SMMU: Fix software rendering and cleanup
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d8f1ce2f76
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b0bca0f8b0
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@ -22,7 +22,7 @@ NvMap::Handle::Handle(u64 size_, Id id_)
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flags.raw = 0;
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flags.raw = 0;
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}
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}
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NvResult NvMap::Handle::Alloc(Flags pFlags, u32 pAlign, u8 pKind, u64 pAddress) {
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NvResult NvMap::Handle::Alloc(Flags pFlags, u32 pAlign, u8 pKind, u64 pAddress, size_t pSessionId) {
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std::scoped_lock lock(mutex);
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std::scoped_lock lock(mutex);
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// Handles cannot be allocated twice
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// Handles cannot be allocated twice
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if (allocated) {
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if (allocated) {
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@ -32,6 +32,7 @@ NvResult NvMap::Handle::Alloc(Flags pFlags, u32 pAlign, u8 pKind, u64 pAddress)
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flags = pFlags;
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flags = pFlags;
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kind = pKind;
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kind = pKind;
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align = pAlign < YUZU_PAGESIZE ? YUZU_PAGESIZE : pAlign;
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align = pAlign < YUZU_PAGESIZE ? YUZU_PAGESIZE : pAlign;
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session_id = pSessionId;
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// This flag is only applicable for handles with an address passed
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// This flag is only applicable for handles with an address passed
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if (pAddress) {
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if (pAddress) {
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@ -154,7 +155,7 @@ DAddr NvMap::GetHandleAddress(Handle::Id handle) {
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}
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}
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}
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}
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DAddr NvMap::PinHandle(NvMap::Handle::Id handle, size_t session_id, bool low_area_pin) {
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DAddr NvMap::PinHandle(NvMap::Handle::Id handle, bool low_area_pin) {
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auto handle_description{GetHandle(handle)};
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auto handle_description{GetHandle(handle)};
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if (!handle_description) [[unlikely]] {
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if (!handle_description) [[unlikely]] {
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return 0;
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return 0;
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@ -198,10 +199,9 @@ DAddr NvMap::PinHandle(NvMap::Handle::Id handle, size_t session_id, bool low_are
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// If not then allocate some space and map it
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// If not then allocate some space and map it
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DAddr address{};
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DAddr address{};
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auto& smmu = host1x.MemoryManager();
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auto& smmu = host1x.MemoryManager();
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auto* session = core.GetSession(session_id);
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auto* session = core.GetSession(handle_description->session_id);
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const VAddr vaddress = handle_description->address;
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const VAddr vaddress = handle_description->address;
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const size_t map_size = handle_description->aligned_size;
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const size_t map_size = handle_description->aligned_size;
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handle_description->session_id = session_id;
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if (session->has_preallocated_area && session->mapper->IsInBounds(vaddress, map_size)) {
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if (session->has_preallocated_area && session->mapper->IsInBounds(vaddress, map_size)) {
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handle_description->d_address = session->mapper->Map(vaddress, map_size);
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handle_description->d_address = session->mapper->Map(vaddress, map_size);
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handle_description->in_heap = true;
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handle_description->in_heap = true;
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@ -82,7 +82,7 @@ public:
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* @brief Sets up the handle with the given memory config, can allocate memory from the tmem
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* @brief Sets up the handle with the given memory config, can allocate memory from the tmem
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* if a 0 address is passed
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* if a 0 address is passed
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*/
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*/
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[[nodiscard]] NvResult Alloc(Flags pFlags, u32 pAlign, u8 pKind, u64 pAddress);
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[[nodiscard]] NvResult Alloc(Flags pFlags, u32 pAlign, u8 pKind, u64 pAddress, size_t pSessionId);
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/**
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/**
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* @brief Increases the dupe counter of the handle for the given session
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* @brief Increases the dupe counter of the handle for the given session
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@ -130,7 +130,7 @@ public:
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* number of calls to `UnpinHandle`
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* number of calls to `UnpinHandle`
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* @return The SMMU virtual address that the handle has been mapped to
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* @return The SMMU virtual address that the handle has been mapped to
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*/
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*/
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DAddr PinHandle(Handle::Id handle, size_t session_id, bool low_area_pin);
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DAddr PinHandle(Handle::Id handle, bool low_area_pin);
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/**
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/**
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* @brief When this has been called an equal number of times to `PinHandle` for the supplied
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* @brief When this has been called an equal number of times to `PinHandle` for the supplied
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@ -40,15 +40,15 @@ NvResult nvhost_as_gpu::Ioctl1(DeviceFD fd, Ioctl command, std::span<const u8> i
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case 0x3:
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case 0x3:
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return WrapFixed(this, &nvhost_as_gpu::FreeSpace, input, output);
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return WrapFixed(this, &nvhost_as_gpu::FreeSpace, input, output);
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case 0x5:
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case 0x5:
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return WrapFixed(this, &nvhost_as_gpu::UnmapBuffer, input, output, fd);
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return WrapFixed(this, &nvhost_as_gpu::UnmapBuffer, input, output);
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case 0x6:
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case 0x6:
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return WrapFixed(this, &nvhost_as_gpu::MapBufferEx, input, output, fd);
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return WrapFixed(this, &nvhost_as_gpu::MapBufferEx, input, output);
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case 0x8:
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case 0x8:
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return WrapFixed(this, &nvhost_as_gpu::GetVARegions1, input, output);
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return WrapFixed(this, &nvhost_as_gpu::GetVARegions1, input, output);
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case 0x9:
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case 0x9:
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return WrapFixed(this, &nvhost_as_gpu::AllocAsEx, input, output);
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return WrapFixed(this, &nvhost_as_gpu::AllocAsEx, input, output);
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case 0x14:
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case 0x14:
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return WrapVariable(this, &nvhost_as_gpu::Remap, input, output, fd);
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return WrapVariable(this, &nvhost_as_gpu::Remap, input, output);
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default:
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default:
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break;
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break;
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}
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}
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@ -86,15 +86,8 @@ NvResult nvhost_as_gpu::Ioctl3(DeviceFD fd, Ioctl command, std::span<const u8> i
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return NvResult::NotImplemented;
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return NvResult::NotImplemented;
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}
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}
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void nvhost_as_gpu::OnOpen(size_t session_id, DeviceFD fd) {
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void nvhost_as_gpu::OnOpen(size_t session_id, DeviceFD fd) {}
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sessions[fd] = session_id;
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void nvhost_as_gpu::OnClose(DeviceFD fd) {}
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}
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void nvhost_as_gpu::OnClose(DeviceFD fd) {
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auto it = sessions.find(fd);
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if (it != sessions.end()) {
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sessions.erase(it);
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}
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}
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NvResult nvhost_as_gpu::AllocAsEx(IoctlAllocAsEx& params) {
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NvResult nvhost_as_gpu::AllocAsEx(IoctlAllocAsEx& params) {
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LOG_DEBUG(Service_NVDRV, "called, big_page_size=0x{:X}", params.big_page_size);
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LOG_DEBUG(Service_NVDRV, "called, big_page_size=0x{:X}", params.big_page_size);
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@ -268,7 +261,7 @@ NvResult nvhost_as_gpu::FreeSpace(IoctlFreeSpace& params) {
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return NvResult::Success;
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return NvResult::Success;
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}
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}
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NvResult nvhost_as_gpu::Remap(std::span<IoctlRemapEntry> entries, DeviceFD fd) {
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NvResult nvhost_as_gpu::Remap(std::span<IoctlRemapEntry> entries) {
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LOG_DEBUG(Service_NVDRV, "called, num_entries=0x{:X}", entries.size());
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LOG_DEBUG(Service_NVDRV, "called, num_entries=0x{:X}", entries.size());
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if (!vm.initialised) {
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if (!vm.initialised) {
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@ -302,7 +295,7 @@ NvResult nvhost_as_gpu::Remap(std::span<IoctlRemapEntry> entries, DeviceFD fd) {
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return NvResult::BadValue;
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return NvResult::BadValue;
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}
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}
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DAddr base = nvmap.PinHandle(entry.handle, sessions[fd], false);
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DAddr base = nvmap.PinHandle(entry.handle, false);
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DAddr device_address{static_cast<DAddr>(
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DAddr device_address{static_cast<DAddr>(
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base + (static_cast<u64>(entry.handle_offset_big_pages) << vm.big_page_size_bits))};
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base + (static_cast<u64>(entry.handle_offset_big_pages) << vm.big_page_size_bits))};
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@ -314,7 +307,7 @@ NvResult nvhost_as_gpu::Remap(std::span<IoctlRemapEntry> entries, DeviceFD fd) {
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return NvResult::Success;
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return NvResult::Success;
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}
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}
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NvResult nvhost_as_gpu::MapBufferEx(IoctlMapBufferEx& params, DeviceFD fd) {
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NvResult nvhost_as_gpu::MapBufferEx(IoctlMapBufferEx& params) {
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LOG_DEBUG(Service_NVDRV,
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LOG_DEBUG(Service_NVDRV,
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"called, flags={:X}, nvmap_handle={:X}, buffer_offset={}, mapping_size={}"
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"called, flags={:X}, nvmap_handle={:X}, buffer_offset={}, mapping_size={}"
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", offset={}",
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", offset={}",
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@ -358,8 +351,8 @@ NvResult nvhost_as_gpu::MapBufferEx(IoctlMapBufferEx& params, DeviceFD fd) {
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return NvResult::BadValue;
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return NvResult::BadValue;
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}
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}
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DAddr device_address{static_cast<DAddr>(nvmap.PinHandle(params.handle, sessions[fd], false) +
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DAddr device_address{
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params.buffer_offset)};
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static_cast<DAddr>(nvmap.PinHandle(params.handle, false) + params.buffer_offset)};
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u64 size{params.mapping_size ? params.mapping_size : handle->orig_size};
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u64 size{params.mapping_size ? params.mapping_size : handle->orig_size};
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bool big_page{[&]() {
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bool big_page{[&]() {
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@ -414,7 +407,7 @@ NvResult nvhost_as_gpu::MapBufferEx(IoctlMapBufferEx& params, DeviceFD fd) {
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return NvResult::Success;
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return NvResult::Success;
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}
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}
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NvResult nvhost_as_gpu::UnmapBuffer(IoctlUnmapBuffer& params, DeviceFD fd) {
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NvResult nvhost_as_gpu::UnmapBuffer(IoctlUnmapBuffer& params) {
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LOG_DEBUG(Service_NVDRV, "called, offset=0x{:X}", params.offset);
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LOG_DEBUG(Service_NVDRV, "called, offset=0x{:X}", params.offset);
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std::scoped_lock lock(mutex);
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std::scoped_lock lock(mutex);
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@ -141,9 +141,9 @@ private:
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NvResult AllocAsEx(IoctlAllocAsEx& params);
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NvResult AllocAsEx(IoctlAllocAsEx& params);
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NvResult AllocateSpace(IoctlAllocSpace& params);
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NvResult AllocateSpace(IoctlAllocSpace& params);
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NvResult Remap(std::span<IoctlRemapEntry> params, DeviceFD fd);
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NvResult Remap(std::span<IoctlRemapEntry> params);
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NvResult MapBufferEx(IoctlMapBufferEx& params, DeviceFD fd);
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NvResult MapBufferEx(IoctlMapBufferEx& params);
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NvResult UnmapBuffer(IoctlUnmapBuffer& params, DeviceFD fd);
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NvResult UnmapBuffer(IoctlUnmapBuffer& params);
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NvResult FreeSpace(IoctlFreeSpace& params);
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NvResult FreeSpace(IoctlFreeSpace& params);
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NvResult BindChannel(IoctlBindChannel& params);
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NvResult BindChannel(IoctlBindChannel& params);
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@ -214,7 +214,6 @@ private:
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bool initialised{};
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bool initialised{};
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} vm;
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} vm;
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std::shared_ptr<Tegra::MemoryManager> gmmu;
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std::shared_ptr<Tegra::MemoryManager> gmmu;
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std::unordered_map<DeviceFD, size_t> sessions;
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};
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};
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} // namespace Service::Nvidia::Devices
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} // namespace Service::Nvidia::Devices
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@ -140,7 +140,7 @@ NvResult nvhost_nvdec_common::MapBuffer(IoctlMapBuffer& params, std::span<MapBuf
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DeviceFD fd) {
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DeviceFD fd) {
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const size_t num_entries = std::min(params.num_entries, static_cast<u32>(entries.size()));
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const size_t num_entries = std::min(params.num_entries, static_cast<u32>(entries.size()));
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for (size_t i = 0; i < num_entries; i++) {
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for (size_t i = 0; i < num_entries; i++) {
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DAddr pin_address = nvmap.PinHandle(entries[i].map_handle, sessions[fd], true);
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DAddr pin_address = nvmap.PinHandle(entries[i].map_handle, true);
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entries[i].map_address = static_cast<u32>(pin_address);
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entries[i].map_address = static_cast<u32>(pin_address);
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}
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}
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@ -124,7 +124,7 @@ NvResult nvmap::IocAlloc(IocAllocParams& params, DeviceFD fd) {
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}
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}
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const auto result =
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const auto result =
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handle_description->Alloc(params.flags, params.align, params.kind, params.address);
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handle_description->Alloc(params.flags, params.align, params.kind, params.address, sessions[fd]);
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if (result != NvResult::Success) {
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if (result != NvResult::Success) {
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LOG_CRITICAL(Service_NVDRV, "Object failed to allocate, handle={:08X}", params.handle);
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LOG_CRITICAL(Service_NVDRV, "Object failed to allocate, handle={:08X}", params.handle);
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return result;
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return result;
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@ -22,11 +22,13 @@ GraphicBuffer::GraphicBuffer(Service::Nvidia::NvCore::NvMap& nvmap,
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: NvGraphicBuffer(GetBuffer(buffer)), m_nvmap(std::addressof(nvmap)) {
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: NvGraphicBuffer(GetBuffer(buffer)), m_nvmap(std::addressof(nvmap)) {
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if (this->BufferId() > 0) {
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if (this->BufferId() > 0) {
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m_nvmap->DuplicateHandle(this->BufferId(), true);
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m_nvmap->DuplicateHandle(this->BufferId(), true);
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m_nvmap->PinHandle(this->BufferId(), false);
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}
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}
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}
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}
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GraphicBuffer::~GraphicBuffer() {
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GraphicBuffer::~GraphicBuffer() {
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if (m_nvmap != nullptr && this->BufferId() > 0) {
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if (m_nvmap != nullptr && this->BufferId() > 0) {
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m_nvmap->UnpinHandle(this->BufferId());
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m_nvmap->FreeHandle(this->BufferId(), true);
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m_nvmap->FreeHandle(this->BufferId(), true);
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}
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}
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}
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}
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