mirror of
https://git.suyu.dev/suyu/suyu.git
synced 2024-11-22 02:41:49 -05:00
- added HLE to connect to "srv:" service
- added a manager for keeping track of services/ports - added a memory mapped region for memory accessed by HLE - added HLE for GetThreadCommandBuffer function
This commit is contained in:
parent
4d88318903
commit
68e198476f
11 changed files with 384 additions and 166 deletions
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@ -19,6 +19,8 @@
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#include "armemu.h"
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//#include "ansidecl.h"
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#include "skyeye_defs.h"
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#include "core/hle/hle.h"
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unsigned xscale_cp15_cp_access_allowed (ARMul_State * state, unsigned reg,
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unsigned cpnum);
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//extern int skyeye_instr_debug;
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@ -734,39 +736,39 @@ ARMword
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ARMul_MRC (ARMul_State * state, ARMword instr)
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{
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unsigned cpab;
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ARMword result = 0;
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ARMword result = HLE::CallGetThreadCommandBuffer();
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//printf("SKYEYE ARMul_MRC, CPnum is %x, instr %x\n",CPNum, instr);
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if (!CP_ACCESS_ALLOWED (state, CPNum)) {
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//chy 2004-07-19 should fix in the future????!!!!
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//printf("SKYEYE ARMul_MRC,NOT ALLOWed UndefInstr CPnum is %x, instr %x\n",CPNum, instr);
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ARMul_UndefInstr (state, instr);
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return -1;
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}
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////printf("SKYEYE ARMul_MRC, CPnum is %x, instr %x\n",CPNum, instr);
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//if (!CP_ACCESS_ALLOWED (state, CPNum)) {
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// //chy 2004-07-19 should fix in the future????!!!!
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// //printf("SKYEYE ARMul_MRC,NOT ALLOWed UndefInstr CPnum is %x, instr %x\n",CPNum, instr);
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// ARMul_UndefInstr (state, instr);
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// return -1;
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//}
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cpab = (state->MRC[CPNum]) (state, ARMul_FIRST, instr, &result);
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while (cpab == ARMul_BUSY) {
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ARMul_Icycles (state, 1, 0);
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if (IntPending (state)) {
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cpab = (state->MRC[CPNum]) (state, ARMul_INTERRUPT,
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instr, 0);
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return (0);
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}
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else
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cpab = (state->MRC[CPNum]) (state, ARMul_BUSY, instr,
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&result);
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}
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if (cpab == ARMul_CANT) {
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printf ("SKYEYE ARMul_MRC,CANT UndefInstr CPnum is %x, instr %x\n", CPNum, instr);
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ARMul_Abort (state, ARMul_UndefinedInstrV);
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/* Parent will destroy the flags otherwise. */
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result = ECC;
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}
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else {
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BUSUSEDINCPCN;
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ARMul_Ccycles (state, 1, 0);
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ARMul_Icycles (state, 1, 0);
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}
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//cpab = (state->MRC[CPNum]) (state, ARMul_FIRST, instr, &result);
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//while (cpab == ARMul_BUSY) {
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// ARMul_Icycles (state, 1, 0);
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// if (IntPending (state)) {
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// cpab = (state->MRC[CPNum]) (state, ARMul_INTERRUPT,
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// instr, 0);
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// return (0);
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// }
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// else
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// cpab = (state->MRC[CPNum]) (state, ARMul_BUSY, instr,
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// &result);
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//}
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//if (cpab == ARMul_CANT) {
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// printf ("SKYEYE ARMul_MRC,CANT UndefInstr CPnum is %x, instr %x\n", CPNum, instr);
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// ARMul_Abort (state, ARMul_UndefinedInstrV);
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// /* Parent will destroy the flags otherwise. */
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// result = ECC;
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//}
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//else {
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// BUSUSEDINCPCN;
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// ARMul_Ccycles (state, 1, 0);
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// ARMul_Icycles (state, 1, 0);
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//}
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return result;
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}
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@ -153,6 +153,7 @@
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<ClCompile Include="file_sys\directory_file_system.cpp" />
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<ClCompile Include="file_sys\meta_file_system.cpp" />
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<ClCompile Include="hle\hle.cpp" />
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<ClCompile Include="hle\service\service.cpp" />
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<ClCompile Include="hle\syscall.cpp" />
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<ClCompile Include="hw\hw.cpp" />
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<ClCompile Include="hw\hw_lcd.cpp" />
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@ -87,6 +87,9 @@
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<ClCompile Include="hle\syscall.cpp">
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<Filter>hle</Filter>
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</ClCompile>
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<ClCompile Include="hle\service\service.cpp">
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<Filter>hle\service</Filter>
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</ClCompile>
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</ItemGroup>
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<ItemGroup>
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<ClInclude Include="arm\disassembler\arm_disasm.h">
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@ -4,8 +4,10 @@
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#include <vector>
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#include "core/mem_map.h"
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#include "core/hle/hle.h"
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#include "core/hle/syscall.h"
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#include "core/hle/service/service.h"
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////////////////////////////////////////////////////////////////////////////////////////////////////
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@ -35,6 +37,14 @@ void CallSyscall(u32 opcode) {
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}
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}
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/// Returns the coprocessor (in this case, syscore) command buffer pointer
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Addr CallGetThreadCommandBuffer() {
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// Called on insruction: mrc p15, 0, r0, c13, c0, 3
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// Returns an address in OSHLE memory for the CPU to read/write to
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RETURN(OS_THREAD_COMMAND_BUFFER_ADDR);
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return OS_THREAD_COMMAND_BUFFER_ADDR;
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}
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void RegisterModule(std::string name, int num_functions, const FunctionDef* func_table) {
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ModuleDef module = {name, num_functions, func_table};
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g_module_db.push_back(module);
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@ -45,7 +55,10 @@ void RegisterAllModules() {
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}
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void Init() {
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Service::Init();
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RegisterAllModules();
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NOTICE_LOG(HLE, "initialized OK");
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}
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@ -16,6 +16,11 @@
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namespace HLE {
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enum {
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OS_THREAD_COMMAND_BUFFER_ADDR = 0xA0004000,
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};
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typedef u32 Addr;
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typedef void (*Func)();
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struct FunctionDef {
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@ -34,6 +39,8 @@ void RegisterModule(std::string name, int num_functions, const FunctionDef *func
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void CallSyscall(u32 opcode);
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Addr CallGetThreadCommandBuffer();
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void Init();
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void Shutdown();
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115
src/core/hle/service/service.cpp
Normal file
115
src/core/hle/service/service.cpp
Normal file
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@ -0,0 +1,115 @@
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// Copyright 2014 Citra Emulator Project
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// Licensed under GPLv2
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// Refer to the license.txt file included.
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#include "common/common.h"
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#include "common/log.h"
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#include "core/hle/service/service.h"
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////////////////////////////////////////////////////////////////////////////////////////////////////
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// Namespace Service
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namespace Service {
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Manager* g_manager = NULL; ///< Service manager
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Manager::Manager() {
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}
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Manager::~Manager() {
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for(Interface* service : m_services) {
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DeleteService(service->GetPortName());
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}
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}
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/// Add a service to the manager (does not create it though)
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void Manager::AddService(Interface* service) {
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int index = m_services.size();
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u32 new_uid = GetUIDFromIndex(index);
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m_services.push_back(service);
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m_port_map[service->GetPortName()] = new_uid;
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service->m_uid = new_uid;
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}
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/// Removes a service from the manager, also frees memory
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void Manager::DeleteService(std::string port_name) {
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auto service = FetchFromPortName(port_name);
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m_services.erase(m_services.begin() + GetIndexFromUID(service->m_uid));
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m_port_map.erase(port_name);
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delete service;
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}
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/// Get a Service Interface from its UID
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Interface* Manager::FetchFromUID(u32 uid) {
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int index = GetIndexFromUID(uid);
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if (index < (int)m_services.size()) {
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return m_services[index];
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}
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return NULL;
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}
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/// Get a Service Interface from its port
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Interface* Manager::FetchFromPortName(std::string port_name) {
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auto itr = m_port_map.find(port_name);
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if (itr == m_port_map.end()) {
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return NULL;
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}
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return FetchFromUID(itr->second);
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}
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class Interface_SRV : public Interface {
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public:
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Interface_SRV() {
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}
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~Interface_SRV() {
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}
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/**
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* Gets the string name used by CTROS for a service
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* @return String name of service
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*/
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std::string GetName() {
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return "ServiceManager";
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}
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/**
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* Gets the string name used by CTROS for a service
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* @return Port name of service
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*/
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std::string GetPortName() {
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return "srv:";
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}
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/**
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* Called when svcSendSyncRequest is called, loads command buffer and executes comand
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* @return Return result of svcSendSyncRequest passed back to user app
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*/
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Syscall::Result Sync() {
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ERROR_LOG(HLE, "Unimplemented function ServiceManager::Sync");
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return -1;
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}
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};
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/// Initialize ServiceManager
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void Init() {
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g_manager = new Manager;
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g_manager->AddService(new Interface_SRV);
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NOTICE_LOG(HLE, "ServiceManager initialized OK");
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}
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/// Shutdown ServiceManager
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void Shutdown() {
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delete g_manager;
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NOTICE_LOG(HLE, "ServiceManager shutdown OK");
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}
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}
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@ -4,6 +4,8 @@
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#pragma once
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#include <vector>
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#include <map>
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#include <string>
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#include "common/common_types.h"
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namespace Service {
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typedef s32 NativeUID;
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typedef s32 NativeUID; ///< Native handle for a service
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class Manager;
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/// Interface to a CTROS service
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class Interface {
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friend class Manager;
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public:
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virtual ~Interface() {
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* Gets the string name used by CTROS for a service
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* @return Port name of service
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*/
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virtual std::string GetPort() {
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virtual std::string GetPortName() {
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return "[UNKNOWN SERVICE PORT]";
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}
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u32 m_uid;
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};
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/// Simple class to manage accessing services from ports and UID handles
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class Manager {
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public:
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Manager();
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~Manager();
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/// Add a service to the manager (does not create it though)
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void AddService(Interface* service);
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/// Removes a service from the manager (does not delete it though)
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void DeleteService(std::string port_name);
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/// Get a Service Interface from its UID
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Interface* FetchFromUID(u32 uid);
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/// Get a Service Interface from its port
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Interface* FetchFromPortName(std::string port_name);
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private:
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/// Convert an index into m_services vector into a UID
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static u32 GetUIDFromIndex(const int index) {
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return index | 0x10000000;
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}
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/// Convert a UID into an index into m_services
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static int GetIndexFromUID(const u32 uid) {
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return uid & 0x0FFFFFFF;
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}
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std::vector<Interface*> m_services;
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std::map<std::string, u32> m_port_map;
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DISALLOW_COPY_AND_ASSIGN(Manager);
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};
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/// Initialize ServiceManager
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void Init();
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/// Shutdown ServiceManager
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void Shutdown();
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extern Manager* g_manager; ///< Service manager
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} // namespace
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@ -6,81 +6,91 @@
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#include "core/hle/function_wrappers.h"
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#include "core/hle/syscall.h"
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#include "core/hle/service/service.h"
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////////////////////////////////////////////////////////////////////////////////////////////////////
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// Namespace Syscall
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namespace Syscall {
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Result SVC_ConnectToPort(void* out, const char* port_name) {
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NOTICE_LOG(OSHLE, "svcConnectToPort called, port_name: %s", port_name);
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/// Connect to an OS service given the port name, returns the handle to the port to out
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Result ConnectToPort(void* out, const char* port_name) {
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Service::Interface* service = Service::g_manager->FetchFromPortName(port_name);
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Core::g_app_core->SetReg(1, service->GetUID());
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return 0;
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}
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/// Synchronize to an OS service
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Result SendSyncRequest(Handle session) {
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Service::Interface* service = Service::g_manager->FetchFromUID(session);
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service->Sync();
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return 0;
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}
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const HLE::FunctionDef Syscall_Table[] = {
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{0x00, NULL, "Unknown"},
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{0x01, NULL, "svcControlMemory"},
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{0x02, NULL, "svcQueryMemory"},
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{0x03, NULL, "svcExitProcess"},
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{0x04, NULL, "svcGetProcessAffinityMask"},
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{0x05, NULL, "svcSetProcessAffinityMask"},
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{0x06, NULL, "svcGetProcessIdealProcessor"},
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{0x07, NULL, "svcSetProcessIdealProcessor"},
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{0x08, NULL, "svcCreateThread"},
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{0x09, NULL, "svcExitThread"},
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{0x0A, NULL, "svcSleepThread"},
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{0x0B, NULL, "svcGetThreadPriority"},
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{0x0C, NULL, "svcSetThreadPriority"},
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{0x0D, NULL, "svcGetThreadAffinityMask"},
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{0x0E, NULL, "svcSetThreadAffinityMask"},
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{0x0F, NULL, "svcGetThreadIdealProcessor"},
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{0x10, NULL, "svcSetThreadIdealProcessor"},
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{0x11, NULL, "svcGetCurrentProcessorNumber"},
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{0x12, NULL, "svcRun"},
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{0x13, NULL, "svcCreateMutex"},
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{0x14, NULL, "svcReleaseMutex"},
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{0x15, NULL, "svcCreateSemaphore"},
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{0x16, NULL, "svcReleaseSemaphore"},
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{0x17, NULL, "svcCreateEvent"},
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{0x18, NULL, "svcSignalEvent"},
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{0x19, NULL, "svcClearEvent"},
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{0x1A, NULL, "svcCreateTimer"},
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{0x1B, NULL, "svcSetTimer"},
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{0x1C, NULL, "svcCancelTimer"},
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{0x1D, NULL, "svcClearTimer"},
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{0x1E, NULL, "svcCreateMemoryBlock"},
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{0x1F, NULL, "svcMapMemoryBlock"},
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{0x20, NULL, "svcUnmapMemoryBlock"},
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{0x21, NULL, "svcCreateAddressArbiter"},
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{0x22, NULL, "svcArbitrateAddress"},
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{0x23, NULL, "svcCloseHandle"},
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{0x24, NULL, "svcWaitSynchronization1"},
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{0x25, NULL, "svcWaitSynchronizationN"},
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{0x26, NULL, "svcSignalAndWait"},
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{0x27, NULL, "svcDuplicateHandle"},
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{0x28, NULL, "svcGetSystemTick"},
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{0x29, NULL, "svcGetHandleInfo"},
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{0x2A, NULL, "svcGetSystemInfo"},
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{0x2B, NULL, "svcGetProcessInfo"},
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{0x2C, NULL, "svcGetThreadInfo"},
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{0x2D, WrapI_VC<SVC_ConnectToPort>, "svcConnectToPort"},
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{0x2E, NULL, "svcSendSyncRequest1"},
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{0x2F, NULL, "svcSendSyncRequest2"},
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{0x30, NULL, "svcSendSyncRequest3"},
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{0x31, NULL, "svcSendSyncRequest4"},
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{0x32, NULL, "svcSendSyncRequest"},
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{0x33, NULL, "svcOpenProcess"},
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{0x34, NULL, "svcOpenThread"},
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{0x35, NULL, "svcGetProcessId"},
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{0x36, NULL, "svcGetProcessIdOfThread"},
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{0x37, NULL, "svcGetThreadId"},
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{0x38, NULL, "svcGetResourceLimit"},
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{0x39, NULL, "svcGetResourceLimitLimitValues"},
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{0x3A, NULL, "svcGetResourceLimitCurrentValues"},
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{0x3B, NULL, "svcGetThreadContext"},
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{0x3C, NULL, "svcBreak"},
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{0x3D, NULL, "svcOutputDebugString"},
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{0x3E, NULL, "svcControlPerformanceCounter"},
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{0x01, NULL, "ControlMemory"},
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{0x02, NULL, "QueryMemory"},
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{0x03, NULL, "ExitProcess"},
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{0x04, NULL, "GetProcessAffinityMask"},
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{0x05, NULL, "SetProcessAffinityMask"},
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{0x06, NULL, "GetProcessIdealProcessor"},
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{0x07, NULL, "SetProcessIdealProcessor"},
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{0x08, NULL, "CreateThread"},
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{0x09, NULL, "ExitThread"},
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{0x0A, NULL, "SleepThread"},
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{0x0B, NULL, "GetThreadPriority"},
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{0x0C, NULL, "SetThreadPriority"},
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{0x0D, NULL, "GetThreadAffinityMask"},
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{0x0E, NULL, "SetThreadAffinityMask"},
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{0x0F, NULL, "GetThreadIdealProcessor"},
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{0x10, NULL, "SetThreadIdealProcessor"},
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{0x11, NULL, "GetCurrentProcessorNumber"},
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||||
{0x12, NULL, "Run"},
|
||||
{0x13, NULL, "CreateMutex"},
|
||||
{0x14, NULL, "ReleaseMutex"},
|
||||
{0x15, NULL, "CreateSemaphore"},
|
||||
{0x16, NULL, "ReleaseSemaphore"},
|
||||
{0x17, NULL, "CreateEvent"},
|
||||
{0x18, NULL, "SignalEvent"},
|
||||
{0x19, NULL, "ClearEvent"},
|
||||
{0x1A, NULL, "CreateTimer"},
|
||||
{0x1B, NULL, "SetTimer"},
|
||||
{0x1C, NULL, "CancelTimer"},
|
||||
{0x1D, NULL, "ClearTimer"},
|
||||
{0x1E, NULL, "CreateMemoryBlock"},
|
||||
{0x1F, NULL, "MapMemoryBlock"},
|
||||
{0x20, NULL, "UnmapMemoryBlock"},
|
||||
{0x21, NULL, "CreateAddressArbiter"},
|
||||
{0x22, NULL, "ArbitrateAddress"},
|
||||
{0x23, NULL, "CloseHandle"},
|
||||
{0x24, NULL, "WaitSynchronization1"},
|
||||
{0x25, NULL, "WaitSynchronizationN"},
|
||||
{0x26, NULL, "SignalAndWait"},
|
||||
{0x27, NULL, "DuplicateHandle"},
|
||||
{0x28, NULL, "GetSystemTick"},
|
||||
{0x29, NULL, "GetHandleInfo"},
|
||||
{0x2A, NULL, "GetSystemInfo"},
|
||||
{0x2B, NULL, "GetProcessInfo"},
|
||||
{0x2C, NULL, "GetThreadInfo"},
|
||||
{0x2D, WrapI_VC<ConnectToPort>, "ConnectToPort"},
|
||||
{0x2E, NULL, "SendSyncRequest1"},
|
||||
{0x2F, NULL, "SendSyncRequest2"},
|
||||
{0x30, NULL, "SendSyncRequest3"},
|
||||
{0x31, NULL, "SendSyncRequest4"},
|
||||
{0x32, WrapI_U<SendSyncRequest>, "SendSyncRequest"},
|
||||
{0x33, NULL, "OpenProcess"},
|
||||
{0x34, NULL, "OpenThread"},
|
||||
{0x35, NULL, "GetProcessId"},
|
||||
{0x36, NULL, "GetProcessIdOfThread"},
|
||||
{0x37, NULL, "GetThreadId"},
|
||||
{0x38, NULL, "GetResourceLimit"},
|
||||
{0x39, NULL, "GetResourceLimitLimitValues"},
|
||||
{0x3A, NULL, "GetResourceLimitCurrentValues"},
|
||||
{0x3B, NULL, "GetThreadContext"},
|
||||
{0x3C, NULL, "Break"},
|
||||
{0x3D, NULL, "OutputDebugString"},
|
||||
{0x3E, NULL, "ControlPerformanceCounter"},
|
||||
{0x3F, NULL, "Unknown"},
|
||||
{0x40, NULL, "Unknown"},
|
||||
{0x41, NULL, "Unknown"},
|
||||
|
@ -89,24 +99,24 @@ const HLE::FunctionDef Syscall_Table[] = {
|
|||
{0x44, NULL, "Unknown"},
|
||||
{0x45, NULL, "Unknown"},
|
||||
{0x46, NULL, "Unknown"},
|
||||
{0x47, NULL, "svcCreatePort"},
|
||||
{0x48, NULL, "svcCreateSessionToPort"},
|
||||
{0x49, NULL, "svcCreateSession"},
|
||||
{0x4A, NULL, "svcAcceptSession"},
|
||||
{0x4B, NULL, "svcReplyAndReceive1"},
|
||||
{0x4C, NULL, "svcReplyAndReceive2"},
|
||||
{0x4D, NULL, "svcReplyAndReceive3"},
|
||||
{0x4E, NULL, "svcReplyAndReceive4"},
|
||||
{0x4F, NULL, "svcReplyAndReceive"},
|
||||
{0x50, NULL, "svcBindInterrupt"},
|
||||
{0x51, NULL, "svcUnbindInterrupt"},
|
||||
{0x52, NULL, "svcInvalidateProcessDataCache"},
|
||||
{0x53, NULL, "svcStoreProcessDataCache"},
|
||||
{0x54, NULL, "svcFlushProcessDataCache"},
|
||||
{0x55, NULL, "svcStartInterProcessDma"},
|
||||
{0x56, NULL, "svcStopDma"},
|
||||
{0x57, NULL, "svcGetDmaState"},
|
||||
{0x58, NULL, "svcRestartDma"},
|
||||
{0x47, NULL, "CreatePort"},
|
||||
{0x48, NULL, "CreateSessionToPort"},
|
||||
{0x49, NULL, "CreateSession"},
|
||||
{0x4A, NULL, "AcceptSession"},
|
||||
{0x4B, NULL, "ReplyAndReceive1"},
|
||||
{0x4C, NULL, "ReplyAndReceive2"},
|
||||
{0x4D, NULL, "ReplyAndReceive3"},
|
||||
{0x4E, NULL, "ReplyAndReceive4"},
|
||||
{0x4F, NULL, "ReplyAndReceive"},
|
||||
{0x50, NULL, "BindInterrupt"},
|
||||
{0x51, NULL, "UnbindInterrupt"},
|
||||
{0x52, NULL, "InvalidateProcessDataCache"},
|
||||
{0x53, NULL, "StoreProcessDataCache"},
|
||||
{0x54, NULL, "FlushProcessDataCache"},
|
||||
{0x55, NULL, "StartInterProcessDma"},
|
||||
{0x56, NULL, "StopDma"},
|
||||
{0x57, NULL, "GetDmaState"},
|
||||
{0x58, NULL, "RestartDma"},
|
||||
{0x59, NULL, "Unknown"},
|
||||
{0x5A, NULL, "Unknown"},
|
||||
{0x5B, NULL, "Unknown"},
|
||||
|
@ -114,36 +124,36 @@ const HLE::FunctionDef Syscall_Table[] = {
|
|||
{0x5D, NULL, "Unknown"},
|
||||
{0x5E, NULL, "Unknown"},
|
||||
{0x5F, NULL, "Unknown"},
|
||||
{0x60, NULL, "svcDebugActiveProcess"},
|
||||
{0x61, NULL, "svcBreakDebugProcess"},
|
||||
{0x62, NULL, "svcTerminateDebugProcess"},
|
||||
{0x63, NULL, "svcGetProcessDebugEvent"},
|
||||
{0x64, NULL, "svcContinueDebugEvent"},
|
||||
{0x65, NULL, "svcGetProcessList"},
|
||||
{0x66, NULL, "svcGetThreadList"},
|
||||
{0x67, NULL, "svcGetDebugThreadContext"},
|
||||
{0x68, NULL, "svcSetDebugThreadContext"},
|
||||
{0x69, NULL, "svcQueryDebugProcessMemory"},
|
||||
{0x6A, NULL, "svcReadProcessMemory"},
|
||||
{0x6B, NULL, "svcWriteProcessMemory"},
|
||||
{0x6C, NULL, "svcSetHardwareBreakPoint"},
|
||||
{0x6D, NULL, "svcGetDebugThreadParam"},
|
||||
{0x60, NULL, "DebugActiveProcess"},
|
||||
{0x61, NULL, "BreakDebugProcess"},
|
||||
{0x62, NULL, "TerminateDebugProcess"},
|
||||
{0x63, NULL, "GetProcessDebugEvent"},
|
||||
{0x64, NULL, "ContinueDebugEvent"},
|
||||
{0x65, NULL, "GetProcessList"},
|
||||
{0x66, NULL, "GetThreadList"},
|
||||
{0x67, NULL, "GetDebugThreadContext"},
|
||||
{0x68, NULL, "SetDebugThreadContext"},
|
||||
{0x69, NULL, "QueryDebugProcessMemory"},
|
||||
{0x6A, NULL, "ReadProcessMemory"},
|
||||
{0x6B, NULL, "WriteProcessMemory"},
|
||||
{0x6C, NULL, "SetHardwareBreakPoint"},
|
||||
{0x6D, NULL, "GetDebugThreadParam"},
|
||||
{0x6E, NULL, "Unknown"},
|
||||
{0x6F, NULL, "Unknown"},
|
||||
{0x70, NULL, "svcControlProcessMemory"},
|
||||
{0x71, NULL, "svcMapProcessMemory"},
|
||||
{0x72, NULL, "svcUnmapProcessMemory"},
|
||||
{0x70, NULL, "ControlProcessMemory"},
|
||||
{0x71, NULL, "MapProcessMemory"},
|
||||
{0x72, NULL, "UnmapProcessMemory"},
|
||||
{0x73, NULL, "Unknown"},
|
||||
{0x74, NULL, "Unknown"},
|
||||
{0x75, NULL, "Unknown"},
|
||||
{0x76, NULL, "svcTerminateProcess"},
|
||||
{0x76, NULL, "TerminateProcess"},
|
||||
{0x77, NULL, "Unknown"},
|
||||
{0x78, NULL, "svcCreateResourceLimit"},
|
||||
{0x78, NULL, "CreateResourceLimit"},
|
||||
{0x79, NULL, "Unknown"},
|
||||
{0x7A, NULL, "Unknown"},
|
||||
{0x7B, NULL, "Unknown"},
|
||||
{0x7C, NULL, "svcKernelSetState"},
|
||||
{0x7D, NULL, "svcQueryProcessMemory"},
|
||||
{0x7C, NULL, "KernelSetState"},
|
||||
{0x7D, NULL, "QueryProcessMemory"},
|
||||
};
|
||||
|
||||
void Register() {
|
||||
|
|
|
@ -1,4 +1,4 @@
|
|||
// Copyright 2014 Citra Emulator Project
|
||||
// Copyright 2014 Citra Emulator Project
|
||||
// Licensed under GPLv2
|
||||
// Refer to the license.txt file included.
|
||||
|
||||
|
@ -12,7 +12,6 @@
|
|||
|
||||
namespace Memory {
|
||||
|
||||
|
||||
u8* g_base = NULL; ///< The base pointer to the auto-mirrored arena.
|
||||
|
||||
MemArena g_arena; ///< The MemArena class
|
||||
|
|
|
@ -33,8 +33,9 @@ enum {
|
|||
MEM_VRAM_VADDR = 0x1F000000,
|
||||
MEM_SCRATCHPAD_VADDR = (0x10000000 - MEM_SCRATCHPAD_SIZE), ///< Scratchpad virtual address
|
||||
|
||||
MEM_OSHLE_VADDR = 0xC0000000, ///< Memory for use by OSHLE accessible by appcore CPU
|
||||
MEM_OSHLE_SIZE = 0x08000000, ///< ...Same size as FCRAM for now
|
||||
MEM_OSHLE_VADDR = 0xA0000000, ///< Memory for use by OSHLE accessible by appcore CPU
|
||||
MEM_OSHLE_VADDR_END = (MEM_OSHLE_VADDR + MEM_OSHLE_SIZE),
|
||||
};
|
||||
|
||||
////////////////////////////////////////////////////////////////////////////////////////////////////
|
||||
|
|
|
@ -6,6 +6,7 @@
|
|||
|
||||
#include "core/mem_map.h"
|
||||
#include "core/hw/hw.h"
|
||||
#include "hle/hle.h"
|
||||
|
||||
namespace Memory {
|
||||
|
||||
|
@ -15,9 +16,16 @@ inline void _Read(T &var, const u32 addr) {
|
|||
// TODO: Make sure this represents the mirrors in a correct way.
|
||||
// Could just do a base-relative read, too.... TODO
|
||||
|
||||
|
||||
// Memory allocated for HLE use that can be addressed from the emulated application
|
||||
// The primary use of this is sharing a commandbuffer between the HLE OS (syscore) and the LLE
|
||||
// core running the user application (appcore)
|
||||
if (addr >= MEM_OSHLE_VADDR && addr < MEM_OSHLE_VADDR_END) {
|
||||
NOTICE_LOG(MEMMAP, "OSHLE read @ 0x%08X", addr);
|
||||
|
||||
// Hardware I/O register reads
|
||||
// 0x10XXXXXX- is physical address space, 0x1EXXXXXX is virtual address space
|
||||
if ((addr & 0xFF000000) == 0x10000000 || (addr & 0xFF000000) == 0x1E000000) {
|
||||
} else if ((addr & 0xFF000000) == 0x10000000 || (addr & 0xFF000000) == 0x1E000000) {
|
||||
HW::Read<T>(var, addr);
|
||||
|
||||
// FCRAM virtual address reads
|
||||
|
@ -47,9 +55,15 @@ inline void _Read(T &var, const u32 addr) {
|
|||
template <typename T>
|
||||
inline void _Write(u32 addr, const T data) {
|
||||
|
||||
// Memory allocated for HLE use that can be addressed from the emulated application
|
||||
// The primary use of this is sharing a commandbuffer between the HLE OS (syscore) and the LLE
|
||||
// core running the user application (appcore)
|
||||
if (addr >= MEM_OSHLE_VADDR && addr < MEM_OSHLE_VADDR_END) {
|
||||
NOTICE_LOG(MEMMAP, "OSHLE write @ 0x%08X", addr);
|
||||
|
||||
// Hardware I/O register writes
|
||||
// 0x10XXXXXX- is physical address space, 0x1EXXXXXX is virtual address space
|
||||
if ((addr & 0xFF000000) == 0x10000000 || (addr & 0xFF000000) == 0x1E000000) {
|
||||
} else if ((addr & 0xFF000000) == 0x10000000 || (addr & 0xFF000000) == 0x1E000000) {
|
||||
HW::Write<const T>(addr, data);
|
||||
|
||||
// ExeFS:/.code is loaded here:
|
||||
|
|
Loading…
Reference in a new issue