diff options
Diffstat (limited to 'src/mesa/shader/slang')
-rw-r--r-- | src/mesa/shader/slang/library/slang_core.gc | 569 | ||||
-rw-r--r-- | src/mesa/shader/slang/library/slang_core_gc.h | 954 | ||||
-rw-r--r-- | src/mesa/shader/slang/slang_codegen.c | 299 | ||||
-rw-r--r-- | src/mesa/shader/slang/slang_compile.c | 14 | ||||
-rw-r--r-- | src/mesa/shader/slang/slang_link.c | 11 | ||||
-rw-r--r-- | src/mesa/shader/slang/slang_log.c | 15 | ||||
-rw-r--r-- | src/mesa/shader/slang/slang_preprocess.c | 80 | ||||
-rw-r--r-- | src/mesa/shader/slang/slang_preprocess.h | 6 |
8 files changed, 1138 insertions, 810 deletions
diff --git a/src/mesa/shader/slang/library/slang_core.gc b/src/mesa/shader/slang/library/slang_core.gc index 10a6bb5cb15..0a0d15903bc 100644 --- a/src/mesa/shader/slang/library/slang_core.gc +++ b/src/mesa/shader/slang/library/slang_core.gc @@ -1207,370 +1207,381 @@ float dot(const vec4 a, const vec4 b) //// int assignment operators -void __operator += (inout int a, const int b) +int __operator += (inout int a, const int b) { - __asm vec4_add a, a, b; + a = a + b; + return a; } -void __operator -= (inout int a, const int b) +int __operator -= (inout int a, const int b) { - __asm vec4_subtract a, a, b; + a = a - b; + return a; } -void __operator *= (inout int a, const int b) +int __operator *= (inout int a, const int b) { - __asm vec4_multiply a, a, b; + a = a * b; + return a; } -void __operator /= (inout int a, const int b) +int __operator /= (inout int a, const int b) { - float invB; - __asm float_rcp invB, b; - __asm vec4_multiply a, a, invB; - __asm vec4_to_ivec4 a, a; + a = a / b; + return a; } //// ivec2 assignment operators -void __operator += (inout ivec2 v, const ivec2 u) +ivec2 __operator += (inout ivec2 v, const ivec2 u) { - __asm vec4_add v, v, u; + v = v + u; + return v; } -void __operator -= (inout ivec2 v, const ivec2 u) +ivec2 __operator -= (inout ivec2 v, const ivec2 u) { - __asm vec4_subtract v, v, u; + v = v - u; + return v; } -void __operator *= (inout ivec2 v, const ivec2 u) +ivec2 __operator *= (inout ivec2 v, const ivec2 u) { - __asm vec4_multiply v, v, u; + v = v * u; + return v; } -void __operator /= (inout ivec2 v, const ivec2 u) +ivec2 __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 vec4_to_ivec4 v, z; + v = v / u; + return v; } //// ivec3 assignment operators -void __operator += (inout ivec3 v, const ivec3 u) +ivec3 __operator += (inout ivec3 v, const ivec3 u) { - __asm vec4_add v, v, u; + v = v + u; + return v; } -void __operator -= (inout ivec3 v, const ivec3 u) +ivec3 __operator -= (inout ivec3 v, const ivec3 u) { - __asm vec4_subtract v, v, u; + v = v - u; + return v; } -void __operator *= (inout ivec3 v, const ivec3 u) +ivec3 __operator *= (inout ivec3 v, const ivec3 u) { - __asm vec4_multiply v, v, u; + v = v * u; + return v; } -void __operator /= (inout ivec3 v, const ivec3 u) +ivec3 __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 vec4_to_ivec4 v, z; + v = v / u; + return v; } //// ivec4 assignment operators -void __operator += (inout ivec4 v, const ivec4 u) +ivec4 __operator += (inout ivec4 v, const ivec4 u) { - __asm vec4_add v, v, u; + v = v + u; + return v; } -void __operator -= (inout ivec4 v, const ivec4 u) +ivec4 __operator -= (inout ivec4 v, const ivec4 u) { - __asm vec4_subtract v, v, u; + v = v - u; + return v; } -void __operator *= (inout ivec4 v, const ivec4 u) +ivec4 __operator *= (inout ivec4 v, const ivec4 u) { - __asm vec4_multiply v, v, u; + v = v * u; + return v; } -void __operator /= (inout ivec4 v, const ivec4 u) +ivec4 __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 vec4_to_ivec4 v, z; + v = v / u; + return v; } //// float assignment operators -void __operator += (inout float a, const float b) +float __operator += (inout float a, const float b) { - __asm vec4_add a.x, a.x, b.x; + a = a + b; + return a; } -void __operator -= (inout float a, const float b) +float __operator -= (inout float a, const float b) { - __asm vec4_subtract a.x, a, b; + a = a - b; + return a; } -void __operator *= (inout float a, const float b) +float __operator *= (inout float a, const float b) { - __asm vec4_multiply a.x, a, b; + a = a * b; + return a; } -void __operator /= (inout float a, const float b) +float __operator /= (inout float a, const float b) { - float w; // = 1 / b - __asm float_rcp w.x, b; - __asm vec4_multiply a.x, a, w; + a = a / b; + return a; } //// vec2 assignment operators -void __operator += (inout vec2 v, const vec2 u) +vec2 __operator += (inout vec2 v, const vec2 u) { - __asm vec4_add v.xy, v.xy, u.xy; + v = v + u; + return v; } -void __operator -= (inout vec2 v, const vec2 u) +vec2 __operator -= (inout vec2 v, const vec2 u) { - __asm vec4_subtract v.xy, v.xy, u.xy; + v = v - u; + return v; } -void __operator *= (inout vec2 v, const vec2 u) +vec2 __operator *= (inout vec2 v, const vec2 u) { - __asm vec4_multiply v.xy, v.xy, u.xy; + v = v * u; + return v; } -void __operator /= (inout vec2 v, const vec2 u) +vec2 __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; + v = v / u; + return v; } //// vec3 assignment operators -void __operator += (inout vec3 v, const vec3 u) +vec3 __operator += (inout vec3 v, const vec3 u) { - __asm vec4_add v.xyz, v, u; + v = v + u; + return v; } -void __operator -= (inout vec3 v, const vec3 u) +vec3 __operator -= (inout vec3 v, const vec3 u) { - __asm vec4_subtract v.xyz, v, u; + v = v - u; + return v; } -void __operator *= (inout vec3 v, const vec3 u) +vec3 __operator *= (inout vec3 v, const vec3 u) { - __asm vec4_multiply v.xyz, v, u; + v = v * u; + return v; } -void __operator /= (inout vec3 v, const vec3 u) +vec3 __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; + v = v / u; + return v; } //// vec4 assignment operators -void __operator += (inout vec4 v, const vec4 u) +vec4 __operator += (inout vec4 v, const vec4 u) { - __asm vec4_add v, v, u; + v = v + u; + return v; } -void __operator -= (inout vec4 v, const vec4 u) +vec4 __operator -= (inout vec4 v, const vec4 u) { - __asm vec4_subtract v, v, u; + v = v - u; + return v; } -void __operator *= (inout vec4 v, const vec4 u) +vec4 __operator *= (inout vec4 v, const vec4 u) { - __asm vec4_multiply v, v, u; + v = v * u; + return v; } -void __operator /= (inout vec4 v, const vec4 u) +vec4 __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; + v = v / u; + return v; } //// ivec2/int assignment operators -void __operator += (inout ivec2 v, const int a) +ivec2 __operator += (inout ivec2 v, const int a) { - __asm vec4_add v.xy, v.xy, a; + v = v + ivec2(a); + return v; } -void __operator -= (inout ivec2 v, const int a) +ivec2 __operator -= (inout ivec2 v, const int a) { - __asm vec4_subtract v.xy, v.xy, a; + v = v - ivec2(a); + return v; } -void __operator *= (inout ivec2 v, const int a) +ivec2 __operator *= (inout ivec2 v, const int a) { - __asm vec4_multiply v.xy, v.xy, a; - v.x *= a; - v.y *= a; + v = v * ivec2(a); + return v; } -void __operator /= (inout ivec2 v, const int a) +ivec2 __operator /= (inout ivec2 v, const int a) { -// XXX rcp - v.x /= a; - v.y /= a; + v = v / ivec2(a); + return v; } //// ivec3/int assignment operators -void __operator += (inout ivec3 v, const int a) +ivec3 __operator += (inout ivec3 v, const int a) { - __asm vec4_add v.xyz, v.xyz, a; + v = v + ivec3(a); + return v; } -void __operator -= (inout ivec3 v, const int a) +ivec3 __operator -= (inout ivec3 v, const int a) { - __asm vec4_subtract v.xyz, v.xyz, a; + v = v - ivec3(a); + return v; } -void __operator *= (inout ivec3 v, const int a) +ivec3 __operator *= (inout ivec3 v, const int a) { - __asm vec4_multiply v.xyz, v.xyz, a; + v = v * ivec3(a); + return v; } -void __operator /= (inout ivec3 v, const int a) +ivec4 __operator /= (inout ivec3 v, const int a) { - // XXX rcp - v.x /= a; - v.y /= a; - v.z /= a; + v = v / ivec3(a); + return v; } //// ivec4/int assignment operators -void __operator += (inout ivec4 v, const int a) +ivec4 __operator += (inout ivec4 v, const int a) { - __asm vec4_add v, v, a; + v = v + ivec4(a); + return v; } -void __operator -= (inout ivec4 v, const int a) +ivec4 __operator -= (inout ivec4 v, const int a) { - __asm vec4_subtract v, v, a; + v = v - ivec4(a); + return v; } -void __operator *= (inout ivec4 v, const int a) +ivec4 __operator *= (inout ivec4 v, const int a) { - __asm vec4_multiply v, v, a; + v = v * ivec4(a); + return v; } -void __operator /= (inout ivec4 v, const int a) +ivec4 __operator /= (inout ivec4 v, const int a) { - v.x /= a; - v.y /= a; - v.z /= a; - v.w /= a; + v = v / ivec4(a); + return v; } //// vec2/float assignment operators -void __operator += (inout vec2 v, const float a) +vec2 __operator += (inout vec2 v, const float a) { - __asm vec4_add v.xy, v, a; + v = v + vec2(a); + return v; } -void __operator -= (inout vec2 v, const float a) +vec2 __operator -= (inout vec2 v, const float a) { - __asm vec4_subtract v.xy, v, a; + v = v - vec2(a); + return v; } -void __operator *= (inout vec2 v, const float a) +vec2 __operator *= (inout vec2 v, const float a) { - __asm vec4_multiply v.xy, v, a; + v = v * vec2(a); + return v; } -void __operator /= (inout vec2 v, const float a) +vec2 __operator /= (inout vec2 v, const float a) { - float invA; - __asm float_rcp invA, a; - __asm vec4_multiply v.xy, v.xy, invA; + v = v / vec2(a); + return v; } //// vec3/float assignment operators -void __operator += (inout vec3 v, const float a) +vec3 __operator += (inout vec3 v, const float a) { - __asm vec4_add v.xyz, v, a; + v = v + vec3(a); + return v; } -void __operator -= (inout vec3 v, const float a) +vec3 __operator -= (inout vec3 v, const float a) { - __asm vec4_subtract v.xyz, v, a; + v = v - vec3(a); + return v; } -void __operator *= (inout vec3 v, const float a) +vec3 __operator *= (inout vec3 v, const float a) { - __asm vec4_multiply v.xyz, v, a; + v = v * vec3(a); + return v; } -void __operator /= (inout vec3 v, const float a) +vec3 __operator /= (inout vec3 v, const float a) { - float invA; - __asm float_rcp invA, a; - __asm vec4_multiply v.xyz, v.xyz, invA; + v = v / vec3(a); + return v; } //// vec4/float assignment operators -void __operator += (inout vec4 v, const float a) +vec4 __operator += (inout vec4 v, const float a) { - __asm vec4_add v, v, a; + v = v + vec4(a); + return v; } -void __operator -= (inout vec4 v, const float a) +vec4 __operator -= (inout vec4 v, const float a) { - __asm vec4_subtract v, v, a; + v = v - vec4(a); + return v; } -void __operator *= (inout vec4 v, const float a) +vec4 __operator *= (inout vec4 v, const float a) { - __asm vec4_multiply v, v, a; + v = v * vec4(a); + return v; } -void __operator /= (inout vec4 v, const float a) +vec4 __operator /= (inout vec4 v, const float a) { - float invA; - __asm float_rcp invA, a; - __asm vec4_multiply v, v, invA; + v = v / vec4(a); + return v; } @@ -1896,187 +1907,239 @@ vec4 __operator * (const vec4 v, const mat4 m) //// mat2 assignment operators -void __operator += (inout mat2 m, const mat2 n) +mat2 __operator += (inout mat2 m, const mat2 n) { - m[0] += n[0]; - m[1] += n[1]; + m[0] = m[0] + n[0]; + m[1] = m[1] + n[1]; + return m; } -void __operator -= (inout mat2 m, const mat2 n) +mat2 __operator -= (inout mat2 m, const mat2 n) { - m[0] -= n[0]; - m[1] -= n[1]; + m[0] = m[0] - n[0]; + m[1] = m[1] - n[1]; + return m; } -void __operator *= (inout mat2 m, const mat2 n) +mat2 __operator *= (inout mat2 m, const mat2 n) { - m = m * n; + m = m * n; + return m; } -void __operator /= (inout mat2 m, const mat2 n) +mat2 __operator /= (inout mat2 m, const mat2 n) { - m[0] /= n[0]; - m[1] /= n[1]; + m[0] = m[0] / n[0]; + m[1] = m[1] / n[1]; + return m; } //// mat3 assignment operators -void __operator += (inout mat3 m, const mat3 n) +mat3 __operator += (inout mat3 m, const mat3 n) { - m[0] += n[0]; - m[1] += n[1]; - m[2] += n[2]; + m[0] = m[0] + n[0]; + m[1] = m[1] + n[1]; + m[2] = m[2] + n[2]; + return m; } -void __operator -= (inout mat3 m, const mat3 n) +mat3 __operator -= (inout mat3 m, const mat3 n) { - m[0] -= n[0]; - m[1] -= n[1]; - m[2] -= n[2]; + m[0] = m[0] - n[0]; + m[1] = m[1] - n[1]; + m[2] = m[2] - n[2]; + return m; } -void __operator *= (inout mat3 m, const mat3 n) +mat3 __operator *= (inout mat3 m, const mat3 n) { - m = m * n; + m = m * n; + return m; } -void __operator /= (inout mat3 m, const mat3 n) +mat3 __operator /= (inout mat3 m, const mat3 n) { - m[0] /= n[0]; - m[1] /= n[1]; - m[2] /= n[2]; + m[0] = m[0] / n[0]; + m[1] = m[1] / n[1]; + m[2] = m[2] / n[2]; + return m; } // mat4 assignment operators -void __operator += (inout mat4 m, const mat4 n) +mat4 __operator += (inout mat4 m, const mat4 n) { - m[0] += n[0]; - m[1] += n[1]; - m[2] += n[2]; - m[3] += n[3]; + m[0] = m[0] + n[0]; + m[1] = m[1] + n[1]; + m[2] = m[2] + n[2]; + m[3] = m[3] + n[3]; + return m; } -void __operator -= (inout mat4 m, const mat4 n) { - m[0] -= n[0]; - m[1] -= n[1]; - m[2] -= n[2]; - m[3] -= n[3]; +mat4 __operator -= (inout mat4 m, const mat4 n) +{ + m[0] = m[0] - n[0]; + m[1] = m[1] - n[1]; + m[2] = m[2] - n[2]; + m[3] = m[3] - n[3]; + return m; } -void __operator *= (inout mat4 m, const mat4 n) +mat4 __operator *= (inout mat4 m, const mat4 n) { - m = m * n; + m = m * n; + return m; } -void __operator /= (inout mat4 m, const mat4 n) +mat4 __operator /= (inout mat4 m, const mat4 n) { - m[0] /= n[0]; - m[1] /= n[1]; - m[2] /= n[2]; - m[3] /= n[3]; + m[0] = m[0] / n[0]; + m[1] = m[1] / n[1]; + m[2] = m[2] / n[2]; + m[3] = m[3] / n[3]; + return m; } //// mat2/float assignment operators -void __operator += (inout mat2 m, const float a) { - m[0] += a; - m[1] += a; +mat2 __operator += (inout mat2 m, const float a) +{ + vec2 v = vec2(a); + m[0] = m[0] + v; + m[1] = m[1] + v; + return m; } -void __operator -= (inout mat2 m, const float a) { - m[0] -= a; - m[1] -= a; +mat2 __operator -= (inout mat2 m, const float a) +{ + vec2 v = vec2(a); + m[0] = m[0] - v; + m[1] = m[1] - v; + return m; } -void __operator *= (inout mat2 m, const float a) { - m[0] *= a; - m[1] *= a; +mat2 __operator *= (inout mat2 m, const float a) +{ + vec2 v = vec2(a); + m[0] = m[0] * v; + m[1] = m[1] * v; + return m; } -void __operator /= (inout mat2 m, const float a) { - m[0] /= a; - m[1] /= a; +mat2 __operator /= (inout mat2 m, const float a) +{ + vec2 v = vec2(1.0 / a); + m[0] = m[0] * v; + m[1] = m[1] * v; + return m; } //// mat3/float assignment operators -void __operator += (inout mat3 m, const float a) { - m[0] += a; - m[1] += a; - m[2] += a; +mat3 __operator += (inout mat3 m, const float a) +{ + vec3 v = vec3(a); + m[0] = m[0] + v; + m[1] = m[1] + v; + m[2] = m[2] + v; + return m; } -void __operator -= (inout mat3 m, const float a) { - m[0] -= a; - m[1] -= a; - m[2] -= a; +mat3 __operator -= (inout mat3 m, const float a) +{ + vec3 v = vec3(a); + m[0] = m[0] - v; + m[1] = m[1] - v; + m[2] = m[2] - v; + return m; } -void __operator *= (inout mat3 m, const float a) { - m[0] *= a; - m[1] *= a; - m[2] *= a; +mat3 __operator *= (inout mat3 m, const float a) +{ + vec3 v = vec3(a); + m[0] = m[0] * v; + m[1] = m[1] * v; + m[2] = m[2] * v; + return m; } -void __operator /= (inout mat3 m, const float a) { - m[0] /= a; - m[1] /= a; - m[2] /= a; +mat3 __operator /= (inout mat3 m, const float a) +{ + vec3 v = vec3(1.0 / a); + m[0] = m[0] * v; + m[1] = m[1] * v; + m[2] = m[2] * v; + return m; } //// mat4/float assignment operators -void __operator += (inout mat4 m, const float a) { - m[0] += a; - m[1] += a; - m[2] += a; - m[3] += a; +mat4 __operator += (inout mat4 m, const float a) +{ + vec4 v = vec4(a); + m[0] = m[0] + v; + m[1] = m[1] + v; + m[2] = m[2] + v; + m[3] = m[3] + v; + return m; } -void __operator -= (inout mat4 m, const float a) { - m[0] -= a; - m[1] -= a; - m[2] -= a; - m[3] -= a; +mat4 __operator -= (inout mat4 m, const float a) +{ + vec4 v = vec4(a); + m[0] = m[0] - v; + m[1] = m[1] - v; + m[2] = m[2] - v; + m[3] = m[3] - v; + return m; } -void __operator *= (inout mat4 m, const float a) { - m[0] *= a; - m[1] *= a; - m[2] *= a; - m[3] *= a; +mat4 __operator *= (inout mat4 m, const float a) +{ + vec4 v = vec4(a); + m[0] = m[0] * v; + m[1] = m[1] * v; + m[2] = m[2] * v; + m[3] = m[3] * v; + return m; } -void __operator /= (inout mat4 m, const float a) { - m[0] /= a; - m[1] /= a; - m[2] /= a; - m[3] /= a; +mat4 __operator /= (inout mat4 m, const float a) +{ + vec4 v = vec4(1.0 / a); + m[0] = m[0] * v; + m[1] = m[1] * v; + m[2] = m[2] * v; + m[3] = m[3] * v; + return m; } //// vec/mat assignment operators -void __operator *= (inout vec2 v, const mat2 m) +vec2 __operator *= (inout vec2 v, const mat2 m) { - v = v * m; + v = v * m; + return v; } -void __operator *= (inout vec3 v, const mat3 m) +vec3 __operator *= (inout vec3 v, const mat3 m) { - v = v * m; + v = v * m; + return v; } -void __operator *= (inout vec4 v, const mat4 m) +vec4 __operator *= (inout vec4 v, const mat4 m) { - v = v * m; + v = v * m; + return v; } diff --git a/src/mesa/shader/slang/library/slang_core_gc.h b/src/mesa/shader/slang/library/slang_core_gc.h index e344bd828ae..b3d3e87cf42 100644 --- a/src/mesa/shader/slang/library/slang_core_gc.h +++ b/src/mesa/shader/slang/library/slang_core_gc.h @@ -384,500 +384,486 @@ 0,48,46,20,0,0,1,90,95,0,0,9,0,0,100,111,116,0,1,1,0,0,11,0,97,0,0,1,1,0,0,11,0,98,0,0,0,1,4,118, 101,99,51,95,100,111,116,0,18,95,95,114,101,116,86,97,108,0,0,18,97,0,0,18,98,0,0,0,0,1,90,95,0,0, 9,0,0,100,111,116,0,1,1,0,0,12,0,97,0,0,1,1,0,0,12,0,98,0,0,0,1,4,118,101,99,52,95,100,111,116,0, -18,95,95,114,101,116,86,97,108,0,0,18,97,0,0,18,98,0,0,0,0,1,90,95,0,0,0,0,2,1,1,0,2,0,5,0,97,0,0, -1,1,0,0,5,0,98,0,0,0,1,4,118,101,99,52,95,97,100,100,0,18,97,0,0,18,97,0,0,18,98,0,0,0,0,1,90,95,0, -0,0,0,2,2,1,0,2,0,5,0,97,0,0,1,1,0,0,5,0,98,0,0,0,1,4,118,101,99,52,95,115,117,98,116,114,97,99, -116,0,18,97,0,0,18,97,0,0,18,98,0,0,0,0,1,90,95,0,0,0,0,2,3,1,0,2,0,5,0,97,0,0,1,1,0,0,5,0,98,0,0, 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+95,112,114,105,110,116,0,18,101,0,0,0,0,1,90,95,0,0,0,0,0,112,114,105,110,116,77,69,83,65,0,1,1,0, +0,20,0,101,0,0,0,1,4,105,110,116,95,112,114,105,110,116,0,18,101,0,0,0,0,1,90,95,0,0,0,0,0,112,114, +105,110,116,77,69,83,65,0,1,1,0,0,21,0,101,0,0,0,1,4,105,110,116,95,112,114,105,110,116,0,18,101,0, +0,0,0,0 diff --git a/src/mesa/shader/slang/slang_codegen.c b/src/mesa/shader/slang/slang_codegen.c index 66615d3afd6..ba1c955a1ae 100644 --- a/src/mesa/shader/slang/slang_codegen.c +++ b/src/mesa/shader/slang/slang_codegen.c @@ -57,6 +57,21 @@ #include "slang_print.h" +/** Max iterations to unroll */ +const GLuint MAX_FOR_LOOP_UNROLL_ITERATIONS = 32; + +/** Max for-loop body size (in slang operations) to unroll */ +const GLuint MAX_FOR_LOOP_UNROLL_BODY_SIZE = 50; + +/** Max for-loop body complexity to unroll. + * We'll compute complexity as the product of the number of iterations + * and the size of the body. So long-ish loops with very simple bodies + * can be unrolled, as well as short loops with larger bodies. + */ +const GLuint MAX_FOR_LOOP_UNROLL_COMPLEXITY = 256; + + + static slang_ir_node * _slang_gen_operation(slang_assemble_ctx * A, slang_operation *oper); @@ -1570,6 +1585,7 @@ swizzle_to_writemask(slang_assemble_ctx *A, GLuint swizzle, } +#if 0 /* not used, but don't remove just yet */ /** * Recursively traverse 'oper' to produce a swizzle mask in the event * of any vector subscripts and swizzle suffixes. @@ -1623,8 +1639,10 @@ resolve_swizzle(const slang_operation *oper) return SWIZZLE_XYZW; } } +#endif +#if 0 /** * Recursively descend through swizzle nodes to find the node's storage info. */ @@ -1636,7 +1654,7 @@ get_store(const slang_ir_node *n) } return n->Store; } - +#endif /** @@ -1709,6 +1727,7 @@ _slang_gen_asm(slang_assemble_ctx *A, slang_operation *oper, } +#if 0 static void print_funcs(struct slang_function_scope_ *scope, const char *name) { @@ -1722,6 +1741,7 @@ print_funcs(struct slang_function_scope_ *scope, const char *name) if (scope->outer_scope) print_funcs(scope->outer_scope, name); } +#endif /** @@ -2439,40 +2459,259 @@ _slang_gen_do(slang_assemble_ctx * A, const slang_operation *oper) /** - * Generate for-loop using high-level IR_LOOP instruction. + * Recursively count the number of operations rooted at 'oper'. + * This gives some kind of indication of the size/complexity of an operation. + */ +static GLuint +sizeof_operation(const slang_operation *oper) +{ + if (oper) { + GLuint count = 1; /* me */ + GLuint i; + for (i = 0; i < oper->num_children; i++) { + count += sizeof_operation(&oper->children[i]); + } + return count; + } + else { + return 0; + } +} + + +/** + * Determine if a for-loop can be unrolled. + * At this time, only a rather narrow class of for loops can be unrolled. + * See code for details. + * When a loop can't be unrolled because it's too large we'll emit a + * message to the log. + */ +static GLboolean +_slang_can_unroll_for_loop(slang_assemble_ctx * A, const slang_operation *oper) +{ + GLuint bodySize; + GLint start, end; + const char *varName; + slang_atom varId; + + assert(oper->type == SLANG_OPER_FOR); + assert(oper->num_children == 4); + + /* children[0] must be either "int i=constant" or "i=constant" */ + if (oper->children[0].type == SLANG_OPER_BLOCK_NO_NEW_SCOPE) { + slang_variable *var; + + if (oper->children[0].children[0].type != SLANG_OPER_VARIABLE_DECL) + return GL_FALSE; + + varId = oper->children[0].children[0].a_id; + + var = _slang_variable_locate(oper->children[0].children[0].locals, + varId, GL_TRUE); + if (!var) + return GL_FALSE; + if (!var->initializer) + return GL_FALSE; + if (var->initializer->type != SLANG_OPER_LITERAL_INT) + return GL_FALSE; + start = (GLint) var->initializer->literal[0]; + } + else if (oper->children[0].type == SLANG_OPER_EXPRESSION) { + if (oper->children[0].children[0].type != SLANG_OPER_ASSIGN) + return GL_FALSE; + if (oper->children[0].children[0].children[0].type != SLANG_OPER_IDENTIFIER) + return GL_FALSE; + if (oper->children[0].children[0].children[1].type != SLANG_OPER_LITERAL_INT) + return GL_FALSE; + + varId = oper->children[0].children[0].children[0].a_id; + + start = (GLint) oper->children[0].children[0].children[1].literal[0]; + } + else { + return GL_FALSE; + } + + /* children[1] must be "i<constant" */ + if (oper->children[1].type != SLANG_OPER_EXPRESSION) + return GL_FALSE; + if (oper->children[1].children[0].type != SLANG_OPER_LESS) + return GL_FALSE; + if (oper->children[1].children[0].children[0].type != SLANG_OPER_IDENTIFIER) + return GL_FALSE; + if (oper->children[1].children[0].children[1].type != SLANG_OPER_LITERAL_INT) + return GL_FALSE; + + end = (GLint) oper->children[1].children[0].children[1].literal[0]; + + /* children[2] must be "i++" or "++i" */ + if (oper->children[2].type != SLANG_OPER_POSTINCREMENT && + oper->children[2].type != SLANG_OPER_PREINCREMENT) + return GL_FALSE; + if (oper->children[2].children[0].type != SLANG_OPER_IDENTIFIER) + return GL_FALSE; + + /* make sure the same variable name is used in all places */ + if ((oper->children[1].children[0].children[0].a_id != varId) || + (oper->children[2].children[0].a_id != varId)) + return GL_FALSE; + + varName = (const char *) varId; + + /* children[3], the loop body, can't be too large */ + bodySize = sizeof_operation(&oper->children[3]); + if (bodySize > MAX_FOR_LOOP_UNROLL_BODY_SIZE) { + slang_info_log_print(A->log, + "Note: 'for (%s ... )' body is too large/complex" + " to unroll", + varName); + return GL_FALSE; + } + + if (start >= end) + return GL_FALSE; /* degenerate case */ + + if (end - start > MAX_FOR_LOOP_UNROLL_ITERATIONS) { + slang_info_log_print(A->log, + "Note: 'for (%s=%d; %s<%d; ++%s)' is too" + " many iterations to unroll", + varName, start, varName, end, varName); + return GL_FALSE; + } + + if ((end - start) * bodySize > MAX_FOR_LOOP_UNROLL_COMPLEXITY) { + slang_info_log_print(A->log, + "Note: 'for (%s=%d; %s<%d; ++%s)' will generate" + " too much code to unroll", + varName, start, varName, end, varName); + return GL_FALSE; + } + + return GL_TRUE; /* we can unroll the loop */ +} + + +/** + * Unroll a for-loop. + * First we determine the number of iterations to unroll. + * Then for each iteration: + * make a copy of the loop body + * replace instances of the loop variable with the current iteration value + * generate IR code for the body + * \return pointer to generated IR code or NULL if error, out of memory, etc. + */ +static slang_ir_node * +_slang_unroll_for_loop(slang_assemble_ctx * A, const slang_operation *oper) +{ + GLint start, end, iter; + slang_ir_node *n, *root = NULL; + slang_atom varId; + + if (oper->children[0].type == SLANG_OPER_BLOCK_NO_NEW_SCOPE) { + /* for (int i=0; ... */ + slang_variable *var; + + varId = oper->children[0].children[0].a_id; + var = _slang_variable_locate(oper->children[0].children[0].locals, + varId, GL_TRUE); + start = (GLint) var->initializer->literal[0]; + } + else { + /* for (i=0; ... */ + varId = oper->children[0].children[0].children[0].a_id; + start = (GLint) oper->children[0].children[0].children[1].literal[0]; + } + + end = (GLint) oper->children[1].children[0].children[1].literal[0]; + + for (iter = start; iter < end; iter++) { + slang_operation *body; + + /* make a copy of the loop body */ + body = slang_operation_new(1); + if (!body) + return NULL; + + if (!slang_operation_copy(body, &oper->children[3])) + return NULL; + + /* in body, replace instances of 'varId' with literal 'iter' */ + { + slang_variable *oldVar; + slang_operation *newOper; + + oldVar = _slang_variable_locate(oper->locals, varId, GL_TRUE); + if (!oldVar) { + /* undeclared loop variable */ + slang_operation_delete(body); + return NULL; + } + + newOper = slang_operation_new(1); + newOper->type = SLANG_OPER_LITERAL_INT; + newOper->literal_size = 1; + newOper->literal[0] = iter; + + /* replace instances of the loop variable with newOper */ + slang_substitute(A, body, 1, &oldVar, &newOper, GL_FALSE); + } + + /* do IR codegen for body */ + n = _slang_gen_operation(A, body); + root = new_seq(root, n); + + slang_operation_delete(body); + } + + return root; +} + + +/** + * Generate IR for a for-loop. Unrolling will be done when possible. */ static slang_ir_node * _slang_gen_for(slang_assemble_ctx * A, const slang_operation *oper) { - /* - * init code (child[0]) - * LOOP: - * BREAK if !expr (child[1]) - * body code (child[3]) - * tail code: - * incr code (child[2]) // XXX continue here - */ - slang_ir_node *prevLoop, *loop, *cond, *breakIf, *body, *init, *incr; + GLboolean unroll = _slang_can_unroll_for_loop(A, oper); - init = _slang_gen_operation(A, &oper->children[0]); - loop = new_loop(NULL); + if (unroll) { + slang_ir_node *code = _slang_unroll_for_loop(A, oper); + if (code) + return code; + } - /* save old, push new loop */ - prevLoop = A->CurLoop; - A->CurLoop = loop; + /* conventional for-loop code generation */ + { + /* + * init code (child[0]) + * LOOP: + * BREAK if !expr (child[1]) + * body code (child[3]) + * tail code: + * incr code (child[2]) // XXX continue here + */ + slang_ir_node *prevLoop, *loop, *cond, *breakIf, *body, *init, *incr; + init = _slang_gen_operation(A, &oper->children[0]); + loop = new_loop(NULL); - cond = new_cond(new_not(_slang_gen_operation(A, &oper->children[1]))); - breakIf = new_break_if_true(A->CurLoop, cond); - body = _slang_gen_operation(A, &oper->children[3]); - incr = _slang_gen_operation(A, &oper->children[2]); + /* save old, push new loop */ + prevLoop = A->CurLoop; + A->CurLoop = loop; - loop->Children[0] = new_seq(breakIf, body); - loop->Children[1] = incr; /* tail code */ + cond = new_cond(new_not(_slang_gen_operation(A, &oper->children[1]))); + breakIf = new_break_if_true(A->CurLoop, cond); + body = _slang_gen_operation(A, &oper->children[3]); + incr = _slang_gen_operation(A, &oper->children[2]); - /* pop loop, restore prev */ - A->CurLoop = prevLoop; + loop->Children[0] = new_seq(breakIf, body); + loop->Children[1] = incr; /* tail code */ - return new_seq(init, loop); + /* pop loop, restore prev */ + A->CurLoop = prevLoop; + + return new_seq(init, loop); + } } @@ -3089,6 +3328,7 @@ _slang_gen_return(slang_assemble_ctx * A, slang_operation *oper) } +#if 0 /** * Determine if the given operation/expression is const-valued. */ @@ -3112,6 +3352,7 @@ _slang_is_constant_expr(const slang_operation *oper) return GL_TRUE; } } +#endif /** @@ -3556,8 +3797,16 @@ _slang_gen_array_element(slang_assemble_ctx * A, slang_operation *oper) index = (GLint) oper->children[1].literal[0]; if (oper->children[1].type != SLANG_OPER_LITERAL_INT || index >= (GLint) max) { +#if 0 slang_info_log_error(A->log, "Invalid array index for vector type"); + printf("type = %d\n", oper->children[1].type); + printf("index = %d, max = %d\n", index, max); + printf("array = %s\n", (char*)oper->children[0].a_id); + printf("index = %s\n", (char*)oper->children[1].a_id); return NULL; +#else + index = 0; +#endif } n = _slang_gen_operation(A, &oper->children[0]); diff --git a/src/mesa/shader/slang/slang_compile.c b/src/mesa/shader/slang/slang_compile.c index b8044b10600..0a527f32206 100644 --- a/src/mesa/shader/slang/slang_compile.c +++ b/src/mesa/shader/slang/slang_compile.c @@ -2474,7 +2474,8 @@ static GLboolean compile_with_grammar(grammar id, const char *source, slang_code_unit * unit, slang_unit_type type, slang_info_log * infolog, slang_code_unit * builtin, - struct gl_shader *shader) + struct gl_shader *shader, + const struct gl_extensions *extensions) { byte *prod; GLuint size, start, version; @@ -2502,7 +2503,8 @@ compile_with_grammar(grammar id, const char *source, slang_code_unit * unit, /* Now preprocess the source string. */ slang_string_init(&preprocessed); - if (!_slang_preprocess_directives(&preprocessed, &source[start], infolog)) { + if (!_slang_preprocess_directives(&preprocessed, &source[start], + infolog, extensions)) { slang_string_free(&preprocessed); slang_info_log_error(infolog, "failed to preprocess the source."); return GL_FALSE; @@ -2575,7 +2577,8 @@ static const byte slang_vertex_builtin_gc[] = { static GLboolean compile_object(grammar * id, const char *source, slang_code_object * object, slang_unit_type type, slang_info_log * infolog, - struct gl_shader *shader) + struct gl_shader *shader, + const struct gl_extensions *extensions) { slang_code_unit *builtins = NULL; GLuint base_version = 110; @@ -2674,7 +2677,7 @@ compile_object(grammar * id, const char *source, slang_code_object * object, /* compile the actual shader - pass-in built-in library for external shader */ return compile_with_grammar(*id, source, &object->unit, type, infolog, - builtins, shader); + builtins, shader, extensions); } @@ -2697,7 +2700,8 @@ compile_shader(GLcontext *ctx, slang_code_object * object, _slang_code_object_dtr(object); _slang_code_object_ctr(object); - success = compile_object(&id, shader->Source, object, type, infolog, shader); + success = compile_object(&id, shader->Source, object, type, infolog, shader, + &ctx->Extensions); if (id != 0) grammar_destroy(id); if (!success) diff --git a/src/mesa/shader/slang/slang_link.c b/src/mesa/shader/slang/slang_link.c index 3f953d86e74..a68cafc0865 100644 --- a/src/mesa/shader/slang/slang_link.c +++ b/src/mesa/shader/slang/slang_link.c @@ -644,6 +644,17 @@ _slang_link(GLcontext *ctx, } } + /* check that gl_FragColor and gl_FragData are not both written to */ + if (shProg->FragmentProgram) { + GLbitfield outputsWritten = shProg->FragmentProgram->Base.OutputsWritten; + if ((outputsWritten & ((1 << FRAG_RESULT_COLR))) && + (outputsWritten >= (1 << FRAG_RESULT_DATA0))) { + link_error(shProg, "Fragment program cannot write both gl_FragColor" + " and gl_FragData[].\n"); + return; + } + } + if (fragProg && shProg->FragmentProgram) { /* Compute initial program's TexturesUsed info */ diff --git a/src/mesa/shader/slang/slang_log.c b/src/mesa/shader/slang/slang_log.c index 25f696f67ea..d5576d7ee2d 100644 --- a/src/mesa/shader/slang/slang_log.c +++ b/src/mesa/shader/slang/slang_log.c @@ -1,8 +1,9 @@ /* * Mesa 3-D graphics library - * Version: 6.5.3 + * Version: 7.3 * * Copyright (C) 2005-2007 Brian Paul All Rights Reserved. + * Copyright (C) 2009 VMware, Inc. 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"), @@ -43,11 +44,7 @@ void slang_info_log_destruct(slang_info_log * log) { if (!log->dont_free_text) -#if 0 - slang_alloc_free(log->text); -#else _mesa_free(log->text); -#endif } static int @@ -64,18 +61,10 @@ slang_info_log_message(slang_info_log * log, const char *prefix, if (log->text != NULL) { GLuint old_len = slang_string_length(log->text); log->text = (char *) -#if 0 - slang_alloc_realloc(log->text, old_len + 1, old_len + size); -#else _mesa_realloc(log->text, old_len + 1, old_len + size); -#endif } else { -#if 0 - log->text = (char *) (slang_alloc_malloc(size)); -#else log->text = (char *) (_mesa_malloc(size)); -#endif if (log->text != NULL) log->text[0] = '\0'; } diff --git a/src/mesa/shader/slang/slang_preprocess.c b/src/mesa/shader/slang/slang_preprocess.c index 7d971627f57..76e757cb381 100644 --- a/src/mesa/shader/slang/slang_preprocess.c +++ b/src/mesa/shader/slang/slang_preprocess.c @@ -1,8 +1,8 @@ /* * Mesa 3-D graphics library - * Version: 6.5.2 * - * Copyright (C) 2005-2006 Brian Paul All Rights Reserved. + * Copyright (C) 2005-2008 Brian Paul All Rights Reserved. + * Copyright (C) 2009 VMware, Inc. 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"), @@ -475,52 +475,63 @@ pp_cond_stack_reevaluate (pp_cond_stack *self) self->top->effective = self->top->current && self->top[1].effective; } -/* + +/** * Extension enables through #extension directive. * NOTE: Currently, only enable/disable state is stored. */ - typedef struct { - GLboolean MESA_shader_debug; /* GL_MESA_shader_debug enable */ - GLboolean ARB_texture_rectangle; /* GL_ARB_texture_rectangle enable */ + GLboolean ARB_draw_buffers; + GLboolean ARB_texture_rectangle; } pp_ext; -/* + +/** * Disable all extensions. Called at startup and on #extension all: disable. */ static GLvoid -pp_ext_disable_all (pp_ext *self) +pp_ext_disable_all(pp_ext *self) { - self->MESA_shader_debug = GL_FALSE; + _mesa_memset(self, 0, sizeof(self)); } + +/** + * Called during preprocessor initialization to set the initial enable/disable + * state of extensions. + */ static GLvoid -pp_ext_init (pp_ext *self) +pp_ext_init(pp_ext *self, const struct gl_extensions *extensions) { pp_ext_disable_all (self); - self->ARB_texture_rectangle = GL_TRUE; - /* Other initialization code goes here. */ + if (extensions->ARB_draw_buffers) + self->ARB_draw_buffers = GL_TRUE; + if (extensions->NV_texture_rectangle) + self->ARB_texture_rectangle = GL_TRUE; } +/** + * Called in response to #extension directives to enable/disable + * the named extension. + */ static GLboolean -pp_ext_set (pp_ext *self, const char *name, GLboolean enable) +pp_ext_set(pp_ext *self, const char *name, GLboolean enable) { - if (_mesa_strcmp (name, "MESA_shader_debug") == 0) - self->MESA_shader_debug = enable; + if (_mesa_strcmp (name, "GL_ARB_draw_buffers") == 0) + self->ARB_draw_buffers = enable; else if (_mesa_strcmp (name, "GL_ARB_texture_rectangle") == 0) self->ARB_texture_rectangle = enable; - /* Next extension name tests go here. */ else return GL_FALSE; return GL_TRUE; } -/* - * The state of preprocessor: current line, file and version number, list of all defined macros - * and the #if/#endif context. - */ +/** + * The state of preprocessor: current line, file and version number, list + * of all defined macros and the #if/#endif context. + */ typedef struct { GLint line; @@ -533,7 +544,8 @@ typedef struct } pp_state; static GLvoid -pp_state_init (pp_state *self, slang_info_log *elog) +pp_state_init (pp_state *self, slang_info_log *elog, + const struct gl_extensions *extensions) { self->line = 0; self->file = 1; @@ -543,7 +555,7 @@ pp_state_init (pp_state *self, slang_info_log *elog) self->version = 110; #endif pp_symbols_init (&self->symbols); - pp_ext_init (&self->ext); + pp_ext_init (&self->ext, extensions); self->elog = elog; /* Initialize condition stack and create the global context. */ @@ -851,8 +863,10 @@ parse_if (slang_string *output, const byte *prod, GLuint *pi, GLint *result, pp_ #define BEHAVIOR_DISABLE 4 static GLboolean -preprocess_source (slang_string *output, const char *source, grammar pid, grammar eid, - slang_info_log *elog) +preprocess_source (slang_string *output, const char *source, + grammar pid, grammar eid, + slang_info_log *elog, + const struct gl_extensions *extensions) { static const char *predefined[] = { "__FILE__", @@ -873,7 +887,7 @@ preprocess_source (slang_string *output, const char *source, grammar pid, gramma return GL_FALSE; } - pp_state_init (&state, elog); + pp_state_init (&state, elog, extensions); /* add the predefined symbols to the symbol table */ for (i = 0; predefined[i]; i++) { @@ -1196,8 +1210,20 @@ error: return GL_FALSE; } + +/** + * Run preprocessor on source code. + * \param extensions indicates which GL extensions are enabled + * \param output the post-process results + * \param input the input text + * \param elog log to record warnings, errors + * \return GL_TRUE for success, GL_FALSE for error + */ GLboolean -_slang_preprocess_directives (slang_string *output, const char *input, slang_info_log *elog) +_slang_preprocess_directives(slang_string *output, + const char *input, + slang_info_log *elog, + const struct gl_extensions *extensions) { grammar pid, eid; GLboolean success; @@ -1213,7 +1239,7 @@ _slang_preprocess_directives (slang_string *output, const char *input, slang_inf grammar_destroy (pid); return GL_FALSE; } - success = preprocess_source (output, input, pid, eid, elog); + success = preprocess_source (output, input, pid, eid, elog, extensions); grammar_destroy (eid); grammar_destroy (pid); return success; diff --git a/src/mesa/shader/slang/slang_preprocess.h b/src/mesa/shader/slang/slang_preprocess.h index d8eb12e4ff2..dd996a6314b 100644 --- a/src/mesa/shader/slang/slang_preprocess.h +++ b/src/mesa/shader/slang/slang_preprocess.h @@ -33,8 +33,8 @@ extern GLboolean _slang_preprocess_version (const char *, GLuint *, GLuint *, slang_info_log *); extern GLboolean -_slang_preprocess_directives (slang_string *output, const char *input, - slang_info_log *); - +_slang_preprocess_directives(slang_string *output, const char *input, + slang_info_log *, + const struct gl_extensions *extensions); #endif /* SLANG_PREPROCESS_H */ |