| Index: runtime/vm/intermediate_language_arm64.cc
|
| diff --git a/runtime/vm/intermediate_language_arm64.cc b/runtime/vm/intermediate_language_arm64.cc
|
| index 2765d0fe77f48fe9cb3215078c84537eb5192597..169f1f1089fa7d51fd12bf47253bb75b24e24015 100644
|
| --- a/runtime/vm/intermediate_language_arm64.cc
|
| +++ b/runtime/vm/intermediate_language_arm64.cc
|
| @@ -2532,7 +2532,6 @@ static void EmitJavascriptOverflowCheck(FlowGraphCompiler* compiler,
|
|
|
| static void EmitSmiShiftLeft(FlowGraphCompiler* compiler,
|
| BinarySmiOpInstr* shift_left) {
|
| - const bool is_truncating = shift_left->IsTruncating();
|
| const LocationSummary& locs = *shift_left->locs();
|
| const Register left = locs.in(0).reg();
|
| const Register result = locs.out(0).reg();
|
| @@ -2545,27 +2544,15 @@ static void EmitSmiShiftLeft(FlowGraphCompiler* compiler,
|
| // Immediate shift operation takes 6 bits for the count.
|
| const intptr_t kCountLimit = 0x3F;
|
| const intptr_t value = Smi::Cast(constant).Value();
|
| - if (value == 0) {
|
| - __ mov(result, left);
|
| - } else if ((value < 0) || (value >= kCountLimit)) {
|
| - // This condition may not be known earlier in some cases because
|
| - // of constant propagation, inlining, etc.
|
| - if ((value >= kCountLimit) && is_truncating) {
|
| - __ mov(result, ZR);
|
| - } else {
|
| - // Result is Mint or exception.
|
| - __ b(deopt);
|
| - }
|
| - } else {
|
| - if (!is_truncating) {
|
| - // Check for overflow (preserve left).
|
| - __ Lsl(TMP, left, value);
|
| - __ cmp(left, Operand(TMP, ASR, value));
|
| - __ b(deopt, NE); // Overflow.
|
| - }
|
| - // Shift for result now we know there is no overflow.
|
| - __ Lsl(result, left, value);
|
| + ASSERT((0 < value) && (value < kCountLimit));
|
| + if (shift_left->can_overflow()) {
|
| + // Check for overflow (preserve left).
|
| + __ Lsl(TMP, left, value);
|
| + __ cmp(left, Operand(TMP, ASR, value));
|
| + __ b(deopt, NE); // Overflow.
|
| }
|
| + // Shift for result now we know there is no overflow.
|
| + __ Lsl(result, left, value);
|
| if (FLAG_throw_on_javascript_int_overflow) {
|
| EmitJavascriptOverflowCheck(compiler, shift_left->range(), deopt, result);
|
| }
|
| @@ -2575,7 +2562,7 @@ static void EmitSmiShiftLeft(FlowGraphCompiler* compiler,
|
| // Right (locs.in(1)) is not constant.
|
| const Register right = locs.in(1).reg();
|
| Range* right_range = shift_left->right()->definition()->range();
|
| - if (shift_left->left()->BindsToConstant() && !is_truncating) {
|
| + if (shift_left->left()->BindsToConstant() && shift_left->can_overflow()) {
|
| // TODO(srdjan): Implement code below for is_truncating().
|
| // If left is constant, we know the maximal allowed size for right.
|
| const Object& obj = shift_left->left()->BoundConstant();
|
| @@ -2606,7 +2593,7 @@ static void EmitSmiShiftLeft(FlowGraphCompiler* compiler,
|
|
|
| const bool right_needs_check =
|
| !RangeUtils::IsWithin(right_range, 0, (Smi::kBits - 1));
|
| - if (is_truncating) {
|
| + if (!shift_left->can_overflow()) {
|
| if (right_needs_check) {
|
| const bool right_may_be_negative =
|
| (right_range == NULL) || !right_range->IsPositive();
|
| @@ -2655,7 +2642,7 @@ LocationSummary* BinarySmiOpInstr::MakeLocationSummary(Isolate* isolate,
|
| bool opt) const {
|
| const intptr_t kNumInputs = 2;
|
| const intptr_t kNumTemps =
|
| - (((op_kind() == Token::kSHL) && !IsTruncating()) ||
|
| + (((op_kind() == Token::kSHL) && can_overflow()) ||
|
| (op_kind() == Token::kSHR)) ? 1 : 0;
|
| LocationSummary* summary = new(isolate) LocationSummary(
|
| isolate, kNumInputs, kNumTemps, LocationSummary::kNoCall);
|
| @@ -2678,7 +2665,7 @@ LocationSummary* BinarySmiOpInstr::MakeLocationSummary(Isolate* isolate,
|
| }
|
| summary->set_in(0, Location::RequiresRegister());
|
| summary->set_in(1, Location::RegisterOrSmiConstant(right()));
|
| - if (((op_kind() == Token::kSHL) && !IsTruncating()) ||
|
| + if (((op_kind() == Token::kSHL) && can_overflow()) ||
|
| (op_kind() == Token::kSHR)) {
|
| summary->set_temp(0, Location::RequiresRegister());
|
| }
|
| @@ -2730,44 +2717,18 @@ void BinarySmiOpInstr::EmitNativeCode(FlowGraphCompiler* compiler) {
|
| case Token::kMUL: {
|
| // Keep left value tagged and untag right value.
|
| const intptr_t value = Smi::Cast(constant).Value();
|
| - if (deopt == NULL) {
|
| - if (value == 2) {
|
| - __ Lsl(result, left, 1);
|
| - } else {
|
| - __ LoadImmediate(TMP, value, PP);
|
| - __ mul(result, left, TMP);
|
| - }
|
| - } else {
|
| - if (value == 2) {
|
| - __ Asr(TMP, left, 63); // TMP = sign of left.
|
| - __ Lsl(result, left, 1);
|
| - // TMP: result bits 32..63.
|
| - __ cmp(TMP, Operand(result, ASR, 63));
|
| - __ b(deopt, NE);
|
| - } else {
|
| - __ LoadImmediate(TMP, value, PP);
|
| - __ mul(result, left, TMP);
|
| - __ smulh(TMP, left, TMP);
|
| - // TMP: result bits 64..127.
|
| - __ cmp(TMP, Operand(result, ASR, 63));
|
| - __ b(deopt, NE);
|
| - }
|
| + __ LoadImmediate(TMP, value, PP);
|
| + __ mul(result, left, TMP);
|
| + if (deopt != NULL) {
|
| + __ smulh(TMP, left, TMP);
|
| + // TMP: result bits 64..127.
|
| + __ cmp(TMP, Operand(result, ASR, 63));
|
| + __ b(deopt, NE);
|
| }
|
| break;
|
| }
|
| case Token::kTRUNCDIV: {
|
| const intptr_t value = Smi::Cast(constant).Value();
|
| - if (value == 1) {
|
| - __ mov(result, left);
|
| - break;
|
| - } else if (value == -1) {
|
| - // Check the corner case of dividing the 'MIN_SMI' with -1, in which
|
| - // case we cannot negate the result.
|
| - __ CompareImmediate(left, 0x8000000000000000LL, kNoPP);
|
| - __ b(deopt, EQ);
|
| - __ sub(result, ZR, Operand(left));
|
| - break;
|
| - }
|
| ASSERT(Utils::IsPowerOfTwo(Utils::Abs(value)));
|
| const intptr_t shift_count =
|
| Utils::ShiftForPowerOfTwo(Utils::Abs(value)) + kSmiTagSize;
|
| @@ -2800,23 +2761,7 @@ void BinarySmiOpInstr::EmitNativeCode(FlowGraphCompiler* compiler) {
|
| // Asr operation masks the count to 6 bits.
|
| const intptr_t kCountLimit = 0x3F;
|
| intptr_t value = Smi::Cast(constant).Value();
|
| -
|
| - if (value == 0) {
|
| - // TODO(vegorov): should be handled outside.
|
| - __ mov(result, left);
|
| - break;
|
| - } else if (value < 0) {
|
| - // TODO(vegorov): should be handled outside.
|
| - __ b(deopt);
|
| - break;
|
| - }
|
| -
|
| - value = value + kSmiTagSize;
|
| - if (value >= kCountLimit) {
|
| - value = kCountLimit;
|
| - }
|
| -
|
| - __ Asr(result, left, value);
|
| + __ Asr(result, left, Utils::Minimum(value + kSmiTagSize, kCountLimit));
|
| __ SmiTag(result);
|
| break;
|
| }
|
|
|