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early-access version 3940
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parent
d05c5685fb
commit
e3b48b1c46
@ -1,7 +1,7 @@
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yuzu emulator early access
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yuzu emulator early access
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=============
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=============
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This is the source code for early-access 3939.
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This is the source code for early-access 3940.
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## Legal Notice
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## Legal Notice
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@ -822,11 +822,13 @@ void GDBStub::HandleRcmd(const std::vector<u8>& command) {
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const char i = True(mem_info.attribute & MemoryAttribute::IpcLocked) ? 'I' : '-';
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const char i = True(mem_info.attribute & MemoryAttribute::IpcLocked) ? 'I' : '-';
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const char d = True(mem_info.attribute & MemoryAttribute::DeviceShared) ? 'D' : '-';
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const char d = True(mem_info.attribute & MemoryAttribute::DeviceShared) ? 'D' : '-';
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const char u = True(mem_info.attribute & MemoryAttribute::Uncached) ? 'U' : '-';
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const char u = True(mem_info.attribute & MemoryAttribute::Uncached) ? 'U' : '-';
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const char p =
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True(mem_info.attribute & MemoryAttribute::PermissionLocked) ? 'P' : '-';
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reply +=
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reply += fmt::format(" {:#012x} - {:#012x} {} {} {}{}{}{}{} [{}, {}]\n",
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fmt::format(" {:#012x} - {:#012x} {} {} {}{}{}{} [{}, {}]\n",
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mem_info.base_address,
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mem_info.base_address, mem_info.base_address + mem_info.size - 1,
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mem_info.base_address + mem_info.size - 1, perm, state, l, i,
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perm, state, l, i, d, u, mem_info.ipc_count, mem_info.device_count);
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d, u, p, mem_info.ipc_count, mem_info.device_count);
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}
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}
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const uintptr_t next_address = mem_info.base_address + mem_info.size;
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const uintptr_t next_address = mem_info.base_address + mem_info.size;
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@ -149,7 +149,7 @@ u64 KProcess::GetTotalPhysicalMemoryUsed() {
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}
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}
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u64 KProcess::GetTotalPhysicalMemoryUsedWithoutSystemResource() {
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u64 KProcess::GetTotalPhysicalMemoryUsedWithoutSystemResource() {
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return this->GetTotalPhysicalMemoryUsed() - this->GetSystemResourceUsage();
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return this->GetTotalPhysicalMemoryUsed() - this->GetSystemResourceSize();
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}
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}
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bool KProcess::ReleaseUserException(KThread* thread) {
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bool KProcess::ReleaseUserException(KThread* thread) {
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@ -76,7 +76,7 @@ Result MapUnmapMemorySanityChecks(const KPageTable& manager, u64 dst_addr, u64 s
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} // namespace
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} // namespace
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Result SetMemoryPermission(Core::System& system, u64 address, u64 size, MemoryPermission perm) {
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Result SetMemoryPermission(Core::System& system, u64 address, u64 size, MemoryPermission perm) {
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LOG_DEBUG(Kernel_SVC, "called, address=0x{:016X}, size=0x{:X}, perm=0x{:08X", address, size,
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LOG_DEBUG(Kernel_SVC, "called, address=0x{:016X}, size=0x{:X}, perm=0x{:08X}", address, size,
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perm);
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perm);
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// Validate address / size.
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// Validate address / size.
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@ -41,7 +41,7 @@ bool BufferQueueCore::WaitForDequeueCondition(std::unique_lock<std::mutex>& lk)
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s32 BufferQueueCore::GetMinUndequeuedBufferCountLocked(bool async) const {
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s32 BufferQueueCore::GetMinUndequeuedBufferCountLocked(bool async) const {
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// If DequeueBuffer is allowed to error out, we don't have to add an extra buffer.
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// If DequeueBuffer is allowed to error out, we don't have to add an extra buffer.
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if (!use_async_buffer) {
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if (!use_async_buffer) {
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return max_acquired_buffer_count;
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return 0;
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}
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}
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if (dequeue_buffer_cannot_block || async) {
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if (dequeue_buffer_cannot_block || async) {
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@ -52,7 +52,7 @@ s32 BufferQueueCore::GetMinUndequeuedBufferCountLocked(bool async) const {
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}
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}
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s32 BufferQueueCore::GetMinMaxBufferCountLocked(bool async) const {
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s32 BufferQueueCore::GetMinMaxBufferCountLocked(bool async) const {
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return GetMinUndequeuedBufferCountLocked(async) + 1;
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return GetMinUndequeuedBufferCountLocked(async);
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}
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}
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s32 BufferQueueCore::GetMaxBufferCountLocked(bool async) const {
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s32 BufferQueueCore::GetMaxBufferCountLocked(bool async) const {
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@ -61,7 +61,7 @@ s32 BufferQueueCore::GetMaxBufferCountLocked(bool async) const {
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if (override_max_buffer_count != 0) {
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if (override_max_buffer_count != 0) {
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ASSERT(override_max_buffer_count >= min_buffer_count);
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ASSERT(override_max_buffer_count >= min_buffer_count);
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max_buffer_count = override_max_buffer_count;
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return override_max_buffer_count;
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}
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}
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// Any buffers that are dequeued by the producer or sitting in the queue waiting to be consumed
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// Any buffers that are dequeued by the producer or sitting in the queue waiting to be consumed
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@ -134,7 +134,7 @@ Status BufferQueueProducer::WaitForFreeSlotThenRelock(bool async, s32* found, St
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const s32 max_buffer_count = core->GetMaxBufferCountLocked(async);
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const s32 max_buffer_count = core->GetMaxBufferCountLocked(async);
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if (async && core->override_max_buffer_count) {
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if (async && core->override_max_buffer_count) {
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if (core->override_max_buffer_count < max_buffer_count) {
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if (core->override_max_buffer_count < max_buffer_count) {
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LOG_ERROR(Service_Nvnflinger, "async mode is invalid with buffer count override");
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*found = BufferQueueCore::INVALID_BUFFER_SLOT;
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return Status::BadValue;
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return Status::BadValue;
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}
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}
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}
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}
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@ -142,7 +142,8 @@ Status BufferQueueProducer::WaitForFreeSlotThenRelock(bool async, s32* found, St
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// Free up any buffers that are in slots beyond the max buffer count
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// Free up any buffers that are in slots beyond the max buffer count
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for (s32 s = max_buffer_count; s < BufferQueueDefs::NUM_BUFFER_SLOTS; ++s) {
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for (s32 s = max_buffer_count; s < BufferQueueDefs::NUM_BUFFER_SLOTS; ++s) {
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ASSERT(slots[s].buffer_state == BufferState::Free);
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ASSERT(slots[s].buffer_state == BufferState::Free);
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if (slots[s].graphic_buffer != nullptr) {
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if (slots[s].graphic_buffer != nullptr && slots[s].buffer_state == BufferState::Free &&
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!slots[s].is_preallocated) {
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core->FreeBufferLocked(s);
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core->FreeBufferLocked(s);
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*return_flags |= Status::ReleaseAllBuffers;
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*return_flags |= Status::ReleaseAllBuffers;
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}
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}
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