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339 lines
12 KiB
C++
339 lines
12 KiB
C++
// Copyright 2014 The Chromium Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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#ifndef MOJO_PUBLIC_CPP_BINDINGS_LIB_ARRAY_SERIALIZATION_H_
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#define MOJO_PUBLIC_CPP_BINDINGS_LIB_ARRAY_SERIALIZATION_H_
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#include <string.h> // For |memcpy()|.
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#include <vector>
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#include "mojo/public/c/system/macros.h"
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#include "mojo/public/cpp/bindings/lib/array_internal.h"
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#include "mojo/public/cpp/bindings/lib/map_serialization.h"
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#include "mojo/public/cpp/bindings/lib/string_serialization.h"
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#include "mojo/public/cpp/bindings/lib/template_util.h"
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#include "mojo/public/cpp/bindings/lib/validation_errors.h"
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namespace mojo {
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template <typename E>
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inline size_t GetSerializedSize_(const Array<E>& input);
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template <typename E, typename F>
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inline void SerializeArray_(
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Array<E> input,
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internal::Buffer* buf,
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internal::Array_Data<F>** output,
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const internal::ArrayValidateParams* validate_params);
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template <typename E, typename F>
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inline void Deserialize_(internal::Array_Data<F>* data, Array<E>* output);
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namespace internal {
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template <typename E,
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typename F,
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bool is_union =
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IsUnionDataType<typename RemovePointer<F>::type>::value>
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struct ArraySerializer;
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// Handles serialization and deserialization of arrays of pod types.
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template <typename E, typename F>
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struct ArraySerializer<E, F, false> {
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static_assert(sizeof(E) == sizeof(F), "Incorrect array serializer");
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static size_t GetSerializedSize(const Array<E>& input) {
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return sizeof(Array_Data<F>) + Align(input.size() * sizeof(E));
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}
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static void SerializeElements(Array<E> input,
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Buffer* buf,
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Array_Data<F>* output,
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const ArrayValidateParams* validate_params) {
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MOJO_DCHECK(!validate_params->element_is_nullable)
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<< "Primitive type should be non-nullable";
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MOJO_DCHECK(!validate_params->element_validate_params)
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<< "Primitive type should not have array validate params";
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if (input.size())
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memcpy(output->storage(), &input.storage()[0], input.size() * sizeof(E));
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}
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static void DeserializeElements(Array_Data<F>* input, Array<E>* output) {
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std::vector<E> result(input->size());
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if (input->size())
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memcpy(&result[0], input->storage(), input->size() * sizeof(E));
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output->Swap(&result);
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}
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};
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// Serializes and deserializes arrays of bools.
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template <>
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struct ArraySerializer<bool, bool, false> {
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static size_t GetSerializedSize(const Array<bool>& input) {
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return sizeof(Array_Data<bool>) + Align((input.size() + 7) / 8);
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}
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static void SerializeElements(Array<bool> input,
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Buffer* buf,
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Array_Data<bool>* output,
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const ArrayValidateParams* validate_params) {
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MOJO_DCHECK(!validate_params->element_is_nullable)
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<< "Primitive type should be non-nullable";
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MOJO_DCHECK(!validate_params->element_validate_params)
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<< "Primitive type should not have array validate params";
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// TODO(darin): Can this be a memcpy somehow instead of a bit-by-bit copy?
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for (size_t i = 0; i < input.size(); ++i)
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output->at(i) = input[i];
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}
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static void DeserializeElements(Array_Data<bool>* input,
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Array<bool>* output) {
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Array<bool> result(input->size());
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// TODO(darin): Can this be a memcpy somehow instead of a bit-by-bit copy?
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for (size_t i = 0; i < input->size(); ++i)
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result.at(i) = input->at(i);
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output->Swap(&result);
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}
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};
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// Serializes and deserializes arrays of handles.
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template <typename H>
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struct ArraySerializer<ScopedHandleBase<H>, H, false> {
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static size_t GetSerializedSize(const Array<ScopedHandleBase<H>>& input) {
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return sizeof(Array_Data<H>) + Align(input.size() * sizeof(H));
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}
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static void SerializeElements(Array<ScopedHandleBase<H>> input,
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Buffer* buf,
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Array_Data<H>* output,
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const ArrayValidateParams* validate_params) {
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MOJO_DCHECK(!validate_params->element_validate_params)
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<< "Handle type should not have array validate params";
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for (size_t i = 0; i < input.size(); ++i) {
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output->at(i) = input[i].release(); // Transfer ownership of the handle.
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MOJO_INTERNAL_DLOG_SERIALIZATION_WARNING(
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!validate_params->element_is_nullable && !output->at(i).is_valid(),
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VALIDATION_ERROR_UNEXPECTED_INVALID_HANDLE,
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MakeMessageWithArrayIndex(
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"invalid handle in array expecting valid handles", input.size(),
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i));
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}
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}
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static void DeserializeElements(Array_Data<H>* input,
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Array<ScopedHandleBase<H>>* output) {
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Array<ScopedHandleBase<H>> result(input->size());
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for (size_t i = 0; i < input->size(); ++i)
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result.at(i) = MakeScopedHandle(FetchAndReset(&input->at(i)));
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output->Swap(&result);
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}
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};
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// This template must only apply to pointer mojo entity (structs and arrays).
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// This is done by ensuring that WrapperTraits<S>::DataType is a pointer.
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template <typename S>
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struct ArraySerializer<
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S,
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typename EnableIf<IsPointer<typename WrapperTraits<S>::DataType>::value,
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typename WrapperTraits<S>::DataType>::type,
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false> {
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typedef
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typename RemovePointer<typename WrapperTraits<S>::DataType>::type S_Data;
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static size_t GetSerializedSize(const Array<S>& input) {
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size_t size = sizeof(Array_Data<S_Data*>) +
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input.size() * sizeof(StructPointer<S_Data>);
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for (size_t i = 0; i < input.size(); ++i)
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size += GetSerializedSize_(input[i]);
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return size;
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}
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static void SerializeElements(Array<S> input,
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Buffer* buf,
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Array_Data<S_Data*>* output,
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const ArrayValidateParams* validate_params) {
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for (size_t i = 0; i < input.size(); ++i) {
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S_Data* element;
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SerializeCaller<S>::Run(input[i].Pass(), buf, &element,
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validate_params->element_validate_params);
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output->at(i) = element;
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MOJO_INTERNAL_DLOG_SERIALIZATION_WARNING(
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!validate_params->element_is_nullable && !element,
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VALIDATION_ERROR_UNEXPECTED_NULL_POINTER,
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MakeMessageWithArrayIndex("null in array expecting valid pointers",
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input.size(), i));
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}
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}
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static void DeserializeElements(Array_Data<S_Data*>* input,
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Array<S>* output) {
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Array<S> result(input->size());
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for (size_t i = 0; i < input->size(); ++i) {
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Deserialize_(input->at(i), &result[i]);
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}
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output->Swap(&result);
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}
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private:
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template <typename T>
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struct SerializeCaller {
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static void Run(T input,
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Buffer* buf,
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typename WrapperTraits<T>::DataType* output,
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const ArrayValidateParams* validate_params) {
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MOJO_DCHECK(!validate_params)
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<< "Struct type should not have array validate params";
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Serialize_(input.Pass(), buf, output);
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}
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};
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template <typename T>
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struct SerializeCaller<Array<T>> {
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static void Run(Array<T> input,
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Buffer* buf,
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typename Array<T>::Data_** output,
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const ArrayValidateParams* validate_params) {
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SerializeArray_(input.Pass(), buf, output, validate_params);
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}
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};
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template <typename T, typename U>
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struct SerializeCaller<Map<T, U>> {
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static void Run(Map<T, U> input,
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Buffer* buf,
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typename Map<T, U>::Data_** output,
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const ArrayValidateParams* validate_params) {
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SerializeMap_(input.Pass(), buf, output, validate_params);
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}
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};
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};
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// Handles serialization and deserialization of arrays of unions.
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template <typename U, typename U_Data>
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struct ArraySerializer<U, U_Data, true> {
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static size_t GetSerializedSize(const Array<U>& input) {
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size_t size = sizeof(Array_Data<U_Data>);
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for (size_t i = 0; i < input.size(); ++i) {
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// GetSerializedSize_ will account for both the data in the union and the
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// space in the array used to hold the union.
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size += GetSerializedSize_(input[i], false);
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}
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return size;
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}
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static void SerializeElements(Array<U> input,
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Buffer* buf,
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Array_Data<U_Data>* output,
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const ArrayValidateParams* validate_params) {
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for (size_t i = 0; i < input.size(); ++i) {
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U_Data* result = output->storage() + i;
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SerializeUnion_(input[i].Pass(), buf, &result, true);
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MOJO_INTERNAL_DLOG_SERIALIZATION_WARNING(
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!validate_params->element_is_nullable && output->at(i).is_null(),
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VALIDATION_ERROR_UNEXPECTED_NULL_POINTER,
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MakeMessageWithArrayIndex("null in array expecting valid unions",
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input.size(), i));
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}
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}
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static void DeserializeElements(Array_Data<U_Data>* input, Array<U>* output) {
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Array<U> result(input->size());
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for (size_t i = 0; i < input->size(); ++i) {
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Deserialize_(&input->at(i), &result[i]);
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}
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output->Swap(&result);
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}
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};
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// Handles serialization and deserialization of arrays of strings.
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template <>
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struct ArraySerializer<String, String_Data*> {
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static size_t GetSerializedSize(const Array<String>& input) {
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size_t size =
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sizeof(Array_Data<String_Data*>) + input.size() * sizeof(StringPointer);
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for (size_t i = 0; i < input.size(); ++i)
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size += GetSerializedSize_(input[i]);
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return size;
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}
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static void SerializeElements(Array<String> input,
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Buffer* buf,
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Array_Data<String_Data*>* output,
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const ArrayValidateParams* validate_params) {
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MOJO_DCHECK(
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validate_params->element_validate_params &&
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!validate_params->element_validate_params->element_validate_params &&
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!validate_params->element_validate_params->element_is_nullable &&
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validate_params->element_validate_params->expected_num_elements == 0)
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<< "String type has unexpected array validate params";
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for (size_t i = 0; i < input.size(); ++i) {
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String_Data* element;
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Serialize_(input[i], buf, &element);
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output->at(i) = element;
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MOJO_INTERNAL_DLOG_SERIALIZATION_WARNING(
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!validate_params->element_is_nullable && !element,
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VALIDATION_ERROR_UNEXPECTED_NULL_POINTER,
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MakeMessageWithArrayIndex("null in array expecting valid strings",
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input.size(), i));
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}
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}
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static void DeserializeElements(Array_Data<String_Data*>* input,
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Array<String>* output) {
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Array<String> result(input->size());
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for (size_t i = 0; i < input->size(); ++i)
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Deserialize_(input->at(i), &result[i]);
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output->Swap(&result);
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}
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};
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} // namespace internal
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template <typename E>
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inline size_t GetSerializedSize_(const Array<E>& input) {
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if (!input)
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return 0;
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typedef typename internal::WrapperTraits<E>::DataType F;
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return internal::ArraySerializer<E, F>::GetSerializedSize(input);
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}
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template <typename E, typename F>
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inline void SerializeArray_(
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Array<E> input,
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internal::Buffer* buf,
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internal::Array_Data<F>** output,
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const internal::ArrayValidateParams* validate_params) {
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if (input) {
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MOJO_INTERNAL_DLOG_SERIALIZATION_WARNING(
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validate_params->expected_num_elements != 0 &&
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input.size() != validate_params->expected_num_elements,
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internal::VALIDATION_ERROR_UNEXPECTED_ARRAY_HEADER,
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internal::MakeMessageWithExpectedArraySize(
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"fixed-size array has wrong number of elements", input.size(),
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validate_params->expected_num_elements));
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internal::Array_Data<F>* result =
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internal::Array_Data<F>::New(input.size(), buf);
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if (result) {
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internal::ArraySerializer<E, F>::SerializeElements(
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internal::Forward(input), buf, result, validate_params);
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}
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*output = result;
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} else {
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*output = nullptr;
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}
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}
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template <typename E, typename F>
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inline void Deserialize_(internal::Array_Data<F>* input, Array<E>* output) {
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if (input) {
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internal::ArraySerializer<E, F>::DeserializeElements(input, output);
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} else {
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output->reset();
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}
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}
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} // namespace mojo
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#endif // MOJO_PUBLIC_CPP_BINDINGS_LIB_ARRAY_SERIALIZATION_H_
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