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56 | pj | 1 | /* $Id: t_imm_fixup.c,v 1.1 2003-02-28 11:48:07 pj Exp $ */ |
2 | |||
3 | /* |
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4 | * Mesa 3-D graphics library |
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5 | * Version: 4.1 |
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6 | * |
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7 | * Copyright (C) 1999-2002 Brian Paul All Rights Reserved. |
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8 | * |
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9 | * Permission is hereby granted, free of charge, to any person obtaining a |
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10 | * copy of this software and associated documentation files (the "Software"), |
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11 | * to deal in the Software without restriction, including without limitation |
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12 | * the rights to use, copy, modify, merge, publish, distribute, sublicense, |
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13 | * and/or sell copies of the Software, and to permit persons to whom the |
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14 | * Software is furnished to do so, subject to the following conditions: |
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15 | * |
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16 | * The above copyright notice and this permission notice shall be included |
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17 | * in all copies or substantial portions of the Software. |
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18 | * |
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19 | * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS |
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20 | * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, |
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21 | * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL |
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22 | * BRIAN PAUL BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN |
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23 | * AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN |
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24 | * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. |
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25 | */ |
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26 | |||
27 | /* |
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28 | * Authors: |
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29 | * Keith Whitwell <keith@tungstengraphics.com> |
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30 | */ |
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31 | |||
32 | |||
33 | #include "glheader.h" |
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34 | #include "context.h" |
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35 | #include "enums.h" |
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36 | #include "dlist.h" |
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37 | #include "colormac.h" |
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38 | #include "light.h" |
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39 | #include "macros.h" |
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40 | #include "imports.h" |
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41 | #include "mmath.h" |
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42 | #include "state.h" |
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43 | #include "mtypes.h" |
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44 | |||
45 | #include "math/m_matrix.h" |
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46 | #include "math/m_xform.h" |
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47 | |||
48 | #include "t_context.h" |
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49 | #include "t_imm_alloc.h" |
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50 | #include "t_imm_debug.h" |
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51 | #include "t_imm_elt.h" |
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52 | #include "t_imm_fixup.h" |
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53 | #include "t_imm_exec.h" |
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54 | #include "t_pipeline.h" |
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55 | |||
56 | |||
57 | static const GLuint increment[GL_POLYGON+2] = { 1,2,1,1,3,1,1,4,2,1,1 }; |
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58 | static const GLuint intro[GL_POLYGON+2] = { 0,0,2,2,0,2,2,0,2,2,0 }; |
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59 | |||
60 | void |
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61 | _tnl_fixup_4f( GLfloat data[][4], GLuint flag[], GLuint start, GLuint match ) |
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62 | { |
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63 | GLuint i = start; |
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64 | |||
65 | for (;;) { |
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66 | if ((flag[++i] & match) == 0) { |
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67 | COPY_4FV(data[i], data[i-1]); |
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68 | if (flag[i] & VERT_BIT_END_VB) break; |
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69 | } |
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70 | } |
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71 | } |
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72 | |||
73 | void |
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74 | _tnl_fixup_3f( float data[][3], GLuint flag[], GLuint start, GLuint match ) |
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75 | { |
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76 | GLuint i = start; |
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77 | |||
78 | |||
79 | for (;;) { |
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80 | if ((flag[++i] & match) == 0) { |
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81 | /* _mesa_debug(NULL, "_tnl_fixup_3f copy to %p values %f %f %f\n", */ |
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82 | /* data[i], */ |
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83 | /* data[i-1][0], */ |
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84 | /* data[i-1][1], */ |
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85 | /* data[i-1][2]); */ |
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86 | COPY_3V(data[i], data[i-1]); |
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87 | if (flag[i] & VERT_BIT_END_VB) break; |
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88 | } |
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89 | } |
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90 | } |
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91 | |||
92 | |||
93 | void |
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94 | _tnl_fixup_1ui( GLuint *data, GLuint flag[], GLuint start, GLuint match ) |
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95 | { |
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96 | GLuint i = start; |
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97 | |||
98 | for (;;) { |
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99 | if ((flag[++i] & match) == 0) { |
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100 | data[i] = data[i-1]; |
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101 | if (flag[i] & VERT_BIT_END_VB) break; |
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102 | } |
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103 | } |
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104 | flag[i] |= match; |
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105 | } |
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106 | |||
107 | |||
108 | void |
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109 | _tnl_fixup_1f( GLfloat *data, GLuint flag[], GLuint start, GLuint match ) |
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110 | { |
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111 | GLuint i = start; |
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112 | |||
113 | for (;;) { |
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114 | if ((flag[++i] & match) == 0) { |
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115 | data[i] = data[i-1]; |
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116 | if (flag[i] & VERT_BIT_END_VB) break; |
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117 | } |
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118 | } |
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119 | flag[i] |= match; |
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120 | } |
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121 | |||
122 | void |
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123 | _tnl_fixup_1ub( GLubyte *data, GLuint flag[], GLuint start, GLuint match ) |
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124 | { |
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125 | GLuint i = start; |
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126 | |||
127 | for (;;) { |
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128 | if ((flag[++i] & match) == 0) { |
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129 | data[i] = data[i-1]; |
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130 | if (flag[i] & VERT_BIT_END_VB) break; |
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131 | } |
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132 | } |
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133 | flag[i] |= match; |
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134 | } |
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135 | |||
136 | |||
137 | static void |
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138 | fixup_first_4f( GLfloat data[][4], GLuint flag[], GLuint match, |
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139 | GLuint start, GLfloat *dflt ) |
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140 | { |
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141 | GLuint i = start-1; |
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142 | match |= VERT_BIT_END_VB; |
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143 | |||
144 | while ((flag[++i]&match) == 0) |
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145 | COPY_4FV(data[i], dflt); |
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146 | } |
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147 | |||
148 | #if 0 |
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149 | static void |
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150 | fixup_first_3f( GLfloat data[][3], GLuint flag[], GLuint match, |
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151 | GLuint start, GLfloat *dflt ) |
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152 | { |
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153 | GLuint i = start-1; |
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154 | match |= VERT_BIT_END_VB; |
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155 | |||
156 | /* _mesa_debug(NULL, "fixup_first_3f default: %f %f %f start: %d\n", */ |
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157 | /* dflt[0], dflt[1], dflt[2], start); */ |
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158 | |||
159 | while ((flag[++i]&match) == 0) |
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160 | COPY_3FV(data[i], dflt); |
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161 | } |
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162 | #endif |
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163 | |||
164 | static void |
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165 | fixup_first_1ui( GLuint data[], GLuint flag[], GLuint match, |
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166 | GLuint start, GLuint dflt ) |
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167 | { |
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168 | GLuint i = start-1; |
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169 | match |= VERT_BIT_END_VB; |
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170 | |||
171 | while ((flag[++i]&match) == 0) |
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172 | data[i] = dflt; |
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173 | } |
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174 | |||
175 | #if 00 |
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176 | static void |
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177 | fixup_first_1f( GLfloat data[], GLuint flag[], GLuint match, |
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178 | GLuint start, GLfloat dflt ) |
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179 | { |
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180 | GLuint i = start-1; |
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181 | match |= VERT_BIT_END_VB; |
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182 | |||
183 | while ((flag[++i]&match) == 0) |
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184 | data[i] = dflt; |
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185 | } |
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186 | #endif |
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187 | |||
188 | static void |
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189 | fixup_first_1ub( GLubyte data[], GLuint flag[], GLuint match, |
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190 | GLuint start, GLubyte dflt ) |
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191 | { |
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192 | GLuint i = start-1; |
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193 | match |= VERT_BIT_END_VB; |
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194 | |||
195 | while ((flag[++i]&match) == 0) |
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196 | data[i] = dflt; |
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197 | } |
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198 | |||
199 | /* |
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200 | * Copy vertex attributes from the ctx->Current group into the immediate |
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201 | * struct at the given position according to copyMask. |
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202 | */ |
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203 | static void copy_from_current( GLcontext *ctx, struct immediate *IM, |
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204 | GLuint pos, GLuint copyMask ) |
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205 | { |
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206 | GLuint attrib, attribBit; |
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207 | |||
208 | if (MESA_VERBOSE&VERBOSE_IMMEDIATE) |
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209 | _tnl_print_vert_flags("copy from current", copyMask); |
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210 | |||
211 | #if 0 |
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212 | if (copyMask & VERT_BIT_NORMAL) { |
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213 | COPY_4V(IM->Attrib[VERT_ATTRIB_NORMAL][pos], |
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214 | ctx->Current.Attrib[VERT_ATTRIB_NORMAL]); |
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215 | } |
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216 | |||
217 | if (copyMask & VERT_BIT_COLOR0) { |
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218 | COPY_4FV( IM->Attrib[VERT_ATTRIB_COLOR0][pos], |
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219 | ctx->Current.Attrib[VERT_ATTRIB_COLOR0]); |
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220 | } |
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221 | |||
222 | if (copyMask & VERT_BIT_COLOR1) |
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223 | COPY_4FV( IM->Attrib[VERT_ATTRIB_COLOR1][pos], |
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224 | ctx->Current.Attrib[VERT_ATTRIB_COLOR1]); |
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225 | |||
226 | if (copyMask & VERT_BIT_FOG) |
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227 | IM->Attrib[VERT_ATTRIB_FOG][pos][0] = ctx->Current.Attrib[VERT_ATTRIB_FOG][0]; |
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228 | |||
229 | if (copyMask & VERT_BITS_TEX_ANY) { |
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230 | GLuint i; |
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231 | for (i = 0 ; i < ctx->Const.MaxTextureUnits ; i++) { |
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232 | if (copyMask & VERT_BIT_TEX(i)) |
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233 | COPY_4FV(IM->Attrib[VERT_ATTRIB_TEX0 + i][pos], |
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234 | ctx->Current.Attrib[VERT_ATTRIB_TEX0 + i]); |
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235 | } |
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236 | } |
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237 | #else |
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238 | for (attrib = 0, attribBit = 1; attrib < 16; attrib++, attribBit <<= 1) { |
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239 | if (copyMask & attribBit) { |
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240 | COPY_4FV( IM->Attrib[attrib][pos], ctx->Current.Attrib[attrib]); |
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241 | } |
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242 | } |
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243 | #endif |
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244 | |||
245 | if (copyMask & VERT_BIT_INDEX) |
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246 | IM->Index[pos] = ctx->Current.Index; |
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247 | |||
248 | if (copyMask & VERT_BIT_EDGEFLAG) |
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249 | IM->EdgeFlag[pos] = ctx->Current.EdgeFlag; |
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250 | } |
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251 | |||
252 | |||
253 | void _tnl_fixup_input( GLcontext *ctx, struct immediate *IM ) |
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254 | { |
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255 | TNLcontext *tnl = TNL_CONTEXT(ctx); |
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256 | GLuint start = IM->CopyStart; |
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257 | GLuint andflag = IM->CopyAndFlag; |
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258 | GLuint orflag = IM->CopyOrFlag | IM->Evaluated; |
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259 | GLuint fixup; |
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260 | |||
261 | IM->CopyTexSize = IM->TexSize; |
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262 | |||
263 | /* _mesa_debug(ctx, "Fixup input, Start: %u Count: %u LastData: %u\n", */ |
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264 | /* IM->Start, IM->Count, IM->LastData); */ |
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265 | /* _tnl_print_vert_flags("Orflag", orflag); */ |
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266 | /* _tnl_print_vert_flags("Andflag", andflag); */ |
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267 | |||
268 | |||
269 | fixup = ~andflag & VERT_BITS_FIXUP; |
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270 | |||
271 | if (!ctx->CompileFlag) |
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272 | fixup &= tnl->pipeline.inputs; |
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273 | |||
274 | if (!ctx->ExecuteFlag) |
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275 | fixup &= orflag; |
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276 | |||
277 | if ((orflag & (VERT_BIT_POS|VERT_BITS_EVAL_ANY)) == 0) |
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278 | fixup = 0; |
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279 | |||
280 | if (fixup) { |
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281 | GLuint copy = fixup & ~IM->Flag[start]; |
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282 | |||
283 | |||
284 | /* Equivalent to a lazy copy-from-current when setting up the |
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285 | * immediate. |
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286 | */ |
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287 | if (ctx->ExecuteFlag && copy) |
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288 | copy_from_current( ctx, IM, start, copy ); |
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289 | |||
290 | if (MESA_VERBOSE&VERBOSE_IMMEDIATE) |
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291 | _tnl_print_vert_flags("fixup", fixup); |
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292 | |||
293 | /* XXX replace these conditionals with a loop over the 16 |
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294 | * vertex attributes. |
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295 | */ |
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296 | |||
297 | if (fixup & VERT_BITS_TEX_ANY) { |
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298 | GLuint i; |
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299 | for (i = 0 ; i < ctx->Const.MaxTextureUnits ; i++) { |
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300 | if (fixup & VERT_BIT_TEX(i)) { |
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301 | if (orflag & VERT_BIT_TEX(i)) |
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302 | _tnl_fixup_4f( IM->Attrib[VERT_ATTRIB_TEX0 + i], IM->Flag, |
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303 | start, VERT_BIT_TEX(i) ); |
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304 | else |
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305 | fixup_first_4f( IM->Attrib[VERT_ATTRIB_TEX0 + i], IM->Flag, |
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306 | VERT_BIT_END_VB, start, |
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307 | IM->Attrib[VERT_ATTRIB_TEX0 + i][start]); |
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308 | } |
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309 | } |
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310 | } |
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311 | |||
312 | |||
313 | if (fixup & VERT_BIT_EDGEFLAG) { |
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314 | if (orflag & VERT_BIT_EDGEFLAG) |
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315 | _tnl_fixup_1ub( IM->EdgeFlag, IM->Flag, start, VERT_BIT_EDGEFLAG ); |
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316 | else |
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317 | fixup_first_1ub( IM->EdgeFlag, IM->Flag, VERT_BIT_END_VB, start, |
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318 | IM->EdgeFlag[start] ); |
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319 | } |
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320 | |||
321 | if (fixup & VERT_BIT_INDEX) { |
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322 | if (orflag & VERT_BIT_INDEX) |
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323 | _tnl_fixup_1ui( IM->Index, IM->Flag, start, VERT_BIT_INDEX ); |
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324 | else |
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325 | fixup_first_1ui( IM->Index, IM->Flag, VERT_BIT_END_VB, start, |
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326 | IM->Index[start] ); |
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327 | } |
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328 | |||
329 | if (fixup & VERT_BIT_COLOR0) { |
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330 | if (orflag & VERT_BIT_COLOR0) |
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331 | _tnl_fixup_4f( IM->Attrib[VERT_ATTRIB_COLOR0], IM->Flag, start, |
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332 | VERT_BIT_COLOR0 ); |
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333 | /* No need for else case as the drivers understand stride |
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334 | * zero here. (TODO - propogate this) |
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335 | */ |
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336 | } |
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337 | |||
338 | if (fixup & VERT_BIT_COLOR1) { |
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339 | if (orflag & VERT_BIT_COLOR1) |
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340 | _tnl_fixup_4f( IM->Attrib[VERT_ATTRIB_COLOR1], IM->Flag, start, |
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341 | VERT_BIT_COLOR1 ); |
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342 | else |
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343 | fixup_first_4f( IM->Attrib[VERT_ATTRIB_COLOR1], IM->Flag, VERT_BIT_END_VB, start, |
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344 | IM->Attrib[VERT_ATTRIB_COLOR1][start] ); |
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345 | } |
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346 | |||
347 | if (fixup & VERT_BIT_FOG) { |
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348 | if (orflag & VERT_BIT_FOG) |
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349 | _tnl_fixup_4f( IM->Attrib[VERT_ATTRIB_FOG], IM->Flag, |
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350 | start, VERT_BIT_FOG ); |
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351 | else |
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352 | fixup_first_4f( IM->Attrib[VERT_ATTRIB_FOG], IM->Flag, VERT_BIT_END_VB, |
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353 | start, IM->Attrib[VERT_ATTRIB_FOG][start] ); |
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354 | } |
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355 | |||
356 | if (fixup & VERT_BIT_NORMAL) { |
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357 | if (orflag & VERT_BIT_NORMAL) |
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358 | _tnl_fixup_4f( IM->Attrib[VERT_ATTRIB_NORMAL], IM->Flag, start, |
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359 | VERT_BIT_NORMAL ); |
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360 | else |
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361 | fixup_first_4f( IM->Attrib[VERT_ATTRIB_NORMAL], IM->Flag, |
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362 | VERT_BIT_END_VB, start, |
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363 | IM->Attrib[VERT_ATTRIB_NORMAL][start] ); |
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364 | } |
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365 | } |
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366 | |||
367 | /* Prune possible half-filled slot. |
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368 | */ |
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369 | IM->Flag[IM->LastData+1] &= ~VERT_BIT_END_VB; |
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370 | IM->Flag[IM->Count] |= VERT_BIT_END_VB; |
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371 | |||
372 | |||
373 | /* Materials: |
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374 | */ |
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375 | if (IM->MaterialOrMask & ~IM->MaterialAndMask) { |
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376 | GLuint vulnerable = IM->MaterialOrMask; |
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377 | GLuint i = IM->Start; |
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378 | |||
379 | do { |
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380 | while (!(IM->Flag[i] & VERT_BIT_MATERIAL)) |
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381 | i++; |
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382 | |||
383 | vulnerable &= ~IM->MaterialMask[i]; |
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384 | _mesa_copy_material_pairs( IM->Material[i], |
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385 | ctx->Light.Material, |
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386 | vulnerable ); |
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387 | |||
388 | |||
389 | ++i; |
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390 | } while (vulnerable); |
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391 | } |
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392 | } |
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393 | |||
394 | |||
395 | static void |
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396 | copy_material( struct immediate *next, |
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397 | struct immediate *prev, |
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398 | GLuint dst, GLuint src ) |
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399 | { |
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400 | /* _mesa_debug(NULL, "%s\n", __FUNCTION__); */ |
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401 | |||
402 | if (next->Material == 0) { |
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403 | next->Material = (struct gl_material (*)[2]) |
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404 | MALLOC( sizeof(struct gl_material) * IMM_SIZE * 2 ); |
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405 | next->MaterialMask = (GLuint *) MALLOC( sizeof(GLuint) * IMM_SIZE ); |
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406 | } |
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407 | |||
408 | next->MaterialMask[dst] = prev->MaterialOrMask; |
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409 | MEMCPY(next->Material[dst], prev->Material[src], |
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410 | 2 * sizeof(struct gl_material)); |
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411 | } |
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412 | |||
413 | |||
414 | |||
415 | static GLboolean is_fan_like[GL_POLYGON+1] = { |
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416 | GL_FALSE, |
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417 | GL_FALSE, |
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418 | GL_TRUE, /* line loop */ |
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419 | GL_FALSE, |
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420 | GL_FALSE, |
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421 | GL_FALSE, |
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422 | GL_TRUE, /* tri fan */ |
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423 | GL_FALSE, |
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424 | GL_FALSE, |
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425 | GL_TRUE /* polygon */ |
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426 | }; |
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427 | |||
428 | |||
429 | /* Copy the untransformed data from the shared vertices of a primitive |
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430 | * that wraps over two immediate structs. This is done prior to |
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431 | * set_immediate so that prev and next may point to the same |
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432 | * structure. In general it's difficult to avoid this copy on long |
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433 | * primitives. |
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434 | * |
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435 | * Have to be careful with the transitions between display list |
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436 | * replay, compile and normal execute modes. |
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437 | */ |
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438 | void _tnl_copy_immediate_vertices( GLcontext *ctx, struct immediate *next ) |
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439 | { |
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440 | TNLcontext *tnl = TNL_CONTEXT(ctx); |
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441 | struct immediate *prev = tnl->ExecCopySource; |
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442 | struct vertex_arrays *inputs = &tnl->imm_inputs; |
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443 | GLuint count = tnl->ExecCopyCount; |
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444 | GLuint *elts = tnl->ExecCopyElts; |
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445 | GLuint offset = IMM_MAX_COPIED_VERTS - count; |
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446 | GLuint i; |
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447 | |||
448 | if (!prev) { |
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449 | ASSERT(tnl->ExecCopyCount == 0); |
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450 | return; |
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451 | } |
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452 | |||
453 | next->CopyStart = next->Start - count; |
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454 | |||
455 | if ((prev->CopyOrFlag & VERT_BITS_DATA) == VERT_BIT_ELT && |
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456 | ctx->Array.LockCount && |
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457 | ctx->Array.Vertex.Enabled) |
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458 | { |
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459 | /* Copy Elt values only |
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460 | */ |
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461 | for (i = 0 ; i < count ; i++) |
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462 | { |
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463 | GLuint src = elts[i+offset]; |
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464 | GLuint dst = next->CopyStart+i; |
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465 | next->Elt[dst] = prev->Elt[src]; |
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466 | next->Flag[dst] = VERT_BIT_ELT; |
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467 | elts[i+offset] = dst; |
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468 | } |
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469 | /* _mesa_debug(ctx, "ADDING VERT_BIT_ELT!\n"); */ |
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470 | next->CopyOrFlag |= VERT_BIT_ELT; |
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471 | next->CopyAndFlag &= VERT_BIT_ELT; |
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472 | } |
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473 | else { |
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474 | GLuint copy = tnl->pipeline.inputs & (prev->CopyOrFlag|prev->Evaluated); |
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475 | GLuint flag; |
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476 | |||
477 | if (is_fan_like[ctx->Driver.CurrentExecPrimitive]) { |
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478 | flag = ((prev->CopyOrFlag|prev->Evaluated) & VERT_BITS_FIXUP); |
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479 | next->CopyOrFlag |= flag; |
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480 | } |
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481 | else { |
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482 | /* Don't let an early 'glColor', etc. poison the elt path. |
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483 | */ |
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484 | flag = ((prev->OrFlag|prev->Evaluated) & VERT_BITS_FIXUP); |
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485 | } |
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486 | |||
487 | next->TexSize |= tnl->ExecCopyTexSize; |
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488 | next->CopyAndFlag &= flag; |
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489 | |||
490 | |||
491 | /* _tnl_print_vert_flags("copy vertex components", copy); */ |
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492 | /* _tnl_print_vert_flags("prev copyorflag", prev->CopyOrFlag); */ |
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493 | /* _tnl_print_vert_flags("flag", flag); */ |
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494 | |||
495 | /* Copy whole vertices |
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496 | */ |
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497 | for (i = 0 ; i < count ; i++) |
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498 | { |
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499 | GLuint src = elts[i+offset]; |
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500 | GLuint isrc = src - prev->CopyStart; |
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501 | GLuint dst = next->CopyStart+i; |
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502 | |||
503 | /* Values subject to eval must be copied out of the 'inputs' |
||
504 | * struct. (Copied rows should not be evaluated twice). |
||
505 | * |
||
506 | * Note these pointers are null when inactive. |
||
507 | */ |
||
508 | COPY_4FV( next->Attrib[VERT_ATTRIB_POS][dst], |
||
509 | inputs->Obj.data[isrc] ); |
||
510 | |||
511 | if (copy & VERT_BIT_NORMAL) { |
||
512 | /* _mesa_debug(ctx, "copy vert norm %d to %d (%p): %f %f %f\n", */ |
||
513 | /* isrc, dst, */ |
||
514 | /* next->Normal[dst], */ |
||
515 | /* inputs->Normal.data[isrc][0], */ |
||
516 | /* inputs->Normal.data[isrc][1], */ |
||
517 | /* inputs->Normal.data[isrc][2]); */ |
||
518 | COPY_3FV( next->Attrib[VERT_ATTRIB_NORMAL][dst], inputs->Normal.data[isrc] ); |
||
519 | } |
||
520 | |||
521 | if (copy & VERT_BIT_COLOR0) |
||
522 | COPY_4FV( next->Attrib[VERT_ATTRIB_COLOR0][dst], |
||
523 | ((GLfloat (*)[4])inputs->Color.Ptr)[isrc] ); |
||
524 | |||
525 | if (copy & VERT_BIT_INDEX) |
||
526 | next->Index[dst] = inputs->Index.data[isrc]; |
||
527 | |||
528 | if (copy & VERT_BITS_TEX_ANY) { |
||
529 | GLuint i; |
||
530 | for (i = 0 ; i < prev->MaxTextureUnits ; i++) { |
||
531 | if (copy & VERT_BIT_TEX(i)) |
||
532 | COPY_4FV( next->Attrib[VERT_ATTRIB_TEX0 + i][dst], |
||
533 | inputs->TexCoord[i].data[isrc] ); |
||
534 | } |
||
535 | } |
||
536 | |||
537 | /* Remaining values should be the same in the 'input' struct and the |
||
538 | * original immediate. |
||
539 | */ |
||
540 | if (copy & (VERT_BIT_ELT|VERT_BIT_EDGEFLAG|VERT_BIT_COLOR1|VERT_BIT_FOG| |
||
541 | VERT_BIT_MATERIAL)) { |
||
542 | |||
543 | if (prev->Flag[src] & VERT_BIT_MATERIAL) |
||
544 | copy_material(next, prev, dst, src); |
||
545 | |||
546 | next->Elt[dst] = prev->Elt[src]; |
||
547 | next->EdgeFlag[dst] = prev->EdgeFlag[src]; |
||
548 | COPY_4FV( next->Attrib[VERT_ATTRIB_COLOR1][dst], |
||
549 | prev->Attrib[VERT_ATTRIB_COLOR1][src] ); |
||
550 | COPY_4FV( next->Attrib[VERT_ATTRIB_FOG][dst], |
||
551 | prev->Attrib[VERT_ATTRIB_FOG][src] ); |
||
552 | } |
||
553 | |||
554 | next->Flag[dst] = flag; |
||
555 | next->CopyOrFlag |= prev->Flag[src] & (VERT_BITS_FIXUP| |
||
556 | VERT_BIT_MATERIAL| |
||
557 | VERT_BIT_POS); |
||
558 | elts[i+offset] = dst; |
||
559 | } |
||
560 | } |
||
561 | |||
562 | if (--tnl->ExecCopySource->ref_count == 0) |
||
563 | _tnl_free_immediate( ctx, tnl->ExecCopySource ); |
||
564 | |||
565 | tnl->ExecCopySource = next; next->ref_count++; |
||
566 | } |
||
567 | |||
568 | |||
569 | |||
570 | /* Revive a compiled immediate struct - propogate new 'Current' |
||
571 | * values. Often this is redundant because the current values were |
||
572 | * known and fixed up at compile time (or in the first execution of |
||
573 | * the cassette). |
||
574 | */ |
||
575 | void _tnl_fixup_compiled_cassette( GLcontext *ctx, struct immediate *IM ) |
||
576 | { |
||
577 | TNLcontext *tnl = TNL_CONTEXT(ctx); |
||
578 | GLuint fixup; |
||
579 | GLuint start = IM->Start; |
||
580 | |||
581 | /* _mesa_debug(ctx, "%s\n", __FUNCTION__); */ |
||
582 | |||
583 | IM->Evaluated = 0; |
||
584 | IM->CopyOrFlag = IM->OrFlag; |
||
585 | IM->CopyAndFlag = IM->AndFlag; |
||
586 | IM->CopyTexSize = IM->TexSize | tnl->ExecCopyTexSize; |
||
587 | |||
588 | _tnl_copy_immediate_vertices( ctx, IM ); |
||
589 | |||
590 | if (ctx->Driver.CurrentExecPrimitive == GL_POLYGON+1) { |
||
591 | ASSERT(IM->CopyStart == IM->Start); |
||
592 | } |
||
593 | |||
594 | /* Naked array elements can be copied into the first cassette in a |
||
595 | * display list. Need to translate them away: |
||
596 | */ |
||
597 | if (IM->CopyOrFlag & VERT_BIT_ELT) { |
||
598 | GLuint copy = tnl->pipeline.inputs & ~ctx->Array._Enabled; |
||
599 | GLuint i; |
||
600 | |||
601 | ASSERT(IM->CopyStart < IM->Start); |
||
602 | |||
603 | _tnl_translate_array_elts( ctx, IM, IM->CopyStart, IM->Start ); |
||
604 | |||
605 | for (i = IM->CopyStart ; i < IM->Start ; i++) |
||
606 | copy_from_current( ctx, IM, i, copy ); |
||
607 | |||
608 | _tnl_copy_to_current( ctx, IM, ctx->Array._Enabled, IM->Start ); |
||
609 | } |
||
610 | |||
611 | fixup = tnl->pipeline.inputs & ~IM->Flag[start] & VERT_BITS_FIXUP; |
||
612 | |||
613 | /* _tnl_print_vert_flags("fixup compiled", fixup); */ |
||
614 | |||
615 | if (fixup) { |
||
616 | |||
617 | /* XXX try to replace this code with a loop over the 16 vertex |
||
618 | * attributes. |
||
619 | */ |
||
620 | |||
621 | if (fixup & VERT_BIT_NORMAL) { |
||
622 | fixup_first_4f(IM->Attrib[VERT_ATTRIB_NORMAL], IM->Flag, |
||
623 | VERT_BIT_NORMAL, start, |
||
624 | ctx->Current.Attrib[VERT_ATTRIB_NORMAL] ); |
||
625 | } |
||
626 | |||
627 | if (fixup & VERT_BIT_COLOR0) { |
||
628 | if (IM->CopyOrFlag & VERT_BIT_COLOR0) |
||
629 | fixup_first_4f(IM->Attrib[VERT_ATTRIB_COLOR0], IM->Flag, |
||
630 | VERT_BIT_COLOR0, start, |
||
631 | ctx->Current.Attrib[VERT_ATTRIB_COLOR0] ); |
||
632 | else |
||
633 | fixup &= ~VERT_BIT_COLOR0; |
||
634 | } |
||
635 | |||
636 | if (fixup & VERT_BIT_COLOR1) |
||
637 | fixup_first_4f(IM->Attrib[VERT_ATTRIB_COLOR1], IM->Flag, |
||
638 | VERT_BIT_COLOR1, start, |
||
639 | ctx->Current.Attrib[VERT_ATTRIB_COLOR1] ); |
||
640 | |||
641 | if (fixup & VERT_BIT_FOG) |
||
642 | fixup_first_4f( IM->Attrib[VERT_ATTRIB_FOG], IM->Flag, |
||
643 | VERT_BIT_FOG, start, |
||
644 | ctx->Current.Attrib[VERT_ATTRIB_FOG] ); |
||
645 | |||
646 | if (fixup & VERT_BITS_TEX_ANY) { |
||
647 | GLuint i; |
||
648 | for (i = 0 ; i < ctx->Const.MaxTextureUnits ; i++) { |
||
649 | if (fixup & VERT_BIT_TEX(i)) |
||
650 | fixup_first_4f( IM->Attrib[VERT_ATTRIB_TEX0 + i], IM->Flag, |
||
651 | VERT_BIT_TEX(i), start, |
||
652 | ctx->Current.Attrib[VERT_ATTRIB_TEX0 + i] ); |
||
653 | } |
||
654 | } |
||
655 | |||
656 | if (fixup & VERT_BIT_EDGEFLAG) |
||
657 | fixup_first_1ub(IM->EdgeFlag, IM->Flag, VERT_BIT_EDGEFLAG, start, |
||
658 | ctx->Current.EdgeFlag ); |
||
659 | |||
660 | if (fixup & VERT_BIT_INDEX) |
||
661 | fixup_first_1ui(IM->Index, IM->Flag, VERT_BIT_INDEX, start, |
||
662 | ctx->Current.Index ); |
||
663 | |||
664 | IM->CopyOrFlag |= fixup; |
||
665 | } |
||
666 | |||
667 | |||
668 | /* Materials: |
||
669 | */ |
||
670 | if (IM->MaterialOrMask & ~IM->MaterialAndMask) { |
||
671 | GLuint vulnerable = IM->MaterialOrMask; |
||
672 | GLuint i = IM->Start; |
||
673 | |||
674 | do { |
||
675 | while (!(IM->Flag[i] & VERT_BIT_MATERIAL)) |
||
676 | i++; |
||
677 | |||
678 | vulnerable &= ~IM->MaterialMask[i]; |
||
679 | _mesa_copy_material_pairs( IM->Material[i], |
||
680 | ctx->Light.Material, |
||
681 | vulnerable ); |
||
682 | |||
683 | |||
684 | ++i; |
||
685 | } while (vulnerable); |
||
686 | } |
||
687 | } |
||
688 | |||
689 | |||
690 | |||
691 | |||
692 | |||
693 | |||
694 | static void copy_none( TNLcontext *tnl, GLuint start, GLuint count, GLuint ovf) |
||
695 | { |
||
696 | (void) (start && ovf && tnl && count); |
||
697 | } |
||
698 | |||
699 | static void copy_last( TNLcontext *tnl, GLuint start, GLuint count, GLuint ovf) |
||
700 | { |
||
701 | (void) start; (void) ovf; |
||
702 | tnl->ExecCopyCount = 1; |
||
703 | tnl->ExecCopyElts[2] = count-1; |
||
704 | } |
||
705 | |||
706 | static void copy_first_and_last( TNLcontext *tnl, GLuint start, GLuint count, |
||
707 | GLuint ovf) |
||
708 | { |
||
709 | (void) ovf; |
||
710 | tnl->ExecCopyCount = 2; |
||
711 | tnl->ExecCopyElts[1] = start; |
||
712 | tnl->ExecCopyElts[2] = count-1; |
||
713 | } |
||
714 | |||
715 | static void copy_last_two( TNLcontext *tnl, GLuint start, GLuint count, |
||
716 | GLuint ovf ) |
||
717 | { |
||
718 | (void) start; |
||
719 | tnl->ExecCopyCount = 2+ovf; |
||
720 | tnl->ExecCopyElts[0] = count-3; |
||
721 | tnl->ExecCopyElts[1] = count-2; |
||
722 | tnl->ExecCopyElts[2] = count-1; |
||
723 | } |
||
724 | |||
725 | static void copy_overflow( TNLcontext *tnl, GLuint start, GLuint count, |
||
726 | GLuint ovf ) |
||
727 | { |
||
728 | (void) start; |
||
729 | tnl->ExecCopyCount = ovf; |
||
730 | tnl->ExecCopyElts[0] = count-3; |
||
731 | tnl->ExecCopyElts[1] = count-2; |
||
732 | tnl->ExecCopyElts[2] = count-1; |
||
733 | } |
||
734 | |||
735 | |||
736 | typedef void (*copy_func)( TNLcontext *tnl, GLuint start, GLuint count, |
||
737 | GLuint ovf ); |
||
738 | |||
739 | static copy_func copy_tab[GL_POLYGON+2] = |
||
740 | { |
||
741 | copy_none, |
||
742 | copy_overflow, |
||
743 | copy_first_and_last, |
||
744 | copy_last, |
||
745 | copy_overflow, |
||
746 | copy_last_two, |
||
747 | copy_first_and_last, |
||
748 | copy_overflow, |
||
749 | copy_last_two, |
||
750 | copy_first_and_last, |
||
751 | copy_none |
||
752 | }; |
||
753 | |||
754 | |||
755 | |||
756 | |||
757 | |||
758 | /* Figure out what vertices need to be copied next time. |
||
759 | */ |
||
760 | void |
||
761 | _tnl_get_exec_copy_verts( GLcontext *ctx, struct immediate *IM ) |
||
762 | { |
||
763 | |||
764 | TNLcontext *tnl = TNL_CONTEXT(ctx); |
||
765 | GLuint last = IM->LastPrimitive; |
||
766 | GLuint prim = ctx->Driver.CurrentExecPrimitive; |
||
767 | GLuint pincr = increment[prim]; |
||
768 | GLuint pintro = intro[prim]; |
||
769 | GLuint ovf = 0; |
||
770 | |||
771 | /* _mesa_debug(ctx, "_tnl_get_exec_copy_verts %s\n", */ |
||
772 | /* _mesa_lookup_enum_by_nr(prim)); */ |
||
773 | |||
774 | if (tnl->ExecCopySource) |
||
775 | if (--tnl->ExecCopySource->ref_count == 0) |
||
776 | _tnl_free_immediate( ctx, tnl->ExecCopySource ); |
||
777 | |||
778 | if (prim == GL_POLYGON+1) { |
||
779 | tnl->ExecCopySource = 0; |
||
780 | tnl->ExecCopyCount = 0; |
||
781 | tnl->ExecCopyTexSize = 0; |
||
782 | tnl->ExecParity = 0; |
||
783 | } else { |
||
784 | /* Remember this immediate as the one to copy from. |
||
785 | */ |
||
786 | tnl->ExecCopySource = IM; IM->ref_count++; |
||
787 | tnl->ExecCopyCount = 0; |
||
788 | tnl->ExecCopyTexSize = IM->CopyTexSize; |
||
789 | |||
790 | if (IM->LastPrimitive != IM->CopyStart) |
||
791 | tnl->ExecParity = 0; |
||
792 | |||
793 | tnl->ExecParity ^= IM->PrimitiveLength[IM->LastPrimitive] & 1; |
||
794 | |||
795 | |||
796 | if (pincr != 1 && (IM->Count - last - pintro)) |
||
797 | ovf = (IM->Count - last - pintro) % pincr; |
||
798 | |||
799 | if (last < IM->Count) |
||
800 | copy_tab[prim]( tnl, last, IM->Count, ovf ); |
||
801 | } |
||
802 | } |
||
803 | |||
804 | |||
805 | /* Recalculate ExecCopyElts, ExecParity, etc. |
||
806 | */ |
||
807 | void |
||
808 | _tnl_get_purged_copy_verts( GLcontext *ctx, struct immediate *IM ) |
||
809 | { |
||
810 | TNLcontext *tnl = TNL_CONTEXT(ctx); |
||
811 | |||
812 | if (ctx->Driver.CurrentExecPrimitive != GL_POLYGON+1) { |
||
813 | GLuint last = IM->LastPrimitive; |
||
814 | GLenum prim = IM->Primitive[last]; |
||
815 | GLuint pincr = increment[prim]; |
||
816 | GLuint pintro = intro[prim]; |
||
817 | GLuint ovf = 0, i; |
||
818 | |||
819 | tnl->ExecCopyCount = 0; |
||
820 | if (IM->LastPrimitive != IM->CopyStart) |
||
821 | tnl->ExecParity = 0; |
||
822 | |||
823 | tnl->ExecParity ^= IM->PrimitiveLength[IM->LastPrimitive] & 1; |
||
824 | |||
825 | if (pincr != 1 && (IM->Count - last - pintro)) |
||
826 | ovf = (IM->Count - last - pintro) % pincr; |
||
827 | |||
828 | if (last < IM->Count) |
||
829 | copy_tab[prim]( tnl, last, IM->Count, ovf ); |
||
830 | |||
831 | for (i = 0 ; i < tnl->ExecCopyCount ; i++) |
||
832 | tnl->ExecCopyElts[i] = IM->Elt[tnl->ExecCopyElts[i]]; |
||
833 | } |
||
834 | } |
||
835 | |||
836 | |||
837 | void _tnl_upgrade_current_data( GLcontext *ctx, |
||
838 | GLuint required, |
||
839 | GLuint flags ) |
||
840 | { |
||
841 | TNLcontext *tnl = TNL_CONTEXT(ctx); |
||
842 | struct vertex_buffer *VB = &tnl->vb; |
||
843 | struct immediate *IM = (struct immediate *)VB->import_source; |
||
844 | |||
845 | ASSERT(IM); |
||
846 | |||
847 | /* _tnl_print_vert_flags("_tnl_upgrade_client_data", required); */ |
||
848 | |||
849 | if ((required & VERT_BIT_COLOR0) && (VB->ColorPtr[0]->Flags & CA_CLIENT_DATA)) { |
||
850 | struct gl_client_array *tmp = &tnl->imm_inputs.Color; |
||
851 | GLuint start = IM->CopyStart; |
||
852 | |||
853 | tmp->Ptr = IM->Attrib[VERT_ATTRIB_COLOR0] + start; |
||
854 | tmp->StrideB = 4 * sizeof(GLfloat); |
||
855 | tmp->Flags = 0; |
||
856 | |||
857 | COPY_4FV( IM->Attrib[VERT_ATTRIB_COLOR0][start], |
||
858 | ctx->Current.Attrib[VERT_ATTRIB_COLOR0]); |
||
859 | |||
860 | /* |
||
861 | ASSERT(IM->Flag[IM->LastData+1] & VERT_BIT_END_VB); |
||
862 | */ |
||
863 | |||
864 | fixup_first_4f( IM->Attrib[VERT_ATTRIB_COLOR0], IM->Flag, |
||
865 | VERT_BIT_END_VB, |
||
866 | start, IM->Attrib[VERT_ATTRIB_COLOR0][start] ); |
||
867 | |||
868 | VB->importable_data &= ~VERT_BIT_COLOR0; |
||
869 | } |
||
870 | } |
||
871 |