#include "jit/x86/Assembler-x86.h"
#include "gc/Marking.h"
using namespace js;
using namespace js::jit;
ABIArgGenerator::ABIArgGenerator() : stackOffset_(0), current_() {}
ABIArg ABIArgGenerator::next(MIRType type) {
switch (type) {
case MIRType::Int32:
case MIRType::Float32:
case MIRType::Pointer:
case MIRType::RefOrNull:
current_ = ABIArg(stackOffset_);
stackOffset_ += sizeof(uint32_t);
break;
case MIRType::Double:
case MIRType::Int64:
current_ = ABIArg(stackOffset_);
stackOffset_ += sizeof(uint64_t);
break;
case MIRType::Int8x16:
case MIRType::Int16x8:
case MIRType::Int32x4:
case MIRType::Float32x4:
case MIRType::Bool8x16:
case MIRType::Bool16x8:
case MIRType::Bool32x4:
stackOffset_ = AlignBytes(stackOffset_, SimdMemoryAlignment);
current_ = ABIArg(stackOffset_);
stackOffset_ += Simd128DataSize;
break;
default:
MOZ_CRASH("Unexpected argument type");
}
return current_;
}
void Assembler::executableCopy(uint8_t* buffer, bool flushICache) {
AssemblerX86Shared::executableCopy(buffer);
for (RelativePatch& rp : jumps_) {
X86Encoding::SetRel32(buffer + rp.offset, rp.target);
}
}
class RelocationIterator {
CompactBufferReader reader_;
uint32_t offset_;
public:
explicit RelocationIterator(CompactBufferReader& reader) : reader_(reader) {}
bool read() {
if (!reader_.more()) {
return false;
}
offset_ = reader_.readUnsigned();
return true;
}
uint32_t offset() const { return offset_; }
};
static inline JitCode* CodeFromJump(uint8_t* jump) {
uint8_t* target = (uint8_t*)X86Encoding::GetRel32Target(jump);
return JitCode::FromExecutable(target);
}
void Assembler::TraceJumpRelocations(JSTracer* trc, JitCode* code,
CompactBufferReader& reader) {
RelocationIterator iter(reader);
while (iter.read()) {
JitCode* child = CodeFromJump(code->raw() + iter.offset());
TraceManuallyBarrieredEdge(trc, &child, "rel32");
MOZ_ASSERT(child == CodeFromJump(code->raw() + iter.offset()));
}
}