Commit 19659646 authored by verwaest@chromium.org's avatar verwaest@chromium.org

Fix smi-based math floor.

BUG=chromium:270268
R=svenpanne@chromium.org

Review URL: https://chromiumcodereview.appspot.com/22623007

git-svn-id: http://v8.googlecode.com/svn/branches/bleeding_edge@16128 ce2b1a6d-e550-0410-aec6-3dcde31c8c00
parent aca06846
......@@ -1285,6 +1285,15 @@ static HValue* SimplifiedDividendForMathFloorOfDiv(HValue* dividend) {
HValue* HUnaryMathOperation::Canonicalize() {
if (op() == kMathRound) {
HValue* val = value();
if (val->IsChange()) val = HChange::cast(val)->value();
// If the input is integer32 then we replace the round instruction
// with its input.
if (val->representation().IsSmiOrInteger32()) return val;
}
if (op() == kMathFloor) {
HValue* val = value();
if (val->IsChange()) val = HChange::cast(val)->value();
......@@ -3313,7 +3322,11 @@ Representation HUnaryMathOperation::RepresentationFromInputs() {
// If any of the actual input representation is more general than what we
// have so far but not Tagged, use that representation instead.
Representation input_rep = value()->representation();
if (!input_rep.IsTagged()) rep = rep.generalize(input_rep);
if (!input_rep.IsTagged()) {
rep = rep.generalize(input_rep);
} else if (flexible_int()) {
rep = Representation::Integer32();
}
return rep;
}
......
......@@ -2430,6 +2430,21 @@ class HUnaryMathOperation: public HTemplateInstruction<2> {
}
}
virtual void UpdateRepresentation(Representation new_rep,
HInferRepresentationPhase* h_infer,
const char* reason) {
if (flexible_int() && !new_rep.IsSmi()) {
new_rep = Representation::Integer32();
}
HValue::UpdateRepresentation(new_rep, h_infer, reason);
}
virtual void RepresentationChanged(Representation new_rep) {
if (flexible_int() && new_rep.IsInteger32()) {
ClearFlag(kFlexibleRepresentation);
}
}
virtual Range* InferRange(Zone* zone);
virtual HValue* Canonicalize();
......@@ -2447,6 +2462,10 @@ class HUnaryMathOperation: public HTemplateInstruction<2> {
}
private:
bool flexible_int() {
return op_ == kMathFloor || op_ == kMathRound;
}
HUnaryMathOperation(HValue* context, HValue* value, BuiltinFunctionId op)
: HTemplateInstruction<2>(HType::TaggedNumber()), op_(op) {
SetOperandAt(0, context);
......@@ -2454,8 +2473,8 @@ class HUnaryMathOperation: public HTemplateInstruction<2> {
switch (op) {
case kMathFloor:
case kMathRound:
// TODO(verwaest): Set representation to flexible int starting as smi.
set_representation(Representation::Integer32());
set_representation(Representation::Smi());
SetFlag(kFlexibleRepresentation);
break;
case kMathAbs:
// Not setting representation here: it is None intentionally.
......
......@@ -8041,10 +8041,6 @@ void HOptimizedGraphBuilder::VisitCompareOperation(CompareOperation* expr) {
result->set_position(expr->position());
return ast_context()->ReturnInstruction(result, expr->id());
} else {
// TODO(verwaest): Remove once Representation::FromType properly
// returns Smi when the IC measures Smi.
if (left_type->Is(Type::Smi())) left_rep = Representation::Smi();
if (right_type->Is(Type::Smi())) right_rep = Representation::Smi();
HCompareNumericAndBranch* result =
new(zone()) HCompareNumericAndBranch(left, right, op);
result->set_observed_input_representation(left_rep, right_rep);
......
// Copyright 2013 the V8 project authors. All rights reserved.
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// modification, are permitted provided that the following conditions are
// met:
//
// * Redistributions of source code must retain the above copyright
// notice, this list of conditions and the following disclaimer.
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// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
// Flags: --allow-natives-syntax
function f(o) {
return Math.floor(o.x_smi) + 1;
}
assertEquals(2, f({x_smi:1}));
assertEquals(2, f({x_smi:1}));
%OptimizeFunctionOnNextCall(f);
assertEquals(2, f({x_smi:1}));
function f2(o) {
return Math.floor(o.x_tagged) + 1;
}
var o = {x_tagged:{}};
o.x_tagged = 1.4;
assertEquals(2, f2(o));
assertEquals(2, f2(o));
%OptimizeFunctionOnNextCall(f2);
assertEquals(2, f2(o));
function f3(o) {
return Math.round(o.x_smi) + 1;
}
assertEquals(2, f3({x_smi:1}));
assertEquals(2, f3({x_smi:1}));
%OptimizeFunctionOnNextCall(f3);
assertEquals(2, f3({x_smi:1}));
function f4(o) {
return Math.round(o.x_tagged) + 1;
}
assertEquals(2, f4(o));
assertEquals(2, f4(o));
%OptimizeFunctionOnNextCall(f4);
assertEquals(2, f4(o));
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