mtkfb_fence.c 36 KB

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  1. #include "disp_drv_log.h"
  2. #include "ion_drv.h"
  3. #include <linux/slab.h>
  4. #include <linux/wait.h>
  5. #include <linux/sched.h>
  6. #include <linux/delay.h>
  7. #include <linux/wait.h>
  8. #include <linux/file.h>
  9. #include "m4u.h"
  10. #include "mtk_sync.h"
  11. #include "debug.h"
  12. #include "ddp_ovl.h"
  13. #include "mtkfb_fence.h"
  14. #include "ddp_path.h"
  15. #include "disp_drv_platform.h"
  16. #include "display_recorder.h"
  17. #include "ddp_mmp.h"
  18. #include "primary_display.h"
  19. #include "mtk_disp_mgr.h"
  20. /************************* log*********************/
  21. static bool mtkfb_fence_on;
  22. #define MTKFB_FENCE_LOG(fmt, arg...) \
  23. do { \
  24. if (mtkfb_fence_on) \
  25. pr_debug("DISP/fence " fmt, ##arg); \
  26. } while (0)
  27. #define MTKFB_FENCE_ERR(fmt, arg...) pr_err("DISP/fence " "error(%d):"fmt, __LINE__, ##arg)
  28. #define MTKFB_FENCE_LOG_D(fmt, arg...) pr_debug("DISP/fence " fmt, ##arg)
  29. #define MTKFB_FENCE_LOG_D_IF(con, fmt, arg...) \
  30. do { \
  31. if (con) \
  32. pr_debug("DISP/fence " fmt, ##arg); \
  33. } while (0)
  34. void mtkfb_fence_log_enable(bool enable)
  35. {
  36. mtkfb_fence_on = enable;
  37. MTKFB_FENCE_LOG_D("mtkfb_fence log %s\n", enable ? "enabled" : "disabled");
  38. }
  39. #ifndef ASSERT
  40. #define ASSERT(expr) \
  41. do { \
  42. if (expr) \
  43. break; \
  44. pr_debug("FENCE ASSERT FAILED %s, %d\n", \
  45. __FILE__, __LINE__); BUG(); \
  46. } while (0)
  47. #endif
  48. int fence_clean_up_task_wakeup = 0;
  49. static struct ion_client *ion_client;
  50. /* how many counters prior to current timeline real-time counter */
  51. #define FENCE_STEP_COUNTER (1)
  52. #define MTK_FB_NO_ION_FD ((int)(~0U>>1))
  53. #define DISP_SESSION_TYPE(id) (((id)>>16)&0xff)
  54. static LIST_HEAD(info_pool_head);
  55. static DEFINE_MUTEX(_disp_fence_mutex);
  56. static DEFINE_MUTEX(fence_buffer_mutex);
  57. disp_session_sync_info _disp_fence_context[MAX_SESSION_COUNT];
  58. static disp_session_sync_info *_get_session_sync_info(unsigned int session_id)
  59. {
  60. int i = 0;
  61. int j = 0;
  62. disp_session_sync_info *session_info = NULL;
  63. disp_sync_info *layer_info = NULL;
  64. char name[32];
  65. const char *prefix = "timeline";
  66. if (DISP_SESSION_TYPE(session_id) != DISP_SESSION_PRIMARY &&
  67. DISP_SESSION_TYPE(session_id) != DISP_SESSION_MEMORY &&
  68. DISP_SESSION_TYPE(session_id) != DISP_SESSION_EXTERNAL) {
  69. DISPERR("invalid session id:0x%08x\n", session_id);
  70. return NULL;
  71. }
  72. mutex_lock(&_disp_fence_mutex);
  73. for (i = 0; i < sizeof(_disp_fence_context) / sizeof(_disp_fence_context[0]); i++) {
  74. if (session_id == _disp_fence_context[i].session_id) {
  75. /* DISPMSG("found session info for session_id:0x%08x,0x%08x\n",
  76. session_id, &(_disp_fence_context[i]));
  77. */
  78. session_info = &(_disp_fence_context[i]);
  79. goto done;
  80. }
  81. }
  82. for (i = 0; i < sizeof(_disp_fence_context) / sizeof(_disp_fence_context[0]); i++) {
  83. if (_disp_fence_context[i].session_id == 0xffffffff) {
  84. DISPMSG("not found session info for session_id:0x%08x,insert %p to array index:%d\n",
  85. session_id, &(_disp_fence_context[i]), i);
  86. _disp_fence_context[i].session_id = session_id;
  87. session_info = &(_disp_fence_context[i]);
  88. sprintf(name, "%s%d_prepare", disp_session_mode_spy(session_id),
  89. DISP_SESSION_DEV(session_id));
  90. dprec_logger_event_init(&session_info->event_prepare, name,
  91. DPREC_LOGGER_LEVEL_DEFAULT |
  92. DPREC_LOGGER_LEVEL_SYSTRACE,
  93. &ddp_mmp_get_events()->session_Parent);
  94. sprintf(name, "%s%d_setinput", disp_session_mode_spy(session_id),
  95. DISP_SESSION_DEV(session_id));
  96. dprec_logger_event_init(&session_info->event_setinput, name,
  97. DPREC_LOGGER_LEVEL_DEFAULT |
  98. DPREC_LOGGER_LEVEL_SYSTRACE,
  99. &ddp_mmp_get_events()->session_Parent);
  100. sprintf(name, "%s%d_setoutput", disp_session_mode_spy(session_id),
  101. DISP_SESSION_DEV(session_id));
  102. dprec_logger_event_init(&session_info->event_setoutput, name,
  103. DPREC_LOGGER_LEVEL_DEFAULT |
  104. DPREC_LOGGER_LEVEL_SYSTRACE,
  105. &ddp_mmp_get_events()->session_Parent);
  106. sprintf(name, "%s%d_trigger", disp_session_mode_spy(session_id),
  107. DISP_SESSION_DEV(session_id));
  108. dprec_logger_event_init(&session_info->event_trigger, name,
  109. DPREC_LOGGER_LEVEL_DEFAULT |
  110. DPREC_LOGGER_LEVEL_SYSTRACE,
  111. &ddp_mmp_get_events()->session_Parent);
  112. sprintf(name, "%s%d_findidx", disp_session_mode_spy(session_id),
  113. DISP_SESSION_DEV(session_id));
  114. dprec_logger_event_init(&session_info->event_findidx, name,
  115. DPREC_LOGGER_LEVEL_DEFAULT,
  116. &ddp_mmp_get_events()->session_Parent);
  117. sprintf(name, "%s%d_release", disp_session_mode_spy(session_id),
  118. DISP_SESSION_DEV(session_id));
  119. dprec_logger_event_init(&session_info->event_release, name,
  120. DPREC_LOGGER_LEVEL_DEFAULT |
  121. DPREC_LOGGER_LEVEL_SYSTRACE,
  122. &ddp_mmp_get_events()->session_Parent);
  123. sprintf(name, "%s%d_waitvsync", disp_session_mode_spy(session_id),
  124. DISP_SESSION_DEV(session_id));
  125. dprec_logger_event_init(&session_info->event_waitvsync, name,
  126. DPREC_LOGGER_LEVEL_DEFAULT |
  127. DPREC_LOGGER_LEVEL_SYSTRACE,
  128. &ddp_mmp_get_events()->session_Parent);
  129. sprintf(name, "%s%d_err", disp_session_mode_spy(session_id),
  130. DISP_SESSION_DEV(session_id));
  131. dprec_logger_event_init(&session_info->event_err, name,
  132. DPREC_LOGGER_LEVEL_DEFAULT |
  133. DPREC_LOGGER_LEVEL_SYSTRACE,
  134. &ddp_mmp_get_events()->session_Parent);
  135. for (j = 0; j < (sizeof(session_info->session_layer_info) /
  136. sizeof(session_info->session_layer_info[0])); j++) {
  137. if (DISP_SESSION_TYPE(session_id) == DISP_SESSION_PRIMARY)
  138. sprintf(name, "%s-primary-%d-%d", prefix, DISP_SESSION_DEV(session_id), j);
  139. else if (DISP_SESSION_TYPE(session_id) == DISP_SESSION_EXTERNAL)
  140. sprintf(name, "%s-external-%d-%d", prefix, DISP_SESSION_DEV(session_id), j);
  141. else if (DISP_SESSION_TYPE(session_id) == DISP_SESSION_MEMORY)
  142. sprintf(name, "%s-memory-%d-%d", prefix, DISP_SESSION_DEV(session_id), j);
  143. else
  144. sprintf(name, "%s-unknown-%d-%d", prefix, DISP_SESSION_DEV(session_id), j);
  145. layer_info = &(session_info->session_layer_info[j]);
  146. mutex_init(&(layer_info->sync_lock));
  147. layer_info->layer_id = j;
  148. layer_info->fence_idx = 0;
  149. layer_info->timeline_idx = 0;
  150. layer_info->inc = 0;
  151. layer_info->cur_idx = 0;
  152. layer_info->inited = 1;
  153. layer_info->timeline = timeline_create(name);
  154. if (layer_info->timeline)
  155. DISPDBG("create timeline success: %s=%p, layer_info=%p\n",
  156. name, layer_info->timeline, layer_info);
  157. INIT_LIST_HEAD(&layer_info->buf_list);
  158. }
  159. goto done;
  160. }
  161. }
  162. done:
  163. if (session_info == NULL)
  164. DISPERR("wrong session_id:%d, 0x%08x\n", session_id, session_id);
  165. mutex_unlock(&_disp_fence_mutex);
  166. return session_info;
  167. }
  168. disp_session_sync_info *disp_get_session_sync_info_for_debug(unsigned int session_id)
  169. {
  170. return _get_session_sync_info(session_id);
  171. }
  172. disp_sync_info *_get_sync_info(unsigned int session_id, unsigned int timeline_id)
  173. {
  174. disp_sync_info *layer_info = NULL;
  175. disp_session_sync_info *session_info = _get_session_sync_info(session_id);
  176. mutex_lock(&_disp_fence_mutex);
  177. if (session_info) {
  178. if (timeline_id >= sizeof(session_info->session_layer_info) /
  179. sizeof(session_info->session_layer_info[0])) {
  180. DISPERR("invalid timeline_id:%d\n", timeline_id);
  181. goto done;
  182. } else {
  183. layer_info = &(session_info->session_layer_info[timeline_id]);
  184. }
  185. }
  186. if (layer_info == NULL || session_info == NULL) {
  187. DISPERR("cant get sync info for session_id:0x%08x, timeline_id:%d\n", session_id,
  188. timeline_id);
  189. goto done;
  190. }
  191. if (layer_info->inited == 0) {
  192. DISPERR("layer_info[%d] not inited\n", timeline_id);
  193. goto done;
  194. }
  195. done:
  196. mutex_unlock(&_disp_fence_mutex);
  197. return layer_info;
  198. }
  199. /* --------------------------------------------------------------------------- */
  200. /* local function declarations */
  201. /* --------------------------------------------------------------------------- */
  202. /********************ION*****************************************************/
  203. #if defined(MTK_FB_ION_SUPPORT)
  204. static void mtkfb_ion_init(void)
  205. {
  206. if (!ion_client && g_ion_device)
  207. ion_client = ion_client_create(g_ion_device, "display");
  208. if (!ion_client) {
  209. MTKFB_FENCE_ERR("create ion client failed!\n");
  210. return;
  211. }
  212. MTKFB_FENCE_LOG("create ion client 0x%p\n", ion_client);
  213. }
  214. /**
  215. * Import ion handle and configure this buffer
  216. * @client
  217. * @fd ion shared fd
  218. * @return ion handle
  219. */
  220. static struct ion_handle *mtkfb_ion_import_handle(struct ion_client *client, int fd)
  221. {
  222. struct ion_handle *handle = NULL;
  223. struct ion_mm_data mm_data;
  224. /* If no need Ion support, do nothing! */
  225. if (fd == MTK_FB_NO_ION_FD) {
  226. MTKFB_FENCE_LOG("NO NEED ion support\n");
  227. return handle;
  228. }
  229. if (!ion_client) {
  230. MTKFB_FENCE_ERR("invalid ion client!\n");
  231. return handle;
  232. }
  233. if (fd == MTK_FB_INVALID_ION_FD) {
  234. MTKFB_FENCE_ERR("invalid ion fd!\n");
  235. return handle;
  236. }
  237. handle = ion_import_dma_buf(client, fd);
  238. if (IS_ERR(handle)) {
  239. MTKFB_FENCE_ERR("import ion handle failed!\n");
  240. return NULL;
  241. }
  242. mm_data.mm_cmd = ION_MM_CONFIG_BUFFER;
  243. mm_data.config_buffer_param.kernel_handle = handle;
  244. mm_data.config_buffer_param.eModuleID = 0;
  245. mm_data.config_buffer_param.security = 0;
  246. mm_data.config_buffer_param.coherent = 0;
  247. /*
  248. mm_data.config_buffer_param.handle = handle;
  249. mm_data.config_buffer_param.m4u_port = M4U_PORT_DISP_OVL0;
  250. mm_data.config_buffer_param.prot = M4U_PROT_READ|M4U_PROT_WRITE;
  251. mm_data.config_buffer_param.flags = M4U_FLAGS_SEQ_ACCESS;
  252. */
  253. if (ion_kernel_ioctl(ion_client, ION_CMD_MULTIMEDIA, (unsigned long)&mm_data))
  254. MTKFB_FENCE_ERR("configure ion buffer failed!\n");
  255. MTKFB_FENCE_LOG("import ion handle fd=%d,hnd=0x%p\n", fd, handle);
  256. return handle;
  257. }
  258. static void mtkfb_ion_free_handle(struct ion_client *client, struct ion_handle *handle)
  259. {
  260. if (!ion_client) {
  261. MTKFB_FENCE_ERR("invalid ion client!\n");
  262. return;
  263. }
  264. if (!handle)
  265. return;
  266. ion_free(client, handle);
  267. MTKFB_FENCE_LOG("free ion handle 0x%p\n", handle);
  268. }
  269. static size_t mtkfb_ion_phys_mmu_addr(struct ion_client *client, struct ion_handle *handle,
  270. unsigned int *mva)
  271. {
  272. size_t size;
  273. if (!ion_client) {
  274. MTKFB_FENCE_ERR("invalid ion client!\n");
  275. return 0;
  276. }
  277. if (!handle)
  278. return 0;
  279. ion_phys(client, handle, (ion_phys_addr_t *) mva, &size);
  280. MTKFB_FENCE_LOG("alloc mmu addr hnd=0x%p,mva=0x%08x\n", handle, (unsigned int)*mva);
  281. return size;
  282. }
  283. static void mtkfb_ion_cache_flush(struct ion_client *client, struct ion_handle *handle)
  284. {
  285. struct ion_sys_data sys_data;
  286. if (!ion_client || !handle)
  287. return;
  288. sys_data.sys_cmd = ION_SYS_CACHE_SYNC;
  289. sys_data.cache_sync_param.kernel_handle = handle;
  290. sys_data.cache_sync_param.sync_type = ION_CACHE_FLUSH_ALL;
  291. if (ion_kernel_ioctl(client, ION_CMD_SYSTEM, (unsigned long)&sys_data))
  292. MTKFB_FENCE_ERR("ion cache flush failed!\n");
  293. }
  294. unsigned int mtkfb_query_buf_mva(unsigned int session_id, unsigned int layer_id, unsigned int idx)
  295. {
  296. struct mtkfb_fence_buf_info *buf;
  297. unsigned int mva = 0x0;
  298. disp_sync_info *layer_info = NULL;
  299. layer_info = _get_sync_info(session_id, layer_id);
  300. if (layer_info == NULL) {
  301. DISPERR("layer_info is null\n");
  302. return 0;
  303. }
  304. mutex_lock(&layer_info->sync_lock);
  305. list_for_each_entry(buf, &layer_info->buf_list, list) {
  306. if (buf->idx == idx) {
  307. mva = buf->mva;
  308. buf->buf_state = reg_configed;
  309. break;
  310. }
  311. }
  312. mutex_unlock(&layer_info->sync_lock);
  313. if (mva != 0x0) {
  314. buf->ts_create = sched_clock();
  315. if (buf->cache_sync) {
  316. /* xuecheng, for debug */
  317. /* DISPMSG("attention!! we will do ion_cache_flush!!!\n"); */
  318. dprec_logger_start(DPREC_LOGGER_DISPMGR_CACHE_SYNC, (unsigned long)buf->hnd, buf->mva);
  319. mtkfb_ion_cache_flush(ion_client, buf->hnd);
  320. dprec_logger_done(DPREC_LOGGER_DISPMGR_CACHE_SYNC, (unsigned long)buf->hnd, buf->mva);
  321. }
  322. MTKFB_FENCE_LOG("query buf mva: layer=%d, idx=%d, mva=0x%08x\n", layer_id, idx,
  323. (unsigned int)(buf->mva));
  324. } else {
  325. /* FIXME: non-ion buffer need cache sync here? */
  326. DISPERR("cannot find session(0x%x) buf, layer=%d, idx=%d, fence_idx=%d, timeline_idx=%d, cur_idx=%d!\n",
  327. session_id, layer_id, idx, layer_info->fence_idx, layer_info->timeline_idx,
  328. layer_info->cur_idx);
  329. }
  330. /* DISPMSG("mva query:session_id=0x%08x, layer_id=%d, mva=0x%08x\n", session_id, layer_id, mva); */
  331. return mva;
  332. }
  333. unsigned int mtkfb_query_buf_va(unsigned int session_id, unsigned int layer_id, unsigned int idx)
  334. {
  335. struct mtkfb_fence_buf_info *buf;
  336. unsigned int va = 0x0;
  337. disp_session_sync_info *session_info;
  338. disp_sync_info *layer_info;
  339. ASSERT(layer_id < DISP_SESSION_TIMELINE_COUNT);
  340. session_info = _get_session_sync_info(session_id);
  341. layer_info = &(session_info->session_layer_info[layer_id]);
  342. if (layer_id != layer_info->layer_id) {
  343. MTKFB_FENCE_ERR("wrong layer id %d(rt), %d(in)!\n", layer_info->layer_id, layer_id);
  344. return 0;
  345. }
  346. mutex_lock(&layer_info->sync_lock);
  347. list_for_each_entry(buf, &layer_info->buf_list, list) {
  348. if (buf->idx == idx) {
  349. va = buf->va;
  350. break;
  351. }
  352. }
  353. mutex_unlock(&layer_info->sync_lock);
  354. if (va == 0x0) {
  355. /* FIXME: non-ion buffer need cache sync here? */
  356. MTKFB_FENCE_ERR
  357. ("cannot find this buf, layer=%d, idx=%d, fence_idx=%d, timeline_idx=%d, cur_idx=%d!\n",
  358. layer_id, idx, layer_info->fence_idx, layer_info->timeline_idx,
  359. layer_info->cur_idx);
  360. }
  361. /* DISPMSG("mva query:session_id=0x%08x, layer_id=%d, mva=0x%08x\n", session_id, layer_id, mva); */
  362. return va;
  363. }
  364. unsigned int mtkfb_query_release_idx(unsigned int session_id, unsigned int layer_id,
  365. unsigned long phy_addr)
  366. {
  367. struct mtkfb_fence_buf_info *buf = NULL;
  368. struct mtkfb_fence_buf_info *pre_buf = NULL;
  369. unsigned int idx = 0x0;
  370. disp_session_sync_info *session_info = _get_session_sync_info(session_id);
  371. disp_sync_info *layer_info = &(session_info->session_layer_info[layer_id]);
  372. if (layer_id != layer_info->layer_id) {
  373. MTKFB_FENCE_ERR("wrong layer id %d(rt), %d(in)!\n", layer_info->layer_id, layer_id);
  374. return 0;
  375. }
  376. mutex_lock(&layer_info->sync_lock);
  377. list_for_each_entry(buf, &layer_info->buf_list, list) {
  378. if (((buf->mva + buf->mva_offset) == phy_addr) &&
  379. (buf->buf_state < reg_updated && buf->buf_state > create)) {
  380. /* /idx = buf->idx; */
  381. buf->buf_state = reg_updated;
  382. DISPDBG("mva query1:idx=0x%x, mva=0x%lx, off=%d st %x\n", buf->idx,
  383. buf->mva, buf->mva_offset, buf->buf_state);
  384. } else if (((buf->mva + buf->mva_offset) != phy_addr)
  385. && (buf->buf_state == reg_updated)) {
  386. buf->buf_state = read_done;
  387. DISPDBG("mva query2:idx=0x%x, mva=0x%lx, off=%d st %x\n", buf->idx,
  388. buf->mva, buf->mva_offset, buf->buf_state);
  389. } else if ((phy_addr == 0) && (buf->buf_state > create)) {
  390. buf->buf_state = read_done;
  391. }
  392. /* temp solution: hwc will post same buffer with different idx sometimes. */
  393. if (pre_buf && ((pre_buf->mva + pre_buf->mva_offset) == (buf->mva + buf->mva_offset)) &&
  394. (pre_buf->buf_state == reg_updated)) {
  395. pre_buf->buf_state = read_done;
  396. idx = pre_buf->idx;
  397. }
  398. if (buf->buf_state == read_done)
  399. idx = buf->idx;
  400. pre_buf = buf;
  401. }
  402. mutex_unlock(&layer_info->sync_lock);
  403. return idx;
  404. }
  405. unsigned int mtkfb_update_buf_ticket(unsigned int session_id, unsigned int layer_id,
  406. unsigned int idx, unsigned int ticket)
  407. {
  408. struct mtkfb_fence_buf_info *buf;
  409. unsigned int mva = 0x0;
  410. disp_session_sync_info *session_info;
  411. disp_sync_info *layer_info;
  412. /* ASSERT(layer_id < HW_OVERLAY_COUNT); */
  413. if (layer_id >= DISP_SESSION_TIMELINE_COUNT) {
  414. DISPERR("mtkfb_update_buf_state return MVA=0x0 mtkfb_query_buf_mva layer_id %d !!!!!!(Warning)\n",
  415. layer_id);
  416. return mva;
  417. }
  418. session_info = _get_session_sync_info(session_id);
  419. layer_info = &(session_info->session_layer_info[layer_id]);
  420. if (layer_id != layer_info->layer_id) {
  421. DISPERR("wrong layer id %d(rt), %d(in)!\n", layer_info->layer_id, layer_id);
  422. return 0;
  423. }
  424. mutex_lock(&layer_info->sync_lock);
  425. list_for_each_entry(buf, &layer_info->buf_list, list) {
  426. if (buf->idx == idx) {
  427. buf->trigger_ticket = ticket;
  428. break;
  429. }
  430. }
  431. mutex_unlock(&layer_info->sync_lock);
  432. /* DISPMSG("mva update:session_id=0x%08x, layer_id=%d, mva=0x%08x\n", session_id, layer_id, mva); */
  433. return mva;
  434. }
  435. unsigned int mtkfb_query_idx_by_ticket(unsigned int session_id, unsigned int layer_id,
  436. unsigned int ticket)
  437. {
  438. struct mtkfb_fence_buf_info *buf = NULL;
  439. int idx = -1;
  440. disp_session_sync_info *session_info = _get_session_sync_info(session_id);
  441. disp_sync_info *layer_info = &(session_info->session_layer_info[layer_id]);
  442. if (layer_id != layer_info->layer_id) {
  443. DISPERR("wrong layer id %d(rt), %d(in)!\n", layer_info->layer_id, layer_id);
  444. return 0;
  445. }
  446. mutex_lock(&layer_info->sync_lock);
  447. list_for_each_entry(buf, &layer_info->buf_list, list) {
  448. if (buf->trigger_ticket == ticket) {
  449. /* /DISPMSG("mva query1 layer%d, idx=0x%x, mva=0x%x, off=%d st %x\n",
  450. layer_id, buf->idx, buf->mva, buf->mva_offset, buf->buf_state);
  451. */
  452. idx = buf->idx;
  453. }
  454. }
  455. mutex_unlock(&layer_info->sync_lock);
  456. return idx;
  457. }
  458. #ifdef CONFIG_MTK_HDMI_3D_SUPPORT
  459. bool mtkfb_update_buf_info_new(unsigned int session_id, unsigned int mva_offset, disp_input_config *buf_info)
  460. {
  461. struct mtkfb_fence_buf_info *buf;
  462. disp_session_sync_info *session_info;
  463. disp_sync_info *layer_info;
  464. unsigned int mva = 0x0;
  465. if (buf_info->layer_id >= DISP_SESSION_TIMELINE_COUNT) {
  466. DISPERR("layer_id %d !!!!!!!!(Warning)\n", buf_info->layer_id);
  467. return mva;
  468. }
  469. session_info = _get_session_sync_info(session_id);
  470. layer_info = &(session_info->session_layer_info[buf_info->layer_id]);
  471. if (buf_info->layer_id != layer_info->layer_id) {
  472. DISPERR("wrong layer id %d(rt), %d(in)!\n", layer_info->layer_id, buf_info->layer_id);
  473. return 0;
  474. }
  475. mutex_lock(&layer_info->sync_lock);
  476. list_for_each_entry(buf, &layer_info->buf_list, list) {
  477. if (buf->idx == buf_info->next_buff_idx) {
  478. buf->layer_type = buf_info->layer_type;
  479. break;
  480. }
  481. }
  482. mutex_unlock(&layer_info->sync_lock);
  483. DISPMSG("mva updaten:session_id=0x%08x, layer_id=%d, %x, mva=0x%lx-%x\n", session_id, buf_info->layer_id,
  484. buf_info->next_buff_idx, buf->mva, buf_info->layer_type);
  485. return mva;
  486. }
  487. unsigned int mtkfb_query_buf_info(unsigned int session_id, unsigned int layer_id, unsigned long phy_addr,
  488. int query_type)
  489. {
  490. struct mtkfb_fence_buf_info *buf = NULL;
  491. struct mtkfb_fence_buf_info *pre_buf = NULL;
  492. disp_session_sync_info *session_info;
  493. disp_sync_info *layer_info;
  494. int query_info = 0;
  495. session_info = _get_session_sync_info(session_id);
  496. layer_info = &(session_info->session_layer_info[layer_id]);
  497. if (layer_id != layer_info->layer_id) {
  498. DISPERR("wrong layer id %d(rt), %d(in)!\n", layer_info->layer_id, layer_id);
  499. return 0;
  500. }
  501. mutex_lock(&layer_info->sync_lock);
  502. list_for_each_entry(buf, &layer_info->buf_list, list) {
  503. DISPMSG("mva updatenn layer%d, idx=0x%x, mva=0x%08lx-%x py %lx\n", layer_id,
  504. buf->idx, buf->mva, buf->layer_type, phy_addr);
  505. if ((buf->mva + buf->mva_offset) == phy_addr)
  506. query_info = buf->layer_type;
  507. }
  508. mutex_unlock(&layer_info->sync_lock);
  509. return query_info;
  510. }
  511. #endif
  512. #endif /* #if defined (MTK_FB_ION_SUPPORT) */
  513. bool mtkfb_update_buf_info(unsigned int session_id, unsigned int layer_id, unsigned int idx,
  514. unsigned int mva_offset, unsigned int seq)
  515. {
  516. struct mtkfb_fence_buf_info *buf;
  517. bool ret = false;
  518. disp_sync_info *layer_info = NULL;
  519. layer_info = _get_sync_info(session_id, layer_id);
  520. if (layer_info == NULL) {
  521. DISPERR("layer_info is null\n");
  522. return ret;
  523. }
  524. /* DISPPR_FENCE("U+/0x%08x/%d/%d/0x%08x\n", session_id, layer_id, idx, mva_offset); */
  525. mutex_lock(&layer_info->sync_lock);
  526. list_for_each_entry(buf, &layer_info->buf_list, list) {
  527. if (buf->idx == idx) {
  528. buf->mva_offset = mva_offset;
  529. buf->seq = seq;
  530. ret = true;
  531. MMProfileLogEx(ddp_mmp_get_events()->primary_seq_insert, MMProfileFlagPulse,
  532. buf->mva + buf->mva_offset, buf->seq);
  533. break;
  534. }
  535. }
  536. mutex_unlock(&layer_info->sync_lock);
  537. return ret;
  538. }
  539. unsigned int mtkfb_query_frm_seq_by_addr(unsigned int session_id, unsigned int layer_id,
  540. unsigned long phy_addr)
  541. {
  542. struct mtkfb_fence_buf_info *buf;
  543. unsigned int frm_seq = 0x0;
  544. disp_session_sync_info *session_info;
  545. disp_sync_info *layer_info;
  546. if (session_id <= 0)
  547. return 0;
  548. session_info = _get_session_sync_info(session_id);
  549. layer_info = &(session_info->session_layer_info[layer_id]);
  550. if (layer_id != layer_info->layer_id) {
  551. MTKFB_FENCE_ERR("wrong layer id %d(rt), %d(in)!\n", layer_info->layer_id, layer_id);
  552. return 0;
  553. }
  554. mutex_lock(&layer_info->sync_lock);
  555. list_for_each_entry(buf, &layer_info->buf_list, list) {
  556. if (phy_addr > 0) {
  557. if ((buf->mva + buf->mva_offset) == phy_addr) {
  558. frm_seq = buf->seq;
  559. break;
  560. }
  561. } else { /* / get last buffer's seq */
  562. if (buf->seq < frm_seq)
  563. break;
  564. frm_seq = buf->seq;
  565. }
  566. }
  567. mutex_unlock(&layer_info->sync_lock);
  568. return frm_seq;
  569. }
  570. int disp_sync_init(void)
  571. {
  572. int i = 0;
  573. disp_session_sync_info *session_info = NULL;
  574. memset((void *)&_disp_fence_context, 0, sizeof(_disp_fence_context));
  575. for (i = 0; i < sizeof(_disp_fence_context) / sizeof(_disp_fence_context[0]); i++) {
  576. session_info = &_disp_fence_context[i];
  577. session_info->session_id = 0xffffffff;
  578. }
  579. DISPMSG("Fence timeline idx: present = %d, output = %d\n",
  580. disp_sync_get_present_timeline_id(), disp_sync_get_output_timeline_id());
  581. mtkfb_ion_init();
  582. return 0;
  583. }
  584. struct mtkfb_fence_buf_info *mtkfb_init_buf_info(struct mtkfb_fence_buf_info *buf)
  585. {
  586. INIT_LIST_HEAD(&buf->list);
  587. buf->fence = MTK_FB_INVALID_FENCE_FD;
  588. buf->hnd = NULL;
  589. buf->idx = 0;
  590. buf->mva = 0;
  591. buf->cache_sync = 0;
  592. #ifdef CONFIG_MTK_HDMI_3D_SUPPORT
  593. buf->layer_type = 0;
  594. #endif
  595. return buf;
  596. }
  597. /**
  598. * Query a @mtkfb_fence_buf_info node from @info_pool_head, if empty create a new one
  599. */
  600. static struct mtkfb_fence_buf_info *mtkfb_get_buf_info(void)
  601. {
  602. struct mtkfb_fence_buf_info *info;
  603. /* we must use another mutex for buffer list because it will be operated by ALL layer info. */
  604. mutex_lock(&fence_buffer_mutex);
  605. if (!list_empty(&info_pool_head)) {
  606. info = list_first_entry(&info_pool_head, struct mtkfb_fence_buf_info, list);
  607. list_del_init(&info->list);
  608. mtkfb_init_buf_info(info);
  609. mutex_unlock(&fence_buffer_mutex);
  610. return info;
  611. } else {
  612. info = kzalloc(sizeof(struct mtkfb_fence_buf_info), GFP_KERNEL);
  613. mtkfb_init_buf_info(info);
  614. MTKFB_FENCE_LOG("create new mtkfb_fence_buf_info node %p\n", info);
  615. mutex_unlock(&fence_buffer_mutex);
  616. return info;
  617. }
  618. }
  619. /**
  620. * signal fence and release buffer
  621. * layer: set layer
  622. * fence: signal fence which value is not bigger than this param
  623. */
  624. void mtkfb_release_fence(unsigned int session_id, unsigned int layer_id, int fence)
  625. {
  626. struct mtkfb_fence_buf_info *buf;
  627. struct mtkfb_fence_buf_info *n;
  628. int num_fence = 0;
  629. int current_timeline_idx = 0;
  630. int ion_release_count = 0;
  631. disp_sync_info *layer_info = NULL;
  632. disp_session_sync_info *session_info = NULL;
  633. session_info = _get_session_sync_info(session_id);
  634. layer_info = _get_sync_info(session_id, layer_id);
  635. if (layer_info == NULL) {
  636. DISPERR("layer_info is null\n");
  637. return;
  638. }
  639. if (layer_info->timeline != NULL) {
  640. mutex_lock(&layer_info->sync_lock);
  641. current_timeline_idx = layer_info->timeline_idx;
  642. num_fence = fence - layer_info->timeline_idx;
  643. if (num_fence > 0) {
  644. timeline_inc(layer_info->timeline, num_fence);
  645. layer_info->timeline_idx = fence;
  646. if (num_fence >= 2)
  647. DISPPR_FENCE("Warning, R/%s%d/L%d/timeline idx:%d/fence:%d\n",
  648. disp_session_mode_spy(session_id),
  649. DISP_SESSION_DEV(session_id), layer_id,
  650. current_timeline_idx, fence);
  651. } else {
  652. mutex_unlock(&layer_info->sync_lock);
  653. dprec_trigger(&session_info->event_err, fence, layer_info->fence_idx);
  654. /* DISPPR_FENCE("Warning, R+/%s%d/L%d/id%d/last%d/new%d\n",
  655. disp_session_mode_spy(session_id), DISP_SESSION_DEV(session_id),
  656. layer_id, fence, current_timeline_idx, layer_info->fence_idx);
  657. */
  658. return;
  659. }
  660. list_for_each_entry_safe(buf, n, &layer_info->buf_list, list) {
  661. if (buf->idx <= fence) {
  662. layer_info->fence_fd = buf->fence;
  663. list_del_init(&buf->list);
  664. #if defined(MTK_FB_ION_SUPPORT)
  665. if (buf->va && ((DISP_SESSION_TYPE(session_id) > DISP_SESSION_PRIMARY)))
  666. ion_unmap_kernel(ion_client, buf->hnd);
  667. if (buf->hnd)
  668. mtkfb_ion_free_handle(ion_client, buf->hnd);
  669. ion_release_count++;
  670. #endif
  671. /*
  672. * we must use another mutex for buffer list
  673. * because it will be operated by ALL layer info.
  674. * */
  675. mutex_lock(&fence_buffer_mutex);
  676. list_add_tail(&buf->list, &info_pool_head);
  677. mutex_unlock(&fence_buffer_mutex);
  678. buf->ts_period_keep = sched_clock() - buf->ts_create;
  679. dprec_trigger(&session_info->event_release, buf->idx, layer_id);
  680. /* DISPMSG("buf->idx=%d,ts_create=%lld,ts_period_keep=%lld\n",
  681. buf->idx, buf->ts_create, buf->ts_period_keep);
  682. */
  683. DISPPR_FENCE("R+/%s%d/L%d/id%d/last%d/new%d/free/idx%d\n",
  684. disp_session_mode_spy(session_id),
  685. DISP_SESSION_DEV(session_id), layer_id, fence,
  686. current_timeline_idx, layer_info->fence_idx, buf->idx);
  687. }
  688. }
  689. mutex_unlock(&layer_info->sync_lock);
  690. if (ion_release_count != num_fence)
  691. DISPERR("released %d fence but %d ion handle freed\n",
  692. num_fence, ion_release_count);
  693. }
  694. }
  695. void mtkfb_release_layer_fence(unsigned int session_id, unsigned int layer_id)
  696. {
  697. disp_sync_info *layer_info = NULL;
  698. int fence = 0;
  699. layer_info = _get_sync_info(session_id, layer_id);
  700. if (layer_info == NULL) {
  701. DISPERR("layer_info is null\n");
  702. return;
  703. }
  704. mutex_lock(&layer_info->sync_lock);
  705. fence = layer_info->fence_idx;
  706. mutex_unlock(&layer_info->sync_lock);
  707. DISPPR_FENCE("RL+/%s%d/L%d/id%d\n", disp_session_mode_spy(session_id),
  708. DISP_SESSION_DEV(session_id), layer_id, fence);
  709. /* DISPMSG("layer%d release all fence %d\n", layer_id, fence); */
  710. mtkfb_release_fence(session_id, layer_id, fence);
  711. }
  712. void mtkfb_release_session_fence(unsigned int session_id)
  713. {
  714. disp_session_sync_info *session_sync_info = NULL;
  715. int i;
  716. session_sync_info = _get_session_sync_info(session_id);
  717. if (session_sync_info == NULL) {
  718. DISPERR("layer_info is null\n");
  719. return;
  720. }
  721. for (i = 0; i < ARRAY_SIZE(session_sync_info->session_layer_info); i++)
  722. mtkfb_release_layer_fence(session_id, i);
  723. }
  724. int disp_sync_get_ovl_timeline_id(int layer_id)
  725. {
  726. return DISP_SESSION_OVL_TIMELINE_ID(layer_id);
  727. }
  728. int disp_sync_get_output_timeline_id(void)
  729. {
  730. return DISP_SESSION_OUTPUT_TIMELINE_ID;
  731. }
  732. int disp_sync_get_output_interface_timeline_id(void)
  733. {
  734. return DISP_SESSION_OUTPUT_INTERFACE_TIMELINE_ID;
  735. }
  736. int disp_sync_get_present_timeline_id(void)
  737. {
  738. return DISP_SESSION_PRESENT_TIMELINE_ID;
  739. }
  740. int disp_sync_get_cached_layer_info(unsigned int session_id, unsigned int timeline_idx,
  741. unsigned int *layer_en, unsigned long *addr,
  742. unsigned int *fence_idx)
  743. {
  744. int ret = -1;
  745. disp_sync_info *layer_info = NULL;
  746. layer_info = _get_sync_info(session_id, timeline_idx);
  747. if (layer_info == NULL) {
  748. DISPERR("layer_info is null\n");
  749. return 0;
  750. }
  751. mutex_lock(&(layer_info->sync_lock));
  752. if (layer_en && addr && fence_idx) {
  753. *layer_en = layer_info->cached_config.layer_en;
  754. *addr = layer_info->cached_config.addr;
  755. *fence_idx = layer_info->cached_config.buff_idx;
  756. ret = 0;
  757. goto done;
  758. } else {
  759. ret = -1;
  760. goto done;
  761. }
  762. done:
  763. mutex_unlock(&(layer_info->sync_lock));
  764. return ret;
  765. }
  766. int disp_sync_put_cached_layer_info(unsigned int session_id, unsigned int timeline_idx,
  767. disp_input_config *src, unsigned long mva)
  768. {
  769. int ret = -1;
  770. disp_sync_info *layer_info = NULL;
  771. layer_info = _get_sync_info(session_id, timeline_idx);
  772. if (layer_info == NULL) {
  773. DISPERR("layer_info is null\n");
  774. return -1;
  775. }
  776. mutex_lock(&(layer_info->sync_lock));
  777. if (src) {
  778. disp_sync_convert_input_to_fence_layer_info(src, &(layer_info->cached_config), mva);
  779. ret = 0;
  780. goto done;
  781. } else {
  782. ret = -1;
  783. goto done;
  784. }
  785. done:
  786. mutex_unlock(&(layer_info->sync_lock));
  787. return ret;
  788. }
  789. int disp_sync_convert_input_to_fence_layer_info(disp_input_config *src, FENCE_LAYER_INFO *dst,
  790. unsigned long dst_mva)
  791. {
  792. if (src && dst) {
  793. dst->layer = src->layer_id;
  794. dst->addr = dst_mva;
  795. /* no fence */
  796. if (src->next_buff_idx == 0) {
  797. dst->layer_en = 0;
  798. } else {
  799. dst->layer_en = src->layer_enable;
  800. dst->buff_idx = src->next_buff_idx;
  801. }
  802. return 0;
  803. } else {
  804. return -1;
  805. }
  806. }
  807. static int disp_sync_convert_input_to_fence_layer_info_v2(FENCE_LAYER_INFO *dst, unsigned int timeline_idx,
  808. unsigned int fence_id, int layer_en, unsigned long mva)
  809. {
  810. if (!dst) {
  811. pr_err("%s error!\n", __func__);
  812. BUG();
  813. }
  814. dst->layer = timeline_idx;
  815. dst->addr = mva;
  816. if (fence_id == 0) {
  817. dst->layer_en = 0;
  818. } else {
  819. dst->layer_en = layer_en;
  820. dst->buff_idx = fence_id;
  821. }
  822. return 0;
  823. }
  824. int disp_sync_put_cached_layer_info_v2(unsigned int session_id, unsigned int timeline_idx,
  825. unsigned int fence_id, int layer_en, unsigned long mva)
  826. {
  827. /* int ret = -1; */
  828. disp_sync_info *layer_info = NULL;
  829. layer_info = _get_sync_info(session_id, timeline_idx);
  830. if (layer_info == NULL) {
  831. DISPERR("layer_info is null\n");
  832. return -1;
  833. }
  834. mutex_lock(&(layer_info->sync_lock));
  835. disp_sync_convert_input_to_fence_layer_info_v2(&(layer_info->cached_config),
  836. timeline_idx, fence_id, layer_en, mva);
  837. mutex_unlock(&(layer_info->sync_lock));
  838. return 0;
  839. }
  840. static int prepare_ion_buf(disp_buffer_info *buf, struct mtkfb_fence_buf_info *buf_info)
  841. {
  842. unsigned int mva = 0x0;
  843. struct ion_handle *handle = NULL;
  844. #if defined(MTK_FB_ION_SUPPORT)
  845. handle = mtkfb_ion_import_handle(ion_client, buf->ion_fd);
  846. if (handle)
  847. buf_info->size = mtkfb_ion_phys_mmu_addr(ion_client, handle, &mva);
  848. else
  849. DISPPR_ERROR("can't import ion handle for fd:%d\n", buf->ion_fd);
  850. #endif
  851. buf_info->hnd = handle;
  852. buf_info->mva = mva;
  853. buf_info->va = 0;
  854. return 0;
  855. }
  856. /**
  857. * 1. query a @mtkfb_fence_buf_info list node
  858. * 2. create fence object
  859. * 3. create ion mva
  860. * 4. save fence fd, mva to @mtkfb_fence_buf_info node
  861. * 5. add @mtkfb_fence_buf_info node to @mtkfb_fence_sync_info.buf_list
  862. * @buf struct @fb_overlay_buffer
  863. * @return struct @mtkfb_fence_buf_info
  864. */
  865. struct mtkfb_fence_buf_info *disp_sync_prepare_buf(disp_buffer_info *buf)
  866. {
  867. int ret = 0;
  868. unsigned int session_id = 0;
  869. unsigned int timeline_id = 0;
  870. struct mtkfb_fence_buf_info *buf_info = NULL;
  871. struct fence_data data;
  872. disp_sync_info *layer_info = NULL;
  873. disp_session_sync_info *session_info = NULL;
  874. if (buf == NULL) {
  875. DISPERR("Prepare Buffer, buf is NULL!!\n");
  876. return NULL;
  877. }
  878. session_id = buf->session_id;
  879. timeline_id = buf->layer_id;
  880. session_info = _get_session_sync_info(session_id);
  881. layer_info = _get_sync_info(session_id, timeline_id);
  882. if (layer_info == NULL) {
  883. DISPERR("layer_info is null\n");
  884. return NULL;
  885. }
  886. if (layer_info->inited == 0) {
  887. DISPERR("FATAL ERROR, sync info not inited, session_id=0x%08x|layer_id=%d\n",
  888. session_id, timeline_id);
  889. return NULL;
  890. }
  891. dprec_start(&session_info->event_prepare, buf->layer_id, buf->ion_fd);
  892. buf_info = mtkfb_get_buf_info();
  893. mutex_lock(&layer_info->sync_lock);
  894. data.fence = MTK_FB_INVALID_FENCE_FD;
  895. data.value = ++(layer_info->fence_idx);
  896. mutex_unlock(&(layer_info->sync_lock));
  897. snprintf(data.name, sizeof(data.name), "disp-S%x-L%d-%d", session_id, timeline_id,
  898. data.value);
  899. ret = fence_create(layer_info->timeline, &data);
  900. if (ret != 0) {
  901. /* Does this really happened? */
  902. DISPPR_ERROR("%s%d,layer%d create Fence Object failed!\n",
  903. disp_session_mode_spy(session_id), DISP_SESSION_DEV(session_id),
  904. timeline_id);
  905. }
  906. buf_info->fence = data.fence;
  907. buf_info->idx = data.value;
  908. if (buf->ion_fd >= 0)
  909. prepare_ion_buf(buf, buf_info);
  910. buf_info->mva_offset = 0;
  911. buf_info->trigger_ticket = 0;
  912. buf_info->buf_state = create;
  913. buf_info->cache_sync = buf->cache_sync;
  914. mutex_lock(&layer_info->sync_lock);
  915. list_add_tail(&buf_info->list, &layer_info->buf_list);
  916. mutex_unlock(&layer_info->sync_lock);
  917. DISPPR_FENCE("P+/%s%d/L%d/id%d/fd%d/mva0x%08lx/size0x%08x\n",
  918. disp_session_mode_spy(session_id), DISP_SESSION_DEV(session_id), timeline_id,
  919. buf_info->idx, buf_info->fence, buf_info->mva, buf_info->size);
  920. dprec_done(&session_info->event_prepare, buf_info->idx, buf_info->fence);
  921. return buf_info;
  922. }
  923. int disp_sync_find_fence_idx_by_addr(unsigned int session_id, unsigned int timeline_id,
  924. unsigned long phy_addr)
  925. {
  926. struct mtkfb_fence_buf_info *buf = NULL;
  927. int idx = -1;
  928. unsigned int layer_en = 0;
  929. unsigned long addr = 0;
  930. unsigned int fence_idx = -1;
  931. disp_sync_info *layer_info = NULL;
  932. disp_session_sync_info *session_info = NULL;
  933. session_info = _get_session_sync_info(session_id);
  934. layer_info = _get_sync_info(session_id, timeline_id);
  935. if (layer_info == NULL) {
  936. DISPERR("layer_info is null\n");
  937. return -1;
  938. }
  939. if (layer_info->fence_idx == 0)
  940. /* DISPERR("layer_info->fence_idx == 0!\n"); */
  941. return -2;
  942. /* DISPPR_FENCE("F+/0x%08x/%d/0x%08x\n", session_id, timeline_id, phy_addr); */
  943. disp_sync_get_cached_layer_info(session_id, timeline_id, &layer_en, &addr, &fence_idx);
  944. /* DISPPR_FENCE("F+/%d/0x%08x/%d\n", layer_en, addr, fence_idx); */
  945. dprec_start(&session_info->event_findidx, layer_en | (timeline_id << 16), fence_idx);
  946. if (phy_addr) {
  947. mutex_lock(&layer_info->sync_lock);
  948. list_for_each_entry(buf, &layer_info->buf_list, list) {
  949. /*
  950. * Because buf_list stores the lates fence info from prepare,
  951. * so we should gurantee only release the fences that has set inputed.
  952. */
  953. if (buf->idx <= fence_idx) {
  954. /*
  955. * Because we use cached idx as boundary,
  956. * so we will continue traverse even the idx has been found.
  957. */
  958. if ((buf->mva + buf->mva_offset) == phy_addr) {
  959. if (phy_addr >= buf->mva && buf->mva + buf->size > phy_addr)
  960. ;
  961. else
  962. DISPPR_ERROR("wrong addr:0x%lx, 0x%lx,0x%08x\n",
  963. phy_addr, buf->mva, buf->size);
  964. idx = buf->idx - 1;
  965. }
  966. }
  967. }
  968. mutex_unlock(&layer_info->sync_lock);
  969. } else {
  970. if (layer_en == 0)
  971. idx = fence_idx;
  972. else
  973. idx = fence_idx - 1;
  974. }
  975. dprec_done(&session_info->event_findidx, phy_addr, idx);
  976. /* DISPPR_FENCE("F/%d\n", idx); */
  977. return idx;
  978. }
  979. unsigned int disp_sync_query_buf_info(unsigned int session_id, unsigned int timeline_id,
  980. unsigned int idx, unsigned long *mva, unsigned int *size)
  981. {
  982. struct mtkfb_fence_buf_info *buf = NULL;
  983. unsigned long dst_mva = 0;
  984. uint32_t dst_size = 0;
  985. disp_sync_info *layer_info = NULL;
  986. layer_info = _get_sync_info(session_id, timeline_id);
  987. if (layer_info == NULL || mva == NULL || size == NULL) {
  988. DISPERR("layer_info is null, layer_info=%p, mva=%p, size=%p\n", layer_info, mva,
  989. size);
  990. return 0;
  991. }
  992. mutex_lock(&layer_info->sync_lock);
  993. list_for_each_entry(buf, &layer_info->buf_list, list) {
  994. if (buf->idx == idx) {
  995. /* use local variable here to avoid polluted pointer */
  996. dst_mva = buf->mva;
  997. dst_size = buf->size;
  998. break;
  999. }
  1000. }
  1001. mutex_unlock(&layer_info->sync_lock);
  1002. if (dst_mva != 0x0) {
  1003. *mva = dst_mva;
  1004. *size = dst_size;
  1005. buf->ts_create = sched_clock();
  1006. if (buf->cache_sync) {
  1007. dprec_logger_start(DPREC_LOGGER_DISPMGR_CACHE_SYNC, (unsigned long)buf->hnd, buf->mva);
  1008. mtkfb_ion_cache_flush(ion_client, buf->hnd);
  1009. dprec_logger_done(DPREC_LOGGER_DISPMGR_CACHE_SYNC, (unsigned long)buf->hnd, buf->mva);
  1010. }
  1011. MTKFB_FENCE_LOG("query buf mva: layer=%d, idx=%d, mva=0x%lx\n", timeline_id, idx,
  1012. buf->mva);
  1013. } else {
  1014. /* FIXME: non-ion buffer need cache sync here? */
  1015. DISPERR("cannot find this buf, session:%s%d, layer=%d,\n",
  1016. disp_session_mode_spy(session_id), DISP_SESSION_DEV(session_id), timeline_id);
  1017. DISPERR("idx=%d, fence_idx=%d, timeline_idx=%d, cur_idx=%d!\n",
  1018. idx, layer_info->fence_idx, layer_info->timeline_idx, layer_info->cur_idx);
  1019. }
  1020. /* DISPMSG("mva query:session_id=0x%08x, layer_id=%d, mva=0x%08x\n", session_id, layer_id, mva); */
  1021. return 0;
  1022. }
  1023. int disp_sync_get_debug_info(char *stringbuf, int buf_len)
  1024. {
  1025. int len = 0;
  1026. int i = 0;
  1027. int layer_id = 0;
  1028. disp_session_sync_info *session_info = NULL;
  1029. unsigned int session_id = 0;
  1030. disp_sync_info *layer_info = NULL;
  1031. len += scnprintf(stringbuf + len, buf_len - len,
  1032. "|----------------------------------------------------------------------------------|\n");
  1033. len += scnprintf(stringbuf + len, buf_len - len,
  1034. "|********Display Session Information********\n");
  1035. for (i = 0; i < sizeof(_disp_fence_context) / sizeof(_disp_fence_context[0]); i++) {
  1036. session_id = _disp_fence_context[i].session_id;
  1037. session_info = &(_disp_fence_context[i]);
  1038. len += scnprintf(stringbuf + len, buf_len - len, "|Session id\t0x%08x\n", session_id);
  1039. for (layer_id = 0; layer_id < DISP_SESSION_TIMELINE_COUNT; layer_id++) {
  1040. layer_info = &(session_info->session_layer_info[layer_id]);
  1041. len += scnprintf(stringbuf + len, buf_len - len,
  1042. "|layerinfo %d\tfence_fd(%d)\tfence_idx(%d)\ttimeline_idx(%d)\n",
  1043. layer_id, layer_info->fence_fd, layer_info->fence_idx,
  1044. layer_info->timeline_idx);
  1045. }
  1046. len += scnprintf(stringbuf + len, buf_len - len,
  1047. "|----------------------------------------------------------------------------------|\n");
  1048. }
  1049. return len;
  1050. }