r300_state.c revision d8592d1724d8c8fd0b36eb21f4007b52f809e062
1/*
2 * Copyright 2008 Corbin Simpson <MostAwesomeDude@gmail.com>
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 * on the rights to use, copy, modify, merge, publish, distribute, sub
8 * license, and/or sell copies of the Software, and to permit persons to whom
9 * the Software is furnished to do so, subject to the following conditions:
10 *
11 * The above copyright notice and this permission notice (including the next
12 * paragraph) shall be included in all copies or substantial portions of the
13 * Software.
14 *
15 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
16 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
17 * FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT. IN NO EVENT SHALL
18 * THE AUTHOR(S) AND/OR THEIR SUPPLIERS BE LIABLE FOR ANY CLAIM,
19 * DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR
20 * OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE
21 * USE OR OTHER DEALINGS IN THE SOFTWARE. */
22
23#include "draw/draw_context.h"
24
25#include "util/u_math.h"
26#include "util/u_memory.h"
27#include "util/u_pack_color.h"
28
29#include "tgsi/tgsi_parse.h"
30
31#include "pipe/p_config.h"
32#include "pipe/internal/p_winsys_screen.h"
33
34#include "r300_context.h"
35#include "r300_reg.h"
36#include "r300_screen.h"
37#include "r300_state_inlines.h"
38#include "r300_fs.h"
39#include "r300_vs.h"
40
41/* r300_state: Functions used to intialize state context by translating
42 * Gallium state objects into semi-native r300 state objects. */
43
44/* Create a new blend state based on the CSO blend state.
45 *
46 * This encompasses alpha blending, logic/raster ops, and blend dithering. */
47static void* r300_create_blend_state(struct pipe_context* pipe,
48                                     const struct pipe_blend_state* state)
49{
50    struct r300_blend_state* blend = CALLOC_STRUCT(r300_blend_state);
51
52    if (state->blend_enable)
53    {
54        unsigned eqRGB = state->rgb_func;
55        unsigned srcRGB = state->rgb_src_factor;
56        unsigned dstRGB = state->rgb_dst_factor;
57
58        unsigned eqA = state->alpha_func;
59        unsigned srcA = state->alpha_src_factor;
60        unsigned dstA = state->alpha_dst_factor;
61
62        /* despite the name, ALPHA_BLEND_ENABLE has nothing to do with alpha,
63         * this is just the crappy D3D naming */
64        blend->blend_control = R300_ALPHA_BLEND_ENABLE |
65            r300_translate_blend_function(eqRGB) |
66            ( r300_translate_blend_factor(srcRGB) << R300_SRC_BLEND_SHIFT) |
67            ( r300_translate_blend_factor(dstRGB) << R300_DST_BLEND_SHIFT);
68
69        /* optimization: some operations do not require the destination color */
70        if (eqRGB == PIPE_BLEND_MIN || eqA == PIPE_BLEND_MIN ||
71            eqRGB == PIPE_BLEND_MAX || eqA == PIPE_BLEND_MAX ||
72            dstRGB != PIPE_BLENDFACTOR_ZERO ||
73            dstA != PIPE_BLENDFACTOR_ZERO ||
74            srcRGB == PIPE_BLENDFACTOR_DST_COLOR ||
75            srcRGB == PIPE_BLENDFACTOR_DST_ALPHA ||
76            srcRGB == PIPE_BLENDFACTOR_INV_DST_COLOR ||
77            srcRGB == PIPE_BLENDFACTOR_INV_DST_ALPHA ||
78            srcA == PIPE_BLENDFACTOR_DST_COLOR ||
79            srcA == PIPE_BLENDFACTOR_DST_ALPHA ||
80            srcA == PIPE_BLENDFACTOR_INV_DST_COLOR ||
81            srcA == PIPE_BLENDFACTOR_INV_DST_ALPHA)
82            blend->blend_control |= R300_READ_ENABLE;
83
84        /* XXX implement the optimization with DISCARD_SRC_PIXELS*/
85        /* XXX implement the optimization with SRC_ALPHA_?_NO_READ */
86
87        /* separate alpha */
88        if (srcA != srcRGB || dstA != dstRGB || eqA != eqRGB) {
89            blend->blend_control |= R300_SEPARATE_ALPHA_ENABLE;
90            blend->alpha_blend_control =
91                r300_translate_blend_function(eqA) |
92                (r300_translate_blend_factor(srcA) << R300_SRC_BLEND_SHIFT) |
93                (r300_translate_blend_factor(dstA) << R300_DST_BLEND_SHIFT);
94        }
95    }
96
97    /* PIPE_LOGICOP_* don't need to be translated, fortunately. */
98    if (state->logicop_enable) {
99        blend->rop = R300_RB3D_ROPCNTL_ROP_ENABLE |
100                (state->logicop_func) << R300_RB3D_ROPCNTL_ROP_SHIFT;
101    }
102
103    /* Color Channel Mask */
104    if (state->colormask & PIPE_MASK_R) {
105        blend->color_channel_mask |= RB3D_COLOR_CHANNEL_MASK_RED_MASK0;
106    }
107    if (state->colormask & PIPE_MASK_G) {
108        blend->color_channel_mask |= RB3D_COLOR_CHANNEL_MASK_GREEN_MASK0;
109    }
110    if (state->colormask & PIPE_MASK_B) {
111        blend->color_channel_mask |= RB3D_COLOR_CHANNEL_MASK_BLUE_MASK0;
112    }
113    if (state->colormask & PIPE_MASK_A) {
114        blend->color_channel_mask |= RB3D_COLOR_CHANNEL_MASK_ALPHA_MASK0;
115    }
116
117    if (state->dither) {
118        blend->dither = R300_RB3D_DITHER_CTL_DITHER_MODE_LUT |
119                R300_RB3D_DITHER_CTL_ALPHA_DITHER_MODE_LUT;
120    }
121
122    return (void*)blend;
123}
124
125/* Bind blend state. */
126static void r300_bind_blend_state(struct pipe_context* pipe,
127                                  void* state)
128{
129    struct r300_context* r300 = r300_context(pipe);
130
131    r300->blend_state = (struct r300_blend_state*)state;
132    r300->dirty_state |= R300_NEW_BLEND;
133}
134
135/* Free blend state. */
136static void r300_delete_blend_state(struct pipe_context* pipe,
137                                    void* state)
138{
139    FREE(state);
140}
141
142/* Convert float to 10bit integer */
143static unsigned float_to_fixed10(float f)
144{
145    return CLAMP((unsigned)(f * 1023.9f), 0, 1023);
146}
147
148/* Set blend color.
149 * Setup both R300 and R500 registers, figure out later which one to write. */
150static void r300_set_blend_color(struct pipe_context* pipe,
151                                 const struct pipe_blend_color* color)
152{
153    struct r300_context* r300 = r300_context(pipe);
154
155    util_pack_color(color->color, PIPE_FORMAT_A8R8G8B8_UNORM,
156            &r300->blend_color_state->blend_color);
157
158    /* XXX if FP16 blending is enabled, we should use the FP16 format */
159    r300->blend_color_state->blend_color_red_alpha =
160        float_to_fixed10(color->color[0]) |
161        (float_to_fixed10(color->color[3]) << 16);
162    r300->blend_color_state->blend_color_green_blue =
163        float_to_fixed10(color->color[2]) |
164        (float_to_fixed10(color->color[1]) << 16);
165
166    r300->dirty_state |= R300_NEW_BLEND_COLOR;
167}
168
169static void r300_set_clip_state(struct pipe_context* pipe,
170                                const struct pipe_clip_state* state)
171{
172    struct r300_context* r300 = r300_context(pipe);
173
174    if (r300_screen(pipe->screen)->caps->has_tcl) {
175        r300->clip_state = *state;
176        r300->dirty_state |= R300_NEW_CLIP;
177    } else {
178        draw_flush(r300->draw);
179        draw_set_clip_state(r300->draw, state);
180    }
181}
182
183/* Create a new depth, stencil, and alpha state based on the CSO dsa state.
184 *
185 * This contains the depth buffer, stencil buffer, alpha test, and such.
186 * On the Radeon, depth and stencil buffer setup are intertwined, which is
187 * the reason for some of the strange-looking assignments across registers. */
188static void*
189        r300_create_dsa_state(struct pipe_context* pipe,
190                              const struct pipe_depth_stencil_alpha_state* state)
191{
192    struct r300_capabilities *caps =
193        r300_screen(r300_context(pipe)->context.screen)->caps;
194    struct r300_dsa_state* dsa = CALLOC_STRUCT(r300_dsa_state);
195
196    /* Depth test setup. */
197    if (state->depth.enabled) {
198        dsa->z_buffer_control |= R300_Z_ENABLE;
199
200        if (state->depth.writemask) {
201            dsa->z_buffer_control |= R300_Z_WRITE_ENABLE;
202        }
203
204        dsa->z_stencil_control |=
205            (r300_translate_depth_stencil_function(state->depth.func) <<
206                R300_Z_FUNC_SHIFT);
207    }
208
209    /* Stencil buffer setup. */
210    if (state->stencil[0].enabled) {
211        dsa->z_buffer_control |= R300_STENCIL_ENABLE;
212        dsa->z_stencil_control |=
213            (r300_translate_depth_stencil_function(state->stencil[0].func) <<
214                R300_S_FRONT_FUNC_SHIFT) |
215            (r300_translate_stencil_op(state->stencil[0].fail_op) <<
216                R300_S_FRONT_SFAIL_OP_SHIFT) |
217            (r300_translate_stencil_op(state->stencil[0].zpass_op) <<
218                R300_S_FRONT_ZPASS_OP_SHIFT) |
219            (r300_translate_stencil_op(state->stencil[0].zfail_op) <<
220                R300_S_FRONT_ZFAIL_OP_SHIFT);
221
222        dsa->stencil_ref_mask = (state->stencil[0].ref_value) |
223                (state->stencil[0].valuemask << R300_STENCILMASK_SHIFT) |
224                (state->stencil[0].writemask << R300_STENCILWRITEMASK_SHIFT);
225
226        if (state->stencil[1].enabled) {
227            dsa->z_buffer_control |= R300_STENCIL_FRONT_BACK;
228            dsa->z_stencil_control |=
229            (r300_translate_depth_stencil_function(state->stencil[1].func) <<
230                R300_S_BACK_FUNC_SHIFT) |
231            (r300_translate_stencil_op(state->stencil[1].fail_op) <<
232                R300_S_BACK_SFAIL_OP_SHIFT) |
233            (r300_translate_stencil_op(state->stencil[1].zpass_op) <<
234                R300_S_BACK_ZPASS_OP_SHIFT) |
235            (r300_translate_stencil_op(state->stencil[1].zfail_op) <<
236                R300_S_BACK_ZFAIL_OP_SHIFT);
237
238            /* XXX it seems r3xx doesn't support STENCILREFMASK_BF */
239            if (caps->is_r500)
240            {
241                dsa->z_buffer_control |= R500_STENCIL_REFMASK_FRONT_BACK;
242                dsa->stencil_ref_bf = (state->stencil[1].ref_value) |
243                    (state->stencil[1].valuemask <<
244                    R300_STENCILMASK_SHIFT) |
245                    (state->stencil[1].writemask <<
246                    R300_STENCILWRITEMASK_SHIFT);
247            }
248        }
249    }
250
251    /* Alpha test setup. */
252    if (state->alpha.enabled) {
253        dsa->alpha_function =
254            r300_translate_alpha_function(state->alpha.func) |
255            R300_FG_ALPHA_FUNC_ENABLE;
256
257        /* XXX figure out why emitting 10bit alpha ref causes CS to dump */
258        /* always use 8bit alpha ref */
259        dsa->alpha_function |= float_to_ubyte(state->alpha.ref_value);
260
261        if (caps->is_r500)
262            dsa->alpha_function |= R500_FG_ALPHA_FUNC_8BIT;
263    }
264
265    return (void*)dsa;
266}
267
268/* Bind DSA state. */
269static void r300_bind_dsa_state(struct pipe_context* pipe,
270                                void* state)
271{
272    struct r300_context* r300 = r300_context(pipe);
273
274    r300->dsa_state = (struct r300_dsa_state*)state;
275    r300->dirty_state |= R300_NEW_DSA;
276}
277
278/* Free DSA state. */
279static void r300_delete_dsa_state(struct pipe_context* pipe,
280                                  void* state)
281{
282    FREE(state);
283}
284
285static void r300_set_edgeflags(struct pipe_context* pipe,
286                               const unsigned* bitfield)
287{
288    /* XXX you know it's bad when i915 has this blank too */
289    /* XXX and even worse, I have no idea WTF the bitfield is */
290}
291
292static void
293    r300_set_framebuffer_state(struct pipe_context* pipe,
294                               const struct pipe_framebuffer_state* state)
295{
296    struct r300_context* r300 = r300_context(pipe);
297
298    if (r300->draw) {
299        draw_flush(r300->draw);
300    }
301
302    r300->framebuffer_state = *state;
303
304    r300->dirty_state |= R300_NEW_FRAMEBUFFERS;
305}
306
307/* Create fragment shader state. */
308static void* r300_create_fs_state(struct pipe_context* pipe,
309                                  const struct pipe_shader_state* shader)
310{
311    struct r300_fragment_shader* fs = NULL;
312
313    fs = (struct r300_fragment_shader*)CALLOC_STRUCT(r300_fragment_shader);
314
315    /* Copy state directly into shader. */
316    fs->state = *shader;
317    fs->state.tokens = tgsi_dup_tokens(shader->tokens);
318
319    tgsi_scan_shader(shader->tokens, &fs->info);
320
321    return (void*)fs;
322}
323
324/* Bind fragment shader state. */
325static void r300_bind_fs_state(struct pipe_context* pipe, void* shader)
326{
327    struct r300_context* r300 = r300_context(pipe);
328    struct r300_fragment_shader* fs = (struct r300_fragment_shader*)shader;
329
330    if (fs == NULL) {
331        r300->fs = NULL;
332        return;
333    } else if (!fs->translated) {
334        r300_translate_fragment_shader(r300, fs);
335    }
336
337    r300->fs = fs;
338
339    r300->dirty_state |= R300_NEW_FRAGMENT_SHADER | R300_NEW_FRAGMENT_SHADER_CONSTANTS;
340}
341
342/* Delete fragment shader state. */
343static void r300_delete_fs_state(struct pipe_context* pipe, void* shader)
344{
345    struct r300_fragment_shader* fs = (struct r300_fragment_shader*)shader;
346    rc_constants_destroy(&fs->code.constants);
347    FREE((void*)fs->state.tokens);
348    FREE(shader);
349}
350
351static void r300_set_polygon_stipple(struct pipe_context* pipe,
352                                     const struct pipe_poly_stipple* state)
353{
354    /* XXX no idea how to set this up, but not terribly important */
355}
356
357/* Create a new rasterizer state based on the CSO rasterizer state.
358 *
359 * This is a very large chunk of state, and covers most of the graphics
360 * backend (GB), geometry assembly (GA), and setup unit (SU) blocks.
361 *
362 * In a not entirely unironic sidenote, this state has nearly nothing to do
363 * with the actual block on the Radeon called the rasterizer (RS). */
364static void* r300_create_rs_state(struct pipe_context* pipe,
365                                  const struct pipe_rasterizer_state* state)
366{
367    struct r300_rs_state* rs = CALLOC_STRUCT(r300_rs_state);
368
369    /* Copy rasterizer state for Draw. */
370    rs->rs = *state;
371
372    rs->enable_vte = !state->bypass_vs_clip_and_viewport;
373
374#ifdef PIPE_ARCH_LITTLE_ENDIAN
375    rs->vap_control_status = R300_VC_NO_SWAP;
376#else
377    rs->vap_control_status = R300_VC_32BIT_SWAP;
378#endif
379
380    /* If bypassing TCL, or if no TCL engine is present, turn off the HW TCL.
381     * Else, enable HW TCL and force Draw's TCL off. */
382    if (state->bypass_vs_clip_and_viewport ||
383            !r300_screen(pipe->screen)->caps->has_tcl) {
384        rs->vap_control_status |= R300_VAP_TCL_BYPASS;
385    } else {
386        rs->rs.bypass_vs_clip_and_viewport = TRUE;
387    }
388
389    rs->point_size = pack_float_16_6x(state->point_size) |
390        (pack_float_16_6x(state->point_size) << R300_POINTSIZE_X_SHIFT);
391
392    rs->point_minmax =
393        ((int)(state->point_size_min * 6.0) <<
394         R300_GA_POINT_MINMAX_MIN_SHIFT) |
395        ((int)(state->point_size_max * 6.0) <<
396         R300_GA_POINT_MINMAX_MAX_SHIFT);
397
398    rs->line_control = pack_float_16_6x(state->line_width) |
399        R300_GA_LINE_CNTL_END_TYPE_COMP;
400
401    /* XXX I think there is something wrong with the polygon mode,
402     * XXX re-test when r300g is in a better shape */
403
404    /* Enable polygon mode */
405    if (state->fill_cw != PIPE_POLYGON_MODE_FILL ||
406        state->fill_ccw != PIPE_POLYGON_MODE_FILL) {
407        rs->polygon_mode = R300_GA_POLY_MODE_DUAL;
408    }
409
410    /* Radeons don't think in "CW/CCW", they think in "front/back". */
411    if (state->front_winding == PIPE_WINDING_CW) {
412        rs->cull_mode = R300_FRONT_FACE_CW;
413
414        /* Polygon offset */
415        if (state->offset_cw) {
416            rs->polygon_offset_enable |= R300_FRONT_ENABLE;
417        }
418        if (state->offset_ccw) {
419            rs->polygon_offset_enable |= R300_BACK_ENABLE;
420        }
421
422        /* Polygon mode */
423        if (rs->polygon_mode) {
424            rs->polygon_mode |=
425                r300_translate_polygon_mode_front(state->fill_cw);
426            rs->polygon_mode |=
427                r300_translate_polygon_mode_back(state->fill_ccw);
428        }
429    } else {
430        rs->cull_mode = R300_FRONT_FACE_CCW;
431
432        /* Polygon offset */
433        if (state->offset_ccw) {
434            rs->polygon_offset_enable |= R300_FRONT_ENABLE;
435        }
436        if (state->offset_cw) {
437            rs->polygon_offset_enable |= R300_BACK_ENABLE;
438        }
439
440        /* Polygon mode */
441        if (rs->polygon_mode) {
442            rs->polygon_mode |=
443                r300_translate_polygon_mode_front(state->fill_ccw);
444            rs->polygon_mode |=
445                r300_translate_polygon_mode_back(state->fill_cw);
446        }
447    }
448    if (state->front_winding & state->cull_mode) {
449        rs->cull_mode |= R300_CULL_FRONT;
450    }
451    if (~(state->front_winding) & state->cull_mode) {
452        rs->cull_mode |= R300_CULL_BACK;
453    }
454
455    if (rs->polygon_offset_enable) {
456        rs->depth_offset_front = rs->depth_offset_back =
457            fui(state->offset_units);
458        rs->depth_scale_front = rs->depth_scale_back =
459            fui(state->offset_scale);
460    }
461
462    if (state->line_stipple_enable) {
463        rs->line_stipple_config =
464            R300_GA_LINE_STIPPLE_CONFIG_LINE_RESET_LINE |
465            (fui((float)state->line_stipple_factor) &
466                R300_GA_LINE_STIPPLE_CONFIG_STIPPLE_SCALE_MASK);
467        /* XXX this might need to be scaled up */
468        rs->line_stipple_value = state->line_stipple_pattern;
469    }
470
471    if (state->flatshade) {
472        rs->color_control = R300_SHADE_MODEL_FLAT;
473    } else {
474        rs->color_control = R300_SHADE_MODEL_SMOOTH;
475    }
476
477    if (!state->flatshade_first) {
478        rs->color_control |= R300_GA_COLOR_CONTROL_PROVOKING_VERTEX_LAST;
479    }
480
481    return (void*)rs;
482}
483
484/* Bind rasterizer state. */
485static void r300_bind_rs_state(struct pipe_context* pipe, void* state)
486{
487    struct r300_context* r300 = r300_context(pipe);
488    struct r300_rs_state* rs = (struct r300_rs_state*)state;
489
490    if (r300->draw) {
491        draw_flush(r300->draw);
492        draw_set_rasterizer_state(r300->draw, &rs->rs);
493    }
494
495    r300->rs_state = rs;
496    /* XXX Clean these up when we move to atom emits */
497    r300->dirty_state |= R300_NEW_RASTERIZER;
498    r300->dirty_state |= R300_NEW_RS_BLOCK;
499    r300->dirty_state |= R300_NEW_SCISSOR;
500    r300->dirty_state |= R300_NEW_VIEWPORT;
501}
502
503/* Free rasterizer state. */
504static void r300_delete_rs_state(struct pipe_context* pipe, void* state)
505{
506    FREE(state);
507}
508
509static void*
510        r300_create_sampler_state(struct pipe_context* pipe,
511                                  const struct pipe_sampler_state* state)
512{
513    struct r300_context* r300 = r300_context(pipe);
514    struct r300_sampler_state* sampler = CALLOC_STRUCT(r300_sampler_state);
515    int lod_bias;
516
517    sampler->filter0 |=
518        (r300_translate_wrap(state->wrap_s) << R300_TX_WRAP_S_SHIFT) |
519        (r300_translate_wrap(state->wrap_t) << R300_TX_WRAP_T_SHIFT) |
520        (r300_translate_wrap(state->wrap_r) << R300_TX_WRAP_R_SHIFT);
521
522    sampler->filter0 |= r300_translate_tex_filters(state->min_img_filter,
523                                                   state->mag_img_filter,
524                                                   state->min_mip_filter);
525
526    lod_bias = CLAMP((int)(state->lod_bias * 32), -(1 << 9), (1 << 9) - 1);
527
528    sampler->filter1 |= lod_bias << R300_LOD_BIAS_SHIFT;
529
530    sampler->filter1 |= r300_anisotropy(state->max_anisotropy);
531
532    util_pack_color(state->border_color, PIPE_FORMAT_A8R8G8B8_UNORM,
533                    &sampler->border_color);
534
535    /* R500-specific fixups and optimizations */
536    if (r300_screen(r300->context.screen)->caps->is_r500) {
537        sampler->filter1 |= R500_BORDER_FIX;
538    }
539
540    return (void*)sampler;
541}
542
543static void r300_bind_sampler_states(struct pipe_context* pipe,
544                                     unsigned count,
545                                     void** states)
546{
547    struct r300_context* r300 = r300_context(pipe);
548    int i;
549
550    if (count > 8) {
551        return;
552    }
553
554    for (i = 0; i < count; i++) {
555        if (r300->sampler_states[i] != states[i]) {
556            r300->sampler_states[i] = (struct r300_sampler_state*)states[i];
557            r300->dirty_state |= (R300_NEW_SAMPLER << i);
558        }
559    }
560
561    r300->sampler_count = count;
562}
563
564static void r300_delete_sampler_state(struct pipe_context* pipe, void* state)
565{
566    FREE(state);
567}
568
569static void r300_set_sampler_textures(struct pipe_context* pipe,
570                                      unsigned count,
571                                      struct pipe_texture** texture)
572{
573    struct r300_context* r300 = r300_context(pipe);
574    int i;
575
576    /* XXX magic num */
577    if (count > 8) {
578        return;
579    }
580
581    r300->context.flush(&r300->context, 0, NULL);
582
583    for (i = 0; i < count; i++) {
584        if (r300->textures[i] != (struct r300_texture*)texture[i]) {
585            pipe_texture_reference((struct pipe_texture**)&r300->textures[i],
586                texture[i]);
587            r300->dirty_state |= (R300_NEW_TEXTURE << i);
588        }
589    }
590
591    for (i = count; i < 8; i++) {
592        if (r300->textures[i]) {
593            pipe_texture_reference((struct pipe_texture**)&r300->textures[i],
594                NULL);
595            r300->dirty_state |= (R300_NEW_TEXTURE << i);
596        }
597    }
598
599    r300->texture_count = count;
600}
601
602static void r300_set_scissor_state(struct pipe_context* pipe,
603                                   const struct pipe_scissor_state* state)
604{
605    struct r300_context* r300 = r300_context(pipe);
606
607    if (r300_screen(r300->context.screen)->caps->is_r500) {
608        r300->scissor_state->scissor_top_left =
609            (state->minx << R300_SCISSORS_X_SHIFT) |
610            (state->miny << R300_SCISSORS_Y_SHIFT);
611        r300->scissor_state->scissor_bottom_right =
612            ((state->maxx - 1) << R300_SCISSORS_X_SHIFT) |
613            ((state->maxy - 1) << R300_SCISSORS_Y_SHIFT);
614    } else {
615        /* Offset of 1440 in non-R500 chipsets. */
616        r300->scissor_state->scissor_top_left =
617            ((state->minx + 1440) << R300_SCISSORS_X_SHIFT) |
618            ((state->miny + 1440) << R300_SCISSORS_Y_SHIFT);
619        r300->scissor_state->scissor_bottom_right =
620            (((state->maxx - 1) + 1440) << R300_SCISSORS_X_SHIFT) |
621            (((state->maxy - 1) + 1440) << R300_SCISSORS_Y_SHIFT);
622    }
623
624    r300->dirty_state |= R300_NEW_SCISSOR;
625}
626
627static void r300_set_viewport_state(struct pipe_context* pipe,
628                                    const struct pipe_viewport_state* state)
629{
630    struct r300_context* r300 = r300_context(pipe);
631
632    /* Do the transform in HW. */
633    r300->viewport_state->vte_control = R300_VTX_W0_FMT;
634
635    if (state->scale[0] != 1.0f) {
636        r300->viewport_state->xscale = state->scale[0];
637        r300->viewport_state->vte_control |= R300_VPORT_X_SCALE_ENA;
638    }
639    if (state->scale[1] != 1.0f) {
640        r300->viewport_state->yscale = state->scale[1];
641        r300->viewport_state->vte_control |= R300_VPORT_Y_SCALE_ENA;
642    }
643    if (state->scale[2] != 1.0f) {
644        r300->viewport_state->zscale = state->scale[2];
645        r300->viewport_state->vte_control |= R300_VPORT_Z_SCALE_ENA;
646    }
647    if (state->translate[0] != 0.0f) {
648        r300->viewport_state->xoffset = state->translate[0];
649        r300->viewport_state->vte_control |= R300_VPORT_X_OFFSET_ENA;
650    }
651    if (state->translate[1] != 0.0f) {
652        r300->viewport_state->yoffset = state->translate[1];
653        r300->viewport_state->vte_control |= R300_VPORT_Y_OFFSET_ENA;
654    }
655    if (state->translate[2] != 0.0f) {
656        r300->viewport_state->zoffset = state->translate[2];
657        r300->viewport_state->vte_control |= R300_VPORT_Z_OFFSET_ENA;
658    }
659
660    r300->dirty_state |= R300_NEW_VIEWPORT;
661}
662
663static void r300_set_vertex_buffers(struct pipe_context* pipe,
664                                    unsigned count,
665                                    const struct pipe_vertex_buffer* buffers)
666{
667    struct r300_context* r300 = r300_context(pipe);
668
669    memcpy(r300->vertex_buffers, buffers,
670        sizeof(struct pipe_vertex_buffer) * count);
671
672    r300->vertex_buffer_count = count;
673
674    if (r300->draw) {
675        draw_flush(r300->draw);
676        draw_set_vertex_buffers(r300->draw, count, buffers);
677    }
678}
679
680static void r300_set_vertex_elements(struct pipe_context* pipe,
681                                    unsigned count,
682                                    const struct pipe_vertex_element* elements)
683{
684    struct r300_context* r300 = r300_context(pipe);
685
686    memcpy(r300->vertex_elements, elements,
687        sizeof(struct pipe_vertex_element) * count);
688
689    r300->vertex_element_count = count;
690
691    if (r300->draw) {
692        draw_flush(r300->draw);
693        draw_set_vertex_elements(r300->draw, count, elements);
694    }
695}
696
697static void* r300_create_vs_state(struct pipe_context* pipe,
698                                  const struct pipe_shader_state* shader)
699{
700    struct r300_context* r300 = r300_context(pipe);
701
702    if (r300_screen(pipe->screen)->caps->has_tcl) {
703        struct r300_vertex_shader* vs = CALLOC_STRUCT(r300_vertex_shader);
704        /* Copy state directly into shader. */
705        vs->state = *shader;
706        vs->state.tokens = tgsi_dup_tokens(shader->tokens);
707
708        tgsi_scan_shader(shader->tokens, &vs->info);
709
710        /* Appease Draw. */
711        vs->draw = draw_create_vertex_shader(r300->draw, shader);
712
713        return (void*)vs;
714    } else {
715        return draw_create_vertex_shader(r300->draw, shader);
716    }
717}
718
719static void r300_bind_vs_state(struct pipe_context* pipe, void* shader)
720{
721    struct r300_context* r300 = r300_context(pipe);
722
723    draw_flush(r300->draw);
724
725    if (r300_screen(pipe->screen)->caps->has_tcl) {
726        struct r300_vertex_shader* vs = (struct r300_vertex_shader*)shader;
727
728        if (vs == NULL) {
729            r300->vs = NULL;
730            return;
731        } else if (!vs->translated) {
732            r300_translate_vertex_shader(r300, vs);
733        }
734
735        draw_bind_vertex_shader(r300->draw, vs->draw);
736        r300->vs = vs;
737        r300->dirty_state |= R300_NEW_VERTEX_SHADER | R300_NEW_VERTEX_SHADER_CONSTANTS;
738    } else {
739        draw_bind_vertex_shader(r300->draw,
740                (struct draw_vertex_shader*)shader);
741    }
742}
743
744static void r300_delete_vs_state(struct pipe_context* pipe, void* shader)
745{
746    struct r300_context* r300 = r300_context(pipe);
747
748    if (r300_screen(pipe->screen)->caps->has_tcl) {
749        struct r300_vertex_shader* vs = (struct r300_vertex_shader*)shader;
750
751        rc_constants_destroy(&vs->code.constants);
752        draw_delete_vertex_shader(r300->draw, vs->draw);
753        FREE((void*)vs->state.tokens);
754        FREE(shader);
755    } else {
756        draw_delete_vertex_shader(r300->draw,
757                (struct draw_vertex_shader*)shader);
758    }
759}
760
761static void r300_set_constant_buffer(struct pipe_context *pipe,
762                                     uint shader, uint index,
763                                     const struct pipe_constant_buffer *buf)
764{
765    struct r300_context* r300 = r300_context(pipe);
766    void *mapped;
767
768    if (buf == NULL || buf->buffer->size == 0 ||
769        (mapped = pipe_buffer_map(pipe->screen, buf->buffer, PIPE_BUFFER_USAGE_CPU_READ)) == NULL)
770    {
771        r300->shader_constants[shader].count = 0;
772        return;
773    }
774
775    assert((buf->buffer->size % 4 * sizeof(float)) == 0);
776    memcpy(r300->shader_constants[shader].constants, mapped, buf->buffer->size);
777    r300->shader_constants[shader].count = buf->buffer->size / (4 * sizeof(float));
778    pipe_buffer_unmap(pipe->screen, buf->buffer);
779
780    if (shader == PIPE_SHADER_VERTEX)
781        r300->dirty_state |= R300_NEW_VERTEX_SHADER_CONSTANTS;
782    else if (shader == PIPE_SHADER_FRAGMENT)
783        r300->dirty_state |= R300_NEW_FRAGMENT_SHADER_CONSTANTS;
784}
785
786void r300_init_state_functions(struct r300_context* r300)
787{
788    r300->context.create_blend_state = r300_create_blend_state;
789    r300->context.bind_blend_state = r300_bind_blend_state;
790    r300->context.delete_blend_state = r300_delete_blend_state;
791
792    r300->context.set_blend_color = r300_set_blend_color;
793
794    r300->context.set_clip_state = r300_set_clip_state;
795
796    r300->context.set_constant_buffer = r300_set_constant_buffer;
797
798    r300->context.create_depth_stencil_alpha_state = r300_create_dsa_state;
799    r300->context.bind_depth_stencil_alpha_state = r300_bind_dsa_state;
800    r300->context.delete_depth_stencil_alpha_state = r300_delete_dsa_state;
801
802    r300->context.set_edgeflags = r300_set_edgeflags;
803
804    r300->context.set_framebuffer_state = r300_set_framebuffer_state;
805
806    r300->context.create_fs_state = r300_create_fs_state;
807    r300->context.bind_fs_state = r300_bind_fs_state;
808    r300->context.delete_fs_state = r300_delete_fs_state;
809
810    r300->context.set_polygon_stipple = r300_set_polygon_stipple;
811
812    r300->context.create_rasterizer_state = r300_create_rs_state;
813    r300->context.bind_rasterizer_state = r300_bind_rs_state;
814    r300->context.delete_rasterizer_state = r300_delete_rs_state;
815
816    r300->context.create_sampler_state = r300_create_sampler_state;
817    r300->context.bind_sampler_states = r300_bind_sampler_states;
818    r300->context.delete_sampler_state = r300_delete_sampler_state;
819
820    r300->context.set_sampler_textures = r300_set_sampler_textures;
821
822    r300->context.set_scissor_state = r300_set_scissor_state;
823
824    r300->context.set_viewport_state = r300_set_viewport_state;
825
826    r300->context.set_vertex_buffers = r300_set_vertex_buffers;
827    r300->context.set_vertex_elements = r300_set_vertex_elements;
828
829    r300->context.create_vs_state = r300_create_vs_state;
830    r300->context.bind_vs_state = r300_bind_vs_state;
831    r300->context.delete_vs_state = r300_delete_vs_state;
832}
833