diff options
author | Brian <[email protected]> | 2007-03-26 10:13:02 -0600 |
---|---|---|
committer | Brian <[email protected]> | 2007-03-26 10:13:02 -0600 |
commit | d619cceea47dc3070ebb7f7ea4f8b6b31a672d38 (patch) | |
tree | f8b8a9f3fdc3f17a43436af270b22754b1749d31 /src/mesa/shader/slang/library | |
parent | 76f3b66e0489526694d6a39b4a6ac3b1c2bee100 (diff) | |
parent | e71c34aaa173ca451fa02e526ead77758f7eeb74 (diff) |
merge of glsl-compiler-1 branch
Diffstat (limited to 'src/mesa/shader/slang/library')
17 files changed, 4984 insertions, 3292 deletions
diff --git a/src/mesa/shader/slang/library/Makefile b/src/mesa/shader/slang/library/Makefile index 92a313d7b0d..dc67b590886 100644 --- a/src/mesa/shader/slang/library/Makefile +++ b/src/mesa/shader/slang/library/Makefile @@ -21,7 +21,7 @@ clean: syntax: slang_pp_directives_syn.h slang_pp_expression_syn.h slang_shader_syn.h slang_pp_version_syn.h -builtin: builtin_110 builtin_120 builtin_vec4 +builtin: builtin_110 builtin_120 # # executables @@ -29,7 +29,7 @@ builtin: builtin_110 builtin_120 builtin_vec4 syn_to_c: syn_to_c.c $(CC) syn_to_c.c -o syn_to_c - + gc_to_bin: gc_to_bin.c slang_shader_syn.h $(CC) gc_to_bin.c -o gc_to_bin @@ -57,7 +57,6 @@ builtin_110: slang_common_builtin_gc.h slang_core_gc.h slang_fragment_builtin_gc builtin_120: slang_120_core_gc.h slang_builtin_120_common_gc.h slang_builtin_120_fragment_gc.h -builtin_vec4: slang_builtin_vec4_gc.h slang_120_core_gc.h: gc_to_bin slang_120_core.gc ./gc_to_bin 1 slang_120_core.gc slang_120_core_gc.h @@ -68,9 +67,6 @@ slang_builtin_120_common_gc.h: gc_to_bin slang_builtin_120_common.gc slang_builtin_120_fragment_gc.h: gc_to_bin slang_builtin_120_fragment.gc ./gc_to_bin 1 slang_builtin_120_fragment.gc slang_builtin_120_fragment_gc.h -slang_builtin_vec4_gc.h: gc_to_bin slang_builtin_vec4.gc - ./gc_to_bin 1 slang_builtin_vec4.gc slang_builtin_vec4_gc.h - slang_common_builtin_gc.h: gc_to_bin slang_common_builtin.gc ./gc_to_bin 1 slang_common_builtin.gc slang_common_builtin_gc.h diff --git a/src/mesa/shader/slang/library/gc_to_bin.c b/src/mesa/shader/slang/library/gc_to_bin.c index ce9a6541acc..8aef7b54124 100755..100644 --- a/src/mesa/shader/slang/library/gc_to_bin.c +++ b/src/mesa/shader/slang/library/gc_to_bin.c @@ -68,11 +68,14 @@ int main (int argc, char *argv[]) grammar id; id = grammar_load_from_text ((const byte *) slang_shader_syn); - if (id == 0) + if (id == 0) { + fprintf(stderr, "Error loading grammar from text\n"); return 1; + } grammar_set_reg8 (id, (const byte *) "parsing_builtin", 1); grammar_set_reg8 (id, (const byte *) "shader_type", atoi (argv[1])); if (gc_to_bin (id, argv[2], argv[3])) { + fprintf(stderr, "Error in gc_to_bin %s %s\n", argv[2], argv[3]); grammar_destroy (id); return 1; } diff --git a/src/mesa/shader/slang/library/slang_120_core.gc b/src/mesa/shader/slang/library/slang_120_core.gc index cf5d44e8ce4..cf5d44e8ce4 100755..100644 --- a/src/mesa/shader/slang/library/slang_120_core.gc +++ b/src/mesa/shader/slang/library/slang_120_core.gc diff --git a/src/mesa/shader/slang/library/slang_builtin_120_common.gc b/src/mesa/shader/slang/library/slang_builtin_120_common.gc index c6264c3b471..c6264c3b471 100755..100644 --- a/src/mesa/shader/slang/library/slang_builtin_120_common.gc +++ b/src/mesa/shader/slang/library/slang_builtin_120_common.gc diff --git a/src/mesa/shader/slang/library/slang_builtin_120_fragment.gc b/src/mesa/shader/slang/library/slang_builtin_120_fragment.gc index 7d516046a18..7d516046a18 100755..100644 --- a/src/mesa/shader/slang/library/slang_builtin_120_fragment.gc +++ b/src/mesa/shader/slang/library/slang_builtin_120_fragment.gc diff --git a/src/mesa/shader/slang/library/slang_builtin_vec4.gc b/src/mesa/shader/slang/library/slang_builtin_vec4.gc deleted file mode 100755 index d549c0133a4..00000000000 --- a/src/mesa/shader/slang/library/slang_builtin_vec4.gc +++ /dev/null @@ -1,220 +0,0 @@ -/* - * Mesa 3-D graphics library - * Version: 6.5 - * - * Copyright (C) 2006 Brian Paul All Rights Reserved. - * - * Permission is hereby granted, free of charge, to any person obtaining a - * copy of this software and associated documentation files (the "Software"), - * to deal in the Software without restriction, including without limitation - * the rights to use, copy, modify, merge, publish, distribute, sublicense, - * and/or sell copies of the Software, and to permit persons to whom the - * Software is furnished to do so, subject to the following conditions: - * - * The above copyright notice and this permission notice shall be included - * in all copies or substantial portions of the Software. - * - * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS - * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, - * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL - * BRIAN PAUL BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN - * AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN - * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. - */ - -// -// This file overrides most of the standard built-in functions that operate on vec4 data type. -// This file also overrides most commonly used functions that do not neccessarily operate -// on vec4 data type, like dot(vec3,vec3). Those are adapted to vec4 instructions and are believed -// to execute faster. -// This file replaces parts of the core.gc and common.gc, so it must be included somewhere after -// the common.gc file. -// -// Assembly instructions required: -// float_to_vec4 -// vec4_add -// vec4_subtract -// vec4_multiply -// vec4_divide -// vec4_negate -// vec4_dot -// - - -vec4 __constructor (const float f) { - vec4 v; - __asm float_to_vec4 v, f; - return v; -} - - -void __operator += (inout vec4 v, const vec4 u) { - __asm vec4_add v, u; -} - -void __operator -= (inout vec4 v, const vec4 u) { - __asm vec4_subtract v, u; -} - -void __operator *= (inout vec4 v, const vec4 u) { - __asm vec4_multiply v, u; -} - -void __operator /= (inout vec4 v, const vec4 u) { - __asm vec4_divide v, u; -} - - -void __operator += (inout vec4 v, const float a) { - vec4 u; - __asm float_to_vec4 u, a; - __asm vec4_add v, u; -} - -void __operator -= (inout vec4 v, const float a) { - vec4 u; - __asm float_to_vec4 u, a; - __asm vec4_subtract v, u; -} - -void __operator *= (inout vec4 v, const float a) { - vec4 u; - __asm float_to_vec4 u, a; - __asm vec4_multiply v, u; -} - -void __operator /= (inout vec4 v, const float a) { - vec4 u; - __asm float_to_vec4 u, a; - __asm vec4_divide v, u; -} - - -vec4 __operator + (vec4 v, const vec4 u) { - __asm vec4_add v, u; - return v; -} - -vec4 __operator - (vec4 v, const vec4 u) { - __asm vec4_subtract v, u; - return v; -} - -vec4 __operator * (vec4 v, const vec4 u) { - __asm vec4_multiply v, u; - return v; -} - -vec4 __operator / (vec4 v, const vec4 u) { - __asm vec4_divide v, u; - return v; -} - - -vec4 __operator + (const float a, const vec4 u) { - vec4 v; - __asm float_to_vec4 v, a; - __asm vec4_add v, u; - return v; -} - -vec4 __operator + (const vec4 v, const float b) { - vec4 u; - __asm float_to_vec4 u, b; - __asm vec4_add u, v; - return u; -} - -vec4 __operator - (const float a, const vec4 u) { - vec4 v; - __asm float_to_vec4 v, a; - __asm vec4_subtract v, u; - return v; -} - -vec4 __operator - (vec4 v, const float b) { - vec4 u; - __asm float_to_vec4 u, b; - __asm vec4_subtract v, u; - return v; -} - -vec4 __operator * (const float a, const vec4 u) { - vec4 v; - __asm float_to_vec4 v, a; - __asm vec4_multiply v, u; - return v; -} - -vec4 __operator * (const vec4 v, const float b) { - vec4 u; - __asm float_to_vec4 u, b; - __asm vec4_multiply u, v; - return u; -} - -vec4 __operator / (const float a, const vec4 u) { - vec4 v; - __asm float_to_vec4 v, a; - __asm vec4_divide v, u; - return v; -} - -vec4 __operator / (vec4 v, const float b) { - vec4 u; - __asm float_to_vec4 u, b; - __asm vec4_divide v, u; - return v; -} - - -vec4 __operator - (vec4 v) { - __asm vec4_negate v; - return v; -} - - -float dot (vec3 v, vec3 u) { - vec4 v4 = vec4 (v, 0.0); - vec4 u4 = vec4 (u, 0.0); - __asm vec4_dot v4, u4; - return v4.x; -} - -float dot (vec4 v, vec4 u) { - __asm vec4_dot v, u; - return v.x; -} - - -float length (vec3 v) { - vec4 u = vec4 (v, 0.0); - __asm vec4_dot u, u; - return sqrt (u.x); -} - -float length (vec4 v) { - __asm vec4_dot v, v; - return sqrt (v.x); -} - - -vec3 normalize (vec3 v) { - vec4 u = vec4 (v, 0.0); - vec4 w = u; - __asm vec4_dot u, u; - float l = sqrt (u.x); - __asm float_to_vec4 u, l; - __asm vec4_divide w, u; - return w.xyz; -} - -vec4 normalize (vec4 v) { - vec4 w = v; - __asm vec4_dot v, v; - float l = sqrt (v.x); - __asm float_to_vec4 v, l; - __asm vec4_divide w, v; - return w; -} - diff --git a/src/mesa/shader/slang/library/slang_builtin_vec4_gc.h b/src/mesa/shader/slang/library/slang_builtin_vec4_gc.h deleted file mode 100644 index 9c3bae2644c..00000000000 --- a/src/mesa/shader/slang/library/slang_builtin_vec4_gc.h +++ /dev/null @@ -1,62 +0,0 @@ - -/* DO NOT EDIT - THIS FILE IS AUTOMATICALLY GENERATED FROM THE FOLLOWING FILE: */ -/* slang_builtin_vec4.gc */ - -3,1,0,12,1,1,1,0,9,102,0,0,0,1,3,2,0,12,1,118,0,0,0,4,102,108,111,97,116,95,116,111,95,118,101,99, 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-58,115,113,114,116,0,18,118,0,59,120,0,0,0,0,0,1,0,11,0,110,111,114,109,97,108,105,122,101,0,1,0,0, -11,118,0,0,0,1,3,2,0,12,1,117,0,2,58,118,101,99,52,0,18,118,0,0,17,48,0,48,0,0,0,0,0,0,3,2,0,12,1, -119,0,2,18,117,0,0,0,4,118,101,99,52,95,100,111,116,0,18,117,0,0,18,117,0,0,0,3,2,0,9,1,108,0,2,58, -115,113,114,116,0,18,117,0,59,120,0,0,0,0,0,4,102,108,111,97,116,95,116,111,95,118,101,99,52,0,18, -117,0,0,18,108,0,0,0,4,118,101,99,52,95,100,105,118,105,100,101,0,18,119,0,0,18,117,0,0,0,8,18,119, -0,59,120,121,122,0,0,0,1,0,12,0,110,111,114,109,97,108,105,122,101,0,1,0,0,12,118,0,0,0,1,3,2,0,12, -1,119,0,2,18,118,0,0,0,4,118,101,99,52,95,100,111,116,0,18,118,0,0,18,118,0,0,0,3,2,0,9,1,108,0,2, -58,115,113,114,116,0,18,118,0,59,120,0,0,0,0,0,4,102,108,111,97,116,95,116,111,95,118,101,99,52,0, -18,118,0,0,18,108,0,0,0,4,118,101,99,52,95,100,105,118,105,100,101,0,18,119,0,0,18,118,0,0,0,8,18, -119,0,0,0,0 diff --git a/src/mesa/shader/slang/library/slang_common_builtin.gc b/src/mesa/shader/slang/library/slang_common_builtin.gc index 768cef54748..42a5d723b42 100755..100644 --- a/src/mesa/shader/slang/library/slang_common_builtin.gc +++ b/src/mesa/shader/slang/library/slang_common_builtin.gc @@ -26,6 +26,8 @@ // From Shader Spec, ver. 1.10, rev. 59 // +//bp: XXX these will probably go away since the value needs to be +//determined at runtime and may vary from one GLcontext to another... const int gl_MaxLights = 8; const int gl_MaxClipPlanes = 6; const int gl_MaxTextureUnits = 8; @@ -45,6 +47,7 @@ uniform mat4 gl_ModelViewProjectionMatrix; uniform mat4 gl_TextureMatrix[gl_MaxTextureCoords]; uniform mat3 gl_NormalMatrix; +uniform mat3 __NormalMatrixTranspose; // Mesa only uniform mat4 gl_ModelViewMatrixInverse; uniform mat4 gl_ProjectionMatrixInverse; @@ -155,128 +158,159 @@ struct gl_FogParameters { uniform gl_FogParameters gl_Fog; + + + + // // 8.1 Angle and Trigonometry Functions // -float radians (float deg) { - return 3.141593 * deg / 180.0; +//// radians + +float radians(const float deg) +{ + const float c = 3.1415926 / 180.0; + __asm vec4_multiply __retVal.x, deg, c; } -vec2 radians (vec2 deg) { - return vec2 (3.141593) * deg / vec2 (180.0); +vec2 radians(const vec2 deg) +{ + const float c = 3.1415926 / 180.0; + __asm vec4_multiply __retVal.xy, deg.xy, c.xx; } -vec3 radians (vec3 deg) { - return vec3 (3.141593) * deg / vec3 (180.0); +vec3 radians(const vec3 deg) +{ + const float c = 3.1415926 / 180.0; + __asm vec4_multiply __retVal.xyz, deg.xyz, c.xxx; } -vec4 radians (vec4 deg) { - return vec4 (3.141593) * deg / vec4 (180.0); +vec4 radians(const vec4 deg) +{ + const float c = 3.1415926 / 180.0; + __asm vec4_multiply __retVal, deg, c.xxxx; } -float degrees (float rad) { - return 180.0 * rad / 3.141593; + +//// degrees + +float degrees(const float rad) +{ + const float c = 180.0 / 3.1415926; + __asm vec4_multiply __retVal.x, rad, c; } -vec2 degrees (vec2 rad) { - return vec2 (180.0) * rad / vec2 (3.141593); +vec2 degrees(const vec2 rad) +{ + const float c = 3.1415926 / 180.0; + __asm vec4_multiply __retVal.xy, rad.xy, c.xx; } -vec3 degrees (vec3 rad) { - return vec3 (180.0) * rad / vec3 (3.141593); +vec3 degrees(const vec3 rad) +{ + const float c = 3.1415926 / 180.0; + __asm vec4_multiply __retVal.xyz, rad.xyz, c.xxx; } -vec4 degrees (vec4 rad) { - return vec4 (180.0) * rad / vec4 (3.141593); +vec4 degrees(const vec4 rad) +{ + const float c = 3.1415926 / 180.0; + __asm vec4_multiply __retVal, rad, c.xxxx; } -float sin (float angle) { - float x; - __asm float_sine x, angle; - return x; + +//// sin + +float sin(const float radians) +{ + __asm float_sine __retVal.x, radians; } -vec2 sin (vec2 angle) { - return vec2 ( - sin (angle.x), - sin (angle.y) - ); +vec2 sin(const vec2 radians) +{ + __asm float_sine __retVal.x, radians.x; + __asm float_sine __retVal.y, radians.y; } -vec3 sin (vec3 angle) { - return vec3 ( - sin (angle.x), - sin (angle.y), - sin (angle.z) - ); +vec3 sin(const vec3 radians) +{ + __asm float_sine __retVal.x, radians.x; + __asm float_sine __retVal.y, radians.y; + __asm float_sine __retVal.z, radians.z; } -vec4 sin (vec4 angle) { - return vec4 ( - sin (angle.x), - sin (angle.y), - sin (angle.z), - sin (angle.w) - ); +vec4 sin(const vec4 radians) +{ + __asm float_sine __retVal.x, radians.x; + __asm float_sine __retVal.y, radians.y; + __asm float_sine __retVal.z, radians.z; + __asm float_sine __retVal.w, radians.w; } -float cos (float angle) { - return sin (angle + 1.5708); + +//// cos + +float cos(const float radians) +{ + __asm float_cosine __retVal.x, radians; } -vec2 cos (vec2 angle) { - return vec2 ( - cos (angle.x), - cos (angle.y) - ); +vec2 cos(const vec2 radians) +{ + __asm float_cosine __retVal.x, radians.x; + __asm float_cosine __retVal.y, radians.y; } -vec3 cos (vec3 angle) { - return vec3 ( - cos (angle.x), - cos (angle.y), - cos (angle.z) - ); +vec3 cos(const vec3 radians) +{ + __asm float_cosine __retVal.x, radians.x; + __asm float_cosine __retVal.y, radians.y; + __asm float_cosine __retVal.z, radians.z; } -vec4 cos (vec4 angle) { - return vec4 ( - cos (angle.x), - cos (angle.y), - cos (angle.z), - cos (angle.w) - ); +vec4 cos(const vec4 radians) +{ + __asm float_cosine __retVal.x, radians.x; + __asm float_cosine __retVal.y, radians.y; + __asm float_cosine __retVal.z, radians.z; + __asm float_cosine __retVal.w, radians.w; } -float tan (float angle) { - return sin (angle) / cos (angle); + + +//// tan + +float tan(const float angle) +{ + const float s = sin(angle); + const float c = cos(angle); + return s / c; } -vec2 tan (vec2 angle) { - return vec2 ( - tan (angle.x), - tan (angle.y) - ); +vec2 tan(const vec2 angle) +{ + const vec2 s = sin(angle); + const vec2 c = cos(angle); + return s / c; } -vec3 tan (vec3 angle) { - return vec3 ( - tan (angle.x), - tan (angle.y), - tan (angle.z) - ); +vec3 tan(const vec3 angle) +{ + const vec3 s = sin(angle); + const vec3 c = cos(angle); + return s / c; } -vec4 tan (vec4 angle) { - return vec4 ( - tan (angle.x), - tan (angle.y), - tan (angle.z), - tan (angle.w) - ); +vec4 tan(const vec4 angle) +{ + const vec4 s = sin(angle); + const vec4 c = cos(angle); + return s / c; } + + float asin (float x) { float y; __asm float_arcsine y, x; @@ -404,675 +438,872 @@ vec4 atan (vec4 u, vec4 v) { // 8.2 Exponential Functions // -float pow (float x, float y) { - float p; - __asm float_power p, x, y; - return p; +//// pow + +float pow(const float a, const float b) +{ + __asm float_power __retVal.x, a, b; } -vec2 pow (vec2 v, vec2 u) { - return vec2 ( - pow (v.x, u.x), - pow (v.y, u.y) - ); +vec2 pow(const vec2 a, const vec2 b) +{ + __asm float_power __retVal.x, a.x, b.x; + __asm float_power __retVal.y, a.y, b.y; } -vec3 pow (vec3 v, vec3 u) { - return vec3 ( - pow (v.x, u.x), - pow (v.y, u.y), - pow (v.z, u.z) - ); +vec3 pow(const vec3 a, const vec3 b) +{ + __asm float_power __retVal.x, a.x, b.x; + __asm float_power __retVal.y, a.y, b.y; + __asm float_power __retVal.z, a.z, b.z; } -vec4 pow (vec4 v, vec4 u) { - return vec4 ( - pow (v.x, u.x), - pow (v.y, u.y), - pow (v.z, u.z), - pow (v.w, u.w) - ); +vec4 pow(const vec4 a, const vec4 b) +{ + __asm float_power __retVal.x, a.x, b.x; + __asm float_power __retVal.y, a.y, b.y; + __asm float_power __retVal.z, a.z, b.z; + __asm float_power __retVal.w, a.w, b.w; } -float exp (float x) { - return pow (2.71828183, x); + +//// exp + +float exp(const float a) +{ + __asm float_exp __retVal.x, a; } -vec2 exp (vec2 v) { - return pow (vec2 (2.71828183), v); +vec2 exp(const vec2 a) +{ + __asm float_exp __retVal.x, a.x; + __asm float_exp __retVal.y, a.y; } -vec3 exp (vec3 v) { - return pow (vec3 (2.71828183), v); +vec3 exp(const vec3 a) +{ + __asm float_exp __retVal.x, a.x; + __asm float_exp __retVal.y, a.y; + __asm float_exp __retVal.z, a.z; } -vec4 exp (vec4 v) { - return pow (vec4 (2.71828183), v); +vec4 exp(const vec4 a) +{ + __asm float_exp __retVal.x, a.x; + __asm float_exp __retVal.y, a.y; + __asm float_exp __retVal.z, a.z; + __asm float_exp __retVal.w, a.w; } -float log2 (float x) { - float y; - __asm float_log2 y, x; - return y; + + +//// log2 + +float log2(const float x) +{ + __asm float_log2 __retVal.x, x; } -vec2 log2 (vec2 v) { - return vec2 ( - log2 (v.x), - log2 (v.y) - ); +vec2 log2(const vec2 v) +{ + __asm float_log2 __retVal.x, v.x; + __asm float_log2 __retVal.y, v.y; } -vec3 log2 (vec3 v) { - return vec3 ( - log2 (v.x), - log2 (v.y), - log2 (v.z) - ); +vec3 log2(const vec3 v) +{ + __asm float_log2 __retVal.x, v.x; + __asm float_log2 __retVal.y, v.y; + __asm float_log2 __retVal.z, v.z; } -vec4 log2 (vec4 v) { - return vec4 ( - log2 (v.x), - log2 (v.y), - log2 (v.z), - log2 (v.w) - ); +vec4 log2(const vec4 v) +{ + __asm float_log2 __retVal.x, v.x; + __asm float_log2 __retVal.y, v.y; + __asm float_log2 __retVal.z, v.z; + __asm float_log2 __retVal.w, v.w; } -float log (float x) { - return log2 (x) / log2 (2.71828183); + +//// log (natural log) + +float log(const float x) +{ + // note: logBaseB(x) = logBaseN(x) / logBaseN(B) + // compute log(x) = log2(x) / log2(e) + // c = 1.0 / log2(e) = 0.693147181 + const float c = 0.693147181; + return log2(x) * c; } -vec2 log (vec2 v) { - return log2 (v) / log2 (vec2 (2.71828183)); +vec2 log(const vec2 v) +{ + const float c = 0.693147181; + return log2(v) * c; } -vec3 log (vec3 v) { - return log2 (v) / log2 (vec3 (2.71828183)); +vec3 log(const vec3 v) +{ + const float c = 0.693147181; + return log2(v) * c; } -vec4 log (vec4 v) { - return log2 (v) / log2 (vec4 (2.71828183)); +vec4 log(const vec4 v) +{ + const float c = 0.693147181; + return log2(v) * c; } -float exp2 (float x) { - return pow (2.0, x); + +//// exp2 + +float exp2(const float a) +{ + __asm float_exp2 __retVal.x, a; } -vec2 exp2 (vec2 v) { - return pow (vec2 (2.0), v); +vec2 exp2(const vec2 a) +{ + __asm float_exp2 __retVal.x, a.x; + __asm float_exp2 __retVal.y, a.y; } -vec3 exp2 (vec3 v) { - return pow (vec3 (2.0), v); +vec3 exp2(const vec3 a) +{ + __asm float_exp2 __retVal.x, a.x; + __asm float_exp2 __retVal.y, a.y; + __asm float_exp2 __retVal.z, a.z; } -vec4 exp2 (vec4 v) { - return pow (vec4 (2.0), v); +vec4 exp2(const vec4 a) +{ + __asm float_exp2 __retVal.x, a.x; + __asm float_exp2 __retVal.y, a.y; + __asm float_exp2 __retVal.z, a.z; + __asm float_exp2 __retVal.w, a.w; } -float sqrt (float x) { - return pow (x, 0.5); + +//// sqrt + +float sqrt(const float x) +{ + float r; + __asm float_rsq r, x; + __asm float_rcp __retVal.x, r; } -vec2 sqrt (vec2 v) { - return pow (v, vec2 (0.5)); +vec2 sqrt(const vec2 v) +{ + float r; + __asm float_rsq r, v.x; + __asm float_rcp __retVal.x, r; + __asm float_rsq r, v.y; + __asm float_rcp __retVal.y, r; } -vec3 sqrt (vec3 v) { - return pow (v, vec3 (0.5)); +vec3 sqrt(const vec3 v) +{ + float r; + __asm float_rsq r, v.x; + __asm float_rcp __retVal.x, r; + __asm float_rsq r, v.y; + __asm float_rcp __retVal.y, r; + __asm float_rsq r, v.z; + __asm float_rcp __retVal.z, r; } -vec4 sqrt (vec4 v) { - return pow (v, vec4 (0.5)); +vec4 sqrt(const vec4 v) +{ + float r; + __asm float_rsq r, v.x; + __asm float_rcp __retVal.x, r; + __asm float_rsq r, v.y; + __asm float_rcp __retVal.y, r; + __asm float_rsq r, v.z; + __asm float_rcp __retVal.z, r; + __asm float_rsq r, v.w; + __asm float_rcp __retVal.w, r; } -float inversesqrt (float x) { - return 1.0 / sqrt (x); + +//// inversesqrt + +float inversesqrt(const float x) +{ + __asm float_rsq __retVal.x, x; +} + +vec2 inversesqrt(const vec2 v) +{ + __asm float_rsq __retVal.x, v.x; + __asm float_rsq __retVal.y, v.y; } -vec2 inversesqrt (vec2 v) { - return vec2 (1.0) / sqrt (v); +vec3 inversesqrt(const vec3 v) +{ + __asm float_rsq __retVal.x, v.x; + __asm float_rsq __retVal.y, v.y; + __asm float_rsq __retVal.z, v.z; } -vec3 inversesqrt (vec3 v) { - return vec3 (1.0) / sqrt (v); +vec4 inversesqrt(const vec4 v) +{ + __asm float_rsq __retVal.x, v.x; + __asm float_rsq __retVal.y, v.y; + __asm float_rsq __retVal.z, v.z; + __asm float_rsq __retVal.w, v.w; +} + + +//// normalize + +float normalize(const float x) +{ + __retVal.x = 1.0; } -vec4 inversesqrt (vec4 v) { - return vec4 (1.0) / sqrt (v); +vec2 normalize(const vec2 v) +{ + const float s = inversesqrt(dot(v, v)); + __asm vec4_multiply __retVal.xy, v, s.xx; } +vec3 normalize(const vec3 v) +{ +// const float s = inversesqrt(dot(v, v)); +// __retVal = v * s; +// XXX note, we _could_ use __retVal.w instead of tmp and and save a +// register, but that's actually a compilation error because v is a vec3 +// and the .w suffix is illegal. Oh well. + float tmp; + __asm vec3_dot tmp, v, v; + __asm float_rsq tmp, tmp; + __asm vec4_multiply __retVal.xyz, v, tmp.xxx; +} + +vec4 normalize(const vec4 v) +{ + float tmp; + __asm vec4_dot tmp, v, v; + __asm float_rsq tmp, tmp; + __asm vec4_multiply __retVal.xyz, v, tmp.xxx; +} + + + // // 8.3 Common Functions // -float abs (float x) { - return x >= 0.0 ? x : -x; + +//// abs + +float abs(const float a) +{ + __asm vec4_abs __retVal.x, a; } -vec2 abs (vec2 v) { - return vec2 ( - abs (v.x), - abs (v.y) - ); +vec2 abs(const vec2 a) +{ + __asm vec4_abs __retVal.xy, a; } -vec3 abs (vec3 v) { - return vec3 ( - abs (v.x), - abs (v.y), - abs (v.z) - ); +vec3 abs(const vec3 a) +{ + __asm vec4_abs __retVal.xyz, a; } -vec4 abs (vec4 v) { - return vec4 ( - abs (v.x), - abs (v.y), - abs (v.z), - abs (v.w) - ); +vec4 abs(const vec4 a) +{ + __asm vec4_abs __retVal, a; } -float sign (float x) { - return x > 0.0 ? 1.0 : x < 0.0 ? -1.0 : 0.0; + +//// sign + +float sign(const float x) +{ + float p, n; + __asm vec4_sgt p.x, x, 0.0; // p = (x > 0) + __asm vec4_sgt n.x, 0.0, x; // n = (x < 0) + __asm vec4_subtract __retVal.x, p, n; // sign = p - n } -vec2 sign (vec2 v) { - return vec2 ( - sign (v.x), - sign (v.y) - ); +vec2 sign(const vec2 v) +{ + vec2 p, n; + __asm vec4_sgt p.xy, v, 0.0; + __asm vec4_sgt n.xy, 0.0, v; + __asm vec4_subtract __retVal.xy, p, n; } -vec3 sign (vec3 v) { - return vec3 ( - sign (v.x), - sign (v.y), - sign (v.z) - ); +vec3 sign(const vec3 v) +{ + vec3 p, n; + __asm vec4_sgt p.xyz, v, 0.0; + __asm vec4_sgt n.xyz, 0.0, v; + __asm vec4_subtract __retVal.xyz, p, n; } -vec4 sign (vec4 v) { - return vec4 ( - sign (v.x), - sign (v.y), - sign (v.z), - sign (v.w) - ); +vec4 sign(const vec4 v) +{ + vec4 p, n; + __asm vec4_sgt p, v, 0.0; + __asm vec4_sgt n, 0.0, v; + __asm vec4_subtract __retVal, p, n; } -float floor (float x) { - float y; - __asm float_floor y, x; - return y; + +//// floor + +float floor(const float a) +{ + __asm vec4_floor __retVal.x, a; } -vec2 floor (vec2 v) { - return vec2 ( - floor (v.x), - floor (v.y) - ); +vec2 floor(const vec2 a) +{ + __asm vec4_floor __retVal.xy, a; } -vec3 floor (vec3 v) { - return vec3 ( - floor (v.x), - floor (v.y), - floor (v.z) - ); +vec3 floor(const vec3 a) +{ + __asm vec4_floor __retVal.xyz, a; } -vec4 floor (vec4 v) { - return vec4 ( - floor (v.x), - floor (v.y), - floor (v.z), - floor (v.w) - ); +vec4 floor(const vec4 a) +{ + __asm vec4_floor __retVal, a; } -float ceil (float x) { - float y; - __asm float_ceil y, x; - return y; + +//// ceil + +float ceil(const float a) +{ + // XXX this could be improved + float b = -a; + __asm vec4_floor b, b; + __retVal.x = -b; } -vec2 ceil (vec2 v) { - return vec2 ( - ceil (v.x), - ceil (v.y) - ); +vec2 ceil(const vec2 a) +{ + vec2 b = -a; + __asm vec4_floor b, b; + __retVal.xy = -b; } -vec3 ceil (vec3 v) { - return vec3 ( - ceil (v.x), - ceil (v.y), - ceil (v.z) - ); +vec3 ceil(const vec3 a) +{ + vec3 b = -a; + __asm vec4_floor b, b; + __retVal.xyz = -b; } -vec4 ceil (vec4 v) { - return vec4 ( - ceil (v.x), - ceil (v.y), - ceil (v.z), - ceil (v.w) - ); +vec4 ceil(const vec4 a) +{ + vec4 b = -a; + __asm vec4_floor b, b; + __retVal = -b; } -float fract (float x) { - return x - floor (x); + +//// fract + +float fract(const float a) +{ + __asm vec4_frac __retVal.x, a; } -vec2 fract (vec2 v) { - return v - floor (v); +vec2 fract(const vec2 a) +{ + __asm vec4_frac __retVal.xy, a; } -vec3 fract (vec3 v) { - return v - floor (v); +vec3 fract(const vec3 a) +{ + __asm vec4_frac __retVal.xyz, a; } -vec4 fract (vec4 v) { - return v - floor (v); +vec4 fract(const vec4 a) +{ + __asm vec4_frac __retVal, a; } -float mod (float x, float y) { - return x - y * floor (x / y); + +//// mod (very untested!) + +float mod(const float a, const float b) +{ + float oneOverB; + __asm float_rcp oneOverB, b; + __retVal.x = a - b * floor(a * oneOverB); } -vec2 mod (vec2 v, float u) { - return v - u * floor (v / u); +vec2 mod(const vec2 a, const float b) +{ + float oneOverB; + __asm float_rcp oneOverB, b; + __retVal.xy = a - b * floor(a * oneOverB); } -vec3 mod (vec3 v, float u) { - return v - u * floor (v / u); +vec3 mod(const vec3 a, const float b) +{ + float oneOverB; + __asm float_rcp oneOverB, b; + __retVal.xyz = a - b * floor(a * oneOverB); } -vec4 mod (vec4 v, float u) { - return v - u * floor (v / u); +vec4 mod(const vec4 a, const float b) +{ + float oneOverB; + __asm float_rcp oneOverB, b; + __retVal = a - b * floor(a * oneOverB); } -vec2 mod (vec2 v, vec2 u) { - return v - u * floor (v / u); +vec2 mod(const vec2 a, const vec2 b) +{ + float oneOverBx, oneOverBy; + __asm float_rcp oneOverBx, b.x; + __asm float_rcp oneOverBy, b.y; + __retVal.x = a.x - b.x * floor(a.x * oneOverBx); + __retVal.y = a.y - b.y * floor(a.y * oneOverBy); } -vec3 mod (vec3 v, vec3 u) { - return v - u * floor (v / u); +vec3 mod(const vec3 a, const vec3 b) +{ + float oneOverBx, oneOverBy, oneOverBz; + __asm float_rcp oneOverBx, b.x; + __asm float_rcp oneOverBy, b.y; + __asm float_rcp oneOverBz, b.z; + __retVal.x = a.x - b.x * floor(a.x * oneOverBx); + __retVal.y = a.y - b.y * floor(a.y * oneOverBy); + __retVal.z = a.z - b.z * floor(a.z * oneOverBz); } -vec4 mod (vec4 v, vec4 u) { - return v - u * floor (v / u); +vec4 mod(const vec4 a, const vec4 b) +{ + float oneOverBx, oneOverBy, oneOverBz, oneOverBw; + __asm float_rcp oneOverBx, b.x; + __asm float_rcp oneOverBy, b.y; + __asm float_rcp oneOverBz, b.z; + __asm float_rcp oneOverBw, b.w; + __retVal.x = a.x - b.x * floor(a.x * oneOverBx); + __retVal.y = a.y - b.y * floor(a.y * oneOverBy); + __retVal.z = a.z - b.z * floor(a.z * oneOverBz); + __retVal.w = a.w - b.w * floor(a.w * oneOverBz); } -float min (float x, float y) { - return x < y ? x : y; + +//// min + +float min(const float a, const float b) +{ + __asm vec4_min __retVal.x, a.x, b.x; } -vec2 min (vec2 v, vec2 u) { - return vec2 ( - min (v.x, u.x), - min (v.y, u.y) - ); +vec2 min(const vec2 a, const vec2 b) +{ + __asm vec4_min __retVal.xy, a.xy, b.xy; } -vec3 min (vec3 v, vec3 u) { - return vec3 ( - min (v.x, u.x), - min (v.y, u.y), - min (v.z, u.z) - ); +vec3 min(const vec3 a, const vec3 b) +{ + __asm vec4_min __retVal.xyz, a.xyz, b.xyz; } -vec4 min (vec4 v, vec4 u) { - return vec4 ( - min (v.x, u.x), - min (v.y, u.y), - min (v.z, u.z), - min (v.w, u.w) - ); +vec4 min(const vec4 a, const vec4 b) +{ + __asm vec4_min __retVal, a, b; } -vec2 min (vec2 v, float y) { - return min (v, vec2 (y)); +vec2 min(const vec2 a, const float b) +{ + __asm vec4_min __retVal, a.xy, b.xx; } -vec3 min (vec3 v, float y) { - return min (v, vec3 (y)); +vec3 min(const vec3 a, const float b) +{ + __asm vec4_min __retVal, a.xyz, b.xxx; } -vec4 min (vec4 v, float y) { - return min (v, vec4 (y)); +vec4 min(const vec4 a, const float b) +{ + __asm vec4_min __retVal, a, b.xxxx; } -float max (float x, float y) { - return x < y ? y : x; + +//// max + +float max(const float a, const float b) +{ + __asm vec4_max __retVal.x, a.x, b.x; } -vec2 max (vec2 v, vec2 u) { - return vec2 ( - max (v.x, u.x), - max (v.y, u.y) - ); +vec2 max(const vec2 a, const vec2 b) +{ + __asm vec4_max __retVal.xy, a.xy, b.xy; } -vec3 max (vec3 v, vec3 u) { - return vec3 ( - max (v.x, u.x), - max (v.y, u.y), - max (v.z, u.z) - ); +vec3 max(const vec3 a, const vec3 b) +{ + __asm vec4_max __retVal.xyz, a.xyz, b.xyz; } -vec4 max (vec4 v, vec4 u) { - return vec4 ( - max (v.x, u.x), - max (v.y, u.y), - max (v.z, u.z), - max (v.w, u.w) - ); +vec4 max(const vec4 a, const vec4 b) +{ + __asm vec4_max __retVal, a, b; } -vec2 max (vec2 v, float y) { - return max (v, vec2 (y)); +vec2 max(const vec2 a, const float b) +{ + __asm vec4_max __retVal, a.xy, b.xx; } -vec3 max (vec3 v, float y) { - return max (v, vec3 (y)); +vec3 max(const vec3 a, const float b) +{ + __asm vec4_max __retVal, a.xyz, b.xxx; } -vec4 max (vec4 v, float y) { - return max (v, vec4 (y)); +vec4 max(const vec4 a, const float b) +{ + __asm vec4_max __retVal, a, b.xxxx; } -float clamp (float x, float minVal, float maxVal) { - return min (max (x, minVal), maxVal); + +//// clamp + +float clamp(const float val, const float minVal, const float maxVal) +{ + __asm vec4_clamp __retVal, val, minVal, maxVal; } -vec2 clamp (vec2 x, float minVal, float maxVal) { - return min (max (x, minVal), maxVal); +vec2 clamp(const vec2 val, const float minVal, const float maxVal) +{ + __asm vec4_clamp __retVal, val, minVal, maxVal; } -vec3 clamp (vec3 x, float minVal, float maxVal) { - return min (max (x, minVal), maxVal); +vec3 clamp(const vec3 val, const float minVal, const float maxVal) +{ + __asm vec4_clamp __retVal, val, minVal, maxVal; } -vec4 clamp (vec4 x, float minVal, float maxVal) { - return min (max (x, minVal), maxVal); +vec4 clamp(const vec4 val, const float minVal, const float maxVal) +{ + __asm vec4_clamp __retVal, val, minVal, maxVal; } -vec2 clamp (vec2 x, vec2 minVal, vec2 maxVal) { - return min (max (x, minVal), maxVal); +vec2 clamp(const vec2 val, const vec2 minVal, const vec2 maxVal) +{ + __asm vec4_clamp __retVal, val, minVal, maxVal; } -vec3 clamp (vec3 x, vec3 minVal, vec3 maxVal) { - return min (max (x, minVal), maxVal); +vec3 clamp(const vec3 val, const vec3 minVal, const vec3 maxVal) +{ + __asm vec4_clamp __retVal, val, minVal, maxVal; } -vec4 clamp (vec4 x, vec4 minVal, vec4 maxVal) { - return min (max (x, minVal), maxVal); +vec4 clamp(const vec4 val, const vec4 minVal, const vec4 maxVal) +{ + __asm vec4_clamp __retVal, val, minVal, maxVal; } -float mix (float x, float y, float a) { - return x * (1.0 - a) + y * a; + +//// mix + +float mix(const float x, const float y, const float a) +{ + __asm vec4_lrp __retVal, a, y, x; } -vec2 mix (vec2 x, vec2 y, float a) { - return x * (1.0 - a) + y * a; +vec2 mix(const vec2 x, const vec2 y, const float a) +{ + __asm vec4_lrp __retVal, a, y, x; } -vec3 mix (vec3 x, vec3 y, float a) { - return x * (1.0 - a) + y * a; +vec3 mix(const vec3 x, const vec3 y, const float a) +{ + __asm vec4_lrp __retVal, a, y, x; } -vec4 mix (vec4 x, vec4 y, float a) { - return x * (1.0 - a) + y * a; +vec4 mix(const vec4 x, const vec4 y, const float a) +{ + __asm vec4_lrp __retVal, a, y, x; } -vec2 mix (vec2 x, vec2 y, vec2 a) { - return x * (1.0 - a) + y * a; +vec2 mix(const vec2 x, const vec2 y, const vec2 a) +{ + __asm vec4_lrp __retVal, a, y, x; } -vec3 mix (vec3 x, vec3 y, vec3 a) { - return x * (1.0 - a) + y * a; +vec3 mix(const vec3 x, const vec3 y, const vec3 a) +{ + __asm vec4_lrp __retVal, a, y, x; } -vec4 mix (vec4 x, vec4 y, vec4 a) { - return x * (1.0 - a) + y * a; +vec4 mix(const vec4 x, const vec4 y, const vec4 a) +{ + __asm vec4_lrp __retVal, a, y, x; } -float step (float edge, float x) { - return x < edge ? 0.0 : 1.0; + +//// step (untested) + +float step(const float edge, const float x) +{ + __asm vec4_sgt __retVal.x, x, edge; } -vec2 step (vec2 edge, vec2 v) { - return vec2 ( - step (edge.x, v.x), - step (edge.y, v.y) - ); +vec2 step(const vec2 edge, const vec2 x) +{ + __asm vec4_sgt __retVal.xy, x, edge; } -vec3 step (vec3 edge, vec3 v) { - return vec3 ( - step (edge.x, v.x), - step (edge.y, v.y), - step (edge.z, v.z) - ); +vec3 step(const vec3 edge, const vec3 x) +{ + __asm vec4_sgt __retVal.xyz, x, edge; } -vec4 step (vec4 edge, vec4 v) { - return vec4 ( - step (edge.x, v.x), - step (edge.y, v.y), - step (edge.z, v.z), - step (edge.w, v.w) - ); +vec4 step(const vec4 edge, const vec4 x) +{ + __asm vec4_sgt __retVal, x, edge; } -vec2 step (float edge, vec2 v) { - return step (vec2 (edge), v); +vec2 step(const float edge, const vec2 v) +{ + __asm vec4_sgt __retVal.xy, v, edge.xx; } -vec3 step (float edge, vec3 v) { - return step (vec3 (edge), v); +vec3 step(const float edge, const vec3 v) +{ + __asm vec4_sgt __retVal.xyz, v, edge.xxx; } -vec4 step (float edge, vec4 v) { - return step (vec4 (edge), v); +vec4 step(const float edge, const vec4 v) +{ + __asm vec4_sgt __retVal, v, edge.xxxx; } -float smoothstep (float edge0, float edge1, float x) { - float t = clamp ((x - edge0) / (edge1 - edge0), 0.0, 1.0); + +//// smoothstep (untested) + +float smoothstep(const float edge0, const float edge1, const float x) +{ + float t = clamp((x - edge0) / (edge1 - edge0), 0.0, 1.0); return t * t * (3.0 - 2.0 * t); } -vec2 smoothstep (vec2 edge0, vec2 edge1, vec2 v) { - return vec2 ( - smoothstep (edge0.x, edge1.x, v.x), - smoothstep (edge0.y, edge1.y, v.y) - ); +vec2 smoothstep(const vec2 edge0, const vec2 edge1, const vec2 v) +{ + vec2 t = clamp((v - edge0) / (edge1 - edge0), 0.0, 1.0); + return t * t * (3.0 - 2.0 * t); } -vec3 smoothstep (vec3 edge0, vec3 edge1, vec3 v) { - return vec3 ( - smoothstep (edge0.x, edge1.x, v.x), - smoothstep (edge0.y, edge1.y, v.y), - smoothstep (edge0.z, edge1.z, v.z) - ); +vec3 smoothstep(const vec3 edge0, const vec3 edge1, const vec3 v) +{ + vec3 t = clamp((v - edge0) / (edge1 - edge0), 0.0, 1.0); + return t * t * (3.0 - 2.0 * t); } -vec4 smoothstep (vec4 edge0, vec4 edge1, vec4 v) { - return vec4 ( - smoothstep (edge0.x, edge1.x, v.x), - smoothstep (edge0.y, edge1.y, v.y), - smoothstep (edge0.z, edge1.z, v.z), - smoothstep (edge0.w, edge1.w, v.w) - ); +vec4 smoothstep(const vec4 edge0, const vec4 edge1, const vec4 v) +{ + vec4 t = clamp((v - edge0) / (edge1 - edge0), 0.0, 1.0); + return t * t * (3.0 - 2.0 * t); } -vec2 smoothstep (float edge0, float edge1, vec2 v) { - return vec2 ( - smoothstep (edge0, edge1, v.x), - smoothstep (edge0, edge1, v.y) - ); +vec2 smoothstep(const float edge0, const float edge1, const vec2 v) +{ + vec2 t = clamp((v - edge0) / (edge1 - edge0), 0.0, 1.0); + return t * t * (3.0 - 2.0 * t); } -vec3 smoothstep (float edge0, float edge1, vec3 v) { - return vec3 ( - smoothstep (edge0, edge1, v.x), - smoothstep (edge0, edge1, v.y), - smoothstep (edge0, edge1, v.z) - ); +vec3 smoothstep(const float edge0, const float edge1, const vec3 v) +{ + vec3 t = clamp((v - edge0) / (edge1 - edge0), 0.0, 1.0); + return t * t * (3.0 - 2.0 * t); } -vec4 smoothstep (float edge0, float edge1, vec4 v) { - return vec4 ( - smoothstep (edge0, edge1, v.x), - smoothstep (edge0, edge1, v.y), - smoothstep (edge0, edge1, v.z), - smoothstep (edge0, edge1, v.w) - ); +vec4 smoothstep(const float edge0, const float edge1, const vec4 v) +{ + vec4 t = clamp((v - edge0) / (edge1 - edge0), 0.0, 1.0); + return t * t * (3.0 - 2.0 * t); } + + // // 8.4 Geometric Functions // -float dot (float x, float y) { - return x * y; -} -float dot (vec2 v, vec2 u) { - return v.x * u.x + v.y * u.y; -} +//// length -float dot (vec3 v, vec3 u) { - return v.x * u.x + v.y * u.y + v.z * u.z; +float length(const float x) +{ + return abs(x); } -float dot (vec4 v, vec4 u) { - return v.x * u.x + v.y * u.y + v.z * u.z + v.w * u.w; +float length(const vec2 v) +{ + float r; + const float p = dot(v, v); // p = v.x * v.x + v.y * v.y + __asm float_rsq r, p; // r = 1 / sqrt(p) + __asm float_rcp __retVal.x, r; // retVal = 1 / r } -float length (float x) { - return sqrt (dot (x, x)); +float length(const vec3 v) +{ + float r; + const float p = dot(v, v); // p = v.x * v.x + v.y * v.y + v.z * v.z + __asm float_rsq r, p; // r = 1 / sqrt(p) + __asm float_rcp __retVal.x, r; // retVal = 1 / r } -float length (vec2 v) { - return sqrt (dot (v, v)); +float length(const vec4 v) +{ + float r; + const float p = dot(v, v); // p = v.x * v.x + v.y * v.y + ... + __asm float_rsq r, p; // r = 1 / sqrt(p) + __asm float_rcp __retVal.x, r; // retVal = 1 / r } -float length (vec3 v) { - return sqrt (dot (v, v)); -} -float length (vec4 v) { - return sqrt (dot (v, v)); -} +//// distance -float distance (float x, float y) { - return length (x - y); +float distance(const float x, const float y) +{ + const float d = x - y; + __retVal = length(d); } -float distance (vec2 v, vec2 u) { - return length (v - u); +float distance(const vec2 v, const vec2 u) +{ + const vec2 d2 = v - u; + __retVal = length(d2); } -float distance (vec3 v, vec3 u) { - return length (v - u); +float distance(const vec3 v, const vec3 u) +{ + const vec3 d3 = v - u; + __retVal = length(d3); } -float distance (vec4 v, vec4 u) { - return length (v - u); +float distance(const vec4 v, const vec4 u) +{ + const vec4 d4 = v - u; + __retVal = length(d4); } -vec3 cross (vec3 v, vec3 u) { - return vec3 ( - v.y * u.z - u.y * v.z, - v.z * u.x - u.z * v.x, - v.x * u.y - u.x * v.y - ); -} -float normalize (float x) { - return 1.0; -} +//// cross -vec2 normalize (vec2 v) { - return v / length (v); +vec3 cross(const vec3 v, const vec3 u) +{ + __asm vec3_cross __retVal.xyz, v, u; } -vec3 normalize (vec3 v) { - return v / length (v); -} -vec4 normalize (vec4 v) { - return v / length (v); -} +//// faceforward -float faceforward (float N, float I, float Nref) { - return dot (Nref, I) < 0.0 ? N : -N; +float faceforward(const float N, const float I, const float Nref) +{ + // this could probably be done better + const float d = dot(Nref, I); + float s; + __asm vec4_sgt s.x, 0.0, d; // s = (0.0 > d) ? 1 : 0 + return mix(-N, N, s); } -vec2 faceforward (vec2 N, vec2 I, vec2 Nref) { - return dot (Nref, I) < 0.0 ? N : -N; +vec2 faceforward(const vec2 N, const vec2 I, const vec2 Nref) +{ + // this could probably be done better + const float d = dot(Nref, I); + float s; + __asm vec4_sgt s.x, 0.0, d; // s = (0.0 > d) ? 1 : 0 + return mix(-N, N, s); } -vec3 faceforward (vec3 N, vec3 I, vec3 Nref) { - return dot (Nref, I) < 0.0 ? N : -N; +vec3 faceforward(const vec3 N, const vec3 I, const vec3 Nref) +{ + // this could probably be done better + const float d = dot(Nref, I); + float s; + __asm vec4_sgt s.x, 0.0, d; // s = (0.0 > d) ? 1 : 0 + return mix(-N, N, s); } -vec4 faceforward (vec4 N, vec4 I, vec4 Nref) { - return dot (Nref, I) < 0.0 ? N : -N; +vec4 faceforward(const vec4 N, const vec4 I, const vec4 Nref) +{ + // this could probably be done better + const float d = dot(Nref, I); + float s; + __asm vec4_sgt s.x, 0.0, d; // s = (0.0 > d) ? 1 : 0 + return mix(-N, N, s); } -float reflect (float I, float N) { - return I - 2.0 * dot (N, I) * N; + +//// reflect + +float reflect(const float I, const float N) +{ + return I - 2.0 * dot(N, I) * N; } -vec2 reflect (vec2 I, vec2 N) { - return I - 2.0 * dot (N, I) * N; +vec2 reflect(const vec2 I, const vec2 N) +{ + return I - 2.0 * dot(N, I) * N; } -vec3 reflect (vec3 I, vec3 N) { - return I - 2.0 * dot (N, I) * N; +vec3 reflect(const vec3 I, const vec3 N) +{ + return I - 2.0 * dot(N, I) * N; } -vec4 reflect (vec4 I, vec4 N) { - return I - 2.0 * dot (N, I) * N; +vec4 reflect(const vec4 I, const vec4 N) +{ + return I - 2.0 * dot(N, I) * N; } -float refract (float I, float N, float eta) { - float k = 1.0 - eta * eta * (1.0 - dot (N, I) * dot (N, I)); - if (k < 0.0) - return 0.0; - return eta * I - (eta * dot (N, I) + sqrt (k)) * N; +//// refract + +float refract(const float I, const float N, const float eta) +{ + float k = 1.0 - eta * eta * (1.0 - dot(N, I) * dot(N, I)); + if (k < 0.0) + return 0.0; + return eta * I - (eta * dot(N, I) + sqrt(k)) * N; } -vec2 refract (vec2 I, vec2 N, float eta) { - float k = 1.0 - eta * eta * (1.0 - dot (N, I) * dot (N, I)); - if (k < 0.0) - return 0.0; - return eta * I - (eta * dot (N, I) + sqrt (k)) * N; +vec2 refract(const vec2 I, const vec2 N, const float eta) +{ + float k = 1.0 - eta * eta * (1.0 - dot(N, I) * dot(N, I)); + if (k < 0.0) + return 0.0; + return eta * I - (eta * dot(N, I) + sqrt(k)) * N; } -vec3 refract (vec3 I, vec3 N, float eta) { - float k = 1.0 - eta * eta * (1.0 - dot (N, I) * dot (N, I)); - if (k < 0.0) - return 0.0; - return eta * I - (eta * dot (N, I) + sqrt (k)) * N; +vec3 refract(const vec3 I, const vec3 N, const float eta) +{ + float k = 1.0 - eta * eta * (1.0 - dot(N, I) * dot(N, I)); + if (k < 0.0) + return 0.0; + return eta * I - (eta * dot(N, I) + sqrt(k)) * N; } -vec4 refract (vec4 I, vec4 N, float eta) { - float k = 1.0 - eta * eta * (1.0 - dot (N, I) * dot (N, I)); - if (k < 0.0) - return 0.0; - return eta * I - (eta * dot (N, I) + sqrt (k)) * N; +vec4 refract(const vec4 I, const vec4 N, const float eta) +{ + float k = 1.0 - eta * eta * (1.0 - dot(N, I) * dot(N, I)); + if (k < 0.0) + return 0.0; + return eta * I - (eta * dot(N, I) + sqrt(k)) * N; } + + + // // 8.5 Matrix Functions // @@ -1089,238 +1320,346 @@ mat4 matrixCompMult (mat4 m, mat4 n) { return mat4 (m[0] * n[0], m[1] * n[1], m[2] * n[2], m[3] * n[3]); } + + + // // 8.6 Vector Relational Functions // -bvec2 lessThan (vec2 v, vec2 u) { - return bvec2 (v.x < u.x, v.y < u.y); +//// lessThan + +bvec2 lessThan(const vec2 u, const vec2 v) +{ + __asm vec4_slt __retVal.xy, u, v; } -bvec3 lessThan (vec3 v, vec3 u) { - return bvec3 (v.x < u.x, v.y < u.y, v.z < u.z); +bvec3 lessThan(const vec3 u, const vec3 v) +{ + __asm vec4_slt __retVal.xyz, u, v; } -bvec4 lessThan (vec4 v, vec4 u) { - return bvec4 (v.x < u.x, v.y < u.y, v.z < u.z, v.w < u.w); +bvec4 lessThan(const vec4 u, const vec4 v) +{ + __asm vec4_slt __retVal, u, v; } -bvec2 lessThan (ivec2 v, ivec2 u) { - return bvec2 (v.x < u.x, v.y < u.y); +bvec2 lessThan(const ivec2 u, const ivec2 v) +{ + __asm vec4_slt __retVal.xy, u, v; } -bvec3 lessThan (ivec3 v, ivec3 u) { - return bvec3 (v.x < u.x, v.y < u.y, v.z < u.z); +bvec3 lessThan(const ivec3 u, const ivec3 v) +{ + __asm vec4_slt __retVal.xyz, u, v; } -bvec4 lessThan (ivec4 v, ivec4 u) { - return bvec4 (v.x < u.x, v.y < u.y, v.z < u.z, v.w < u.w); +bvec4 lessThan(const ivec4 u, const ivec4 v) +{ + __asm vec4_slt __retVal, u, v; } -bvec2 lessThanEqual (vec2 v, vec2 u) { - return bvec2 (v.x <= u.x, v.y <= u.y); + +//// lessThanEqual + +bvec2 lessThanEqual(const vec2 u, const vec2 v) +{ + __asm vec4_sle __retVal.xy, u, v; } -bvec3 lessThanEqual (vec3 v, vec3 u) { - return bvec3 (v.x <= u.x, v.y <= u.y, v.z <= u.z); +bvec3 lessThanEqual(const vec3 u, const vec3 v) +{ + __asm vec4_sle __retVal.xyz, u, v; } -bvec4 lessThanEqual (vec4 v, vec4 u) { - return bvec4 (v.x <= u.x, v.y <= u.y, v.z <= u.z, v.w <= u.w); +bvec4 lessThanEqual(const vec4 u, const vec4 v) +{ + __asm vec4_sle __retVal, u, v; } -bvec2 lessThanEqual (ivec2 v, ivec2 u) { - return bvec2 (v.x <= u.x, v.y <= u.y); +bvec2 lessThanEqual(const ivec2 u, const ivec2 v) +{ + __asm vec4_sle __retVal.xy, u, v; } -bvec3 lessThanEqual (ivec3 v, ivec3 u) { - return bvec3 (v.x <= u.x, v.y <= u.y, v.z <= u.z); +bvec3 lessThanEqual(const ivec3 u, const ivec3 v) +{ + __asm vec4_sle __retVal.xyz, u, v; } -bvec4 lessThanEqual (ivec4 v, ivec4 u) { - return bvec4 (v.x <= u.x, v.y <= u.y, v.z <= u.z, v.w <= u.w); +bvec4 lessThanEqual(const ivec4 u, const ivec4 v) +{ + __asm vec4_sle __retVal, u, v; } -bvec2 greaterThan (vec2 v, vec2 u) { - return bvec2 (v.x > u.x, v.y > u.y); + +//// greaterThan + +bvec2 greaterThan(const vec2 u, const vec2 v) +{ + __asm vec4_sgt __retVal.xy, u, v; } -bvec3 greaterThan (vec3 v, vec3 u) { - return bvec3 (v.x > u.x, v.y > u.y, v.z > u.z); +bvec3 greaterThan(const vec3 u, const vec3 v) +{ + __asm vec4_sgt __retVal.xyz, u, v; } -bvec4 greaterThan (vec4 v, vec4 u) { - return bvec4 (v.x > u.x, v.y > u.y, v.z > u.z, v.w > u.w); +bvec4 greaterThan(const vec4 u, const vec4 v) +{ + __asm vec4_sgt __retVal, u, v; } -bvec2 greaterThan (ivec2 v, ivec2 u) { - return bvec2 (v.x > u.x, v.y > u.y); +bvec2 greaterThan(const ivec2 u, const ivec2 v) +{ + __asm vec4_sgt __retVal.xy, u, v; } -bvec3 greaterThan (ivec3 v, ivec3 u) { - return bvec3 (v.x > u.x, v.y > u.y, v.z > u.z); +bvec3 greaterThan(const ivec3 u, const ivec3 v) +{ + __asm vec4_sgt __retVal.xyz, u, v; } -bvec4 greaterThan (ivec4 v, ivec4 u) { - return bvec4 (v.x > u.x, v.y > u.y, v.z > u.z, v.w > u.w); +bvec4 greaterThan(const ivec4 u, const ivec4 v) +{ + __asm vec4_sgt __retVal, u, v; } -bvec2 greaterThanEqual (vec2 v, vec2 u) { - return bvec2 (v.x >= u.x, v.y >= u.y); + +//// greaterThanEqual + +bvec2 greaterThanEqual(const vec2 u, const vec2 v) +{ + __asm vec4_sge __retVal.xy, u, v; } -bvec3 greaterThanEqual (vec3 v, vec3 u) { - return bvec3 (v.x >= u.x, v.y >= u.y, v.z >= u.z); +bvec3 greaterThanEqual(const vec3 u, const vec3 v) +{ + __asm vec4_sge __retVal.xyz, u, v; } -bvec4 greaterThanEqual (vec4 v, vec4 u) { - return bvec4 (v.x >= u.x, v.y >= u.y, v.z >= u.z, v.w >= u.w); +bvec4 greaterThanEqual(const vec4 u, const vec4 v) +{ + __asm vec4_sge __retVal, u, v; } -bvec2 greaterThanEqual (ivec2 v, ivec2 u) { - return bvec2 (v.x >= u.x, v.y >= u.y); +bvec2 greaterThanEqual(const ivec2 u, const ivec2 v) +{ + __asm vec4_sge __retVal.xy, u, v; } -bvec3 greaterThanEqual (ivec3 v, ivec3 u) { - return bvec3 (v.x >= u.x, v.y >= u.y, v.z >= u.z); +bvec3 greaterThanEqual(const ivec3 u, const ivec3 v) +{ + __asm vec4_sge __retVal.xyz, u, v; } -bvec4 greaterThanEqual (ivec4 v, ivec4 u) { - return bvec4 (v.x >= u.x, v.y >= u.y, v.z >= u.z, v.w >= u.w); +bvec4 greaterThanEqual(const ivec4 u, const ivec4 v) +{ + __asm vec4_sge __retVal, u, v; } -bvec2 equal (vec2 v, vec2 u) { - return bvec2 (v.x == u.x, v.y == u.y); + +//// equal + +bvec2 equal(const vec2 u, const vec2 v) +{ + __asm vec4_seq __retVal.xy, u, v; } -bvec3 equal (vec3 v, vec3 u) { - return bvec3 (v.x == u.x, v.y == u.y, v.z == u.z); +bvec3 equal(const vec3 u, const vec3 v) +{ + __asm vec4_seq __retVal.xyz, u, v; } -bvec4 equal (vec4 v, vec4 u) { - return bvec4 (v.x == u.x, v.y == u.y, v.z == u.z, v.w == u.w); +bvec4 equal(const vec4 u, const vec4 v) +{ + __asm vec4_seq __retVal, u, v; } -bvec2 equal (ivec2 v, ivec2 u) { - return bvec2 (v.x == u.x, v.y == u.y); +bvec2 equal(const ivec2 u, const ivec2 v) +{ + __asm vec4_seq __retVal.xy, u, v; } -bvec3 equal (ivec3 v, ivec3 u) { - return bvec3 (v.x == u.x, v.y == u.y, v.z == u.z); +bvec3 equal(const ivec3 u, const ivec3 v) +{ + __asm vec4_seq __retVal.xyz, u, v; } -bvec4 equal (ivec4 v, ivec4 u) { - return bvec4 (v.x == u.x, v.y == u.y, v.z == u.z, v.w == u.w); +bvec4 equal(const ivec4 u, const ivec4 v) +{ + __asm vec4_seq __retVal, u, v; } -bvec2 notEqual (vec2 v, vec2 u) { - return bvec2 (v.x != u.x, v.y != u.y); + +//// notEqual + +bvec2 notEqual(const vec2 u, const vec2 v) +{ + __asm vec4_sne __retVal.xy, u, v; } -bvec3 notEqual (vec3 v, vec3 u) { - return bvec3 (v.x != u.x, v.y != u.y, v.z != u.z); +bvec3 notEqual(const vec3 u, const vec3 v) +{ + __asm vec4_sne __retVal.xyz, u, v; } -bvec4 notEqual (vec4 v, vec4 u) { - return bvec4 (v.x != u.x, v.y != u.y, v.z != u.z, v.w != u.w); +bvec4 notEqual(const vec4 u, const vec4 v) +{ + __asm vec4_sne __retVal, u, v; } -bvec2 notEqual (ivec2 v, ivec2 u) { - return bvec2 (v.x != u.x, v.y != u.y); +bvec2 notEqual(const ivec2 u, const ivec2 v) +{ + __asm vec4_sne __retVal.xy, u, v; } -bvec3 notEqual (ivec3 v, ivec3 u) { - return bvec3 (v.x != u.x, v.y != u.y, v.z != u.z); +bvec3 notEqual(const ivec3 u, const ivec3 v) +{ + __asm vec4_sne __retVal.xyz, u, v; } -bvec4 notEqual (ivec4 v, ivec4 u) { - return bvec4 (v.x != u.x, v.y != u.y, v.z != u.z, v.w != u.w); +bvec4 notEqual(const ivec4 u, const ivec4 v) +{ + __asm vec4_sne __retVal, u, v; } -bool any (bvec2 v) { - return v.x || v.y; + +//// any + +bool any(const bvec2 v) +{ + float sum; + __asm vec4_add sum.x, v.x, v.y; + __asm vec4_sne __retVal.x, sum.x, 0.0; } -bool any (bvec3 v) { - return v.x || v.y || v.z; +bool any(const bvec3 v) +{ + float sum; + __asm vec4_add sum.x, v.x, v.y; + __asm vec4_add sum.x, sum.x, v.z; + __asm vec4_sne __retVal.x, sum.x, 0.0; } -bool any (bvec4 v) { - return v.x || v.y || v.z || v.w; +bool any(const bvec4 v) +{ + float sum; + __asm vec4_add sum.x, v.x, v.y; + __asm vec4_add sum.x, sum.x, v.z; + __asm vec4_add sum.x, sum.x, v.w; + __asm vec4_sne __retVal.x, sum.x, 0.0; } -bool all (bvec2 v) { + +//// all + +bool all (const vec2 v) +{ + float prod; + __asm vec4_multiply prod.x, v.x, v.y; + __asm vec4_sne __retVal.x, prod.x, 0.0; return v.x && v.y; } -bool all (bvec3 v) { - return v.x && v.y && v.z; +bool all (const bvec3 v) +{ + float prod; + __asm vec4_multiply prod.x, v.x, v.y; + __asm vec4_multiply prod.x, prod.x, v.z; + __asm vec4_sne __retVal.x, prod.x, 0.0; } -bool all (bvec4 v) { - return v.x && v.y && v.z && v.w; +bool all (const bvec4 v) +{ + float prod; + __asm vec4_multiply prod.x, v.x, v.y; + __asm vec4_multiply prod.x, prod.x, v.z; + __asm vec4_multiply prod.x, prod.x, v.w; + __asm vec4_sne __retVal.x, prod.x, 0.0; } -bvec2 not (bvec2 v) { - return bvec2 (!v.x, !v.y); + + +//// not + +bvec2 not (const bvec2 v) +{ + __asm vec4_seq __retVal.xy, v, 0.0; } -bvec3 not (bvec3 v) { - return bvec3 (!v.x, !v.y, !v.z); +bvec3 not (const bvec3 v) +{ + __asm vec4_seq __retVal.xyz, v, 0.0; } -bvec4 not (bvec4 v) { - return bvec4 (!v.x, !v.y, !v.z, !v.w); +bvec4 not (const bvec4 v) +{ + __asm vec4_seq __retVal, v, 0.0; } -// -// 8.7 Texture Lookup Functions -// -vec4 texture1D (sampler1D sampler, float coord) { - vec4 texel; - __asm vec4_tex1d texel, sampler, coord, 0.0; - return texel; + +//// Texture Lookup Functions (for both fragment and vertex shaders) + +vec4 texture1D(const sampler1D sampler, const float coord) +{ + __asm vec4_tex1d __retVal, sampler, coord; } -vec4 texture1DProj (sampler1D sampler, vec2 coord) { - return texture1D (sampler, coord.s / coord.t); +vec4 texture1DProj(const sampler1D sampler, const vec2 coord) +{ + // new coord with .z moved to .w + vec4 coord4; + coord4.x = coord.x; + coord4.w = coord.y; + __asm vec4_texp1d __retVal, sampler, coord4; } -vec4 texture1DProj (sampler1D sampler, vec4 coord) { - return texture1D (sampler, coord.s / coord.q); +vec4 texture1DProj(const sampler1D sampler, const vec4 coord) +{ + __asm vec4_texp1d __retVal, sampler, coord; } -vec4 texture2D (sampler2D sampler, vec2 coord) { - vec4 texel; - __asm vec4_tex2d texel, sampler, coord, 0.0; - return texel; + +vec4 texture2D(const sampler2D sampler, const vec2 coord) +{ + __asm vec4_tex2d __retVal, sampler, coord; } -vec4 texture2DProj (sampler2D sampler, vec3 coord) { - return texture2D (sampler, vec2 (coord.s / coord.p, coord.t / coord.p)); +vec4 texture2DProj(const sampler2D sampler, const vec3 coord) +{ + // new coord with .z moved to .w + vec4 coord4; + coord4.xy = coord.xy; + coord4.w = coord.z; + __asm vec4_texp2d __retVal, sampler, coord4; } -vec4 texture2DProj (sampler2D sampler, vec4 coord) { - return texture2D (sampler, vec2 (coord.s / coord.q, coord.t / coord.q)); +vec4 texture2DProj(const sampler2D sampler, const vec4 coord) +{ + __asm vec4_texp2d __retVal, sampler, coord; } -vec4 texture3D (sampler3D sampler, vec3 coord) { - vec4 texel; - __asm vec4_tex3d texel, sampler, coord, 0.0; - return texel; + +vec4 texture3D(const sampler3D sampler, const vec3 coord) +{ + __asm vec4_tex3d __retVal, sampler, coord; } -vec4 texture3DProj (sampler3D sampler, vec4 coord) { - return texture3D (sampler, vec3 (coord.s / coord.q, coord.t / coord.q, coord.p / coord.q)); +vec4 texture3DProj(const sampler3D sampler, const vec4 coord) +{ + __asm vec4_texp3d __retVal, sampler, coord; } -vec4 textureCube (samplerCube sampler, vec3 coord) { - vec4 texel; - __asm vec4_texcube texel, sampler, coord, 0.0; - return texel; + +vec4 textureCube(const samplerCube sampler, const vec3 coord) +{ + __asm vec4_texcube __retVal, sampler, coord; } + + vec4 shadow1D (sampler1DShadow sampler, vec3 coord) { vec4 texel; __asm vec4_shad1d texel, sampler, coord, 0.0; @@ -1347,123 +1686,107 @@ vec4 shadow2DProj (sampler2DShadow sampler, vec4 coord) { // AUTHOR: Stefan Gustavson ([email protected]), Nov 26, 2005 // -float noise1 (float x) { - float a; - __asm float_noise1 a, x; - return a; +float noise1(const float x) +{ + __asm float_noise1 __retVal, x; } -float noise1 (vec2 x) { - float a; - __asm float_noise2 a, x; - return a; -} -float noise1 (vec3 x) { - float a; - __asm float_noise3 a, x; - return a; +float noise1(const vec2 x) +{ + __asm float_noise2 __retVal, x; } -float noise1 (vec4 x) { - float a; - __asm float_noise4 a, x; - return a; +float noise1(const vec3 x) +{ + __asm float_noise3 __retVal, x; } -vec2 noise2 (float x) { - return vec2 ( - noise1 (x), - noise1 (x + 19.34) - ); +float noise1(const vec4 x) +{ + __asm float_noise4 __retVal, x; } -vec2 noise2 (vec2 x) { - return vec2 ( - noise1 (x), - noise1 (x + vec2 (19.34, 7.66)) - ); +vec2 noise2(const float x) +{ + __retVal.x = noise1(x); + __retVal.y = noise1(x + 19.34); } -vec2 noise2 (vec3 x) { - return vec2 ( - noise1 (x), - noise1 (x + vec3 (19.34, 7.66, 3.23)) - ); +vec2 noise2(const vec2 x) +{ + __retVal.x = noise1(x); + __retVal.y = noise1(x + vec2(19.34, 7.66)); } -vec2 noise2 (vec4 x) { - return vec2 ( - noise1 (x), - noise1 (x + vec4 (19.34, 7.66, 3.23, 2.77)) - ); +vec2 noise2(const vec3 x) +{ + __retVal.x = noise1(x); + __retVal.y = noise1(x + vec3(19.34, 7.66, 3.23)); } -vec3 noise3 (float x) { - return vec3 ( - noise1 (x), - noise1 (x + 19.34), - noise1 (x + 5.47) - ); +vec2 noise2(const vec4 x) +{ + __retVal.x = noise1(x); + __retVal.y = noise1(x + vec4(19.34, 7.66, 3.23, 2.77)); } -vec3 noise3 (vec2 x) { - return vec3 ( - noise1 (x), - noise1 (x + vec2 (19.34, 7.66)), - noise1 (x + vec2 (5.47, 17.85)) - ); +vec3 noise3(const float x) +{ + __retVal.x = noise1(x); + __retVal.y = noise1(x + 19.34); + __retVal.z = noise1(x + 5.47); } -vec3 noise3 (vec3 x) { - return vec3 ( - noise1 (x), - noise1 (x + vec3 (19.34, 7.66, 3.23)), - noise1 (x + vec3 (5.47, 17.85, 11.04)) - ); +vec3 noise3(const vec2 x) +{ + __retVal.x = noise1(x); + __retVal.y = noise1(x + vec2(19.34, 7.66)); + __retVal.z = noise1(x + vec2(5.47, 17.85)); } -vec3 noise3 (vec4 x) { - return vec3 ( - noise1 (x), - noise1 (x + vec4 (19.34, 7.66, 3.23, 2.77)), - noise1 (x + vec4 (5.47, 17.85, 11.04, 13.19)) - ); +vec3 noise3(const vec3 x) +{ + __retVal.x = noise1(x); + __retVal.y = noise1(x + vec3(19.34, 7.66, 3.23)); + __retVal.z = noise1(x + vec3(5.47, 17.85, 11.04)); } -vec4 noise4 (float x) { - return vec4 ( - noise1 (x), - noise1 (x + 19.34), - noise1 (x + 5.47), - noise1 (x + 23.54) - ); +vec3 noise3(const vec4 x) +{ + __retVal.x = noise1(x); + __retVal.y = noise1(x + vec4(19.34, 7.66, 3.23, 2.77)); + __retVal.z = noise1(x + vec4(5.47, 17.85, 11.04, 13.19)); } -vec4 noise4 (vec2 x) { - return vec4 ( - noise1 (x), - noise1 (x + vec2 (19.34, 7.66)), - noise1 (x + vec2 (5.47, 17.85)), - noise1 (x + vec2 (23.54, 29.11)) - ); +vec4 noise4(const float x) +{ + __retVal.x = noise1(x); + __retVal.y = noise1(x + 19.34); + __retVal.z = noise1(x + 5.47); + __retVal.w = noise1(x + 23.54); } -vec4 noise4 (vec3 x) { - return vec4 ( - noise1 (x), - noise1 (x + vec3 (19.34, 7.66, 3.23)), - noise1 (x + vec3 (5.47, 17.85, 11.04)), - noise1 (x + vec3 (23.54, 29.11, 31.91)) - ); +vec4 noise4(const vec2 x) +{ + __retVal.x = noise1(x); + __retVal.y = noise1(x + vec2 (19.34, 7.66)); + __retVal.z = noise1(x + vec2 (5.47, 17.85)); + __retVal.w = noise1(x + vec2 (23.54, 29.11)); } -vec4 noise4 (vec4 x) { - return vec4 ( - noise1 (x), - noise1 (x + vec4 (19.34, 7.66, 3.23, 2.77)), - noise1 (x + vec4 (5.47, 17.85, 11.04, 13.19)), - noise1 (x + vec4 (23.54, 29.11, 31.91, 37.48)) - ); +vec4 noise4(const vec3 x) +{ + __retVal.x = noise1(x); + __retVal.y = noise1(x + vec3(19.34, 7.66, 3.23)); + __retVal.z = noise1(x + vec3(5.47, 17.85, 11.04)); + __retVal.w = noise1(x + vec3(23.54, 29.11, 31.91)); } +vec4 noise4(const vec4 x) +{ + __retVal.x = noise1(x); + __retVal.y = noise1(x + vec4(19.34, 7.66, 3.23, 2.77)); + __retVal.z = noise1(x + vec4(5.47, 17.85, 11.04, 13.19)); + __retVal.w = noise1(x + vec4(23.54, 29.11, 31.91, 37.48)); +} diff --git a/src/mesa/shader/slang/library/slang_common_builtin_gc.h b/src/mesa/shader/slang/library/slang_common_builtin_gc.h index e5876528e1c..417f1fce86a 100644 --- a/src/mesa/shader/slang/library/slang_common_builtin_gc.h +++ b/src/mesa/shader/slang/library/slang_common_builtin_gc.h @@ -21,627 +21,757 @@ 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b/src/mesa/shader/slang/library/slang_core.gc @@ -23,1493 +23,2460 @@ */ // -// This file defines nearly all constructors and operators for built-in data types, using -// extended language syntax. In general, compiler treats constructors and operators as -// ordinary functions with some exceptions. For example, the language does not allow -// functions to be called in constant expressions - here the exception is made to allow it. +// This file defines nearly all constructors and operators for built-in data +// types, using extended language syntax. In general, compiler treats +// constructors and operators as ordinary functions with some exceptions. +// For example, the language does not allow functions to be called in +// constant expressions - here the exception is made to allow it. // -// Each implementation provides its own version of this file. Each implementation can define -// the required set of operators and constructors in its own fashion. +// Each implementation provides its own version of this file. Each +// implementation can define the required set of operators and constructors +// in its own fashion. // -// The extended language syntax is only present when compiling this file. It is implicitly -// included at the very beginning of the compiled shader, so no built-in functions can be -// used. +// The extended language syntax is only present when compiling this file. +// It is implicitly included at the very beginning of the compiled shader, +// so no built-in functions can be used. // -// To communicate with the implementation, a special extended "__asm" keyword is used, followed -// by an instruction name (any valid identifier), a destination variable identifier and a -// a list of zero or more source variable identifiers. A variable identifier is a variable name -// declared earlier in the code (as a function parameter, local or global variable). -// An instruction name designates an instruction that must be exported by the implementation. -// Each instruction receives data from source variable identifiers and returns data in the -// destination variable identifier. +// To communicate with the implementation, a special extended "__asm" keyword +// is used, followed by an instruction name (any valid identifier), a +// destination variable identifier and a list of zero or more source +// variable identifiers. // -// It is up to the implementation how to define a particular operator or constructor. If it is -// expected to being used rarely, it can be defined in terms of other operators and constructors, +// A variable identifier is a variable name declared earlier in the code +// (as a function parameter, local or global variable). +// +// An instruction name designates an instruction that must be exported +// by the implementation. Each instruction receives data from source +// variable identifiers and returns data in the destination variable +// identifier. +// +// It is up to the implementation how to define a particular operator +// or constructor. If it is expected to being used rarely, it can be +// defined in terms of other operators and constructors, // for example: // // ivec2 __operator + (const ivec2 x, const ivec2 y) { // return ivec2 (x[0] + y[0], x[1] + y[1]); // } // -// If a particular operator or constructor is expected to be used very often or is an atomic -// operation (that is, an operation that cannot be expressed in terms of other operations or -// would create a dependency cycle) it must be defined using one or more __asm constructs. +// If a particular operator or constructor is expected to be used very +// often or is an atomic operation (that is, an operation that cannot be +// expressed in terms of other operations or would create a dependency +// cycle) it must be defined using one or more __asm constructs. // -// Each implementation must define constructors for all scalar types (bool, float, int). -// There are 9 scalar-to-scalar constructors (including identity constructors). However, -// since the language introduces special constructors (like matrix constructor with a single +// Each implementation must define constructors for all scalar types +// (bool, float, int). There are 9 scalar-to-scalar constructors +// (including identity constructors). However, since the language +// introduces special constructors (like matrix constructor with a single // scalar value), implementations must also implement these cases. // The compiler provides the following algorithm when resolving a constructor: // - try to find a constructor with a prototype matching ours, -// - if no constructor is found and this is a scalar-to-scalar constructor, raise an error, +// - if no constructor is found and this is a scalar-to-scalar constructor, +// raise an error, // - if a constructor is found, execute it and return, -// - count the size of the constructor parameter list - if it is less than the size of -// our constructor's type, raise an error, -// - for each parameter in the list do a recursive constructor matching for appropriate -// scalar fields in the constructed variable, +// - count the size of the constructor parameter list - if it is less than +// the size of our constructor's type, raise an error, +// - for each parameter in the list do a recursive constructor matching for +// appropriate scalar fields in the constructed variable, // -// Each implementation must also define a set of operators that deal with built-in data types. +// Each implementation must also define a set of operators that deal with +// built-in data types. // There are four kinds of operators: -// 1) Operators that are implemented only by the compiler: "()" (function call), "," (sequence) -// and "?:" (selection). -// 2) Operators that are implemented by the compiler by expressing it in terms of other operators: +// 1) Operators that are implemented only by the compiler: "()" (function +// call), "," (sequence) and "?:" (selection). +// 2) Operators that are implemented by the compiler by expressing it in +// terms of other operators: // - "." (field selection) - translated to subscript access, -// - "&&" (logical and) - translated to "<left_expr> ? <right_expr> : false", +// - "&&" (logical and) - translated to "<left_expr> ? <right_expr> : +// false", // - "||" (logical or) - translated to "<left_expr> ? true : <right_expr>", -// 3) Operators that can be defined by the implementation and if the required prototype is not -// found, standard behaviour is used: -// - "==", "!=", "=" (equality, assignment) - compare or assign matching fields one-by-one; -// note that at least operators for scalar data types must be defined by the implementation -// to get it work, -// 4) All other operators not mentioned above. If no required prototype is found, an error is -// raised. An implementation must follow the language specification to provide all valid -// operator prototypes. +// 3) Operators that can be defined by the implementation and if the required +// prototype is not found, standard behaviour is used: +// - "==", "!=", "=" (equality, assignment) - compare or assign +// matching fields one-by-one; +// note that at least operators for scalar data types must be defined +// by the implementation to get it work, +// 4) All other operators not mentioned above. If no required prototype is +// found, an error is raised. An implementation must follow the language +// specification to provide all valid operator prototypes. // -int __constructor (const float f) { - int i; - __asm float_to_int i, f; - return i; + + +//// Basic, scalar constructors/casts + +int __constructor(const float f) +{ + __asm float_to_int __retVal, f; } -bool __constructor (const int i) { - return i != 0; +bool __constructor(const int i) +{ + const float zero = 0.0; + __asm vec4_seq __retVal, i, zero; } -bool __constructor (const float f) { - return f != 0.0; +bool __constructor(const float f) +{ + const float zero = 0.0; + __asm vec4_seq __retVal, i, zero; } -int __constructor (const bool b) { - return b ? 1 : 0; +int __constructor(const bool b) +{ + __retVal = b; } -float __constructor (const bool b) { - return b ? 1.0 : 0.0; +float __constructor(const bool b) +{ + __retVal = b; } -float __constructor (const int i) { - float f; - __asm int_to_float f, i; - return f; +float __constructor(const int i) +{ + __asm int_to_float __retVal, i; } -bool __constructor (const bool b) { - return b; +bool __constructor(const bool b) +{ + __retVal = b; } -int __constructor (const int i) { - return i; +int __constructor(const int i) +{ + __retVal = i; } -float __constructor (const float f) { - return f; +float __constructor(const float f) +{ + __retVal = f; } -vec2 __constructor (const float f) { - return vec2 (f, f); + +//// vec2 constructors + +vec2 __constructor(const float x, const float y) +{ + __retVal.x = x; + __retVal.y = y; } -vec2 __constructor (const int i) { - float x; - __asm int_to_float x, i; - return vec2 (x); +vec2 __constructor(const float f) +{ + __retVal.xy = f.xx; } -vec2 __constructor (const bool b) { - return vec2 (b ? 1.0 : 0.0); +vec2 __constructor(const int i) +{ + __retVal.xy = i.xx; } -vec3 __constructor (const float f) { - return vec3 (f, f, f); +vec2 __constructor(const bool b) +{ + __retVal.xy = b.xx; } -vec3 __constructor (const int i) { - float x; - __asm int_to_float x, i; - return vec3 (x); +vec2 __constructor(const vec3 v) +{ + __retVal.xy = v.xy; } -vec3 __constructor (const bool b) { - return vec3 (b ? 1.0 : 0.0); + +//// vec3 constructors + +vec3 __constructor(const float x, const float y, const float z) +{ + __retVal.x = x; + __retVal.y = y; + __retVal.z = z; } -vec4 __constructor (const float f) { - return vec4 (f, f, f, f); +vec3 __constructor(const float f) +{ + __retVal.xyz = f.xxx; } -vec4 __constructor (const int i) { - float x; - __asm int_to_float x, i; - return vec4 (x); +vec3 __constructor(const int i) +{ + __asm int_to_float __retVal.xyz, i.xxx; } -vec4 __constructor (const bool b) { - return vec4 (b ? 1.0 : 0.0); +vec3 __constructor(const bool b) +{ + __retVal.xyz = b.xxx; } -ivec2 __constructor (const int i) { - return ivec2 (i, i); +vec3 __constructor(const vec4 v) +{ + __retVal.xyz = v.xyz; } -ivec2 __constructor (const float f) { - return ivec2 (int (f)); + +//// vec4 constructors + +vec4 __constructor(const float x, const float y, const float z, const float w) +{ + __retVal.x = x; + __retVal.y = y; + __retVal.z = z; + __retVal.w = w; } -ivec2 __constructor (const bool b) { - return ivec2 (int (b)); +vec4 __constructor(const float f) +{ + __retVal = f.xxxx; } -ivec3 __constructor (const int i) { - return ivec3 (i, i, i); +vec4 __constructor(const int i) +{ + __retVal = i.xxxx; } -ivec3 __constructor (const float f) { - return ivec3 (int (f)); +vec4 __constructor(const bool b) +{ + __retVal = b.xxxx; } -ivec3 __constructor (const bool b) { - return ivec3 (int (b)); +vec4 __constructor(const vec3 v3, const float f) +{ + // XXX this constructor shouldn't be needed anymore + __retVal.xyz = v3; + __retVal.w = f; } -ivec4 __constructor (const int i) { - return ivec4 (i, i, i, i); + +//// ivec2 constructors + +ivec2 __constructor(const int i, const int j) +{ + __retVal.x = i; + __retVal.y = j; } -ivec4 __constructor (const float f) { - return ivec4 (int (f)); +ivec2 __constructor(const int i) +{ + __retVal.xy = i.xx; } -ivec4 __constructor (const bool b) { - return ivec4 (int (b)); +ivec2 __constructor(const float f) +{ + __asm float_to_int __retVal.xy, f.xx; } -bvec2 __constructor (const bool b) { - return bvec2 (b, b); +ivec2 __constructor(const bool b) +{ + __asm float_to_int __retVal.xy, b.xx; } -bvec2 __constructor (const float f) { - return bvec2 (bool (f)); + +//// ivec3 constructors + +ivec3 __constructor(const int i, const int j, const int k) +{ + __retVal.x = i; + __retVal.y = j; + __retVal.z = k; } -bvec2 __constructor (const int i) { - return bvec2 (bool (i)); +ivec3 __constructor(const int i) +{ + __retVal.xyz = i.xxx; } -bvec3 __constructor (const bool b) { - return bvec3 (b, b, b); +ivec3 __constructor(const float f) +{ + __retVal.xyz = f.xxx; } -bvec3 __constructor (const float f) { - return bvec3 (bool (f)); +ivec3 __constructor(const bool b) +{ + __retVal.xyz = b.xxx; } -bvec3 __constructor (const int i) { - return bvec3 (bool (i)); + +//// ivec4 constructors + +ivec4 __constructor(const int x, const int y, const int z, const int w) +{ + __retVal.x = x; + __retVal.y = y; + __retVal.z = z; + __retVal.w = w; } -bvec4 __constructor (const bool b) { - return bvec4 (b, b, b, b); +ivec4 __constructor(const int i) +{ + __retVal = i.xxxx; } -bvec4 __constructor (const float f) { - return bvec4 (bool (f)); +ivec4 __constructor(const float f) +{ + __asm float_to_int __retVal, f.xxxx; } -bvec4 __constructor (const int i) { - return bvec4 (bool (i)); +ivec4 __constructor(const bool b) +{ + __retVal = b.xxxx; } -mat2 __constructor (const float f) { - return mat2 (f, 0.0, 0.0, f); + +//// bvec2 constructors + +bvec2 __constructor(const bool b1, const bool b2) +{ + __retVal.x = b1; + __retVal.y = b2; } -mat2 __constructor (const int i) { - float x; - __asm int_to_float x, i; - return mat2 (x); +bvec2 __constructor(const bool b) +{ + __retVal.xy = b.xx; } -mat2 __constructor (const bool b) { - return mat2 (b ? 1.0 : 0.0); +bvec2 __constructor(const float f) +{ + const vec2 zero = vec2(0.0, 0.0); + __asm vec4_seq __retVal.xy, f.xx, zero; } -mat3 __constructor (const float f) { - return mat3 (f, 0.0, 0.0, 0.0, f, 0.0, 0.0, 0.0, f); +bvec2 __constructor(const int i) +{ + const ivec2 zero = ivec2(0, 0); + __asm vec4_seq __retVal.xy, i.xx, zero; } -mat3 __constructor (const int i) { - float x; - __asm int_to_float x, i; - return mat3 (x); + +//// bvec3 constructors + +bvec3 __constructor(const bool b1, const bool b2, const bool b3) +{ + __retVal.x = b1; + __retVal.y = b2; + __retVal.z = b3; } -mat3 __constructor (const bool b) { - return mat3 (b ? 1.0 : 0.0); +bvec3 __constructor(const bool b) +{ + __retVal.xyz = b.xxx; } -mat4 __constructor (const float f) { - return mat4 (f, 0.0, 0.0, 0.0, 0.0, f, 0.0, 0.0, 0.0, 0.0, f, 0.0, 0.0, 0.0, 0.0, f); +bvec3 __constructor(const float f) +{ + const vec3 zero = vec3(0.0, 0.0, 0.0); + __asm vec4_seq __retVal.xyz, f.xxx, zero; } -mat4 __constructor (const int i) { - float x; - __asm int_to_float x, i; - return mat4 (x); +bvec3 __constructor(const int i) +{ + const ivec3 zero = ivec3(0, 0, 0); + __asm vec4_seq __retVal.xyz, i.xxx, zero; } -mat4 __constructor (const bool b) { - return mat4 (b ? 1.0 : 0.0); + +//// bvec4 constructors + +bvec4 __constructor(const bool b1, const bool b2, const bool b3, const bool b4) +{ + __retVal.x = b1; + __retVal.y = b2; + __retVal.z = b3; + __retVal.w = b4; } -void __operator += (inout float a, const float b) { - __asm float_add a, a, b; +bvec4 __constructor(const bool b) +{ + __retVal.xyzw = b.xxxx; } -float __operator - (const float a) { - float b; - __asm float_negate b, a; - return b; +bvec4 __constructor(const float f) +{ + const vec4 zero = vec4(0.0, 0.0, 0.0, 0.0); + __asm vec4_seq __retVal, f.xxxx, zero; } -void __operator -= (inout float a, const float b) { - float c; - __asm float_negate c, b; - __asm float_add a, a, c; +bvec4 __constructor(const int i) +{ + const ivec4 zero = ivec4(0, 0, 0, 0); + __asm vec4_seq __retVal, i.xxxx, zero; } -void __operator *= (inout float a, const float b) { - __asm float_multiply a, a, b; + + +//// mat2 constructors + +mat2 __constructor(const float m00, const float m10, + const float m01, const float m11) +{ + __retVal[0].x = m00; + __retVal[0].y = m10; + __retVal[1].x = m01; + __retVal[1].y = m11; } -void __operator /= (inout float a, const float b) { - __asm float_divide a, a, b; +mat2 __constructor(const float f) +{ + __retVal[0].x = f; + __retVal[0].y = 0.0; + __retVal[1].x = 0.0; + __retVal[1].y = f; } -float __operator + (const float a, const float b) { - float c; - __asm float_add c, a, b; - return c; +mat2 __constructor(const int i) +{ + return mat2(float(i)); } -void __operator += (inout int a, const int b) { - a = int (float (a) + float (b)); +mat2 __constructor(const bool b) +{ + return mat2(float(b)); } -int __operator - (const int a) { - float x; - int b; - __asm int_to_float x, a; - __asm float_negate x, x; - __asm float_to_int b, x; - return b; +mat2 __constructor(const vec2 c0, const vec2 c1) +{ + __retVal[0] = c0; + __retVal[1] = c1; } -void __operator -= (inout int a, const int b) { - a += -b; + +//// mat3 constructors + +mat3 __constructor(const float m00, const float m10, const float m20, + const float m01, const float m11, const float m21, + const float m02, const float m12, const float m22) +{ + __retVal[0].x = m00; + __retVal[0].y = m10; + __retVal[0].z = m20; + __retVal[1].x = m01; + __retVal[1].y = m11; + __retVal[1].z = m21; + __retVal[2].x = m02; + __retVal[2].y = m12; + __retVal[2].z = m22; } -float __operator * (const float a, const float b) { - float c; - __asm float_multiply c, a, b; - return c; +mat3 __constructor(const float f) +{ + vec2 v = vec2(f, 0.0); + __retVal[0] = v.xyy; + __retVal[1] = v.yxy; + __retVal[2] = v.yyx; } -void __operator *= (inout int a, const int b) { - a = int (float (a) * float (b)); +mat3 __constructor(const int i) +{ + return mat3(float(i)); } -float __operator / (const float a, const float b) { - float c; - __asm float_divide c, a, b; - return c; +mat3 __constructor(const bool b) +{ + return mat3(float(b)); } -void __operator /= (inout int a, const int b) { - a = int (float (a) / float (b)); +mat3 __constructor(const vec3 c0, const vec3 c1, const vec3 c2) +{ + __retVal[0] = c0; + __retVal[1] = c1; + __retVal[2] = c2; } -void __operator += (inout vec2 v, const vec2 u) { - v.x += u.x; - v.y += u.y; + +//// mat4 constructors + +mat4 __constructor(const float m00, const float m10, const float m20, const float m30, + const float m01, const float m11, const float m21, const float m31, + const float m02, const float m12, const float m22, const float m32, + const float m03, const float m13, const float m23, const float m33) +{ + __retVal[0].x = m00; + __retVal[0].y = m10; + __retVal[0].z = m20; + __retVal[0].w = m30; + __retVal[1].x = m01; + __retVal[1].y = m11; + __retVal[1].z = m21; + __retVal[1].w = m31; + __retVal[2].x = m02; + __retVal[2].y = m12; + __retVal[2].z = m22; + __retVal[2].w = m32; + __retVal[3].x = m03; + __retVal[3].y = m13; + __retVal[3].z = m23; + __retVal[3].w = m33; } -void __operator -= (inout vec2 v, const vec2 u) { - v.x -= u.x; - v.y -= u.y; + +mat4 __constructor(const float f) +{ + vec2 v = vec2(f, 0.0); + __retVal[0] = v.xyyy; + __retVal[1] = v.yxyy; + __retVal[2] = v.yyxy; + __retVal[3] = v.yyyx; } -void __operator *= (inout vec2 v, const vec2 u) { - v.x *= u.x; - v.y *= u.y; +mat4 __constructor(const int i) +{ + return mat4(float(i)); } -void __operator /= (inout vec2 v, const vec2 u) { - v.x /= u.x; - v.y /= u.y; +mat4 __constructor(const bool b) +{ + return mat4(float(b)); } -void __operator += (inout vec3 v, const vec3 u) { - v.x += u.x; - v.y += u.y; - v.z += u.z; +mat4 __constructor(const vec4 c0, const vec4 c1, const vec4 c2, const vec4 c3) +{ + __retVal[0] = c0; + __retVal[1] = c1; + __retVal[2] = c2; + __retVal[3] = c3; } -void __operator -= (inout vec3 v, const vec3 u) { - v.x -= u.x; - v.y -= u.y; - v.z -= u.z; + + +//// Basic int operators + +int __operator + (const int a, const int b) +{ +// XXX If we ever have int registers, we'll do something like this: +// XXX For now, mostly treat ints as floats. +// float x, y; +// __asm int_to_float x, a; +// __asm int_to_float y, b; +// __asm vec4_add x.x, x.x, y.x; +// __asm float_to_int __retVal, x; + float x; + __asm vec4_add x, a, b; + __asm float_to_int __retVal, x; } -void __operator *= (inout vec3 v, const vec3 u) { - v.x *= u.x; - v.y *= u.y; - v.z *= u.z; +int __operator - (const int a, const int b) +{ + float x; + __asm vec4_subtract x, a, b; + __asm float_to_int __retVal, x; } -void __operator /= (inout vec3 v, const vec3 u) { - v.x /= u.x; - v.y /= u.y; - v.z /= u.z; +int __operator * (const int a, const int b) +{ + float x; + __asm vec4_multiply x, a, b; + __asm float_to_int __retVal, x; } -void __operator += (inout vec4 v, const vec4 u) { - v.x += u.x; - v.y += u.y; - v.z += u.z; - v.w += u.w; +int __operator / (const int a, const int b) +{ + float bInv, x; + __asm float_rcp bInv, b; + __asm vec4_multiply x, a, bInv; + __asm float_to_int __retVal, x; } -void __operator -= (inout vec4 v, const vec4 u) { - v.x -= u.x; - v.y -= u.y; - v.z -= u.z; - v.w -= u.w; + +//// Basic ivec2 operators + +ivec2 __operator + (const ivec2 a, const ivec2 b) +{ + vec2 x; + __asm vec4_add x, a, b; + __asm float_to_int __retVal, x; } -void __operator *= (inout vec4 v, const vec4 u) { - v.x *= u.x; - v.y *= u.y; - v.z *= u.z; - v.w *= u.w; +ivec2 __operator - (const ivec2 a, const ivec2 b) +{ + vec2 x; + __asm vec4_subtract x, a, b; + __asm float_to_int __retVal, x; } -void __operator /= (inout vec4 v, const vec4 u) { - v.x /= u.x; - v.y /= u.y; - v.z /= u.z; - v.w /= u.w; +ivec2 __operator * (const ivec2 a, const ivec2 b) +{ + vec2 x; + __asm vec4_multiply x, a, b; + __asm float_to_int __retVal, x; } -void __operator += (inout ivec2 v, const ivec2 u) { - v.x += u.x; - v.y += u.y; +ivec2 __operator / (const ivec2 a, const ivec2 b) +{ + vec2 bInv, x; + __asm float_rcp bInv.x, b.x; + __asm float_rcp bInv.y, b.y; + __asm vec4_multiply x, a, bInv; + __asm float_to_int __retVal, x; } -void __operator -= (inout ivec2 v, const ivec2 u) { - v.x -= u.x; - v.y -= u.y; + +//// Basic ivec3 operators + +ivec3 __operator + (const ivec3 a, const ivec3 b) +{ + vec3 x; + __asm vec4_add x, a, b; + __asm float_to_int __retVal, x; } -void __operator *= (inout ivec2 v, const ivec2 u) { - v.x *= u.x; - v.y *= u.y; +ivec3 __operator - (const ivec3 a, const ivec3 b) +{ + vec3 x; + __asm vec4_subtract x, a, b; + __asm float_to_int __retVal, x; } -void __operator /= (inout ivec2 v, const ivec2 u) { - v.x /= u.x; - v.y /= u.y; +ivec3 __operator * (const ivec3 a, const ivec3 b) +{ + vec3 x; + __asm vec4_multiply x, a, b; + __asm float_to_int __retVal, x; } -void __operator += (inout ivec3 v, const ivec3 u) { - v.x += u.x; - v.y += u.y; - v.z += u.z; +ivec3 __operator / (const ivec3 a, const ivec3 b) +{ + vec3 bInv, x; + __asm float_rcp bInv.x, b.x; + __asm float_rcp bInv.y, b.y; + __asm float_rcp bInv.z, b.z; + __asm vec4_multiply x, a, bInv; + __asm float_to_int __retVal, x; } -void __operator -= (inout ivec3 v, const ivec3 u) { - v.x -= u.x; - v.y -= u.y; - v.z -= u.z; + +//// Basic ivec4 operators + +ivec4 __operator + (const ivec4 a, const ivec4 b) +{ + vec3 x; + __asm vec4_add x, a, b; + __asm float_to_int __retVal, x; } -void __operator *= (inout ivec3 v, const ivec3 u) { - v.x *= u.x; - v.y *= u.y; - v.z *= u.z; +ivec4 __operator - (const ivec4 a, const ivec4 b) +{ + vec4 x; + __asm vec4_subtract x, a, b; + __asm float_to_int __retVal, x; } -void __operator /= (inout ivec3 v, const ivec3 u) { - v.x /= u.x; - v.y /= u.y; - v.z /= u.z; +ivec4 __operator * (const ivec4 a, const ivec4 b) +{ + vec4 x; + __asm vec4_multiply x, a, b; + __asm float_to_int __retVal, x; } -void __operator += (inout ivec4 v, const ivec4 u) { - v.x += u.x; - v.y += u.y; - v.z += u.z; - v.w += u.w; +ivec4 __operator / (const ivec4 a, const ivec4 b) +{ + vec4 bInv, x; + __asm float_rcp bInv.x, b.x; + __asm float_rcp bInv.y, b.y; + __asm float_rcp bInv.z, b.z; + __asm float_rcp bInv.w, b.w; + __asm vec4_multiply x, a, bInv; + __asm float_to_int __retVal, x; } -void __operator -= (inout ivec4 v, const ivec4 u) { - v.x -= u.x; - v.y -= u.y; - v.z -= u.z; - v.w -= u.w; + +//// Basic float operators + +float __operator + (const float a, const float b) +{ + __asm vec4_add __retVal.x, a, b; } -void __operator *= (inout ivec4 v, const ivec4 u) { - v.x *= u.x; - v.y *= u.y; - v.z *= u.z; - v.w *= u.w; +float __operator - (const float a, const float b) +{ + __asm vec4_subtract __retVal.x, a, b; } -void __operator /= (inout ivec4 v, const ivec4 u) { - v.x /= u.x; - v.y /= u.y; - v.z /= u.z; - v.w /= u.w; +float __operator * (const float a, const float b) +{ + __asm vec4_multiply __retVal.x, a, b; } -void __operator += (inout mat2 m, const mat2 n) { - m[0] += n[0]; - m[1] += n[1]; +float __operator / (const float a, const float b) +{ + float bInv; + __asm float_rcp bInv.x, b.x; + __asm vec4_multiply __retVal.x, a, bInv; } -void __operator -= (inout mat2 m, const mat2 n) { - m[0] -= n[0]; - m[1] -= n[1]; + +//// Basic vec2 operators + +vec2 __operator + (const vec2 v, const vec2 u) +{ + __asm vec4_add __retVal.xy, v, u; } -vec2 __operator * (const mat2 m, const vec2 v) { - return vec2 ( - v.x * m[0].x + v.y * m[1].x, - v.x * m[0].y + v.y * m[1].y - ); +vec2 __operator - (const vec2 v, const vec2 u) +{ + __asm vec4_subtract __retVal.xy, v, u; } -mat2 __operator * (const mat2 m, const mat2 n) { - return mat2 (m * n[0], m * n[1]); +vec2 __operator * (const vec2 v, const vec2 u) +{ + __asm vec4_multiply __retVal.xy, v, u; } -void __operator *= (inout mat2 m, const mat2 n) { - m = m * n; +vec2 __operator / (const vec2 v, const vec2 u) +{ + vec2 w; // = 1 / u + __asm float_rcp w.x, u.x; + __asm float_rcp w.y, u.y; + __asm vec4_multiply __retVal.xy, v, w; } -void __operator /= (inout mat2 m, const mat2 n) { - m[0] /= n[0]; - m[1] /= n[1]; + +//// Basic vec3 operators + +vec3 __operator + (const vec3 v, const vec3 u) +{ + __asm vec4_add __retVal.xyz, v, u; } -void __operator += (inout mat3 m, const mat3 n) { - m[0] += n[0]; - m[1] += n[1]; - m[2] += n[2]; +vec3 __operator - (const vec3 v, const vec3 u) +{ + __asm vec4_subtract __retVal.xyz, v, u; } -void __operator -= (inout mat3 m, const mat3 n) { - m[0] -= n[0]; - m[1] -= n[1]; - m[2] -= n[2]; +vec3 __operator * (const vec3 v, const vec3 u) +{ + __asm vec4_multiply __retVal.xyz, v, u; } -vec3 __operator * (const mat3 m, const vec3 v) { - return vec3 ( - v.x * m[0].x + v.y * m[1].x + v.z * m[2].x, - v.x * m[0].y + v.y * m[1].y + v.z * m[2].y, - v.x * m[0].z + v.y * m[1].z + v.z * m[2].z - ); +vec3 __operator / (const vec3 v, const vec3 u) +{ + vec3 w; // = 1 / u + __asm float_rcp w.x, u.x; + __asm float_rcp w.y, u.y; + __asm float_rcp w.z, u.z; + __asm vec4_multiply __retVal.xyz, v, w; } -mat3 __operator * (const mat3 m, const mat3 n) { - return mat3 (m * n[0], m * n[1], m * n[2]); + +//// Basic vec4 operators + +vec4 __operator + (const vec4 v, const vec4 u) +{ + __asm vec4_add __retVal, v, u; } -void __operator *= (inout mat3 m, const mat3 n) { - m = m * n; +vec4 __operator - (const vec4 v, const vec4 u) +{ + __asm vec4_subtract __retVal, v, u; } -void __operator /= (inout mat3 m, const mat3 n) { - m[0] /= n[0]; - m[1] /= n[1]; - m[2] /= n[2]; +vec4 __operator * (const vec4 v, const vec4 u) +{ + __asm vec4_multiply __retVal, v, u; } -void __operator += (inout mat4 m, const mat4 n) { - m[0] += n[0]; - m[1] += n[1]; - m[2] += n[2]; - m[3] += n[3]; +vec4 __operator / (const vec4 v, const vec4 u) +{ + vec4 w; // = 1 / u + __asm float_rcp w.x, u.x; + __asm float_rcp w.y, u.y; + __asm float_rcp w.z, u.z; + __asm float_rcp w.w, u.w; + __asm vec4_multiply __retVal, v, w; } -void __operator -= (inout mat4 m, const mat4 n) { - m[0] -= n[0]; - m[1] -= n[1]; - m[2] -= n[2]; - m[3] -= n[3]; + + + +//// Basic vec2/float operators + +vec2 __operator + (const float a, const vec2 u) +{ + __asm vec4_add __retVal.xy, a.xx, u.xy; } -vec4 __operator * (const mat4 m, const vec4 v) { - return vec4 ( - v.x * m[0].x + v.y * m[1].x + v.z * m[2].x + v.w * m[3].x, - v.x * m[0].y + v.y * m[1].y + v.z * m[2].y + v.w * m[3].y, - v.x * m[0].z + v.y * m[1].z + v.z * m[2].z + v.w * m[3].z, - v.x * m[0].w + v.y * m[1].w + v.z * m[2].w + v.w * m[3].w - ); +vec2 __operator + (const vec2 v, const float b) +{ + __asm vec4_add __retVal.xy, v.xy, b.xx; } -mat4 __operator * (const mat4 m, const mat4 n) { - return mat4 (m * n[0], m * n[1], m * n[2], m * n[3]); +vec2 __operator - (const float a, const vec2 u) +{ + __asm vec4_subtract __retVal.xy, a.xx, u.xy; } -void __operator *= (inout mat4 m, const mat4 n) { - m = m * n; +vec2 __operator - (const vec2 v, const float b) +{ + __asm vec4_subtract __retVal.xy, v.xy, b.xx; } -void __operator /= (inout mat4 m, const mat4 n) { - m[0] /= n[0]; - m[1] /= n[1]; - m[2] /= n[2]; - m[3] /= n[3]; +vec2 __operator * (const float a, const vec2 u) +{ + __asm vec4_multiply __retVal.xy, a.xx, u.xy; } -void __operator += (inout vec2 v, const float a) { - v.x += a; - v.y += a; +vec2 __operator * (const vec2 v, const float b) +{ + __asm vec4_multiply __retVal.xy, v.xy, b.xx; } -void __operator -= (inout vec2 v, const float a) { - v.x -= a; - v.y -= a; +vec2 __operator / (const float a, const vec2 u) +{ + vec2 invU; + __asm float_rcp invU.x, u.x; + __asm float_rcp invU.y, u.y; + __asm vec4_multiply __retVal.xy, a.xx, invU.xy; } -void __operator *= (inout vec2 v, const float a) { - v.x *= a; - v.y *= a; +vec2 __operator / (const vec2 v, const float b) +{ + float invB; + __asm float_rcp invB, b; + __asm vec4_multiply __retVal.xy, v.xy, invB.xx; } -void __operator /= (inout vec2 v, const float a) { - v.x /= a; - v.y /= a; + +//// Basic vec3/float operators + +vec3 __operator + (const float a, const vec3 u) +{ + __asm vec4_add __retVal.xyz, a.xxx, u.xyz; } -void __operator += (inout vec3 v, const float a) { - v.x += a; - v.y += a; - v.z += a; +vec3 __operator + (const vec3 v, const float b) +{ + __asm vec4_add __retVal.xyz, v.xyz, b.xxx; } -void __operator -= (inout vec3 v, const float a) { - v.x -= a; - v.y -= a; - v.z -= a; +vec3 __operator - (const float a, const vec3 u) +{ + __asm vec4_subtract __retVal.xyz, a.xxx, u.xyz; } -void __operator *= (inout vec3 v, const float a) { - v.x *= a; - v.y *= a; - v.z *= a; +vec3 __operator - (const vec3 v, const float b) +{ + __asm vec4_subtract __retVal.xyz, v.xyz, b.xxx; } -void __operator /= (inout vec3 v, const float a) { - v.x /= a; - v.y /= a; - v.z /= a; +vec3 __operator * (const float a, const vec3 u) +{ + __asm vec4_multiply __retVal.xyz, a.xxx, u.xyz; } -void __operator += (inout vec4 v, const float a) { - v.x += a; - v.y += a; - v.z += a; - v.w += a; +vec3 __operator * (const vec3 v, const float b) +{ + __asm vec4_multiply __retVal.xyz, v.xyz, b.xxx; } -void __operator -= (inout vec4 v, const float a) { - v.x -= a; - v.y -= a; - v.z -= a; - v.w -= a; +vec3 __operator / (const float a, const vec3 u) +{ + vec3 invU; + __asm float_rcp invU.x, u.x; + __asm float_rcp invU.y, u.y; + __asm float_rcp invU.z, u.z; + __asm vec4_multiply __retVal.xyz, a.xxx, invU.xyz; } -void __operator *= (inout vec4 v, const float a) { - v.x *= a; - v.y *= a; - v.z *= a; - v.w *= a; +vec3 __operator / (const vec3 v, const float b) +{ + float invB; + __asm float_rcp invB, b; + __asm vec4_multiply __retVal.xyz, v.xyz, invB.xxx; } -void __operator /= (inout vec4 v, const float a) { - v.x /= a; - v.y /= a; - v.z /= a; - v.w /= a; + +//// Basic vec4/float operators + +vec4 __operator + (const float a, const vec4 u) +{ + __asm vec4_add __retVal, a.xxxx, u; } -void __operator += (inout mat2 m, const float a) { - m[0] += a; - m[1] += a; +vec4 __operator + (const vec4 v, const float b) +{ + __asm vec4_add __retVal, v, b.xxxx; } -void __operator -= (inout mat2 m, const float a) { - m[0] -= a; - m[1] -= a; +vec4 __operator - (const float a, const vec4 u) +{ + __asm vec4_subtract __retVal, a.xxxx, u; } -void __operator *= (inout mat2 m, const float a) { - m[0] *= a; - m[1] *= a; +vec4 __operator - (const vec4 v, const float b) +{ + __asm vec4_subtract __retVal, v, b.xxxx; } -void __operator /= (inout mat2 m, const float a) { - m[0] /= a; - m[1] /= a; +vec4 __operator * (const float a, const vec4 u) +{ + __asm vec4_multiply __retVal, a.xxxx, u; } -void __operator += (inout mat3 m, const float a) { - m[0] += a; - m[1] += a; - m[2] += a; +vec4 __operator * (const vec4 v, const float b) +{ + __asm vec4_multiply __retVal, v, b.xxxx; } -void __operator -= (inout mat3 m, const float a) { - m[0] -= a; - m[1] -= a; - m[2] -= a; +vec4 __operator / (const float a, const vec4 u) +{ + vec4 invU; + __asm float_rcp invU.x, u.x; + __asm float_rcp invU.y, u.y; + __asm float_rcp invU.z, u.z; + __asm float_rcp invU.w, u.w; + __asm vec4_multiply __retVal, a.xxxx, invU; } -void __operator *= (inout mat3 m, const float a) { - m[0] *= a; - m[1] *= a; - m[2] *= a; +vec4 __operator / (const vec4 v, const float b) +{ + float invB; + __asm float_rcp invB, b; + __asm vec4_multiply __retVal, v, invB.xxxx; } -void __operator /= (inout mat3 m, const float a) { - m[0] /= a; - m[1] /= a; - m[2] /= a; + + +//// Basic ivec2/int operators + +ivec2 __operator + (const int a, const ivec2 u) +{ + __retVal = ivec2(a) + u; } -void __operator += (inout mat4 m, const float a) { - m[0] += a; - m[1] += a; - m[2] += a; - m[3] += a; +ivec2 __operator + (const ivec2 v, const int b) +{ + __retVal = v + ivec2(b); } -void __operator -= (inout mat4 m, const float a) { - m[0] -= a; - m[1] -= a; - m[2] -= a; - m[3] -= a; +ivec2 __operator - (const int a, const ivec2 u) +{ + __retVal = ivec2(a) - u; } -void __operator *= (inout mat4 m, const float a) { - m[0] *= a; - m[1] *= a; - m[2] *= a; - m[3] *= a; +ivec2 __operator - (const ivec2 v, const int b) +{ + __retVal = v - ivec2(b); } -void __operator /= (inout mat4 m, const float a) { - m[0] /= a; - m[1] /= a; - m[2] /= a; - m[3] /= a; +ivec2 __operator * (const int a, const ivec2 u) +{ + __retVal = ivec2(a) * u; } -vec2 __operator * (const vec2 v, const mat2 m) { - return vec2 ( - v.x * m[0].x + v.y * m[0].y, - v.x * m[1].x + v.y * m[1].y - ); +ivec2 __operator * (const ivec2 v, const int b) +{ + __retVal = v * ivec2(b); } -void __operator *= (inout vec2 v, const mat2 m) { - v = v * m; +ivec2 __operator / (const int a, const ivec2 u) +{ + __retVal = ivec2(a) / u; } -vec3 __operator * (const vec3 v, const mat3 m) { - return vec3 ( - v.x * m[0].x + v.y * m[0].y + v.z * m[0].z, - v.x * m[1].x + v.y * m[1].y + v.z * m[1].z, - v.x * m[2].x + v.y * m[2].y + v.z * m[2].z - ); +ivec2 __operator / (const ivec2 v, const int b) +{ + __retVal = v / ivec2(b); } -void __operator *= (inout vec3 v, const mat3 m) { - v = v * m; + +//// Basic ivec3/int operators + +ivec3 __operator + (const int a, const ivec3 u) +{ + __retVal = ivec3(a) + u; } -vec4 __operator * (const vec4 v, const mat4 m) { - return vec4 ( - v.x * m[0].x + v.y * m[0].y + v.z * m[0].z + v.w * m[0].w, - v.x * m[1].x + v.y * m[1].y + v.z * m[1].z + v.w * m[1].w, - v.x * m[2].x + v.y * m[2].y + v.z * m[2].z + v.w * m[2].w, - v.x * m[3].x + v.y * m[3].y + v.z * m[3].z + v.w * m[3].w - ); +ivec3 __operator + (const ivec3 v, const int b) +{ + __retVal = v + ivec3(b); } -void __operator *= (inout vec4 v, const mat4 m) { - v = v * m; +ivec3 __operator - (const int a, const ivec3 u) +{ + __retVal = ivec3(a) - u; } -float __operator - (const float a, const float b) { - float c; - __asm float_negate c, b; - __asm float_add c, a, c; - return c; +ivec3 __operator - (const ivec3 v, const int b) +{ + __retVal = v - ivec3(b); } -int __operator + (const int a, const int b) { - float x, y; - int c; - __asm int_to_float x, a; - __asm int_to_float y, b; - __asm float_add x, x, y; - __asm float_to_int c, x; - return c; +ivec3 __operator * (const int a, const ivec3 u) +{ + __retVal = ivec3(a) * u; } -int __operator - (const int a, const int b) { - float x, y; - int c; - __asm int_to_float x, a; - __asm int_to_float y, b; - __asm float_negate y, y; - __asm float_add x, x, y; - __asm float_to_int c, x; - return c; +ivec3 __operator * (const ivec3 v, const int b) +{ + __retVal = v * ivec3(b); } -int __operator * (const int a, const int b) { - float x, y; - int c; - __asm int_to_float x, a; - __asm int_to_float y, b; - __asm float_multiply x, x, y; - __asm float_to_int c, x; - return c; +ivec3 __operator / (const int a, const ivec3 u) +{ + __retVal = ivec3(a) / u; } -int __operator / (const int a, const int b) { - float x, y; - int c; - __asm int_to_float x, a; - __asm int_to_float y, b; - __asm float_divide x, x, y; - __asm float_to_int c, x; - return c; +ivec3 __operator / (const ivec3 v, const int b) +{ + __retVal = v / ivec3(b); +} + + +//// Basic ivec4/int operators + +ivec4 __operator + (const int a, const ivec4 u) +{ + __retVal = ivec4(a) + u; +} + +ivec4 __operator + (const ivec4 v, const int b) +{ + __retVal = v + ivec4(b); +} + +ivec4 __operator - (const int a, const ivec4 u) +{ + __retVal = ivec4(a) - u; +} + +ivec4 __operator - (const ivec4 v, const int b) +{ + __retVal = v - ivec4(b); +} + +ivec4 __operator * (const int a, const ivec4 u) +{ + __retVal = ivec4(a) * u; +} + +ivec4 __operator * (const ivec4 v, const int b) +{ + __retVal = v * ivec4(b); +} + +ivec4 __operator / (const int a, const ivec4 u) +{ + __retVal = ivec4(a) / u; +} + +ivec4 __operator / (const ivec4 v, const int b) +{ + __retVal = v / ivec4(b); +} + + + + +//// Unary negation operator + +int __operator - (const int a) +{ + __asm vec4_negate __retVal.x, a; +} + +ivec2 __operator - (const ivec2 v) +{ + __asm vec4_negate __retVal, v; +} + +ivec3 __operator - (const ivec3 v) +{ + __asm vec4_negate __retVal, v; +} + +ivec4 __operator - (const ivec4 v) +{ + __asm vec4_negate __retVal, v; } -vec2 __operator + (const vec2 v, const vec2 u) { - return vec2 (v.x + u.x, v.y + u.y); +float __operator - (const float a) +{ + __asm vec4_negate __retVal.x, a; } -vec2 __operator - (const vec2 v, const vec2 u) { - return vec2 (v.x - u.x, v.y - u.y); +vec2 __operator - (const vec2 v) +{ + __asm vec4_negate __retVal.xy, v.xy; } -vec2 __operator * (const vec2 v, const vec2 u) { - return vec2 (v.x * u.x, v.y * u.y); +vec3 __operator - (const vec3 v) +{ + __asm vec4_negate __retVal.xyz, v.xyz; } -vec2 __operator / (const vec2 v, const vec2 u) { - return vec2 (v.x / u.x, v.y / u.y); +vec4 __operator - (const vec4 v) +{ + __asm vec4_negate __retVal, v; } -vec3 __operator + (const vec3 v, const vec3 u) { - return vec3 (v.x + u.x, v.y + u.y, v.z + u.z); +mat2 __operator - (const mat2 m) +{ + __retVal[0] = -m[0]; + __retVal[1] = -m[1]; } -vec3 __operator - (const vec3 v, const vec3 u) { - return vec3 (v.x - u.x, v.y - u.y, v.z - u.z); +mat3 __operator - (const mat3 m) +{ + __retVal[0] = -m[0]; + __retVal[1] = -m[1]; + __retVal[2] = -m[2]; } -vec3 __operator * (const vec3 v, const vec3 u) { - return vec3 (v.x * u.x, v.y * u.y, v.z * u.z); +mat4 __operator - (const mat4 m) +{ + __retVal[0] = -m[0]; + __retVal[1] = -m[1]; + __retVal[2] = -m[2]; + __retVal[3] = -m[3]; } -vec3 __operator / (const vec3 v, const vec3 u) { - return vec3 (v.x / u.x, v.y / u.y, v.z / u.z); + + +//// dot product + +float dot(const float a, const float b) +{ + __retVal = a * b; } -vec4 __operator + (const vec4 v, const vec4 u) { - return vec4 (v.x + u.x, v.y + u.y, v.z + u.z, v.w + u.w); +float dot(const vec2 a, const vec2 b) +{ + __retVal = a.x * b.x + a.y * b.y; } -vec4 __operator - (const vec4 v, const vec4 u) { - return vec4 (v.x - u.x, v.y - u.y, v.z - u.z, v.w - u.w); +float dot(const vec3 a, const vec3 b) +{ + __asm vec3_dot __retVal, a, b; } -vec4 __operator * (const vec4 v, const vec4 u) { - return vec4 (v.x * u.x, v.y * u.y, v.z * u.z, v.w * u.w); +float dot(const vec4 a, const vec4 b) +{ + __asm vec4_dot __retVal, a, b; } -vec4 __operator / (const vec4 v, const vec4 u) { - return vec4 (v.x / u.x, v.y / u.y, v.z / u.z, v.w / u.w); + + +//// int assignment operators + +void __operator += (inout int a, const int b) +{ + __asm vec4_add a, a, b; } -ivec2 __operator + (const ivec2 v, const ivec2 u) { - return ivec2 (v.x + u.x, v.y + u.y); +void __operator -= (inout int a, const int b) +{ + __asm vec4_subtract a, a, b; } -ivec2 __operator - (const ivec2 v, const ivec2 u) { - return ivec2 (v.x - u.x, v.y - u.y); +void __operator *= (inout int a, const int b) +{ + __asm vec4_multiply a, a, b; } -ivec2 __operator * (const ivec2 v, const ivec2 u) { - return ivec2 (v.x * u.x, v.y * u.y); +void __operator /= (inout int a, const int b) +{ + float invB; + __asm float_rcp invB, b; + __asm vec4_multiply a, a, invB; } -ivec2 __operator / (const ivec2 v, const ivec2 u) { - return ivec2 (v.x / u.x, v.y / u.y); + +//// ivec2 assignment operators + +void __operator += (inout ivec2 v, const ivec2 u) +{ + __asm vec4_add v, v, u; } -ivec3 __operator + (const ivec3 v, const ivec3 u) { - return ivec3 (v.x + u.x, v.y + u.y, v.z + u.z); +void __operator -= (inout ivec2 v, const ivec2 u) +{ + __asm vec4_subtract v, v, u; } -ivec3 __operator - (const ivec3 v, const ivec3 u) { - return ivec3 (v.x - u.x, v.y - u.y, v.z - u.z); +void __operator *= (inout ivec2 v, const ivec2 u) +{ + __asm vec4_multiply v, v, u; } -ivec3 __operator * (const ivec3 v, const ivec3 u) { - return ivec3 (v.x * u.x, v.y * u.y, v.z * u.z); +void __operator /= (inout ivec2 v, const ivec2 u) +{ + ivec2 inv, z; + __asm float_rcp inv.x, u.x; + __asm float_rcp inv.y, u.y; + __asm vec4_multiply z, v, inv; + __asm float_to_int __retVal, z; } -ivec3 __operator / (const ivec3 v, const ivec3 u) { - return ivec3 (v.x / u.x, v.y / u.y, v.z / u.z); + +//// ivec3 assignment operators + +void __operator += (inout ivec3 v, const ivec3 u) +{ + __asm vec4_add v, v, u; } -ivec4 __operator + (const ivec4 v, const ivec4 u) { - return ivec4 (v.x + u.x, v.y + u.y, v.z + u.z, v.w + u.w); +void __operator -= (inout ivec3 v, const ivec3 u) +{ + __asm vec4_subtract v, v, u; } -ivec4 __operator - (const ivec4 v, const ivec4 u) { - return ivec4 (v.x - u.x, v.y - u.y, v.z - u.z, v.w - u.w); +void __operator *= (inout ivec3 v, const ivec3 u) +{ + __asm vec4_multiply v, v, u; } -ivec4 __operator * (const ivec4 v, const ivec4 u) { - return ivec4 (v.x * u.x, v.y * u.y, v.z * u.z, v.w * u.w); +void __operator /= (inout ivec3 v, const ivec3 u) +{ + ivec3 inv, z; + __asm float_rcp inv.x, u.x; + __asm float_rcp inv.y, u.y; + __asm vec4_multiply z, v, inv; + __asm float_to_int __retVal, z; } -ivec4 __operator / (const ivec4 v, const ivec4 u) { - return ivec4 (v.x / u.x, v.y / u.y, v.z / u.z, v.w / u.w); + +//// ivec4 assignment operators + +void __operator += (inout ivec4 v, const ivec4 u) +{ + __asm vec4_add v, v, u; } -mat2 __operator + (const mat2 m, const mat2 n) { - return mat2 (m[0] + n[0], m[1] + n[1]); +void __operator -= (inout ivec4 v, const ivec4 u) +{ + __asm vec4_subtract v, v, u; } -mat2 __operator - (const mat2 m, const mat2 n) { - return mat2 (m[0] - n[0], m[1] - n[1]); +void __operator *= (inout ivec4 v, const ivec4 u) +{ + __asm vec4_multiply v, v, u; } -mat2 __operator / (const mat2 m, const mat2 n) { - return mat2 (m[0] / n[0], m[1] / n[1]); +void __operator /= (inout ivec4 v, const ivec4 u) +{ + ivec4 inv, z; + __asm float_rcp inv.x, u.x; + __asm float_rcp inv.y, u.y; + __asm vec4_multiply z, v, inv; + __asm float_to_int __retVal, z; } -mat3 __operator + (const mat3 m, const mat3 n) { - return mat3 (m[0] + n[0], m[1] + n[1], m[2] + n[2]); + +//// float assignment operators + +void __operator += (inout float a, const float b) +{ + __asm vec4_add a.x, a.x, b; } -mat3 __operator - (const mat3 m, const mat3 n) { - return mat3 (m[0] - n[0], m[1] - n[1], m[2] - n[2]); +void __operator -= (inout float a, const float b) +{ + __asm vec4_subtract a.x, a, b; } -mat3 __operator / (const mat3 m, const mat3 n) { - return mat3 (m[0] / n[0], m[1] / n[1], m[2] / n[2]); +void __operator *= (inout float a, const float b) +{ + __asm vec4_multiply a.x, a, b; } -mat4 __operator + (const mat4 m, const mat4 n) { - return mat4 (m[0] + n[0], m[1] + n[1], m[2] + n[2], m[3] + n[3]); +void __operator /= (inout float a, const float b) +{ + float w; // = 1 / b + __asm float_rcp w.x, b; + __asm vec4_multiply a.x, a, w; } -mat4 __operator - (const mat4 m, const mat4 n) { - return mat4 (m[0] - n[0], m[1] - n[1], m[2] - n[2], m[3] - n[3]); + +//// vec2 assignment operators + +void __operator += (inout vec2 v, const vec2 u) +{ + __asm vec4_add v.xy, v.xy, u.xy; } -mat4 __operator / (const mat4 m, const mat4 n) { - return mat4 (m[0] / n[0], m[1] / n[1], m[2] / n[2], m[3] / n[3]); +void __operator -= (inout vec2 v, const vec2 u) +{ + __asm vec4_subtract v.xy, v.xy, u.xy; } -vec2 __operator + (const float a, const vec2 u) { - return vec2 (a + u.x, a + u.y); +void __operator *= (inout vec2 v, const vec2 u) +{ + __asm vec4_multiply v.xy, v.xy, u.xy; } -vec2 __operator + (const vec2 v, const float b) { - return vec2 (v.x + b, v.y + b); +void __operator /= (inout vec2 v, const vec2 u) +{ + vec2 w; + __asm float_rcp w.x, u.x; + __asm float_rcp w.y, u.y; + __asm vec4_multiply v.xy, v.xy, w.xy; } -vec2 __operator - (const float a, const vec2 u) { - return vec2 (a - u.x, a - u.y); + +//// vec3 assignment operators + +void __operator += (inout vec3 v, const vec3 u) +{ + __asm vec4_add v.xyz, v, u; } -vec2 __operator - (const vec2 v, const float b) { - return vec2 (v.x - b, v.y - b); +void __operator -= (inout vec3 v, const vec3 u) +{ + __asm vec4_subtract v.xyz, v, u; } -vec2 __operator * (const float a, const vec2 u) { - return vec2 (a * u.x, a * u.y); +void __operator *= (inout vec3 v, const vec3 u) +{ + __asm vec4_multiply v.xyz, v, u; } -vec2 __operator * (const vec2 v, const float b) { - return vec2 (v.x * b, v.y * b); +void __operator /= (inout vec3 v, const vec3 u) +{ + vec3 w; + __asm float_rcp w.x, u.x; + __asm float_rcp w.y, u.y; + __asm float_rcp w.z, u.z; + __asm vec4_multiply v.xyz, v.xyz, w.xyz; } -vec2 __operator / (const float a, const vec2 u) { - return vec2 (a / u.x, a / u.y); + +//// vec4 assignment operators + +void __operator += (inout vec4 v, const vec4 u) +{ + __asm vec4_add v, v, u; } -vec2 __operator / (const vec2 v, const float b) { - return vec2 (v.x / b, v.y / b); +void __operator -= (inout vec4 v, const vec4 u) +{ + __asm vec4_subtract v, v, u; } -vec3 __operator + (const float a, const vec3 u) { - return vec3 (a + u.x, a + u.y, a + u.z); +void __operator *= (inout vec4 v, const vec4 u) +{ + __asm vec4_multiply v, v, u; } -vec3 __operator + (const vec3 v, const float b) { - return vec3 (v.x + b, v.y + b, v.z + b); +void __operator /= (inout vec4 v, const vec4 u) +{ + vec4 w; + __asm float_rcp w.x, u.x; + __asm float_rcp w.y, u.y; + __asm float_rcp w.z, u.z; + __asm float_rcp w.w, u.w; + __asm vec4_multiply v, v, w; } -vec3 __operator - (const float a, const vec3 u) { - return vec3 (a - u.x, a - u.y, a - u.z); + + +//// ivec2/int assignment operators + +void __operator += (inout ivec2 v, const int a) +{ + __asm vec4_add v.xy, v.xy, a.xx; } -vec3 __operator - (const vec3 v, const float b) { - return vec3 (v.x - b, v.y - b, v.z - b); +void __operator -= (inout ivec2 v, const int a) +{ + __asm vec4_subtract v.xy, v.xy, a.xx; } -vec3 __operator * (const float a, const vec3 u) { - return vec3 (a * u.x, a * u.y, a * u.z); +void __operator *= (inout ivec2 v, const int a) +{ + __asm vec4_multiply v.xy, v.xy, a.xx; + v.x *= a; + v.y *= a; } -vec3 __operator * (const vec3 v, const float b) { - return vec3 (v.x * b, v.y * b, v.z * b); +void __operator /= (inout ivec2 v, const int a) +{ +// XXX rcp + v.x /= a; + v.y /= a; } -vec3 __operator / (const float a, const vec3 u) { - return vec3 (a / u.x, a / u.y, a / u.z); + +//// ivec3/int assignment operators + +void __operator += (inout ivec3 v, const int a) +{ + __asm vec4_add v.xyz, v.xyz, a.xxx; } -vec3 __operator / (const vec3 v, const float b) { - return vec3 (v.x / b, v.y / b, v.z / b); +void __operator -= (inout ivec3 v, const int a) +{ + __asm vec4_subtract v.xyz, v.xyz, a.xxx; } -vec4 __operator + (const float a, const vec4 u) { - return vec4 (a + u.x, a + u.y, a + u.z, a + u.w); +void __operator *= (inout ivec3 v, const int a) +{ + __asm vec4_multiply v.xyz, v.xyz, a.xxx; } -vec4 __operator + (const vec4 v, const float b) { - return vec4 (v.x + b, v.y + b, v.z + b, v.w + b); +void __operator /= (inout ivec3 v, const int a) +{ + // XXX rcp + v.x /= a; + v.y /= a; + v.z /= a; } -vec4 __operator - (const float a, const vec4 u) { - return vec4 (a - u.x, a - u.y, a - u.z, a - u.w); + +//// ivec4/int assignment operators + +void __operator += (inout ivec4 v, const int a) +{ + __asm vec4_add v, v, a.xxxx; } -vec4 __operator - (const vec4 v, const float b) { - return vec4 (v.x - b, v.y - b, v.z - b, v.w - b); +void __operator -= (inout ivec4 v, const int a) +{ + __asm vec4_subtract v, v, a.xxxx; } -vec4 __operator * (const float a, const vec4 u) { - return vec4 (a * u.x, a * u.y, a * u.z, a * u.w); +void __operator *= (inout ivec4 v, const int a) +{ + __asm vec4_multiply v, v, a.xxxx; } -vec4 __operator * (const vec4 v, const float b) { - return vec4 (v.x * b, v.y * b, v.z * b, v.w * b); +void __operator /= (inout ivec4 v, const int a) +{ + v.x /= a; + v.y /= a; + v.z /= a; + v.w /= a; } -vec4 __operator / (const float a, const vec4 u) { - return vec4 (a / u.x, a / u.y, a / u.z, a / u.w); + + +//// vec2/float assignment operators + +void __operator += (inout vec2 v, const float a) +{ + __asm vec4_add v.xy, v, a.xx; } -vec4 __operator / (const vec4 v, const float b) { - return vec4 (v.x / b, v.y / b, v.z / b, v.w / b); +void __operator -= (inout vec2 v, const float a) +{ + __asm vec4_subtract v.xy, v, a.xx; } -mat2 __operator + (const float a, const mat2 n) { - return mat2 (a + n[0], a + n[1]); +void __operator *= (inout vec2 v, const float a) +{ + __asm vec4_multiply v.xy, v, a.xx; } -mat2 __operator + (const mat2 m, const float b) { - return mat2 (m[0] + b, m[1] + b); +void __operator /= (inout vec2 v, const float a) +{ + float invA; + __asm float_rcp invA, a; + __asm vec4_multiply v.xy, v.xy, a.xx; } -mat2 __operator - (const float a, const mat2 n) { - return mat2 (a - n[0], a - n[1]); + +//// vec3/float assignment operators + +void __operator += (inout vec3 v, const float a) +{ + __asm vec4_add v.xyz, v, a.xxx; } -mat2 __operator - (const mat2 m, const float b) { - return mat2 (m[0] - b, m[1] - b); +void __operator -= (inout vec3 v, const float a) +{ + __asm vec4_subtract v.xyz, v, a.xxx; } -mat2 __operator * (const float a, const mat2 n) { - return mat2 (a * n[0], a * n[1]); +void __operator *= (inout vec3 v, const float a) +{ + __asm vec4_multiply v.xyz, v, a.xxx; } -mat2 __operator * (const mat2 m, const float b) { - return mat2 (m[0] * b, m[1] * b); +void __operator /= (inout vec3 v, const float a) +{ + float invA; + __asm float_rcp invA, a; + __asm vec4_multiply v.xyz, v.xyz, a.xxx; } -mat2 __operator / (const float a, const mat2 n) { - return mat2 (a / n[0], a / n[1]); + +//// vec4/float assignment operators + +void __operator += (inout vec4 v, const float a) +{ + __asm vec4_add v, v, a.xxxx; } -mat2 __operator / (const mat2 m, const float b) { - return mat2 (m[0] / b, m[1] / b); +void __operator -= (inout vec4 v, const float a) +{ + __asm vec4_subtract v, v, a.xxxx; } -mat3 __operator + (const float a, const mat3 n) { - return mat3 (a + n[0], a + n[1], a + n[2]); +void __operator *= (inout vec4 v, const float a) +{ + __asm vec4_multiply v, v, a.xxxx; } -mat3 __operator + (const mat3 m, const float b) { - return mat3 (m[0] + b, m[1] + b, m[2] + b); +void __operator /= (inout vec4 v, const float a) +{ + float invA; + __asm float_rcp invA, a; + __asm vec4_multiply v, v, a.xxxx; } -mat3 __operator - (const float a, const mat3 n) { - return mat3 (a - n[0], a - n[1], a - n[2]); + + + + +//// Basic mat2 operations + +mat2 __operator + (const mat2 m, const mat2 n) +{ + __retVal[0] = m[0] + n[0]; + __retVal[1] = m[1] + n[1]; } -mat3 __operator - (const mat3 m, const float b) { - return mat3 (m[0] - b, m[1] - b, m[2] - b); +mat2 __operator - (const mat2 m, const mat2 n) +{ + __retVal[0] = m[0] - n[0]; + __retVal[1] = m[1] - n[1]; } -mat3 __operator * (const float a, const mat3 n) { - return mat3 (a * n[0], a * n[1], a * n[2]); +mat2 __operator * (const mat2 m, const mat2 n) +{ + vec2 mRow0, mRow1; + mRow0.x = m[0].x; + mRow0.y = m[1].x; + mRow1.x = m[0].y; + mRow1.y = m[1].y; + __retVal[0].x = dot(mRow0, n[0]); + __retVal[1].x = dot(mRow0, n[1]); + __retVal[0].y = dot(mRow1, n[0]); + __retVal[1].y = dot(mRow1, n[1]); } -mat3 __operator * (const mat3 m, const float b) { - return mat3 (m[0] * b, m[1] * b, m[2] * b); +mat2 __operator / (const mat2 m, const mat2 n) +{ + __retVal[0] = m[0] / n[0]; + __retVal[1] = m[1] / n[1]; } -mat3 __operator / (const float a, const mat3 n) { - return mat3 (a / n[0], a / n[1], a / n[2]); + +//// Basic mat3 operations + +mat3 __operator + (const mat3 m, const mat3 n) +{ + __retVal[0] = m[0] + n[0]; + __retVal[1] = m[1] + n[1]; + __retVal[2] = m[2] + n[2]; } -mat3 __operator / (const mat3 m, const float b) { - return mat3 (m[0] / b, m[1] / b, m[2] / b); +mat3 __operator - (const mat3 m, const mat3 n) +{ + __retVal[0] = m[0] - n[0]; + __retVal[1] = m[1] - n[1]; + __retVal[2] = m[2] - n[2]; +} + +mat3 __operator * (const mat3 m, const mat3 n) +{ + // sub-blocks to reduce register usage + { + vec3 mRow0; + mRow0.x = m[0].x; + mRow0.y = m[1].x; + mRow0.z = m[2].x; + __retVal[0].x = dot(mRow0, n[0]); + __retVal[1].x = dot(mRow0, n[1]); + __retVal[2].x = dot(mRow0, n[2]); + } + { + vec3 mRow1; + mRow1.x = m[0].y; + mRow1.y = m[1].y; + mRow1.z = m[2].y; + __retVal[0].y = dot(mRow1, n[0]); + __retVal[1].y = dot(mRow1, n[1]); + __retVal[2].y = dot(mRow1, n[2]); + } + { + vec3 mRow2; + mRow2.x = m[0].z; + mRow2.y = m[1].z; + mRow2.z = m[2].z; + __retVal[0].z = dot(mRow2, n[0]); + __retVal[1].z = dot(mRow2, n[1]); + __retVal[2].z = dot(mRow2, n[2]); + } +} + +mat3 __operator / (const mat3 m, const mat3 n) +{ + __retVal[0] = m[0] / n[0]; + __retVal[1] = m[1] / n[1]; + __retVal[2] = m[2] / n[2]; +} + + +//// Basic mat4 operations + +mat4 __operator + (const mat4 m, const mat4 n) +{ + __retVal[0] = m[0] + n[0]; + __retVal[1] = m[1] + n[1]; + __retVal[2] = m[2] + n[2]; + __retVal[3] = m[3] + n[3]; +} + +mat4 __operator - (const mat4 m, const mat4 n) +{ + __retVal[0] = m[0] - n[0]; + __retVal[1] = m[1] - n[1]; + __retVal[2] = m[2] - n[2]; + __retVal[3] = m[3] - n[3]; +} + +mat4 __operator * (const mat4 m, const mat4 n) +{ + // sub-blocks to reduce temporary usage + { + vec4 mRow0; + mRow0.x = m[0].x; + mRow0.y = m[1].x; + mRow0.z = m[2].x; + mRow0.w = m[3].x; + __retVal[0].x = dot(mRow0, n[0]); + __retVal[1].x = dot(mRow0, n[1]); + __retVal[2].x = dot(mRow0, n[2]); + __retVal[3].x = dot(mRow0, n[3]); + } + { + vec4 mRow1; + mRow1.x = m[0].y; + mRow1.y = m[1].y; + mRow1.z = m[2].y; + mRow1.w = m[3].y; + __retVal[0].y = dot(mRow1, n[0]); + __retVal[1].y = dot(mRow1, n[1]); + __retVal[2].y = dot(mRow1, n[2]); + __retVal[3].y = dot(mRow1, n[3]); + } + { + vec4 mRow2; + mRow2.x = m[0].z; + mRow2.y = m[1].z; + mRow2.z = m[2].z; + mRow2.w = m[3].z; + __retVal[0].z = dot(mRow2, n[0]); + __retVal[1].z = dot(mRow2, n[1]); + __retVal[2].z = dot(mRow2, n[2]); + __retVal[3].z = dot(mRow2, n[3]); + } + { + vec4 mRow3; + mRow3.x = m[0].w; + mRow3.y = m[1].w; + mRow3.z = m[2].w; + mRow3.w = m[3].w; + __retVal[0].w = dot(mRow3, n[0]); + __retVal[1].w = dot(mRow3, n[1]); + __retVal[2].w = dot(mRow3, n[2]); + __retVal[3].w = dot(mRow3, n[3]); + } +} + +mat4 __operator / (const mat4 m, const mat4 n) +{ + __retVal[0] = m[0] / n[0]; + __retVal[1] = m[1] / n[1]; + __retVal[2] = m[2] / n[2]; + __retVal[3] = m[3] / n[3]; +} + + +//// mat2/float operations + +mat2 __operator + (const float a, const mat2 n) +{ + __retVal[0] = a + n[0]; + __retVal[1] = a + n[1]; +} + +mat2 __operator + (const mat2 m, const float b) +{ + __retVal[0] = m[0] + b; + __retVal[1] = m[1] + b; } -mat4 __operator + (const float a, const mat4 n) { - return mat4 (a + n[0], a + n[1], a + n[2], a + n[3]); +mat2 __operator - (const float a, const mat2 n) +{ + __retVal[0] = a - n[0]; + __retVal[1] = a - n[1]; } -mat4 __operator + (const mat4 m, const float b) { - return mat4 (m[0] + b, m[1] + b, m[2] + b, m[3] + b); +mat2 __operator - (const mat2 m, const float b) +{ + __retVal[0] = m[0] - b; + __retVal[1] = m[1] - b; +} + +mat2 __operator * (const float a, const mat2 n) +{ + __retVal[0] = a * n[0]; + __retVal[1] = a * n[1]; } -mat4 __operator - (const float a, const mat4 n) { - return mat4 (a - n[0], a - n[1], a - n[2], a - n[3]); +mat2 __operator * (const mat2 m, const float b) +{ + __retVal[0] = m[0] * b; + __retVal[1] = m[1] * b; +} + +mat2 __operator / (const float a, const mat2 n) +{ + __retVal[0] = a / n[0]; + __retVal[1] = a / n[1]; } -mat4 __operator - (const mat4 m, const float b) { - return mat4 (m[0] - b, m[1] - b, m[2] - b, m[3] - b); +mat2 __operator / (const mat2 m, const float b) +{ + __retVal[0] = m[0] / b; + __retVal[1] = m[1] / b; } -mat4 __operator * (const float a, const mat4 n) { - return mat4 (a * n[0], a * n[1], a * n[2], a * n[3]); + +//// mat3/float operations + +mat3 __operator + (const float a, const mat3 n) +{ + __retVal[0] = a + n[0]; + __retVal[1] = a + n[1]; + __retVal[2] = a + n[2]; } -mat4 __operator * (const mat4 m, const float b) { - return mat4 (m[0] * b, m[1] * b, m[2] * b, m[3] * b); +mat3 __operator + (const mat3 m, const float b) +{ + __retVal[0] = m[0] + b; + __retVal[1] = m[1] + b; + __retVal[2] = m[2] + b; } -mat4 __operator / (const float a, const mat4 n) { - return mat4 (a / n[0], a / n[1], a / n[2], a / n[3]); +mat3 __operator - (const float a, const mat3 n) +{ + __retVal[0] = a - n[0]; + __retVal[1] = a - n[1]; + __retVal[2] = a - n[2]; } -mat4 __operator / (const mat4 m, const float b) { - return mat4 (m[0] / b, m[1] / b, m[2] / b, m[3] / b); +mat3 __operator - (const mat3 m, const float b) +{ + __retVal[0] = m[0] - b; + __retVal[1] = m[1] - b; + __retVal[2] = m[2] - b; } -ivec2 __operator + (const int a, const ivec2 u) { - return ivec2 (a) + u; +mat3 __operator * (const float a, const mat3 n) +{ + __retVal[0] = a * n[0]; + __retVal[1] = a * n[1]; + __retVal[2] = a * n[2]; } -ivec2 __operator + (const ivec2 v, const int b) { - return v + ivec2 (b); +mat3 __operator * (const mat3 m, const float b) +{ + __retVal[0] = m[0] * b; + __retVal[1] = m[1] * b; + __retVal[2] = m[2] * b; } -ivec2 __operator - (const int a, const ivec2 u) { - return ivec2 (a) - u; +mat3 __operator / (const float a, const mat3 n) +{ + __retVal[0] = a / n[0]; + __retVal[1] = a / n[1]; + __retVal[2] = a / n[2]; } -ivec2 __operator - (const ivec2 v, const int b) { - return v - ivec2 (b); +mat3 __operator / (const mat3 m, const float b) +{ + __retVal[0] = m[0] / b; + __retVal[1] = m[1] / b; + __retVal[2] = m[2] / b; } -ivec2 __operator * (const int a, const ivec2 u) { - return ivec2 (a) * u; + +//// mat4/float operations + +mat4 __operator + (const float a, const mat4 n) +{ + __retVal[0] = a + n[0]; + __retVal[1] = a + n[1]; + __retVal[2] = a + n[2]; + __retVal[3] = a + n[3]; } -ivec2 __operator * (const ivec2 v, const int b) { - return v * ivec2 (b); +mat4 __operator + (const mat4 m, const float b) +{ + __retVal[0] = m[0] + b; + __retVal[1] = m[1] + b; + __retVal[2] = m[2] + b; + __retVal[3] = m[3] + b; } -ivec2 __operator / (const int a, const ivec2 u) { - return ivec2 (a) / u; +mat4 __operator - (const float a, const mat4 n) +{ + __retVal[0] = a - n[0]; + __retVal[1] = a - n[1]; + __retVal[2] = a - n[2]; + __retVal[3] = a - n[3]; } -ivec2 __operator / (const ivec2 v, const int b) { - return v / ivec2 (b); +mat4 __operator - (const mat4 m, const float b) +{ + __retVal[0] = m[0] - b; + __retVal[1] = m[1] - b; + __retVal[2] = m[2] - b; + __retVal[3] = m[3] - b; } -ivec3 __operator + (const int a, const ivec3 u) { - return ivec3 (a) + u; +mat4 __operator * (const float a, const mat4 n) +{ + __retVal[0] = a * n[0]; + __retVal[1] = a * n[1]; + __retVal[2] = a * n[2]; + __retVal[3] = a * n[3]; +} + +mat4 __operator * (const mat4 m, const float b) +{ + __retVal[0] = m[0] * b; + __retVal[1] = m[1] * b; + __retVal[2] = m[2] * b; + __retVal[3] = m[3] * b; +} + +mat4 __operator / (const float a, const mat4 n) +{ + __retVal[0] = a / n[0]; + __retVal[1] = a / n[1]; + __retVal[2] = a / n[2]; + __retVal[3] = a / n[3]; +} + +mat4 __operator / (const mat4 m, const float b) +{ + __retVal[0] = m[0] / b; + __retVal[1] = m[1] / b; + __retVal[2] = m[2] / b; + __retVal[3] = m[3] / b; +} + + + +//// matrix / vector products + +vec2 __operator * (const mat2 m, const vec2 v) +{ + vec2 r0, r1; + r0.x = m[0].x; + r0.y = m[1].x; + r1.x = m[0].y; + r1.y = m[1].y; + __retVal.x = dot(r0, v); + __retVal.y = dot(r1, v); +} + +vec2 __operator * (const vec2 v, const mat2 m) +{ + __retVal.x = dot(v, m[0]); + __retVal.y = dot(v, m[1]); +} + +vec3 __operator * (const mat3 m, const vec3 v) +{ + { + vec3 r0; + r0.x = m[0].x; + r0.y = m[1].x; + r0.z = m[2].x; + __asm vec3_dot __retVal.x, r0, v; + } + { + vec3 r1; + r1.x = m[0].y; + r1.y = m[1].y; + r1.z = m[2].y; + __asm vec3_dot __retVal.y, r1, v; + } + { + vec3 r2; + r2.x = m[0].z; + r2.y = m[1].z; + r2.z = m[2].z; + __asm vec3_dot __retVal.z, r2, v; + } +} + +vec3 __operator * (const vec3 v, const mat3 m) +{ + __retVal.x = dot(v, m[0]); + __retVal.y = dot(v, m[1]); + __retVal.z = dot(v, m[2]); +} + +vec4 __operator * (const mat4 m, const vec4 v) +{ + // extract rows, then do dot product + { + vec4 r0; + r0.x = m[0].x; + r0.y = m[1].x; + r0.z = m[2].x; + r0.w = m[3].x; + __asm vec4_dot __retVal.x, r0, v; + } + { + vec4 r1; + r1.x = m[0].y; + r1.y = m[1].y; + r1.z = m[2].y; + r1.w = m[3].y; + __asm vec4_dot __retVal.y, r1, v; + } + { + vec4 r2; + r2.x = m[0].z; + r2.y = m[1].z; + r2.z = m[2].z; + r2.w = m[3].z; + __asm vec4_dot __retVal.z, r2, v; + } + { + vec4 r3; + r3.x = m[0].w; + r3.y = m[1].w; + r3.z = m[2].w; + r3.w = m[3].w; + __asm vec4_dot __retVal.w, r3, v; + } +} + +vec4 __operator * (const vec4 v, const mat4 m) +{ + //mm + __retVal.x = dot(v, m[0]); + __retVal.y = dot(v, m[1]); + __retVal.z = dot(v, m[2]); + __retVal.w = dot(v, m[3]); +} + + + +//// mat2 assignment operators + +void __operator += (inout mat2 m, const mat2 n) +{ + m[0] += n[0]; + m[1] += n[1]; } -ivec3 __operator + (const ivec3 v, const int b) { - return v + ivec3 (b); +void __operator -= (inout mat2 m, const mat2 n) +{ + m[0] -= n[0]; + m[1] -= n[1]; } -ivec3 __operator - (const int a, const ivec3 u) { - return ivec3 (a) - u; +void __operator *= (inout mat2 m, const mat2 n) +{ + m = m * n; } -ivec3 __operator - (const ivec3 v, const int b) { - return v - ivec3 (b); +void __operator /= (inout mat2 m, const mat2 n) +{ + m[0] /= n[0]; + m[1] /= n[1]; } -ivec3 __operator * (const int a, const ivec3 u) { - return ivec3 (a) * u; + +//// mat3 assignment operators + +void __operator += (inout mat3 m, const mat3 n) +{ + m[0] += n[0]; + m[1] += n[1]; + m[2] += n[2]; } -ivec3 __operator * (const ivec3 v, const int b) { - return v * ivec3 (b); +void __operator -= (inout mat3 m, const mat3 n) +{ + m[0] -= n[0]; + m[1] -= n[1]; + m[2] -= n[2]; } -ivec3 __operator / (const int a, const ivec3 u) { - return ivec3 (a) / u; +void __operator *= (inout mat3 m, const mat3 n) +{ + m = m * n; } -ivec3 __operator / (const ivec3 v, const int b) { - return v / ivec3 (b); +void __operator /= (inout mat3 m, const mat3 n) +{ + m[0] /= n[0]; + m[1] /= n[1]; + m[2] /= n[2]; } -ivec4 __operator + (const int a, const ivec4 u) { - return ivec4 (a) + u; + +// mat4 assignment operators + +void __operator += (inout mat4 m, const mat4 n) +{ + m[0] += n[0]; + m[1] += n[1]; + m[2] += n[2]; + m[3] += n[3]; } -ivec4 __operator + (const ivec4 v, const int b) { - return v + ivec4 (b); +void __operator -= (inout mat4 m, const mat4 n) { + m[0] -= n[0]; + m[1] -= n[1]; + m[2] -= n[2]; + m[3] -= n[3]; +} + +void __operator *= (inout mat4 m, const mat4 n) +{ + m = m * n; } -ivec4 __operator - (const int a, const ivec4 u) { - return ivec4 (a) - u; +void __operator /= (inout mat4 m, const mat4 n) +{ + m[0] /= n[0]; + m[1] /= n[1]; + m[2] /= n[2]; + m[3] /= n[3]; +} + + +//// mat2/float assignment operators + +void __operator += (inout mat2 m, const float a) { + m[0] += a; + m[1] += a; } -ivec4 __operator - (const ivec4 v, const int b) { - return v - ivec4 (b); +void __operator -= (inout mat2 m, const float a) { + m[0] -= a; + m[1] -= a; } -ivec4 __operator * (const int a, const ivec4 u) { - return ivec4 (a) * u; +void __operator *= (inout mat2 m, const float a) { + m[0] *= a; + m[1] *= a; } -ivec4 __operator * (const ivec4 v, const int b) { - return v * ivec4 (b); +void __operator /= (inout mat2 m, const float a) { + m[0] /= a; + m[1] /= a; } -ivec4 __operator / (const int a, const ivec4 u) { - return ivec4 (a) / u; + +//// mat3/float assignment operators + +void __operator += (inout mat3 m, const float a) { + m[0] += a; + m[1] += a; + m[2] += a; } -ivec4 __operator / (const ivec4 v, const int b) { - return v / ivec4 (b); +void __operator -= (inout mat3 m, const float a) { + m[0] -= a; + m[1] -= a; + m[2] -= a; } -vec2 __operator - (const vec2 v) { - return vec2 (-v.x, -v.y); +void __operator *= (inout mat3 m, const float a) { + m[0] *= a; + m[1] *= a; + m[2] *= a; } -vec3 __operator - (const vec3 v) { - return vec3 (-v.x, -v.y, -v.z); +void __operator /= (inout mat3 m, const float a) { + m[0] /= a; + m[1] /= a; + m[2] /= a; } -vec4 __operator - (const vec4 v) { - return vec4 (-v.x, -v.y, -v.z, -v.w); + +//// mat4/float assignment operators + +void __operator += (inout mat4 m, const float a) { + m[0] += a; + m[1] += a; + m[2] += a; + m[3] += a; } -ivec2 __operator - (const ivec2 v) { - return ivec2 (-v.x, -v.y); +void __operator -= (inout mat4 m, const float a) { + m[0] -= a; + m[1] -= a; + m[2] -= a; + m[3] -= a; } -ivec3 __operator - (const ivec3 v) { - return ivec3 (-v.x, -v.y, -v.z); +void __operator *= (inout mat4 m, const float a) { + m[0] *= a; + m[1] *= a; + m[2] *= a; + m[3] *= a; } -ivec4 __operator - (const ivec4 v) { - return ivec4 (-v.x, -v.y, -v.z, -v.w); +void __operator /= (inout mat4 m, const float a) { + m[0] /= a; + m[1] /= a; + m[2] /= a; + m[3] /= a; } -mat2 __operator - (const mat2 m) { - return mat2 (-m[0], -m[1]); + + +//// vec/mat assignment operators + +void __operator *= (inout vec2 v, const mat2 m) +{ + v = v * m; } -mat3 __operator - (const mat3 m) { - return mat3 (-m[0], -m[1], -m[2]); +void __operator *= (inout vec3 v, const mat3 m) +{ + v = v * m; } -mat4 __operator - (const mat4 m) { - return mat4 (-m[0], -m[1], -m[2], -m[3]); +void __operator *= (inout vec4 v, const mat4 m) +{ + v = v * m; } -void __operator -- (inout float a) { - a -= 1.0; + + +//// pre-decrement operators + +int __operator --(inout int a) +{ + a = a - 1; + __retVal = a; } -void __operator -- (inout int a) { - a -= 1; +ivec2 __operator --(inout ivec2 v) +{ + v = v - ivec2(1); + __retVal = v; } -void __operator -- (inout vec2 v) { - --v.x; - --v.y; +ivec3 __operator --(inout ivec3 v) +{ + v = v - ivec3(1); + __retVal = v; } -void __operator -- (inout vec3 v) { - --v.x; - --v.y; - --v.z; +ivec4 __operator --(inout ivec4 v) +{ + v = v - ivec4(1); + __retVal = v; } -void __operator -- (inout vec4 v) { - --v.x; - --v.y; - --v.z; - --v.w; + +float __operator --(inout float a) +{ + a = a - 1.0; + __retVal = a; } -void __operator -- (inout ivec2 v) { - --v.x; - --v.y; +vec2 __operator --(inout vec2 v) +{ + v = v - vec2(1.0); + __retVal = v; } -void __operator -- (inout ivec3 v) { - --v.x; - --v.y; - --v.z; +vec3 __operator --(inout vec3 v) +{ + v = v - vec3(1.0); + __retVal = v; } -void __operator -- (inout ivec4 v) { - --v.x; - --v.y; - --v.z; - --v.w; +vec4 __operator --(inout vec4 v) +{ + v = v - vec4(1.0); + __retVal = v; } -void __operator -- (inout mat2 m) { - --m[0]; - --m[1]; + +mat2 __operator --(inout mat2 m) +{ + m[0] = m[0] - vec2(1.0); + m[1] = m[1] - vec2(1.0); + __retVal = m; } -void __operator -- (inout mat3 m) { - --m[0]; - --m[1]; - --m[2]; +mat3 __operator --(inout mat3 m) +{ + m[0] = m[0] - vec3(1.0); + m[1] = m[1] - vec3(1.0); + m[2] = m[2] - vec3(1.0); + __retVal = m; } -void __operator -- (inout mat4 m) { - --m[0]; - --m[1]; - --m[2]; - --m[3]; +mat4 __operator --(inout mat4 m) +{ + m[0] = m[0] - vec4(1.0); + m[1] = m[1] - vec4(1.0); + m[2] = m[2] - vec4(1.0); + m[3] = m[3] - vec4(1.0); + __retVal = m; } -void __operator ++ (inout float a) { - a += 1.0; + +//// pre-increment operators + +int __operator ++(inout int a) +{ + a = a + 1; + __retVal = a; } -void __operator ++ (inout int a) { - a += 1; +ivec2 __operator ++(inout ivec2 v) +{ + v = v + ivec2(1); + __retVal = v; } -void __operator ++ (inout vec2 v) { - ++v.x; - ++v.y; +ivec3 __operator ++(inout ivec3 v) +{ + v = v + ivec3(1); + __retVal = v; } -void __operator ++ (inout vec3 v) { - ++v.x; - ++v.y; - ++v.z; +ivec4 __operator ++(inout ivec4 v) +{ + v = v + ivec4(1); + __retVal = v; } -void __operator ++ (inout vec4 v) { - ++v.x; - ++v.y; - ++v.z; - ++v.w; + +float __operator ++(inout float a) +{ + a = a + 1.0; + __retVal = a; } -void __operator ++ (inout ivec2 v) { - ++v.x; - ++v.y; +vec2 __operator ++(inout vec2 v) +{ + v = v + vec2(1.0); + __retVal = v; } -void __operator ++ (inout ivec3 v) { - ++v.x; - ++v.y; - ++v.z; +vec3 __operator ++(inout vec3 v) +{ + v = v + vec3(1.0); + __retVal = v; } -void __operator ++ (inout ivec4 v) { - ++v.x; - ++v.y; - ++v.z; - ++v.w; +vec4 __operator ++(inout vec4 v) +{ + v = v + vec4(1.0); + __retVal = v; } -void __operator ++ (inout mat2 m) { - ++m[0]; - ++m[1]; + +mat2 __operator ++(inout mat2 m) +{ + m[0] = m[0] + vec2(1.0); + m[1] = m[1] + vec2(1.0); + __retVal = m; } -void __operator ++ (inout mat3 m) { - ++m[0]; - ++m[1]; - ++m[2]; +mat3 __operator ++(inout mat3 m) +{ + m[0] = m[0] + vec3(1.0); + m[1] = m[1] + vec3(1.0); + m[2] = m[2] + vec3(1.0); + __retVal = m; } -void __operator ++ (inout mat4 m) { - ++m[0]; - ++m[1]; - ++m[2]; - ++m[3]; +mat4 __operator ++(inout mat4 m) +{ + m[0] = m[0] + vec4(1.0); + m[1] = m[1] + vec4(1.0); + m[2] = m[2] + vec4(1.0); + m[3] = m[3] + vec4(1.0); + __retVal = m; } -// -// NOTE: postfix increment and decrement operators take additional dummy int parameter to -// distinguish their prototypes from prefix ones. -// -float __operator -- (inout float a, const int) { - float b = a; - --a; - return b; + +//// post-decrement + +int __postDecr(inout int a) +{ + __retVal = a; + a = a - 1; } -int __operator -- (inout int a, const int) { - int b = a; - --a; - return b; +ivec2 __postDecr(inout ivec2 v) +{ + __retVal = v; + v = v - ivec2(1); } -vec2 __operator -- (inout vec2 v, const int) { - return vec2 (v.x--, v.y--); +ivec3 __postDecr(inout ivec3 v) +{ + __retVal = v; + v = v - ivec3(1); } -vec3 __operator -- (inout vec3 v, const int) { - return vec3 (v.x--, v.y--, v.z--); +ivec4 __postDecr(inout ivec4 v) +{ + __retVal = v; + v = v - ivec4(1); } -vec4 __operator -- (inout vec4 v, const int) { - return vec4 (v.x--, v.y--, v.z--, v.w--); + +float __postDecr(inout float a) +{ + __retVal = a; + a = a - 1.0; } -ivec2 __operator -- (inout ivec2 v, const int) { - return ivec2 (v.x--, v.y--); +vec2 __postDecr(inout vec2 v) +{ + __retVal = v; + v = v - vec2(1.0); } -ivec3 __operator -- (inout ivec3 v, const int) { - return ivec3 (v.x--, v.y--, v.z--); +vec3 __postDecr(inout vec3 v) +{ + __retVal = v; + v = v - vec3(1.0); } -ivec4 __operator -- (inout ivec4 v, const int) { - return ivec4 (v.x--, v.y--, v.z--, v.w--); +vec4 __postDecr(inout vec4 v) +{ + __retVal = v; + v = v - vec4(1.0); } -mat2 __operator -- (inout mat2 m, const int) { - return mat2 (m[0]--, m[1]--); + +mat2 __postDecr(inout mat2 m) +{ + __retVal = m; + m[0] = m[0] - vec2(1.0); + m[1] = m[1] - vec2(1.0); } -mat3 __operator -- (inout mat3 m, const int) { - return mat3 (m[0]--, m[1]--, m[2]--); +mat3 __postDecr(inout mat3 m) +{ + __retVal = m; + m[0] = m[0] - vec3(1.0); + m[1] = m[1] - vec3(1.0); + m[2] = m[2] - vec3(1.0); } -mat4 __operator -- (inout mat4 m, const int) { - return mat4 (m[0]--, m[1]--, m[2]--, m[3]--); +mat4 __postDecr(inout mat4 m) +{ + __retVal = m; + m[0] = m[0] - vec4(1.0); + m[1] = m[1] - vec4(1.0); + m[2] = m[2] - vec4(1.0); + m[3] = m[3] - vec4(1.0); } -float __operator ++ (inout float a, const int) { - float b = a; - ++a; - return b; + +//// post-increment + +float __postIncr(inout float a) +{ + __retVal = a; + a = a + 1; } -int __operator ++ (inout int a, const int) { - int b = a; - ++a; - return b; +vec2 __postIncr(inout vec2 v) +{ + __retVal = v; + v = v + vec2(1.0); } -vec2 __operator ++ (inout vec2 v, const int) { - return vec2 (v.x++, v.y++); +vec3 __postIncr(inout vec3 v) +{ + __retVal = v; + v = v + vec3(1.0); } -vec3 __operator ++ (inout vec3 v, const int) { - return vec3 (v.x++, v.y++, v.z++); +vec4 __postIncr(inout vec4 v) +{ + __retVal = v; + v = v + vec4(1.0); } -vec4 __operator ++ (inout vec4 v, const int) { - return vec4 (v.x++, v.y++, v.z++, v.w++); + +int __postIncr(inout int a) +{ + __retVal = a; + a = a + 1; } -ivec2 __operator ++ (inout ivec2 v, const int) { - return ivec2 (v.x++, v.y++); +ivec2 __postIncr(inout ivec2 v) +{ + __retVal = v; + v = v + ivec2(1); } -ivec3 __operator ++ (inout ivec3 v, const int) { - return ivec3 (v.x++, v.y++, v.z++); +ivec3 __postIncr(inout ivec3 v) +{ + __retVal = v; + v = v + ivec3(1); } -ivec4 __operator ++ (inout ivec4 v, const int) { - return ivec4 (v.x++, v.y++, v.z++, v.w++); +ivec4 __postIncr(inout ivec4 v) +{ + __retVal = v; + v = v + ivec3(1); } -mat2 __operator ++ (inout mat2 m, const int) { - return mat2 (m[0]++, m[1]++); + +mat2 __postIncr(inout mat2 m) +{ + mat2 n = m; + m[0] = m[0] + vec2(1.0); + m[1] = m[1] + vec2(1.0); + return n; } -mat3 __operator ++ (inout mat3 m, const int) { - return mat3 (m[0]++, m[1]++, m[2]++); +mat3 __postIncr(inout mat3 m) +{ + mat3 n = m; + m[0] = m[0] + vec3(1.0); + m[1] = m[1] + vec3(1.0); + m[2] = m[2] + vec3(1.0); + return n; } -mat4 __operator ++ (inout mat4 m, const int) { - return mat4 (m[0]++, m[1]++, m[2]++, m[3]++); +mat4 __postIncr(inout mat4 m) +{ + mat4 n = m; + m[0] = m[0] + vec4(1.0); + m[1] = m[1] + vec4(1.0); + m[2] = m[2] + vec4(1.0); + m[3] = m[3] + vec4(1.0); + return n; } -bool __operator < (const float a, const float b) { - bool c; - __asm float_less c, a, b; - return c; + + +//// inequality operators + + +// XXX are the inequality operators for floats/ints really needed???? +bool __operator < (const float a, const float b) +{ + __asm vec4_sgt __retVal.x, b, a; } + bool __operator < (const int a, const int b) { return float (a) < float (b); } @@ -1546,25 +2513,25 @@ bool __operator <= (const int a, const int b) { return float (a) <= float (b); } -bool __operator ^^ (const bool a, const bool b) { - return a != b; -} -// -// These operators are handled internally by the compiler: -// -// bool __operator && (bool a, bool b) { -// return a ? b : false; -// } -// bool __operator || (bool a, bool b) { -// return a ? true : b; -// } -// -bool __operator ! (const bool a) { - return a == false; +bool __logicalNot(const bool a) +{ + if (a) + return false; + return true; +} + +bool __logicalXor(const bool a, const bool b) +{ + // XXX return a != b; + if (a) + return __logicalNot(b); + return b; } + + // // MESA-specific extension functions. // diff --git a/src/mesa/shader/slang/library/slang_core_gc.h b/src/mesa/shader/slang/library/slang_core_gc.h index a7aaa317fa7..042566696b1 100644 --- a/src/mesa/shader/slang/library/slang_core_gc.h +++ b/src/mesa/shader/slang/library/slang_core_gc.h @@ -2,544 +2,866 @@ /* DO NOT EDIT - THIS FILE IS AUTOMATICALLY GENERATED FROM THE FOLLOWING FILE: */ /* slang_core.gc */ -3,1,0,5,1,1,1,0,9,102,0,0,0,1,3,2,0,5,1,105,0,0,0,4,102,108,111,97,116,95,116,111,95,105,110,116,0, -18,105,0,0,18,102,0,0,0,8,18,105,0,0,0,1,0,1,1,1,1,0,5,105,0,0,0,1,8,18,105,0,16,8,48,0,39,0,0,1,0, -1,1,1,1,0,9,102,0,0,0,1,8,18,102,0,17,48,0,48,0,0,39,0,0,1,0,5,1,1,1,0,1,98,0,0,0,1,8,18,98,0,16, 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coord, float bias) { - vec4 texel; - __asm vec4_tex1d texel, sampler, coord, bias; - return texel; + +//// 8.7 Texture Lookup Functions (with bias) + +vec4 texture1D(const sampler1D sampler, const float coord, const float bias) +{ + vec4 coord4; + coord4.x = coord; + coord4.w = bias; + __asm vec4_texb1d __retVal, sampler, coord4; } -vec4 texture1DProj (sampler1D sampler, vec2 coord, float bias) { - return texture1D (sampler, coord.s / coord.t, bias); +vec4 texture1DProj(const sampler1D sampler, const vec2 coord, const float bias) +{ + // do projection here (there's no vec4_texbp1d instruction) + vec4 pcoord; + pcoord.x = coord.x / coord.y; + pcoord.w = bias; + __asm vec4_texb1d __retVal, sampler, pcoord; } -vec4 texture1DProj (sampler1D sampler, vec4 coord, float bias) { - return texture1D (sampler, coord.s / coord.q, bias); +vec4 texture1DProj(const sampler1D sampler, const vec4 coord, const float bias) +{ + // do projection here (there's no vec4_texbp1d instruction) + vec4 pcoord; + pcoord.x = coord.x / coord.z; + pcoord.w = bias; + __asm vec4_texb1d __retVal, sampler, pcoord; } -vec4 texture2D (sampler2D sampler, vec2 coord, float bias) { - vec4 texel; - __asm vec4_tex2d texel, sampler, coord, bias; - return texel; + + + +vec4 texture2D(const sampler2D sampler, const vec2 coord, const float bias) +{ + vec4 coord4; + coord4.xy = coord.xy; + coord4.w = bias; + __asm vec4_texb2d __retVal, sampler, coord4; } -vec4 texture2DProj (sampler2D sampler, vec3 coord, float bias) { - return texture2D (sampler, vec2 (coord.s / coord.p, coord.t / coord.p), bias); +vec4 texture2DProj(const sampler2D sampler, const vec3 coord, const float bias) +{ + // do projection here (there's no vec4_texbp2d instruction) + vec4 pcoord; + pcoord.xy = coord.xy / coord.z; + pcoord.w = bias; + __asm vec4_texb2d __retVal, sampler, pcoord; } -vec4 texture2DProj (sampler2D sampler, vec4 coord, float bias) { - return texture2D (sampler, vec2 (coord.s / coord.q, coord.t / coord.q), bias); +vec4 texture2DProj(const sampler2D sampler, const vec4 coord, const float bias) +{ + // do projection here (there's no vec4_texbp2d instruction) + vec4 pcoord; + pcoord.xy = coord.xy / coord.w; + pcoord.w = bias; + __asm vec4_texb2d __retVal, sampler, pcoord; } -vec4 texture3D (sampler3D sampler, vec3 coord, float bias) { - vec4 texel; - __asm vec4_tex3d texel, sampler, coord, bias; - return texel; + + + +vec4 texture3D(const sampler3D sampler, const vec3 coord, const float bias) +{ + vec4 coord4; + coord4.xyz = coord.xyz; + coord4.w = bias; + __asm vec4_texb3d __retVal, sampler, coord4; } -vec4 texture3DProj (sampler3D sampler, vec4 coord, float bias) { - return texture3D (sampler, vec3 (coord.s / coord.q, coord.t / coord.q, coord.p / coord.q), bias); +vec4 texture3DProj(const sampler3D sampler, const vec4 coord, const float bias) +{ + // do projection here (there's no vec4_texbp3d instruction) + vec4 pcoord; + pcoord.xyz = coord.xyz / coord.w; + pcoord.w = bias; + __asm vec4_texb3d __retVal, sampler, pcoord; } -vec4 textureCube (samplerCube sampler, vec3 coord, float bias) { - vec4 texel; - __asm vec4_texcube texel, sampler, coord, bias; - return texel; + + + +vec4 textureCube(const samplerCube sampler, const vec3 coord, const float bias) +{ + vec4 coord4; + coord4.xyz = coord; + coord4.w = bias; + __asm vec4_texcube __retVal, sampler, coord4; } -vec4 shadow1D (sampler1DShadow sampler, vec3 coord, float bias) { - vec4 texel; - __asm vec4_shad1d texel, sampler, coord, bias; - return texel; + + + +// For shadow textures, we use the regular tex instructions since they should +// do the depth comparison step. + +vec4 shadow1D(const sampler1DShadow sampler, const vec3 coord, const float bias) +{ + vec4 coord4; + coord4.xyz = coord; + coord4.w = bias; + __asm vec4_texb1d __retVal, sampler, coord4; +} + +vec4 shadow1DProj(const sampler1DShadow sampler, const vec4 coord, const float bias) +{ + vec4 pcoord; + pcoord.x = coord.x / coord.w; + pcoord.z = coord.z; + pcoord.w = bias; + __asm vec4_texb1d __retVal, sampler, pcoord; +} + + + + +vec4 shadow2D(const sampler2DShadow sampler, const vec3 coord, const float bias) +{ + vec4 coord4; + coord4.xyz = coord; + coord4.w = bias; + __asm vec4_texb2d __retVal, sampler, coord4; +} + +vec4 shadow2DProj(const sampler2DShadow sampler, const vec4 coord, const float bias) +{ + vec4 pcoord; + pcoord.xy = coord.xy / coord.w; + pcoord.z = coord.z; + pcoord.w = bias; + __asm vec4_texb2d __retVal, sampler, pcoord; +} + + + +//// GL_ARB_texture_rectangle: +vec4 texture2DRect(const sampler2DRect sampler, const vec2 coord) +{ + __asm vec4_tex_rect __retVal, sampler, coord; } -vec4 shadow1DProj (sampler1DShadow sampler, vec4 coord, float bias) { - return shadow1D (sampler, vec3 (coord.s / coord.q, 0.0, coord.p / coord.q), bias); +vec4 texture2DRectProj(const sampler2DRect sampler, const vec3 coord) +{ + // do projection here + vec4 pcoord; + pcoord.xy = coord.xy / coord.z; + __asm vec4_texp_rect __retVal, sampler, pcoord; } -vec4 shadow2D (sampler2DShadow sampler, vec3 coord, float bias) { - vec4 texel; - __asm vec4_shad2d texel, sampler, coord, bias; - return texel; +vec4 texture2DRectProj(const sampler2DRect sampler, const vec4 coord) +{ + // do projection here + vec4 pcoord; + pcoord.xy = coord.xy / coord.w; + __asm vec4_texp_rect __retVal, sampler, pcoord; } -vec4 shadow2DProj (sampler2DShadow sampler, vec4 coord, float bias) { - return shadow2D (sampler, vec3 (coord.s / coord.q, coord.t / coord.q, coord.p / coord.q), bias); +vec4 shadow2DRect(const sampler2DRectShadow sampler, const vec3 coord) +{ +// XXX to do } +vec4 shadow2DRectProj(const sampler2DRectShadow sampler, const vec4 coord) +{ +// XXX to do +} + + + // // 8.8 Fragment Processing Functions // -float dFdx (float p) { - // XXX: - return 0.001; +float dFdx(const float p) +{ + __asm vec4_ddx __retVal.x, p.xxxx; } -vec2 dFdx (vec2 p) { - // XXX: - return vec2 (0.001); +vec2 dFdx(const vec2 p) +{ + __asm vec4_ddx __retVal.xy, p.xyyy; } -vec3 dFdx (vec3 p) { - // XXX: - return vec3 (0.001); +vec3 dFdx(const vec3 p) +{ + __asm vec4_ddx __retVal.xyz, p.xyzz; } -vec4 dFdx (vec4 p) { - // XXX: - return vec4 (0.001); +vec4 dFdx(const vec4 p) +{ + __asm vec4_ddx __retVal, p; } -float dFdy (float p) { - // XXX: - return 0.001; +float dFdy(const float p) +{ + __asm vec4_ddy __retVal.x, p.xxxx; } -vec2 dFdy (vec2 p) { - // XXX: - return vec2 (0.001); +vec2 dFdy(const vec2 p) +{ + __asm vec4_ddy __retVal.xy, p.xyyy; } -vec3 dFdy (vec3 p) { - // XXX: - return vec3 (0.001); +vec3 dFdy(const vec3 p) +{ + __asm vec4_ddy __retVal.xyz, p.xyzz; } -vec4 dFdy (vec4 p) { - // XXX: - return vec4 (0.001); +vec4 dFdy(const vec4 p) +{ + __asm vec4_ddy __retVal, p; } -float fwidth (float p) { - return abs (dFdx (p)) + abs (dFdy (p)); +float fwidth (const float p) +{ + // XXX hand-write with __asm + return abs(dFdx(p)) + abs(dFdy(p)); } -vec2 fwidth (vec2 p) { - return abs (dFdx (p)) + abs (dFdy (p)); +vec2 fwidth(const vec2 p) +{ + // XXX hand-write with __asm + return abs(dFdx(p)) + abs(dFdy(p)); } -vec3 fwidth (vec3 p) { - return abs (dFdx (p)) + abs (dFdy (p)); +vec3 fwidth(const vec3 p) +{ + // XXX hand-write with __asm + return abs(dFdx(p)) + abs(dFdy(p)); } -vec4 fwidth (vec4 p) { - return abs (dFdx (p)) + abs (dFdy (p)); +vec4 fwidth(const vec4 p) +{ + // XXX hand-write with __asm + return abs(dFdx(p)) + abs(dFdy(p)); } diff --git a/src/mesa/shader/slang/library/slang_fragment_builtin_gc.h b/src/mesa/shader/slang/library/slang_fragment_builtin_gc.h index b7f1d3816c1..88317107b2b 100644 --- a/src/mesa/shader/slang/library/slang_fragment_builtin_gc.h +++ b/src/mesa/shader/slang/library/slang_fragment_builtin_gc.h @@ -9,71 +9,107 @@ 108,95,67,111,108,111,114,0,0,0,2,2,3,12,1,103,108,95,83,101,99,111,110,100,97,114,121,67,111,108, 111,114,0,0,0,2,2,3,12,1,103,108,95,84,101,120,67,111,111,114,100,0,3,18,103,108,95,77,97,120,84, 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+58,97,98,115,0,58,100,70,100,121,0,18,112,0,0,0,0,0,46,0,0,1,0,12,0,102,119,105,100,116,104,0,1,1, 0,12,112,0,0,0,1,8,58,97,98,115,0,58,100,70,100,120,0,18,112,0,0,0,0,0,58,97,98,115,0,58,100,70, 100,121,0,18,112,0,0,0,0,0,46,0,0,0 diff --git a/src/mesa/shader/slang/library/slang_shader.syn b/src/mesa/shader/slang/library/slang_shader.syn index 149bb15c442..9389869da23 100644 --- a/src/mesa/shader/slang/library/slang_shader.syn +++ b/src/mesa/shader/slang/library/slang_shader.syn @@ -139,8 +139,10 @@ .emtcode TYPE_SPECIFIER_SAMPLERCUBE 19 .emtcode TYPE_SPECIFIER_SAMPLER1DSHADOW 20 .emtcode TYPE_SPECIFIER_SAMPLER2DSHADOW 21 -.emtcode TYPE_SPECIFIER_STRUCT 22 -.emtcode TYPE_SPECIFIER_TYPENAME 23 +.emtcode TYPE_SPECIFIER_SAMPLER2DRECT 22 +.emtcode TYPE_SPECIFIER_SAMPLER2DRECTSHADOW 23 +.emtcode TYPE_SPECIFIER_STRUCT 24 +.emtcode TYPE_SPECIFIER_TYPENAME 25 /* structure field */ .emtcode FIELD_NONE 0 @@ -884,6 +886,8 @@ type_qualifier | "samplerCube" | "sampler1DShadow" | "sampler2DShadow" + | "sampler2DRect" + | "sampler2DRectShadow" | <struct_specifier> | <type_name> */ @@ -910,6 +914,8 @@ type_specifier_space "samplerCube" .emit TYPE_SPECIFIER_SAMPLERCUBE .or "sampler1DShadow" .emit TYPE_SPECIFIER_SAMPLER1DSHADOW .or "sampler2DShadow" .emit TYPE_SPECIFIER_SAMPLER2DSHADOW .or + "sampler2DRect" .emit TYPE_SPECIFIER_SAMPLER2DRECT .or + "sampler2DRectShadow" .emit TYPE_SPECIFIER_SAMPLER2DRECTSHADOW .or type_name .emit TYPE_SPECIFIER_TYPENAME; type_specifier_nospace struct_specifier .emit TYPE_SPECIFIER_STRUCT; @@ -1096,7 +1102,7 @@ condition_3 expression .and .true .emit OP_END; /* - <iteration_statement> ::= "while" "(" <condition> ")" <statement_no_new_scope> + <iteration_statement> ::= "while" "(" <condition> ")" <statement> | "do" <statement> "while" "(" <expression> ")" ";" | "for" "(" <for_init_statement> <for_rest_statement> ")" <statement_no_new_scope> @@ -1105,7 +1111,7 @@ iteration_statement iteration_statement_1 .or iteration_statement_2 .or iteration_statement_3; iteration_statement_1 "while" .emit OP_WHILE .and lparen .error LPAREN_EXPECTED .and condition .and - rparen .error RPAREN_EXPECTED .and statement_no_new_scope; + rparen .error RPAREN_EXPECTED .and statement; iteration_statement_2 "do" .emit OP_DO .and statement_space .and "while" .and lparen .error LPAREN_EXPECTED .and expression .and rparen .error RPAREN_EXPECTED .emit OP_END .and semicolon; @@ -1192,7 +1198,12 @@ note: this is an extension to the standard language specification - normally sla __asm statements */ asm_argument - variable_identifier .or floatconstant; + var_with_field .or + variable_identifier .or + floatconstant; + +var_with_field + variable_identifier .and dot .and field_selection .emit OP_FIELD; /* <translation_unit> ::= <external_declaration> diff --git a/src/mesa/shader/slang/library/slang_shader_syn.h b/src/mesa/shader/slang/library/slang_shader_syn.h index ad89472ba3b..4863feda5bd 100644 --- a/src/mesa/shader/slang/library/slang_shader_syn.h +++ b/src/mesa/shader/slang/library/slang_shader_syn.h @@ -63,8 +63,10 @@ ".emtcode TYPE_SPECIFIER_SAMPLERCUBE 19\n" ".emtcode TYPE_SPECIFIER_SAMPLER1DSHADOW 20\n" ".emtcode TYPE_SPECIFIER_SAMPLER2DSHADOW 21\n" -".emtcode TYPE_SPECIFIER_STRUCT 22\n" -".emtcode TYPE_SPECIFIER_TYPENAME 23\n" +".emtcode TYPE_SPECIFIER_SAMPLER2DRECT 22\n" +".emtcode TYPE_SPECIFIER_SAMPLER2DRECTSHADOW 23\n" +".emtcode TYPE_SPECIFIER_STRUCT 24\n" +".emtcode TYPE_SPECIFIER_TYPENAME 25\n" ".emtcode FIELD_NONE 0\n" ".emtcode FIELD_NEXT 1\n" ".emtcode FIELD_ARRAY 2\n" @@ -435,6 +437,8 @@ " \"samplerCube\" .emit TYPE_SPECIFIER_SAMPLERCUBE .or\n" " \"sampler1DShadow\" .emit TYPE_SPECIFIER_SAMPLER1DSHADOW .or\n" " \"sampler2DShadow\" .emit TYPE_SPECIFIER_SAMPLER2DSHADOW .or\n" +" \"sampler2DRect\" .emit TYPE_SPECIFIER_SAMPLER2DRECT .or\n" +" \"sampler2DRectShadow\" .emit TYPE_SPECIFIER_SAMPLER2DRECTSHADOW .or\n" " type_name .emit TYPE_SPECIFIER_TYPENAME;\n" "type_specifier_nospace\n" " struct_specifier .emit TYPE_SPECIFIER_STRUCT;\n" @@ -533,7 +537,7 @@ " iteration_statement_1 .or iteration_statement_2 .or iteration_statement_3;\n" "iteration_statement_1\n" " \"while\" .emit OP_WHILE .and lparen .error LPAREN_EXPECTED .and condition .and\n" -" rparen .error RPAREN_EXPECTED .and statement_no_new_scope;\n" +" rparen .error RPAREN_EXPECTED .and statement;\n" "iteration_statement_2\n" " \"do\" .emit OP_DO .and statement_space .and \"while\" .and lparen .error LPAREN_EXPECTED .and\n" " expression .and rparen .error RPAREN_EXPECTED .emit OP_END .and semicolon;\n" @@ -571,7 +575,11 @@ "asm_arguments_1\n" " comma .and asm_argument .and .true .emit OP_END;\n" "asm_argument\n" -" variable_identifier .or floatconstant;\n" +" var_with_field .or\n" +" variable_identifier .or\n" +" floatconstant;\n" +"var_with_field\n" +" variable_identifier .and dot .and field_selection .emit OP_FIELD;\n" "translation_unit\n" " optional_space .emit REVISION .and external_declaration .error INVALID_EXTERNAL_DECLARATION .and\n" " .loop external_declaration .and optional_space .and\n" diff --git a/src/mesa/shader/slang/library/slang_vertex_builtin.gc b/src/mesa/shader/slang/library/slang_vertex_builtin.gc index 8afb723ee2c..20c924a30d7 100755..100644 --- a/src/mesa/shader/slang/library/slang_vertex_builtin.gc +++ b/src/mesa/shader/slang/library/slang_vertex_builtin.gc @@ -55,74 +55,133 @@ varying float gl_FogFragCoord; // Geometric Functions // -vec4 ftransform () { - return gl_ModelViewProjectionMatrix * gl_Vertex; +vec4 ftransform() +{ + __retVal = gl_Vertex * gl_ModelViewProjectionMatrixTranspose; } + + // // 8.7 Texture Lookup Functions +// These are pretty much identical to the ones in slang_fragment_builtin.gc +// When used in a vertex program, the texture sample instructions should not +// be using a LOD term so it's effectively zero. Adding 'lod' to that does +// what we want. // -vec4 texture1DLod (sampler1D sampler, float coord, float lod) { - vec4 texel; - __asm vec4_tex1d texel, sampler, coord, lod; - return texel; +vec4 texture1DLod(const sampler1D sampler, const float coord, const float lod) +{ + vec4 coord4; + coord4.x = coord; + coord4.w = lod; + __asm vec4_texb1d __retVal, sampler, coord4; } -vec4 texture1DProjLod (sampler1D sampler, vec2 coord, float lod) { - return texture1DLod (sampler, coord.s / coord.t, lod); +vec4 texture1DProjLod(const sampler1D sampler, const vec2 coord, const float lod) +{ + vec4 pcoord; + pcoord.x = coord.x / coord.y; + pcoord.w = lod; + __asm vec4_texb1d __retVal, sampler, pcoord; } -vec4 texture1DProjLod (sampler1D sampler, vec4 coord, float lod) { - return texture1DLod (sampler, coord.s / coord.q, lod); +vec4 texture1DProjLod(const sampler1D sampler, const vec4 coord, const float lod) +{ + vec4 pcoord; + pcoord.x = coord.x / coord.z; + pcoord.w = lod; + __asm vec4_texb1d __retVal, sampler, pcoord; } -vec4 texture2DLod (sampler2D sampler, vec2 coord, float lod) { - vec4 texel; - __asm vec4_tex2d texel, sampler, coord, lod; - return texel; + + +vec4 texture2DLod(const sampler2D sampler, const vec2 coord, const float lod) +{ + vec4 coord4; + coord4.xy = coord.xy; + coord4.w = lod; + __asm vec4_texb2d __retVal, sampler, coord4; } -vec4 texture2DProjLod (sampler2D sampler, vec3 coord, float lod) { - return texture2DLod (sampler, vec2 (coord.s / coord.p, coord.t / coord.p), lod); +vec4 texture2DProjLod(const sampler2D sampler, const vec3 coord, const float lod) +{ + vec4 pcoord; + pcoord.xy = coord.xy / coord.z; + pcoord.w = lod; + __asm vec4_texb2d __retVal, sampler, pcoord; } -vec4 texture2DProjLod (sampler2D sampler, vec4 coord, float lod) { - return texture2DLod (sampler, vec2 (coord.s / coord.q, coord.t / coord.q), lod); +vec4 texture2DProjLod(const sampler2D sampler, const vec4 coord, const float lod) +{ + vec4 pcoord; + pcoord.xy = coord.xy / coord.z; + pcoord.w = lod; + __asm vec4_texb2d __retVal, sampler, pcoord; } -vec4 texture3DLod (sampler3D sampler, vec3 coord, float lod) { - vec4 texel; - __asm vec4_tex3d texel, sampler, coord, lod; - return texel; + +vec4 texture3DLod(const sampler3D sampler, const vec3 coord, const float lod) +{ + vec4 coord4; + coord4.xyz = coord.xyz; + coord4.w = lod; + __asm vec4_texb3d __retVal, sampler, coord4; } -vec4 texture3DProjLod (sampler3D sampler, vec4 coord, float lod) { - return texture3DLod (sampler, vec3 (coord.s / coord.q, coord.t / coord.q, coord.p / coord.q), lod); + +vec4 texture3DProjLod(const sampler3D sampler, const vec4 coord, const float lod) +{ + // do projection here (there's no vec4_texbp3d instruction) + vec4 pcoord; + pcoord.xyz = coord.xyz / coord.w; + pcoord.w = lod; + __asm vec4_texb3d __retVal, sampler, pcoord; } -vec4 textureCubeLod (samplerCube sampler, vec3 coord, float lod) { - vec4 texel; - __asm vec4_texcube texel, sampler, coord, lod; - return texel; + +vec4 textureCubeLod(const samplerCube sampler, const vec3 coord, const float lod) +{ + vec4 coord4; + coord4.xyz = coord; + coord4.w = lod; + __asm vec4_texcube __retVal, sampler, coord4; } -vec4 shadow1DLod (sampler1DShadow sampler, vec3 coord, float lod) { - vec4 texel; - __asm vec4_shad1d texel, sampler, coord, lod; - return texel; + +vec4 shadow1DLod(const sampler1DShadow sampler, const vec3 coord, const float lod) +{ + vec4 coord4; + coord4.xyz = coord; + coord4.w = lod; + __asm vec4_texb1d __retVal, sampler, coord4; } -vec4 shadow1DProjLod (sampler1DShadow sampler, vec4 coord, float lod) { - return shadow1DLod (sampler, vec3 (coord.s / coord.q, 0.0, coord.p / coord.q), lod); +vec4 shadow1DProjLod(const sampler1DShadow sampler, const vec4 coord, + const float lod) +{ + vec4 pcoord; + pcoord.x = coord.x / coord.w; + pcoord.z = coord.z; + pcoord.w = lod; + __asm vec4_texb1d __retVal, sampler, pcoord; } -vec4 shadow2DLod (sampler2DShadow sampler, vec3 coord, float lod) { - vec4 texel; - __asm vec4_shad2d texel, sampler, coord, lod; - return texel; + +vec4 shadow2DLod(const sampler2DShadow sampler, const vec3 coord, const float lod) +{ + vec4 coord4; + coord4.xyz = coord; + coord4.w = lod; + __asm vec4_texb2d __retVal, sampler, coord4; } -vec4 shadow2DProjLod (sampler2DShadow sampler, vec4 coord, float lod) { - return shadow2DLod (sampler, vec3 (coord.s / coord.q, coord.t / coord.q, coord.p / coord.q), lod); +vec4 shadow2DProjLod(const sampler2DShadow sampler, const vec4 coord, + const float lod) +{ + vec4 pcoord; + pcoord.xy = coord.xy / coord.w; + pcoord.z = coord.z; + pcoord.w = lod; + __asm vec4_texb2d __retVal, sampler, pcoord; } diff --git a/src/mesa/shader/slang/library/slang_vertex_builtin_gc.h b/src/mesa/shader/slang/library/slang_vertex_builtin_gc.h index b47c2717c56..d47d62f909e 100644 --- a/src/mesa/shader/slang/library/slang_vertex_builtin_gc.h +++ b/src/mesa/shader/slang/library/slang_vertex_builtin_gc.h @@ -19,60 +19,75 @@ 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