DSP code format cleanup
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@ -7,12 +7,14 @@
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#pragma once
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#include <3ds/types.h>
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typedef enum {
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typedef enum
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{
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DSP_INTERRUPT_PIPE = 2
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} DSP_InterruptType;
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typedef enum {
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typedef enum
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{
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DSP_PIPE_INPUT = 0, ///< DSP to ARM
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DSP_PIPE_OUTPUT = 1 ///< ARM to DSP
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} DSP_PipeDirection;
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@ -35,7 +37,6 @@ Result dspExit(void);
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///Checks if a headphone is inserted.
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Result DSP_GetHeadphoneStatus(bool* is_inserted);
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/**
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* @brief Flushes the cache
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* @param address Beginning of the memory range to flush, inside the Linear or DSP memory regions
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@ -43,7 +44,7 @@ Result DSP_GetHeadphoneStatus(bool* is_inserted);
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*
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* Flushes the cache for the specified memory range and invalidates the cache
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*/
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Result DSP_FlushDataCache(u32 address, u32 size);
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Result DSP_FlushDataCache(const void* address, u32 size);
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/**
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* @brief Invalidates the cache
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@ -52,7 +53,7 @@ Result DSP_FlushDataCache(u32 address, u32 size);
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*
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* Invalidates the cache for the specified memory range
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*/
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Result DSP_InvalidateDataCache(u32 address, u32 size);
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Result DSP_InvalidateDataCache(const void* address, u32 size);
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///Retrieves the handle of the DSP semaphore
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Result DSP_GetSemaphoreHandle(Handle* semaphore);
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@ -74,7 +75,7 @@ Result DSP_SetSemaphoreMask(u16 mask);
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* @note The binary must be signed (http://3dbrew.org/wiki/DSP_Binary)
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* @note Seems to be called when the 3ds leaves the Sleep mode
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*/
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Result DSP_LoadComponent(u8 const* component,u32 size,u16 prog_mask,u16 data_mask,bool * is_loaded);
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Result DSP_LoadComponent(const void* component, u32 size, u16 prog_mask, u16 data_mask, bool* is_loaded);
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///Stops the DSP by unloading the binary
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Result DSP_UnloadComponent(void);
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@ -86,8 +87,7 @@ Result DSP_UnloadComponent(void);
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*
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* @note It is possible that interrupt are inverted
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*/
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Result DSP_RegisterInterruptEvents(Handle handle,u32 interrupt,u32 channel);
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Result DSP_RegisterInterruptEvents(Handle handle, u32 interrupt, u32 channel);
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/**
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* @param channel unknown. Usually 2
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@ -96,24 +96,23 @@ Result DSP_RegisterInterruptEvents(Handle handle,u32 interrupt,u32 channel);
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* @param length Length of the buffer
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* @param length_read Number of bytes read by the command
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*/
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Result DSP_ReadPipeIfPossible(u32 channel,u32 peer, u8 const *buffer, u16 length, u16* length_read);
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Result DSP_ReadPipeIfPossible(u32 channel, u32 peer, void* buffer, u16 length, u16* length_read);
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/**
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* @param channel unknown. Usually 2
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* @param buffer The message to send to the DSP process
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* @param length Length of the message
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*/
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Result DSP_WriteProcessPipe(u32 channel,u8 const* buffer,u32 length);
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Result DSP_WriteProcessPipe(u32 channel, const void* buffer, u32 length);
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///Converts a DSP memory to a virtual address usable by the process
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Result DSP_ConvertProcessAddressFromDspDram(u32 dsp_address, u32 *arm_address);
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Result DSP_ConvertProcessAddressFromDspDram(u32 dsp_address, u32* arm_address);
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/**
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* @brief Reads a DSP register
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* @param regNo Offset of the hardware register, base address is 0x1EC40000
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*/
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Result DSP_RecvData(u16 regNo, u16 * value);
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Result DSP_RecvData(u16 regNo, u16* value);
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/**
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* @brief Checks if you can read a DSP register
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@ -121,7 +120,7 @@ Result DSP_RecvData(u16 regNo, u16 * value);
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*
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* @warning This call might hang if the data is not ready. See @ref DSP_SendDataIsEmpty.
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*/
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Result DSP_RecvDataIsReady(u16 regNo, bool * is_ready);
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Result DSP_RecvDataIsReady(u16 regNo, bool* is_ready);
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/**
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* @brief Writes to a DSP register
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@ -135,4 +134,4 @@ Result DSP_SendData(u16 regNo, u16 value);
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* @brief Checks if you can write to a DSP register ?
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* @param regNo Offset of the hardware register, base address is 0x1EC40000
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*/
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Result DSP_SendDataIsEmpty(u16 regNo, bool * is_empty);
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Result DSP_SendDataIsEmpty(u16 regNo, bool* is_empty);
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@ -6,7 +6,6 @@
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static Handle dspHandle = 0;
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Result dspInit(void)
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{
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Result ret = 0;
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@ -22,7 +21,7 @@ Result dspInit(void)
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Result dspExit(void)
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{
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Result ret = 0;
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//No need to call unload, it will be done automatically by closing the handle
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//No need to call unload, it will be done automatically by closing the handle
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if (dspHandle != 0)
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{
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ret = svcCloseHandle(dspHandle);
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@ -33,7 +32,6 @@ Result dspExit(void)
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return 0;
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}
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Result DSP_GetHeadphoneStatus(bool* is_inserted)
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{
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Result ret = 0;
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@ -44,13 +42,12 @@ Result DSP_GetHeadphoneStatus(bool* is_inserted)
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return cmdbuf[1];
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}
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Result DSP_FlushDataCache(u32 address, u32 size)
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Result DSP_FlushDataCache(const void* address, u32 size)
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{
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Result ret = 0;
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u32* cmdbuf = getThreadCommandBuffer();
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cmdbuf[0] = IPC_MakeHeader(0x13,2,2);
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cmdbuf[1] = address;
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cmdbuf[1] = (u32)address;
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cmdbuf[2] = size;
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cmdbuf[3] = IPC_Desc_SharedHandles(1);
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cmdbuf[4] = CUR_PROCESS_HANDLE;
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@ -58,13 +55,12 @@ Result DSP_FlushDataCache(u32 address, u32 size)
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return cmdbuf[1];
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}
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Result DSP_InvalidateDataCache(u32 address, u32 size)
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Result DSP_InvalidateDataCache(const void* address, u32 size)
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{
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Result ret = 0;
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u32* cmdbuf = getThreadCommandBuffer();
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cmdbuf[0] = IPC_MakeHeader(0x14,2,2);
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cmdbuf[1] = address;
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cmdbuf[1] = (u32)address;
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cmdbuf[2] = size;
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cmdbuf[3] = IPC_Desc_SharedHandles(1);
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cmdbuf[4] = CUR_PROCESS_HANDLE;
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@ -72,8 +68,6 @@ Result DSP_InvalidateDataCache(u32 address, u32 size)
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return cmdbuf[1];
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}
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Result DSP_SetSemaphore(u16 value)
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{
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Result ret = 0;
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@ -84,8 +78,6 @@ Result DSP_SetSemaphore(u16 value)
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return cmdbuf[1];
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}
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Result DSP_SetSemaphoreMask(u16 mask)
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{
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Result ret = 0;
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@ -106,7 +98,7 @@ Result DSP_GetSemaphoreHandle(Handle* semaphore)
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return cmdbuf[1];
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}
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Result DSP_LoadComponent(u8 const* component,u32 size,u16 prog_mask,u16 data_mask,bool * is_loaded)
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Result DSP_LoadComponent(const void* component, u32 size, u16 prog_mask, u16 data_mask, bool* is_loaded)
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{
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Result ret = 0;
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u32* cmdbuf = getThreadCommandBuffer();
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@ -121,8 +113,6 @@ Result DSP_LoadComponent(u8 const* component,u32 size,u16 prog_mask,u16 data_mas
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return cmdbuf[1];
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}
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Result DSP_UnloadComponent(void)
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{
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Result ret = 0;
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@ -145,8 +135,7 @@ Result DSP_RegisterInterruptEvents(Handle handle, u32 interrupt, u32 channel)
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return cmdbuf[1];
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}
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Result DSP_ReadPipeIfPossible(u32 channel,u32 peer, u8 const *buffer, u16 length, u16* length_read)
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Result DSP_ReadPipeIfPossible(u32 channel, u32 peer, void* buffer, u16 length, u16* length_read)
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{
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Result ret = 0;
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u32* cmdbuf = getThreadCommandBuffer();
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@ -168,11 +157,12 @@ Result DSP_ReadPipeIfPossible(u32 channel,u32 peer, u8 const *buffer, u16 length
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staticbufs[0] = saved1;
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staticbufs[1] = saved2;
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*length_read = cmdbuf[2] & 0xFFFF;
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if (length_read)
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*length_read = cmdbuf[2] & 0xFFFF;
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return cmdbuf[1];
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}
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Result DSP_WriteProcessPipe(u32 channel, u8 const *buffer, u32 length)
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Result DSP_WriteProcessPipe(u32 channel, const void* buffer, u32 length)
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{
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Result ret = 0;
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u32* cmdbuf = getThreadCommandBuffer();
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@ -180,12 +170,12 @@ Result DSP_WriteProcessPipe(u32 channel, u8 const *buffer, u32 length)
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cmdbuf[1] = channel;
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cmdbuf[2] = length;
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cmdbuf[3] = IPC_Desc_StaticBuffer(length,1);
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cmdbuf[4] = (u32) buffer;
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cmdbuf[4] = (u32)buffer;
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if ((ret = svcSendSyncRequest(dspHandle)) != 0) return ret;
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return cmdbuf[1];
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}
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Result DSP_ConvertProcessAddressFromDspDram(u32 dsp_address, u32 *arm_address)
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Result DSP_ConvertProcessAddressFromDspDram(u32 dsp_address, u32* arm_address)
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{
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Result ret = 0;
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u32* cmdbuf = getThreadCommandBuffer();
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@ -196,18 +186,18 @@ Result DSP_ConvertProcessAddressFromDspDram(u32 dsp_address, u32 *arm_address)
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return cmdbuf[1];
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}
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Result DSP_RecvData(u16 regNo, u16 * value)
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Result DSP_RecvData(u16 regNo, u16* value)
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{
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Result ret = 0;
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u32* cmdbuf = getThreadCommandBuffer();
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cmdbuf[0] = IPC_MakeHeader(0x1,1,0) ;
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cmdbuf[0] = IPC_MakeHeader(0x1,1,0);
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cmdbuf[1] = regNo;
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if ((ret = svcSendSyncRequest(dspHandle)) != 0) return ret;
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*value = cmdbuf[2] & 0xFFFF;
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return cmdbuf[1];
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}
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Result DSP_RecvDataIsReady(u16 regNo, bool * is_ready)
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Result DSP_RecvDataIsReady(u16 regNo, bool* is_ready)
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{
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Result ret = 0;
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u32* cmdbuf = getThreadCommandBuffer();
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@ -218,7 +208,6 @@ Result DSP_RecvDataIsReady(u16 regNo, bool * is_ready)
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return cmdbuf[1];
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}
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// Writes data to the reg regNo
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// *(_WORD *)(8 * regNo + 0x1ED03024) = value
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Result DSP_SendData(u16 regNo, u16 value)
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@ -232,7 +221,7 @@ Result DSP_SendData(u16 regNo, u16 value)
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return cmdbuf[1];
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}
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Result DSP_SendDataIsEmpty(u16 regNo, bool * is_empty)
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Result DSP_SendDataIsEmpty(u16 regNo, bool* is_empty)
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{
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Result ret = 0;
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u32* cmdbuf = getThreadCommandBuffer();
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@ -242,4 +231,3 @@ Result DSP_SendDataIsEmpty(u16 regNo, bool * is_empty)
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*is_empty = cmdbuf[2] & 0xFF;
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return cmdbuf[1];
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}
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