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//
// Automatically generated by ipdlc.
// Edit at your own risk
//
#include "mozilla/dom/PClientHandleChild.h"
#include "ipc/ErrorIPCUtils.h"
#include "mozilla/ProfilerLabels.h"
#include "mozilla/dom/BindingIPCUtils.h"
#include "mozilla/dom/ClientIPCUtils.h"
#include "mozilla/ipc/ProtocolMessageUtils.h"
#include "mozilla/dom/PClientManagerChild.h"
#include "mozilla/dom/PClientHandleOpChild.h"
#include "ipc/IPCMessageUtils.h"
#include "ipc/IPCMessageUtilsSpecializations.h"
#include "nsIFile.h"
#include "mozilla/ipc/Endpoint.h"
#include "mozilla/ipc/ProtocolMessageUtils.h"
#include "mozilla/ipc/ProtocolUtils.h"
#include "mozilla/ipc/ShmemMessageUtils.h"
#include "mozilla/ipc/TaintingIPCUtils.h"
namespace mozilla {
namespace dom {
auto PClientHandleChild::Recv__delete__() -> mozilla::ipc::IPCResult
{
return IPC_OK();
}
MOZ_IMPLICIT PClientHandleChild::PClientHandleChild() :
mozilla::ipc::IRefCountedProtocol(kProtocolId, mozilla::ipc::ChildSide)
{
MOZ_COUNT_CTOR(PClientHandleChild);
}
PClientHandleChild::~PClientHandleChild()
{
MOZ_COUNT_DTOR(PClientHandleChild);
}
auto PClientHandleChild::ActorAlloc() -> void
{
AddRef();
}
auto PClientHandleChild::ActorDealloc() -> void
{
Release();
}
auto PClientHandleChild::OtherPid() const -> ::base::ProcessId
{
::base::ProcessId pid =
::mozilla::ipc::IProtocol::ToplevelProtocol()->OtherPidMaybeInvalid();
MOZ_RELEASE_ASSERT(pid != ::base::kInvalidProcessId);
return pid;
}
auto PClientHandleChild::OtherChildID() const -> ::GeckoChildID
{
::GeckoChildID childID =
::mozilla::ipc::IProtocol::ToplevelProtocol()->OtherChildIDMaybeInvalid();
MOZ_RELEASE_ASSERT(childID != -1);
return childID;
}
auto PClientHandleChild::OtherEndpointProcInfo() const -> ::mozilla::ipc::EndpointProcInfo
{
return ::mozilla::ipc::EndpointProcInfo{OtherPid(), OtherChildID()};
}
auto PClientHandleChild::Manager() const -> PClientManagerChild*
{
return static_cast<PClientManagerChild*>(IProtocol::Manager());
}
auto PClientHandleChild::ManagedPClientHandleOpChild(nsTArray<PClientHandleOpChild*>& aArr) const -> void
{
mManagedPClientHandleOpChild.ToArray(aArr);
}
auto PClientHandleChild::ManagedPClientHandleOpChild() const -> const ManagedContainer<PClientHandleOpChild>&
{
return mManagedPClientHandleOpChild;
}
auto PClientHandleChild::ManagedProtocolIds() const -> mozilla::Span<mozilla::ipc::ProtocolId const>
{
static constexpr ::mozilla::ipc::ProtocolId sIds[] = {
PClientHandleOpMsgStart
};
return sIds;
}
auto PClientHandleChild::GetManagedActors(mozilla::ipc::ProtocolId aProtocol) -> UntypedManagedContainer*
{
switch (aProtocol) {
case PClientHandleOpMsgStart:
return (&(mManagedPClientHandleOpChild));
default:
return nullptr;
}
}
auto PClientHandleChild::OpenPClientHandleOpEndpoint(PClientHandleOpChild* aActor) -> ManagedEndpoint<PClientHandleOpParent>
{
if (!aActor) {
NS_WARNING("Cannot bind null PClientHandleOpChild actor");
return ManagedEndpoint<PClientHandleOpParent>();
}
if (!aActor->SetManagerAndRegister(this)) {
NS_WARNING("Failed to bind PClientHandleOpChild actor");
return ManagedEndpoint<PClientHandleOpParent>();
}
// Mark our actor as awaiting the other side to be bound. This will
// be cleared when a `MANAGED_ENDPOINT_{DROPPED,BOUND}` message is
// received.
aActor->mAwaitingManagedEndpointBind = true;
return ManagedEndpoint<PClientHandleOpParent>(mozilla::ipc::PrivateIPDLInterface(), aActor);
}
auto PClientHandleChild::BindPClientHandleOpEndpoint(
ManagedEndpoint<PClientHandleOpChild> aEndpoint,
PClientHandleOpChild* aActor) -> bool
{
return aEndpoint.Bind(mozilla::ipc::PrivateIPDLInterface(), aActor, this);
}
auto PClientHandleChild::SendTeardown() -> bool
{
UniquePtr<IPC::Message> msg__ = PClientHandle::Msg_Teardown(Id());
IPC::MessageWriter writer__{
(*(msg__)),
this};
if (mozilla::ipc::LoggingEnabledFor("PClientHandle", mozilla::ipc::ChildSide)) {
mozilla::ipc::LogMessageForProtocol(
"PClientHandleChild",
this->ToplevelProtocol()->OtherPidMaybeInvalid(),
"Sending ",
msg__->type(),
mozilla::ipc::MessageDirection::eSending);
}
AUTO_PROFILER_LABEL("PClientHandle::Msg_Teardown", OTHER);
bool sendok__ = ChannelSend(std::move(msg__));
return sendok__;
}
auto PClientHandleChild::SendPClientHandleOpConstructor(const ClientOpConstructorArgs& aArgs) -> PClientHandleOpChild*
{
PClientHandleOpChild* actor = (this)->AllocPClientHandleOpChild(aArgs);
return SendPClientHandleOpConstructor(std::move(actor), std::move(aArgs));
}
auto PClientHandleChild::SendPClientHandleOpConstructor(
PClientHandleOpChild* actor,
const ClientOpConstructorArgs& aArgs) -> PClientHandleOpChild*
{
if (!actor) {
NS_WARNING("Cannot bind null PClientHandleOpChild actor");
return nullptr;
}
if (!actor->SetManagerAndRegister(this)) {
NS_WARNING("Failed to bind PClientHandleOpChild actor");
return nullptr;
}
// Build our constructor message.
UniquePtr<IPC::Message> msg__ = PClientHandle::Msg_PClientHandleOpConstructor(Id());
IPC::MessageWriter writer__{
(*(msg__)),
this};
IPC::WriteParam((&(writer__)), actor);
// Sentinel = 'actor'
((&(writer__)))->WriteSentinel(102892058);
IPC::WriteParam((&(writer__)), aArgs);
// Sentinel = 'aArgs'
((&(writer__)))->WriteSentinel(92602863);
// Notify the other side about the newly created actor. This can
// fail if our manager has already been destroyed.
//
// NOTE: If the send call fails due to toplevel channel teardown,
// the `IProtocol::ChannelSend` wrapper absorbs the error for us,
// so we don't tear down actors unexpectedly.
if (mozilla::ipc::LoggingEnabledFor("PClientHandle", mozilla::ipc::ChildSide)) {
mozilla::ipc::LogMessageForProtocol(
"PClientHandleChild",
this->ToplevelProtocol()->OtherPidMaybeInvalid(),
"Sending ",
msg__->type(),
mozilla::ipc::MessageDirection::eSending);
}
AUTO_PROFILER_LABEL("PClientHandle::Msg_PClientHandleOpConstructor", OTHER);
bool sendok__ = ChannelSend(std::move(msg__));
// Warn, destroy the actor, and return null if the message failed to
// send. Otherwise, return the successfully created actor reference.
if (!sendok__) {
NS_WARNING("Error sending PClientHandleOpChild constructor");
actor->ActorDisconnected(FailedConstructor);
return nullptr;
}
return actor;
}
auto PClientHandleChild::DeallocManagee(
int32_t aProtocolId,
IProtocol* aListener) -> void
{
switch (aProtocolId) {
case PClientHandleOpMsgStart:
this->DeallocPClientHandleOpChild(static_cast<PClientHandleOpChild*>(aListener));
return;
default:
FatalError("unreached");
return;
}
}
auto PClientHandleChild::OnMessageReceived(const Message& msg__) -> PClientHandleChild::Result
{
switch (msg__.type()) {
case MANAGED_ENDPOINT_BOUND_MESSAGE_TYPE:
{
if (!mAwaitingManagedEndpointBind) {
NS_WARNING("Unexpected managed endpoint lifecycle message after actor bound!");
return MsgNotAllowed;
}
mAwaitingManagedEndpointBind = false;
return MsgProcessed;
}
case MANAGED_ENDPOINT_DROPPED_MESSAGE_TYPE:
{
if (!mAwaitingManagedEndpointBind) {
NS_WARNING("Unexpected managed endpoint lifecycle message after actor bound!");
return MsgNotAllowed;
}
mAwaitingManagedEndpointBind = false;
this->ActorDisconnected(ManagedEndpointDropped);
return MsgProcessed;
}
case PClientHandle::Reply_PClientHandleOpConstructor__ID:
{
return MsgProcessed;
}
case PClientHandle::Msg_ExecutionReady__ID:
{
if (mozilla::ipc::LoggingEnabledFor("PClientHandle", mozilla::ipc::ChildSide)) {
mozilla::ipc::LogMessageForProtocol(
"PClientHandleChild",
this->ToplevelProtocol()->OtherPidMaybeInvalid(),
"Received ",
(&(msg__))->type(),
mozilla::ipc::MessageDirection::eReceiving);
}
AUTO_PROFILER_LABEL("PClientHandle::Msg_ExecutionReady", OTHER);
IPC::MessageReader reader__{
msg__,
this};
auto maybe__aClientInfo = IPC::ReadParam<IPCClientInfo>((&(reader__)));
if (!maybe__aClientInfo) {
FatalError("Error deserializing 'IPCClientInfo'");
return MsgValueError;
}
auto& aClientInfo = *maybe__aClientInfo;
// Sentinel = 'aClientInfo'
if ((!(((&(reader__)))->ReadSentinel(422315085)))) {
mozilla::ipc::SentinelReadError("Error deserializing 'IPCClientInfo'");
return MsgValueError;
}
reader__.EndRead();
mozilla::ipc::IPCResult __ok = (this)->RecvExecutionReady(std::move(aClientInfo));
if ((!(__ok))) {
mozilla::ipc::ProtocolErrorBreakpoint("Handler returned error code!");
// Error handled in mozilla::ipc::IPCResult
return MsgProcessingError;
}
return MsgProcessed;
}
case PClientHandle::Msg___delete____ID:
{
if (mozilla::ipc::LoggingEnabledFor("PClientHandle", mozilla::ipc::ChildSide)) {
mozilla::ipc::LogMessageForProtocol(
"PClientHandleChild",
this->ToplevelProtocol()->OtherPidMaybeInvalid(),
"Received ",
(&(msg__))->type(),
mozilla::ipc::MessageDirection::eReceiving);
}
AUTO_PROFILER_LABEL("PClientHandle::Msg___delete__", OTHER);
mozilla::ipc::IPCResult __ok = (this)->Recv__delete__();
if ((!(__ok))) {
mozilla::ipc::ProtocolErrorBreakpoint("Handler returned error code!");
// Error handled in mozilla::ipc::IPCResult
return MsgProcessingError;
}
this->ActorDisconnected(Deletion);
return MsgProcessed;
}
default:
return MsgNotKnown;
}
}
auto PClientHandleChild::OnMessageReceived(
const Message& msg__,
UniquePtr<Message>& reply__) -> PClientHandleChild::Result
{
return MsgNotKnown;
}
} // namespace dom
} // namespace mozilla
namespace IPC {
auto ParamTraits<::mozilla::dom::PClientHandleChild*>::Write(
IPC::MessageWriter* aWriter,
const paramType& aVar) -> void
{
MOZ_RELEASE_ASSERT(
aWriter->GetActor(),
"Cannot serialize managed actors without an actor");
int32_t id;
if (!aVar) {
id = 0; // kNullActorId
} else {
id = aVar->Id();
if (id == 1) { // kFreedActorId
aVar->FatalError("Actor has been |delete|d");
}
MOZ_RELEASE_ASSERT(
aWriter->GetActor()->GetIPCChannel() == aVar->GetIPCChannel(),
"Actor must be from the same channel as the"
" actor it's being sent over");
MOZ_RELEASE_ASSERT(
aVar->CanSend(),
"Actor must still be open when sending");
}
IPC::WriteParam(aWriter, id);
}
auto ParamTraits<::mozilla::dom::PClientHandleChild*>::Read(IPC::MessageReader* aReader) -> IPC::ReadResult<paramType>
{
MOZ_RELEASE_ASSERT(
aReader->GetActor(),
"Cannot deserialize managed actors without an actor");
mozilla::Maybe<mozilla::ipc::IProtocol*> actor = aReader->GetActor()
->ReadActor(aReader, true, "PClientHandle", PClientHandleMsgStart);
if (actor.isSome()) {
return static_cast<::mozilla::dom::PClientHandleChild*>(actor.ref());
}
return {};
}
} // namespace IPC