Merge commit 'origin/gallium-0.1' into gallium-0.2
[mesa.git] / src / mesa / swrast_setup / ss_context.c
1 /*
2 * Mesa 3-D graphics library
3 * Version: 7.1
4 *
5 * Copyright (C) 1999-2007 Brian Paul All Rights Reserved.
6 *
7 * Permission is hereby granted, free of charge, to any person obtaining a
8 * copy of this software and associated documentation files (the "Software"),
9 * to deal in the Software without restriction, including without limitation
10 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
11 * and/or sell copies of the Software, and to permit persons to whom the
12 * Software is furnished to do so, subject to the following conditions:
13 *
14 * The above copyright notice and this permission notice shall be included
15 * in all copies or substantial portions of the Software.
16 *
17 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
18 * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
19 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
20 * BRIAN PAUL BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN
21 * AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
22 * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
23 *
24 * Authors:
25 * Keith Whitwell <keith@tungstengraphics.com>
26 */
27
28 #include "main/glheader.h"
29 #include "main/imports.h"
30 #include "main/colormac.h"
31 #include "tnl/tnl.h"
32 #include "tnl/t_context.h"
33 #include "tnl/t_pipeline.h"
34 #include "tnl/t_vertex.h"
35 #include "swrast_setup.h"
36 #include "ss_context.h"
37 #include "ss_triangle.h"
38
39
40 /* Need to check lighting state and vertex program state to know
41 * if two-sided lighting is in effect.
42 */
43 #define _SWSETUP_NEW_RENDERINDEX (_NEW_POLYGON|_NEW_LIGHT|_NEW_PROGRAM)
44
45
46 #define VARYING_EMIT_STYLE EMIT_4F
47
48
49 GLboolean
50 _swsetup_CreateContext( GLcontext *ctx )
51 {
52 SScontext *swsetup = (SScontext *)CALLOC(sizeof(SScontext));
53
54 if (!swsetup)
55 return GL_FALSE;
56
57 ctx->swsetup_context = swsetup;
58
59 swsetup->NewState = ~0;
60 _swsetup_trifuncs_init( ctx );
61
62 _tnl_init_vertices( ctx, ctx->Const.MaxArrayLockSize + 12,
63 sizeof(SWvertex) );
64
65
66 return GL_TRUE;
67 }
68
69 void
70 _swsetup_DestroyContext( GLcontext *ctx )
71 {
72 SScontext *swsetup = SWSETUP_CONTEXT(ctx);
73
74 if (swsetup) {
75 FREE(swsetup);
76 ctx->swsetup_context = 0;
77 }
78
79 _tnl_free_vertices( ctx );
80 }
81
82 static void
83 _swsetup_RenderPrimitive( GLcontext *ctx, GLenum mode )
84 {
85 SWSETUP_CONTEXT(ctx)->render_prim = mode;
86 _swrast_render_primitive( ctx, mode );
87 }
88
89
90 /**
91 * Helper macros for setup_vertex_format()
92 */
93 #define SWZ ((SWvertex *)0)
94 #define SWOffset(MEMBER) (((char *)&(SWZ->MEMBER)) - ((char *)SWZ))
95
96 #define EMIT_ATTR( ATTR, STYLE, MEMBER ) \
97 do { \
98 map[e].attrib = (ATTR); \
99 map[e].format = (STYLE); \
100 map[e].offset = SWOffset(MEMBER); \
101 e++; \
102 } while (0)
103
104
105 /**
106 * Tell the tnl module how to build SWvertex objects for swrast.
107 * We'll build the map[] array with that info and pass it to
108 * _tnl_install_attrs().
109 */
110 static void
111 setup_vertex_format(GLcontext *ctx)
112 {
113 TNLcontext *tnl = TNL_CONTEXT(ctx);
114 SScontext *swsetup = SWSETUP_CONTEXT(ctx);
115
116 if (!RENDERINPUTS_EQUAL(tnl->render_inputs_bitset,
117 swsetup->last_index_bitset)) {
118 DECLARE_RENDERINPUTS(index_bitset);
119 struct tnl_attr_map map[_TNL_ATTRIB_MAX];
120 int i, e = 0;
121
122 RENDERINPUTS_COPY( index_bitset, tnl->render_inputs_bitset );
123
124 EMIT_ATTR( _TNL_ATTRIB_POS, EMIT_4F_VIEWPORT, attrib[FRAG_ATTRIB_WPOS] );
125
126 if (RENDERINPUTS_TEST( index_bitset, _TNL_ATTRIB_COLOR0 )) {
127 swsetup->intColors = !ctx->FragmentProgram._Current
128 && !ctx->ATIFragmentShader._Enabled
129 && ctx->RenderMode == GL_RENDER
130 && CHAN_TYPE == GL_UNSIGNED_BYTE;
131 if (swsetup->intColors)
132 EMIT_ATTR( _TNL_ATTRIB_COLOR0, EMIT_4CHAN_4F_RGBA, color );
133 else
134 EMIT_ATTR( _TNL_ATTRIB_COLOR0, EMIT_4F, attrib[FRAG_ATTRIB_COL0]);
135 }
136
137 if (RENDERINPUTS_TEST( index_bitset, _TNL_ATTRIB_COLOR1 )) {
138 EMIT_ATTR( _TNL_ATTRIB_COLOR1, EMIT_4F, attrib[FRAG_ATTRIB_COL1]);
139 }
140
141 if (RENDERINPUTS_TEST( index_bitset, _TNL_ATTRIB_COLOR_INDEX )) {
142 EMIT_ATTR( _TNL_ATTRIB_COLOR_INDEX, EMIT_1F,
143 attrib[FRAG_ATTRIB_CI][0] );
144 }
145
146 if (RENDERINPUTS_TEST( index_bitset, _TNL_ATTRIB_FOG )) {
147 const GLint emit = ctx->FragmentProgram._Current ? EMIT_4F : EMIT_1F;
148 EMIT_ATTR( _TNL_ATTRIB_FOG, emit, attrib[FRAG_ATTRIB_FOGC]);
149 }
150
151 if (RENDERINPUTS_TEST_RANGE(index_bitset, _TNL_FIRST_TEX, _TNL_LAST_TEX))
152 {
153 for (i = 0; i < MAX_TEXTURE_COORD_UNITS; i++) {
154 if (RENDERINPUTS_TEST( index_bitset, _TNL_ATTRIB_TEX(i) )) {
155 EMIT_ATTR( _TNL_ATTRIB_TEX(i), EMIT_4F,
156 attrib[FRAG_ATTRIB_TEX0 + i] );
157 }
158 }
159 }
160
161 /* shader varying vars */
162 if (RENDERINPUTS_TEST_RANGE( index_bitset,
163 _TNL_FIRST_GENERIC, _TNL_LAST_GENERIC )) {
164 for (i = 0; i < ctx->Const.MaxVarying; i++) {
165 if (RENDERINPUTS_TEST( index_bitset, _TNL_ATTRIB_GENERIC(i) )) {
166 EMIT_ATTR( _TNL_ATTRIB_GENERIC(i), VARYING_EMIT_STYLE,
167 attrib[FRAG_ATTRIB_VAR0 + i] );
168 }
169 }
170 }
171
172 if (RENDERINPUTS_TEST( index_bitset, _TNL_ATTRIB_POINTSIZE ))
173 EMIT_ATTR( _TNL_ATTRIB_POINTSIZE, EMIT_1F, pointSize );
174
175 _tnl_install_attrs( ctx, map, e,
176 ctx->Viewport._WindowMap.m,
177 sizeof(SWvertex) );
178
179 RENDERINPUTS_COPY( swsetup->last_index_bitset, index_bitset );
180 }
181 }
182
183
184 /**
185 * Prepare to render a vertex buffer.
186 * Called via tnl->Driver.Render.Start.
187 */
188 static void
189 _swsetup_RenderStart( GLcontext *ctx )
190 {
191 SScontext *swsetup = SWSETUP_CONTEXT(ctx);
192 TNLcontext *tnl = TNL_CONTEXT(ctx);
193 struct vertex_buffer *VB = &tnl->vb;
194
195 if (swsetup->NewState & _SWSETUP_NEW_RENDERINDEX) {
196 _swsetup_choose_trifuncs(ctx);
197 }
198
199 if (swsetup->NewState & _NEW_PROGRAM) {
200 RENDERINPUTS_ZERO( swsetup->last_index_bitset );
201 }
202
203 swsetup->NewState = 0;
204
205 /* This will change if drawing unfilled tris */
206 _swrast_SetFacing(ctx, 0);
207
208 _swrast_render_start(ctx);
209
210 /* Important */
211 VB->AttribPtr[VERT_ATTRIB_POS] = VB->NdcPtr;
212
213 setup_vertex_format(ctx);
214 }
215
216
217 /*
218 * We patch this function into tnl->Driver.Render.Finish.
219 * It's called when we finish rendering a vertex buffer.
220 */
221 static void
222 _swsetup_RenderFinish( GLcontext *ctx )
223 {
224 _swrast_render_finish( ctx );
225 }
226
227 void
228 _swsetup_InvalidateState( GLcontext *ctx, GLuint new_state )
229 {
230 SScontext *swsetup = SWSETUP_CONTEXT(ctx);
231 swsetup->NewState |= new_state;
232 _tnl_invalidate_vertex_state( ctx, new_state );
233 }
234
235
236 void
237 _swsetup_Wakeup( GLcontext *ctx )
238 {
239 TNLcontext *tnl = TNL_CONTEXT(ctx);
240 SScontext *swsetup = SWSETUP_CONTEXT(ctx);
241
242 tnl->Driver.Render.Start = _swsetup_RenderStart;
243 tnl->Driver.Render.Finish = _swsetup_RenderFinish;
244 tnl->Driver.Render.PrimitiveNotify = _swsetup_RenderPrimitive;
245 tnl->Driver.Render.Interp = _tnl_interp;
246 tnl->Driver.Render.CopyPV = _tnl_copy_pv;
247 tnl->Driver.Render.ClippedPolygon = _tnl_RenderClippedPolygon; /* new */
248 tnl->Driver.Render.ClippedLine = _tnl_RenderClippedLine; /* new */
249 /* points */
250 /* line */
251 /* triangle */
252 /* quad */
253 tnl->Driver.Render.PrimTabVerts = _tnl_render_tab_verts;
254 tnl->Driver.Render.PrimTabElts = _tnl_render_tab_elts;
255 tnl->Driver.Render.ResetLineStipple = _swrast_ResetLineStipple;
256 tnl->Driver.Render.BuildVertices = _tnl_build_vertices;
257 tnl->Driver.Render.Multipass = 0;
258
259 _tnl_invalidate_vertices( ctx, ~0 );
260 _tnl_need_projected_coords( ctx, GL_TRUE );
261 _swsetup_InvalidateState( ctx, ~0 );
262
263 swsetup->verts = (SWvertex *)tnl->clipspace.vertex_buf;
264 RENDERINPUTS_ZERO( swsetup->last_index_bitset );
265 }
266
267
268 /**
269 * Populate a swrast SWvertex from an attrib-style vertex.
270 */
271 void
272 _swsetup_Translate( GLcontext *ctx, const void *vertex, SWvertex *dest )
273 {
274 const GLfloat *m = ctx->Viewport._WindowMap.m;
275 GLfloat tmp[4];
276 GLuint i;
277
278 _tnl_get_attr( ctx, vertex, _TNL_ATTRIB_POS, tmp );
279
280 dest->attrib[FRAG_ATTRIB_WPOS][0] = m[0] * tmp[0] + m[12];
281 dest->attrib[FRAG_ATTRIB_WPOS][1] = m[5] * tmp[1] + m[13];
282 dest->attrib[FRAG_ATTRIB_WPOS][2] = m[10] * tmp[2] + m[14];
283 dest->attrib[FRAG_ATTRIB_WPOS][3] = tmp[3];
284
285 /** XXX try to limit these loops someday */
286 for (i = 0 ; i < ctx->Const.MaxTextureCoordUnits ; i++)
287 _tnl_get_attr( ctx, vertex, _TNL_ATTRIB_TEX0 + i,
288 dest->attrib[FRAG_ATTRIB_TEX0 + i] );
289
290 for (i = 0 ; i < ctx->Const.MaxVarying ; i++)
291 _tnl_get_attr( ctx, vertex, _TNL_ATTRIB_GENERIC0 + i,
292 dest->attrib[FRAG_ATTRIB_VAR0 + i] );
293
294 if (ctx->Visual.rgbMode) {
295 _tnl_get_attr( ctx, vertex, _TNL_ATTRIB_COLOR0,
296 dest->attrib[FRAG_ATTRIB_COL0] );
297 UNCLAMPED_FLOAT_TO_RGBA_CHAN( dest->color, tmp );
298
299 _tnl_get_attr( ctx, vertex, _TNL_ATTRIB_COLOR1,
300 dest->attrib[FRAG_ATTRIB_COL1]);
301 }
302 else {
303 _tnl_get_attr( ctx, vertex, _TNL_ATTRIB_COLOR_INDEX, tmp );
304 dest->attrib[FRAG_ATTRIB_CI][0] = tmp[0];
305 }
306
307 _tnl_get_attr( ctx, vertex, _TNL_ATTRIB_FOG, tmp );
308 dest->attrib[FRAG_ATTRIB_FOGC][0] = tmp[0];
309
310 /* XXX See _tnl_get_attr about pointsize ... */
311 _tnl_get_attr( ctx, vertex, _TNL_ATTRIB_POINTSIZE, tmp );
312 dest->pointSize = tmp[0];
313 }
314