add special case for flat shaded + separate specular triangles
[mesa.git] / src / mesa / drivers / dri / unichrome / via_tris.c
1 /*
2 * Copyright 1998-2003 VIA Technologies, Inc. All Rights Reserved.
3 * Copyright 2001-2003 S3 Graphics, Inc. All Rights Reserved.
4 *
5 * Permission is hereby granted, free of charge, to any person obtaining a
6 * copy of this software and associated documentation files (the "Software"),
7 * to deal in the Software without restriction, including without limitation
8 * the rights to use, copy, modify, merge, publish, distribute, sub license,
9 * and/or sell copies of the Software, and to permit persons to whom the
10 * Software is furnished to do so, subject to the following conditions:
11 *
12 * The above copyright notice and this permission notice (including the
13 * next paragraph) shall be included in all copies or substantial portions
14 * of the Software.
15 *
16 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
17 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
18 * FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT. IN NO EVENT SHALL
19 * VIA, S3 GRAPHICS, AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM, DAMAGES OR
20 * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
21 * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
22 * DEALINGS IN THE SOFTWARE.
23 */
24
25 #include <stdio.h>
26 #include <math.h>
27
28 #include "glheader.h"
29 #include "context.h"
30 #include "mtypes.h"
31 #include "macros.h"
32 #include "colormac.h"
33 #include "enums.h"
34
35 #include "swrast/swrast.h"
36 #include "swrast_setup/swrast_setup.h"
37 #include "tnl/t_context.h"
38 #include "tnl/t_pipeline.h"
39
40 #include "via_context.h"
41 #include "via_tris.h"
42 #include "via_state.h"
43 #include "via_span.h"
44 #include "via_ioctl.h"
45 #include "via_3d_reg.h"
46 #include "via_tex.h"
47
48 /***********************************************************************
49 * Emit primitives as inline vertices *
50 ***********************************************************************/
51 #define LINE_FALLBACK (0)
52 #define POINT_FALLBACK (0)
53 #define TRI_FALLBACK (0)
54 #define ANY_FALLBACK_FLAGS (POINT_FALLBACK|LINE_FALLBACK|TRI_FALLBACK)
55 #define ANY_RASTER_FLAGS (DD_TRI_LIGHT_TWOSIDE|DD_TRI_OFFSET|DD_TRI_UNFILLED)
56
57
58 #if 0
59 #define COPY_DWORDS(vb, vertsize, v) \
60 do { \
61 via_sse_memcpy(vb, v, vertsize * 4); \
62 vb += vertsize; \
63 } while (0)
64 #else
65 #if defined( USE_X86_ASM )
66 #define COPY_DWORDS(vb, vertsize, v) \
67 do { \
68 int j; \
69 int __tmp; \
70 __asm__ __volatile__("rep ; movsl" \
71 : "=%c" (j), "=D" (vb), "=S" (__tmp) \
72 : "0" (vertsize), \
73 "D" ((long)vb), \
74 "S" ((long)v)); \
75 } while (0)
76 #else
77 #define COPY_DWORDS(vb, vertsize, v) \
78 do { \
79 int j; \
80 for (j = 0; j < vertsize; j++) \
81 vb[j] = ((GLuint *)v)[j]; \
82 vb += vertsize; \
83 } while (0)
84 #endif
85 #endif
86
87 static void via_draw_triangle(struct via_context *vmesa,
88 viaVertexPtr v0,
89 viaVertexPtr v1,
90 viaVertexPtr v2)
91 {
92 GLuint vertsize = vmesa->vertexSize;
93 GLuint *vb = viaExtendPrimitive(vmesa, 3 * 4 * vertsize);
94
95 COPY_DWORDS(vb, vertsize, v0);
96 COPY_DWORDS(vb, vertsize, v1);
97 COPY_DWORDS(vb, vertsize, v2);
98 }
99
100
101 static void via_draw_quad(struct via_context *vmesa,
102 viaVertexPtr v0,
103 viaVertexPtr v1,
104 viaVertexPtr v2,
105 viaVertexPtr v3)
106 {
107 GLuint vertsize = vmesa->vertexSize;
108 GLuint *vb = viaExtendPrimitive(vmesa, 6 * 4 * vertsize);
109
110 COPY_DWORDS(vb, vertsize, v0);
111 COPY_DWORDS(vb, vertsize, v1);
112 COPY_DWORDS(vb, vertsize, v3);
113 COPY_DWORDS(vb, vertsize, v1);
114 COPY_DWORDS(vb, vertsize, v2);
115 COPY_DWORDS(vb, vertsize, v3);
116 }
117
118 static void via_draw_line(struct via_context *vmesa,
119 viaVertexPtr v0,
120 viaVertexPtr v1)
121 {
122 GLuint vertsize = vmesa->vertexSize;
123 GLuint *vb = viaExtendPrimitive(vmesa, 2 * 4 * vertsize);
124 COPY_DWORDS(vb, vertsize, v0);
125 COPY_DWORDS(vb, vertsize, v1);
126 }
127
128
129 static void via_draw_point(struct via_context *vmesa,
130 viaVertexPtr v0)
131 {
132 GLuint vertsize = vmesa->vertexSize;
133 GLuint *vb = viaExtendPrimitive(vmesa, 4 * vertsize);
134 COPY_DWORDS(vb, vertsize, v0);
135 }
136
137
138 /* Fallback drawing functions for the ptex hack.
139 */
140 #define PTEX_VERTEX( tmp, vertex_size, v) \
141 do { \
142 GLuint j; \
143 GLfloat rhw = 1.0 / v->f[vertex_size]; \
144 for ( j = 0 ; j < vertex_size ; j++ ) \
145 tmp.f[j] = v->f[j]; \
146 tmp.f[3] *= v->f[vertex_size]; \
147 tmp.f[vertex_size-2] *= rhw; \
148 tmp.f[vertex_size-1] *= rhw; \
149 } while (0)
150
151 static void via_ptex_tri (struct via_context *vmesa,
152 viaVertexPtr v0,
153 viaVertexPtr v1,
154 viaVertexPtr v2)
155 {
156 GLuint vertsize = vmesa->hwVertexSize;
157 GLuint *vb = viaExtendPrimitive(vmesa, 3*4*vertsize);
158 viaVertex tmp;
159
160 PTEX_VERTEX(tmp, vertsize, v0); COPY_DWORDS(vb, vertsize, &tmp);
161 PTEX_VERTEX(tmp, vertsize, v1); COPY_DWORDS(vb, vertsize, &tmp);
162 PTEX_VERTEX(tmp, vertsize, v2); COPY_DWORDS(vb, vertsize, &tmp);
163 }
164
165 static void via_ptex_line (struct via_context *vmesa,
166 viaVertexPtr v0,
167 viaVertexPtr v1)
168 {
169 GLuint vertsize = vmesa->hwVertexSize;
170 GLuint *vb = viaExtendPrimitive(vmesa, 2*4*vertsize);
171 viaVertex tmp;
172
173 PTEX_VERTEX(tmp, vertsize, v0); COPY_DWORDS(vb, vertsize, &tmp);
174 PTEX_VERTEX(tmp, vertsize, v1); COPY_DWORDS(vb, vertsize, &tmp);
175 }
176
177 static void via_ptex_point (struct via_context *vmesa,
178 viaVertexPtr v0)
179 {
180 GLuint vertsize = vmesa->hwVertexSize;
181 GLuint *vb = viaExtendPrimitive(vmesa, 1*4*vertsize);
182 viaVertex tmp;
183
184 PTEX_VERTEX(tmp, vertsize, v0); COPY_DWORDS(vb, vertsize, &tmp);
185 }
186
187
188
189
190
191 /***********************************************************************
192 * Macros for via_dd_tritmp.h to draw basic primitives *
193 ***********************************************************************/
194
195 #define TRI(a, b, c) \
196 do { \
197 if (DO_FALLBACK) \
198 vmesa->drawTri(vmesa, a, b, c); \
199 else \
200 via_draw_triangle(vmesa, a, b, c); \
201 } while (0)
202
203 #define QUAD(a, b, c, d) \
204 do { \
205 if (DO_FALLBACK) { \
206 vmesa->drawTri(vmesa, a, b, d); \
207 vmesa->drawTri(vmesa, b, c, d); \
208 } \
209 else \
210 via_draw_quad(vmesa, a, b, c, d); \
211 } while (0)
212
213 #define LINE(v0, v1) \
214 do { \
215 if (DO_FALLBACK) \
216 vmesa->drawLine(vmesa, v0, v1); \
217 else \
218 via_draw_line(vmesa, v0, v1); \
219 } while (0)
220
221 #define POINT(v0) \
222 do { \
223 if (DO_FALLBACK) \
224 vmesa->drawPoint(vmesa, v0); \
225 else \
226 via_draw_point(vmesa, v0); \
227 } while (0)
228
229
230 /***********************************************************************
231 * Build render functions from dd templates *
232 ***********************************************************************/
233
234 #define VIA_OFFSET_BIT 0x01
235 #define VIA_TWOSIDE_BIT 0x02
236 #define VIA_UNFILLED_BIT 0x04
237 #define VIA_FALLBACK_BIT 0x08
238 #define VIA_MAX_TRIFUNC 0x10
239
240
241 static struct {
242 tnl_points_func points;
243 tnl_line_func line;
244 tnl_triangle_func triangle;
245 tnl_quad_func quad;
246 } rast_tab[VIA_MAX_TRIFUNC + 1];
247
248
249 #define DO_FALLBACK (IND & VIA_FALLBACK_BIT)
250 #define DO_OFFSET (IND & VIA_OFFSET_BIT)
251 #define DO_UNFILLED (IND & VIA_UNFILLED_BIT)
252 #define DO_TWOSIDE (IND & VIA_TWOSIDE_BIT)
253 #define DO_FLAT 0
254 #define DO_TRI 1
255 #define DO_QUAD 1
256 #define DO_LINE 1
257 #define DO_POINTS 1
258 #define DO_FULL_QUAD 1
259
260 #define HAVE_RGBA 1
261 #define HAVE_SPEC 1
262 #define HAVE_BACK_COLORS 0
263 #define HAVE_HW_FLATSHADE 1
264 #define VERTEX viaVertex
265 #define TAB rast_tab
266
267 /* Only used to pull back colors into vertices (ie, we know color is
268 * floating point).
269 */
270 #define VIA_COLOR(dst, src) \
271 do { \
272 dst[0] = src[2]; \
273 dst[1] = src[1]; \
274 dst[2] = src[0]; \
275 dst[3] = src[3]; \
276 } while (0)
277
278 #define VIA_SPEC(dst, src) \
279 do { \
280 dst[0] = src[2]; \
281 dst[1] = src[1]; \
282 dst[2] = src[0]; \
283 } while (0)
284
285
286 #define DEPTH_SCALE vmesa->polygon_offset_scale
287 #define UNFILLED_TRI unfilled_tri
288 #define UNFILLED_QUAD unfilled_quad
289 #define VERT_X(_v) _v->v.x
290 #define VERT_Y(_v) _v->v.y
291 #define VERT_Z(_v) _v->v.z
292 #define AREA_IS_CCW(a) (a > 0)
293 #define GET_VERTEX(e) (vmesa->verts + (e * vmesa->vertexSize * sizeof(int)))
294
295 #define VERT_SET_RGBA( v, c ) \
296 do { \
297 via_color_t *color = (via_color_t *)&((v)->ui[coloroffset]); \
298 UNCLAMPED_FLOAT_TO_UBYTE(color->red, (c)[0]); \
299 UNCLAMPED_FLOAT_TO_UBYTE(color->green, (c)[1]); \
300 UNCLAMPED_FLOAT_TO_UBYTE(color->blue, (c)[2]); \
301 UNCLAMPED_FLOAT_TO_UBYTE(color->alpha, (c)[3]); \
302 } while (0)
303
304 #define VERT_COPY_RGBA( v0, v1 ) v0->ui[coloroffset] = v1->ui[coloroffset]
305
306 #define VERT_SET_SPEC( v, c ) \
307 do { \
308 if (specoffset) { \
309 via_color_t *color = (via_color_t *)&((v)->ui[specoffset]); \
310 UNCLAMPED_FLOAT_TO_UBYTE(color->red, (c)[0]); \
311 UNCLAMPED_FLOAT_TO_UBYTE(color->green, (c)[1]); \
312 UNCLAMPED_FLOAT_TO_UBYTE(color->blue, (c)[2]); \
313 } \
314 } while (0)
315 #define VERT_COPY_SPEC( v0, v1 ) \
316 do { \
317 if (specoffset) { \
318 v0->ub4[specoffset][0] = v1->ub4[specoffset][0]; \
319 v0->ub4[specoffset][1] = v1->ub4[specoffset][1]; \
320 v0->ub4[specoffset][2] = v1->ub4[specoffset][2]; \
321 } \
322 } while (0)
323
324
325 #define VERT_SAVE_RGBA( idx ) color[idx] = v[idx]->ui[coloroffset]
326 #define VERT_RESTORE_RGBA( idx ) v[idx]->ui[coloroffset] = color[idx]
327 #define VERT_SAVE_SPEC( idx ) if (specoffset) spec[idx] = v[idx]->ui[specoffset]
328 #define VERT_RESTORE_SPEC( idx ) if (specoffset) v[idx]->ui[specoffset] = spec[idx]
329
330
331 #define LOCAL_VARS(n) \
332 struct via_context *vmesa = VIA_CONTEXT(ctx); \
333 GLuint color[n], spec[n]; \
334 GLuint coloroffset = vmesa->coloroffset; \
335 GLuint specoffset = vmesa->specoffset; \
336 (void)color; (void)spec; (void)coloroffset; (void)specoffset;
337
338
339 /***********************************************************************
340 * Helpers for rendering unfilled primitives *
341 ***********************************************************************/
342
343 static const GLenum hwPrim[GL_POLYGON + 2] = {
344 GL_POINTS,
345 GL_LINES,
346 GL_LINES,
347 GL_LINES,
348 GL_TRIANGLES,
349 GL_TRIANGLES,
350 GL_TRIANGLES,
351 GL_TRIANGLES,
352 GL_TRIANGLES,
353 GL_TRIANGLES,
354 GL_POLYGON+1
355 };
356
357
358 #define RASTERIZE(x) viaRasterPrimitive( ctx, x, hwPrim[x] )
359 #define RENDER_PRIMITIVE vmesa->renderPrimitive
360 #define TAG(x) x
361 #define IND VIA_FALLBACK_BIT
362 #include "tnl_dd/t_dd_unfilled.h"
363 #undef IND
364 #undef RASTERIZE
365
366 /***********************************************************************
367 * Generate GL render functions *
368 ***********************************************************************/
369 #define RASTERIZE(x)
370
371 #define IND (0)
372 #define TAG(x) x
373 #include "tnl_dd/t_dd_tritmp.h"
374
375 #define IND (VIA_OFFSET_BIT)
376 #define TAG(x) x##_offset
377 #include "tnl_dd/t_dd_tritmp.h"
378
379 #define IND (VIA_TWOSIDE_BIT)
380 #define TAG(x) x##_twoside
381 #include "tnl_dd/t_dd_tritmp.h"
382
383 #define IND (VIA_TWOSIDE_BIT|VIA_OFFSET_BIT)
384 #define TAG(x) x##_twoside_offset
385 #include "tnl_dd/t_dd_tritmp.h"
386
387 #define IND (VIA_UNFILLED_BIT)
388 #define TAG(x) x##_unfilled
389 #include "tnl_dd/t_dd_tritmp.h"
390
391 #define IND (VIA_OFFSET_BIT|VIA_UNFILLED_BIT)
392 #define TAG(x) x##_offset_unfilled
393 #include "tnl_dd/t_dd_tritmp.h"
394
395 #define IND (VIA_TWOSIDE_BIT|VIA_UNFILLED_BIT)
396 #define TAG(x) x##_twoside_unfilled
397 #include "tnl_dd/t_dd_tritmp.h"
398
399 #define IND (VIA_TWOSIDE_BIT|VIA_OFFSET_BIT|VIA_UNFILLED_BIT)
400 #define TAG(x) x##_twoside_offset_unfilled
401 #include "tnl_dd/t_dd_tritmp.h"
402
403 #define IND (VIA_FALLBACK_BIT)
404 #define TAG(x) x##_fallback
405 #include "tnl_dd/t_dd_tritmp.h"
406
407 #define IND (VIA_OFFSET_BIT|VIA_FALLBACK_BIT)
408 #define TAG(x) x##_offset_fallback
409 #include "tnl_dd/t_dd_tritmp.h"
410
411 #define IND (VIA_TWOSIDE_BIT|VIA_FALLBACK_BIT)
412 #define TAG(x) x##_twoside_fallback
413 #include "tnl_dd/t_dd_tritmp.h"
414
415 #define IND (VIA_TWOSIDE_BIT|VIA_OFFSET_BIT|VIA_FALLBACK_BIT)
416 #define TAG(x) x##_twoside_offset_fallback
417 #include "tnl_dd/t_dd_tritmp.h"
418
419 #define IND (VIA_UNFILLED_BIT|VIA_FALLBACK_BIT)
420 #define TAG(x) x##_unfilled_fallback
421 #include "tnl_dd/t_dd_tritmp.h"
422
423 #define IND (VIA_OFFSET_BIT|VIA_UNFILLED_BIT|VIA_FALLBACK_BIT)
424 #define TAG(x) x##_offset_unfilled_fallback
425 #include "tnl_dd/t_dd_tritmp.h"
426
427 #define IND (VIA_TWOSIDE_BIT|VIA_UNFILLED_BIT|VIA_FALLBACK_BIT)
428 #define TAG(x) x##_twoside_unfilled_fallback
429 #include "tnl_dd/t_dd_tritmp.h"
430
431 #define IND (VIA_TWOSIDE_BIT|VIA_OFFSET_BIT|VIA_UNFILLED_BIT| \
432 VIA_FALLBACK_BIT)
433 #define TAG(x) x##_twoside_offset_unfilled_fallback
434 #include "tnl_dd/t_dd_tritmp.h"
435
436
437 /* Catchall case for flat, separate specular triangles (via has flat
438 * diffuse shading, but always does specular color with gouraud).
439 */
440 #undef DO_FALLBACK
441 #undef DO_OFFSET
442 #undef DO_UNFILLED
443 #undef DO_TWOSIDE
444 #undef DO_FLAT
445 #define DO_FALLBACK (0)
446 #define DO_OFFSET (ctx->_TriangleCaps & DD_TRI_OFFSET)
447 #define DO_UNFILLED (ctx->_TriangleCaps & DD_TRI_UNFILLED)
448 #define DO_TWOSIDE (ctx->_TriangleCaps & DD_TRI_LIGHT_TWOSIDE)
449 #define DO_FLAT 1
450 #define TAG(x) x##_flat_specular
451 #define IND VIA_MAX_TRIFUNC
452 #include "tnl_dd/t_dd_tritmp.h"
453
454
455 static void init_rast_tab(void)
456 {
457 init();
458 init_offset();
459 init_twoside();
460 init_twoside_offset();
461 init_unfilled();
462 init_offset_unfilled();
463 init_twoside_unfilled();
464 init_twoside_offset_unfilled();
465 init_fallback();
466 init_offset_fallback();
467 init_twoside_fallback();
468 init_twoside_offset_fallback();
469 init_unfilled_fallback();
470 init_offset_unfilled_fallback();
471 init_twoside_unfilled_fallback();
472 init_twoside_offset_unfilled_fallback();
473
474 init_flat_specular(); /* special! */
475 }
476
477
478 /***********************************************************************
479 * Rasterization fallback helpers *
480 ***********************************************************************/
481
482
483 /* This code is hit only when a mix of accelerated and unaccelerated
484 * primitives are being drawn, and only for the unaccelerated
485 * primitives.
486 */
487 static void
488 via_fallback_tri(struct via_context *vmesa,
489 viaVertex *v0,
490 viaVertex *v1,
491 viaVertex *v2)
492 {
493 GLcontext *ctx = vmesa->glCtx;
494 SWvertex v[3];
495 _swsetup_Translate(ctx, v0, &v[0]);
496 _swsetup_Translate(ctx, v1, &v[1]);
497 _swsetup_Translate(ctx, v2, &v[2]);
498 viaSpanRenderStart( ctx );
499 _swrast_Triangle(ctx, &v[0], &v[1], &v[2]);
500 viaSpanRenderFinish( ctx );
501 }
502
503
504 static void
505 via_fallback_line(struct via_context *vmesa,
506 viaVertex *v0,
507 viaVertex *v1)
508 {
509 GLcontext *ctx = vmesa->glCtx;
510 SWvertex v[2];
511 _swsetup_Translate(ctx, v0, &v[0]);
512 _swsetup_Translate(ctx, v1, &v[1]);
513 viaSpanRenderStart( ctx );
514 _swrast_Line(ctx, &v[0], &v[1]);
515 viaSpanRenderFinish( ctx );
516 }
517
518
519 static void
520 via_fallback_point(struct via_context *vmesa,
521 viaVertex *v0)
522 {
523 GLcontext *ctx = vmesa->glCtx;
524 SWvertex v[1];
525 _swsetup_Translate(ctx, v0, &v[0]);
526 viaSpanRenderStart( ctx );
527 _swrast_Point(ctx, &v[0]);
528 viaSpanRenderFinish( ctx );
529 }
530
531 static void viaResetLineStipple( GLcontext *ctx )
532 {
533 struct via_context *vmesa = VIA_CONTEXT(ctx);
534 vmesa->regCmdB |= HC_HLPrst_MASK;
535 }
536
537 /**********************************************************************/
538 /* Render unclipped begin/end objects */
539 /**********************************************************************/
540 #define IND 0
541 #define V(x) (viaVertex *)(vertptr + ((x) * vertsize * sizeof(int)))
542 #define RENDER_POINTS(start, count) \
543 for (; start < count; start++) POINT(V(ELT(start)));
544 #define RENDER_LINE(v0, v1) LINE(V(v0), V(v1))
545 #define RENDER_TRI( v0, v1, v2) TRI( V(v0), V(v1), V(v2))
546 #define RENDER_QUAD(v0, v1, v2, v3) QUAD(V(v0), V(v1), V(v2), V(v3))
547 #define INIT(x) viaRasterPrimitive(ctx, x, hwPrim[x])
548 #undef LOCAL_VARS
549 #define LOCAL_VARS \
550 struct via_context *vmesa = VIA_CONTEXT(ctx); \
551 GLubyte *vertptr = (GLubyte *)vmesa->verts; \
552 const GLuint vertsize = vmesa->vertexSize; \
553 const GLuint * const elt = TNL_CONTEXT(ctx)->vb.Elts; \
554 const GLboolean stipple = ctx->Line.StippleFlag; \
555 (void) elt; (void) stipple;
556 #define RESET_STIPPLE if ( stipple ) viaResetLineStipple( ctx );
557 #define RESET_OCCLUSION
558 #define PRESERVE_VB_DEFS
559 #define ELT(x) x
560 #define TAG(x) via_##x##_verts
561 #include "tnl/t_vb_rendertmp.h"
562 #undef ELT
563 #undef TAG
564 #define TAG(x) via_##x##_elts
565 #define ELT(x) elt[x]
566 #include "tnl/t_vb_rendertmp.h"
567 #undef ELT
568 #undef TAG
569 #undef NEED_EDGEFLAG_SETUP
570 #undef EDGEFLAG_GET
571 #undef EDGEFLAG_SET
572 #undef RESET_OCCLUSION
573
574
575 /**********************************************************************/
576 /* Render clipped primitives */
577 /**********************************************************************/
578
579
580
581 static void viaRenderClippedPoly(GLcontext *ctx, const GLuint *elts,
582 GLuint n)
583 {
584 TNLcontext *tnl = TNL_CONTEXT(ctx);
585 struct vertex_buffer *VB = &TNL_CONTEXT(ctx)->vb;
586 GLuint prim = VIA_CONTEXT(ctx)->renderPrimitive;
587
588 /* Render the new vertices as an unclipped polygon.
589 */
590 {
591 GLuint *tmp = VB->Elts;
592 VB->Elts = (GLuint *)elts;
593 tnl->Driver.Render.PrimTabElts[GL_POLYGON](ctx, 0, n,
594 PRIM_BEGIN|PRIM_END);
595 VB->Elts = tmp;
596 }
597
598 /* Restore the render primitive
599 */
600 if (prim != GL_POLYGON &&
601 prim != GL_POLYGON + 1)
602 tnl->Driver.Render.PrimitiveNotify( ctx, prim );
603 }
604
605 static void viaRenderClippedLine(GLcontext *ctx, GLuint ii, GLuint jj)
606 {
607 TNLcontext *tnl = TNL_CONTEXT(ctx);
608 tnl->Driver.Render.Line(ctx, ii, jj);
609 }
610
611 static void viaFastRenderClippedPoly(GLcontext *ctx, const GLuint *elts,
612 GLuint n)
613 {
614 struct via_context *vmesa = VIA_CONTEXT(ctx);
615 GLuint vertsize = vmesa->vertexSize;
616 GLuint *vb = viaExtendPrimitive(vmesa, (n - 2) * 3 * 4 * vertsize);
617 GLubyte *vertptr = (GLubyte *)vmesa->verts;
618 const GLuint *start = (const GLuint *)V(elts[0]);
619 int i;
620
621 for (i = 2; i < n; i++) {
622 COPY_DWORDS(vb, vertsize, V(elts[i - 1]));
623 COPY_DWORDS(vb, vertsize, V(elts[i]));
624 COPY_DWORDS(vb, vertsize, start);
625 }
626 }
627
628 /**********************************************************************/
629 /* Choose render functions */
630 /**********************************************************************/
631
632
633
634
635 #define _VIA_NEW_VERTEX (_NEW_TEXTURE | \
636 _DD_NEW_SEPARATE_SPECULAR | \
637 _DD_NEW_TRI_UNFILLED | \
638 _DD_NEW_TRI_LIGHT_TWOSIDE | \
639 _NEW_FOG)
640
641 #define _VIA_NEW_RENDERSTATE (_DD_NEW_LINE_STIPPLE | \
642 _DD_NEW_TRI_UNFILLED | \
643 _DD_NEW_TRI_LIGHT_TWOSIDE | \
644 _DD_NEW_TRI_OFFSET | \
645 _DD_NEW_TRI_STIPPLE | \
646 _NEW_POLYGONSTIPPLE)
647
648
649 static void viaChooseRenderState(GLcontext *ctx)
650 {
651 TNLcontext *tnl = TNL_CONTEXT(ctx);
652 struct via_context *vmesa = VIA_CONTEXT(ctx);
653 GLuint flags = ctx->_TriangleCaps;
654 GLuint index = 0;
655
656 if (vmesa->ptexHack) {
657 vmesa->drawPoint = via_ptex_point;
658 vmesa->drawLine = via_ptex_line;
659 vmesa->drawTri = via_ptex_tri;
660 index |= VIA_FALLBACK_BIT;
661 }
662 else {
663 vmesa->drawPoint = via_draw_point;
664 vmesa->drawLine = via_draw_line;
665 vmesa->drawTri = via_draw_triangle;
666 }
667
668 if (flags & (ANY_FALLBACK_FLAGS|ANY_RASTER_FLAGS)) {
669 if (flags & DD_TRI_LIGHT_TWOSIDE) index |= VIA_TWOSIDE_BIT;
670 if (flags & DD_TRI_OFFSET) index |= VIA_OFFSET_BIT;
671 if (flags & DD_TRI_UNFILLED) index |= VIA_UNFILLED_BIT;
672 if (flags & ANY_FALLBACK_FLAGS) index |= VIA_FALLBACK_BIT;
673
674 /* Hook in fallbacks for specific primitives.
675 */
676 if (flags & POINT_FALLBACK)
677 vmesa->drawPoint = via_fallback_point;
678
679 if (flags & LINE_FALLBACK)
680 vmesa->drawLine = via_fallback_line;
681
682 if (flags & TRI_FALLBACK)
683 vmesa->drawTri = via_fallback_tri;
684 }
685
686
687 if ((flags & DD_SEPARATE_SPECULAR) &&
688 ctx->Light.ShadeModel == GL_FLAT) {
689 index = VIA_MAX_TRIFUNC; /* flat specular */
690 }
691
692 if (vmesa->renderIndex != index) {
693 vmesa->renderIndex = index;
694
695 tnl->Driver.Render.Points = rast_tab[index].points;
696 tnl->Driver.Render.Line = rast_tab[index].line;
697 tnl->Driver.Render.Triangle = rast_tab[index].triangle;
698 tnl->Driver.Render.Quad = rast_tab[index].quad;
699
700 if (index == 0) {
701 tnl->Driver.Render.PrimTabVerts = via_render_tab_verts;
702 tnl->Driver.Render.PrimTabElts = via_render_tab_elts;
703 tnl->Driver.Render.ClippedLine = line; /* from tritmp.h */
704 tnl->Driver.Render.ClippedPolygon = viaFastRenderClippedPoly;
705 }
706 else {
707 tnl->Driver.Render.PrimTabVerts = _tnl_render_tab_verts;
708 tnl->Driver.Render.PrimTabElts = _tnl_render_tab_elts;
709 tnl->Driver.Render.ClippedLine = viaRenderClippedLine;
710 tnl->Driver.Render.ClippedPolygon = viaRenderClippedPoly;
711 }
712 }
713 }
714
715
716 #define VIA_EMIT_TEX1 0x01
717 #define VIA_EMIT_TEX0 0x02
718 #define VIA_EMIT_PTEX0 0x04
719 #define VIA_EMIT_RGBA 0x08
720 #define VIA_EMIT_SPEC 0x10
721 #define VIA_EMIT_FOG 0x20
722 #define VIA_EMIT_W 0x40
723
724 #define EMIT_ATTR( ATTR, STYLE, INDEX, REGB ) \
725 do { \
726 vmesa->vertex_attrs[vmesa->vertex_attr_count].attrib = (ATTR); \
727 vmesa->vertex_attrs[vmesa->vertex_attr_count].format = (STYLE); \
728 vmesa->vertex_attr_count++; \
729 setupIndex |= (INDEX); \
730 regCmdB |= (REGB); \
731 } while (0)
732
733 #define EMIT_PAD( N ) \
734 do { \
735 vmesa->vertex_attrs[vmesa->vertex_attr_count].attrib = 0; \
736 vmesa->vertex_attrs[vmesa->vertex_attr_count].format = EMIT_PAD; \
737 vmesa->vertex_attrs[vmesa->vertex_attr_count].offset = (N); \
738 vmesa->vertex_attr_count++; \
739 } while (0)
740
741
742
743 static void viaChooseVertexState( GLcontext *ctx )
744 {
745 struct via_context *vmesa = VIA_CONTEXT(ctx);
746 TNLcontext *tnl = TNL_CONTEXT(ctx);
747 GLuint index = tnl->render_inputs;
748 GLuint regCmdB = HC_HVPMSK_X | HC_HVPMSK_Y | HC_HVPMSK_Z;
749 GLuint setupIndex = 0;
750
751 vmesa->vertex_attr_count = 0;
752
753 /* EMIT_ATTR's must be in order as they tell t_vertex.c how to
754 * build up a hardware vertex.
755 */
756 if (index & (_TNL_BITS_TEX_ANY|_TNL_BIT_FOG)) {
757 EMIT_ATTR( _TNL_ATTRIB_POS, EMIT_4F_VIEWPORT, VIA_EMIT_W, HC_HVPMSK_W );
758 vmesa->coloroffset = 4;
759 }
760 else {
761 EMIT_ATTR( _TNL_ATTRIB_POS, EMIT_3F_VIEWPORT, 0, 0 );
762 vmesa->coloroffset = 3;
763 }
764
765 /* t_context.c always includes a diffuse color */
766 EMIT_ATTR( _TNL_ATTRIB_COLOR0, EMIT_4UB_4F_BGRA, VIA_EMIT_RGBA,
767 HC_HVPMSK_Cd );
768
769 vmesa->specoffset = 0;
770 if (index & (_TNL_BIT_COLOR1|_TNL_BIT_FOG)) {
771 if ((index & _TNL_BIT_COLOR1)) {
772 vmesa->specoffset = vmesa->coloroffset + 1;
773 EMIT_ATTR( _TNL_ATTRIB_COLOR1, EMIT_3UB_3F_BGR, VIA_EMIT_SPEC,
774 HC_HVPMSK_Cs );
775 }
776 else
777 EMIT_PAD( 3 );
778
779 if ((index & _TNL_BIT_FOG))
780 EMIT_ATTR( _TNL_ATTRIB_FOG, EMIT_1UB_1F, VIA_EMIT_FOG, HC_HVPMSK_Cs );
781 else
782 EMIT_PAD( 1 );
783 }
784
785 if (index & _TNL_BIT_TEX(0)) {
786 if (vmesa->ptexHack)
787 EMIT_ATTR( _TNL_ATTRIB_TEX0, EMIT_3F_XYW, VIA_EMIT_PTEX0,
788 (HC_HVPMSK_S | HC_HVPMSK_T) );
789 else
790 EMIT_ATTR( _TNL_ATTRIB_TEX0, EMIT_2F, VIA_EMIT_TEX0,
791 (HC_HVPMSK_S | HC_HVPMSK_T) );
792 }
793
794 if (index & _TNL_BIT_TEX(1)) {
795 EMIT_ATTR( _TNL_ATTRIB_TEX1, EMIT_2F, VIA_EMIT_TEX1,
796 (HC_HVPMSK_S | HC_HVPMSK_T) );
797 }
798
799 if (setupIndex != vmesa->setupIndex) {
800 vmesa->vertexSize = _tnl_install_attrs( ctx,
801 vmesa->vertex_attrs,
802 vmesa->vertex_attr_count,
803 vmesa->ViewportMatrix.m, 0 );
804 vmesa->vertexSize >>= 2;
805 vmesa->setupIndex = setupIndex;
806 vmesa->regCmdB &= ~HC_HVPMSK_MASK;
807 vmesa->regCmdB |= regCmdB;
808
809 if (vmesa->ptexHack)
810 vmesa->hwVertexSize = vmesa->vertexSize - 1;
811 else
812 vmesa->hwVertexSize = vmesa->vertexSize;
813 }
814 }
815
816
817
818
819 /* Check if projective texture coordinates are used and if we can fake
820 * them. Fallback to swrast if we can't. Returns GL_TRUE if projective
821 * texture coordinates must be faked, GL_FALSE otherwise.
822 */
823 static GLboolean viaCheckPTexHack( GLcontext *ctx )
824 {
825 TNLcontext *tnl = TNL_CONTEXT(ctx);
826 struct vertex_buffer *VB = &tnl->vb;
827 GLuint index = tnl->render_inputs;
828 GLboolean fallback = GL_FALSE;
829 GLboolean ptexHack = GL_FALSE;
830
831 if (index & _TNL_BIT_TEX(0) && VB->TexCoordPtr[0]->size == 4) {
832 if ((index & _TNL_BITS_TEX_ANY) == _TNL_BIT_TEX(0))
833 ptexHack = GL_TRUE;
834 else
835 fallback = GL_TRUE;
836 }
837 if ((index & _TNL_BIT_TEX(1)) && VB->TexCoordPtr[1]->size == 4)
838 fallback = GL_TRUE;
839
840 FALLBACK(VIA_CONTEXT(ctx), VIA_FALLBACK_PROJ_TEXTURE, fallback);
841 return ptexHack;
842 }
843
844
845
846
847 /**********************************************************************/
848 /* High level hooks for t_vb_render.c */
849 /**********************************************************************/
850
851
852 static void viaRenderStart(GLcontext *ctx)
853 {
854 struct via_context *vmesa = VIA_CONTEXT(ctx);
855 TNLcontext *tnl = TNL_CONTEXT(ctx);
856 struct vertex_buffer *VB = &TNL_CONTEXT(ctx)->vb;
857
858 {
859 GLboolean ptexHack = viaCheckPTexHack( ctx );
860 if (ptexHack != vmesa->ptexHack) {
861 vmesa->ptexHack = ptexHack;
862 vmesa->newRenderState |= _VIA_NEW_RENDERSTATE;
863 }
864 }
865
866 if (vmesa->newState) {
867 vmesa->newRenderState |= vmesa->newState;
868 viaValidateState( ctx );
869 }
870
871 if (vmesa->Fallback) {
872 tnl->Driver.Render.Start(ctx);
873 return;
874 }
875
876 if (vmesa->newRenderState) {
877 viaChooseVertexState(ctx);
878 viaChooseRenderState(ctx);
879 vmesa->newRenderState = 0;
880 }
881
882 /* Important:
883 */
884 VB->AttribPtr[VERT_ATTRIB_POS] = VB->NdcPtr;
885 }
886
887 static void viaRenderFinish(GLcontext *ctx)
888 {
889 VIA_FINISH_PRIM(VIA_CONTEXT(ctx));
890 }
891
892
893 /* System to flush dma and emit state changes based on the rasterized
894 * primitive.
895 */
896 void viaRasterPrimitive(GLcontext *ctx,
897 GLenum glprim,
898 GLenum hwprim)
899 {
900 struct via_context *vmesa = VIA_CONTEXT(ctx);
901 GLuint regCmdB;
902 RING_VARS;
903
904 if (VIA_DEBUG & DEBUG_PRIMS)
905 fprintf(stderr, "%s: %s/%s/%s\n",
906 __FUNCTION__, _mesa_lookup_enum_by_nr(glprim),
907 _mesa_lookup_enum_by_nr(hwprim),
908 _mesa_lookup_enum_by_nr(ctx->Light.ShadeModel));
909
910 assert (!vmesa->newState);
911
912 vmesa->renderPrimitive = glprim;
913
914 if (hwprim != vmesa->hwPrimitive ||
915 ctx->Light.ShadeModel != vmesa->hwShadeModel) {
916
917 VIA_FINISH_PRIM(vmesa);
918
919 /* Ensure no wrapping inside this function */
920 viaCheckDma( vmesa, 1024 );
921
922 if (vmesa->newEmitState) {
923 viaEmitState(vmesa);
924 }
925
926 vmesa->regCmdA_End = HC_ACMD_HCmdA;
927
928 if (ctx->Light.ShadeModel == GL_SMOOTH) {
929 vmesa->regCmdA_End |= HC_HShading_Gouraud;
930 }
931
932 vmesa->hwShadeModel = ctx->Light.ShadeModel;
933 regCmdB = vmesa->regCmdB;
934
935 switch (hwprim) {
936 case GL_POINTS:
937 vmesa->regCmdA_End |= HC_HPMType_Point | HC_HVCycle_Full;
938 vmesa->regCmdA_End |= HC_HShading_Gouraud; /* always Gouraud
939 shade points?!? */
940 break;
941 case GL_LINES:
942 vmesa->regCmdA_End |= HC_HPMType_Line | HC_HVCycle_Full;
943 regCmdB |= HC_HLPrst_MASK;
944 if (ctx->Light.ShadeModel == GL_FLAT)
945 vmesa->regCmdA_End |= HC_HShading_FlatB;
946 break;
947 case GL_LINE_LOOP:
948 case GL_LINE_STRIP:
949 vmesa->regCmdA_End |= HC_HPMType_Line | HC_HVCycle_AFP |
950 HC_HVCycle_AB | HC_HVCycle_NewB;
951 regCmdB |= HC_HVCycle_AB | HC_HVCycle_NewB | HC_HLPrst_MASK;
952 if (ctx->Light.ShadeModel == GL_FLAT)
953 vmesa->regCmdA_End |= HC_HShading_FlatB;
954 break;
955 case GL_TRIANGLES:
956 vmesa->regCmdA_End |= HC_HPMType_Tri | HC_HVCycle_Full;
957 if (ctx->Light.ShadeModel == GL_FLAT)
958 vmesa->regCmdA_End |= HC_HShading_FlatC;
959 break;
960 case GL_TRIANGLE_STRIP:
961 vmesa->regCmdA_End |= HC_HPMType_Tri | HC_HVCycle_AFP |
962 HC_HVCycle_AC | HC_HVCycle_BB | HC_HVCycle_NewC;
963 regCmdB |= HC_HVCycle_AA | HC_HVCycle_BC | HC_HVCycle_NewC;
964 if (ctx->Light.ShadeModel == GL_FLAT)
965 vmesa->regCmdA_End |= HC_HShading_FlatC;
966 break;
967 case GL_TRIANGLE_FAN:
968 vmesa->regCmdA_End |= HC_HPMType_Tri | HC_HVCycle_AFP |
969 HC_HVCycle_AA | HC_HVCycle_BC | HC_HVCycle_NewC;
970 regCmdB |= HC_HVCycle_AA | HC_HVCycle_BC | HC_HVCycle_NewC;
971 if (ctx->Light.ShadeModel == GL_FLAT)
972 vmesa->regCmdA_End |= HC_HShading_FlatC;
973 break;
974 case GL_QUADS:
975 abort();
976 return;
977 case GL_QUAD_STRIP:
978 abort();
979 return;
980 case GL_POLYGON:
981 vmesa->regCmdA_End |= HC_HPMType_Tri | HC_HVCycle_AFP |
982 HC_HVCycle_AA | HC_HVCycle_BC | HC_HVCycle_NewC;
983 regCmdB |= HC_HVCycle_AA | HC_HVCycle_BC | HC_HVCycle_NewC;
984 if (ctx->Light.ShadeModel == GL_FLAT)
985 vmesa->regCmdA_End |= HC_HShading_FlatC;
986 break;
987 default:
988 abort();
989 return;
990 }
991
992 /* assert((vmesa->dmaLow & 0x4) == 0); */
993
994 if (vmesa->dmaCliprectAddr == ~0) {
995 if (VIA_DEBUG & DEBUG_DMA)
996 fprintf(stderr, "reserve cliprect space at %x\n", vmesa->dmaLow);
997 vmesa->dmaCliprectAddr = vmesa->dmaLow;
998 BEGIN_RING(8);
999 OUT_RING( HC_HEADER2 );
1000 OUT_RING( (HC_ParaType_NotTex << 16) );
1001 OUT_RING( 0xCCCCCCCC );
1002 OUT_RING( 0xCCCCCCCC );
1003 OUT_RING( 0xCCCCCCCC );
1004 OUT_RING( 0xCCCCCCCC );
1005 OUT_RING( 0xCCCCCCCC );
1006 OUT_RING( 0xCCCCCCCC );
1007 ADVANCE_RING();
1008 }
1009
1010 assert(vmesa->dmaLastPrim == 0);
1011
1012 BEGIN_RING(8);
1013 OUT_RING( HC_HEADER2 );
1014 OUT_RING( (HC_ParaType_NotTex << 16) );
1015 OUT_RING( 0xCCCCCCCC );
1016 OUT_RING( 0xDDDDDDDD );
1017
1018 OUT_RING( HC_HEADER2 );
1019 OUT_RING( (HC_ParaType_CmdVdata << 16) );
1020 OUT_RING( regCmdB );
1021 OUT_RING( vmesa->regCmdA_End );
1022 ADVANCE_RING();
1023
1024 vmesa->hwPrimitive = hwprim;
1025 vmesa->dmaLastPrim = vmesa->dmaLow;
1026 }
1027 else {
1028 assert(!vmesa->newEmitState);
1029 }
1030 }
1031
1032 /* Callback for mesa:
1033 */
1034 static void viaRenderPrimitive( GLcontext *ctx, GLuint prim )
1035 {
1036 viaRasterPrimitive( ctx, prim, hwPrim[prim] );
1037 }
1038
1039
1040 void viaFinishPrimitive(struct via_context *vmesa)
1041 {
1042 if (VIA_DEBUG & (DEBUG_DMA|DEBUG_PRIMS))
1043 fprintf(stderr, "%s\n", __FUNCTION__);
1044
1045 if (!vmesa->dmaLastPrim || vmesa->dmaCliprectAddr == ~0) {
1046 assert(0);
1047 }
1048 else if (vmesa->dmaLow != vmesa->dmaLastPrim) {
1049 GLuint cmdA = (vmesa->regCmdA_End | HC_HPLEND_MASK |
1050 HC_HPMValidN_MASK | HC_HE3Fire_MASK);
1051 RING_VARS;
1052
1053 vmesa->dmaLastPrim = 0;
1054
1055 /* KW: modified 0x1 to 0x4 below:
1056 */
1057 if ((vmesa->dmaLow & 0x4) || !vmesa->useAgp) {
1058 BEGIN_RING_NOCHECK( 1 );
1059 OUT_RING( cmdA );
1060 ADVANCE_RING();
1061 }
1062 else {
1063 BEGIN_RING_NOCHECK( 2 );
1064 OUT_RING( cmdA );
1065 OUT_RING( cmdA );
1066 ADVANCE_RING();
1067 }
1068
1069 if (vmesa->dmaLow > VIA_DMA_HIGHWATER)
1070 viaFlushDma( vmesa );
1071 }
1072 else {
1073 if (VIA_DEBUG & (DEBUG_DMA|DEBUG_PRIMS))
1074 fprintf(stderr, "remove empty primitive\n");
1075
1076 /* Remove the primitive header:
1077 */
1078 vmesa->dmaLastPrim = 0;
1079 vmesa->dmaLow -= 8 * sizeof(GLuint);
1080
1081 /* Maybe remove the cliprect as well:
1082 */
1083 if (vmesa->dmaCliprectAddr == vmesa->dmaLow - 8 * sizeof(GLuint)) {
1084 vmesa->dmaLow -= 8 * sizeof(GLuint);
1085 vmesa->dmaCliprectAddr = ~0;
1086 }
1087 }
1088
1089 vmesa->renderPrimitive = GL_POLYGON + 1;
1090 vmesa->hwPrimitive = GL_POLYGON + 1;
1091 vmesa->dmaLastPrim = 0;
1092 }
1093
1094
1095 /**********************************************************************/
1096 /* Transition to/from hardware rasterization. */
1097 /**********************************************************************/
1098
1099
1100 void viaFallback(struct via_context *vmesa, GLuint bit, GLboolean mode)
1101 {
1102 GLcontext *ctx = vmesa->glCtx;
1103 TNLcontext *tnl = TNL_CONTEXT(ctx);
1104 GLuint oldfallback = vmesa->Fallback;
1105
1106 if (mode) {
1107 vmesa->Fallback |= bit;
1108 if (oldfallback == 0) {
1109 VIA_FLUSH_DMA(vmesa);
1110
1111 if (VIA_DEBUG & DEBUG_FALLBACKS)
1112 fprintf(stderr, "ENTER FALLBACK %x\n", bit);
1113
1114 _swsetup_Wakeup(ctx);
1115 vmesa->renderIndex = ~0;
1116 }
1117 }
1118 else {
1119 vmesa->Fallback &= ~bit;
1120 if (oldfallback == bit) {
1121 _swrast_flush( ctx );
1122
1123 if (VIA_DEBUG & DEBUG_FALLBACKS)
1124 fprintf(stderr, "LEAVE FALLBACK %x\n", bit);
1125
1126 tnl->Driver.Render.Start = viaRenderStart;
1127 tnl->Driver.Render.PrimitiveNotify = viaRenderPrimitive;
1128 tnl->Driver.Render.Finish = viaRenderFinish;
1129
1130 tnl->Driver.Render.BuildVertices = _tnl_build_vertices;
1131 tnl->Driver.Render.CopyPV = _tnl_copy_pv;
1132 tnl->Driver.Render.Interp = _tnl_interp;
1133 tnl->Driver.Render.ResetLineStipple = viaResetLineStipple;
1134
1135 _tnl_invalidate_vertex_state( ctx, ~0 );
1136 _tnl_invalidate_vertices( ctx, ~0 );
1137 _tnl_install_attrs( ctx,
1138 vmesa->vertex_attrs,
1139 vmesa->vertex_attr_count,
1140 vmesa->ViewportMatrix.m, 0 );
1141
1142 vmesa->newState |= (_VIA_NEW_RENDERSTATE|_VIA_NEW_VERTEX);
1143 }
1144 }
1145 }
1146
1147 static void viaRunPipeline( GLcontext *ctx )
1148 {
1149 struct via_context *vmesa = VIA_CONTEXT(ctx);
1150
1151 if (vmesa->newState) {
1152 vmesa->newRenderState |= vmesa->newState;
1153 viaValidateState( ctx );
1154 }
1155
1156 _tnl_run_pipeline( ctx );
1157 }
1158
1159
1160 /**********************************************************************/
1161 /* Initialization. */
1162 /**********************************************************************/
1163
1164
1165 void viaInitTriFuncs(GLcontext *ctx)
1166 {
1167 struct via_context *vmesa = VIA_CONTEXT(ctx);
1168 TNLcontext *tnl = TNL_CONTEXT(ctx);
1169 static int firsttime = 1;
1170
1171 if (firsttime) {
1172 init_rast_tab();
1173 firsttime = 0;
1174 }
1175
1176 tnl->Driver.RunPipeline = viaRunPipeline;
1177 tnl->Driver.Render.Start = viaRenderStart;
1178 tnl->Driver.Render.Finish = viaRenderFinish;
1179 tnl->Driver.Render.PrimitiveNotify = viaRenderPrimitive;
1180 tnl->Driver.Render.ResetLineStipple = viaResetLineStipple;
1181 tnl->Driver.Render.BuildVertices = _tnl_build_vertices;
1182 tnl->Driver.Render.CopyPV = _tnl_copy_pv;
1183 tnl->Driver.Render.Interp = _tnl_interp;
1184
1185 _tnl_init_vertices( ctx, ctx->Const.MaxArrayLockSize + 12,
1186 (6 + 2*ctx->Const.MaxTextureUnits) * sizeof(GLfloat) );
1187
1188 vmesa->verts = (GLubyte *)tnl->clipspace.vertex_buf;
1189
1190 }