| Index: src/assembler.cpp
|
| diff --git a/src/assembler.cpp b/src/assembler.cpp
|
| deleted file mode 100644
|
| index 931998e2b72c73dae1732b32d0aa9df2b0a53e67..0000000000000000000000000000000000000000
|
| --- a/src/assembler.cpp
|
| +++ /dev/null
|
| @@ -1,154 +0,0 @@
|
| -//===- subzero/src/assembler.cpp - Assembler base class -------------------===//
|
| -// Copyright (c) 2012, 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.
|
| -//
|
| -// Modified by the Subzero authors.
|
| -//
|
| -// This is forked from Dart revision 39313.
|
| -// Please update the revision if we merge back changes from Dart.
|
| -// https://code.google.com/p/dart/wiki/GettingTheSource
|
| -//
|
| -//===----------------------------------------------------------------------===//
|
| -//
|
| -// The Subzero Code Generator
|
| -//
|
| -// This file is distributed under the University of Illinois Open Source
|
| -// License. See LICENSE.TXT for details.
|
| -//
|
| -//===----------------------------------------------------------------------===//
|
| -//
|
| -// This file implements the Assembler class.
|
| -//
|
| -//===----------------------------------------------------------------------===//
|
| -
|
| -#include "assembler.h"
|
| -#include "IceGlobalContext.h"
|
| -#include "IceOperand.h"
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| -
|
| -namespace Ice {
|
| -
|
| -static uintptr_t NewContents(Assembler &assembler, intptr_t capacity) {
|
| - uintptr_t result = assembler.AllocateBytes(capacity);
|
| - return result;
|
| -}
|
| -
|
| -AssemblerFixup *AssemblerBuffer::createFixup(FixupKind Kind,
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| - const Constant *Value) {
|
| - AssemblerFixup *F =
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| - new (assembler_.Allocate<AssemblerFixup>()) AssemblerFixup();
|
| - F->set_position(0);
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| - F->set_kind(Kind);
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| - F->set_value(Value);
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| - if (!assembler_.getPreliminary())
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| - fixups_.push_back(F);
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| - return F;
|
| -}
|
| -
|
| -#ifndef NDEBUG
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| -AssemblerBuffer::EnsureCapacity::EnsureCapacity(AssemblerBuffer *buffer) {
|
| - if (buffer->cursor() >= buffer->limit())
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| - buffer->ExtendCapacity();
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| - // In debug mode, we save the assembler buffer along with the gap
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| - // size before we start emitting to the buffer. This allows us to
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| - // check that any single generated instruction doesn't overflow the
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| - // limit implied by the minimum gap size.
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| - buffer_ = buffer;
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| - gap_ = ComputeGap();
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| - // Make sure that extending the capacity leaves a big enough gap
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| - // for any kind of instruction.
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| - assert(gap_ >= kMinimumGap);
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| - // Mark the buffer as having ensured the capacity.
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| - assert(!buffer->HasEnsuredCapacity()); // Cannot nest.
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| - buffer->has_ensured_capacity_ = true;
|
| -}
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| -
|
| -AssemblerBuffer::EnsureCapacity::~EnsureCapacity() {
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| - // Unmark the buffer, so we cannot emit after this.
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| - buffer_->has_ensured_capacity_ = false;
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| - // Make sure the generated instruction doesn't take up more
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| - // space than the minimum gap.
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| - intptr_t delta = gap_ - ComputeGap();
|
| - assert(delta <= kMinimumGap);
|
| -}
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| -#endif // !NDEBUG
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| -
|
| -AssemblerBuffer::AssemblerBuffer(Assembler &assembler) : assembler_(assembler) {
|
| - const intptr_t OneKB = 1024;
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| - static const intptr_t kInitialBufferCapacity = 4 * OneKB;
|
| - contents_ = NewContents(assembler_, kInitialBufferCapacity);
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| - cursor_ = contents_;
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| - limit_ = ComputeLimit(contents_, kInitialBufferCapacity);
|
| -#ifndef NDEBUG
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| - has_ensured_capacity_ = false;
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| -#endif // !NDEBUG
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| -
|
| - // Verify internal state.
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| - assert(Capacity() == kInitialBufferCapacity);
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| - assert(Size() == 0);
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| -}
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| -
|
| -AssemblerBuffer::~AssemblerBuffer() {}
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| -
|
| -void AssemblerBuffer::ExtendCapacity() {
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| - intptr_t old_size = Size();
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| - intptr_t old_capacity = Capacity();
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| - const intptr_t OneMB = 1 << 20;
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| - intptr_t new_capacity = std::min(old_capacity * 2, old_capacity + OneMB);
|
| - if (new_capacity < old_capacity) {
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| - llvm::report_fatal_error(
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| - "Unexpected overflow in AssemblerBuffer::ExtendCapacity");
|
| - }
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| -
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| - // Allocate the new data area and copy contents of the old one to it.
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| - uintptr_t new_contents = NewContents(assembler_, new_capacity);
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| - memmove(reinterpret_cast<void *>(new_contents),
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| - reinterpret_cast<void *>(contents_), old_size);
|
| -
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| - // Compute the relocation delta and switch to the new contents area.
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| - intptr_t delta = new_contents - contents_;
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| - contents_ = new_contents;
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| -
|
| - // Update the cursor and recompute the limit.
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| - cursor_ += delta;
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| - limit_ = ComputeLimit(new_contents, new_capacity);
|
| -
|
| - // Verify internal state.
|
| - assert(Capacity() == new_capacity);
|
| - assert(Size() == old_size);
|
| -}
|
| -
|
| -llvm::StringRef Assembler::getBufferView() const {
|
| - return llvm::StringRef(reinterpret_cast<const char *>(buffer_.contents()),
|
| - buffer_.Size());
|
| -}
|
| -
|
| -void Assembler::emitIASBytes(GlobalContext *Ctx) const {
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| - Ostream &Str = Ctx->getStrEmit();
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| - intptr_t EndPosition = buffer_.Size();
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| - intptr_t CurPosition = 0;
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| - const intptr_t FixupSize = 4;
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| - for (const AssemblerFixup *NextFixup : fixups()) {
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| - intptr_t NextFixupLoc = NextFixup->position();
|
| - for (intptr_t i = CurPosition; i < NextFixupLoc; ++i) {
|
| - Str << "\t.byte 0x";
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| - Str.write_hex(buffer_.Load<uint8_t>(i));
|
| - Str << "\n";
|
| - }
|
| - Str << "\t.long ";
|
| - NextFixup->emit(Ctx, buffer_.Load<RelocOffsetT>(NextFixupLoc));
|
| - if (fixupIsPCRel(NextFixup->kind()))
|
| - Str << " - .";
|
| - Str << "\n";
|
| - CurPosition = NextFixupLoc + FixupSize;
|
| - assert(CurPosition <= EndPosition);
|
| - }
|
| - // Handle any bytes that are not prefixed by a fixup.
|
| - for (intptr_t i = CurPosition; i < EndPosition; ++i) {
|
| - Str << "\t.byte 0x";
|
| - Str.write_hex(buffer_.Load<uint8_t>(i));
|
| - Str << "\n";
|
| - }
|
| -}
|
| -
|
| -} // end of namespace Ice
|
|
|