blob: 3ee822e4ea024e0f17d035bd3bf3b1fe27af1670 [file] [log] [blame]
// WARNING: This file is machine generated by fidlgen.
#include <fidl/test.nullable/cpp/wire_messaging.h>
#include <memory>
namespace test_nullable {
[[maybe_unused]] constexpr uint64_t kSimpleProtocol_Add_Ordinal =
9142761280038437494lu;
[[maybe_unused]] constexpr ::fidl::MessageDynamicFlags
kSimpleProtocol_Add_DynamicFlags =
::fidl::MessageDynamicFlags::kStrictMethod;
extern "C" const fidl_type_t test_nullable_SimpleProtocolAddRequestTable;
extern "C" const fidl_type_t test_nullable_SimpleProtocolAddTopResponseTable;
#ifdef __Fuchsia__
} // namespace test_nullable
::fidl::WireResult<::test_nullable::SimpleProtocol::Add>::WireResult(
::fidl::UnownedClientEnd<::test_nullable::SimpleProtocol> client,
::fidl::internal::TransactionalRequest<
::test_nullable::SimpleProtocol::Add>* request) {
FIDL_INTERNAL_DISABLE_AUTO_VAR_INIT
::fidl::unstable::OwnedEncodedMessage<
::fidl::internal::TransactionalRequest<
::test_nullable::SimpleProtocol::Add>,
::fidl::internal::ChannelTransport>
request_message(::fidl::internal::AllowUnownedInputRef{}, request);
auto& outgoing = request_message.GetOutgoingMessage();
outgoing.Call<::fidl::internal::TransactionalResponse<
::test_nullable::SimpleProtocol::Add>>(
client.handle(), bytes_.data(), static_cast<uint32_t>(bytes_.size()));
SetStatus(outgoing);
}
::fidl::WireResult<::test_nullable::SimpleProtocol::Add>::WireResult(
::fidl::UnownedClientEnd<::test_nullable::SimpleProtocol> client,
::fidl::internal::TransactionalRequest<
::test_nullable::SimpleProtocol::Add>* request,
zx_time_t deadline) {
FIDL_INTERNAL_DISABLE_AUTO_VAR_INIT
::fidl::unstable::OwnedEncodedMessage<
::fidl::internal::TransactionalRequest<
::test_nullable::SimpleProtocol::Add>,
::fidl::internal::ChannelTransport>
request_message(::fidl::internal::AllowUnownedInputRef{}, request);
auto& outgoing = request_message.GetOutgoingMessage();
outgoing.Call<::fidl::internal::TransactionalResponse<
::test_nullable::SimpleProtocol::Add>>(
client.handle(), bytes_.data(), static_cast<uint32_t>(bytes_.size()),
fidl::CallOptions{.deadline = deadline});
SetStatus(outgoing);
}
namespace test_nullable {
#endif // __Fuchsia__
#ifdef __Fuchsia__
} // namespace test_nullable
::fidl::WireUnownedResult<::test_nullable::SimpleProtocol::Add>::
WireUnownedResult(
::fidl::UnownedClientEnd<::test_nullable::SimpleProtocol> client_end,
::fidl::internal::AnyBufferAllocator& allocator,
::fidl::internal::TransactionalRequest<
::test_nullable::SimpleProtocol::Add>* request) {
constexpr uint32_t buffer_size = ::fidl::SyncClientMethodBufferSizeInChannel<
::test_nullable::SimpleProtocol::Add>();
::fitx::result<::fidl::Error, ::fidl::BufferSpan> allocation =
allocator.TryAllocate(buffer_size);
if (!allocation.is_ok()) {
::fidl::Status::operator=(allocation.error_value());
return;
}
uint8_t* buffer = allocation->data;
constexpr uint32_t request_byte_capacity =
::fidl::MaxSizeInChannel<::fidl::internal::TransactionalRequest<
::test_nullable::SimpleProtocol::Add>,
::fidl::MessageDirection::kSending>();
uint8_t* request_bytes = buffer;
static_assert(buffer_size > request_byte_capacity);
uint32_t response_byte_capacity = buffer_size - request_byte_capacity;
uint8_t* response_bytes = &buffer[request_byte_capacity];
::fidl::unstable::UnownedEncodedMessage<
::fidl::internal::TransactionalRequest<
::test_nullable::SimpleProtocol::Add>>
request_message(request_bytes, request_byte_capacity, request);
auto& outgoing = request_message.GetOutgoingMessage();
outgoing.Call<::fidl::internal::TransactionalResponse<
::test_nullable::SimpleProtocol::Add>>(
client_end.handle(), response_bytes, response_byte_capacity);
bytes_ = response_bytes;
::fidl::Status::operator=(outgoing);
}
namespace test_nullable {
#endif // __Fuchsia__
} // namespace test_nullable
#ifdef __Fuchsia__
::fidl::internal::WireThenable<::test_nullable::SimpleProtocol::Add>
fidl::internal::WireWeakAsyncClientImpl<::test_nullable::SimpleProtocol>::Add(
int32_t a, int32_t b) {
::fidl::internal::TransactionalRequest<::test_nullable::SimpleProtocol::Add>
_request{a, b};
return ::fidl::internal::WireThenable<::test_nullable::SimpleProtocol::Add>{
_client_base(), ::fidl::WriteOptions{},
::fidl::internal::AllowUnownedInputRef{}, &_request};
}
::fidl::internal::WireBufferThenable<::test_nullable::SimpleProtocol::Add>
fidl::internal::WireWeakAsyncBufferClientImpl<
::test_nullable::SimpleProtocol>::Add(int32_t a, int32_t b) {
constexpr uint32_t _buffer_size =
::fidl::AsyncClientMethodBufferSizeInChannel<
::test_nullable::SimpleProtocol::Add>();
::fidl::internal::TransactionalRequest<::test_nullable::SimpleProtocol::Add>
_request{a, b};
return ::fidl::internal::WireBufferThenable<
::test_nullable::SimpleProtocol::Add>{
_client_base(), ::fidl::WriteOptions{}, _allocator(), _buffer_size,
&_request};
}
::fidl::WireResult<::test_nullable::SimpleProtocol::Add>
fidl::internal::WireWeakSyncClientImpl<::test_nullable::SimpleProtocol>::Add(
int32_t a, int32_t b) {
return _client_base()->MakeSyncCallWith(
[&](std::shared_ptr<::fidl::internal::AnyTransport> _transport) {
::fidl::internal::TransactionalRequest<
::test_nullable::SimpleProtocol::Add>
_request{a, b};
return ::fidl::WireResult<::test_nullable::SimpleProtocol::Add>(
::fidl::UnownedClientEnd<::test_nullable::SimpleProtocol>(
_transport->get<::fidl::internal::ChannelTransport>()),
&_request);
});
}
#endif // __Fuchsia__
#ifdef __Fuchsia__
::fidl::Status
fidl::WireSyncEventHandler<::test_nullable::SimpleProtocol>::HandleOneEvent(
::fidl::UnownedClientEnd<::test_nullable::SimpleProtocol> client_end) {
zx_status_t status = client_end.channel()->wait_one(
ZX_CHANNEL_READABLE | ZX_CHANNEL_PEER_CLOSED, ::zx::time::infinite(),
nullptr);
if (status != ZX_OK) {
return ::fidl::Status::TransportError(
status, ::fidl::internal::kErrorWaitOneFailed);
}
constexpr uint32_t kHandleAllocSize = ([]() constexpr {
uint32_t x = 0;
if (x > ZX_CHANNEL_MAX_MSG_HANDLES) {
x = ZX_CHANNEL_MAX_MSG_HANDLES;
}
return x;
})();
static_assert(kHandleAllocSize <= ZX_CHANNEL_MAX_MSG_HANDLES);
::fidl::internal::InlineMessageBuffer<24> read_storage;
std::array<zx_handle_t, kHandleAllocSize> read_handles;
// TODO(fxbug.dev/85734) Remove this channel-specific allocation.
std::array<fidl_channel_handle_metadata_t, kHandleAllocSize>
read_handle_metadata;
::fidl::IncomingMessage msg = ::fidl::MessageRead(
zx::unowned_channel(client_end.handle()), read_storage.view(),
read_handles.data(), read_handle_metadata.data(), kHandleAllocSize,
ReadOptions{.discardable = true});
if (msg.status() == ZX_ERR_BUFFER_TOO_SMALL) {
// Message size is unexpectedly larger than calculated.
// This can only be due to a newer version of the protocol defining a new
// event, whose size exceeds the maximum of known events in the current
// protocol.
return ::fidl::Status::UnexpectedMessage(
ZX_ERR_BUFFER_TOO_SMALL,
::fidl::internal::kErrorSyncEventBufferTooSmall);
}
if (!msg.ok()) {
return msg;
}
fidl_message_header_t* hdr = msg.header();
switch (hdr->ordinal) {
default: {
return ::fidl::Status::UnknownOrdinal();
}
}
}
std::optional<::fidl::UnbindInfo> fidl::internal::
WireEventDispatcher<::test_nullable::SimpleProtocol>::DispatchEvent(
::fidl::IncomingMessage& msg,
::fidl::internal::IncomingTransportContext transport_context) {
switch (msg.header()->ordinal) {
default:
break;
}
return ::fidl::UnbindInfo::UnknownOrdinal();
}
#endif // __Fuchsia__
#ifdef __Fuchsia__
constexpr ::fidl::internal::MethodEntry fidl::internal::WireServerDispatcher<
::test_nullable::SimpleProtocol>::entries_[] = {
{
::test_nullable::kSimpleProtocol_Add_Ordinal,
[](void* interface, ::fidl::IncomingMessage&& msg,
internal::IncomingTransportContext transport_context,
::fidl::Transaction* txn) {
::fidl::unstable::DecodedMessage<
::fidl::internal::TransactionalRequest<
::test_nullable::SimpleProtocol::Add>>
decoded{std::move(msg)};
if (unlikely(!decoded.ok())) {
return decoded.status();
}
auto* primary = &decoded.PrimaryObject()->body;
::fidl::internal::WireCompleter<
::test_nullable::SimpleProtocol::Add>::Sync completer(txn);
reinterpret_cast<
::fidl::WireServer<::test_nullable::SimpleProtocol>*>(interface)
->Add(primary, completer);
return ZX_OK;
},
},
};
const ::fidl::internal::MethodEntry* fidl::internal::WireServerDispatcher<
::test_nullable::SimpleProtocol>::entries_end_ = &entries_[1];
::fidl::DispatchResult fidl::internal::
WireServerDispatcher<::test_nullable::SimpleProtocol>::TryDispatch(
::fidl::WireServer<::test_nullable::SimpleProtocol>* impl,
::fidl::IncomingMessage& msg,
internal::IncomingTransportContext transport_context,
::fidl::Transaction* txn) {
return ::fidl::internal::TryDispatch(impl, msg, std::move(transport_context),
txn, entries_, entries_end_);
}
void fidl::internal::WireServerDispatcher<::test_nullable::SimpleProtocol>::
Dispatch(::fidl::WireServer<::test_nullable::SimpleProtocol>* impl,
::fidl::IncomingMessage&& msg,
internal::IncomingTransportContext transport_context,
::fidl::Transaction* txn) {
::fidl::internal::Dispatch(impl, msg, std::move(transport_context), txn,
entries_, entries_end_);
}
void fidl::WireServer<::test_nullable::SimpleProtocol>::dispatch_message(
::fidl::IncomingMessage&& msg, ::fidl::Transaction* txn,
::fidl::internal::IncomingTransportContext transport_context) {
::fidl::internal::WireServerDispatcher<
::test_nullable::SimpleProtocol>::Dispatch(this, std::move(msg),
std::move(transport_context),
txn);
}
#endif // __Fuchsia__
#ifdef __Fuchsia__
void fidl::internal::WireCompleterImpl<
::test_nullable::SimpleProtocol::Add>::Reply(int32_t sum) {
::fidl::internal::TransactionalResponse<::test_nullable::SimpleProtocol::Add>
_response{sum};
FIDL_INTERNAL_DISABLE_AUTO_VAR_INIT
::fidl::unstable::OwnedEncodedMessage<
::fidl::internal::TransactionalResponse<
::test_nullable::SimpleProtocol::Add>,
::fidl::internal::ChannelTransport>
_response_message{::fidl::internal::AllowUnownedInputRef{}, &_response};
return _core()->SendReply(&_response_message.GetOutgoingMessage(),
::fidl::internal::OutgoingTransportContext());
}
void fidl::internal::WireBufferCompleterImpl<
::test_nullable::SimpleProtocol::Add>::Reply(int32_t sum) {
::fidl::internal::TransactionalResponse<::test_nullable::SimpleProtocol::Add>
_response{sum};
constexpr uint32_t _buffer_size = ::fidl::ServerReplyBufferSizeInChannel<
::test_nullable::SimpleProtocol::Add>();
::fitx::result<::fidl::Error, ::fidl::BufferSpan> _allocation =
_allocator().TryAllocate(_buffer_size);
if (!_allocation.is_ok()) {
::fidl::OutgoingMessage _failure{_allocation.error_value()};
return _core()->SendReply(&_failure,
::fidl::internal::OutgoingTransportContext());
}
::fidl::unstable::UnownedEncodedMessage<
::fidl::internal::TransactionalResponse<
::test_nullable::SimpleProtocol::Add>,
::fidl::internal::ChannelTransport>
_response_message(_allocation->data, _buffer_size, &_response);
return _core()->SendReply(&_response_message.GetOutgoingMessage(),
::fidl::internal::OutgoingTransportContext());
}
#endif // __Fuchsia__
void ::fidl::internal::TransactionalRequest<
::test_nullable::SimpleProtocol::Add>::_InitHeader() {
::fidl::InitTxnHeader(&header, 0,
::test_nullable::kSimpleProtocol_Add_Ordinal,
::test_nullable::kSimpleProtocol_Add_DynamicFlags);
}
void ::fidl::internal::TransactionalResponse<
::test_nullable::SimpleProtocol::Add>::_InitHeader() {
::fidl::InitTxnHeader(&header, 0,
::test_nullable::kSimpleProtocol_Add_Ordinal,
::test_nullable::kSimpleProtocol_Add_DynamicFlags);
}
#ifdef __Fuchsia__
#endif // __Fuchsia__