nv50_xv.c revision 479f40c1
1/*
2 * Copyright 2008 Ben Skeggs
3 *
4 * Permission is hereby granted, free of charge, to any person obtaining a
5 * copy of this software and associated documentation files (the "Software"),
6 * to deal in the Software without restriction, including without limitation
7 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
8 * and/or sell copies of the Software, and to permit persons to whom the
9 * Software is furnished to do so, subject to the following conditions:
10 *
11 * The above copyright notice and this permission notice shall be included in
12 * all copies or substantial portions of the Software.
13 *
14 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
15 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
16 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.  IN NO EVENT SHALL
17 * THE AUTHORS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY,
18 * WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF
19 * OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
20 * SOFTWARE.
21 */
22
23#ifdef HAVE_CONFIG_H
24#include "config.h"
25#endif
26
27#include "xorg-config.h"
28#include "xf86xv.h"
29#include <X11/extensions/Xv.h>
30#include "exa.h"
31#include "damage.h"
32#include "dixstruct.h"
33#include "fourcc.h"
34
35#include "nv_include.h"
36#include "nv_dma.h"
37#include "nv50_accel.h"
38
39extern Atom xvSyncToVBlank, xvSetDefaults;
40extern Atom xvBrightness, xvContrast, xvHue, xvSaturation;
41extern Atom xvITURBT709;
42
43static Bool
44nv50_xv_check_image_put(PixmapPtr ppix)
45{
46	switch (ppix->drawable.bitsPerPixel) {
47	case 32:
48	case 24:
49	case 16:
50	case 15:
51		break;
52	default:
53		return FALSE;
54	}
55
56	if (!nv50_style_tiled_pixmap(ppix))
57		return FALSE;
58
59	return TRUE;
60}
61
62int
63nv50_xv_image_put(ScrnInfoPtr pScrn,
64		  struct nouveau_bo *src, int packed_y, int uv,
65		  int id, int src_pitch, BoxPtr dstBox,
66		  int x1, int y1, int x2, int y2,
67		  uint16_t width, uint16_t height,
68		  uint16_t src_w, uint16_t src_h,
69		  uint16_t drw_w, uint16_t drw_h,
70		  RegionPtr clipBoxes, PixmapPtr ppix,
71		  NVPortPrivPtr pPriv)
72{
73	NVPtr pNv = NVPTR(pScrn);
74	struct nouveau_bo *dst = nouveau_pixmap_bo(ppix);
75	struct nouveau_pushbuf *push = pNv->pushbuf;
76	struct nouveau_pushbuf_refn refs[] = {
77		{ pNv->scratch, NOUVEAU_BO_VRAM | NOUVEAU_BO_RDWR },
78		{ src, NOUVEAU_BO_VRAM | NOUVEAU_BO_RD },
79		{ dst, NOUVEAU_BO_VRAM | NOUVEAU_BO_WR },
80	};
81	uint32_t mode = 0xd0005000 | (src->config.nv50.tile_mode << 18);
82	float X1, X2, Y1, Y2;
83	BoxPtr pbox;
84	int nbox;
85
86	if (!nv50_xv_check_image_put(ppix))
87		return BadMatch;
88
89	if (!PUSH_SPACE(push, 256))
90		return BadImplementation;
91
92	BEGIN_NV04(push, NV50_3D(RT_ADDRESS_HIGH(0)), 5);
93	PUSH_DATA (push, dst->offset >> 32);
94	PUSH_DATA (push, dst->offset);
95	switch (ppix->drawable.bitsPerPixel) {
96	case 32: PUSH_DATA (push, NV50_SURFACE_FORMAT_BGRA8_UNORM); break;
97	case 24: PUSH_DATA (push, NV50_SURFACE_FORMAT_BGRX8_UNORM); break;
98	case 16: PUSH_DATA (push, NV50_SURFACE_FORMAT_B5G6R5_UNORM); break;
99	case 15: PUSH_DATA (push, NV50_SURFACE_FORMAT_BGR5_X1_UNORM); break;
100	}
101	PUSH_DATA (push, dst->config.nv50.tile_mode);
102	PUSH_DATA (push, 0);
103	BEGIN_NV04(push, NV50_3D(RT_HORIZ(0)), 2);
104	PUSH_DATA (push, ppix->drawable.width);
105	PUSH_DATA (push, ppix->drawable.height);
106	BEGIN_NV04(push, NV50_3D(RT_ARRAY_MODE), 1);
107	PUSH_DATA (push, 1);
108
109	BEGIN_NV04(push, NV50_3D(BLEND_ENABLE(0)), 1);
110	PUSH_DATA (push, 0);
111
112	PUSH_DATAu(push, pNv->scratch, TIC_OFFSET, 16);
113	if (id == FOURCC_YV12 || id == FOURCC_I420) {
114	PUSH_DATA (push, NV50TIC_0_0_MAPA_C0 | NV50TIC_0_0_TYPEA_UNORM |
115			 NV50TIC_0_0_MAPB_ZERO | NV50TIC_0_0_TYPEB_UNORM |
116			 NV50TIC_0_0_MAPG_ZERO | NV50TIC_0_0_TYPEG_UNORM |
117			 NV50TIC_0_0_MAPR_ZERO | NV50TIC_0_0_TYPER_UNORM |
118			 NV50TIC_0_0_FMT_8);
119	PUSH_DATA (push, (src->offset + packed_y));
120	PUSH_DATA (push, (src->offset + packed_y) >> 32 | mode);
121	PUSH_DATA (push, 0x00300000);
122	PUSH_DATA (push, width);
123	PUSH_DATA (push, (1 << NV50TIC_0_5_DEPTH_SHIFT) | height);
124	PUSH_DATA (push, 0x03000000);
125	PUSH_DATA (push, 0x00000000);
126	PUSH_DATA (push, NV50TIC_0_0_MAPA_C1 | NV50TIC_0_0_TYPEA_UNORM |
127			 NV50TIC_0_0_MAPB_C0 | NV50TIC_0_0_TYPEB_UNORM |
128			 NV50TIC_0_0_MAPG_ZERO | NV50TIC_0_0_TYPEG_UNORM |
129			 NV50TIC_0_0_MAPR_ZERO | NV50TIC_0_0_TYPER_UNORM |
130			 NV50TIC_0_0_FMT_8_8);
131	PUSH_DATA (push, (src->offset + uv));
132	PUSH_DATA (push, (src->offset + uv) >> 32 | mode);
133	PUSH_DATA (push, 0x00300000);
134	PUSH_DATA (push, width >> 1);
135	PUSH_DATA (push, (1 << NV50TIC_0_5_DEPTH_SHIFT) | (height >> 1));
136	PUSH_DATA (push, 0x03000000);
137	PUSH_DATA (push, 0x00000000);
138	} else {
139	if (id == FOURCC_UYVY) {
140	PUSH_DATA (push, NV50TIC_0_0_MAPA_C1 | NV50TIC_0_0_TYPEA_UNORM |
141			 NV50TIC_0_0_MAPB_ZERO | NV50TIC_0_0_TYPEB_UNORM |
142			 NV50TIC_0_0_MAPG_ZERO | NV50TIC_0_0_TYPEG_UNORM |
143			 NV50TIC_0_0_MAPR_ZERO | NV50TIC_0_0_TYPER_UNORM |
144			 NV50TIC_0_0_FMT_8_8);
145	} else {
146	PUSH_DATA (push, NV50TIC_0_0_MAPA_C0 | NV50TIC_0_0_TYPEA_UNORM |
147			 NV50TIC_0_0_MAPB_ZERO | NV50TIC_0_0_TYPEB_UNORM |
148			 NV50TIC_0_0_MAPG_ZERO | NV50TIC_0_0_TYPEG_UNORM |
149			 NV50TIC_0_0_MAPR_ZERO | NV50TIC_0_0_TYPER_UNORM |
150			 NV50TIC_0_0_FMT_8_8);
151	}
152	PUSH_DATA (push, (src->offset + packed_y));
153	PUSH_DATA (push, (src->offset + packed_y) >> 32 | mode);
154	PUSH_DATA (push, 0x00300000);
155	PUSH_DATA (push, width);
156	PUSH_DATA (push, (1 << NV50TIC_0_5_DEPTH_SHIFT) | height);
157	PUSH_DATA (push, 0x03000000);
158	PUSH_DATA (push, 0x00000000);
159	if (id == FOURCC_UYVY) {
160	PUSH_DATA (push, NV50TIC_0_0_MAPA_C2 | NV50TIC_0_0_TYPEA_UNORM |
161			 NV50TIC_0_0_MAPB_C0 | NV50TIC_0_0_TYPEB_UNORM |
162			 NV50TIC_0_0_MAPG_ZERO | NV50TIC_0_0_TYPEG_UNORM |
163			 NV50TIC_0_0_MAPR_ZERO | NV50TIC_0_0_TYPER_UNORM |
164			 NV50TIC_0_0_FMT_8_8_8_8);
165	} else {
166	PUSH_DATA (push, NV50TIC_0_0_MAPA_C3 | NV50TIC_0_0_TYPEA_UNORM |
167			 NV50TIC_0_0_MAPB_C1 | NV50TIC_0_0_TYPEB_UNORM |
168			 NV50TIC_0_0_MAPG_ZERO | NV50TIC_0_0_TYPEG_UNORM |
169			 NV50TIC_0_0_MAPR_ZERO | NV50TIC_0_0_TYPER_UNORM |
170			 NV50TIC_0_0_FMT_8_8_8_8);
171	}
172	PUSH_DATA (push, (src->offset + packed_y));
173	PUSH_DATA (push, (src->offset + packed_y) >> 32 | mode);
174	PUSH_DATA (push, 0x00300000);
175	PUSH_DATA (push, (width >> 1));
176	PUSH_DATA (push, (1 << NV50TIC_0_5_DEPTH_SHIFT) | height);
177	PUSH_DATA (push, 0x03000000);
178	PUSH_DATA (push, 0x00000000);
179	}
180
181	PUSH_DATAu(push, pNv->scratch, TSC_OFFSET, 16);
182	PUSH_DATA (push, NV50TSC_1_0_WRAPS_CLAMP_TO_EDGE |
183			 NV50TSC_1_0_WRAPT_CLAMP_TO_EDGE |
184			 NV50TSC_1_0_WRAPR_CLAMP_TO_EDGE);
185	PUSH_DATA (push, NV50TSC_1_1_MAGF_LINEAR |
186			 NV50TSC_1_1_MINF_LINEAR |
187			 NV50TSC_1_1_MIPF_NONE);
188	PUSH_DATA (push, 0x00000000);
189	PUSH_DATA (push, 0x00000000);
190	PUSH_DATA (push, 0x00000000);
191	PUSH_DATA (push, 0x00000000);
192	PUSH_DATA (push, 0x00000000);
193	PUSH_DATA (push, 0x00000000);
194	PUSH_DATA (push, NV50TSC_1_0_WRAPS_CLAMP_TO_EDGE |
195			 NV50TSC_1_0_WRAPT_CLAMP_TO_EDGE |
196			 NV50TSC_1_0_WRAPR_CLAMP_TO_EDGE);
197	PUSH_DATA (push, NV50TSC_1_1_MAGF_LINEAR |
198			 NV50TSC_1_1_MINF_LINEAR |
199			 NV50TSC_1_1_MIPF_NONE);
200	PUSH_DATA (push, 0x00000000);
201	PUSH_DATA (push, 0x00000000);
202	PUSH_DATA (push, 0x00000000);
203	PUSH_DATA (push, 0x00000000);
204	PUSH_DATA (push, 0x00000000);
205	PUSH_DATA (push, 0x00000000);
206
207	BEGIN_NV04(push, NV50_3D(FP_START_ID), 1);
208	PUSH_DATA (push, PFP_NV12);
209
210	BEGIN_NV04(push, NV50_3D(TIC_FLUSH), 1);
211	PUSH_DATA (push, 0);
212
213	BEGIN_NV04(push, NV50_3D(BIND_TIC(2)), 1);
214	PUSH_DATA (push, 1);
215	BEGIN_NV04(push, NV50_3D(BIND_TIC(2)), 1);
216	PUSH_DATA (push, 0x203);
217
218	PUSH_DATAu(push, pNv->scratch, PVP_DATA, 11);
219	PUSH_DATAf(push, 1.0);
220	PUSH_DATAf(push, 0.0);
221	PUSH_DATAf(push, 0.0);
222	PUSH_DATAf(push, 0.0);
223	PUSH_DATAf(push, 1.0);
224	PUSH_DATAf(push, 0.0);
225	PUSH_DATAf(push, 0.0);
226	PUSH_DATAf(push, 0.0);
227	PUSH_DATAf(push, 1.0);
228	PUSH_DATAf(push, 1.0 / width);
229	PUSH_DATAf(push, 1.0 / height);
230
231	if (pPriv->SyncToVBlank)
232		NV50SyncToVBlank(ppix, dstBox);
233
234	/* These are fixed point values in the 16.16 format. */
235	X1 = (float)(x1>>16)+(float)(x1&0xFFFF)/(float)0x10000;
236	Y1 = (float)(y1>>16)+(float)(y1&0xFFFF)/(float)0x10000;
237	X2 = (float)(x2>>16)+(float)(x2&0xFFFF)/(float)0x10000;
238	Y2 = (float)(y2>>16)+(float)(y2&0xFFFF)/(float)0x10000;
239
240	pbox = REGION_RECTS(clipBoxes);
241	nbox = REGION_NUM_RECTS(clipBoxes);
242	while(nbox--) {
243		float tx1=X1+(float)(pbox->x1 - dstBox->x1)*(X2-X1)/(float)(drw_w);
244		float tx2=X1+(float)(pbox->x2 - dstBox->x1)*(src_w)/(float)(drw_w);
245		float ty1=Y1+(float)(pbox->y1 - dstBox->y1)*(Y2-Y1)/(float)(drw_h);
246		float ty2=Y1+(float)(pbox->y2 - dstBox->y1)*(src_h)/(float)(drw_h);
247		int sx1=pbox->x1;
248		int sx2=pbox->x2;
249		int sy1=pbox->y1;
250		int sy2=pbox->y2;
251
252		if (nouveau_pushbuf_space(push, 64, 0, 0) ||
253		    nouveau_pushbuf_refn (push, refs, 3))
254			return BadImplementation;
255
256		/* NV50_3D_SCISSOR_VERT_T_SHIFT is wrong, because it was deducted with
257		* origin lying at the bottom left. This will be changed to _MIN_ and _MAX_
258		* later, because it is origin dependent.
259		*/
260		BEGIN_NV04(push, NV50_3D(SCISSOR_HORIZ(0)), 2);
261		PUSH_DATA (push, sx2 << NV50_3D_SCISSOR_HORIZ_MAX__SHIFT | sx1);
262		PUSH_DATA (push, sy2 << NV50_3D_SCISSOR_VERT_MAX__SHIFT | sy1 );
263		BEGIN_NV04(push, NV50_3D(VERTEX_BEGIN_GL), 1);
264		PUSH_DATA (push, NV50_3D_VERTEX_BEGIN_GL_PRIMITIVE_TRIANGLES);
265		PUSH_VTX1s(push, tx1, ty1, sx1, sy1);
266		PUSH_VTX1s(push, tx2+(tx2-tx1), ty1, sx2+(sx2-sx1), sy1);
267		PUSH_VTX1s(push, tx1, ty2+(ty2-ty1), sx1, sy2+(sy2-sy1));
268		BEGIN_NV04(push, NV50_3D(VERTEX_END_GL), 1);
269		PUSH_DATA (push, 0);
270
271		pbox++;
272	}
273
274	PUSH_KICK(push);
275	return Success;
276}
277
278void
279nv50_xv_video_stop(ScrnInfoPtr pScrn, pointer data, Bool exit)
280{
281}
282
283/* Reference color space transform data */
284struct REF_TRANSFORM {
285    float   RefLuma;
286    float   RefRCb;
287    float   RefRCr;
288    float   RefGCb;
289    float   RefGCr;
290    float   RefBCb;
291    float   RefBCr;
292} trans[] = {
293	{ 1.1643, 0.0, 1.5960, -0.3918, -0.8129, 2.0172, 0.0 }, /* BT.601 */
294	{ 1.1643, 0.0, 1.7927, -0.2132, -0.5329, 2.1124, 0.0 }  /* BT.709 */
295};
296
297#define RTFSaturation(a)   (1.0 + ((a)*1.0)/1000.0)
298#define RTFBrightness(a)   (((a)*1.0)/2000.0)
299#define RTFContrast(a)   (1.0 + ((a)*1.0)/1000.0)
300#define RTFHue(a)   (((a)*3.1416)/1000.0)
301
302void
303nv50_xv_csc_update(ScrnInfoPtr pScrn, NVPortPrivPtr pPriv)
304{
305	NVPtr pNv = NVPTR(pScrn);
306	struct nouveau_pushbuf *push = pNv->pushbuf;
307	const float Loff = -0.0627;
308	const float Coff = -0.502;
309	float yco, off[3], uco[3], vco[3];
310	float uvcosf, uvsinf;
311	float bright, cont;
312	int ref = pPriv->iturbt_709;
313
314	cont = RTFContrast(pPriv->contrast);
315	bright = RTFBrightness(pPriv->brightness);
316	uvcosf = RTFSaturation(pPriv->saturation) * cos(RTFHue(pPriv->hue));
317	uvsinf = RTFSaturation(pPriv->saturation) * sin(RTFHue(pPriv->hue));
318
319	yco = trans[ref].RefLuma * cont;
320	uco[0] = -trans[ref].RefRCr * uvsinf;
321	uco[1] = trans[ref].RefGCb * uvcosf - trans[ref].RefGCr * uvsinf;
322	uco[2] = trans[ref].RefBCb * uvcosf;
323	vco[0] = trans[ref].RefRCr * uvcosf;
324	vco[1] = trans[ref].RefGCb * uvsinf + trans[ref].RefGCr * uvcosf;
325	vco[2] = trans[ref].RefBCb * uvsinf;
326	off[0] = Loff * yco + Coff * (uco[0] + vco[0]) + bright;
327	off[1] = Loff * yco + Coff * (uco[1] + vco[1]) + bright;
328	off[2] = Loff * yco + Coff * (uco[2] + vco[2]) + bright;
329
330	if (pNv->Architecture >= NV_FERMI) {
331		nvc0_xv_csc_update(pNv, yco, off, uco, vco);
332		return;
333	}
334
335	if (nouveau_pushbuf_space(push, 64, 0, 0) ||
336	    nouveau_pushbuf_refn (push, &(struct nouveau_pushbuf_refn) {
337					pNv->scratch, NOUVEAU_BO_WR |
338					NOUVEAU_BO_VRAM }, 1))
339		return;
340
341	PUSH_DATAu(push, pNv->scratch, PFP_DATA, 10);
342	PUSH_DATAf(push, yco);
343	PUSH_DATAf(push, off[0]);
344	PUSH_DATAf(push, off[1]);
345	PUSH_DATAf(push, off[2]);
346	PUSH_DATAf(push, uco[0]);
347	PUSH_DATAf(push, uco[1]);
348	PUSH_DATAf(push, uco[2]);
349	PUSH_DATAf(push, vco[0]);
350	PUSH_DATAf(push, vco[1]);
351	PUSH_DATAf(push, vco[2]);
352}
353
354void
355nv50_xv_set_port_defaults(ScrnInfoPtr pScrn, NVPortPrivPtr pPriv)
356{
357	pPriv->videoStatus	= 0;
358	pPriv->grabbedByV4L	= FALSE;
359	pPriv->blitter		= FALSE;
360	pPriv->texture		= TRUE;
361	pPriv->doubleBuffer	= FALSE;
362	pPriv->SyncToVBlank	= TRUE;
363	pPriv->brightness	= 0;
364	pPriv->contrast		= 0;
365	pPriv->saturation	= 0;
366	pPriv->hue		= 0;
367	pPriv->iturbt_709	= 0;
368	pPriv->max_image_dim    = 8192;
369}
370
371int
372nv50_xv_port_attribute_set(ScrnInfoPtr pScrn, Atom attribute,
373			   INT32 value, pointer data)
374{
375	NVPortPrivPtr pPriv = (NVPortPrivPtr)data;
376
377	if (attribute == xvSyncToVBlank) {
378		if (value < 0 || value > 1)
379			return BadValue;
380		pPriv->SyncToVBlank = value;
381	} else
382	if (attribute == xvBrightness) {
383		if (value < -1000 || value > 1000)
384			return BadValue;
385		pPriv->brightness = value;
386	} else
387	if (attribute == xvContrast) {
388		if (value < -1000 || value > 1000)
389			return BadValue;
390		pPriv->contrast = value;
391	} else
392	if (attribute == xvSaturation) {
393		if (value < -1000 || value > 1000)
394			return BadValue;
395		pPriv->saturation = value;
396	} else
397	if (attribute == xvHue) {
398		if (value < -1000 || value > 1000)
399			return BadValue;
400		pPriv->hue = value;
401	} else
402	if (attribute == xvITURBT709) {
403		if (value < 0 || value > 1)
404			return BadValue;
405		pPriv->iturbt_709 = value;
406	} else
407	if (attribute == xvSetDefaults) {
408		nv50_xv_set_port_defaults(pScrn, pPriv);
409	} else
410		return BadMatch;
411
412	nv50_xv_csc_update(pScrn, pPriv);
413	return Success;
414}
415
416int
417nv50_xv_port_attribute_get(ScrnInfoPtr pScrn, Atom attribute,
418			   INT32 *value, pointer data)
419{
420	NVPortPrivPtr pPriv = (NVPortPrivPtr)data;
421
422	if (attribute == xvSyncToVBlank)
423		*value = (pPriv->SyncToVBlank) ? 1 : 0;
424	else
425	if (attribute == xvBrightness)
426		*value = pPriv->brightness;
427	else
428	if (attribute == xvContrast)
429		*value = pPriv->contrast;
430	else
431	if (attribute == xvSaturation)
432		*value = pPriv->saturation;
433	else
434	if (attribute == xvHue)
435		*value = pPriv->hue;
436	else
437	if (attribute == xvITURBT709)
438		*value = pPriv->iturbt_709;
439	else
440		return BadMatch;
441
442	return Success;
443}
444
445
446