blob: ce6ccdaaf9b47e7dd6d55f84bd0702c74ad4d4d0 [file] [log] [blame]
// WARNING: This file is machine generated by fidlgen.
#pragma once
#include <fidl/test.error/cpp/markers.h>
#include <fidl/test.error/cpp/wire_types.h>
#include <lib/fidl/llcpp/wire_messaging.h>
#ifdef __Fuchsia__
#include <lib/fidl/llcpp/client.h>
#include <lib/fidl/llcpp/connect_service.h>
#include <lib/fidl/llcpp/server.h>
#include <lib/fidl/llcpp/service_handler_interface.h>
#include <lib/fidl/llcpp/sync_call.h>
#endif // __Fuchsia__
namespace test_error {
class Example;
__LOCAL extern "C" const fidl_type_t test_error_ExampleFooRequestTable;
__LOCAL extern "C" const fidl_type_t test_error_ExampleFooTopResponseTable;
} // namespace test_error
template <>
struct ::fidl::internal::WireOrdinal<::test_error::Example::Foo> final {
static constexpr uint64_t value = 1107623248440401476lu;
};
namespace test_error {} // namespace test_error
#ifdef __Fuchsia__
template <>
struct ::fidl::internal::ProtocolDetails<::test_error::Example> {};
#endif // __Fuchsia__
#ifdef __Fuchsia__
template <>
struct ::fidl::internal::WireServerDispatcher<::test_error::Example> final {
WireServerDispatcher() = delete;
static ::fidl::DispatchResult TryDispatch(
::fidl::WireServer<::test_error::Example>* impl,
::fidl::IncomingMessage& msg,
internal::IncomingTransportContext transport_context,
::fidl::Transaction* txn);
static void Dispatch(::fidl::WireServer<::test_error::Example>* impl,
::fidl::IncomingMessage&& msg,
internal::IncomingTransportContext transport_context,
::fidl::Transaction* txn);
private:
static const ::fidl::internal::MethodEntry entries_[];
static const ::fidl::internal::MethodEntry* entries_end_;
};
#endif // __Fuchsia__
template <>
struct ::fidl::WireRequest<::test_error::Example::Foo> final
: public ::test_error::wire::ExampleFooRequest {
explicit WireRequest(::test_error::wire::ExampleFooRequest base)
: ::test_error::wire::ExampleFooRequest(std::move(base)) {}
explicit WireRequest(::fidl::StringView s)
: ::test_error::wire::ExampleFooRequest{.s = std::move(s)} {}
WireRequest() = default;
using ResponseType = ::fidl::WireResponse<::test_error::Example::Foo>;
};
template <>
struct ::fidl::internal::TransactionalRequest<::test_error::Example::Foo>
final {
FIDL_ALIGNDECL
fidl_message_header_t header;
::fidl::WireRequest<::test_error::Example::Foo> body;
explicit TransactionalRequest(::fidl::StringView s)
: body(::fidl::WireRequest<::test_error::Example::Foo>(s)) {
_InitHeader();
}
TransactionalRequest() { _InitHeader(); }
using ResponseType =
::fidl::internal::TransactionalResponse<::test_error::Example::Foo>;
private:
void _InitHeader();
};
template <>
struct ::fidl::WireResponse<::test_error::Example::Foo> final
: public ::test_error::wire::ExampleFooTopResponse {
using Result = test_error::wire::ExampleFooResult;
explicit WireResponse(::test_error::wire::ExampleFooTopResponse base)
: ::test_error::wire::ExampleFooTopResponse(std::move(base)) {}
explicit WireResponse(::test_error::wire::ExampleFooResult result)
: ::test_error::wire::ExampleFooTopResponse{.result = std::move(result)} {
}
WireResponse() = default;
};
template <>
struct ::fidl::internal::TransactionalResponse<::test_error::Example::Foo>
final {
FIDL_ALIGNDECL
fidl_message_header_t header;
::fidl::WireResponse<::test_error::Example::Foo> body;
explicit TransactionalResponse(::test_error::wire::ExampleFooResult result)
: body(::fidl::WireResponse<::test_error::Example::Foo>(result)) {
_InitHeader();
}
TransactionalResponse() { _InitHeader(); }
private:
void _InitHeader();
};
#ifdef __Fuchsia__
template <>
struct ::fidl::internal::WireMethodTypes<::test_error::Example::Foo> {
using Completer = fidl::Completer<
::fidl::internal::WireCompleterBase<::test_error::Example::Foo>>;
using ApplicationError = uint32_t;
using Thenable = ::fidl::internal::WireThenableImpl<
::test_error::Example::Foo,
::fidl::unstable::OwnedEncodedMessage<
::fidl::internal::TransactionalRequest<::test_error::Example::Foo>,
::fidl::internal::ChannelTransport>>;
using BufferThenable = ::fidl::internal::WireThenableImpl<
::test_error::Example::Foo,
::fidl::unstable::UnownedEncodedMessage<
::fidl::internal::TransactionalRequest<::test_error::Example::Foo>,
::fidl::internal::ChannelTransport>>;
};
#endif // __Fuchsia__
namespace fidl {
template <>
struct IsFidlType<
::fidl::internal::TransactionalRequest<::test_error::Example::Foo>>
: public std::true_type {};
template <>
struct IsFidlType<::fidl::WireRequest<::test_error::Example::Foo>>
: public std::true_type {};
template <>
struct IsFidlTransactionalMessage<
::fidl::internal::TransactionalRequest<::test_error::Example::Foo>>
: public std::true_type {};
template <>
struct IsFidlTransactionalMessage<
::fidl::WireRequest<::test_error::Example::Foo>> : public std::false_type {
};
template <>
struct TypeTraits<
::fidl::internal::TransactionalRequest<::test_error::Example::Foo>> {
static constexpr const fidl_type_t* kType =
&::test_error::test_error_ExampleFooRequestTable;
static constexpr uint32_t kMaxNumHandles = 0;
static constexpr uint32_t kPrimarySize =
FIDL_ALIGN(16 + sizeof(fidl_message_header_t));
static constexpr uint32_t kPrimarySizeV1 =
FIDL_ALIGN(16 + sizeof(fidl_message_header_t));
static constexpr uint32_t kMaxOutOfLine = 4294967295;
static constexpr uint32_t kMaxOutOfLineV1 = 4294967295;
static constexpr bool kHasFlexibleEnvelope = false;
static constexpr bool kHasPointer = true;
static constexpr ::fidl::internal::TransactionalMessageKind kMessageKind =
::fidl::internal::TransactionalMessageKind::kRequest;
};
static_assert(
sizeof(
::fidl::internal::TransactionalRequest<::test_error::Example::Foo>) ==
TypeTraits<::fidl::internal::TransactionalRequest<
::test_error::Example::Foo>>::kPrimarySize);
static_assert(
offsetof(::fidl::internal::TransactionalRequest<::test_error::Example::Foo>,
header) == 0);
static_assert(
offsetof(::fidl::internal::TransactionalRequest<::test_error::Example::Foo>,
body) == sizeof(fidl_message_header_t));
template <>
struct TypeTraits<::fidl::WireRequest<::test_error::Example::Foo>> {
static constexpr const fidl_type_t* kType =
&::test_error::test_error_ExampleFooRequestTable;
static constexpr uint32_t kMaxNumHandles = 0;
static constexpr uint32_t kPrimarySize = 16;
static constexpr uint32_t kPrimarySizeV1 = 16;
static constexpr uint32_t kMaxOutOfLine = 4294967295;
static constexpr uint32_t kMaxOutOfLineV1 = 4294967295;
static constexpr bool kHasFlexibleEnvelope = false;
static constexpr bool kHasPointer = true;
static constexpr ::fidl::internal::TransactionalMessageKind kMessageKind =
::fidl::internal::TransactionalMessageKind::kRequest;
};
static_assert(
sizeof(::fidl::WireRequest<::test_error::Example::Foo>) ==
TypeTraits<::fidl::WireRequest<::test_error::Example::Foo>>::kPrimarySize);
static_assert(offsetof(::fidl::WireRequest<::test_error::Example::Foo>, s) ==
0);
template <>
struct IsFidlType<
::fidl::internal::TransactionalResponse<::test_error::Example::Foo>>
: public std::true_type {};
template <>
struct IsFidlType<::fidl::WireResponse<::test_error::Example::Foo>>
: public std::true_type {};
template <>
struct IsFidlTransactionalMessage<
::fidl::internal::TransactionalResponse<::test_error::Example::Foo>>
: public std::true_type {};
template <>
struct IsFidlTransactionalMessage<
::fidl::WireResponse<::test_error::Example::Foo>> : public std::false_type {
};
template <>
struct TypeTraits<
::fidl::internal::TransactionalResponse<::test_error::Example::Foo>> {
static constexpr const fidl_type_t* kType =
&::test_error::test_error_ExampleFooTopResponseTable;
static constexpr uint32_t kMaxNumHandles = 0;
static constexpr uint32_t kPrimarySize =
FIDL_ALIGN(16 + sizeof(fidl_message_header_t));
static constexpr uint32_t kPrimarySizeV1 =
FIDL_ALIGN(24 + sizeof(fidl_message_header_t));
static constexpr uint32_t kMaxOutOfLine = 8;
static constexpr uint32_t kMaxOutOfLineV1 = 8;
static constexpr bool kHasFlexibleEnvelope = false;
static constexpr bool kHasPointer = true;
static constexpr ::fidl::internal::TransactionalMessageKind kMessageKind =
::fidl::internal::TransactionalMessageKind::kResponse;
};
static_assert(
sizeof(
::fidl::internal::TransactionalResponse<::test_error::Example::Foo>) ==
TypeTraits<::fidl::internal::TransactionalResponse<
::test_error::Example::Foo>>::kPrimarySize);
static_assert(
offsetof(
::fidl::internal::TransactionalResponse<::test_error::Example::Foo>,
header) == 0);
static_assert(
offsetof(
::fidl::internal::TransactionalResponse<::test_error::Example::Foo>,
body) == sizeof(fidl_message_header_t));
template <>
struct TypeTraits<::fidl::WireResponse<::test_error::Example::Foo>> {
static constexpr const fidl_type_t* kType =
&::test_error::test_error_ExampleFooTopResponseTable;
static constexpr uint32_t kMaxNumHandles = 0;
static constexpr uint32_t kPrimarySize = 16;
static constexpr uint32_t kPrimarySizeV1 = 24;
static constexpr uint32_t kMaxOutOfLine = 8;
static constexpr uint32_t kMaxOutOfLineV1 = 8;
static constexpr bool kHasFlexibleEnvelope = false;
static constexpr bool kHasPointer = true;
static constexpr ::fidl::internal::TransactionalMessageKind kMessageKind =
::fidl::internal::TransactionalMessageKind::kResponse;
};
static_assert(
sizeof(::fidl::WireResponse<::test_error::Example::Foo>) ==
TypeTraits<::fidl::WireResponse<::test_error::Example::Foo>>::kPrimarySize);
static_assert(offsetof(::fidl::WireResponse<::test_error::Example::Foo>,
result) == 0);
} // namespace fidl
namespace test_error {
#ifdef __Fuchsia__
} // namespace test_error
template <>
class [[nodiscard]] ::fidl::WireResult<::test_error::Example::Foo> final
: public ::fidl::Status {
public:
WireResult(::fidl::UnownedClientEnd<::test_error::Example> client,
::fidl::internal::TransactionalRequest<::test_error::Example::Foo>*
request);
WireResult(::fidl::UnownedClientEnd<::test_error::Example> client,
::fidl::internal::TransactionalRequest<::test_error::Example::Foo>*
request,
zx_time_t _deadline);
explicit WireResult(const ::fidl::Status& result) : ::fidl::Status(result) {}
WireResult(WireResult&&) = delete;
WireResult(const WireResult&) = delete;
WireResult* operator=(WireResult&&) = delete;
WireResult* operator=(const WireResult&) = delete;
~WireResult() = default;
::fidl::WireResponse<::test_error::Example::Foo>* Unwrap() {
ZX_DEBUG_ASSERT(ok());
return reinterpret_cast<::fidl::WireResponse<::test_error::Example::Foo>*>(
bytes_.data() + sizeof(fidl_message_header_t));
}
const ::fidl::WireResponse<::test_error::Example::Foo>* Unwrap() const {
ZX_DEBUG_ASSERT(ok());
return reinterpret_cast<
const ::fidl::WireResponse<::test_error::Example::Foo>*>(
bytes_.data() + sizeof(fidl_message_header_t));
}
::fitx::result<uint32_t, ::test_error::wire::ExampleFooResponse*>*
Unwrap_NEW() {
return &result_.value();
}
const ::fitx::result<uint32_t, ::test_error::wire::ExampleFooResponse*>*
Unwrap_NEW() const {
return &result_.value();
}
::fidl::WireResponse<::test_error::Example::Foo>& value() {
return *Unwrap();
}
const ::fidl::WireResponse<::test_error::Example::Foo>& value() const {
return *Unwrap();
}
::fitx::result<uint32_t, ::test_error::wire::ExampleFooResponse*>&
value_NEW() {
return *Unwrap_NEW();
}
const ::fitx::result<uint32_t, ::test_error::wire::ExampleFooResponse*>&
value_NEW() const {
return *Unwrap_NEW();
}
::fidl::WireResponse<::test_error::Example::Foo>* operator->() {
return &value();
}
const ::fidl::WireResponse<::test_error::Example::Foo>* operator->() const {
return &value();
}
::fidl::WireResponse<::test_error::Example::Foo>& operator*() {
return value();
}
const ::fidl::WireResponse<::test_error::Example::Foo>& operator*() const {
return value();
}
private:
::fidl::internal::InlineMessageBuffer<48> bytes_;
std::optional<
::fitx::result<uint32_t, ::test_error::wire::ExampleFooResponse*>>
result_ = std::nullopt;
};
template <>
class [[nodiscard]] ::fidl::WireUnownedResult<::test_error::Example::Foo> final
: public ::fidl::Status {
public:
explicit WireUnownedResult(
::fidl::UnownedClientEnd<::test_error::Example> client_end,
::fidl::internal::AnyBufferAllocator& allocator,
::fidl::internal::TransactionalRequest<::test_error::Example::Foo>*
request);
explicit WireUnownedResult(
::fidl::internal::TransactionalResponse<::test_error::Example::Foo>*
response)
: bytes_(reinterpret_cast<uint8_t*>(response)) {
auto* raw_response =
reinterpret_cast<::fidl::WireResponse<::test_error::Example::Foo>*>(
bytes_ + sizeof(fidl_message_header_t));
if (raw_response->result.is_err()) {
result_ = fitx::error(raw_response->result.err());
} else {
result_ = fitx::ok(&(raw_response->result.response()));
}
}
explicit WireUnownedResult(const ::fidl::Status& result)
: ::fidl::Status(result) {}
explicit WireUnownedResult(
::fidl::unstable::DecodedMessage<::fidl::internal::TransactionalResponse<
::test_error::Example::Foo>>&& decoded,
::fidl::internal::IncomingTransportContext context)
: ::fidl::Status(decoded) {
if (decoded.ok()) {
bytes_ = reinterpret_cast<uint8_t*>(decoded.PrimaryObject());
auto* raw_response =
reinterpret_cast<::fidl::WireResponse<::test_error::Example::Foo>*>(
bytes_ + sizeof(fidl_message_header_t));
if (raw_response->result.is_err()) {
result_ = fitx::error(raw_response->result.err());
} else if (raw_response->result.is_response()) {
result_ = fitx::ok(&(raw_response->result.response()));
}
} else {
bytes_ = nullptr;
}
decoded.ReleasePrimaryObject();
}
WireUnownedResult(WireUnownedResult&&) = delete;
WireUnownedResult(const WireUnownedResult&) = delete;
WireUnownedResult* operator=(WireUnownedResult&&) = delete;
WireUnownedResult* operator=(const WireUnownedResult&) = delete;
~WireUnownedResult() = default;
::fidl::WireResponse<::test_error::Example::Foo>* Unwrap() {
ZX_DEBUG_ASSERT(ok());
return &(reinterpret_cast<::fidl::internal::TransactionalResponse<
::test_error::Example::Foo>*>(bytes_)
->body);
}
const ::fidl::WireResponse<::test_error::Example::Foo>* Unwrap() const {
ZX_DEBUG_ASSERT(ok());
return &(reinterpret_cast<const ::fidl::internal::TransactionalResponse<
::test_error::Example::Foo>*>(bytes_)
->body);
}
::fitx::result<uint32_t, ::test_error::wire::ExampleFooResponse*>*
Unwrap_NEW() {
return &result_.value();
}
const ::fitx::result<uint32_t, ::test_error::wire::ExampleFooResponse*>*
Unwrap_NEW() const {
return &result_.value();
}
::fidl::WireResponse<::test_error::Example::Foo>& value() {
return *Unwrap();
}
const ::fidl::WireResponse<::test_error::Example::Foo>& value() const {
return *Unwrap();
}
::fitx::result<uint32_t, ::test_error::wire::ExampleFooResponse*>&
value_NEW() {
return *Unwrap_NEW();
}
const ::fitx::result<uint32_t, ::test_error::wire::ExampleFooResponse*>&
value_NEW() const {
return *Unwrap_NEW();
}
::fidl::WireResponse<::test_error::Example::Foo>* operator->() {
return &value();
}
const ::fidl::WireResponse<::test_error::Example::Foo>* operator->() const {
return &value();
}
::fidl::WireResponse<::test_error::Example::Foo>& operator*() {
return value();
}
const ::fidl::WireResponse<::test_error::Example::Foo>& operator*() const {
return value();
}
private:
uint8_t* bytes_;
std::optional<
::fitx::result<uint32_t, ::test_error::wire::ExampleFooResponse*>>
result_ = std::nullopt;
};
template <>
class ::fidl::internal::WireEventHandlerInterface<::test_error::Example> {
public:
WireEventHandlerInterface() = default;
virtual ~WireEventHandlerInterface() = default;
};
template <>
class ::fidl::WireAsyncEventHandler<::test_error::Example>
: public ::fidl::internal::WireEventHandlerInterface<::test_error::Example>,
public ::fidl::internal::AsyncEventHandler {
public:
WireAsyncEventHandler() = default;
};
template <>
class ::fidl::WireSyncEventHandler<::test_error::Example>
: public ::fidl::internal::WireEventHandlerInterface<
::test_error::Example> {
public:
WireSyncEventHandler() = default;
// Handle all possible events defined in this protocol.
// Blocks to consume exactly one message from the channel, then call the
// corresponding virtual method.
::fidl::Status HandleOneEvent(
::fidl::UnownedClientEnd<::test_error::Example> client_end);
private:
[[maybe_unused]] bool got_transitional_ = false;
};
template <>
class ::fidl::internal::WireEventDispatcher<::test_error::Example> final
: public ::fidl::internal::IncomingEventDispatcher<
::fidl::WireAsyncEventHandler<::test_error::Example>> {
public:
explicit WireEventDispatcher(
::fidl::WireAsyncEventHandler<::test_error::Example>* event_handler)
: IncomingEventDispatcher(event_handler) {}
private:
std::optional<::fidl::UnbindInfo> DispatchEvent(
::fidl::IncomingMessage& msg,
::fidl::internal::IncomingTransportContext transport_context) override;
};
// Methods to make a sync FIDL call directly on an unowned handle or a
// const reference to a |fidl::ClientEnd<::test_error::Example>|,
// avoiding setting up a client.
template <>
class ::fidl::internal::WireSyncClientImpl<::test_error::Example> final
: public ::fidl::internal::SyncEndpointManagedVeneer<
::fidl::internal::WireSyncClientImpl<::test_error::Example>> {
public:
// Allocates 40 bytes of response buffer on the stack. Request is
// heap-allocated.
::fidl::WireResult<::test_error::Example::Foo> Foo(::fidl::StringView s) {
::fidl::internal::TransactionalRequest<::test_error::Example::Foo> _request{
s};
return ::fidl::WireResult<::test_error::Example::Foo>(_client_end(),
&_request);
}
private:
::fidl::UnownedClientEnd<::test_error::Example> _client_end() const {
return ::fidl::UnownedClientEnd<::test_error::Example>(
_transport().get<::fidl::internal::ChannelTransport>());
}
};
template <>
class ::fidl::internal::WireSyncBufferClientImpl<::test_error::Example> final
: public ::fidl::internal::SyncEndpointBufferVeneer<
::fidl::internal::WireSyncBufferClientImpl<::test_error::Example>> {
public:
// Caller provides the backing storage for FIDL message via an argument to
// `.buffer()`.
::fidl::WireUnownedResult<::test_error::Example::Foo> Foo(
::fidl::StringView s) {
::fidl::internal::TransactionalRequest<::test_error::Example::Foo> _request{
s};
return ::fidl::WireUnownedResult<::test_error::Example::Foo>(
_client_end(), _allocator(), &_request);
}
private:
::fidl::UnownedClientEnd<::test_error::Example> _client_end() const {
return ::fidl::UnownedClientEnd<::test_error::Example>(
_transport().get<::fidl::internal::ChannelTransport>());
}
};
template <>
class ::fidl::internal::WireCompleterImpl<::test_error::Example::Foo>
: public ::fidl::internal::CompleterImplBase<::test_error::Example::Foo> {
public:
using CompleterImplBase::CompleterImplBase;
void Reply(::test_error::wire::ExampleFooResult result);
void ReplySuccess(int64_t y);
void ReplyError(uint32_t error);
};
template <>
class ::fidl::internal::WireBufferCompleterImpl<::test_error::Example::Foo>
: public ::fidl::internal::BufferCompleterImplBase {
public:
using BufferCompleterImplBase::BufferCompleterImplBase;
void Reply(::test_error::wire::ExampleFooResult result);
void ReplySuccess(int64_t y);
void ReplyError(uint32_t error);
};
template <>
class ::fidl::internal::WireCompleterBase<::test_error::Example::Foo>
: public ::fidl::CompleterBase,
public ::fidl::internal::WireCompleterImpl<::test_error::Example::Foo> {
public:
WireCompleterBase(::fidl::Transaction* transaction, bool owned,
bool expects_reply)
: CompleterBase(transaction, owned, expects_reply),
WireCompleterImpl(this) {}
WireCompleterBase(WireCompleterBase&& other) noexcept
: CompleterBase(std::move(other)), WireCompleterImpl(this) {}
WireCompleterBase& operator=(WireCompleterBase&& other) noexcept {
CompleterBase::operator=(std::move(other));
WireCompleterImpl::_set_core(this);
return *this;
}
};
// Pure-virtual interface to be implemented by a server.
// This interface uses typed channels (i.e. |fidl::ClientEnd<SomeProtocol>|
// and |fidl::ServerEnd<SomeProtocol>|).
template <>
class ::fidl::WireServer<::test_error::Example>
: public ::fidl::internal::IncomingMessageDispatcher {
public:
WireServer() = default;
virtual ~WireServer() = default;
// The FIDL protocol type that is implemented by this server.
using _EnclosingProtocol = ::test_error::Example;
using FooCompleter =
::fidl::internal::WireCompleter<::test_error::Example::Foo>;
using FooRequestView =
::fidl::internal::WireRequestView<::test_error::Example::Foo>;
virtual void Foo(FooRequestView request, FooCompleter::Sync& completer) = 0;
private:
void dispatch_message(
::fidl::IncomingMessage&& msg, ::fidl::Transaction* txn,
::fidl::internal::IncomingTransportContext transport_context) final;
};
namespace test_error {
#endif // __Fuchsia__
} // namespace test_error
namespace fidl {
#ifdef __Fuchsia__
} // namespace fidl
template <>
class ::fidl::internal::WireWeakOnewayClientImpl<::test_error::Example>
: public ::fidl::internal::ClientImplBase {
public:
using ClientImplBase::ClientImplBase;
};
template <>
class ::fidl::internal::WireWeakAsyncClientImpl<::test_error::Example> final
: public ::fidl::internal::WireWeakOnewayClientImpl<::test_error::Example> {
public:
using WireWeakOnewayClientImpl::WireWeakOnewayClientImpl;
// The request and callback are allocated on the heap.
::fidl::internal::WireThenable<::test_error::Example::Foo> Foo(
::fidl::StringView s);
};
template <>
class ::fidl::internal::WireWeakOnewayBufferClientImpl<::test_error::Example>
: public ::fidl::internal::BufferClientImplBase {
public:
using BufferClientImplBase::BufferClientImplBase;
};
template <>
class ::fidl::internal::WireWeakAsyncBufferClientImpl<::test_error::Example>
final : public ::fidl::internal::WireWeakOnewayBufferClientImpl<
::test_error::Example> {
public:
using WireWeakOnewayBufferClientImpl::WireWeakOnewayBufferClientImpl;
// Caller provides the backing storage for FIDL message.
::fidl::internal::WireBufferThenable<::test_error::Example::Foo> Foo(
::fidl::StringView s);
};
template <>
class ::fidl::internal::WireWeakSyncClientImpl<::test_error::Example> final
: public ::fidl::internal::WireWeakOnewayClientImpl<::test_error::Example> {
public:
using WireWeakOnewayClientImpl::WireWeakOnewayClientImpl;
// Allocates 40 bytes of response buffer on the stack. Request is
// heap-allocated.
::fidl::WireResult<::test_error::Example::Foo> Foo(::fidl::StringView s);
};
namespace fidl {
#endif // __Fuchsia__
} // namespace fidl
#ifdef __Fuchsia__
template <>
class ::fidl::internal::WireWeakEventSender<::test_error::Example>
: public ::fidl::internal::WeakEventSenderBase {
public:
using WeakEventSenderBase::WeakEventSenderBase;
};
template <>
class ::fidl::internal::WireWeakBufferEventSender<::test_error::Example>
: public ::fidl::internal::WeakBufferEventSenderBase {
public:
using WeakBufferEventSenderBase::WeakBufferEventSenderBase;
};
template <>
class ::fidl::internal::WireEventSender<::test_error::Example>
: public ::fidl::internal::SyncEndpointManagedVeneer<
::fidl::internal::WireEventSender<::test_error::Example>> {
public:
using SyncEndpointManagedVeneer::SyncEndpointManagedVeneer;
};
template <>
class ::fidl::internal::WireBufferEventSender<::test_error::Example>
: public ::fidl::internal::SyncEndpointBufferVeneer<
::fidl::internal::WireBufferEventSender<::test_error::Example>> {
public:
using SyncEndpointBufferVeneer::SyncEndpointBufferVeneer;
};
#endif // __Fuchsia__