Add y2r:u commands

This commit is contained in:
Yuri Kunde Schlesner 2015-06-21 07:25:28 -03:00
parent e2f8011f69
commit 8a76010988
3 changed files with 513 additions and 0 deletions

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@ -36,6 +36,7 @@ extern "C" {
#include <3ds/services/mvd.h> #include <3ds/services/mvd.h>
#include <3ds/services/news.h> #include <3ds/services/news.h>
#include <3ds/services/qtm.h> #include <3ds/services/qtm.h>
#include <3ds/services/y2r.h>
#include <3ds/services/hb.h> #include <3ds/services/hb.h>
#include <3ds/gpu/gx.h> #include <3ds/gpu/gx.h>

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@ -0,0 +1,117 @@
#pragma once
#include <3ds/types.h>
typedef enum
{
INPUT_YUV422_INDIV_8 = 0x0,
INPUT_YUV420_INDIV_8 = 0x1,
INPUT_YUV422_INDIV_16 = 0x2,
INPUT_YUV420_INDIV_16 = 0x3,
INPUT_YUV422_BATCH = 0x4,
} Y2R_InputFormat;
typedef enum
{
OUTPUT_RGB_32 = 0x0,
OUTPUT_RGB_24 = 0x1,
OUTPUT_RGB_16_555 = 0x2,
OUTPUT_RGB_16_565 = 0x3,
} Y2R_OutputFormat;
typedef enum
{
ROTATION_NONE = 0x0,
ROTATION_CLOCKWISE_90 = 0x1,
ROTATION_CLOCKWISE_180 = 0x2,
ROTATION_CLOCKWISE_270 = 0x3,
} Y2R_Rotation;
typedef enum
{
BLOCK_LINE = 0x0,
BLOCK_8_BY_8 = 0x1,
} Y2R_BlockAlignment;
typedef enum
{
COEFFICIENT_ITU_R_BT_601 = 0x0,
COEFFICIENT_ITU_R_BT_709 = 0x1,
COEFFICIENT_ITU_R_BT_601_SCALING = 0x2,
COEFFICIENT_ITU_R_BT_709_SCALING = 0x3,
} Y2R_StandardCoefficient;
typedef struct
{
Y2R_InputFormat input_format : 8;
Y2R_OutputFormat output_format : 8;
Y2R_Rotation rotation : 8;
Y2R_BlockAlignment block_alignment : 8;
u16 input_line_width;
u16 input_lines;
Y2R_StandardCoefficient standard_coefficient : 8;
u8 unused;
u16 alpha;
} Y2R_ConversionParams;
/**
* A set of coefficients configuring the RGB to YUV conversion. Coefficients 0-4 are unsigned 2.8
* fixed pointer numbers representing entries on the conversion matrix, while coefficient 5-7 are
* signed 11.5 fixed point numbers added as offsets to the RGB result.
*
* The overall conversion process formula is:
* ```
* R = trunc((rgb_Y * Y + r_V * V) + 0.75 + r_offset)
* G = trunc((rgb_Y * Y - g_U * U - g_V * V) + 0.75 + g_offset)
* B = trunc((rgb_Y * Y + b_U * U ) + 0.75 + b_offset)
* ```
*/
typedef struct
{
u16 rgb_Y;
u16 r_V;
u16 g_V;
u16 g_U;
u16 b_U;
u16 r_offset;
u16 g_offset;
u16 b_offset;
} Y2R_ColorCoefficients;
Result y2rInit();
Result y2rExit();
Result Y2RU_SetInputFormat(Y2R_InputFormat format);
Result Y2RU_SetOutputFormat(Y2R_OutputFormat format);
Result Y2RU_SetRotation(Y2R_Rotation rotation);
Result Y2RU_SetBlockAlignment(Y2R_BlockAlignment alignment);
Result Y2RU_SetTransferEndInterrupt(bool should_interrupt);
Result Y2RU_GetTransferEndEvent(Handle* end_event);
Result Y2RU_SetSendingY(const void* src_buf, u32 image_size, u16 transfer_unit, u16 transfer_gap);
Result Y2RU_SetSendingU(const void* src_buf, u32 image_size, u16 transfer_unit, u16 transfer_gap);
Result Y2RU_SetSendingV(const void* src_buf, u32 image_size, u16 transfer_unit, u16 transfer_gap);
Result Y2RU_SetSendingYUYV(const void* src_buf, u32 image_size, u16 transfer_unit, u16 transfer_gap);
Result Y2RU_IsDoneSendingYUYV(bool* is_done);
Result Y2RU_IsDoneSendingY(bool* is_done);
Result Y2RU_IsDoneSendingU(bool* is_done);
Result Y2RU_IsDoneSendingV(bool* is_done);
Result Y2RU_SetReceiving(void* dst_buf, u32 image_size, u16 transfer_unit, u16 transfer_gap);
Result Y2RU_IsDoneReceiving(bool* is_done);
Result Y2RU_SetInputLineWidth(u16 line_width);
Result Y2RU_SetInputLines(u16 num_lines);
Result Y2RU_SetCoefficient(const Y2R_ColorCoefficients* coefficient);
Result Y2RU_SetStandardCoefficient(Y2R_StandardCoefficient coefficient);
Result Y2RU_SetAlpha(u16 alpha);
Result Y2RU_SetUnknownParams(const u16 params[16]);
Result Y2RU_StartConversion(void);
Result Y2RU_StopConversion(void);
Result Y2RU_IsBusyConversion(bool* is_busy);
Result Y2RU_SetConversionParams(const Y2R_ConversionParams* params);
/* Seems to check whether y2r is ready to be used */
Result Y2RU_PingProcess(u8* ping);
Result Y2RU_DriverInitialize(void);
Result Y2RU_DriverFinalize(void);

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#include <stdlib.h>
#include <string.h>
#include <3ds/services/y2r.h>
#include <3ds/srv.h>
#include <3ds/svc.h>
#include <3ds/types.h>
Handle y2rHandle = 0;
static bool initialized = false;
Result y2rInit(void)
{
Result ret = 0;
if (initialized) return 0;
if (y2rHandle == 0)
{
ret = srvGetServiceHandle(&y2rHandle, "y2r:u");
if (ret < 0) return ret;
}
ret = Y2RU_DriverInitialize();
if (ret < 0) return ret;
initialized = true;
return 0;
}
Result y2rExit(void)
{
Result ret = 0;
if (initialized)
{
ret = Y2RU_DriverFinalize();
if (ret < 0) return ret;
}
if (y2rHandle != 0)
{
ret = svcCloseHandle(y2rHandle);
if (ret < 0) return ret;
y2rHandle = 0;
}
return 0;
}
Result Y2RU_SetInputFormat(Y2R_InputFormat format)
{
Result ret = 0;
u32* cmdbuf = getThreadCommandBuffer();
cmdbuf[0] = 0x00010040;
cmdbuf[1] = format;
if ((ret = svcSendSyncRequest(y2rHandle)) != 0) return ret;
return cmdbuf[1];
}
Result Y2RU_SetOutputFormat(Y2R_OutputFormat format)
{
Result ret = 0;
u32* cmdbuf = getThreadCommandBuffer();
cmdbuf[0] = 0x00030040;
cmdbuf[1] = format;
if ((ret = svcSendSyncRequest(y2rHandle)) != 0) return ret;
return cmdbuf[1];
}
Result Y2RU_SetRotation(Y2R_Rotation rotation)
{
Result ret = 0;
u32* cmdbuf = getThreadCommandBuffer();
cmdbuf[0] = 0x00050040;
cmdbuf[1] = rotation;
if ((ret = svcSendSyncRequest(y2rHandle)) != 0) return ret;
return cmdbuf[1];
}
Result Y2RU_SetBlockAlignment(Y2R_BlockAlignment alignment)
{
Result ret = 0;
u32* cmdbuf = getThreadCommandBuffer();
cmdbuf[0] = 0x00070040;
cmdbuf[1] = alignment;
if ((ret = svcSendSyncRequest(y2rHandle)) != 0) return ret;
return cmdbuf[1];
}
Result Y2RU_SetTransferEndInterrupt(bool should_interrupt)
{
Result ret = 0;
u32* cmdbuf = getThreadCommandBuffer();
cmdbuf[0] = 0x000D0040;
cmdbuf[1] = should_interrupt;
if ((ret = svcSendSyncRequest(y2rHandle)) != 0) return ret;
return cmdbuf[1];
}
Result Y2RU_GetTransferEndEvent(Handle* end_event)
{
if (*end_event != 0)
{
svcCloseHandle(*end_event);
*end_event = 0;
}
Result ret = 0;
u32* cmdbuf = getThreadCommandBuffer();
cmdbuf[0] = 0x000F0000;
if ((ret = svcSendSyncRequest(y2rHandle)) != 0) return ret;
*end_event = cmdbuf[3];
return cmdbuf[1];
}
Result Y2RU_SetSendingY(const void* src_buf, u32 image_size, u16 transfer_unit, u16 transfer_gap)
{
Result ret = 0;
u32* cmdbuf = getThreadCommandBuffer();
cmdbuf[0] = 0x00100102;
cmdbuf[1] = (u32)src_buf;
cmdbuf[2] = image_size;
cmdbuf[3] = transfer_unit;
cmdbuf[4] = transfer_gap;
cmdbuf[5] = 0;
cmdbuf[6] = 0xFFFF8001;
if ((ret = svcSendSyncRequest(y2rHandle)) != 0) return ret;
return cmdbuf[1];
}
Result Y2RU_SetSendingU(const void* src_buf, u32 image_size, u16 transfer_unit, u16 transfer_gap)
{
Result ret = 0;
u32* cmdbuf = getThreadCommandBuffer();
cmdbuf[0] = 0x00110102;
cmdbuf[1] = (u32)src_buf;
cmdbuf[2] = image_size;
cmdbuf[3] = transfer_unit;
cmdbuf[4] = transfer_gap;
cmdbuf[5] = 0;
cmdbuf[6] = 0xFFFF8001;
if ((ret = svcSendSyncRequest(y2rHandle)) != 0) return ret;
return cmdbuf[1];
}
Result Y2RU_SetSendingV(const void* src_buf, u32 image_size, u16 transfer_unit, u16 transfer_gap)
{
Result ret = 0;
u32* cmdbuf = getThreadCommandBuffer();
cmdbuf[0] = 0x00120102;
cmdbuf[1] = (u32)src_buf;
cmdbuf[2] = image_size;
cmdbuf[3] = transfer_unit;
cmdbuf[4] = transfer_gap;
cmdbuf[5] = 0;
cmdbuf[6] = 0xFFFF8001;
if ((ret = svcSendSyncRequest(y2rHandle)) != 0) return ret;
return cmdbuf[1];
}
Result Y2RU_SetSendingYUYV(const void* src_buf, u32 image_size, u16 transfer_unit, u16 transfer_gap)
{
Result ret = 0;
u32* cmdbuf = getThreadCommandBuffer();
cmdbuf[0] = 0x00130102;
cmdbuf[1] = (u32)src_buf;
cmdbuf[2] = image_size;
cmdbuf[3] = transfer_unit;
cmdbuf[4] = transfer_gap;
cmdbuf[5] = 0;
cmdbuf[6] = 0xFFFF8001;
if ((ret = svcSendSyncRequest(y2rHandle)) != 0) return ret;
return cmdbuf[1];
}
Result Y2RU_IsDoneSendingYUYV(bool* is_done)
{
Result ret = 0;
u32* cmdbuf = getThreadCommandBuffer();
cmdbuf[0] = 0x00140000;
if ((ret = svcSendSyncRequest(y2rHandle)) != 0) return ret;
*is_done = cmdbuf[2] & 0xFF;
return cmdbuf[1];
}
Result Y2RU_IsDoneSendingY(bool* is_done)
{
Result ret = 0;
u32* cmdbuf = getThreadCommandBuffer();
cmdbuf[0] = 0x00150000;
if ((ret = svcSendSyncRequest(y2rHandle)) != 0) return ret;
*is_done = cmdbuf[2] & 0xFF;
return cmdbuf[1];
}
Result Y2RU_IsDoneSendingU(bool* is_done)
{
Result ret = 0;
u32* cmdbuf = getThreadCommandBuffer();
cmdbuf[0] = 0x00160000;
if ((ret = svcSendSyncRequest(y2rHandle)) != 0) return ret;
*is_done = cmdbuf[2] & 0xFF;
return cmdbuf[1];
}
Result Y2RU_IsDoneSendingV(bool* is_done)
{
Result ret = 0;
u32* cmdbuf = getThreadCommandBuffer();
cmdbuf[0] = 0x00170000;
if ((ret = svcSendSyncRequest(y2rHandle)) != 0) return ret;
*is_done = cmdbuf[2] & 0xFF;
return cmdbuf[1];
}
Result Y2RU_SetReceiving(void* dst_buf, u32 image_size, u16 transfer_unit, u16 transfer_gap)
{
Result ret = 0;
u32* cmdbuf = getThreadCommandBuffer();
cmdbuf[0] = 0x00180102;
cmdbuf[1] = (u32)dst_buf;
cmdbuf[2] = image_size;
cmdbuf[3] = transfer_unit;
cmdbuf[4] = transfer_gap;
cmdbuf[5] = 0;
cmdbuf[6] = 0xFFFF8001;
if ((ret = svcSendSyncRequest(y2rHandle)) != 0) return ret;
return cmdbuf[1];
}
Result Y2RU_IsDoneReceiving(bool* is_done)
{
Result ret = 0;
u32* cmdbuf = getThreadCommandBuffer();
cmdbuf[0] = 0x00190000;
if ((ret = svcSendSyncRequest(y2rHandle)) != 0) return ret;
*is_done = cmdbuf[2] & 0xFF;
return cmdbuf[1];
}
Result Y2RU_SetInputLineWidth(u16 line_width)
{
Result ret = 0;
u32* cmdbuf = getThreadCommandBuffer();
cmdbuf[0] = 0x001A0040;
cmdbuf[1] = line_width;
if ((ret = svcSendSyncRequest(y2rHandle)) != 0) return ret;
return cmdbuf[1];
}
Result Y2RU_SetInputLines(u16 num_lines)
{
Result ret = 0;
u32* cmdbuf = getThreadCommandBuffer();
cmdbuf[0] = 0x001C0040;
cmdbuf[1] = num_lines;
if ((ret = svcSendSyncRequest(y2rHandle)) != 0) return ret;
return cmdbuf[1];
}
Result Y2RU_SetCoefficient(const Y2R_ColorCoefficients* coefficient)
{
Result ret = 0;
u32* cmdbuf = getThreadCommandBuffer();
cmdbuf[0] = 0x001E0100;
memcpy(&cmdbuf[1], coefficient, sizeof(Y2R_ColorCoefficients));
if ((ret = svcSendSyncRequest(y2rHandle)) != 0) return ret;
return cmdbuf[1];
}
Result Y2RU_SetStandardCoefficient(Y2R_StandardCoefficient coefficient)
{
Result ret = 0;
u32* cmdbuf = getThreadCommandBuffer();
cmdbuf[0] = 0x00200040;
cmdbuf[1] = coefficient;
if ((ret = svcSendSyncRequest(y2rHandle)) != 0) return ret;
return cmdbuf[1];
}
Result Y2RU_SetAlpha(u16 alpha)
{
Result ret = 0;
u32* cmdbuf = getThreadCommandBuffer();
cmdbuf[0] = 0x00220040;
cmdbuf[1] = alpha;
if ((ret = svcSendSyncRequest(y2rHandle)) != 0) return ret;
return cmdbuf[1];
}
Result Y2RU_SetUnknownParams(const u16 params[16])
{
Result ret = 0;
u32* cmdbuf = getThreadCommandBuffer();
cmdbuf[0] = 0x00240200;
memcpy(&cmdbuf[1], params, sizeof(u16) * 16);
if ((ret = svcSendSyncRequest(y2rHandle)) != 0) return ret;
return cmdbuf[1];
}
Result Y2RU_StartConversion(void)
{
Result ret = 0;
u32* cmdbuf = getThreadCommandBuffer();
cmdbuf[0] = 0x00260000;
if ((ret = svcSendSyncRequest(y2rHandle)) != 0) return ret;
return cmdbuf[1];
}
Result Y2RU_StopConversion(void)
{
Result ret = 0;
u32* cmdbuf = getThreadCommandBuffer();
cmdbuf[0] = 0x00270000;
if ((ret = svcSendSyncRequest(y2rHandle)) != 0) return ret;
return cmdbuf[1];
}
Result Y2RU_IsBusyConversion(bool* is_busy)
{
Result ret = 0;
u32* cmdbuf = getThreadCommandBuffer();
cmdbuf[0] = 0x00280000;
if ((ret = svcSendSyncRequest(y2rHandle)) != 0) return ret;
*is_busy = cmdbuf[2] & 0xFF;
return cmdbuf[1];
}
Result Y2RU_SetConversionParams(const Y2R_ConversionParams* params)
{
Result ret = 0;
u32* cmdbuf = getThreadCommandBuffer();
cmdbuf[0] = 0x002900C0;
memcpy(&cmdbuf[1], params, sizeof(Y2R_ConversionParams));
if ((ret = svcSendSyncRequest(y2rHandle)) != 0) return ret;
return cmdbuf[1];
}
Result Y2RU_PingProcess(u8* ping)
{
Result ret = 0;
u32* cmdbuf = getThreadCommandBuffer();
cmdbuf[0] = 0x002A0000;
if ((ret = svcSendSyncRequest(y2rHandle)) != 0) return ret;
*ping = (u8)cmdbuf[2];
return cmdbuf[1];
}
Result Y2RU_DriverInitialize(void)
{
Result ret = 0;
u32* cmdbuf = getThreadCommandBuffer();
cmdbuf[0] = 0x002B0000;
if ((ret = svcSendSyncRequest(y2rHandle)) != 0) return ret;
return cmdbuf[1];
}
Result Y2RU_DriverFinalize(void)
{
Result ret = 0;
u32* cmdbuf = getThreadCommandBuffer();
cmdbuf[0] = 0x002C0000;
if ((ret = svcSendSyncRequest(y2rHandle)) != 0) return ret;
return cmdbuf[1];
}