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Kernel/SVC: Implement LLE command buffer translation in ReplyAndReceive.
The real kernel's ReplyAndReceive will retry the call until one of the objects can be acquired without causing a translation error, this is not currently implemented and the code will instead assert that the translation was a success.
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@ -18,6 +18,7 @@
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#include "core/hle/kernel/errors.h"
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#include "core/hle/kernel/event.h"
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#include "core/hle/kernel/handle_table.h"
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#include "core/hle/kernel/ipc.h"
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#include "core/hle/kernel/memory.h"
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#include "core/hle/kernel/mutex.h"
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#include "core/hle/kernel/process.h"
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@ -453,6 +454,33 @@ static ResultCode WaitSynchronizationN(s32* out, VAddr handles_address, s32 hand
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}
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}
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static ResultCode ReceiveIPCRequest(Kernel::SharedPtr<Kernel::ServerSession> server_session,
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Kernel::SharedPtr<Kernel::Thread> thread) {
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if (server_session->parent->client == nullptr) {
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return Kernel::ERR_SESSION_CLOSED_BY_REMOTE;
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}
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VAddr target_address = thread->GetCommandBufferAddress();
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VAddr source_address = server_session->currently_handling->GetCommandBufferAddress();
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ResultCode translation_result = Kernel::TranslateCommandBuffer(
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server_session->currently_handling, thread, source_address, target_address);
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// If a translation error occurred, immediately resume the client thread.
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if (translation_result.IsError()) {
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// Set the output of SendSyncRequest in the client thread to the translation output.
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server_session->currently_handling->SetWaitSynchronizationResult(translation_result);
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server_session->currently_handling->ResumeFromWait();
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server_session->currently_handling = nullptr;
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// TODO(Subv): This path should try to wait again on the same objects.
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ASSERT_MSG(false, "ReplyAndReceive translation error behavior unimplemented");
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}
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return translation_result;
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}
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/// In a single operation, sends a IPC reply and waits for a new request.
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static ResultCode ReplyAndReceive(s32* index, VAddr handles_address, s32 handle_count,
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Kernel::Handle reply_target) {
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@ -495,7 +523,15 @@ static ResultCode ReplyAndReceive(s32* index, VAddr handles_address, s32 handle_
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return Kernel::ERR_SESSION_CLOSED_BY_REMOTE;
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}
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// TODO(Subv): Perform IPC translation from the current thread to request_thread.
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VAddr source_address = Kernel::GetCurrentThread()->GetCommandBufferAddress();
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VAddr target_address = request_thread->GetCommandBufferAddress();
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ResultCode translation_result = Kernel::TranslateCommandBuffer(
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Kernel::GetCurrentThread(), request_thread, source_address, target_address);
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// Note: The real kernel seems to always panic if the Server->Client buffer translation
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// fails for whatever reason.
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ASSERT(translation_result.IsSuccess());
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// Note: The scheduler is not invoked here.
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request_thread->ResumeFromWait();
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@ -524,14 +560,11 @@ static ResultCode ReplyAndReceive(s32* index, VAddr handles_address, s32 handle_
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object->Acquire(thread);
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*index = static_cast<s32>(std::distance(objects.begin(), itr));
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if (object->GetHandleType() == Kernel::HandleType::ServerSession) {
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auto server_session = static_cast<Kernel::ServerSession*>(object);
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if (server_session->parent->client == nullptr)
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return Kernel::ERR_SESSION_CLOSED_BY_REMOTE;
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// TODO(Subv): Perform IPC translation from the ServerSession to the current thread.
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}
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if (object->GetHandleType() != Kernel::HandleType::ServerSession)
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return RESULT_SUCCESS;
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auto server_session = static_cast<Kernel::ServerSession*>(object);
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return ReceiveIPCRequest(server_session, Kernel::GetCurrentThread());
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}
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// No objects were ready to be acquired, prepare to suspend the thread.
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@ -554,10 +587,15 @@ static ResultCode ReplyAndReceive(s32* index, VAddr handles_address, s32 handle_
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ASSERT(thread->status == THREADSTATUS_WAIT_SYNCH_ANY);
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ASSERT(reason == ThreadWakeupReason::Signal);
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thread->SetWaitSynchronizationResult(RESULT_SUCCESS);
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thread->SetWaitSynchronizationOutput(thread->GetWaitObjectIndex(object.get()));
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ResultCode result = RESULT_SUCCESS;
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// TODO(Subv): Perform IPC translation upon wakeup.
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if (object->GetHandleType() == Kernel::HandleType::ServerSession) {
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auto server_session = Kernel::DynamicObjectCast<Kernel::ServerSession>(object);
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result = ReceiveIPCRequest(server_session, thread);
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}
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thread->SetWaitSynchronizationResult(result);
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thread->SetWaitSynchronizationOutput(thread->GetWaitObjectIndex(object.get()));
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};
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Core::System::GetInstance().PrepareReschedule();
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