ov7725.c 7.7 KB

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  1. /*
  2. * This file is part of the OpenMV project.
  3. * Copyright (c) 2013/2014 Ibrahim Abdelkader <i.abdalkader@gmail.com>
  4. * This work is licensed under the MIT license, see the file LICENSE for details.
  5. *
  6. * OV7725 driver.
  7. *
  8. */
  9. #include <stdint.h>
  10. #include <stdlib.h>
  11. #include <string.h>
  12. #include <stdio.h>
  13. #include "sccb.h"
  14. #include "ov7725.h"
  15. #include "ov7725_regs.h"
  16. #include "freertos/FreeRTOS.h"
  17. #include "freertos/task.h"
  18. #if defined(ARDUINO_ARCH_ESP32) && defined(CONFIG_ARDUHAL_ESP_LOG)
  19. #include "esp32-hal-log.h"
  20. #else
  21. #include "esp_log.h"
  22. static const char* TAG = "ov7725";
  23. #endif
  24. static const uint8_t default_regs[][2] = {
  25. {COM3, COM3_SWAP_YUV},
  26. {COM7, COM7_RES_QVGA | COM7_FMT_YUV},
  27. {COM4, 0x01}, /* bypass PLL */
  28. {CLKRC, 0xC0}, /* Res/Bypass pre-scalar */
  29. // QVGA Window Size
  30. {HSTART, 0x3F},
  31. {HSIZE, 0x50},
  32. {VSTART, 0x03},
  33. {VSIZE, 0x78},
  34. {HREF, 0x00},
  35. // Scale down to QVGA Resolution
  36. {HOUTSIZE, 0x50},
  37. {VOUTSIZE, 0x78},
  38. {COM12, 0x03},
  39. {EXHCH, 0x00},
  40. {TGT_B, 0x7F},
  41. {FIXGAIN, 0x09},
  42. {AWB_CTRL0, 0xE0},
  43. {DSP_CTRL1, 0xFF},
  44. {DSP_CTRL2, DSP_CTRL2_VDCW_EN | DSP_CTRL2_HDCW_EN | DSP_CTRL2_HZOOM_EN | DSP_CTRL2_VZOOM_EN},
  45. {DSP_CTRL3, 0x00},
  46. {DSP_CTRL4, 0x00},
  47. {DSPAUTO, 0xFF},
  48. {COM8, 0xF0},
  49. {COM6, 0xC5},
  50. {COM9, 0x11},
  51. {COM10, COM10_VSYNC_NEG | COM10_PCLK_MASK}, //Invert VSYNC and MASK PCLK
  52. {BDBASE, 0x7F},
  53. {DBSTEP, 0x03},
  54. {AEW, 0x96},
  55. {AEB, 0x64},
  56. {VPT, 0xA1},
  57. {EXHCL, 0x00},
  58. {AWB_CTRL3, 0xAA},
  59. {COM8, 0xFF},
  60. //Gamma
  61. {GAM1, 0x0C},
  62. {GAM2, 0x16},
  63. {GAM3, 0x2A},
  64. {GAM4, 0x4E},
  65. {GAM5, 0x61},
  66. {GAM6, 0x6F},
  67. {GAM7, 0x7B},
  68. {GAM8, 0x86},
  69. {GAM9, 0x8E},
  70. {GAM10, 0x97},
  71. {GAM11, 0xA4},
  72. {GAM12, 0xAF},
  73. {GAM13, 0xC5},
  74. {GAM14, 0xD7},
  75. {GAM15, 0xE8},
  76. {SLOP, 0x20},
  77. {EDGE1, 0x05},
  78. {EDGE2, 0x03},
  79. {EDGE3, 0x00},
  80. {DNSOFF, 0x01},
  81. {MTX1, 0xB0},
  82. {MTX2, 0x9D},
  83. {MTX3, 0x13},
  84. {MTX4, 0x16},
  85. {MTX5, 0x7B},
  86. {MTX6, 0x91},
  87. {MTX_CTRL, 0x1E},
  88. {BRIGHTNESS, 0x08},
  89. {CONTRAST, 0x30},
  90. {UVADJ0, 0x81},
  91. {SDE, (SDE_CONT_BRIGHT_EN | SDE_SATURATION_EN)},
  92. // For 30 fps/60Hz
  93. {DM_LNL, 0x00},
  94. {DM_LNH, 0x00},
  95. {BDBASE, 0x7F},
  96. {DBSTEP, 0x03},
  97. // Lens Correction, should be tuned with real camera module
  98. {LC_RADI, 0x10},
  99. {LC_COEF, 0x10},
  100. {LC_COEFB, 0x14},
  101. {LC_COEFR, 0x17},
  102. {LC_CTR, 0x05},
  103. {COM5, 0xF5}, //0x65
  104. {0x00, 0x00},
  105. };
  106. static int reset(sensor_t *sensor)
  107. {
  108. int i=0;
  109. const uint8_t (*regs)[2];
  110. // Reset all registers
  111. SCCB_Write(sensor->slv_addr, COM7, COM7_RESET);
  112. // Delay 10 ms
  113. vTaskDelay(10 / portTICK_PERIOD_MS);
  114. // Write default regsiters
  115. for (i=0, regs = default_regs; regs[i][0]; i++) {
  116. SCCB_Write(sensor->slv_addr, regs[i][0], regs[i][1]);
  117. }
  118. // Delay
  119. vTaskDelay(30 / portTICK_PERIOD_MS);
  120. return 0;
  121. }
  122. static int set_pixformat(sensor_t *sensor, pixformat_t pixformat)
  123. {
  124. int ret=0;
  125. // Read register COM7
  126. uint8_t reg = SCCB_Read(sensor->slv_addr, COM7);
  127. switch (pixformat) {
  128. case PIXFORMAT_RGB565:
  129. reg = COM7_SET_RGB(reg, COM7_FMT_RGB565);
  130. break;
  131. case PIXFORMAT_YUV422:
  132. case PIXFORMAT_GRAYSCALE:
  133. reg = COM7_SET_FMT(reg, COM7_FMT_YUV);
  134. break;
  135. default:
  136. return -1;
  137. }
  138. // Write back register COM7
  139. ret = SCCB_Write(sensor->slv_addr, COM7, reg);
  140. // Delay
  141. vTaskDelay(30 / portTICK_PERIOD_MS);
  142. return ret;
  143. }
  144. static int set_framesize(sensor_t *sensor, framesize_t framesize)
  145. {
  146. int ret=0;
  147. uint16_t w = resolution[framesize][0];
  148. uint16_t h = resolution[framesize][1];
  149. // Write MSBs
  150. ret |= SCCB_Write(sensor->slv_addr, HOUTSIZE, w>>2);
  151. ret |= SCCB_Write(sensor->slv_addr, VOUTSIZE, h>>1);
  152. // Write LSBs
  153. ret |= SCCB_Write(sensor->slv_addr, EXHCH, ((w&0x3) | ((h&0x1) << 2)));
  154. if (framesize < FRAMESIZE_VGA) {
  155. // Enable auto-scaling/zooming factors
  156. ret |= SCCB_Write(sensor->slv_addr, DSPAUTO, 0xFF);
  157. } else {
  158. // Disable auto-scaling/zooming factors
  159. ret |= SCCB_Write(sensor->slv_addr, DSPAUTO, 0xF3);
  160. // Clear auto-scaling/zooming factors
  161. ret |= SCCB_Write(sensor->slv_addr, SCAL0, 0x00);
  162. ret |= SCCB_Write(sensor->slv_addr, SCAL1, 0x00);
  163. ret |= SCCB_Write(sensor->slv_addr, SCAL2, 0x00);
  164. }
  165. // Delay
  166. vTaskDelay(30 / portTICK_PERIOD_MS);
  167. return ret;
  168. }
  169. static int set_colorbar(sensor_t *sensor, int enable)
  170. {
  171. int ret=0;
  172. uint8_t reg;
  173. // Read reg COM3
  174. reg = SCCB_Read(sensor->slv_addr, COM3);
  175. // Enable colorbar test pattern output
  176. reg = COM3_SET_CBAR(reg, enable);
  177. // Write back COM3
  178. ret |= SCCB_Write(sensor->slv_addr, COM3, reg);
  179. // Read reg DSP_CTRL3
  180. reg = SCCB_Read(sensor->slv_addr, DSP_CTRL3);
  181. // Enable DSP colorbar output
  182. reg = DSP_CTRL3_SET_CBAR(reg, enable);
  183. // Write back DSP_CTRL3
  184. ret |= SCCB_Write(sensor->slv_addr, DSP_CTRL3, reg);
  185. return ret;
  186. }
  187. static int set_whitebal(sensor_t *sensor, int enable)
  188. {
  189. // Read register COM8
  190. uint8_t reg = SCCB_Read(sensor->slv_addr, COM8);
  191. // Set white bal on/off
  192. reg = COM8_SET_AWB(reg, enable);
  193. // Write back register COM8
  194. return SCCB_Write(sensor->slv_addr, COM8, reg);
  195. }
  196. static int set_gain_ctrl(sensor_t *sensor, int enable)
  197. {
  198. // Read register COM8
  199. uint8_t reg = SCCB_Read(sensor->slv_addr, COM8);
  200. // Set white bal on/off
  201. reg = COM8_SET_AGC(reg, enable);
  202. // Write back register COM8
  203. return SCCB_Write(sensor->slv_addr, COM8, reg);
  204. }
  205. static int set_exposure_ctrl(sensor_t *sensor, int enable)
  206. {
  207. // Read register COM8
  208. uint8_t reg = SCCB_Read(sensor->slv_addr, COM8);
  209. // Set white bal on/off
  210. reg = COM8_SET_AEC(reg, enable);
  211. // Write back register COM8
  212. return SCCB_Write(sensor->slv_addr, COM8, reg);
  213. }
  214. static int set_hmirror(sensor_t *sensor, int enable)
  215. {
  216. // Read register COM3
  217. uint8_t reg = SCCB_Read(sensor->slv_addr, COM3);
  218. // Set mirror on/off
  219. reg = COM3_SET_MIRROR(reg, enable);
  220. // Write back register COM3
  221. return SCCB_Write(sensor->slv_addr, COM3, reg);
  222. }
  223. static int set_vflip(sensor_t *sensor, int enable)
  224. {
  225. // Read register COM3
  226. uint8_t reg = SCCB_Read(sensor->slv_addr, COM3);
  227. // Set mirror on/off
  228. reg = COM3_SET_FLIP(reg, enable);
  229. // Write back register COM3
  230. return SCCB_Write(sensor->slv_addr, COM3, reg);
  231. }
  232. int ov7725_init(sensor_t *sensor)
  233. {
  234. // Set function pointers
  235. sensor->reset = reset;
  236. sensor->set_pixformat = set_pixformat;
  237. sensor->set_framesize = set_framesize;
  238. sensor->set_colorbar = set_colorbar;
  239. sensor->set_whitebal = set_whitebal;
  240. sensor->set_gain_ctrl = set_gain_ctrl;
  241. sensor->set_exposure_ctrl = set_exposure_ctrl;
  242. sensor->set_hmirror = set_hmirror;
  243. sensor->set_vflip = set_vflip;
  244. // Retrieve sensor's signature
  245. sensor->id.MIDH = SCCB_Read(sensor->slv_addr, REG_MIDH);
  246. sensor->id.MIDL = SCCB_Read(sensor->slv_addr, REG_MIDL);
  247. sensor->id.PID = SCCB_Read(sensor->slv_addr, REG_PID);
  248. sensor->id.VER = SCCB_Read(sensor->slv_addr, REG_VER);
  249. ESP_LOGD(TAG, "OV7725 Attached");
  250. return 0;
  251. }