xref: /openbmc/qemu/ui/spice-display.c (revision d901eff3)
1 /*
2  * Copyright (C) 2010 Red Hat, Inc.
3  *
4  * This program is free software; you can redistribute it and/or
5  * modify it under the terms of the GNU General Public License as
6  * published by the Free Software Foundation; either version 2 or
7  * (at your option) version 3 of the License.
8  *
9  * This program is distributed in the hope that it will be useful,
10  * but WITHOUT ANY WARRANTY; without even the implied warranty of
11  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
12  * GNU General Public License for more details.
13  *
14  * You should have received a copy of the GNU General Public License
15  * along with this program; if not, see <http://www.gnu.org/licenses/>.
16  */
17 
18 #include "qemu-common.h"
19 #include "qemu-spice.h"
20 #include "qemu-timer.h"
21 #include "qemu-queue.h"
22 #include "monitor.h"
23 #include "console.h"
24 #include "sysemu.h"
25 #include "trace.h"
26 
27 #include "spice-display.h"
28 
29 static int debug = 0;
30 
31 static void GCC_FMT_ATTR(2, 3) dprint(int level, const char *fmt, ...)
32 {
33     va_list args;
34 
35     if (level <= debug) {
36         va_start(args, fmt);
37         vfprintf(stderr, fmt, args);
38         va_end(args);
39     }
40 }
41 
42 int qemu_spice_rect_is_empty(const QXLRect* r)
43 {
44     return r->top == r->bottom || r->left == r->right;
45 }
46 
47 void qemu_spice_rect_union(QXLRect *dest, const QXLRect *r)
48 {
49     if (qemu_spice_rect_is_empty(r)) {
50         return;
51     }
52 
53     if (qemu_spice_rect_is_empty(dest)) {
54         *dest = *r;
55         return;
56     }
57 
58     dest->top = MIN(dest->top, r->top);
59     dest->left = MIN(dest->left, r->left);
60     dest->bottom = MAX(dest->bottom, r->bottom);
61     dest->right = MAX(dest->right, r->right);
62 }
63 
64 QXLCookie *qxl_cookie_new(int type, uint64_t io)
65 {
66     QXLCookie *cookie;
67 
68     cookie = g_malloc0(sizeof(*cookie));
69     cookie->type = type;
70     cookie->io = io;
71     return cookie;
72 }
73 
74 void qemu_spice_add_memslot(SimpleSpiceDisplay *ssd, QXLDevMemSlot *memslot,
75                             qxl_async_io async)
76 {
77     trace_qemu_spice_add_memslot(ssd->qxl.id, memslot->slot_id,
78                                 memslot->virt_start, memslot->virt_end,
79                                 async);
80 
81     if (async != QXL_SYNC) {
82         spice_qxl_add_memslot_async(&ssd->qxl, memslot,
83                 (uintptr_t)qxl_cookie_new(QXL_COOKIE_TYPE_IO,
84                                           QXL_IO_MEMSLOT_ADD_ASYNC));
85     } else {
86         ssd->worker->add_memslot(ssd->worker, memslot);
87     }
88 }
89 
90 void qemu_spice_del_memslot(SimpleSpiceDisplay *ssd, uint32_t gid, uint32_t sid)
91 {
92     trace_qemu_spice_del_memslot(ssd->qxl.id, gid, sid);
93     ssd->worker->del_memslot(ssd->worker, gid, sid);
94 }
95 
96 void qemu_spice_create_primary_surface(SimpleSpiceDisplay *ssd, uint32_t id,
97                                        QXLDevSurfaceCreate *surface,
98                                        qxl_async_io async)
99 {
100     trace_qemu_spice_create_primary_surface(ssd->qxl.id, id, surface, async);
101     if (async != QXL_SYNC) {
102         spice_qxl_create_primary_surface_async(&ssd->qxl, id, surface,
103                 (uintptr_t)qxl_cookie_new(QXL_COOKIE_TYPE_IO,
104                                           QXL_IO_CREATE_PRIMARY_ASYNC));
105     } else {
106         ssd->worker->create_primary_surface(ssd->worker, id, surface);
107     }
108 }
109 
110 void qemu_spice_destroy_primary_surface(SimpleSpiceDisplay *ssd,
111                                         uint32_t id, qxl_async_io async)
112 {
113     trace_qemu_spice_destroy_primary_surface(ssd->qxl.id, id, async);
114     if (async != QXL_SYNC) {
115         spice_qxl_destroy_primary_surface_async(&ssd->qxl, id,
116                 (uintptr_t)qxl_cookie_new(QXL_COOKIE_TYPE_IO,
117                                           QXL_IO_DESTROY_PRIMARY_ASYNC));
118     } else {
119         ssd->worker->destroy_primary_surface(ssd->worker, id);
120     }
121 }
122 
123 void qemu_spice_wakeup(SimpleSpiceDisplay *ssd)
124 {
125     trace_qemu_spice_wakeup(ssd->qxl.id);
126     ssd->worker->wakeup(ssd->worker);
127 }
128 
129 void qemu_spice_start(SimpleSpiceDisplay *ssd)
130 {
131     trace_qemu_spice_start(ssd->qxl.id);
132     ssd->worker->start(ssd->worker);
133 }
134 
135 void qemu_spice_stop(SimpleSpiceDisplay *ssd)
136 {
137     trace_qemu_spice_stop(ssd->qxl.id);
138     ssd->worker->stop(ssd->worker);
139 }
140 
141 static SimpleSpiceUpdate *qemu_spice_create_update(SimpleSpiceDisplay *ssd)
142 {
143     SimpleSpiceUpdate *update;
144     QXLDrawable *drawable;
145     QXLImage *image;
146     QXLCommand *cmd;
147     uint8_t *src, *dst;
148     int by, bw, bh;
149     struct timespec time_space;
150 
151     if (qemu_spice_rect_is_empty(&ssd->dirty)) {
152         return NULL;
153     };
154 
155     trace_qemu_spice_create_update(
156            ssd->dirty.left, ssd->dirty.right,
157            ssd->dirty.top, ssd->dirty.bottom);
158 
159     update   = g_malloc0(sizeof(*update));
160     drawable = &update->drawable;
161     image    = &update->image;
162     cmd      = &update->ext.cmd;
163 
164     bw       = ssd->dirty.right - ssd->dirty.left;
165     bh       = ssd->dirty.bottom - ssd->dirty.top;
166     update->bitmap = g_malloc(bw * bh * 4);
167 
168     drawable->bbox            = ssd->dirty;
169     drawable->clip.type       = SPICE_CLIP_TYPE_NONE;
170     drawable->effect          = QXL_EFFECT_OPAQUE;
171     drawable->release_info.id = (uintptr_t)update;
172     drawable->type            = QXL_DRAW_COPY;
173     drawable->surfaces_dest[0] = -1;
174     drawable->surfaces_dest[1] = -1;
175     drawable->surfaces_dest[2] = -1;
176     clock_gettime(CLOCK_MONOTONIC, &time_space);
177     /* time in milliseconds from epoch. */
178     drawable->mm_time = time_space.tv_sec * 1000
179                       + time_space.tv_nsec / 1000 / 1000;
180 
181     drawable->u.copy.rop_descriptor  = SPICE_ROPD_OP_PUT;
182     drawable->u.copy.src_bitmap      = (uintptr_t)image;
183     drawable->u.copy.src_area.right  = bw;
184     drawable->u.copy.src_area.bottom = bh;
185 
186     QXL_SET_IMAGE_ID(image, QXL_IMAGE_GROUP_DEVICE, ssd->unique++);
187     image->descriptor.type   = SPICE_IMAGE_TYPE_BITMAP;
188     image->bitmap.flags      = QXL_BITMAP_DIRECT | QXL_BITMAP_TOP_DOWN;
189     image->bitmap.stride     = bw * 4;
190     image->descriptor.width  = image->bitmap.x = bw;
191     image->descriptor.height = image->bitmap.y = bh;
192     image->bitmap.data = (uintptr_t)(update->bitmap);
193     image->bitmap.palette = 0;
194     image->bitmap.format = SPICE_BITMAP_FMT_32BIT;
195 
196     if (ssd->conv == NULL) {
197         PixelFormat dst = qemu_default_pixelformat(32);
198         ssd->conv = qemu_pf_conv_get(&dst, &ssd->ds->surface->pf);
199         assert(ssd->conv);
200     }
201 
202     src = ds_get_data(ssd->ds) +
203         ssd->dirty.top * ds_get_linesize(ssd->ds) +
204         ssd->dirty.left * ds_get_bytes_per_pixel(ssd->ds);
205     dst = update->bitmap;
206     for (by = 0; by < bh; by++) {
207         qemu_pf_conv_run(ssd->conv, dst, src, bw);
208         src += ds_get_linesize(ssd->ds);
209         dst += image->bitmap.stride;
210     }
211 
212     cmd->type = QXL_CMD_DRAW;
213     cmd->data = (uintptr_t)drawable;
214 
215     memset(&ssd->dirty, 0, sizeof(ssd->dirty));
216     return update;
217 }
218 
219 /*
220  * Called from spice server thread context (via interface_release_ressource)
221  * We do *not* hold the global qemu mutex here, so extra care is needed
222  * when calling qemu functions.  QEMU interfaces used:
223  *    - g_free (underlying glibc free is re-entrant).
224  */
225 void qemu_spice_destroy_update(SimpleSpiceDisplay *sdpy, SimpleSpiceUpdate *update)
226 {
227     g_free(update->bitmap);
228     g_free(update);
229 }
230 
231 void qemu_spice_create_host_memslot(SimpleSpiceDisplay *ssd)
232 {
233     QXLDevMemSlot memslot;
234 
235     dprint(1, "%s:\n", __FUNCTION__);
236 
237     memset(&memslot, 0, sizeof(memslot));
238     memslot.slot_group_id = MEMSLOT_GROUP_HOST;
239     memslot.virt_end = ~0;
240     qemu_spice_add_memslot(ssd, &memslot, QXL_SYNC);
241 }
242 
243 void qemu_spice_create_host_primary(SimpleSpiceDisplay *ssd)
244 {
245     QXLDevSurfaceCreate surface;
246 
247     memset(&surface, 0, sizeof(surface));
248 
249     dprint(1, "%s: %dx%d\n", __FUNCTION__,
250            ds_get_width(ssd->ds), ds_get_height(ssd->ds));
251 
252     surface.format     = SPICE_SURFACE_FMT_32_xRGB;
253     surface.width      = ds_get_width(ssd->ds);
254     surface.height     = ds_get_height(ssd->ds);
255     surface.stride     = -surface.width * 4;
256     surface.mouse_mode = true;
257     surface.flags      = 0;
258     surface.type       = 0;
259     surface.mem        = (uintptr_t)ssd->buf;
260     surface.group_id   = MEMSLOT_GROUP_HOST;
261 
262     qemu_spice_create_primary_surface(ssd, 0, &surface, QXL_SYNC);
263 }
264 
265 void qemu_spice_destroy_host_primary(SimpleSpiceDisplay *ssd)
266 {
267     dprint(1, "%s:\n", __FUNCTION__);
268 
269     qemu_spice_destroy_primary_surface(ssd, 0, QXL_SYNC);
270 }
271 
272 void qemu_spice_vm_change_state_handler(void *opaque, int running,
273                                         RunState state)
274 {
275     SimpleSpiceDisplay *ssd = opaque;
276 
277     if (running) {
278         ssd->running = true;
279         qemu_spice_start(ssd);
280     } else {
281         qemu_spice_stop(ssd);
282         ssd->running = false;
283     }
284 }
285 
286 void qemu_spice_display_init_common(SimpleSpiceDisplay *ssd, DisplayState *ds)
287 {
288     ssd->ds = ds;
289     qemu_mutex_init(&ssd->lock);
290     ssd->mouse_x = -1;
291     ssd->mouse_y = -1;
292     ssd->bufsize = (16 * 1024 * 1024);
293     ssd->buf = g_malloc(ssd->bufsize);
294 }
295 
296 /* display listener callbacks */
297 
298 void qemu_spice_display_update(SimpleSpiceDisplay *ssd,
299                                int x, int y, int w, int h)
300 {
301     QXLRect update_area;
302 
303     dprint(2, "%s: x %d y %d w %d h %d\n", __FUNCTION__, x, y, w, h);
304     update_area.left = x,
305     update_area.right = x + w;
306     update_area.top = y;
307     update_area.bottom = y + h;
308 
309     if (qemu_spice_rect_is_empty(&ssd->dirty)) {
310         ssd->notify++;
311     }
312     qemu_spice_rect_union(&ssd->dirty, &update_area);
313 }
314 
315 void qemu_spice_display_resize(SimpleSpiceDisplay *ssd)
316 {
317     dprint(1, "%s:\n", __FUNCTION__);
318 
319     memset(&ssd->dirty, 0, sizeof(ssd->dirty));
320     qemu_pf_conv_put(ssd->conv);
321     ssd->conv = NULL;
322 
323     qemu_mutex_lock(&ssd->lock);
324     if (ssd->update != NULL) {
325         qemu_spice_destroy_update(ssd, ssd->update);
326         ssd->update = NULL;
327     }
328     qemu_mutex_unlock(&ssd->lock);
329     qemu_spice_destroy_host_primary(ssd);
330     qemu_spice_create_host_primary(ssd);
331 
332     memset(&ssd->dirty, 0, sizeof(ssd->dirty));
333     ssd->notify++;
334 }
335 
336 void qemu_spice_cursor_refresh_unlocked(SimpleSpiceDisplay *ssd)
337 {
338     if (ssd->cursor) {
339         ssd->ds->cursor_define(ssd->cursor);
340         cursor_put(ssd->cursor);
341         ssd->cursor = NULL;
342     }
343     if (ssd->mouse_x != -1 && ssd->mouse_y != -1) {
344         ssd->ds->mouse_set(ssd->mouse_x, ssd->mouse_y, 1);
345         ssd->mouse_x = -1;
346         ssd->mouse_y = -1;
347     }
348 }
349 
350 void qemu_spice_display_refresh(SimpleSpiceDisplay *ssd)
351 {
352     dprint(3, "%s:\n", __func__);
353     vga_hw_update();
354 
355     qemu_mutex_lock(&ssd->lock);
356     if (ssd->update == NULL) {
357         ssd->update = qemu_spice_create_update(ssd);
358         ssd->notify++;
359     }
360     qemu_spice_cursor_refresh_unlocked(ssd);
361     qemu_mutex_unlock(&ssd->lock);
362 
363     if (ssd->notify) {
364         ssd->notify = 0;
365         qemu_spice_wakeup(ssd);
366         dprint(2, "%s: notify\n", __FUNCTION__);
367     }
368 }
369 
370 /* spice display interface callbacks */
371 
372 static void interface_attach_worker(QXLInstance *sin, QXLWorker *qxl_worker)
373 {
374     SimpleSpiceDisplay *ssd = container_of(sin, SimpleSpiceDisplay, qxl);
375 
376     dprint(1, "%s:\n", __FUNCTION__);
377     ssd->worker = qxl_worker;
378 }
379 
380 static void interface_set_compression_level(QXLInstance *sin, int level)
381 {
382     dprint(1, "%s:\n", __FUNCTION__);
383     /* nothing to do */
384 }
385 
386 static void interface_set_mm_time(QXLInstance *sin, uint32_t mm_time)
387 {
388     dprint(3, "%s:\n", __FUNCTION__);
389     /* nothing to do */
390 }
391 
392 static void interface_get_init_info(QXLInstance *sin, QXLDevInitInfo *info)
393 {
394     SimpleSpiceDisplay *ssd = container_of(sin, SimpleSpiceDisplay, qxl);
395 
396     info->memslot_gen_bits = MEMSLOT_GENERATION_BITS;
397     info->memslot_id_bits  = MEMSLOT_SLOT_BITS;
398     info->num_memslots = NUM_MEMSLOTS;
399     info->num_memslots_groups = NUM_MEMSLOTS_GROUPS;
400     info->internal_groupslot_id = 0;
401     info->qxl_ram_size = ssd->bufsize;
402     info->n_surfaces = NUM_SURFACES;
403 }
404 
405 static int interface_get_command(QXLInstance *sin, struct QXLCommandExt *ext)
406 {
407     SimpleSpiceDisplay *ssd = container_of(sin, SimpleSpiceDisplay, qxl);
408     SimpleSpiceUpdate *update;
409     int ret = false;
410 
411     dprint(3, "%s:\n", __FUNCTION__);
412 
413     qemu_mutex_lock(&ssd->lock);
414     if (ssd->update != NULL) {
415         update = ssd->update;
416         ssd->update = NULL;
417         *ext = update->ext;
418         ret = true;
419     }
420     qemu_mutex_unlock(&ssd->lock);
421 
422     return ret;
423 }
424 
425 static int interface_req_cmd_notification(QXLInstance *sin)
426 {
427     dprint(1, "%s:\n", __FUNCTION__);
428     return 1;
429 }
430 
431 static void interface_release_resource(QXLInstance *sin,
432                                        struct QXLReleaseInfoExt ext)
433 {
434     SimpleSpiceDisplay *ssd = container_of(sin, SimpleSpiceDisplay, qxl);
435     uintptr_t id;
436 
437     dprint(2, "%s:\n", __FUNCTION__);
438     id = ext.info->id;
439     qemu_spice_destroy_update(ssd, (void*)id);
440 }
441 
442 static int interface_get_cursor_command(QXLInstance *sin, struct QXLCommandExt *ext)
443 {
444     dprint(3, "%s:\n", __FUNCTION__);
445     return false;
446 }
447 
448 static int interface_req_cursor_notification(QXLInstance *sin)
449 {
450     dprint(1, "%s:\n", __FUNCTION__);
451     return 1;
452 }
453 
454 static void interface_notify_update(QXLInstance *sin, uint32_t update_id)
455 {
456     fprintf(stderr, "%s: abort()\n", __FUNCTION__);
457     abort();
458 }
459 
460 static int interface_flush_resources(QXLInstance *sin)
461 {
462     fprintf(stderr, "%s: abort()\n", __FUNCTION__);
463     abort();
464     return 0;
465 }
466 
467 static const QXLInterface dpy_interface = {
468     .base.type               = SPICE_INTERFACE_QXL,
469     .base.description        = "qemu simple display",
470     .base.major_version      = SPICE_INTERFACE_QXL_MAJOR,
471     .base.minor_version      = SPICE_INTERFACE_QXL_MINOR,
472 
473     .attache_worker          = interface_attach_worker,
474     .set_compression_level   = interface_set_compression_level,
475     .set_mm_time             = interface_set_mm_time,
476     .get_init_info           = interface_get_init_info,
477 
478     /* the callbacks below are called from spice server thread context */
479     .get_command             = interface_get_command,
480     .req_cmd_notification    = interface_req_cmd_notification,
481     .release_resource        = interface_release_resource,
482     .get_cursor_command      = interface_get_cursor_command,
483     .req_cursor_notification = interface_req_cursor_notification,
484     .notify_update           = interface_notify_update,
485     .flush_resources         = interface_flush_resources,
486 };
487 
488 static SimpleSpiceDisplay sdpy;
489 
490 static void display_update(struct DisplayState *ds, int x, int y, int w, int h)
491 {
492     qemu_spice_display_update(&sdpy, x, y, w, h);
493 }
494 
495 static void display_resize(struct DisplayState *ds)
496 {
497     qemu_spice_display_resize(&sdpy);
498 }
499 
500 static void display_refresh(struct DisplayState *ds)
501 {
502     qemu_spice_display_refresh(&sdpy);
503 }
504 
505 static DisplayChangeListener display_listener = {
506     .dpy_update  = display_update,
507     .dpy_resize  = display_resize,
508     .dpy_refresh = display_refresh,
509 };
510 
511 void qemu_spice_display_init(DisplayState *ds)
512 {
513     assert(sdpy.ds == NULL);
514     qemu_spice_display_init_common(&sdpy, ds);
515     register_displaychangelistener(ds, &display_listener);
516 
517     sdpy.qxl.base.sif = &dpy_interface.base;
518     qemu_spice_add_interface(&sdpy.qxl.base);
519     assert(sdpy.worker);
520 
521     qemu_add_vm_change_state_handler(qemu_spice_vm_change_state_handler, &sdpy);
522     qemu_spice_create_host_memslot(&sdpy);
523     qemu_spice_create_host_primary(&sdpy);
524 }
525