Commit fc60fdab authored by yangguo@chromium.org's avatar yangguo@chromium.org

MIPS: Port r10939 to x64 and arm (inline Math.random in crankshaft).

Port r10947 (d85b4e).

BUG=
TEST=

Review URL: https://chromiumcodereview.appspot.com/9615016
Patch from Daniel Kalmar <kalmard@homejinni.com>.

git-svn-id: http://v8.googlecode.com/svn/branches/bleeding_edge@10948 ce2b1a6d-e550-0410-aec6-3dcde31c8c00
parent c3c36137
......@@ -3133,14 +3133,63 @@ void LCodeGen::DoPower(LPower* instr) {
void LCodeGen::DoRandom(LRandom* instr) {
class DeferredDoRandom: public LDeferredCode {
public:
DeferredDoRandom(LCodeGen* codegen, LRandom* instr)
: LDeferredCode(codegen), instr_(instr) { }
virtual void Generate() { codegen()->DoDeferredRandom(instr_); }
virtual LInstruction* instr() { return instr_; }
private:
LRandom* instr_;
};
DeferredDoRandom* deferred = new DeferredDoRandom(this, instr);
// Having marked this instruction as a call we can use any
// registers.
ASSERT(ToDoubleRegister(instr->result()).is(f0));
ASSERT(ToRegister(instr->InputAt(0)).is(a0));
__ PrepareCallCFunction(1, a1);
static const int kSeedSize = sizeof(uint32_t);
STATIC_ASSERT(kPointerSize == kSeedSize);
__ lw(a0, FieldMemOperand(a0, GlobalObject::kGlobalContextOffset));
__ CallCFunction(ExternalReference::random_uint32_function(isolate()), 1);
static const int kRandomSeedOffset =
FixedArray::kHeaderSize + Context::RANDOM_SEED_INDEX * kPointerSize;
__ lw(a2, FieldMemOperand(a0, kRandomSeedOffset));
// a2: FixedArray of the global context's random seeds
// Load state[0].
__ lw(a1, FieldMemOperand(a2, ByteArray::kHeaderSize));
__ Branch(deferred->entry(), eq, a1, Operand(zero_reg));
// Load state[1].
__ lw(a0, FieldMemOperand(a2, ByteArray::kHeaderSize + kSeedSize));
// a1: state[0].
// a0: state[1].
// state[0] = 18273 * (state[0] & 0xFFFF) + (state[0] >> 16)
__ And(a3, a1, Operand(0xFFFF));
__ li(t0, Operand(18273));
__ mul(a3, a3, t0);
__ srl(a1, a1, 16);
__ Addu(a1, a3, a1);
// Save state[0].
__ sw(a1, FieldMemOperand(a2, ByteArray::kHeaderSize));
// state[1] = 36969 * (state[1] & 0xFFFF) + (state[1] >> 16)
__ And(a3, a0, Operand(0xFFFF));
__ li(t0, Operand(36969));
__ mul(a3, a3, t0);
__ srl(a0, a0, 16),
__ Addu(a0, a3, a0);
// Save state[1].
__ sw(a0, FieldMemOperand(a2, ByteArray::kHeaderSize + kSeedSize));
// Random bit pattern = (state[0] << 14) + (state[1] & 0x3FFFF)
__ And(a0, a0, Operand(0x3FFFF));
__ sll(a1, a1, 14);
__ Addu(v0, a0, a1);
__ bind(deferred->exit());
// 0x41300000 is the top half of 1.0 x 2^20 as a double.
__ li(a2, Operand(0x41300000));
......@@ -3152,6 +3201,12 @@ void LCodeGen::DoRandom(LRandom* instr) {
__ sub_d(f0, f12, f14);
}
void LCodeGen::DoDeferredRandom(LRandom* instr) {
__ PrepareCallCFunction(1, scratch0());
__ CallCFunction(ExternalReference::random_uint32_function(isolate()), 1);
// Return value is in v0.
}
void LCodeGen::DoMathLog(LUnaryMathOperation* instr) {
ASSERT(ToDoubleRegister(instr->result()).is(f4));
......
......@@ -110,6 +110,7 @@ class LCodeGen BASE_EMBEDDED {
void DoDeferredTaggedToI(LTaggedToI* instr);
void DoDeferredMathAbsTaggedHeapNumber(LUnaryMathOperation* instr);
void DoDeferredStackCheck(LStackCheck* instr);
void DoDeferredRandom(LRandom* instr);
void DoDeferredStringCharCodeAt(LStringCharCodeAt* instr);
void DoDeferredStringCharFromCode(LStringCharFromCode* instr);
void DoDeferredAllocateObject(LAllocateObject* instr);
......
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