f262fad639
BUG=http://dartbug.com/26199 R=fschneider@google.com Review URL: https://codereview.chromium.org/1915853004 .
482 lines
12 KiB
C++
482 lines
12 KiB
C++
// Copyright (c) 2012, the Dart project authors. Please see the AUTHORS file
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// for details. All rights reserved. Use of this source code is governed by a
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// BSD-style license that can be found in the LICENSE file.
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#ifndef VM_DATASTREAM_H_
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#define VM_DATASTREAM_H_
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#include "platform/assert.h"
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#include "platform/utils.h"
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#include "vm/allocation.h"
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#include "vm/exceptions.h"
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#include "vm/globals.h"
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#include "vm/os.h"
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namespace dart {
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static const int8_t kDataBitsPerByte = 7;
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static const int8_t kByteMask = (1 << kDataBitsPerByte) - 1;
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static const int8_t kMaxUnsignedDataPerByte = kByteMask;
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static const int8_t kMinDataPerByte = -(1 << (kDataBitsPerByte - 1));
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static const int8_t kMaxDataPerByte = (~kMinDataPerByte & kByteMask); // NOLINT
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static const uint8_t kEndByteMarker = (255 - kMaxDataPerByte);
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static const uint8_t kEndUnsignedByteMarker = (255 - kMaxUnsignedDataPerByte);
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typedef uint8_t* (*ReAlloc)(uint8_t* ptr, intptr_t old_size, intptr_t new_size);
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// Stream for reading various types from a buffer.
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class ReadStream : public ValueObject {
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public:
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ReadStream(const uint8_t* buffer, intptr_t size) : buffer_(buffer),
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current_(buffer),
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end_(buffer + size) {}
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void SetStream(const uint8_t* buffer, intptr_t size) {
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buffer_ = buffer;
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current_ = buffer;
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end_ = buffer + size;
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}
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template<int N, typename T>
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class Raw { };
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template<typename T>
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class Raw<1, T> {
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public:
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static T Read(ReadStream* st) {
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return bit_cast<T>(st->ReadByte());
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}
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};
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template<typename T>
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class Raw<2, T> {
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public:
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static T Read(ReadStream* st) {
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return bit_cast<T>(st->Read16());
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}
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};
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template<typename T>
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class Raw<4, T> {
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public:
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static T Read(ReadStream* st) {
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return bit_cast<T>(st->Read32());
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}
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};
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template<typename T>
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class Raw<8, T> {
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public:
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static T Read(ReadStream* st) {
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return bit_cast<T>(st->Read64());
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}
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};
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// Reads 'len' bytes from the stream.
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void ReadBytes(uint8_t* addr, intptr_t len) {
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ASSERT((end_ - current_) >= len);
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memmove(addr, current_, len);
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current_ += len;
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}
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intptr_t ReadUnsigned() {
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return Read<intptr_t>(kEndUnsignedByteMarker);
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}
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intptr_t Position() const { return current_ - buffer_; }
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void SetPosition(intptr_t value) {
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ASSERT((end_ - buffer_) > value);
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current_ = buffer_ + value;
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}
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const uint8_t* AddressOfCurrentPosition() const {
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return current_;
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}
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void Advance(intptr_t value) {
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ASSERT((end_ - current_) > value);
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current_ = current_ + value;
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}
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intptr_t PendingBytes() const {
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ASSERT(end_ >= current_);
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return (end_ - current_);
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}
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private:
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template<typename T>
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T Read() {
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return Read<T>(kEndByteMarker);
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}
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int16_t Read16() {
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return Read16(kEndByteMarker);
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}
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int32_t Read32() {
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return Read32(kEndByteMarker);
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}
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int64_t Read64() {
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return Read64(kEndByteMarker);
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}
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template<typename T>
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T Read(uint8_t end_byte_marker) {
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const uint8_t* c = current_;
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ASSERT(c < end_);
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uint8_t b = *c++;
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if (b > kMaxUnsignedDataPerByte) {
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current_ = c;
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return static_cast<T>(b) - end_byte_marker;
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}
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T r = 0;
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uint8_t s = 0;
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do {
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r |= static_cast<T>(b) << s;
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s += kDataBitsPerByte;
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ASSERT(c < end_);
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b = *c++;
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} while (b <= kMaxUnsignedDataPerByte);
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current_ = c;
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return r | ((static_cast<T>(b) - end_byte_marker) << s);
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}
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int16_t Read16(uint8_t end_byte_marker) {
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const uint8_t* c = current_;
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ASSERT(c < end_);
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uint8_t b = *c++;
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if (b > kMaxUnsignedDataPerByte) {
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current_ = c;
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return static_cast<int16_t>(b) - end_byte_marker;
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}
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int16_t r = 0;
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r |= static_cast<int16_t>(b);
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ASSERT(c < end_);
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b = *c++;
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if (b > kMaxUnsignedDataPerByte) {
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current_ = c;
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return r | ((static_cast<int16_t>(b) - end_byte_marker) << 7);
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}
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r |= static_cast<int16_t>(b) << 7;
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ASSERT(c < end_);
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b = *c++;
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ASSERT(b > kMaxUnsignedDataPerByte);
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current_ = c;
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return r | ((static_cast<int16_t>(b) - end_byte_marker) << 14);
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}
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int32_t Read32(uint8_t end_byte_marker) {
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const uint8_t* c = current_;
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ASSERT(c < end_);
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uint8_t b = *c++;
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if (b > kMaxUnsignedDataPerByte) {
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current_ = c;
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return static_cast<int32_t>(b) - end_byte_marker;
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}
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int32_t r = 0;
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r |= static_cast<int32_t>(b);
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ASSERT(c < end_);
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b = *c++;
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if (b > kMaxUnsignedDataPerByte) {
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current_ = c;
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return r | ((static_cast<int32_t>(b) - end_byte_marker) << 7);
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}
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r |= static_cast<int32_t>(b) << 7;
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ASSERT(c < end_);
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b = *c++;
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if (b > kMaxUnsignedDataPerByte) {
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current_ = c;
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return r | ((static_cast<int32_t>(b) - end_byte_marker) << 14);
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}
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r |= static_cast<int32_t>(b) << 14;
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ASSERT(c < end_);
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b = *c++;
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if (b > kMaxUnsignedDataPerByte) {
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current_ = c;
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return r | ((static_cast<int32_t>(b) - end_byte_marker) << 21);
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}
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r |= static_cast<int32_t>(b) << 21;
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ASSERT(c < end_);
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b = *c++;
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ASSERT(b > kMaxUnsignedDataPerByte);
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current_ = c;
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return r | ((static_cast<int32_t>(b) - end_byte_marker) << 28);
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}
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int64_t Read64(uint8_t end_byte_marker) {
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const uint8_t* c = current_;
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ASSERT(c < end_);
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uint8_t b = *c++;
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if (b > kMaxUnsignedDataPerByte) {
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current_ = c;
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return static_cast<int64_t>(b) - end_byte_marker;
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}
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int64_t r = 0;
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r |= static_cast<int64_t>(b);
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ASSERT(c < end_);
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b = *c++;
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if (b > kMaxUnsignedDataPerByte) {
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current_ = c;
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return r | ((static_cast<int64_t>(b) - end_byte_marker) << 7);
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}
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r |= static_cast<int64_t>(b) << 7;
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ASSERT(c < end_);
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b = *c++;
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if (b > kMaxUnsignedDataPerByte) {
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current_ = c;
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return r | ((static_cast<int64_t>(b) - end_byte_marker) << 14);
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}
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r |= static_cast<int64_t>(b) << 14;
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ASSERT(c < end_);
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b = *c++;
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if (b > kMaxUnsignedDataPerByte) {
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current_ = c;
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return r | ((static_cast<int64_t>(b) - end_byte_marker) << 21);
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}
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r |= static_cast<int64_t>(b) << 21;
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ASSERT(c < end_);
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b = *c++;
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if (b > kMaxUnsignedDataPerByte) {
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current_ = c;
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return r | ((static_cast<int64_t>(b) - end_byte_marker) << 28);
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}
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r |= static_cast<int64_t>(b) << 28;
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ASSERT(c < end_);
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b = *c++;
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if (b > kMaxUnsignedDataPerByte) {
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current_ = c;
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return r | ((static_cast<int64_t>(b) - end_byte_marker) << 35);
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}
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r |= static_cast<int64_t>(b) << 35;
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ASSERT(c < end_);
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b = *c++;
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if (b > kMaxUnsignedDataPerByte) {
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current_ = c;
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return r | ((static_cast<int64_t>(b) - end_byte_marker) << 42);
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}
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r |= static_cast<int64_t>(b) << 42;
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ASSERT(c < end_);
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b = *c++;
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if (b > kMaxUnsignedDataPerByte) {
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current_ = c;
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return r | ((static_cast<int64_t>(b) - end_byte_marker) << 49);
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}
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r |= static_cast<int64_t>(b) << 49;
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ASSERT(c < end_);
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b = *c++;
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if (b > kMaxUnsignedDataPerByte) {
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current_ = c;
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return r | ((static_cast<int64_t>(b) - end_byte_marker) << 56);
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}
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r |= static_cast<int64_t>(b) << 56;
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ASSERT(c < end_);
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b = *c++;
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ASSERT(b > kMaxUnsignedDataPerByte);
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current_ = c;
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return r | ((static_cast<int64_t>(b) - end_byte_marker) << 63);
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}
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uint8_t ReadByte() {
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ASSERT(current_ < end_);
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return *current_++;
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}
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private:
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const uint8_t* buffer_;
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const uint8_t* current_;
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const uint8_t* end_;
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DISALLOW_COPY_AND_ASSIGN(ReadStream);
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};
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// Stream for writing various types into a buffer.
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class WriteStream : public ValueObject {
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public:
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WriteStream(uint8_t** buffer, ReAlloc alloc, intptr_t initial_size) :
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buffer_(buffer),
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end_(NULL),
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current_(NULL),
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current_size_(0),
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alloc_(alloc),
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initial_size_(initial_size) {
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ASSERT(buffer != NULL);
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ASSERT(alloc != NULL);
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*buffer_ = reinterpret_cast<uint8_t*>(alloc_(NULL,
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0,
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initial_size_));
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if (*buffer_ == NULL) {
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Exceptions::ThrowOOM();
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}
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current_ = *buffer_;
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current_size_ = initial_size_;
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end_ = *buffer_ + initial_size_;
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}
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uint8_t* buffer() const { return *buffer_; }
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intptr_t bytes_written() const { return current_ - *buffer_; }
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void set_current(uint8_t* value) { current_ = value; }
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template<int N, typename T>
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class Raw { };
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template<typename T>
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class Raw<1, T> {
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public:
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static void Write(WriteStream* st, T value) {
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st->WriteByte(bit_cast<int8_t>(value));
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}
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};
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template<typename T>
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class Raw<2, T> {
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public:
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static void Write(WriteStream* st, T value) {
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st->Write<int16_t>(bit_cast<int16_t>(value));
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}
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};
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template<typename T>
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class Raw<4, T> {
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public:
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static void Write(WriteStream* st, T value) {
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st->Write<int32_t>(bit_cast<int32_t>(value));
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}
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};
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template<typename T>
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class Raw<8, T> {
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public:
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static void Write(WriteStream* st, T value) {
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st->Write<int64_t>(bit_cast<int64_t>(value));
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}
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};
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void WriteUnsigned(intptr_t value) {
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ASSERT((value >= 0) && (value <= kIntptrMax));
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while (value > kMaxUnsignedDataPerByte) {
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WriteByte(static_cast<uint8_t>(value & kByteMask));
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value = value >> kDataBitsPerByte;
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}
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WriteByte(static_cast<uint8_t>(value + kEndUnsignedByteMarker));
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}
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void WriteBytes(const uint8_t* addr, intptr_t len) {
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if ((end_ - current_) < len) {
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Resize(len);
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}
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ASSERT((end_ - current_) >= len);
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memmove(current_, addr, len);
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current_ += len;
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}
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void WriteWord(uword value) {
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const intptr_t len = sizeof(uword);
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if ((end_ - current_) < len) {
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Resize(len);
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}
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ASSERT((end_ - current_) >= len);
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*reinterpret_cast<uword*>(current_) = value;
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current_ += len;
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}
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void Print(const char* format, ...) {
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va_list args;
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va_start(args, format);
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VPrint(format, args);
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}
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private:
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template<typename T>
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void Write(T value) {
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T v = value;
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while (v < kMinDataPerByte ||
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v > kMaxDataPerByte) {
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WriteByte(static_cast<uint8_t>(v & kByteMask));
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v = v >> kDataBitsPerByte;
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}
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WriteByte(static_cast<uint8_t>(v + kEndByteMarker));
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}
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DART_FORCE_INLINE void WriteByte(uint8_t value) {
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if (current_ >= end_) {
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Resize(1);
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}
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ASSERT(current_ < end_);
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*current_++ = value;
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}
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void Resize(intptr_t size_needed) {
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intptr_t position = current_ - *buffer_;
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intptr_t increment_size = current_size_;
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if (size_needed > increment_size) {
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increment_size = Utils::RoundUp(size_needed, initial_size_);
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}
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intptr_t new_size = current_size_ + increment_size;
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ASSERT(new_size > current_size_);
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*buffer_ = reinterpret_cast<uint8_t*>(alloc_(*buffer_,
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current_size_,
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new_size));
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if (*buffer_ == NULL) {
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Exceptions::ThrowOOM();
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}
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current_ = *buffer_ + position;
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current_size_ = new_size;
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end_ = *buffer_ + new_size;
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ASSERT(end_ > *buffer_);
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}
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void VPrint(const char* format, va_list args) {
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// Measure.
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va_list measure_args;
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va_copy(measure_args, args);
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intptr_t len = OS::VSNPrint(NULL, 0, format, measure_args);
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va_end(measure_args);
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// Alloc.
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if ((end_ - current_) < (len + 1)) {
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Resize(len + 1);
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}
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ASSERT((end_ - current_) >= (len + 1));
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// Print.
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va_list print_args;
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va_copy(print_args, args);
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OS::VSNPrint(reinterpret_cast<char*>(current_),
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len + 1, format, print_args);
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va_end(print_args);
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current_ += len; // Not len + 1 to swallow the terminating NUL.
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}
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private:
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uint8_t** const buffer_;
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uint8_t* end_;
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uint8_t* current_;
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intptr_t current_size_;
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ReAlloc alloc_;
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intptr_t initial_size_;
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DISALLOW_COPY_AND_ASSIGN(WriteStream);
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};
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} // namespace dart
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#endif // VM_DATASTREAM_H_
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