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https://github.com/yuzu-emu/yuzu.git
synced 2024-11-15 23:30:05 +00:00
Merge pull request #456 from Subv/unmap_buffer
Implemented nvhost-as-gpu's UnmapBuffer and nvmap's Free ioctls.
This commit is contained in:
commit
58857b9f46
@ -26,6 +26,8 @@ u32 nvhost_as_gpu::ioctl(Ioctl command, const std::vector<u8>& input, std::vecto
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return BindChannel(input, output);
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return BindChannel(input, output);
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case IoctlCommand::IocGetVaRegionsCommand:
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case IoctlCommand::IocGetVaRegionsCommand:
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return GetVARegions(input, output);
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return GetVARegions(input, output);
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case IoctlCommand::IocUnmapBufferCommand:
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return UnmapBuffer(input, output);
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}
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}
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if (static_cast<IoctlCommand>(command.cmd.Value()) == IoctlCommand::IocRemapCommand)
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if (static_cast<IoctlCommand>(command.cmd.Value()) == IoctlCommand::IocRemapCommand)
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@ -125,6 +127,37 @@ u32 nvhost_as_gpu::MapBufferEx(const std::vector<u8>& input, std::vector<u8>& ou
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params.offset = gpu.memory_manager->MapBufferEx(object->addr, object->size);
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params.offset = gpu.memory_manager->MapBufferEx(object->addr, object->size);
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}
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}
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// Create a new mapping entry for this operation.
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ASSERT_MSG(buffer_mappings.find(params.offset) == buffer_mappings.end(),
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"Offset is already mapped");
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BufferMapping mapping{};
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mapping.nvmap_handle = params.nvmap_handle;
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mapping.offset = params.offset;
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mapping.size = object->size;
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buffer_mappings[params.offset] = mapping;
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std::memcpy(output.data(), ¶ms, output.size());
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return 0;
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}
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u32 nvhost_as_gpu::UnmapBuffer(const std::vector<u8>& input, std::vector<u8>& output) {
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IoctlUnmapBuffer params{};
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std::memcpy(¶ms, input.data(), input.size());
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NGLOG_DEBUG(Service_NVDRV, "called, offset=0x{:X}", params.offset);
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auto& gpu = Core::System::GetInstance().GPU();
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auto itr = buffer_mappings.find(params.offset);
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ASSERT_MSG(itr != buffer_mappings.end(), "Tried to unmap invalid mapping");
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params.offset = gpu.memory_manager->UnmapBuffer(params.offset, itr->second.size);
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buffer_mappings.erase(itr->second.offset);
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std::memcpy(output.data(), ¶ms, output.size());
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std::memcpy(output.data(), ¶ms, output.size());
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return 0;
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return 0;
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}
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}
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@ -5,6 +5,7 @@
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#pragma once
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#pragma once
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#include <memory>
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#include <memory>
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#include <unordered_map>
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#include <utility>
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#include <utility>
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#include <vector>
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#include <vector>
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#include "common/common_types.h"
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#include "common/common_types.h"
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@ -30,6 +31,7 @@ private:
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IocMapBufferExCommand = 0xC0284106,
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IocMapBufferExCommand = 0xC0284106,
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IocBindChannelCommand = 0x40044101,
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IocBindChannelCommand = 0x40044101,
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IocGetVaRegionsCommand = 0xC0404108,
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IocGetVaRegionsCommand = 0xC0404108,
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IocUnmapBufferCommand = 0xC0084105,
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};
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};
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struct IoctlInitalizeEx {
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struct IoctlInitalizeEx {
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@ -76,6 +78,11 @@ private:
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};
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};
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static_assert(sizeof(IoctlMapBufferEx) == 40, "IoctlMapBufferEx is incorrect size");
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static_assert(sizeof(IoctlMapBufferEx) == 40, "IoctlMapBufferEx is incorrect size");
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struct IoctlUnmapBuffer {
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u64_le offset;
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};
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static_assert(sizeof(IoctlUnmapBuffer) == 8, "IoctlUnmapBuffer is incorrect size");
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struct IoctlBindChannel {
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struct IoctlBindChannel {
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u32_le fd;
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u32_le fd;
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};
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};
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@ -98,12 +105,22 @@ private:
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static_assert(sizeof(IoctlGetVaRegions) == 16 + sizeof(IoctlVaRegion) * 2,
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static_assert(sizeof(IoctlGetVaRegions) == 16 + sizeof(IoctlVaRegion) * 2,
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"IoctlGetVaRegions is incorrect size");
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"IoctlGetVaRegions is incorrect size");
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struct BufferMapping {
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u64 offset;
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u64 size;
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u32 nvmap_handle;
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};
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/// Map containing the nvmap object mappings in GPU memory.
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std::unordered_map<u64, BufferMapping> buffer_mappings;
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u32 channel{};
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u32 channel{};
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u32 InitalizeEx(const std::vector<u8>& input, std::vector<u8>& output);
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u32 InitalizeEx(const std::vector<u8>& input, std::vector<u8>& output);
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u32 AllocateSpace(const std::vector<u8>& input, std::vector<u8>& output);
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u32 AllocateSpace(const std::vector<u8>& input, std::vector<u8>& output);
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u32 Remap(const std::vector<u8>& input, std::vector<u8>& output);
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u32 Remap(const std::vector<u8>& input, std::vector<u8>& output);
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u32 MapBufferEx(const std::vector<u8>& input, std::vector<u8>& output);
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u32 MapBufferEx(const std::vector<u8>& input, std::vector<u8>& output);
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u32 UnmapBuffer(const std::vector<u8>& input, std::vector<u8>& output);
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u32 BindChannel(const std::vector<u8>& input, std::vector<u8>& output);
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u32 BindChannel(const std::vector<u8>& input, std::vector<u8>& output);
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u32 GetVARegions(const std::vector<u8>& input, std::vector<u8>& output);
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u32 GetVARegions(const std::vector<u8>& input, std::vector<u8>& output);
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@ -30,6 +30,8 @@ u32 nvmap::ioctl(Ioctl command, const std::vector<u8>& input, std::vector<u8>& o
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return IocFromId(input, output);
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return IocFromId(input, output);
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case IoctlCommand::Param:
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case IoctlCommand::Param:
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return IocParam(input, output);
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return IocParam(input, output);
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case IoctlCommand::Free:
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return IocFree(input, output);
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}
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}
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UNIMPLEMENTED_MSG("Unimplemented ioctl");
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UNIMPLEMENTED_MSG("Unimplemented ioctl");
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@ -45,6 +47,7 @@ u32 nvmap::IocCreate(const std::vector<u8>& input, std::vector<u8>& output) {
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object->id = next_id++;
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object->id = next_id++;
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object->size = params.size;
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object->size = params.size;
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object->status = Object::Status::Created;
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object->status = Object::Status::Created;
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object->refcount = 1;
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u32 handle = next_handle++;
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u32 handle = next_handle++;
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handles[handle] = std::move(object);
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handles[handle] = std::move(object);
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@ -101,6 +104,8 @@ u32 nvmap::IocFromId(const std::vector<u8>& input, std::vector<u8>& output) {
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[&](const auto& entry) { return entry.second->id == params.id; });
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[&](const auto& entry) { return entry.second->id == params.id; });
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ASSERT(itr != handles.end());
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ASSERT(itr != handles.end());
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itr->second->refcount++;
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// Return the existing handle instead of creating a new one.
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// Return the existing handle instead of creating a new one.
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params.handle = itr->first;
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params.handle = itr->first;
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@ -142,4 +147,34 @@ u32 nvmap::IocParam(const std::vector<u8>& input, std::vector<u8>& output) {
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return 0;
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return 0;
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}
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}
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u32 nvmap::IocFree(const std::vector<u8>& input, std::vector<u8>& output) {
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enum FreeFlags {
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Freed = 0,
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NotFreedYet = 1,
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};
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IocFreeParams params;
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std::memcpy(¶ms, input.data(), sizeof(params));
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NGLOG_WARNING(Service_NVDRV, "(STUBBED) called");
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auto itr = handles.find(params.handle);
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ASSERT(itr != handles.end());
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itr->second->refcount--;
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params.refcount = itr->second->refcount;
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params.size = itr->second->size;
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if (itr->second->refcount == 0)
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params.flags = Freed;
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else
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params.flags = NotFreedYet;
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handles.erase(params.handle);
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std::memcpy(output.data(), ¶ms, sizeof(params));
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return 0;
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}
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} // namespace Service::Nvidia::Devices
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} // namespace Service::Nvidia::Devices
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@ -34,6 +34,7 @@ public:
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u8 kind;
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u8 kind;
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VAddr addr;
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VAddr addr;
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Status status;
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Status status;
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u32 refcount;
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};
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};
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std::shared_ptr<Object> GetObject(u32 handle) const {
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std::shared_ptr<Object> GetObject(u32 handle) const {
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@ -59,7 +60,8 @@ private:
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FromId = 0xC0080103,
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FromId = 0xC0080103,
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Alloc = 0xC0200104,
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Alloc = 0xC0200104,
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Param = 0xC00C0109,
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Param = 0xC00C0109,
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GetId = 0xC008010E
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GetId = 0xC008010E,
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Free = 0xC0180105,
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};
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};
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struct IocCreateParams {
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struct IocCreateParams {
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@ -102,11 +104,21 @@ private:
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u32_le value;
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u32_le value;
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};
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};
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struct IocFreeParams {
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u32_le handle;
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INSERT_PADDING_BYTES(4);
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u64_le refcount;
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u32_le size;
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u32_le flags;
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};
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static_assert(sizeof(IocFreeParams) == 24, "IocFreeParams has wrong size");
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u32 IocCreate(const std::vector<u8>& input, std::vector<u8>& output);
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u32 IocCreate(const std::vector<u8>& input, std::vector<u8>& output);
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u32 IocAlloc(const std::vector<u8>& input, std::vector<u8>& output);
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u32 IocAlloc(const std::vector<u8>& input, std::vector<u8>& output);
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u32 IocGetId(const std::vector<u8>& input, std::vector<u8>& output);
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u32 IocGetId(const std::vector<u8>& input, std::vector<u8>& output);
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u32 IocFromId(const std::vector<u8>& input, std::vector<u8>& output);
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u32 IocFromId(const std::vector<u8>& input, std::vector<u8>& output);
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u32 IocParam(const std::vector<u8>& input, std::vector<u8>& output);
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u32 IocParam(const std::vector<u8>& input, std::vector<u8>& output);
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u32 IocFree(const std::vector<u8>& input, std::vector<u8>& output);
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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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@ -58,6 +58,25 @@ GPUVAddr MemoryManager::MapBufferEx(VAddr cpu_addr, GPUVAddr gpu_addr, u64 size)
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return gpu_addr;
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return gpu_addr;
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}
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}
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GPUVAddr MemoryManager::UnmapBuffer(GPUVAddr gpu_addr, u64 size) {
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ASSERT((gpu_addr & PAGE_MASK) == 0);
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for (u64 offset = 0; offset < size; offset += PAGE_SIZE) {
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ASSERT(PageSlot(gpu_addr + offset) != static_cast<u64>(PageStatus::Allocated) &&
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PageSlot(gpu_addr + offset) != static_cast<u64>(PageStatus::Unmapped));
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PageSlot(gpu_addr + offset) = static_cast<u64>(PageStatus::Unmapped);
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}
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// Delete the region mappings that are contained within the unmapped region
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mapped_regions.erase(std::remove_if(mapped_regions.begin(), mapped_regions.end(),
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[&](const MappedRegion& region) {
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return region.gpu_addr <= gpu_addr &&
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region.gpu_addr + region.size < gpu_addr + size;
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}),
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mapped_regions.end());
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return gpu_addr;
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}
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boost::optional<GPUVAddr> MemoryManager::FindFreeBlock(u64 size, u64 align) {
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boost::optional<GPUVAddr> MemoryManager::FindFreeBlock(u64 size, u64 align) {
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GPUVAddr gpu_addr = 0;
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GPUVAddr gpu_addr = 0;
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u64 free_space = 0;
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u64 free_space = 0;
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@ -25,6 +25,7 @@ public:
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GPUVAddr AllocateSpace(GPUVAddr gpu_addr, u64 size, u64 align);
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GPUVAddr AllocateSpace(GPUVAddr gpu_addr, u64 size, u64 align);
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GPUVAddr MapBufferEx(VAddr cpu_addr, u64 size);
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GPUVAddr MapBufferEx(VAddr cpu_addr, u64 size);
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GPUVAddr MapBufferEx(VAddr cpu_addr, GPUVAddr gpu_addr, u64 size);
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GPUVAddr MapBufferEx(VAddr cpu_addr, GPUVAddr gpu_addr, u64 size);
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GPUVAddr UnmapBuffer(GPUVAddr gpu_addr, u64 size);
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boost::optional<VAddr> GpuToCpuAddress(GPUVAddr gpu_addr);
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boost::optional<VAddr> GpuToCpuAddress(GPUVAddr gpu_addr);
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std::vector<GPUVAddr> CpuToGpuAddress(VAddr cpu_addr) const;
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std::vector<GPUVAddr> CpuToGpuAddress(VAddr cpu_addr) const;
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