video.c 8.2 KB

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  1. /*
  2. * video.c - run splash screen on lcd
  3. *
  4. * Copyright (c) 2007-2008 Analog Devices Inc.
  5. *
  6. * Licensed under the GPL-2 or later.
  7. */
  8. #include <stdarg.h>
  9. #include <common.h>
  10. #include <config.h>
  11. #include <malloc.h>
  12. #include <asm/blackfin.h>
  13. #include <asm/gpio.h>
  14. #include <asm/portmux.h>
  15. #include <asm/mach-common/bits/dma.h>
  16. #include <i2c.h>
  17. #include <linux/types.h>
  18. #include <stdio_dev.h>
  19. #define DMA_SIZE16 2
  20. #include <asm/mach-common/bits/eppi.h>
  21. #include <asm/bfin_logo_230x230.h>
  22. #define LCD_X_RES 480 /*Horizontal Resolution */
  23. #define LCD_Y_RES 272 /* Vertical Resolution */
  24. #define LCD_BPP 24 /* Bit Per Pixel */
  25. #define LCD_PIXEL_SIZE (LCD_BPP / 8)
  26. #define DMA_BUS_SIZE 32
  27. #define ACTIVE_VIDEO_MEM_OFFSET 0
  28. /* -- Horizontal synchronizing --
  29. *
  30. * Timing characteristics taken from the SHARP LQ043T1DG01 datasheet
  31. * (LCY-W-06602A Page 9 of 22)
  32. *
  33. * Clock Frequency 1/Tc Min 7.83 Typ 9.00 Max 9.26 MHz
  34. *
  35. * Period TH - 525 - Clock
  36. * Pulse width THp - 41 - Clock
  37. * Horizontal period THd - 480 - Clock
  38. * Back porch THb - 2 - Clock
  39. * Front porch THf - 2 - Clock
  40. *
  41. * -- Vertical synchronizing --
  42. * Period TV - 286 - Line
  43. * Pulse width TVp - 10 - Line
  44. * Vertical period TVd - 272 - Line
  45. * Back porch TVb - 2 - Line
  46. * Front porch TVf - 2 - Line
  47. */
  48. #define LCD_CLK (8*1000*1000) /* 8MHz */
  49. /* # active data to transfer after Horizontal Delay clock */
  50. #define EPPI_HCOUNT LCD_X_RES
  51. /* # active lines to transfer after Vertical Delay clock */
  52. #define EPPI_VCOUNT LCD_Y_RES
  53. /* Samples per Line = 480 (active data) + 45 (padding) */
  54. #define EPPI_LINE 525
  55. /* Lines per Frame = 272 (active data) + 14 (padding) */
  56. #define EPPI_FRAME 286
  57. /* FS1 (Hsync) Width (Typical)*/
  58. #define EPPI_FS1W_HBL 41
  59. /* FS1 (Hsync) Period (Typical) */
  60. #define EPPI_FS1P_AVPL EPPI_LINE
  61. /* Horizontal Delay clock after assertion of Hsync (Typical) */
  62. #define EPPI_HDELAY 43
  63. /* FS2 (Vsync) Width = FS1 (Hsync) Period * 10 */
  64. #define EPPI_FS2W_LVB (EPPI_LINE * 10)
  65. /* FS2 (Vsync) Period = FS1 (Hsync) Period * Lines per Frame */
  66. #define EPPI_FS2P_LAVF (EPPI_LINE * EPPI_FRAME)
  67. /* Vertical Delay after assertion of Vsync (2 Lines) */
  68. #define EPPI_VDELAY 12
  69. #define EPPI_CLIP 0xFF00FF00
  70. /* EPPI Control register configuration value for RGB out
  71. * - EPPI as Output
  72. * GP 2 frame sync mode,
  73. * Internal Clock generation disabled, Internal FS generation enabled,
  74. * Receives samples on EPPI_CLK raising edge, Transmits samples on EPPI_CLK falling edge,
  75. * FS1 & FS2 are active high,
  76. * DLEN = 6 (24 bits for RGB888 out) or 5 (18 bits for RGB666 out)
  77. * DMA Unpacking disabled when RGB Formating is enabled, otherwise DMA unpacking enabled
  78. * Swapping Enabled,
  79. * One (DMA) Channel Mode,
  80. * RGB Formatting Enabled for RGB666 output, disabled for RGB888 output
  81. * Regular watermark - when FIFO is 100% full,
  82. * Urgent watermark - when FIFO is 75% full
  83. */
  84. #define EPPI_CONTROL (0x20136E2E)
  85. static inline u16 get_eppi_clkdiv(u32 target_ppi_clk)
  86. {
  87. u32 sclk = get_sclk();
  88. /* EPPI_CLK = (SCLK) / (2 * (EPPI_CLKDIV[15:0] + 1)) */
  89. return (((sclk / target_ppi_clk) / 2) - 1);
  90. }
  91. void Init_PPI(void)
  92. {
  93. u16 eppi_clkdiv = get_eppi_clkdiv(LCD_CLK);
  94. bfin_write_EPPI0_FS1W_HBL(EPPI_FS1W_HBL);
  95. bfin_write_EPPI0_FS1P_AVPL(EPPI_FS1P_AVPL);
  96. bfin_write_EPPI0_FS2W_LVB(EPPI_FS2W_LVB);
  97. bfin_write_EPPI0_FS2P_LAVF(EPPI_FS2P_LAVF);
  98. bfin_write_EPPI0_CLIP(EPPI_CLIP);
  99. bfin_write_EPPI0_FRAME(EPPI_FRAME);
  100. bfin_write_EPPI0_LINE(EPPI_LINE);
  101. bfin_write_EPPI0_HCOUNT(EPPI_HCOUNT);
  102. bfin_write_EPPI0_HDELAY(EPPI_HDELAY);
  103. bfin_write_EPPI0_VCOUNT(EPPI_VCOUNT);
  104. bfin_write_EPPI0_VDELAY(EPPI_VDELAY);
  105. bfin_write_EPPI0_CLKDIV(eppi_clkdiv);
  106. /*
  107. * DLEN = 6 (24 bits for RGB888 out) or 5 (18 bits for RGB666 out)
  108. * RGB Formatting Enabled for RGB666 output, disabled for RGB888 output
  109. */
  110. #if defined(CONFIG_VIDEO_RGB666)
  111. bfin_write_EPPI0_CONTROL((EPPI_CONTROL & ~DLENGTH) | DLEN_18 |
  112. RGB_FMT_EN);
  113. #else
  114. bfin_write_EPPI0_CONTROL(((EPPI_CONTROL & ~DLENGTH) | DLEN_24) &
  115. ~RGB_FMT_EN);
  116. #endif
  117. }
  118. #define DEB2_URGENT 0x2000 /* DEB2 Urgent */
  119. void Init_DMA(void *dst)
  120. {
  121. #if defined(CONFIG_DEB_DMA_URGENT)
  122. *pEBIU_DDRQUE |= DEB2_URGENT;
  123. #endif
  124. *pDMA12_START_ADDR = dst;
  125. /* X count */
  126. *pDMA12_X_COUNT = (LCD_X_RES * LCD_BPP) / DMA_BUS_SIZE;
  127. *pDMA12_X_MODIFY = DMA_BUS_SIZE / 8;
  128. /* Y count */
  129. *pDMA12_Y_COUNT = LCD_Y_RES;
  130. *pDMA12_Y_MODIFY = DMA_BUS_SIZE / 8;
  131. /* DMA Config */
  132. *pDMA12_CONFIG =
  133. WDSIZE_32 | /* 32 bit DMA */
  134. DMA2D | /* 2D DMA */
  135. FLOW_AUTO; /* autobuffer mode */
  136. }
  137. void Init_Ports(void)
  138. {
  139. const unsigned short pins[] = {
  140. P_PPI0_D0, P_PPI0_D1, P_PPI0_D2, P_PPI0_D3, P_PPI0_D4,
  141. P_PPI0_D5, P_PPI0_D6, P_PPI0_D7, P_PPI0_D8, P_PPI0_D9,
  142. P_PPI0_D10, P_PPI0_D11, P_PPI0_D12, P_PPI0_D13, P_PPI0_D14,
  143. P_PPI0_D15, P_PPI0_D16, P_PPI0_D17,
  144. #if !defined(CONFIG_VIDEO_RGB666)
  145. P_PPI0_D18, P_PPI0_D19, P_PPI0_D20, P_PPI0_D21, P_PPI0_D22,
  146. P_PPI0_D23,
  147. #endif
  148. P_PPI0_CLK, P_PPI0_FS1, P_PPI0_FS2, 0,
  149. };
  150. peripheral_request_list(pins, "lcd");
  151. gpio_request(GPIO_PE3, "lcd-disp");
  152. gpio_direction_output(GPIO_PE3, 1);
  153. }
  154. void EnableDMA(void)
  155. {
  156. *pDMA12_CONFIG |= DMAEN;
  157. }
  158. void DisableDMA(void)
  159. {
  160. *pDMA12_CONFIG &= ~DMAEN;
  161. }
  162. /* enable and disable PPI functions */
  163. void EnablePPI(void)
  164. {
  165. bfin_write_EPPI0_CONTROL(bfin_read_EPPI0_CONTROL() | EPPI_EN);
  166. }
  167. void DisablePPI(void)
  168. {
  169. bfin_write_EPPI0_CONTROL(bfin_read_EPPI0_CONTROL() & ~EPPI_EN);
  170. }
  171. int video_init(void *dst)
  172. {
  173. Init_Ports();
  174. Init_DMA(dst);
  175. EnableDMA();
  176. Init_PPI();
  177. EnablePPI();
  178. return 0;
  179. }
  180. void video_stop(void)
  181. {
  182. DisablePPI();
  183. DisableDMA();
  184. }
  185. static void dma_bitblit(void *dst, fastimage_t *logo, int x, int y)
  186. {
  187. if (dcache_status())
  188. blackfin_dcache_flush_range(logo->data, logo->data + logo->size);
  189. bfin_write_MDMA_D0_IRQ_STATUS(DMA_DONE | DMA_ERR);
  190. /* Setup destination start address */
  191. bfin_write_MDMA_D0_START_ADDR(dst + ((x & -2) * LCD_PIXEL_SIZE)
  192. + (y * LCD_X_RES * LCD_PIXEL_SIZE));
  193. /* Setup destination xcount */
  194. bfin_write_MDMA_D0_X_COUNT(logo->width * LCD_PIXEL_SIZE / DMA_SIZE16);
  195. /* Setup destination xmodify */
  196. bfin_write_MDMA_D0_X_MODIFY(DMA_SIZE16);
  197. /* Setup destination ycount */
  198. bfin_write_MDMA_D0_Y_COUNT(logo->height);
  199. /* Setup destination ymodify */
  200. bfin_write_MDMA_D0_Y_MODIFY((LCD_X_RES - logo->width) * LCD_PIXEL_SIZE + DMA_SIZE16);
  201. /* Setup Source start address */
  202. bfin_write_MDMA_S0_START_ADDR(logo->data);
  203. /* Setup Source xcount */
  204. bfin_write_MDMA_S0_X_COUNT(logo->width * LCD_PIXEL_SIZE / DMA_SIZE16);
  205. /* Setup Source xmodify */
  206. bfin_write_MDMA_S0_X_MODIFY(DMA_SIZE16);
  207. /* Setup Source ycount */
  208. bfin_write_MDMA_S0_Y_COUNT(logo->height);
  209. /* Setup Source ymodify */
  210. bfin_write_MDMA_S0_Y_MODIFY(DMA_SIZE16);
  211. /* Enable source DMA */
  212. bfin_write_MDMA_S0_CONFIG(DMAEN | WDSIZE_16 | DMA2D);
  213. SSYNC();
  214. bfin_write_MDMA_D0_CONFIG(WNR | DMAEN | WDSIZE_16 | DMA2D);
  215. while (bfin_read_MDMA_D0_IRQ_STATUS() & DMA_RUN);
  216. bfin_write_MDMA_S0_IRQ_STATUS(bfin_read_MDMA_S0_IRQ_STATUS() | DMA_DONE | DMA_ERR);
  217. bfin_write_MDMA_D0_IRQ_STATUS(bfin_read_MDMA_D0_IRQ_STATUS() | DMA_DONE | DMA_ERR);
  218. }
  219. void video_putc(const char c)
  220. {
  221. }
  222. void video_puts(const char *s)
  223. {
  224. }
  225. int drv_video_init(void)
  226. {
  227. int error, devices = 1;
  228. struct stdio_dev videodev;
  229. u8 *dst;
  230. u32 fbmem_size = LCD_X_RES * LCD_Y_RES * LCD_PIXEL_SIZE + ACTIVE_VIDEO_MEM_OFFSET;
  231. dst = malloc(fbmem_size);
  232. if (dst == NULL) {
  233. printf("Failed to alloc FB memory\n");
  234. return -1;
  235. }
  236. #ifdef EASYLOGO_ENABLE_GZIP
  237. unsigned char *data = EASYLOGO_DECOMP_BUFFER;
  238. unsigned long src_len = EASYLOGO_ENABLE_GZIP;
  239. if (gunzip(data, bfin_logo.size, bfin_logo.data, &src_len)) {
  240. puts("Failed to decompress logo\n");
  241. free(dst);
  242. return -1;
  243. }
  244. bfin_logo.data = data;
  245. #endif
  246. memset(dst + ACTIVE_VIDEO_MEM_OFFSET, bfin_logo.data[0], fbmem_size - ACTIVE_VIDEO_MEM_OFFSET);
  247. dma_bitblit(dst + ACTIVE_VIDEO_MEM_OFFSET, &bfin_logo,
  248. (LCD_X_RES - bfin_logo.width) / 2,
  249. (LCD_Y_RES - bfin_logo.height) / 2);
  250. video_init(dst); /* Video initialization */
  251. memset(&videodev, 0, sizeof(videodev));
  252. strcpy(videodev.name, "video");
  253. videodev.ext = DEV_EXT_VIDEO; /* Video extensions */
  254. videodev.flags = DEV_FLAGS_SYSTEM; /* No Output */
  255. videodev.putc = video_putc; /* 'putc' function */
  256. videodev.puts = video_puts; /* 'puts' function */
  257. error = stdio_register(&videodev);
  258. return (error == 0) ? devices : error;
  259. }