diff options
Diffstat (limited to 'src/mesa/shader')
20 files changed, 2336 insertions, 1758 deletions
diff --git a/src/mesa/shader/shader_api.c b/src/mesa/shader/shader_api.c index 5c18e55dac..c2c58fffde 100644 --- a/src/mesa/shader/shader_api.c +++ b/src/mesa/shader/shader_api.c @@ -50,6 +50,11 @@ +#ifndef GL_PROGRAM_BINARY_LENGTH_OES +#define GL_PROGRAM_BINARY_LENGTH_OES 0x8741 +#endif + + /** * Allocate a new gl_shader_program object, initialize it. */ @@ -747,6 +752,36 @@ sizeof_glsl_type(GLenum type) } +static GLboolean +is_boolean_type(GLenum type) +{ + switch (type) { + case GL_BOOL: + case GL_BOOL_VEC2: + case GL_BOOL_VEC3: + case GL_BOOL_VEC4: + return GL_TRUE; + default: + return GL_FALSE; + } +} + + +static GLboolean +is_integer_type(GLenum type) +{ + switch (type) { + case GL_INT: + case GL_INT_VEC2: + case GL_INT_VEC3: + case GL_INT_VEC4: + return GL_TRUE; + default: + return GL_FALSE; + } +} + + static void _mesa_get_active_attrib(GLcontext *ctx, GLuint program, GLuint index, GLsizei maxLength, GLsizei *length, GLint *size, @@ -773,6 +808,30 @@ _mesa_get_active_attrib(GLcontext *ctx, GLuint program, GLuint index, } +static struct gl_program_parameter * +get_uniform_parameter(const struct gl_shader_program *shProg, GLuint index) +{ + const struct gl_program *prog; + GLint progPos; + + progPos = shProg->Uniforms->Uniforms[index].VertPos; + if (progPos >= 0) { + prog = &shProg->VertexProgram->Base; + } + else { + progPos = shProg->Uniforms->Uniforms[index].FragPos; + if (progPos >= 0) { + prog = &shProg->FragmentProgram->Base; + } + } + + if (!prog || progPos < 0) + return NULL; /* should never happen */ + + return &prog->Parameters->Parameters[progPos]; +} + + /** * Called via ctx->Driver.GetActiveUniform(). */ @@ -906,6 +965,9 @@ _mesa_get_programiv(GLcontext *ctx, GLuint program, if (*params > 0) (*params)++; /* add one for terminating zero */ break; + case GL_PROGRAM_BINARY_LENGTH_OES: + *params = 0; + break; default: _mesa_error(ctx, GL_INVALID_ENUM, "glGetProgramiv(pname)"); return; @@ -988,6 +1050,71 @@ _mesa_get_shader_source(GLcontext *ctx, GLuint shader, GLsizei maxLength, } +static void +get_matrix_dims(GLenum type, GLint *rows, GLint *cols) +{ + switch (type) { + case GL_FLOAT_MAT2: + *rows = *cols = 2; + break; + case GL_FLOAT_MAT2x3: + *rows = 3; + *cols = 2; + break; + case GL_FLOAT_MAT2x4: + *rows = 4; + *cols = 2; + break; + case GL_FLOAT_MAT3: + *rows = 3; + *cols = 3; + break; + case GL_FLOAT_MAT3x2: + *rows = 2; + *cols = 3; + break; + case GL_FLOAT_MAT3x4: + *rows = 4; + *cols = 3; + break; + case GL_FLOAT_MAT4: + *rows = 4; + *cols = 4; + break; + case GL_FLOAT_MAT4x2: + *rows = 2; + *cols = 4; + break; + case GL_FLOAT_MAT4x3: + *rows = 3; + *cols = 4; + break; + default: + *rows = *cols = 0; + } +} + + +/** + * Determine the number of rows and columns occupied by a uniform + * according to its datatype. + */ +static void +get_uniform_rows_cols(const struct gl_program_parameter *p, + GLint *rows, GLint *cols) +{ + get_matrix_dims(p->DataType, rows, cols); + if (*rows == 0 && *cols == 0) { + /* not a matrix type, probably a float or vector */ + *rows = p->Size / 4 + 1; + if (p->Size % 4 == 0) + *cols = 4; + else + *cols = p->Size % 4; + } +} + + #define MAX_UNIFORM_ELEMENTS 16 /** @@ -999,12 +1126,11 @@ get_uniformfv(GLcontext *ctx, GLuint program, GLint location, GLfloat *params) { struct gl_shader_program *shProg - = _mesa_lookup_shader_program(ctx, program); + = _mesa_lookup_shader_program_err(ctx, program, "glGetUniform[if]v"); if (shProg) { if (shProg->Uniforms && location >= 0 && location < (GLint) shProg->Uniforms->NumUniforms) { GLint progPos; - GLuint i; const struct gl_program *prog = NULL; progPos = shProg->Uniforms->Uniforms[location].VertPos; @@ -1020,22 +1146,29 @@ get_uniformfv(GLcontext *ctx, GLuint program, GLint location, ASSERT(prog); if (prog) { + const struct gl_program_parameter *p = + &prog->Parameters->Parameters[progPos]; + GLint rows, cols, i, j, k; + /* See uniformiv() below */ - assert(prog->Parameters->Parameters[progPos].Size <= MAX_UNIFORM_ELEMENTS); + assert(p->Size <= MAX_UNIFORM_ELEMENTS); + + get_uniform_rows_cols(p, &rows, &cols); - for (i = 0; i < prog->Parameters->Parameters[progPos].Size; i++) { - params[i] = prog->Parameters->ParameterValues[progPos][i]; + k = 0; + for (i = 0; i < rows; i++) { + for (j = 0; j < cols; j++ ) { + params[k++] = prog->Parameters->ParameterValues[progPos+i][j]; + } } - return prog->Parameters->Parameters[progPos].Size; + + return p->Size; } } else { _mesa_error(ctx, GL_INVALID_OPERATION, "glGetUniformfv(location)"); } } - else { - _mesa_error(ctx, GL_INVALID_OPERATION, "glGetUniformfv(program)"); - } return 0; } @@ -1069,11 +1202,41 @@ _mesa_get_uniformiv(GLcontext *ctx, GLuint program, GLint location, /** + * The value returned by GetUniformLocation actually encodes two things: + * 1. the index into the prog->Uniforms[] array for the uniform + * 2. an offset in the prog->ParameterValues[] array for specifying array + * elements or structure fields. + * This function merges those two values. + */ +static void +merge_location_offset(GLint *location, GLint offset) +{ + *location = *location | (offset << 16); +} + + +/** + * Seperate the uniform location and parameter offset. See above. + */ +static void +split_location_offset(GLint *location, GLint *offset) +{ + *offset = (*location >> 16); + *location = *location & 0xffff; +} + + +/** * Called via ctx->Driver.GetUniformLocation(). + * + * The return value will encode two values, the uniform location and an + * offset (used for arrays, structs). */ static GLint _mesa_get_uniform_location(GLcontext *ctx, GLuint program, const GLchar *name) { + GLint offset = 0, location = -1; + struct gl_shader_program *shProg = _mesa_lookup_shader_program_err(ctx, program, "glGetUniformLocation"); @@ -1089,7 +1252,54 @@ _mesa_get_uniform_location(GLcontext *ctx, GLuint program, const GLchar *name) * actually used. */ - return _mesa_lookup_uniform(shProg->Uniforms, name); + /* XXX we need to be able to parse uniform names for structs and arrays + * such as: + * mymatrix[1] + * mystruct.field1 + */ + + { + /* handle 1-dimension arrays here... */ + char *c = strchr(name, '['); + if (c) { + /* truncate name at [ */ + const GLint len = c - name; + GLchar *newName = _mesa_malloc(len + 1); + if (!newName) + return -1; /* out of mem */ + _mesa_memcpy(newName, name, len); + newName[len] = 0; + + location = _mesa_lookup_uniform(shProg->Uniforms, newName); + if (location >= 0) { + const GLint element = _mesa_atoi(c + 1); + if (element > 0) { + /* get type of the uniform array element */ + struct gl_program_parameter *p; + p = get_uniform_parameter(shProg, location); + if (p) { + GLint rows, cols; + get_matrix_dims(p->DataType, &rows, &cols); + if (rows < 1) + rows = 1; + offset = element * rows; + } + } + } + + _mesa_free(newName); + } + } + + if (location < 0) { + location = _mesa_lookup_uniform(shProg->Uniforms, name); + } + + if (location >= 0) { + merge_location_offset(&location, offset); + } + + return location; } @@ -1262,23 +1472,33 @@ compatible_types(GLenum userType, GLenum targetType) /** * Set the value of a program's uniform variable. * \param program the program whose uniform to update - * \param location the location/index of the uniform + * \param index the index of the program parameter for the uniform + * \param offset additional parameter slot offset (for arrays) * \param type the datatype of the uniform * \param count the number of uniforms to set * \param elems number of elements per uniform * \param values the new values */ static void -set_program_uniform(GLcontext *ctx, struct gl_program *program, GLint location, - GLenum type, GLsizei count, GLint elems, const void *values) +set_program_uniform(GLcontext *ctx, struct gl_program *program, + GLint index, GLint offset, + GLenum type, GLsizei count, GLint elems, + const void *values) { + assert(offset >= 0); + if (!compatible_types(type, - program->Parameters->Parameters[location].DataType)) { + program->Parameters->Parameters[index].DataType)) { _mesa_error(ctx, GL_INVALID_OPERATION, "glUniform(type mismatch)"); return; } - if (program->Parameters->Parameters[location].Type == PROGRAM_SAMPLER) { + if (index + offset > program->Parameters->Size) { + /* out of bounds! */ + return; + } + + if (program->Parameters->Parameters[index].Type == PROGRAM_SAMPLER) { /* This controls which texture unit which is used by a sampler */ GLuint texUnit, sampler; @@ -1290,7 +1510,7 @@ set_program_uniform(GLcontext *ctx, struct gl_program *program, GLint location, return; } - sampler = (GLuint) program->Parameters->ParameterValues[location][0]; + sampler = (GLuint) program->Parameters->ParameterValues[index][0]; texUnit = ((GLuint *) values)[0]; /* check that the sampler (tex unit index) is legal */ @@ -1309,18 +1529,19 @@ set_program_uniform(GLcontext *ctx, struct gl_program *program, GLint location, else { /* ordinary uniform variable */ GLsizei k, i; + GLint slots = (program->Parameters->Parameters[index].Size + 3) / 4; - if (count * elems > (GLint) program->Parameters->Parameters[location].Size) { + if (count * elems > (GLint) program->Parameters->Parameters[index].Size) { _mesa_error(ctx, GL_INVALID_OPERATION, "glUniform(count too large)"); return; } + if (count > slots) + count = slots; + for (k = 0; k < count; k++) { - GLfloat *uniformVal = program->Parameters->ParameterValues[location + k]; - if (type == GL_INT || - type == GL_INT_VEC2 || - type == GL_INT_VEC3 || - type == GL_INT_VEC4) { + GLfloat *uniformVal = program->Parameters->ParameterValues[index + offset + k]; + if (is_integer_type(type)) { const GLint *iValues = ((const GLint *) values) + k * elems; for (i = 0; i < elems; i++) { uniformVal[i] = (GLfloat) iValues[i]; @@ -1332,6 +1553,13 @@ set_program_uniform(GLcontext *ctx, struct gl_program *program, GLint location, uniformVal[i] = fValues[i]; } } + + /* if the uniform is bool-valued, convert to 1.0 or 0.0 */ + if (is_boolean_type(program->Parameters->Parameters[index].DataType)) { + for (i = 0; i < elems; i++) { + uniformVal[i] = uniformVal[i] ? 1.0 : 0.0; + } + } } } } @@ -1345,7 +1573,7 @@ _mesa_uniform(GLcontext *ctx, GLint location, GLsizei count, const GLvoid *values, GLenum type) { struct gl_shader_program *shProg = ctx->Shader.CurrentProgram; - GLint elems; + GLint elems, offset; if (!shProg || !shProg->LinkStatus) { _mesa_error(ctx, GL_INVALID_OPERATION, "glUniform(program not linked)"); @@ -1355,6 +1583,8 @@ _mesa_uniform(GLcontext *ctx, GLint location, GLsizei count, if (location == -1) return; /* The standard specifies this as a no-op */ + split_location_offset(&location, &offset); + if (location < 0 || location >= (GLint) shProg->Uniforms->NumUniforms) { _mesa_error(ctx, GL_INVALID_VALUE, "glUniform(location)"); return; @@ -1393,83 +1623,48 @@ _mesa_uniform(GLcontext *ctx, GLint location, GLsizei count, * shader. We may need to update one or both shader's uniform here: */ if (shProg->VertexProgram) { - GLint loc = shProg->Uniforms->Uniforms[location].VertPos; - if (loc >= 0) { + /* convert uniform location to program parameter index */ + GLint index = shProg->Uniforms->Uniforms[location].VertPos; + if (index >= 0) { set_program_uniform(ctx, &shProg->VertexProgram->Base, - loc, type, count, elems, values); + index, offset, type, count, elems, values); } } if (shProg->FragmentProgram) { - GLint loc = shProg->Uniforms->Uniforms[location].FragPos; - if (loc >= 0) { + /* convert uniform location to program parameter index */ + GLint index = shProg->Uniforms->Uniforms[location].FragPos; + if (index >= 0) { set_program_uniform(ctx, &shProg->FragmentProgram->Base, - loc, type, count, elems, values); + index, offset, type, count, elems, values); } } } -static void -get_matrix_dims(GLenum type, GLint *rows, GLint *cols) -{ - switch (type) { - case GL_FLOAT_MAT2: - *rows = *cols = 2; - break; - case GL_FLOAT_MAT2x3: - *rows = 3; - *cols = 2; - break; - case GL_FLOAT_MAT2x4: - *rows = 4; - *cols = 2; - break; - case GL_FLOAT_MAT3: - *rows = 3; - *cols = 3; - break; - case GL_FLOAT_MAT3x2: - *rows = 2; - *cols = 3; - break; - case GL_FLOAT_MAT3x4: - *rows = 4; - *cols = 3; - break; - case GL_FLOAT_MAT4: - *rows = 4; - *cols = 4; - break; - case GL_FLOAT_MAT4x2: - *rows = 2; - *cols = 4; - break; - case GL_FLOAT_MAT4x3: - *rows = 3; - *cols = 4; - break; - default: - *rows = *cols = 0; - } -} - - +/** + * Set a matrix-valued program parameter. + */ static void set_program_uniform_matrix(GLcontext *ctx, struct gl_program *program, - GLuint location, GLuint count, - GLuint rows, GLuint cols, + GLuint index, GLuint offset, + GLuint count, GLuint rows, GLuint cols, GLboolean transpose, const GLfloat *values) { GLuint mat, row, col; - GLuint dst = location, src = 0; + GLuint dst = index + offset, src = 0; GLint nr, nc; /* check that the number of rows, columns is correct */ - get_matrix_dims(program->Parameters->Parameters[location].DataType, &nr, &nc); + get_matrix_dims(program->Parameters->Parameters[index].DataType, &nr, &nc); if (rows != nr || cols != nc) { _mesa_error(ctx, GL_INVALID_OPERATION, - "glUniformMatrix(matrix size mismatch"); + "glUniformMatrix(matrix size mismatch)"); + return; + } + + if (index + offset > program->Parameters->Size) { + /* out of bounds! */ return; } @@ -1510,6 +1705,7 @@ _mesa_uniform_matrix(GLcontext *ctx, GLint cols, GLint rows, GLenum matrixType, GLint location, GLsizei count, GLboolean transpose, const GLfloat *values) { + GLint offset; struct gl_shader_program *shProg = ctx->Shader.CurrentProgram; if (!shProg || !shProg->LinkStatus) { @@ -1521,6 +1717,8 @@ _mesa_uniform_matrix(GLcontext *ctx, GLint cols, GLint rows, if (location == -1) return; /* The standard specifies this as a no-op */ + split_location_offset(&location, &offset); + if (location < 0 || location >= (GLint) shProg->Uniforms->NumUniforms) { _mesa_error(ctx, GL_INVALID_VALUE, "glUniformMatrix(location)"); return; @@ -1533,18 +1731,22 @@ _mesa_uniform_matrix(GLcontext *ctx, GLint cols, GLint rows, FLUSH_VERTICES(ctx, _NEW_PROGRAM); if (shProg->VertexProgram) { - GLint loc = shProg->Uniforms->Uniforms[location].VertPos; - if (loc >= 0) { + /* convert uniform location to program parameter index */ + GLint index = shProg->Uniforms->Uniforms[location].VertPos; + if (index >= 0) { set_program_uniform_matrix(ctx, &shProg->VertexProgram->Base, - loc, count, rows, cols, transpose, values); + index, offset, + count, rows, cols, transpose, values); } } if (shProg->FragmentProgram) { - GLint loc = shProg->Uniforms->Uniforms[location].FragPos; - if (loc >= 0) { + /* convert uniform location to program parameter index */ + GLint index = shProg->Uniforms->Uniforms[location].FragPos; + if (index >= 0) { set_program_uniform_matrix(ctx, &shProg->FragmentProgram->Base, - loc, count, rows, cols, transpose, values); + index, offset, + count, rows, cols, transpose, values); } } } diff --git a/src/mesa/shader/slang/library/slang_common_builtin.gc b/src/mesa/shader/slang/library/slang_common_builtin.gc index 3726335471..9f2a4bdd07 100644 --- a/src/mesa/shader/slang/library/slang_common_builtin.gc +++ b/src/mesa/shader/slang/library/slang_common_builtin.gc @@ -171,7 +171,7 @@ uniform gl_FogParameters gl_Fog; float radians(const float deg) { const float c = 3.1415926 / 180.0; - __asm vec4_multiply __retVal.x, deg, c; + __asm vec4_multiply __retVal, deg, c; } vec2 radians(const vec2 deg) @@ -198,7 +198,7 @@ vec4 radians(const vec4 deg) float degrees(const float rad) { const float c = 180.0 / 3.1415926; - __asm vec4_multiply __retVal.x, rad, c; + __asm vec4_multiply __retVal, rad, c; } vec2 degrees(const vec2 rad) @@ -224,7 +224,7 @@ vec4 degrees(const vec4 rad) float sin(const float radians) { - __asm float_sine __retVal.x, radians; + __asm float_sine __retVal, radians; } vec2 sin(const vec2 radians) @@ -253,7 +253,7 @@ vec4 sin(const vec4 radians) float cos(const float radians) { - __asm float_cosine __retVal.x, radians; + __asm float_cosine __retVal, radians; } vec2 cos(const vec2 radians) @@ -444,7 +444,7 @@ vec4 atan(const vec4 u, const vec4 v) float pow(const float a, const float b) { - __asm float_power __retVal.x, a, b; + __asm float_power __retVal, a, b; } vec2 pow(const vec2 a, const vec2 b) @@ -507,7 +507,7 @@ vec4 exp(const vec4 a) float log2(const float x) { - __asm float_log2 __retVal.x, x; + __asm float_log2 __retVal, x; } vec2 log2(const vec2 v) @@ -566,7 +566,7 @@ vec4 log(const vec4 v) float exp2(const float a) { - __asm float_exp2 __retVal.x, a; + __asm float_exp2 __retVal, a; } vec2 exp2(const vec2 a) @@ -597,7 +597,7 @@ float sqrt(const float x) { float r; __asm float_rsq r, x; - __asm float_rcp __retVal.x, r; + __asm float_rcp __retVal, r; } vec2 sqrt(const vec2 v) @@ -667,13 +667,13 @@ vec4 inversesqrt(const vec4 v) float normalize(const float x) { - __retVal.x = 1.0; + __retVal = 1.0; } vec2 normalize(const vec2 v) { const float s = inversesqrt(dot(v, v)); - __asm vec4_multiply __retVal.xy, v, s.xx; + __asm vec4_multiply __retVal.xy, v, s; } vec3 normalize(const vec3 v) @@ -686,7 +686,7 @@ vec3 normalize(const vec3 v) float tmp; __asm vec3_dot tmp, v, v; __asm float_rsq tmp, tmp; - __asm vec4_multiply __retVal.xyz, v, tmp.xxx; + __asm vec4_multiply __retVal.xyz, v, tmp; } vec4 normalize(const vec4 v) @@ -694,7 +694,7 @@ 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; + __asm vec4_multiply __retVal.xyz, v, tmp; } @@ -708,7 +708,7 @@ vec4 normalize(const vec4 v) float abs(const float a) { - __asm vec4_abs __retVal.x, a; + __asm vec4_abs __retVal, a; } vec2 abs(const vec2 a) @@ -732,9 +732,9 @@ vec4 abs(const vec4 a) 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 + __asm vec4_sgt p, x, 0.0; // p = (x > 0) + __asm vec4_sgt n, 0.0, x; // n = (x < 0) + __asm vec4_subtract __retVal, p, n; // sign = p - n } vec2 sign(const vec2 v) @@ -766,7 +766,7 @@ vec4 sign(const vec4 v) float floor(const float a) { - __asm vec4_floor __retVal.x, a; + __asm vec4_floor __retVal, a; } vec2 floor(const vec2 a) @@ -792,7 +792,7 @@ float ceil(const float a) // XXX this could be improved float b = -a; __asm vec4_floor b, b; - __retVal.x = -b; + __retVal = -b; } vec2 ceil(const vec2 a) @@ -821,7 +821,7 @@ vec4 ceil(const vec4 a) float fract(const float a) { - __asm vec4_frac __retVal.x, a; + __asm vec4_frac __retVal, a; } vec2 fract(const vec2 a) @@ -846,7 +846,7 @@ float mod(const float a, const float b) { float oneOverB; __asm float_rcp oneOverB, b; - __retVal.x = a - b * floor(a * oneOverB); + __retVal = a - b * floor(a * oneOverB); } vec2 mod(const vec2 a, const float b) @@ -908,7 +908,7 @@ vec4 mod(const vec4 a, const vec4 b) float min(const float a, const float b) { - __asm vec4_min __retVal.x, a.x, b.x; + __asm vec4_min __retVal, a, b; } vec2 min(const vec2 a, const vec2 b) @@ -928,17 +928,17 @@ vec4 min(const vec4 a, const vec4 b) vec2 min(const vec2 a, const float b) { - __asm vec4_min __retVal, a.xy, b.xx; + __asm vec4_min __retVal, a.xy, b; } vec3 min(const vec3 a, const float b) { - __asm vec4_min __retVal, a.xyz, b.xxx; + __asm vec4_min __retVal, a.xyz, b; } vec4 min(const vec4 a, const float b) { - __asm vec4_min __retVal, a, b.xxxx; + __asm vec4_min __retVal, a, b; } @@ -946,7 +946,7 @@ vec4 min(const vec4 a, const float b) float max(const float a, const float b) { - __asm vec4_max __retVal.x, a.x, b.x; + __asm vec4_max __retVal, a, b; } vec2 max(const vec2 a, const vec2 b) @@ -966,17 +966,17 @@ vec4 max(const vec4 a, const vec4 b) vec2 max(const vec2 a, const float b) { - __asm vec4_max __retVal, a.xy, b.xx; + __asm vec4_max __retVal, a.xy, b; } vec3 max(const vec3 a, const float b) { - __asm vec4_max __retVal, a.xyz, b.xxx; + __asm vec4_max __retVal, a.xyz, b; } vec4 max(const vec4 a, const float b) { - __asm vec4_max __retVal, a, b.xxxx; + __asm vec4_max __retVal, a, b; } @@ -1165,7 +1165,7 @@ 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 + __asm float_rcp __retVal, r; // retVal = 1 / r } float length(const vec4 v) @@ -1173,7 +1173,7 @@ 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 + __asm float_rcp __retVal, r; // retVal = 1 / r } @@ -1219,7 +1219,7 @@ 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 + __asm vec4_sgt s, 0.0, d; // s = (0.0 > d) ? 1 : 0 return mix(-N, N, s); } @@ -1228,7 +1228,7 @@ 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 + __asm vec4_sgt s, 0.0, d; // s = (0.0 > d) ? 1 : 0 return mix(-N, N, s); } @@ -1237,7 +1237,7 @@ 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 + __asm vec4_sgt s, 0.0, d; // s = (0.0 > d) ? 1 : 0 return mix(-N, N, s); } @@ -1246,7 +1246,7 @@ 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 + __asm vec4_sgt s, 0.0, d; // s = (0.0 > d) ? 1 : 0 return mix(-N, N, s); } @@ -1418,7 +1418,7 @@ bvec4 greaterThan(const vec4 u, const vec4 v) bvec2 greaterThan(const ivec2 u, const ivec2 v) { - __asm vec4_sgt __retVal.xy, u, v; + __asm vec4_sgt __retVal.xy, u.xy, v.xy; } bvec3 greaterThan(const ivec3 u, const ivec3 v) @@ -1596,26 +1596,25 @@ bool any(const bvec4 v) bool all (const bvec2 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; + __asm vec4_multiply prod, v.x, v.y; + __asm vec4_sne __retVal, prod, 0.0; } 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; + __asm vec4_multiply prod, v.x, v.y; + __asm vec4_multiply prod, prod, v.z; + __asm vec4_sne __retVal, prod, 0.0; } 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; + __asm vec4_multiply prod, v.x, v.y; + __asm vec4_multiply prod, prod, v.z; + __asm vec4_multiply prod, prod, v.w; + __asm vec4_sne __retVal, prod, 0.0; } 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 0a43cad2a3..9301a57339 100644 --- a/src/mesa/shader/slang/library/slang_common_builtin_gc.h +++ b/src/mesa/shader/slang/library/slang_common_builtin_gc.h @@ -103,303 +103,301 @@ 108,95,70,111,103,80,97,114,97,109,101,116,101,114,115,0,1,103,108,95,70,111,103,0,0,0,1,0,9,0,114, 97,100,105,97,110,115,0,1,1,0,9,100,101,103,0,0,0,1,3,2,1,9,1,99,0,2,17,51,0,49,52,49,53,57,50,54, 0,0,17,49,56,48,0,48,0,0,49,0,0,4,118,101,99,52,95,109,117,108,116,105,112,108,121,0,18,95,95,114, -101,116,86,97,108,0,59,120,0,0,18,100,101,103,0,0,18,99,0,0,0,0,1,0,10,0,114,97,100,105,97,110,115, -0,1,1,0,10,100,101,103,0,0,0,1,3,2,1,9,1,99,0,2,17,51,0,49,52,49,53,57,50,54,0,0,17,49,56,48,0,48, +101,116,86,97,108,0,0,18,100,101,103,0,0,18,99,0,0,0,0,1,0,10,0,114,97,100,105,97,110,115,0,1,1,0, 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-114,101,116,86,97,108,0,59,120,0,0,18,112,114,111,100,0,59,120,0,0,17,48,0,48,0,0,0,0,0,1,0,2,0, -110,111,116,0,1,1,0,2,118,0,0,0,1,4,118,101,99,52,95,115,101,113,0,18,95,95,114,101,116,86,97,108, -0,59,120,121,0,0,18,118,0,0,17,48,0,48,0,0,0,0,0,1,0,3,0,110,111,116,0,1,1,0,3,118,0,0,0,1,4,118, -101,99,52,95,115,101,113,0,18,95,95,114,101,116,86,97,108,0,59,120,121,122,0,0,18,118,0,0,17,48,0, -48,0,0,0,0,0,1,0,4,0,110,111,116,0,1,1,0,4,118,0,0,0,1,4,118,101,99,52,95,115,101,113,0,18,95,95, -114,101,116,86,97,108,0,0,18,118,0,0,17,48,0,48,0,0,0,0,0,1,0,12,0,116,101,120,116,117,114,101,49, -68,0,1,1,0,16,115,97,109,112,108,101,114,0,0,1,1,0,9,99,111,111,114,100,0,0,0,1,4,118,101,99,52,95, -116,101,120,49,100,0,18,95,95,114,101,116,86,97,108,0,0,18,115,97,109,112,108,101,114,0,0,18,99, +109,117,108,116,105,112,108,121,0,18,112,114,111,100,0,0,18,118,0,59,120,0,0,18,118,0,59,121,0,0,0, +4,118,101,99,52,95,115,110,101,0,18,95,95,114,101,116,86,97,108,0,0,18,112,114,111,100,0,0,17,48,0, +48,0,0,0,0,0,1,0,1,0,97,108,108,0,1,1,0,3,118,0,0,0,1,3,2,0,9,1,112,114,111,100,0,0,0,4,118,101,99, +52,95,109,117,108,116,105,112,108,121,0,18,112,114,111,100,0,0,18,118,0,59,120,0,0,18,118,0,59,121, +0,0,0,4,118,101,99,52,95,109,117,108,116,105,112,108,121,0,18,112,114,111,100,0,0,18,112,114,111, +100,0,0,18,118,0,59,122,0,0,0,4,118,101,99,52,95,115,110,101,0,18,95,95,114,101,116,86,97,108,0,0, +18,112,114,111,100,0,0,17,48,0,48,0,0,0,0,0,1,0,1,0,97,108,108,0,1,1,0,4,118,0,0,0,1,3,2,0,9,1,112, +114,111,100,0,0,0,4,118,101,99,52,95,109,117,108,116,105,112,108,121,0,18,112,114,111,100,0,0,18, +118,0,59,120,0,0,18,118,0,59,121,0,0,0,4,118,101,99,52,95,109,117,108,116,105,112,108,121,0,18,112, +114,111,100,0,0,18,112,114,111,100,0,0,18,118,0,59,122,0,0,0,4,118,101,99,52,95,109,117,108,116, +105,112,108,121,0,18,112,114,111,100,0,0,18,112,114,111,100,0,0,18,118,0,59,119,0,0,0,4,118,101,99, +52,95,115,110,101,0,18,95,95,114,101,116,86,97,108,0,0,18,112,114,111,100,0,0,17,48,0,48,0,0,0,0,0, +1,0,2,0,110,111,116,0,1,1,0,2,118,0,0,0,1,4,118,101,99,52,95,115,101,113,0,18,95,95,114,101,116,86, +97,108,0,59,120,121,0,0,18,118,0,0,17,48,0,48,0,0,0,0,0,1,0,3,0,110,111,116,0,1,1,0,3,118,0,0,0,1, +4,118,101,99,52,95,115,101,113,0,18,95,95,114,101,116,86,97,108,0,59,120,121,122,0,0,18,118,0,0,17, +48,0,48,0,0,0,0,0,1,0,4,0,110,111,116,0,1,1,0,4,118,0,0,0,1,4,118,101,99,52,95,115,101,113,0,18,95, +95,114,101,116,86,97,108,0,0,18,118,0,0,17,48,0,48,0,0,0,0,0,1,0,12,0,116,101,120,116,117,114,101, +49,68,0,1,1,0,16,115,97,109,112,108,101,114,0,0,1,1,0,9,99,111,111,114,100,0,0,0,1,4,118,101,99,52, +95,116,101,120,49,100,0,18,95,95,114,101,116,86,97,108,0,0,18,115,97,109,112,108,101,114,0,0,18,99, 111,111,114,100,0,0,0,0,1,0,12,0,116,101,120,116,117,114,101,49,68,80,114,111,106,0,1,1,0,16,115, 97,109,112,108,101,114,0,0,1,1,0,10,99,111,111,114,100,0,0,0,1,4,118,101,99,52,95,116,101,120,112, 49,100,0,18,95,95,114,101,116,86,97,108,0,0,18,115,97,109,112,108,101,114,0,0,18,99,111,111,114, diff --git a/src/mesa/shader/slang/library/slang_core.gc b/src/mesa/shader/slang/library/slang_core.gc index 1f57997051..840a0814c5 100644 --- a/src/mesa/shader/slang/library/slang_core.gc +++ b/src/mesa/shader/slang/library/slang_core.gc @@ -107,7 +107,7 @@ int __constructor(const float f) { - __asm float_to_int __retVal, f; + __asm vec4_to_ivec4 __retVal, f; } int __constructor(const bool b) @@ -122,14 +122,12 @@ int __constructor(const int i) bool __constructor(const int i) { - const float zero = 0.0; - __asm vec4_sne __retVal, i, zero; + __asm vec4_sne __retVal, i, 0.0; } bool __constructor(const float f) { - const float zero = 0.0; - __asm vec4_sne __retVal, f, zero; + __asm vec4_sne __retVal, f, 0.0; } bool __constructor(const bool b) @@ -139,12 +137,12 @@ bool __constructor(const bool b) float __constructor(const int i) { - __asm int_to_float __retVal, i; + __asm ivec4_to_vec4 __retVal, i; } float __constructor(const bool b) { - __retVal = b; + __asm ivec4_to_vec4 __retVal, b; } float __constructor(const float f) @@ -163,32 +161,33 @@ vec2 __constructor(const float x, const float y) vec2 __constructor(const float f) { - __retVal.xy = f.xx; + __asm vec4_move __retVal.xy, f; } vec2 __constructor(const int i) { - __retVal.xy = i.xx; + __asm ivec4_to_vec4 __retVal.xy, i; } vec2 __constructor(const bool b) { - __retVal.xy = b.xx; + __asm ivec4_to_vec4 __retVal.xy, b; } vec2 __constructor(const bvec2 b) { - __retVal = b; +// __retVal = b; + __asm ivec4_to_vec4 __retVal.xy, b; } vec2 __constructor(const vec3 v) { - __retVal.xy = v.xy; + __asm vec4_move __retVal.xy, v.xy; } vec2 __constructor(const vec4 v) { - __retVal.st = v.xy; + __asm vec4_move __retVal.xy, v.xy; } @@ -203,27 +202,28 @@ vec3 __constructor(const float x, const float y, const float z) vec3 __constructor(const float f) { - __retVal.xyz = f.xxx; + // Note: this could be "__retVal.xyz = f" but that's an illegal assignment + __asm vec4_move __retVal.xyz, f; } vec3 __constructor(const int i) { - __asm int_to_float __retVal.xyz, i.xxx; + __asm ivec4_to_vec4 __retVal.xyz, i; } vec3 __constructor(const bool b) { - __retVal.xyz = b.xxx; + __asm ivec4_to_vec4 __retVal.xyz, b; } vec3 __constructor(const bvec3 b) { - __retVal = b; + __asm ivec4_to_vec4 __retVal.xyz, b; } vec3 __constructor(const vec4 v) { - __retVal.xyz = v.xyz; + __asm vec4_move __retVal.xyz, v; } @@ -239,22 +239,28 @@ vec4 __constructor(const float x, const float y, const float z, const float w) vec4 __constructor(const float f) { - __retVal = f.xxxx; + // Note: this could be "__retVal = f" but that's an illegal assignment + __asm vec4_move __retVal, f; } vec4 __constructor(const int i) { - __retVal = i.xxxx; + __asm ivec4_to_vec4 __retVal, i; } vec4 __constructor(const bool b) { - __retVal = b.xxxx; + __asm ivec4_to_vec4 __retVal, b; } vec4 __constructor(const bvec4 b) { - __retVal = b; + __asm ivec4_to_vec4 __retVal, b; +} + +vec4 __constructor(const ivec4 i) +{ + __asm ivec4_to_vec4 __retVal, i; } vec4 __constructor(const vec3 v3, const float f) @@ -283,17 +289,17 @@ ivec2 __constructor(const int i, const int j) ivec2 __constructor(const int i) { - __retVal.xy = i.xx; + __asm vec4_move __retVal.xy, i; } ivec2 __constructor(const float f) { - __asm float_to_int __retVal.xy, f.xx; + __asm vec4_to_ivec4 __retVal.xy, f; } ivec2 __constructor(const bool b) { - __asm float_to_int __retVal.xy, b.xx; + __asm vec4_to_ivec4 __retVal.xy, b; } @@ -308,17 +314,17 @@ ivec3 __constructor(const int i, const int j, const int k) ivec3 __constructor(const int i) { - __retVal.xyz = i.xxx; + __asm vec4_move __retVal.xyz, i; } ivec3 __constructor(const float f) { - __retVal.xyz = f.xxx; + __asm vec4_to_ivec4 __retVal.xyz, f; } ivec3 __constructor(const bool b) { - __retVal.xyz = b.xxx; + __asm vec4_move __retVal.xyz, b; } @@ -334,17 +340,17 @@ ivec4 __constructor(const int x, const int y, const int z, const int w) ivec4 __constructor(const int i) { - __retVal = i.xxxx; + __asm vec4_move __retVal, i; } ivec4 __constructor(const float f) { - __asm float_to_int __retVal, f.xxxx; + __asm vec4_to_ivec4 __retVal, f; } ivec4 __constructor(const bool b) { - __retVal = b.xxxx; + __asm vec4_to_ivec4 __retVal, b; } @@ -358,19 +364,17 @@ bvec2 __constructor(const bool b1, const bool b2) bvec2 __constructor(const bool b) { - __retVal.xy = b.xx; + __asm vec4_move __retVal.xy, b; } bvec2 __constructor(const float f) { - const vec2 zero = vec2(0.0, 0.0); - __asm vec4_sne __retVal.xy, f.xx, zero; + __asm vec4_sne __retVal.xy, f, 0.0; } bvec2 __constructor(const int i) { - const ivec2 zero = ivec2(0, 0); - __asm vec4_sne __retVal.xy, i.xx, zero; + __asm vec4_sne __retVal.xy, i, 0.0; } bvec2 __constructor(const vec2 v) @@ -380,8 +384,7 @@ bvec2 __constructor(const vec2 v) bvec2 __constructor(const ivec2 v) { - const ivec2 zero = ivec2(0, 0); - __asm vec4_sne __retVal.xy, v, zero; + __asm vec4_sne __retVal.xy, v, 0.0; } @@ -397,31 +400,27 @@ bvec3 __constructor(const bool b1, const bool b2, const bool b3) bvec3 __constructor(const bool b) { - __retVal.xyz = b.xxx; + __asm vec4_move __retVal.xyz, b; } bvec3 __constructor(const float f) { - const vec3 zero = vec3(0.0, 0.0, 0.0); - __asm vec4_sne __retVal.xyz, f.xxx, zero; + __asm vec4_sne __retVal.xyz, f, 0.0; } bvec3 __constructor(const int i) { - const ivec3 zero = ivec3(0, 0, 0); - __asm vec4_sne __retVal.xyz, i.xxx, zero; + __asm vec4_sne __retVal.xyz, i, 0.0; } bvec3 __constructor(const vec3 v) { - const vec3 zero = vec3(0.0, 0.0, 0.0); - __asm vec4_sne __retVal.xyz, v, zero; + __asm vec4_sne __retVal.xyz, v, 0.0; } bvec3 __constructor(const ivec3 v) { - const ivec3 zero = ivec3(0, 0, 0); - __asm vec4_sne __retVal.xyz, v, zero; + __asm vec4_sne __retVal.xyz, v, 0.0; } @@ -436,33 +435,38 @@ bvec4 __constructor(const bool b1, const bool b2, const bool b3, const bool b4) __retVal.w = b4; } +bvec4 __constructor(const float f1, const float f2, const float f3, const float f4) +{ + const float zero = 0.0; + __asm vec4_sne __retVal.x, f1, zero; + __asm vec4_sne __retVal.y, f2, zero; + __asm vec4_sne __retVal.z, f3, zero; + __asm vec4_sne __retVal.w, f4, zero; +} + bvec4 __constructor(const bool b) { - __retVal.xyzw = b.xxxx; + __asm vec4_move __retVal.xyzw, b; } bvec4 __constructor(const float f) { - const vec4 zero = vec4(0.0, 0.0, 0.0, 0.0); - __asm vec4_sne __retVal, f.xxxx, zero; + __asm vec4_sne __retVal.xyzw, f, 0.0; } bvec4 __constructor(const int i) { - const ivec4 zero = ivec4(0, 0, 0, 0); - __asm vec4_sne __retVal, i.xxxx, zero; + __asm vec4_sne __retVal.xyzw, i, 0.0; } bvec4 __constructor(const vec4 v) { - const vec4 zero = vec4(0.0, 0.0, 0.0, 0.0); - __asm vec4_sne __retVal, v, zero; + __asm vec4_sne __retVal.xyzw, v, 0.0; } bvec4 __constructor(const ivec4 v) { - const ivec4 zero = ivec4(0, 0, 0, 0); - __asm vec4_sne __retVal, v, zero; + __asm vec4_sne __retVal.xyzw, v, 0.0; } @@ -605,30 +609,17 @@ mat4 __constructor(const vec4 c0, const vec4 c1, const vec4 c2, const vec4 c3) 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; + __asm vec4_add __retVal, a, b; } int __operator - (const int a, const int b) { - float x; - __asm vec4_subtract x, a, b; - __asm float_to_int __retVal, x; + __asm vec4_subtract __retVal, a, b; } int __operator * (const int a, const int b) { - float x; - __asm vec4_multiply x, a, b; - __asm float_to_int __retVal, x; + __asm vec4_multiply __retVal, a, b; } int __operator / (const int a, const int b) @@ -636,7 +627,7 @@ 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; + __asm vec4_to_ivec4 __retVal, x; } @@ -644,23 +635,17 @@ int __operator / (const int a, const int b) ivec2 __operator + (const ivec2 a, const ivec2 b) { - vec2 x; - __asm vec4_add x, a, b; - __asm float_to_int __retVal, x; + __asm vec4_add __retVal, a, b; } ivec2 __operator - (const ivec2 a, const ivec2 b) { - vec2 x; - __asm vec4_subtract x, a, b; - __asm float_to_int __retVal, x; + __asm vec4_subtract __retVal, a, b; } ivec2 __operator * (const ivec2 a, const ivec2 b) { - vec2 x; - __asm vec4_multiply x, a, b; - __asm float_to_int __retVal, x; + __asm vec4_multiply __retVal, a, b; } ivec2 __operator / (const ivec2 a, const ivec2 b) @@ -669,7 +654,7 @@ ivec2 __operator / (const ivec2 a, const ivec2 b) __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; + __asm vec4_to_ivec4 __retVal, x; } @@ -677,23 +662,17 @@ ivec2 __operator / (const ivec2 a, const ivec2 b) ivec3 __operator + (const ivec3 a, const ivec3 b) { - vec3 x; - __asm vec4_add x, a, b; - __asm float_to_int __retVal, x; + __asm vec4_add __retVal, a, b; } ivec3 __operator - (const ivec3 a, const ivec3 b) { - vec3 x; - __asm vec4_subtract x, a, b; - __asm float_to_int __retVal, x; + __asm vec4_subtract __retVal, a, b; } ivec3 __operator * (const ivec3 a, const ivec3 b) { - vec3 x; - __asm vec4_multiply x, a, b; - __asm float_to_int __retVal, x; + __asm vec4_multiply __retVal, a, b; } ivec3 __operator / (const ivec3 a, const ivec3 b) @@ -703,7 +682,7 @@ ivec3 __operator / (const ivec3 a, const ivec3 b) __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; + __asm vec4_to_ivec4 __retVal, x; } @@ -711,23 +690,17 @@ ivec3 __operator / (const ivec3 a, const ivec3 b) ivec4 __operator + (const ivec4 a, const ivec4 b) { - vec3 x; - __asm vec4_add x, a, b; - __asm float_to_int __retVal, x; + __asm vec4_add __retVal, a, b; } ivec4 __operator - (const ivec4 a, const ivec4 b) { - vec4 x; - __asm vec4_subtract x, a, b; - __asm float_to_int __retVal, x; + __asm vec4_subtract __retVal, a, b; } ivec4 __operator * (const ivec4 a, const ivec4 b) { - vec4 x; - __asm vec4_multiply x, a, b; - __asm float_to_int __retVal, x; + __asm vec4_multiply __retVal, a, b; } ivec4 __operator / (const ivec4 a, const ivec4 b) @@ -738,7 +711,7 @@ ivec4 __operator / (const ivec4 a, const ivec4 b) __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; + __asm vec4_to_ivec4 __retVal, x; } @@ -746,24 +719,24 @@ ivec4 __operator / (const ivec4 a, const ivec4 b) float __operator + (const float a, const float b) { - __asm vec4_add __retVal.x, a, b; + __asm vec4_add __retVal, a, b; } float __operator - (const float a, const float b) { - __asm vec4_subtract __retVal.x, a, b; + __asm vec4_subtract __retVal, a, b; } float __operator * (const float a, const float b) { - __asm vec4_multiply __retVal.x, a, b; + __asm vec4_multiply __retVal, a, b; } float __operator / (const float a, const float b) { float bInv; - __asm float_rcp bInv.x, b.x; - __asm vec4_multiply __retVal.x, a, bInv; + __asm float_rcp bInv.x, b; + __asm vec4_multiply __retVal, a, bInv; } @@ -854,32 +827,32 @@ vec4 __operator / (const vec4 v, const vec4 u) vec2 __operator + (const float a, const vec2 u) { - __asm vec4_add __retVal.xy, a.xx, u.xy; + __asm vec4_add __retVal.xy, a, u.xy; } vec2 __operator + (const vec2 v, const float b) { - __asm vec4_add __retVal.xy, v.xy, b.xx; + __asm vec4_add __retVal.xy, v.xy, b; } vec2 __operator - (const float a, const vec2 u) { - __asm vec4_subtract __retVal.xy, a.xx, u.xy; + __asm vec4_subtract __retVal.xy, a, u.xy; } vec2 __operator - (const vec2 v, const float b) { - __asm vec4_subtract __retVal.xy, v.xy, b.xx; + __asm vec4_subtract __retVal.xy, v.xy, b; } vec2 __operator * (const float a, const vec2 u) { - __asm vec4_multiply __retVal.xy, a.xx, u.xy; + __asm vec4_multiply __retVal.xy, a, u.xy; } vec2 __operator * (const vec2 v, const float b) { - __asm vec4_multiply __retVal.xy, v.xy, b.xx; + __asm vec4_multiply __retVal.xy, v.xy, b; } vec2 __operator / (const float a, const vec2 u) @@ -887,14 +860,14 @@ 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; + __asm vec4_multiply __retVal.xy, a, invU.xy; } vec2 __operator / (const vec2 v, const float b) { float invB; __asm float_rcp invB, b; - __asm vec4_multiply __retVal.xy, v.xy, invB.xx; + __asm vec4_multiply __retVal.xy, v.xy, invB; } @@ -902,32 +875,32 @@ vec2 __operator / (const vec2 v, const float b) vec3 __operator + (const float a, const vec3 u) { - __asm vec4_add __retVal.xyz, a.xxx, u.xyz; + __asm vec4_add __retVal.xyz, a, u.xyz; } vec3 __operator + (const vec3 v, const float b) { - __asm vec4_add __retVal.xyz, v.xyz, b.xxx; + __asm vec4_add __retVal.xyz, v.xyz, b; } vec3 __operator - (const float a, const vec3 u) { - __asm vec4_subtract __retVal.xyz, a.xxx, u.xyz; + __asm vec4_subtract __retVal.xyz, a, u.xyz; } vec3 __operator - (const vec3 v, const float b) { - __asm vec4_subtract __retVal.xyz, v.xyz, b.xxx; + __asm vec4_subtract __retVal.xyz, v.xyz, b; } vec3 __operator * (const float a, const vec3 u) { - __asm vec4_multiply __retVal.xyz, a.xxx, u.xyz; + __asm vec4_multiply __retVal.xyz, a, u.xyz; } vec3 __operator * (const vec3 v, const float b) { - __asm vec4_multiply __retVal.xyz, v.xyz, b.xxx; + __asm vec4_multiply __retVal.xyz, v.xyz, b; } vec3 __operator / (const float a, const vec3 u) @@ -936,14 +909,14 @@ vec3 __operator / (const float a, const vec3 u) __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; + __asm vec4_multiply __retVal.xyz, a, invU.xyz; } vec3 __operator / (const vec3 v, const float b) { float invB; __asm float_rcp invB, b; - __asm vec4_multiply __retVal.xyz, v.xyz, invB.xxx; + __asm vec4_multiply __retVal.xyz, v.xyz, invB; } @@ -951,32 +924,32 @@ vec3 __operator / (const vec3 v, const float b) vec4 __operator + (const float a, const vec4 u) { - __asm vec4_add __retVal, a.xxxx, u; + __asm vec4_add __retVal, a, u; } vec4 __operator + (const vec4 v, const float b) { - __asm vec4_add __retVal, v, b.xxxx; + __asm vec4_add __retVal, v, b; } vec4 __operator - (const float a, const vec4 u) { - __asm vec4_subtract __retVal, a.xxxx, u; + __asm vec4_subtract __retVal, a, u; } vec4 __operator - (const vec4 v, const float b) { - __asm vec4_subtract __retVal, v, b.xxxx; + __asm vec4_subtract __retVal, v, b; } vec4 __operator * (const float a, const vec4 u) { - __asm vec4_multiply __retVal, a.xxxx, u; + __asm vec4_multiply __retVal, a, u; } vec4 __operator * (const vec4 v, const float b) { - __asm vec4_multiply __retVal, v, b.xxxx; + __asm vec4_multiply __retVal, v, b; } vec4 __operator / (const float a, const vec4 u) @@ -986,14 +959,14 @@ vec4 __operator / (const float a, const vec4 u) __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; + __asm vec4_multiply __retVal, a, invU; } vec4 __operator / (const vec4 v, const float b) { float invB; __asm float_rcp invB, b; - __asm vec4_multiply __retVal, v, invB.xxxx; + __asm vec4_multiply __retVal, v, invB; } @@ -1240,7 +1213,7 @@ void __operator /= (inout int a, const int b) float invB; __asm float_rcp invB, b; __asm vec4_multiply a, a, invB; - __asm float_to_int a, a; + __asm vec4_to_ivec4 a, a; } @@ -1267,7 +1240,7 @@ void __operator /= (inout ivec2 v, const ivec2 u) __asm float_rcp inv.x, u.x; __asm float_rcp inv.y, u.y; __asm vec4_multiply z, v, inv; - __asm float_to_int v, z; + __asm vec4_to_ivec4 v, z; } @@ -1294,7 +1267,7 @@ void __operator /= (inout ivec3 v, const ivec3 u) __asm float_rcp inv.x, u.x; __asm float_rcp inv.y, u.y; __asm vec4_multiply z, v, inv; - __asm float_to_int v, z; + __asm vec4_to_ivec4 v, z; } @@ -1321,7 +1294,7 @@ void __operator /= (inout ivec4 v, const ivec4 u) __asm float_rcp inv.x, u.x; __asm float_rcp inv.y, u.y; __asm vec4_multiply z, v, inv; - __asm float_to_int v, z; + __asm vec4_to_ivec4 v, z; } @@ -1436,17 +1409,17 @@ void __operator /= (inout vec4 v, const vec4 u) void __operator += (inout ivec2 v, const int a) { - __asm vec4_add v.xy, v.xy, a.xx; + __asm vec4_add v.xy, v.xy, a; } void __operator -= (inout ivec2 v, const int a) { - __asm vec4_subtract v.xy, v.xy, a.xx; + __asm vec4_subtract v.xy, v.xy, a; } void __operator *= (inout ivec2 v, const int a) { - __asm vec4_multiply v.xy, v.xy, a.xx; + __asm vec4_multiply v.xy, v.xy, a; v.x *= a; v.y *= a; } @@ -1463,17 +1436,17 @@ void __operator /= (inout ivec2 v, const int a) void __operator += (inout ivec3 v, const int a) { - __asm vec4_add v.xyz, v.xyz, a.xxx; + __asm vec4_add v.xyz, v.xyz, a; } void __operator -= (inout ivec3 v, const int a) { - __asm vec4_subtract v.xyz, v.xyz, a.xxx; + __asm vec4_subtract v.xyz, v.xyz, a; } void __operator *= (inout ivec3 v, const int a) { - __asm vec4_multiply v.xyz, v.xyz, a.xxx; + __asm vec4_multiply v.xyz, v.xyz, a; } void __operator /= (inout ivec3 v, const int a) @@ -1489,17 +1462,17 @@ void __operator /= (inout ivec3 v, const int a) void __operator += (inout ivec4 v, const int a) { - __asm vec4_add v, v, a.xxxx; + __asm vec4_add v, v, a; } void __operator -= (inout ivec4 v, const int a) { - __asm vec4_subtract v, v, a.xxxx; + __asm vec4_subtract v, v, a; } void __operator *= (inout ivec4 v, const int a) { - __asm vec4_multiply v, v, a.xxxx; + __asm vec4_multiply v, v, a; } void __operator /= (inout ivec4 v, const int a) @@ -1516,24 +1489,24 @@ void __operator /= (inout ivec4 v, const int a) void __operator += (inout vec2 v, const float a) { - __asm vec4_add v.xy, v, a.xx; + __asm vec4_add v.xy, v, a; } void __operator -= (inout vec2 v, const float a) { - __asm vec4_subtract v.xy, v, a.xx; + __asm vec4_subtract v.xy, v, a; } void __operator *= (inout vec2 v, const float a) { - __asm vec4_multiply v.xy, v, a.xx; + __asm vec4_multiply v.xy, v, a; } void __operator /= (inout vec2 v, const float a) { float invA; __asm float_rcp invA, a; - __asm vec4_multiply v.xy, v.xy, invA.xx; + __asm vec4_multiply v.xy, v.xy, invA; } @@ -1541,24 +1514,24 @@ void __operator /= (inout vec2 v, const float a) void __operator += (inout vec3 v, const float a) { - __asm vec4_add v.xyz, v, a.xxx; + __asm vec4_add v.xyz, v, a; } void __operator -= (inout vec3 v, const float a) { - __asm vec4_subtract v.xyz, v, a.xxx; + __asm vec4_subtract v.xyz, v, a; } void __operator *= (inout vec3 v, const float a) { - __asm vec4_multiply v.xyz, v, a.xxx; + __asm vec4_multiply v.xyz, v, a; } void __operator /= (inout vec3 v, const float a) { float invA; __asm float_rcp invA, a; - __asm vec4_multiply v.xyz, v.xyz, invA.xxx; + __asm vec4_multiply v.xyz, v.xyz, invA; } @@ -1566,24 +1539,24 @@ void __operator /= (inout vec3 v, const float a) void __operator += (inout vec4 v, const float a) { - __asm vec4_add v, v, a.xxxx; + __asm vec4_add v, v, a; } void __operator -= (inout vec4 v, const float a) { - __asm vec4_subtract v, v, a.xxxx; + __asm vec4_subtract v, v, a; } void __operator *= (inout vec4 v, const float a) { - __asm vec4_multiply v, v, a.xxxx; + __asm vec4_multiply v, v, a; } void __operator /= (inout vec4 v, const float a) { float invA; __asm float_rcp invA, a; - __asm vec4_multiply v, v, invA.xxxx; + __asm vec4_multiply v, v, invA; } diff --git a/src/mesa/shader/slang/library/slang_core_gc.h b/src/mesa/shader/slang/library/slang_core_gc.h index 44170946ce..ce7a5cc64a 100644 --- a/src/mesa/shader/slang/library/slang_core_gc.h +++ b/src/mesa/shader/slang/library/slang_core_gc.h @@ -2,105 +2,106 @@ /* DO NOT EDIT - THIS FILE IS AUTOMATICALLY GENERATED FROM THE FOLLOWING FILE: */ /* slang_core.gc */ 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.and .loop version_directive_2; + version_directive_1; version_directive_1 prior_optional_spaces .and optional_version_directive .and .true .emit $; -version_directive_2 - prior_optional_spaces .and version_directive_body .and .true .emit $; optional_version_directive version_directive_body .or .true .emit 10 .emit 1; @@ -45,13 +43,16 @@ version_directive_body new_line; version_number - version_number_110 .or version_number_120; + version_number_100 .or version_number_110 .or version_number_120; + +version_number_100 + leading_zeroes .and "100" .emit 0 .emit 1; version_number_110 leading_zeroes .and "110" .emit 10 .emit 1; version_number_120 - leading_zeroes .and "120" .emit 20 .emit 1; + leading_zeroes .and "120" .emit 20 .emit 1; leading_zeroes .loop zero; diff --git a/src/mesa/shader/slang/library/slang_pp_version_syn.h b/src/mesa/shader/slang/library/slang_pp_version_syn.h index a75cf7509f..54aee3ff28 100644 --- a/src/mesa/shader/slang/library/slang_pp_version_syn.h +++ b/src/mesa/shader/slang/library/slang_pp_version_syn.h @@ -3,22 +3,22 @@ ".syntax version_directive;\n" "version_directive\n" -" version_directive_1 .and .loop version_directive_2;\n" +" version_directive_1;\n" "version_directive_1\n" " prior_optional_spaces .and optional_version_directive .and .true .emit $;\n" -"version_directive_2\n" -" prior_optional_spaces .and version_directive_body .and .true .emit $;\n" "optional_version_directive\n" " version_directive_body .or .true .emit 10 .emit 1;\n" "version_directive_body\n" " '#' .and optional_space .and \"version\" .and space .and version_number .and optional_space .and\n" " new_line;\n" "version_number\n" -" version_number_110 .or version_number_120;\n" +" version_number_100 .or version_number_110 .or version_number_120;\n" +"version_number_100\n" +" leading_zeroes .and \"100\" .emit 0 .emit 1;\n" "version_number_110\n" " leading_zeroes .and \"110\" .emit 10 .emit 1;\n" "version_number_120\n" -" leading_zeroes .and \"120\" .emit 20 .emit 1;\n" +" leading_zeroes .and \"120\" .emit 20 .emit 1;\n" "leading_zeroes\n" " .loop zero;\n" "zero\n" diff --git a/src/mesa/shader/slang/library/slang_shader.syn b/src/mesa/shader/slang/library/slang_shader.syn index 52a792ad17..4505758520 100644 --- a/src/mesa/shader/slang/library/slang_shader.syn +++ b/src/mesa/shader/slang/library/slang_shader.syn @@ -242,7 +242,9 @@ .emtcode PARAMETER_ARRAY_NOT_PRESENT 0 .emtcode PARAMETER_ARRAY_PRESENT 1 -.errtext INVALID_EXTERNAL_DECLARATION "2001: Invalid external declaration." +/* INVALID_EXTERNAL_DECLARATION seems to be reported when there's */ +/* any syntax errors... */ +.errtext INVALID_EXTERNAL_DECLARATION "2001: Syntax error." .errtext INVALID_OPERATOR_OVERRIDE "2002: Invalid operator override." .errtext LBRACE_EXPECTED "2003: '{' expected but '$err_token$' found." .errtext LPAREN_EXPECTED "2004: '(' expected but '$err_token$' found." diff --git a/src/mesa/shader/slang/library/slang_shader_syn.h b/src/mesa/shader/slang/library/slang_shader_syn.h index 82909d9423..0c4c14f9d1 100644 --- a/src/mesa/shader/slang/library/slang_shader_syn.h +++ b/src/mesa/shader/slang/library/slang_shader_syn.h @@ -137,7 +137,7 @@ ".emtcode PARAMETER_NEXT 1\n" ".emtcode PARAMETER_ARRAY_NOT_PRESENT 0\n" ".emtcode PARAMETER_ARRAY_PRESENT 1\n" -".errtext INVALID_EXTERNAL_DECLARATION \"2001: Invalid external declaration.\"\n" +".errtext INVALID_EXTERNAL_DECLARATION \"2001: Syntax error.\"\n" ".errtext INVALID_OPERATOR_OVERRIDE \"2002: Invalid operator override.\"\n" ".errtext LBRACE_EXPECTED \"2003: '{' expected but '$err_token$' found.\"\n" ".errtext LPAREN_EXPECTED \"2004: '(' expected but '$err_token$' found.\"\n" diff --git a/src/mesa/shader/slang/slang_codegen.c b/src/mesa/shader/slang/slang_codegen.c index ad9cf06e27..9c17dceb19 100644 --- a/src/mesa/shader/slang/slang_codegen.c +++ b/src/mesa/shader/slang/slang_codegen.c @@ -425,6 +425,7 @@ static slang_asm_info AsmInfo[] = { { "vec4_sle", IR_SLE, 1, 2 }, { "vec4_slt", IR_SLT, 1, 2 }, /* vec4 unary */ + { "vec4_move", IR_MOVE, 1, 1 }, { "vec4_floor", IR_FLOOR, 1, 1 }, { "vec4_frac", IR_FRAC, 1, 1 }, { "vec4_abs", IR_ABS, 1, 1 }, @@ -448,8 +449,8 @@ static slang_asm_info AsmInfo[] = { { "vec4_texp_rect", IR_TEX, 1, 2 },/* rectangle w/ projection */ /* unary op */ - { "int_to_float", IR_I_TO_F, 1, 1 }, - { "float_to_int", IR_F_TO_I, 1, 1 }, + { "ivec4_to_vec4", IR_I_TO_F, 1, 1 }, /* int[4] to float[4] */ + { "vec4_to_ivec4", IR_F_TO_I, 1, 1 }, /* float[4] to int[4] */ { "float_exp", IR_EXP, 1, 1 }, { "float_exp2", IR_EXP2, 1, 1 }, { "float_log2", IR_LOG2, 1, 1 }, @@ -1674,11 +1675,9 @@ _slang_gen_asm(slang_assemble_ctx *A, slang_operation *oper, return NULL; assert(!n->Store); - n->Store = get_store(n0); - n->Writemask = writemask; + n->Store = n0->Store; - assert(n->Store->File != PROGRAM_UNDEFINED || - n->Store->Parent); + assert(n->Store->File != PROGRAM_UNDEFINED || n->Store->Parent); _slang_free(n0); } @@ -1957,6 +1956,7 @@ _slang_gen_function_call_name(slang_assemble_ctx *A, const char *name, slang_atom atom; slang_function *fun; GLboolean error; + slang_ir_node *n; atom = slang_atom_pool_atom(A->atoms, name); if (atom == SLANG_ATOM_NULL) @@ -2008,7 +2008,17 @@ _slang_gen_function_call_name(slang_assemble_ctx *A, const char *name, assert(fun); } - return _slang_gen_function_call(A, fun, oper, dest); + n = _slang_gen_function_call(A, fun, oper, dest); + + if (n && !n->Store && !dest + && fun->header.type.specifier.type != SLANG_SPEC_VOID) { + /* setup n->Store for the result of the function call */ + GLint size = _slang_sizeof_type_specifier(&fun->header.type.specifier); + n->Store = _slang_new_ir_storage(PROGRAM_TEMPORARY, -1, size); + /*printf("Alloc storage for function result, size %d \n", size);*/ + } + + return n; } @@ -2050,6 +2060,23 @@ _slang_is_scalar_or_boolean(slang_assemble_ctx *A, slang_operation *oper) /** + * Test if an operation is boolean. + */ +static GLboolean +_slang_is_boolean(slang_assemble_ctx *A, slang_operation *oper) +{ + slang_typeinfo type; + GLboolean isBool; + + slang_typeinfo_construct(&type); + _slang_typeof_operation(A, oper, &type); + isBool = (type.spec.type == SLANG_SPEC_BOOL); + slang_typeinfo_destruct(&type); + return isBool; +} + + +/** * Generate loop code using high-level IR_LOOP instruction */ static slang_ir_node * @@ -2064,7 +2091,7 @@ _slang_gen_while(slang_assemble_ctx * A, const slang_operation *oper) GLboolean isConst, constTrue; /* type-check expression */ - if (!_slang_is_scalar_or_boolean(A, &oper->children[0])) { + if (!_slang_is_boolean(A, &oper->children[0])) { slang_info_log_error(A->log, "scalar/boolean expression expected for 'while'"); return NULL; } @@ -2127,7 +2154,7 @@ _slang_gen_do(slang_assemble_ctx * A, const slang_operation *oper) GLboolean isConst, constTrue; /* type-check expression */ - if (!_slang_is_scalar_or_boolean(A, &oper->children[1])) { + if (!_slang_is_boolean(A, &oper->children[1])) { slang_info_log_error(A->log, "scalar/boolean expression expected for 'do/while'"); return NULL; } @@ -2256,6 +2283,11 @@ _slang_gen_if(slang_assemble_ctx * A, const slang_operation *oper) GLboolean isConst, constTrue; /* type-check expression */ + if (!_slang_is_boolean(A, &oper->children[0])) { + slang_info_log_error(A->log, "boolean expression expected for 'while'"); + return NULL; + } + if (!_slang_is_scalar_or_boolean(A, &oper->children[0])) { slang_info_log_error(A->log, "scalar/boolean expression expected for 'if'"); return NULL; @@ -2408,11 +2440,19 @@ _slang_gen_var_decl(slang_assemble_ctx *A, slang_variable *var) if (var->array_len > 0) { /* this is an array */ - /* round up element size to mult of 4 */ - GLint sz = (n->Store->Size + 3) & ~3; - /* mult by array size */ - sz *= var->array_len; - n->Store->Size = sz; + /* cannot be const-qualified */ + if (var->type.qualifier == SLANG_QUAL_CONST) { + slang_info_log_error(A->log, "array '%s' cannot be const", + (char*) var->a_name); + return NULL; + } + else { + /* round up element size to mult of 4 */ + GLint sz = (n->Store->Size + 3) & ~3; + /* mult by array size */ + sz *= var->array_len; + n->Store->Size = sz; + } } assert(n->Store->Size > 0); @@ -2433,8 +2473,6 @@ _slang_gen_var_decl(slang_assemble_ctx *A, slang_variable *var) */ n->Store->Swizzle = SWIZZLE_NOOP; } - - A->program->NumTemporaries++; /* an approximation */ } return n; } @@ -2451,16 +2489,36 @@ _slang_gen_select(slang_assemble_ctx *A, slang_operation *oper) { slang_ir_node *cond, *ifNode, *trueExpr, *falseExpr, *trueNode, *falseNode; slang_ir_node *tmpDecl, *tmpVar, *tree; - slang_typeinfo type; - int size; + slang_typeinfo type0, type1, type2; + int size, isBool, isEqual; assert(oper->type == SLANG_OPER_SELECT); assert(oper->num_children == 3); + /* type of children[0] must be boolean */ + slang_typeinfo_construct(&type0); + _slang_typeof_operation(A, &oper->children[0], &type0); + isBool = (type0.spec.type == SLANG_SPEC_BOOL); + slang_typeinfo_destruct(&type0); + if (!isBool) { + slang_info_log_error(A->log, "selector type is not boolean"); + return NULL; + } + + slang_typeinfo_construct(&type1); + slang_typeinfo_construct(&type2); + _slang_typeof_operation(A, &oper->children[1], &type1); + _slang_typeof_operation(A, &oper->children[2], &type2); + isEqual = slang_type_specifier_equal(&type1.spec, &type2.spec); + slang_typeinfo_destruct(&type1); + slang_typeinfo_destruct(&type2); + if (!isEqual) { + slang_info_log_error(A->log, "incompatible types for ?: operator"); + return NULL; + } + /* size of x or y's type */ - slang_typeinfo_construct(&type); - _slang_typeof_operation(A, &oper->children[1], &type); - size = _slang_sizeof_type_specifier(&type.spec); + size = _slang_sizeof_type_specifier(&type1.spec); assert(size > 0); /* temporary var */ @@ -2474,13 +2532,13 @@ _slang_gen_select(slang_assemble_ctx *A, slang_operation *oper) tmpVar = new_node0(IR_VAR); tmpVar->Store = tmpDecl->Store; trueExpr = _slang_gen_operation(A, &oper->children[1]); - trueNode = new_node2(IR_MOVE, tmpVar, trueExpr); + trueNode = new_node2(IR_COPY, tmpVar, trueExpr); /* if-false body (child 2) */ tmpVar = new_node0(IR_VAR); tmpVar->Store = tmpDecl->Store; falseExpr = _slang_gen_operation(A, &oper->children[2]); - falseNode = new_node2(IR_MOVE, tmpVar, falseExpr); + falseNode = new_node2(IR_COPY, tmpVar, falseExpr); ifNode = new_if(cond, trueNode, falseNode); @@ -2622,6 +2680,88 @@ _slang_gen_return(slang_assemble_ctx * A, slang_operation *oper) /** + * Determine if the given operation/expression is const-valued. + */ +static GLboolean +_slang_is_constant_expr(const slang_operation *oper) +{ + slang_variable *var; + GLuint i; + + switch (oper->type) { + case SLANG_OPER_IDENTIFIER: + var = _slang_locate_variable(oper->locals, oper->a_id, GL_TRUE); + if (var && var->type.qualifier == SLANG_QUAL_CONST) + return GL_TRUE; + return GL_FALSE; + default: + for (i = 0; i < oper->num_children; i++) { + if (!_slang_is_constant_expr(&oper->children[i])) + return GL_FALSE; + } + return GL_TRUE; + } +} + + +/** + * Check if an assignment of type t1 to t0 is legal. + * XXX more cases needed. + */ +static GLboolean +_slang_assignment_compatible(slang_assemble_ctx *A, + slang_operation *op0, + slang_operation *op1) +{ + slang_typeinfo t0, t1; + GLuint sz0, sz1; + + + slang_typeinfo_construct(&t0); + _slang_typeof_operation(A, op0, &t0); + + slang_typeinfo_construct(&t1); + _slang_typeof_operation(A, op1, &t1); + + sz0 = _slang_sizeof_type_specifier(&t0.spec); + sz1 = _slang_sizeof_type_specifier(&t1.spec); + +#if 1 + if (sz0 != sz1) { + /*printf("assignment size mismatch %u vs %u\n", sz0, sz1);*/ + return GL_FALSE; + } +#endif + + if (t0.spec.type == SLANG_SPEC_STRUCT && + t1.spec.type == SLANG_SPEC_STRUCT && + t0.spec._struct->a_name != t1.spec._struct->a_name) + return GL_FALSE; + + if (t0.spec.type == SLANG_SPEC_FLOAT && + t1.spec.type == SLANG_SPEC_BOOL) + return GL_FALSE; + +#if 0 /* not used just yet - causes problems elsewhere */ + if (t0.spec.type == SLANG_SPEC_INT && + t1.spec.type == SLANG_SPEC_FLOAT) + return GL_FALSE; +#endif + + if (t0.spec.type == SLANG_SPEC_BOOL && + t1.spec.type == SLANG_SPEC_FLOAT) + return GL_FALSE; + + if (t0.spec.type == SLANG_SPEC_BOOL && + t1.spec.type == SLANG_SPEC_INT) + return GL_FALSE; + + return GL_TRUE; +} + + + +/** * Generate IR tree for a variable declaration. */ static slang_ir_node * @@ -2631,12 +2771,24 @@ _slang_gen_declaration(slang_assemble_ctx *A, slang_operation *oper) slang_ir_node *varDecl; slang_variable *v; const char *varName = (char *) oper->a_id; + slang_operation *initializer; - assert(oper->num_children == 0 || oper->num_children == 1); + assert(oper->type == SLANG_OPER_VARIABLE_DECL); + assert(oper->num_children <= 1); v = _slang_locate_variable(oper->locals, oper->a_id, GL_TRUE); - /*printf("Declare %s at %p\n", varName, v);*/ - assert(v); + if (!v) + return NULL; /* "shouldn't happen" */ + + if (v->type.qualifier == SLANG_QUAL_ATTRIBUTE || + v->type.qualifier == SLANG_QUAL_VARYING || + v->type.qualifier == SLANG_QUAL_UNIFORM) { + /* can't declare attribute/uniform vars inside functions */ + slang_info_log_error(A->log, + "local variable '%s' cannot be an attribute/uniform/varying", + varName); + return NULL; + } #if 0 if (v->declared) { @@ -2646,57 +2798,78 @@ _slang_gen_declaration(slang_assemble_ctx *A, slang_operation *oper) #endif varDecl = _slang_gen_var_decl(A, v); + if (!varDecl) + return NULL; + /* check if the var has an initializer */ if (oper->num_children > 0) { - /* child is initializer */ - slang_ir_node *var, *init, *rhs; assert(oper->num_children == 1); - var = new_var(A, oper, oper->a_id); - if (!var) { - slang_info_log_error(A->log, "undefined variable '%s'", varName); - return NULL; - } - /* XXX make copy of this initializer? */ - rhs = _slang_gen_operation(A, &oper->children[0]); - if (!rhs) - return NULL; /* must have found an error */ - init = new_node2(IR_MOVE, var, rhs); - /*assert(rhs->Opcode != IR_SEQ);*/ - n = new_seq(varDecl, init); + initializer = &oper->children[0]; } else if (v->initializer) { - slang_ir_node *var, *init, *rhs; + initializer = v->initializer; + } + else { + initializer = NULL; + } + + if (v->type.qualifier == SLANG_QUAL_CONST && !initializer) { + slang_info_log_error(A->log, + "const-qualified variable '%s' requires initializer", + varName); + return NULL; + } + + + if (initializer) { + slang_ir_node *var, *init; + + /* type check/compare var and initializer */ + if (!_slang_assignment_compatible(A, oper, initializer)) { + slang_info_log_error(A->log, "illegal types in assignment"); + return NULL; + } + var = new_var(A, oper, oper->a_id); if (!var) { slang_info_log_error(A->log, "undefined variable '%s'", varName); return NULL; } + + if (v->type.qualifier == SLANG_QUAL_CONST) { + /* if the variable is const, the initializer must be a const + * expression as well. + */ #if 0 - /* XXX make copy of this initializer? */ - { - slang_operation dup; - slang_operation_construct(&dup); - slang_operation_copy(&dup, v->initializer); - _slang_simplify(&dup, &A->space, A->atoms); - rhs = _slang_gen_operation(A, &dup); - } -#else - _slang_simplify(v->initializer, &A->space, A->atoms); - rhs = _slang_gen_operation(A, v->initializer); + if (!_slang_is_constant_expr(initializer)) { + slang_info_log_error(A->log, + "initializer for %s not constant", varName); + return NULL; + } #endif - if (!rhs) + } + + _slang_simplify(initializer, &A->space, A->atoms); + + init = _slang_gen_operation(A, initializer); + if (!init) return NULL; - assert(rhs); - init = new_node2(IR_MOVE, var, rhs); - /* - assert(rhs->Opcode != IR_SEQ); - */ - n = new_seq(varDecl, init); + /*assert(init->Store);*/ + + /* XXX remove this when type checking is added above */ + if (init->Store && var->Store->Size != init->Store->Size) { + slang_info_log_error(A->log, "invalid assignment (wrong types)"); + return NULL; + } + + n = new_node2(IR_COPY, var, init); + n = new_seq(varDecl, n); } else { n = varDecl; } + return n; } @@ -2798,8 +2971,16 @@ _slang_gen_assignment(slang_assemble_ctx * A, slang_operation *oper) } else { slang_ir_node *n, *lhs, *rhs; - lhs = _slang_gen_operation(A, &oper->children[0]); + /* lhs and rhs type checking */ + if (!_slang_assignment_compatible(A, + &oper->children[0], + &oper->children[1])) { + slang_info_log_error(A->log, "illegal types in assignment"); + return NULL; + } + + lhs = _slang_gen_operation(A, &oper->children[0]); if (lhs) { if (!lhs->Store) { slang_info_log_error(A->log, @@ -2828,7 +3009,7 @@ _slang_gen_assignment(slang_assemble_ctx * A, slang_operation *oper) */ rhs = _slang_gen_swizzle(rhs, newSwizzle); } - n = new_node2(IR_MOVE, lhs, rhs); + n = new_node2(IR_COPY, lhs, rhs); n->Writemask = writemask; return n; } @@ -3057,6 +3238,48 @@ _slang_gen_array_element(slang_assemble_ctx * A, slang_operation *oper) } +static slang_ir_node * +_slang_gen_compare(slang_assemble_ctx *A, slang_operation *oper, + slang_ir_opcode opcode) +{ + slang_typeinfo t0, t1; + slang_ir_node *n; + + slang_typeinfo_construct(&t0); + _slang_typeof_operation(A, &oper->children[0], &t0); + + slang_typeinfo_construct(&t1); + _slang_typeof_operation(A, &oper->children[0], &t1); + + if (t0.spec.type == SLANG_SPEC_ARRAY || + t1.spec.type == SLANG_SPEC_ARRAY) { + slang_info_log_error(A->log, "Illegal array comparison"); + return NULL; + } + + if (oper->type != SLANG_OPER_EQUAL && + oper->type != SLANG_OPER_NOTEQUAL) { + /* <, <=, >, >= can only be used with scalars */ + if ((t0.spec.type != SLANG_SPEC_INT && + t0.spec.type != SLANG_SPEC_FLOAT) || + (t1.spec.type != SLANG_SPEC_INT && + t1.spec.type != SLANG_SPEC_FLOAT)) { + slang_info_log_error(A->log, "Illegal type(s) for inequality operator"); + return NULL; + } + } + + n = new_node2(opcode, + _slang_gen_operation(A, &oper->children[0]), + _slang_gen_operation(A, &oper->children[1])); + + /* result is a bool (size 1) */ + n->Store = _slang_new_ir_storage(PROGRAM_TEMPORARY, -1, 1); + + return n; +} + + #if 0 static void print_vars(slang_variable_scope *s) @@ -3165,29 +3388,17 @@ _slang_gen_operation(slang_assemble_ctx * A, slang_operation *oper) return new_node0(IR_KILL); case SLANG_OPER_EQUAL: - return new_node2(IR_EQUAL, - _slang_gen_operation(A, &oper->children[0]), - _slang_gen_operation(A, &oper->children[1])); + return _slang_gen_compare(A, oper, IR_EQUAL); case SLANG_OPER_NOTEQUAL: - return new_node2(IR_NOTEQUAL, - _slang_gen_operation(A, &oper->children[0]), - _slang_gen_operation(A, &oper->children[1])); + return _slang_gen_compare(A, oper, IR_NOTEQUAL); case SLANG_OPER_GREATER: - return new_node2(IR_SGT, - _slang_gen_operation(A, &oper->children[0]), - _slang_gen_operation(A, &oper->children[1])); + return _slang_gen_compare(A, oper, IR_SGT); case SLANG_OPER_LESS: - return new_node2(IR_SLT, - _slang_gen_operation(A, &oper->children[0]), - _slang_gen_operation(A, &oper->children[1])); + return _slang_gen_compare(A, oper, IR_SLT); case SLANG_OPER_GREATEREQUAL: - return new_node2(IR_SGE, - _slang_gen_operation(A, &oper->children[0]), - _slang_gen_operation(A, &oper->children[1])); + return _slang_gen_compare(A, oper, IR_SGE); case SLANG_OPER_LESSEQUAL: - return new_node2(IR_SLE, - _slang_gen_operation(A, &oper->children[0]), - _slang_gen_operation(A, &oper->children[1])); + return _slang_gen_compare(A, oper, IR_SLE); case SLANG_OPER_ADD: { slang_ir_node *n; @@ -3346,6 +3557,8 @@ _slang_gen_operation(slang_assemble_ctx * A, slang_operation *oper) for (i = 0; i < oper->num_children; i++) { slang_ir_node *n = _slang_gen_operation(A, &oper->children[i]); tree = new_seq(tree, n); + if (n) + tree->Store = n->Store; } if (oper->type == SLANG_OPER_NON_INLINED_CALL) { tree = new_function_call(tree, oper->label); @@ -3418,14 +3631,34 @@ _slang_codegen_global_variable(slang_assemble_ctx *A, slang_variable *var, * store->Index = sampler number (0..7, typically) * store->Size = texture type index (1D, 2D, 3D, cube, etc) */ - GLint sampNum = _mesa_add_sampler(prog->Parameters, varName, datatype); - store = _slang_new_ir_storage(PROGRAM_SAMPLER, sampNum, texIndex); + if (var->initializer) { + slang_info_log_error(A->log, "illegal assignment to '%s'", varName); + return GL_FALSE; + } +#if FEATURE_es2_glsl /* XXX should use FEATURE_texture_rect */ + /* disallow rect samplers */ + if (var->type.specifier.type == SLANG_SPEC_SAMPLER2DRECT || + var->type.specifier.type == SLANG_SPEC_SAMPLER2DRECTSHADOW) { + slang_info_log_error(A->log, "invalid sampler type for '%s'", varName); + return GL_FALSE; + } +#endif + { + GLint sampNum = _mesa_add_sampler(prog->Parameters, varName, datatype); + store = _slang_new_ir_storage(PROGRAM_SAMPLER, sampNum, texIndex); + } if (dbg) printf("SAMPLER "); } else if (var->type.qualifier == SLANG_QUAL_UNIFORM) { /* Uniform variable */ const GLint totalSize = array_size(size, var->array_len); const GLuint swizzle = _slang_var_swizzle(totalSize, 0); + + if (var->initializer) { + slang_info_log_error(A->log, "illegal initializer for uniform '%s'", varName); + return GL_FALSE; + } + if (prog) { /* user-defined uniform */ if (datatype == GL_NONE) { @@ -3448,7 +3681,7 @@ _slang_codegen_global_variable(slang_assemble_ctx *A, slang_variable *var, else { slang_info_log_error(A->log, "invalid datatype for uniform variable %s", - (char *) var->a_name); + varName); } return GL_FALSE; } @@ -3470,6 +3703,21 @@ _slang_codegen_global_variable(slang_assemble_ctx *A, slang_variable *var, if (dbg) printf("UNIFORM (sz %d) ", totalSize); } else if (var->type.qualifier == SLANG_QUAL_VARYING) { + /* varyings must be float, vec or mat */ + if (!_slang_type_is_float_vec_mat(var->type.specifier.type) && + var->type.specifier.type != SLANG_SPEC_ARRAY) { + slang_info_log_error(A->log, + "varying '%s' must be float/vector/matrix", + varName); + return GL_FALSE; + } + + if (var->initializer) { + slang_info_log_error(A->log, "illegal initializer for varying '%s'", + varName); + return GL_FALSE; + } + if (prog) { /* user-defined varying */ GLint varyingLoc = _mesa_add_varying(prog->Varying, varName, size); @@ -3504,6 +3752,14 @@ _slang_codegen_global_variable(slang_assemble_ctx *A, slang_variable *var, if (dbg) printf("VARYING "); } else if (var->type.qualifier == SLANG_QUAL_ATTRIBUTE) { + /* attributes must be float, vec or mat */ + if (!_slang_type_is_float_vec_mat(var->type.specifier.type)) { + slang_info_log_error(A->log, + "attribute '%s' must be float/vector/matrix", + varName); + return GL_FALSE; + } + if (prog) { /* user-defined vertex attribute */ const GLint attr = -1; /* unknown */ @@ -3559,7 +3815,7 @@ _slang_codegen_global_variable(slang_assemble_ctx *A, slang_variable *var, if (var->initializer) { slang_ir_node *lhs, *rhs, *init; - /* Generate IR_MOVE instruction to initialize the variable */ + /* Generate IR_COPY instruction to initialize the variable */ lhs = new_node0(IR_VAR); lhs->Var = var; lhs->Store = n->Store; @@ -3569,7 +3825,7 @@ _slang_codegen_global_variable(slang_assemble_ctx *A, slang_variable *var, rhs = _slang_gen_operation(A, var->initializer); assert(rhs); - init = new_node2(IR_MOVE, lhs, rhs); + init = new_node2(IR_COPY, lhs, rhs); n = new_seq(n, init); } diff --git a/src/mesa/shader/slang/slang_compile.c b/src/mesa/shader/slang/slang_compile.c index 60539f19b6..f90bbd8c56 100644 --- a/src/mesa/shader/slang/slang_compile.c +++ b/src/mesa/shader/slang/slang_compile.c @@ -61,6 +61,20 @@ /** + * Check if the given identifier is legal. + */ +static GLboolean +legal_identifier(slang_atom name) +{ + /* "gl_" is a reserved prefix */ + if (_mesa_strncmp((char *) name, "gl_", 3) == 0) { + return GL_FALSE; + } + return GL_TRUE; +} + + +/** * Allocate storage for a variable of 'size' bytes from given pool. * Return the allocated address for the variable. */ @@ -835,6 +849,12 @@ parse_statement(slang_parse_ctx * C, slang_output_ctx * O, o->type = SLANG_OPER_VARIABLE_DECL; o->locals->outer_scope = O->vars; o->a_id = O->vars->variables[i]->a_name; + + if (!legal_identifier(o->a_id)) { + slang_info_log_error(C->L, "illegal variable name '%s'", + (char *) o->a_id); + return 0; + } } } } @@ -1404,6 +1424,7 @@ parse_operator_name(slang_parse_ctx * C) return 0; } + static int parse_function_prototype(slang_parse_ctx * C, slang_output_ctx * O, slang_function * func) @@ -1441,6 +1462,12 @@ parse_function_prototype(slang_parse_ctx * C, slang_output_ctx * O, return 0; } + if (!legal_identifier(func->header.a_name)) { + slang_info_log_error(C->L, "illegal function name '%s'", + (char *) func->header.a_name); + return 0; + } + /* parse function parameters */ while (*C->I++ == PARAMETER_NEXT) { slang_variable *p = slang_variable_scope_grow(func->parameters); @@ -2025,6 +2052,12 @@ parse_code_unit(slang_parse_ctx * C, slang_code_unit * unit, A.vartable = o.vartable; A.log = C->L; + /* main() takes no parameters */ + if (mainFunc->param_count > 0) { + slang_info_log_error(A.log, "main() takes no arguments"); + return GL_FALSE; + } + _slang_codegen_function(&A, mainFunc); shader->Main = GL_TRUE; /* this shader defines main() */ @@ -2285,7 +2318,7 @@ compile_shader(GLcontext *ctx, slang_code_object * object, GLboolean success; grammar id = 0; -#if 1 /* for debug */ +#if 0 /* for debug */ _mesa_printf("********* COMPILE SHADER ***********\n"); _mesa_printf("%s\n", shader->Source); _mesa_printf("************************************\n"); diff --git a/src/mesa/shader/slang/slang_emit.c b/src/mesa/shader/slang/slang_emit.c index f1af6902ea..b902da8457 100644 --- a/src/mesa/shader/slang/slang_emit.c +++ b/src/mesa/shader/slang/slang_emit.c @@ -127,22 +127,33 @@ _slang_swizzle_swizzle(GLuint swz1, GLuint swz2) /** - * Allocate temporary storage for an intermediate result (such as for - * a multiply or add, etc. + * Allocate storage for the given node (if it hasn't already been allocated). + * + * Typically this is temporary storage for an intermediate result (such as + * for a multiply or add, etc). + * + * If n->Store does not exist it will be created and will be of the size + * specified by defaultSize. */ static GLboolean -alloc_temp_storage(slang_emit_info *emitInfo, slang_ir_node *n, GLint size) +alloc_node_storage(slang_emit_info *emitInfo, slang_ir_node *n, + GLint defaultSize) { assert(!n->Var); - assert(!n->Store); - assert(size > 0); - n->Store = _slang_new_ir_storage(PROGRAM_TEMPORARY, -1, size); - if (!_slang_alloc_temp(emitInfo->vt, n->Store)) { - slang_info_log_error(emitInfo->log, - "Ran out of registers, too many temporaries"); - _slang_free(n->Store); - n->Store = NULL; - return GL_FALSE; + if (!n->Store) { + assert(defaultSize > 0); + n->Store = _slang_new_ir_storage(PROGRAM_TEMPORARY, -1, defaultSize); + } + + /* now allocate actual register(s). I.e. set n->Store->Index >= 0 */ + if (n->Store->Index < 0) { + if (!_slang_alloc_temp(emitInfo->vt, n->Store)) { + slang_info_log_error(emitInfo->log, + "Ran out of registers, too many temporaries"); + _slang_free(n->Store); + n->Store = NULL; + return GL_FALSE; + } } return GL_TRUE; } @@ -153,7 +164,7 @@ alloc_temp_storage(slang_emit_info *emitInfo, slang_ir_node *n, GLint size) * Otherwise, no-op. */ static void -free_temp_storage(slang_var_table *vt, slang_ir_node *n) +free_node_storage(slang_var_table *vt, slang_ir_node *n) { if (n->Store->File == PROGRAM_TEMPORARY && n->Store->Index >= 0 && @@ -167,6 +178,22 @@ free_temp_storage(slang_var_table *vt, slang_ir_node *n) } +/** + * Helper function to allocate a short-term temporary. + * Free it with _slang_free_temp(). + */ +static GLboolean +alloc_local_temp(slang_emit_info *emitInfo, slang_ir_storage *temp, GLint size) +{ + assert(size >= 1); + assert(size <= 4); + _mesa_bzero(temp, sizeof(*temp)); + temp->Size = size; + temp->File = PROGRAM_TEMPORARY; + temp->Index = -1; + return _slang_alloc_temp(emitInfo->vt, temp); +} + /** * Remove any SWIZZLE_NIL terms from given swizzle mask. @@ -584,19 +611,15 @@ emit_arith(slang_emit_info *emitInfo, slang_ir_node *n) } /* result storage */ - if (!n->Store) { - GLint size = info->ResultSize; - if (!alloc_temp_storage(emitInfo, n, size)) - return NULL; -#if 0000 /* this should work, but doesn't yet */ - if (size == 2) - n->Writemask = WRITEMASK_XY; - else if (size == 3) - n->Writemask = WRITEMASK_XYZ; - else if (size == 1) - n->Writemask = WRITEMASK_X << GET_SWZ(n->Store->Swizzle,0); -#endif - } + alloc_node_storage(emitInfo, n, -1); + assert(n->Store->Index >= 0); + if (n->Store->Size == 2) + n->Writemask = WRITEMASK_XY; + else if (n->Store->Size == 3) + n->Writemask = WRITEMASK_XYZ; + else if (n->Store->Size == 1) + n->Writemask = WRITEMASK_X << GET_SWZ(n->Store->Swizzle, 0); + storage_to_dst_reg(&inst->DstReg, n->Store, n->Writemask); @@ -608,7 +631,7 @@ emit_arith(slang_emit_info *emitInfo, slang_ir_node *n) /* really free temps now */ for (i = 0; i < 3; i++) if (temps[i]) - free_temp_storage(emitInfo->vt, temps[i]); + free_node_storage(emitInfo->vt, temps[i]); /*_mesa_print_instruction(inst);*/ return inst; @@ -636,16 +659,15 @@ emit_compare(slang_emit_info *emitInfo, slang_ir_node *n) return NULL; } + /* final result is 1 bool */ + if (!alloc_node_storage(emitInfo, n, 1)) + return NULL; + size = n->Children[0]->Store->Size; if (size == 1) { gl_inst_opcode opcode; - if (!n->Store) { - if (!alloc_temp_storage(emitInfo, n, 1)) /* 1 bool */ - return NULL; - } - opcode = n->Opcode == IR_EQUAL ? OPCODE_SEQ : OPCODE_SNE; inst = new_instruction(emitInfo, opcode); storage_to_src_reg(&inst->SrcReg[0], n->Children[0]->Store); @@ -655,11 +677,11 @@ emit_compare(slang_emit_info *emitInfo, slang_ir_node *n) else if (size <= 4) { GLuint swizzle; gl_inst_opcode dotOp; - - assert(!n->Store); - if (!n->Store) { - if (!alloc_temp_storage(emitInfo, n, size)) /* 'size' bools */ - return NULL; + slang_ir_storage tempStore; + + if (!alloc_local_temp(emitInfo, &tempStore, 4)) { + return NULL; + /* out of temps */ } if (size == 4) { @@ -676,26 +698,25 @@ emit_compare(slang_emit_info *emitInfo, slang_ir_node *n) swizzle = MAKE_SWIZZLE4(SWIZZLE_X, SWIZZLE_Y, SWIZZLE_Y, SWIZZLE_Y); } - /* Compute equality, inequality (tmp1 = (A ?= B)) */ + /* Compute inequality (temp = (A != B)) */ inst = new_instruction(emitInfo, OPCODE_SNE); + storage_to_dst_reg(&inst->DstReg, &tempStore, n->Writemask); storage_to_src_reg(&inst->SrcReg[0], n->Children[0]->Store); storage_to_src_reg(&inst->SrcReg[1], n->Children[1]->Store); - storage_to_dst_reg(&inst->DstReg, n->Store, n->Writemask); inst->Comment = _mesa_strdup("Compare values"); - /* Compute tmp2 = DOT(tmp1, tmp1) (reduction) */ + /* Compute val = DOT(temp, temp) (reduction) */ inst = new_instruction(emitInfo, dotOp); - storage_to_src_reg(&inst->SrcReg[0], n->Store); - storage_to_src_reg(&inst->SrcReg[1], n->Store); - inst->SrcReg[0].Swizzle = inst->SrcReg[1].Swizzle = swizzle; /*override*/ - free_temp_storage(emitInfo->vt, n); /* free tmp1 */ - if (!alloc_temp_storage(emitInfo, n, 1)) /* alloc tmp2 */ - return NULL; storage_to_dst_reg(&inst->DstReg, n->Store, n->Writemask); + storage_to_src_reg(&inst->SrcReg[0], &tempStore); + storage_to_src_reg(&inst->SrcReg[1], &tempStore); + inst->SrcReg[0].Swizzle = inst->SrcReg[1].Swizzle = swizzle; /*override*/ inst->Comment = _mesa_strdup("Reduce vec to bool"); + _slang_free_temp(emitInfo->vt, &tempStore); /* free temp */ + if (n->Opcode == IR_EQUAL) { - /* compute tmp2.x = !tmp2.x via tmp2.x = (tmp2.x == 0) */ + /* compute val = !val.x with SEQ val, val, 0; */ inst = new_instruction(emitInfo, OPCODE_SEQ); storage_to_src_reg(&inst->SrcReg[0], n->Store); constant_to_src_reg(&inst->SrcReg[1], 0.0, emitInfo); @@ -708,73 +729,59 @@ emit_compare(slang_emit_info *emitInfo, slang_ir_node *n) * XXX this won't work reliably for structs with padding!! */ GLint i, num = (n->Children[0]->Store->Size + 3) / 4; - slang_ir_storage accTemp; + slang_ir_storage accTemp, sneTemp; - if (!n->Store) { - if (!alloc_temp_storage(emitInfo, n, 4)) - return NULL; - } + if (!alloc_local_temp(emitInfo, &accTemp, 4)) + return NULL; - accTemp.Size = 4; - accTemp.File = PROGRAM_TEMPORARY; - if (!_slang_alloc_temp(emitInfo->vt, &accTemp)) { + if (!alloc_local_temp(emitInfo, &sneTemp, 4)) return NULL; - /* out of temps */ - } for (i = 0; i < num; i++) { - /* SNE t0, left[i], right[i] */ + /* SNE sneTemp, left[i], right[i] */ inst = new_instruction(emitInfo, OPCODE_SNE); storage_to_src_reg(&inst->SrcReg[0], n->Children[0]->Store); storage_to_src_reg(&inst->SrcReg[1], n->Children[1]->Store); inst->SrcReg[0].Index += i; inst->SrcReg[1].Index += i; if (i == 0) { - inst->DstReg.File = accTemp.File; - inst->DstReg.Index = accTemp.Index; + storage_to_dst_reg(&inst->DstReg, &accTemp, WRITEMASK_XYZW); inst->Comment = _mesa_strdup("Begin struct/array comparison"); } else { - inst->DstReg.File = n->Store->File; - inst->DstReg.Index = n->Store->Index; - } - if (i > 0) { - /* ADD accTemp, accTemp, temp; # like logical-OR */ + storage_to_dst_reg(&inst->DstReg, &sneTemp, WRITEMASK_XYZW); + + /* ADD accTemp, accTemp, sneTemp; # like logical-OR */ inst = new_instruction(emitInfo, OPCODE_ADD); - inst->SrcReg[0].File = accTemp.File; - inst->SrcReg[0].Index = accTemp.Index; - inst->SrcReg[1].File = n->Store->File; - inst->SrcReg[1].Index = n->Store->Index; - inst->DstReg.File = accTemp.File; - inst->DstReg.Index = accTemp.Index; + storage_to_dst_reg(&inst->DstReg, &accTemp, WRITEMASK_XYZW); + storage_to_src_reg(&inst->SrcReg[0], &accTemp); + storage_to_src_reg(&inst->SrcReg[1], &sneTemp); } } /* compute accTemp.x || accTemp.y || accTemp.z || accTemp.w with DOT4 */ inst = new_instruction(emitInfo, OPCODE_DP4); - inst->SrcReg[0].File = accTemp.File; - inst->SrcReg[0].Index = accTemp.Index; - inst->SrcReg[1].File = accTemp.File; - inst->SrcReg[1].Index = accTemp.Index; - inst->DstReg.File = n->Store->File; - inst->DstReg.Index = n->Store->Index; + storage_to_dst_reg(&inst->DstReg, n->Store, n->Writemask); + storage_to_src_reg(&inst->SrcReg[0], &accTemp); + storage_to_src_reg(&inst->SrcReg[1], &accTemp); inst->Comment = _mesa_strdup("End struct/array comparison"); if (n->Opcode == IR_EQUAL) { /* compute tmp.x = !tmp.x via tmp.x = (tmp.x == 0) */ inst = new_instruction(emitInfo, OPCODE_SEQ); + storage_to_dst_reg(&inst->DstReg, n->Store, n->Writemask); storage_to_src_reg(&inst->SrcReg[0], n->Store); constant_to_src_reg(&inst->SrcReg[1], 0.0, emitInfo); - storage_to_dst_reg(&inst->DstReg, n->Store, n->Writemask); inst->Comment = _mesa_strdup("Invert true/false"); } _slang_free_temp(emitInfo->vt, &accTemp); + _slang_free_temp(emitInfo->vt, &sneTemp); } /* free temps */ - free_temp_storage(emitInfo->vt, n->Children[0]); - free_temp_storage(emitInfo->vt, n->Children[1]); + free_node_storage(emitInfo->vt, n->Children[0]); + free_node_storage(emitInfo->vt, n->Children[1]); return inst; } @@ -827,9 +834,8 @@ emit_clamp(slang_emit_info *emitInfo, slang_ir_node *n) } #endif - if (!n->Store) - if (!alloc_temp_storage(emitInfo, n, n->Children[0]->Store->Size)) - return NULL; + if (!alloc_node_storage(emitInfo, n, n->Children[0]->Store->Size)) + return NULL; emit(emitInfo, n->Children[1]); emit(emitInfo, n->Children[2]); @@ -839,7 +845,7 @@ emit_clamp(slang_emit_info *emitInfo, slang_ir_node *n) * the intermediate result. Use a temp register instead. */ _mesa_bzero(&tmpNode, sizeof(tmpNode)); - alloc_temp_storage(emitInfo, &tmpNode, n->Store->Size); + alloc_node_storage(emitInfo, &tmpNode, n->Store->Size); /* tmp = max(ch[0], ch[1]) */ inst = new_instruction(emitInfo, OPCODE_MAX); @@ -853,7 +859,7 @@ emit_clamp(slang_emit_info *emitInfo, slang_ir_node *n) storage_to_src_reg(&inst->SrcReg[0], tmpNode.Store); storage_to_src_reg(&inst->SrcReg[1], n->Children[2]->Store); - free_temp_storage(emitInfo->vt, &tmpNode); + free_node_storage(emitInfo->vt, &tmpNode); return inst; } @@ -870,9 +876,8 @@ emit_negation(slang_emit_info *emitInfo, slang_ir_node *n) emit(emitInfo, n->Children[0]); - if (!n->Store) - if (!alloc_temp_storage(emitInfo, n, n->Children[0]->Store->Size)) - return NULL; + if (!alloc_node_storage(emitInfo, n, n->Children[0]->Store->Size)) + return NULL; inst = new_instruction(emitInfo, OPCODE_MOV); storage_to_dst_reg(&inst->DstReg, n->Store, n->Writemask); @@ -1014,14 +1019,12 @@ emit_tex(slang_emit_info *emitInfo, slang_ir_node *n) inst = new_instruction(emitInfo, OPCODE_TXP); } - if (!n->Store) - if (!alloc_temp_storage(emitInfo, n, 4)) - return NULL; + if (!alloc_node_storage(emitInfo, n, 4)) + return NULL; storage_to_dst_reg(&inst->DstReg, n->Store, n->Writemask); /* Child[1] is the coord */ - assert(n->Children[1]->Store->File != PROGRAM_UNDEFINED); assert(n->Children[1]->Store->Index >= 0); storage_to_src_reg(&inst->SrcReg[0], n->Children[1]->Store); @@ -1046,12 +1049,15 @@ emit_tex(slang_emit_info *emitInfo, slang_ir_node *n) } +/** + * Assignment/copy + */ static struct prog_instruction * -emit_move(slang_emit_info *emitInfo, slang_ir_node *n) +emit_copy(slang_emit_info *emitInfo, slang_ir_node *n) { struct prog_instruction *inst; - assert(n->Opcode == IR_MOVE); + assert(n->Opcode == IR_COPY); /* lhs */ emit(emitInfo, n->Children[0]); @@ -1116,7 +1122,7 @@ emit_move(slang_emit_info *emitInfo, slang_ir_node *n) srcStore.Size = 4; while (size >= 4) { inst = new_instruction(emitInfo, OPCODE_MOV); - inst->Comment = _mesa_strdup("IR_MOVE block"); + inst->Comment = _mesa_strdup("IR_COPY block"); storage_to_dst_reg(&inst->DstReg, &dstStore, n->Writemask); storage_to_src_reg(&inst->SrcReg[0], &srcStore); srcStore.Index++; @@ -1136,7 +1142,7 @@ emit_move(slang_emit_info *emitInfo, slang_ir_node *n) inst->Comment = instruction_annotation(inst->Opcode, dstAnnot, srcAnnot, NULL, NULL); } - free_temp_storage(emitInfo->vt, n->Children[1]); + free_node_storage(emitInfo->vt, n->Children[1]); return inst; } } @@ -1185,7 +1191,7 @@ emit_cond(slang_emit_info *emitInfo, slang_ir_node *n) * is normally generated for the expression "i". * Generate a move instruction just to set condition codes. */ - if (!alloc_temp_storage(emitInfo, n, 1)) + if (!alloc_node_storage(emitInfo, n, 1)) return NULL; inst = new_instruction(emitInfo, OPCODE_MOV); inst->CondUpdate = GL_TRUE; @@ -1241,15 +1247,14 @@ emit_not(slang_emit_info *emitInfo, slang_ir_node *n) #endif /* else, invert using SEQ (v = v == 0) */ - if (!n->Store) - if (!alloc_temp_storage(emitInfo, n, n->Children[0]->Store->Size)) - return NULL; + if (!alloc_node_storage(emitInfo, n, n->Children[0]->Store->Size)) + return NULL; inst = new_instruction(emitInfo, OPCODE_SEQ); storage_to_dst_reg(&inst->DstReg, n->Store, n->Writemask); storage_to_src_reg(&inst->SrcReg[0], n->Children[0]->Store); constant_to_src_reg(&inst->SrcReg[1], 0.0, emitInfo); - free_temp_storage(emitInfo->vt, n->Children[0]); + free_node_storage(emitInfo->vt, n->Children[0]); inst->Comment = _mesa_strdup("NOT"); return inst; @@ -1622,6 +1627,10 @@ emit_struct_field(slang_emit_info *emitInfo, slang_ir_node *n) return NULL; } } + else { + /* do codegen for struct */ + emit(emitInfo, n->Children[0]); + } return NULL; /* no instruction */ } @@ -1634,12 +1643,18 @@ emit(slang_emit_info *emitInfo, slang_ir_node *n) if (!n) return NULL; + if (emitInfo->log->error_flag) { + return NULL; + } + switch (n->Opcode) { case IR_SEQ: /* sequence of two sub-trees */ assert(n->Children[0]); assert(n->Children[1]); emit(emitInfo, n->Children[0]); + if (emitInfo->log->error_flag) + return NULL; inst = emit(emitInfo, n->Children[1]); #if 0 assert(!n->Store); @@ -1722,27 +1737,15 @@ emit(slang_emit_info *emitInfo, slang_ir_node *n) case IR_SWIZZLE: return emit_swizzle(emitInfo, n); - case IR_I_TO_F: - /* just move */ - emit(emitInfo, n->Children[0]); - inst = new_instruction(emitInfo, OPCODE_MOV); - if (!n->Store) { - if (!alloc_temp_storage(emitInfo, n, 1)) - return NULL; - } - storage_to_dst_reg(&inst->DstReg, n->Store, n->Writemask); - storage_to_src_reg(&inst->SrcReg[0], n->Children[0]->Store); - if (emitInfo->EmitComments) - inst->Comment = _mesa_strdup("int to float"); - return NULL; - /* Simple arithmetic */ /* unary */ + case IR_MOVE: case IR_RSQ: case IR_RCP: case IR_FLOOR: case IR_FRAC: case IR_F_TO_I: + case IR_I_TO_F: case IR_ABS: case IR_SIN: case IR_COS: @@ -1799,8 +1802,8 @@ emit(slang_emit_info *emitInfo, slang_ir_node *n) } return NULL; - case IR_MOVE: - return emit_move(emitInfo, n); + case IR_COPY: + return emit_copy(emitInfo, n); case IR_COND: return emit_cond(emitInfo, n); diff --git a/src/mesa/shader/slang/slang_ir.c b/src/mesa/shader/slang/slang_ir.c index 23d554234e..3a0b8bf3a0 100644 --- a/src/mesa/shader/slang/slang_ir.c +++ b/src/mesa/shader/slang/slang_ir.c @@ -54,7 +54,8 @@ static const slang_ir_info IrInfo[] = { { IR_NOTEQUAL, "IR_NOTEQUAL", OPCODE_NOP, 1, 2 }, /* unary ops */ - { IR_I_TO_F, "IR_I_TO_F", OPCODE_NOP, 1, 1 }, + { IR_MOVE, "IR_MOVE", OPCODE_MOV, 4, 1 }, + { IR_I_TO_F, "IR_I_TO_F", OPCODE_MOV, 4, 1 }, /* int[4] to float[4] */ { IR_F_TO_I, "IR_F_TO_I", OPCODE_INT, 4, 1 }, /* 4 floats to 4 ints */ { IR_EXP, "IR_EXP", OPCODE_EXP, 1, 1 }, { IR_EXP2, "IR_EXP2", OPCODE_EX2, 1, 1 }, @@ -82,7 +83,7 @@ static const slang_ir_info IrInfo[] = { { IR_KILL, "IR_KILL", OPCODE_NOP, 0, 0 }, { IR_COND, "IR_COND", OPCODE_NOP, 0, 0 }, { IR_CALL, "IR_CALL", OPCODE_NOP, 0, 0 }, - { IR_MOVE, "IR_MOVE", OPCODE_NOP, 0, 1 }, + { IR_COPY, "IR_COPY", OPCODE_NOP, 0, 1 }, { IR_NOT, "IR_NOT", OPCODE_NOP, 1, 1 }, { IR_VAR, "IR_VAR", OPCODE_NOP, 0, 0 }, { IR_VAR_DECL, "IR_VAR_DECL", OPCODE_NOP, 0, 0 }, @@ -326,8 +327,8 @@ _slang_print_ir_tree(const slang_ir_node *n, int indent) assert(!n->Children[1]); _slang_print_ir_tree(n->Children[0], indent + 3); break; - case IR_MOVE: - printf("MOVE (writemask = %s)\n", writemask_string(n->Writemask)); + case IR_COPY: + printf("COPY (writemask = %s)\n", writemask_string(n->Writemask)); _slang_print_ir_tree(n->Children[0], indent+3); _slang_print_ir_tree(n->Children[1], indent+3); break; diff --git a/src/mesa/shader/slang/slang_ir.h b/src/mesa/shader/slang/slang_ir.h index e4697ba3b4..f64f9a93b7 100644 --- a/src/mesa/shader/slang/slang_ir.h +++ b/src/mesa/shader/slang/slang_ir.h @@ -70,14 +70,14 @@ typedef enum /* n->Parent = ptr to parent IR_LOOP Node */ IR_BREAK, /* break loop */ - IR_BREAK_IF_TRUE, + IR_BREAK_IF_TRUE, /**< Children[0] = the condition expression */ IR_CONT_IF_TRUE, - /* Children[0] = the condition expression */ - IR_MOVE, + IR_COPY, /**< assignment/copy */ + IR_MOVE, /**< assembly MOV instruction */ /* vector ops: */ - IR_ADD, + IR_ADD, /**< assembly ADD instruction */ IR_SUB, IR_MUL, IR_DIV, diff --git a/src/mesa/shader/slang/slang_link.c b/src/mesa/shader/slang/slang_link.c index 1de561930a..8f07406ee4 100644 --- a/src/mesa/shader/slang/slang_link.c +++ b/src/mesa/shader/slang/slang_link.c @@ -277,6 +277,36 @@ _slang_resolve_attributes(struct gl_shader_program *shProg, /** + * Scan program instructions to update the program's NumTemporaries field. + * Note: this implemenation relies on the code generator allocating + * temps in increasing order (0, 1, 2, ... ). + */ +static void +_slang_count_temporaries(struct gl_program *prog) +{ + GLuint i, j; + GLint maxIndex = -1; + + for (i = 0; i < prog->NumInstructions; i++) { + const struct prog_instruction *inst = prog->Instructions + i; + const GLuint numSrc = _mesa_num_inst_src_regs(inst->Opcode); + for (j = 0; j < numSrc; j++) { + if (inst->SrcReg[j].File == PROGRAM_TEMPORARY) { + if (maxIndex < inst->SrcReg[j].Index) + maxIndex = inst->SrcReg[j].Index; + } + if (inst->DstReg.File == PROGRAM_TEMPORARY) { + if (maxIndex < inst->DstReg.Index) + maxIndex = inst->DstReg.Index; + } + } + } + + prog->NumTemporaries = (GLuint) (maxIndex + 1); +} + + +/** * Scan program instructions to update the program's InputsRead and * OutputsWritten fields. */ @@ -415,6 +445,18 @@ _slang_link(GLcontext *ctx, _mesa_problem(ctx, "unexpected shader target in slang_link()"); } +#if FEATURE_es2_glsl + /* must have both a vertex and fragment program for ES2 */ + if (!vertProg) { + link_error(shProg, "missing vertex shader\n"); + return; + } + if (!fragProg) { + link_error(shProg, "missing fragment shader\n"); + return; + } +#endif + /* * Make copies of the vertex/fragment programs now since we'll be * changing src/dst registers after merging the uniforms and varying vars. @@ -459,6 +501,7 @@ _slang_link(GLcontext *ctx, if (shProg->VertexProgram) { _slang_update_inputs_outputs(&shProg->VertexProgram->Base); + _slang_count_temporaries(&shProg->VertexProgram->Base); if (!(shProg->VertexProgram->Base.OutputsWritten & (1 << VERT_RESULT_HPOS))) { /* the vertex program did not compute a vertex position */ link_error(shProg, @@ -466,8 +509,10 @@ _slang_link(GLcontext *ctx, return; } } - if (shProg->FragmentProgram) + if (shProg->FragmentProgram) { + _slang_count_temporaries(&shProg->FragmentProgram->Base); _slang_update_inputs_outputs(&shProg->FragmentProgram->Base); + } /* Check that all the varying vars needed by the fragment shader are * actually produced by the vertex shader. diff --git a/src/mesa/shader/slang/slang_preprocess.c b/src/mesa/shader/slang/slang_preprocess.c index bfe29b6bc9..786f6467c9 100644 --- a/src/mesa/shader/slang/slang_preprocess.c +++ b/src/mesa/shader/slang/slang_preprocess.c @@ -537,7 +537,11 @@ pp_state_init (pp_state *self, slang_info_log *elog) { self->line = 0; self->file = 1; +#if FEATURE_es2_glsl + self->version = 100; +#else self->version = 110; +#endif pp_symbols_init (&self->symbols); pp_ext_init (&self->ext); self->elog = elog; diff --git a/src/mesa/shader/slang/slang_simplify.c b/src/mesa/shader/slang/slang_simplify.c index c4bf0175be..6ef95c48f9 100644 --- a/src/mesa/shader/slang/slang_simplify.c +++ b/src/mesa/shader/slang/slang_simplify.c @@ -94,6 +94,15 @@ _slang_lookup_constant(const char *name) } +static slang_operation_type +literal_type(slang_operation_type t1, slang_operation_type t2) +{ + if (t1 == SLANG_OPER_LITERAL_FLOAT || t2 == SLANG_OPER_LITERAL_FLOAT) + return SLANG_OPER_LITERAL_FLOAT; + else + return SLANG_OPER_LITERAL_INT; +} + /** * Recursively traverse an AST tree, applying simplifications wherever @@ -114,6 +123,7 @@ _slang_simplify(slang_operation *oper, if (oper->type == SLANG_OPER_IDENTIFIER) { /* see if it's a named constant */ GLint value = _slang_lookup_constant((char *) oper->a_id); + /*printf("value[%s] = %d\n", (char*) oper->a_id, value);*/ if (value >= 0) { oper->literal[0] = oper->literal[1] = @@ -122,6 +132,29 @@ _slang_simplify(slang_operation *oper, oper->type = SLANG_OPER_LITERAL_INT; return; } + /* look for user-defined constant */ + { + slang_variable *var; + var = _slang_locate_variable(oper->locals, oper->a_id, GL_TRUE); + if (var) { + if (var->type.qualifier == SLANG_QUAL_CONST && + var->initializer && + (var->initializer->type == SLANG_OPER_LITERAL_INT || + var->initializer->type == SLANG_OPER_LITERAL_FLOAT)) { + oper->literal[0] = var->initializer->literal[0]; + oper->literal[1] = var->initializer->literal[1]; + oper->literal[2] = var->initializer->literal[2]; + oper->literal[3] = var->initializer->literal[3]; + oper->literal_size = var->initializer->literal_size; + oper->type = var->initializer->type; + /* + printf("value[%s] = %f\n", + (char*) oper->a_id, oper->literal[0]); + */ + return; + } + } + } } /* first, simplify children */ @@ -146,8 +179,9 @@ _slang_simplify(slang_operation *oper, = oper->children[0].literal[i] + oper->children[1].literal[i]; } oper->literal_size = oper->children[0].literal_size; - slang_operation_destruct(oper); - oper->type = SLANG_OPER_LITERAL_FLOAT; + oper->type = literal_type(oper->children[0].type, + oper->children[1].type); + slang_operation_destruct(oper); /* frees unused children */ return; case SLANG_OPER_SUBTRACT: for (i = 0; i < 4; i++) { @@ -155,8 +189,9 @@ _slang_simplify(slang_operation *oper, = oper->children[0].literal[i] - oper->children[1].literal[i]; } oper->literal_size = oper->children[0].literal_size; + oper->type = literal_type(oper->children[0].type, + oper->children[1].type); slang_operation_destruct(oper); - oper->type = SLANG_OPER_LITERAL_FLOAT; return; case SLANG_OPER_MULTIPLY: for (i = 0; i < 4; i++) { @@ -164,8 +199,9 @@ _slang_simplify(slang_operation *oper, = oper->children[0].literal[i] * oper->children[1].literal[i]; } oper->literal_size = oper->children[0].literal_size; + oper->type = literal_type(oper->children[0].type, + oper->children[1].type); slang_operation_destruct(oper); - oper->type = SLANG_OPER_LITERAL_FLOAT; return; case SLANG_OPER_DIVIDE: for (i = 0; i < 4; i++) { @@ -173,8 +209,9 @@ _slang_simplify(slang_operation *oper, = oper->children[0].literal[i] / oper->children[1].literal[i]; } oper->literal_size = oper->children[0].literal_size; + oper->type = literal_type(oper->children[0].type, + oper->children[1].type); slang_operation_destruct(oper); - oper->type = SLANG_OPER_LITERAL_FLOAT; return; default: ; /* nothing */ diff --git a/src/mesa/shader/slang/slang_typeinfo.c b/src/mesa/shader/slang/slang_typeinfo.c index 26f9f6ca85..b3255512ba 100644 --- a/src/mesa/shader/slang/slang_typeinfo.c +++ b/src/mesa/shader/slang/slang_typeinfo.c @@ -392,7 +392,6 @@ _slang_typeof_operation_(slang_operation * op, switch (op->type) { case SLANG_OPER_BLOCK_NO_NEW_SCOPE: case SLANG_OPER_BLOCK_NEW_SCOPE: - case SLANG_OPER_VARIABLE_DECL: case SLANG_OPER_ASM: case SLANG_OPER_BREAK: case SLANG_OPER_CONTINUE: @@ -477,6 +476,7 @@ _slang_typeof_operation_(slang_operation * op, } break; case SLANG_OPER_IDENTIFIER: + case SLANG_OPER_VARIABLE_DECL: { slang_variable *var; var = _slang_locate_variable(op->locals, op->a_id, GL_TRUE); @@ -875,6 +875,34 @@ _slang_type_is_vector(slang_type_specifier_type ty) /** + * Determine if a type is a float, float vector or float matrix. + * \return GL_TRUE if so, GL_FALSE otherwise + */ +GLboolean +_slang_type_is_float_vec_mat(slang_type_specifier_type ty) +{ + switch (ty) { + case SLANG_SPEC_FLOAT: + case SLANG_SPEC_VEC2: + case SLANG_SPEC_VEC3: + case SLANG_SPEC_VEC4: + case SLANG_SPEC_MAT2: + case SLANG_SPEC_MAT3: + case SLANG_SPEC_MAT4: + case SLANG_SPEC_MAT23: + case SLANG_SPEC_MAT32: + case SLANG_SPEC_MAT24: + case SLANG_SPEC_MAT42: + case SLANG_SPEC_MAT34: + case SLANG_SPEC_MAT43: + return GL_TRUE; + default: + return GL_FALSE; + } +} + + +/** * Given a vector type, return the type of the vector's elements. * For a matrix, return the type of the columns. */ diff --git a/src/mesa/shader/slang/slang_typeinfo.h b/src/mesa/shader/slang/slang_typeinfo.h index 960e99bda2..b3ad06b65c 100644 --- a/src/mesa/shader/slang/slang_typeinfo.h +++ b/src/mesa/shader/slang/slang_typeinfo.h @@ -191,6 +191,9 @@ _slang_type_is_matrix(slang_type_specifier_type); extern GLboolean _slang_type_is_vector(slang_type_specifier_type); +extern GLboolean +_slang_type_is_float_vec_mat(slang_type_specifier_type); + extern slang_type_specifier_type _slang_type_base(slang_type_specifier_type); diff --git a/src/mesa/shader/slang/slang_vartable.c b/src/mesa/shader/slang/slang_vartable.c index 68b4e00be0..9b607e6403 100644 --- a/src/mesa/shader/slang/slang_vartable.c +++ b/src/mesa/shader/slang/slang_vartable.c @@ -110,9 +110,10 @@ _slang_pop_var_table(slang_var_table *vt) slang_ir_storage *store = (slang_ir_storage *) t->Vars[i]->aux; GLint j; GLuint comp; - if (dbg) printf(" Free var %s, size %d at %d\n", + if (dbg) printf(" Free var %s, size %d at %d.%s\n", (char*) t->Vars[i]->a_name, store->Size, - store->Index); + store->Index, + _mesa_swizzle_string(store->Swizzle, 0, 0)); if (store->Size == 1) comp = GET_SWZ(store->Swizzle, 0); @@ -159,7 +160,7 @@ _slang_add_variable(slang_var_table *vt, slang_variable *v) assert(vt); t = vt->Top; assert(t); - if (dbg) printf("Adding var %s\n", (char *) v->a_name); + if (dbg) printf("Adding var %s, store %p\n", (char *) v->a_name, v->aux); t->Vars = (slang_variable **) _slang_realloc(t->Vars, t->NumVars * sizeof(slang_variable *), @@ -262,10 +263,11 @@ _slang_alloc_var(slang_var_table *vt, slang_ir_storage *store) } if (dbg) - printf("Alloc var sz %d at %d.%s (level %d)\n", + printf("Alloc var storage sz %d at %d.%s (level %d) store %p\n", store->Size, store->Index, _mesa_swizzle_string(store->Swizzle, 0, 0), - t->Level); + t->Level, + (void*) store); return GL_TRUE; } @@ -283,19 +285,29 @@ _slang_alloc_temp(slang_var_table *vt, slang_ir_storage *store) if (i < 0) return GL_FALSE; + assert(store->Index < 0); + store->Index = i / 4; if (store->Size == 1) { const GLuint comp = i % 4; store->Swizzle = MAKE_SWIZZLE4(comp, comp, comp, comp); - if (dbg) printf("Alloc temp sz %d at %d.%c (level %d)\n", - store->Size, store->Index, "xyzw"[comp], t->Level); } else { /* XXX improve swizzled for size=2/3, use for writemask... */ +#if 1 + if (store->Size == 2) { + store->Swizzle = MAKE_SWIZZLE4(SWIZZLE_X, SWIZZLE_Y, + SWIZZLE_NIL, SWIZZLE_NIL); + } +#endif store->Swizzle = SWIZZLE_NOOP; - if (dbg) printf("Alloc temp sz %d at %d.xyzw (level %d)\n", - store->Size, store->Index, t->Level); } + + if (dbg) printf("Alloc temp sz %d at %d.%s (level %d) store %p\n", + store->Size, store->Index, + _mesa_swizzle_string(store->Swizzle, 0, 0), t->Level, + (void *) store); + return GL_TRUE; } @@ -309,7 +321,10 @@ _slang_free_temp(slang_var_table *vt, slang_ir_storage *store) assert(store->Size > 0); assert(r >= 0); assert(r + store->Size <= vt->MaxRegisters * 4); - if (dbg) printf("Free temp sz %d at %d (level %d)\n", store->Size, r, t->Level); + if (dbg) printf("Free temp sz %d at %d.%s (level %d) store %p\n", + store->Size, r, + _mesa_swizzle_string(store->Swizzle, 0, 0), + t->Level, (void *) store); if (store->Size == 1) { const GLuint comp = GET_SWZ(store->Swizzle, 0); /* we can actually fail some of these assertions because of the @@ -319,8 +334,8 @@ _slang_free_temp(slang_var_table *vt, slang_ir_storage *store) assert(store->Swizzle == MAKE_SWIZZLE4(comp, comp, comp, comp)); assert(comp < 4); assert(t->ValSize[r * 4 + comp] == 1); - assert(t->Temps[r * 4 + comp] == TEMP); #endif + assert(t->Temps[r * 4 + comp] == TEMP); t->Temps[r * 4 + comp] = FREE; } else { |