NVMAP: Fix the Free return parameters.
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af35dbcf63
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68d9504a04
@ -11,7 +11,9 @@
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using Core::Memory::YUZU_PAGESIZE;
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using Core::Memory::YUZU_PAGESIZE;
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namespace Service::Nvidia::NvCore {
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namespace Service::Nvidia::NvCore {
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NvMap::Handle::Handle(u64 size, Id id) : size(size), aligned_size(size), orig_size(size), id(id) {}
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NvMap::Handle::Handle(u64 size, Id id) : size(size), aligned_size(size), orig_size(size), id(id) {
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flags.raw = 0;
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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) {
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std::scoped_lock lock(mutex);
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std::scoped_lock lock(mutex);
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@ -44,6 +44,7 @@ public:
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std::optional<typename std::list<std::shared_ptr<Handle>>::iterator> unmap_queue_entry{};
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std::optional<typename std::list<std::shared_ptr<Handle>>::iterator> unmap_queue_entry{};
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union Flags {
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union Flags {
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u32 raw;
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BitField<0, 1, u32> map_uncached; //!< If the handle should be mapped as uncached
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BitField<0, 1, u32> map_uncached; //!< If the handle should be mapped as uncached
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BitField<2, 1, u32> keep_uncached_after_free; //!< Only applicable when the handle was
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BitField<2, 1, u32> keep_uncached_after_free; //!< Only applicable when the handle was
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//!< allocated with a fixed address
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//!< allocated with a fixed address
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@ -82,7 +82,7 @@ std::shared_ptr<NvCore::NvMap::Handle> nvmap::GetObject(u32 handle) const {
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NvResult nvmap::IocCreate(const std::vector<u8>& input, std::vector<u8>& output) {
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NvResult nvmap::IocCreate(const std::vector<u8>& input, std::vector<u8>& output) {
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IocCreateParams params;
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IocCreateParams params;
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std::memcpy(¶ms, input.data(), sizeof(params));
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std::memcpy(¶ms, input.data(), sizeof(params));
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LOG_WARNING(Service_NVDRV, "called, size=0x{:08X}", params.size);
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LOG_DEBUG(Service_NVDRV, "called, size=0x{:08X}", params.size);
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std::shared_ptr<NvCore::NvMap::Handle> handle_description{};
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std::shared_ptr<NvCore::NvMap::Handle> handle_description{};
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auto result =
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auto result =
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@ -102,7 +102,7 @@ NvResult nvmap::IocCreate(const std::vector<u8>& input, std::vector<u8>& output)
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NvResult nvmap::IocAlloc(const std::vector<u8>& input, std::vector<u8>& output) {
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NvResult nvmap::IocAlloc(const std::vector<u8>& input, std::vector<u8>& output) {
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IocAllocParams params;
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IocAllocParams params;
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std::memcpy(¶ms, input.data(), sizeof(params));
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std::memcpy(¶ms, input.data(), sizeof(params));
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LOG_WARNING(Service_NVDRV, "called, addr={:X}", params.address);
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LOG_DEBUG(Service_NVDRV, "called, addr={:X}", params.address);
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if (!params.handle) {
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if (!params.handle) {
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LOG_CRITICAL(Service_NVDRV, "Handle is 0");
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LOG_CRITICAL(Service_NVDRV, "Handle is 0");
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@ -144,7 +144,7 @@ NvResult nvmap::IocGetId(const std::vector<u8>& input, std::vector<u8>& output)
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IocGetIdParams params;
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IocGetIdParams params;
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std::memcpy(¶ms, input.data(), sizeof(params));
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std::memcpy(¶ms, input.data(), sizeof(params));
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LOG_WARNING(Service_NVDRV, "called");
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LOG_DEBUG(Service_NVDRV, "called");
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// See the comment in FromId for extra info on this function
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// See the comment in FromId for extra info on this function
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if (!params.handle) {
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if (!params.handle) {
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@ -168,26 +168,26 @@ NvResult nvmap::IocFromId(const std::vector<u8>& input, std::vector<u8>& output)
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IocFromIdParams params;
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IocFromIdParams params;
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std::memcpy(¶ms, input.data(), sizeof(params));
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std::memcpy(¶ms, input.data(), sizeof(params));
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LOG_WARNING(Service_NVDRV, "called, id:{}");
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LOG_DEBUG(Service_NVDRV, "called, id:{}");
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// Handles and IDs are always the same value in nvmap however IDs can be used globally given the
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// Handles and IDs are always the same value in nvmap however IDs can be used globally given the
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// right permissions.
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// right permissions.
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// Since we don't plan on ever supporting multiprocess we can skip implementing handle refs and
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// Since we don't plan on ever supporting multiprocess we can skip implementing handle refs and
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// so this function just does simple validation and passes through the handle id.
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// so this function just does simple validation and passes through the handle id.
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if (!params.id) {
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if (!params.id) {
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LOG_CRITICAL(Service_NVDRV, "Error!");
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LOG_CRITICAL(Service_NVDRV, "Zero Id is invalid!");
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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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auto handle_description{file.GetHandle(params.id)};
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auto handle_description{file.GetHandle(params.id)};
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if (!handle_description) {
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if (!handle_description) {
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LOG_CRITICAL(Service_NVDRV, "Error!");
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LOG_CRITICAL(Service_NVDRV, "Unregistered handle!");
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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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auto result = handle_description->Duplicate(false);
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auto result = handle_description->Duplicate(false);
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if (result != NvResult::Success) {
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if (result != NvResult::Success) {
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LOG_CRITICAL(Service_NVDRV, "Error!");
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LOG_CRITICAL(Service_NVDRV, "Could not duplicate handle!");
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return result;
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return result;
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}
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}
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params.handle = handle_description->id;
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params.handle = handle_description->id;
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@ -201,16 +201,16 @@ NvResult nvmap::IocParam(const std::vector<u8>& input, std::vector<u8>& output)
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IocParamParams params;
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IocParamParams params;
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std::memcpy(¶ms, input.data(), sizeof(params));
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std::memcpy(¶ms, input.data(), sizeof(params));
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LOG_WARNING(Service_NVDRV, "called type={}", params.param);
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LOG_DEBUG(Service_NVDRV, "called type={}", params.param);
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if (!params.handle) {
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if (!params.handle) {
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LOG_CRITICAL(Service_NVDRV, "Error!");
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LOG_CRITICAL(Service_NVDRV, "Invalid handle!");
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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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auto handle_description{file.GetHandle(params.handle)};
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auto handle_description{file.GetHandle(params.handle)};
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if (!handle_description) {
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if (!handle_description) {
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LOG_CRITICAL(Service_NVDRV, "Error!");
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LOG_CRITICAL(Service_NVDRV, "Not registered handle!");
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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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@ -228,7 +228,7 @@ NvResult nvmap::IocParam(const std::vector<u8>& input, std::vector<u8>& output)
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if (handle_description->allocated)
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if (handle_description->allocated)
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params.result = 0x40000000;
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params.result = 0x40000000;
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else
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else
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params.result = 0x40000000;
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params.result = 0;
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break;
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break;
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case HandleParameterType::Kind:
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case HandleParameterType::Kind:
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params.result = handle_description->kind;
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params.result = handle_description->kind;
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@ -248,7 +248,7 @@ NvResult nvmap::IocFree(const std::vector<u8>& input, std::vector<u8>& output) {
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IocFreeParams params;
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IocFreeParams params;
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std::memcpy(¶ms, input.data(), sizeof(params));
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std::memcpy(¶ms, input.data(), sizeof(params));
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LOG_WARNING(Service_NVDRV, "called");
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LOG_DEBUG(Service_NVDRV, "called");
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if (!params.handle) {
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if (!params.handle) {
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LOG_CRITICAL(Service_NVDRV, "Handle null freed?");
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LOG_CRITICAL(Service_NVDRV, "Handle null freed?");
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@ -258,10 +258,10 @@ NvResult nvmap::IocFree(const std::vector<u8>& input, std::vector<u8>& output) {
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if (auto freeInfo{file.FreeHandle(params.handle, false)}) {
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if (auto freeInfo{file.FreeHandle(params.handle, false)}) {
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params.address = freeInfo->address;
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params.address = freeInfo->address;
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params.size = static_cast<u32>(freeInfo->size);
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params.size = static_cast<u32>(freeInfo->size);
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params.flags = NvCore::NvMap::Handle::Flags{.map_uncached = freeInfo->was_uncached};
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params.flags.raw = 0;
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params.flags.map_uncached = freeInfo->was_uncached;
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} else {
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} else {
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// This is possible when there's internel dups or other duplicates.
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// This is possible when there's internel dups or other duplicates.
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LOG_CRITICAL(Service_NVDRV, "Not freed");
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}
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}
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std::memcpy(output.data(), ¶ms, sizeof(params));
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std::memcpy(output.data(), ¶ms, sizeof(params));
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