[array] Move Array.p.sort to Torque and use TimSort instead of QuickSort

This CL changes the sorting algorithm used in Array.p.sort from
QuickSort to TimSort (implemented in Torque).

Detailed performance results can be found here: https://goo.gl/4E733J

To save on code space, fast-paths are implemented as sets of
function pointers instead of specializing generics.

R=cbruni@chromium.org, jgruber@chromium.org

Bug: v8:7382, v8:7624
Change-Id: I7cd4287e4562d84ab7c79c58ae30780630f976de
Reviewed-on: https://chromium-review.googlesource.com/1151199
Commit-Queue: Simon Zünd <szuend@google.com>
Reviewed-by: Jakob Gruber <jgruber@chromium.org>
Reviewed-by: Camillo Bruni <cbruni@chromium.org>
Cr-Commit-Position: refs/heads/master@{#55003}
This commit is contained in:
Simon Zünd 2018-08-09 09:57:59 +02:00 committed by Commit Bot
parent 32e4540b41
commit 5a3893958a
13 changed files with 2128 additions and 24 deletions

1
.gitignore vendored
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@ -64,6 +64,7 @@
/third_party/colorama/src
!/third_party/googletest
/third_party/googletest/src
!/third_party/v8
/tools/clang
/tools/gcmole/gcmole-tools
/tools/gcmole/gcmole-tools.tar.gz

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@ -872,10 +872,10 @@ torque_files = [
"src/builtins/array.tq",
"src/builtins/array-copywithin.tq",
"src/builtins/array-foreach.tq",
"src/builtins/array-sort.tq",
"src/builtins/typed-array.tq",
"src/builtins/data-view.tq",
"test/torque/test-torque.tq",
"third_party/v8/builtins/array-sort.tq",
]
torque_modules = [

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@ -1740,6 +1740,8 @@ void Genesis::InitializeGlobal(Handle<JSGlobalObject> global_object,
1, false);
SimpleInstallFunction(isolate_, proto, "slice",
Builtins::kArrayPrototypeSlice, 2, false);
SimpleInstallFunction(isolate_, proto, "sort",
Builtins::kArrayPrototypeSort, 1, false);
if (FLAG_enable_experimental_builtins) {
SimpleInstallFunction(isolate_, proto, "splice",
Builtins::kArraySpliceTorque, 2, false);

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@ -1,8 +0,0 @@
// Copyright 2018 the V8 project authors. All rights reserved.
// Use of this source code is governed by a BSD-style license that can be
// found in the LICENSE file.
module array {
// TODO(szuend): TimSort implementation will go here. Keeping the file around
// after removing the QuickSort Torque implementation.
}

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@ -62,6 +62,7 @@ type ExtractFixedArrayFlags generates
'TNode<Smi>' constexpr 'ExtractFixedArrayFlags';
type ParameterMode generates 'TNode<Int32T>' constexpr 'ParameterMode';
type RootListIndex generates 'TNode<Int32T>' constexpr 'Heap::RootListIndex';
type AllocationFlags generates 'TNode<Int32T>' constexpr 'AllocationFlags';
type MessageTemplate constexpr 'MessageTemplate::Template';
@ -144,6 +145,8 @@ extern macro NullConstant(): Oddball;
extern macro UndefinedConstant(): Oddball;
extern macro TrueConstant(): Boolean;
extern macro FalseConstant(): Boolean;
extern macro Int32TrueConstant(): bool;
extern macro Int32FalseConstant(): bool;
const Hole: Oddball = TheHoleConstant();
const Null: Oddball = NullConstant();
@ -160,8 +163,13 @@ const kSloppy: constexpr LanguageMode generates 'LanguageMode::kSloppy';
const SMI_PARAMETERS: constexpr ParameterMode generates 'SMI_PARAMETERS';
const INTPTR_PARAMETERS: constexpr ParameterMode generates 'INTPTR_PARAMETERS';
const kAllowLargeObjectAllocation: constexpr AllocationFlags
generates 'kAllowLargeObjectAllocation';
extern macro Is64(): constexpr bool;
extern macro SelectBooleanConstant(bool): Boolean;
extern macro Print(constexpr string);
extern macro Print(constexpr string, Object);
extern macro Print(Object);
@ -262,7 +270,9 @@ extern operator '!=' macro WordNotEqual(Object, Object): bool;
extern operator '+' macro SmiAdd(Smi, Smi): Smi;
extern operator '-' macro SmiSub(Smi, Smi): Smi;
extern operator '&' macro SmiAnd(Smi, Smi): Smi;
extern operator '|' macro SmiOr(Smi, Smi): Smi;
extern operator '>>>' macro SmiShr(Smi, constexpr int31): Smi;
extern operator '<<' macro SmiShl(Smi, constexpr int31): Smi;
extern operator '+' macro IntPtrAdd(intptr, intptr): intptr;
extern operator '-' macro IntPtrSub(intptr, intptr): intptr;
@ -301,8 +311,12 @@ macro max(x: Number, y: Number): Number {
return NumberMax(x, y);
}
extern macro SmiMax(Smi, Smi): Smi;
extern macro SmiMin(Smi, Smi): Smi;
extern operator '!' macro ConstexprBoolNot(constexpr bool): constexpr bool;
extern operator '!' macro Word32BinaryNot(bool): bool;
extern operator '!' macro IsFalse(Boolean): bool;
extern operator '.map' macro LoadMap(HeapObject): Map;
extern operator '.map=' macro StoreMap(HeapObject, Map);
@ -626,7 +640,7 @@ extern operator '.length' macro LoadFixedArrayBaseLength(FixedArrayBase): Smi;
extern operator '[]' macro LoadFixedArrayElement(FixedArray, intptr): Object;
extern operator '[]' macro LoadFixedArrayElement(FixedArray, Smi): Object;
extern operator
'[]' macro LoadFixedArrayElementInt(FixedArray, constexpr int31): Object;
'[]' macro LoadFixedArrayElement(FixedArray, constexpr int31): Object;
extern operator
'[]=' macro StoreFixedArrayElement(FixedArray, intptr, Object): void;
extern operator
@ -660,6 +674,8 @@ extern macro IsFastSmiElementsKind(ElementsKind): bool;
extern macro IsHoleyFastElementsKind(ElementsKind): bool;
extern macro AllocateFixedArray(constexpr ElementsKind, intptr): FixedArray;
extern macro AllocateFixedArray(constexpr ElementsKind, intptr,
constexpr ParameterMode, constexpr AllocationFlags): FixedArray;
extern macro CopyFixedArrayElements(
constexpr ElementsKind, FixedArray, constexpr ElementsKind, FixedArray,
@ -726,6 +742,7 @@ extern macro IsJSArray(HeapObject): bool;
extern macro TaggedIsCallable(Object): bool;
extern macro IsDetachedBuffer(JSArrayBuffer): bool;
extern macro IsHeapNumber(HeapObject): bool;
extern macro IsFixedArray(HeapObject): bool;
extern macro IsExtensibleMap(Map): bool;
extern macro IsCustomElementsReceiverInstanceType(int32): bool;
extern macro Typeof(Object): Object;

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@ -380,6 +380,28 @@ Node* ArrayBuiltinsAssembler::FindProcessor(Node* k_value, Node* k) {
void ArrayBuiltinsAssembler::NullPostLoopAction() {}
void ArrayBuiltinsAssembler::FillFixedArrayWithSmiZero(
TNode<FixedArray> array, TNode<Smi> smi_length) {
CSA_ASSERT(this, Word32BinaryNot(IsFixedDoubleArray(array)));
TNode<IntPtrT> length = SmiToIntPtr(smi_length);
TNode<WordT> byte_length = TimesPointerSize(length);
CSA_ASSERT(this, UintPtrLessThan(length, byte_length));
static const int32_t fa_base_data_offset =
FixedArray::kHeaderSize - kHeapObjectTag;
TNode<IntPtrT> backing_store = IntPtrAdd(
BitcastTaggedToWord(array), IntPtrConstant(fa_base_data_offset));
// Call out to memset to perform initialization.
TNode<ExternalReference> memset =
ExternalConstant(ExternalReference::libc_memset_function());
STATIC_ASSERT(kSizetSize == kIntptrSize);
CallCFunction3(MachineType::Pointer(), MachineType::Pointer(),
MachineType::IntPtr(), MachineType::UintPtr(), memset,
backing_store, IntPtrConstant(0), byte_length);
}
void ArrayBuiltinsAssembler::ReturnFromBuiltin(Node* value) {
if (argc_ == nullptr) {
Return(value);

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@ -68,6 +68,10 @@ class ArrayBuiltinsAssembler : public BaseBuiltinsFromDSLAssembler {
void NullPostLoopAction();
// Uses memset to effectively initialize the given FixedArray with Smi zeroes.
void FillFixedArrayWithSmiZero(TNode<FixedArray> array,
TNode<Smi> smi_length);
protected:
TNode<Context> context() { return context_; }
TNode<Object> receiver() { return receiver_; }

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@ -380,6 +380,12 @@ class V8_EXPORT_PRIVATE CodeStubAssembler : public compiler::CodeAssembler {
return p_o;
}
TNode<Object> UnsafeCastObjectToLoadFn(TNode<Object> p_o) { return p_o; }
TNode<Object> UnsafeCastObjectToStoreFn(TNode<Object> p_o) { return p_o; }
TNode<Object> UnsafeCastObjectToCanUseSameAccessorFn(TNode<Object> p_o) {
return p_o;
}
TNode<NumberDictionary> UnsafeCastObjectToNumberDictionary(
TNode<Object> p_o) {
return CAST(p_o);

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@ -561,6 +561,7 @@ DebugInfo::SideEffectState BuiltinGetSideEffectState(Builtins::Name id) {
case Builtins::kArrayPrototypeFlatMap:
case Builtins::kArrayPrototypeKeys:
case Builtins::kArrayPrototypeSlice:
case Builtins::kArrayPrototypeSort:
case Builtins::kArrayForEach:
case Builtins::kArrayEvery:
case Builtins::kArraySome:

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@ -799,19 +799,6 @@ function InnerArraySort(array, length, comparefn) {
return array;
}
DEFINE_METHOD(
GlobalArray.prototype,
sort(comparefn) {
if (!IS_UNDEFINED(comparefn) && !IS_CALLABLE(comparefn)) {
throw %make_type_error(kBadSortComparisonFunction, comparefn);
}
var array = TO_OBJECT(this);
var length = TO_LENGTH(array.length);
return InnerArraySort(array, length, comparefn);
}
);
DEFINE_METHOD_LEN(
GlobalArray.prototype,

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254
third_party/v8/builtins/LICENSE vendored Normal file
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@ -0,0 +1,254 @@
A. HISTORY OF THE SOFTWARE
==========================
Python was created in the early 1990s by Guido van Rossum at Stichting
Mathematisch Centrum (CWI, see http://www.cwi.nl) in the Netherlands
as a successor of a language called ABC. Guido remains Python's
principal author, although it includes many contributions from others.
In 1995, Guido continued his work on Python at the Corporation for
National Research Initiatives (CNRI, see http://www.cnri.reston.va.us)
in Reston, Virginia where he released several versions of the
software.
In May 2000, Guido and the Python core development team moved to
BeOpen.com to form the BeOpen PythonLabs team. In October of the same
year, the PythonLabs team moved to Digital Creations, which became
Zope Corporation. In 2001, the Python Software Foundation (PSF, see
https://www.python.org/psf/) was formed, a non-profit organization
created specifically to own Python-related Intellectual Property.
Zope Corporation was a sponsoring member of the PSF.
All Python releases are Open Source (see http://www.opensource.org for
the Open Source Definition). Historically, most, but not all, Python
releases have also been GPL-compatible; the table below summarizes
the various releases.
Release Derived Year Owner GPL-
from compatible? (1)
0.9.0 thru 1.2 1991-1995 CWI yes
1.3 thru 1.5.2 1.2 1995-1999 CNRI yes
1.6 1.5.2 2000 CNRI no
2.0 1.6 2000 BeOpen.com no
1.6.1 1.6 2001 CNRI yes (2)
2.1 2.0+1.6.1 2001 PSF no
2.0.1 2.0+1.6.1 2001 PSF yes
2.1.1 2.1+2.0.1 2001 PSF yes
2.1.2 2.1.1 2002 PSF yes
2.1.3 2.1.2 2002 PSF yes
2.2 and above 2.1.1 2001-now PSF yes
Footnotes:
(1) GPL-compatible doesn't mean that we're distributing Python under
the GPL. All Python licenses, unlike the GPL, let you distribute
a modified version without making your changes open source. The
GPL-compatible licenses make it possible to combine Python with
other software that is released under the GPL; the others don't.
(2) According to Richard Stallman, 1.6.1 is not GPL-compatible,
because its license has a choice of law clause. According to
CNRI, however, Stallman's lawyer has told CNRI's lawyer that 1.6.1
is "not incompatible" with the GPL.
Thanks to the many outside volunteers who have worked under Guido's
direction to make these releases possible.
B. TERMS AND CONDITIONS FOR ACCESSING OR OTHERWISE USING PYTHON
===============================================================
PYTHON SOFTWARE FOUNDATION LICENSE VERSION 2
--------------------------------------------
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provided, however, that PSF's License Agreement and PSF's notice of copyright,
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-------------------------------------------
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CNRI LICENSE AGREEMENT FOR PYTHON 1.6.1
---------------------------------------
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--------------------------------------------------
Copyright (c) 1991 - 1995, Stichting Mathematisch Centrum Amsterdam,
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1818
third_party/v8/builtins/array-sort.tq vendored Normal file

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