539 lines
16 KiB
C
539 lines
16 KiB
C
/*
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u8x8_d_ssd1362.c
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https://github.com/olikraus/u8g2/issues/2051
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Universal 8bit Graphics Library (https://github.com/olikraus/u8g2/)
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Copyright (c) 2022, olikraus@gmail.com
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All rights reserved.
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Redistribution and use in source and binary forms, with or without modification,
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are permitted provided that the following conditions are met:
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* Redistributions of source code must retain the above copyright notice, this list
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of conditions and the following disclaimer.
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* Redistributions in binary form must reproduce the above copyright notice, this
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list of conditions and the following disclaimer in the documentation and/or other
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materials provided with the distribution.
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THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND
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CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES,
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INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
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MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
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DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR
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CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
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NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
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LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
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CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
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STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
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ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF
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ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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SSD1362:
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256 x 64 (ssd1322: 480 x 128)
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16 gray scale
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Note: Currently the external IREF is activated.
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Maybe we need a constructor with internal IREF
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*/
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#include "u8x8.h"
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static const uint8_t u8x8_d_ssd1362_powersave0_seq[] = {
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U8X8_START_TRANSFER(), /* enable chip, delay is part of the transfer start */
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U8X8_C(0x0af), /* ssd1362: display on */
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U8X8_END_TRANSFER(), /* disable chip */
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U8X8_END() /* end of sequence */
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};
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static const uint8_t u8x8_d_ssd1362_powersave1_seq[] = {
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U8X8_START_TRANSFER(), /* enable chip, delay is part of the transfer start */
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U8X8_C(0x0ae), /* ssd1362: display off */
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U8X8_END_TRANSFER(), /* disable chip */
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U8X8_END() /* end of sequence */
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};
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/*
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input:
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one tile (8 Bytes)
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output:
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Tile for SSD1362 (32 Bytes)
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*/
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static uint8_t u8x8_ssd1362_to32_dest_buf[32];
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static uint8_t *u8x8_ssd1362_8to32(U8X8_UNUSED u8x8_t *u8x8, uint8_t *ptr)
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{
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uint8_t v;
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uint8_t a,b;
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uint8_t i, j;
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uint8_t *dest;
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for( j = 0; j < 4; j++ )
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{
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dest = u8x8_ssd1362_to32_dest_buf;
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dest += j;
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a =*ptr;
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ptr++;
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b = *ptr;
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ptr++;
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for( i = 0; i < 8; i++ )
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{
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v = 0;
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if ( a&1 ) v |= 0xf0;
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if ( b&1 ) v |= 0x0f;
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*dest = v;
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dest+=4;
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a >>= 1;
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b >>= 1;
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}
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}
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return u8x8_ssd1362_to32_dest_buf;
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}
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/* special case for the 206x36 display: send only half of the last tile */
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static uint8_t *u8x8_ssd1362_8to24(U8X8_UNUSED u8x8_t *u8x8, uint8_t *ptr)
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{
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uint8_t v;
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uint8_t a,b;
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uint8_t i, j;
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uint8_t *dest;
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for( j = 0; j < 3; j++ )
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{
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dest = u8x8_ssd1362_to32_dest_buf;
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dest += j;
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a =*ptr;
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ptr++;
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b = *ptr;
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ptr++;
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for( i = 0; i < 8; i++ )
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{
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v = 0;
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if ( a&1 ) v |= 0xf0;
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if ( b&1 ) v |= 0x0f;
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*dest = v;
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dest+=3;
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a >>= 1;
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b >>= 1;
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}
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}
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return u8x8_ssd1362_to32_dest_buf;
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}
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uint8_t u8x8_d_ssd1362_common(u8x8_t *u8x8, uint8_t msg, uint8_t arg_int, void *arg_ptr)
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{
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uint8_t x;
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uint8_t y, c;
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uint8_t *ptr;
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switch(msg)
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{
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/* U8X8_MSG_DISPLAY_SETUP_MEMORY is handled by the calling function */
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/*
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case U8X8_MSG_DISPLAY_SETUP_MEMORY:
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break;
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case U8X8_MSG_DISPLAY_INIT:
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u8x8_d_helper_display_init(u8x8);
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u8x8_cad_SendSequence(u8x8, u8x8_d_ssd1362_256x64_init_seq);
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break;
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*/
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case U8X8_MSG_DISPLAY_SET_POWER_SAVE:
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if ( arg_int == 0 )
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u8x8_cad_SendSequence(u8x8, u8x8_d_ssd1362_powersave0_seq);
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else
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u8x8_cad_SendSequence(u8x8, u8x8_d_ssd1362_powersave1_seq);
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break;
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#ifdef U8X8_WITH_SET_CONTRAST
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case U8X8_MSG_DISPLAY_SET_CONTRAST:
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u8x8_cad_StartTransfer(u8x8);
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u8x8_cad_SendCmd(u8x8, 0x081 );
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u8x8_cad_SendArg(u8x8, arg_int ); /* ssd1362 has range from 0 to 255 */
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u8x8_cad_EndTransfer(u8x8);
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break;
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#endif
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case U8X8_MSG_DISPLAY_DRAW_TILE:
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u8x8_cad_StartTransfer(u8x8);
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x = ((u8x8_tile_t *)arg_ptr)->x_pos;
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x *= 4; // convert from tile pos to display column
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x += u8x8->x_offset;
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y = (((u8x8_tile_t *)arg_ptr)->y_pos);
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y *= 8;
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u8x8_cad_SendCmd(u8x8, 0x075 ); /* set row address, moved out of the loop (issue 302) */
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u8x8_cad_SendArg(u8x8, y);
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u8x8_cad_SendArg(u8x8, y+7);
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do
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{
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c = ((u8x8_tile_t *)arg_ptr)->cnt;
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ptr = ((u8x8_tile_t *)arg_ptr)->tile_ptr;
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do
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{
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u8x8_cad_SendCmd(u8x8, 0x015 ); /* set column address */
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u8x8_cad_SendArg(u8x8, x ); /* start */
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u8x8_cad_SendArg(u8x8, x+3 ); /* end */
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u8x8_cad_SendData(u8x8, 32, u8x8_ssd1362_8to32(u8x8, ptr));
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ptr += 8;
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x += 4;
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c--;
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} while( c > 0 );
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arg_int--;
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} while( arg_int > 0 );
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u8x8_cad_EndTransfer(u8x8);
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break;
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default:
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return 0;
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}
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return 1;
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}
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uint8_t u8x8_d_ssd1362_common_0_75(u8x8_t *u8x8, uint8_t msg, uint8_t arg_int, void *arg_ptr)
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{
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uint8_t x;
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uint8_t y, c;
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uint8_t *ptr;
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switch(msg)
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{
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/* U8X8_MSG_DISPLAY_SETUP_MEMORY is handled by the calling function */
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/*
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case U8X8_MSG_DISPLAY_SETUP_MEMORY:
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break;
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case U8X8_MSG_DISPLAY_INIT:
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u8x8_d_helper_display_init(u8x8);
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u8x8_cad_SendSequence(u8x8, u8x8_d_ssd1362_256x64_init_seq);
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break;
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*/
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case U8X8_MSG_DISPLAY_SET_POWER_SAVE:
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if ( arg_int == 0 )
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u8x8_cad_SendSequence(u8x8, u8x8_d_ssd1362_powersave0_seq);
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else
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u8x8_cad_SendSequence(u8x8, u8x8_d_ssd1362_powersave1_seq);
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break;
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#ifdef U8X8_WITH_SET_CONTRAST
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case U8X8_MSG_DISPLAY_SET_CONTRAST:
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u8x8_cad_StartTransfer(u8x8);
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u8x8_cad_SendCmd(u8x8, 0x081 );
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u8x8_cad_SendArg(u8x8, arg_int ); /* ssd1362 has range from 0 to 255 */
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u8x8_cad_EndTransfer(u8x8);
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break;
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#endif
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case U8X8_MSG_DISPLAY_DRAW_TILE:
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u8x8_cad_StartTransfer(u8x8);
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x = ((u8x8_tile_t *)arg_ptr)->x_pos;
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x *= 4; // convert from tile pos to display column
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x += u8x8->x_offset;
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y = (((u8x8_tile_t *)arg_ptr)->y_pos);
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y *= 8;
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u8x8_cad_SendCmd(u8x8, 0x075 ); /* set row address, moved out of the loop (issue 302) */
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u8x8_cad_SendArg(u8x8, y);
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u8x8_cad_SendArg(u8x8, y+7);
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do
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{
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c = ((u8x8_tile_t *)arg_ptr)->cnt;
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ptr = ((u8x8_tile_t *)arg_ptr)->tile_ptr;
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do
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{
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u8x8_cad_SendCmd(u8x8, 0x015 ); /* set column address */
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if ( x < 123 )
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{
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u8x8_cad_SendArg(u8x8, x ); /* start */
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u8x8_cad_SendArg(u8x8, x+3 ); /* end */
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u8x8_cad_SendData(u8x8, 32, u8x8_ssd1362_8to32(u8x8, ptr));
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}
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else
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{
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u8x8_cad_SendArg(u8x8, x ); /* start */
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u8x8_cad_SendArg(u8x8, x+2 ); /* end */
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u8x8_cad_SendData(u8x8, 24, u8x8_ssd1362_8to24(u8x8, ptr));
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}
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ptr += 8;
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x += 4;
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c--;
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} while( c > 0 );
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arg_int--;
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} while( arg_int > 0 );
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u8x8_cad_EndTransfer(u8x8);
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break;
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default:
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return 0;
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}
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return 1;
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}
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/*=========================================================*/
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static const uint8_t u8x8_d_ssd1362_256x64_flip0_seq[] = {
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U8X8_START_TRANSFER(), /* enable chip, delay is part of the transfer start */
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U8X8_CA(0xa0, 0xc3), //Set Remap c3 = 11000011
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U8X8_END_TRANSFER(), /* disable chip */
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U8X8_END() /* end of sequence */
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};
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static const uint8_t u8x8_d_ssd1362_256x64_flip1_seq[] = {
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U8X8_START_TRANSFER(), /* enable chip, delay is part of the transfer start */
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U8X8_CA(0xa0, 0xd0),
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U8X8_END_TRANSFER(), /* disable chip */
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U8X8_END() /* end of sequence */
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};
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static const u8x8_display_info_t u8x8_ssd1362_256x64_display_info =
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{
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/* chip_enable_level = */ 0,
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/* chip_disable_level = */ 1,
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/* post_chip_enable_wait_ns = */ 20,
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/* pre_chip_disable_wait_ns = */ 10,
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/* reset_pulse_width_ms = */ 100, /* ssd1362: 2 us */
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/* post_reset_wait_ms = */ 100, /* far east OLEDs need much longer setup time */
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/* sda_setup_time_ns = */ 50, /* ssd1362: 15ns, but cycle time is 100ns, so use 100/2 */
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/* sck_pulse_width_ns = */ 50, /* ssd1362: 20ns, but cycle time is 100ns, so use 100/2, AVR: below 70: 8 MHz, >= 70 --> 4MHz clock */
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/* sck_clock_hz = */ 10000000UL, /* since Arduino 1.6.0, the SPI bus speed in Hz. Should be 1000000000/sck_pulse_width_ns, increased to 8MHz (issue 215), 10 MHz (issue 301) */
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/* spi_mode = */ 0, /* active high, rising edge */
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/* i2c_bus_clock_100kHz = */ 4,
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/* data_setup_time_ns = */ 10,
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/* write_pulse_width_ns = */ 150, /* ssd1362: cycle time is 300ns, so use 300/2 = 150 */
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/* tile_width = */ 32, /* 256 pixel, so we require 32 bytes for this */
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/* tile_height = */ 8,
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/* default_x_offset = */ 0, /* this is the byte offset (there are two pixel per byte with 4 bit per pixel) */
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/* flipmode_x_offset = */ 0,
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/* pixel_width = */ 256,
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/* pixel_height = */ 64
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};
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/* https://github.com/olikraus/u8g2/issues/2051 */
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static const uint8_t u8x8_d_ssd1362_256x64_init_seq[] = {
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U8X8_DLY(1),
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U8X8_START_TRANSFER(), /* enable chip, delay is part of the transfer start */
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U8X8_DLY(1),
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U8X8_CA(0xfd, 0x12), /* unlock */
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U8X8_C(0xae), /* display off */
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U8X8_CA(0x23, 0x00), //POR 0x00; Disable fade mode
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U8X8_CA(0x81, 0x9f), //Set contrast
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/*
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Re- map setting in Graphic Display Data RAM
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(GDDRAM)
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A[0] = 0b, Disable Column Address Re-map (RESET)
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A[0] = 1b, Enable Column Address Re-map ***
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A[1] = 0b, Disable Nibble Re-map (RESET)
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A[1] = 1b, Enable Nibble Re-map ***
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A[2] = 0b, Enable Horizontal Address Increment (RESET) ***
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A[2] = 1b, Enable Vertical Address Increment
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A[4] = 0b, Disable COM Re-map (RESET)
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A[4] = 1b, Enable COM Re-map
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A[6] = 0b, Disable SEG Split Odd Even ***
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A[6] = 1b, Enable SEG Split Odd Even (RESET)
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A[7] = 0b, Disable SEG left/right remap (RESET)
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A[7] = 1b, Enable SEG left/right remap
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*/
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U8X8_CA(0xa0, 0xc3),
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U8X8_CA(0xa1, 0), //Set Display Start Line
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U8X8_CA(0xa2, 0), //Set Display Offset
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U8X8_C(0xa4), //Normal Display
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U8X8_CA(0xa8, 63), //Set Multiplex Ratio: (63 rows)
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U8X8_CA(0xab, 1), //Set VDD regulator
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U8X8_CA(0xad, 0x8e), //External /Internal IREF Selection, 9e: internal, 8e: external
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U8X8_CA(0xb1, 0x22), //Set Phase Length, reset: 0x82
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U8X8_CA(0xb3, 0xa0), //Display clock Divider
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U8X8_CA(0xb6, 0x04), //Set Second precharge Period
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U8X8_C(0xb9), //Set Linear LUT
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U8X8_CA(0xbc, 0x1f), //Set pre-charge voltage level, 0..0x1f, 0x1f = 0.51*Vcc
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U8X8_CA(0xbd, 1), //Pre-charge voltage capacitor Selection, 0: without, 1: with Vp capacitor
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U8X8_CA(0xbe, 7), //Set cOM deselect voltage level, 7 = 0.86*Vcc
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U8X8_DLY(1), /* delay 1ms */
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U8X8_END_TRANSFER(), /* disable chip */
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U8X8_END() /* end of sequence */
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};
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uint8_t u8x8_d_ssd1362_256x64(u8x8_t *u8x8, uint8_t msg, uint8_t arg_int, void *arg_ptr)
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{
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switch(msg)
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{
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case U8X8_MSG_DISPLAY_SETUP_MEMORY:
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u8x8_d_helper_display_setup_memory(u8x8, &u8x8_ssd1362_256x64_display_info);
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break;
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case U8X8_MSG_DISPLAY_INIT:
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u8x8_d_helper_display_init(u8x8);
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u8x8_cad_SendSequence(u8x8, u8x8_d_ssd1362_256x64_init_seq);
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break;
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case U8X8_MSG_DISPLAY_SET_FLIP_MODE:
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if ( arg_int == 0 )
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{
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u8x8_cad_SendSequence(u8x8, u8x8_d_ssd1362_256x64_flip0_seq);
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u8x8->x_offset = u8x8->display_info->default_x_offset;
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}
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else
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{
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u8x8_cad_SendSequence(u8x8, u8x8_d_ssd1362_256x64_flip1_seq);
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u8x8->x_offset = u8x8->display_info->flipmode_x_offset;
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}
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break;
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default:
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return u8x8_d_ssd1362_common(u8x8, msg, arg_int, arg_ptr);
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}
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return 1;
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}
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/*=========================================================*/
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static const u8x8_display_info_t u8x8_ssd1362_206x36_display_info =
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{
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/* chip_enable_level = */ 0,
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/* chip_disable_level = */ 1,
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/* post_chip_enable_wait_ns = */ 20,
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/* pre_chip_disable_wait_ns = */ 10,
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/* reset_pulse_width_ms = */ 100, /* ssd1362: 2 us */
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/* post_reset_wait_ms = */ 100, /* far east OLEDs need much longer setup time */
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/* sda_setup_time_ns = */ 50, /* ssd1362: 15ns, but cycle time is 100ns, so use 100/2 */
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/* sck_pulse_width_ns = */ 50, /* ssd1362: 20ns, but cycle time is 100ns, so use 100/2, AVR: below 70: 8 MHz, >= 70 --> 4MHz clock */
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/* sck_clock_hz = */ 10000000UL, /* since Arduino 1.6.0, the SPI bus speed in Hz. Should be 1000000000/sck_pulse_width_ns, increased to 8MHz (issue 215), 10 MHz (issue 301) */
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/* spi_mode = */ 0, /* active high, rising edge */
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/* i2c_bus_clock_100kHz = */ 4,
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/* data_setup_time_ns = */ 10,
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/* write_pulse_width_ns = */ 150, /* ssd1362: cycle time is 300ns, so use 300/2 = 150 */
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/* tile_width = */ 26, /* 26*8 = 208 */
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/* tile_height = */ 5, /* 5*8 = 40 */
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/* default_x_offset = */ 0, /* this is the byte offset (there are two pixel per byte with 4 bit per pixel) */
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/* flipmode_x_offset = */ 25,
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/* pixel_width = */ 206,
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/* pixel_height = */ 36
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|
};
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|
|
|
|
|
/* https://github.com/olikraus/u8g2/issues/2051 */
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static const uint8_t u8x8_d_ssd1362_206x36_init_seq[] = {
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|
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U8X8_DLY(1),
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U8X8_START_TRANSFER(), /* enable chip, delay is part of the transfer start */
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U8X8_DLY(1),
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|
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|
U8X8_CA(0xfd, 0x12), /* unlock */
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|
U8X8_C(0xae), /* display off */
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|
U8X8_CA(0x23, 0x00), //POR 0x00; Disable fade mode
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|
U8X8_CA(0x81, 0x9f), //Set contrast
|
|
|
|
/*
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|
Re- map setting in Graphic Display Data RAM
|
|
(GDDRAM)
|
|
|
|
A[0] = 0b, Disable Column Address Re-map (RESET)
|
|
A[0] = 1b, Enable Column Address Re-map ***
|
|
|
|
A[1] = 0b, Disable Nibble Re-map (RESET)
|
|
A[1] = 1b, Enable Nibble Re-map ***
|
|
|
|
A[2] = 0b, Enable Horizontal Address Increment (RESET) ***
|
|
A[2] = 1b, Enable Vertical Address Increment
|
|
|
|
A[4] = 0b, Disable COM Re-map (RESET)
|
|
A[4] = 1b, Enable COM Re-map
|
|
|
|
A[6] = 0b, Disable SEG Split Odd Even ***
|
|
A[6] = 1b, Enable SEG Split Odd Even (RESET)
|
|
|
|
A[7] = 0b, Disable SEG left/right remap (RESET)
|
|
A[7] = 1b, Enable SEG left/right remap
|
|
|
|
*/
|
|
U8X8_CA(0xa0, 0xc3),
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|
U8X8_CA(0xa1, 50), //Set Display Start Line
|
|
U8X8_CA(0xa2, 0), //Set Display Offset
|
|
U8X8_C(0xa4), //Normal Display
|
|
U8X8_CA(0xa8, 63), //Set Multiplex Ratio
|
|
U8X8_CA(0xab, 1), //Set VDD regulator
|
|
U8X8_CA(0xad, 0x8e), //External /Internal IREF Selection, 9e: internal, 8e: external
|
|
U8X8_CA(0xb1, 0x22), //Set Phase Length, reset: 0x82
|
|
U8X8_CA(0xb3, 0xa0), //Display clock Divider
|
|
U8X8_CA(0xb6, 0x04), //Set Second precharge Period
|
|
U8X8_C(0xb9), //Set Linear LUT
|
|
U8X8_CA(0xbc, 0x1f), //Set pre-charge voltage level, 0..0x1f, 0x1f = 0.51*Vcc
|
|
U8X8_CA(0xbd, 1), //Pre-charge voltage capacitor Selection, 0: without, 1: with Vp capacitor
|
|
U8X8_CA(0xbe, 7), //Set cOM deselect voltage level, 7 = 0.86*Vcc
|
|
U8X8_DLY(1), /* delay 1ms */
|
|
|
|
|
|
U8X8_END_TRANSFER(), /* disable chip */
|
|
U8X8_END() /* end of sequence */
|
|
};
|
|
|
|
|
|
uint8_t u8x8_d_ssd1362_206x36(u8x8_t *u8x8, uint8_t msg, uint8_t arg_int, void *arg_ptr)
|
|
{
|
|
switch(msg)
|
|
{
|
|
case U8X8_MSG_DISPLAY_SETUP_MEMORY:
|
|
u8x8_d_helper_display_setup_memory(u8x8, &u8x8_ssd1362_206x36_display_info);
|
|
break;
|
|
case U8X8_MSG_DISPLAY_INIT:
|
|
u8x8_d_helper_display_init(u8x8);
|
|
u8x8_cad_SendSequence(u8x8, u8x8_d_ssd1362_206x36_init_seq);
|
|
break;
|
|
case U8X8_MSG_DISPLAY_SET_FLIP_MODE:
|
|
if ( arg_int == 0 )
|
|
{
|
|
u8x8_cad_SendSequence(u8x8, u8x8_d_ssd1362_256x64_flip0_seq);
|
|
u8x8->x_offset = u8x8->display_info->default_x_offset;
|
|
}
|
|
else
|
|
{
|
|
u8x8_cad_SendSequence(u8x8, u8x8_d_ssd1362_256x64_flip1_seq);
|
|
u8x8->x_offset = u8x8->display_info->flipmode_x_offset;
|
|
}
|
|
break;
|
|
|
|
default:
|
|
return u8x8_d_ssd1362_common_0_75(u8x8, msg, arg_int, arg_ptr);
|
|
}
|
|
return 1;
|
|
}
|