ufo-padding-2d-task.c 14 KB

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  1. /**
  2. * SECTION:ufo-filter-task
  3. * @Short_description: Process arbitrary Filter kernels
  4. * @Title: filter
  5. *
  6. * This module is used to load an arbitrary #UfoPadding2DTask:kernel from
  7. * #UfoPadding2DTask:filename and execute it on each input. The kernel must have
  8. * only two global float array parameters, the first represents the input, the
  9. * second one the output. #UfoPadding2DTask:num-dims must be changed, if the kernel
  10. * accesses either one or three dimensional index spaces.
  11. */
  12. #ifdef __APPLE__
  13. #include <OpenCL/cl.h>
  14. #else
  15. #include <CL/cl.h>
  16. #endif
  17. #include "ufo-padding-2d-task.h"
  18. typedef enum {
  19. PADDING_ZERO = 0,
  20. PADDING_CONST,
  21. PADDING_GAVG,
  22. PADDING_BREP
  23. } PaddingMode;
  24. struct _UfoPadding2DTaskPrivate {
  25. guint in_width;
  26. guint in_height;
  27. guint out_width;
  28. guint out_height;
  29. // extent adds
  30. guint xl;
  31. guint xr;
  32. guint yt;
  33. guint yb;
  34. size_t global_work_size_small[2];
  35. size_t global_work_size_large[2];
  36. PaddingMode mode;
  37. // padding constant
  38. float pconst;
  39. cl_kernel kernel_iconst;
  40. cl_kernel kernel_cpyimg;
  41. cl_kernel kernel_brep;
  42. };
  43. static void ufo_task_interface_init (UfoTaskIface *iface);
  44. static void ufo_gpu_task_interface_init (UfoGpuTaskIface *iface);
  45. G_DEFINE_TYPE_WITH_CODE (UfoPadding2DTask, ufo_padding_2d_task, UFO_TYPE_TASK_NODE,
  46. G_IMPLEMENT_INTERFACE (UFO_TYPE_TASK,
  47. ufo_task_interface_init)
  48. G_IMPLEMENT_INTERFACE (UFO_TYPE_GPU_TASK,
  49. ufo_gpu_task_interface_init))
  50. #define UFO_PADDING_2D_TASK_GET_PRIVATE(obj) (G_TYPE_INSTANCE_GET_PRIVATE((obj), UFO_TYPE_PADDING_2D_TASK, UfoPadding2DTaskPrivate))
  51. enum {
  52. PROP_0,
  53. PROP_XL,
  54. PROP_XR,
  55. PROP_YT,
  56. PROP_YB,
  57. PROP_MODE,
  58. PROP_PCONST,
  59. N_PROPERTIES
  60. };
  61. static GParamSpec *properties[N_PROPERTIES] = { NULL, };
  62. UfoNode *
  63. ufo_padding_2d_task_new (void)
  64. {
  65. return UFO_NODE (g_object_new (UFO_TYPE_PADDING_2D_TASK, NULL));
  66. }
  67. static gboolean
  68. ufo_padding_2d_task_process (UfoGpuTask *task,
  69. UfoBuffer **inputs,
  70. UfoBuffer *output,
  71. UfoRequisition *requisition,
  72. UfoGpuNode *node)
  73. {
  74. UfoPadding2DTaskPrivate *priv;
  75. cl_command_queue cmd_queue;
  76. cl_mem in_mem;
  77. cl_mem out_mem;
  78. priv = UFO_PADDING_2D_TASK (task)->priv;
  79. const PaddingMode mode = priv->mode;
  80. const guint pxl = priv->xl;
  81. const guint pyt = priv->yt;
  82. float pval = priv->pconst;
  83. const guint ixs = priv->in_width;
  84. const guint iys = priv->in_height;
  85. const guint oxs = priv->out_width;
  86. if (mode == PADDING_GAVG) {
  87. gfloat *indata = ufo_buffer_get_host_array (inputs[0], NULL);
  88. gfloat sum = 0;
  89. guint psz = ixs * iys;
  90. for (guint i =0; i < psz; i++)
  91. sum += indata[i];
  92. pval = sum / (gfloat) psz;
  93. }
  94. cmd_queue = ufo_gpu_node_get_cmd_queue (node);
  95. in_mem = ufo_buffer_get_device_array (inputs[0], cmd_queue);
  96. out_mem = ufo_buffer_get_device_array (output, cmd_queue);
  97. if ((mode == PADDING_ZERO) || (mode == PADDING_CONST) || (mode == PADDING_GAVG)) {
  98. cl_kernel k_iconst = priv->kernel_iconst;
  99. cl_kernel k_cpyimg = priv->kernel_cpyimg;
  100. /// fill with constant
  101. UFO_RESOURCES_CHECK_CLERR(clSetKernelArg( k_iconst, 0, sizeof(cl_mem), (void *) &out_mem));
  102. UFO_RESOURCES_CHECK_CLERR(clSetKernelArg( k_iconst, 1, sizeof(int), &oxs));
  103. UFO_RESOURCES_CHECK_CLERR(clSetKernelArg( k_iconst, 2, sizeof(float), &pval));
  104. UFO_RESOURCES_CHECK_CLERR(clEnqueueNDRangeKernel(cmd_queue, k_iconst,
  105. 2, NULL, priv->global_work_size_large, NULL,
  106. 0, NULL, NULL));
  107. /// copy old image
  108. UFO_RESOURCES_CHECK_CLERR(clSetKernelArg( k_cpyimg, 0, sizeof(cl_mem), (void *) &in_mem));
  109. UFO_RESOURCES_CHECK_CLERR(clSetKernelArg( k_cpyimg, 1, sizeof(cl_mem), (void *) &out_mem));
  110. UFO_RESOURCES_CHECK_CLERR(clSetKernelArg( k_cpyimg, 2, sizeof(int), &ixs));
  111. UFO_RESOURCES_CHECK_CLERR(clSetKernelArg( k_cpyimg, 3, sizeof(int), &oxs));
  112. UFO_RESOURCES_CHECK_CLERR(clSetKernelArg( k_cpyimg, 4, sizeof(int), &pxl));
  113. UFO_RESOURCES_CHECK_CLERR(clSetKernelArg( k_cpyimg, 5, sizeof(int), &pyt));
  114. UFO_RESOURCES_CHECK_CLERR(clEnqueueNDRangeKernel(cmd_queue, k_cpyimg,
  115. 2, NULL, priv->global_work_size_small, NULL,
  116. 0, NULL, NULL));
  117. }
  118. if (mode == PADDING_BREP) {
  119. cl_kernel k_brep = priv->kernel_brep;
  120. UFO_RESOURCES_CHECK_CLERR(clSetKernelArg( k_brep, 0, sizeof(cl_mem), (void *) &in_mem));
  121. UFO_RESOURCES_CHECK_CLERR(clSetKernelArg( k_brep, 1, sizeof(cl_mem), (void *) &out_mem));
  122. UFO_RESOURCES_CHECK_CLERR(clSetKernelArg( k_brep, 2, sizeof(int), &ixs));
  123. UFO_RESOURCES_CHECK_CLERR(clSetKernelArg( k_brep, 3, sizeof(int), &iys));
  124. UFO_RESOURCES_CHECK_CLERR(clSetKernelArg( k_brep, 4, sizeof(int), &oxs));
  125. UFO_RESOURCES_CHECK_CLERR(clSetKernelArg( k_brep, 5, sizeof(int), &pxl));
  126. UFO_RESOURCES_CHECK_CLERR(clSetKernelArg( k_brep, 6, sizeof(int), &pyt));
  127. UFO_RESOURCES_CHECK_CLERR(clEnqueueNDRangeKernel(cmd_queue, k_brep,
  128. 2, NULL, priv->global_work_size_large, NULL,
  129. 0, NULL, NULL));
  130. }
  131. return TRUE;
  132. }
  133. static void
  134. ufo_padding_2d_task_setup (UfoTask *task,
  135. UfoResources *resources,
  136. GError **error)
  137. {
  138. UfoPadding2DTaskPrivate *priv;
  139. priv = UFO_PADDING_2D_TASK_GET_PRIVATE (task);
  140. priv->kernel_iconst = ufo_resources_get_kernel (resources, "padding_2d.cl", "padding_2d_init_const", error);
  141. priv->kernel_cpyimg = ufo_resources_get_kernel (resources, "padding_2d.cl", "padding_2d_copy_in", error);
  142. priv->kernel_brep = ufo_resources_get_kernel (resources, "padding_2d.cl", "padding_2d_brep", error);
  143. }
  144. static void
  145. ufo_padding_2d_task_get_requisition (UfoTask *task,
  146. UfoBuffer **inputs,
  147. UfoRequisition *requisition)
  148. {
  149. UfoPadding2DTaskPrivate *priv;
  150. UfoRequisition in_req;
  151. priv = UFO_PADDING_2D_TASK_GET_PRIVATE (task);
  152. ufo_buffer_get_requisition (inputs[0], &in_req);
  153. priv->in_width = in_req.dims[0];
  154. priv->in_height = in_req.dims[1];
  155. requisition->n_dims = 2;
  156. requisition->dims[0] = priv->out_width = priv->xl + priv->in_width + priv->xr;
  157. requisition->dims[1] = priv->out_height = priv->yt + priv->in_height + priv->yb;
  158. priv->global_work_size_small[0] = (size_t) priv->in_width;
  159. priv->global_work_size_small[1] = (size_t) priv->in_height;
  160. priv->global_work_size_large[0] = requisition->dims[0];
  161. priv->global_work_size_large[1] = requisition->dims[1];
  162. }
  163. static void
  164. ufo_padding_2d_task_get_structure (UfoTask *task,
  165. guint *n_inputs,
  166. UfoInputParam **in_params,
  167. UfoTaskMode *mode)
  168. {
  169. UfoPadding2DTaskPrivate *priv;
  170. priv = UFO_PADDING_2D_TASK_GET_PRIVATE (task);
  171. *mode = UFO_TASK_MODE_SINGLE;
  172. *n_inputs = 1;
  173. *in_params = g_new0 (UfoInputParam, 1);
  174. (*in_params)[0].n_dims = 2;
  175. }
  176. static UfoNode *
  177. ufo_padding_2d_task_copy_real (UfoNode *node,
  178. GError **error)
  179. {
  180. UfoPadding2DTask *orig;
  181. UfoPadding2DTask *copy;
  182. orig = UFO_PADDING_2D_TASK (node);
  183. copy = UFO_PADDING_2D_TASK (ufo_padding_2d_task_new ());
  184. copy->priv->xl = orig->priv->xl;
  185. copy->priv->xr = orig->priv->xr;
  186. copy->priv->yb = orig->priv->yb;
  187. copy->priv->yt = orig->priv->yt;
  188. copy->priv->mode = orig->priv->mode;
  189. copy->priv->pconst = orig->priv->pconst;
  190. return UFO_NODE (copy);
  191. }
  192. static gboolean
  193. ufo_padding_2d_task_equal_real (UfoNode *n1,
  194. UfoNode *n2)
  195. {
  196. g_return_val_if_fail (UFO_IS_PADDING_2D_TASK (n1) && UFO_IS_PADDING_2D_TASK (n2), FALSE);
  197. return TRUE;
  198. }
  199. static void
  200. ufo_padding_2d_task_finalize (GObject *object)
  201. {
  202. UfoPadding2DTaskPrivate *priv;
  203. priv = UFO_PADDING_2D_TASK_GET_PRIVATE (object);
  204. G_OBJECT_CLASS (ufo_padding_2d_task_parent_class)->finalize (object);
  205. }
  206. static void
  207. ufo_task_interface_init (UfoTaskIface *iface)
  208. {
  209. iface->setup = ufo_padding_2d_task_setup;
  210. iface->get_requisition = ufo_padding_2d_task_get_requisition;
  211. iface->get_structure = ufo_padding_2d_task_get_structure;
  212. }
  213. static void
  214. ufo_gpu_task_interface_init (UfoGpuTaskIface *iface)
  215. {
  216. iface->process = ufo_padding_2d_task_process;
  217. }
  218. static void
  219. ufo_padding_2d_task_set_property (GObject *object,
  220. guint property_id,
  221. const GValue *value,
  222. GParamSpec *pspec)
  223. {
  224. UfoPadding2DTaskPrivate *priv = UFO_PADDING_2D_TASK_GET_PRIVATE (object);
  225. switch (property_id) {
  226. case PROP_XL:
  227. priv->xl = g_value_get_uint(value);
  228. break;
  229. case PROP_XR:
  230. priv->xr = g_value_get_uint(value);
  231. break;
  232. case PROP_YT:
  233. priv->yt = g_value_get_uint(value);
  234. break;
  235. case PROP_YB:
  236. priv->yb = g_value_get_uint(value);
  237. break;
  238. case PROP_MODE:
  239. if (!g_strcmp0(g_value_get_string(value), "zero"))
  240. priv->mode = PADDING_ZERO;
  241. else if (!g_strcmp0(g_value_get_string(value), "const"))
  242. priv->mode = PADDING_CONST;
  243. else if (!g_strcmp0(g_value_get_string(value), "gavg"))
  244. priv->mode = PADDING_GAVG;
  245. else if (!g_strcmp0(g_value_get_string(value), "brep"))
  246. priv->mode = PADDING_BREP;
  247. else
  248. G_OBJECT_WARN_INVALID_PROPERTY_ID(object, property_id, pspec);
  249. break;
  250. case PROP_PCONST:
  251. priv->pconst = (float) g_value_get_double(value);
  252. break;
  253. default:
  254. G_OBJECT_WARN_INVALID_PROPERTY_ID (object, property_id, pspec);
  255. break;
  256. }
  257. }
  258. static void
  259. ufo_padding_2d_task_get_property (GObject *object,
  260. guint property_id,
  261. GValue *value,
  262. GParamSpec *pspec)
  263. {
  264. UfoPadding2DTaskPrivate *priv = UFO_PADDING_2D_TASK_GET_PRIVATE (object);
  265. switch (property_id) {
  266. case PROP_XL:
  267. g_value_set_uint(value, priv->xl);
  268. break;
  269. case PROP_XR:
  270. g_value_set_uint(value, priv->xr);
  271. break;
  272. case PROP_YT:
  273. g_value_set_uint(value, priv->yt);
  274. break;
  275. case PROP_YB:
  276. g_value_set_uint(value, priv->yb);
  277. break;
  278. case PROP_MODE:
  279. switch (priv->mode) {
  280. case PADDING_ZERO:
  281. g_value_set_string(value, "zero");
  282. break;
  283. case PADDING_CONST:
  284. g_value_set_string(value, "const");
  285. break;
  286. case PADDING_GAVG:
  287. g_value_set_string(value, "gavg");
  288. break;
  289. case PADDING_BREP:
  290. g_value_set_string(value, "brep");
  291. break;
  292. default:
  293. G_OBJECT_WARN_INVALID_PROPERTY_ID(object, property_id, pspec);
  294. break;
  295. }
  296. break;
  297. case PROP_PCONST:
  298. g_value_set_double(value, priv->pconst);
  299. break;
  300. default:
  301. G_OBJECT_WARN_INVALID_PROPERTY_ID(object, property_id, pspec);
  302. break;
  303. }
  304. }
  305. static void
  306. ufo_padding_2d_task_class_init (UfoPadding2DTaskClass *klass)
  307. {
  308. GObjectClass *oclass;
  309. UfoNodeClass *node_class;
  310. oclass = G_OBJECT_CLASS (klass);
  311. node_class = UFO_NODE_CLASS (klass);
  312. oclass->finalize = ufo_padding_2d_task_finalize;
  313. oclass->set_property = ufo_padding_2d_task_set_property;
  314. oclass->get_property = ufo_padding_2d_task_get_property;
  315. properties[PROP_XL] =
  316. g_param_spec_uint("xl",
  317. "Number of additional pixel on the left hand image side",
  318. "Number of additional pixel on the left hand image side",
  319. 0, 16384, 1,
  320. G_PARAM_READWRITE);
  321. properties[PROP_XR] =
  322. g_param_spec_uint("xr",
  323. "Number of additional pixel on the right hand image side",
  324. "Number of additional pixel on the right hand image side",
  325. 0, 16384, 1,
  326. G_PARAM_READWRITE);
  327. properties[PROP_YT] =
  328. g_param_spec_uint("yt",
  329. "Number of additional pixel on the top image side",
  330. "Number of additional pixel on the top image side",
  331. 0, 16384, 1,
  332. G_PARAM_READWRITE);
  333. properties[PROP_YB] =
  334. g_param_spec_uint("yb",
  335. "Number of additional pixel on the bottom image side",
  336. "Number of additional pixel on the bottom image side",
  337. 0, 16384, 1,
  338. G_PARAM_READWRITE);
  339. properties[PROP_MODE] =
  340. g_param_spec_string("mode",
  341. "Padding mode can be 'zero', 'const', 'gavg' or 'brep' ",
  342. "Padding mode can be 'zero', 'const', 'gavg' or 'brep' ",
  343. "zero",
  344. G_PARAM_READWRITE);
  345. properties[PROP_PCONST] =
  346. g_param_spec_double("pconst",
  347. "Padding constant",
  348. "Padding constant",
  349. -320000.0,
  350. 320000.0,
  351. 0.0,
  352. G_PARAM_READWRITE);
  353. for (guint i = PROP_0 + 1; i < N_PROPERTIES; i++)
  354. g_object_class_install_property (oclass, i, properties[i]);
  355. node_class->copy = ufo_padding_2d_task_copy_real;
  356. node_class->equal = ufo_padding_2d_task_equal_real;
  357. g_type_class_add_private(klass, sizeof(UfoPadding2DTaskPrivate));
  358. }
  359. static void
  360. ufo_padding_2d_task_init (UfoPadding2DTask *self)
  361. {
  362. UfoPadding2DTaskPrivate *priv;
  363. self->priv = priv = UFO_PADDING_2D_TASK_GET_PRIVATE (self);
  364. priv->xl = 1;
  365. priv->xr = 1;
  366. priv->yt = 1;
  367. priv->yb = 1;
  368. priv->mode = PADDING_ZERO;
  369. priv->pconst = 0.0;
  370. priv->kernel_iconst = NULL;
  371. priv->kernel_cpyimg = NULL;
  372. priv->kernel_brep = NULL;
  373. }