fix #1942 and adds a few IPC functions for descriptors
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@ -16,42 +16,130 @@
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namespace IPC {
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namespace IPC {
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constexpr u32 MakeHeader(u16 command_id, unsigned int regular_params, unsigned int translate_params) {
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enum DescriptorType : u32 {
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return ((u32)command_id << 16) | (((u32)regular_params & 0x3F) << 6) | (((u32)translate_params & 0x3F) << 0);
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// Buffer related desciptors types (mask : 0x0F)
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StaticBuffer = 0x02,
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PXIBuffer = 0x04,
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MappedBuffer = 0x08,
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// Handle related descriptors types (mask : 0x30, but need to check for buffer related descriptors first )
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CopyHandle = 0x00,
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MoveHandle = 0x10,
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CallingPid = 0x20,
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};
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/**
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* @brief Creates a command header to be used for IPC
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* @param command_id ID of the command to create a header for.
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* @param normal_params Size of the normal parameters in words. Up to 63.
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* @param translate_params_size Size of the translate parameters in words. Up to 63.
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* @return The created IPC header.
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*
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* Normal parameters are sent directly to the process while the translate parameters might go through modifications and checks by the kernel.
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* The translate parameters are described by headers generated with the IPC::*Desc functions.
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*
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* @note While #normal_params is equivalent to the number of normal parameters, #translate_params_size includes the size occupied by the translate parameters headers.
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*/
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constexpr u32 MakeHeader(u16 command_id, unsigned int normal_params, unsigned int translate_params_size) {
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return (u32(command_id) << 16) | ((u32(normal_params) & 0x3F) << 6) | (u32(translate_params_size) & 0x3F);
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}
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}
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constexpr u32 MoveHandleDesc(unsigned int num_handles = 1) {
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union Header {
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return 0x0 | ((num_handles - 1) << 26);
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u32 raw;
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BitField< 0, 6, u32> translate_params_size;
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BitField< 6, 6, u32> normal_params;
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BitField<16, 16, u32> command_id;
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};
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inline Header ParseHeader(u32 header) {
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return{ header };
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}
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}
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constexpr u32 CopyHandleDesc(unsigned int num_handles = 1) {
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constexpr u32 MoveHandleDesc(u32 num_handles = 1) {
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return 0x10 | ((num_handles - 1) << 26);
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return MoveHandle | ((num_handles - 1) << 26);
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}
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constexpr u32 CopyHandleDesc(u32 num_handles = 1) {
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return CopyHandle | ((num_handles - 1) << 26);
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}
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}
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constexpr u32 CallingPidDesc() {
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constexpr u32 CallingPidDesc() {
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return 0x20;
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return CallingPid;
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}
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}
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constexpr u32 TransferHandleDesc() {
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constexpr bool isHandleDescriptor(u32 descriptor) {
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return 0x20;
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return (descriptor & 0xF) == 0x0;
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}
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}
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constexpr u32 StaticBufferDesc(u32 size, unsigned int buffer_id) {
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constexpr u32 HandleNumberFromDesc(u32 handle_descriptor) {
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return 0x2 | (size << 14) | ((buffer_id & 0xF) << 10);
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return (handle_descriptor >> 26) + 1;
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}
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constexpr u32 StaticBufferDesc(u32 size, u8 buffer_id) {
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return StaticBuffer | (size << 14) | ((buffer_id & 0xF) << 10);
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}
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union StaticBufferDescInfo {
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u32 raw;
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BitField< 10, 4, u32> buffer_id;
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BitField< 14, 18, u32> size;
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};
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inline StaticBufferDescInfo ParseStaticBufferDesc(const u32 desc) {
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return{ desc };
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}
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/**
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* @brief Creates a header describing a buffer to be sent over PXI.
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* @param size Size of the buffer. Max 0x00FFFFFF.
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* @param buffer_id The Id of the buffer. Max 0xF.
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* @param is_read_only true if the buffer is read-only. If false, the buffer is considered to have read-write access.
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* @return The created PXI buffer header.
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*
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* The next value is a phys-address of a table located in the BASE memregion.
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*/
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inline u32 PXIBufferDesc(u32 size, unsigned buffer_id, bool is_read_only) {
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u32 type = PXIBuffer;
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if (is_read_only) type |= 0x2;
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return type | (size << 8) | ((buffer_id & 0xF) << 4);
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}
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}
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enum MappedBufferPermissions {
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enum MappedBufferPermissions {
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R = 2,
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R = 1,
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W = 4,
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W = 2,
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RW = R | W,
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RW = R | W,
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};
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};
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constexpr u32 MappedBufferDesc(u32 size, MappedBufferPermissions perms) {
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constexpr u32 MappedBufferDesc(u32 size, MappedBufferPermissions perms) {
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return 0x8 | (size << 4) | (u32)perms;
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return MappedBuffer | (size << 4) | (u32(perms) << 1);
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}
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}
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union MappedBufferDescInfo {
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u32 raw;
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BitField< 4, 28, u32> size;
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BitField< 1, 2, MappedBufferPermissions> perms;
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};
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inline MappedBufferDescInfo ParseMappedBufferDesc(const u32 desc) {
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return{ desc };
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}
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}
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inline DescriptorType GetDescriptorType(u32 descriptor) {
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// Note: Those checks must be done in this order
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if (isHandleDescriptor(descriptor))
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return (DescriptorType)(descriptor & 0x30);
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// handle the fact that the following descriptors can have rights
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if (descriptor & MappedBuffer)
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return MappedBuffer;
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if (descriptor & PXIBuffer)
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return PXIBuffer;
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return StaticBuffer;
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}
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} // namespace IPC
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namespace Kernel {
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namespace Kernel {
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static const int kCommandHeaderOffset = 0x80; ///< Offset into command buffer of header
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static const int kCommandHeaderOffset = 0x80; ///< Offset into command buffer of header
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@ -64,7 +152,7 @@ static const int kCommandHeaderOffset = 0x80; ///< Offset into command buffer of
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* @param offset Optional offset into command buffer
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* @param offset Optional offset into command buffer
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* @return Pointer to command buffer
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* @return Pointer to command buffer
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*/
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*/
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inline static u32* GetCommandBuffer(const int offset = 0) {
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inline u32* GetCommandBuffer(const int offset = 0) {
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return (u32*)Memory::GetPointer(GetCurrentThread()->GetTLSAddress() + kCommandHeaderOffset + offset);
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return (u32*)Memory::GetPointer(GetCurrentThread()->GetTLSAddress() + kCommandHeaderOffset + offset);
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}
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}
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@ -53,7 +53,7 @@ void Initialize(Service::Interface* self) {
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u32 app_id = cmd_buff[1];
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u32 app_id = cmd_buff[1];
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u32 flags = cmd_buff[2];
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u32 flags = cmd_buff[2];
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cmd_buff[2] = IPC::MoveHandleDesc(2);
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cmd_buff[2] = IPC::CopyHandleDesc(2);
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cmd_buff[3] = Kernel::g_handle_table.Create(notification_event).MoveFrom();
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cmd_buff[3] = Kernel::g_handle_table.Create(notification_event).MoveFrom();
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cmd_buff[4] = Kernel::g_handle_table.Create(parameter_event).MoveFrom();
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cmd_buff[4] = Kernel::g_handle_table.Create(parameter_event).MoveFrom();
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@ -96,7 +96,7 @@ void GetSharedFont(Service::Interface* self) {
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// the real APT service calculates this address by scanning the entire address space (using svcQueryMemory)
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// the real APT service calculates this address by scanning the entire address space (using svcQueryMemory)
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// and searches for an allocation of the same size as the Shared Font.
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// and searches for an allocation of the same size as the Shared Font.
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cmd_buff[2] = target_address;
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cmd_buff[2] = target_address;
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cmd_buff[3] = IPC::MoveHandleDesc();
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cmd_buff[3] = IPC::CopyHandleDesc();
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cmd_buff[4] = Kernel::g_handle_table.Create(shared_font_mem).MoveFrom();
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cmd_buff[4] = Kernel::g_handle_table.Create(shared_font_mem).MoveFrom();
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}
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}
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@ -51,7 +51,7 @@ void GetVsyncInterruptEvent(Service::Interface* self) {
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cmd_buff[0] = IPC::MakeHeader(0x5, 1, 2);
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cmd_buff[0] = IPC::MakeHeader(0x5, 1, 2);
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cmd_buff[1] = RESULT_SUCCESS.raw;
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cmd_buff[1] = RESULT_SUCCESS.raw;
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cmd_buff[2] = IPC::MoveHandleDesc();
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cmd_buff[2] = IPC::CopyHandleDesc();
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cmd_buff[3] = Kernel::g_handle_table.Create(vsync_interrupt_error_event).MoveFrom();
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cmd_buff[3] = Kernel::g_handle_table.Create(vsync_interrupt_error_event).MoveFrom();
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LOG_WARNING(Service_CAM, "(STUBBED) called, port=%d", port);
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LOG_WARNING(Service_CAM, "(STUBBED) called, port=%d", port);
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@ -64,7 +64,7 @@ void GetBufferErrorInterruptEvent(Service::Interface* self) {
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cmd_buff[0] = IPC::MakeHeader(0x6, 1, 2);
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cmd_buff[0] = IPC::MakeHeader(0x6, 1, 2);
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cmd_buff[1] = RESULT_SUCCESS.raw;
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cmd_buff[1] = RESULT_SUCCESS.raw;
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cmd_buff[2] = IPC::MoveHandleDesc();
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cmd_buff[2] = IPC::CopyHandleDesc();
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cmd_buff[3] = Kernel::g_handle_table.Create(interrupt_error_event).MoveFrom();
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cmd_buff[3] = Kernel::g_handle_table.Create(interrupt_error_event).MoveFrom();
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LOG_WARNING(Service_CAM, "(STUBBED) called, port=%d", port);
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LOG_WARNING(Service_CAM, "(STUBBED) called, port=%d", port);
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@ -85,7 +85,7 @@ void SetReceiving(Service::Interface* self) {
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cmd_buff[0] = IPC::MakeHeader(0x7, 1, 2);
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cmd_buff[0] = IPC::MakeHeader(0x7, 1, 2);
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cmd_buff[1] = RESULT_SUCCESS.raw;
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cmd_buff[1] = RESULT_SUCCESS.raw;
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cmd_buff[2] = IPC::MoveHandleDesc();
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cmd_buff[2] = IPC::CopyHandleDesc();
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cmd_buff[3] = Kernel::g_handle_table.Create(completion_event).MoveFrom();
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cmd_buff[3] = Kernel::g_handle_table.Create(completion_event).MoveFrom();
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LOG_WARNING(Service_CAM, "(STUBBED) called, addr=0x%X, port=%d, image_size=%d, trans_unit=%d",
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LOG_WARNING(Service_CAM, "(STUBBED) called, addr=0x%X, port=%d, image_size=%d, trans_unit=%d",
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@ -51,7 +51,7 @@ void Initialize(Service::Interface* self) {
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mutex = Kernel::Mutex::Create(false);
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mutex = Kernel::Mutex::Create(false);
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cmd_buff[1] = RESULT_SUCCESS.raw;
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cmd_buff[1] = RESULT_SUCCESS.raw;
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cmd_buff[2] = IPC::MoveHandleDesc(2);
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cmd_buff[2] = IPC::CopyHandleDesc(2);
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cmd_buff[3] = Kernel::g_handle_table.Create(mutex).MoveFrom();
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cmd_buff[3] = Kernel::g_handle_table.Create(mutex).MoveFrom();
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cmd_buff[4] = Kernel::g_handle_table.Create(shared_memory).MoveFrom();
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cmd_buff[4] = Kernel::g_handle_table.Create(shared_memory).MoveFrom();
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}
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}
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@ -57,7 +57,7 @@ static void EnableNotification(Service::Interface* self) {
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cmd_buff[0] = IPC::MakeHeader(0x2, 0x1, 0x2); // 0x20042
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cmd_buff[0] = IPC::MakeHeader(0x2, 0x1, 0x2); // 0x20042
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cmd_buff[1] = RESULT_SUCCESS.raw; // No error
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cmd_buff[1] = RESULT_SUCCESS.raw; // No error
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cmd_buff[2] = IPC::TransferHandleDesc();
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cmd_buff[2] = IPC::CopyHandleDesc(1);
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cmd_buff[3] = Kernel::g_handle_table.Create(event_handle).MoveFrom();
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cmd_buff[3] = Kernel::g_handle_table.Create(event_handle).MoveFrom();
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LOG_WARNING(Service_SRV, "(STUBBED) called");
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LOG_WARNING(Service_SRV, "(STUBBED) called");
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}
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}
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