2015-05-04 05:01:16 +02:00
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// Copyright 2015 Citra Emulator Project
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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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#pragma once
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2018-08-03 20:42:28 +02:00
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#include <array>
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2015-06-21 16:44:11 +02:00
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#include <cstddef>
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2019-03-20 23:53:48 +01:00
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#include <list>
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2015-06-21 16:44:11 +02:00
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#include <string>
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2019-11-21 16:03:37 +01:00
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#include <unordered_map>
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2018-01-01 20:38:34 +01:00
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#include <vector>
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2015-05-08 22:53:19 +02:00
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#include "common/common_types.h"
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2020-12-30 10:14:02 +01:00
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#include "core/hle/kernel/k_address_arbiter.h"
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2021-04-04 07:22:36 +02:00
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#include "core/hle/kernel/k_auto_object.h"
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2020-12-30 10:14:02 +01:00
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#include "core/hle/kernel/k_condition_variable.h"
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2021-04-24 11:40:31 +02:00
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#include "core/hle/kernel/k_handle_table.h"
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2020-12-22 07:36:53 +01:00
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#include "core/hle/kernel/k_synchronization_object.h"
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2018-12-20 05:50:20 +01:00
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#include "core/hle/kernel/process_capability.h"
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2021-04-04 07:22:36 +02:00
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#include "core/hle/kernel/slab_helpers.h"
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2018-12-05 01:08:56 +01:00
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#include "core/hle/result.h"
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2015-05-04 05:01:16 +02:00
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2019-03-08 00:48:14 +01:00
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namespace Core {
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class System;
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}
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2018-09-23 02:09:32 +02:00
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namespace FileSys {
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class ProgramMetadata;
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}
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2015-05-04 05:01:16 +02:00
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namespace Kernel {
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2018-08-28 18:30:33 +02:00
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class KernelCore;
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2021-02-13 02:58:31 +01:00
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class KPageTable;
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2021-01-30 10:40:49 +01:00
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class KResourceLimit;
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2020-12-31 08:01:08 +01:00
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class KThread;
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2021-09-25 17:01:53 +02:00
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class KSharedMemoryInfo;
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2019-06-05 20:32:33 +02:00
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class TLSPage;
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2018-08-28 18:30:33 +02:00
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2019-03-20 17:40:09 +01:00
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struct CodeSet;
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2015-05-08 22:53:19 +02:00
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enum class MemoryRegion : u16 {
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2015-05-04 05:01:16 +02:00
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APPLICATION = 1,
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SYSTEM = 2,
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BASE = 3,
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};
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2018-10-13 20:31:46 +02:00
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/**
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* Indicates the status of a Process instance.
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*
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* @note These match the values as used by kernel,
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* so new entries should only be added if RE
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* shows that a new value has been introduced.
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*/
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enum class ProcessStatus {
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Created,
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CreatedWithDebuggerAttached,
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Running,
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WaitingForDebuggerToAttach,
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DebuggerAttached,
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Exiting,
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Exited,
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DebugBreak,
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};
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2015-07-10 03:52:15 +02:00
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2021-04-24 07:04:28 +02:00
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class KProcess final
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: public KAutoObjectWithSlabHeapAndContainer<KProcess, KSynchronizationObject> {
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KERNEL_AUTOOBJECT_TRAITS(KProcess, KSynchronizationObject);
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2021-04-04 07:22:36 +02:00
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2015-05-04 05:01:16 +02:00
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public:
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explicit KProcess(KernelCore& kernel_);
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2021-04-24 07:04:28 +02:00
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~KProcess() override;
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2019-11-25 02:15:51 +01:00
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2018-12-19 04:53:58 +01:00
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enum : u64 {
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/// Lowest allowed process ID for a kernel initial process.
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InitialKIPIDMin = 1,
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/// Highest allowed process ID for a kernel initial process.
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InitialKIPIDMax = 80,
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/// Lowest allowed process ID for a userland process.
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ProcessIDMin = 81,
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/// Highest allowed process ID for a userland process.
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ProcessIDMax = 0xFFFFFFFFFFFFFFFF,
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};
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2019-06-10 06:28:33 +02:00
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// Used to determine how process IDs are assigned.
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enum class ProcessType {
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KernelInternal,
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Userland,
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};
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2018-11-13 18:25:43 +01:00
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static constexpr std::size_t RANDOM_ENTROPY_SIZE = 4;
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2021-05-08 18:11:36 +02:00
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static ResultCode Initialize(KProcess* process, Core::System& system, std::string process_name,
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2021-04-04 07:22:36 +02:00
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ProcessType type);
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2015-05-04 05:01:16 +02:00
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2020-04-09 04:19:12 +02:00
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/// Gets a reference to the process' page table.
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2021-02-13 02:58:31 +01:00
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KPageTable& PageTable() {
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2020-04-09 04:19:12 +02:00
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return *page_table;
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2018-09-30 00:47:00 +02:00
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}
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2020-04-09 04:19:12 +02:00
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/// Gets const a reference to the process' page table.
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2021-02-13 02:58:31 +01:00
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const KPageTable& PageTable() const {
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2020-04-09 04:19:12 +02:00
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return *page_table;
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2018-09-30 00:47:00 +02:00
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}
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2018-10-20 20:34:41 +02:00
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/// Gets a reference to the process' handle table.
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2021-04-24 11:40:31 +02:00
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KHandleTable& GetHandleTable() {
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2018-10-20 20:34:41 +02:00
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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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2021-04-24 11:40:31 +02:00
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const KHandleTable& GetHandleTable() const {
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2018-10-20 20:34:41 +02:00
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return handle_table;
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}
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2020-12-30 10:14:02 +01:00
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ResultCode SignalToAddress(VAddr address) {
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return condition_var.SignalToAddress(address);
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2019-03-08 00:48:14 +01:00
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}
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2020-12-30 10:14:02 +01:00
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ResultCode WaitForAddress(Handle handle, VAddr address, u32 tag) {
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return condition_var.WaitForAddress(handle, address, tag);
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2019-03-08 00:48:14 +01:00
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}
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2020-12-30 10:14:02 +01:00
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void SignalConditionVariable(u64 cv_key, int32_t count) {
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return condition_var.Signal(cv_key, count);
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2019-03-14 05:29:54 +01:00
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}
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2020-12-30 10:14:02 +01:00
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ResultCode WaitConditionVariable(VAddr address, u64 cv_key, u32 tag, s64 ns) {
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return condition_var.Wait(address, cv_key, tag, ns);
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}
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ResultCode SignalAddressArbiter(VAddr address, Svc::SignalType signal_type, s32 value,
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s32 count) {
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return address_arbiter.SignalToAddress(address, signal_type, value, count);
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}
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ResultCode WaitAddressArbiter(VAddr address, Svc::ArbitrationType arb_type, s32 value,
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s64 timeout) {
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return address_arbiter.WaitForAddress(address, arb_type, value, timeout);
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2019-03-14 05:29:54 +01:00
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}
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2019-07-07 10:19:16 +02:00
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/// Gets the address to the process' dedicated TLS region.
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VAddr GetTLSRegionAddress() const {
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return tls_region_address;
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}
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2018-09-21 08:06:47 +02:00
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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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}
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/// Gets the unique ID that identifies this particular process.
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2018-12-19 04:16:53 +01:00
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u64 GetProcessID() const {
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2018-09-21 08:06:47 +02:00
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return process_id;
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}
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2018-09-30 00:47:00 +02:00
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/// Gets the title ID corresponding to this process.
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u64 GetTitleID() const {
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return program_id;
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}
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/// Gets the resource limit descriptor for this process
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2021-04-21 06:28:11 +02:00
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KResourceLimit* GetResourceLimit() const;
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2018-09-30 00:47:00 +02:00
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2018-12-28 03:14:59 +01:00
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/// Gets the ideal CPU core ID for this process
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2021-01-03 10:49:18 +01:00
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u8 GetIdealCoreId() const {
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2018-12-28 03:14:59 +01:00
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return ideal_core;
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2018-09-30 00:47:00 +02:00
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}
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2021-01-03 10:49:18 +01:00
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/// Checks if the specified thread priority is valid.
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bool CheckThreadPriority(s32 prio) const {
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return ((1ULL << prio) & GetPriorityMask()) != 0;
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}
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2018-12-31 03:09:00 +01:00
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/// Gets the bitmask of allowed cores that this process' threads can run on.
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u64 GetCoreMask() const {
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2018-12-20 05:50:20 +01:00
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return capabilities.GetCoreMask();
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2018-09-30 00:47:00 +02:00
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}
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/// Gets the bitmask of allowed thread priorities.
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2018-12-31 03:09:00 +01:00
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u64 GetPriorityMask() const {
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2018-12-20 05:50:20 +01:00
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return capabilities.GetPriorityMask();
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2018-09-30 00:47:00 +02:00
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}
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2019-07-07 18:42:54 +02:00
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/// Gets the amount of secure memory to allocate for memory management.
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u32 GetSystemResourceSize() const {
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return system_resource_size;
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2018-09-30 00:47:00 +02:00
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}
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2019-07-07 20:48:11 +02:00
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/// Gets the amount of secure memory currently in use for memory management.
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u32 GetSystemResourceUsage() const {
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// On hardware, this returns the amount of system resource memory that has
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// been used by the kernel. This is problematic for Yuzu to emulate, because
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// system resource memory is used for page tables -- and yuzu doesn't really
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// have a way to calculate how much memory is required for page tables for
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// the current process at any given time.
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// TODO: Is this even worth implementing? Games may retrieve this value via
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// an SDK function that gets used + available system resource size for debug
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// or diagnostic purposes. However, it seems unlikely that a game would make
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// decisions based on how much system memory is dedicated to its page tables.
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// Is returning a value other than zero wise?
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return 0;
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}
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2018-09-30 01:13:46 +02:00
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/// Whether this process is an AArch64 or AArch32 process.
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bool Is64BitProcess() const {
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return is_64bit_process;
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}
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2021-01-20 22:42:27 +01:00
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[[nodiscard]] bool IsSuspended() const {
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return is_suspended;
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}
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void SetSuspended(bool suspended) {
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is_suspended = suspended;
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}
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2018-10-26 00:42:50 +02:00
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/// Gets the total running time of the process instance in ticks.
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u64 GetCPUTimeTicks() const {
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return total_process_running_time_ticks;
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}
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/// Updates the total running time, adding the given ticks to it.
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void UpdateCPUTimeTicks(u64 ticks) {
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total_process_running_time_ticks += ticks;
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}
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2020-11-28 20:54:41 +01:00
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/// Gets the process schedule count, used for thread yelding
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2020-12-06 09:25:58 +01:00
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s64 GetScheduledCount() const {
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2020-11-28 20:54:41 +01:00
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return schedule_count;
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}
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/// Increments the process schedule count, used for thread yielding.
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2020-12-06 09:25:58 +01:00
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void IncrementScheduledCount() {
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2020-11-28 20:54:41 +01:00
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++schedule_count;
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}
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2021-01-20 22:42:27 +01:00
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void IncrementThreadCount();
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void DecrementThreadCount();
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void SetRunningThread(s32 core, KThread* thread, u64 idle_count) {
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running_threads[core] = thread;
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running_thread_idle_counts[core] = idle_count;
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}
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void ClearRunningThread(KThread* thread) {
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for (size_t i = 0; i < running_threads.size(); ++i) {
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if (running_threads[i] == thread) {
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running_threads[i] = nullptr;
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}
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}
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}
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[[nodiscard]] KThread* GetRunningThread(s32 core) const {
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return running_threads[core];
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}
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bool ReleaseUserException(KThread* thread);
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[[nodiscard]] KThread* GetPinnedThread(s32 core_id) const {
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ASSERT(0 <= core_id && core_id < static_cast<s32>(Core::Hardware::NUM_CPU_CORES));
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return pinned_threads[core_id];
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}
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2018-11-13 18:25:43 +01:00
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/// Gets 8 bytes of random data for svcGetInfo RandomEntropy
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u64 GetRandomEntropy(std::size_t index) const {
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return random_entropy.at(index);
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}
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2019-06-10 00:20:20 +02:00
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/// Retrieves the total physical memory available to this process in bytes.
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u64 GetTotalPhysicalMemoryAvailable() const;
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/// Retrieves the total physical memory available to this process in bytes,
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2019-07-07 20:48:11 +02:00
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/// without the size of the personal system resource heap added to it.
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u64 GetTotalPhysicalMemoryAvailableWithoutSystemResource() const;
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2019-06-10 00:20:20 +02:00
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2019-03-29 03:59:17 +01:00
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/// Retrieves the total physical memory used by this process in bytes.
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u64 GetTotalPhysicalMemoryUsed() const;
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2019-06-10 00:20:20 +02:00
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/// Retrieves the total physical memory used by this process in bytes,
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2019-07-07 20:48:11 +02:00
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/// without the size of the personal system resource heap added to it.
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u64 GetTotalPhysicalMemoryUsedWithoutSystemResource() const;
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2019-06-10 00:20:20 +02:00
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2019-03-20 23:53:48 +01:00
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/// Gets the list of all threads created with this process as their owner.
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2020-12-31 08:01:08 +01:00
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const std::list<const KThread*>& GetThreadList() const {
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2019-03-20 23:53:48 +01:00
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return thread_list;
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}
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/// Registers a thread as being created under this process,
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/// adding it to this process' thread list.
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2020-12-31 08:01:08 +01:00
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void RegisterThread(const KThread* thread);
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2019-03-20 23:53:48 +01:00
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/// Unregisters a thread from this process, removing it
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/// from this process' thread list.
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2020-12-31 08:01:08 +01:00
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void UnregisterThread(const KThread* thread);
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2019-03-20 23:53:48 +01:00
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2018-12-05 01:08:56 +01:00
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/// Clears the signaled state of the process if and only if it's signaled.
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///
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/// @pre The process must not be already terminated. If this is called on a
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/// terminated process, then ERR_INVALID_STATE will be returned.
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///
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/// @pre The process must be in a signaled state. If this is called on a
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/// process instance that is not signaled, ERR_INVALID_STATE will be
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/// returned.
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2021-02-01 01:55:11 +01:00
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ResultCode Reset();
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2018-12-05 01:08:56 +01:00
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2018-09-23 02:09:32 +02:00
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/**
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* Loads process-specifics configuration info with metadata provided
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* by an executable.
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*
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2018-12-20 05:50:20 +01:00
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* @param metadata The provided metadata to load process specific info from.
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*
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2021-05-21 07:05:04 +02:00
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* @returns ResultSuccess if all relevant metadata was able to be
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2018-12-20 05:50:20 +01:00
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* loaded and parsed. Otherwise, an error code is returned.
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2015-05-08 23:11:06 +02:00
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*/
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2020-04-09 04:19:12 +02:00
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ResultCode LoadFromMetadata(const FileSys::ProgramMetadata& metadata, std::size_t code_size);
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2015-05-08 23:11:06 +02:00
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/**
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2019-04-09 23:03:04 +02:00
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* Starts the main application thread for this process.
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*
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* @param main_thread_priority The priority for the main thread.
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* @param stack_size The stack size for the main thread in bytes.
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2015-05-08 23:11:06 +02:00
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*/
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2019-04-09 23:03:04 +02:00
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void Run(s32 main_thread_priority, u64 stack_size);
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2015-05-04 05:01:16 +02:00
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2018-09-21 08:06:47 +02:00
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/**
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* Prepares a process for termination by stopping all of its threads
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* and clearing any other resources.
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*/
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void PrepareForTermination();
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2020-04-09 04:19:12 +02:00
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void LoadModule(CodeSet code_set, VAddr base_addr);
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2017-09-24 17:12:16 +02:00
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2021-05-29 08:49:07 +02:00
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bool IsInitialized() const override {
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2021-04-04 07:22:36 +02:00
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return is_initialized;
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}
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static void PostDestroy([[maybe_unused]] uintptr_t arg) {}
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2021-05-29 08:49:07 +02:00
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void Finalize() override;
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2021-04-04 07:22:36 +02:00
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2021-05-29 08:49:07 +02:00
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u64 GetId() const override {
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2021-04-04 07:22:36 +02:00
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return GetProcessID();
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}
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2020-12-22 07:36:53 +01:00
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2021-05-29 08:49:07 +02:00
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bool IsSignaled() const override;
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2021-01-16 09:25:29 +01:00
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2021-01-20 22:42:27 +01:00
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void PinCurrentThread();
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void UnpinCurrentThread();
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2021-01-25 07:54:37 +01:00
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KLightLock& GetStateLock() {
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return state_lock;
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}
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2021-04-30 23:53:22 +02:00
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ResultCode AddSharedMemory(KSharedMemory* shmem, VAddr address, size_t size);
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void RemoveSharedMemory(KSharedMemory* shmem, VAddr address, size_t size);
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2015-07-18 04:19:16 +02:00
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///////////////////////////////////////////////////////////////////////////////////////////////
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2018-12-28 00:31:31 +01:00
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// Thread-local storage management
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2015-07-18 04:19:16 +02:00
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2018-09-21 07:26:29 +02:00
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// Marks the next available region as used and returns the address of the slot.
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2019-06-05 20:32:33 +02:00
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[[nodiscard]] VAddr CreateTLSRegion();
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2018-09-21 07:26:29 +02:00
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// Frees a used TLS slot identified by the given address
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2019-06-05 20:32:33 +02:00
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void FreeTLSRegion(VAddr tls_address);
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2018-09-21 07:26:29 +02:00
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private:
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2021-01-20 22:42:27 +01:00
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void PinThread(s32 core_id, KThread* thread) {
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ASSERT(0 <= core_id && core_id < static_cast<s32>(Core::Hardware::NUM_CPU_CORES));
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ASSERT(thread != nullptr);
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ASSERT(pinned_threads[core_id] == nullptr);
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pinned_threads[core_id] = thread;
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}
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void UnpinThread(s32 core_id, KThread* thread) {
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ASSERT(0 <= core_id && core_id < static_cast<s32>(Core::Hardware::NUM_CPU_CORES));
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ASSERT(thread != nullptr);
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ASSERT(pinned_threads[core_id] == thread);
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pinned_threads[core_id] = nullptr;
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}
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|
2018-12-05 01:08:56 +01:00
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/// Changes the process status. If the status is different
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/// from the current process status, then this will trigger
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/// a process signal.
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void ChangeStatus(ProcessStatus new_status);
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|
2019-07-07 10:13:56 +02:00
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/// Allocates the main thread stack for the process, given the stack size in bytes.
|
2020-04-09 04:19:12 +02:00
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ResultCode AllocateMainThreadStack(std::size_t stack_size);
|
2019-03-28 23:30:58 +01:00
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|
2020-04-09 04:19:12 +02:00
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/// Memory manager for this process
|
2021-02-13 02:58:31 +01:00
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std::unique_ptr<KPageTable> page_table;
|
2019-03-28 23:52:45 +01:00
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|
2018-09-21 08:06:47 +02:00
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|
/// Current status of the process
|
2019-06-05 21:08:01 +02:00
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ProcessStatus status{};
|
2018-09-21 08:06:47 +02:00
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/// The ID of this process
|
2018-12-19 04:16:53 +01:00
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|
u64 process_id = 0;
|
2018-09-21 08:06:47 +02:00
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|
2018-09-30 00:47:00 +02:00
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|
|
/// Title ID corresponding to the process
|
2018-12-19 04:16:53 +01:00
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|
u64 program_id = 0;
|
2018-09-30 00:47:00 +02:00
|
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|
2019-07-07 18:42:54 +02:00
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|
/// Specifies additional memory to be reserved for the process's memory management by the
|
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|
|
/// system. When this is non-zero, secure memory is allocated and used for page table allocation
|
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|
|
/// instead of using the normal global page tables/memory block management.
|
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|
|
u32 system_resource_size = 0;
|
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|
|
2018-09-30 00:47:00 +02:00
|
|
|
/// Resource limit descriptor for this process
|
2021-04-21 06:28:11 +02:00
|
|
|
KResourceLimit* resource_limit{};
|
2018-09-30 00:47:00 +02:00
|
|
|
|
2018-12-28 03:14:59 +01:00
|
|
|
/// The ideal CPU core for this process, threads are scheduled on this core by default.
|
|
|
|
u8 ideal_core = 0;
|
2018-09-30 00:47:00 +02:00
|
|
|
|
2016-04-20 00:12:48 +02:00
|
|
|
/// The Thread Local Storage area is allocated as processes create threads,
|
|
|
|
/// each TLS area is 0x200 bytes, so one page (0x1000) is split up in 8 parts, and each part
|
2016-09-18 02:38:01 +02:00
|
|
|
/// holds the TLS for a specific thread. This vector contains which parts are in use for each
|
|
|
|
/// page as a bitmask.
|
2016-04-20 00:12:48 +02:00
|
|
|
/// This vector will grow as more pages are allocated for new threads.
|
2019-06-05 20:32:33 +02:00
|
|
|
std::vector<TLSPage> tls_pages;
|
2015-07-18 04:19:16 +02:00
|
|
|
|
2018-12-20 05:50:20 +01:00
|
|
|
/// Contains the parsed process capability descriptors.
|
|
|
|
ProcessCapabilities capabilities;
|
|
|
|
|
2018-09-30 01:13:46 +02:00
|
|
|
/// Whether or not this process is AArch64, or AArch32.
|
|
|
|
/// By default, we currently assume this is true, unless otherwise
|
|
|
|
/// specified by metadata provided to the process during loading.
|
|
|
|
bool is_64bit_process = true;
|
|
|
|
|
2018-10-26 00:42:50 +02:00
|
|
|
/// Total running time for the process in ticks.
|
|
|
|
u64 total_process_running_time_ticks = 0;
|
|
|
|
|
2018-10-20 20:34:41 +02:00
|
|
|
/// Per-process handle table for storing created object handles in.
|
2021-04-24 11:40:31 +02:00
|
|
|
KHandleTable handle_table;
|
2018-10-20 20:34:41 +02:00
|
|
|
|
2019-03-08 00:48:14 +01:00
|
|
|
/// Per-process address arbiter.
|
2020-12-30 10:14:02 +01:00
|
|
|
KAddressArbiter address_arbiter;
|
2019-03-08 00:48:14 +01:00
|
|
|
|
2019-03-14 05:29:54 +01:00
|
|
|
/// The per-process mutex lock instance used for handling various
|
|
|
|
/// forms of services, such as lock arbitration, and condition
|
|
|
|
/// variable related facilities.
|
2020-12-30 10:14:02 +01:00
|
|
|
KConditionVariable condition_var;
|
2019-03-14 05:29:54 +01:00
|
|
|
|
2019-07-07 10:19:16 +02:00
|
|
|
/// Address indicating the location of the process' dedicated TLS region.
|
|
|
|
VAddr tls_region_address = 0;
|
|
|
|
|
2018-11-13 18:25:43 +01:00
|
|
|
/// Random values for svcGetInfo RandomEntropy
|
2019-06-05 21:08:01 +02:00
|
|
|
std::array<u64, RANDOM_ENTROPY_SIZE> random_entropy{};
|
2018-11-13 18:25:43 +01:00
|
|
|
|
2019-03-20 23:53:48 +01:00
|
|
|
/// List of threads that are running with this process as their owner.
|
2020-12-31 08:01:08 +01:00
|
|
|
std::list<const KThread*> thread_list;
|
2019-03-20 23:53:48 +01:00
|
|
|
|
2021-09-25 17:01:53 +02:00
|
|
|
/// List of shared memory that are running with this process as their owner.
|
|
|
|
std::list<KSharedMemoryInfo*> shared_memory_list;
|
|
|
|
|
2020-04-09 04:19:12 +02:00
|
|
|
/// Address of the top of the main thread's stack
|
|
|
|
VAddr main_thread_stack_top{};
|
|
|
|
|
|
|
|
/// Size of the main thread's stack
|
|
|
|
std::size_t main_thread_stack_size{};
|
|
|
|
|
|
|
|
/// Memory usage capacity for the process
|
|
|
|
std::size_t memory_usage_capacity{};
|
|
|
|
|
|
|
|
/// Process total image size
|
|
|
|
std::size_t image_size{};
|
2020-07-15 19:23:12 +02:00
|
|
|
|
2020-11-28 20:54:41 +01:00
|
|
|
/// Schedule count of this process
|
|
|
|
s64 schedule_count{};
|
|
|
|
|
2020-12-22 07:36:53 +01:00
|
|
|
bool is_signaled{};
|
2021-01-20 22:42:27 +01:00
|
|
|
bool is_suspended{};
|
2021-04-04 07:22:36 +02:00
|
|
|
bool is_initialized{};
|
2021-01-20 22:42:27 +01:00
|
|
|
|
|
|
|
std::atomic<s32> num_created_threads{};
|
|
|
|
std::atomic<u16> num_threads{};
|
|
|
|
u16 peak_num_threads{};
|
|
|
|
|
|
|
|
std::array<KThread*, Core::Hardware::NUM_CPU_CORES> running_threads{};
|
|
|
|
std::array<u64, Core::Hardware::NUM_CPU_CORES> running_thread_idle_counts{};
|
|
|
|
std::array<KThread*, Core::Hardware::NUM_CPU_CORES> pinned_threads{};
|
|
|
|
|
|
|
|
KThread* exception_thread{};
|
2020-12-22 07:36:53 +01:00
|
|
|
|
2021-01-25 07:54:37 +01:00
|
|
|
KLightLock state_lock;
|
2015-05-04 05:01:16 +02:00
|
|
|
};
|
|
|
|
|
2018-01-01 20:38:34 +01:00
|
|
|
} // namespace Kernel
|