forked from ShuriZma/suyu
Merge pull request #1540 from lioncash/handle
kernel/process: Make the handle table per-process
This commit is contained in:
commit
e61a62066a
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@ -77,7 +77,8 @@ HLERequestContext::HLERequestContext(SharedPtr<Kernel::ServerSession> server_ses
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HLERequestContext::~HLERequestContext() = default;
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void HLERequestContext::ParseCommandBuffer(u32_le* src_cmdbuf, bool incoming) {
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void HLERequestContext::ParseCommandBuffer(const HandleTable& handle_table, u32_le* src_cmdbuf,
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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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@ -94,8 +95,6 @@ void HLERequestContext::ParseCommandBuffer(u32_le* src_cmdbuf, bool incoming) {
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rp.Skip(2, false);
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}
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if (incoming) {
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auto& handle_table = Core::System::GetInstance().Kernel().HandleTable();
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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(handle_table.GetGeneric(rp.Pop<Handle>()));
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@ -189,10 +188,9 @@ void HLERequestContext::ParseCommandBuffer(u32_le* src_cmdbuf, bool incoming) {
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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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}
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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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ParseCommandBuffer(src_cmdbuf, true);
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ResultCode HLERequestContext::PopulateFromIncomingCommandBuffer(const HandleTable& handle_table,
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u32_le* src_cmdbuf) {
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ParseCommandBuffer(handle_table, src_cmdbuf, true);
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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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@ -207,14 +205,17 @@ ResultCode HLERequestContext::PopulateFromIncomingCommandBuffer(u32_le* src_cmdb
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return RESULT_SUCCESS;
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}
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ResultCode HLERequestContext::WriteToOutgoingCommandBuffer(const Thread& thread) {
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ResultCode HLERequestContext::WriteToOutgoingCommandBuffer(Thread& thread) {
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auto& owner_process = *thread.GetOwnerProcess();
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auto& handle_table = owner_process.GetHandleTable();
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std::array<u32, IPC::COMMAND_BUFFER_LENGTH> dst_cmdbuf;
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Memory::ReadBlock(*thread.GetOwnerProcess(), thread.GetTLSAddress(), dst_cmdbuf.data(),
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Memory::ReadBlock(owner_process, thread.GetTLSAddress(), dst_cmdbuf.data(),
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dst_cmdbuf.size() * sizeof(u32));
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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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ParseCommandBuffer(handle_table, 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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std::size_t size = data_payload_offset + command_header->data_size -
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@ -236,8 +237,6 @@ ResultCode HLERequestContext::WriteToOutgoingCommandBuffer(const Thread& thread)
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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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auto& handle_table = Core::System::GetInstance().Kernel().HandleTable();
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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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@ -268,7 +267,7 @@ ResultCode HLERequestContext::WriteToOutgoingCommandBuffer(const Thread& thread)
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}
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// Copy the translated command buffer back into the thread's command buffer area.
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Memory::WriteBlock(*thread.GetOwnerProcess(), thread.GetTLSAddress(), dst_cmdbuf.data(),
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Memory::WriteBlock(owner_process, thread.GetTLSAddress(), dst_cmdbuf.data(),
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dst_cmdbuf.size() * sizeof(u32));
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return RESULT_SUCCESS;
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@ -24,10 +24,10 @@ class ServiceFrameworkBase;
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namespace Kernel {
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class Domain;
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class Event;
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class HandleTable;
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class HLERequestContext;
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class Process;
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class Event;
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/**
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* Interface implemented by HLE Session handlers.
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@ -126,13 +126,12 @@ public:
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u64 timeout, WakeupCallback&& callback,
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Kernel::SharedPtr<Kernel::Event> event = nullptr);
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void ParseCommandBuffer(u32_le* src_cmdbuf, bool incoming);
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/// Populates this context with data from the requesting process/thread.
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ResultCode PopulateFromIncomingCommandBuffer(u32_le* src_cmdbuf, Process& src_process,
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HandleTable& src_table);
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ResultCode PopulateFromIncomingCommandBuffer(const HandleTable& handle_table,
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u32_le* src_cmdbuf);
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/// Writes data from this context back to the requesting process/thread.
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ResultCode WriteToOutgoingCommandBuffer(const Thread& thread);
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ResultCode WriteToOutgoingCommandBuffer(Thread& thread);
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u32_le GetCommand() const {
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return command;
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@ -255,6 +254,8 @@ public:
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std::string Description() const;
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private:
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void ParseCommandBuffer(const HandleTable& handle_table, u32_le* src_cmdbuf, bool incoming);
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std::array<u32, IPC::COMMAND_BUFFER_LENGTH> cmd_buf;
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SharedPtr<Kernel::ServerSession> server_session;
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// TODO(yuriks): Check common usage of this and optimize size accordingly
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@ -118,7 +118,6 @@ struct KernelCore::Impl {
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process_list.clear();
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current_process = nullptr;
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handle_table.Clear();
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resource_limits.fill(nullptr);
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thread_wakeup_callback_handle_table.Clear();
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@ -209,7 +208,6 @@ struct KernelCore::Impl {
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std::vector<SharedPtr<Process>> process_list;
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Process* current_process = nullptr;
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Kernel::HandleTable handle_table;
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std::array<SharedPtr<ResourceLimit>, 4> resource_limits;
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/// The event type of the generic timer callback event
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@ -241,14 +239,6 @@ void KernelCore::Shutdown() {
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impl->Shutdown();
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}
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Kernel::HandleTable& KernelCore::HandleTable() {
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return impl->handle_table;
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}
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const Kernel::HandleTable& KernelCore::HandleTable() const {
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return impl->handle_table;
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}
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SharedPtr<ResourceLimit> KernelCore::ResourceLimitForCategory(
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ResourceLimitCategory category) const {
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return impl->resource_limits.at(static_cast<std::size_t>(category));
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@ -47,12 +47,6 @@ public:
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/// Clears all resources in use by the kernel instance.
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void Shutdown();
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/// Provides a reference to the handle table.
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Kernel::HandleTable& HandleTable();
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/// Provides a const reference to the handle table.
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const Kernel::HandleTable& HandleTable() const;
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/// Retrieves a shared pointer to a ResourceLimit identified by the given category.
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SharedPtr<ResourceLimit> ResourceLimitForCategory(ResourceLimitCategory category) const;
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@ -13,6 +13,7 @@
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#include <boost/container/static_vector.hpp>
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#include "common/bit_field.h"
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#include "common/common_types.h"
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#include "core/hle/kernel/handle_table.h"
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#include "core/hle/kernel/object.h"
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#include "core/hle/kernel/thread.h"
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#include "core/hle/kernel/vm_manager.h"
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@ -142,6 +143,16 @@ public:
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return vm_manager;
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}
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/// Gets a reference to the process' handle table.
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HandleTable& GetHandleTable() {
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return handle_table;
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}
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/// Gets a const reference to the process' handle table.
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const HandleTable& GetHandleTable() const {
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return handle_table;
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}
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/// Gets the current status of the process
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ProcessStatus GetStatus() const {
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return status;
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@ -294,6 +305,9 @@ private:
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/// specified by metadata provided to the process during loading.
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bool is_64bit_process = true;
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/// Per-process handle table for storing created object handles in.
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HandleTable handle_table;
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std::string name;
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};
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@ -107,8 +107,7 @@ ResultCode ServerSession::HandleSyncRequest(SharedPtr<Thread> thread) {
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// similar.
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Kernel::HLERequestContext context(this);
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u32* cmd_buf = (u32*)Memory::GetPointer(thread->GetTLSAddress());
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context.PopulateFromIncomingCommandBuffer(cmd_buf, *Core::CurrentProcess(),
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kernel.HandleTable());
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context.PopulateFromIncomingCommandBuffer(kernel.CurrentProcess()->GetHandleTable(), cmd_buf);
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ResultCode result = RESULT_SUCCESS;
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// If the session has been converted to a domain, handle the domain request
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@ -189,14 +189,15 @@ static ResultCode ConnectToNamedPort(Handle* out_handle, VAddr port_name_address
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CASCADE_RESULT(client_session, client_port->Connect());
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// Return the client session
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CASCADE_RESULT(*out_handle, kernel.HandleTable().Create(client_session));
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auto& handle_table = Core::CurrentProcess()->GetHandleTable();
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CASCADE_RESULT(*out_handle, handle_table.Create(client_session));
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return RESULT_SUCCESS;
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}
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/// Makes a blocking IPC call to an OS service.
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static ResultCode SendSyncRequest(Handle handle) {
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auto& kernel = Core::System::GetInstance().Kernel();
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SharedPtr<ClientSession> session = kernel.HandleTable().Get<ClientSession>(handle);
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const auto& handle_table = Core::CurrentProcess()->GetHandleTable();
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SharedPtr<ClientSession> session = handle_table.Get<ClientSession>(handle);
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if (!session) {
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LOG_ERROR(Kernel_SVC, "called with invalid handle=0x{:08X}", handle);
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return ERR_INVALID_HANDLE;
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@ -215,8 +216,8 @@ static ResultCode SendSyncRequest(Handle handle) {
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static ResultCode GetThreadId(u32* thread_id, Handle thread_handle) {
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LOG_TRACE(Kernel_SVC, "called thread=0x{:08X}", thread_handle);
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auto& kernel = Core::System::GetInstance().Kernel();
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const SharedPtr<Thread> thread = kernel.HandleTable().Get<Thread>(thread_handle);
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const auto& handle_table = Core::CurrentProcess()->GetHandleTable();
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const SharedPtr<Thread> thread = handle_table.Get<Thread>(thread_handle);
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if (!thread) {
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return ERR_INVALID_HANDLE;
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}
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@ -229,8 +230,8 @@ static ResultCode GetThreadId(u32* thread_id, Handle thread_handle) {
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static ResultCode GetProcessId(u32* process_id, Handle process_handle) {
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LOG_TRACE(Kernel_SVC, "called process=0x{:08X}", process_handle);
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auto& kernel = Core::System::GetInstance().Kernel();
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const SharedPtr<Process> process = kernel.HandleTable().Get<Process>(process_handle);
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const auto& handle_table = Core::CurrentProcess()->GetHandleTable();
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const SharedPtr<Process> process = handle_table.Get<Process>(process_handle);
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if (!process) {
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return ERR_INVALID_HANDLE;
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}
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@ -273,11 +274,11 @@ static ResultCode WaitSynchronization(Handle* index, VAddr handles_address, u64
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using ObjectPtr = Thread::ThreadWaitObjects::value_type;
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Thread::ThreadWaitObjects objects(handle_count);
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auto& kernel = Core::System::GetInstance().Kernel();
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const auto& handle_table = Core::CurrentProcess()->GetHandleTable();
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for (u64 i = 0; i < handle_count; ++i) {
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const Handle handle = Memory::Read32(handles_address + i * sizeof(Handle));
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const auto object = kernel.HandleTable().Get<WaitObject>(handle);
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const auto object = handle_table.Get<WaitObject>(handle);
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if (object == nullptr) {
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return ERR_INVALID_HANDLE;
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@ -325,8 +326,8 @@ static ResultCode WaitSynchronization(Handle* index, VAddr handles_address, u64
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static ResultCode CancelSynchronization(Handle thread_handle) {
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LOG_TRACE(Kernel_SVC, "called thread=0x{:X}", thread_handle);
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auto& kernel = Core::System::GetInstance().Kernel();
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const SharedPtr<Thread> thread = kernel.HandleTable().Get<Thread>(thread_handle);
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const auto& handle_table = Core::CurrentProcess()->GetHandleTable();
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const SharedPtr<Thread> thread = handle_table.Get<Thread>(thread_handle);
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if (!thread) {
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return ERR_INVALID_HANDLE;
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}
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@ -354,7 +355,7 @@ static ResultCode ArbitrateLock(Handle holding_thread_handle, VAddr mutex_addr,
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return ERR_INVALID_ADDRESS;
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}
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auto& handle_table = Core::System::GetInstance().Kernel().HandleTable();
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auto& handle_table = Core::CurrentProcess()->GetHandleTable();
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return Mutex::TryAcquire(handle_table, mutex_addr, holding_thread_handle,
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requesting_thread_handle);
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}
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@ -499,13 +500,12 @@ static ResultCode SetThreadActivity(Handle handle, u32 unknown) {
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static ResultCode GetThreadContext(VAddr thread_context, Handle handle) {
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LOG_DEBUG(Kernel_SVC, "called, context=0x{:08X}, thread=0x{:X}", thread_context, handle);
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auto& kernel = Core::System::GetInstance().Kernel();
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const SharedPtr<Thread> thread = kernel.HandleTable().Get<Thread>(handle);
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const auto* current_process = Core::CurrentProcess();
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const SharedPtr<Thread> thread = current_process->GetHandleTable().Get<Thread>(handle);
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if (!thread) {
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return ERR_INVALID_HANDLE;
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}
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const auto* current_process = Core::CurrentProcess();
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if (thread->GetOwnerProcess() != current_process) {
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return ERR_INVALID_HANDLE;
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}
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@ -531,10 +531,11 @@ static ResultCode GetThreadContext(VAddr thread_context, Handle handle) {
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/// Gets the priority for the specified thread
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static ResultCode GetThreadPriority(u32* priority, Handle handle) {
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auto& kernel = Core::System::GetInstance().Kernel();
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const SharedPtr<Thread> thread = kernel.HandleTable().Get<Thread>(handle);
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if (!thread)
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const auto& handle_table = Core::CurrentProcess()->GetHandleTable();
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const SharedPtr<Thread> thread = handle_table.Get<Thread>(handle);
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if (!thread) {
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return ERR_INVALID_HANDLE;
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}
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*priority = thread->GetPriority();
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return RESULT_SUCCESS;
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@ -546,14 +547,15 @@ static ResultCode SetThreadPriority(Handle handle, u32 priority) {
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return ERR_INVALID_THREAD_PRIORITY;
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}
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auto& kernel = Core::System::GetInstance().Kernel();
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SharedPtr<Thread> thread = kernel.HandleTable().Get<Thread>(handle);
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if (!thread)
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const auto* const current_process = Core::CurrentProcess();
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SharedPtr<Thread> thread = current_process->GetHandleTable().Get<Thread>(handle);
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if (!thread) {
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return ERR_INVALID_HANDLE;
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}
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// Note: The kernel uses the current process's resource limit instead of
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// the one from the thread owner's resource limit.
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const ResourceLimit& resource_limit = Core::CurrentProcess()->GetResourceLimit();
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const ResourceLimit& resource_limit = current_process->GetResourceLimit();
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if (resource_limit.GetMaxResourceValue(ResourceType::Priority) > priority) {
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return ERR_NOT_AUTHORIZED;
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}
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@ -595,15 +597,13 @@ static ResultCode MapSharedMemory(Handle shared_memory_handle, VAddr addr, u64 s
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return ERR_INVALID_MEMORY_PERMISSIONS;
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}
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auto& kernel = Core::System::GetInstance().Kernel();
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auto shared_memory = kernel.HandleTable().Get<SharedMemory>(shared_memory_handle);
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auto* const current_process = Core::CurrentProcess();
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auto shared_memory = current_process->GetHandleTable().Get<SharedMemory>(shared_memory_handle);
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if (!shared_memory) {
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return ERR_INVALID_HANDLE;
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}
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auto* const current_process = Core::CurrentProcess();
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const auto& vm_manager = current_process->VMManager();
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if (!vm_manager.IsWithinASLRRegion(addr, size)) {
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return ERR_INVALID_MEMORY_RANGE;
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}
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@ -627,15 +627,13 @@ static ResultCode UnmapSharedMemory(Handle shared_memory_handle, VAddr addr, u64
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return ERR_INVALID_ADDRESS_STATE;
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}
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auto& kernel = Core::System::GetInstance().Kernel();
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auto shared_memory = kernel.HandleTable().Get<SharedMemory>(shared_memory_handle);
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auto* const current_process = Core::CurrentProcess();
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auto shared_memory = current_process->GetHandleTable().Get<SharedMemory>(shared_memory_handle);
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if (!shared_memory) {
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return ERR_INVALID_HANDLE;
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}
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auto* const current_process = Core::CurrentProcess();
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const auto& vm_manager = current_process->VMManager();
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if (!vm_manager.IsWithinASLRRegion(addr, size)) {
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return ERR_INVALID_MEMORY_RANGE;
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}
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@ -646,9 +644,8 @@ static ResultCode UnmapSharedMemory(Handle shared_memory_handle, VAddr addr, u64
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/// Query process memory
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static ResultCode QueryProcessMemory(MemoryInfo* memory_info, PageInfo* /*page_info*/,
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Handle process_handle, u64 addr) {
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auto& kernel = Core::System::GetInstance().Kernel();
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SharedPtr<Process> process = kernel.HandleTable().Get<Process>(process_handle);
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const auto& handle_table = Core::CurrentProcess()->GetHandleTable();
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SharedPtr<Process> process = handle_table.Get<Process>(process_handle);
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if (!process) {
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return ERR_INVALID_HANDLE;
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}
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@ -695,20 +692,19 @@ static void ExitProcess() {
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/// Creates a new thread
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static ResultCode CreateThread(Handle* out_handle, VAddr entry_point, u64 arg, VAddr stack_top,
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u32 priority, s32 processor_id) {
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std::string name = fmt::format("thread-{:X}", entry_point);
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if (priority > THREADPRIO_LOWEST) {
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return ERR_INVALID_THREAD_PRIORITY;
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}
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const ResourceLimit& resource_limit = Core::CurrentProcess()->GetResourceLimit();
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auto* const current_process = Core::CurrentProcess();
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const ResourceLimit& resource_limit = current_process->GetResourceLimit();
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if (resource_limit.GetMaxResourceValue(ResourceType::Priority) > priority) {
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return ERR_NOT_AUTHORIZED;
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}
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if (processor_id == THREADPROCESSORID_DEFAULT) {
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// Set the target CPU to the one specified in the process' exheader.
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processor_id = Core::CurrentProcess()->GetDefaultProcessorID();
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processor_id = current_process->GetDefaultProcessorID();
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ASSERT(processor_id != THREADPROCESSORID_DEFAULT);
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}
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@ -723,11 +719,13 @@ static ResultCode CreateThread(Handle* out_handle, VAddr entry_point, u64 arg, V
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return ERR_INVALID_PROCESSOR_ID;
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}
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const std::string name = fmt::format("thread-{:X}", entry_point);
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auto& kernel = Core::System::GetInstance().Kernel();
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CASCADE_RESULT(SharedPtr<Thread> thread,
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Thread::Create(kernel, name, entry_point, priority, arg, processor_id, stack_top,
|
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*Core::CurrentProcess()));
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const auto new_guest_handle = kernel.HandleTable().Create(thread);
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*current_process));
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||||
|
||||
const auto new_guest_handle = current_process->GetHandleTable().Create(thread);
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if (new_guest_handle.Failed()) {
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return new_guest_handle.Code();
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||||
}
|
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|
@ -748,8 +746,8 @@ static ResultCode CreateThread(Handle* out_handle, VAddr entry_point, u64 arg, V
|
|||
static ResultCode StartThread(Handle thread_handle) {
|
||||
LOG_TRACE(Kernel_SVC, "called thread=0x{:08X}", thread_handle);
|
||||
|
||||
auto& kernel = Core::System::GetInstance().Kernel();
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const SharedPtr<Thread> thread = kernel.HandleTable().Get<Thread>(thread_handle);
|
||||
const auto& handle_table = Core::CurrentProcess()->GetHandleTable();
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const SharedPtr<Thread> thread = handle_table.Get<Thread>(thread_handle);
|
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if (!thread) {
|
||||
return ERR_INVALID_HANDLE;
|
||||
}
|
||||
|
@ -796,8 +794,8 @@ static ResultCode WaitProcessWideKeyAtomic(VAddr mutex_addr, VAddr condition_var
|
|||
"called mutex_addr={:X}, condition_variable_addr={:X}, thread_handle=0x{:08X}, timeout={}",
|
||||
mutex_addr, condition_variable_addr, thread_handle, nano_seconds);
|
||||
|
||||
auto& kernel = Core::System::GetInstance().Kernel();
|
||||
SharedPtr<Thread> thread = kernel.HandleTable().Get<Thread>(thread_handle);
|
||||
const auto& handle_table = Core::CurrentProcess()->GetHandleTable();
|
||||
SharedPtr<Thread> thread = handle_table.Get<Thread>(thread_handle);
|
||||
ASSERT(thread);
|
||||
|
||||
CASCADE_CODE(Mutex::Release(mutex_addr));
|
||||
|
@ -908,9 +906,9 @@ static ResultCode SignalProcessWideKey(VAddr condition_variable_addr, s32 target
|
|||
mutex_val | Mutex::MutexHasWaitersFlag));
|
||||
|
||||
// The mutex is already owned by some other thread, make this thread wait on it.
|
||||
auto& kernel = Core::System::GetInstance().Kernel();
|
||||
Handle owner_handle = static_cast<Handle>(mutex_val & Mutex::MutexOwnerMask);
|
||||
auto owner = kernel.HandleTable().Get<Thread>(owner_handle);
|
||||
const Handle owner_handle = static_cast<Handle>(mutex_val & Mutex::MutexOwnerMask);
|
||||
const auto& handle_table = Core::CurrentProcess()->GetHandleTable();
|
||||
auto owner = handle_table.Get<Thread>(owner_handle);
|
||||
ASSERT(owner);
|
||||
ASSERT(thread->GetStatus() == ThreadStatus::WaitMutex);
|
||||
thread->InvalidateWakeupCallback();
|
||||
|
@ -989,16 +987,16 @@ static u64 GetSystemTick() {
|
|||
static ResultCode CloseHandle(Handle handle) {
|
||||
LOG_TRACE(Kernel_SVC, "Closing handle 0x{:08X}", handle);
|
||||
|
||||
auto& kernel = Core::System::GetInstance().Kernel();
|
||||
return kernel.HandleTable().Close(handle);
|
||||
auto& handle_table = Core::CurrentProcess()->GetHandleTable();
|
||||
return handle_table.Close(handle);
|
||||
}
|
||||
|
||||
/// Reset an event
|
||||
static ResultCode ResetSignal(Handle handle) {
|
||||
LOG_WARNING(Kernel_SVC, "(STUBBED) called handle 0x{:08X}", handle);
|
||||
|
||||
auto& kernel = Core::System::GetInstance().Kernel();
|
||||
auto event = kernel.HandleTable().Get<Event>(handle);
|
||||
const auto& handle_table = Core::CurrentProcess()->GetHandleTable();
|
||||
auto event = handle_table.Get<Event>(handle);
|
||||
|
||||
ASSERT(event != nullptr);
|
||||
|
||||
|
@ -1017,8 +1015,8 @@ static ResultCode CreateTransferMemory(Handle* handle, VAddr addr, u64 size, u32
|
|||
static ResultCode GetThreadCoreMask(Handle thread_handle, u32* core, u64* mask) {
|
||||
LOG_TRACE(Kernel_SVC, "called, handle=0x{:08X}", thread_handle);
|
||||
|
||||
auto& kernel = Core::System::GetInstance().Kernel();
|
||||
const SharedPtr<Thread> thread = kernel.HandleTable().Get<Thread>(thread_handle);
|
||||
const auto& handle_table = Core::CurrentProcess()->GetHandleTable();
|
||||
const SharedPtr<Thread> thread = handle_table.Get<Thread>(thread_handle);
|
||||
if (!thread) {
|
||||
return ERR_INVALID_HANDLE;
|
||||
}
|
||||
|
@ -1033,8 +1031,8 @@ static ResultCode SetThreadCoreMask(Handle thread_handle, u32 core, u64 mask) {
|
|||
LOG_DEBUG(Kernel_SVC, "called, handle=0x{:08X}, mask=0x{:16X}, core=0x{:X}", thread_handle,
|
||||
mask, core);
|
||||
|
||||
auto& kernel = Core::System::GetInstance().Kernel();
|
||||
const SharedPtr<Thread> thread = kernel.HandleTable().Get<Thread>(thread_handle);
|
||||
const auto& handle_table = Core::CurrentProcess()->GetHandleTable();
|
||||
const SharedPtr<Thread> thread = handle_table.Get<Thread>(thread_handle);
|
||||
if (!thread) {
|
||||
return ERR_INVALID_HANDLE;
|
||||
}
|
||||
|
@ -1095,7 +1093,7 @@ static ResultCode CreateSharedMemory(Handle* handle, u64 size, u32 local_permiss
|
|||
}
|
||||
|
||||
auto& kernel = Core::System::GetInstance().Kernel();
|
||||
auto& handle_table = kernel.HandleTable();
|
||||
auto& handle_table = Core::CurrentProcess()->GetHandleTable();
|
||||
auto shared_mem_handle =
|
||||
SharedMemory::Create(kernel, handle_table.Get<Process>(KernelHandle::CurrentProcess), size,
|
||||
local_perms, remote_perms);
|
||||
|
@ -1107,10 +1105,12 @@ static ResultCode CreateSharedMemory(Handle* handle, u64 size, u32 local_permiss
|
|||
static ResultCode ClearEvent(Handle handle) {
|
||||
LOG_TRACE(Kernel_SVC, "called, event=0x{:08X}", handle);
|
||||
|
||||
auto& kernel = Core::System::GetInstance().Kernel();
|
||||
SharedPtr<Event> evt = kernel.HandleTable().Get<Event>(handle);
|
||||
if (evt == nullptr)
|
||||
const auto& handle_table = Core::CurrentProcess()->GetHandleTable();
|
||||
SharedPtr<Event> evt = handle_table.Get<Event>(handle);
|
||||
if (evt == nullptr) {
|
||||
return ERR_INVALID_HANDLE;
|
||||
}
|
||||
|
||||
evt->Clear();
|
||||
return RESULT_SUCCESS;
|
||||
}
|
||||
|
@ -1123,8 +1123,8 @@ static ResultCode GetProcessInfo(u64* out, Handle process_handle, u32 type) {
|
|||
Status,
|
||||
};
|
||||
|
||||
const auto& kernel = Core::System::GetInstance().Kernel();
|
||||
const auto process = kernel.HandleTable().Get<Process>(process_handle);
|
||||
const auto& handle_table = Core::CurrentProcess()->GetHandleTable();
|
||||
const auto process = handle_table.Get<Process>(process_handle);
|
||||
if (!process) {
|
||||
return ERR_INVALID_HANDLE;
|
||||
}
|
||||
|
|
|
@ -266,7 +266,7 @@ SharedPtr<Thread> SetupMainThread(KernelCore& kernel, VAddr entry_point, u32 pri
|
|||
SharedPtr<Thread> thread = std::move(thread_res).Unwrap();
|
||||
|
||||
// Register 1 must be a handle to the main thread
|
||||
const Handle guest_handle = kernel.HandleTable().Create(thread).Unwrap();
|
||||
const Handle guest_handle = owner_process.GetHandleTable().Create(thread).Unwrap();
|
||||
thread->SetGuestHandle(guest_handle);
|
||||
thread->GetContext().cpu_registers[1] = guest_handle;
|
||||
|
||||
|
|
|
@ -9,8 +9,8 @@
|
|||
#include "core/core.h"
|
||||
#include "core/hle/kernel/event.h"
|
||||
#include "core/hle/kernel/handle_table.h"
|
||||
#include "core/hle/kernel/kernel.h"
|
||||
#include "core/hle/kernel/mutex.h"
|
||||
#include "core/hle/kernel/process.h"
|
||||
#include "core/hle/kernel/scheduler.h"
|
||||
#include "core/hle/kernel/thread.h"
|
||||
#include "core/hle/kernel/timer.h"
|
||||
|
@ -83,7 +83,7 @@ QString WaitTreeText::GetText() const {
|
|||
}
|
||||
|
||||
WaitTreeMutexInfo::WaitTreeMutexInfo(VAddr mutex_address) : mutex_address(mutex_address) {
|
||||
auto& handle_table = Core::System::GetInstance().Kernel().HandleTable();
|
||||
const auto& handle_table = Core::CurrentProcess()->GetHandleTable();
|
||||
|
||||
mutex_value = Memory::Read32(mutex_address);
|
||||
owner_handle = static_cast<Kernel::Handle>(mutex_value & Kernel::Mutex::MutexOwnerMask);
|
||||
|
|
Loading…
Reference in New Issue