Files
sdk/runtime/vm/instructions_dbc.cc
T
Teagan Strickland a17b52c2c1 Revert "[vm, compiler] Unoptimized megamorphic calls."
This reverts commit fde6a5917e.

Reason for revert: This commit looks to be causing new test failures on dart2js. While there are some odd results on some builders that look like infra failures, some builders (for example, dart2js-minified-strong-linux-x64-d8) show the new failing tests clearly.

Original change's description:
> [vm, compiler] Unoptimized megamorphic calls.
> 
> When an instance call in unoptimized code creates more than FLAG_max_polymorphic_checks cases, switch the call to use a MegamorphicCache instead of ICData. The prevents unbounded collection of type feedback, and gives improvements on microbenchmarks in the 3-8% range for unoptimized code.
> 
> It also leads to a loss of target frequency information for the optimizer, leading to different ordering for range checks in polymorphic inlining. This leads to changes on megamorphic microbenchmarks from -31% to +60%, weighted toward the negative end.
> 
> In practice the frequency information seems unimportant, as dart2js has 4.01% geomean improvement.
> 
> This is a step toward direct monomorphic calls in unoptimized code, which will also make use of the patching and type feedback extraction added here.
> 
> Bug: https://github.com/dart-lang/sdk/issues/26780
> Bug: https://github.com/dart-lang/sdk/issues/36409
> Bug: https://github.com/dart-lang/sdk/issues/36731
> Change-Id: I29f53f23b6794c5f5f0db8b8184788cee16fd9c5
> Reviewed-on: https://dart-review.googlesource.com/c/sdk/+/99270
> Reviewed-by: Alexander Markov <alexmarkov@google.com>

TBR=rmacnak@google.com,alexmarkov@google.com,ajcbik@google.com

Change-Id: Icad46b93cdf8541a00563f49da6b4ac0a4df1ba1
No-Presubmit: true
No-Tree-Checks: true
No-Try: true
Bug: https://github.com/dart-lang/sdk/issues/26780, https://github.com/dart-lang/sdk/issues/36409, https://github.com/dart-lang/sdk/issues/36731
Reviewed-on: https://dart-review.googlesource.com/c/sdk/+/103440
Reviewed-by: Teagan Strickland <sstrickl@google.com>
Commit-Queue: Teagan Strickland <sstrickl@google.com>
2019-05-22 13:20:49 +00:00

209 lines
7.3 KiB
C++

// Copyright (c) 2016, the Dart project authors. Please see the AUTHORS file
// for details. All rights reserved. Use of this source code is governed by a
// BSD-style license that can be found in the LICENSE file.
#include "vm/globals.h" // Needed here to get TARGET_ARCH_DBC.
#if defined(TARGET_ARCH_DBC)
#include "vm/instructions.h"
#include "vm/instructions_dbc.h"
#include "vm/compiler/assembler/assembler.h"
#include "vm/constants_dbc.h"
#include "vm/cpu.h"
#include "vm/object.h"
namespace dart {
static bool HasLoadFromPool(Instr instr) {
switch (SimulatorBytecode::DecodeOpcode(instr)) {
case SimulatorBytecode::kLoadConstant:
case SimulatorBytecode::kPushConstant:
case SimulatorBytecode::kStaticCall:
case SimulatorBytecode::kIndirectStaticCall:
case SimulatorBytecode::kInstanceCall1:
case SimulatorBytecode::kInstanceCall2:
case SimulatorBytecode::kInstanceCall1Opt:
case SimulatorBytecode::kInstanceCall2Opt:
case SimulatorBytecode::kStoreStaticTOS:
case SimulatorBytecode::kPushStatic:
case SimulatorBytecode::kAllocate:
case SimulatorBytecode::kInstantiateType:
case SimulatorBytecode::kInstantiateTypeArgumentsTOS:
case SimulatorBytecode::kAssertAssignable:
return true;
default:
return false;
}
}
static bool GetLoadedObjectAt(uword pc,
const ObjectPool& object_pool,
Object* obj) {
Instr instr = SimulatorBytecode::At(pc);
if (HasLoadFromPool(instr)) {
uint16_t index = SimulatorBytecode::DecodeD(instr);
if (object_pool.TypeAt(index) == ObjectPool::EntryType::kTaggedObject) {
*obj = object_pool.ObjectAt(index);
return true;
}
}
return false;
}
CallPattern::CallPattern(uword pc, const Code& code)
: object_pool_(ObjectPool::Handle(code.GetObjectPool())),
end_(pc),
ic_data_load_end_(0),
target_code_pool_index_(-1),
ic_data_(ICData::Handle()) {
ASSERT(code.ContainsInstructionAt(end_));
const uword call_pc = end_ - sizeof(Instr);
Instr call_instr = SimulatorBytecode::At(call_pc);
ASSERT(SimulatorBytecode::IsCallOpcode(call_instr));
ic_data_load_end_ = call_pc;
target_code_pool_index_ = SimulatorBytecode::DecodeD(call_instr);
}
NativeCallPattern::NativeCallPattern(uword pc, const Code& code)
: object_pool_(ObjectPool::Handle(code.GetObjectPool())),
end_(pc),
native_function_pool_index_(-1),
trampoline_pool_index_(-1) {
ASSERT(code.ContainsInstructionAt(end_));
const uword call_pc = end_ - sizeof(Instr);
Instr call_instr = SimulatorBytecode::At(call_pc);
ASSERT(SimulatorBytecode::DecodeOpcode(call_instr) ==
SimulatorBytecode::kNativeCall);
native_function_pool_index_ = SimulatorBytecode::DecodeB(call_instr);
trampoline_pool_index_ = SimulatorBytecode::DecodeA(call_instr);
}
NativeFunctionWrapper NativeCallPattern::target() const {
return reinterpret_cast<NativeFunctionWrapper>(
object_pool_.ObjectAt(trampoline_pool_index_));
}
void NativeCallPattern::set_target(NativeFunctionWrapper new_target) const {
object_pool_.SetRawValueAt(trampoline_pool_index_,
reinterpret_cast<uword>(new_target));
// No need to flush the instruction cache, since the code is not modified.
}
NativeFunction NativeCallPattern::native_function() const {
return reinterpret_cast<NativeFunction>(
object_pool_.RawValueAt(native_function_pool_index_));
}
void NativeCallPattern::set_native_function(NativeFunction func) const {
object_pool_.SetRawValueAt(native_function_pool_index_,
reinterpret_cast<uword>(func));
}
// Decodes a load sequence ending at 'end' (the last instruction of the load
// sequence is the instruction before the one at end). Returns a pointer to
// the first instruction in the sequence. Returns the register being loaded
// and the loaded object in the output parameters 'reg' and 'obj'
// respectively.
uword InstructionPattern::DecodeLoadObject(uword end,
const ObjectPool& object_pool,
Register* reg,
Object* obj) {
UNIMPLEMENTED();
return 0;
}
// Decodes a load sequence ending at 'end' (the last instruction of the load
// sequence is the instruction before the one at end). Returns a pointer to
// the first instruction in the sequence. Returns the register being loaded
// and the loaded immediate value in the output parameters 'reg' and 'value'
// respectively.
uword InstructionPattern::DecodeLoadWordImmediate(uword end,
Register* reg,
intptr_t* value) {
UNIMPLEMENTED();
return 0;
}
// Decodes a load sequence ending at 'end' (the last instruction of the load
// sequence is the instruction before the one at end). Returns a pointer to
// the first instruction in the sequence. Returns the register being loaded
// and the index in the pool being read from in the output parameters 'reg'
// and 'index' respectively.
uword InstructionPattern::DecodeLoadWordFromPool(uword end,
Register* reg,
intptr_t* index) {
UNIMPLEMENTED();
return 0;
}
bool DecodeLoadObjectFromPoolOrThread(uword pc, const Code& code, Object* obj) {
ASSERT(code.ContainsInstructionAt(pc));
const ObjectPool& pool = ObjectPool::Handle(code.object_pool());
return GetLoadedObjectAt(pc, pool, obj);
}
RawICData* CallPattern::IcData() {
if (ic_data_.IsNull()) {
bool found = GetLoadedObjectAt(ic_data_load_end_, object_pool_, &ic_data_);
ASSERT(found);
}
return ic_data_.raw();
}
RawCode* CallPattern::TargetCode() const {
return reinterpret_cast<RawCode*>(
object_pool_.ObjectAt(target_code_pool_index_));
}
void CallPattern::SetTargetCode(const Code& target_code) const {
object_pool_.SetObjectAt(target_code_pool_index_, target_code);
}
void CallPattern::InsertDeoptCallAt(uword pc) {
const uint8_t argc =
SimulatorBytecode::IsCallOpcode(SimulatorBytecode::At(pc))
? SimulatorBytecode::DecodeArgc(SimulatorBytecode::At(pc))
: 0;
*reinterpret_cast<Instr*>(pc) =
SimulatorBytecode::Encode(SimulatorBytecode::kDeopt, argc, 0);
}
SwitchableCallPattern::SwitchableCallPattern(uword pc, const Code& code)
: object_pool_(ObjectPool::Handle(code.GetObjectPool())),
data_pool_index_(-1),
target_pool_index_(-1) {
UNIMPLEMENTED();
}
RawObject* SwitchableCallPattern::data() const {
return object_pool_.ObjectAt(data_pool_index_);
}
RawCode* SwitchableCallPattern::target() const {
return reinterpret_cast<RawCode*>(object_pool_.ObjectAt(target_pool_index_));
}
void SwitchableCallPattern::SetData(const Object& data) const {
ASSERT(!Object::Handle(object_pool_.ObjectAt(data_pool_index_)).IsCode());
object_pool_.SetObjectAt(data_pool_index_, data);
}
void SwitchableCallPattern::SetTarget(const Code& target) const {
ASSERT(Object::Handle(object_pool_.ObjectAt(target_pool_index_)).IsCode());
object_pool_.SetObjectAt(target_pool_index_, target);
}
ReturnPattern::ReturnPattern(uword pc) : pc_(pc) {
USE(pc_);
}
bool ReturnPattern::IsValid() const {
UNIMPLEMENTED();
return false;
}
} // namespace dart
#endif // defined TARGET_ARCH_DBC