u8x8_d_st7586s_jlx384160.c 8.7 KB

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  1. /*
  2. u8x8_d_st7586s_jlx384160.c
  3. copyied from u8x8_d_st7586s_s028hn118a.c
  4. Display: 384x160 pixel, https://github.com/olikraus/u8g2/issues/1932
  5. ST7586s: 384 x 160 x 2
  6. Universal 8bit Graphics Library (https://github.com/olikraus/u8g2/)
  7. Copyright (c) 2022, olikraus@gmail.com
  8. All rights reserved.
  9. Redistribution and use in source and binary forms, with or without modification,
  10. are permitted provided that the following conditions are met:
  11. * Redistributions of source code must retain the above copyright notice, this list
  12. of conditions and the following disclaimer.
  13. * Redistributions in binary form must reproduce the above copyright notice, this
  14. list of conditions and the following disclaimer in the documentation and/or other
  15. materials provided with the distribution.
  16. THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND
  17. CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES,
  18. INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
  19. MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
  20. DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR
  21. CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
  22. SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
  23. NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
  24. LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
  25. CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
  26. STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
  27. ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF
  28. ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
  29. */
  30. #include "u8g2.h"
  31. static const uint8_t u8x8_d_st7586s_sleep_on[] = {
  32. U8X8_START_TRANSFER(), /* enable chip, delay is part of the transfer start */
  33. U8X8_C(0x010), /* set power save mode */
  34. U8X8_END_TRANSFER(), /* disable chip */
  35. U8X8_END() /* end of sequence */
  36. };
  37. static const uint8_t u8x8_d_st7586s_sleep_off[] = {
  38. U8X8_START_TRANSFER(), /* enable chip, delay is part of the transfer start */
  39. U8X8_C(0x011), //Sleep out
  40. U8X8_DLY(50), /* delay 50 ms */
  41. U8X8_END_TRANSFER(), /* disable chip */
  42. U8X8_END() /* end of sequence */
  43. };
  44. static const uint8_t u8x8_d_st7586s_jlx384160_flip0_seq[] = {
  45. U8X8_START_TRANSFER(), /* enable chip, delay is part of the transfer start */
  46. U8X8_C(0x036), /* Scan Direction Setting */
  47. U8X8_A(0x000), /* COM0 -> COM159 SEG0 -> SEG384 */
  48. U8X8_C(0x037), /* Start line 0 */
  49. U8X8_A(0x000),
  50. U8X8_END_TRANSFER(), /* disable chip */
  51. U8X8_END() /* end of sequence */
  52. };
  53. static const uint8_t u8x8_d_st7586s_jlx384160_flip1_seq[] = {
  54. U8X8_START_TRANSFER(), /* enable chip, delay is part of the transfer start */
  55. U8X8_C(0x036), /* Scan Direction Setting */
  56. U8X8_A(0x0C8), /* COM159 -> COM0 SEG384 -> SEG0 */
  57. U8X8_C(0x037), /* Start line 0 */
  58. U8X8_A(0x000),
  59. U8X8_END_TRANSFER(), /* disable chip */
  60. U8X8_END() /* end of sequence */
  61. };
  62. static uint8_t u8x8_d_st7586s_common(u8x8_t *u8x8, uint8_t msg, uint8_t arg_int, void *arg_ptr) {
  63. uint8_t c;
  64. uint8_t *ptr;
  65. uint8_t i, byte;
  66. uint32_t input;
  67. uint8_t output[8];
  68. switch (msg) {
  69. case U8X8_MSG_DISPLAY_DRAW_TILE:
  70. u8x8_cad_StartTransfer(u8x8); // OK Start transfer
  71. u8x8_cad_SendCmd(u8x8, 0x02B); /* Row Address Setting */
  72. u8x8_cad_SendArg(u8x8, 0x000);
  73. u8x8_cad_SendArg(u8x8, 0x008 * ((u8x8_tile_t *)arg_ptr)->y_pos);
  74. u8x8_cad_SendArg(u8x8, 0x000);
  75. u8x8_cad_SendArg(u8x8, u8x8->display_info->pixel_height - 1); /* should this be u8x8->display_info->pixel_height - 1 */
  76. u8x8_cad_SendCmd(u8x8, 0x02C); /* cmd write display data to ram */
  77. c = ((u8x8_tile_t *) arg_ptr)->cnt; //
  78. c *= 8;
  79. ptr = ((u8x8_tile_t *) arg_ptr)->tile_ptr; //
  80. // The ST7586S has an unusual 3 pixels per byte format so here we read in 3 bytes (24 pixels) and
  81. // pack that into 8 bytes of 3 pixels each
  82. while (c > 0) {
  83. input = (((uint32_t)ptr[0] << 16) | ((uint32_t)ptr[1] << 8) | (uint32_t)ptr[2]);
  84. for (i=0; i<8; i++)
  85. {
  86. byte = 0;
  87. if (input & 0x800000) // if bit 23
  88. byte = byte | 0xC0; //set pixel 1
  89. if (input & 0x400000) // if bit 22
  90. byte = byte | 0x18; //set pixel 2
  91. if (input & 0x200000) // if bit 22
  92. byte = byte | 0x3; //set pixel 3
  93. output[i] = byte;
  94. input <<= 3;
  95. }
  96. u8x8_cad_SendData(u8x8, 8, output);
  97. ptr += 3;
  98. c -= 3;
  99. }
  100. u8x8_cad_EndTransfer(u8x8);
  101. break;
  102. case U8X8_MSG_DISPLAY_SET_POWER_SAVE:
  103. if (arg_int == 0)
  104. u8x8_cad_SendSequence(u8x8, u8x8_d_st7586s_sleep_off);
  105. else
  106. u8x8_cad_SendSequence(u8x8, u8x8_d_st7586s_sleep_on);
  107. break;
  108. #ifdef U8X8_WITH_SET_CONTRAST
  109. case U8X8_MSG_DISPLAY_SET_CONTRAST:
  110. u8x8_cad_StartTransfer(u8x8);
  111. u8x8_cad_SendCmd(u8x8, 0x0C0);
  112. u8x8_cad_SendArg(u8x8, arg_int);
  113. u8x8_cad_SendArg(u8x8, 0);
  114. u8x8_cad_EndTransfer(u8x8);
  115. break;
  116. #endif
  117. default:
  118. return 0;
  119. }
  120. return 1;
  121. }
  122. static const uint8_t u8x8_d_st7586s_jlx384160_init_seq[] = {
  123. U8X8_START_TRANSFER(),/* enable chip */
  124. U8X8_END_TRANSFER(),/* disable chip */
  125. // U8G_ESC_RST(15), /* hardware reset */
  126. U8X8_DLY(60), /* Delay 60 ms */
  127. U8X8_START_TRANSFER(),/* enable chip */
  128. U8X8_C(0x001), // Soft reset
  129. U8X8_DLY(60), // Delay 120 ms
  130. U8X8_C(0x011), // Sleep Out
  131. U8X8_C(0x028), // Display OFF
  132. U8X8_DLY(25), // Delay 50 ms
  133. U8X8_CAA(0x0C0,0x0E5,0x00),// Vop = F0h in trace a bit too dark
  134. U8X8_CA(0x0C3,0x004), // BIAS = 1/10 0x04 in trace
  135. U8X8_CA(0x0C4,0x005), // Booster = x6 0x05 in trace
  136. U8X8_CA(0x0D0,0x01D), // Enable Analog Circuit
  137. U8X8_CA(0x0B3,0x000), // Set FOSC divider
  138. U8X8_CA(0x0B5,0x08B), // N-Line = 0
  139. U8X8_C(0x039), // 0x39 Monochrome mode. 0x38 - gray Mode
  140. U8X8_C(0x03A), // Enable DDRAM Interface
  141. U8X8_A(0x002), // monochrome and 4-level
  142. U8X8_C(0x036), // Scan Direction Setting
  143. U8X8_A(0x000), // COM0 -> COM159 SEG0 -> SEG384
  144. U8X8_C(0x0B0), // Duty Setting (num rows - 1)
  145. U8X8_A(0x09f), // 160-1
  146. U8X8_C(0x020), // Display inversion off
  147. U8X8_C(0x02A), // Column Address Setting
  148. U8X8_A(0x000), // COL0 -> COL127
  149. U8X8_A(0x000), //
  150. U8X8_A(0x000), //
  151. U8X8_A(0x07f), // 128*3=384 pixels
  152. U8X8_C(0x02B), // Row Address Setting
  153. U8X8_A(0x000), // ROW0 -> ROW135
  154. U8X8_A(0x000), //
  155. U8X8_A(0x000), //
  156. U8X8_A(159), // 160 pixels
  157. U8X8_C(0x0F1), // Frame rate monochrome
  158. U8X8_A(0x00C), // The factory firmware set this to 49.0 Hz 0x07
  159. U8X8_A(0x00C), // This caused a shimmer under 50Hz LED lights
  160. U8X8_A(0x00C), // 69.0 Hz (0x0C) fixes this and should avoid the
  161. U8X8_A(0x00C), // issue in the US too
  162. U8X8_C(0x029), // Display ON
  163. U8X8_END_TRANSFER(),/* disable chip */
  164. U8X8_END() /* end of sequence */
  165. };
  166. static const u8x8_display_info_t u8x8_st7586s_jlx384160_display_info =
  167. {
  168. /* chip_enable_level = */ 0,
  169. /* chip_disable_level = */ 1,
  170. /* post_chip_enable_wait_ns = */ 5,
  171. /* pre_chip_disable_wait_ns = */ 5,
  172. /* reset_pulse_width_ms = */ 1,
  173. /* post_reset_wait_ms = */ 6,
  174. /* sda_setup_time_ns = */ 20,
  175. /* sck_pulse_width_ns = */ 100, /* datasheet ST7586S */
  176. /* sck_clock_hz = */ 8000000UL, /* since Arduino 1.6.0, the SPI bus speed in Hz. Should be 1000000000/sck_pulse_width_ns */
  177. /* ST7586+Atmega128RFA1 works with 8MHz */
  178. /* spi_mode = */ 3, /* active high, rising edge */
  179. /* i2c_bus_clock_100kHz = */ 4,
  180. /* data_setup_time_ns = */ 20, /* datasheet suggests min 20 */
  181. /* write_pulse_width_ns = */ 40,
  182. /* tile_width = */ 48,
  183. /* tile_height = */ 20,
  184. /* default_x_offset = */ 0,
  185. /* flipmode_x_offset = */ 0,
  186. /* pixel_width = */ 384,
  187. /* pixel_height = */ 160
  188. };
  189. /*******************************************************************************
  190. * st7586s_jlx384160 driver. This is the display in the SMART Response XE. This requires 16 bit mode.
  191. ******************************************************************************/
  192. uint8_t u8x8_d_st7586s_jlx384160(u8x8_t *u8x8, uint8_t msg, uint8_t arg_int, void *arg_ptr) {
  193. if (u8x8_d_st7586s_common(u8x8, msg, arg_int, arg_ptr) != 0)
  194. return 1;
  195. switch (msg) {
  196. case U8X8_MSG_DISPLAY_INIT:
  197. u8x8_d_helper_display_init(u8x8);
  198. u8x8_cad_SendSequence(u8x8, u8x8_d_st7586s_jlx384160_init_seq);
  199. break;
  200. case U8X8_MSG_DISPLAY_SETUP_MEMORY:
  201. u8x8_d_helper_display_setup_memory(u8x8, &u8x8_st7586s_jlx384160_display_info);
  202. break;
  203. case U8X8_MSG_DISPLAY_SET_FLIP_MODE:
  204. if ( arg_int == 0 )
  205. {
  206. u8x8_cad_SendSequence(u8x8, u8x8_d_st7586s_jlx384160_flip0_seq);
  207. u8x8->x_offset = u8x8->display_info->default_x_offset;
  208. }
  209. else
  210. {
  211. u8x8_cad_SendSequence(u8x8, u8x8_d_st7586s_jlx384160_flip1_seq);
  212. u8x8->x_offset = u8x8->display_info->flipmode_x_offset;
  213. }
  214. break;
  215. default:
  216. return 0;
  217. }
  218. return 1;
  219. }