Graphics framework for GR-PEACH. When you use this program, we judge you have agreed to the following contents. https://developer.mbed.org/teams/Renesas/wiki/About-LICENSE

Dependents:   ImageZoomInout_Sample ImageRotaion_Sample ImageScroll_Sample GR-PEACH_LCD_4_3inch_Save_to_USB ... more

License

When you use this library, we judge you have agreed to the following contents.

https://developer.mbed.org/teams/Renesas/wiki/About-LICENSE

Note

If you import the GraphicsFramework library, please import GR-PEACH_video library and R_BSP library together.



JPEG Converter

The JPEG Converter driver implements encode and decode functionality which uses the JCU of the RZ/A Series.

Hello World!

Import programJCU_HelloWorld

Hello World for JCU(JPEG Codec Unit). JCU is JPEG codec unit of RZ/A1. When you use this program, we judge you have agreed to the following contents. https://developer.mbed.org/teams/Renesas/wiki/About-LICENSE

API

Import library

Data Structures

struct bitmap_buff_info_t
Bitmap data setting struct. More...
struct encode_options_t
Encode option setting. More...

Public Types

enum jpeg_conv_error_t {
JPEG_CONV_OK = 0, JPEG_CONV_JCU_ERR = -1, JPEG_CONV_FORMA_ERR = -2, JPEG_CONV_PARAM_ERR = -3,
JPEG_CONV_BUSY = -4, JPEG_CONV_PARAM_RANGE_ERR = -7
}

Error codes.

More...
enum wr_rd_swa_t {
WR_RD_WRSWA_NON = 0, WR_RD_WRSWA_8BIT = 1, WR_RD_WRSWA_16BIT = 2, WR_RD_WRSWA_16_8BIT = 3,
WR_RD_WRSWA_32BIT = 4, WR_RD_WRSWA_32_8BIT = 5, WR_RD_WRSWA_32_16BIT = 6, WR_RD_WRSWA_32_16_8BIT = 7
}

Write/Read image pixcel frame buffer swap setting.

More...
enum wr_rd_format_t { WR_RD_YCbCr422 = 0x00, WR_RD_ARGB8888 = 0x01, WR_RD_RGB565 = 0x02 }

Write/Read image pixcel format selects.

More...
enum sub_sampling_t { SUB_SAMPLING_1_1 = 0x00, SUB_SAMPLING_1_2 = 0x01, SUB_SAMPLING_1_4 = 0x02, SUB_SAMPLING_1_8 = 0x03 }

Thinning output image selects.

More...
enum cbcr_offset_t { CBCR_OFFSET_0 = 0x00, CBCR_OFFSET_128 = 0x01 }

Cb/Cr range selects for decode.

More...

Public Member Functions

JPEG_Converter ()
Constructor method of JPEG converter(encode/decode)
virtual ~JPEG_Converter ()
Destructor method of JPEG converter(encode/decode)
JPEG_Converter::jpeg_conv_error_t decode (void *pJpegBuff, bitmap_buff_info_t *psOutputBuff)
Decode JPEG to rinear data.
JPEG_Converter::jpeg_conv_error_t decode (void *pJpegBuff, bitmap_buff_info_t *psOutputBuff, decode_options_t *pOptions)
JPEG data decode to bitmap.
JPEG_Converter::jpeg_conv_error_t encode ( bitmap_buff_info_t *psInputBuff, void *pJpegBuff, size_t *pEncodeSize)
Encode rinear data to JPEG.
JPEG_Converter::jpeg_conv_error_t encode ( bitmap_buff_info_t *psInputBuff, void *pJpegBuff, size_t *pEncodeSize, encode_options_t *pOptions)
Bitmap data encode to JPEG.
JPEG_Converter::jpeg_conv_error_t SetQuality (const uint8_t qual)
Set encode quality.

Correspondence file

A correspondence file of JPEG Converter is as the following table.

JPEGCorrespondence
Width>0(greater than 0)
Height>0(greater than 0)
Color formatYCbCr444, YCbCr422, YCbCr420, YCbCr411
BitmapCorrespondence
Width>0(greater than 0)
Height>0(greater than 0)
Color formatYCbCr422

Notice

You run JPEG converter once destruction each time.

You set whether these JPEG files aren't input, or it check error setting decode(set in "flag" = true). The JPEG file which becomes correspondence outside will be the following condition.

  • File besides the above-mentioned correspondence file.
  • As information in the JPEG file, WIDTH or HEIGHT is larger than output buffer setting.

Buffer area is used encode/decode, set 8 bytes align and non-cash memory area. The output buffer when decoding, is made beyond the size decided in the size of the JPEG file, the format, setting of thinning out. You make output buffer for decode/encode to enough big size in order to stock this result. JPEG Converter, if you do not particularly perform specified, does not check size against the output data at the time of encoding and decoding. You set the output buffer so that there is no effect of corruption by the output data.

Color format

Color format in case to be converted from Bitmap to JPEG is either ARGB8888 or RGB555, YCbCr422. Color format of the If you want to convert from JPEG file to Bitmap file is YCbCr422. You correct "alpha(member of decode_options_t)" of setting and "output_cb_cr_offset(member of decode_options_t)" according to color format when decoding.

  • example
    decode to ARGB8888(WR_RD_ARGB8888 set in format member of bitmap_buff_info_t)
    alpha = 0x01-0xFF
    output_cb_cr_offset = CBCR_OFFSET_0

    decode to YCbCr422(WR_RD_YCbCr422 set in format member of bitmap_buff_info_t)
    alpha = 0
    output_cb_cr_offset = CBCR_OFFSET_0 or CBCR_OFFSET_128

    decode to RGB565(WR_RD_RGB565 set in format member of bitmap_buff_info_t)
    alpha = 0
    output_cb_cr_offset = CBCR_OFFSET_0

Decode/encode settings are optional

If omitted encode/decode settings, it will work with the following settings.
[Decode option setting (member of decode_options_t)]

  • Vertical sub sampling is thinning output image to 1/1.
  • Horizontal sub sampling is thinning output image to 1/1.
  • Output data of Cb/Cr range is -128 to 127.
  • Output data of swap in 8-bit units: 2-1-4-3-6-5-8-7.
  • Alpha value of 0.
  • JPEG format correspondence outside error check.
  • It decode in a synchronous function.

[Encode option setting (member of encode_options_t)]

  • DRI value is 0.
  • Encoding JPEG file start width offset is 0.
  • Encoding JPEG file start height offset is 0.
  • Input data of Cb/Cr range of input data is -128 to 127.
  • Input data swap in 8-bit units: 2-1-4-3-6-5-8-7.
  • It don't check encode size.
  • Quantization Y use default table(Quality75).
  • Quantization C use default table(Quality75).
  • Huffman Y DC use default table.
  • Huffman C DC use default table.
  • Huffman Y AC use default table.
  • Huffman C AC use default table.
  • It encode in a synchronous function.

Synchronous/asynchronous switching

Decoding and encoding setting to operate asynchronously by setting a callback function(decode_options_t and encode_options_t).

Quality

Quality changes are possible. If you want to change the Quality, please specify the table made of Quality you want to change the address of the setting. If you do not want to change the Quality, it will operate at Quality75.

RGA

The RGA library implements fast drawing functionality which uses the RGA of the RZ/A Series.
Supporting compiler is ARMCC, GCC ARM and IAR.

Hello World!

Import programRGA_HelloWorld

Hello World for RGA(Renesas Graphics Architecture). RGA is the Graphics Library of RZ/A1. When you use this program, we judge you have agreed to the following contents. https://developer.mbed.org/teams/Renesas/wiki/About-LICENSE

Committer:
dkato
Date:
Mon Apr 24 08:16:23 2017 +0000
Revision:
13:1ee2176ef13f
Parent:
3:9f857750e4e9
Add "SetQuality()" to JCU.
; Bug fixes.

Who changed what in which revision?

UserRevisionLine numberNew contents of line
1050186 3:9f857750e4e9 1 ;/*******************************************************************************
1050186 3:9f857750e4e9 2 ;* DISCLAIMER
1050186 3:9f857750e4e9 3 ;* This software is supplied by Renesas Electronics Corporation and is only
1050186 3:9f857750e4e9 4 ;* intended for use with Renesas products. No other uses are authorized. This
1050186 3:9f857750e4e9 5 ;* software is owned by Renesas Electronics Corporation and is protected under
1050186 3:9f857750e4e9 6 ;* all applicable laws, including copyright laws.
1050186 3:9f857750e4e9 7 ;* THIS SOFTWARE IS PROVIDED "AS IS" AND RENESAS MAKES NO WARRANTIES REGARDING
1050186 3:9f857750e4e9 8 ;* THIS SOFTWARE, WHETHER EXPRESS, IMPLIED OR STATUTORY, INCLUDING BUT NOT
1050186 3:9f857750e4e9 9 ;* LIMITED TO WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE
1050186 3:9f857750e4e9 10 ;* AND NON-INFRINGEMENT. ALL SUCH WARRANTIES ARE EXPRESSLY DISCLAIMED.
1050186 3:9f857750e4e9 11 ;* TO THE MAXIMUM EXTENT PERMITTED NOT PROHIBITED BY LAW, NEITHER RENESAS
1050186 3:9f857750e4e9 12 ;* ELECTRONICS CORPORATION NOR ANY OF ITS AFFILIATED COMPANIES SHALL BE LIABLE
1050186 3:9f857750e4e9 13 ;* FOR ANY DIRECT, INDIRECT, SPECIAL, INCIDENTAL OR CONSEQUENTIAL DAMAGES FOR
1050186 3:9f857750e4e9 14 ;* ANY REASON RELATED TO THIS SOFTWARE, EVEN IF RENESAS OR ITS AFFILIATES HAVE
1050186 3:9f857750e4e9 15 ;* BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
1050186 3:9f857750e4e9 16 ;* Renesas reserves the right, without notice, to make changes to this software
1050186 3:9f857750e4e9 17 ;* and to discontinue the availability of this software. By using this software,
1050186 3:9f857750e4e9 18 ;* you agree to the additional terms and conditions found by accessing the
1050186 3:9f857750e4e9 19 ;* following link:
1050186 3:9f857750e4e9 20 ;* http://www.renesas.com/disclaimer
1050186 3:9f857750e4e9 21 ;* Copyright (C) 2012 - 2014 Renesas Electronics Corporation. All rights reserved.
1050186 3:9f857750e4e9 22 ;*******************************************************************************/
1050186 3:9f857750e4e9 23 ;/*******************************************************************************
1050186 3:9f857750e4e9 24 ;* $FileName: r_ospl_os_less_asm.s $
1050186 3:9f857750e4e9 25 ;* $Module: OSPL $ $PublicVersion: 0.83 $ (=R_OSPL_VERSION)
1050186 3:9f857750e4e9 26 ;* $Rev: 35 $
1050186 3:9f857750e4e9 27 ;* $Date:: 2014-04-15 21:38:18 +0900#$
1050186 3:9f857750e4e9 28 ;* Description : OS Porting Layer API
1050186 3:9f857750e4e9 29 ;******************************************************************************/
1050186 3:9f857750e4e9 30
1050186 3:9f857750e4e9 31
1050186 3:9f857750e4e9 32 @ PRESERVE8
1050186 3:9f857750e4e9 33 .section .text @, CODE, READONLY
1050186 3:9f857750e4e9 34
1050186 3:9f857750e4e9 35
1050186 3:9f857750e4e9 36 ;/******************************************************************************
1050186 3:9f857750e4e9 37 ;* Function Name: [R_OSPL_MEMORY_Flush_Sub]
1050186 3:9f857750e4e9 38 ;* Description :
1050186 3:9f857750e4e9 39 ;* Arguments : None
1050186 3:9f857750e4e9 40 ;* Return Value : None
1050186 3:9f857750e4e9 41 ;******************************************************************************/
1050186 3:9f857750e4e9 42
1050186 3:9f857750e4e9 43 .global R_OSPL_MEMORY_Flush_Sub
1050186 3:9f857750e4e9 44
1050186 3:9f857750e4e9 45 R_OSPL_MEMORY_Flush_Sub:
1050186 3:9f857750e4e9 46
1050186 3:9f857750e4e9 47 PUSH {r4-r7}
1050186 3:9f857750e4e9 48
1050186 3:9f857750e4e9 49 MRC p15, 1, r7, c0, c0, 1 ;// r7 = p15(CLIDR); // [r4] CLIDR(LoC) * 2 // LoC: level of coherency
1050186 3:9f857750e4e9 50 MOV r4, r7, LSR #23 ;// r4 = r7 >> 23; // :
1050186 3:9f857750e4e9 51 ANDS r4, r4, #0xE ;// r4 &= 0xE; // :
1050186 3:9f857750e4e9 52 BEQ Fin ;// if ( r4 == 0 ) goto Fin; // if LoC == 0, no need to clean
1050186 3:9f857750e4e9 53
1050186 3:9f857750e4e9 54 MOV r3, #0 ;// for ( r3 = 0; r3 < r4; r3 += 2 ) { // [r3]: current_cache_level * 2
1050186 3:9f857750e4e9 55 Loop1:
1050186 3:9f857750e4e9 56 ADD r2, r3, r3, LSR #1 ;// r2 = r3 + (r3 >> 1); // r2 = current_cache_level * 3
1050186 3:9f857750e4e9 57 MOV r0, r7, LSR r2 ;// r0 = (r7 >> r2); // r0 = CLIDR(Ctype#)
1050186 3:9f857750e4e9 58 AND r0, r0, #7 ;// r0 &= 7; // :
1050186 3:9f857750e4e9 59 CMP r0, #2 ;// if ( r0 < 2 ) goto Continue1;
1050186 3:9f857750e4e9 60 BLT Continue1 ;// : // If no cache or only instruction cache at this level
1050186 3:9f857750e4e9 61
1050186 3:9f857750e4e9 62 MCR p15, 2, r3, c0, c0, 0 ;// p15(CSSELR) = r3; // CSSELR: Cache Size Selection Register
1050186 3:9f857750e4e9 63 ISB ;// Guarantee MCR operation
1050186 3:9f857750e4e9 64 MRC p15, 1, r0, c0, c0, 0 ;// r0 = p15(CCSIDR); // CCSIDR: Cache Size ID Registers
1050186 3:9f857750e4e9 65 AND r6, r0, #7 ;// r6 = r0 & 7; // CCSIDR(LineSize): log2(cache_line_byte)-4
1050186 3:9f857750e4e9 66 ADD r6, r6, #4 ;// r6 += 4; // [r6] log2(cache_line_byte)
1050186 3:9f857750e4e9 67 LDR r7, =0x3FF ;// r7 = 0x3FF; // [r7] CCSIDR(Associativity): associativity_value - 1
1050186 3:9f857750e4e9 68 AND r7, r7, r0, LSR #3 ;// r7 = r7 & r0 >> 3; // :
1050186 3:9f857750e4e9 69 CLZ r5, r7 ;// r5 = CLZ( r7 ); // [r5] log2(WaySize), if exponential 2
1050186 3:9f857750e4e9 70 LDR r2, =0x7FFF ;// r2 = 0x7FFF; // CCSIDR(NumSets) : max number of the index size - 1
1050186 3:9f857750e4e9 71 AND r2, r2, r0, LSR #13 ;// r2 = r2 & r0 >> 13; // :
1050186 3:9f857750e4e9 72 ;// for ( /*r2*/; r2 >= 0; r2 -= 1 ) { // [r2] Set number
1050186 3:9f857750e4e9 73 Loop2:
1050186 3:9f857750e4e9 74 MOV r1, r7 ;// for ( r1 = r7; r1 >= 0; r1 -= 1 ) { // [r1] Way number
1050186 3:9f857750e4e9 75 Loop3:
1050186 3:9f857750e4e9 76 ORR r0, r3, r1, LSL r5 ;// r0 = r3 | (r1 << r5)
1050186 3:9f857750e4e9 77 ORR r0, r0, r2, LSL r6 ;// | (r2 << r6);
1050186 3:9f857750e4e9 78 MCR p15, 0, r0, c7, c14, 2 ;// p15(DCCISW) = r0; // Clean(WriteBack) and Invalidate
1050186 3:9f857750e4e9 79 SUBS r1, r1, #1 ;// } /* End of r1 loop */
1050186 3:9f857750e4e9 80 BGE Loop3 ;// :
1050186 3:9f857750e4e9 81 SUBS r2, r2, #1 ;// } /* End of r2 loop */
1050186 3:9f857750e4e9 82 BGE Loop2 ;// :
1050186 3:9f857750e4e9 83 Continue1:
1050186 3:9f857750e4e9 84 ADD r3, r3, #2 ;// } /* End of r3 loop */
1050186 3:9f857750e4e9 85 CMP r4, r3 ;// :
1050186 3:9f857750e4e9 86 BGT Loop1 ;// :
1050186 3:9f857750e4e9 87
1050186 3:9f857750e4e9 88 Fin:
1050186 3:9f857750e4e9 89 DSB
1050186 3:9f857750e4e9 90 POP {r4-r7}
1050186 3:9f857750e4e9 91 BX lr
1050186 3:9f857750e4e9 92
1050186 3:9f857750e4e9 93
1050186 3:9f857750e4e9 94 ;/******************************************************************************
1050186 3:9f857750e4e9 95 ;* Function Name: [R_OSPL_MEMORY_GetCacheLineSize]
1050186 3:9f857750e4e9 96 ;* Description :
1050186 3:9f857750e4e9 97 ;* Arguments : None
1050186 3:9f857750e4e9 98 ;* Return Value : None
1050186 3:9f857750e4e9 99 ;******************************************************************************/
1050186 3:9f857750e4e9 100
1050186 3:9f857750e4e9 101 .global R_OSPL_MEMORY_GetCacheLineSize
1050186 3:9f857750e4e9 102
1050186 3:9f857750e4e9 103 R_OSPL_MEMORY_GetCacheLineSize:
1050186 3:9f857750e4e9 104
1050186 3:9f857750e4e9 105 MRC p15, 1, r0, c0, c0, 0 ;// r0 = p15(CCSIDR); // CCSIDR: Cache Size ID Registers
1050186 3:9f857750e4e9 106 AND r0, r0, #7 ;// r0 = r0 & 7; // CCSIDR.LineSize: log2(cache_line_byte)-4
1050186 3:9f857750e4e9 107 ADD r0, r0, #4 ;// r0 += 4; //
1050186 3:9f857750e4e9 108 MOV r1, #1 ;// r0 = 1 << r0; // [r0] cache_line_byte
1050186 3:9f857750e4e9 109 MOV r0, r1, LSL r0 ;// :
1050186 3:9f857750e4e9 110
1050186 3:9f857750e4e9 111 BX lr
1050186 3:9f857750e4e9 112
1050186 3:9f857750e4e9 113
1050186 3:9f857750e4e9 114 ;/******************************************************************************
1050186 3:9f857750e4e9 115 ;* Function Name: [R_OSPL_MEMORY_RangeFlush_Sub]
1050186 3:9f857750e4e9 116 ;* Description :
1050186 3:9f857750e4e9 117 ;* Arguments : r0: Start address
1050186 3:9f857750e4e9 118 ;* : r1: Over address (Last + 1)
1050186 3:9f857750e4e9 119 ;* : r2: Cache line size
1050186 3:9f857750e4e9 120 ;* Return Value : None
1050186 3:9f857750e4e9 121 ;******************************************************************************/
1050186 3:9f857750e4e9 122
1050186 3:9f857750e4e9 123 .global R_OSPL_MEMORY_RangeFlush_Sub
1050186 3:9f857750e4e9 124
1050186 3:9f857750e4e9 125 R_OSPL_MEMORY_RangeFlush_Sub:
1050186 3:9f857750e4e9 126
1050186 3:9f857750e4e9 127 Loop:
1050186 3:9f857750e4e9 128 CMP r0, r1 ;// for ( r0 = r0; r0 < r1; r0 += r2 ) {
1050186 3:9f857750e4e9 129 BGE Fin2 ;// :
1050186 3:9f857750e4e9 130 MCR p15, 0, r0, c7, c6, 1 ;// p15(DCIMVAC) = r0; // Invalidate
1050186 3:9f857750e4e9 131 ADD r0, r0, r2 ;// }
1050186 3:9f857750e4e9 132 B Loop ;// :
1050186 3:9f857750e4e9 133 Fin2:
1050186 3:9f857750e4e9 134 DSB
1050186 3:9f857750e4e9 135 BX lr
1050186 3:9f857750e4e9 136
1050186 3:9f857750e4e9 137 .END
1050186 3:9f857750e4e9 138
1050186 3:9f857750e4e9 139
1050186 3:9f857750e4e9 140