Index: runtime/vm/intermediate_language_mips.cc |
diff --git a/runtime/vm/intermediate_language_mips.cc b/runtime/vm/intermediate_language_mips.cc |
index d61337d52f38a965917fbdb336448c81a91d5052..e824df18862e5c411a9bf1cc4128604139ea1d92 100644 |
--- a/runtime/vm/intermediate_language_mips.cc |
+++ b/runtime/vm/intermediate_language_mips.cc |
@@ -3692,51 +3692,6 @@ void BinaryDoubleOpInstr::EmitNativeCode(FlowGraphCompiler* compiler) { |
} |
-LocationSummary* DoubleTestOpInstr::MakeLocationSummary(Zone* zone, |
- bool opt) const { |
- const intptr_t kNumInputs = 1; |
- const intptr_t kNumTemps = 0; |
- LocationSummary* summary = new(zone) LocationSummary( |
- zone, kNumInputs, kNumTemps, LocationSummary::kNoCall); |
- summary->set_in(0, Location::RequiresFpuRegister()); |
- summary->set_out(0, Location::RequiresRegister()); |
- return summary; |
-} |
- |
- |
-void DoubleTestOpInstr::EmitNativeCode(FlowGraphCompiler* compiler) { |
- ASSERT(compiler->is_optimizing()); |
- const DRegister value = locs()->in(0).fpu_reg(); |
- const Register result = locs()->out(0).reg(); |
- if (op_kind() == MethodRecognizer::kDouble_getIsNaN) { |
- Label is_not_nan; |
- __ LoadObject(result, Bool::False()); |
- __ cund(value, value); |
- __ bc1f(&is_not_nan); |
- __ LoadObject(result, Bool::True()); |
- __ Bind(&is_not_nan); |
- } else { |
- ASSERT(op_kind() == MethodRecognizer::kDouble_getIsInfinite); |
- Label not_inf, done; |
- __ mfc1(TMP, EvenFRegisterOf(value)); |
- __ mfc1(result, OddFRegisterOf(value)); |
- // If the low word isn't zero, then it isn't infinity. |
- __ bne(TMP, ZR, ¬_inf); |
- // Mask off the sign bit. |
- __ AndImmediate(result, result, 0x7FFFFFFF); |
- // Compare with +infinity. |
- __ BranchNotEqual(result, Immediate(0x7FF00000), ¬_inf); |
- |
- __ LoadObject(result, Bool::True()); |
- __ b(&done); |
- |
- __ Bind(¬_inf); |
- __ LoadObject(result, Bool::False()); |
- __ Bind(&done); |
- } |
-} |
- |
- |
LocationSummary* BinaryFloat32x4OpInstr::MakeLocationSummary(Zone* zone, |
bool opt) const { |
UNIMPLEMENTED(); |
@@ -4581,10 +4536,10 @@ static void InvokeDoublePow(FlowGraphCompiler* compiler, |
__ Bind(&try_sqrt); |
// Before calling pow, check if we could use sqrt instead of pow. |
__ LoadImmediate(result, kPosInfinity); |
- // base == Infinity -> call pow; |
+ // base == -Infinity -> call pow; |
__ ceqd(base, result); |
Label do_pow; |
- __ bc1t(&do_pow); |
+ __ b(&do_pow); |
// exponent == 0.5 ? |
__ LoadImmediate(result, 0.5); |