gallium/hud: add an option to rename each data source
[mesa.git] / src / gallium / auxiliary / hud / hud_context.c
1 /**************************************************************************
2 *
3 * Copyright 2013 Marek Olšák <maraeo@gmail.com>
4 * All Rights Reserved.
5 *
6 * Permission is hereby granted, free of charge, to any person obtaining a
7 * copy of this software and associated documentation files (the
8 * "Software"), to deal in the Software without restriction, including
9 * without limitation the rights to use, copy, modify, merge, publish,
10 * distribute, sub license, and/or sell copies of the Software, and to
11 * permit persons to whom the Software is furnished to do so, subject to
12 * the following conditions:
13 *
14 * The above copyright notice and this permission notice (including the
15 * next paragraph) shall be included in all copies or substantial portions
16 * of the Software.
17 *
18 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
19 * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
20 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT.
21 * IN NO EVENT SHALL THE AUTHORS AND/OR ITS SUPPLIERS BE LIABLE FOR
22 * ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT,
23 * TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE
24 * SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
25 *
26 **************************************************************************/
27
28 /* This head-up display module can draw transparent graphs on top of what
29 * the app is rendering, visualizing various data like framerate, cpu load,
30 * performance counters, etc. It can be hook up into any state tracker.
31 *
32 * The HUD is controlled with the GALLIUM_HUD environment variable.
33 * Set GALLIUM_HUD=help for more info.
34 */
35
36 #include <inttypes.h>
37 #include <signal.h>
38 #include <stdio.h>
39
40 #include "hud/hud_context.h"
41 #include "hud/hud_private.h"
42 #include "hud/font.h"
43
44 #include "cso_cache/cso_context.h"
45 #include "util/u_draw_quad.h"
46 #include "util/u_format.h"
47 #include "util/u_inlines.h"
48 #include "util/u_memory.h"
49 #include "util/u_math.h"
50 #include "util/u_sampler.h"
51 #include "util/u_simple_shaders.h"
52 #include "util/u_string.h"
53 #include "util/u_upload_mgr.h"
54 #include "tgsi/tgsi_text.h"
55 #include "tgsi/tgsi_dump.h"
56
57 /* Control the visibility of all HUD contexts */
58 static boolean huds_visible = TRUE;
59
60 struct hud_context {
61 struct pipe_context *pipe;
62 struct cso_context *cso;
63 struct u_upload_mgr *uploader;
64
65 struct hud_batch_query_context *batch_query;
66 struct list_head pane_list;
67
68 /* states */
69 struct pipe_blend_state no_blend, alpha_blend;
70 struct pipe_depth_stencil_alpha_state dsa;
71 void *fs_color, *fs_text;
72 struct pipe_rasterizer_state rasterizer, rasterizer_aa_lines;
73 void *vs;
74 struct pipe_vertex_element velems[2];
75
76 /* font */
77 struct util_font font;
78 struct pipe_sampler_view *font_sampler_view;
79 struct pipe_sampler_state font_sampler_state;
80
81 /* VS constant buffer */
82 struct {
83 float color[4];
84 float two_div_fb_width;
85 float two_div_fb_height;
86 float translate[2];
87 float scale[2];
88 float padding[2];
89 } constants;
90 struct pipe_constant_buffer constbuf;
91
92 unsigned fb_width, fb_height;
93
94 /* vertices for text and background drawing are accumulated here and then
95 * drawn all at once */
96 struct vertex_queue {
97 float *vertices;
98 struct pipe_vertex_buffer vbuf;
99 unsigned max_num_vertices;
100 unsigned num_vertices;
101 } text, bg, whitelines;
102
103 bool has_srgb;
104 };
105
106 #ifdef PIPE_OS_UNIX
107 static void
108 signal_visible_handler(int sig, siginfo_t *siginfo, void *context)
109 {
110 huds_visible = !huds_visible;
111 }
112 #endif
113
114 static void
115 hud_draw_colored_prims(struct hud_context *hud, unsigned prim,
116 float *buffer, unsigned num_vertices,
117 float r, float g, float b, float a,
118 int xoffset, int yoffset, float yscale)
119 {
120 struct cso_context *cso = hud->cso;
121 struct pipe_vertex_buffer vbuffer = {0};
122
123 hud->constants.color[0] = r;
124 hud->constants.color[1] = g;
125 hud->constants.color[2] = b;
126 hud->constants.color[3] = a;
127 hud->constants.translate[0] = (float) xoffset;
128 hud->constants.translate[1] = (float) yoffset;
129 hud->constants.scale[0] = 1;
130 hud->constants.scale[1] = yscale;
131 cso_set_constant_buffer(cso, PIPE_SHADER_VERTEX, 0, &hud->constbuf);
132
133 vbuffer.user_buffer = buffer;
134 vbuffer.stride = 2 * sizeof(float);
135
136 cso_set_vertex_buffers(cso, cso_get_aux_vertex_buffer_slot(cso),
137 1, &vbuffer);
138 cso_set_fragment_shader_handle(hud->cso, hud->fs_color);
139 cso_draw_arrays(cso, prim, 0, num_vertices);
140 }
141
142 static void
143 hud_draw_colored_quad(struct hud_context *hud, unsigned prim,
144 unsigned x1, unsigned y1, unsigned x2, unsigned y2,
145 float r, float g, float b, float a)
146 {
147 float buffer[] = {
148 (float) x1, (float) y1,
149 (float) x1, (float) y2,
150 (float) x2, (float) y2,
151 (float) x2, (float) y1,
152 };
153
154 hud_draw_colored_prims(hud, prim, buffer, 4, r, g, b, a, 0, 0, 1);
155 }
156
157 static void
158 hud_draw_background_quad(struct hud_context *hud,
159 unsigned x1, unsigned y1, unsigned x2, unsigned y2)
160 {
161 float *vertices = hud->bg.vertices + hud->bg.num_vertices*2;
162 unsigned num = 0;
163
164 assert(hud->bg.num_vertices + 4 <= hud->bg.max_num_vertices);
165
166 vertices[num++] = (float) x1;
167 vertices[num++] = (float) y1;
168
169 vertices[num++] = (float) x1;
170 vertices[num++] = (float) y2;
171
172 vertices[num++] = (float) x2;
173 vertices[num++] = (float) y2;
174
175 vertices[num++] = (float) x2;
176 vertices[num++] = (float) y1;
177
178 hud->bg.num_vertices += num/2;
179 }
180
181 static void
182 hud_draw_string(struct hud_context *hud, unsigned x, unsigned y,
183 const char *str, ...)
184 {
185 char buf[256];
186 char *s = buf;
187 float *vertices = hud->text.vertices + hud->text.num_vertices*4;
188 unsigned num = 0;
189
190 va_list ap;
191 va_start(ap, str);
192 util_vsnprintf(buf, sizeof(buf), str, ap);
193 va_end(ap);
194
195 if (!*s)
196 return;
197
198 hud_draw_background_quad(hud,
199 x, y,
200 x + strlen(buf)*hud->font.glyph_width,
201 y + hud->font.glyph_height);
202
203 while (*s) {
204 unsigned x1 = x;
205 unsigned y1 = y;
206 unsigned x2 = x + hud->font.glyph_width;
207 unsigned y2 = y + hud->font.glyph_height;
208 unsigned tx1 = (*s % 16) * hud->font.glyph_width;
209 unsigned ty1 = (*s / 16) * hud->font.glyph_height;
210 unsigned tx2 = tx1 + hud->font.glyph_width;
211 unsigned ty2 = ty1 + hud->font.glyph_height;
212
213 if (*s == ' ') {
214 x += hud->font.glyph_width;
215 s++;
216 continue;
217 }
218
219 assert(hud->text.num_vertices + num/4 + 4 <= hud->text.max_num_vertices);
220
221 vertices[num++] = (float) x1;
222 vertices[num++] = (float) y1;
223 vertices[num++] = (float) tx1;
224 vertices[num++] = (float) ty1;
225
226 vertices[num++] = (float) x1;
227 vertices[num++] = (float) y2;
228 vertices[num++] = (float) tx1;
229 vertices[num++] = (float) ty2;
230
231 vertices[num++] = (float) x2;
232 vertices[num++] = (float) y2;
233 vertices[num++] = (float) tx2;
234 vertices[num++] = (float) ty2;
235
236 vertices[num++] = (float) x2;
237 vertices[num++] = (float) y1;
238 vertices[num++] = (float) tx2;
239 vertices[num++] = (float) ty1;
240
241 x += hud->font.glyph_width;
242 s++;
243 }
244
245 hud->text.num_vertices += num/4;
246 }
247
248 static void
249 number_to_human_readable(uint64_t num, enum pipe_driver_query_type type,
250 char *out)
251 {
252 static const char *byte_units[] =
253 {" B", " KB", " MB", " GB", " TB", " PB", " EB"};
254 static const char *metric_units[] =
255 {"", " k", " M", " G", " T", " P", " E"};
256 static const char *time_units[] =
257 {" us", " ms", " s"}; /* based on microseconds */
258 static const char *hz_units[] =
259 {" Hz", " KHz", " MHz", " GHz"};
260 static const char *percent_units[] = {"%"};
261 static const char *dbm_units[] = {" (-dBm)"};
262 static const char *temperature_units[] = {" C"};
263 static const char *volt_units[] = {" mV", " V"};
264 static const char *amp_units[] = {" mA", " A"};
265 static const char *watt_units[] = {" mW", " W"};
266
267 const char **units;
268 unsigned max_unit;
269 double divisor = (type == PIPE_DRIVER_QUERY_TYPE_BYTES) ? 1024 : 1000;
270 unsigned unit = 0;
271 double d = num;
272
273 switch (type) {
274 case PIPE_DRIVER_QUERY_TYPE_MICROSECONDS:
275 max_unit = ARRAY_SIZE(time_units)-1;
276 units = time_units;
277 break;
278 case PIPE_DRIVER_QUERY_TYPE_VOLTS:
279 max_unit = ARRAY_SIZE(volt_units)-1;
280 units = volt_units;
281 break;
282 case PIPE_DRIVER_QUERY_TYPE_AMPS:
283 max_unit = ARRAY_SIZE(amp_units)-1;
284 units = amp_units;
285 break;
286 case PIPE_DRIVER_QUERY_TYPE_DBM:
287 max_unit = ARRAY_SIZE(dbm_units)-1;
288 units = dbm_units;
289 break;
290 case PIPE_DRIVER_QUERY_TYPE_TEMPERATURE:
291 max_unit = ARRAY_SIZE(temperature_units)-1;
292 units = temperature_units;
293 break;
294 case PIPE_DRIVER_QUERY_TYPE_PERCENTAGE:
295 max_unit = ARRAY_SIZE(percent_units)-1;
296 units = percent_units;
297 break;
298 case PIPE_DRIVER_QUERY_TYPE_BYTES:
299 max_unit = ARRAY_SIZE(byte_units)-1;
300 units = byte_units;
301 break;
302 case PIPE_DRIVER_QUERY_TYPE_HZ:
303 max_unit = ARRAY_SIZE(hz_units)-1;
304 units = hz_units;
305 break;
306 case PIPE_DRIVER_QUERY_TYPE_WATTS:
307 max_unit = ARRAY_SIZE(watt_units)-1;
308 units = watt_units;
309 break;
310 default:
311 max_unit = ARRAY_SIZE(metric_units)-1;
312 units = metric_units;
313 }
314
315 while (d > divisor && unit < max_unit) {
316 d /= divisor;
317 unit++;
318 }
319
320 /* Round to 3 decimal places so as not to print trailing zeros. */
321 if (d*1000 != (int)(d*1000))
322 d = round(d * 1000) / 1000;
323
324 /* Show at least 4 digits with at most 3 decimal places, but not zeros. */
325 if (d >= 1000 || d == (int)d)
326 sprintf(out, "%.0f%s", d, units[unit]);
327 else if (d >= 100 || d*10 == (int)(d*10))
328 sprintf(out, "%.1f%s", d, units[unit]);
329 else if (d >= 10 || d*100 == (int)(d*100))
330 sprintf(out, "%.2f%s", d, units[unit]);
331 else
332 sprintf(out, "%.3f%s", d, units[unit]);
333 }
334
335 static void
336 hud_draw_graph_line_strip(struct hud_context *hud, const struct hud_graph *gr,
337 unsigned xoffset, unsigned yoffset, float yscale)
338 {
339 if (gr->num_vertices <= 1)
340 return;
341
342 assert(gr->index <= gr->num_vertices);
343
344 hud_draw_colored_prims(hud, PIPE_PRIM_LINE_STRIP,
345 gr->vertices, gr->index,
346 gr->color[0], gr->color[1], gr->color[2], 1,
347 xoffset + (gr->pane->max_num_vertices - gr->index - 1) * 2 - 1,
348 yoffset, yscale);
349
350 if (gr->num_vertices <= gr->index)
351 return;
352
353 hud_draw_colored_prims(hud, PIPE_PRIM_LINE_STRIP,
354 gr->vertices + gr->index*2,
355 gr->num_vertices - gr->index,
356 gr->color[0], gr->color[1], gr->color[2], 1,
357 xoffset - gr->index*2 - 1, yoffset, yscale);
358 }
359
360 static void
361 hud_pane_accumulate_vertices(struct hud_context *hud,
362 const struct hud_pane *pane)
363 {
364 struct hud_graph *gr;
365 float *line_verts = hud->whitelines.vertices + hud->whitelines.num_vertices*2;
366 unsigned i, num = 0;
367 char str[32];
368 const unsigned last_line = pane->last_line;
369
370 /* draw background */
371 hud_draw_background_quad(hud,
372 pane->x1, pane->y1,
373 pane->x2, pane->y2);
374
375 /* draw numbers on the right-hand side */
376 for (i = 0; i <= last_line; i++) {
377 unsigned x = pane->x2 + 2;
378 unsigned y = pane->inner_y1 +
379 pane->inner_height * (last_line - i) / last_line -
380 hud->font.glyph_height / 2;
381
382 number_to_human_readable(pane->max_value * i / last_line,
383 pane->type, str);
384 hud_draw_string(hud, x, y, "%s", str);
385 }
386
387 /* draw info below the pane */
388 i = 0;
389 LIST_FOR_EACH_ENTRY(gr, &pane->graph_list, head) {
390 unsigned x = pane->x1 + 2;
391 unsigned y = pane->y2 + 2 + i*hud->font.glyph_height;
392
393 number_to_human_readable(gr->current_value, pane->type, str);
394 hud_draw_string(hud, x, y, " %s: %s", gr->name, str);
395 i++;
396 }
397
398 /* draw border */
399 assert(hud->whitelines.num_vertices + num/2 + 8 <= hud->whitelines.max_num_vertices);
400 line_verts[num++] = (float) pane->x1;
401 line_verts[num++] = (float) pane->y1;
402 line_verts[num++] = (float) pane->x2;
403 line_verts[num++] = (float) pane->y1;
404
405 line_verts[num++] = (float) pane->x2;
406 line_verts[num++] = (float) pane->y1;
407 line_verts[num++] = (float) pane->x2;
408 line_verts[num++] = (float) pane->y2;
409
410 line_verts[num++] = (float) pane->x1;
411 line_verts[num++] = (float) pane->y2;
412 line_verts[num++] = (float) pane->x2;
413 line_verts[num++] = (float) pane->y2;
414
415 line_verts[num++] = (float) pane->x1;
416 line_verts[num++] = (float) pane->y1;
417 line_verts[num++] = (float) pane->x1;
418 line_verts[num++] = (float) pane->y2;
419
420 /* draw horizontal lines inside the graph */
421 for (i = 0; i <= last_line; i++) {
422 float y = round((pane->max_value * i / (double)last_line) *
423 pane->yscale + pane->inner_y2);
424
425 assert(hud->whitelines.num_vertices + num/2 + 2 <= hud->whitelines.max_num_vertices);
426 line_verts[num++] = pane->x1;
427 line_verts[num++] = y;
428 line_verts[num++] = pane->x2;
429 line_verts[num++] = y;
430 }
431
432 hud->whitelines.num_vertices += num/2;
433 }
434
435 static void
436 hud_pane_draw_colored_objects(struct hud_context *hud,
437 const struct hud_pane *pane)
438 {
439 struct hud_graph *gr;
440 unsigned i;
441
442 /* draw colored quads below the pane */
443 i = 0;
444 LIST_FOR_EACH_ENTRY(gr, &pane->graph_list, head) {
445 unsigned x = pane->x1 + 2;
446 unsigned y = pane->y2 + 2 + i*hud->font.glyph_height;
447
448 hud_draw_colored_quad(hud, PIPE_PRIM_QUADS, x + 1, y + 1, x + 12, y + 13,
449 gr->color[0], gr->color[1], gr->color[2], 1);
450 i++;
451 }
452
453 /* draw the line strips */
454 LIST_FOR_EACH_ENTRY(gr, &pane->graph_list, head) {
455 hud_draw_graph_line_strip(hud, gr, pane->inner_x1, pane->inner_y2, pane->yscale);
456 }
457 }
458
459 static void
460 hud_alloc_vertices(struct hud_context *hud, struct vertex_queue *v,
461 unsigned num_vertices, unsigned stride)
462 {
463 v->num_vertices = 0;
464 v->max_num_vertices = num_vertices;
465 v->vbuf.stride = stride;
466 u_upload_alloc(hud->uploader, 0, v->vbuf.stride * v->max_num_vertices,
467 16, &v->vbuf.buffer_offset, &v->vbuf.buffer,
468 (void**)&v->vertices);
469 }
470
471 /**
472 * Draw the HUD to the texture \p tex.
473 * The texture is usually the back buffer being displayed.
474 */
475 void
476 hud_draw(struct hud_context *hud, struct pipe_resource *tex)
477 {
478 struct cso_context *cso = hud->cso;
479 struct pipe_context *pipe = hud->pipe;
480 struct pipe_framebuffer_state fb;
481 struct pipe_surface surf_templ, *surf;
482 struct pipe_viewport_state viewport;
483 const struct pipe_sampler_state *sampler_states[] =
484 { &hud->font_sampler_state };
485 struct hud_pane *pane;
486 struct hud_graph *gr;
487
488 if (!huds_visible)
489 return;
490
491 hud->fb_width = tex->width0;
492 hud->fb_height = tex->height0;
493 hud->constants.two_div_fb_width = 2.0f / hud->fb_width;
494 hud->constants.two_div_fb_height = 2.0f / hud->fb_height;
495
496 cso_save_state(cso, (CSO_BIT_FRAMEBUFFER |
497 CSO_BIT_SAMPLE_MASK |
498 CSO_BIT_MIN_SAMPLES |
499 CSO_BIT_BLEND |
500 CSO_BIT_DEPTH_STENCIL_ALPHA |
501 CSO_BIT_FRAGMENT_SHADER |
502 CSO_BIT_FRAGMENT_SAMPLER_VIEWS |
503 CSO_BIT_FRAGMENT_SAMPLERS |
504 CSO_BIT_RASTERIZER |
505 CSO_BIT_VIEWPORT |
506 CSO_BIT_STREAM_OUTPUTS |
507 CSO_BIT_GEOMETRY_SHADER |
508 CSO_BIT_TESSCTRL_SHADER |
509 CSO_BIT_TESSEVAL_SHADER |
510 CSO_BIT_VERTEX_SHADER |
511 CSO_BIT_VERTEX_ELEMENTS |
512 CSO_BIT_AUX_VERTEX_BUFFER_SLOT |
513 CSO_BIT_PAUSE_QUERIES |
514 CSO_BIT_RENDER_CONDITION));
515 cso_save_constant_buffer_slot0(cso, PIPE_SHADER_VERTEX);
516
517 /* set states */
518 memset(&surf_templ, 0, sizeof(surf_templ));
519 surf_templ.format = tex->format;
520
521 /* Without this, AA lines look thinner if they are between 2 pixels
522 * because the alpha is 0.5 on both pixels. (it's ugly)
523 *
524 * sRGB makes the width of all AA lines look the same.
525 */
526 if (hud->has_srgb) {
527 enum pipe_format srgb_format = util_format_srgb(tex->format);
528
529 if (srgb_format != PIPE_FORMAT_NONE)
530 surf_templ.format = srgb_format;
531 }
532 surf = pipe->create_surface(pipe, tex, &surf_templ);
533
534 memset(&fb, 0, sizeof(fb));
535 fb.nr_cbufs = 1;
536 fb.cbufs[0] = surf;
537 fb.zsbuf = NULL;
538 fb.width = hud->fb_width;
539 fb.height = hud->fb_height;
540
541 viewport.scale[0] = 0.5f * hud->fb_width;
542 viewport.scale[1] = 0.5f * hud->fb_height;
543 viewport.scale[2] = 1.0f;
544 viewport.translate[0] = 0.5f * hud->fb_width;
545 viewport.translate[1] = 0.5f * hud->fb_height;
546 viewport.translate[2] = 0.0f;
547
548 cso_set_framebuffer(cso, &fb);
549 cso_set_sample_mask(cso, ~0);
550 cso_set_min_samples(cso, 1);
551 cso_set_depth_stencil_alpha(cso, &hud->dsa);
552 cso_set_rasterizer(cso, &hud->rasterizer);
553 cso_set_viewport(cso, &viewport);
554 cso_set_stream_outputs(cso, 0, NULL, NULL);
555 cso_set_tessctrl_shader_handle(cso, NULL);
556 cso_set_tesseval_shader_handle(cso, NULL);
557 cso_set_geometry_shader_handle(cso, NULL);
558 cso_set_vertex_shader_handle(cso, hud->vs);
559 cso_set_vertex_elements(cso, 2, hud->velems);
560 cso_set_render_condition(cso, NULL, FALSE, 0);
561 cso_set_sampler_views(cso, PIPE_SHADER_FRAGMENT, 1,
562 &hud->font_sampler_view);
563 cso_set_samplers(cso, PIPE_SHADER_FRAGMENT, 1, sampler_states);
564 cso_set_constant_buffer(cso, PIPE_SHADER_VERTEX, 0, &hud->constbuf);
565
566 /* prepare vertex buffers */
567 hud_alloc_vertices(hud, &hud->bg, 4 * 256, 2 * sizeof(float));
568 hud_alloc_vertices(hud, &hud->whitelines, 4 * 256, 2 * sizeof(float));
569 hud_alloc_vertices(hud, &hud->text, 4 * 1024, 4 * sizeof(float));
570
571 /* prepare all graphs */
572 hud_batch_query_update(hud->batch_query);
573
574 LIST_FOR_EACH_ENTRY(pane, &hud->pane_list, head) {
575 LIST_FOR_EACH_ENTRY(gr, &pane->graph_list, head) {
576 gr->query_new_value(gr);
577 }
578
579 hud_pane_accumulate_vertices(hud, pane);
580 }
581
582 /* unmap the uploader's vertex buffer before drawing */
583 u_upload_unmap(hud->uploader);
584
585 /* draw accumulated vertices for background quads */
586 cso_set_blend(cso, &hud->alpha_blend);
587 cso_set_fragment_shader_handle(hud->cso, hud->fs_color);
588
589 if (hud->bg.num_vertices) {
590 hud->constants.color[0] = 0;
591 hud->constants.color[1] = 0;
592 hud->constants.color[2] = 0;
593 hud->constants.color[3] = 0.666f;
594 hud->constants.translate[0] = 0;
595 hud->constants.translate[1] = 0;
596 hud->constants.scale[0] = 1;
597 hud->constants.scale[1] = 1;
598
599 cso_set_constant_buffer(cso, PIPE_SHADER_VERTEX, 0, &hud->constbuf);
600 cso_set_vertex_buffers(cso, cso_get_aux_vertex_buffer_slot(cso), 1,
601 &hud->bg.vbuf);
602 cso_draw_arrays(cso, PIPE_PRIM_QUADS, 0, hud->bg.num_vertices);
603 }
604 pipe_resource_reference(&hud->bg.vbuf.buffer, NULL);
605
606 /* draw accumulated vertices for white lines */
607 cso_set_blend(cso, &hud->no_blend);
608
609 hud->constants.color[0] = 1;
610 hud->constants.color[1] = 1;
611 hud->constants.color[2] = 1;
612 hud->constants.color[3] = 1;
613 hud->constants.translate[0] = 0;
614 hud->constants.translate[1] = 0;
615 hud->constants.scale[0] = 1;
616 hud->constants.scale[1] = 1;
617 cso_set_constant_buffer(cso, PIPE_SHADER_VERTEX, 0, &hud->constbuf);
618
619 if (hud->whitelines.num_vertices) {
620 cso_set_vertex_buffers(cso, cso_get_aux_vertex_buffer_slot(cso), 1,
621 &hud->whitelines.vbuf);
622 cso_set_fragment_shader_handle(hud->cso, hud->fs_color);
623 cso_draw_arrays(cso, PIPE_PRIM_LINES, 0, hud->whitelines.num_vertices);
624 }
625 pipe_resource_reference(&hud->whitelines.vbuf.buffer, NULL);
626
627 /* draw accumulated vertices for text */
628 cso_set_blend(cso, &hud->alpha_blend);
629 if (hud->text.num_vertices) {
630 cso_set_vertex_buffers(cso, cso_get_aux_vertex_buffer_slot(cso), 1,
631 &hud->text.vbuf);
632 cso_set_fragment_shader_handle(hud->cso, hud->fs_text);
633 cso_draw_arrays(cso, PIPE_PRIM_QUADS, 0, hud->text.num_vertices);
634 }
635 pipe_resource_reference(&hud->text.vbuf.buffer, NULL);
636
637 /* draw the rest */
638 cso_set_rasterizer(cso, &hud->rasterizer_aa_lines);
639 LIST_FOR_EACH_ENTRY(pane, &hud->pane_list, head) {
640 if (pane)
641 hud_pane_draw_colored_objects(hud, pane);
642 }
643
644 cso_restore_state(cso);
645 cso_restore_constant_buffer_slot0(cso, PIPE_SHADER_VERTEX);
646
647 pipe_surface_reference(&surf, NULL);
648 }
649
650 static void
651 fixup_bytes(enum pipe_driver_query_type type, int position, uint64_t *exp10)
652 {
653 if (type == PIPE_DRIVER_QUERY_TYPE_BYTES && position % 3 == 0)
654 *exp10 = (*exp10 / 1000) * 1024;
655 }
656
657 /**
658 * Set the maximum value for the Y axis of the graph.
659 * This scales the graph accordingly.
660 */
661 void
662 hud_pane_set_max_value(struct hud_pane *pane, uint64_t value)
663 {
664 double leftmost_digit;
665 uint64_t exp10;
666 int i;
667
668 /* The following code determines the max_value in the graph as well as
669 * how many describing lines are drawn. The max_value is rounded up,
670 * so that all drawn numbers are rounded for readability.
671 * We want to print multiples of a simple number instead of multiples of
672 * hard-to-read numbers like 1.753.
673 */
674
675 /* Find the left-most digit. */
676 exp10 = 1;
677 for (i = 0; value > 9 * exp10; i++) {
678 exp10 *= 10;
679 fixup_bytes(pane->type, i + 1, &exp10);
680 }
681
682 leftmost_digit = DIV_ROUND_UP(value, exp10);
683
684 /* Round 9 to 10. */
685 if (leftmost_digit == 9) {
686 leftmost_digit = 1;
687 exp10 *= 10;
688 fixup_bytes(pane->type, i + 1, &exp10);
689 }
690
691 switch ((unsigned)leftmost_digit) {
692 case 1:
693 pane->last_line = 5; /* lines in +1/5 increments */
694 break;
695 case 2:
696 pane->last_line = 8; /* lines in +1/4 increments. */
697 break;
698 case 3:
699 case 4:
700 pane->last_line = leftmost_digit * 2; /* lines in +1/2 increments */
701 break;
702 case 5:
703 case 6:
704 case 7:
705 case 8:
706 pane->last_line = leftmost_digit; /* lines in +1 increments */
707 break;
708 default:
709 assert(0);
710 }
711
712 /* Truncate {3,4} to {2.5, 3.5} if possible. */
713 for (i = 3; i <= 4; i++) {
714 if (leftmost_digit == i && value <= (i - 0.5) * exp10) {
715 leftmost_digit = i - 0.5;
716 pane->last_line = leftmost_digit * 2; /* lines in +1/2 increments. */
717 }
718 }
719
720 /* Truncate 2 to a multiple of 0.2 in (1, 1.6] if possible. */
721 if (leftmost_digit == 2) {
722 for (i = 1; i <= 3; i++) {
723 if (value <= (1 + i*0.2) * exp10) {
724 leftmost_digit = 1 + i*0.2;
725 pane->last_line = 5 + i; /* lines in +1/5 increments. */
726 break;
727 }
728 }
729 }
730
731 pane->max_value = leftmost_digit * exp10;
732 pane->yscale = -(int)pane->inner_height / (float)pane->max_value;
733 }
734
735 static void
736 hud_pane_update_dyn_ceiling(struct hud_graph *gr, struct hud_pane *pane)
737 {
738 unsigned i;
739 float tmp = 0.0f;
740
741 if (pane->dyn_ceil_last_ran != gr->index) {
742 LIST_FOR_EACH_ENTRY(gr, &pane->graph_list, head) {
743 for (i = 0; i < gr->num_vertices; ++i) {
744 tmp = gr->vertices[i * 2 + 1] > tmp ?
745 gr->vertices[i * 2 + 1] : tmp;
746 }
747 }
748
749 /* Avoid setting it lower than the initial starting height. */
750 tmp = tmp > pane->initial_max_value ? tmp : pane->initial_max_value;
751 hud_pane_set_max_value(pane, tmp);
752 }
753
754 /*
755 * Mark this adjustment run so we could avoid repeating a full update
756 * again needlessly in case the pane has more than one graph.
757 */
758 pane->dyn_ceil_last_ran = gr->index;
759 }
760
761 static struct hud_pane *
762 hud_pane_create(unsigned x1, unsigned y1, unsigned x2, unsigned y2,
763 unsigned period, uint64_t max_value, uint64_t ceiling,
764 boolean dyn_ceiling)
765 {
766 struct hud_pane *pane = CALLOC_STRUCT(hud_pane);
767
768 if (!pane)
769 return NULL;
770
771 pane->x1 = x1;
772 pane->y1 = y1;
773 pane->x2 = x2;
774 pane->y2 = y2;
775 pane->inner_x1 = x1 + 1;
776 pane->inner_x2 = x2 - 1;
777 pane->inner_y1 = y1 + 1;
778 pane->inner_y2 = y2 - 1;
779 pane->inner_width = pane->inner_x2 - pane->inner_x1;
780 pane->inner_height = pane->inner_y2 - pane->inner_y1;
781 pane->period = period;
782 pane->max_num_vertices = (x2 - x1 + 2) / 2;
783 pane->ceiling = ceiling;
784 pane->dyn_ceiling = dyn_ceiling;
785 pane->dyn_ceil_last_ran = 0;
786 pane->initial_max_value = max_value;
787 hud_pane_set_max_value(pane, max_value);
788 LIST_INITHEAD(&pane->graph_list);
789 return pane;
790 }
791
792 /* replace '-' with a space */
793 static void
794 strip_hyphens(char *s)
795 {
796 while (*s) {
797 if (*s == '-')
798 *s = ' ';
799 s++;
800 }
801 }
802
803 /**
804 * Add a graph to an existing pane.
805 * One pane can contain multiple graphs over each other.
806 */
807 void
808 hud_pane_add_graph(struct hud_pane *pane, struct hud_graph *gr)
809 {
810 static const float colors[][3] = {
811 {0, 1, 0},
812 {1, 0, 0},
813 {0, 1, 1},
814 {1, 0, 1},
815 {1, 1, 0},
816 {0.5, 0.5, 1},
817 {0.5, 0.5, 0.5},
818 };
819 char *name = gr->name;
820
821 /* replace '-' with a space */
822 while (*name) {
823 if (*name == '-')
824 *name = ' ';
825 name++;
826 }
827
828 assert(pane->num_graphs < ARRAY_SIZE(colors));
829 gr->vertices = MALLOC(pane->max_num_vertices * sizeof(float) * 2);
830 gr->color[0] = colors[pane->num_graphs][0];
831 gr->color[1] = colors[pane->num_graphs][1];
832 gr->color[2] = colors[pane->num_graphs][2];
833 gr->pane = pane;
834 LIST_ADDTAIL(&gr->head, &pane->graph_list);
835 pane->num_graphs++;
836 }
837
838 void
839 hud_graph_add_value(struct hud_graph *gr, uint64_t value)
840 {
841 gr->current_value = value;
842 value = value > gr->pane->ceiling ? gr->pane->ceiling : value;
843
844 if (gr->fd)
845 fprintf(gr->fd, "%" PRIu64 "\n", value);
846
847 if (gr->index == gr->pane->max_num_vertices) {
848 gr->vertices[0] = 0;
849 gr->vertices[1] = gr->vertices[(gr->index-1)*2+1];
850 gr->index = 1;
851 }
852 gr->vertices[(gr->index)*2+0] = (float) (gr->index * 2);
853 gr->vertices[(gr->index)*2+1] = (float) value;
854 gr->index++;
855
856 if (gr->num_vertices < gr->pane->max_num_vertices) {
857 gr->num_vertices++;
858 }
859
860 if (gr->pane->dyn_ceiling == true) {
861 hud_pane_update_dyn_ceiling(gr, gr->pane);
862 }
863 if (value > gr->pane->max_value) {
864 hud_pane_set_max_value(gr->pane, value);
865 }
866 }
867
868 static void
869 hud_graph_destroy(struct hud_graph *graph)
870 {
871 FREE(graph->vertices);
872 if (graph->free_query_data)
873 graph->free_query_data(graph->query_data);
874 if (graph->fd)
875 fclose(graph->fd);
876 FREE(graph);
877 }
878
879 void
880 hud_graph_set_dump_file(struct hud_graph *gr)
881 {
882 #ifndef PIPE_OS_WINDOWS
883 const char *hud_dump_dir = getenv("GALLIUM_HUD_DUMP_DIR");
884 char *dump_file;
885
886 if (hud_dump_dir && access(hud_dump_dir, W_OK) == 0) {
887 dump_file = malloc(strlen(hud_dump_dir) + sizeof("/") + sizeof(gr->name));
888 if (dump_file) {
889 strcpy(dump_file, hud_dump_dir);
890 strcat(dump_file, "/");
891 strcat(dump_file, gr->name);
892 gr->fd = fopen(dump_file, "w+");
893 free(dump_file);
894 }
895 }
896 #endif
897 }
898
899 /**
900 * Read a string from the environment variable.
901 * The separators "+", ",", ":", and ";" terminate the string.
902 * Return the number of read characters.
903 */
904 static int
905 parse_string(const char *s, char *out)
906 {
907 int i;
908
909 for (i = 0; *s && *s != '+' && *s != ',' && *s != ':' && *s != ';' && *s != '=';
910 s++, out++, i++)
911 *out = *s;
912
913 *out = 0;
914
915 if (*s && !i) {
916 fprintf(stderr, "gallium_hud: syntax error: unexpected '%c' (%i) while "
917 "parsing a string\n", *s, *s);
918 fflush(stderr);
919 }
920
921 return i;
922 }
923
924 static char *
925 read_pane_settings(char *str, unsigned * const x, unsigned * const y,
926 unsigned * const width, unsigned * const height,
927 uint64_t * const ceiling, boolean * const dyn_ceiling)
928 {
929 char *ret = str;
930 unsigned tmp;
931
932 while (*str == '.') {
933 ++str;
934 switch (*str) {
935 case 'x':
936 ++str;
937 *x = strtoul(str, &ret, 10);
938 str = ret;
939 break;
940
941 case 'y':
942 ++str;
943 *y = strtoul(str, &ret, 10);
944 str = ret;
945 break;
946
947 case 'w':
948 ++str;
949 tmp = strtoul(str, &ret, 10);
950 *width = tmp > 80 ? tmp : 80; /* 80 is chosen arbitrarily */
951 str = ret;
952 break;
953
954 /*
955 * Prevent setting height to less than 50. If the height is set to less,
956 * the text of the Y axis labels on the graph will start overlapping.
957 */
958 case 'h':
959 ++str;
960 tmp = strtoul(str, &ret, 10);
961 *height = tmp > 50 ? tmp : 50;
962 str = ret;
963 break;
964
965 case 'c':
966 ++str;
967 tmp = strtoul(str, &ret, 10);
968 *ceiling = tmp > 10 ? tmp : 10;
969 str = ret;
970 break;
971
972 case 'd':
973 ++str;
974 ret = str;
975 *dyn_ceiling = true;
976 break;
977
978 default:
979 fprintf(stderr, "gallium_hud: syntax error: unexpected '%c'\n", *str);
980 fflush(stderr);
981 }
982
983 }
984
985 return ret;
986 }
987
988 static boolean
989 has_occlusion_query(struct pipe_screen *screen)
990 {
991 return screen->get_param(screen, PIPE_CAP_OCCLUSION_QUERY) != 0;
992 }
993
994 static boolean
995 has_streamout(struct pipe_screen *screen)
996 {
997 return screen->get_param(screen, PIPE_CAP_MAX_STREAM_OUTPUT_BUFFERS) != 0;
998 }
999
1000 static boolean
1001 has_pipeline_stats_query(struct pipe_screen *screen)
1002 {
1003 return screen->get_param(screen, PIPE_CAP_QUERY_PIPELINE_STATISTICS) != 0;
1004 }
1005
1006 static void
1007 hud_parse_env_var(struct hud_context *hud, const char *env)
1008 {
1009 unsigned num, i;
1010 char name_a[256], s[256];
1011 char *name;
1012 struct hud_pane *pane = NULL;
1013 unsigned x = 10, y = 10;
1014 unsigned width = 251, height = 100;
1015 unsigned period = 500 * 1000; /* default period (1/2 second) */
1016 uint64_t ceiling = UINT64_MAX;
1017 unsigned column_width = 251;
1018 boolean dyn_ceiling = false;
1019 const char *period_env;
1020
1021 /*
1022 * The GALLIUM_HUD_PERIOD env var sets the graph update rate.
1023 * The env var is in seconds (a float).
1024 * Zero means update after every frame.
1025 */
1026 period_env = getenv("GALLIUM_HUD_PERIOD");
1027 if (period_env) {
1028 float p = (float) atof(period_env);
1029 if (p >= 0.0f) {
1030 period = (unsigned) (p * 1000 * 1000);
1031 }
1032 }
1033
1034 while ((num = parse_string(env, name_a)) != 0) {
1035 env += num;
1036
1037 /* check for explicit location, size and etc. settings */
1038 name = read_pane_settings(name_a, &x, &y, &width, &height, &ceiling,
1039 &dyn_ceiling);
1040
1041 /*
1042 * Keep track of overall column width to avoid pane overlapping in case
1043 * later we create a new column while the bottom pane in the current
1044 * column is less wide than the rest of the panes in it.
1045 */
1046 column_width = width > column_width ? width : column_width;
1047
1048 if (!pane) {
1049 pane = hud_pane_create(x, y, x + width, y + height, period, 10,
1050 ceiling, dyn_ceiling);
1051 if (!pane)
1052 return;
1053 }
1054
1055 /* Add a graph. */
1056 #if HAVE_GALLIUM_EXTRA_HUD || HAVE_LIBSENSORS
1057 char arg_name[64];
1058 #endif
1059 /* IF YOU CHANGE THIS, UPDATE print_help! */
1060 if (strcmp(name, "fps") == 0) {
1061 hud_fps_graph_install(pane);
1062 }
1063 else if (strcmp(name, "cpu") == 0) {
1064 hud_cpu_graph_install(pane, ALL_CPUS);
1065 }
1066 else if (sscanf(name, "cpu%u%s", &i, s) == 1) {
1067 hud_cpu_graph_install(pane, i);
1068 }
1069 #if HAVE_GALLIUM_EXTRA_HUD
1070 else if (sscanf(name, "nic-rx-%s", arg_name) == 1) {
1071 hud_nic_graph_install(pane, arg_name, NIC_DIRECTION_RX);
1072 }
1073 else if (sscanf(name, "nic-tx-%s", arg_name) == 1) {
1074 hud_nic_graph_install(pane, arg_name, NIC_DIRECTION_TX);
1075 }
1076 else if (sscanf(name, "nic-rssi-%s", arg_name) == 1) {
1077 hud_nic_graph_install(pane, arg_name, NIC_RSSI_DBM);
1078 pane->type = PIPE_DRIVER_QUERY_TYPE_DBM;
1079 }
1080 else if (sscanf(name, "diskstat-rd-%s", arg_name) == 1) {
1081 hud_diskstat_graph_install(pane, arg_name, DISKSTAT_RD);
1082 pane->type = PIPE_DRIVER_QUERY_TYPE_BYTES;
1083 }
1084 else if (sscanf(name, "diskstat-wr-%s", arg_name) == 1) {
1085 hud_diskstat_graph_install(pane, arg_name, DISKSTAT_WR);
1086 pane->type = PIPE_DRIVER_QUERY_TYPE_BYTES;
1087 }
1088 else if (sscanf(name, "cpufreq-min-cpu%u", &i) == 1) {
1089 hud_cpufreq_graph_install(pane, i, CPUFREQ_MINIMUM);
1090 pane->type = PIPE_DRIVER_QUERY_TYPE_HZ;
1091 }
1092 else if (sscanf(name, "cpufreq-cur-cpu%u", &i) == 1) {
1093 hud_cpufreq_graph_install(pane, i, CPUFREQ_CURRENT);
1094 pane->type = PIPE_DRIVER_QUERY_TYPE_HZ;
1095 }
1096 else if (sscanf(name, "cpufreq-max-cpu%u", &i) == 1) {
1097 hud_cpufreq_graph_install(pane, i, CPUFREQ_MAXIMUM);
1098 pane->type = PIPE_DRIVER_QUERY_TYPE_HZ;
1099 }
1100 #endif
1101 #if HAVE_LIBSENSORS
1102 else if (sscanf(name, "sensors_temp_cu-%s", arg_name) == 1) {
1103 hud_sensors_temp_graph_install(pane, arg_name,
1104 SENSORS_TEMP_CURRENT);
1105 pane->type = PIPE_DRIVER_QUERY_TYPE_TEMPERATURE;
1106 }
1107 else if (sscanf(name, "sensors_temp_cr-%s", arg_name) == 1) {
1108 hud_sensors_temp_graph_install(pane, arg_name,
1109 SENSORS_TEMP_CRITICAL);
1110 pane->type = PIPE_DRIVER_QUERY_TYPE_TEMPERATURE;
1111 }
1112 else if (sscanf(name, "sensors_volt_cu-%s", arg_name) == 1) {
1113 hud_sensors_temp_graph_install(pane, arg_name,
1114 SENSORS_VOLTAGE_CURRENT);
1115 pane->type = PIPE_DRIVER_QUERY_TYPE_VOLTS;
1116 }
1117 else if (sscanf(name, "sensors_curr_cu-%s", arg_name) == 1) {
1118 hud_sensors_temp_graph_install(pane, arg_name,
1119 SENSORS_CURRENT_CURRENT);
1120 pane->type = PIPE_DRIVER_QUERY_TYPE_AMPS;
1121 }
1122 else if (sscanf(name, "sensors_pow_cu-%s", arg_name) == 1) {
1123 hud_sensors_temp_graph_install(pane, arg_name,
1124 SENSORS_POWER_CURRENT);
1125 pane->type = PIPE_DRIVER_QUERY_TYPE_WATTS;
1126 }
1127 #endif
1128 else if (strcmp(name, "samples-passed") == 0 &&
1129 has_occlusion_query(hud->pipe->screen)) {
1130 hud_pipe_query_install(&hud->batch_query, pane, hud->pipe,
1131 "samples-passed",
1132 PIPE_QUERY_OCCLUSION_COUNTER, 0, 0,
1133 PIPE_DRIVER_QUERY_TYPE_UINT64,
1134 PIPE_DRIVER_QUERY_RESULT_TYPE_AVERAGE,
1135 0);
1136 }
1137 else if (strcmp(name, "primitives-generated") == 0 &&
1138 has_streamout(hud->pipe->screen)) {
1139 hud_pipe_query_install(&hud->batch_query, pane, hud->pipe,
1140 "primitives-generated",
1141 PIPE_QUERY_PRIMITIVES_GENERATED, 0, 0,
1142 PIPE_DRIVER_QUERY_TYPE_UINT64,
1143 PIPE_DRIVER_QUERY_RESULT_TYPE_AVERAGE,
1144 0);
1145 }
1146 else {
1147 boolean processed = FALSE;
1148
1149 /* pipeline statistics queries */
1150 if (has_pipeline_stats_query(hud->pipe->screen)) {
1151 static const char *pipeline_statistics_names[] =
1152 {
1153 "ia-vertices",
1154 "ia-primitives",
1155 "vs-invocations",
1156 "gs-invocations",
1157 "gs-primitives",
1158 "clipper-invocations",
1159 "clipper-primitives-generated",
1160 "ps-invocations",
1161 "hs-invocations",
1162 "ds-invocations",
1163 "cs-invocations"
1164 };
1165 for (i = 0; i < ARRAY_SIZE(pipeline_statistics_names); ++i)
1166 if (strcmp(name, pipeline_statistics_names[i]) == 0)
1167 break;
1168 if (i < ARRAY_SIZE(pipeline_statistics_names)) {
1169 hud_pipe_query_install(&hud->batch_query, pane, hud->pipe, name,
1170 PIPE_QUERY_PIPELINE_STATISTICS, i,
1171 0, PIPE_DRIVER_QUERY_TYPE_UINT64,
1172 PIPE_DRIVER_QUERY_RESULT_TYPE_AVERAGE,
1173 0);
1174 processed = TRUE;
1175 }
1176 }
1177
1178 /* driver queries */
1179 if (!processed) {
1180 if (!hud_driver_query_install(&hud->batch_query, pane, hud->pipe,
1181 name)) {
1182 fprintf(stderr, "gallium_hud: unknown driver query '%s'\n", name);
1183 fflush(stderr);
1184 }
1185 }
1186 }
1187
1188 if (*env == ':') {
1189 env++;
1190
1191 if (!pane) {
1192 fprintf(stderr, "gallium_hud: syntax error: unexpected ':', "
1193 "expected a name\n");
1194 fflush(stderr);
1195 break;
1196 }
1197
1198 num = parse_string(env, s);
1199 env += num;
1200
1201 if (num && sscanf(s, "%u", &i) == 1) {
1202 hud_pane_set_max_value(pane, i);
1203 pane->initial_max_value = i;
1204 }
1205 else {
1206 fprintf(stderr, "gallium_hud: syntax error: unexpected '%c' (%i) "
1207 "after ':'\n", *env, *env);
1208 fflush(stderr);
1209 }
1210 }
1211
1212 if (*env == '=') {
1213 env++;
1214
1215 if (!pane) {
1216 fprintf(stderr, "gallium_hud: syntax error: unexpected '=', "
1217 "expected a name\n");
1218 fflush(stderr);
1219 break;
1220 }
1221
1222 num = parse_string(env, s);
1223 env += num;
1224
1225 strip_hyphens(s);
1226 if (!LIST_IS_EMPTY(&pane->graph_list)) {
1227 strcpy(LIST_ENTRY(struct hud_graph,
1228 pane->graph_list.prev, head)->name, s);
1229 }
1230 }
1231
1232 if (*env == 0)
1233 break;
1234
1235 /* parse a separator */
1236 switch (*env) {
1237 case '+':
1238 env++;
1239 break;
1240
1241 case ',':
1242 env++;
1243 if (!pane)
1244 break;
1245
1246 y += height + hud->font.glyph_height * (pane->num_graphs + 2);
1247 height = 100;
1248
1249 if (pane && pane->num_graphs) {
1250 LIST_ADDTAIL(&pane->head, &hud->pane_list);
1251 pane = NULL;
1252 }
1253 break;
1254
1255 case ';':
1256 env++;
1257 y = 10;
1258 x += column_width + hud->font.glyph_width * 9;
1259 height = 100;
1260
1261 if (pane && pane->num_graphs) {
1262 LIST_ADDTAIL(&pane->head, &hud->pane_list);
1263 pane = NULL;
1264 }
1265
1266 /* Starting a new column; reset column width. */
1267 column_width = 251;
1268 break;
1269
1270 default:
1271 fprintf(stderr, "gallium_hud: syntax error: unexpected '%c'\n", *env);
1272 fflush(stderr);
1273 }
1274
1275 /* Reset to defaults for the next pane in case these were modified. */
1276 width = 251;
1277 ceiling = UINT64_MAX;
1278 dyn_ceiling = false;
1279
1280 }
1281
1282 if (pane) {
1283 if (pane->num_graphs) {
1284 LIST_ADDTAIL(&pane->head, &hud->pane_list);
1285 }
1286 else {
1287 FREE(pane);
1288 }
1289 }
1290 }
1291
1292 static void
1293 print_help(struct pipe_screen *screen)
1294 {
1295 int i, num_queries, num_cpus = hud_get_num_cpus();
1296
1297 puts("Syntax: GALLIUM_HUD=name1[+name2][...][:value1][,nameI...][;nameJ...]");
1298 puts("");
1299 puts(" Names are identifiers of data sources which will be drawn as graphs");
1300 puts(" in panes. Multiple graphs can be drawn in the same pane.");
1301 puts(" There can be multiple panes placed in rows and columns.");
1302 puts("");
1303 puts(" '+' separates names which will share a pane.");
1304 puts(" ':[value]' specifies the initial maximum value of the Y axis");
1305 puts(" for the given pane.");
1306 puts(" ',' creates a new pane below the last one.");
1307 puts(" ';' creates a new pane at the top of the next column.");
1308 puts(" '=' followed by a string, changes the name of the last data source");
1309 puts(" to that string");
1310 puts("");
1311 puts(" Example: GALLIUM_HUD=\"cpu,fps;primitives-generated\"");
1312 puts("");
1313 puts(" Additionally, by prepending '.[identifier][value]' modifiers to");
1314 puts(" a name, it is possible to explicitly set the location and size");
1315 puts(" of a pane, along with limiting overall maximum value of the");
1316 puts(" Y axis and activating dynamic readjustment of the Y axis.");
1317 puts(" Several modifiers may be applied to the same pane simultaneously.");
1318 puts("");
1319 puts(" 'x[value]' sets the location of the pane on the x axis relative");
1320 puts(" to the upper-left corner of the viewport, in pixels.");
1321 puts(" 'y[value]' sets the location of the pane on the y axis relative");
1322 puts(" to the upper-left corner of the viewport, in pixels.");
1323 puts(" 'w[value]' sets width of the graph pixels.");
1324 puts(" 'h[value]' sets height of the graph in pixels.");
1325 puts(" 'c[value]' sets the ceiling of the value of the Y axis.");
1326 puts(" If the graph needs to draw values higher than");
1327 puts(" the ceiling allows, the value is clamped.");
1328 puts(" 'd' activates dynamic Y axis readjustment to set the value of");
1329 puts(" the Y axis to match the highest value still visible in the graph.");
1330 puts("");
1331 puts(" If 'c' and 'd' modifiers are used simultaneously, both are in effect:");
1332 puts(" the Y axis does not go above the restriction imposed by 'c' while");
1333 puts(" still adjusting the value of the Y axis down when appropriate.");
1334 puts("");
1335 puts(" Example: GALLIUM_HUD=\".w256.h64.x1600.y520.d.c1000fps+cpu,.datom-count\"");
1336 puts("");
1337 puts(" Available names:");
1338 puts(" fps");
1339 puts(" cpu");
1340
1341 for (i = 0; i < num_cpus; i++)
1342 printf(" cpu%i\n", i);
1343
1344 if (has_occlusion_query(screen))
1345 puts(" samples-passed");
1346 if (has_streamout(screen))
1347 puts(" primitives-generated");
1348
1349 if (has_pipeline_stats_query(screen)) {
1350 puts(" ia-vertices");
1351 puts(" ia-primitives");
1352 puts(" vs-invocations");
1353 puts(" gs-invocations");
1354 puts(" gs-primitives");
1355 puts(" clipper-invocations");
1356 puts(" clipper-primitives-generated");
1357 puts(" ps-invocations");
1358 puts(" hs-invocations");
1359 puts(" ds-invocations");
1360 puts(" cs-invocations");
1361 }
1362
1363 #if HAVE_GALLIUM_EXTRA_HUD
1364 hud_get_num_disks(1);
1365 hud_get_num_nics(1);
1366 hud_get_num_cpufreq(1);
1367 #endif
1368 #if HAVE_LIBSENSORS
1369 hud_get_num_sensors(1);
1370 #endif
1371
1372 if (screen->get_driver_query_info){
1373 boolean skipping = false;
1374 struct pipe_driver_query_info info;
1375 num_queries = screen->get_driver_query_info(screen, 0, NULL);
1376
1377 for (i = 0; i < num_queries; i++){
1378 screen->get_driver_query_info(screen, i, &info);
1379 if (info.flags & PIPE_DRIVER_QUERY_FLAG_DONT_LIST) {
1380 if (!skipping)
1381 puts(" ...");
1382 skipping = true;
1383 } else {
1384 printf(" %s\n", info.name);
1385 skipping = false;
1386 }
1387 }
1388 }
1389
1390 puts("");
1391 fflush(stdout);
1392 }
1393
1394 struct hud_context *
1395 hud_create(struct pipe_context *pipe, struct cso_context *cso)
1396 {
1397 struct pipe_screen *screen = pipe->screen;
1398 struct hud_context *hud;
1399 struct pipe_sampler_view view_templ;
1400 unsigned i;
1401 const char *env = debug_get_option("GALLIUM_HUD", NULL);
1402 #ifdef PIPE_OS_UNIX
1403 unsigned signo = debug_get_num_option("GALLIUM_HUD_TOGGLE_SIGNAL", 0);
1404 static boolean sig_handled = FALSE;
1405 struct sigaction action = {};
1406 #endif
1407 huds_visible = debug_get_bool_option("GALLIUM_HUD_VISIBLE", TRUE);
1408
1409 if (!env || !*env)
1410 return NULL;
1411
1412 if (strcmp(env, "help") == 0) {
1413 print_help(pipe->screen);
1414 return NULL;
1415 }
1416
1417 hud = CALLOC_STRUCT(hud_context);
1418 if (!hud)
1419 return NULL;
1420
1421 hud->pipe = pipe;
1422 hud->cso = cso;
1423 hud->uploader = u_upload_create(pipe, 256 * 1024,
1424 PIPE_BIND_VERTEX_BUFFER, PIPE_USAGE_STREAM);
1425
1426 /* font */
1427 if (!util_font_create(pipe, UTIL_FONT_FIXED_8X13, &hud->font)) {
1428 u_upload_destroy(hud->uploader);
1429 FREE(hud);
1430 return NULL;
1431 }
1432
1433 hud->has_srgb = screen->is_format_supported(screen,
1434 PIPE_FORMAT_B8G8R8A8_SRGB,
1435 PIPE_TEXTURE_2D, 0,
1436 PIPE_BIND_RENDER_TARGET) != 0;
1437
1438 /* blend state */
1439 hud->no_blend.rt[0].colormask = PIPE_MASK_RGBA;
1440
1441 hud->alpha_blend.rt[0].colormask = PIPE_MASK_RGBA;
1442 hud->alpha_blend.rt[0].blend_enable = 1;
1443 hud->alpha_blend.rt[0].rgb_func = PIPE_BLEND_ADD;
1444 hud->alpha_blend.rt[0].rgb_src_factor = PIPE_BLENDFACTOR_SRC_ALPHA;
1445 hud->alpha_blend.rt[0].rgb_dst_factor = PIPE_BLENDFACTOR_INV_SRC_ALPHA;
1446 hud->alpha_blend.rt[0].alpha_func = PIPE_BLEND_ADD;
1447 hud->alpha_blend.rt[0].alpha_src_factor = PIPE_BLENDFACTOR_ZERO;
1448 hud->alpha_blend.rt[0].alpha_dst_factor = PIPE_BLENDFACTOR_ONE;
1449
1450 /* fragment shader */
1451 hud->fs_color =
1452 util_make_fragment_passthrough_shader(pipe,
1453 TGSI_SEMANTIC_COLOR,
1454 TGSI_INTERPOLATE_CONSTANT,
1455 TRUE);
1456
1457 {
1458 /* Read a texture and do .xxxx swizzling. */
1459 static const char *fragment_shader_text = {
1460 "FRAG\n"
1461 "DCL IN[0], GENERIC[0], LINEAR\n"
1462 "DCL SAMP[0]\n"
1463 "DCL SVIEW[0], RECT, FLOAT\n"
1464 "DCL OUT[0], COLOR[0]\n"
1465 "DCL TEMP[0]\n"
1466
1467 "TEX TEMP[0], IN[0], SAMP[0], RECT\n"
1468 "MOV OUT[0], TEMP[0].xxxx\n"
1469 "END\n"
1470 };
1471
1472 struct tgsi_token tokens[1000];
1473 struct pipe_shader_state state;
1474
1475 if (!tgsi_text_translate(fragment_shader_text, tokens, ARRAY_SIZE(tokens))) {
1476 assert(0);
1477 pipe_resource_reference(&hud->font.texture, NULL);
1478 u_upload_destroy(hud->uploader);
1479 FREE(hud);
1480 return NULL;
1481 }
1482 pipe_shader_state_from_tgsi(&state, tokens);
1483 hud->fs_text = pipe->create_fs_state(pipe, &state);
1484 }
1485
1486 /* rasterizer */
1487 hud->rasterizer.half_pixel_center = 1;
1488 hud->rasterizer.bottom_edge_rule = 1;
1489 hud->rasterizer.depth_clip = 1;
1490 hud->rasterizer.line_width = 1;
1491 hud->rasterizer.line_last_pixel = 1;
1492
1493 hud->rasterizer_aa_lines = hud->rasterizer;
1494 hud->rasterizer_aa_lines.line_smooth = 1;
1495
1496 /* vertex shader */
1497 {
1498 static const char *vertex_shader_text = {
1499 "VERT\n"
1500 "DCL IN[0..1]\n"
1501 "DCL OUT[0], POSITION\n"
1502 "DCL OUT[1], COLOR[0]\n" /* color */
1503 "DCL OUT[2], GENERIC[0]\n" /* texcoord */
1504 /* [0] = color,
1505 * [1] = (2/fb_width, 2/fb_height, xoffset, yoffset)
1506 * [2] = (xscale, yscale, 0, 0) */
1507 "DCL CONST[0..2]\n"
1508 "DCL TEMP[0]\n"
1509 "IMM[0] FLT32 { -1, 0, 0, 1 }\n"
1510
1511 /* v = in * (xscale, yscale) + (xoffset, yoffset) */
1512 "MAD TEMP[0].xy, IN[0], CONST[2].xyyy, CONST[1].zwww\n"
1513 /* pos = v * (2 / fb_width, 2 / fb_height) - (1, 1) */
1514 "MAD OUT[0].xy, TEMP[0], CONST[1].xyyy, IMM[0].xxxx\n"
1515 "MOV OUT[0].zw, IMM[0]\n"
1516
1517 "MOV OUT[1], CONST[0]\n"
1518 "MOV OUT[2], IN[1]\n"
1519 "END\n"
1520 };
1521
1522 struct tgsi_token tokens[1000];
1523 struct pipe_shader_state state;
1524 if (!tgsi_text_translate(vertex_shader_text, tokens, ARRAY_SIZE(tokens))) {
1525 assert(0);
1526 pipe_resource_reference(&hud->font.texture, NULL);
1527 u_upload_destroy(hud->uploader);
1528 FREE(hud);
1529 return NULL;
1530 }
1531 pipe_shader_state_from_tgsi(&state, tokens);
1532 hud->vs = pipe->create_vs_state(pipe, &state);
1533 }
1534
1535 /* vertex elements */
1536 for (i = 0; i < 2; i++) {
1537 hud->velems[i].src_offset = i * 2 * sizeof(float);
1538 hud->velems[i].src_format = PIPE_FORMAT_R32G32_FLOAT;
1539 hud->velems[i].vertex_buffer_index = cso_get_aux_vertex_buffer_slot(cso);
1540 }
1541
1542 /* sampler view */
1543 u_sampler_view_default_template(
1544 &view_templ, hud->font.texture, hud->font.texture->format);
1545 hud->font_sampler_view = pipe->create_sampler_view(pipe, hud->font.texture,
1546 &view_templ);
1547
1548 /* sampler state (for font drawing) */
1549 hud->font_sampler_state.wrap_s = PIPE_TEX_WRAP_CLAMP_TO_EDGE;
1550 hud->font_sampler_state.wrap_t = PIPE_TEX_WRAP_CLAMP_TO_EDGE;
1551 hud->font_sampler_state.wrap_r = PIPE_TEX_WRAP_CLAMP_TO_EDGE;
1552 hud->font_sampler_state.normalized_coords = 0;
1553
1554 /* constants */
1555 hud->constbuf.buffer_size = sizeof(hud->constants);
1556 hud->constbuf.user_buffer = &hud->constants;
1557
1558 LIST_INITHEAD(&hud->pane_list);
1559
1560 /* setup sig handler once for all hud contexts */
1561 #ifdef PIPE_OS_UNIX
1562 if (!sig_handled && signo != 0) {
1563 action.sa_sigaction = &signal_visible_handler;
1564 action.sa_flags = SA_SIGINFO;
1565
1566 if (signo >= NSIG)
1567 fprintf(stderr, "gallium_hud: invalid signal %u\n", signo);
1568 else if (sigaction(signo, &action, NULL) < 0)
1569 fprintf(stderr, "gallium_hud: unable to set handler for signal %u\n", signo);
1570 fflush(stderr);
1571
1572 sig_handled = TRUE;
1573 }
1574 #endif
1575
1576 hud_parse_env_var(hud, env);
1577 return hud;
1578 }
1579
1580 void
1581 hud_destroy(struct hud_context *hud)
1582 {
1583 struct pipe_context *pipe = hud->pipe;
1584 struct hud_pane *pane, *pane_tmp;
1585 struct hud_graph *graph, *graph_tmp;
1586
1587 LIST_FOR_EACH_ENTRY_SAFE(pane, pane_tmp, &hud->pane_list, head) {
1588 LIST_FOR_EACH_ENTRY_SAFE(graph, graph_tmp, &pane->graph_list, head) {
1589 LIST_DEL(&graph->head);
1590 hud_graph_destroy(graph);
1591 }
1592 LIST_DEL(&pane->head);
1593 FREE(pane);
1594 }
1595
1596 hud_batch_query_cleanup(&hud->batch_query);
1597 pipe->delete_fs_state(pipe, hud->fs_color);
1598 pipe->delete_fs_state(pipe, hud->fs_text);
1599 pipe->delete_vs_state(pipe, hud->vs);
1600 pipe_sampler_view_reference(&hud->font_sampler_view, NULL);
1601 pipe_resource_reference(&hud->font.texture, NULL);
1602 u_upload_destroy(hud->uploader);
1603 FREE(hud);
1604 }