2019-06-14 05:40:37 +08:00
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/*
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u8x8_d_st75320.c
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Universal 8bit Graphics Library (https://github.com/olikraus/u8g2/)
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Copyright (c) 2019, 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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ST75320: 320x240 monochrome LCD
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https://github.com/olikraus/u8g2/issues/921
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*/
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#include "u8x8.h"
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static const uint8_t u8x8_d_st75320_jlx320240_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), /* 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_st75320_jlx320240_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), /* 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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static const uint8_t u8x8_d_st75320_jlx320240_flip0_seq[] = {
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U8X8_START_TRANSFER(), /* enable chip, delay is part of the transfer start */
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2019-06-15 17:03:24 +08:00
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U8X8_CA(0xC4, 0x02), /* COM Output Status, Bits 0 & 1 */
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U8X8_C(0xA1), /* Column Address Direction: Bit 0 */
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2019-06-14 05:40:37 +08:00
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//U8X8_C(0x0a1), /* segment remap a0/a1*/
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//U8X8_C(0x0c8), /* c0: scan dir normal, c8: reverse */
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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_st75320_jlx320240_flip1_seq[] = {
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U8X8_START_TRANSFER(), /* enable chip, delay is part of the transfer start */
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//U8X8_C(0x0a0), /* segment remap a0/a1*/
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//U8X8_C(0x0c0), /* c0: scan dir normal, c8: reverse */
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2019-06-15 17:03:24 +08:00
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U8X8_CA(0xC4, 0x03), /* COM Output Status, Bits 0 & 1 */
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U8X8_C(0xA0), /* Column Address Direction: Bit 0 */
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2019-06-14 05:40:37 +08:00
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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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static uint8_t u8x8_d_st75320_generic(u8x8_t *u8x8, uint8_t msg, uint8_t arg_int, void *arg_ptr)
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{
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uint16_t x;
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uint8_t c;
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uint8_t *ptr;
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switch(msg)
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{
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/* handled by the calling function
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case U8X8_MSG_DISPLAY_SETUP_MEMORY:
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u8x8_d_helper_display_setup_memory(u8x8, &u8x8_st75320_jlx320240_display_info);
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break;
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*/
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/* handled by the calling function
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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_st75320_jlx320240_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_st75320_jlx320240_powersave0_seq);
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else
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u8x8_cad_SendSequence(u8x8, u8x8_d_st75320_jlx320240_powersave1_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_st75320_jlx320240_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_st75320_jlx320240_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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#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<<2 );
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u8x8_cad_SendArg(u8x8, arg_int>>6 );
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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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x = ((u8x8_tile_t *)arg_ptr)->x_pos;
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x *= 8;
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x += u8x8->x_offset;
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u8x8_cad_StartTransfer(u8x8);
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u8x8_cad_SendCmd(u8x8, 0x013);
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u8x8_cad_SendArg(u8x8, (x>>8) );
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u8x8_cad_SendArg(u8x8, (x&255) );
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u8x8_cad_SendCmd(u8x8, 0x0b1 );
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u8x8_cad_SendArg(u8x8, (((u8x8_tile_t *)arg_ptr)->y_pos));
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2019-06-15 05:09:50 +08:00
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u8x8_cad_SendCmd(u8x8, 0x01d ); // write data
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2019-06-14 05:40:37 +08:00
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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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/* SendData can not handle more than 255 bytes */
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if ( c > 31 )
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{
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u8x8_cad_SendData(u8x8, 248, ptr); /* 31*8=248 */
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ptr+=248;
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c -= 31;
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}
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u8x8_cad_SendData(u8x8, c*8, ptr);
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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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/* QT-2832TSWUG02/ZJY-2832TSWZG02 */
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static const uint8_t u8x8_d_st75320_jlx320240_init_seq[] = {
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U8X8_START_TRANSFER(), /* enable chip, delay is part of the transfer start */
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2019-06-15 17:03:24 +08:00
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U8X8_C(0xAE), // Display OFF
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U8X8_CA(0xEA, 0x00), // Power Discharge Control, Discharge OFF
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U8X8_C(0xA8), // sleep out
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U8X8_C(0xAB), // OSC ON
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U8X8_C(0x69), // Temperature Detection ON
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U8X8_C(0x4E), // TC Setting
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2019-06-14 05:40:37 +08:00
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U8X8_A8(0xff, 0x44, 0x12, 0x11, 0x11, 0x11, 0x22, 0x23),
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2019-06-15 17:03:24 +08:00
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U8X8_CAA(0x39, 0x00, 0x00), //TC Flag
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2019-06-14 05:40:37 +08:00
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2019-06-15 17:03:24 +08:00
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U8X8_CA(0x2B, 0x00), // Frame Rate Level
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U8X8_CAA(0x5F, 0x66, 0x66), // Set Frame Frequency, fFR=80Hz in all temperature range
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U8X8_CAAA(0xEC, 0x19, 0x64, 0x6e), // FR Compensation Temp. Range, TA = -15 degree, TB = 60 degree, TC = 70 degree
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U8X8_CAA(0xED, 0x04, 0x04), // Temp. Hysteresis Value (thermal sensitivity)
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U8X8_C(0xA6), // Display Inverse OFF
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U8X8_C(0xA4), // Disable Display All Pixel ON
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U8X8_CA(0xC4, 0x02), // COM Output Status
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U8X8_C(0xA1), // Column Address Direction: MX=0
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2019-06-14 05:40:37 +08:00
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2019-06-15 17:03:24 +08:00
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U8X8_CAA(0x6D, 0x07, 0x00), // Display Area, Duty = 1/240 duty, Start Group = 1
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U8X8_C(0x84), // Display Data Input Direction: Column
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U8X8_CA(0x36, 0x1e), // Set N-Line
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U8X8_C(0xE4), // N-Line On
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U8X8_CA(0xE7, 0x19), // LCD Drive Method //NLFR=1//
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U8X8_CAA(0x81, 0x4f, 0x01), // OX81: Set EV=64h, 0..255, 0..3
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U8X8_CA(0xA2, 0x0a), // BIAS //1/16 BIAS
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U8X8_CA(0x25, 0x020), // Power Control //AVDD ON
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2019-06-15 05:09:50 +08:00
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U8X8_DLY(10),
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2019-06-15 17:03:24 +08:00
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U8X8_CA(0x25, 0x60), // Power Control//AVDD, MV3 & NAVDD ON
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2019-06-15 05:09:50 +08:00
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U8X8_DLY(10),
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2019-06-15 17:03:24 +08:00
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U8X8_CA(0x25, 0x70), // Power Control //AVDD, MV3, NAVDD & V3 ON
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2019-06-15 05:09:50 +08:00
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U8X8_DLY(10),
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2019-06-15 17:03:24 +08:00
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U8X8_CA(0x25, 0x78), // Power Control//AVDD, MV3, NAVDD, V3 & VPF ON
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2019-06-15 05:09:50 +08:00
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U8X8_DLY(10),
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2019-06-15 17:03:24 +08:00
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U8X8_CA(0x25, 0x7c), // Power Control//AVDD, MV3, NAVDD, V3, VPF & VNF ON
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2019-06-15 05:09:50 +08:00
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U8X8_DLY(10),
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2019-06-15 17:03:24 +08:00
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U8X8_CA(0x25, 0x7e), // Power Control//VOUT, AVDD, MV3, NAVDD, V3, VPF & VNF ON
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2019-06-15 05:09:50 +08:00
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U8X8_DLY(10),
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2019-06-15 17:03:24 +08:00
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U8X8_CA(0x25, 0x7f), // Power Control/VOUT, AVDD, MV3, NAVDD, V3, VPF & VNF ON
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2019-06-15 05:09:50 +08:00
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U8X8_DLY(10),
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2019-06-14 05:40:37 +08:00
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//U8X8_C(0xaf); //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 u8x8_display_info_t u8x8_st75320_jlx320240_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 = */ 20,
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/* reset_pulse_width_ms = */ 5,
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/* post_reset_wait_ms = */ 5, /**/
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/* sda_setup_time_ns = */ 20, /* */
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/* sck_pulse_width_ns = */ 40, /* */
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/* sck_clock_hz = */ 4000000UL, /* since Arduino 1.6.0, the SPI bus speed in Hz. Should be 1000000000/sck_pulse_width_ns */
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/* spi_mode = */ 0, /* active high, rising edge */
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/* i2c_bus_clock_100kHz = */ 4, /* 400KHz */
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/* data_setup_time_ns = */ 15,
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/* write_pulse_width_ns = */ 70,
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/* tile_width = */ 40,
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2023-03-06 03:45:34 +08:00
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/* tile_height = */ 30,
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2019-06-14 05:40:37 +08:00
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/* default_x_offset = */ 0,
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/* flipmode_x_offset = */ 0,
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/* pixel_width = */ 320,
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/* pixel_height = */ 240
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};
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uint8_t u8x8_d_st75320_jlx320240(u8x8_t *u8x8, uint8_t msg, uint8_t arg_int, void *arg_ptr)
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{
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if ( u8x8_d_st75320_generic(u8x8, msg, arg_int, arg_ptr) != 0 )
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return 1;
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switch(msg)
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{
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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_st75320_jlx320240_init_seq);
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break;
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case U8X8_MSG_DISPLAY_SETUP_MEMORY:
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u8x8_d_helper_display_setup_memory(u8x8, &u8x8_st75320_jlx320240_display_info);
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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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