2018-01-13 16:22:39 -05:00
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// Copyright 2018 yuzu emulator team
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2017-06-05 00:52:19 -04:00
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// Licensed under GPLv2 or any later version
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// Refer to the license.txt file included.
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2018-07-18 19:02:47 -04:00
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#include <utility>
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2017-06-05 00:52:19 -04:00
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#include <boost/range/algorithm_ext/erase.hpp>
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#include "common/assert.h"
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2017-10-15 01:24:22 -04:00
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#include "common/common_funcs.h"
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#include "common/common_types.h"
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#include "core/hle/ipc_helpers.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/hle_ipc.h"
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#include "core/hle/kernel/kernel.h"
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#include "core/hle/kernel/process.h"
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#include "core/hle/kernel/server_session.h"
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#include "core/memory.h"
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namespace Kernel {
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void SessionRequestHandler::ClientConnected(SharedPtr<ServerSession> server_session) {
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server_session->SetHleHandler(shared_from_this());
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connected_sessions.push_back(std::move(server_session));
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}
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2018-07-18 19:02:47 -04:00
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void SessionRequestHandler::ClientDisconnected(const SharedPtr<ServerSession>& server_session) {
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server_session->SetHleHandler(nullptr);
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2017-06-05 00:52:19 -04:00
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boost::range::remove_erase(connected_sessions, server_session);
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}
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2018-03-18 20:22:46 -04:00
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SharedPtr<Event> HLERequestContext::SleepClientThread(SharedPtr<Thread> thread,
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const std::string& reason, u64 timeout,
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WakeupCallback&& callback,
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Kernel::SharedPtr<Kernel::Event> event) {
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// Put the client thread to sleep until the wait event is signaled or the timeout expires.
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thread->wakeup_callback =
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[context = *this, callback](ThreadWakeupReason reason, SharedPtr<Thread> thread,
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SharedPtr<WaitObject> object, size_t index) mutable -> bool {
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ASSERT(thread->status == ThreadStatus::WaitHLEEvent);
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callback(thread, context, reason);
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context.WriteToOutgoingCommandBuffer(*thread);
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return true;
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};
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2018-07-17 00:05:13 -04:00
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if (!event) {
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// Create event if not provided
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event = Kernel::Event::Create(Kernel::ResetType::OneShot, "HLE Pause Event: " + reason);
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}
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event->Clear();
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thread->status = ThreadStatus::WaitHLEEvent;
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thread->wait_objects = {event};
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event->AddWaitingThread(thread);
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if (timeout > 0) {
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thread->WakeAfterDelay(timeout);
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}
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return event;
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}
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2017-12-29 00:36:22 -05:00
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HLERequestContext::HLERequestContext(SharedPtr<Kernel::ServerSession> server_session)
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: server_session(std::move(server_session)) {
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cmd_buf[0] = 0;
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}
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HLERequestContext::~HLERequestContext() = default;
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void HLERequestContext::ParseCommandBuffer(u32_le* src_cmdbuf, bool incoming) {
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IPC::RequestParser rp(src_cmdbuf);
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command_header = std::make_shared<IPC::CommandHeader>(rp.PopRaw<IPC::CommandHeader>());
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if (command_header->type == IPC::CommandType::Close) {
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// Close does not populate the rest of the IPC header
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return;
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}
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2017-10-14 22:18:42 -04:00
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// If handle descriptor is present, add size of it
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if (command_header->enable_handle_descriptor) {
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handle_descriptor_header =
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std::make_shared<IPC::HandleDescriptorHeader>(rp.PopRaw<IPC::HandleDescriptorHeader>());
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if (handle_descriptor_header->send_current_pid) {
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rp.Skip(2, false);
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}
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if (incoming) {
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// Populate the object lists with the data in the IPC request.
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for (u32 handle = 0; handle < handle_descriptor_header->num_handles_to_copy; ++handle) {
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copy_objects.push_back(Kernel::g_handle_table.GetGeneric(rp.Pop<Handle>()));
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}
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for (u32 handle = 0; handle < handle_descriptor_header->num_handles_to_move; ++handle) {
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move_objects.push_back(Kernel::g_handle_table.GetGeneric(rp.Pop<Handle>()));
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}
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} else {
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// For responses we just ignore the handles, they're empty and will be populated when
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// translating the response.
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rp.Skip(handle_descriptor_header->num_handles_to_copy, false);
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rp.Skip(handle_descriptor_header->num_handles_to_move, false);
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}
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}
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2017-06-09 08:23:13 -04:00
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2017-12-29 00:36:22 -05:00
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for (unsigned i = 0; i < command_header->num_buf_x_descriptors; ++i) {
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buffer_x_desciptors.push_back(rp.PopRaw<IPC::BufferDescriptorX>());
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}
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for (unsigned i = 0; i < command_header->num_buf_a_descriptors; ++i) {
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buffer_a_desciptors.push_back(rp.PopRaw<IPC::BufferDescriptorABW>());
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}
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for (unsigned i = 0; i < command_header->num_buf_b_descriptors; ++i) {
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buffer_b_desciptors.push_back(rp.PopRaw<IPC::BufferDescriptorABW>());
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}
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for (unsigned i = 0; i < command_header->num_buf_w_descriptors; ++i) {
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buffer_w_desciptors.push_back(rp.PopRaw<IPC::BufferDescriptorABW>());
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}
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buffer_c_offset = rp.GetCurrentOffset() + command_header->data_size;
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// Padding to align to 16 bytes
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rp.AlignWithPadding();
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2018-05-17 17:03:52 -04:00
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if (Session()->IsDomain() && ((command_header->type == IPC::CommandType::Request ||
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command_header->type == IPC::CommandType::RequestWithContext) ||
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!incoming)) {
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// If this is an incoming message, only CommandType "Request" has a domain header
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// All outgoing domain messages have the domain header, if only incoming has it
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if (incoming || domain_message_header) {
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domain_message_header =
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std::make_shared<IPC::DomainMessageHeader>(rp.PopRaw<IPC::DomainMessageHeader>());
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2018-02-20 14:51:54 -05:00
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} else {
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if (Session()->IsDomain())
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LOG_WARNING(IPC, "Domain request has no DomainMessageHeader!");
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}
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}
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data_payload_header =
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std::make_shared<IPC::DataPayloadHeader>(rp.PopRaw<IPC::DataPayloadHeader>());
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2018-01-17 01:16:55 -05:00
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data_payload_offset = rp.GetCurrentOffset();
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2018-01-20 02:48:02 -05:00
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if (domain_message_header && domain_message_header->command ==
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IPC::DomainMessageHeader::CommandType::CloseVirtualHandle) {
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2018-01-17 01:16:55 -05:00
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// CloseVirtualHandle command does not have SFC* or any data
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return;
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}
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2017-10-15 01:24:22 -04:00
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if (incoming) {
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ASSERT(data_payload_header->magic == Common::MakeMagic('S', 'F', 'C', 'I'));
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} else {
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ASSERT(data_payload_header->magic == Common::MakeMagic('S', 'F', 'C', 'O'));
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}
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2017-10-14 22:18:42 -04:00
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2018-01-18 14:54:34 -05:00
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rp.SetCurrentOffset(buffer_c_offset);
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// For Inline buffers, the response data is written directly to buffer_c_offset
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// and in this case we don't have any BufferDescriptorC on the request.
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if (command_header->buf_c_descriptor_flags >
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IPC::CommandHeader::BufferDescriptorCFlag::InlineDescriptor) {
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if (command_header->buf_c_descriptor_flags ==
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IPC::CommandHeader::BufferDescriptorCFlag::OneDescriptor) {
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buffer_c_desciptors.push_back(rp.PopRaw<IPC::BufferDescriptorC>());
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} else {
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unsigned num_buf_c_descriptors =
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static_cast<unsigned>(command_header->buf_c_descriptor_flags.Value()) - 2;
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// This is used to detect possible underflows, in case something is broken
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// with the two ifs above and the flags value is == 0 || == 1.
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ASSERT(num_buf_c_descriptors < 14);
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for (unsigned i = 0; i < num_buf_c_descriptors; ++i) {
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buffer_c_desciptors.push_back(rp.PopRaw<IPC::BufferDescriptorC>());
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}
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}
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}
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rp.SetCurrentOffset(data_payload_offset);
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2017-10-14 22:18:42 -04:00
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command = rp.Pop<u32_le>();
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2018-01-06 23:19:42 -05:00
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rp.Skip(1, false); // The command is actually an u64, but we don't use the high part.
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2017-10-14 22:18:42 -04:00
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}
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ResultCode HLERequestContext::PopulateFromIncomingCommandBuffer(u32_le* src_cmdbuf,
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Process& src_process,
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HandleTable& src_table) {
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2017-10-15 01:24:22 -04:00
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ParseCommandBuffer(src_cmdbuf, true);
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2018-01-07 01:59:31 -05:00
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if (command_header->type == IPC::CommandType::Close) {
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// Close does not populate the rest of the IPC header
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return RESULT_SUCCESS;
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}
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2018-01-07 01:50:55 -05:00
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// The data_size already includes the payload header, the padding and the domain header.
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size_t size = data_payload_offset + command_header->data_size -
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sizeof(IPC::DataPayloadHeader) / sizeof(u32) - 4;
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if (domain_message_header)
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size -= sizeof(IPC::DomainMessageHeader) / sizeof(u32);
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std::copy_n(src_cmdbuf, size, cmd_buf.begin());
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2017-06-09 08:23:13 -04:00
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return RESULT_SUCCESS;
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}
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2018-03-18 20:17:06 -04:00
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ResultCode HLERequestContext::WriteToOutgoingCommandBuffer(Thread& thread) {
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std::array<u32, IPC::COMMAND_BUFFER_LENGTH> dst_cmdbuf;
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Memory::ReadBlock(*thread.owner_process, thread.GetTLSAddress(), dst_cmdbuf.data(),
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dst_cmdbuf.size() * sizeof(u32));
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2018-01-07 01:50:55 -05:00
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// The header was already built in the internal command buffer. Attempt to parse it to verify
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// the integrity and then copy it over to the target command buffer.
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ParseCommandBuffer(cmd_buf.data(), false);
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// The data_size already includes the payload header, the padding and the domain header.
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size_t size = data_payload_offset + command_header->data_size -
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sizeof(IPC::DataPayloadHeader) / sizeof(u32) - 4;
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if (domain_message_header)
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size -= sizeof(IPC::DomainMessageHeader) / sizeof(u32);
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2018-03-18 20:17:06 -04:00
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std::copy_n(cmd_buf.begin(), size, dst_cmdbuf.data());
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2017-06-09 08:23:13 -04:00
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2017-10-14 22:18:42 -04:00
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if (command_header->enable_handle_descriptor) {
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2018-01-07 01:50:55 -05:00
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ASSERT_MSG(!move_objects.empty() || !copy_objects.empty(),
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"Handle descriptor bit set but no handles to translate");
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// We write the translated handles at a specific offset in the command buffer, this space
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// was already reserved when writing the header.
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size_t current_offset =
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(sizeof(IPC::CommandHeader) + sizeof(IPC::HandleDescriptorHeader)) / sizeof(u32);
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ASSERT_MSG(!handle_descriptor_header->send_current_pid, "Sending PID is not implemented");
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2018-07-14 09:13:16 -04:00
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ASSERT(copy_objects.size() == handle_descriptor_header->num_handles_to_copy);
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ASSERT(move_objects.size() == handle_descriptor_header->num_handles_to_move);
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2018-01-07 01:50:55 -05:00
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// We don't make a distinction between copy and move handles when translating since HLE
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// services don't deal with handles directly. However, the guest applications might check
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// for specific values in each of these descriptors.
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for (auto& object : copy_objects) {
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ASSERT(object != nullptr);
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dst_cmdbuf[current_offset++] = Kernel::g_handle_table.Create(object).Unwrap();
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}
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for (auto& object : move_objects) {
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ASSERT(object != nullptr);
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dst_cmdbuf[current_offset++] = Kernel::g_handle_table.Create(object).Unwrap();
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2017-06-09 08:23:13 -04:00
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}
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}
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2018-01-07 01:50:55 -05:00
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// TODO(Subv): Translate the X/A/B/W buffers.
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2018-02-20 13:59:58 -05:00
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if (Session()->IsDomain() && domain_message_header) {
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2018-01-07 01:50:55 -05:00
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ASSERT(domain_message_header->num_objects == domain_objects.size());
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// Write the domain objects to the command buffer, these go after the raw untranslated data.
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// TODO(Subv): This completely ignores C buffers.
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size_t domain_offset = size - domain_message_header->num_objects;
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2018-01-23 18:03:09 -05:00
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auto& request_handlers = server_session->domain_request_handlers;
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2018-01-07 01:50:55 -05:00
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for (auto& object : domain_objects) {
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request_handlers.emplace_back(object);
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2018-01-19 18:01:41 -05:00
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dst_cmdbuf[domain_offset++] = static_cast<u32_le>(request_handlers.size());
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2018-01-07 01:50:55 -05:00
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}
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}
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2018-03-18 20:17:06 -04:00
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// Copy the translated command buffer back into the thread's command buffer area.
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Memory::WriteBlock(*thread.owner_process, thread.GetTLSAddress(), dst_cmdbuf.data(),
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dst_cmdbuf.size() * sizeof(u32));
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2017-06-09 08:23:13 -04:00
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return RESULT_SUCCESS;
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2017-06-09 02:55:18 -04:00
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}
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2018-05-01 16:28:36 -04:00
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std::vector<u8> HLERequestContext::ReadBuffer(int buffer_index) const {
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2018-02-13 21:41:20 -05:00
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std::vector<u8> buffer;
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2018-05-01 16:28:36 -04:00
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const bool is_buffer_a{BufferDescriptorA().size() && BufferDescriptorA()[buffer_index].Size()};
|
2018-02-13 21:41:20 -05:00
|
|
|
|
|
|
|
if (is_buffer_a) {
|
2018-05-01 16:28:36 -04:00
|
|
|
buffer.resize(BufferDescriptorA()[buffer_index].Size());
|
|
|
|
Memory::ReadBlock(BufferDescriptorA()[buffer_index].Address(), buffer.data(),
|
|
|
|
buffer.size());
|
2018-02-13 21:41:20 -05:00
|
|
|
} else {
|
2018-05-01 16:28:36 -04:00
|
|
|
buffer.resize(BufferDescriptorX()[buffer_index].Size());
|
|
|
|
Memory::ReadBlock(BufferDescriptorX()[buffer_index].Address(), buffer.data(),
|
|
|
|
buffer.size());
|
2018-02-13 21:41:20 -05:00
|
|
|
}
|
|
|
|
|
|
|
|
return buffer;
|
|
|
|
}
|
|
|
|
|
2018-05-01 16:28:36 -04:00
|
|
|
size_t HLERequestContext::WriteBuffer(const void* buffer, size_t size, int buffer_index) const {
|
2018-06-22 04:18:23 -04:00
|
|
|
if (size == 0) {
|
2018-07-02 12:13:26 -04:00
|
|
|
LOG_WARNING(Core, "skip empty buffer write");
|
2018-06-22 04:18:23 -04:00
|
|
|
return 0;
|
|
|
|
}
|
|
|
|
|
2018-05-01 16:28:36 -04:00
|
|
|
const bool is_buffer_b{BufferDescriptorB().size() && BufferDescriptorB()[buffer_index].Size()};
|
|
|
|
const size_t buffer_size{GetWriteBufferSize(buffer_index)};
|
2018-03-31 16:05:19 -04:00
|
|
|
if (size > buffer_size) {
|
2018-07-02 12:13:26 -04:00
|
|
|
LOG_CRITICAL(Core, "size ({:016X}) is greater than buffer_size ({:016X})", size,
|
2018-07-02 12:20:50 -04:00
|
|
|
buffer_size);
|
2018-03-31 16:05:19 -04:00
|
|
|
size = buffer_size; // TODO(bunnei): This needs to be HW tested
|
|
|
|
}
|
2018-02-14 00:14:17 -05:00
|
|
|
|
2018-02-13 21:41:20 -05:00
|
|
|
if (is_buffer_b) {
|
2018-05-01 16:28:36 -04:00
|
|
|
Memory::WriteBlock(BufferDescriptorB()[buffer_index].Address(), buffer, size);
|
2018-02-13 21:41:20 -05:00
|
|
|
} else {
|
2018-05-01 16:28:36 -04:00
|
|
|
Memory::WriteBlock(BufferDescriptorC()[buffer_index].Address(), buffer, size);
|
2018-02-13 21:41:20 -05:00
|
|
|
}
|
2018-02-13 23:53:18 -05:00
|
|
|
|
|
|
|
return size;
|
2018-02-13 21:41:20 -05:00
|
|
|
}
|
|
|
|
|
2018-05-01 16:28:36 -04:00
|
|
|
size_t HLERequestContext::GetReadBufferSize(int buffer_index) const {
|
|
|
|
const bool is_buffer_a{BufferDescriptorA().size() && BufferDescriptorA()[buffer_index].Size()};
|
|
|
|
return is_buffer_a ? BufferDescriptorA()[buffer_index].Size()
|
|
|
|
: BufferDescriptorX()[buffer_index].Size();
|
2018-02-14 00:14:17 -05:00
|
|
|
}
|
|
|
|
|
2018-05-01 16:28:36 -04:00
|
|
|
size_t HLERequestContext::GetWriteBufferSize(int buffer_index) const {
|
|
|
|
const bool is_buffer_b{BufferDescriptorB().size() && BufferDescriptorB()[buffer_index].Size()};
|
|
|
|
return is_buffer_b ? BufferDescriptorB()[buffer_index].Size()
|
|
|
|
: BufferDescriptorC()[buffer_index].Size();
|
2018-02-13 21:41:20 -05:00
|
|
|
}
|
|
|
|
|
2018-02-15 09:22:11 -05:00
|
|
|
std::string HLERequestContext::Description() const {
|
|
|
|
if (!command_header) {
|
|
|
|
return "No command header available";
|
|
|
|
}
|
|
|
|
std::ostringstream s;
|
|
|
|
s << "IPC::CommandHeader: Type:" << static_cast<u32>(command_header->type.Value());
|
|
|
|
s << ", X(Pointer):" << command_header->num_buf_x_descriptors;
|
|
|
|
if (command_header->num_buf_x_descriptors) {
|
|
|
|
s << '[';
|
|
|
|
for (u64 i = 0; i < command_header->num_buf_x_descriptors; ++i) {
|
|
|
|
s << "0x" << std::hex << BufferDescriptorX()[i].Size();
|
|
|
|
if (i < command_header->num_buf_x_descriptors - 1)
|
|
|
|
s << ", ";
|
|
|
|
}
|
|
|
|
s << ']';
|
|
|
|
}
|
|
|
|
s << ", A(Send):" << command_header->num_buf_a_descriptors;
|
|
|
|
if (command_header->num_buf_a_descriptors) {
|
|
|
|
s << '[';
|
|
|
|
for (u64 i = 0; i < command_header->num_buf_a_descriptors; ++i) {
|
|
|
|
s << "0x" << std::hex << BufferDescriptorA()[i].Size();
|
|
|
|
if (i < command_header->num_buf_a_descriptors - 1)
|
|
|
|
s << ", ";
|
|
|
|
}
|
|
|
|
s << ']';
|
|
|
|
}
|
|
|
|
s << ", B(Receive):" << command_header->num_buf_b_descriptors;
|
|
|
|
if (command_header->num_buf_b_descriptors) {
|
|
|
|
s << '[';
|
|
|
|
for (u64 i = 0; i < command_header->num_buf_b_descriptors; ++i) {
|
|
|
|
s << "0x" << std::hex << BufferDescriptorB()[i].Size();
|
|
|
|
if (i < command_header->num_buf_b_descriptors - 1)
|
|
|
|
s << ", ";
|
|
|
|
}
|
|
|
|
s << ']';
|
|
|
|
}
|
|
|
|
s << ", C(ReceiveList):" << BufferDescriptorC().size();
|
|
|
|
if (!BufferDescriptorC().empty()) {
|
|
|
|
s << '[';
|
|
|
|
for (u64 i = 0; i < BufferDescriptorC().size(); ++i) {
|
|
|
|
s << "0x" << std::hex << BufferDescriptorC()[i].Size();
|
|
|
|
if (i < BufferDescriptorC().size() - 1)
|
|
|
|
s << ", ";
|
|
|
|
}
|
|
|
|
s << ']';
|
|
|
|
}
|
|
|
|
s << ", data_size:" << command_header->data_size.Value();
|
|
|
|
|
|
|
|
return s.str();
|
|
|
|
}
|
|
|
|
|
2017-06-05 00:52:19 -04:00
|
|
|
} // namespace Kernel
|