vpdma.h 8.1 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285
  1. /*
  2. * Copyright (c) 2013 Texas Instruments Inc.
  3. *
  4. * David Griego, <dagriego@biglakesoftware.com>
  5. * Dale Farnsworth, <dale@farnsworth.org>
  6. * Archit Taneja, <archit@ti.com>
  7. *
  8. * This program is free software; you can redistribute it and/or modify it
  9. * under the terms of the GNU General Public License version 2 as published by
  10. * the Free Software Foundation.
  11. */
  12. #ifndef __TI_VPDMA_H_
  13. #define __TI_VPDMA_H_
  14. #define VPDMA_MAX_NUM_LIST 8
  15. /*
  16. * A vpdma_buf tracks the size, DMA address and mapping status of each
  17. * driver DMA area.
  18. */
  19. struct vpdma_buf {
  20. void *addr;
  21. dma_addr_t dma_addr;
  22. size_t size;
  23. bool mapped;
  24. };
  25. struct vpdma_desc_list {
  26. struct vpdma_buf buf;
  27. void *next;
  28. int type;
  29. };
  30. struct vpdma_data {
  31. void __iomem *base;
  32. struct platform_device *pdev;
  33. spinlock_t lock;
  34. bool hwlist_used[VPDMA_MAX_NUM_LIST];
  35. void *hwlist_priv[VPDMA_MAX_NUM_LIST];
  36. /* callback to VPE driver when the firmware is loaded */
  37. void (*cb)(struct platform_device *pdev);
  38. };
  39. enum vpdma_data_format_type {
  40. VPDMA_DATA_FMT_TYPE_YUV,
  41. VPDMA_DATA_FMT_TYPE_RGB,
  42. VPDMA_DATA_FMT_TYPE_MISC,
  43. };
  44. struct vpdma_data_format {
  45. enum vpdma_data_format_type type;
  46. int data_type;
  47. u8 depth;
  48. };
  49. #define VPDMA_DESC_ALIGN 16 /* 16-byte descriptor alignment */
  50. #define VPDMA_STRIDE_ALIGN 16 /*
  51. * line stride of source and dest
  52. * buffers should be 16 byte aligned
  53. */
  54. #define VPDMA_DTD_DESC_SIZE 32 /* 8 words */
  55. #define VPDMA_CFD_CTD_DESC_SIZE 16 /* 4 words */
  56. #define VPDMA_LIST_TYPE_NORMAL 0
  57. #define VPDMA_LIST_TYPE_SELF_MODIFYING 1
  58. #define VPDMA_LIST_TYPE_DOORBELL 2
  59. enum vpdma_yuv_formats {
  60. VPDMA_DATA_FMT_Y444 = 0,
  61. VPDMA_DATA_FMT_Y422,
  62. VPDMA_DATA_FMT_Y420,
  63. VPDMA_DATA_FMT_C444,
  64. VPDMA_DATA_FMT_C422,
  65. VPDMA_DATA_FMT_C420,
  66. VPDMA_DATA_FMT_YCR422,
  67. VPDMA_DATA_FMT_YC444,
  68. VPDMA_DATA_FMT_CRY422,
  69. VPDMA_DATA_FMT_CBY422,
  70. VPDMA_DATA_FMT_YCB422,
  71. };
  72. enum vpdma_rgb_formats {
  73. VPDMA_DATA_FMT_RGB565 = 0,
  74. VPDMA_DATA_FMT_ARGB16_1555,
  75. VPDMA_DATA_FMT_ARGB16,
  76. VPDMA_DATA_FMT_RGBA16_5551,
  77. VPDMA_DATA_FMT_RGBA16,
  78. VPDMA_DATA_FMT_ARGB24,
  79. VPDMA_DATA_FMT_RGB24,
  80. VPDMA_DATA_FMT_ARGB32,
  81. VPDMA_DATA_FMT_RGBA24,
  82. VPDMA_DATA_FMT_RGBA32,
  83. VPDMA_DATA_FMT_BGR565,
  84. VPDMA_DATA_FMT_ABGR16_1555,
  85. VPDMA_DATA_FMT_ABGR16,
  86. VPDMA_DATA_FMT_BGRA16_5551,
  87. VPDMA_DATA_FMT_BGRA16,
  88. VPDMA_DATA_FMT_ABGR24,
  89. VPDMA_DATA_FMT_BGR24,
  90. VPDMA_DATA_FMT_ABGR32,
  91. VPDMA_DATA_FMT_BGRA24,
  92. VPDMA_DATA_FMT_BGRA32,
  93. };
  94. enum vpdma_raw_formats {
  95. VPDMA_DATA_FMT_RAW8 = 0,
  96. VPDMA_DATA_FMT_RAW16,
  97. };
  98. enum vpdma_misc_formats {
  99. VPDMA_DATA_FMT_MV = 0,
  100. };
  101. extern const struct vpdma_data_format vpdma_yuv_fmts[];
  102. extern const struct vpdma_data_format vpdma_rgb_fmts[];
  103. extern const struct vpdma_data_format vpdma_raw_fmts[];
  104. extern const struct vpdma_data_format vpdma_misc_fmts[];
  105. enum vpdma_frame_start_event {
  106. VPDMA_FSEVENT_HDMI_FID = 0,
  107. VPDMA_FSEVENT_DVO2_FID,
  108. VPDMA_FSEVENT_HDCOMP_FID,
  109. VPDMA_FSEVENT_SD_FID,
  110. VPDMA_FSEVENT_LM_FID0,
  111. VPDMA_FSEVENT_LM_FID1,
  112. VPDMA_FSEVENT_LM_FID2,
  113. VPDMA_FSEVENT_CHANNEL_ACTIVE,
  114. };
  115. /* max width configurations */
  116. enum vpdma_max_width {
  117. MAX_OUT_WIDTH_UNLIMITED = 0,
  118. MAX_OUT_WIDTH_REG1,
  119. MAX_OUT_WIDTH_REG2,
  120. MAX_OUT_WIDTH_REG3,
  121. MAX_OUT_WIDTH_352,
  122. MAX_OUT_WIDTH_768,
  123. MAX_OUT_WIDTH_1280,
  124. MAX_OUT_WIDTH_1920,
  125. };
  126. /* max height configurations */
  127. enum vpdma_max_height {
  128. MAX_OUT_HEIGHT_UNLIMITED = 0,
  129. MAX_OUT_HEIGHT_REG1,
  130. MAX_OUT_HEIGHT_REG2,
  131. MAX_OUT_HEIGHT_REG3,
  132. MAX_OUT_HEIGHT_288,
  133. MAX_OUT_HEIGHT_576,
  134. MAX_OUT_HEIGHT_720,
  135. MAX_OUT_HEIGHT_1080,
  136. };
  137. /*
  138. * VPDMA channel numbers
  139. */
  140. enum vpdma_channel {
  141. VPE_CHAN_LUMA1_IN,
  142. VPE_CHAN_CHROMA1_IN,
  143. VPE_CHAN_LUMA2_IN,
  144. VPE_CHAN_CHROMA2_IN,
  145. VPE_CHAN_LUMA3_IN,
  146. VPE_CHAN_CHROMA3_IN,
  147. VPE_CHAN_MV_IN,
  148. VPE_CHAN_MV_OUT,
  149. VPE_CHAN_LUMA_OUT,
  150. VPE_CHAN_CHROMA_OUT,
  151. VPE_CHAN_RGB_OUT,
  152. };
  153. #define VIP_CHAN_VIP2_OFFSET 70
  154. #define VIP_CHAN_MULT_PORTB_OFFSET 16
  155. #define VIP_CHAN_YUV_PORTB_OFFSET 2
  156. #define VIP_CHAN_RGB_PORTB_OFFSET 1
  157. #define VPDMA_MAX_CHANNELS 256
  158. /* flags for VPDMA data descriptors */
  159. #define VPDMA_DATA_ODD_LINE_SKIP (1 << 0)
  160. #define VPDMA_DATA_EVEN_LINE_SKIP (1 << 1)
  161. #define VPDMA_DATA_FRAME_1D (1 << 2)
  162. #define VPDMA_DATA_MODE_TILED (1 << 3)
  163. /*
  164. * client identifiers used for configuration descriptors
  165. */
  166. #define CFD_MMR_CLIENT 0
  167. #define CFD_SC_CLIENT 4
  168. /* Address data block header format */
  169. struct vpdma_adb_hdr {
  170. u32 offset;
  171. u32 nwords;
  172. u32 reserved0;
  173. u32 reserved1;
  174. };
  175. /* helpers for creating ADB headers for config descriptors MMRs as client */
  176. #define ADB_ADDR(dma_buf, str, fld) ((dma_buf)->addr + offsetof(str, fld))
  177. #define MMR_ADB_ADDR(buf, str, fld) ADB_ADDR(&(buf), struct str, fld)
  178. #define VPDMA_SET_MMR_ADB_HDR(buf, str, hdr, regs, offset_a) \
  179. do { \
  180. struct vpdma_adb_hdr *h; \
  181. struct str *adb = NULL; \
  182. h = MMR_ADB_ADDR(buf, str, hdr); \
  183. h->offset = (offset_a); \
  184. h->nwords = sizeof(adb->regs) >> 2; \
  185. } while (0)
  186. /* vpdma descriptor buffer allocation and management */
  187. int vpdma_alloc_desc_buf(struct vpdma_buf *buf, size_t size);
  188. void vpdma_free_desc_buf(struct vpdma_buf *buf);
  189. int vpdma_map_desc_buf(struct vpdma_data *vpdma, struct vpdma_buf *buf);
  190. void vpdma_unmap_desc_buf(struct vpdma_data *vpdma, struct vpdma_buf *buf);
  191. /* vpdma descriptor list funcs */
  192. int vpdma_create_desc_list(struct vpdma_desc_list *list, size_t size, int type);
  193. void vpdma_reset_desc_list(struct vpdma_desc_list *list);
  194. void vpdma_free_desc_list(struct vpdma_desc_list *list);
  195. int vpdma_submit_descs(struct vpdma_data *vpdma, struct vpdma_desc_list *list,
  196. int list_num);
  197. bool vpdma_list_busy(struct vpdma_data *vpdma, int list_num);
  198. void vpdma_update_dma_addr(struct vpdma_data *vpdma,
  199. struct vpdma_desc_list *list, dma_addr_t dma_addr,
  200. void *write_dtd, int drop, int idx);
  201. /* VPDMA hardware list funcs */
  202. int vpdma_hwlist_alloc(struct vpdma_data *vpdma, void *priv);
  203. void *vpdma_hwlist_get_priv(struct vpdma_data *vpdma, int list_num);
  204. void *vpdma_hwlist_release(struct vpdma_data *vpdma, int list_num);
  205. /* helpers for creating vpdma descriptors */
  206. void vpdma_add_cfd_block(struct vpdma_desc_list *list, int client,
  207. struct vpdma_buf *blk, u32 dest_offset);
  208. void vpdma_add_cfd_adb(struct vpdma_desc_list *list, int client,
  209. struct vpdma_buf *adb);
  210. void vpdma_add_sync_on_channel_ctd(struct vpdma_desc_list *list,
  211. enum vpdma_channel chan);
  212. void vpdma_add_abort_channel_ctd(struct vpdma_desc_list *list,
  213. int chan_num);
  214. void vpdma_add_out_dtd(struct vpdma_desc_list *list, int width,
  215. const struct v4l2_rect *c_rect,
  216. const struct vpdma_data_format *fmt, dma_addr_t dma_addr,
  217. int max_w, int max_h, enum vpdma_channel chan, u32 flags);
  218. void vpdma_rawchan_add_out_dtd(struct vpdma_desc_list *list, int width,
  219. const struct v4l2_rect *c_rect,
  220. const struct vpdma_data_format *fmt, dma_addr_t dma_addr,
  221. int max_w, int max_h, int raw_vpdma_chan, u32 flags);
  222. void vpdma_add_in_dtd(struct vpdma_desc_list *list, int width,
  223. const struct v4l2_rect *c_rect,
  224. const struct vpdma_data_format *fmt, dma_addr_t dma_addr,
  225. enum vpdma_channel chan, int field, u32 flags, int frame_width,
  226. int frame_height, int start_h, int start_v);
  227. int vpdma_list_cleanup(struct vpdma_data *vpdma, int list_num,
  228. int *channels, int size);
  229. /* vpdma list interrupt management */
  230. void vpdma_enable_list_complete_irq(struct vpdma_data *vpdma, int irq_num,
  231. int list_num, bool enable);
  232. void vpdma_clear_list_stat(struct vpdma_data *vpdma, int irq_num,
  233. int list_num);
  234. unsigned int vpdma_get_list_stat(struct vpdma_data *vpdma, int irq_num);
  235. unsigned int vpdma_get_list_mask(struct vpdma_data *vpdma, int irq_num);
  236. /* vpdma client configuration */
  237. void vpdma_set_line_mode(struct vpdma_data *vpdma, int line_mode,
  238. enum vpdma_channel chan);
  239. void vpdma_set_frame_start_event(struct vpdma_data *vpdma,
  240. enum vpdma_frame_start_event fs_event, enum vpdma_channel chan);
  241. void vpdma_set_max_size(struct vpdma_data *vpdma, int reg_addr,
  242. u32 width, u32 height);
  243. void vpdma_set_bg_color(struct vpdma_data *vpdma,
  244. struct vpdma_data_format *fmt, u32 color);
  245. void vpdma_dump_regs(struct vpdma_data *vpdma);
  246. /* initialize vpdma, passed with VPE's platform device pointer */
  247. int vpdma_create(struct platform_device *pdev, struct vpdma_data *vpdma,
  248. void (*cb)(struct platform_device *pdev));
  249. #endif