset() - kHeapObjectTag)); | |
| 1062 | |
| 1063 // R7:R0 = t = x*x + *ajp | |
| 1064 __ ldr(R0, Address(R5, 0)); | |
| 1065 __ mov(R7, Operand(0)); | |
| 1066 __ umaal(R0, R7, R3, R3); // R7:R0 = R3*R3 + R7 + R0. | |
| 1067 | |
| 1068 // *ajp++ = low32(t) = R0 | |
| 1069 __ str(R0, Address(R5, kWordSize, Address::PostIndex)); | |
| 1070 | |
| 1071 // R7 = low32(c) = high32(t) | |
| 1072 // R8 = high32(c) = 0 | |
| 1073 __ mov(R8, Operand(0)); | |
| 1074 | |
| 1075 // int n = used - i - 1 | |
| 1076 __ ldr(R0, Address(SP, 0 * kWordSize)); // used is Smi | |
| 1077 __ sub(R6, R0, Operand(R6)); | |
| 1078 __ mov(R0, Operand(2)); // while (--n >= 0) | |
| 1079 __ rsbs(R6, R0, Operand(R6, ASR, kSmiTagSize)); | |
| 1080 | |
| 1081 Label loop, done; | |
| 1082 __ b(&done, MI); | |
| 1083 | |
| 1084 __ Bind(&loop); | |
| 1085 // x: R3 | |
| 1086 // xip: R4 | |
| 1087 // ajp: R5 | |
| 1088 // c: R8:R7 | |
| 1089 // t: R2:R1:R0 (not live at loop entry) | |
| 1090 // n: R6 | |
| 1091 | |
| 1092 // uint32_t xi = *xip++ | |
| 1093 __ ldr(R2, Address(R4, kWordSize, Address::PostIndex)); | |
| 1094 | |
| 1095 // uint32_t aj = *ajp | |
| 1096 __ ldr(R1, Address(R5, 0)); | |
| 1097 | |
| 1098 // uint96_t t = R2:R1:R0 = 2*x*xi + aj + c | |
| 1099 __ mov(R0, Operand(0)); | |
| 1100 __ umaal(R0, R1, R2, R3); // R1:R0 = R3*R2 + R1 + R0 = x*xi + aj + 0. | |
| 1101 __ umlal(R7, R8, R2, R3); // R8:R7 += R3*R2; c += x*xi. | |
| 1102 __ adds(R0, R0, Operand(R7)); | |
| 1103 __ adcs(R7, R1, Operand(R8)); | |
| 1104 __ mov(R8, Operand(0)); | |
| 1105 __ adc(R8, R8, Operand(0)); // R8:R7:R0 = R1:R0 + R8:R7 = 2*x*xi + aj + c. | |
| 1106 | |
| 1107 // *ajp++ = low32(t) = R0 | |
| 1108 __ str(R0, Address(R5, kWordSize, Address::PostIndex)); | |
| 1109 | |
| 1110 // while (--n >= 0) | |
| 1111 __ subs(R6, R6, Operand(1)); // --n | |
| 1112 __ b(&loop, PL); | |
| 1113 | |
| 1114 __ Bind(&done); | |
| 1115 // uint32_t aj = *ajp | |
| 1116 __ ldr(R0, Address(R5, 0)); | |
| 1117 | |
| 1118 // uint64_t t = aj + c | |
| 1119 __ adds(R7, R7, Operand(R0)); | |
| 1120 __ adc(R8, R8, Operand(0)); | |
| 1121 | |
| 1122 // *ajp++ = low32(t) | |
| 1123 // *ajp = high32(t) | |
| 1124 __ str(R7, Address(R5, 0)); | |
| 1125 __ str(R8, Address(R5, kWordSize)); | |
| 1126 | |
| 1127 __ Bind(&x_zero); | |
| 1128 __ Ret(); | |
| 922 } | 1129 } |
| 923 | 1130 |
| 924 | 1131 |
| 925 void Intrinsifier::Bigint_estQuotientDigit(Assembler* assembler) { | 1132 void Intrinsifier::Bigint_estQuotientDigit(Assembler* assembler) { |
| 926 // TODO(regis): Implement. | 1133 // TODO(regis): Implement. |
| 927 } | 1134 } |
| 928 | 1135 |
| 929 | 1136 |
| 930 void Intrinsifier::Montgomery_mulMod(Assembler* assembler) { | 1137 void Intrinsifier::Montgomery_mulMod(Assembler* assembler) { |
| 931 // TODO(regis): Implement. | 1138 // TODO(regis): Implement. |
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| 1669 Isolate* isolate = Isolate::Current(); | 1876 Isolate* isolate = Isolate::Current(); |
| 1670 __ LoadImmediate(R1, reinterpret_cast<uword>(isolate)); | 1877 __ LoadImmediate(R1, reinterpret_cast<uword>(isolate)); |
| 1671 // Set return value to Isolate::current_tag_. | 1878 // Set return value to Isolate::current_tag_. |
| 1672 __ ldr(R0, Address(R1, Isolate::current_tag_offset())); | 1879 __ ldr(R0, Address(R1, Isolate::current_tag_offset())); |
| 1673 __ Ret(); | 1880 __ Ret(); |
| 1674 } | 1881 } |
| 1675 | 1882 |
| 1676 } // namespace dart | 1883 } // namespace dart |
| 1677 | 1884 |
| 1678 #endif // defined TARGET_ARCH_ARM | 1885 #endif // defined TARGET_ARCH_ARM |
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