mirror of
https://github.com/shadps4-emu/shadPS4.git
synced 2024-12-29 11:06:07 +00:00
Added LibPngDec
(tested with Metal Slug 3, Risk of Rain, Deadbolt and Nidhogg)
This commit is contained in:
parent
1e5fed2e8a
commit
0fce689830
|
@ -190,6 +190,10 @@ set(PAD_LIB src/core/libraries/pad/pad.cpp
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src/core/libraries/pad/pad.h
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)
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set(PNG_LIB src/core/libraries/libpng/pngdec.cpp
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src/core/libraries/libpng/pngdec.h
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)
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set(NP_LIBS src/core/libraries/np_manager/np_manager.cpp
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src/core/libraries/np_manager/np_manager.h
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src/core/libraries/np_score/np_score.cpp
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@ -290,6 +294,7 @@ set(CORE src/core/aerolib/stubs.cpp
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${PAD_LIB}
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${VIDEOOUT_LIB}
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${NP_LIBS}
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${PNG_LIB}
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${MISC_LIBS}
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src/core/linker.cpp
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src/core/linker.h
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@ -104,6 +104,7 @@ bool ParseFilterRule(Filter& instance, Iterator begin, Iterator end) {
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SUB(Lib, AppContent) \
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SUB(Lib, Rtc) \
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SUB(Lib, DiscMap) \
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SUB(Lib, Png) \
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CLS(Frontend) \
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CLS(Render) \
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SUB(Render, Vulkan) \
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@ -71,6 +71,7 @@ enum class Class : u8 {
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Lib_AppContent, ///< The LibSceAppContent implementation.
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Lib_Rtc, ///< The LibSceRtc implementation.
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Lib_DiscMap, ///< The LibSceDiscMap implementation.
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Lib_Png, ///< The LibScePng implementation.
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Frontend, ///< Emulator UI
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Render, ///< Video Core
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Render_Vulkan, ///< Vulkan backend
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@ -679,7 +679,7 @@ int PS4_SYSV_ABI scePthreadCondTimedwait(ScePthreadCond* cond, ScePthreadMutex*
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time.tv_nsec = ((usec % 1000000) * 1000);
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int result = pthread_cond_timedwait(&(*cond)->cond, &(*mutex)->pth_mutex, &time);
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LOG_INFO(Kernel_Pthread, "scePthreadCondTimedwait, result={}", result);
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// LOG_INFO(Kernel_Pthread, "scePthreadCondTimedwait, result={}", result);
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switch (result) {
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case 0:
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@ -1018,7 +1018,7 @@ int PS4_SYSV_ABI scePthreadCondSignal(ScePthreadCond* cond) {
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int result = pthread_cond_signal(&(*cond)->cond);
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LOG_INFO(Kernel_Pthread, "scePthreadCondSignal, result={}", result);
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// LOG_INFO(Kernel_Pthread, "scePthreadCondSignal, result={}", result);
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switch (result) {
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case 0:
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@ -1170,7 +1170,19 @@ int PS4_SYSV_ABI posix_pthread_create_name_np(ScePthread* thread, const ScePthre
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int PS4_SYSV_ABI scePthreadOnce(int* once_control, void (*init_routine)(void)) {
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return pthread_once(reinterpret_cast<pthread_once_t*>(once_control), init_routine);
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}
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int PS4_SYSV_ABI posix_pthread_create(ScePthread* thread, const ScePthreadAttr* attr,
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pthreadEntryFunc start_routine, void* arg) {
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LOG_INFO(Kernel_Pthread, "posix pthread_create redirect to scePthreadCreate");
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int result = scePthreadCreate(thread, attr, start_routine, arg, "");
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if (result != 0) {
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int rt = result > SCE_KERNEL_ERROR_UNKNOWN && result <= SCE_KERNEL_ERROR_ESTOP
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? result + -SCE_KERNEL_ERROR_UNKNOWN
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: POSIX_EOTHER;
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return rt;
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}
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return result;
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}
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void pthreadSymbolsRegister(Core::Loader::SymbolsResolver* sym) {
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LIB_FUNCTION("4+h9EzwKF4I", "libkernel", 1, "libkernel", 1, 1, scePthreadAttrSetschedpolicy);
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LIB_FUNCTION("-Wreprtu0Qs", "libkernel", 1, "libkernel", 1, 1, scePthreadAttrSetdetachstate);
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@ -1192,7 +1204,8 @@ void pthreadSymbolsRegister(Core::Loader::SymbolsResolver* sym) {
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LIB_FUNCTION("x1X76arYMxU", "libkernel", 1, "libkernel", 1, 1, scePthreadAttrGet);
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LIB_FUNCTION("UTXzJbWhhTE", "libkernel", 1, "libkernel", 1, 1, scePthreadAttrSetstacksize);
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LIB_FUNCTION("vNe1w4diLCs", "libkernel", 1, "libkernel", 1, 1, __tls_get_addr);
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LIB_FUNCTION("OxhIB8LB-PQ", "libkernel", 1, "libkernel", 1, 1, posix_pthread_create);
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LIB_FUNCTION("OxhIB8LB-PQ", "libScePosix", 1, "libkernel", 1, 1, posix_pthread_create);
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LIB_FUNCTION("bt3CTBKmGyI", "libkernel", 1, "libkernel", 1, 1, scePthreadSetaffinity);
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LIB_FUNCTION("6UgtwV+0zb4", "libkernel", 1, "libkernel", 1, 1, scePthreadCreate);
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LIB_FUNCTION("T72hz6ffq08", "libkernel", 1, "libkernel", 1, 1, scePthreadYield);
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@ -63,9 +63,7 @@ int PS4_SYSV_ABI sceKernelUsleep(u32 microseconds) {
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}
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int PS4_SYSV_ABI posix_usleep(u32 microseconds) {
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ASSERT(microseconds >= 1000);
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std::this_thread::sleep_for(std::chrono::microseconds(microseconds));
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return 0;
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return sceKernelUsleep(microseconds);
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}
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u32 PS4_SYSV_ABI sceKernelSleep(u32 seconds) {
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@ -79,11 +77,15 @@ int PS4_SYSV_ABI sceKernelClockGettime(s32 clock_id, OrbisKernelTimespec* tp) {
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}
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clockid_t pclock_id = CLOCK_REALTIME;
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switch (clock_id) {
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case 0:
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case ORBIS_CLOCK_REALTIME:
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case ORBIS_CLOCK_REALTIME_PRECISE:
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case ORBIS_CLOCK_REALTIME_FAST:
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pclock_id = CLOCK_REALTIME;
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break;
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case 13:
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case 4:
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case ORBIS_CLOCK_SECOND:
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case ORBIS_CLOCK_MONOTONIC:
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case ORBIS_CLOCK_MONOTONIC_PRECISE:
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case ORBIS_CLOCK_MONOTONIC_FAST:
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pclock_id = CLOCK_MONOTONIC;
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break;
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default:
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@ -100,7 +102,7 @@ int PS4_SYSV_ABI sceKernelClockGettime(s32 clock_id, OrbisKernelTimespec* tp) {
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return SCE_KERNEL_ERROR_EINVAL;
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}
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int PS4_SYSV_ABI clock_gettime(s32 clock_id, OrbisKernelTimespec* time) {
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int PS4_SYSV_ABI posix_clock_gettime(s32 clock_id, OrbisKernelTimespec* time) {
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int result = sceKernelClockGettime(clock_id, time);
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if (result < 0) {
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UNREACHABLE(); // TODO return posix error code
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@ -151,6 +153,37 @@ int PS4_SYSV_ABI gettimeofday(OrbisKernelTimeval* tp, OrbisKernelTimezone* tz) {
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return sceKernelGettimeofday(tp);
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}
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int PS4_SYSV_ABI posix_clock_getres(u32 clock_id, OrbisKernelTimespec* res) {
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if (res == nullptr) {
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return SCE_KERNEL_ERROR_EFAULT;
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}
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clockid_t pclock_id = CLOCK_REALTIME;
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switch (clock_id) {
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case ORBIS_CLOCK_REALTIME:
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case ORBIS_CLOCK_REALTIME_PRECISE:
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case ORBIS_CLOCK_REALTIME_FAST:
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pclock_id = CLOCK_REALTIME;
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break;
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case ORBIS_CLOCK_SECOND:
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case ORBIS_CLOCK_MONOTONIC:
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case ORBIS_CLOCK_MONOTONIC_PRECISE:
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case ORBIS_CLOCK_MONOTONIC_FAST:
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pclock_id = CLOCK_MONOTONIC;
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break;
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default:
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UNREACHABLE();
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}
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timespec t{};
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int result = clock_getres(pclock_id, &t);
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res->tv_sec = t.tv_sec;
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res->tv_nsec = t.tv_nsec;
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if (result == 0) {
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return SCE_OK;
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}
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return SCE_KERNEL_ERROR_EINVAL;
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}
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void timeSymbolsRegister(Core::Loader::SymbolsResolver* sym) {
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clock = std::make_unique<Common::NativeClock>();
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initial_ptc = clock->GetUptime();
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@ -163,6 +196,7 @@ void timeSymbolsRegister(Core::Loader::SymbolsResolver* sym) {
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LIB_FUNCTION("ejekcaNQNq0", "libkernel", 1, "libkernel", 1, 1, sceKernelGettimeofday);
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LIB_FUNCTION("n88vx3C5nW8", "libkernel", 1, "libkernel", 1, 1, gettimeofday);
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LIB_FUNCTION("n88vx3C5nW8", "libScePosix", 1, "libkernel", 1, 1, gettimeofday);
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LIB_FUNCTION("QvsZxomvUHs", "libkernel", 1, "libkernel", 1, 1, sceKernelNanosleep);
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LIB_FUNCTION("1jfXLRVzisc", "libkernel", 1, "libkernel", 1, 1, sceKernelUsleep);
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LIB_FUNCTION("QcteRwbsnV0", "libScePosix", 1, "libkernel", 1, 1, posix_usleep);
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LIB_FUNCTION("-ZR+hG7aDHw", "libkernel", 1, "libkernel", 1, 1, sceKernelSleep);
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@ -170,8 +204,9 @@ void timeSymbolsRegister(Core::Loader::SymbolsResolver* sym) {
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LIB_FUNCTION("yS8U2TGCe1A", "libkernel", 1, "libkernel", 1, 1, posix_nanosleep);
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LIB_FUNCTION("yS8U2TGCe1A", "libScePosix", 1, "libkernel", 1, 1, posix_nanosleep);
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LIB_FUNCTION("QBi7HCK03hw", "libkernel", 1, "libkernel", 1, 1, sceKernelClockGettime);
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LIB_FUNCTION("lLMT9vJAck0", "libkernel", 1, "libkernel", 1, 1, clock_gettime);
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LIB_FUNCTION("lLMT9vJAck0", "libScePosix", 1, "libkernel", 1, 1, clock_gettime);
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LIB_FUNCTION("lLMT9vJAck0", "libkernel", 1, "libkernel", 1, 1, posix_clock_gettime);
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LIB_FUNCTION("lLMT9vJAck0", "libScePosix", 1, "libkernel", 1, 1, posix_clock_gettime);
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LIB_FUNCTION("smIj7eqzZE8", "libScePosix", 1, "libkernel", 1, 1, posix_clock_getres);
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}
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} // namespace Libraries::Kernel
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@ -26,6 +26,25 @@ struct OrbisKernelTimespec {
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s64 tv_nsec;
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};
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constexpr int ORBIS_CLOCK_REALTIME = 0;
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constexpr int ORBIS_CLOCK_VIRTUAL = 1;
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constexpr int ORBIS_CLOCK_PROF = 2;
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constexpr int ORBIS_CLOCK_MONOTONIC = 4;
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constexpr int ORBIS_CLOCK_UPTIME = 5;
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constexpr int ORBIS_CLOCK_UPTIME_PRECISE = 7;
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constexpr int ORBIS_CLOCK_UPTIME_FAST = 8;
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constexpr int ORBIS_CLOCK_REALTIME_PRECISE = 9;
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constexpr int ORBIS_CLOCK_REALTIME_FAST = 10;
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constexpr int ORBIS_CLOCK_MONOTONIC_PRECISE = 11;
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constexpr int ORBIS_CLOCK_MONOTONIC_FAST = 12;
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constexpr int ORBIS_CLOCK_SECOND = 13;
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constexpr int ORBIS_CLOCK_THREAD_CPUTIME_ID = 14;
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constexpr int ORBIS_CLOCK_PROCTIME = 15;
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constexpr int ORBIS_CLOCK_EXT_NETWORK = 16;
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constexpr int ORBIS_CLOCK_EXT_DEBUG_NETWORK = 17;
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constexpr int ORBIS_CLOCK_EXT_AD_NETWORK = 18;
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constexpr int ORBIS_CLOCK_EXT_RAW_NETWORK = 19;
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u64 PS4_SYSV_ABI sceKernelGetTscFrequency();
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u64 PS4_SYSV_ABI sceKernelGetProcessTime();
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u64 PS4_SYSV_ABI sceKernelGetProcessTimeCounter();
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169
src/core/libraries/libpng/pngdec.cpp
Normal file
169
src/core/libraries/libpng/pngdec.cpp
Normal file
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@ -0,0 +1,169 @@
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// SPDX-FileCopyrightText: Copyright 2024 shadPS4 Emulator Project
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// SPDX-License-Identifier: GPL-2.0-or-later
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#include "common/logging/log.h"
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#include "core/libraries/error_codes.h"
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#include "core/libraries/libs.h"
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#include "externals/stb_image.h"
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#include "pngdec.h"
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namespace Libraries::PngDec {
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void setImageInfoParams(OrbisPngDecImageInfo* imageInfo, int width, int height, int channels,
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bool isInterlaced, bool isTransparent) {
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if (imageInfo != nullptr) {
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imageInfo->imageWidth = width;
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imageInfo->imageHeight = height;
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imageInfo->bitDepth = 8; // always 8?
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switch (channels) { // clut missing
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case 1:
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imageInfo->colorSpace = OrbisPngDecColorSpace::ORBIS_PNG_DEC_COLOR_SPACE_GRAYSCALE;
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break;
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case 2:
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imageInfo->colorSpace =
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OrbisPngDecColorSpace::ORBIS_PNG_DEC_COLOR_SPACE_GRAYSCALE_ALPHA;
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break;
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case 3:
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imageInfo->colorSpace = OrbisPngDecColorSpace::ORBIS_PNG_DEC_COLOR_SPACE_RGB;
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break;
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case 4:
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imageInfo->colorSpace = OrbisPngDecColorSpace::ORBIS_PNG_DEC_COLOR_SPACE_RGBA;
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break;
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default:
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imageInfo->colorSpace = OrbisPngDecColorSpace::ORBIS_PNG_DEC_COLOR_SPACE_RGB;
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break;
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}
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imageInfo->imageFlag = 0;
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if (isInterlaced) {
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imageInfo->imageFlag |= ORBIS_PNG_DEC_IMAGE_FLAG_ADAM7_INTERLACE;
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}
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if (isTransparent) {
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imageInfo->imageFlag |= ORBIS_PNG_DEC_IMAGE_FLAG_TRNS_CHUNK_EXIST;
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}
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}
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}
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bool checktRNS(const u8* png_raw, int size) {
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for (int i = 30; i < size - 4; i += 4) {
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if (std::memcmp(png_raw + i, "tRNS", 4) == 0) {
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return true;
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}
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}
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return false;
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}
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s32 PS4_SYSV_ABI scePngDecCreate(const OrbisPngDecCreateParam* param, void* memoryAddress,
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u32 memorySize, OrbisPngDecHandle* handle) {
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if (param == nullptr || param->attribute > 1) {
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LOG_ERROR(Lib_Png, "Invalid param!");
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return ORBIS_PNG_DEC_ERROR_INVALID_PARAM;
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}
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if (memoryAddress == nullptr) {
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LOG_ERROR(Lib_Png, "Invalid memory address!");
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return ORBIS_PNG_DEC_ERROR_INVALID_ADDR;
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}
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if (param->maxImageWidth - 1 > 1000000) {
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LOG_ERROR(Lib_Png, "Invalid size! width = {}", param->maxImageWidth);
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return ORBIS_PNG_DEC_ERROR_INVALID_SIZE;
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}
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const OrbisPngDecCreateParam* nextParam = param + 1;
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int ret = (8 << (reinterpret_cast<uintptr_t>(nextParam) & 0x1f)) *
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(param->maxImageWidth + 0x47U & 0xfffffff8) +
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0xd000;
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*handle = reinterpret_cast<OrbisPngDecHandle>(ret);
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return ORBIS_OK;
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}
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s32 PS4_SYSV_ABI scePngDecDecode(OrbisPngDecHandle handle, const OrbisPngDecDecodeParam* param,
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OrbisPngDecImageInfo* imageInfo) {
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if (handle == nullptr) {
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LOG_ERROR(Lib_Png, "invalid handle!");
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return ORBIS_PNG_DEC_ERROR_INVALID_HANDLE;
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}
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if (param == nullptr) {
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LOG_ERROR(Lib_Png, "Invalid param!");
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return ORBIS_PNG_DEC_ERROR_INVALID_PARAM;
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}
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if (param->pngMemAddr == nullptr || param->pngMemAddr == nullptr) {
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LOG_ERROR(Lib_Png, "invalid image address!");
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return ORBIS_PNG_DEC_ERROR_INVALID_ADDR;
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}
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int width, height, channels;
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const u8* png_raw = (const u8*)param->pngMemAddr;
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u8* img = stbi_load_from_memory(png_raw, param->pngMemSize, &width, &height, &channels,
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STBI_rgb_alpha); // STBI_rgb_alpha?
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if (!img) {
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LOG_ERROR(Lib_Png, "Decoding failed!");
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return ORBIS_PNG_DEC_ERROR_DECODE_ERROR;
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}
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bool isInterlaced = (png_raw[28] == 1);
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bool isTransparent = checktRNS(png_raw, param->pngMemSize);
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setImageInfoParams(imageInfo, width, height, channels, isInterlaced, isTransparent);
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u8* imageBuffer = (u8*)(param->imageMemAddr);
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memcpy(imageBuffer, img, width * height * 4); // copy/pass decoded data
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stbi_image_free(img);
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return 0;
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}
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s32 PS4_SYSV_ABI scePngDecDecodeWithInputControl() {
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LOG_ERROR(Lib_Png, "(STUBBED)called");
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return ORBIS_OK;
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}
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s32 PS4_SYSV_ABI scePngDecDelete(OrbisPngDecHandle handle) {
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handle = nullptr; // ?
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LOG_ERROR(Lib_Png, "(STUBBED)called");
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return ORBIS_OK;
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}
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s32 PS4_SYSV_ABI scePngDecParseHeader(const OrbisPngDecParseParam* param,
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OrbisPngDecImageInfo* imageInfo) {
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if (param == nullptr) {
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LOG_ERROR(Lib_Png, "Invalid param!");
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return ORBIS_PNG_DEC_ERROR_INVALID_PARAM;
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}
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int width, height, channels;
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const u8* png_raw = (const u8*)(param->pngMemAddr);
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int img = stbi_info_from_memory(png_raw, param->pngMemSize, &width, &height, &channels);
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if (img == 0) {
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LOG_ERROR(Lib_Png, "Decoding failed!");
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return ORBIS_PNG_DEC_ERROR_DECODE_ERROR;
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}
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bool isInterlaced = (png_raw[28] == 1);
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bool isTransparent = checktRNS(png_raw, param->pngMemSize);
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setImageInfoParams(imageInfo, width, height, channels, isInterlaced, isTransparent);
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return ORBIS_OK;
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}
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s32 PS4_SYSV_ABI scePngDecQueryMemorySize(const OrbisPngDecCreateParam* param) {
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if (param == nullptr) {
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LOG_ERROR(Lib_Png, "Invalid param!");
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return ORBIS_PNG_DEC_ERROR_INVALID_PARAM;
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}
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if (param->attribute > 1) {
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LOG_ERROR(Lib_Png, "Invalid attribute! attribute = {}", param->attribute);
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return ORBIS_PNG_DEC_ERROR_INVALID_ADDR;
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}
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if (param->maxImageWidth - 1 > 1000000) {
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LOG_ERROR(Lib_Png, "Invalid size! width = {}", param->maxImageWidth);
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||||
return ORBIS_PNG_DEC_ERROR_INVALID_SIZE;
|
||||
}
|
||||
int ret =
|
||||
(8 << ((u8)param->attribute & 0x1f)) * (param->maxImageWidth + 0x47U & 0xfffffff8) + 0xd090;
|
||||
return ret;
|
||||
}
|
||||
|
||||
void RegisterlibScePngDec(Core::Loader::SymbolsResolver* sym) {
|
||||
LIB_FUNCTION("m0uW+8pFyaw", "libScePngDec", 1, "libScePngDec", 1, 1, scePngDecCreate);
|
||||
LIB_FUNCTION("WC216DD3El4", "libScePngDec", 1, "libScePngDec", 1, 1, scePngDecDecode);
|
||||
LIB_FUNCTION("cJ--1xAbj-I", "libScePngDec", 1, "libScePngDec", 1, 1,
|
||||
scePngDecDecodeWithInputControl);
|
||||
LIB_FUNCTION("QbD+eENEwo8", "libScePngDec", 1, "libScePngDec", 1, 1, scePngDecDelete);
|
||||
LIB_FUNCTION("U6h4e5JRPaQ", "libScePngDec", 1, "libScePngDec", 1, 1, scePngDecParseHeader);
|
||||
LIB_FUNCTION("-6srIGbLTIU", "libScePngDec", 1, "libScePngDec", 1, 1, scePngDecQueryMemorySize);
|
||||
LIB_FUNCTION("cJ--1xAbj-I", "libScePngDec_jvm", 1, "libScePngDec", 1, 1,
|
||||
scePngDecDecodeWithInputControl);
|
||||
};
|
||||
|
||||
} // namespace Libraries::PngDec
|
79
src/core/libraries/libpng/pngdec.h
Normal file
79
src/core/libraries/libpng/pngdec.h
Normal file
|
@ -0,0 +1,79 @@
|
|||
// SPDX-FileCopyrightText: Copyright 2024 shadPS4 Emulator Project
|
||||
// SPDX-License-Identifier: GPL-2.0-or-later
|
||||
|
||||
#pragma once
|
||||
|
||||
#include "common/types.h"
|
||||
|
||||
namespace Core::Loader {
|
||||
class SymbolsResolver;
|
||||
}
|
||||
namespace Libraries::PngDec {
|
||||
|
||||
constexpr int ORBIS_PNG_DEC_ERROR_INVALID_ADDR = 0x80690001;
|
||||
constexpr int ORBIS_PNG_DEC_ERROR_INVALID_SIZE = 0x80690002;
|
||||
constexpr int ORBIS_PNG_DEC_ERROR_INVALID_PARAM = 0x80690003;
|
||||
constexpr int ORBIS_PNG_DEC_ERROR_INVALID_HANDLE = 0x80690004;
|
||||
constexpr int ORBIS_PNG_DEC_ERROR_INVALID_WORK_MEMORY = 0x80690005;
|
||||
constexpr int ORBIS_PNG_DEC_ERROR_INVALID_DATA = 0x80690010;
|
||||
constexpr int ORBIS_PNG_DEC_ERROR_UNSUPPORT_DATA = 0x80690011;
|
||||
constexpr int ORBIS_PNG_DEC_ERROR_DECODE_ERROR = 0x80690012;
|
||||
constexpr int ORBIS_PNG_DEC_ERROR_FATAL = 0x80690020;
|
||||
|
||||
typedef struct OrbisPngDecParseParam {
|
||||
const void* pngMemAddr;
|
||||
u32 pngMemSize;
|
||||
u32 reserved;
|
||||
} OrbisPngDecParseParam;
|
||||
|
||||
typedef struct OrbisPngDecImageInfo {
|
||||
u32 imageWidth;
|
||||
u32 imageHeight;
|
||||
u16 colorSpace;
|
||||
u16 bitDepth;
|
||||
u32 imageFlag;
|
||||
} OrbisPngDecImageInfo;
|
||||
|
||||
typedef enum OrbisPngDecColorSpace {
|
||||
ORBIS_PNG_DEC_COLOR_SPACE_GRAYSCALE = 2,
|
||||
ORBIS_PNG_DEC_COLOR_SPACE_RGB,
|
||||
ORBIS_PNG_DEC_COLOR_SPACE_CLUT,
|
||||
ORBIS_PNG_DEC_COLOR_SPACE_GRAYSCALE_ALPHA = 18,
|
||||
ORBIS_PNG_DEC_COLOR_SPACE_RGBA
|
||||
} ScePngDecColorSpace;
|
||||
|
||||
typedef enum OrbisPngDecImageFlag {
|
||||
ORBIS_PNG_DEC_IMAGE_FLAG_ADAM7_INTERLACE = 1,
|
||||
ORBIS_PNG_DEC_IMAGE_FLAG_TRNS_CHUNK_EXIST = 2
|
||||
} OrbisPngDecImageFlag;
|
||||
|
||||
typedef struct OrbisPngDecCreateParam {
|
||||
u32 thisSize;
|
||||
u32 attribute;
|
||||
u32 maxImageWidth;
|
||||
} OrbisPngDecCreateParam;
|
||||
|
||||
typedef void* OrbisPngDecHandle;
|
||||
|
||||
typedef struct OrbisPngDecDecodeParam {
|
||||
const void* pngMemAddr;
|
||||
void* imageMemAddr;
|
||||
u32 pngMemSize;
|
||||
u32 imageMemSize;
|
||||
u16 pixelFormat;
|
||||
u16 alphaValue;
|
||||
u32 imagePitch;
|
||||
} OrbisPngDecDecodeParam;
|
||||
|
||||
s32 PS4_SYSV_ABI scePngDecCreate(const OrbisPngDecCreateParam* param, void* memoryAddress,
|
||||
u32 memorySize, OrbisPngDecHandle* handle);
|
||||
s32 PS4_SYSV_ABI scePngDecDecode(OrbisPngDecHandle handle, const OrbisPngDecDecodeParam* param,
|
||||
OrbisPngDecImageInfo* imageInfo);
|
||||
s32 PS4_SYSV_ABI scePngDecDecodeWithInputControl();
|
||||
s32 PS4_SYSV_ABI scePngDecDelete(OrbisPngDecHandle handle);
|
||||
s32 PS4_SYSV_ABI scePngDecParseHeader(const OrbisPngDecParseParam* param,
|
||||
OrbisPngDecImageInfo* imageInfo);
|
||||
s32 PS4_SYSV_ABI scePngDecQueryMemorySize(const OrbisPngDecCreateParam* param);
|
||||
|
||||
void RegisterlibScePngDec(Core::Loader::SymbolsResolver* sym);
|
||||
} // namespace Libraries::PngDec
|
|
@ -30,6 +30,7 @@
|
|||
#include "core/libraries/system/systemservice.h"
|
||||
#include "core/libraries/system/userservice.h"
|
||||
#include "core/libraries/videoout/video_out.h"
|
||||
#include "src/core/libraries/libpng/pngdec.h"
|
||||
|
||||
namespace Libraries {
|
||||
|
||||
|
@ -65,6 +66,7 @@ void InitHLELibs(Core::Loader::SymbolsResolver* sym) {
|
|||
Libraries::AppContent::RegisterlibSceAppContent(sym);
|
||||
Libraries::Rtc::RegisterlibSceRtc(sym);
|
||||
Libraries::DiscMap::RegisterlibSceDiscMap(sym);
|
||||
Libraries::PngDec::RegisterlibScePngDec(sym);
|
||||
}
|
||||
|
||||
} // namespace Libraries
|
||||
|
|
Loading…
Reference in a new issue