blob: f8ed6d117f3f3266867acee782dd56b3c11eff92 [file] [log] [blame]
// WARNING: This file is machine generated by fidlgen.
#include <fuchsia/hardware/tee/llcpp/fidl.h>
#include <memory>
namespace llcpp {
namespace fuchsia {
namespace hardware {
namespace tee {
namespace {
[[maybe_unused]]
constexpr uint64_t kDeviceConnector_ConnectTee_Ordinal = 0x5b2280b900000000lu;
[[maybe_unused]]
constexpr uint64_t kDeviceConnector_ConnectTee_GenOrdinal = 0x37d7bf45f48faed6lu;
extern "C" const fidl_type_t v1_fuchsia_hardware_tee_DeviceConnectorConnectTeeRequestTable;
extern "C" const fidl_type_t v1_fuchsia_hardware_tee_DeviceConnectorConnectTeeResponseTable;
} // namespace
DeviceConnector::ResultOf::ConnectTee_Impl::ConnectTee_Impl(::zx::unowned_channel _client_end, ::zx::channel service_provider, ::zx::channel tee_request) {
constexpr uint32_t _kWriteAllocSize = ::fidl::internal::ClampedMessageSize<ConnectTeeRequest, ::fidl::MessageDirection::kSending>();
::fidl::internal::AlignedBuffer<_kWriteAllocSize> _write_bytes_inlined;
auto& _write_bytes_array = _write_bytes_inlined;
uint8_t* _write_bytes = _write_bytes_array.view().data();
memset(_write_bytes, 0, ConnectTeeRequest::PrimarySize);
auto& _request = *reinterpret_cast<ConnectTeeRequest*>(_write_bytes);
_request.service_provider = std::move(service_provider);
_request.tee_request = std::move(tee_request);
::fidl::BytePart _request_bytes(_write_bytes, _kWriteAllocSize, sizeof(ConnectTeeRequest));
::fidl::DecodedMessage<ConnectTeeRequest> _decoded_request(std::move(_request_bytes));
Super::operator=(
DeviceConnector::InPlace::ConnectTee(std::move(_client_end), std::move(_decoded_request)));
}
DeviceConnector::ResultOf::ConnectTee DeviceConnector::SyncClient::ConnectTee(::zx::channel service_provider, ::zx::channel tee_request) {
return ResultOf::ConnectTee(::zx::unowned_channel(this->channel_), std::move(service_provider), std::move(tee_request));
}
DeviceConnector::ResultOf::ConnectTee DeviceConnector::Call::ConnectTee(::zx::unowned_channel _client_end, ::zx::channel service_provider, ::zx::channel tee_request) {
return ResultOf::ConnectTee(std::move(_client_end), std::move(service_provider), std::move(tee_request));
}
DeviceConnector::UnownedResultOf::ConnectTee_Impl::ConnectTee_Impl(::zx::unowned_channel _client_end, ::fidl::BytePart _request_buffer, ::zx::channel service_provider, ::zx::channel tee_request) {
if (_request_buffer.capacity() < ConnectTeeRequest::PrimarySize) {
Super::status_ = ZX_ERR_BUFFER_TOO_SMALL;
Super::error_ = ::fidl::internal::kErrorRequestBufferTooSmall;
return;
}
memset(_request_buffer.data(), 0, ConnectTeeRequest::PrimarySize);
auto& _request = *reinterpret_cast<ConnectTeeRequest*>(_request_buffer.data());
_request.service_provider = std::move(service_provider);
_request.tee_request = std::move(tee_request);
_request_buffer.set_actual(sizeof(ConnectTeeRequest));
::fidl::DecodedMessage<ConnectTeeRequest> _decoded_request(std::move(_request_buffer));
Super::operator=(
DeviceConnector::InPlace::ConnectTee(std::move(_client_end), std::move(_decoded_request)));
}
DeviceConnector::UnownedResultOf::ConnectTee DeviceConnector::SyncClient::ConnectTee(::fidl::BytePart _request_buffer, ::zx::channel service_provider, ::zx::channel tee_request) {
return UnownedResultOf::ConnectTee(::zx::unowned_channel(this->channel_), std::move(_request_buffer), std::move(service_provider), std::move(tee_request));
}
DeviceConnector::UnownedResultOf::ConnectTee DeviceConnector::Call::ConnectTee(::zx::unowned_channel _client_end, ::fidl::BytePart _request_buffer, ::zx::channel service_provider, ::zx::channel tee_request) {
return UnownedResultOf::ConnectTee(std::move(_client_end), std::move(_request_buffer), std::move(service_provider), std::move(tee_request));
}
::fidl::internal::StatusAndError DeviceConnector::InPlace::ConnectTee(::zx::unowned_channel _client_end, ::fidl::DecodedMessage<ConnectTeeRequest> params) {
DeviceConnector::SetTransactionHeaderFor::ConnectTeeRequest(params);
auto _encode_request_result = ::fidl::Encode(std::move(params));
if (_encode_request_result.status != ZX_OK) {
return ::fidl::internal::StatusAndError::FromFailure(
std::move(_encode_request_result));
}
zx_status_t _write_status =
::fidl::Write(std::move(_client_end), std::move(_encode_request_result.message));
if (_write_status != ZX_OK) {
return ::fidl::internal::StatusAndError(_write_status, ::fidl::internal::kErrorWriteFailed);
} else {
return ::fidl::internal::StatusAndError(ZX_OK, nullptr);
}
}
bool DeviceConnector::TryDispatch(Interface* impl, fidl_msg_t* msg, ::fidl::Transaction* txn) {
if (msg->num_bytes < sizeof(fidl_message_header_t)) {
zx_handle_close_many(msg->handles, msg->num_handles);
txn->Close(ZX_ERR_INVALID_ARGS);
return true;
}
fidl_message_header_t* hdr = reinterpret_cast<fidl_message_header_t*>(msg->bytes);
zx_status_t status = fidl_validate_txn_header(hdr);
if (status != ZX_OK) {
txn->Close(status);
return true;
}
switch (hdr->ordinal) {
case kDeviceConnector_ConnectTee_Ordinal:
case kDeviceConnector_ConnectTee_GenOrdinal:
{
auto result = ::fidl::DecodeAs<ConnectTeeRequest>(msg);
if (result.status != ZX_OK) {
txn->Close(ZX_ERR_INVALID_ARGS);
return true;
}
auto message = result.message.message();
impl->ConnectTee(std::move(message->service_provider), std::move(message->tee_request),
Interface::ConnectTeeCompleter::Sync(txn));
return true;
}
default: {
return false;
}
}
}
bool DeviceConnector::Dispatch(Interface* impl, fidl_msg_t* msg, ::fidl::Transaction* txn) {
bool found = TryDispatch(impl, msg, txn);
if (!found) {
zx_handle_close_many(msg->handles, msg->num_handles);
txn->Close(ZX_ERR_NOT_SUPPORTED);
}
return found;
}
void DeviceConnector::SetTransactionHeaderFor::ConnectTeeRequest(const ::fidl::DecodedMessage<DeviceConnector::ConnectTeeRequest>& _msg) {
fidl_init_txn_header(&_msg.message()->_hdr, 0, kDeviceConnector_ConnectTee_GenOrdinal);
_msg.message()->_hdr.flags[0] |= FIDL_TXN_HEADER_UNION_FROM_XUNION_FLAG;
}
} // namespace tee
} // namespace hardware
} // namespace fuchsia
} // namespace llcpp