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333 lines
8.6 KiB
C
333 lines
8.6 KiB
C
/*
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* Mesa 3-D graphics library
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* Version: 6.1
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*
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* Copyright (C) 1999-2004 Brian Paul All Rights Reserved.
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*
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* Permission is hereby granted, free of charge, to any person obtaining a
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* copy of this software and associated documentation files (the "Software"),
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* to deal in the Software without restriction, including without limitation
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* the rights to use, copy, modify, merge, publish, distribute, sublicense,
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* and/or sell copies of the Software, and to permit persons to whom the
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* Software is furnished to do so, subject to the following conditions:
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*
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* The above copyright notice and this permission notice shall be included
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* in all copies or substantial portions of the Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
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* OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
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* BRIAN PAUL BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN
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* AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
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* CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
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*/
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/*
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* Updated for P6 architecture by Gareth Hughes.
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*/
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#include <precomp.h>
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#include "m_debug.h"
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#include "m_debug_util.h"
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#ifdef __UNIXOS2__
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/* The linker doesn't like empty files */
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static char dummy;
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#endif
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#ifdef DEBUG_MATH /* This code only used for debugging */
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/* Overhead of profiling counter in cycles. Automatically adjusted to
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* your machine at run time - counter initialization should give very
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* consistent results.
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*/
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long counter_overhead = 0;
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/* This is the value of the environment variable MESA_PROFILE, and is
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* used to determine if we should benchmark the functions as well as
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* verify their correctness.
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*/
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char *mesa_profile = NULL;
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static int m_general[16] = {
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VAR, VAR, VAR, VAR,
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VAR, VAR, VAR, VAR,
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VAR, VAR, VAR, VAR,
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VAR, VAR, VAR, VAR
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};
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static int m_identity[16] = {
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ONE, NIL, NIL, NIL,
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NIL, ONE, NIL, NIL,
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NIL, NIL, ONE, NIL,
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NIL, NIL, NIL, ONE
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};
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static int m_2d[16] = {
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VAR, VAR, NIL, VAR,
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VAR, VAR, NIL, VAR,
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NIL, NIL, ONE, NIL,
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NIL, NIL, NIL, ONE
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};
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static int m_2d_no_rot[16] = {
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VAR, NIL, NIL, VAR,
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NIL, VAR, NIL, VAR,
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NIL, NIL, ONE, NIL,
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NIL, NIL, NIL, ONE
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};
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static int m_3d[16] = {
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VAR, VAR, VAR, VAR,
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VAR, VAR, VAR, VAR,
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VAR, VAR, VAR, VAR,
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NIL, NIL, NIL, ONE
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};
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static int m_3d_no_rot[16] = {
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VAR, NIL, NIL, VAR,
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NIL, VAR, NIL, VAR,
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NIL, NIL, VAR, VAR,
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NIL, NIL, NIL, ONE
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};
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static int m_perspective[16] = {
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VAR, NIL, VAR, NIL,
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NIL, VAR, VAR, NIL,
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NIL, NIL, VAR, VAR,
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NIL, NIL, NEG, NIL
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};
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static int *templates[7] = {
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m_general,
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m_identity,
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m_3d_no_rot,
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m_perspective,
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m_2d,
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m_2d_no_rot,
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m_3d
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};
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static enum GLmatrixtype mtypes[7] = {
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MATRIX_GENERAL,
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MATRIX_IDENTITY,
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MATRIX_3D_NO_ROT,
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MATRIX_PERSPECTIVE,
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MATRIX_2D,
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MATRIX_2D_NO_ROT,
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MATRIX_3D
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};
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static char *mstrings[7] = {
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"MATRIX_GENERAL",
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"MATRIX_IDENTITY",
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"MATRIX_3D_NO_ROT",
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"MATRIX_PERSPECTIVE",
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"MATRIX_2D",
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"MATRIX_2D_NO_ROT",
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"MATRIX_3D"
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};
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/* =============================================================
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* Reference transformations
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*/
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static void ref_transform( GLvector4f *dst,
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const GLmatrix *mat,
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const GLvector4f *src )
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{
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GLuint i;
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GLfloat *s = (GLfloat *)src->start;
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GLfloat (*d)[4] = (GLfloat (*)[4])dst->start;
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const GLfloat *m = mat->m;
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for ( i = 0 ; i < src->count ; i++ ) {
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TRANSFORM_POINT( d[i], m, s );
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s = (GLfloat *)((char *)s + src->stride);
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}
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}
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/* =============================================================
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* Vertex transformation tests
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*/
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static void init_matrix( GLfloat *m )
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{
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m[0] = 63.0; m[4] = 43.0; m[ 8] = 29.0; m[12] = 43.0;
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m[1] = 55.0; m[5] = 17.0; m[ 9] = 31.0; m[13] = 7.0;
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m[2] = 44.0; m[6] = 9.0; m[10] = 7.0; m[14] = 3.0;
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m[3] = 11.0; m[7] = 23.0; m[11] = 91.0; m[15] = 9.0;
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}
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ALIGN16(static GLfloat, s[TEST_COUNT][4]);
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ALIGN16(static GLfloat, d[TEST_COUNT][4]);
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ALIGN16(static GLfloat, r[TEST_COUNT][4]);
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static int test_transform_function( transform_func func, int psize,
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int mtype, unsigned long *cycles )
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{
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GLvector4f source[1], dest[1], ref[1];
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GLmatrix mat[1];
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GLfloat *m;
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int i, j;
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#ifdef RUN_DEBUG_BENCHMARK
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int cycle_i; /* the counter for the benchmarks we run */
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#endif
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(void) cycles;
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if ( psize > 4 ) {
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_mesa_problem( NULL, "test_transform_function called with psize > 4\n" );
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return 0;
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}
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mat->m = (GLfloat *) _mesa_align_malloc( 16 * sizeof(GLfloat), 16 );
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mat->type = mtypes[mtype];
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m = mat->m;
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ASSERT( ((long)m & 15) == 0 );
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init_matrix( m );
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for ( i = 0 ; i < 4 ; i++ ) {
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for ( j = 0 ; j < 4 ; j++ ) {
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switch ( templates[mtype][i * 4 + j] ) {
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case NIL:
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m[j * 4 + i] = 0.0;
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break;
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case ONE:
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m[j * 4 + i] = 1.0;
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break;
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case NEG:
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m[j * 4 + i] = -1.0;
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break;
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case VAR:
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break;
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default:
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ASSERT(0);
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return 0;
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}
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}
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}
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for ( i = 0 ; i < TEST_COUNT ; i++) {
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ASSIGN_4V( d[i], 0.0, 0.0, 0.0, 1.0 );
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ASSIGN_4V( s[i], 0.0, 0.0, 0.0, 1.0 );
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for ( j = 0 ; j < psize ; j++ )
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s[i][j] = rnd();
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}
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source->data = (GLfloat(*)[4])s;
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source->start = (GLfloat *)s;
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source->count = TEST_COUNT;
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source->stride = sizeof(s[0]);
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source->size = 4;
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source->flags = 0;
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dest->data = (GLfloat(*)[4])d;
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dest->start = (GLfloat *)d;
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dest->count = TEST_COUNT;
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dest->stride = sizeof(float[4]);
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dest->size = 0;
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dest->flags = 0;
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ref->data = (GLfloat(*)[4])r;
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ref->start = (GLfloat *)r;
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ref->count = TEST_COUNT;
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ref->stride = sizeof(float[4]);
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ref->size = 0;
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ref->flags = 0;
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ref_transform( ref, mat, source );
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if ( mesa_profile ) {
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BEGIN_RACE( *cycles );
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func( dest, mat->m, source );
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END_RACE( *cycles );
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}
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else {
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func( dest, mat->m, source );
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}
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for ( i = 0 ; i < TEST_COUNT ; i++ ) {
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for ( j = 0 ; j < 4 ; j++ ) {
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if ( significand_match( d[i][j], r[i][j] ) < REQUIRED_PRECISION ) {
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printf("-----------------------------\n" );
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printf("(i = %i, j = %i)\n", i, j );
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printf("%f \t %f \t [diff = %e - %i bit missed]\n",
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d[i][0], r[i][0], r[i][0]-d[i][0],
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MAX_PRECISION - significand_match( d[i][0], r[i][0] ) );
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printf("%f \t %f \t [diff = %e - %i bit missed]\n",
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d[i][1], r[i][1], r[i][1]-d[i][1],
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MAX_PRECISION - significand_match( d[i][1], r[i][1] ) );
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printf("%f \t %f \t [diff = %e - %i bit missed]\n",
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d[i][2], r[i][2], r[i][2]-d[i][2],
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MAX_PRECISION - significand_match( d[i][2], r[i][2] ) );
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printf("%f \t %f \t [diff = %e - %i bit missed]\n",
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d[i][3], r[i][3], r[i][3]-d[i][3],
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MAX_PRECISION - significand_match( d[i][3], r[i][3] ) );
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return 0;
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}
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}
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}
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_mesa_align_free( mat->m );
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return 1;
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}
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void _math_test_all_transform_functions( char *description )
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{
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int psize, mtype;
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unsigned long benchmark_tab[4][7];
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static int first_time = 1;
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if ( first_time ) {
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first_time = 0;
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mesa_profile = _mesa_getenv( "MESA_PROFILE" );
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}
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#ifdef RUN_DEBUG_BENCHMARK
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if ( mesa_profile ) {
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if ( !counter_overhead ) {
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INIT_COUNTER();
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printf("counter overhead: %lu cycles\n\n", counter_overhead );
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}
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printf("transform results after hooking in %s functions:\n", description );
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}
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#endif
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#ifdef RUN_DEBUG_BENCHMARK
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if ( mesa_profile ) {
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printf("\n" );
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for ( psize = 1 ; psize <= 4 ; psize++ ) {
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printf(" p%d\t", psize );
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}
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printf("\n--------------------------------------------------------\n" );
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}
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#endif
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for ( mtype = 0 ; mtype < 7 ; mtype++ ) {
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for ( psize = 1 ; psize <= 4 ; psize++ ) {
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transform_func func = _mesa_transform_tab[psize][mtypes[mtype]];
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unsigned long *cycles = &(benchmark_tab[psize-1][mtype]);
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if ( test_transform_function( func, psize, mtype, cycles ) == 0 ) {
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char buf[100];
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sprintf(buf, "_mesa_transform_tab[0][%d][%s] failed test (%s)",
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psize, mstrings[mtype], description );
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_mesa_problem( NULL, "%s", buf );
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}
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#ifdef RUN_DEBUG_BENCHMARK
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if ( mesa_profile )
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printf(" %li\t", benchmark_tab[psize-1][mtype] );
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#endif
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}
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#ifdef RUN_DEBUG_BENCHMARK
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if ( mesa_profile )
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printf(" | [%s]\n", mstrings[mtype] );
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#endif
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}
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#ifdef RUN_DEBUG_BENCHMARK
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if ( mesa_profile )
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printf( "\n" );
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#endif
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}
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#endif /* DEBUG_MATH */
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