9b5a931b06
Leave --print-snapshot-sizes on stdout because it is parsed by Flutter benchmarks. Replace all runtime/bin uses of OS::Print with Log::Print. Bug: https://github.com/dart-lang/sdk/issues/32134 Change-Id: I74aacfb410cdfa9270d06e7f6ab0534520c7c7ba Reviewed-on: https://dart-review.googlesource.com/60021 Commit-Queue: Ryan Macnak <rmacnak@google.com> Reviewed-by: Zach Anderson <zra@google.com> Reviewed-by: Vyacheslav Egorov <vegorov@google.com>
393 lines
10 KiB
C++
393 lines
10 KiB
C++
// Copyright (c) 2017, 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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#include "platform/assert.h"
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#include "vm/json_writer.h"
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#include "vm/object.h"
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#include "vm/unicode.h"
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namespace dart {
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class MaybeOnStackBuffer {
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public:
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explicit MaybeOnStackBuffer(intptr_t size) {
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if (size > kOnStackBufferCapacity) {
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p_ = reinterpret_cast<char*>(malloc(size));
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} else {
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p_ = &buffer_[0];
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}
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}
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~MaybeOnStackBuffer() {
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if (p_ != &buffer_[0]) free(p_);
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}
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char* p() { return p_; }
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private:
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static const intptr_t kOnStackBufferCapacity = 4096;
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char* p_;
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char buffer_[kOnStackBufferCapacity];
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};
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JSONWriter::JSONWriter(intptr_t buf_size)
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: open_objects_(0), buffer_(buf_size) {}
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void JSONWriter::AppendSerializedObject(const char* serialized_object) {
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PrintCommaIfNeeded();
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buffer_.AddString(serialized_object);
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}
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void JSONWriter::AppendSerializedObject(const uint8_t* buffer,
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intptr_t buffer_length) {
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buffer_.AddRaw(buffer, buffer_length);
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}
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void JSONWriter::AppendSerializedObject(const char* property_name,
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const char* serialized_object) {
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PrintCommaIfNeeded();
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PrintPropertyName(property_name);
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buffer_.AddString(serialized_object);
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}
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void JSONWriter::Clear() {
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buffer_.Clear();
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open_objects_ = 0;
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}
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void JSONWriter::OpenObject(const char* property_name) {
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PrintCommaIfNeeded();
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open_objects_++;
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if (property_name != NULL) {
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PrintPropertyName(property_name);
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}
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buffer_.AddChar('{');
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}
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void JSONWriter::UncloseObject() {
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intptr_t len = buffer_.length();
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ASSERT(len > 0);
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ASSERT(buffer_.buf()[len - 1] == '}');
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open_objects_++;
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buffer_.set_length(len - 1);
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}
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void JSONWriter::CloseObject() {
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ASSERT(open_objects_ > 0);
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open_objects_--;
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buffer_.AddChar('}');
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}
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void JSONWriter::OpenArray(const char* property_name) {
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PrintCommaIfNeeded();
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if (property_name != NULL) {
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PrintPropertyName(property_name);
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}
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open_objects_++;
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buffer_.AddChar('[');
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}
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void JSONWriter::CloseArray() {
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ASSERT(open_objects_ > 0);
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open_objects_--;
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buffer_.AddChar(']');
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}
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void JSONWriter::PrintValueNull() {
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PrintCommaIfNeeded();
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buffer_.Printf("null");
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}
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void JSONWriter::PrintValueBool(bool b) {
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PrintCommaIfNeeded();
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buffer_.Printf("%s", b ? "true" : "false");
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}
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void JSONWriter::PrintValue(intptr_t i) {
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EnsureIntegerIsRepresentableInJavaScript(static_cast<int64_t>(i));
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PrintCommaIfNeeded();
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buffer_.Printf("%" Pd "", i);
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}
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void JSONWriter::PrintValue64(int64_t i) {
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EnsureIntegerIsRepresentableInJavaScript(i);
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PrintCommaIfNeeded();
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buffer_.Printf("%" Pd64 "", i);
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}
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void JSONWriter::PrintValue(double d) {
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PrintCommaIfNeeded();
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buffer_.Printf("%f", d);
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}
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static const char base64_digits[65] =
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"ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/";
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static const char base64_pad = '=';
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void JSONWriter::PrintValueBase64(const uint8_t* bytes, intptr_t length) {
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PrintCommaIfNeeded();
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buffer_.AddChar('"');
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intptr_t odd_bits = length % 3;
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intptr_t even_bits = length - odd_bits;
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for (intptr_t i = 0; i < even_bits; i += 3) {
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intptr_t triplet = (bytes[i] << 16) | (bytes[i + 1] << 8) | bytes[i + 2];
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buffer_.AddChar(base64_digits[triplet >> 18]);
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buffer_.AddChar(base64_digits[(triplet >> 12) & 63]);
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buffer_.AddChar(base64_digits[(triplet >> 6) & 63]);
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buffer_.AddChar(base64_digits[triplet & 63]);
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}
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if (odd_bits == 1) {
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intptr_t triplet = bytes[even_bits] << 16;
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buffer_.AddChar(base64_digits[triplet >> 18]);
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buffer_.AddChar(base64_digits[(triplet >> 12) & 63]);
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buffer_.AddChar(base64_pad);
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buffer_.AddChar(base64_pad);
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} else if (odd_bits == 2) {
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intptr_t triplet = (bytes[even_bits] << 16) | (bytes[even_bits + 1] << 8);
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buffer_.AddChar(base64_digits[triplet >> 18]);
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buffer_.AddChar(base64_digits[(triplet >> 12) & 63]);
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buffer_.AddChar(base64_digits[(triplet >> 6) & 63]);
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buffer_.AddChar(base64_pad);
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}
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buffer_.AddChar('"');
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}
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void JSONWriter::PrintValue(const char* s) {
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PrintCommaIfNeeded();
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buffer_.AddChar('"');
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AddEscapedUTF8String(s);
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buffer_.AddChar('"');
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}
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bool JSONWriter::PrintValueStr(const String& s,
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intptr_t offset,
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intptr_t count) {
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PrintCommaIfNeeded();
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buffer_.AddChar('"');
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bool did_truncate = AddDartString(s, offset, count);
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buffer_.AddChar('"');
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return did_truncate;
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}
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void JSONWriter::PrintValueNoEscape(const char* s) {
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PrintCommaIfNeeded();
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buffer_.Printf("%s", s);
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}
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void JSONWriter::PrintfValue(const char* format, ...) {
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va_list args;
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va_start(args, format);
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VPrintfValue(format, args);
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va_end(args);
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}
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void JSONWriter::VPrintfValue(const char* format, va_list args) {
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PrintCommaIfNeeded();
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va_list measure_args;
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va_copy(measure_args, args);
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intptr_t len = Utils::VSNPrint(NULL, 0, format, measure_args);
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va_end(measure_args);
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MaybeOnStackBuffer mosb(len + 1);
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char* p = mosb.p();
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va_list print_args;
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va_copy(print_args, args);
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intptr_t len2 = Utils::VSNPrint(p, len + 1, format, print_args);
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va_end(print_args);
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ASSERT(len == len2);
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buffer_.AddChar('"');
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AddEscapedUTF8String(p, len);
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buffer_.AddChar('"');
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}
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void JSONWriter::PrintPropertyBool(const char* name, bool b) {
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PrintPropertyName(name);
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PrintValueBool(b);
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}
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void JSONWriter::PrintProperty(const char* name, intptr_t i) {
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PrintPropertyName(name);
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PrintValue(i);
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}
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void JSONWriter::PrintProperty64(const char* name, int64_t i) {
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PrintPropertyName(name);
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PrintValue64(i);
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}
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void JSONWriter::PrintProperty(const char* name, double d) {
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PrintPropertyName(name);
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PrintValue(d);
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}
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void JSONWriter::PrintProperty(const char* name, const char* s) {
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PrintPropertyName(name);
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PrintValue(s);
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}
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void JSONWriter::PrintPropertyBase64(const char* name,
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const uint8_t* b,
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intptr_t len) {
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PrintPropertyName(name);
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PrintValueBase64(b, len);
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}
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bool JSONWriter::PrintPropertyStr(const char* name,
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const String& s,
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intptr_t offset,
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intptr_t count) {
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PrintPropertyName(name);
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return PrintValueStr(s, offset, count);
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}
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void JSONWriter::PrintPropertyNoEscape(const char* name, const char* s) {
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PrintPropertyName(name);
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PrintValueNoEscape(s);
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}
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void JSONWriter::PrintfProperty(const char* name, const char* format, ...) {
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va_list args;
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va_start(args, format);
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VPrintfProperty(name, format, args);
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va_end(args);
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}
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void JSONWriter::VPrintfProperty(const char* name,
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const char* format,
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va_list args) {
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PrintPropertyName(name);
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va_list measure_args;
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va_copy(measure_args, args);
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intptr_t len = Utils::VSNPrint(NULL, 0, format, measure_args);
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va_end(measure_args);
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MaybeOnStackBuffer mosb(len + 1);
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char* p = mosb.p();
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va_list print_args;
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va_copy(print_args, args);
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intptr_t len2 = Utils::VSNPrint(p, len + 1, format, print_args);
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va_end(print_args);
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ASSERT(len == len2);
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buffer_.AddChar('"');
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AddEscapedUTF8String(p, len);
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buffer_.AddChar('"');
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}
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void JSONWriter::Steal(char** buffer, intptr_t* buffer_length) {
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ASSERT(buffer != NULL);
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ASSERT(buffer_length != NULL);
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*buffer_length = buffer_.length();
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*buffer = buffer_.Steal();
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}
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void JSONWriter::PrintPropertyName(const char* name) {
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ASSERT(name != NULL);
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PrintCommaIfNeeded();
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buffer_.AddChar('"');
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AddEscapedUTF8String(name);
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buffer_.AddChar('"');
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buffer_.AddChar(':');
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}
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void JSONWriter::PrintCommaIfNeeded() {
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if (NeedComma()) {
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buffer_.AddChar(',');
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}
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}
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bool JSONWriter::NeedComma() {
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const char* buffer = buffer_.buf();
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intptr_t length = buffer_.length();
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if (length == 0) {
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return false;
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}
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char ch = buffer[length - 1];
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return (ch != '[') && (ch != '{') && (ch != ':') && (ch != ',');
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}
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void JSONWriter::EnsureIntegerIsRepresentableInJavaScript(int64_t i) {
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#ifdef DEBUG
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if (!Utils::IsJavascriptInt(i)) {
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OS::PrintErr(
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"JSONWriter::EnsureIntegerIsRepresentableInJavaScript failed on "
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"%" Pd64 "\n",
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i);
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UNREACHABLE();
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}
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#endif
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}
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void JSONWriter::AddEscapedUTF8String(const char* s) {
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if (s == NULL) {
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return;
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}
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intptr_t len = strlen(s);
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AddEscapedUTF8String(s, len);
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}
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void JSONWriter::AddEscapedUTF8String(const char* s, intptr_t len) {
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if (s == NULL) {
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return;
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}
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const uint8_t* s8 = reinterpret_cast<const uint8_t*>(s);
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intptr_t i = 0;
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for (; i < len;) {
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// Extract next UTF8 character.
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int32_t ch = 0;
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int32_t ch_len = Utf8::Decode(&s8[i], len - i, &ch);
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ASSERT(ch_len != 0);
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buffer_.EscapeAndAddCodeUnit(ch);
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// Move i forward.
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i += ch_len;
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}
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ASSERT(i == len);
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}
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bool JSONWriter::AddDartString(const String& s,
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intptr_t offset,
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intptr_t count) {
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intptr_t length = s.Length();
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ASSERT(offset >= 0);
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if (offset > length) {
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offset = length;
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}
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if (!Utils::RangeCheck(offset, count, length)) {
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count = length - offset;
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}
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intptr_t limit = offset + count;
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for (intptr_t i = offset; i < limit; i++) {
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uint16_t code_unit = s.CharAt(i);
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if (Utf16::IsTrailSurrogate(code_unit)) {
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buffer_.EscapeAndAddUTF16CodeUnit(code_unit);
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} else if (Utf16::IsLeadSurrogate(code_unit)) {
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if (i + 1 == limit) {
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buffer_.EscapeAndAddUTF16CodeUnit(code_unit);
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} else {
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uint16_t next_code_unit = s.CharAt(i + 1);
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if (Utf16::IsTrailSurrogate(next_code_unit)) {
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uint32_t decoded = Utf16::Decode(code_unit, next_code_unit);
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buffer_.EscapeAndAddCodeUnit(decoded);
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i++;
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} else {
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buffer_.EscapeAndAddUTF16CodeUnit(code_unit);
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}
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}
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} else {
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buffer_.EscapeAndAddCodeUnit(code_unit);
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}
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}
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// Return value indicates whether the string is truncated.
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return (offset > 0) || (limit < length);
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}
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} // namespace dart
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