diff options
Diffstat (limited to 'src/mesa/shader')
65 files changed, 7551 insertions, 5259 deletions
diff --git a/src/mesa/shader/arbprogparse.c b/src/mesa/shader/arbprogparse.c index 39988b5fca6..2e0fc3694a4 100644 --- a/src/mesa/shader/arbprogparse.c +++ b/src/mesa/shader/arbprogparse.c @@ -30,6 +30,27 @@ * \author Karl Rasche */ +/** +Notes on program parameters, etc. + +The instructions we emit will use six kinds of source registers: + + PROGRAM_INPUT - input registers + PROGRAM_TEMPORARY - temp registers + PROGRAM_ADDRESS - address/indirect register + PROGRAM_SAMPLER - texture sampler + PROGRAM_CONSTANT - indexes into program->Parameters, a known constant/literal + PROGRAM_STATE_VAR - indexes into program->Parameters, and may actually be: + + a state variable, like "state.fog.color", or + + a pointer to a "program.local[k]" parameter, or + + a pointer to a "program.env[k]" parameter + +Basically, all the program.local[] and program.env[] values will get mapped +into the unified gl_program->Parameters array. This solves the problem of +having three separate program parameter arrays. +*/ + + #include "main/glheader.h" #include "main/imports.h" #include "main/context.h" @@ -38,16 +59,11 @@ #include "shader/grammar/grammar_mesa.h" #include "arbprogparse.h" #include "program.h" +#include "programopt.h" #include "prog_parameter.h" #include "prog_statevars.h" #include "prog_instruction.h" - -/* For ARB programs, use the NV instruction limits */ -#define MAX_INSTRUCTIONS MAX2(MAX_NV_FRAGMENT_PROGRAM_INSTRUCTIONS, \ - MAX_NV_VERTEX_PROGRAM_INSTRUCTIONS) - - /** * This is basically a union of the vertex_program and fragment_program * structs that we can use to parse the program into @@ -963,6 +979,8 @@ parse_output_color_num (GLcontext * ctx, const GLubyte ** inst, /** + * Validate the index of a texture coordinate + * * \param coord The texture unit index * \return 0 on sucess, 1 on error */ @@ -972,8 +990,8 @@ parse_texcoord_num (GLcontext * ctx, const GLubyte ** inst, { GLint i = parse_integer (inst, Program); - if ((i < 0) || (i >= (int)ctx->Const.MaxTextureUnits)) { - program_error(ctx, Program->Position, "Invalid texture unit index"); + if ((i < 0) || (i >= (int)ctx->Const.MaxTextureCoordUnits)) { + program_error(ctx, Program->Position, "Invalid texture coordinate index"); return 1; } @@ -981,6 +999,29 @@ parse_texcoord_num (GLcontext * ctx, const GLubyte ** inst, return 0; } + +/** + * Validate the index of a texture image unit + * + * \param coord The texture unit index + * \return 0 on sucess, 1 on error + */ +static GLuint +parse_teximage_num (GLcontext * ctx, const GLubyte ** inst, + struct arb_program *Program, GLuint * coord) +{ + GLint i = parse_integer (inst, Program); + + if ((i < 0) || (i >= (int)ctx->Const.MaxTextureImageUnits)) { + program_error(ctx, Program->Position, "Invalid texture image index"); + return 1; + } + + *coord = (GLuint) i; + return 0; +} + + /** * \param coord The weight index * \return 0 on sucess, 1 on error @@ -1870,7 +1911,11 @@ parse_param_elements (GLcontext * ctx, const GLubyte ** inst, const_values, 4); if (param_var->param_binding_begin == ~0U) param_var->param_binding_begin = idx; - param_var->param_binding_type = PROGRAM_CONSTANT; + param_var->param_binding_type = PROGRAM_STATE_VAR; + /* Note: when we reference this parameter in an instruction later, + * we'll check if it's really a constant/immediate and set the + * instruction register type appropriately. + */ param_var->param_binding_length++; Program->Base.NumParameters++; break; @@ -2577,6 +2622,18 @@ parse_src_reg (GLcontext * ctx, const GLubyte ** inst, return 1; } + if (*File == PROGRAM_STATE_VAR) { + enum register_file file; + + /* If we're referencing the Program->Parameters[] array, check if the + * parameter is really a constant/literal. If so, set File to CONSTANT. + */ + assert(*Index < (GLint) Program->Base.Parameters->NumParameters); + file = Program->Base.Parameters->Parameters[*Index].Type; + if (file == PROGRAM_CONSTANT) + *File = PROGRAM_CONSTANT; + } + /* Add attributes to InputsRead only if they are used the program. * This avoids the handling of unused ATTRIB declarations in the drivers. */ if (*File == PROGRAM_INPUT) @@ -3003,7 +3060,7 @@ parse_fp_instruction (GLcontext * ctx, const GLubyte ** inst, return 1; /* texImageUnit */ - if (parse_texcoord_num (ctx, inst, Program, &texcoord)) + if (parse_teximage_num (ctx, inst, Program, &texcoord)) return 1; fp->TexSrcUnit = texcoord; @@ -3353,11 +3410,11 @@ debug_variables (GLcontext * ctx, struct var_cache *vc_head, fprintf (stderr, "%s\n", Program->Base.Parameters->Parameters[a + b].Name); if (Program->Base.Parameters->Parameters[a + b].Type == PROGRAM_STATE_VAR) { - const char *s; + char *s; s = _mesa_program_state_string(Program->Base.Parameters->Parameters [a + b].StateIndexes); fprintf(stderr, "%s\n", s); - _mesa_free((char *) s); + _mesa_free(s); } else fprintf (stderr, "%f %f %f %f\n", @@ -3405,7 +3462,7 @@ parse_instructions(GLcontext * ctx, const GLubyte * inst, : ctx->Const.VertexProgram.MaxInstructions; GLint err = 0; - ASSERT(MAX_INSTRUCTIONS >= maxInst); + ASSERT(MAX_PROGRAM_INSTRUCTIONS >= maxInst); Program->MajorVersion = (GLuint) * inst++; Program->MinorVersion = (GLuint) * inst++; @@ -3591,8 +3648,7 @@ enable_parser_extensions(GLcontext *ctx, grammar id) if (ctx->Extensions.NV_texture_rectangle && !enable_ext(ctx, id, "texture_rectangle")) return GL_FALSE; - if (ctx->Extensions.ARB_draw_buffers - && !enable_ext(ctx, id, "draw_buffers")) + if (!enable_ext(ctx, id, "draw_buffers")) return GL_FALSE; if (ctx->Extensions.MESA_texture_array && !enable_ext(ctx, id, "texture_array")) @@ -3760,7 +3816,7 @@ _mesa_parse_arb_program(GLcontext *ctx, GLenum target, /* Initialize the arb_program struct */ program->Base.String = strz; - program->Base.Instructions = _mesa_alloc_instructions(MAX_INSTRUCTIONS); + program->Base.Instructions = _mesa_alloc_instructions(MAX_PROGRAM_INSTRUCTIONS); program->Base.NumInstructions = program->Base.NumTemporaries = program->Base.NumParameters = @@ -3805,12 +3861,12 @@ _mesa_parse_arb_program(GLcontext *ctx, GLenum target, _mesa_free (parsed); - /* Reallocate the instruction array from size [MAX_INSTRUCTIONS] + /* Reallocate the instruction array from size [MAX_PROGRAM_INSTRUCTIONS] * to size [ap.Base.NumInstructions]. */ program->Base.Instructions = _mesa_realloc_instructions(program->Base.Instructions, - MAX_INSTRUCTIONS, + MAX_PROGRAM_INSTRUCTIONS, program->Base.NumInstructions); return !err; @@ -3874,6 +3930,16 @@ _mesa_parse_arb_fragment_program(GLcontext* ctx, GLenum target, _mesa_free_parameter_list(program->Base.Parameters); program->Base.Parameters = ap.Base.Parameters; + /* Append fog instructions now if the program has "OPTION ARB_fog_exp" + * or similar. We used to leave this up to drivers, but it appears + * there's no hardware that wants to do fog in a discrete stage separate + * from the fragment shader. + */ + if (program->FogOption != GL_NONE) { + _mesa_append_fog_code(ctx, program); + program->FogOption = GL_NONE; + } + #if DEBUG_FP _mesa_printf("____________Fragment program %u ________\n", program->Base.Id); _mesa_print_program(&program->Base); diff --git a/src/mesa/shader/arbprogram.c b/src/mesa/shader/arbprogram.c index 760dac23993..7831e0faf98 100644 --- a/src/mesa/shader/arbprogram.c +++ b/src/mesa/shader/arbprogram.c @@ -335,10 +335,6 @@ _mesa_GetVertexAttribfvARB(GLuint index, GLenum pname, GLfloat *params) COPY_4V(params, ctx->Current.Attrib[VERT_ATTRIB_GENERIC0 + index]); break; case GL_VERTEX_ATTRIB_ARRAY_BUFFER_BINDING_ARB: - if (!ctx->Extensions.ARB_vertex_buffer_object) { - _mesa_error(ctx, GL_INVALID_ENUM, "glGetVertexAttribfvARB(pname)"); - return; - } params[0] = (GLfloat) ctx->Array.ArrayObj->VertexAttrib[index].BufferObj->Name; break; default: @@ -807,6 +803,7 @@ _mesa_GetProgramLocalParameterdvARB(GLenum target, GLuint index, { GET_CURRENT_CONTEXT(ctx); GLfloat floatParams[4]; + ASSIGN_4V(floatParams, 0.0F, 0.0F, 0.0F, 0.0F); _mesa_GetProgramLocalParameterfvARB(target, index, floatParams); if (ctx->ErrorValue == GL_NO_ERROR) { COPY_4V(params, floatParams); diff --git a/src/mesa/shader/atifragshader.h b/src/mesa/shader/atifragshader.h index 32fb3a80190..e1dc20e6065 100644 --- a/src/mesa/shader/atifragshader.h +++ b/src/mesa/shader/atifragshader.h @@ -8,6 +8,8 @@ #ifndef ATIFRAGSHADER_H #define ATIFRAGSHADER_H +#include "main/mtypes.h" + #define MAX_NUM_INSTRUCTIONS_PER_PASS_ATI 8 #define MAX_NUM_PASSES_ATI 2 #define MAX_NUM_FRAGMENT_REGISTERS_ATI 6 diff --git a/src/mesa/shader/grammar/descrip.mms b/src/mesa/shader/grammar/descrip.mms deleted file mode 100644 index 6976b70d6ac..00000000000 --- a/src/mesa/shader/grammar/descrip.mms +++ /dev/null @@ -1,42 +0,0 @@ -# Makefile for core library for VMS -# contributed by Jouk Jansen [email protected] -# Last revision : 29 September 2008 - -.first - define gl [----.include.gl] - define math [--.math] - define swrast [--.swrast] - define array_cache [--.array_cache] - define main [--.main] - -.include [----]mms-config. - -##### MACROS ##### - -VPATH = RCS - -INCDIR = [----.include],[],[--.main],[--.glapi],[-.slang] -LIBDIR = [----.lib] -CFLAGS = /include=($(INCDIR),[])/define=(PTHREADS=1)/name=(as_is,short)/float=ieee/ieee=denorm - -SOURCES = grammar_mesa.c - -OBJECTS = grammar_mesa.obj - -##### RULES ##### - -VERSION=Mesa V3.4 - -##### TARGETS ##### -all : - $(MMS)$(MMSQUALIFIERS) $(LIBDIR)$(GL_LIB) - -# Make the library -$(LIBDIR)$(GL_LIB) : $(OBJECTS) - @ library $(LIBDIR)$(GL_LIB) $(OBJECTS) - -clean : - purge - delete *.obj;* - -grammar_mesa.obj : grammar_mesa.c grammar.c diff --git a/src/mesa/shader/nvprogram.c b/src/mesa/shader/nvprogram.c index 88272fff3ff..16116c4339e 100644 --- a/src/mesa/shader/nvprogram.c +++ b/src/mesa/shader/nvprogram.c @@ -469,10 +469,6 @@ _mesa_GetVertexAttribivNV(GLuint index, GLenum pname, GLint *params) params[3] = (GLint) ctx->Current.Attrib[index][3]; break; case GL_VERTEX_ATTRIB_ARRAY_BUFFER_BINDING_ARB: - if (!ctx->Extensions.ARB_vertex_buffer_object) { - _mesa_error(ctx, GL_INVALID_ENUM, "glGetVertexAttribdvNV"); - return; - } params[0] = ctx->Array.ArrayObj->VertexAttrib[index].BufferObj->Name; break; default: diff --git a/src/mesa/shader/prog_cache.c b/src/mesa/shader/prog_cache.c index 36a25377c55..9437e596138 100644 --- a/src/mesa/shader/prog_cache.c +++ b/src/mesa/shader/prog_cache.c @@ -44,6 +44,7 @@ struct cache_item struct gl_program_cache { struct cache_item **items; + struct cache_item *last; GLuint size, n_items; }; @@ -83,6 +84,8 @@ rehash(struct gl_program_cache *cache) struct cache_item *c, *next; GLuint size, i; + cache->last = NULL; + size = cache->size * 3; items = (struct cache_item**) _mesa_malloc(size * sizeof(*items)); _mesa_memset(items, 0, size * sizeof(*items)); @@ -105,6 +108,8 @@ clear_cache(GLcontext *ctx, struct gl_program_cache *cache) { struct cache_item *c, *next; GLuint i; + + cache->last = NULL; for (i = 0; i < cache->size; i++) { for (c = cache->items[i]; c; c = next) { @@ -149,18 +154,26 @@ _mesa_delete_program_cache(GLcontext *ctx, struct gl_program_cache *cache) struct gl_program * -_mesa_search_program_cache(const struct gl_program_cache *cache, +_mesa_search_program_cache(struct gl_program_cache *cache, const void *key, GLuint keysize) { - const GLuint hash = hash_key(key, keysize); - struct cache_item *c; - - for (c = cache->items[hash % cache->size]; c; c = c->next) { - if (c->hash == hash && memcmp(c->key, key, keysize) == 0) - return c->program; + if (cache->last && + memcmp(cache->last->key, key, keysize) == 0) { + return cache->last->program; } + else { + const GLuint hash = hash_key(key, keysize); + struct cache_item *c; + + for (c = cache->items[hash % cache->size]; c; c = c->next) { + if (c->hash == hash && memcmp(c->key, key, keysize) == 0) { + cache->last = c; + return c->program; + } + } - return NULL; + return NULL; + } } diff --git a/src/mesa/shader/prog_cache.h b/src/mesa/shader/prog_cache.h index a8c91fba011..4e1ccac03ff 100644 --- a/src/mesa/shader/prog_cache.h +++ b/src/mesa/shader/prog_cache.h @@ -42,7 +42,7 @@ _mesa_delete_program_cache(GLcontext *ctx, struct gl_program_cache *pc); extern struct gl_program * -_mesa_search_program_cache(const struct gl_program_cache *cache, +_mesa_search_program_cache(struct gl_program_cache *cache, const void *key, GLuint keysize); extern void diff --git a/src/mesa/shader/prog_execute.c b/src/mesa/shader/prog_execute.c index 923611b7975..a93733c0852 100644 --- a/src/mesa/shader/prog_execute.c +++ b/src/mesa/shader/prog_execute.c @@ -43,7 +43,7 @@ #include "prog_instruction.h" #include "prog_parameter.h" #include "prog_print.h" -#include "shader/slang/slang_library_noise.h" +#include "prog_noise.h" /* debug predicate */ @@ -705,7 +705,7 @@ _mesa_execute_program(GLcontext * ctx, { GLfloat t[4]; fetch_vector4(&inst->SrcReg[0], machine, t); - machine->AddressReg[0][0] = (GLint) FLOORF(t[0]); + machine->AddressReg[0][0] = IFLOOR(t[0]); } break; case OPCODE_BGNLOOP: @@ -963,7 +963,10 @@ _mesa_execute_program(GLcontext * ctx, { GLfloat a[4], result[4]; fetch_vector1(&inst->SrcReg[0], machine, a); - result[0] = result[1] = result[2] = result[3] = LOG2(a[0]); + /* The fast LOG2 macro doesn't meet the precision requirements. + */ + result[0] = result[1] = result[2] = result[3] = + (log(a[0]) * 1.442695F); store_vector4(inst, machine, result); } break; @@ -1022,7 +1025,11 @@ _mesa_execute_program(GLcontext * ctx, GLfloat mantissa = FREXPF(t[0], &exponent); q[0] = (GLfloat) (exponent - 1); q[1] = (GLfloat) (2.0 * mantissa); /* map [.5, 1) -> [1, 2) */ - q[2] = (GLfloat) (q[0] + LOG2(q[1])); + + /* The fast LOG2 macro doesn't meet the precision + * requirements. + */ + q[2] = (log(t[0]) * 1.442695F); } } else { @@ -1137,7 +1144,8 @@ _mesa_execute_program(GLcontext * ctx, fetch_vector1(&inst->SrcReg[0], machine, a); result[0] = result[1] = - result[2] = result[3] = _slang_library_noise1(a[0]); + result[2] = + result[3] = _mesa_noise1(a[0]); store_vector4(inst, machine, result); } break; @@ -1147,7 +1155,7 @@ _mesa_execute_program(GLcontext * ctx, fetch_vector4(&inst->SrcReg[0], machine, a); result[0] = result[1] = - result[2] = result[3] = _slang_library_noise2(a[0], a[1]); + result[2] = result[3] = _mesa_noise2(a[0], a[1]); store_vector4(inst, machine, result); } break; @@ -1158,7 +1166,7 @@ _mesa_execute_program(GLcontext * ctx, result[0] = result[1] = result[2] = - result[3] = _slang_library_noise3(a[0], a[1], a[2]); + result[3] = _mesa_noise3(a[0], a[1], a[2]); store_vector4(inst, machine, result); } break; @@ -1169,7 +1177,7 @@ _mesa_execute_program(GLcontext * ctx, result[0] = result[1] = result[2] = - result[3] = _slang_library_noise4(a[0], a[1], a[2], a[3]); + result[3] = _mesa_noise4(a[0], a[1], a[2], a[3]); store_vector4(inst, machine, result); } break; diff --git a/src/mesa/shader/prog_execute.h b/src/mesa/shader/prog_execute.h index 18b13e11a41..8ceb7b092e8 100644 --- a/src/mesa/shader/prog_execute.h +++ b/src/mesa/shader/prog_execute.h @@ -25,6 +25,8 @@ #ifndef PROG_EXECUTE_H #define PROG_EXECUTE_H +#include "main/config.h" + typedef void (*FetchTexelLodFunc)(GLcontext *ctx, const GLfloat texcoord[4], GLfloat lambda, GLuint unit, GLfloat color[4]); @@ -36,10 +38,6 @@ typedef void (*FetchTexelDerivFunc)(GLcontext *ctx, const GLfloat texcoord[4], GLuint unit, GLfloat color[4]); -/** The larger of VERT_RESULT_MAX, FRAG_RESULT_MAX */ -#define MAX_PROGRAM_OUTPUTS VERT_RESULT_MAX - - /** * Virtual machine state used during execution of vertex/fragment programs. */ diff --git a/src/mesa/shader/prog_instruction.c b/src/mesa/shader/prog_instruction.c index f5c0a498fb0..4a6d0d670ac 100644 --- a/src/mesa/shader/prog_instruction.c +++ b/src/mesa/shader/prog_instruction.c @@ -1,8 +1,9 @@ /* * Mesa 3-D graphics library - * Version: 6.5.3 + * Version: 7.3 * - * Copyright (C) 1999-2005 Brian Paul All Rights Reserved. + * Copyright (C) 1999-2008 Brian Paul All Rights Reserved. + * Copyright (C) 1999-2009 VMware, Inc. All Rights Reserved. * * Permission is hereby granted, free of charge, to any person obtaining a * copy of this software and associated documentation files (the "Software"), @@ -157,7 +158,7 @@ static const struct instruction_info InstInfo[MAX_OPCODE] = { { OPCODE_AND, "AND", 2, 1 }, { OPCODE_ARA, "ARA", 1, 1 }, { OPCODE_ARL, "ARL", 1, 1 }, - { OPCODE_ARL_NV, "ARL", 1, 1 }, + { OPCODE_ARL_NV, "ARL_NV", 1, 1 }, { OPCODE_ARR, "ARL", 1, 1 }, { OPCODE_BGNLOOP,"BGNLOOP", 0, 0 }, { OPCODE_BGNSUB, "BGNSUB", 0, 0 }, @@ -186,7 +187,7 @@ static const struct instruction_info InstInfo[MAX_OPCODE] = { { OPCODE_FRC, "FRC", 1, 1 }, { OPCODE_IF, "IF", 1, 0 }, { OPCODE_KIL, "KIL", 1, 0 }, - { OPCODE_KIL_NV, "KIL", 0, 0 }, + { OPCODE_KIL_NV, "KIL_NV", 0, 0 }, { OPCODE_LG2, "LG2", 1, 1 }, { OPCODE_LIT, "LIT", 1, 1 }, { OPCODE_LOG, "LOG", 1, 1 }, @@ -235,7 +236,7 @@ static const struct instruction_info InstInfo[MAX_OPCODE] = { { OPCODE_TXD, "TXD", 3, 1 }, { OPCODE_TXL, "TXL", 1, 1 }, { OPCODE_TXP, "TXP", 1, 1 }, - { OPCODE_TXP_NV, "TXP", 1, 1 }, + { OPCODE_TXP_NV, "TXP_NV", 1, 1 }, { OPCODE_TRUNC, "TRUNC", 1, 1 }, { OPCODE_UP2H, "UP2H", 1, 1 }, { OPCODE_UP2US, "UP2US", 1, 1 }, diff --git a/src/mesa/shader/prog_instruction.h b/src/mesa/shader/prog_instruction.h index 268afc528c4..c649b3db5ee 100644 --- a/src/mesa/shader/prog_instruction.h +++ b/src/mesa/shader/prog_instruction.h @@ -418,11 +418,13 @@ struct prog_instruction */ GLint BranchTarget; +#if 01 /* XXX just use this for i965 driver for now! */ /** * For TEX instructions in shaders, the sampler to use for the * texture lookup. */ GLint Sampler; +#endif const char *Comment; }; diff --git a/src/mesa/shader/prog_noise.c b/src/mesa/shader/prog_noise.c new file mode 100644 index 00000000000..1713ddb5f34 --- /dev/null +++ b/src/mesa/shader/prog_noise.c @@ -0,0 +1,638 @@ +/* + * Mesa 3-D graphics library + * Version: 6.5 + * + * Copyright (C) 2006 Brian Paul All Rights Reserved. + * + * Permission is hereby granted, free of charge, to any person obtaining a + * copy of this software and associated documentation files (the "Software"), + * to deal in the Software without restriction, including without limitation + * the rights to use, copy, modify, merge, publish, distribute, sublicense, + * and/or sell copies of the Software, and to permit persons to whom the + * Software is furnished to do so, subject to the following conditions: + * + * The above copyright notice and this permission notice shall be included + * in all copies or substantial portions of the Software. + * + * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS + * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, + * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL + * BRIAN PAUL BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN + * AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN + * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. + */ + +/* + * SimplexNoise1234 + * Copyright (c) 2003-2005, Stefan Gustavson + * + * Contact: [email protected] + */ + +/** + * \file + * \brief C implementation of Perlin Simplex Noise over 1, 2, 3 and 4 dims. + * \author Stefan Gustavson ([email protected]) + * + * + * This implementation is "Simplex Noise" as presented by + * Ken Perlin at a relatively obscure and not often cited course + * session "Real-Time Shading" at Siggraph 2001 (before real + * time shading actually took on), under the title "hardware noise". + * The 3D function is numerically equivalent to his Java reference + * code available in the PDF course notes, although I re-implemented + * it from scratch to get more readable code. The 1D, 2D and 4D cases + * were implemented from scratch by me from Ken Perlin's text. + * + * This file has no dependencies on any other file, not even its own + * header file. The header file is made for use by external code only. + */ + + +#include "main/imports.h" +#include "prog_noise.h" + +#define FASTFLOOR(x) ( ((x)>0) ? ((int)x) : (((int)x)-1) ) + +/* + * --------------------------------------------------------------------- + * Static data + */ + +/** + * Permutation table. This is just a random jumble of all numbers 0-255, + * repeated twice to avoid wrapping the index at 255 for each lookup. + * This needs to be exactly the same for all instances on all platforms, + * so it's easiest to just keep it as static explicit data. + * This also removes the need for any initialisation of this class. + * + * Note that making this an int[] instead of a char[] might make the + * code run faster on platforms with a high penalty for unaligned single + * byte addressing. Intel x86 is generally single-byte-friendly, but + * some other CPUs are faster with 4-aligned reads. + * However, a char[] is smaller, which avoids cache trashing, and that + * is probably the most important aspect on most architectures. + * This array is accessed a *lot* by the noise functions. + * A vector-valued noise over 3D accesses it 96 times, and a + * float-valued 4D noise 64 times. We want this to fit in the cache! + */ +unsigned char perm[512] = { 151, 160, 137, 91, 90, 15, + 131, 13, 201, 95, 96, 53, 194, 233, 7, 225, 140, 36, 103, 30, 69, 142, 8, + 99, 37, 240, 21, 10, 23, + 190, 6, 148, 247, 120, 234, 75, 0, 26, 197, 62, 94, 252, 219, 203, 117, 35, + 11, 32, 57, 177, 33, + 88, 237, 149, 56, 87, 174, 20, 125, 136, 171, 168, 68, 175, 74, 165, 71, + 134, 139, 48, 27, 166, + 77, 146, 158, 231, 83, 111, 229, 122, 60, 211, 133, 230, 220, 105, 92, 41, + 55, 46, 245, 40, 244, + 102, 143, 54, 65, 25, 63, 161, 1, 216, 80, 73, 209, 76, 132, 187, 208, 89, + 18, 169, 200, 196, + 135, 130, 116, 188, 159, 86, 164, 100, 109, 198, 173, 186, 3, 64, 52, 217, + 226, 250, 124, 123, + 5, 202, 38, 147, 118, 126, 255, 82, 85, 212, 207, 206, 59, 227, 47, 16, 58, + 17, 182, 189, 28, 42, + 223, 183, 170, 213, 119, 248, 152, 2, 44, 154, 163, 70, 221, 153, 101, 155, + 167, 43, 172, 9, + 129, 22, 39, 253, 19, 98, 108, 110, 79, 113, 224, 232, 178, 185, 112, 104, + 218, 246, 97, 228, + 251, 34, 242, 193, 238, 210, 144, 12, 191, 179, 162, 241, 81, 51, 145, 235, + 249, 14, 239, 107, + 49, 192, 214, 31, 181, 199, 106, 157, 184, 84, 204, 176, 115, 121, 50, 45, + 127, 4, 150, 254, + 138, 236, 205, 93, 222, 114, 67, 29, 24, 72, 243, 141, 128, 195, 78, 66, + 215, 61, 156, 180, + 151, 160, 137, 91, 90, 15, + 131, 13, 201, 95, 96, 53, 194, 233, 7, 225, 140, 36, 103, 30, 69, 142, 8, + 99, 37, 240, 21, 10, 23, + 190, 6, 148, 247, 120, 234, 75, 0, 26, 197, 62, 94, 252, 219, 203, 117, 35, + 11, 32, 57, 177, 33, + 88, 237, 149, 56, 87, 174, 20, 125, 136, 171, 168, 68, 175, 74, 165, 71, + 134, 139, 48, 27, 166, + 77, 146, 158, 231, 83, 111, 229, 122, 60, 211, 133, 230, 220, 105, 92, 41, + 55, 46, 245, 40, 244, + 102, 143, 54, 65, 25, 63, 161, 1, 216, 80, 73, 209, 76, 132, 187, 208, 89, + 18, 169, 200, 196, + 135, 130, 116, 188, 159, 86, 164, 100, 109, 198, 173, 186, 3, 64, 52, 217, + 226, 250, 124, 123, + 5, 202, 38, 147, 118, 126, 255, 82, 85, 212, 207, 206, 59, 227, 47, 16, 58, + 17, 182, 189, 28, 42, + 223, 183, 170, 213, 119, 248, 152, 2, 44, 154, 163, 70, 221, 153, 101, 155, + 167, 43, 172, 9, + 129, 22, 39, 253, 19, 98, 108, 110, 79, 113, 224, 232, 178, 185, 112, 104, + 218, 246, 97, 228, + 251, 34, 242, 193, 238, 210, 144, 12, 191, 179, 162, 241, 81, 51, 145, 235, + 249, 14, 239, 107, + 49, 192, 214, 31, 181, 199, 106, 157, 184, 84, 204, 176, 115, 121, 50, 45, + 127, 4, 150, 254, + 138, 236, 205, 93, 222, 114, 67, 29, 24, 72, 243, 141, 128, 195, 78, 66, + 215, 61, 156, 180 +}; + +/* + * --------------------------------------------------------------------- + */ + +/* + * Helper functions to compute gradients-dot-residualvectors (1D to 4D) + * Note that these generate gradients of more than unit length. To make + * a close match with the value range of classic Perlin noise, the final + * noise values need to be rescaled to fit nicely within [-1,1]. + * (The simplex noise functions as such also have different scaling.) + * Note also that these noise functions are the most practical and useful + * signed version of Perlin noise. To return values according to the + * RenderMan specification from the SL noise() and pnoise() functions, + * the noise values need to be scaled and offset to [0,1], like this: + * float SLnoise = (SimplexNoise1234::noise(x,y,z) + 1.0) * 0.5; + */ + +static float +grad1(int hash, float x) +{ + int h = hash & 15; + float grad = 1.0f + (h & 7); /* Gradient value 1.0, 2.0, ..., 8.0 */ + if (h & 8) + grad = -grad; /* Set a random sign for the gradient */ + return (grad * x); /* Multiply the gradient with the distance */ +} + +static float +grad2(int hash, float x, float y) +{ + int h = hash & 7; /* Convert low 3 bits of hash code */ + float u = h < 4 ? x : y; /* into 8 simple gradient directions, */ + float v = h < 4 ? y : x; /* and compute the dot product with (x,y). */ + return ((h & 1) ? -u : u) + ((h & 2) ? -2.0f * v : 2.0f * v); +} + +static float +grad3(int hash, float x, float y, float z) +{ + int h = hash & 15; /* Convert low 4 bits of hash code into 12 simple */ + float u = h < 8 ? x : y; /* gradient directions, and compute dot product. */ + float v = h < 4 ? y : h == 12 || h == 14 ? x : z; /* Fix repeats at h = 12 to 15 */ + return ((h & 1) ? -u : u) + ((h & 2) ? -v : v); +} + +static float +grad4(int hash, float x, float y, float z, float t) +{ + int h = hash & 31; /* Convert low 5 bits of hash code into 32 simple */ + float u = h < 24 ? x : y; /* gradient directions, and compute dot product. */ + float v = h < 16 ? y : z; + float w = h < 8 ? z : t; + return ((h & 1) ? -u : u) + ((h & 2) ? -v : v) + ((h & 4) ? -w : w); +} + +/** + * A lookup table to traverse the simplex around a given point in 4D. + * Details can be found where this table is used, in the 4D noise method. + * TODO: This should not be required, backport it from Bill's GLSL code! + */ +static unsigned char simplex[64][4] = { + {0, 1, 2, 3}, {0, 1, 3, 2}, {0, 0, 0, 0}, {0, 2, 3, 1}, + {0, 0, 0, 0}, {0, 0, 0, 0}, {0, 0, 0, 0}, {1, 2, 3, 0}, + {0, 2, 1, 3}, {0, 0, 0, 0}, {0, 3, 1, 2}, {0, 3, 2, 1}, + {0, 0, 0, 0}, {0, 0, 0, 0}, {0, 0, 0, 0}, {1, 3, 2, 0}, + {0, 0, 0, 0}, {0, 0, 0, 0}, {0, 0, 0, 0}, {0, 0, 0, 0}, + {0, 0, 0, 0}, {0, 0, 0, 0}, {0, 0, 0, 0}, {0, 0, 0, 0}, + {1, 2, 0, 3}, {0, 0, 0, 0}, {1, 3, 0, 2}, {0, 0, 0, 0}, + {0, 0, 0, 0}, {0, 0, 0, 0}, {2, 3, 0, 1}, {2, 3, 1, 0}, + {1, 0, 2, 3}, {1, 0, 3, 2}, {0, 0, 0, 0}, {0, 0, 0, 0}, + {0, 0, 0, 0}, {2, 0, 3, 1}, {0, 0, 0, 0}, {2, 1, 3, 0}, + {0, 0, 0, 0}, {0, 0, 0, 0}, {0, 0, 0, 0}, {0, 0, 0, 0}, + {0, 0, 0, 0}, {0, 0, 0, 0}, {0, 0, 0, 0}, {0, 0, 0, 0}, + {2, 0, 1, 3}, {0, 0, 0, 0}, {0, 0, 0, 0}, {0, 0, 0, 0}, + {3, 0, 1, 2}, {3, 0, 2, 1}, {0, 0, 0, 0}, {3, 1, 2, 0}, + {2, 1, 0, 3}, {0, 0, 0, 0}, {0, 0, 0, 0}, {0, 0, 0, 0}, + {3, 1, 0, 2}, {0, 0, 0, 0}, {3, 2, 0, 1}, {3, 2, 1, 0} +}; + + +/** 1D simplex noise */ +GLfloat +_mesa_noise1(GLfloat x) +{ + int i0 = FASTFLOOR(x); + int i1 = i0 + 1; + float x0 = x - i0; + float x1 = x0 - 1.0f; + float t1 = 1.0f - x1 * x1; + float n0, n1; + + float t0 = 1.0f - x0 * x0; +/* if(t0 < 0.0f) t0 = 0.0f; // this never happens for the 1D case */ + t0 *= t0; + n0 = t0 * t0 * grad1(perm[i0 & 0xff], x0); + +/* if(t1 < 0.0f) t1 = 0.0f; // this never happens for the 1D case */ + t1 *= t1; + n1 = t1 * t1 * grad1(perm[i1 & 0xff], x1); + /* The maximum value of this noise is 8*(3/4)^4 = 2.53125 */ + /* A factor of 0.395 would scale to fit exactly within [-1,1], but */ + /* we want to match PRMan's 1D noise, so we scale it down some more. */ + return 0.25f * (n0 + n1); +} + + +/** 2D simplex noise */ +GLfloat +_mesa_noise2(GLfloat x, GLfloat y) +{ +#define F2 0.366025403f /* F2 = 0.5*(sqrt(3.0)-1.0) */ +#define G2 0.211324865f /* G2 = (3.0-Math.sqrt(3.0))/6.0 */ + + float n0, n1, n2; /* Noise contributions from the three corners */ + + /* Skew the input space to determine which simplex cell we're in */ + float s = (x + y) * F2; /* Hairy factor for 2D */ + float xs = x + s; + float ys = y + s; + int i = FASTFLOOR(xs); + int j = FASTFLOOR(ys); + + float t = (float) (i + j) * G2; + float X0 = i - t; /* Unskew the cell origin back to (x,y) space */ + float Y0 = j - t; + float x0 = x - X0; /* The x,y distances from the cell origin */ + float y0 = y - Y0; + + float x1, y1, x2, y2; + int ii, jj; + float t0, t1, t2; + + /* For the 2D case, the simplex shape is an equilateral triangle. */ + /* Determine which simplex we are in. */ + int i1, j1; /* Offsets for second (middle) corner of simplex in (i,j) coords */ + if (x0 > y0) { + i1 = 1; + j1 = 0; + } /* lower triangle, XY order: (0,0)->(1,0)->(1,1) */ + else { + i1 = 0; + j1 = 1; + } /* upper triangle, YX order: (0,0)->(0,1)->(1,1) */ + + /* A step of (1,0) in (i,j) means a step of (1-c,-c) in (x,y), and */ + /* a step of (0,1) in (i,j) means a step of (-c,1-c) in (x,y), where */ + /* c = (3-sqrt(3))/6 */ + + x1 = x0 - i1 + G2; /* Offsets for middle corner in (x,y) unskewed coords */ + y1 = y0 - j1 + G2; + x2 = x0 - 1.0f + 2.0f * G2; /* Offsets for last corner in (x,y) unskewed coords */ + y2 = y0 - 1.0f + 2.0f * G2; + + /* Wrap the integer indices at 256, to avoid indexing perm[] out of bounds */ + ii = i % 256; + jj = j % 256; + + /* Calculate the contribution from the three corners */ + t0 = 0.5f - x0 * x0 - y0 * y0; + if (t0 < 0.0f) + n0 = 0.0f; + else { + t0 *= t0; + n0 = t0 * t0 * grad2(perm[ii + perm[jj]], x0, y0); + } + + t1 = 0.5f - x1 * x1 - y1 * y1; + if (t1 < 0.0f) + n1 = 0.0f; + else { + t1 *= t1; + n1 = t1 * t1 * grad2(perm[ii + i1 + perm[jj + j1]], x1, y1); + } + + t2 = 0.5f - x2 * x2 - y2 * y2; + if (t2 < 0.0f) + n2 = 0.0f; + else { + t2 *= t2; + n2 = t2 * t2 * grad2(perm[ii + 1 + perm[jj + 1]], x2, y2); + } + + /* Add contributions from each corner to get the final noise value. */ + /* The result is scaled to return values in the interval [-1,1]. */ + return 40.0f * (n0 + n1 + n2); /* TODO: The scale factor is preliminary! */ +} + + +/** 3D simplex noise */ +GLfloat +_mesa_noise3(GLfloat x, GLfloat y, GLfloat z) +{ +/* Simple skewing factors for the 3D case */ +#define F3 0.333333333f +#define G3 0.166666667f + + float n0, n1, n2, n3; /* Noise contributions from the four corners */ + + /* Skew the input space to determine which simplex cell we're in */ + float s = (x + y + z) * F3; /* Very nice and simple skew factor for 3D */ + float xs = x + s; + float ys = y + s; + float zs = z + s; + int i = FASTFLOOR(xs); + int j = FASTFLOOR(ys); + int k = FASTFLOOR(zs); + + float t = (float) (i + j + k) * G3; + float X0 = i - t; /* Unskew the cell origin back to (x,y,z) space */ + float Y0 = j - t; + float Z0 = k - t; + float x0 = x - X0; /* The x,y,z distances from the cell origin */ + float y0 = y - Y0; + float z0 = z - Z0; + + float x1, y1, z1, x2, y2, z2, x3, y3, z3; + int ii, jj, kk; + float t0, t1, t2, t3; + + /* For the 3D case, the simplex shape is a slightly irregular tetrahedron. */ + /* Determine which simplex we are in. */ + int i1, j1, k1; /* Offsets for second corner of simplex in (i,j,k) coords */ + int i2, j2, k2; /* Offsets for third corner of simplex in (i,j,k) coords */ + +/* This code would benefit from a backport from the GLSL version! */ + if (x0 >= y0) { + if (y0 >= z0) { + i1 = 1; + j1 = 0; + k1 = 0; + i2 = 1; + j2 = 1; + k2 = 0; + } /* X Y Z order */ + else if (x0 >= z0) { + i1 = 1; + j1 = 0; + k1 = 0; + i2 = 1; + j2 = 0; + k2 = 1; + } /* X Z Y order */ + else { + i1 = 0; + j1 = 0; + k1 = 1; + i2 = 1; + j2 = 0; + k2 = 1; + } /* Z X Y order */ + } + else { /* x0<y0 */ + if (y0 < z0) { + i1 = 0; + j1 = 0; + k1 = 1; + i2 = 0; + j2 = 1; + k2 = 1; + } /* Z Y X order */ + else if (x0 < z0) { + i1 = 0; + j1 = 1; + k1 = 0; + i2 = 0; + j2 = 1; + k2 = 1; + } /* Y Z X order */ + else { + i1 = 0; + j1 = 1; + k1 = 0; + i2 = 1; + j2 = 1; + k2 = 0; + } /* Y X Z order */ + } + + /* A step of (1,0,0) in (i,j,k) means a step of (1-c,-c,-c) in + * (x,y,z), a step of (0,1,0) in (i,j,k) means a step of + * (-c,1-c,-c) in (x,y,z), and a step of (0,0,1) in (i,j,k) means a + * step of (-c,-c,1-c) in (x,y,z), where c = 1/6. + */ + + x1 = x0 - i1 + G3; /* Offsets for second corner in (x,y,z) coords */ + y1 = y0 - j1 + G3; + z1 = z0 - k1 + G3; + x2 = x0 - i2 + 2.0f * G3; /* Offsets for third corner in (x,y,z) coords */ + y2 = y0 - j2 + 2.0f * G3; + z2 = z0 - k2 + 2.0f * G3; + x3 = x0 - 1.0f + 3.0f * G3;/* Offsets for last corner in (x,y,z) coords */ + y3 = y0 - 1.0f + 3.0f * G3; + z3 = z0 - 1.0f + 3.0f * G3; + + /* Wrap the integer indices at 256 to avoid indexing perm[] out of bounds */ + ii = i % 256; + jj = j % 256; + kk = k % 256; + + /* Calculate the contribution from the four corners */ + t0 = 0.6f - x0 * x0 - y0 * y0 - z0 * z0; + if (t0 < 0.0f) + n0 = 0.0f; + else { + t0 *= t0; + n0 = t0 * t0 * grad3(perm[ii + perm[jj + perm[kk]]], x0, y0, z0); + } + + t1 = 0.6f - x1 * x1 - y1 * y1 - z1 * z1; + if (t1 < 0.0f) + n1 = 0.0f; + else { + t1 *= t1; + n1 = + t1 * t1 * grad3(perm[ii + i1 + perm[jj + j1 + perm[kk + k1]]], x1, + y1, z1); + } + + t2 = 0.6f - x2 * x2 - y2 * y2 - z2 * z2; + if (t2 < 0.0f) + n2 = 0.0f; + else { + t2 *= t2; + n2 = + t2 * t2 * grad3(perm[ii + i2 + perm[jj + j2 + perm[kk + k2]]], x2, + y2, z2); + } + + t3 = 0.6f - x3 * x3 - y3 * y3 - z3 * z3; + if (t3 < 0.0f) + n3 = 0.0f; + else { + t3 *= t3; + n3 = + t3 * t3 * grad3(perm[ii + 1 + perm[jj + 1 + perm[kk + 1]]], x3, y3, + z3); + } + + /* Add contributions from each corner to get the final noise value. + * The result is scaled to stay just inside [-1,1] + */ + return 32.0f * (n0 + n1 + n2 + n3); /* TODO: The scale factor is preliminary! */ +} + + +/** 4D simplex noise */ +GLfloat +_mesa_noise4(GLfloat x, GLfloat y, GLfloat z, GLfloat w) +{ + /* The skewing and unskewing factors are hairy again for the 4D case */ +#define F4 0.309016994f /* F4 = (Math.sqrt(5.0)-1.0)/4.0 */ +#define G4 0.138196601f /* G4 = (5.0-Math.sqrt(5.0))/20.0 */ + + float n0, n1, n2, n3, n4; /* Noise contributions from the five corners */ + + /* Skew the (x,y,z,w) space to determine which cell of 24 simplices we're in */ + float s = (x + y + z + w) * F4; /* Factor for 4D skewing */ + float xs = x + s; + float ys = y + s; + float zs = z + s; + float ws = w + s; + int i = FASTFLOOR(xs); + int j = FASTFLOOR(ys); + int k = FASTFLOOR(zs); + int l = FASTFLOOR(ws); + + float t = (i + j + k + l) * G4; /* Factor for 4D unskewing */ + float X0 = i - t; /* Unskew the cell origin back to (x,y,z,w) space */ + float Y0 = j - t; + float Z0 = k - t; + float W0 = l - t; + + float x0 = x - X0; /* The x,y,z,w distances from the cell origin */ + float y0 = y - Y0; + float z0 = z - Z0; + float w0 = w - W0; + + /* For the 4D case, the simplex is a 4D shape I won't even try to describe. + * To find out which of the 24 possible simplices we're in, we need to + * determine the magnitude ordering of x0, y0, z0 and w0. + * The method below is a good way of finding the ordering of x,y,z,w and + * then find the correct traversal order for the simplex we're in. + * First, six pair-wise comparisons are performed between each possible pair + * of the four coordinates, and the results are used to add up binary bits + * for an integer index. + */ + int c1 = (x0 > y0) ? 32 : 0; + int c2 = (x0 > z0) ? 16 : 0; + int c3 = (y0 > z0) ? 8 : 0; + int c4 = (x0 > w0) ? 4 : 0; + int c5 = (y0 > w0) ? 2 : 0; + int c6 = (z0 > w0) ? 1 : 0; + int c = c1 + c2 + c3 + c4 + c5 + c6; + + int i1, j1, k1, l1; /* The integer offsets for the second simplex corner */ + int i2, j2, k2, l2; /* The integer offsets for the third simplex corner */ + int i3, j3, k3, l3; /* The integer offsets for the fourth simplex corner */ + + float x1, y1, z1, w1, x2, y2, z2, w2, x3, y3, z3, w3, x4, y4, z4, w4; + int ii, jj, kk, ll; + float t0, t1, t2, t3, t4; + + /* + * simplex[c] is a 4-vector with the numbers 0, 1, 2 and 3 in some + * order. Many values of c will never occur, since e.g. x>y>z>w + * makes x<z, y<w and x<w impossible. Only the 24 indices which + * have non-zero entries make any sense. We use a thresholding to + * set the coordinates in turn from the largest magnitude. The + * number 3 in the "simplex" array is at the position of the + * largest coordinate. + */ + i1 = simplex[c][0] >= 3 ? 1 : 0; + j1 = simplex[c][1] >= 3 ? 1 : 0; + k1 = simplex[c][2] >= 3 ? 1 : 0; + l1 = simplex[c][3] >= 3 ? 1 : 0; + /* The number 2 in the "simplex" array is at the second largest coordinate. */ + i2 = simplex[c][0] >= 2 ? 1 : 0; + j2 = simplex[c][1] >= 2 ? 1 : 0; + k2 = simplex[c][2] >= 2 ? 1 : 0; + l2 = simplex[c][3] >= 2 ? 1 : 0; + /* The number 1 in the "simplex" array is at the second smallest coordinate. */ + i3 = simplex[c][0] >= 1 ? 1 : 0; + j3 = simplex[c][1] >= 1 ? 1 : 0; + k3 = simplex[c][2] >= 1 ? 1 : 0; + l3 = simplex[c][3] >= 1 ? 1 : 0; + /* The fifth corner has all coordinate offsets = 1, so no need to look that up. */ + + x1 = x0 - i1 + G4; /* Offsets for second corner in (x,y,z,w) coords */ + y1 = y0 - j1 + G4; + z1 = z0 - k1 + G4; + w1 = w0 - l1 + G4; + x2 = x0 - i2 + 2.0f * G4; /* Offsets for third corner in (x,y,z,w) coords */ + y2 = y0 - j2 + 2.0f * G4; + z2 = z0 - k2 + 2.0f * G4; + w2 = w0 - l2 + 2.0f * G4; + x3 = x0 - i3 + 3.0f * G4; /* Offsets for fourth corner in (x,y,z,w) coords */ + y3 = y0 - j3 + 3.0f * G4; + z3 = z0 - k3 + 3.0f * G4; + w3 = w0 - l3 + 3.0f * G4; + x4 = x0 - 1.0f + 4.0f * G4; /* Offsets for last corner in (x,y,z,w) coords */ + y4 = y0 - 1.0f + 4.0f * G4; + z4 = z0 - 1.0f + 4.0f * G4; + w4 = w0 - 1.0f + 4.0f * G4; + + /* Wrap the integer indices at 256, to avoid indexing perm[] out of bounds */ + ii = i % 256; + jj = j % 256; + kk = k % 256; + ll = l % 256; + + /* Calculate the contribution from the five corners */ + t0 = 0.6f - x0 * x0 - y0 * y0 - z0 * z0 - w0 * w0; + if (t0 < 0.0f) + n0 = 0.0f; + else { + t0 *= t0; + n0 = + t0 * t0 * grad4(perm[ii + perm[jj + perm[kk + perm[ll]]]], x0, y0, + z0, w0); + } + + t1 = 0.6f - x1 * x1 - y1 * y1 - z1 * z1 - w1 * w1; + if (t1 < 0.0f) + n1 = 0.0f; + else { + t1 *= t1; + n1 = + t1 * t1 * + grad4(perm[ii + i1 + perm[jj + j1 + perm[kk + k1 + perm[ll + l1]]]], + x1, y1, z1, w1); + } + + t2 = 0.6f - x2 * x2 - y2 * y2 - z2 * z2 - w2 * w2; + if (t2 < 0.0f) + n2 = 0.0f; + else { + t2 *= t2; + n2 = + t2 * t2 * + grad4(perm[ii + i2 + perm[jj + j2 + perm[kk + k2 + perm[ll + l2]]]], + x2, y2, z2, w2); + } + + t3 = 0.6f - x3 * x3 - y3 * y3 - z3 * z3 - w3 * w3; + if (t3 < 0.0f) + n3 = 0.0f; + else { + t3 *= t3; + n3 = + t3 * t3 * + grad4(perm[ii + i3 + perm[jj + j3 + perm[kk + k3 + perm[ll + l3]]]], + x3, y3, z3, w3); + } + + t4 = 0.6f - x4 * x4 - y4 * y4 - z4 * z4 - w4 * w4; + if (t4 < 0.0f) + n4 = 0.0f; + else { + t4 *= t4; + n4 = + t4 * t4 * + grad4(perm[ii + 1 + perm[jj + 1 + perm[kk + 1 + perm[ll + 1]]]], x4, + y4, z4, w4); + } + + /* Sum up and scale the result to cover the range [-1,1] */ + return 27.0f * (n0 + n1 + n2 + n3 + n4); /* TODO: The scale factor is preliminary! */ +} diff --git a/src/mesa/shader/slang/slang_library_noise.h b/src/mesa/shader/prog_noise.h index da7367c1ce1..c4779479f9b 100644 --- a/src/mesa/shader/slang/slang_library_noise.h +++ b/src/mesa/shader/prog_noise.h @@ -22,21 +22,13 @@ * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */ -#if !defined SLANG_LIBRARY_NOISE_H -#define SLANG_LIBRARY_NOISE_H +#ifndef PROG_NOISE +#define PROG_NOISE -#if defined __cplusplus -extern "C" { -#endif - -GLfloat _slang_library_noise1 (GLfloat); -GLfloat _slang_library_noise2 (GLfloat, GLfloat); -GLfloat _slang_library_noise3 (GLfloat, GLfloat, GLfloat); -GLfloat _slang_library_noise4 (GLfloat, GLfloat, GLfloat, GLfloat); - -#ifdef __cplusplus -} -#endif +extern GLfloat _mesa_noise1(GLfloat); +extern GLfloat _mesa_noise2(GLfloat, GLfloat); +extern GLfloat _mesa_noise3(GLfloat, GLfloat, GLfloat); +extern GLfloat _mesa_noise4(GLfloat, GLfloat, GLfloat, GLfloat); #endif diff --git a/src/mesa/shader/prog_parameter.c b/src/mesa/shader/prog_parameter.c index 29c5b33f6cd..8ae961241f6 100644 --- a/src/mesa/shader/prog_parameter.c +++ b/src/mesa/shader/prog_parameter.c @@ -1,8 +1,8 @@ /* * Mesa 3-D graphics library - * Version: 6.5.3 + * Version: 7.3 * - * Copyright (C) 1999-2007 Brian Paul All Rights Reserved. + * Copyright (C) 1999-2008 Brian Paul All Rights Reserved. * * Permission is hereby granted, free of charge, to any person obtaining a * copy of this software and associated documentation files (the "Software"), @@ -80,7 +80,8 @@ GLint _mesa_add_parameter(struct gl_program_parameter_list *paramList, enum register_file type, const char *name, GLuint size, GLenum datatype, const GLfloat *values, - const gl_state_index state[STATE_LENGTH]) + const gl_state_index state[STATE_LENGTH], + GLbitfield flags) { const GLuint oldNum = paramList->NumParameters; const GLuint sz4 = (size + 3) / 4; /* no. of new param slots needed */ @@ -125,6 +126,7 @@ _mesa_add_parameter(struct gl_program_parameter_list *paramList, p->Type = type; p->Size = size; p->DataType = datatype; + p->Flags = flags; if (values) { COPY_4V(paramList->ParameterValues[oldNum + i], values); values += 4; @@ -156,7 +158,7 @@ _mesa_add_named_parameter(struct gl_program_parameter_list *paramList, const char *name, const GLfloat values[4]) { return _mesa_add_parameter(paramList, PROGRAM_NAMED_PARAM, name, - 4, GL_NONE, values, NULL); + 4, GL_NONE, values, NULL, 0x0); } @@ -185,9 +187,8 @@ _mesa_add_named_constant(struct gl_program_parameter_list *paramList, return pos; } #endif - size = 4; /** XXX fix */ return _mesa_add_parameter(paramList, PROGRAM_CONSTANT, name, - size, GL_NONE, values, NULL); + size, GL_NONE, values, NULL, 0x0); } @@ -239,7 +240,7 @@ _mesa_add_unnamed_constant(struct gl_program_parameter_list *paramList, /* add a new parameter to store this constant */ pos = _mesa_add_parameter(paramList, PROGRAM_CONSTANT, NULL, - size, GL_NONE, values, NULL); + size, GL_NONE, values, NULL, 0x0); if (pos >= 0 && swizzleOut) { if (size == 1) *swizzleOut = SWIZZLE_XXXX; @@ -273,7 +274,7 @@ _mesa_add_uniform(struct gl_program_parameter_list *paramList, } else { i = _mesa_add_parameter(paramList, PROGRAM_UNIFORM, name, - size, datatype, values, NULL); + size, datatype, values, NULL, 0x0); return i; } } @@ -289,7 +290,8 @@ _mesa_use_uniform(struct gl_program_parameter_list *paramList, GLuint i; for (i = 0; i < paramList->NumParameters; i++) { struct gl_program_parameter *p = paramList->Parameters + i; - if (p->Type == PROGRAM_UNIFORM && _mesa_strcmp(p->Name, name) == 0) { + if ((p->Type == PROGRAM_UNIFORM || p->Type == PROGRAM_SAMPLER) && + _mesa_strcmp(p->Name, name) == 0) { p->Used = GL_TRUE; /* Note that large uniforms may occupy several slots so we're * not done searching yet. @@ -328,7 +330,7 @@ _mesa_add_sampler(struct gl_program_parameter_list *paramList, } value = (GLfloat) numSamplers; (void) _mesa_add_parameter(paramList, PROGRAM_SAMPLER, name, - size, datatype, &value, NULL); + size, datatype, &value, NULL, 0x0); return numSamplers; } } @@ -339,7 +341,7 @@ _mesa_add_sampler(struct gl_program_parameter_list *paramList, */ GLint _mesa_add_varying(struct gl_program_parameter_list *paramList, - const char *name, GLuint size) + const char *name, GLuint size, GLbitfield flags) { GLint i = _mesa_lookup_parameter_index(paramList, -1, name); if (i >= 0 && paramList->Parameters[i].Type == PROGRAM_VARYING) { @@ -349,7 +351,7 @@ _mesa_add_varying(struct gl_program_parameter_list *paramList, else { /*assert(size == 4);*/ i = _mesa_add_parameter(paramList, PROGRAM_VARYING, name, - size, GL_NONE, NULL, NULL); + size, GL_NONE, NULL, NULL, flags); return i; } } @@ -378,7 +380,7 @@ _mesa_add_attribute(struct gl_program_parameter_list *paramList, if (size < 0) size = 4; i = _mesa_add_parameter(paramList, PROGRAM_INPUT, name, - size, datatype, NULL, state); + size, datatype, NULL, state, 0x0); } return i; } @@ -422,7 +424,7 @@ _mesa_add_state_reference(struct gl_program_parameter_list *paramList, const gl_state_index stateTokens[STATE_LENGTH]) { const GLuint size = 4; /* XXX fix */ - const char *name; + char *name; GLint index; /* Check if the state reference is already in the list */ @@ -445,11 +447,11 @@ _mesa_add_state_reference(struct gl_program_parameter_list *paramList, name = _mesa_program_state_string(stateTokens); index = _mesa_add_parameter(paramList, PROGRAM_STATE_VAR, name, size, GL_NONE, - NULL, (gl_state_index *) stateTokens); + NULL, (gl_state_index *) stateTokens, 0x0); paramList->StateFlags |= _mesa_program_state_flags(stateTokens); /* free name string here since we duplicated it in add_parameter() */ - _mesa_free((void *) name); + _mesa_free(name); return index; } @@ -616,10 +618,11 @@ _mesa_clone_parameter_list(const struct gl_program_parameter_list *list) struct gl_program_parameter *pCopy; GLuint size = MIN2(p->Size, 4); GLint j = _mesa_add_parameter(clone, p->Type, p->Name, size, p->DataType, - list->ParameterValues[i], NULL); + list->ParameterValues[i], NULL, 0x0); ASSERT(j >= 0); pCopy = clone->Parameters + j; pCopy->Used = p->Used; + pCopy->Flags = p->Flags; /* copy state indexes */ if (p->Type == PROGRAM_STATE_VAR) { GLint k; @@ -657,7 +660,8 @@ _mesa_combine_parameter_lists(const struct gl_program_parameter_list *listA, _mesa_add_parameter(list, param->Type, param->Name, param->Size, param->DataType, listB->ParameterValues[i], - param->StateIndexes); + param->StateIndexes, + param->Flags); } } } diff --git a/src/mesa/shader/prog_parameter.h b/src/mesa/shader/prog_parameter.h index 0c35198de7e..200f2c00458 100644 --- a/src/mesa/shader/prog_parameter.h +++ b/src/mesa/shader/prog_parameter.h @@ -1,8 +1,8 @@ /* * Mesa 3-D graphics library - * Version: 6.5.3 + * Version: 7.3 * - * Copyright (C) 1999-2007 Brian Paul All Rights Reserved. + * Copyright (C) 1999-2008 Brian Paul All Rights Reserved. * * Permission is hereby granted, free of charge, to any person obtaining a * copy of this software and associated documentation files (the "Software"), @@ -36,11 +36,20 @@ /** + * Program parameter flags + */ +/*@{*/ +#define PROG_PARAM_BIT_CENTROID 0x1 /**< for varying vars (GLSL 1.20) */ +#define PROG_PARAM_BIT_INVARIANT 0x2 /**< for varying vars (GLSL 1.20) */ +#define PROG_PARAM_BIT_FLAT 0x4 /**< for varying vars (GLSL 1.30) */ +#define PROG_PARAM_BIT_LINEAR 0x8 /**< for varying vars (GLSL 1.30) */ +/*@}*/ + + + +/** * Program parameter. - * Used for NV_fragment_program for "DEFINE"d constants and "DECLARE"d - * parameters. - * Also used by ARB_vertex/fragment_programs for state variables, etc. - * Used by shaders for uniforms, constants, varying vars, etc. + * Used by shaders/programs for uniforms, constants, varying vars, etc. */ struct gl_program_parameter { @@ -50,6 +59,7 @@ struct gl_program_parameter GLuint Size; /**< Number of components (1..4) */ GLboolean Used; /**< Helper flag for GLSL uniform tracking */ GLboolean Initialized; /**< Has the ParameterValue[] been set? */ + GLbitfield Flags; /**< Bitmask of PROG_PARAM_*_BIT */ /** * A sequence of STATE_* tokens and integers to identify GL state. */ @@ -94,7 +104,8 @@ extern GLint _mesa_add_parameter(struct gl_program_parameter_list *paramList, enum register_file type, const char *name, GLuint size, GLenum datatype, const GLfloat *values, - const gl_state_index state[STATE_LENGTH]); + const gl_state_index state[STATE_LENGTH], + GLbitfield flags); extern GLint _mesa_add_named_parameter(struct gl_program_parameter_list *paramList, @@ -125,7 +136,7 @@ _mesa_add_sampler(struct gl_program_parameter_list *paramList, extern GLint _mesa_add_varying(struct gl_program_parameter_list *paramList, - const char *name, GLuint size); + const char *name, GLuint size, GLbitfield flags); extern GLint _mesa_add_attribute(struct gl_program_parameter_list *paramList, diff --git a/src/mesa/shader/prog_print.c b/src/mesa/shader/prog_print.c index baa4ef85e92..ce48767a871 100644 --- a/src/mesa/shader/prog_print.c +++ b/src/mesa/shader/prog_print.c @@ -3,6 +3,7 @@ * Version: 7.3 * * Copyright (C) 1999-2008 Brian Paul All Rights Reserved. + * Copyright (C) 2009 VMware, Inc. All Rights Reserved. * * Permission is hereby granted, free of charge, to any person obtaining a * copy of this software and associated documentation files (the "Software"), @@ -71,6 +72,8 @@ file_string(enum register_file f, gl_prog_print_mode mode) return "ADDR"; case PROGRAM_SAMPLER: return "SAMPLER"; + case PROGRAM_UNDEFINED: + return "UNDEFINED"; default: return "Unknown program file!"; } @@ -215,46 +218,48 @@ reg_string(enum register_file f, GLint index, gl_prog_print_mode mode, switch (mode) { case PROG_PRINT_DEBUG: if (relAddr) - sprintf(str, "%s[ADDR+%d]", file_string(f, mode), index); + _mesa_sprintf(str, "%s[ADDR+%d]", file_string(f, mode), index); else - sprintf(str, "%s[%d]", file_string(f, mode), index); + _mesa_sprintf(str, "%s[%d]", file_string(f, mode), index); break; case PROG_PRINT_ARB: switch (f) { case PROGRAM_INPUT: - sprintf(str, "%s", arb_input_attrib_string(index, prog->Target)); + _mesa_sprintf(str, "%s", arb_input_attrib_string(index, prog->Target)); break; case PROGRAM_OUTPUT: - sprintf(str, "%s", arb_output_attrib_string(index, prog->Target)); + _mesa_sprintf(str, "%s", arb_output_attrib_string(index, prog->Target)); break; case PROGRAM_TEMPORARY: - sprintf(str, "temp%d", index); + _mesa_sprintf(str, "temp%d", index); break; case PROGRAM_ENV_PARAM: - sprintf(str, "program.env[%d]", index); + _mesa_sprintf(str, "program.env[%d]", index); break; case PROGRAM_LOCAL_PARAM: - sprintf(str, "program.local[%d]", index); + _mesa_sprintf(str, "program.local[%d]", index); break; case PROGRAM_VARYING: /* extension */ - sprintf(str, "varying[%d]", index); + _mesa_sprintf(str, "varying[%d]", index); break; case PROGRAM_CONSTANT: /* extension */ - sprintf(str, "constant[%d]", index); + _mesa_sprintf(str, "constant[%d]", index); break; case PROGRAM_UNIFORM: /* extension */ - sprintf(str, "uniform[%d]", index); + _mesa_sprintf(str, "uniform[%d]", index); break; case PROGRAM_STATE_VAR: { struct gl_program_parameter *param = prog->Parameters->Parameters + index; - sprintf(str, _mesa_program_state_string(param->StateIndexes)); + char *state = _mesa_program_state_string(param->StateIndexes); + _mesa_sprintf(str, state); + _mesa_free(state); } break; case PROGRAM_ADDRESS: - sprintf(str, "A%d", index); + _mesa_sprintf(str, "A%d", index); break; default: _mesa_problem(NULL, "bad file in reg_string()"); @@ -265,30 +270,30 @@ reg_string(enum register_file f, GLint index, gl_prog_print_mode mode, switch (f) { case PROGRAM_INPUT: if (prog->Target == GL_VERTEX_PROGRAM_ARB) - sprintf(str, "v[%d]", index); + _mesa_sprintf(str, "v[%d]", index); else - sprintf(str, "f[%d]", index); + _mesa_sprintf(str, "f[%d]", index); break; case PROGRAM_OUTPUT: - sprintf(str, "o[%d]", index); + _mesa_sprintf(str, "o[%d]", index); break; case PROGRAM_TEMPORARY: - sprintf(str, "R%d", index); + _mesa_sprintf(str, "R%d", index); break; case PROGRAM_ENV_PARAM: - sprintf(str, "c[%d]", index); + _mesa_sprintf(str, "c[%d]", index); break; case PROGRAM_VARYING: /* extension */ - sprintf(str, "varying[%d]", index); + _mesa_sprintf(str, "varying[%d]", index); break; case PROGRAM_UNIFORM: /* extension */ - sprintf(str, "uniform[%d]", index); + _mesa_sprintf(str, "uniform[%d]", index); break; case PROGRAM_CONSTANT: /* extension */ - sprintf(str, "constant[%d]", index); + _mesa_sprintf(str, "constant[%d]", index); break; case PROGRAM_STATE_VAR: /* extension */ - sprintf(str, "state[%d]", index); + _mesa_sprintf(str, "state[%d]", index); break; default: _mesa_problem(NULL, "bad file in reg_string()"); @@ -356,6 +361,19 @@ _mesa_swizzle_string(GLuint swizzle, GLuint negateBase, GLboolean extended) } +void +_mesa_print_swizzle(GLuint swizzle) +{ + if (swizzle == SWIZZLE_XYZW) { + _mesa_printf(".xyzw\n"); + } + else { + const char *s = _mesa_swizzle_string(swizzle, 0, 0); + _mesa_printf("%s\n", s); + } +} + + const char * _mesa_writemask_string(GLuint writeMask) { @@ -399,90 +417,98 @@ _mesa_condcode_string(GLuint condcode) static void -print_dst_reg(const struct prog_dst_register *dstReg, gl_prog_print_mode mode, - const struct gl_program *prog) +fprint_dst_reg(FILE * f, + const struct prog_dst_register *dstReg, + gl_prog_print_mode mode, + const struct gl_program *prog) { - _mesa_printf("%s%s", - reg_string((enum register_file) dstReg->File, - dstReg->Index, mode, dstReg->RelAddr, prog), - _mesa_writemask_string(dstReg->WriteMask)); + _mesa_fprintf(f, "%s%s", + reg_string((enum register_file) dstReg->File, + dstReg->Index, mode, dstReg->RelAddr, prog), + _mesa_writemask_string(dstReg->WriteMask)); if (dstReg->CondMask != COND_TR) { - _mesa_printf(" (%s.%s)", - _mesa_condcode_string(dstReg->CondMask), - _mesa_swizzle_string(dstReg->CondSwizzle, GL_FALSE, GL_FALSE)); + _mesa_fprintf(f, " (%s.%s)", + _mesa_condcode_string(dstReg->CondMask), + _mesa_swizzle_string(dstReg->CondSwizzle, + GL_FALSE, GL_FALSE)); } #if 0 - _mesa_printf("%s[%d]%s", + _mesa_fprintf(f, "%s[%d]%s", file_string((enum register_file) dstReg->File, mode), dstReg->Index, _mesa_writemask_string(dstReg->WriteMask)); #endif } + static void -print_src_reg(const struct prog_src_register *srcReg, gl_prog_print_mode mode, - const struct gl_program *prog) +fprint_src_reg(FILE *f, + const struct prog_src_register *srcReg, + gl_prog_print_mode mode, + const struct gl_program *prog) { - _mesa_printf("%s%s", - reg_string((enum register_file) srcReg->File, - srcReg->Index, mode, srcReg->RelAddr, prog), - _mesa_swizzle_string(srcReg->Swizzle, - srcReg->NegateBase, GL_FALSE)); + _mesa_fprintf(f, "%s%s", + reg_string((enum register_file) srcReg->File, + srcReg->Index, mode, srcReg->RelAddr, prog), + _mesa_swizzle_string(srcReg->Swizzle, + srcReg->NegateBase, GL_FALSE)); #if 0 - _mesa_printf("%s[%d]%s", - file_string((enum register_file) srcReg->File, mode), - srcReg->Index, - _mesa_swizzle_string(srcReg->Swizzle, - srcReg->NegateBase, GL_FALSE)); + _mesa_fprintf(f, "%s[%d]%s", + file_string((enum register_file) srcReg->File, mode), + srcReg->Index, + _mesa_swizzle_string(srcReg->Swizzle, + srcReg->NegateBase, GL_FALSE)); #endif } + static void -print_comment(const struct prog_instruction *inst) +fprint_comment(FILE *f, const struct prog_instruction *inst) { if (inst->Comment) - _mesa_printf("; # %s\n", inst->Comment); + _mesa_fprintf(f, "; # %s\n", inst->Comment); else - _mesa_printf(";\n"); + _mesa_fprintf(f, ";\n"); } static void -print_alu_instruction(const struct prog_instruction *inst, - const char *opcode_string, GLuint numRegs, - gl_prog_print_mode mode, - const struct gl_program *prog) +fprint_alu_instruction(FILE *f, + const struct prog_instruction *inst, + const char *opcode_string, GLuint numRegs, + gl_prog_print_mode mode, + const struct gl_program *prog) { GLuint j; - _mesa_printf("%s", opcode_string); + _mesa_fprintf(f, "%s", opcode_string); if (inst->CondUpdate) - _mesa_printf(".C"); + _mesa_fprintf(f, ".C"); /* frag prog only */ if (inst->SaturateMode == SATURATE_ZERO_ONE) - _mesa_printf("_SAT"); + _mesa_fprintf(f, "_SAT"); - _mesa_printf(" "); + _mesa_fprintf(f, " "); if (inst->DstReg.File != PROGRAM_UNDEFINED) { - print_dst_reg(&inst->DstReg, mode, prog); + fprint_dst_reg(f, &inst->DstReg, mode, prog); } else { - _mesa_printf(" ???"); + _mesa_fprintf(f, " ???"); } if (numRegs > 0) - _mesa_printf(", "); + _mesa_fprintf(f, ", "); for (j = 0; j < numRegs; j++) { - print_src_reg(inst->SrcReg + j, mode, prog); + fprint_src_reg(f, inst->SrcReg + j, mode, prog); if (j + 1 < numRegs) - _mesa_printf(", "); + _mesa_fprintf(f, ", "); } - print_comment(inst); + fprint_comment(f, inst); } @@ -490,23 +516,18 @@ void _mesa_print_alu_instruction(const struct prog_instruction *inst, const char *opcode_string, GLuint numRegs) { - print_alu_instruction(inst, opcode_string, numRegs, PROG_PRINT_DEBUG, NULL); -} - - -void -_mesa_print_instruction(const struct prog_instruction *inst) -{ - /* note: 4th param should be ignored for PROG_PRINT_DEBUG */ - _mesa_print_instruction_opt(inst, 0, PROG_PRINT_DEBUG, NULL); + fprint_alu_instruction(stdout, inst, opcode_string, + numRegs, PROG_PRINT_DEBUG, NULL); } /** * Print a single vertex/fragment program instruction. */ -GLint -_mesa_print_instruction_opt(const struct prog_instruction *inst, GLint indent, +static GLint +_mesa_fprint_instruction_opt(FILE *f, + const struct prog_instruction *inst, + GLint indent, gl_prog_print_mode mode, const struct gl_program *prog) { @@ -519,15 +540,15 @@ _mesa_print_instruction_opt(const struct prog_instruction *inst, GLint indent, indent -= 3; } for (i = 0; i < indent; i++) { - _mesa_printf(" "); + _mesa_fprintf(f, " "); } switch (inst->Opcode) { case OPCODE_PRINT: - _mesa_printf("PRINT '%s'", inst->Data); + _mesa_fprintf(f, "PRINT '%s'", inst->Data); if (inst->SrcReg[0].File != PROGRAM_UNDEFINED) { - _mesa_printf(", "); - _mesa_printf("%s[%d]%s", + _mesa_fprintf(f, ", "); + _mesa_fprintf(f, "%s[%d]%s", file_string((enum register_file) inst->SrcReg[0].File, mode), inst->SrcReg[0].Index, @@ -535,259 +556,295 @@ _mesa_print_instruction_opt(const struct prog_instruction *inst, GLint indent, inst->SrcReg[0].NegateBase, GL_FALSE)); } if (inst->Comment) - _mesa_printf(" # %s", inst->Comment); - print_comment(inst); + _mesa_fprintf(f, " # %s", inst->Comment); + fprint_comment(f, inst); break; case OPCODE_SWZ: - _mesa_printf("SWZ"); + _mesa_fprintf(f, "SWZ"); if (inst->SaturateMode == SATURATE_ZERO_ONE) - _mesa_printf("_SAT"); - _mesa_printf(" "); - print_dst_reg(&inst->DstReg, mode, prog); - _mesa_printf(", %s[%d], %s", + _mesa_fprintf(f, "_SAT"); + _mesa_fprintf(f, " "); + fprint_dst_reg(f, &inst->DstReg, mode, prog); + _mesa_fprintf(f, ", %s[%d], %s", file_string((enum register_file) inst->SrcReg[0].File, mode), inst->SrcReg[0].Index, _mesa_swizzle_string(inst->SrcReg[0].Swizzle, inst->SrcReg[0].NegateBase, GL_TRUE)); - print_comment(inst); + fprint_comment(f, inst); break; case OPCODE_TEX: case OPCODE_TXP: case OPCODE_TXL: case OPCODE_TXB: - _mesa_printf("%s", _mesa_opcode_string(inst->Opcode)); + _mesa_fprintf(f, "%s", _mesa_opcode_string(inst->Opcode)); if (inst->SaturateMode == SATURATE_ZERO_ONE) - _mesa_printf("_SAT"); - _mesa_printf(" "); - print_dst_reg(&inst->DstReg, mode, prog); - _mesa_printf(", "); - print_src_reg(&inst->SrcReg[0], mode, prog); - _mesa_printf(", texture[%d], ", inst->TexSrcUnit); + _mesa_fprintf(f, "_SAT"); + _mesa_fprintf(f, " "); + fprint_dst_reg(f, &inst->DstReg, mode, prog); + _mesa_fprintf(f, ", "); + fprint_src_reg(f, &inst->SrcReg[0], mode, prog); + _mesa_fprintf(f, ", texture[%d], ", inst->TexSrcUnit); switch (inst->TexSrcTarget) { - case TEXTURE_1D_INDEX: _mesa_printf("1D"); break; - case TEXTURE_2D_INDEX: _mesa_printf("2D"); break; - case TEXTURE_3D_INDEX: _mesa_printf("3D"); break; - case TEXTURE_CUBE_INDEX: _mesa_printf("CUBE"); break; - case TEXTURE_RECT_INDEX: _mesa_printf("RECT"); break; + case TEXTURE_1D_INDEX: _mesa_fprintf(f, "1D"); break; + case TEXTURE_2D_INDEX: _mesa_fprintf(f, "2D"); break; + case TEXTURE_3D_INDEX: _mesa_fprintf(f, "3D"); break; + case TEXTURE_CUBE_INDEX: _mesa_fprintf(f, "CUBE"); break; + case TEXTURE_RECT_INDEX: _mesa_fprintf(f, "RECT"); break; default: ; } - print_comment(inst); + fprint_comment(f, inst); break; case OPCODE_KIL: - _mesa_printf("%s", _mesa_opcode_string(inst->Opcode)); - _mesa_printf(" "); - print_src_reg(&inst->SrcReg[0], mode, prog); - print_comment(inst); + _mesa_fprintf(f, "%s", _mesa_opcode_string(inst->Opcode)); + _mesa_fprintf(f, " "); + fprint_src_reg(f, &inst->SrcReg[0], mode, prog); + fprint_comment(f, inst); break; case OPCODE_KIL_NV: - _mesa_printf("%s", _mesa_opcode_string(inst->Opcode)); - _mesa_printf(" "); - _mesa_printf("%s.%s", + _mesa_fprintf(f, "%s", _mesa_opcode_string(inst->Opcode)); + _mesa_fprintf(f, " "); + _mesa_fprintf(f, "%s.%s", _mesa_condcode_string(inst->DstReg.CondMask), _mesa_swizzle_string(inst->DstReg.CondSwizzle, GL_FALSE, GL_FALSE)); - print_comment(inst); + fprint_comment(f, inst); break; case OPCODE_ARL: - _mesa_printf("ARL "); - print_dst_reg(&inst->DstReg, mode, prog); - _mesa_printf(", "); - print_src_reg(&inst->SrcReg[0], mode, prog); - print_comment(inst); + _mesa_fprintf(f, "ARL "); + fprint_dst_reg(f, &inst->DstReg, mode, prog); + _mesa_fprintf(f, ", "); + fprint_src_reg(f, &inst->SrcReg[0], mode, prog); + fprint_comment(f, inst); break; case OPCODE_BRA: - _mesa_printf("BRA %d (%s%s)", + _mesa_fprintf(f, "BRA %d (%s%s)", inst->BranchTarget, _mesa_condcode_string(inst->DstReg.CondMask), _mesa_swizzle_string(inst->DstReg.CondSwizzle, 0, GL_FALSE)); - print_comment(inst); + fprint_comment(f, inst); break; case OPCODE_IF: if (inst->SrcReg[0].File != PROGRAM_UNDEFINED) { /* Use ordinary register */ - _mesa_printf("IF "); - print_src_reg(&inst->SrcReg[0], mode, prog); - _mesa_printf("; "); + _mesa_fprintf(f, "IF "); + fprint_src_reg(f, &inst->SrcReg[0], mode, prog); + _mesa_fprintf(f, "; "); } else { /* Use cond codes */ - _mesa_printf("IF (%s%s);", + _mesa_fprintf(f, "IF (%s%s);", _mesa_condcode_string(inst->DstReg.CondMask), _mesa_swizzle_string(inst->DstReg.CondSwizzle, 0, GL_FALSE)); } - _mesa_printf(" # (if false, goto %d)", inst->BranchTarget); - print_comment(inst); + _mesa_fprintf(f, " # (if false, goto %d)", inst->BranchTarget); + fprint_comment(f, inst); return indent + 3; case OPCODE_ELSE: - _mesa_printf("ELSE; # (goto %d)\n", inst->BranchTarget); + _mesa_fprintf(f, "ELSE; # (goto %d)\n", inst->BranchTarget); return indent + 3; case OPCODE_ENDIF: - _mesa_printf("ENDIF;\n"); + _mesa_fprintf(f, "ENDIF;\n"); break; case OPCODE_BGNLOOP: - _mesa_printf("BGNLOOP; # (end at %d)\n", inst->BranchTarget); + _mesa_fprintf(f, "BGNLOOP; # (end at %d)\n", inst->BranchTarget); return indent + 3; case OPCODE_ENDLOOP: - _mesa_printf("ENDLOOP; # (goto %d)\n", inst->BranchTarget); + _mesa_fprintf(f, "ENDLOOP; # (goto %d)\n", inst->BranchTarget); break; case OPCODE_BRK: case OPCODE_CONT: - _mesa_printf("%s (%s%s); # (goto %d)", + _mesa_fprintf(f, "%s (%s%s); # (goto %d)", _mesa_opcode_string(inst->Opcode), _mesa_condcode_string(inst->DstReg.CondMask), _mesa_swizzle_string(inst->DstReg.CondSwizzle, 0, GL_FALSE), inst->BranchTarget); - print_comment(inst); + fprint_comment(f, inst); break; case OPCODE_BGNSUB: if (mode == PROG_PRINT_NV) { - _mesa_printf("%s:\n", inst->Comment); /* comment is label */ + _mesa_fprintf(f, "%s:\n", inst->Comment); /* comment is label */ return indent; } else { - _mesa_printf("BGNSUB"); - print_comment(inst); + _mesa_fprintf(f, "BGNSUB"); + fprint_comment(f, inst); return indent + 3; } case OPCODE_ENDSUB: if (mode == PROG_PRINT_DEBUG) { - _mesa_printf("ENDSUB"); - print_comment(inst); + _mesa_fprintf(f, "ENDSUB"); + fprint_comment(f, inst); } break; case OPCODE_CAL: if (mode == PROG_PRINT_NV) { - _mesa_printf("CAL %s; # (goto %d)\n", inst->Comment, inst->BranchTarget); + _mesa_fprintf(f, "CAL %s; # (goto %d)\n", inst->Comment, inst->BranchTarget); } else { - _mesa_printf("CAL %u", inst->BranchTarget); - print_comment(inst); + _mesa_fprintf(f, "CAL %u", inst->BranchTarget); + fprint_comment(f, inst); } break; case OPCODE_RET: - _mesa_printf("RET (%s%s)", + _mesa_fprintf(f, "RET (%s%s)", _mesa_condcode_string(inst->DstReg.CondMask), _mesa_swizzle_string(inst->DstReg.CondSwizzle, 0, GL_FALSE)); - print_comment(inst); + fprint_comment(f, inst); break; case OPCODE_END: - _mesa_printf("END\n"); + _mesa_fprintf(f, "END\n"); break; case OPCODE_NOP: if (mode == PROG_PRINT_DEBUG) { - _mesa_printf("NOP"); - print_comment(inst); + _mesa_fprintf(f, "NOP"); + fprint_comment(f, inst); } else if (inst->Comment) { /* ARB/NV extensions don't have NOP instruction */ - _mesa_printf("# %s\n", inst->Comment); + _mesa_fprintf(f, "# %s\n", inst->Comment); } break; /* XXX may need other special-case instructions */ default: /* typical alu instruction */ - print_alu_instruction(inst, - _mesa_opcode_string(inst->Opcode), - _mesa_num_inst_src_regs(inst->Opcode), - mode, prog); + fprint_alu_instruction(f, inst, + _mesa_opcode_string(inst->Opcode), + _mesa_num_inst_src_regs(inst->Opcode), + mode, prog); break; } return indent; } -/** - * Print program to stdout, default options. - */ +GLint +_mesa_print_instruction_opt(const struct prog_instruction *inst, + GLint indent, + gl_prog_print_mode mode, + const struct gl_program *prog) +{ + return _mesa_fprint_instruction_opt(stdout, inst, indent, mode, prog); +} + + void -_mesa_print_program(const struct gl_program *prog) +_mesa_print_instruction(const struct prog_instruction *inst) { - _mesa_print_program_opt(prog, PROG_PRINT_DEBUG, GL_TRUE); + /* note: 4th param should be ignored for PROG_PRINT_DEBUG */ + _mesa_fprint_instruction_opt(stdout, inst, 0, PROG_PRINT_DEBUG, NULL); } + /** * Print program, with options. */ void -_mesa_print_program_opt(const struct gl_program *prog, - gl_prog_print_mode mode, - GLboolean lineNumbers) +_mesa_fprint_program_opt(FILE *f, + const struct gl_program *prog, + gl_prog_print_mode mode, + GLboolean lineNumbers) { GLuint i, indent = 0; switch (prog->Target) { case GL_VERTEX_PROGRAM_ARB: if (mode == PROG_PRINT_ARB) - _mesa_printf("!!ARBvp1.0\n"); + _mesa_fprintf(f, "!!ARBvp1.0\n"); else if (mode == PROG_PRINT_NV) - _mesa_printf("!!VP1.0\n"); + _mesa_fprintf(f, "!!VP1.0\n"); else - _mesa_printf("# Vertex Program/Shader\n"); + _mesa_fprintf(f, "# Vertex Program/Shader\n"); break; case GL_FRAGMENT_PROGRAM_ARB: case GL_FRAGMENT_PROGRAM_NV: if (mode == PROG_PRINT_ARB) - _mesa_printf("!!ARBfp1.0\n"); + _mesa_fprintf(f, "!!ARBfp1.0\n"); else if (mode == PROG_PRINT_NV) - _mesa_printf("!!FP1.0\n"); + _mesa_fprintf(f, "!!FP1.0\n"); else - _mesa_printf("# Fragment Program/Shader\n"); + _mesa_fprintf(f, "# Fragment Program/Shader\n"); break; } for (i = 0; i < prog->NumInstructions; i++) { if (lineNumbers) - _mesa_printf("%3d: ", i); - indent = _mesa_print_instruction_opt(prog->Instructions + i, + _mesa_fprintf(f, "%3d: ", i); + indent = _mesa_fprint_instruction_opt(f, prog->Instructions + i, indent, mode, prog); } } /** - * Print all of a program's parameters. + * Print program to stdout, default options. */ void -_mesa_print_program_parameters(GLcontext *ctx, const struct gl_program *prog) +_mesa_print_program(const struct gl_program *prog) +{ + _mesa_fprint_program_opt(stdout, prog, PROG_PRINT_DEBUG, GL_TRUE); +} + + +/** + * Print all of a program's parameters/fields to given file. + */ +static void +_mesa_fprint_program_parameters(FILE *f, + GLcontext *ctx, + const struct gl_program *prog) { GLuint i; - _mesa_printf("InputsRead: 0x%x\n", prog->InputsRead); - _mesa_printf("OutputsWritten: 0x%x\n", prog->OutputsWritten); - _mesa_printf("NumInstructions=%d\n", prog->NumInstructions); - _mesa_printf("NumTemporaries=%d\n", prog->NumTemporaries); - _mesa_printf("NumParameters=%d\n", prog->NumParameters); - _mesa_printf("NumAttributes=%d\n", prog->NumAttributes); - _mesa_printf("NumAddressRegs=%d\n", prog->NumAddressRegs); - _mesa_printf("Samplers=[ "); + _mesa_fprintf(f, "InputsRead: 0x%x\n", prog->InputsRead); + _mesa_fprintf(f, "OutputsWritten: 0x%x\n", prog->OutputsWritten); + _mesa_fprintf(f, "NumInstructions=%d\n", prog->NumInstructions); + _mesa_fprintf(f, "NumTemporaries=%d\n", prog->NumTemporaries); + _mesa_fprintf(f, "NumParameters=%d\n", prog->NumParameters); + _mesa_fprintf(f, "NumAttributes=%d\n", prog->NumAttributes); + _mesa_fprintf(f, "NumAddressRegs=%d\n", prog->NumAddressRegs); + _mesa_fprintf(f, "Samplers=[ "); for (i = 0; i < MAX_SAMPLERS; i++) { - _mesa_printf("%d ", prog->SamplerUnits[i]); + _mesa_fprintf(f, "%d ", prog->SamplerUnits[i]); } - _mesa_printf("]\n"); + _mesa_fprintf(f, "]\n"); _mesa_load_state_parameters(ctx, prog->Parameters); #if 0 - _mesa_printf("Local Params:\n"); + _mesa_fprintf(f, "Local Params:\n"); for (i = 0; i < MAX_PROGRAM_LOCAL_PARAMS; i++){ const GLfloat *p = prog->LocalParams[i]; - _mesa_printf("%2d: %f, %f, %f, %f\n", i, p[0], p[1], p[2], p[3]); + _mesa_fprintf(f, "%2d: %f, %f, %f, %f\n", i, p[0], p[1], p[2], p[3]); } #endif _mesa_print_parameter_list(prog->Parameters); } +/** + * Print all of a program's parameters/fields to stdout. + */ void -_mesa_print_parameter_list(const struct gl_program_parameter_list *list) +_mesa_print_program_parameters(GLcontext *ctx, const struct gl_program *prog) +{ + _mesa_fprint_program_parameters(stdout, ctx, prog); +} + + +/** + * Print a program parameter list to given file. + */ +static void +_mesa_fprint_parameter_list(FILE *f, + const struct gl_program_parameter_list *list) { const gl_prog_print_mode mode = PROG_PRINT_DEBUG; GLuint i; @@ -795,13 +852,77 @@ _mesa_print_parameter_list(const struct gl_program_parameter_list *list) if (!list) return; - _mesa_printf("param list %p\n", (void *) list); + _mesa_fprintf(f, "param list %p\n", (void *) list); for (i = 0; i < list->NumParameters; i++){ struct gl_program_parameter *param = list->Parameters + i; const GLfloat *v = list->ParameterValues[i]; - _mesa_printf("param[%d] sz=%d %s %s = {%.3g, %.3g, %.3g, %.3g};\n", + _mesa_fprintf(f, "param[%d] sz=%d %s %s = {%.3g, %.3g, %.3g, %.3g}", i, param->Size, file_string(list->Parameters[i].Type, mode), param->Name, v[0], v[1], v[2], v[3]); + if (param->Flags & PROG_PARAM_BIT_CENTROID) + _mesa_fprintf(f, " Centroid"); + if (param->Flags & PROG_PARAM_BIT_INVARIANT) + _mesa_fprintf(f, " Invariant"); + if (param->Flags & PROG_PARAM_BIT_FLAT) + _mesa_fprintf(f, " Flat"); + if (param->Flags & PROG_PARAM_BIT_LINEAR) + _mesa_fprintf(f, " Linear"); + _mesa_fprintf(f, "\n"); } } + + +/** + * Print a program parameter list to stdout. + */ +void +_mesa_print_parameter_list(const struct gl_program_parameter_list *list) +{ + _mesa_fprint_parameter_list(stdout, list); +} + + +/** + * Write shader and associated info to a file. + */ +void +_mesa_write_shader_to_file(const struct gl_shader *shader) +{ + const char *type; + char filename[100]; + FILE *f; + + if (shader->Type == GL_FRAGMENT_SHADER) + type = "frag"; + else + type = "vert"; + + _mesa_snprintf(filename, strlen(filename), "shader_%u.%s", shader->Name, type); + f = fopen(filename, "w"); + if (!f) { + fprintf(stderr, "Unable to open %s for writing\n", filename); + return; + } + + fprintf(f, "/* Shader %u source */\n", shader->Name); + fputs(shader->Source, f); + fprintf(f, "\n"); + + fprintf(f, "/* Compile status: %s */\n", + shader->CompileStatus ? "ok" : "fail"); + if (!shader->CompileStatus) { + fprintf(f, "/* Log Info: */\n"); + fputs(shader->InfoLog, f); + } + else { + fprintf(f, "/* GPU code */\n"); + fprintf(f, "/*\n"); + _mesa_fprint_program_opt(f, shader->Program, PROG_PRINT_DEBUG, GL_TRUE); + fprintf(f, "*/\n"); + } + + fclose(f); +} + + diff --git a/src/mesa/shader/prog_print.h b/src/mesa/shader/prog_print.h index cd9e388e825..d55661cebb8 100644 --- a/src/mesa/shader/prog_print.h +++ b/src/mesa/shader/prog_print.h @@ -47,6 +47,9 @@ const char * _mesa_writemask_string(GLuint writeMask); extern void +_mesa_print_swizzle(GLuint swizzle); + +extern void _mesa_print_alu_instruction(const struct prog_instruction *inst, const char *opcode_string, GLuint numRegs); @@ -62,8 +65,9 @@ extern void _mesa_print_program(const struct gl_program *prog); extern void -_mesa_print_program_opt(const struct gl_program *prog, gl_prog_print_mode mode, - GLboolean lineNumbers); +_mesa_fprint_program_opt(FILE *f, + const struct gl_program *prog, gl_prog_print_mode mode, + GLboolean lineNumbers); extern void _mesa_print_program_parameters(GLcontext *ctx, const struct gl_program *prog); @@ -72,4 +76,8 @@ extern void _mesa_print_parameter_list(const struct gl_program_parameter_list *list); +extern void +_mesa_write_shader_to_file(const struct gl_shader *shader); + + #endif /* PROG_PRINT_H */ diff --git a/src/mesa/shader/prog_statevars.c b/src/mesa/shader/prog_statevars.c index 971eb25a491..e1db30b78f4 100644 --- a/src/mesa/shader/prog_statevars.c +++ b/src/mesa/shader/prog_statevars.c @@ -395,6 +395,12 @@ _mesa_fetch_state(GLcontext *ctx, const gl_state_index state[], case STATE_INTERNAL: switch (state[1]) { + case STATE_CURRENT_ATTRIB: { + const GLuint idx = (GLuint) state[2]; + COPY_4V(value, ctx->Current.Attrib[idx]); + return; + } + case STATE_NORMAL_SCALE: ASSIGN_4V(value, ctx->_ModelViewInvScale, @@ -493,14 +499,17 @@ _mesa_fetch_state(GLcontext *ctx, const gl_state_index state[], const struct gl_texture_object *texObj = ctx->Texture.Unit[unit]._Current; if (texObj) { - value[0] = texObj->ShadowAmbient; - value[1] = texObj->ShadowAmbient; - value[2] = texObj->ShadowAmbient; - value[3] = texObj->ShadowAmbient; + value[0] = + value[1] = + value[2] = + value[3] = texObj->CompareFailValue; } } return; + /* XXX: make sure new tokens added here are also handled in the + * _mesa_program_state_flags() switch, below. + */ default: /* unknown state indexes are silently ignored * should be handled by the driver. @@ -574,11 +583,29 @@ _mesa_program_state_flags(const gl_state_index state[STATE_LENGTH]) case STATE_INTERNAL: switch (state[1]) { + case STATE_CURRENT_ATTRIB: + return _NEW_CURRENT_ATTRIB; + + case STATE_NORMAL_SCALE: + return _NEW_MODELVIEW; + case STATE_TEXRECT_SCALE: case STATE_SHADOW_AMBIENT: return _NEW_TEXTURE; case STATE_FOG_PARAMS_OPTIMIZED: return _NEW_FOG; + case STATE_LIGHT_SPOT_DIR_NORMALIZED: + case STATE_LIGHT_POSITION: + case STATE_LIGHT_POSITION_NORMALIZED: + case STATE_LIGHT_HALF_VECTOR: + return _NEW_LIGHT; + + case STATE_PT_SCALE: + case STATE_PT_BIAS: + case STATE_PCM_SCALE: + case STATE_PCM_BIAS: + return _NEW_PIXEL; + default: /* unknown state indexes are silently ignored and * no flag set, since it is handled by the driver. @@ -604,6 +631,9 @@ append(char *dst, const char *src) } +/** + * Convert token 'k' to a string, append it onto 'dst' string. + */ static void append_token(char *dst, gl_state_index k) { @@ -736,11 +766,30 @@ append_token(char *dst, gl_state_index k) case STATE_LOCAL: append(dst, "local"); break; + /* BEGIN internal state vars */ + case STATE_INTERNAL: + append(dst, "(internal)"); + break; case STATE_NORMAL_SCALE: append(dst, "normalScale"); break; - case STATE_INTERNAL: - append(dst, "(internal)"); + case STATE_TEXRECT_SCALE: + append(dst, "texrectScale"); + break; + case STATE_FOG_PARAMS_OPTIMIZED: + append(dst, "fogParamsOptimized"); + break; + case STATE_LIGHT_SPOT_DIR_NORMALIZED: + append(dst, "lightSpotDirNormalized"); + break; + case STATE_LIGHT_POSITION: + append(dst, "lightPosition"); + break; + case STATE_LIGHT_POSITION_NORMALIZED: + append(dst, "light.position.normalized"); + break; + case STATE_LIGHT_HALF_VECTOR: + append(dst, "lightHalfVector"); break; case STATE_PT_SCALE: append(dst, "PTscale"); @@ -755,10 +804,11 @@ append_token(char *dst, gl_state_index k) append(dst, "PCMbias"); break; case STATE_SHADOW_AMBIENT: - append(dst, "ShadowAmbient"); + append(dst, "CompareFailValue"); break; default: - ; + /* probably STATE_INTERNAL_DRIVER+i (driver private state) */ + append(dst, "driverState"); } } @@ -784,23 +834,23 @@ append_index(char *dst, GLint index) * For example, return "state.matrix.texture[2].inverse". * Use _mesa_free() to deallocate the string. */ -const char * +char * _mesa_program_state_string(const gl_state_index state[STATE_LENGTH]) { char str[1000] = ""; char tmp[30]; append(str, "state."); - append_token(str, (gl_state_index) state[0]); + append_token(str, state[0]); switch (state[0]) { case STATE_MATERIAL: append_face(str, state[1]); - append_token(str, (gl_state_index) state[2]); + append_token(str, state[2]); break; case STATE_LIGHT: append_index(str, state[1]); /* light number [i]. */ - append_token(str, (gl_state_index) state[2]); /* coefficients */ + append_token(str, state[2]); /* coefficients */ break; case STATE_LIGHTMODEL_AMBIENT: append(str, "lightmodel.ambient"); @@ -816,11 +866,11 @@ _mesa_program_state_string(const gl_state_index state[STATE_LENGTH]) case STATE_LIGHTPROD: append_index(str, state[1]); /* light number [i]. */ append_face(str, state[2]); - append_token(str, (gl_state_index) state[3]); + append_token(str, state[3]); break; case STATE_TEXGEN: append_index(str, state[1]); /* tex unit [i] */ - append_token(str, (gl_state_index) state[2]); /* plane coef */ + append_token(str, state[2]); /* plane coef */ break; case STATE_TEXENV_COLOR: append_index(str, state[1]); /* tex unit [i] */ @@ -842,11 +892,11 @@ _mesa_program_state_string(const gl_state_index state[STATE_LENGTH]) /* state[2] = first row to fetch */ /* state[3] = last row to fetch */ /* state[4] = transpose, inverse or invtrans */ - const gl_state_index mat = (gl_state_index) state[0]; + const gl_state_index mat = state[0]; const GLuint index = (GLuint) state[1]; const GLuint firstRow = (GLuint) state[2]; const GLuint lastRow = (GLuint) state[3]; - const gl_state_index modifier = (gl_state_index) state[4]; + const gl_state_index modifier = state[4]; if (index || mat == STATE_TEXTURE_MATRIX || mat == STATE_PROGRAM_MATRIX) @@ -874,10 +924,11 @@ _mesa_program_state_string(const gl_state_index state[STATE_LENGTH]) case STATE_VERTEX_PROGRAM: /* state[1] = {STATE_ENV, STATE_LOCAL} */ /* state[2] = parameter index */ - append_token(str, (gl_state_index) state[1]); + append_token(str, state[1]); append_index(str, state[2]); break; case STATE_INTERNAL: + append_token(str, state[1]); break; default: _mesa_problem(NULL, "Invalid state in _mesa_program_state_string"); diff --git a/src/mesa/shader/prog_statevars.h b/src/mesa/shader/prog_statevars.h index d3091147f82..d5358a1d042 100644 --- a/src/mesa/shader/prog_statevars.h +++ b/src/mesa/shader/prog_statevars.h @@ -79,10 +79,10 @@ typedef enum gl_state_index_ { STATE_SHININESS, STATE_HALF_VECTOR, - STATE_POSITION, - STATE_ATTENUATION, - STATE_SPOT_DIRECTION, - STATE_SPOT_CUTOFF, + STATE_POSITION, /**< xyzw = position */ + STATE_ATTENUATION, /**< xyz = attenuation, w = spot exponent */ + STATE_SPOT_DIRECTION, /**< xyz = direction, w = cos(cutoff) */ + STATE_SPOT_CUTOFF, /**< x = cutoff, yzw = undefined */ STATE_TEXGEN_EYE_S, STATE_TEXGEN_EYE_T, @@ -104,6 +104,7 @@ typedef enum gl_state_index_ { STATE_LOCAL, STATE_INTERNAL, /* Mesa additions */ + STATE_CURRENT_ATTRIB, /* ctx->Current vertex attrib value */ STATE_NORMAL_SCALE, STATE_TEXRECT_SCALE, STATE_FOG_PARAMS_OPTIMIZED, /* for faster fog calc */ @@ -130,7 +131,7 @@ extern GLbitfield _mesa_program_state_flags(const gl_state_index state[STATE_LENGTH]); -extern const char * +extern char * _mesa_program_state_string(const gl_state_index state[STATE_LENGTH]); diff --git a/src/mesa/shader/prog_uniform.c b/src/mesa/shader/prog_uniform.c index dc76be8e46c..0642713148c 100644 --- a/src/mesa/shader/prog_uniform.c +++ b/src/mesa/shader/prog_uniform.c @@ -142,8 +142,8 @@ _mesa_longest_uniform_name(const struct gl_uniform_list *list) GLint max = 0; GLuint i; for (i = 0; list && i < list->NumUniforms; i++) { - GLuint len = _mesa_strlen(list->Uniforms[i].Name); - if (len > (GLuint)max) + GLint len = (GLint)_mesa_strlen(list->Uniforms[i].Name); + if (len > max) max = len; } return max; diff --git a/src/mesa/shader/program.c b/src/mesa/shader/program.c index 738891a0293..7a3b827352a 100644 --- a/src/mesa/shader/program.c +++ b/src/mesa/shader/program.c @@ -554,7 +554,6 @@ _mesa_insert_instructions(struct gl_program *prog, GLuint start, GLuint count) return GL_TRUE; } - /** * Delete 'count' instructions at 'start' in the given program. * Adjust branch targets accordingly. @@ -571,7 +570,7 @@ _mesa_delete_instructions(struct gl_program *prog, GLuint start, GLuint count) for (i = 0; i < prog->NumInstructions; i++) { struct prog_instruction *inst = prog->Instructions + i; if (inst->BranchTarget > 0) { - if (inst->BranchTarget >= start) { + if (inst->BranchTarget > start) { inst->BranchTarget -= count; } } @@ -691,17 +690,47 @@ _mesa_combine_programs(GLcontext *ctx, if (newProg->Target == GL_FRAGMENT_PROGRAM_ARB) { struct gl_fragment_program *fprogA, *fprogB, *newFprog; + GLbitfield progB_inputsRead = progB->InputsRead; + GLint progB_colorFile, progB_colorIndex; + fprogA = (struct gl_fragment_program *) progA; fprogB = (struct gl_fragment_program *) progB; newFprog = (struct gl_fragment_program *) newProg; newFprog->UsesKill = fprogA->UsesKill || fprogB->UsesKill; + /* We'll do a search and replace for instances + * of progB_colorFile/progB_colorIndex below... + */ + progB_colorFile = PROGRAM_INPUT; + progB_colorIndex = FRAG_ATTRIB_COL0; + + /* + * The fragment program may get color from a state var rather than + * a fragment input (vertex output) if it's constant. + * See the texenvprogram.c code. + * So, search the program's parameter list now to see if the program + * gets color from a state var instead of a conventional fragment + * input register. + */ + for (i = 0; i < progB->Parameters->NumParameters; i++) { + struct gl_program_parameter *p = &progB->Parameters->Parameters[i]; + if (p->Type == PROGRAM_STATE_VAR && + p->StateIndexes[0] == STATE_INTERNAL && + p->StateIndexes[1] == STATE_CURRENT_ATTRIB && + p->StateIndexes[2] == VERT_ATTRIB_COLOR0) { + progB_inputsRead |= FRAG_BIT_COL0; + progB_colorFile = PROGRAM_STATE_VAR; + progB_colorIndex = i; + break; + } + } + /* Connect color outputs of fprogA to color inputs of fprogB, via a * new temporary register. */ if ((progA->OutputsWritten & (1 << FRAG_RESULT_COLR)) && - (progB->InputsRead & (1 << FRAG_ATTRIB_COL0))) { + (progB_inputsRead & FRAG_BIT_COL0)) { GLint tempReg = _mesa_find_free_register(newProg, PROGRAM_TEMPORARY); if (tempReg < 0) { _mesa_problem(ctx, "No free temp regs found in " @@ -712,13 +741,14 @@ _mesa_combine_programs(GLcontext *ctx, replace_registers(newInst, lenA, PROGRAM_OUTPUT, FRAG_RESULT_COLR, PROGRAM_TEMPORARY, tempReg); - /* replace reads from input.color[0] with tempReg */ + /* replace reads from the input color with tempReg */ replace_registers(newInst + lenA, lenB, - PROGRAM_INPUT, FRAG_ATTRIB_COL0, - PROGRAM_TEMPORARY, tempReg); + progB_colorFile, progB_colorIndex, /* search for */ + PROGRAM_TEMPORARY, tempReg /* replace with */ ); } - inputsB = progB->InputsRead; + /* compute combined program's InputsRead */ + inputsB = progB_inputsRead; if (progA->OutputsWritten & (1 << FRAG_RESULT_COLR)) { inputsB &= ~(1 << FRAG_ATTRIB_COL0); } diff --git a/src/mesa/shader/shader_api.c b/src/mesa/shader/shader_api.c index b3d66c5babd..013e912e5d6 100644 --- a/src/mesa/shader/shader_api.c +++ b/src/mesa/shader/shader_api.c @@ -370,6 +370,31 @@ _mesa_lookup_shader_err(GLcontext *ctx, GLuint name, const char *caller) } +/** + * Return mask of GLSL_x flags by examining the MESA_GLSL env var. + */ +static GLbitfield +get_shader_flags(void) +{ + GLbitfield flags = 0x0; + const char *env = _mesa_getenv("MESA_GLSL"); + + if (env) { + if (_mesa_strstr(env, "dump")) + flags |= GLSL_DUMP; + if (_mesa_strstr(env, "log")) + flags |= GLSL_LOG; + if (_mesa_strstr(env, "nopt")) + flags |= GLSL_NO_OPT; + else if (_mesa_strstr(env, "opt")) + flags |= GLSL_OPT; + if (_mesa_strstr(env, "uniform")) + flags |= GLSL_UNIFORMS; + } + + return flags; +} + /** * Initialize context's shader state. @@ -381,8 +406,9 @@ _mesa_init_shader_state(GLcontext * ctx) * are generated by the GLSL compiler. */ ctx->Shader.EmitHighLevelInstructions = GL_TRUE; - ctx->Shader.EmitCondCodes = GL_TRUE; /* XXX probably want GL_FALSE... */ + ctx->Shader.EmitCondCodes = GL_FALSE;/*GL_TRUE;*/ /* XXX probably want GL_FALSE... */ ctx->Shader.EmitComments = GL_FALSE; + ctx->Shader.Flags = get_shader_flags(); } @@ -866,6 +892,7 @@ _mesa_get_active_uniform(GLcontext *ctx, GLuint program, GLuint index, { const struct gl_shader_program *shProg; const struct gl_program *prog; + const struct gl_program_parameter *param; GLint progPos; shProg = _mesa_lookup_shader_program_err(ctx, program, "glGetActiveUniform"); @@ -891,14 +918,30 @@ _mesa_get_active_uniform(GLcontext *ctx, GLuint program, GLuint index, if (!prog || progPos < 0) return; /* should never happen */ - if (nameOut) - copy_string(nameOut, maxLength, length, - prog->Parameters->Parameters[progPos].Name); - if (size) - *size = prog->Parameters->Parameters[progPos].Size - / sizeof_glsl_type(prog->Parameters->Parameters[progPos].DataType); - if (type) - *type = prog->Parameters->Parameters[progPos].DataType; + ASSERT(progPos < prog->Parameters->NumParameters); + param = &prog->Parameters->Parameters[progPos]; + + if (nameOut) { + copy_string(nameOut, maxLength, length, param->Name); + } + + if (size) { + GLint typeSize = sizeof_glsl_type(param->DataType); + if (param->Size > typeSize) { + /* This is an array. + * Array elements are placed on vector[4] boundaries so they're + * a multiple of four floats. We round typeSize up to next multiple + * of four to get the right size below. + */ + typeSize = (typeSize + 3) & ~3; + } + /* Note that the returned size is in units of the <type>, not bytes */ + *size = param->Size / typeSize; + } + + if (type) { + *type = param->DataType; + } } @@ -1117,7 +1160,8 @@ get_matrix_dims(GLenum type, GLint *rows, GLint *cols) /** * Determine the number of rows and columns occupied by a uniform - * according to its datatype. + * according to its datatype. For non-matrix types (such as GL_FLOAT_VEC4), + * the number of rows = 1 and cols = number of elements in the vector. */ static void get_uniform_rows_cols(const struct gl_program_parameter *p, @@ -1126,33 +1170,45 @@ get_uniform_rows_cols(const struct gl_program_parameter *p, 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; + if (p->Size <= 4) { + *rows = 1; + *cols = p->Size; + } + else { + *rows = p->Size / 4 + 1; + if (p->Size % 4 == 0) + *cols = 4; + else + *cols = p->Size % 4; + } } } -#define MAX_UNIFORM_ELEMENTS 16 - /** - * Helper for GetUniformfv(), GetUniformiv() - * Returns number of elements written to 'params' output. + * Helper for get_uniform[fi]v() functions. + * Given a shader program name and uniform location, return a pointer + * to the shader program and return the program parameter position. */ -static GLuint -get_uniformfv(GLcontext *ctx, GLuint program, GLint location, - GLfloat *params) +static void +lookup_uniform_parameter(GLcontext *ctx, GLuint program, GLint location, + struct gl_program **progOut, GLint *paramPosOut) { struct gl_shader_program *shProg = _mesa_lookup_shader_program_err(ctx, program, "glGetUniform[if]v"); - if (shProg) { - if (shProg->Uniforms && - location >= 0 && location < (GLint) shProg->Uniforms->NumUniforms) { - GLint progPos; - const struct gl_program *prog = NULL; + struct gl_program *prog = NULL; + GLint progPos = -1; + /* if shProg is NULL, we'll have already recorded an error */ + + if (shProg) { + if (!shProg->Uniforms || + location < 0 || + location >= (GLint) shProg->Uniforms->NumUniforms) { + _mesa_error(ctx, GL_INVALID_OPERATION, "glGetUniformfv(location)"); + } + else { + /* OK, find the gl_program and program parameter location */ progPos = shProg->Uniforms->Uniforms[location].VertPos; if (progPos >= 0) { prog = &shProg->VertexProgram->Base; @@ -1163,33 +1219,11 @@ get_uniformfv(GLcontext *ctx, GLuint program, GLint location, prog = &shProg->FragmentProgram->Base; } } - - ASSERT(prog); - if (prog) { - const struct gl_program_parameter *p = - &prog->Parameters->Parameters[progPos]; - GLint rows, cols, i, j, k; - - /* See uniformiv() below */ - assert(p->Size <= MAX_UNIFORM_ELEMENTS); - - get_uniform_rows_cols(p, &rows, &cols); - - k = 0; - for (i = 0; i < rows; i++) { - for (j = 0; j < cols; j++ ) { - params[k++] = prog->Parameters->ParameterValues[progPos+i][j]; - } - } - - return p->Size; - } - } - else { - _mesa_error(ctx, GL_INVALID_OPERATION, "glGetUniformfv(location)"); } } - return 0; + + *progOut = prog; + *paramPosOut = progPos; } @@ -1200,23 +1234,54 @@ static void _mesa_get_uniformfv(GLcontext *ctx, GLuint program, GLint location, GLfloat *params) { - (void) get_uniformfv(ctx, program, location, params); + struct gl_program *prog; + GLint paramPos; + + lookup_uniform_parameter(ctx, program, location, &prog, ¶mPos); + + if (prog) { + const struct gl_program_parameter *p = + &prog->Parameters->Parameters[paramPos]; + GLint rows, cols, i, j, k; + + get_uniform_rows_cols(p, &rows, &cols); + + k = 0; + for (i = 0; i < rows; i++) { + for (j = 0; j < cols; j++ ) { + params[k++] = prog->Parameters->ParameterValues[paramPos+i][j]; + } + } + } } /** * Called via ctx->Driver.GetUniformiv(). + * \sa _mesa_get_uniformfv, only difference is a cast. */ static void _mesa_get_uniformiv(GLcontext *ctx, GLuint program, GLint location, GLint *params) { - GLfloat fparams[MAX_UNIFORM_ELEMENTS]; - GLuint n = get_uniformfv(ctx, program, location, fparams); - GLuint i; - assert(n <= MAX_UNIFORM_ELEMENTS); - for (i = 0; i < n; i++) { - params[i] = (GLint) fparams[i]; + struct gl_program *prog; + GLint paramPos; + + lookup_uniform_parameter(ctx, program, location, &prog, ¶mPos); + + if (prog) { + const struct gl_program_parameter *p = + &prog->Parameters->Parameters[paramPos]; + GLint rows, cols, i, j, k; + + get_uniform_rows_cols(p, &rows, &cols); + + k = 0; + for (i = 0; i < rows; i++) { + for (j = 0; j < cols; j++ ) { + params[k++] = (GLint) prog->Parameters->ParameterValues[paramPos+i][j]; + } + } } } @@ -1357,7 +1422,10 @@ _mesa_compile_shader(GLcontext *ctx, GLuint shaderObj) if (!sh) return; - sh->CompileStatus = _slang_compile(ctx, sh); + /* this call will set the sh->CompileStatus field to indicate if + * compilation was successful. + */ + (void) _slang_compile(ctx, sh); } @@ -1527,7 +1595,7 @@ set_program_uniform(GLcontext *ctx, struct gl_program *program, return; } - if (index + offset > program->Parameters->Size) { + if (index + offset > (GLint) program->Parameters->Size) { /* out of bounds! */ return; } @@ -1535,27 +1603,36 @@ set_program_uniform(GLcontext *ctx, struct gl_program *program, if (param->Type == PROGRAM_SAMPLER) { /* This controls which texture unit which is used by a sampler */ GLuint texUnit, sampler; + GLint i; /* data type for setting samplers must be int */ - if (type != GL_INT || count != 1) { + if (type != GL_INT) { _mesa_error(ctx, GL_INVALID_OPERATION, "glUniform(only glUniform1i can be used " "to set sampler uniforms)"); return; } - sampler = (GLuint) program->Parameters->ParameterValues[index][0]; - texUnit = ((GLuint *) values)[0]; + /* XXX arrays of samplers haven't been tested much, but it's not a + * common thing... + */ + for (i = 0; i < count; i++) { + sampler = (GLuint) program->Parameters->ParameterValues[index + i][0]; + texUnit = ((GLuint *) values)[i]; + + /* check that the sampler (tex unit index) is legal */ + if (texUnit >= ctx->Const.MaxTextureImageUnits) { + _mesa_error(ctx, GL_INVALID_VALUE, + "glUniform1(invalid sampler/tex unit index)"); + return; + } - /* check that the sampler (tex unit index) is legal */ - if (texUnit >= ctx->Const.MaxTextureImageUnits) { - _mesa_error(ctx, GL_INVALID_VALUE, - "glUniform1(invalid sampler/tex unit index)"); - return; + /* This maps a sampler to a texture unit: */ + if (sampler < MAX_SAMPLERS) { + program->SamplerUnits[sampler] = texUnit; + } } - /* This maps a sampler to a texture unit: */ - program->SamplerUnits[sampler] = texUnit; _mesa_update_shader_textures_used(program); FLUSH_VERTICES(ctx, _NEW_TEXTURE); @@ -1563,19 +1640,31 @@ set_program_uniform(GLcontext *ctx, struct gl_program *program, else { /* ordinary uniform variable */ GLsizei k, i; - GLint slots = (param->Size + 3) / 4; + const GLint slots = (param->Size + 3) / 4; + const GLint typeSize = sizeof_glsl_type(param->DataType); - if (count * elems > (GLint) param->Size) { - _mesa_error(ctx, GL_INVALID_OPERATION, "glUniform(count too large)"); - return; + if (param->Size > typeSize) { + /* an array */ + /* we'll ignore extra data below */ + } + else { + /* non-array: count must be one */ + if (count != 1) { + _mesa_error(ctx, GL_INVALID_OPERATION, + "glUniform(uniform is not an array)"); + return; + } } - - if (count > slots) - count = slots; for (k = 0; k < count; k++) { - GLfloat *uniformVal = - program->Parameters->ParameterValues[index + offset + k]; + GLfloat *uniformVal; + + if (offset + k > slots) { + /* Extra array data is ignored */ + break; + } + + 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++) { @@ -1592,7 +1681,7 @@ set_program_uniform(GLcontext *ctx, struct gl_program *program, /* if the uniform is bool-valued, convert to 1.0 or 0.0 */ if (is_boolean_type(param->DataType)) { for (i = 0; i < elems; i++) { - uniformVal[i] = uniformVal[i] ? 1.0 : 0.0; + uniformVal[i] = uniformVal[i] ? 1.0f : 0.0f; } } } @@ -1610,6 +1699,7 @@ _mesa_uniform(GLcontext *ctx, GLint location, GLsizei count, struct gl_shader_program *shProg = ctx->Shader.CurrentProgram; struct gl_uniform *uniform; GLint elems, offset; + GLenum basicType; if (!shProg || !shProg->LinkStatus) { _mesa_error(ctx, GL_INVALID_OPERATION, "glUniform(program not linked)"); @@ -1619,6 +1709,11 @@ _mesa_uniform(GLcontext *ctx, GLint location, GLsizei count, if (location == -1) return; /* The standard specifies this as a no-op */ + if (location < -1) { + _mesa_error(ctx, GL_INVALID_OPERATION, "glUniform(location)"); + return; + } + split_location_offset(&location, &offset); if (location < 0 || location >= (GLint) shProg->Uniforms->NumUniforms) { @@ -1633,19 +1728,35 @@ _mesa_uniform(GLcontext *ctx, GLint location, GLsizei count, switch (type) { case GL_FLOAT: + basicType = GL_FLOAT; + elems = 1; + break; case GL_INT: + basicType = GL_INT; elems = 1; break; case GL_FLOAT_VEC2: + basicType = GL_FLOAT; + elems = 2; + break; case GL_INT_VEC2: + basicType = GL_INT; elems = 2; break; case GL_FLOAT_VEC3: + basicType = GL_FLOAT; + elems = 3; + break; case GL_INT_VEC3: + basicType = GL_INT; elems = 3; break; case GL_FLOAT_VEC4: + basicType = GL_FLOAT; + elems = 4; + break; case GL_INT_VEC4: + basicType = GL_INT; elems = 4; break; default: @@ -1657,6 +1768,25 @@ _mesa_uniform(GLcontext *ctx, GLint location, GLsizei count, uniform = &shProg->Uniforms->Uniforms[location]; + if (ctx->Shader.Flags & GLSL_UNIFORMS) { + GLint i; + _mesa_printf("Mesa: set program %u uniform %s (loc %d) to: ", + shProg->Name, uniform->Name, location); + if (basicType == GL_INT) { + const GLint *v = (const GLint *) values; + for (i = 0; i < count * elems; i++) { + _mesa_printf("%d ", v[i]); + } + } + else { + const GLfloat *v = (const GLfloat *) values; + for (i = 0; i < count * elems; i++) { + _mesa_printf("%g ", v[i]); + } + } + _mesa_printf("\n"); + } + /* A uniform var may be used by both a vertex shader and a fragment * shader. We may need to update one or both shader's uniform here: */ @@ -1758,6 +1888,11 @@ _mesa_uniform_matrix(GLcontext *ctx, GLint cols, GLint rows, if (location == -1) return; /* The standard specifies this as a no-op */ + if (location < -1) { + _mesa_error(ctx, GL_INVALID_OPERATION, "glUniformMatrix(location)"); + return; + } + split_location_offset(&location, &offset); if (location < 0 || location >= (GLint) shProg->Uniforms->NumUniforms) { diff --git a/src/mesa/shader/slang/library/slang_120_core_gc.h b/src/mesa/shader/slang/library/slang_120_core_gc.h index fb37f2f5ce7..1fdbddf7c3e 100644 --- a/src/mesa/shader/slang/library/slang_120_core_gc.h +++ b/src/mesa/shader/slang/library/slang_120_core_gc.h @@ -2,96 +2,99 @@ /* DO NOT EDIT - THIS FILE IS AUTOMATICALLY GENERATED FROM THE FOLLOWING FILE: */ /* slang_120_core.gc */ -4,1,90,95,0,0,26,1,1,1,0,0,9,102,48,48,0,0,1,1,0,0,9,102,49,48,0,0,1,1,0,0,9,102,50,48,0,0,1,1,0,0, 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3382fce6ad9..add3b5aeaa9 100644 --- a/src/mesa/shader/slang/library/slang_builtin_120_fragment_gc.h +++ b/src/mesa/shader/slang/library/slang_builtin_120_fragment_gc.h @@ -2,4 +2,4 @@ /* DO NOT EDIT - THIS FILE IS AUTOMATICALLY GENERATED FROM THE FOLLOWING FILE: */ /* slang_builtin_120_fragment.gc */ -4,2,2,90,95,3,0,10,1,103,108,95,80,111,105,110,116,67,111,111,114,100,0,0,0,0 +5,2,2,90,95,3,0,10,0,1,103,108,95,80,111,105,110,116,67,111,111,114,100,0,0,0,0 diff --git a/src/mesa/shader/slang/library/slang_common_builtin.gc b/src/mesa/shader/slang/library/slang_common_builtin.gc index a051c53eea3..230c57cea8d 100644 --- a/src/mesa/shader/slang/library/slang_common_builtin.gc +++ b/src/mesa/shader/slang/library/slang_common_builtin.gc @@ -1,8 +1,9 @@ /* * Mesa 3-D graphics library - * Version: 6.5 + * Version: 7.3 * * Copyright (C) 2006 Brian Paul All Rights Reserved. + * Copyright (C) 2008 VMware, Inc. All Rights Reserved. * * Permission is hereby granted, free of charge, to any person obtaining a * copy of this software and associated documentation files (the "Software"), @@ -26,8 +27,9 @@ // From Shader Spec, ver. 1.10, rev. 59 // -//bp: XXX these will probably go away since the value needs to be -//determined at runtime and may vary from one GLcontext to another... +// Note: the values assigned to these constants here aren't actually used. +// They're set by the compiler according to the GL context limits. +// See slang_simplify.c const int gl_MaxLights = 8; const int gl_MaxClipPlanes = 6; const int gl_MaxTextureUnits = 8; @@ -98,6 +100,9 @@ struct gl_MaterialParameters { uniform gl_MaterialParameters gl_FrontMaterial; uniform gl_MaterialParameters gl_BackMaterial; +/* NOTE: the order of these fields is significant! + * See the definition of the lighting state vars such as STATE_SPOT_DIRECTION. + */ struct gl_LightSourceParameters { vec4 ambient; vec4 diffuse; @@ -105,12 +110,14 @@ struct gl_LightSourceParameters { vec4 position; vec4 halfVector; vec3 spotDirection; - float spotExponent; - float spotCutoff; float spotCosCutoff; + float constantAttenuation; float linearAttenuation; float quadraticAttenuation; + float spotExponent; + + float spotCutoff; }; uniform gl_LightSourceParameters gl_LightSource[gl_MaxLights]; 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 dfe406c2331..759bf247d80 100644 --- a/src/mesa/shader/slang/library/slang_common_builtin_gc.h +++ b/src/mesa/shader/slang/library/slang_common_builtin_gc.h @@ -2,847 +2,867 @@ /* DO NOT EDIT - THIS FILE IS AUTOMATICALLY GENERATED FROM THE FOLLOWING FILE: */ /* slang_common_builtin.gc */ -4,2,2,90,95,1,0,5,1,103,108,95,77,97,120,76,105,103,104,116,115,0,2,16,10,56,0,0,0,2,2,90,95,1,0,5, -1,103,108,95,77,97,120,67,108,105,112,80,108,97,110,101,115,0,2,16,10,54,0,0,0,2,2,90,95,1,0,5,1, 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return a; } -void __operator -= (inout int a, const int b) +int __operator -= (inout int a, const int b) { - __asm vec4_subtract a, a, b; + a = a - b; + return a; } -void __operator *= (inout int a, const int b) +int __operator *= (inout int a, const int b) { - __asm vec4_multiply a, a, b; + a = a * b; + return a; } -void __operator /= (inout int a, const int b) +int __operator /= (inout int a, const int b) { - float invB; - __asm float_rcp invB, b; - __asm vec4_multiply a, a, invB; - __asm vec4_to_ivec4 a, a; + a = a / b; + return a; } //// ivec2 assignment operators -void __operator += (inout ivec2 v, const ivec2 u) +ivec2 __operator += (inout ivec2 v, const ivec2 u) { - __asm vec4_add v, v, u; + v = v + u; + return v; } -void __operator -= (inout ivec2 v, const ivec2 u) +ivec2 __operator -= (inout ivec2 v, const ivec2 u) { - __asm vec4_subtract v, v, u; + v = v - u; + return v; } -void __operator *= (inout ivec2 v, const ivec2 u) +ivec2 __operator *= (inout ivec2 v, const ivec2 u) { - __asm vec4_multiply v, v, u; + v = v * u; + return v; } -void __operator /= (inout ivec2 v, const ivec2 u) +ivec2 __operator /= (inout ivec2 v, const ivec2 u) { - ivec2 inv, z; - __asm float_rcp inv.x, u.x; - __asm float_rcp inv.y, u.y; - __asm vec4_multiply z, v, inv; - __asm vec4_to_ivec4 v, z; + v = v / u; + return v; } //// ivec3 assignment operators -void __operator += (inout ivec3 v, const ivec3 u) +ivec3 __operator += (inout ivec3 v, const ivec3 u) { - __asm vec4_add v, v, u; + v = v + u; + return v; } -void __operator -= (inout ivec3 v, const ivec3 u) +ivec3 __operator -= (inout ivec3 v, const ivec3 u) { - __asm vec4_subtract v, v, u; + v = v - u; + return v; } -void __operator *= (inout ivec3 v, const ivec3 u) +ivec3 __operator *= (inout ivec3 v, const ivec3 u) { - __asm vec4_multiply v, v, u; + v = v * u; + return v; } -void __operator /= (inout ivec3 v, const ivec3 u) +ivec3 __operator /= (inout ivec3 v, const ivec3 u) { - ivec3 inv, z; - __asm float_rcp inv.x, u.x; - __asm float_rcp inv.y, u.y; - __asm vec4_multiply z, v, inv; - __asm vec4_to_ivec4 v, z; + v = v / u; + return v; } //// ivec4 assignment operators -void __operator += (inout ivec4 v, const ivec4 u) +ivec4 __operator += (inout ivec4 v, const ivec4 u) { - __asm vec4_add v, v, u; + v = v + u; + return v; } -void __operator -= (inout ivec4 v, const ivec4 u) +ivec4 __operator -= (inout ivec4 v, const ivec4 u) { - __asm vec4_subtract v, v, u; + v = v - u; + return v; } -void __operator *= (inout ivec4 v, const ivec4 u) +ivec4 __operator *= (inout ivec4 v, const ivec4 u) { - __asm vec4_multiply v, v, u; + v = v * u; + return v; } -void __operator /= (inout ivec4 v, const ivec4 u) +ivec4 __operator /= (inout ivec4 v, const ivec4 u) { - ivec4 inv, z; - __asm float_rcp inv.x, u.x; - __asm float_rcp inv.y, u.y; - __asm vec4_multiply z, v, inv; - __asm vec4_to_ivec4 v, z; + v = v / u; + return v; } //// float assignment operators -void __operator += (inout float a, const float b) +float __operator += (inout float a, const float b) { - __asm vec4_add a.x, a.x, b.x; + a = a + b; + return a; } -void __operator -= (inout float a, const float b) +float __operator -= (inout float a, const float b) { - __asm vec4_subtract a.x, a, b; + a = a - b; + return a; } -void __operator *= (inout float a, const float b) +float __operator *= (inout float a, const float b) { - __asm vec4_multiply a.x, a, b; + a = a * b; + return a; } -void __operator /= (inout float a, const float b) +float __operator /= (inout float a, const float b) { - float w; // = 1 / b - __asm float_rcp w.x, b; - __asm vec4_multiply a.x, a, w; + a = a / b; + return a; } //// vec2 assignment operators -void __operator += (inout vec2 v, const vec2 u) +vec2 __operator += (inout vec2 v, const vec2 u) { - __asm vec4_add v.xy, v.xy, u.xy; + v = v + u; + return v; } -void __operator -= (inout vec2 v, const vec2 u) +vec2 __operator -= (inout vec2 v, const vec2 u) { - __asm vec4_subtract v.xy, v.xy, u.xy; + v = v - u; + return v; } -void __operator *= (inout vec2 v, const vec2 u) +vec2 __operator *= (inout vec2 v, const vec2 u) { - __asm vec4_multiply v.xy, v.xy, u.xy; + v = v * u; + return v; } -void __operator /= (inout vec2 v, const vec2 u) +vec2 __operator /= (inout vec2 v, const vec2 u) { - vec2 w; - __asm float_rcp w.x, u.x; - __asm float_rcp w.y, u.y; - __asm vec4_multiply v.xy, v.xy, w.xy; + v = v / u; + return v; } //// vec3 assignment operators -void __operator += (inout vec3 v, const vec3 u) +vec3 __operator += (inout vec3 v, const vec3 u) { - __asm vec4_add v.xyz, v, u; + v = v + u; + return v; } -void __operator -= (inout vec3 v, const vec3 u) +vec3 __operator -= (inout vec3 v, const vec3 u) { - __asm vec4_subtract v.xyz, v, u; + v = v - u; + return v; } -void __operator *= (inout vec3 v, const vec3 u) +vec3 __operator *= (inout vec3 v, const vec3 u) { - __asm vec4_multiply v.xyz, v, u; + v = v * u; + return v; } -void __operator /= (inout vec3 v, const vec3 u) +vec3 __operator /= (inout vec3 v, const vec3 u) { - vec3 w; - __asm float_rcp w.x, u.x; - __asm float_rcp w.y, u.y; - __asm float_rcp w.z, u.z; - __asm vec4_multiply v.xyz, v.xyz, w.xyz; + v = v / u; + return v; } //// vec4 assignment operators -void __operator += (inout vec4 v, const vec4 u) +vec4 __operator += (inout vec4 v, const vec4 u) { - __asm vec4_add v, v, u; + v = v + u; + return v; } -void __operator -= (inout vec4 v, const vec4 u) +vec4 __operator -= (inout vec4 v, const vec4 u) { - __asm vec4_subtract v, v, u; + v = v - u; + return v; } -void __operator *= (inout vec4 v, const vec4 u) +vec4 __operator *= (inout vec4 v, const vec4 u) { - __asm vec4_multiply v, v, u; + v = v * u; + return v; } -void __operator /= (inout vec4 v, const vec4 u) +vec4 __operator /= (inout vec4 v, const vec4 u) { - vec4 w; - __asm float_rcp w.x, u.x; - __asm float_rcp w.y, u.y; - __asm float_rcp w.z, u.z; - __asm float_rcp w.w, u.w; - __asm vec4_multiply v, v, w; + v = v / u; + return v; } //// ivec2/int assignment operators -void __operator += (inout ivec2 v, const int a) +ivec2 __operator += (inout ivec2 v, const int a) { - __asm vec4_add v.xy, v.xy, a; + v = v + ivec2(a); + return v; } -void __operator -= (inout ivec2 v, const int a) +ivec2 __operator -= (inout ivec2 v, const int a) { - __asm vec4_subtract v.xy, v.xy, a; + v = v - ivec2(a); + return v; } -void __operator *= (inout ivec2 v, const int a) +ivec2 __operator *= (inout ivec2 v, const int a) { - __asm vec4_multiply v.xy, v.xy, a; - v.x *= a; - v.y *= a; + v = v * ivec2(a); + return v; } -void __operator /= (inout ivec2 v, const int a) +ivec2 __operator /= (inout ivec2 v, const int a) { -// XXX rcp - v.x /= a; - v.y /= a; + v = v / ivec2(a); + return v; } //// ivec3/int assignment operators -void __operator += (inout ivec3 v, const int a) +ivec3 __operator += (inout ivec3 v, const int a) { - __asm vec4_add v.xyz, v.xyz, a; + v = v + ivec3(a); + return v; } -void __operator -= (inout ivec3 v, const int a) +ivec3 __operator -= (inout ivec3 v, const int a) { - __asm vec4_subtract v.xyz, v.xyz, a; + v = v - ivec3(a); + return v; } -void __operator *= (inout ivec3 v, const int a) +ivec3 __operator *= (inout ivec3 v, const int a) { - __asm vec4_multiply v.xyz, v.xyz, a; + v = v * ivec3(a); + return v; } -void __operator /= (inout ivec3 v, const int a) +ivec4 __operator /= (inout ivec3 v, const int a) { - // XXX rcp - v.x /= a; - v.y /= a; - v.z /= a; + v = v / ivec3(a); + return v; } //// ivec4/int assignment operators -void __operator += (inout ivec4 v, const int a) +ivec4 __operator += (inout ivec4 v, const int a) { - __asm vec4_add v, v, a; + v = v + ivec4(a); + return v; } -void __operator -= (inout ivec4 v, const int a) +ivec4 __operator -= (inout ivec4 v, const int a) { - __asm vec4_subtract v, v, a; + v = v - ivec4(a); + return v; } -void __operator *= (inout ivec4 v, const int a) +ivec4 __operator *= (inout ivec4 v, const int a) { - __asm vec4_multiply v, v, a; + v = v * ivec4(a); + return v; } -void __operator /= (inout ivec4 v, const int a) +ivec4 __operator /= (inout ivec4 v, const int a) { - v.x /= a; - v.y /= a; - v.z /= a; - v.w /= a; + v = v / ivec4(a); + return v; } //// vec2/float assignment operators -void __operator += (inout vec2 v, const float a) +vec2 __operator += (inout vec2 v, const float a) { - __asm vec4_add v.xy, v, a; + v = v + vec2(a); + return v; } -void __operator -= (inout vec2 v, const float a) +vec2 __operator -= (inout vec2 v, const float a) { - __asm vec4_subtract v.xy, v, a; + v = v - vec2(a); + return v; } -void __operator *= (inout vec2 v, const float a) +vec2 __operator *= (inout vec2 v, const float a) { - __asm vec4_multiply v.xy, v, a; + v = v * vec2(a); + return v; } -void __operator /= (inout vec2 v, const float a) +vec2 __operator /= (inout vec2 v, const float a) { - float invA; - __asm float_rcp invA, a; - __asm vec4_multiply v.xy, v.xy, invA; + v = v / vec2(a); + return v; } //// vec3/float assignment operators -void __operator += (inout vec3 v, const float a) +vec3 __operator += (inout vec3 v, const float a) { - __asm vec4_add v.xyz, v, a; + v = v + vec3(a); + return v; } -void __operator -= (inout vec3 v, const float a) +vec3 __operator -= (inout vec3 v, const float a) { - __asm vec4_subtract v.xyz, v, a; + v = v - vec3(a); + return v; } -void __operator *= (inout vec3 v, const float a) +vec3 __operator *= (inout vec3 v, const float a) { - __asm vec4_multiply v.xyz, v, a; + v = v * vec3(a); + return v; } -void __operator /= (inout vec3 v, const float a) +vec3 __operator /= (inout vec3 v, const float a) { - float invA; - __asm float_rcp invA, a; - __asm vec4_multiply v.xyz, v.xyz, invA; + v = v / vec3(a); + return v; } //// vec4/float assignment operators -void __operator += (inout vec4 v, const float a) +vec4 __operator += (inout vec4 v, const float a) { - __asm vec4_add v, v, a; + v = v + vec4(a); + return v; } -void __operator -= (inout vec4 v, const float a) +vec4 __operator -= (inout vec4 v, const float a) { - __asm vec4_subtract v, v, a; + v = v - vec4(a); + return v; } -void __operator *= (inout vec4 v, const float a) +vec4 __operator *= (inout vec4 v, const float a) { - __asm vec4_multiply v, v, a; + v = v * vec4(a); + return v; } -void __operator /= (inout vec4 v, const float a) +vec4 __operator /= (inout vec4 v, const float a) { - float invA; - __asm float_rcp invA, a; - __asm vec4_multiply v, v, invA; + v = v / vec4(a); + return v; } @@ -1896,187 +1907,239 @@ vec4 __operator * (const vec4 v, const mat4 m) //// mat2 assignment operators -void __operator += (inout mat2 m, const mat2 n) +mat2 __operator += (inout mat2 m, const mat2 n) { - m[0] += n[0]; - m[1] += n[1]; + m[0] = m[0] + n[0]; + m[1] = m[1] + n[1]; + return m; } -void __operator -= (inout mat2 m, const mat2 n) +mat2 __operator -= (inout mat2 m, const mat2 n) { - m[0] -= n[0]; - m[1] -= n[1]; + m[0] = m[0] - n[0]; + m[1] = m[1] - n[1]; + return m; } -void __operator *= (inout mat2 m, const mat2 n) +mat2 __operator *= (inout mat2 m, const mat2 n) { - m = m * n; + m = m * n; + return m; } -void __operator /= (inout mat2 m, const mat2 n) +mat2 __operator /= (inout mat2 m, const mat2 n) { - m[0] /= n[0]; - m[1] /= n[1]; + m[0] = m[0] / n[0]; + m[1] = m[1] / n[1]; + return m; } //// mat3 assignment operators -void __operator += (inout mat3 m, const mat3 n) +mat3 __operator += (inout mat3 m, const mat3 n) { - m[0] += n[0]; - m[1] += n[1]; - m[2] += n[2]; + m[0] = m[0] + n[0]; + m[1] = m[1] + n[1]; + m[2] = m[2] + n[2]; + return m; } -void __operator -= (inout mat3 m, const mat3 n) +mat3 __operator -= (inout mat3 m, const mat3 n) { - m[0] -= n[0]; - m[1] -= n[1]; - m[2] -= n[2]; + m[0] = m[0] - n[0]; + m[1] = m[1] - n[1]; + m[2] = m[2] - n[2]; + return m; } -void __operator *= (inout mat3 m, const mat3 n) +mat3 __operator *= (inout mat3 m, const mat3 n) { - m = m * n; + m = m * n; + return m; } -void __operator /= (inout mat3 m, const mat3 n) +mat3 __operator /= (inout mat3 m, const mat3 n) { - m[0] /= n[0]; - m[1] /= n[1]; - m[2] /= n[2]; + m[0] = m[0] / n[0]; + m[1] = m[1] / n[1]; + m[2] = m[2] / n[2]; + return m; } // mat4 assignment operators -void __operator += (inout mat4 m, const mat4 n) +mat4 __operator += (inout mat4 m, const mat4 n) { - m[0] += n[0]; - m[1] += n[1]; - m[2] += n[2]; - m[3] += n[3]; + m[0] = m[0] + n[0]; + m[1] = m[1] + n[1]; + m[2] = m[2] + n[2]; + m[3] = m[3] + n[3]; + return m; } -void __operator -= (inout mat4 m, const mat4 n) { - m[0] -= n[0]; - m[1] -= n[1]; - m[2] -= n[2]; - m[3] -= n[3]; +mat4 __operator -= (inout mat4 m, const mat4 n) +{ + m[0] = m[0] - n[0]; + m[1] = m[1] - n[1]; + m[2] = m[2] - n[2]; + m[3] = m[3] - n[3]; + return m; } -void __operator *= (inout mat4 m, const mat4 n) +mat4 __operator *= (inout mat4 m, const mat4 n) { - m = m * n; + m = m * n; + return m; } -void __operator /= (inout mat4 m, const mat4 n) +mat4 __operator /= (inout mat4 m, const mat4 n) { - m[0] /= n[0]; - m[1] /= n[1]; - m[2] /= n[2]; - m[3] /= n[3]; + m[0] = m[0] / n[0]; + m[1] = m[1] / n[1]; + m[2] = m[2] / n[2]; + m[3] = m[3] / n[3]; + return m; } //// mat2/float assignment operators -void __operator += (inout mat2 m, const float a) { - m[0] += a; - m[1] += a; +mat2 __operator += (inout mat2 m, const float a) +{ + vec2 v = vec2(a); + m[0] = m[0] + v; + m[1] = m[1] + v; + return m; } -void __operator -= (inout mat2 m, const float a) { - m[0] -= a; - m[1] -= a; +mat2 __operator -= (inout mat2 m, const float a) +{ + vec2 v = vec2(a); + m[0] = m[0] - v; + m[1] = m[1] - v; + return m; } -void __operator *= (inout mat2 m, const float a) { - m[0] *= a; - m[1] *= a; +mat2 __operator *= (inout mat2 m, const float a) +{ + vec2 v = vec2(a); + m[0] = m[0] * v; + m[1] = m[1] * v; + return m; } -void __operator /= (inout mat2 m, const float a) { - m[0] /= a; - m[1] /= a; +mat2 __operator /= (inout mat2 m, const float a) +{ + vec2 v = vec2(1.0 / a); + m[0] = m[0] * v; + m[1] = m[1] * v; + return m; } //// mat3/float assignment operators -void __operator += (inout mat3 m, const float a) { - m[0] += a; - m[1] += a; - m[2] += a; +mat3 __operator += (inout mat3 m, const float a) +{ + vec3 v = vec3(a); + m[0] = m[0] + v; + m[1] = m[1] + v; + m[2] = m[2] + v; + return m; } -void __operator -= (inout mat3 m, const float a) { - m[0] -= a; - m[1] -= a; - m[2] -= a; +mat3 __operator -= (inout mat3 m, const float a) +{ + vec3 v = vec3(a); + m[0] = m[0] - v; + m[1] = m[1] - v; + m[2] = m[2] - v; + return m; } -void __operator *= (inout mat3 m, const float a) { - m[0] *= a; - m[1] *= a; - m[2] *= a; +mat3 __operator *= (inout mat3 m, const float a) +{ + vec3 v = vec3(a); + m[0] = m[0] * v; + m[1] = m[1] * v; + m[2] = m[2] * v; + return m; } -void __operator /= (inout mat3 m, const float a) { - m[0] /= a; - m[1] /= a; - m[2] /= a; +mat3 __operator /= (inout mat3 m, const float a) +{ + vec3 v = vec3(1.0 / a); + m[0] = m[0] * v; + m[1] = m[1] * v; + m[2] = m[2] * v; + return m; } //// mat4/float assignment operators -void __operator += (inout mat4 m, const float a) { - m[0] += a; - m[1] += a; - m[2] += a; - m[3] += a; +mat4 __operator += (inout mat4 m, const float a) +{ + vec4 v = vec4(a); + m[0] = m[0] + v; + m[1] = m[1] + v; + m[2] = m[2] + v; + m[3] = m[3] + v; + return m; } -void __operator -= (inout mat4 m, const float a) { - m[0] -= a; - m[1] -= a; - m[2] -= a; - m[3] -= a; +mat4 __operator -= (inout mat4 m, const float a) +{ + vec4 v = vec4(a); + m[0] = m[0] - v; + m[1] = m[1] - v; + m[2] = m[2] - v; + m[3] = m[3] - v; + return m; } -void __operator *= (inout mat4 m, const float a) { - m[0] *= a; - m[1] *= a; - m[2] *= a; - m[3] *= a; +mat4 __operator *= (inout mat4 m, const float a) +{ + vec4 v = vec4(a); + m[0] = m[0] * v; + m[1] = m[1] * v; + m[2] = m[2] * v; + m[3] = m[3] * v; + return m; } -void __operator /= (inout mat4 m, const float a) { - m[0] /= a; - m[1] /= a; - m[2] /= a; - m[3] /= a; +mat4 __operator /= (inout mat4 m, const float a) +{ + vec4 v = vec4(1.0 / a); + m[0] = m[0] * v; + m[1] = m[1] * v; + m[2] = m[2] * v; + m[3] = m[3] * v; + return m; } //// vec/mat assignment operators -void __operator *= (inout vec2 v, const mat2 m) +vec2 __operator *= (inout vec2 v, const mat2 m) { - v = v * m; + v = v * m; + return v; } -void __operator *= (inout vec3 v, const mat3 m) +vec3 __operator *= (inout vec3 v, const mat3 m) { - v = v * m; + v = v * m; + return v; } -void __operator *= (inout vec4 v, const mat4 m) +vec4 __operator *= (inout vec4 v, const mat4 m) { - v = v * m; + v = v * m; + return v; } diff --git a/src/mesa/shader/slang/library/slang_core_gc.h b/src/mesa/shader/slang/library/slang_core_gc.h index 03cacc4db6b..b3d3e87cf42 100644 --- a/src/mesa/shader/slang/library/slang_core_gc.h +++ b/src/mesa/shader/slang/library/slang_core_gc.h @@ -2,857 +2,868 @@ /* DO NOT EDIT - THIS FILE IS AUTOMATICALLY GENERATED FROM THE FOLLOWING FILE: */ /* slang_core.gc */ -4,1,90,95,0,0,5,1,1,1,0,0,9,102,0,0,0,1,4,118,101,99,52,95,116,111,95,105,118,101,99,52,0,18,95,95, 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+0,1,99,111,111,114,100,52,0,0,0,9,18,99,111,111,114,100,52,0,59,120,121,122,0,18,99,111,111,114, +100,0,20,0,9,18,99,111,111,114,100,52,0,59,119,0,18,98,105,97,115,0,20,0,4,118,101,99,52,95,116, +101,120,98,50,100,0,18,95,95,114,101,116,86,97,108,0,0,18,115,97,109,112,108,101,114,0,0,18,99,111, +111,114,100,52,0,0,0,0,1,90,95,0,0,12,0,0,115,104,97,100,111,119,50,68,80,114,111,106,0,1,1,0,0,21, +0,115,97,109,112,108,101,114,0,0,1,1,0,0,12,0,99,111,111,114,100,0,0,1,1,0,0,9,0,98,105,97,115,0,0, +0,1,3,2,90,95,0,0,12,0,1,112,99,111,111,114,100,0,0,0,9,18,112,99,111,111,114,100,0,59,120,121,0, +18,99,111,111,114,100,0,59,120,121,0,18,99,111,111,114,100,0,59,119,0,49,20,0,9,18,112,99,111,111, +114,100,0,59,122,0,18,99,111,111,114,100,0,59,122,0,20,0,9,18,112,99,111,111,114,100,0,59,119,0,18, +98,105,97,115,0,20,0,4,118,101,99,52,95,116,101,120,98,50,100,0,18,95,95,114,101,116,86,97,108,0,0, +18,115,97,109,112,108,101,114,0,0,18,112,99,111,111,114,100,0,0,0,0,1,90,95,0,0,9,0,0,100,70,100, +120,0,1,1,0,0,9,0,112,0,0,0,1,4,118,101,99,52,95,100,100,120,0,18,95,95,114,101,116,86,97,108,0,59, +120,0,0,18,112,0,59,120,120,120,120,0,0,0,0,1,90,95,0,0,10,0,0,100,70,100,120,0,1,1,0,0,10,0,112,0, +0,0,1,4,118,101,99,52,95,100,100,120,0,18,95,95,114,101,116,86,97,108,0,59,120,121,0,0,18,112,0,59, +120,121,121,121,0,0,0,0,1,90,95,0,0,11,0,0,100,70,100,120,0,1,1,0,0,11,0,112,0,0,0,1,4,118,101,99, +52,95,100,100,120,0,18,95,95,114,101,116,86,97,108,0,59,120,121,122,0,0,18,112,0,59,120,121,122, +122,0,0,0,0,1,90,95,0,0,12,0,0,100,70,100,120,0,1,1,0,0,12,0,112,0,0,0,1,4,118,101,99,52,95,100, +100,120,0,18,95,95,114,101,116,86,97,108,0,0,18,112,0,0,0,0,1,90,95,0,0,9,0,0,100,70,100,121,0,1,1, +0,0,9,0,112,0,0,0,1,4,118,101,99,52,95,100,100,121,0,18,95,95,114,101,116,86,97,108,0,59,120,0,0, +18,112,0,59,120,120,120,120,0,0,0,0,1,90,95,0,0,10,0,0,100,70,100,121,0,1,1,0,0,10,0,112,0,0,0,1,4, +118,101,99,52,95,100,100,121,0,18,95,95,114,101,116,86,97,108,0,59,120,121,0,0,18,112,0,59,120,121, +121,121,0,0,0,0,1,90,95,0,0,11,0,0,100,70,100,121,0,1,1,0,0,11,0,112,0,0,0,1,4,118,101,99,52,95, +100,100,121,0,18,95,95,114,101,116,86,97,108,0,59,120,121,122,0,0,18,112,0,59,120,121,122,122,0,0, +0,0,1,90,95,0,0,12,0,0,100,70,100,121,0,1,1,0,0,12,0,112,0,0,0,1,4,118,101,99,52,95,100,100,121,0, +18,95,95,114,101,116,86,97,108,0,0,18,112,0,0,0,0,1,90,95,0,0,9,0,0,102,119,105,100,116,104,0,1,1, +0,0,9,0,112,0,0,0,1,8,58,97,98,115,0,0,58,100,70,100,120,0,0,18,112,0,0,0,0,0,58,97,98,115,0,0,58, +100,70,100,121,0,0,18,112,0,0,0,0,0,46,0,0,1,90,95,0,0,10,0,0,102,119,105,100,116,104,0,1,1,0,0,10, +0,112,0,0,0,1,8,58,97,98,115,0,0,58,100,70,100,120,0,0,18,112,0,0,0,0,0,58,97,98,115,0,0,58,100,70, +100,121,0,0,18,112,0,0,0,0,0,46,0,0,1,90,95,0,0,11,0,0,102,119,105,100,116,104,0,1,1,0,0,11,0,112, +0,0,0,1,8,58,97,98,115,0,0,58,100,70,100,120,0,0,18,112,0,0,0,0,0,58,97,98,115,0,0,58,100,70,100, +121,0,0,18,112,0,0,0,0,0,46,0,0,1,90,95,0,0,12,0,0,102,119,105,100,116,104,0,1,1,0,0,12,0,112,0,0, +0,1,8,58,97,98,115,0,0,58,100,70,100,120,0,0,18,112,0,0,0,0,0,58,97,98,115,0,0,58,100,70,100,121,0, +0,18,112,0,0,0,0,0,46,0,0,0 diff --git a/src/mesa/shader/slang/library/slang_pp_directives.syn b/src/mesa/shader/slang/library/slang_pp_directives.syn index d4a321034d1..b51d168cc03 100644 --- a/src/mesa/shader/slang/library/slang_pp_directives.syn +++ b/src/mesa/shader/slang/library/slang_pp_directives.syn @@ -79,6 +79,12 @@ .emtcode BEHAVIOR_WARN 3 .emtcode BEHAVIOR_DISABLE 4 +/* + * The PRAGMA_* symbols follow TOKEN_PRAGMA + */ +.emtcode PRAGMA_NO_PARAM 0 +.emtcode PRAGMA_PARAM 1 + source optional_directive .and .loop source_element .and '\0' .emit ESCAPE_TOKEN .emit TOKEN_END; @@ -153,6 +159,7 @@ directive dir_elif .emit TOKEN_ELIF .or dir_endif .emit TOKEN_ENDIF .or dir_ext .emit TOKEN_EXTENSION .or + dir_pragma .emit TOKEN_PRAGMA .or dir_line .emit TOKEN_LINE; dir_define @@ -187,6 +194,19 @@ dir_ext dir_line optional_space .and '#' .and optional_space .and "line" .and expression; +dir_pragma + optional_space .and '#' .and optional_space .and "pragma" .and symbol .and opt_pragma_param; + + +opt_pragma_param + pragma_param .or .true .emit PRAGMA_NO_PARAM; + +pragma_param + optional_space .and '(' .emit PRAGMA_PARAM .and optional_space .and symbol_no_space .and optional_space .and ')'; + +symbol_no_space + symbol_character .emit * .and .loop symbol_character2 .emit * .and .true .emit '\0'; + symbol space .and symbol_character .emit * .and .loop symbol_character2 .emit * .and .true .emit '\0'; diff --git a/src/mesa/shader/slang/library/slang_pp_directives_syn.h b/src/mesa/shader/slang/library/slang_pp_directives_syn.h index 35e7bc27616..430f8d8217c 100644 --- a/src/mesa/shader/slang/library/slang_pp_directives_syn.h +++ b/src/mesa/shader/slang/library/slang_pp_directives_syn.h @@ -20,6 +20,8 @@ ".emtcode BEHAVIOR_ENABLE 2\n" ".emtcode BEHAVIOR_WARN 3\n" ".emtcode BEHAVIOR_DISABLE 4\n" +".emtcode PRAGMA_NO_PARAM 0\n" +".emtcode PRAGMA_PARAM 1\n" "source\n" " optional_directive .and .loop source_element .and '\\0' .emit ESCAPE_TOKEN .emit TOKEN_END;\n" "source_element\n" @@ -76,6 +78,7 @@ " dir_elif .emit TOKEN_ELIF .or\n" " dir_endif .emit TOKEN_ENDIF .or\n" " dir_ext .emit TOKEN_EXTENSION .or\n" +" dir_pragma .emit TOKEN_PRAGMA .or\n" " dir_line .emit TOKEN_LINE;\n" "dir_define\n" " optional_space .and '#' .and optional_space .and \"define\" .and symbol .and opt_parameters .and\n" @@ -99,6 +102,14 @@ " optional_space .and ':' .and optional_space .and extension_behavior;\n" "dir_line\n" " optional_space .and '#' .and optional_space .and \"line\" .and expression;\n" +"dir_pragma\n" +" optional_space .and '#' .and optional_space .and \"pragma\" .and symbol .and opt_pragma_param;\n" +"opt_pragma_param\n" +" pragma_param .or .true .emit PRAGMA_NO_PARAM;\n" +"pragma_param\n" +" optional_space .and '(' .emit PRAGMA_PARAM .and optional_space .and symbol_no_space .and optional_space .and ')';\n" +"symbol_no_space\n" +" symbol_character .emit * .and .loop symbol_character2 .emit * .and .true .emit '\\0';\n" "symbol\n" " space .and symbol_character .emit * .and .loop symbol_character2 .emit * .and .true .emit '\\0';\n" "opt_parameters\n" diff --git a/src/mesa/shader/slang/library/slang_shader.syn b/src/mesa/shader/slang/library/slang_shader.syn index cbfbda651af..cc5c70a02f8 100644 --- a/src/mesa/shader/slang/library/slang_shader.syn +++ b/src/mesa/shader/slang/library/slang_shader.syn @@ -1,8 +1,8 @@ /* * Mesa 3-D graphics library - * Version: 6.5 * * Copyright (C) 2004-2006 Brian Paul All Rights Reserved. + * Copyright (C) 2008 VMware, Inc. All Rights Reserved. * * Permission is hereby granted, free of charge, to any person obtaining a * copy of this software and associated documentation files (the "Software"), @@ -59,7 +59,7 @@ .syntax translation_unit; /* revision number - increment after each change affecting emitted output */ -.emtcode REVISION 4 +.emtcode REVISION 5 /* external declaration (or precision or invariant stmt) */ .emtcode EXTERNAL_NULL 0 @@ -83,6 +83,10 @@ .emtcode FUNCTION_CONSTRUCTOR 1 .emtcode FUNCTION_OPERATOR 2 +/* function call type */ +.emtcode FUNCTION_CALL_NONARRAY 0 +.emtcode FUNCTION_CALL_ARRAY 1 + /* operator type */ .emtcode OPERATOR_ADDASSIGN 1 .emtcode OPERATOR_SUBASSIGN 2 @@ -178,6 +182,9 @@ .emtcode TYPE_SPECIFIER_MAT34 30 .emtcode TYPE_SPECIFIER_MAT43 31 +/* type specifier array */ +.emtcode TYPE_SPECIFIER_NONARRAY 0 +.emtcode TYPE_SPECIFIER_ARRAY 1 /* structure field */ .emtcode FIELD_NONE 0 @@ -248,6 +255,7 @@ .emtcode OP_POSTINCREMENT 60 .emtcode OP_POSTDECREMENT 61 .emtcode OP_PRECISION 62 +.emtcode OP_METHOD 63 /* parameter qualifier */ .emtcode PARAM_QUALIFIER_IN 0 @@ -339,6 +347,25 @@ integer_expression * <function_call> ::= <function_call_generic> */ function_call + function_call_or_method; + +/* + * <function_call_or_method> ::= <regular_function_call> + * | <postfix_expression> "." <function_call_generic> + */ +function_call_or_method + regular_function_call .or method_call; + +/* + * <method_call> ::= <identifier> "." <function_call_generic> + */ +method_call + identifier .emit OP_METHOD .and dot .and function_call_generic .and .true .emit OP_END; + +/* + * <regular_function_call> ::= <function_call_generic> + */ +regular_function_call function_call_generic .emit OP_CALL .and .true .emit OP_END; /* @@ -380,11 +407,17 @@ function_call_header /* * <function_identifier> ::= <constructor_identifier> * | <identifier> + * | <type_specifier> * - * note: <constructor_identifier> has been deleted + * note: <constructor_identifier> and <type_specifier> have been deleted */ function_identifier - identifier; + identifier .and function_identifier_opt_array; +function_identifier_opt_array + function_identifier_array .emit FUNCTION_CALL_ARRAY .or + .true .emit FUNCTION_CALL_NONARRAY; +function_identifier_array + lbracket .and constant_expression .and rbracket; /* * <unary_expression> ::= <postfix_expression> @@ -837,10 +870,8 @@ parameter_type_specifier_3 * <init_declarator_list> ::= <single_declaration> * | <init_declarator_list> "," <identifier> * | <init_declarator_list> "," <identifier> "[" "]" - * | <init_declarator_list> "," <identifier> "[" - * <constant_expression> "]" - * | <init_declarator_list> "," <identifier> "=" - * <initializer> + * | <init_declarator_list> "," <identifier> "[" <constant_expression> "]" + * | <init_declarator_list> "," <identifier> "=" <initializer> */ init_declarator_list single_declaration .and .loop init_declarator_list_1 .emit DECLARATOR_NEXT .and @@ -860,10 +891,9 @@ init_declarator_list_5 * <single_declaration> ::= <fully_specified_type> * | <fully_specified_type> <identifier> * | <fully_specified_type> <identifier> "[" "]" - * | <fully_specified_type> <identifier> "[" - * <constant_expression> "]" + * | <fully_specified_type> <identifier> "[" <constant_expression> "]" * | <fully_specified_type> <identifier> "=" <initializer> -*/ + */ single_declaration single_declaration_nospace .or single_declaration_space; single_declaration_space @@ -924,12 +954,12 @@ centroid_qualifier /* - * <type_qualifier> ::= "const" - * | "attribute" // Vertex only. - * | "varying" - * | "uniform" - * | "__fixed_output" - * | "__fixed_input" + * <type_qualifier> ::= "const" + * | "attribute" // Vertex only. + * | "varying" + * | "uniform" + * | "__fixed_output" + * | "__fixed_input" * * note: this is an extension to the standard language specification, * normally slang disallows __fixed_output and __fixed_input type qualifiers @@ -943,40 +973,40 @@ type_qualifier .if (parsing_builtin != 0) "__fixed_input" .emit TYPE_QUALIFIER_FIXEDINPUT; /* - * <type_specifier> ::= "void" - * | "float" - * | "int" - * | "bool" - * | "vec2" - * | "vec3" - * | "vec4" - * | "bvec2" - * | "bvec3" - * | "bvec4" - * | "ivec2" - * | "ivec3" - * | "ivec4" - * | "mat2" - * | "mat3" - * | "mat4" - * | "mat2x3" - * | "mat3x2" - * | "mat2x4" - * | "mat4x2" - * | "mat3x4" - * | "mat4x3" - * | "sampler1D" - * | "sampler2D" - * | "sampler3D" - * | "samplerCube" - * | "sampler1DShadow" - * | "sampler2DShadow" - * | "sampler2DRect" - * | "sampler2DRectShadow" - * | <struct_specifier> - * | <type_name> - */ -type_specifier_space + * <type_specifier_nonarray> ::= "void" + * | "float" + * | "int" + * | "bool" + * | "vec2" + * | "vec3" + * | "vec4" + * | "bvec2" + * | "bvec3" + * | "bvec4" + * | "ivec2" + * | "ivec3" + * | "ivec4" + * | "mat2" + * | "mat3" + * | "mat4" + * | "mat2x3" + * | "mat3x2" + * | "mat2x4" + * | "mat4x2" + * | "mat3x4" + * | "mat4x3" + * | "sampler1D" + * | "sampler2D" + * | "sampler3D" + * | "samplerCube" + * | "sampler1DShadow" + * | "sampler2DShadow" + * | "sampler2DRect" + * | "sampler2DRectShadow" + * | <struct_specifier> + * | <type_name> + */ +type_specifier_nonarray_space "void" .emit TYPE_SPECIFIER_VOID .or "float" .emit TYPE_SPECIFIER_FLOAT .or "int" .emit TYPE_SPECIFIER_INT .or @@ -1008,12 +1038,27 @@ type_specifier_space "sampler2DRect" .emit TYPE_SPECIFIER_SAMPLER2DRECT .or "sampler2DRectShadow" .emit TYPE_SPECIFIER_SAMPLER2DRECTSHADOW .or type_name .emit TYPE_SPECIFIER_TYPENAME; -type_specifier_nospace +type_specifier_nonarray_nospace struct_specifier .emit TYPE_SPECIFIER_STRUCT; +type_specifier_nonarray + type_specifier_nonarray_nospace .or type_specifier_nonarray_space; + +/* + * <type_specifier> ::= <type_specifier_nonarray> + * | <type_specifier_nonarray> "[" <constant_expression> "]" + */ +type_specifier_space + type_specifier_nonarray_space .and .true .emit TYPE_SPECIFIER_NONARRAY; +type_specifier_nospace + type_specifier_nospace_array .or type_specifier_nospace_1; +type_specifier_nospace_1 + type_specifier_nonarray_nospace .and .true .emit TYPE_SPECIFIER_NONARRAY; +type_specifier_nospace_array + type_specifier_nonarray .and lbracket .emit TYPE_SPECIFIER_ARRAY .and constant_expression .and rbracket; /* * <struct_specifier> ::= "struct" <identifier> "{" <struct_declaration_list> "}" - * | "struct" "{" <struct_declaration_list> "}" + * | "struct" "{" <struct_declaration_list> "}" */ struct_specifier "struct" .and struct_specifier_1 .and optional_space .and lbrace .error LBRACE_EXPECTED .and @@ -1025,7 +1070,7 @@ struct_specifier_2 /* * <struct_declaration_list> ::= <struct_declaration> - * | <struct_declaration_list> <struct_declaration> + * | <struct_declaration_list> <struct_declaration> */ struct_declaration_list struct_declaration .and .loop struct_declaration .emit FIELD_NEXT; @@ -1042,7 +1087,7 @@ struct_declaration_nospace /* * <struct_declarator_list> ::= <struct_declarator> - * | <struct_declarator_list> "," <struct_declarator> + * | <struct_declarator_list> "," <struct_declarator> */ struct_declarator_list struct_declarator .and .loop struct_declarator_list_1 .emit FIELD_NEXT; @@ -1117,13 +1162,6 @@ compound_statement_3 lbrace .and statement_list .and rbrace; /* - * <statement_no_new_scope> ::= <compound_statement_no_new_scope> - * | <simple_statement> - */ -statement_no_new_scope - compound_statement_no_new_scope .or simple_statement; - -/* * <compound_statement_no_new_scope> ::= "{" "}" * | "{" <statement_list> "}" */ @@ -1136,6 +1174,7 @@ compound_statement_no_new_scope_2 compound_statement_no_new_scope_3 lbrace .and statement_list .and rbrace; + /* * <statement_list> ::= <statement> * | <statement_list> <statement> @@ -1197,8 +1236,7 @@ condition_3 /* * <iteration_statement> ::= "while" "(" <condition> ")" <statement> * | "do" <statement> "while" "(" <expression> ")" ";" - * | "for" "(" <for_init_statement> <for_rest_statement> ")" - * <statement_no_new_scope> + * | "for" "(" <for_init_statement> <for_rest_statement> ")" <statement> */ iteration_statement iteration_statement_1 .or iteration_statement_2 .or iteration_statement_3; @@ -1210,7 +1248,7 @@ iteration_statement_2 expression .and rparen .error RPAREN_EXPECTED .emit OP_END .and semicolon; iteration_statement_3 "for" .emit OP_FOR .and lparen .error LPAREN_EXPECTED .and for_init_statement .and - for_rest_statement .and rparen .error RPAREN_EXPECTED .and statement_no_new_scope; + for_rest_statement .and rparen .error RPAREN_EXPECTED .and statement; /* * <for_init_statement> ::= <expression_statement> diff --git a/src/mesa/shader/slang/library/slang_shader_syn.h b/src/mesa/shader/slang/library/slang_shader_syn.h index f1fc9ca8833..6a382970e1a 100644 --- a/src/mesa/shader/slang/library/slang_shader_syn.h +++ b/src/mesa/shader/slang/library/slang_shader_syn.h @@ -2,7 +2,7 @@ /* DO NOT EDIT - THIS FILE IS AUTOMATICALLY GENERATED FROM THE .syn FILE */ ".syntax translation_unit;\n" -".emtcode REVISION 4\n" +".emtcode REVISION 5\n" ".emtcode EXTERNAL_NULL 0\n" ".emtcode EXTERNAL_FUNCTION_DEFINITION 1\n" ".emtcode EXTERNAL_DECLARATION 2\n" @@ -17,6 +17,8 @@ ".emtcode FUNCTION_ORDINARY 0\n" ".emtcode FUNCTION_CONSTRUCTOR 1\n" ".emtcode FUNCTION_OPERATOR 2\n" +".emtcode FUNCTION_CALL_NONARRAY 0\n" +".emtcode FUNCTION_CALL_ARRAY 1\n" ".emtcode OPERATOR_ADDASSIGN 1\n" ".emtcode OPERATOR_SUBASSIGN 2\n" ".emtcode OPERATOR_MULASSIGN 3\n" @@ -83,6 +85,8 @@ ".emtcode TYPE_SPECIFIER_MAT42 29\n" ".emtcode TYPE_SPECIFIER_MAT34 30\n" ".emtcode TYPE_SPECIFIER_MAT43 31\n" +".emtcode TYPE_SPECIFIER_NONARRAY 0\n" +".emtcode TYPE_SPECIFIER_ARRAY 1\n" ".emtcode FIELD_NONE 0\n" ".emtcode FIELD_NEXT 1\n" ".emtcode FIELD_ARRAY 2\n" @@ -136,6 +140,7 @@ ".emtcode OP_POSTINCREMENT 60\n" ".emtcode OP_POSTDECREMENT 61\n" ".emtcode OP_PRECISION 62\n" +".emtcode OP_METHOD 63\n" ".emtcode PARAM_QUALIFIER_IN 0\n" ".emtcode PARAM_QUALIFIER_OUT 1\n" ".emtcode PARAM_QUALIFIER_INOUT 2\n" @@ -173,6 +178,12 @@ "integer_expression\n" " expression;\n" "function_call\n" +" function_call_or_method;\n" +"function_call_or_method\n" +" regular_function_call .or method_call;\n" +"method_call\n" +" identifier .emit OP_METHOD .and dot .and function_call_generic .and .true .emit OP_END;\n" +"regular_function_call\n" " function_call_generic .emit OP_CALL .and .true .emit OP_END;\n" "function_call_generic\n" " function_call_generic_1 .or function_call_generic_2;\n" @@ -192,7 +203,12 @@ "function_call_header\n" " function_identifier .and lparen;\n" "function_identifier\n" -" identifier;\n" +" identifier .and function_identifier_opt_array;\n" +"function_identifier_opt_array\n" +" function_identifier_array .emit FUNCTION_CALL_ARRAY .or\n" +" .true .emit FUNCTION_CALL_NONARRAY;\n" +"function_identifier_array\n" +" lbracket .and constant_expression .and rbracket;\n" "unary_expression\n" " postfix_expression .or unary_expression_1 .or unary_expression_2 .or unary_expression_3 .or\n" " unary_expression_4 .or unary_expression_5;\n" @@ -455,7 +471,7 @@ " \"uniform\" .emit TYPE_QUALIFIER_UNIFORM .or\n" " .if (parsing_builtin != 0) \"__fixed_output\" .emit TYPE_QUALIFIER_FIXEDOUTPUT .or\n" " .if (parsing_builtin != 0) \"__fixed_input\" .emit TYPE_QUALIFIER_FIXEDINPUT;\n" -"type_specifier_space\n" +"type_specifier_nonarray_space\n" " \"void\" .emit TYPE_SPECIFIER_VOID .or\n" " \"float\" .emit TYPE_SPECIFIER_FLOAT .or\n" " \"int\" .emit TYPE_SPECIFIER_INT .or\n" @@ -487,8 +503,18 @@ " \"sampler2DRect\" .emit TYPE_SPECIFIER_SAMPLER2DRECT .or\n" " \"sampler2DRectShadow\" .emit TYPE_SPECIFIER_SAMPLER2DRECTSHADOW .or\n" " type_name .emit TYPE_SPECIFIER_TYPENAME;\n" -"type_specifier_nospace\n" +"type_specifier_nonarray_nospace\n" " struct_specifier .emit TYPE_SPECIFIER_STRUCT;\n" +"type_specifier_nonarray\n" +" type_specifier_nonarray_nospace .or type_specifier_nonarray_space;\n" +"type_specifier_space\n" +" type_specifier_nonarray_space .and .true .emit TYPE_SPECIFIER_NONARRAY;\n" +"type_specifier_nospace\n" +" type_specifier_nospace_array .or type_specifier_nospace_1;\n" +"type_specifier_nospace_1\n" +" type_specifier_nonarray_nospace .and .true .emit TYPE_SPECIFIER_NONARRAY;\n" +"type_specifier_nospace_array\n" +" type_specifier_nonarray .and lbracket .emit TYPE_SPECIFIER_ARRAY .and constant_expression .and rbracket;\n" "struct_specifier\n" " \"struct\" .and struct_specifier_1 .and optional_space .and lbrace .error LBRACE_EXPECTED .and\n" " struct_declaration_list .and rbrace .emit FIELD_NONE;\n" @@ -540,8 +566,6 @@ " lbrace .and rbrace;\n" "compound_statement_3\n" " lbrace .and statement_list .and rbrace;\n" -"statement_no_new_scope\n" -" compound_statement_no_new_scope .or simple_statement;\n" "compound_statement_no_new_scope\n" " compound_statement_no_new_scope_1 .emit OP_BLOCK_BEGIN_NO_NEW_SCOPE .and .true .emit OP_END;\n" "compound_statement_no_new_scope_1\n" @@ -591,7 +615,7 @@ " expression .and rparen .error RPAREN_EXPECTED .emit OP_END .and semicolon;\n" "iteration_statement_3\n" " \"for\" .emit OP_FOR .and lparen .error LPAREN_EXPECTED .and for_init_statement .and\n" -" for_rest_statement .and rparen .error RPAREN_EXPECTED .and statement_no_new_scope;\n" +" for_rest_statement .and rparen .error RPAREN_EXPECTED .and statement;\n" "for_init_statement\n" " expression_statement .emit OP_EXPRESSION .or declaration_statement .emit OP_DECLARE;\n" "conditionopt\n" diff --git a/src/mesa/shader/slang/library/slang_version_syn.h b/src/mesa/shader/slang/library/slang_version_syn.h deleted file mode 100644 index 3b94d85927a..00000000000 --- a/src/mesa/shader/slang/library/slang_version_syn.h +++ /dev/null @@ -1,64 +0,0 @@ -".syntax version_directive;\n" -"version_directive\n" -" version_directive_1 .and .loop version_directive_2;\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;\n" -"version_number_110\n" -" leading_zeroes .and \"110\" .emit 10 .emit 1;\n" -"leading_zeroes\n" -" .loop zero;\n" -"zero\n" -" '0';\n" -"space\n" -" single_space .and .loop single_space;\n" -"optional_space\n" -" .loop single_space;\n" -"single_space\n" -" ' ' .or '\\t';\n" -"prior_optional_spaces\n" -" .loop prior_space;\n" -"prior_space\n" -" c_style_comment_block .or cpp_style_comment_block .or space .or new_line;\n" -"c_style_comment_block\n" -" '/' .and '*' .and c_style_comment_rest;\n" -"c_style_comment_rest\n" -" .loop c_style_comment_char_no_star .and c_style_comment_rest_1;\n" -"c_style_comment_rest_1\n" -" c_style_comment_end .or c_style_comment_rest_2;\n" -"c_style_comment_rest_2\n" -" '*' .and c_style_comment_rest;\n" -"c_style_comment_char_no_star\n" -" '\\x2B'-'\\xFF' .or '\\x01'-'\\x29';\n" -"c_style_comment_end\n" -" '*' .and '/';\n" -"cpp_style_comment_block\n" -" '/' .and '/' .and cpp_style_comment_block_1;\n" -"cpp_style_comment_block_1\n" -" cpp_style_comment_block_2 .or cpp_style_comment_block_3;\n" -"cpp_style_comment_block_2\n" -" .loop cpp_style_comment_char .and new_line;\n" -"cpp_style_comment_block_3\n" -" .loop cpp_style_comment_char;\n" -"cpp_style_comment_char\n" -" '\\x0E'-'\\xFF' .or '\\x01'-'\\x09' .or '\\x0B'-'\\x0C';\n" -"new_line\n" -" cr_lf .or lf_cr .or '\\n' .or '\\r';\n" -"cr_lf\n" -" '\\r' .and '\\n';\n" -"lf_cr\n" -" '\\n' .and '\\r';\n" -".string __string_filter;\n" -"__string_filter\n" -" .loop __identifier_char;\n" -"__identifier_char\n" -" 'a'-'z' .or 'A'-'Z' .or '_' .or '0'-'9';\n" -"" diff --git a/src/mesa/shader/slang/library/slang_vertex_builtin_gc.h b/src/mesa/shader/slang/library/slang_vertex_builtin_gc.h index c8e730072fe..2cb91bf268f 100644 --- a/src/mesa/shader/slang/library/slang_vertex_builtin_gc.h +++ b/src/mesa/shader/slang/library/slang_vertex_builtin_gc.h @@ -2,103 +2,105 @@ /* DO NOT EDIT - THIS FILE IS AUTOMATICALLY GENERATED FROM THE FOLLOWING FILE: */ /* slang_vertex_builtin.gc */ -4,2,2,90,95,5,0,12,1,103,108,95,80,111,115,105,116,105,111,110,0,0,0,2,2,90,95,5,0,9,1,103,108,95, -80,111,105,110,116,83,105,122,101,0,0,0,2,2,90,95,5,0,12,1,103,108,95,67,108,105,112,86,101,114, -116,101,120,0,0,0,2,2,90,95,2,0,12,1,103,108,95,67,111,108,111,114,0,0,0,2,2,90,95,2,0,12,1,103, -108,95,83,101,99,111,110,100,97,114,121,67,111,108,111,114,0,0,0,2,2,90,95,2,0,11,1,103,108,95,78, -111,114,109,97,108,0,0,0,2,2,90,95,2,0,12,1,103,108,95,86,101,114,116,101,120,0,0,0,2,2,90,95,2,0, -12,1,103,108,95,77,117,108,116,105,84,101,120,67,111,111,114,100,48,0,0,0,2,2,90,95,2,0,12,1,103, -108,95,77,117,108,116,105,84,101,120,67,111,111,114,100,49,0,0,0,2,2,90,95,2,0,12,1,103,108,95,77, 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+97,108,0,0,18,115,97,109,112,108,101,114,0,0,18,112,99,111,111,114,100,0,0,0,0,1,90,95,0,0,12,0,0, +115,104,97,100,111,119,50,68,76,111,100,0,1,1,0,0,21,0,115,97,109,112,108,101,114,0,0,1,1,0,0,11,0, +99,111,111,114,100,0,0,1,1,0,0,9,0,108,111,100,0,0,0,1,3,2,90,95,0,0,12,0,1,99,111,111,114,100,52, +0,0,0,9,18,99,111,111,114,100,52,0,59,120,121,122,0,18,99,111,111,114,100,0,20,0,9,18,99,111,111, +114,100,52,0,59,119,0,18,108,111,100,0,20,0,4,118,101,99,52,95,116,101,120,98,50,100,0,18,95,95, +114,101,116,86,97,108,0,0,18,115,97,109,112,108,101,114,0,0,18,99,111,111,114,100,52,0,0,0,0,1,90, +95,0,0,12,0,0,115,104,97,100,111,119,50,68,80,114,111,106,76,111,100,0,1,1,0,0,21,0,115,97,109,112, +108,101,114,0,0,1,1,0,0,12,0,99,111,111,114,100,0,0,1,1,0,0,9,0,108,111,100,0,0,0,1,3,2,90,95,0,0, +12,0,1,112,99,111,111,114,100,0,0,0,9,18,112,99,111,111,114,100,0,59,120,121,0,18,99,111,111,114, +100,0,59,120,121,0,18,99,111,111,114,100,0,59,119,0,49,20,0,9,18,112,99,111,111,114,100,0,59,122,0, +18,99,111,111,114,100,0,59,122,0,20,0,9,18,112,99,111,111,114,100,0,59,119,0,18,108,111,100,0,20,0, +4,118,101,99,52,95,116,101,120,98,50,100,0,18,95,95,114,101,116,86,97,108,0,0,18,115,97,109,112, +108,101,114,0,0,18,112,99,111,111,114,100,0,0,0,0,0 diff --git a/src/mesa/shader/slang/slang_builtin.c b/src/mesa/shader/slang/slang_builtin.c index db00c54b8a2..c0f4c79e136 100644 --- a/src/mesa/shader/slang/slang_builtin.c +++ b/src/mesa/shader/slang/slang_builtin.c @@ -1,8 +1,9 @@ /* * Mesa 3-D graphics library - * Version: 6.5.3 + * Version: 7.3 * * Copyright (C) 2005-2007 Brian Paul All Rights Reserved. + * Copyright (C) 2008 VMware, Inc. All Rights Reserved. * * Permission is hereby granted, free of charge, to any person obtaining a * copy of this software and associated documentation files (the "Software"), @@ -39,6 +40,10 @@ #include "shader/slang/slang_builtin.h" +/** special state token (see below) */ +#define STATE_ARRAY ((gl_state_index) 0xfffff) + + /** * Lookup GL state given a variable name, 0, 1 or 2 indexes and a field. * Allocate room for the state in the given param list and return position @@ -132,6 +137,8 @@ lookup_statevar(const char *var, GLint index1, GLint index2, const char *field, } } else if (strcmp(var, "gl_ClipPlane") == 0) { + if (index1 < 0) + return -1; tokens[0] = STATE_CLIPPLANE; tokens[1] = index1; } @@ -196,8 +203,12 @@ lookup_statevar(const char *var, GLint index1, GLint index2, const char *field, } } else if (strcmp(var, "gl_LightSource") == 0) { + if (!field || index1 < 0) + return -1; + tokens[0] = STATE_LIGHT; tokens[1] = index1; + if (strcmp(field, "ambient") == 0) { tokens[2] = STATE_AMBIENT; } @@ -272,6 +283,9 @@ lookup_statevar(const char *var, GLint index1, GLint index2, const char *field, } else if (strcmp(var, "gl_FrontLightProduct") == 0 || strcmp(var, "gl_BackLightProduct") == 0) { + if (index1 < 0 || !field) + return -1; + tokens[0] = STATE_LIGHTPROD; tokens[1] = index1; /* light number */ if (strcmp(var, "gl_FrontLightProduct") == 0) { @@ -294,45 +308,63 @@ lookup_statevar(const char *var, GLint index1, GLint index2, const char *field, } } else if (strcmp(var, "gl_TextureEnvColor") == 0) { + if (index1 < 0) + return -1; tokens[0] = STATE_TEXENV_COLOR; tokens[1] = index1; } else if (strcmp(var, "gl_EyePlaneS") == 0) { + if (index1 < 0) + return -1; tokens[0] = STATE_TEXGEN; tokens[1] = index1; /* tex unit */ tokens[2] = STATE_TEXGEN_EYE_S; } else if (strcmp(var, "gl_EyePlaneT") == 0) { + if (index1 < 0) + return -1; tokens[0] = STATE_TEXGEN; tokens[1] = index1; /* tex unit */ tokens[2] = STATE_TEXGEN_EYE_T; } else if (strcmp(var, "gl_EyePlaneR") == 0) { + if (index1 < 0) + return -1; tokens[0] = STATE_TEXGEN; tokens[1] = index1; /* tex unit */ tokens[2] = STATE_TEXGEN_EYE_R; } else if (strcmp(var, "gl_EyePlaneQ") == 0) { + if (index1 < 0) + return -1; tokens[0] = STATE_TEXGEN; tokens[1] = index1; /* tex unit */ tokens[2] = STATE_TEXGEN_EYE_Q; } else if (strcmp(var, "gl_ObjectPlaneS") == 0) { + if (index1 < 0) + return -1; tokens[0] = STATE_TEXGEN; tokens[1] = index1; /* tex unit */ tokens[2] = STATE_TEXGEN_OBJECT_S; } else if (strcmp(var, "gl_ObjectPlaneT") == 0) { + if (index1 < 0) + return -1; tokens[0] = STATE_TEXGEN; tokens[1] = index1; /* tex unit */ tokens[2] = STATE_TEXGEN_OBJECT_T; } else if (strcmp(var, "gl_ObjectPlaneR") == 0) { + if (index1 < 0) + return -1; tokens[0] = STATE_TEXGEN; tokens[1] = index1; /* tex unit */ tokens[2] = STATE_TEXGEN_OBJECT_R; } else if (strcmp(var, "gl_ObjectPlaneQ") == 0) { + if (index1 < 0) + return -1; tokens[0] = STATE_TEXGEN; tokens[1] = index1; /* tex unit */ tokens[2] = STATE_TEXGEN_OBJECT_Q; @@ -386,13 +418,222 @@ lookup_statevar(const char *var, GLint index1, GLint index2, const char *field, } + +/** + * Given a variable name and datatype, emit uniform/constant buffer + * entries which will store that state variable. + * For example, if name="gl_LightSource" we'll emit 64 state variable + * vectors/references and return position where that data starts. This will + * allow run-time array indexing into the light source array. + * + * Note that this is a recursive function. + * + * \return -1 if error, else index of start of data in the program parameter list + */ +static GLint +emit_statevars(const char *name, int array_len, + const slang_type_specifier *type, + gl_state_index tokens[STATE_LENGTH], + struct gl_program_parameter_list *paramList) +{ + if (type->type == SLANG_SPEC_ARRAY) { + GLint i, pos; + assert(array_len > 0); + if (strcmp(name, "gl_ClipPlane") == 0) { + tokens[0] = STATE_CLIPPLANE; + } + else if (strcmp(name, "gl_LightSource") == 0) { + tokens[0] = STATE_LIGHT; + } + else if (strcmp(name, "gl_FrontLightProduct") == 0) { + tokens[0] = STATE_LIGHTPROD; + tokens[2] = 0; /* front */ + } + else if (strcmp(name, "gl_BackLightProduct") == 0) { + tokens[0] = STATE_LIGHTPROD; + tokens[2] = 1; /* back */ + } + else if (strcmp(name, "gl_TextureEnvColor") == 0) { + tokens[0] = STATE_TEXENV_COLOR; + } + else if (strcmp(name, "gl_EyePlaneS") == 0) { + tokens[0] = STATE_TEXGEN_EYE_S; + } + else if (strcmp(name, "gl_EyePlaneT") == 0) { + tokens[0] = STATE_TEXGEN_EYE_T; + } + else if (strcmp(name, "gl_EyePlaneR") == 0) { + tokens[0] = STATE_TEXGEN_EYE_R; + } + else if (strcmp(name, "gl_EyePlaneQ") == 0) { + tokens[0] = STATE_TEXGEN_EYE_Q; + } + else if (strcmp(name, "gl_ObjectPlaneS") == 0) { + tokens[0] = STATE_TEXGEN_OBJECT_S; + } + else if (strcmp(name, "gl_ObjectPlaneT") == 0) { + tokens[0] = STATE_TEXGEN_OBJECT_T; + } + else if (strcmp(name, "gl_ObjectPlaneR") == 0) { + tokens[0] = STATE_TEXGEN_OBJECT_R; + } + else if (strcmp(name, "gl_ObjectPlaneQ") == 0) { + tokens[0] = STATE_TEXGEN_OBJECT_Q; + } + else { + return -1; /* invalid array name */ + } + for (i = 0; i < array_len; i++) { + GLint p; + tokens[1] = i; + p = emit_statevars(NULL, 0, type->_array, tokens, paramList); + if (i == 0) + pos = p; + } + return pos; + } + else if (type->type == SLANG_SPEC_STRUCT) { + const slang_variable_scope *fields = type->_struct->fields; + GLuint i, pos; + for (i = 0; i < fields->num_variables; i++) { + const slang_variable *var = fields->variables[i]; + GLint p = emit_statevars(var->a_name, 0, &var->type.specifier, + tokens, paramList); + if (i == 0) + pos = p; + } + return pos; + } + else { + GLint pos; + assert(type->type == SLANG_SPEC_VEC4 || + type->type == SLANG_SPEC_VEC3 || + type->type == SLANG_SPEC_VEC2 || + type->type == SLANG_SPEC_FLOAT || + type->type == SLANG_SPEC_IVEC4 || + type->type == SLANG_SPEC_IVEC3 || + type->type == SLANG_SPEC_IVEC2 || + type->type == SLANG_SPEC_INT); + if (name) { + GLint t; + + if (tokens[0] == STATE_LIGHT) + t = 2; + else if (tokens[0] == STATE_LIGHTPROD) + t = 3; + else + return -1; /* invalid array name */ + + if (strcmp(name, "ambient") == 0) { + tokens[t] = STATE_AMBIENT; + } + else if (strcmp(name, "diffuse") == 0) { + tokens[t] = STATE_DIFFUSE; + } + else if (strcmp(name, "specular") == 0) { + tokens[t] = STATE_SPECULAR; + } + else if (strcmp(name, "position") == 0) { + tokens[t] = STATE_POSITION; + } + else if (strcmp(name, "halfVector") == 0) { + tokens[t] = STATE_HALF_VECTOR; + } + else if (strcmp(name, "spotDirection") == 0) { + tokens[t] = STATE_SPOT_DIRECTION; /* xyz components */ + } + else if (strcmp(name, "spotCosCutoff") == 0) { + tokens[t] = STATE_SPOT_DIRECTION; /* w component */ + } + + else if (strcmp(name, "constantAttenuation") == 0) { + tokens[t] = STATE_ATTENUATION; /* x component */ + } + else if (strcmp(name, "linearAttenuation") == 0) { + tokens[t] = STATE_ATTENUATION; /* y component */ + } + else if (strcmp(name, "quadraticAttenuation") == 0) { + tokens[t] = STATE_ATTENUATION; /* z component */ + } + else if (strcmp(name, "spotExponent") == 0) { + tokens[t] = STATE_ATTENUATION; /* w = spot exponent */ + } + + else if (strcmp(name, "spotCutoff") == 0) { + tokens[t] = STATE_SPOT_CUTOFF; /* x component */ + } + + else { + return -1; /* invalid field name */ + } + } + + pos = _mesa_add_state_reference(paramList, tokens); + return pos; + } + + return 1; +} + + +/** + * Unroll the named built-in uniform variable into a sequence of state + * vars in the given parameter list. + */ +static GLint +alloc_state_var_array(const slang_variable *var, + struct gl_program_parameter_list *paramList) +{ + gl_state_index tokens[STATE_LENGTH]; + GLuint i; + GLint pos; + + /* Initialize the state tokens array. This is very important. + * When we call _mesa_add_state_reference() it'll searches the parameter + * list to see if the given statevar token sequence is already present. + * This is normally a good thing since it prevents redundant values in the + * constant buffer. + * + * But when we're building arrays of state this can be bad. For example, + * consider this fragment of GLSL code: + * foo = gl_LightSource[3].diffuse; + * ... + * bar = gl_LightSource[i].diffuse; + * + * When we unroll the gl_LightSource array (for "bar") we want to re-emit + * gl_LightSource[3].diffuse and not re-use the first instance (from "foo") + * since that would upset the array layout. We handle this situation by + * setting the last token in the state var token array to the special + * value STATE_ARRAY. + * This token will only be set for array state. We can hijack the last + * element in the array for this since it's never used for light, clipplane + * or texture env array state. + */ + for (i = 0; i < STATE_LENGTH; i++) + tokens[i] = 0; + tokens[STATE_LENGTH - 1] = STATE_ARRAY; + + pos = emit_statevars(var->a_name, var->array_len, &var->type.specifier, + tokens, paramList); + + return pos; +} + + + /** * Allocate storage for a pre-defined uniform (a GL state variable). * As a memory-saving optimization, we try to only allocate storage for * state vars that are actually used. - * For example, the "gl_LightSource" uniform is huge. If we only use - * a handful of gl_LightSource fields, we don't want to allocate storage - * for all of gl_LightSource. + * + * Arrays such as gl_LightSource are handled specially. For an expression + * like "gl_LightSource[2].diffuse", we can allocate a single uniform/constant + * slot and return the index. In this case, we return direct=TRUE. + * + * Buf for something like "gl_LightSource[i].diffuse" we don't know the value + * of 'i' at compile time so we need to "unroll" the gl_LightSource array + * into a consecutive sequence of uniform/constant slots so it can be indexed + * at runtime. In this case, we return direct=FALSE. * * Currently, all pre-defined uniforms are in one of these forms: * var @@ -401,52 +642,62 @@ lookup_statevar(const char *var, GLint index1, GLint index2, const char *field, * var[i].field * var[i][j] * - * \return -1 upon error, else position in paramList of the state var/data + * \return -1 upon error, else position in paramList of the state variable/data */ GLint _slang_alloc_statevar(slang_ir_node *n, - struct gl_program_parameter_list *paramList) + struct gl_program_parameter_list *paramList, + GLboolean *direct) { slang_ir_node *n0 = n; - const char *field = NULL, *var; - GLint index1 = -1, index2 = -1, pos; + const char *field = NULL; + GLint index1 = -1, index2 = -1; GLuint swizzle; + *direct = GL_TRUE; + if (n->Opcode == IR_FIELD) { field = n->Field; n = n->Children[0]; } if (n->Opcode == IR_ELEMENT) { - /* XXX can only handle constant indexes for now */ if (n->Children[1]->Opcode == IR_FLOAT) { index1 = (GLint) n->Children[1]->Value[0]; - n = n->Children[0]; } else { - return -1; + *direct = GL_FALSE; } + n = n->Children[0]; } if (n->Opcode == IR_ELEMENT) { /* XXX can only handle constant indexes for now */ - assert(n->Children[1]->Opcode == IR_FLOAT); - index2 = (GLint) n->Children[1]->Value[0]; + if (n->Children[1]->Opcode == IR_FLOAT) { + index2 = (GLint) n->Children[1]->Value[0]; + } + else { + *direct = GL_FALSE; + } n = n->Children[0]; } assert(n->Opcode == IR_VAR); - var = (char *) n->Var->a_name; - pos = lookup_statevar(var, index1, index2, field, &swizzle, paramList); - assert(pos >= 0); - if (pos >= 0) { - /* newly resolved storage for the statevar/constant/uniform */ - n0->Store->File = PROGRAM_STATE_VAR; - n0->Store->Index = pos; - n0->Store->Swizzle = swizzle; - n0->Store->Parent = NULL; + if (*direct) { + const char *var = (const char *) n->Var->a_name; + GLint pos = + lookup_statevar(var, index1, index2, field, &swizzle, paramList); + if (pos >= 0) { + /* newly resolved storage for the statevar/constant/uniform */ + n0->Store->File = PROGRAM_STATE_VAR; + n0->Store->Index = pos; + n0->Store->Swizzle = swizzle; + n0->Store->Parent = NULL; + return pos; + } } - return pos; -} + *direct = GL_FALSE; + return alloc_state_var_array(n->Var, paramList); +} diff --git a/src/mesa/shader/slang/slang_builtin.h b/src/mesa/shader/slang/slang_builtin.h index 58629f4f7fe..7f6fe80fcca 100644 --- a/src/mesa/shader/slang/slang_builtin.h +++ b/src/mesa/shader/slang/slang_builtin.h @@ -33,7 +33,8 @@ extern GLint _slang_alloc_statevar(slang_ir_node *n, - struct gl_program_parameter_list *paramList); + struct gl_program_parameter_list *paramList, + GLboolean *direct); #endif /* SLANG_BUILTIN_H */ diff --git a/src/mesa/shader/slang/slang_codegen.c b/src/mesa/shader/slang/slang_codegen.c index d23ae4d8cb5..11340d26e21 100644 --- a/src/mesa/shader/slang/slang_codegen.c +++ b/src/mesa/shader/slang/slang_codegen.c @@ -1,8 +1,8 @@ /* * Mesa 3-D graphics library - * Version: 7.1 * * Copyright (C) 2005-2007 Brian Paul All Rights Reserved. + * Copyright (C) 2008 VMware, Inc. All Rights Reserved. * * Permission is hereby granted, free of charge, to any person obtaining a * copy of this software and associated documentation files (the "Software"), @@ -57,10 +57,39 @@ #include "slang_print.h" +/** Max iterations to unroll */ +const GLuint MAX_FOR_LOOP_UNROLL_ITERATIONS = 32; + +/** Max for-loop body size (in slang operations) to unroll */ +const GLuint MAX_FOR_LOOP_UNROLL_BODY_SIZE = 50; + +/** Max for-loop body complexity to unroll. + * We'll compute complexity as the product of the number of iterations + * and the size of the body. So long-ish loops with very simple bodies + * can be unrolled, as well as short loops with larger bodies. + */ +const GLuint MAX_FOR_LOOP_UNROLL_COMPLEXITY = 256; + + + static slang_ir_node * _slang_gen_operation(slang_assemble_ctx * A, slang_operation *oper); +/** + * Retrieves type information about an operation. + * Returns GL_TRUE on success. + * Returns GL_FALSE otherwise. + */ +static GLboolean +typeof_operation(const struct slang_assemble_ctx_ *A, + slang_operation *op, + slang_typeinfo *ti) +{ + return _slang_typeof_operation(op, &A->space, ti, A->atoms, A->log); +} + + static GLboolean is_sampler_type(const slang_fully_specified_type *t) { @@ -199,7 +228,14 @@ _slang_sizeof_type_specifier(const slang_type_specifier *spec) break; case SLANG_SPEC_STRUCT: sz = _slang_field_offset(spec, 0); /* special use */ - if (sz > 4) { + if (sz == 1) { + /* 1-float structs are actually troublesome to deal with since they + * might get placed at R.x, R.y, R.z or R.z. Return size=2 to + * ensure the object is placed at R.x + */ + sz = 2; + } + else if (sz > 4) { sz = (sz + 3) & ~0x3; /* round up to multiple of four */ } break; @@ -220,6 +256,48 @@ _slang_sizeof_type_specifier(const slang_type_specifier *spec) /** + * Query variable/array length (number of elements). + * This is slightly non-trivial because there are two ways to express + * arrays: "float x[3]" vs. "float[3] x". + * \return the length of the array for the given variable, or 0 if not an array + */ +static GLint +_slang_array_length(const slang_variable *var) +{ + if (var->type.array_len > 0) { + /* Ex: float[4] x; */ + return var->type.array_len; + } + if (var->array_len > 0) { + /* Ex: float x[4]; */ + return var->array_len; + } + return 0; +} + + +/** + * Compute total size of array give size of element, number of elements. + * \return size in floats + */ +static GLint +_slang_array_size(GLint elemSize, GLint arrayLen) +{ + GLint total; + assert(elemSize > 0); + if (arrayLen > 1) { + /* round up base type to multiple of 4 */ + total = ((elemSize + 3) & ~0x3) * MAX2(arrayLen, 1); + } + else { + total = elemSize; + } + return total; +} + + + +/** * Establish the binding between a slang_ir_node and a slang_variable. * Then, allocate/attach a slang_ir_storage object to the IR node if needed. * The IR node must be a IR_VAR or IR_VAR_DECL node. @@ -238,9 +316,9 @@ _slang_attach_storage(slang_ir_node *n, slang_variable *var) if (!n->Store) { /* need to setup storage */ - if (n->Var && n->Var->aux) { + if (n->Var && n->Var->store) { /* node storage info = var storage info */ - n->Store = (slang_ir_storage *) n->Var->aux; + n->Store = n->Var->store; } else { /* alloc new storage info */ @@ -251,8 +329,8 @@ _slang_attach_storage(slang_ir_node *n, slang_variable *var) (void*) n->Store, n->Store->Size); #endif if (n->Var) - n->Var->aux = n->Store; - assert(n->Var->aux); + n->Var->store = n->Store; + assert(n->Var->store); } } } @@ -335,7 +413,7 @@ _slang_input_index(const char *name, GLenum target, GLuint *swizzleOut) const struct input_info *inputs = (target == GL_VERTEX_PROGRAM_ARB) ? vertInputs : fragInputs; - ASSERT(MAX_TEXTURE_UNITS == 8); /* if this fails, fix vertInputs above */ + ASSERT(MAX_TEXTURE_COORD_UNITS == 8); /* if this fails, fix vertInputs above */ for (i = 0; inputs[i].Name; i++) { if (strcmp(inputs[i].Name, name) == 0) { @@ -653,23 +731,11 @@ new_if(slang_ir_node *cond, slang_ir_node *ifPart, slang_ir_node *elsePart) * New IR_VAR node - a reference to a previously declared variable. */ static slang_ir_node * -new_var(slang_assemble_ctx *A, slang_operation *oper, slang_atom name) +new_var(slang_assemble_ctx *A, slang_variable *var) { - slang_ir_node *n; - slang_variable *var = _slang_locate_variable(oper->locals, name, GL_TRUE); - if (!var) - return NULL; - - assert(var->declared); - - assert(!oper->var || oper->var == var); - - n = new_node0(IR_VAR); + slang_ir_node *n = new_node0(IR_VAR); if (n) { _slang_attach_storage(n, var); - /* - printf("new_var %s store=%p\n", (char*)name, (void*) n->Store); - */ } return n; } @@ -783,7 +849,7 @@ static void slang_resolve_variable(slang_operation *oper) { if (oper->type == SLANG_OPER_IDENTIFIER && !oper->var) { - oper->var = _slang_locate_variable(oper->locals, oper->a_id, GL_TRUE); + oper->var = _slang_variable_locate(oper->locals, oper->a_id, GL_TRUE); } } @@ -799,7 +865,7 @@ slang_substitute(slang_assemble_ctx *A, slang_operation *oper, switch (oper->type) { case SLANG_OPER_VARIABLE_DECL: { - slang_variable *v = _slang_locate_variable(oper->locals, + slang_variable *v = _slang_variable_locate(oper->locals, oper->a_id, GL_TRUE); assert(v); if (v->initializer && oper->num_children == 0) { @@ -821,7 +887,7 @@ slang_substitute(slang_assemble_ctx *A, slang_operation *oper, slang_atom id = oper->a_id; slang_variable *v; GLuint i; - v = _slang_locate_variable(oper->locals, id, GL_TRUE); + v = _slang_variable_locate(oper->locals, id, GL_TRUE); if (!v) { _mesa_problem(NULL, "var %s not found!\n", (char *) oper->a_id); return; @@ -1414,27 +1480,6 @@ slang_find_asm_info(const char *name) /** - * Return the default swizzle mask for accessing a variable of the - * given size (in floats). If size = 1, comp is used to identify - * which component [0..3] of the register holds the variable. - */ -static GLuint -_slang_var_swizzle(GLint size, GLint comp) -{ - switch (size) { - case 1: - return MAKE_SWIZZLE4(comp, comp, comp, comp); - case 2: - return MAKE_SWIZZLE4(SWIZZLE_X, SWIZZLE_Y, SWIZZLE_NIL, SWIZZLE_NIL); - case 3: - return MAKE_SWIZZLE4(SWIZZLE_X, SWIZZLE_Y, SWIZZLE_Z, SWIZZLE_NIL); - default: - return SWIZZLE_XYZW; - } -} - - -/** * Some write-masked assignments are simple, but others are hard. * Simple example: * vec3 v; @@ -1477,6 +1522,8 @@ _slang_simple_writemask(GLuint writemask, GLuint swizzle) * Convert the given swizzle into a writemask. In some cases this * is trivial, in other cases, we'll need to also swizzle the right * hand side to put components in the right places. + * See comment above for more info. + * XXX this function could be simplified and should probably be renamed. * \param swizzle the incoming swizzle * \param writemaskOut returns the writemask * \param swizzleOut swizzle to apply to the right-hand-side @@ -1545,6 +1592,7 @@ swizzle_to_writemask(slang_assemble_ctx *A, GLuint swizzle, } +#if 0 /* not used, but don't remove just yet */ /** * Recursively traverse 'oper' to produce a swizzle mask in the event * of any vector subscripts and swizzle suffixes. @@ -1598,8 +1646,10 @@ resolve_swizzle(const slang_operation *oper) return SWIZZLE_XYZW; } } +#endif +#if 0 /** * Recursively descend through swizzle nodes to find the node's storage info. */ @@ -1611,7 +1661,7 @@ get_store(const slang_ir_node *n) } return n->Store; } - +#endif /** @@ -1684,6 +1734,7 @@ _slang_gen_asm(slang_assemble_ctx *A, slang_operation *oper, } +#if 0 static void print_funcs(struct slang_function_scope_ *scope, const char *name) { @@ -1697,6 +1748,7 @@ print_funcs(struct slang_function_scope_ *scope, const char *name) if (scope->outer_scope) print_funcs(scope->outer_scope, name); } +#endif /** @@ -1758,18 +1810,12 @@ _slang_find_function_by_max_argc(slang_function_scope *scope, * struct type. */ static slang_function * -_slang_make_constructor(slang_assemble_ctx *A, slang_struct *str) +_slang_make_struct_constructor(slang_assemble_ctx *A, slang_struct *str) { const GLint numFields = str->fields->num_variables; - - slang_function *fun = (slang_function *) _mesa_malloc(sizeof(slang_function)); - if (!fun) - return NULL; - - slang_function_construct(fun); + slang_function *fun = slang_function_new(SLANG_FUNC_CONSTRUCTOR); /* function header (name, return type) */ - fun->kind = SLANG_FUNC_CONSTRUCTOR; fun->header.a_name = str->a_name; fun->header.type.qualifier = SLANG_QUAL_NONE; fun->header.type.specifier.type = SLANG_SPEC_STRUCT; @@ -1783,7 +1829,7 @@ _slang_make_constructor(slang_assemble_ctx *A, slang_struct *str) printf("Field %d: %s\n", i, (char*) str->fields->variables[i]->a_name); */ slang_variable *p = slang_variable_scope_grow(fun->parameters); - *p = *str->fields->variables[i]; /* copy the type */ + *p = *str->fields->variables[i]; /* copy the variable and type */ p->type.qualifier = SLANG_QUAL_CONST; } fun->param_count = fun->parameters->num_variables; @@ -1888,7 +1934,6 @@ _slang_make_constructor(slang_assemble_ctx *A, slang_struct *str) ret->children[0].type = SLANG_OPER_IDENTIFIER; ret->children[0].a_id = var->a_name; ret->children[0].locals = _slang_variable_scope_new(scope); - } } /* @@ -1911,7 +1956,7 @@ _slang_locate_struct_constructor(slang_assemble_ctx *A, const char *name) /* found a structure type that matches the function name */ if (!str->constructor) { /* create the constructor function now */ - str->constructor = _slang_make_constructor(A, str); + str->constructor = _slang_make_struct_constructor(A, str); } return str->constructor; } @@ -1920,6 +1965,156 @@ _slang_locate_struct_constructor(slang_assemble_ctx *A, const char *name) } +/** + * Generate a new slang_function to satisfy a call to an array constructor. + * Ex: float[3](1., 2., 3.) + */ +static slang_function * +_slang_make_array_constructor(slang_assemble_ctx *A, slang_operation *oper) +{ + slang_type_specifier_type baseType; + slang_function *fun; + int num_elements; + + fun = slang_function_new(SLANG_FUNC_CONSTRUCTOR); + if (!fun) + return NULL; + + baseType = slang_type_specifier_type_from_string((char *) oper->a_id); + + num_elements = oper->num_children; + + /* function header, return type */ + { + fun->header.a_name = oper->a_id; + fun->header.type.qualifier = SLANG_QUAL_NONE; + fun->header.type.specifier.type = SLANG_SPEC_ARRAY; + fun->header.type.specifier._array = + slang_type_specifier_new(baseType, NULL, NULL); + fun->header.type.array_len = num_elements; + } + + /* function parameters (= number of elements) */ + { + GLint i; + for (i = 0; i < num_elements; i++) { + /* + printf("Field %d: %s\n", i, (char*) str->fields->variables[i]->a_name); + */ + slang_variable *p = slang_variable_scope_grow(fun->parameters); + char name[10]; + _mesa_snprintf(name, sizeof(name), "p%d", i); + p->a_name = slang_atom_pool_atom(A->atoms, name); + p->type.qualifier = SLANG_QUAL_CONST; + p->type.specifier.type = baseType; + } + fun->param_count = fun->parameters->num_variables; + } + + /* Add __retVal to params */ + { + slang_variable *p = slang_variable_scope_grow(fun->parameters); + slang_atom a_retVal = slang_atom_pool_atom(A->atoms, "__retVal"); + assert(a_retVal); + p->a_name = a_retVal; + p->type = fun->header.type; + p->type.qualifier = SLANG_QUAL_OUT; + p->type.specifier.type = baseType; + fun->param_count++; + } + + /* function body is: + * block: + * declare T; + * T[0] = p0; + * T[1] = p1; + * ... + * T[n] = pn; + * return T; + */ + { + slang_variable_scope *scope; + slang_variable *var; + GLint i; + + fun->body = slang_operation_new(1); + fun->body->type = SLANG_OPER_BLOCK_NEW_SCOPE; + fun->body->num_children = num_elements + 2; + fun->body->children = slang_operation_new(num_elements + 2); + + scope = fun->body->locals; + scope->outer_scope = fun->parameters; + + /* create local var 't' */ + var = slang_variable_scope_grow(scope); + var->a_name = slang_atom_pool_atom(A->atoms, "ttt"); + var->type = fun->header.type;/*XXX copy*/ + + /* declare t */ + { + slang_operation *decl; + + decl = &fun->body->children[0]; + decl->type = SLANG_OPER_VARIABLE_DECL; + decl->locals = _slang_variable_scope_new(scope); + decl->a_id = var->a_name; + } + + /* assign params to elements of t */ + for (i = 0; i < num_elements; i++) { + slang_operation *assign = &fun->body->children[1 + i]; + + assign->type = SLANG_OPER_ASSIGN; + assign->locals = _slang_variable_scope_new(scope); + assign->num_children = 2; + assign->children = slang_operation_new(2); + + { + slang_operation *lhs = &assign->children[0]; + + lhs->type = SLANG_OPER_SUBSCRIPT; + lhs->locals = _slang_variable_scope_new(scope); + lhs->num_children = 2; + lhs->children = slang_operation_new(2); + + lhs->children[0].type = SLANG_OPER_IDENTIFIER; + lhs->children[0].a_id = var->a_name; + lhs->children[0].locals = _slang_variable_scope_new(scope); + + lhs->children[1].type = SLANG_OPER_LITERAL_INT; + lhs->children[1].literal[0] = (GLfloat) i; + } + + { + slang_operation *rhs = &assign->children[1]; + + rhs->type = SLANG_OPER_IDENTIFIER; + rhs->locals = _slang_variable_scope_new(scope); + rhs->a_id = fun->parameters->variables[i]->a_name; + } + } + + /* return t; */ + { + slang_operation *ret = &fun->body->children[num_elements + 1]; + + ret->type = SLANG_OPER_RETURN; + ret->locals = _slang_variable_scope_new(scope); + ret->num_children = 1; + ret->children = slang_operation_new(1); + ret->children[0].type = SLANG_OPER_IDENTIFIER; + ret->children[0].a_id = var->a_name; + ret->children[0].locals = _slang_variable_scope_new(scope); + } + } + + /* + slang_print_function(fun, 1); + */ + + return fun; +} + static GLboolean _slang_is_vec_mat_type(const char *name) @@ -1953,24 +2148,27 @@ _slang_gen_function_call_name(slang_assemble_ctx *A, const char *name, const GLuint param_count = oper->num_children; 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) return NULL; - /* - * First, try to find function by name and exact argument type matching. - */ - fun = _slang_locate_function(A->space.funcs, atom, params, param_count, - &A->space, A->atoms, A->log, &error); - - if (error) { - slang_info_log_error(A->log, - "Function '%s' not found (check argument types)", - name); - return NULL; + if (oper->array_constructor) { + /* this needs special handling */ + fun = _slang_make_array_constructor(A, oper); + } + else { + /* Try to find function by name and exact argument type matching */ + GLboolean error = GL_FALSE; + fun = _slang_function_locate(A->space.funcs, atom, params, param_count, + &A->space, A->atoms, A->log, &error); + if (error) { + slang_info_log_error(A->log, + "Function '%s' not found (check argument types)", + name); + return NULL; + } } if (!fun) { @@ -2018,6 +2216,28 @@ _slang_gen_function_call_name(slang_assemble_ctx *A, const char *name, name); return NULL; } + if (!fun->body) { + slang_info_log_error(A->log, + "Function '%s' prototyped but not defined. " + "Separate compilation units not supported.", + name); + return NULL; + } + + /* type checking to be sure function's return type matches 'dest' type */ + if (dest) { + slang_typeinfo t0; + + slang_typeinfo_construct(&t0); + typeof_operation(A, dest, &t0); + + if (!slang_type_specifier_equal(&t0.spec, &fun->header.type.specifier)) { + slang_info_log_error(A->log, + "Incompatible type returned by call to '%s'", + name); + return NULL; + } + } n = _slang_gen_function_call(A, fun, oper, dest); @@ -2029,6 +2249,51 @@ _slang_gen_function_call_name(slang_assemble_ctx *A, const char *name, /*printf("Alloc storage for function result, size %d \n", size);*/ } + if (oper->array_constructor) { + /* free the temporary array constructor function now */ + slang_function_destruct(fun); + } + + return n; +} + + +static slang_ir_node * +_slang_gen_method_call(slang_assemble_ctx *A, slang_operation *oper) +{ + slang_atom *a_length = slang_atom_pool_atom(A->atoms, "length"); + slang_ir_node *n; + slang_variable *var; + + /* NOTE: In GLSL 1.20, there's only one kind of method + * call: array.length(). Anything else is an error. + */ + if (oper->a_id != a_length) { + slang_info_log_error(A->log, + "Undefined method call '%s'", (char *) oper->a_id); + return NULL; + } + + /* length() takes no arguments */ + if (oper->num_children > 0) { + slang_info_log_error(A->log, "Invalid arguments to length() method"); + return NULL; + } + + /* lookup the object/variable */ + var = _slang_variable_locate(oper->locals, oper->a_obj, GL_TRUE); + if (!var || var->type.specifier.type != SLANG_SPEC_ARRAY) { + slang_info_log_error(A->log, + "Undefined object '%s'", (char *) oper->a_obj); + return NULL; + } + + /* Create a float/literal IR node encoding the array length */ + n = new_node0(IR_FLOAT); + if (n) { + n->Value[0] = (float) _slang_array_length(var); + n->Store = _slang_new_ir_storage(PROGRAM_CONSTANT, -1, 1); + } return n; } @@ -2063,7 +2328,7 @@ _slang_is_scalar_or_boolean(slang_assemble_ctx *A, slang_operation *oper) GLint size; slang_typeinfo_construct(&type); - _slang_typeof_operation(A, oper, &type); + typeof_operation(A, oper, &type); size = _slang_sizeof_type_specifier(&type.spec); slang_typeinfo_destruct(&type); return size == 1; @@ -2080,7 +2345,7 @@ _slang_is_boolean(slang_assemble_ctx *A, slang_operation *oper) GLboolean isBool; slang_typeinfo_construct(&type); - _slang_typeof_operation(A, oper, &type); + typeof_operation(A, oper, &type); isBool = (type.spec.type == SLANG_SPEC_BOOL); slang_typeinfo_destruct(&type); return isBool; @@ -2201,40 +2466,259 @@ _slang_gen_do(slang_assemble_ctx * A, const slang_operation *oper) /** - * Generate for-loop using high-level IR_LOOP instruction. + * Recursively count the number of operations rooted at 'oper'. + * This gives some kind of indication of the size/complexity of an operation. + */ +static GLuint +sizeof_operation(const slang_operation *oper) +{ + if (oper) { + GLuint count = 1; /* me */ + GLuint i; + for (i = 0; i < oper->num_children; i++) { + count += sizeof_operation(&oper->children[i]); + } + return count; + } + else { + return 0; + } +} + + +/** + * Determine if a for-loop can be unrolled. + * At this time, only a rather narrow class of for loops can be unrolled. + * See code for details. + * When a loop can't be unrolled because it's too large we'll emit a + * message to the log. + */ +static GLboolean +_slang_can_unroll_for_loop(slang_assemble_ctx * A, const slang_operation *oper) +{ + GLuint bodySize; + GLint start, end; + const char *varName; + slang_atom varId; + + assert(oper->type == SLANG_OPER_FOR); + assert(oper->num_children == 4); + + /* children[0] must be either "int i=constant" or "i=constant" */ + if (oper->children[0].type == SLANG_OPER_BLOCK_NO_NEW_SCOPE) { + slang_variable *var; + + if (oper->children[0].children[0].type != SLANG_OPER_VARIABLE_DECL) + return GL_FALSE; + + varId = oper->children[0].children[0].a_id; + + var = _slang_variable_locate(oper->children[0].children[0].locals, + varId, GL_TRUE); + if (!var) + return GL_FALSE; + if (!var->initializer) + return GL_FALSE; + if (var->initializer->type != SLANG_OPER_LITERAL_INT) + return GL_FALSE; + start = (GLint) var->initializer->literal[0]; + } + else if (oper->children[0].type == SLANG_OPER_EXPRESSION) { + if (oper->children[0].children[0].type != SLANG_OPER_ASSIGN) + return GL_FALSE; + if (oper->children[0].children[0].children[0].type != SLANG_OPER_IDENTIFIER) + return GL_FALSE; + if (oper->children[0].children[0].children[1].type != SLANG_OPER_LITERAL_INT) + return GL_FALSE; + + varId = oper->children[0].children[0].children[0].a_id; + + start = (GLint) oper->children[0].children[0].children[1].literal[0]; + } + else { + return GL_FALSE; + } + + /* children[1] must be "i<constant" */ + if (oper->children[1].type != SLANG_OPER_EXPRESSION) + return GL_FALSE; + if (oper->children[1].children[0].type != SLANG_OPER_LESS) + return GL_FALSE; + if (oper->children[1].children[0].children[0].type != SLANG_OPER_IDENTIFIER) + return GL_FALSE; + if (oper->children[1].children[0].children[1].type != SLANG_OPER_LITERAL_INT) + return GL_FALSE; + + end = (GLint) oper->children[1].children[0].children[1].literal[0]; + + /* children[2] must be "i++" or "++i" */ + if (oper->children[2].type != SLANG_OPER_POSTINCREMENT && + oper->children[2].type != SLANG_OPER_PREINCREMENT) + return GL_FALSE; + if (oper->children[2].children[0].type != SLANG_OPER_IDENTIFIER) + return GL_FALSE; + + /* make sure the same variable name is used in all places */ + if ((oper->children[1].children[0].children[0].a_id != varId) || + (oper->children[2].children[0].a_id != varId)) + return GL_FALSE; + + varName = (const char *) varId; + + /* children[3], the loop body, can't be too large */ + bodySize = sizeof_operation(&oper->children[3]); + if (bodySize > MAX_FOR_LOOP_UNROLL_BODY_SIZE) { + slang_info_log_print(A->log, + "Note: 'for (%s ... )' body is too large/complex" + " to unroll", + varName); + return GL_FALSE; + } + + if (start >= end) + return GL_FALSE; /* degenerate case */ + + if (end - start > MAX_FOR_LOOP_UNROLL_ITERATIONS) { + slang_info_log_print(A->log, + "Note: 'for (%s=%d; %s<%d; ++%s)' is too" + " many iterations to unroll", + varName, start, varName, end, varName); + return GL_FALSE; + } + + if ((end - start) * bodySize > MAX_FOR_LOOP_UNROLL_COMPLEXITY) { + slang_info_log_print(A->log, + "Note: 'for (%s=%d; %s<%d; ++%s)' will generate" + " too much code to unroll", + varName, start, varName, end, varName); + return GL_FALSE; + } + + return GL_TRUE; /* we can unroll the loop */ +} + + +/** + * Unroll a for-loop. + * First we determine the number of iterations to unroll. + * Then for each iteration: + * make a copy of the loop body + * replace instances of the loop variable with the current iteration value + * generate IR code for the body + * \return pointer to generated IR code or NULL if error, out of memory, etc. + */ +static slang_ir_node * +_slang_unroll_for_loop(slang_assemble_ctx * A, const slang_operation *oper) +{ + GLint start, end, iter; + slang_ir_node *n, *root = NULL; + slang_atom varId; + + if (oper->children[0].type == SLANG_OPER_BLOCK_NO_NEW_SCOPE) { + /* for (int i=0; ... */ + slang_variable *var; + + varId = oper->children[0].children[0].a_id; + var = _slang_variable_locate(oper->children[0].children[0].locals, + varId, GL_TRUE); + start = (GLint) var->initializer->literal[0]; + } + else { + /* for (i=0; ... */ + varId = oper->children[0].children[0].children[0].a_id; + start = (GLint) oper->children[0].children[0].children[1].literal[0]; + } + + end = (GLint) oper->children[1].children[0].children[1].literal[0]; + + for (iter = start; iter < end; iter++) { + slang_operation *body; + + /* make a copy of the loop body */ + body = slang_operation_new(1); + if (!body) + return NULL; + + if (!slang_operation_copy(body, &oper->children[3])) + return NULL; + + /* in body, replace instances of 'varId' with literal 'iter' */ + { + slang_variable *oldVar; + slang_operation *newOper; + + oldVar = _slang_variable_locate(oper->locals, varId, GL_TRUE); + if (!oldVar) { + /* undeclared loop variable */ + slang_operation_delete(body); + return NULL; + } + + newOper = slang_operation_new(1); + newOper->type = SLANG_OPER_LITERAL_INT; + newOper->literal_size = 1; + newOper->literal[0] = iter; + + /* replace instances of the loop variable with newOper */ + slang_substitute(A, body, 1, &oldVar, &newOper, GL_FALSE); + } + + /* do IR codegen for body */ + n = _slang_gen_operation(A, body); + root = new_seq(root, n); + + slang_operation_delete(body); + } + + return root; +} + + +/** + * Generate IR for a for-loop. Unrolling will be done when possible. */ static slang_ir_node * _slang_gen_for(slang_assemble_ctx * A, const slang_operation *oper) { - /* - * init code (child[0]) - * LOOP: - * BREAK if !expr (child[1]) - * body code (child[3]) - * tail code: - * incr code (child[2]) // XXX continue here - */ - slang_ir_node *prevLoop, *loop, *cond, *breakIf, *body, *init, *incr; + GLboolean unroll = _slang_can_unroll_for_loop(A, oper); - init = _slang_gen_operation(A, &oper->children[0]); - loop = new_loop(NULL); + if (unroll) { + slang_ir_node *code = _slang_unroll_for_loop(A, oper); + if (code) + return code; + } - /* save old, push new loop */ - prevLoop = A->CurLoop; - A->CurLoop = loop; + /* conventional for-loop code generation */ + { + /* + * init code (child[0]) + * LOOP: + * BREAK if !expr (child[1]) + * body code (child[3]) + * tail code: + * incr code (child[2]) // XXX continue here + */ + slang_ir_node *prevLoop, *loop, *cond, *breakIf, *body, *init, *incr; + init = _slang_gen_operation(A, &oper->children[0]); + loop = new_loop(NULL); - cond = new_cond(new_not(_slang_gen_operation(A, &oper->children[1]))); - breakIf = new_break_if_true(A->CurLoop, cond); - body = _slang_gen_operation(A, &oper->children[3]); - incr = _slang_gen_operation(A, &oper->children[2]); + /* save old, push new loop */ + prevLoop = A->CurLoop; + A->CurLoop = loop; - loop->Children[0] = new_seq(breakIf, body); - loop->Children[1] = incr; /* tail code */ + cond = new_cond(new_not(_slang_gen_operation(A, &oper->children[1]))); + breakIf = new_break_if_true(A->CurLoop, cond); + body = _slang_gen_operation(A, &oper->children[3]); + incr = _slang_gen_operation(A, &oper->children[2]); - /* pop loop, restore prev */ - A->CurLoop = prevLoop; + loop->Children[0] = new_seq(breakIf, body); + loop->Children[1] = incr; /* tail code */ + + /* pop loop, restore prev */ + A->CurLoop = prevLoop; - return new_seq(init, loop); + return new_seq(init, loop); + } } @@ -2415,80 +2899,237 @@ _slang_gen_temporary(GLint size) /** - * Generate IR node for allocating/declaring a variable. + * Generate program constants for an array. + * Ex: const vec2[3] v = vec2[3](vec2(1,1), vec2(2,2), vec2(3,3)); + * This will allocate and initialize three vector constants, storing + * the array in constant memory, not temporaries like a non-const array. + * This can also be used for uniform array initializers. + * \return GL_TRUE for success, GL_FALSE if failure (semantic error, etc). + */ +static GLboolean +make_constant_array(slang_assemble_ctx *A, + slang_variable *var, + slang_operation *initializer) +{ + struct gl_program *prog = A->program; + const GLenum datatype = _slang_gltype_from_specifier(&var->type.specifier); + const char *varName = (char *) var->a_name; + const GLuint numElements = initializer->num_children; + GLint size; + GLuint i, j; + GLfloat *values; + + if (!var->store) { + var->store = _slang_new_ir_storage(PROGRAM_UNDEFINED, -6, -6); + } + size = var->store->Size; + + assert(var->type.qualifier == SLANG_QUAL_CONST || + var->type.qualifier == SLANG_QUAL_UNIFORM); + assert(initializer->type == SLANG_OPER_CALL); + assert(initializer->array_constructor); + + values = (GLfloat *) _mesa_malloc(numElements * 4 * sizeof(GLfloat)); + + /* convert constructor params into ordinary floats */ + for (i = 0; i < numElements; i++) { + const slang_operation *op = &initializer->children[i]; + if (op->type != SLANG_OPER_LITERAL_FLOAT) { + /* unsupported type for this optimization */ + free(values); + return GL_FALSE; + } + for (j = 0; j < op->literal_size; j++) { + values[i * 4 + j] = op->literal[j]; + } + for ( ; j < 4; j++) { + values[i * 4 + j] = 0.0f; + } + } + + /* slightly different paths for constants vs. uniforms */ + if (var->type.qualifier == SLANG_QUAL_UNIFORM) { + var->store->File = PROGRAM_UNIFORM; + var->store->Index = _mesa_add_uniform(prog->Parameters, varName, + size, datatype, values); + } + else { + var->store->File = PROGRAM_CONSTANT; + var->store->Index = _mesa_add_named_constant(prog->Parameters, varName, + values, size); + } + assert(var->store->Size == size); + + _mesa_free(values); + + return GL_TRUE; +} + + + +/** + * Generate IR node for allocating/declaring a variable (either a local or + * a global). + * Generally, this involves allocating an slang_ir_storage instance for the + * variable, choosing a register file (temporary, constant, etc). + * For ordinary variables we do not yet allocate storage though. We do that + * when we find the first actual use of the variable to avoid allocating temp + * regs that will never get used. + * At this time, uniforms are always allocated space in this function. + * + * \param initializer Optional initializer expression for the variable. */ static slang_ir_node * -_slang_gen_var_decl(slang_assemble_ctx *A, slang_variable *var) +_slang_gen_var_decl(slang_assemble_ctx *A, slang_variable *var, + slang_operation *initializer) { - slang_ir_node *n; + const char *varName = (const char *) var->a_name; + const GLenum datatype = _slang_gltype_from_specifier(&var->type.specifier); + slang_ir_node *varDecl, *n; + slang_ir_storage *store; + GLint arrayLen, size, totalSize; /* if array then totalSize > size */ + enum register_file file; /*assert(!var->declared);*/ var->declared = GL_TRUE; - n = new_node0(IR_VAR_DECL); - if (n) { - _slang_attach_storage(n, var); - assert(var->aux); - assert(n->Store == var->aux); - assert(n->Store); - assert(n->Store->Index < 0); + /* determine GPU register file for simple cases */ + if (is_sampler_type(&var->type)) { + file = PROGRAM_SAMPLER; + } + else if (var->type.qualifier == SLANG_QUAL_UNIFORM) { + file = PROGRAM_UNIFORM; + } + else { + file = PROGRAM_TEMPORARY; + } - if (is_sampler_type(&var->type)) { - n->Store->File = PROGRAM_SAMPLER; - } - else { - n->Store->File = PROGRAM_TEMPORARY; - } + totalSize = size = _slang_sizeof_type_specifier(&var->type.specifier); + if (size <= 0) { + slang_info_log_error(A->log, "invalid declaration for '%s'", varName); + return NULL; + } - n->Store->Size = _slang_sizeof_type_specifier(&n->Var->type.specifier); + arrayLen = _slang_array_length(var); + totalSize = _slang_array_size(size, arrayLen); - if (n->Store->Size <= 0) { - slang_info_log_error(A->log, "invalid declaration for '%s'", - (char*) var->a_name); - return NULL; - } + /* Allocate IR node for the declaration */ + varDecl = new_node0(IR_VAR_DECL); + if (!varDecl) + return NULL; + + _slang_attach_storage(varDecl, var); /* undefined storage at first */ + assert(var->store); + assert(varDecl->Store == var->store); + assert(varDecl->Store); + assert(varDecl->Store->Index < 0); + store = var->store; + + assert(store == varDecl->Store); + + + /* Fill in storage fields which we now know. store->Index/Swizzle may be + * set for some cases below. Otherwise, store->Index/Swizzle will be set + * during code emit. + */ + store->File = file; + store->Size = totalSize; + + /* if there's an initializer, generate IR for the expression */ + if (initializer) { + slang_ir_node *varRef, *init; + + if (var->type.qualifier == SLANG_QUAL_CONST) { + /* if the variable is const, the initializer must be a const + * expression as well. + */ #if 0 - printf("%s var %p %s store=%p index=%d size=%d\n", - __FUNCTION__, (void *) var, (char *) var->a_name, - (void *) n->Store, n->Store->Index, n->Store->Size); + if (!_slang_is_constant_expr(initializer)) { + slang_info_log_error(A->log, + "initializer for %s not constant", varName); + return NULL; + } #endif + } - if (var->array_len > 0) { - /* this is an array */ - /* 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; + /* IR for the variable we're initializing */ + varRef = new_var(A, var); + if (!varRef) { + slang_info_log_error(A->log, "out of memory"); + return NULL; + } + + /* constant-folding, etc here */ + _slang_simplify(initializer, &A->space, A->atoms); + + /* look for simple constant-valued variables and uniforms */ + if (var->type.qualifier == SLANG_QUAL_CONST || + var->type.qualifier == SLANG_QUAL_UNIFORM) { + + if (initializer->type == SLANG_OPER_CALL && + initializer->array_constructor) { + /* array initializer */ + if (make_constant_array(A, var, initializer)) + return varRef; } - 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; + else if (initializer->type == SLANG_OPER_LITERAL_FLOAT || + initializer->type == SLANG_OPER_LITERAL_INT) { + /* simple float/vector initializer */ + if (store->File == PROGRAM_UNIFORM) { + store->Index = _mesa_add_uniform(A->program->Parameters, + varName, + totalSize, datatype, + initializer->literal); + store->Swizzle = _slang_var_swizzle(size, 0); + return varRef; + } +#if 0 + else { + store->File = PROGRAM_CONSTANT; + store->Index = _mesa_add_named_constant(A->program->Parameters, + varName, + initializer->literal, + totalSize); + store->Swizzle = _slang_var_swizzle(size, 0); + return varRef; + } +#endif } } - assert(n->Store->Size > 0); + /* IR for initializer */ + init = _slang_gen_operation(A, initializer); + if (!init) + return NULL; - /* setup default swizzle for storing the variable */ - switch (n->Store->Size) { - case 2: - n->Store->Swizzle = MAKE_SWIZZLE4(SWIZZLE_X, SWIZZLE_Y, - SWIZZLE_NIL, SWIZZLE_NIL); - break; - case 3: - n->Store->Swizzle = MAKE_SWIZZLE4(SWIZZLE_X, SWIZZLE_Y, - SWIZZLE_Z, SWIZZLE_NIL); - break; - default: - /* Note that float-sized vars may be allocated in any x/y/z/w - * slot, but that won't be determined until code emit time. - */ - n->Store->Swizzle = SWIZZLE_NOOP; + /* XXX remove this when type checking is added above */ + if (init->Store && init->Store->Size != totalSize) { + slang_info_log_error(A->log, "invalid assignment (wrong types)"); + return NULL; } + + /* assign RHS to LHS */ + n = new_node2(IR_COPY, varRef, init); + n = new_seq(varDecl, n); } + else { + /* no initializer */ + n = varDecl; + } + + if (store->File == PROGRAM_UNIFORM && store->Index < 0) { + /* always need to allocate storage for uniforms at this point */ + store->Index = _mesa_add_uniform(A->program->Parameters, varName, + totalSize, datatype, NULL); + store->Swizzle = _slang_var_swizzle(size, 0); + } + +#if 0 + printf("%s var %p %s store=%p index=%d size=%d\n", + __FUNCTION__, (void *) var, (char *) varName, + (void *) store, store->Index, store->Size); +#endif + return n; } @@ -2512,7 +3153,7 @@ _slang_gen_select(slang_assemble_ctx *A, slang_operation *oper) /* type of children[0] must be boolean */ slang_typeinfo_construct(&type0); - _slang_typeof_operation(A, &oper->children[0], &type0); + typeof_operation(A, &oper->children[0], &type0); isBool = (type0.spec.type == SLANG_SPEC_BOOL); slang_typeinfo_destruct(&type0); if (!isBool) { @@ -2522,8 +3163,8 @@ _slang_gen_select(slang_assemble_ctx *A, slang_operation *oper) slang_typeinfo_construct(&type1); slang_typeinfo_construct(&type2); - _slang_typeof_operation(A, &oper->children[1], &type1); - _slang_typeof_operation(A, &oper->children[2], &type2); + typeof_operation(A, &oper->children[1], &type1); + typeof_operation(A, &oper->children[2], &type2); isEqual = slang_type_specifier_equal(&type1.spec, &type2.spec); slang_typeinfo_destruct(&type1); slang_typeinfo_destruct(&type2); @@ -2663,8 +3304,8 @@ _slang_gen_return(slang_assemble_ctx * A, slang_operation *oper) #if 1 /* DEBUG */ { - slang_variable *v - = _slang_locate_variable(oper->locals, a_retVal, GL_TRUE); + slang_variable *v = + _slang_variable_locate(oper->locals, a_retVal, GL_TRUE); if (!v) { /* trying to return a value in a void-valued function */ return NULL; @@ -2694,6 +3335,7 @@ _slang_gen_return(slang_assemble_ctx * A, slang_operation *oper) } +#if 0 /** * Determine if the given operation/expression is const-valued. */ @@ -2705,7 +3347,7 @@ _slang_is_constant_expr(const slang_operation *oper) switch (oper->type) { case SLANG_OPER_IDENTIFIER: - var = _slang_locate_variable(oper->locals, oper->a_id, GL_TRUE); + var = _slang_variable_locate(oper->locals, oper->a_id, GL_TRUE); if (var && var->type.qualifier == SLANG_QUAL_CONST) return GL_TRUE; return GL_FALSE; @@ -2717,6 +3359,7 @@ _slang_is_constant_expr(const slang_operation *oper) return GL_TRUE; } } +#endif /** @@ -2737,10 +3380,10 @@ _slang_assignment_compatible(slang_assemble_ctx *A, } slang_typeinfo_construct(&t0); - _slang_typeof_operation(A, op0, &t0); + typeof_operation(A, op0, &t0); slang_typeinfo_construct(&t1); - _slang_typeof_operation(A, op1, &t1); + typeof_operation(A, op1, &t1); sz0 = _slang_sizeof_type_specifier(&t0.spec); sz1 = _slang_sizeof_type_specifier(&t1.spec); @@ -2779,29 +3422,29 @@ _slang_assignment_compatible(slang_assemble_ctx *A, } - /** - * Generate IR tree for a variable declaration. + * Generate IR tree for a local variable declaration. + * Basically do some error checking and call _slang_gen_var_decl(). */ static slang_ir_node * _slang_gen_declaration(slang_assemble_ctx *A, slang_operation *oper) { - slang_ir_node *n; - slang_ir_node *varDecl; - slang_variable *v; const char *varName = (char *) oper->a_id; + slang_variable *var; + slang_ir_node *varDecl; slang_operation *initializer; assert(oper->type == SLANG_OPER_VARIABLE_DECL); assert(oper->num_children <= 1); - v = _slang_locate_variable(oper->locals, oper->a_id, GL_TRUE); - if (!v) + /* lookup the variable by name */ + var = _slang_variable_locate(oper->locals, oper->a_id, GL_TRUE); + if (!var) return NULL; /* "shouldn't happen" */ - if (v->type.qualifier == SLANG_QUAL_ATTRIBUTE || - v->type.qualifier == SLANG_QUAL_VARYING || - v->type.qualifier == SLANG_QUAL_UNIFORM) { + if (var->type.qualifier == SLANG_QUAL_ATTRIBUTE || + var->type.qualifier == SLANG_QUAL_VARYING || + var->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", @@ -2816,85 +3459,46 @@ _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) { assert(oper->num_children == 1); initializer = &oper->children[0]; } - else if (v->initializer) { - initializer = v->initializer; + else if (var->initializer) { + initializer = var->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 */ + /* check/compare var type and initializer type */ if (!_slang_assignment_compatible(A, oper, initializer)) { slang_info_log_error(A->log, "incompatible 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 - if (!_slang_is_constant_expr(initializer)) { - slang_info_log_error(A->log, - "initializer for %s not constant", varName); - return NULL; - } -#endif - } - - _slang_simplify(initializer, &A->space, A->atoms); - - init = _slang_gen_operation(A, initializer); - if (!init) - return NULL; - - /*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; + if (var->type.qualifier == SLANG_QUAL_CONST) { + slang_info_log_error(A->log, + "const-qualified variable '%s' requires initializer", + varName); + return NULL; + } } - return n; + /* Generate IR node */ + varDecl = _slang_gen_var_decl(A, var, initializer); + if (!varDecl) + return NULL; + + return varDecl; } /** - * Generate IR tree for a variable (such as in an expression). + * Generate IR tree for a reference to a variable (such as in an expression). + * This is different from a variable declaration. */ static slang_ir_node * _slang_gen_variable(slang_assemble_ctx * A, slang_operation *oper) @@ -2902,12 +3506,15 @@ _slang_gen_variable(slang_assemble_ctx * A, slang_operation *oper) /* If there's a variable associated with this oper (from inlining) * use it. Otherwise, use the oper's var id. */ - slang_atom aVar = oper->var ? oper->var->a_name : oper->a_id; - slang_ir_node *n = new_var(A, oper, aVar); - if (!n) { - slang_info_log_error(A->log, "undefined variable '%s'", (char *) aVar); + slang_atom name = oper->var ? oper->var->a_name : oper->a_id; + slang_variable *var = _slang_variable_locate(oper->locals, name, GL_TRUE); + slang_ir_node *n; + if (!var) { + slang_info_log_error(A->log, "undefined variable '%s'", (char *) name); return NULL; } + assert(var->declared); + n = new_var(A, var); return n; } @@ -2964,6 +3571,22 @@ is_store_writable(const slang_assemble_ctx *A, const slang_ir_storage *store) /** + * Walk up an IR storage path to compute the final swizzle. + * This is used when we find an expression such as "foo.xz.yx". + */ +static GLuint +root_swizzle(const slang_ir_storage *st) +{ + GLuint swizzle = st->Swizzle; + while (st->Parent) { + st = st->Parent; + swizzle = _slang_swizzle_swizzle(st->Swizzle, swizzle); + } + return swizzle; +} + + +/** * Generate IR tree for an assignment (=). */ static slang_ir_node * @@ -2972,7 +3595,7 @@ _slang_gen_assignment(slang_assemble_ctx * A, slang_operation *oper) if (oper->children[0].type == SLANG_OPER_IDENTIFIER) { /* Check that var is writeable */ slang_variable *var - = _slang_locate_variable(oper->children[0].locals, + = _slang_variable_locate(oper->children[0].locals, oper->children[0].a_id, GL_TRUE); if (!var) { slang_info_log_error(A->log, "undefined variable '%s'", @@ -3038,9 +3661,9 @@ _slang_gen_assignment(slang_assemble_ctx * A, slang_operation *oper) rhs = _slang_gen_operation(A, &oper->children[1]); if (lhs && rhs) { /* convert lhs swizzle into writemask */ + const GLuint swizzle = root_swizzle(lhs->Store); GLuint writemask, newSwizzle; - if (!swizzle_to_writemask(A, lhs->Store->Swizzle, - &writemask, &newSwizzle)) { + if (!swizzle_to_writemask(A, swizzle, &writemask, &newSwizzle)) { /* Non-simple writemask, need to swizzle right hand side in * order to put components into the right place. */ @@ -3066,7 +3689,7 @@ _slang_gen_struct_field(slang_assemble_ctx * A, slang_operation *oper) /* type of struct */ slang_typeinfo_construct(&ti); - _slang_typeof_operation(A, &oper->children[0], &ti); + typeof_operation(A, &oper->children[0], &ti); if (_slang_type_is_vector(ti.spec.type)) { /* the field should be a swizzle */ @@ -3114,11 +3737,11 @@ _slang_gen_struct_field(slang_assemble_ctx * A, slang_operation *oper) /* oper->a_id is the field name */ slang_ir_node *base, *n; slang_typeinfo field_ti; - GLint fieldSize, fieldOffset = -1, swz; + GLint fieldSize, fieldOffset = -1; /* type of field */ slang_typeinfo_construct(&field_ti); - _slang_typeof_operation(A, oper, &field_ti); + typeof_operation(A, oper, &field_ti); fieldSize = _slang_sizeof_type_specifier(&field_ti.spec); if (fieldSize > 0) @@ -3147,22 +3770,12 @@ _slang_gen_struct_field(slang_assemble_ctx * A, slang_operation *oper) if (!n) return NULL; - - /* setup the storage info for this node */ - swz = fieldOffset % 4; - n->Field = (char *) oper->a_id; - n->Store = _slang_new_ir_storage_relative(fieldOffset / 4, - fieldSize, - base->Store); - if (fieldSize == 1) - n->Store->Swizzle = MAKE_SWIZZLE4(swz, swz, swz, swz); - else if (fieldSize == 2) - n->Store->Swizzle = MAKE_SWIZZLE4(SWIZZLE_X, SWIZZLE_Y, - SWIZZLE_NIL, SWIZZLE_NIL); - else if (fieldSize == 3) - n->Store->Swizzle = MAKE_SWIZZLE4(SWIZZLE_X, SWIZZLE_Y, - SWIZZLE_Z, SWIZZLE_NIL); + + /* Store the field's offset in storage->Index */ + n->Store = _slang_new_ir_storage(base->Store->File, + fieldOffset, + fieldSize); return n; } @@ -3179,7 +3792,7 @@ _slang_gen_array_element(slang_assemble_ctx * A, slang_operation *oper) /* get array's type info */ slang_typeinfo_construct(&array_ti); - _slang_typeof_operation(A, &oper->children[0], &array_ti); + typeof_operation(A, &oper->children[0], &array_ti); if (_slang_type_is_vector(array_ti.spec.type)) { /* indexing a simple vector type: "vec4 v; v[0]=p;" */ @@ -3191,8 +3804,16 @@ _slang_gen_array_element(slang_assemble_ctx * A, slang_operation *oper) index = (GLint) oper->children[1].literal[0]; if (oper->children[1].type != SLANG_OPER_LITERAL_INT || index >= (GLint) max) { +#if 0 slang_info_log_error(A->log, "Invalid array index for vector type"); + printf("type = %d\n", oper->children[1].type); + printf("index = %d, max = %d\n", index, max); + printf("array = %s\n", (char*)oper->children[0].a_id); + printf("index = %s\n", (char*)oper->children[1].a_id); return NULL; +#else + index = 0; +#endif } n = _slang_gen_operation(A, &oper->children[0]); @@ -3215,7 +3836,7 @@ _slang_gen_array_element(slang_assemble_ctx * A, slang_operation *oper) /* size of array element */ slang_typeinfo_construct(&elem_ti); - _slang_typeof_operation(A, oper, &elem_ti); + typeof_operation(A, oper, &elem_ti); elemSize = _slang_sizeof_type_specifier(&elem_ti.spec); if (_slang_type_is_matrix(array_ti.spec.type)) @@ -3255,12 +3876,12 @@ _slang_gen_array_element(slang_assemble_ctx * A, slang_operation *oper) } elem = new_node2(IR_ELEMENT, array, index); - elem->Store = _slang_new_ir_storage_relative(constIndex, - elemSize, - array->Store); - assert(elem->Store->Parent); - /* XXX try to do some array bounds checking here */ + /* The storage info here will be updated during code emit */ + elem->Store = _slang_new_ir_storage(array->Store->File, + array->Store->Index, + elemSize); + elem->Store->Swizzle = _slang_var_swizzle(elemSize, 0); return elem; } else { @@ -3280,10 +3901,10 @@ _slang_gen_compare(slang_assemble_ctx *A, slang_operation *oper, slang_ir_node *n; slang_typeinfo_construct(&t0); - _slang_typeof_operation(A, &oper->children[0], &t0); + typeof_operation(A, &oper->children[0], &t0); slang_typeinfo_construct(&t1); - _slang_typeof_operation(A, &oper->children[0], &t1); + typeof_operation(A, &oper->children[0], &t1); if (t0.spec.type == SLANG_SPEC_ARRAY || t1.spec.type == SLANG_SPEC_ARRAY) { @@ -3535,6 +4156,8 @@ _slang_gen_operation(slang_assemble_ctx * A, slang_operation *oper) case SLANG_OPER_CALL: return _slang_gen_function_call_name(A, (const char *) oper->a_id, oper, NULL); + case SLANG_OPER_METHOD: + return _slang_gen_method_call(A, oper); case SLANG_OPER_RETURN: return _slang_gen_return(A, oper); case SLANG_OPER_LABEL: @@ -3616,23 +4239,20 @@ _slang_gen_operation(slang_assemble_ctx * A, slang_operation *oper) /** - * Compute total size of array give size of element, number of elements. + * Check if the given type specifier is a rectangular texture sampler. */ -static GLint -array_size(GLint baseSize, GLint arrayLen) +static GLboolean +is_rect_sampler_spec(const slang_type_specifier *spec) { - GLint total; - if (arrayLen > 1) { - /* round up base type to multiple of 4 */ - total = ((baseSize + 3) & ~0x3) * MAX2(arrayLen, 1); - } - else { - total = baseSize; + while (spec->_array) { + spec = spec->_array; } - return total; + return spec->type == SLANG_SPEC_SAMPLER2DRECT || + spec->type == SLANG_SPEC_SAMPLER2DRECTSHADOW; } + /** * Called by compiler when a global variable has been parsed/compiled. * Here we examine the variable's type to determine what kind of register @@ -3656,8 +4276,14 @@ _slang_codegen_global_variable(slang_assemble_ctx *A, slang_variable *var, slang_ir_storage *store = NULL; int dbg = 0; const GLenum datatype = _slang_gltype_from_specifier(&var->type.specifier); - const GLint texIndex = sampler_to_texture_index(var->type.specifier.type); const GLint size = _slang_sizeof_type_specifier(&var->type.specifier); + const GLint arrayLen = _slang_array_length(var); + const GLint totalSize = _slang_array_size(size, arrayLen); + GLint texIndex = sampler_to_texture_index(var->type.specifier.type); + + /* check for sampler2D arrays */ + if (texIndex == -1 && var->type.specifier._array) + texIndex = sampler_to_texture_index(var->type.specifier._array->type); if (texIndex != -1) { /* This is a texture sampler variable... @@ -3671,21 +4297,37 @@ _slang_codegen_global_variable(slang_assemble_ctx *A, slang_variable *var, } #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) { + if (is_rect_sampler_spec(&var->type.specifier)) { slang_info_log_error(A->log, "invalid sampler type for '%s'", varName); return GL_FALSE; } +#else + (void) is_rect_sampler_spec; /* silence warning */ #endif { GLint sampNum = _mesa_add_sampler(prog->Parameters, varName, datatype); - store = _slang_new_ir_storage(PROGRAM_SAMPLER, sampNum, texIndex); + store = _slang_new_ir_storage_sampler(sampNum, texIndex, totalSize); + + /* If we have a sampler array, then we need to allocate the + * additional samplers to ensure we don't allocate them elsewhere. + * We can't directly use _mesa_add_sampler() as that checks the + * varName and gets a match, so we call _mesa_add_parameter() + * directly and use the last sampler number from the call above. + */ + if (arrayLen > 0) { + GLint a = arrayLen - 1; + GLint i; + for (i = 0; i < a; i++) { + GLfloat value = (GLfloat)(i + sampNum + 1); + (void) _mesa_add_parameter(prog->Parameters, PROGRAM_SAMPLER, + varName, 1, datatype, &value, NULL, 0x0); + } + } } 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 (prog) { @@ -3727,27 +4369,10 @@ _slang_codegen_global_variable(slang_assemble_ctx *A, slang_variable *var, } } else { - GLint uniformLoc; - const GLfloat *initialValues = NULL; - if (var->initializer) { - _slang_simplify(var->initializer, &A->space, A->atoms); - if (var->initializer->type == SLANG_OPER_LITERAL_FLOAT || - var->initializer->type == SLANG_OPER_LITERAL_INT) { - /* simple float/vector initializer */ - initialValues = var->initializer->literal; - } - else { - /* complex initializer */ - slang_info_log_error(A->log, - "unsupported initializer for uniform '%s'", varName); - return GL_FALSE; - } - } - - uniformLoc = _mesa_add_uniform(prog->Parameters, varName, - totalSize, datatype, initialValues); - store = _slang_new_ir_storage_swz(PROGRAM_UNIFORM, uniformLoc, - totalSize, swizzle); + /* non-struct uniform */ + if (!_slang_gen_var_decl(A, var, var->initializer)) + return GL_FALSE; + store = var->store; } } else { @@ -3761,8 +4386,6 @@ _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) { - const GLint totalSize = array_size(size, var->array_len); - /* 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) { @@ -3780,8 +4403,19 @@ _slang_codegen_global_variable(slang_assemble_ctx *A, slang_variable *var, if (prog) { /* user-defined varying */ - GLint varyingLoc = _mesa_add_varying(prog->Varying, varName, totalSize); - GLuint swizzle = _slang_var_swizzle(size, 0); + GLbitfield flags; + GLint varyingLoc; + GLuint swizzle; + + flags = 0x0; + if (var->type.centroid == SLANG_CENTROID) + flags |= PROG_PARAM_BIT_CENTROID; + if (var->type.variant == SLANG_INVARIANT) + flags |= PROG_PARAM_BIT_INVARIANT; + + varyingLoc = _mesa_add_varying(prog->Varying, varName, + totalSize, flags); + swizzle = _slang_var_swizzle(size, 0); store = _slang_new_ir_storage_swz(PROGRAM_VARYING, varyingLoc, totalSize, swizzle); } @@ -3869,27 +4503,10 @@ _slang_codegen_global_variable(slang_assemble_ctx *A, slang_variable *var, slang_ir_node *n; /* IR node to declare the variable */ - n = _slang_gen_var_decl(A, var); - - /* IR code for the var's initializer, if present */ - if (var->initializer) { - slang_ir_node *lhs, *rhs, *init; - - /* Generate IR_COPY instruction to initialize the variable */ - lhs = new_node0(IR_VAR); - lhs->Var = var; - lhs->Store = n->Store; - - /* constant folding, etc */ - _slang_simplify(var->initializer, &A->space, A->atoms); - - rhs = _slang_gen_operation(A, var->initializer); - assert(rhs); - init = new_node2(IR_COPY, lhs, rhs); - n = new_seq(n, init); - } + n = _slang_gen_var_decl(A, var, var->initializer); - success = _slang_emit_code(n, A->vartable, A->program, GL_FALSE, A->log); + /* emit GPU instructions */ + success = _slang_emit_code(n, A->vartable, A->program, A->pragmas, GL_FALSE, A->log); _slang_free_ir_tree(n); } @@ -3898,7 +4515,7 @@ _slang_codegen_global_variable(slang_assemble_ctx *A, slang_variable *var, store ? store->Index : -2); if (store) - var->aux = store; /* save var's storage info */ + var->store = store; /* save var's storage info */ var->declared = GL_TRUE; @@ -3999,7 +4616,7 @@ _slang_codegen_function(slang_assemble_ctx * A, slang_function * fun) #endif /* Emit program instructions */ - success = _slang_emit_code(n, A->vartable, A->program, GL_TRUE, A->log); + success = _slang_emit_code(n, A->vartable, A->program, A->pragmas, GL_TRUE, A->log); _slang_free_ir_tree(n); /* free codegen context */ diff --git a/src/mesa/shader/slang/slang_codegen.h b/src/mesa/shader/slang/slang_codegen.h index ba7ca4c142c..f2daa034e4f 100644 --- a/src/mesa/shader/slang/slang_codegen.h +++ b/src/mesa/shader/slang/slang_codegen.h @@ -31,6 +31,20 @@ #include "slang_compile.h" +typedef struct slang_assemble_ctx_ +{ + slang_atom_pool *atoms; + slang_name_space space; + struct gl_program *program; + struct gl_sl_pragmas *pragmas; + slang_var_table *vartable; + slang_info_log *log; + struct slang_label_ *curFuncEndLabel; + struct slang_ir_node_ *CurLoop; + struct slang_function_ *CurFunction; +} slang_assemble_ctx; + + extern GLuint _slang_sizeof_type_specifier(const slang_type_specifier *spec); diff --git a/src/mesa/shader/slang/slang_compile.c b/src/mesa/shader/slang/slang_compile.c index 72b83c04224..cfed977905a 100644 --- a/src/mesa/shader/slang/slang_compile.c +++ b/src/mesa/shader/slang/slang_compile.c @@ -1,8 +1,8 @@ /* * Mesa 3-D graphics library - * Version: 6.5.2 * * Copyright (C) 2005-2006 Brian Paul All Rights Reserved. + * Copyright (C) 2008 VMware, Inc. All Rights Reserved. * * Permission is hereby granted, free of charge, to any person obtaining a * copy of this software and associated documentation files (the "Software"), @@ -74,18 +74,6 @@ legal_identifier(slang_atom name) } -/** - * Allocate storage for a variable of 'size' bytes from given pool. - * Return the allocated address for the variable. - */ -static GLuint -slang_var_pool_alloc(slang_var_pool * pool, unsigned int size) -{ - const GLuint addr = pool->next_addr; - pool->next_addr += size; - return addr; -} - /* * slang_code_unit */ @@ -120,7 +108,6 @@ _slang_code_object_ctr(slang_code_object * self) for (i = 0; i < SLANG_BUILTIN_TOTAL; i++) _slang_code_unit_ctr(&self->builtin[i], self); _slang_code_unit_ctr(&self->unit, self); - self->varpool.next_addr = 0; slang_atom_pool_construct(&self->atompool); } @@ -156,17 +143,28 @@ typedef struct slang_output_ctx_ slang_variable_scope *vars; slang_function_scope *funs; slang_struct_scope *structs; - slang_var_pool *global_pool; struct gl_program *program; + struct gl_sl_pragmas *pragmas; slang_var_table *vartable; GLuint default_precision[TYPE_SPECIFIER_COUNT]; GLboolean allow_precision; GLboolean allow_invariant; GLboolean allow_centroid; + GLboolean allow_array_types; /* float[] syntax */ } slang_output_ctx; /* _slang_compile() */ + +/* Debugging aid, print file/line where parsing error is detected */ +#define RETURN0 \ + do { \ + if (0) \ + printf("slang error at %s:%d\n", __FILE__, __LINE__); \ + return 0; \ + } while (0) + + static void parse_identifier_str(slang_parse_ctx * C, char **id) { @@ -223,7 +221,7 @@ parse_float(slang_parse_ctx * C, float *number) _mesa_strlen(exponent) + 3) * sizeof(char)); if (whole == NULL) { slang_info_log_memory(C->L); - return 0; + RETURN0; } slang_string_copy(whole, integral); @@ -240,14 +238,14 @@ parse_float(slang_parse_ctx * C, float *number) } /* revision number - increment after each change affecting emitted output */ -#define REVISION 4 +#define REVISION 5 static int check_revision(slang_parse_ctx * C) { if (*C->I != REVISION) { slang_info_log_error(C->L, "Internal compiler error."); - return 0; + RETURN0; } C->I++; return 1; @@ -259,6 +257,10 @@ static int parse_expression(slang_parse_ctx *, slang_output_ctx *, slang_operation *); static int parse_type_specifier(slang_parse_ctx *, slang_output_ctx *, slang_type_specifier *); +static int +parse_type_array_size(slang_parse_ctx *C, + slang_output_ctx *O, + GLint *array_len); static GLboolean parse_array_len(slang_parse_ctx * C, slang_output_ctx * O, GLuint * len) @@ -285,7 +287,7 @@ parse_array_len(slang_parse_ctx * C, slang_output_ctx * O, GLuint * len) result = GL_TRUE; *len = (GLint) array_size.literal[0]; } else if (array_size.type == SLANG_OPER_IDENTIFIER) { - slang_variable *var = _slang_locate_variable(array_size.locals, array_size.a_id, GL_TRUE); + slang_variable *var = _slang_variable_locate(array_size.locals, array_size.a_id, GL_TRUE); if (!var) { slang_info_log_error(C->L, "undefined variable '%s'", (char *) array_size.a_id); @@ -330,12 +332,26 @@ calculate_var_size(slang_parse_ctx * C, slang_output_ctx * O, return GL_TRUE; } +static void +promote_type_to_array(slang_parse_ctx *C, + slang_fully_specified_type *type, + GLint array_len) +{ + slang_type_specifier *baseType = + slang_type_specifier_new(type->specifier.type, NULL, NULL); + + type->specifier.type = SLANG_SPEC_ARRAY; + type->specifier._array = baseType; + type->array_len = array_len; +} + + static GLboolean convert_to_array(slang_parse_ctx * C, slang_variable * var, const slang_type_specifier * sp) { - /* sized array - mark it as array, copy the specifier to the array element and - * parse the expression */ + /* sized array - mark it as array, copy the specifier to the array element + * and parse the expression */ var->type.specifier.type = SLANG_SPEC_ARRAY; var->type.specifier._array = (slang_type_specifier *) _slang_alloc(sizeof(slang_type_specifier)); @@ -355,7 +371,8 @@ convert_to_array(slang_parse_ctx * C, slang_variable * var, static GLboolean parse_struct_field_var(slang_parse_ctx * C, slang_output_ctx * O, slang_variable * var, slang_atom a_name, - const slang_type_specifier * sp) + const slang_type_specifier * sp, + GLuint array_len) { var->a_name = a_name; if (var->a_name == SLANG_ATOM_NULL) @@ -363,10 +380,19 @@ parse_struct_field_var(slang_parse_ctx * C, slang_output_ctx * O, switch (*C->I++) { case FIELD_NONE: - if (!slang_type_specifier_copy(&var->type.specifier, sp)) - return GL_FALSE; + if (array_len != -1) { + if (!convert_to_array(C, var, sp)) + return GL_FALSE; + var->array_len = array_len; + } + else { + if (!slang_type_specifier_copy(&var->type.specifier, sp)) + return GL_FALSE; + } break; case FIELD_ARRAY: + if (array_len != -1) + return GL_FALSE; if (!convert_to_array(C, var, sp)) return GL_FALSE; if (!parse_array_len(C, O, &var->array_len)) @@ -384,26 +410,29 @@ parse_struct_field(slang_parse_ctx * C, slang_output_ctx * O, slang_struct * st, slang_type_specifier * sp) { slang_output_ctx o = *O; + GLint array_len; o.structs = st->structs; if (!parse_type_specifier(C, &o, sp)) - return 0; + RETURN0; + if (!parse_type_array_size(C, &o, &array_len)) + RETURN0; do { slang_atom a_name; slang_variable *var = slang_variable_scope_grow(st->fields); if (!var) { slang_info_log_memory(C->L); - return 0; + RETURN0; } a_name = parse_identifier(C); - if (_slang_locate_variable(st->fields, a_name, GL_FALSE)) { + if (_slang_variable_locate(st->fields, a_name, GL_FALSE)) { slang_info_log_error(C->L, "duplicate field '%s'", (char *) a_name); - return 0; + RETURN0; } - if (!parse_struct_field_var(C, &o, var, a_name, sp)) - return 0; + if (!parse_struct_field_var(C, &o, var, a_name, sp, array_len)) + RETURN0; } while (*C->I++ != FIELD_NONE); @@ -419,26 +448,26 @@ parse_struct(slang_parse_ctx * C, slang_output_ctx * O, slang_struct ** st) /* parse struct name (if any) and make sure it is unique in current scope */ a_name = parse_identifier(C); if (a_name == SLANG_ATOM_NULL) - return 0; + RETURN0; name = slang_atom_pool_id(C->atoms, a_name); if (name[0] != '\0' && slang_struct_scope_find(O->structs, a_name, 0) != NULL) { slang_info_log_error(C->L, "%s: duplicate type name.", name); - return 0; + RETURN0; } /* set-up a new struct */ *st = (slang_struct *) _slang_alloc(sizeof(slang_struct)); if (*st == NULL) { slang_info_log_memory(C->L); - return 0; + RETURN0; } if (!slang_struct_construct(*st)) { _slang_free(*st); *st = NULL; slang_info_log_memory(C->L); - return 0; + RETURN0; } (**st).a_name = a_name; (**st).structs->outer_scope = O->structs; @@ -450,7 +479,7 @@ parse_struct(slang_parse_ctx * C, slang_output_ctx * O, slang_struct ** st) slang_type_specifier_ctr(&sp); if (!parse_struct_field(C, O, *st, &sp)) { slang_type_specifier_dtr(&sp); - return 0; + RETURN0; } slang_type_specifier_dtr(&sp); } @@ -468,14 +497,14 @@ parse_struct(slang_parse_ctx * C, slang_output_ctx * O, slang_struct ** st) * sizeof(slang_struct)); if (O->structs->structs == NULL) { slang_info_log_memory(C->L); - return 0; + RETURN0; } s = &O->structs->structs[O->structs->num_structs]; if (!slang_struct_construct(s)) - return 0; + RETURN0; O->structs->num_structs++; if (!slang_struct_copy(s, *st)) - return 0; + RETURN0; } return 1; @@ -498,7 +527,7 @@ parse_type_variant(slang_parse_ctx * C, slang_type_variant *variant) *variant = SLANG_INVARIANT; return 1; default: - return 0; + RETURN0; } } @@ -519,7 +548,7 @@ parse_type_centroid(slang_parse_ctx * C, slang_type_centroid *centroid) *centroid = SLANG_CENTROID; return 1; default: - return 0; + RETURN0; } } @@ -560,7 +589,7 @@ parse_type_qualifier(slang_parse_ctx * C, slang_type_qualifier * qual) *qual = SLANG_QUAL_FIXEDINPUT; break; default: - return 0; + RETURN0; } return 1; } @@ -698,7 +727,7 @@ parse_type_specifier(slang_parse_ctx * C, slang_output_ctx * O, case TYPE_SPECIFIER_STRUCT: spec->type = SLANG_SPEC_STRUCT; if (!parse_struct(C, O, &spec->_struct)) - return 0; + RETURN0; break; case TYPE_SPECIFIER_TYPENAME: spec->type = SLANG_SPEC_STRUCT; @@ -708,35 +737,60 @@ parse_type_specifier(slang_parse_ctx * C, slang_output_ctx * O, a_name = parse_identifier(C); if (a_name == NULL) - return 0; + RETURN0; stru = slang_struct_scope_find(O->structs, a_name, 1); if (stru == NULL) { slang_info_log_error(C->L, "undeclared type name '%s'", slang_atom_pool_id(C->atoms, a_name)); - return 0; + RETURN0; } spec->_struct = (slang_struct *) _slang_alloc(sizeof(slang_struct)); if (spec->_struct == NULL) { slang_info_log_memory(C->L); - return 0; + RETURN0; } if (!slang_struct_construct(spec->_struct)) { _slang_free(spec->_struct); spec->_struct = NULL; - return 0; + RETURN0; } if (!slang_struct_copy(spec->_struct, stru)) - return 0; + RETURN0; } break; default: - return 0; + RETURN0; } return 1; } +#define TYPE_SPECIFIER_NONARRAY 0 +#define TYPE_SPECIFIER_ARRAY 1 + +static int +parse_type_array_size(slang_parse_ctx *C, + slang_output_ctx *O, + GLint *array_len) +{ + GLuint size; + + switch (*C->I++) { + case TYPE_SPECIFIER_NONARRAY: + *array_len = -1; /* -1 = not an array */ + break; + case TYPE_SPECIFIER_ARRAY: + if (!parse_array_len(C, O, &size)) + RETURN0; + *array_len = (GLint) size; + break; + default: + assert(0); + RETURN0; + } + return 1; +} #define PRECISION_DEFAULT 0 #define PRECISION_LOW 1 @@ -762,7 +816,7 @@ parse_type_precision(slang_parse_ctx *C, *precision = SLANG_PREC_HIGH; return 1; default: - return 0; + RETURN0; } } @@ -771,36 +825,39 @@ parse_fully_specified_type(slang_parse_ctx * C, slang_output_ctx * O, slang_fully_specified_type * type) { if (!parse_type_variant(C, &type->variant)) - return 0; + RETURN0; if (!parse_type_centroid(C, &type->centroid)) - return 0; + RETURN0; if (!parse_type_qualifier(C, &type->qualifier)) - return 0; + RETURN0; if (!parse_type_precision(C, &type->precision)) - return 0; + RETURN0; if (!parse_type_specifier(C, O, &type->specifier)) - return 0; + RETURN0; + + if (!parse_type_array_size(C, O, &type->array_len)) + RETURN0; if (!O->allow_invariant && type->variant == SLANG_INVARIANT) { slang_info_log_error(C->L, "'invariant' keyword not allowed (perhaps set #version 120)"); - return 0; + RETURN0; } if (!O->allow_centroid && type->centroid == SLANG_CENTROID) { slang_info_log_error(C->L, "'centroid' keyword not allowed (perhaps set #version 120)"); - return 0; + RETURN0; } else if (type->centroid == SLANG_CENTROID && type->qualifier != SLANG_QUAL_VARYING) { slang_info_log_error(C->L, "'centroid' keyword only allowed for varying vars"); - return 0; + RETURN0; } @@ -809,7 +866,7 @@ parse_fully_specified_type(slang_parse_ctx * C, slang_output_ctx * O, type->variant == SLANG_INVARIANT) { slang_info_log_error(C->L, "invariant qualifer only allowed for varying vars"); - return 0; + RETURN0; } */ @@ -824,10 +881,20 @@ parse_fully_specified_type(slang_parse_ctx * C, slang_output_ctx * O, /* only default is allowed */ if (type->precision != SLANG_PREC_DEFAULT) { slang_info_log_error(C->L, "precision qualifiers not allowed"); - return 0; + RETURN0; } } + if (!O->allow_array_types && type->array_len >= 0) { + slang_info_log_error(C->L, "first-class array types not allowed"); + RETURN0; + } + + if (type->array_len >= 0) { + /* convert type to array type (ex: convert "int" to "array of int" */ + promote_type_to_array(C, type, type->array_len); + } + return 1; } @@ -895,6 +962,7 @@ parse_fully_specified_type(slang_parse_ctx * C, slang_output_ctx * O, #define OP_POSTINCREMENT 60 #define OP_POSTDECREMENT 61 #define OP_PRECISION 62 +#define OP_METHOD 63 /** @@ -928,14 +996,18 @@ static int parse_statement(slang_parse_ctx * C, slang_output_ctx * O, slang_operation * oper) { + int op; + oper->locals->outer_scope = O->vars; - switch (*C->I++) { + + op = *C->I++; + switch (op) { case OP_BLOCK_BEGIN_NO_NEW_SCOPE: /* parse child statements, do not create new variable scope */ oper->type = SLANG_OPER_BLOCK_NO_NEW_SCOPE; while (*C->I != OP_END) - if (!parse_child_operation(C, O, oper, 1)) - return 0; + if (!parse_child_operation(C, O, oper, GL_TRUE)) + RETURN0; C->I++; break; case OP_BLOCK_BEGIN_NEW_SCOPE: @@ -946,8 +1018,8 @@ parse_statement(slang_parse_ctx * C, slang_output_ctx * O, oper->type = SLANG_OPER_BLOCK_NEW_SCOPE; o.vars = oper->locals; while (*C->I != OP_END) - if (!parse_child_operation(C, &o, oper, 1)) - return 0; + if (!parse_child_operation(C, &o, oper, GL_TRUE)) + RETURN0; C->I++; } break; @@ -963,7 +1035,7 @@ parse_statement(slang_parse_ctx * C, slang_output_ctx * O, * than one declarators */ if (!parse_declaration(C, O)) - return 0; + RETURN0; if (first_var < O->vars->num_variables) { const unsigned int num_vars = O->vars->num_variables - first_var; unsigned int i; @@ -972,18 +1044,23 @@ parse_statement(slang_parse_ctx * C, slang_output_ctx * O, oper->children = slang_operation_new(num_vars); if (oper->children == NULL) { slang_info_log_memory(C->L); - return 0; + RETURN0; } for (i = first_var; i < O->vars->num_variables; i++) { slang_operation *o = &oper->children[i - first_var]; + slang_variable *var = O->vars->variables[i]; o->type = SLANG_OPER_VARIABLE_DECL; o->locals->outer_scope = O->vars; - o->a_id = O->vars->variables[i]->a_name; + o->a_id = var->a_name; + + /* new/someday... + calculate_var_size(C, O, var); + */ if (!legal_identifier(o->a_id)) { slang_info_log_error(C->L, "illegal variable name '%s'", (char *) o->a_id); - return 0; + RETURN0; } } } @@ -996,10 +1073,10 @@ parse_statement(slang_parse_ctx * C, slang_output_ctx * O, oper->type = SLANG_OPER_ASM; oper->a_id = parse_identifier(C); if (oper->a_id == SLANG_ATOM_NULL) - return 0; + RETURN0; while (*C->I != OP_END) { - if (!parse_child_operation(C, O, oper, 0)) - return 0; + if (!parse_child_operation(C, O, oper, GL_FALSE)) + RETURN0; } C->I++; break; @@ -1014,22 +1091,22 @@ parse_statement(slang_parse_ctx * C, slang_output_ctx * O, break; case OP_RETURN: oper->type = SLANG_OPER_RETURN; - if (!parse_child_operation(C, O, oper, 0)) - return 0; + if (!parse_child_operation(C, O, oper, GL_FALSE)) + RETURN0; break; case OP_EXPRESSION: oper->type = SLANG_OPER_EXPRESSION; - if (!parse_child_operation(C, O, oper, 0)) - return 0; + if (!parse_child_operation(C, O, oper, GL_FALSE)) + RETURN0; break; case OP_IF: oper->type = SLANG_OPER_IF; - if (!parse_child_operation(C, O, oper, 0)) - return 0; - if (!parse_child_operation(C, O, oper, 1)) - return 0; - if (!parse_child_operation(C, O, oper, 1)) - return 0; + if (!parse_child_operation(C, O, oper, GL_FALSE)) + RETURN0; + if (!parse_child_operation(C, O, oper, GL_TRUE)) + RETURN0; + if (!parse_child_operation(C, O, oper, GL_TRUE)) + RETURN0; break; case OP_WHILE: { @@ -1037,18 +1114,18 @@ parse_statement(slang_parse_ctx * C, slang_output_ctx * O, oper->type = SLANG_OPER_WHILE; o.vars = oper->locals; - if (!parse_child_operation(C, &o, oper, 1)) - return 0; - if (!parse_child_operation(C, &o, oper, 1)) - return 0; + if (!parse_child_operation(C, &o, oper, GL_TRUE)) + RETURN0; + if (!parse_child_operation(C, &o, oper, GL_TRUE)) + RETURN0; } break; case OP_DO: oper->type = SLANG_OPER_DO; - if (!parse_child_operation(C, O, oper, 1)) - return 0; - if (!parse_child_operation(C, O, oper, 0)) - return 0; + if (!parse_child_operation(C, O, oper, GL_TRUE)) + RETURN0; + if (!parse_child_operation(C, O, oper, GL_FALSE)) + RETURN0; break; case OP_FOR: { @@ -1056,14 +1133,14 @@ parse_statement(slang_parse_ctx * C, slang_output_ctx * O, oper->type = SLANG_OPER_FOR; o.vars = oper->locals; - if (!parse_child_operation(C, &o, oper, 1)) - return 0; - if (!parse_child_operation(C, &o, oper, 1)) - return 0; - if (!parse_child_operation(C, &o, oper, 0)) - return 0; - if (!parse_child_operation(C, &o, oper, 1)) - return 0; + if (!parse_child_operation(C, &o, oper, GL_TRUE)) + RETURN0; + if (!parse_child_operation(C, &o, oper, GL_TRUE)) + RETURN0; + if (!parse_child_operation(C, &o, oper, GL_FALSE)) + RETURN0; + if (!parse_child_operation(C, &o, oper, GL_TRUE)) + RETURN0; } break; case OP_PRECISION: @@ -1077,7 +1154,8 @@ parse_statement(slang_parse_ctx * C, slang_output_ctx * O, } break; default: - return 0; + /*printf("Unexpected operation %d\n", op);*/ + RETURN0; } return 1; } @@ -1092,7 +1170,7 @@ handle_nary_expression(slang_parse_ctx * C, slang_operation * op, op->children = slang_operation_new(n); if (op->children == NULL) { slang_info_log_memory(C->L); - return 0; + RETURN0; } op->num_children = n; @@ -1110,7 +1188,7 @@ handle_nary_expression(slang_parse_ctx * C, slang_operation * op, *total_ops * sizeof(slang_operation)); if (*ops == NULL) { slang_info_log_memory(C->L); - return 0; + RETURN0; } return 1; } @@ -1124,6 +1202,9 @@ is_constructor_name(const char *name, slang_atom a_name, return slang_struct_scope_find(structs, a_name, 1) != NULL; } +#define FUNCTION_CALL_NONARRAY 0 +#define FUNCTION_CALL_ARRAY 1 + static int parse_expression(slang_parse_ctx * C, slang_output_ctx * O, slang_operation * oper) @@ -1143,12 +1224,12 @@ parse_expression(slang_parse_ctx * C, slang_output_ctx * O, (num_ops + 1) * sizeof(slang_operation)); if (ops == NULL) { slang_info_log_memory(C->L); - return 0; + RETURN0; } op = &ops[num_ops]; if (!slang_operation_construct(op)) { slang_info_log_memory(C->L); - return 0; + RETURN0; } num_ops++; op->locals->outer_scope = O->vars; @@ -1160,7 +1241,7 @@ parse_expression(slang_parse_ctx * C, slang_output_ctx * O, case OP_PUSH_BOOL: op->type = SLANG_OPER_LITERAL_BOOL; if (!parse_number(C, &number)) - return 0; + RETURN0; op->literal[0] = op->literal[1] = op->literal[2] = @@ -1170,7 +1251,7 @@ parse_expression(slang_parse_ctx * C, slang_output_ctx * O, case OP_PUSH_INT: op->type = SLANG_OPER_LITERAL_INT; if (!parse_number(C, &number)) - return 0; + RETURN0; op->literal[0] = op->literal[1] = op->literal[2] = @@ -1180,7 +1261,7 @@ parse_expression(slang_parse_ctx * C, slang_output_ctx * O, case OP_PUSH_FLOAT: op->type = SLANG_OPER_LITERAL_FLOAT; if (!parse_float(C, &op->literal[0])) - return 0; + RETURN0; op->literal[1] = op->literal[2] = op->literal[3] = op->literal[0]; @@ -1190,37 +1271,37 @@ parse_expression(slang_parse_ctx * C, slang_output_ctx * O, op->type = SLANG_OPER_IDENTIFIER; op->a_id = parse_identifier(C); if (op->a_id == SLANG_ATOM_NULL) - return 0; + RETURN0; break; case OP_SEQUENCE: op->type = SLANG_OPER_SEQUENCE; if (!handle_nary_expression(C, op, &ops, &num_ops, 2)) - return 0; + RETURN0; break; case OP_ASSIGN: op->type = SLANG_OPER_ASSIGN; if (!handle_nary_expression(C, op, &ops, &num_ops, 2)) - return 0; + RETURN0; break; case OP_ADDASSIGN: op->type = SLANG_OPER_ADDASSIGN; if (!handle_nary_expression(C, op, &ops, &num_ops, 2)) - return 0; + RETURN0; break; case OP_SUBASSIGN: op->type = SLANG_OPER_SUBASSIGN; if (!handle_nary_expression(C, op, &ops, &num_ops, 2)) - return 0; + RETURN0; break; case OP_MULASSIGN: op->type = SLANG_OPER_MULASSIGN; if (!handle_nary_expression(C, op, &ops, &num_ops, 2)) - return 0; + RETURN0; break; case OP_DIVASSIGN: op->type = SLANG_OPER_DIVASSIGN; if (!handle_nary_expression(C, op, &ops, &num_ops, 2)) - return 0; + RETURN0; break; /*case OP_MODASSIGN: */ /*case OP_LSHASSIGN: */ @@ -1231,22 +1312,22 @@ parse_expression(slang_parse_ctx * C, slang_output_ctx * O, case OP_SELECT: op->type = SLANG_OPER_SELECT; if (!handle_nary_expression(C, op, &ops, &num_ops, 3)) - return 0; + RETURN0; break; case OP_LOGICALOR: op->type = SLANG_OPER_LOGICALOR; if (!handle_nary_expression(C, op, &ops, &num_ops, 2)) - return 0; + RETURN0; break; case OP_LOGICALXOR: op->type = SLANG_OPER_LOGICALXOR; if (!handle_nary_expression(C, op, &ops, &num_ops, 2)) - return 0; + RETURN0; break; case OP_LOGICALAND: op->type = SLANG_OPER_LOGICALAND; if (!handle_nary_expression(C, op, &ops, &num_ops, 2)) - return 0; + RETURN0; break; /*case OP_BITOR: */ /*case OP_BITXOR: */ @@ -1254,97 +1335,106 @@ parse_expression(slang_parse_ctx * C, slang_output_ctx * O, case OP_EQUAL: op->type = SLANG_OPER_EQUAL; if (!handle_nary_expression(C, op, &ops, &num_ops, 2)) - return 0; + RETURN0; break; case OP_NOTEQUAL: op->type = SLANG_OPER_NOTEQUAL; if (!handle_nary_expression(C, op, &ops, &num_ops, 2)) - return 0; + RETURN0; break; case OP_LESS: op->type = SLANG_OPER_LESS; if (!handle_nary_expression(C, op, &ops, &num_ops, 2)) - return 0; + RETURN0; break; case OP_GREATER: op->type = SLANG_OPER_GREATER; if (!handle_nary_expression(C, op, &ops, &num_ops, 2)) - return 0; + RETURN0; break; case OP_LESSEQUAL: op->type = SLANG_OPER_LESSEQUAL; if (!handle_nary_expression(C, op, &ops, &num_ops, 2)) - return 0; + RETURN0; break; case OP_GREATEREQUAL: op->type = SLANG_OPER_GREATEREQUAL; if (!handle_nary_expression(C, op, &ops, &num_ops, 2)) - return 0; + RETURN0; break; /*case OP_LSHIFT: */ /*case OP_RSHIFT: */ case OP_ADD: op->type = SLANG_OPER_ADD; if (!handle_nary_expression(C, op, &ops, &num_ops, 2)) - return 0; + RETURN0; break; case OP_SUBTRACT: op->type = SLANG_OPER_SUBTRACT; if (!handle_nary_expression(C, op, &ops, &num_ops, 2)) - return 0; + RETURN0; break; case OP_MULTIPLY: op->type = SLANG_OPER_MULTIPLY; if (!handle_nary_expression(C, op, &ops, &num_ops, 2)) - return 0; + RETURN0; break; case OP_DIVIDE: op->type = SLANG_OPER_DIVIDE; if (!handle_nary_expression(C, op, &ops, &num_ops, 2)) - return 0; + RETURN0; break; /*case OP_MODULUS: */ case OP_PREINCREMENT: op->type = SLANG_OPER_PREINCREMENT; if (!handle_nary_expression(C, op, &ops, &num_ops, 1)) - return 0; + RETURN0; break; case OP_PREDECREMENT: op->type = SLANG_OPER_PREDECREMENT; if (!handle_nary_expression(C, op, &ops, &num_ops, 1)) - return 0; + RETURN0; break; case OP_PLUS: op->type = SLANG_OPER_PLUS; if (!handle_nary_expression(C, op, &ops, &num_ops, 1)) - return 0; + RETURN0; break; case OP_MINUS: op->type = SLANG_OPER_MINUS; if (!handle_nary_expression(C, op, &ops, &num_ops, 1)) - return 0; + RETURN0; break; case OP_NOT: op->type = SLANG_OPER_NOT; if (!handle_nary_expression(C, op, &ops, &num_ops, 1)) - return 0; + RETURN0; break; /*case OP_COMPLEMENT: */ case OP_SUBSCRIPT: op->type = SLANG_OPER_SUBSCRIPT; if (!handle_nary_expression(C, op, &ops, &num_ops, 2)) - return 0; + RETURN0; break; - case OP_CALL: - op->type = SLANG_OPER_CALL; + case OP_METHOD: + op->type = SLANG_OPER_METHOD; + op->a_obj = parse_identifier(C); + if (op->a_obj == SLANG_ATOM_NULL) + RETURN0; + op->a_id = parse_identifier(C); if (op->a_id == SLANG_ATOM_NULL) - return 0; - while (*C->I != OP_END) - if (!parse_child_operation(C, O, op, 0)) - return 0; + RETURN0; + + assert(*C->I == OP_END); C->I++; + while (*C->I != OP_END) + if (!parse_child_operation(C, O, op, GL_FALSE)) + RETURN0; + C->I++; +#if 0 + /* don't lookup the method (not yet anyway) */ if (!C->parsing_builtin && !slang_function_scope_find_by_name(O->funs, op->a_id, 1)) { const char *id; @@ -1352,7 +1442,79 @@ parse_expression(slang_parse_ctx * C, slang_output_ctx * O, id = slang_atom_pool_id(C->atoms, op->a_id); if (!is_constructor_name(id, op->a_id, O->structs)) { slang_info_log_error(C->L, "%s: undeclared function name.", id); - return 0; + RETURN0; + } + } +#endif + break; + case OP_CALL: + { + GLboolean array_constructor = GL_FALSE; + GLint array_constructor_size; + + op->type = SLANG_OPER_CALL; + op->a_id = parse_identifier(C); + if (op->a_id == SLANG_ATOM_NULL) + RETURN0; + switch (*C->I++) { + case FUNCTION_CALL_NONARRAY: + /* Nothing to do. */ + break; + case FUNCTION_CALL_ARRAY: + /* Calling an array constructor. For example: + * float[3](1.1, 2.2, 3.3); + */ + if (!O->allow_array_types) { + slang_info_log_error(C->L, + "array constructors not allowed " + "in this GLSL version"); + RETURN0; + } + else { + /* parse the array constructor size */ + slang_operation array_size; + array_constructor = GL_TRUE; + slang_operation_construct(&array_size); + if (!parse_expression(C, O, &array_size)) { + slang_operation_destruct(&array_size); + return GL_FALSE; + } + if (array_size.type != SLANG_OPER_LITERAL_INT) { + slang_info_log_error(C->L, + "constructor array size is not an integer"); + slang_operation_destruct(&array_size); + RETURN0; + } + array_constructor_size = (int) array_size.literal[0]; + op->array_constructor = GL_TRUE; + slang_operation_destruct(&array_size); + } + break; + default: + assert(0); + RETURN0; + } + while (*C->I != OP_END) + if (!parse_child_operation(C, O, op, GL_FALSE)) + RETURN0; + C->I++; + + if (array_constructor && + array_constructor_size != op->num_children) { + slang_info_log_error(C->L, "number of parameters to array" + " constructor does not match array size"); + RETURN0; + } + + if (!C->parsing_builtin + && !slang_function_scope_find_by_name(O->funs, op->a_id, 1)) { + const char *id; + + id = slang_atom_pool_id(C->atoms, op->a_id); + if (!is_constructor_name(id, op->a_id, O->structs)) { + slang_info_log_error(C->L, "%s: undeclared function name.", id); + RETURN0; + } } } break; @@ -1360,22 +1522,22 @@ parse_expression(slang_parse_ctx * C, slang_output_ctx * O, op->type = SLANG_OPER_FIELD; op->a_id = parse_identifier(C); if (op->a_id == SLANG_ATOM_NULL) - return 0; + RETURN0; if (!handle_nary_expression(C, op, &ops, &num_ops, 1)) - return 0; + RETURN0; break; case OP_POSTINCREMENT: op->type = SLANG_OPER_POSTINCREMENT; if (!handle_nary_expression(C, op, &ops, &num_ops, 1)) - return 0; + RETURN0; break; case OP_POSTDECREMENT: op->type = SLANG_OPER_POSTDECREMENT; if (!handle_nary_expression(C, op, &ops, &num_ops, 1)) - return 0; + RETURN0; break; default: - return 0; + RETURN0; } } C->I++; @@ -1406,7 +1568,7 @@ parse_parameter_declaration(slang_parse_ctx * C, slang_output_ctx * O, * two at most) because not all combinations are valid */ if (!parse_type_qualifier(C, ¶m->type.qualifier)) - return 0; + RETURN0; param_qual = *C->I++; switch (param_qual) { @@ -1414,7 +1576,7 @@ parse_parameter_declaration(slang_parse_ctx * C, slang_output_ctx * O, if (param->type.qualifier != SLANG_QUAL_CONST && param->type.qualifier != SLANG_QUAL_NONE) { slang_info_log_error(C->L, "Invalid type qualifier."); - return 0; + RETURN0; } break; case PARAM_QUALIFIER_OUT: @@ -1422,7 +1584,7 @@ parse_parameter_declaration(slang_parse_ctx * C, slang_output_ctx * O, param->type.qualifier = SLANG_QUAL_OUT; else { slang_info_log_error(C->L, "Invalid type qualifier."); - return 0; + RETURN0; } break; case PARAM_QUALIFIER_INOUT: @@ -1430,11 +1592,11 @@ parse_parameter_declaration(slang_parse_ctx * C, slang_output_ctx * O, param->type.qualifier = SLANG_QUAL_INOUT; else { slang_info_log_error(C->L, "Invalid type qualifier."); - return 0; + RETURN0; } break; default: - return 0; + RETURN0; } /* parse precision qualifier (lowp, mediump, highp */ @@ -1444,10 +1606,30 @@ parse_parameter_declaration(slang_parse_ctx * C, slang_output_ctx * O, /* parse parameter's type specifier and name */ if (!parse_type_specifier(C, O, ¶m->type.specifier)) - return 0; + RETURN0; + if (!parse_type_array_size(C, O, ¶m->type.array_len)) + RETURN0; param->a_name = parse_identifier(C); if (param->a_name == SLANG_ATOM_NULL) - return 0; + RETURN0; + + /* first-class array + */ + if (param->type.array_len >= 0) { + slang_type_specifier p; + + slang_type_specifier_ctr(&p); + if (!slang_type_specifier_copy(&p, ¶m->type.specifier)) { + slang_type_specifier_dtr(&p); + RETURN0; + } + if (!convert_to_array(C, param, &p)) { + slang_type_specifier_dtr(&p); + RETURN0; + } + slang_type_specifier_dtr(&p); + param->array_len = param->type.array_len; + } /* if the parameter is an array, parse its size (the size must be * explicitly defined @@ -1455,24 +1637,29 @@ parse_parameter_declaration(slang_parse_ctx * C, slang_output_ctx * O, if (*C->I++ == PARAMETER_ARRAY_PRESENT) { slang_type_specifier p; + if (param->type.array_len >= 0) { + slang_info_log_error(C->L, "multi-dimensional arrays not allowed"); + RETURN0; + } slang_type_specifier_ctr(&p); if (!slang_type_specifier_copy(&p, ¶m->type.specifier)) { slang_type_specifier_dtr(&p); - return GL_FALSE; + RETURN0; } if (!convert_to_array(C, param, &p)) { slang_type_specifier_dtr(&p); - return GL_FALSE; + RETURN0; } slang_type_specifier_dtr(&p); if (!parse_array_len(C, O, ¶m->array_len)) - return GL_FALSE; + RETURN0; } +#if 0 /* calculate the parameter size */ if (!calculate_var_size(C, O, param)) - return GL_FALSE; - + RETURN0; +#endif /* TODO: allocate the local address here? */ return 1; } @@ -1564,13 +1751,13 @@ parse_operator_name(slang_parse_ctx * C) slang_atom_pool_atom(C->atoms, operator_names[i].o_name); if (atom == SLANG_ATOM_NULL) { slang_info_log_memory(C->L); - return 0; + RETURN0; } C->I++; return atom; } } - return 0; + RETURN0; } @@ -1581,7 +1768,7 @@ parse_function_prototype(slang_parse_ctx * C, slang_output_ctx * O, GLuint functype; /* parse function type and name */ if (!parse_fully_specified_type(C, O, &func->header.type)) - return 0; + RETURN0; functype = *C->I++; switch (functype) { @@ -1589,35 +1776,35 @@ parse_function_prototype(slang_parse_ctx * C, slang_output_ctx * O, func->kind = SLANG_FUNC_ORDINARY; func->header.a_name = parse_identifier(C); if (func->header.a_name == SLANG_ATOM_NULL) - return 0; + RETURN0; break; case FUNCTION_CONSTRUCTOR: func->kind = SLANG_FUNC_CONSTRUCTOR; if (func->header.type.specifier.type == SLANG_SPEC_STRUCT) - return 0; + RETURN0; func->header.a_name = slang_atom_pool_atom(C->atoms, slang_type_specifier_type_to_string (func->header.type.specifier.type)); if (func->header.a_name == SLANG_ATOM_NULL) { slang_info_log_memory(C->L); - return 0; + RETURN0; } break; case FUNCTION_OPERATOR: func->kind = SLANG_FUNC_OPERATOR; func->header.a_name = parse_operator_name(C); if (func->header.a_name == SLANG_ATOM_NULL) - return 0; + RETURN0; break; default: - return 0; + RETURN0; } if (!legal_identifier(func->header.a_name)) { slang_info_log_error(C->L, "illegal function name '%s'", (char *) func->header.a_name); - return 0; + RETURN0; } /* parse function parameters */ @@ -1625,10 +1812,10 @@ parse_function_prototype(slang_parse_ctx * C, slang_output_ctx * O, slang_variable *p = slang_variable_scope_grow(func->parameters); if (!p) { slang_info_log_memory(C->L); - return 0; + RETURN0; } if (!parse_parameter_declaration(C, O, p)) - return 0; + RETURN0; } /* if the function returns a value, append a hidden __retVal 'out' @@ -1662,19 +1849,19 @@ parse_function_definition(slang_parse_ctx * C, slang_output_ctx * O, slang_output_ctx o = *O; if (!parse_function_prototype(C, O, func)) - return 0; + RETURN0; /* create function's body operation */ func->body = (slang_operation *) _slang_alloc(sizeof(slang_operation)); if (func->body == NULL) { slang_info_log_memory(C->L); - return 0; + RETURN0; } if (!slang_operation_construct(func->body)) { _slang_free(func->body); func->body = NULL; slang_info_log_memory(C->L); - return 0; + RETURN0; } /* to parse the body the parse context is modified in order to @@ -1683,7 +1870,7 @@ parse_function_definition(slang_parse_ctx * C, slang_output_ctx * O, C->global_scope = GL_FALSE; o.vars = func->parameters; if (!parse_statement(C, &o, func->body)) - return 0; + RETURN0; C->global_scope = GL_TRUE; return 1; @@ -1775,66 +1962,86 @@ parse_init_declarator(slang_parse_ctx * C, slang_output_ctx * O, a_name = parse_identifier(C); /* check if name is already in this scope */ - if (_slang_locate_variable(O->vars, a_name, GL_FALSE)) { + if (_slang_variable_locate(O->vars, a_name, GL_FALSE)) { slang_info_log_error(C->L, "declaration of '%s' conflicts with previous declaration", (char *) a_name); - return 0; + RETURN0; } /* make room for the new variable and initialize it */ var = slang_variable_scope_grow(O->vars); if (!var) { slang_info_log_memory(C->L); - return 0; + RETURN0; } - /* copy the declarator qualifier type, parse the identifier */ + /* copy the declarator type qualifier/etc info, parse the identifier */ var->type.qualifier = type->qualifier; + var->type.centroid = type->centroid; + var->type.precision = type->precision; + var->type.variant = type->variant; + var->type.array_len = type->array_len; var->a_name = a_name; if (var->a_name == SLANG_ATOM_NULL) - return 0; + RETURN0; switch (*C->I++) { case VARIABLE_NONE: /* simple variable declarator - just copy the specifier */ if (!slang_type_specifier_copy(&var->type.specifier, &type->specifier)) - return 0; + RETURN0; break; case VARIABLE_INITIALIZER: /* initialized variable - copy the specifier and parse the expression */ - if (!slang_type_specifier_copy(&var->type.specifier, &type->specifier)) - return 0; + if (0 && type->array_len >= 0) { + /* The type was something like "float[4]" */ + convert_to_array(C, var, &type->specifier); + var->array_len = type->array_len; + } + else { + if (!slang_type_specifier_copy(&var->type.specifier, &type->specifier)) + RETURN0; + } var->initializer = (slang_operation *) _slang_alloc(sizeof(slang_operation)); if (var->initializer == NULL) { slang_info_log_memory(C->L); - return 0; + RETURN0; } if (!slang_operation_construct(var->initializer)) { _slang_free(var->initializer); var->initializer = NULL; slang_info_log_memory(C->L); - return 0; + RETURN0; } if (!parse_expression(C, O, var->initializer)) - return 0; + RETURN0; break; case VARIABLE_ARRAY_UNKNOWN: /* unsized array - mark it as array and copy the specifier to - the array element - */ + * the array element + */ + if (type->array_len >= 0) { + slang_info_log_error(C->L, "multi-dimensional arrays not allowed"); + RETURN0; + } if (!convert_to_array(C, var, &type->specifier)) return GL_FALSE; break; case VARIABLE_ARRAY_EXPLICIT: + if (type->array_len >= 0) { + /* the user is trying to do something like: float[2] x[3]; */ + slang_info_log_error(C->L, "multi-dimensional arrays not allowed"); + RETURN0; + } if (!convert_to_array(C, var, &type->specifier)) return GL_FALSE; if (!parse_array_len(C, O, &var->array_len)) return GL_FALSE; break; default: - return 0; + RETURN0; } /* allocate global address space for a variable with a known size */ @@ -1843,7 +2050,6 @@ parse_init_declarator(slang_parse_ctx * C, slang_output_ctx * O, && var->array_len == 0)) { if (!calculate_var_size(C, O, var)) return GL_FALSE; - var->address = slang_var_pool_alloc(O->global_pool, var->size); } /* emit code for global var decl */ @@ -1854,11 +2060,12 @@ parse_init_declarator(slang_parse_ctx * C, slang_output_ctx * O, A.space.structs = O->structs; A.space.vars = O->vars; A.program = O->program; + A.pragmas = O->pragmas; A.vartable = O->vartable; A.log = C->L; A.curFuncEndLabel = NULL; if (!_slang_codegen_global_variable(&A, var, C->type)) - return 0; + RETURN0; } /* initialize global variable */ @@ -1871,7 +2078,7 @@ parse_init_declarator(slang_parse_ctx * C, slang_output_ctx * O, A.space.structs = O->structs; A.space.vars = O->vars; if (!initialize_global(&A, var)) - return 0; + RETURN0; } } return 1; @@ -1888,17 +2095,17 @@ parse_init_declarator_list(slang_parse_ctx * C, slang_output_ctx * O) /* parse the fully specified type, common to all declarators */ if (!slang_fully_specified_type_construct(&type)) - return 0; + RETURN0; if (!parse_fully_specified_type(C, O, &type)) { slang_fully_specified_type_destruct(&type); - return 0; + RETURN0; } /* parse declarators, pass-in the parsed type */ do { if (!parse_init_declarator(C, O, &type)) { slang_fully_specified_type_destruct(&type); - return 0; + RETURN0; } } while (*C->I++ == DECLARATOR_NEXT); @@ -1976,10 +2183,8 @@ parse_function(slang_parse_ctx * C, slang_output_ctx * O, int definition, } /* destroy the existing function declaration and replace it - * with the new one, remember to save the fixup table + * with the new one */ - parsed_func.fixups = found_func->fixups; - slang_fixup_table_init(&found_func->fixups); slang_function_destruct(found_func); *found_func = parsed_func; } @@ -2005,18 +2210,18 @@ parse_declaration(slang_parse_ctx * C, slang_output_ctx * O) switch (*C->I++) { case DECLARATION_INIT_DECLARATOR_LIST: if (!parse_init_declarator_list(C, O)) - return 0; + RETURN0; break; case DECLARATION_FUNCTION_PROTOTYPE: { slang_function *dummy_func; if (!parse_function(C, O, 0, &dummy_func)) - return 0; + RETURN0; } break; default: - return 0; + RETURN0; } return 1; } @@ -2028,7 +2233,7 @@ parse_default_precision(slang_parse_ctx * C, slang_output_ctx * O) if (!O->allow_precision) { slang_info_log_error(C->L, "syntax error at \"precision\""); - return 0; + RETURN0; } precision = *C->I++; @@ -2041,7 +2246,7 @@ parse_default_precision(slang_parse_ctx * C, slang_output_ctx * O) default: _mesa_problem(NULL, "unexpected precision %d at %s:%d\n", precision, __FILE__, __LINE__); - return 0; + RETURN0; } type = *C->I++; @@ -2061,7 +2266,7 @@ parse_default_precision(slang_parse_ctx * C, slang_output_ctx * O) default: _mesa_problem(NULL, "unexpected type %d at %s:%d\n", type, __FILE__, __LINE__); - return 0; + RETURN0; } assert(type < TYPE_SPECIFIER_COUNT); @@ -2108,7 +2313,7 @@ parse_invariant(slang_parse_ctx * C, slang_output_ctx * O) } else { slang_info_log_error(C->L, "syntax error at \"invariant\""); - return 0; + RETURN0; } } @@ -2145,8 +2350,8 @@ parse_code_unit(slang_parse_ctx * C, slang_code_unit * unit, o.funs = &unit->funs; o.structs = &unit->structs; o.vars = &unit->vars; - o.global_pool = &unit->object->varpool; o.program = shader ? shader->Program : NULL; + o.pragmas = shader ? &shader->Pragmas : NULL; o.vartable = _slang_new_var_table(maxRegs); _slang_push_var_table(o.vartable); @@ -2168,6 +2373,8 @@ parse_code_unit(slang_parse_ctx * C, slang_code_unit * unit, #endif init_default_precision(&o, unit->type); + /* allow 'float[]' keyword? */ + o.allow_array_types = (C->version >= 120) ? GL_TRUE : GL_FALSE; /* parse individual functions and declarations */ while (*C->I != EXTERNAL_NULL) { @@ -2213,6 +2420,7 @@ parse_code_unit(slang_parse_ctx * C, slang_code_unit * unit, A.space.structs = o.structs; A.space.vars = o.vars; A.program = o.program; + A.pragmas = &shader->Pragmas; A.vartable = o.vartable; A.log = C->L; @@ -2270,7 +2478,9 @@ static GLboolean compile_with_grammar(grammar id, const char *source, slang_code_unit * unit, slang_unit_type type, slang_info_log * infolog, slang_code_unit * builtin, - struct gl_shader *shader) + struct gl_shader *shader, + const struct gl_extensions *extensions, + struct gl_sl_pragmas *pragmas) { byte *prod; GLuint size, start, version; @@ -2298,7 +2508,8 @@ compile_with_grammar(grammar id, const char *source, slang_code_unit * unit, /* Now preprocess the source string. */ slang_string_init(&preprocessed); - if (!_slang_preprocess_directives(&preprocessed, &source[start], infolog)) { + if (!_slang_preprocess_directives(&preprocessed, &source[start], + infolog, extensions, pragmas)) { slang_string_free(&preprocessed); slang_info_log_error(infolog, "failed to preprocess the source."); return GL_FALSE; @@ -2371,7 +2582,9 @@ static const byte slang_vertex_builtin_gc[] = { static GLboolean compile_object(grammar * id, const char *source, slang_code_object * object, slang_unit_type type, slang_info_log * infolog, - struct gl_shader *shader) + struct gl_shader *shader, + const struct gl_extensions *extensions, + struct gl_sl_pragmas *pragmas) { slang_code_unit *builtins = NULL; GLuint base_version = 110; @@ -2470,7 +2683,7 @@ compile_object(grammar * id, const char *source, slang_code_object * object, /* compile the actual shader - pass-in built-in library for external shader */ return compile_with_grammar(*id, source, &object->unit, type, infolog, - builtins, shader); + builtins, shader, extensions, pragmas); } @@ -2493,7 +2706,8 @@ compile_shader(GLcontext *ctx, slang_code_object * object, _slang_code_object_dtr(object); _slang_code_object_ctr(object); - success = compile_object(&id, shader->Source, object, type, infolog, shader); + success = compile_object(&id, shader->Source, object, type, infolog, shader, + &ctx->Extensions, &shader->Pragmas); if (id != 0) grammar_destroy(id); if (!success) @@ -2580,6 +2794,12 @@ _slang_compile(GLcontext *ctx, struct gl_shader *shader) _mesa_print_program(shader->Program); #endif + shader->CompileStatus = success; + + if (ctx->Shader.Flags & GLSL_LOG) { + _mesa_write_shader_to_file(shader); + } + return success; } diff --git a/src/mesa/shader/slang/slang_compile.h b/src/mesa/shader/slang/slang_compile.h index 35e468b44e7..7fb549d33d2 100644 --- a/src/mesa/shader/slang/slang_compile.h +++ b/src/mesa/shader/slang/slang_compile.h @@ -37,6 +37,13 @@ extern "C" { #endif +typedef struct slang_name_space_ +{ + struct slang_function_scope_ *funcs; + struct slang_struct_scope_ *structs; + struct slang_variable_scope_ *vars; +} slang_name_space; + typedef enum slang_unit_type_ { SLANG_UNIT_FRAGMENT_SHADER, @@ -46,12 +53,6 @@ typedef enum slang_unit_type_ } slang_unit_type; -typedef struct slang_var_pool_ -{ - GLuint next_addr; -} slang_var_pool; - - typedef struct slang_code_unit_ { slang_variable_scope vars; @@ -79,7 +80,6 @@ typedef struct slang_code_object_ { slang_code_unit builtin[SLANG_BUILTIN_TOTAL]; slang_code_unit unit; - slang_var_pool varpool; slang_atom_pool atompool; } slang_code_object; diff --git a/src/mesa/shader/slang/slang_compile_function.c b/src/mesa/shader/slang/slang_compile_function.c index 8405d7f778c..4dd885176d4 100644 --- a/src/mesa/shader/slang/slang_compile_function.c +++ b/src/mesa/shader/slang/slang_compile_function.c @@ -32,42 +32,6 @@ #include "slang_compile.h" #include "slang_mem.h" -/* slang_fixup_table */ - -void -slang_fixup_table_init(slang_fixup_table * fix) -{ - fix->table = NULL; - fix->count = 0; -} - -void -slang_fixup_table_free(slang_fixup_table * fix) -{ - _slang_free(fix->table); - slang_fixup_table_init(fix); -} - -/** - * Add a new fixup address to the table. - */ -GLboolean -slang_fixup_save(slang_fixup_table *fixups, GLuint address) -{ - fixups->table = (GLuint *) - _slang_realloc(fixups->table, - fixups->count * sizeof(GLuint), - (fixups->count + 1) * sizeof(GLuint)); - if (fixups->table == NULL) - return GL_FALSE; - fixups->table[fixups->count] = address; - fixups->count++; - return GL_TRUE; -} - - - -/* slang_function */ int slang_function_construct(slang_function * func) @@ -86,8 +50,6 @@ slang_function_construct(slang_function * func) _slang_variable_scope_ctr(func->parameters); func->param_count = 0; func->body = NULL; - func->address = ~0; - slang_fixup_table_init(&func->fixups); return 1; } @@ -101,9 +63,22 @@ slang_function_destruct(slang_function * func) slang_operation_destruct(func->body); _slang_free(func->body); } - slang_fixup_table_free(&func->fixups); } + +slang_function * +slang_function_new(slang_function_kind kind) +{ + slang_function *fun = (slang_function *) + _slang_alloc(sizeof(slang_function)); + if (fun) { + slang_function_construct(fun); + fun->kind = kind; + } + return fun; +} + + /* * slang_function_scope */ @@ -214,3 +189,74 @@ slang_function_scope_find(slang_function_scope * funcs, slang_function * fun, return slang_function_scope_find(funcs->outer_scope, fun, 1); return NULL; } + + +/** + * Lookup a function according to name and parameter count/types. + */ +slang_function * +_slang_function_locate(const slang_function_scope * funcs, slang_atom a_name, + slang_operation * args, GLuint num_args, + const slang_name_space * space, slang_atom_pool * atoms, + slang_info_log *log, GLboolean *error) +{ + slang_typeinfo arg_ti[100]; + GLuint i; + + *error = GL_FALSE; + + /* determine type of each argument */ + assert(num_args < 100); + for (i = 0; i < num_args; i++) { + if (!slang_typeinfo_construct(&arg_ti[i])) + return NULL; + if (!_slang_typeof_operation(&args[i], space, &arg_ti[i], atoms, log)) { + return NULL; + } + } + + /* loop over function scopes */ + while (funcs) { + + /* look for function with matching name and argument/param types */ + for (i = 0; i < funcs->num_functions; i++) { + slang_function *f = &funcs->functions[i]; + const GLuint haveRetValue = _slang_function_has_return_value(f); + GLuint j; + + if (a_name != f->header.a_name) + continue; + if (f->param_count - haveRetValue != num_args) + continue; + + /* compare parameter / argument types */ + for (j = 0; j < num_args; j++) { + if (!slang_type_specifier_compatible(&arg_ti[j].spec, + &f->parameters->variables[j]->type.specifier)) { + /* param/arg types don't match */ + break; + } + + /* "out" and "inout" formal parameter requires the actual + * argument to be an l-value. + */ + if (!arg_ti[j].can_be_referenced && + (f->parameters->variables[j]->type.qualifier == SLANG_QUAL_OUT || + f->parameters->variables[j]->type.qualifier == SLANG_QUAL_INOUT)) { + /* param is not an lvalue! */ + *error = GL_TRUE; + return NULL; + } + } + + if (j == num_args) { + /* name and args match! */ + return f; + } + } + + funcs = funcs->outer_scope; + } + + return NULL; +} diff --git a/src/mesa/shader/slang/slang_compile_function.h b/src/mesa/shader/slang/slang_compile_function.h index a59b094e08d..a5445ec2537 100644 --- a/src/mesa/shader/slang/slang_compile_function.h +++ b/src/mesa/shader/slang/slang_compile_function.h @@ -26,8 +26,6 @@ #define SLANG_COMPILE_FUNCTION_H -struct slang_code_unit_; - /** * Types of functions. */ @@ -40,21 +38,6 @@ typedef enum slang_function_kind_ /** - * When we need to fill in addresses which we won't know until the future, - * we keep track of them with a fix-up table. - */ -typedef struct slang_fixup_table_ -{ - GLuint *table; /**< array[count] of addresses */ - GLuint count; -} slang_fixup_table; - -extern void slang_fixup_table_init(slang_fixup_table *); -extern void slang_fixup_table_free(slang_fixup_table *); -extern GLboolean slang_fixup_save(slang_fixup_table *fixups, GLuint address); - - -/** * Description of a compiled shader function. */ typedef struct slang_function_ @@ -64,12 +47,14 @@ typedef struct slang_function_ slang_variable_scope *parameters; /**< formal parameters AND local vars */ unsigned int param_count; /**< number of formal params (no locals) */ slang_operation *body; /**< The instruction tree */ - unsigned int address; /**< Address of this func in memory */ - slang_fixup_table fixups; /**< Mem locations which need func's address */ } slang_function; extern int slang_function_construct(slang_function *); extern void slang_function_destruct(slang_function *); +extern slang_function *slang_function_new(slang_function_kind kind); + +extern GLboolean +_slang_function_has_return_value(const slang_function *fun); /** @@ -89,13 +74,19 @@ _slang_function_scope_ctr(slang_function_scope *); extern void slang_function_scope_destruct(slang_function_scope *); -extern GLboolean -_slang_function_has_return_value(const slang_function *fun); - extern int slang_function_scope_find_by_name(slang_function_scope *, slang_atom, int); extern slang_function * slang_function_scope_find(slang_function_scope *, slang_function *, int); +extern struct slang_function_ * +_slang_function_locate(const struct slang_function_scope_ *funcs, + slang_atom name, struct slang_operation_ *params, + GLuint num_params, + const struct slang_name_space_ *space, + slang_atom_pool *atoms, slang_info_log *log, + GLboolean *error); + + #endif /* SLANG_COMPILE_FUNCTION_H */ diff --git a/src/mesa/shader/slang/slang_compile_operation.c b/src/mesa/shader/slang/slang_compile_operation.c index 53cf6faff97..e6506168808 100644 --- a/src/mesa/shader/slang/slang_compile_operation.c +++ b/src/mesa/shader/slang/slang_compile_operation.c @@ -44,6 +44,7 @@ slang_operation_construct(slang_operation * oper) oper->num_children = 0; oper->literal[0] = 0.0; oper->literal_size = 1; + oper->array_constructor = GL_FALSE; oper->a_id = SLANG_ATOM_NULL; oper->locals = _slang_variable_scope_new(NULL); if (oper->locals == NULL) @@ -90,7 +91,7 @@ slang_replace_scope(slang_operation *oper, if (oper->type == SLANG_OPER_VARIABLE_DECL) { /* search/replace in the initializer */ slang_variable *var; - var = _slang_locate_variable(oper->locals, oper->a_id, GL_TRUE); + var = _slang_variable_locate(oper->locals, oper->a_id, GL_TRUE); if (var && var->initializer) { slang_replace_scope(var->initializer, oldScope, newScope); } diff --git a/src/mesa/shader/slang/slang_compile_operation.h b/src/mesa/shader/slang/slang_compile_operation.h index 4f92aa9a086..37af5d617c9 100644 --- a/src/mesa/shader/slang/slang_compile_operation.h +++ b/src/mesa/shader/slang/slang_compile_operation.h @@ -94,6 +94,7 @@ typedef enum slang_operation_type_ SLANG_OPER_SUBSCRIPT, /* [expr] "[" [expr] "]" */ SLANG_OPER_CALL, /* [func name] [param] [param] [...] */ SLANG_OPER_NON_INLINED_CALL, /* a real function call */ + SLANG_OPER_METHOD, /* method call, such as v.length() */ SLANG_OPER_FIELD, /* i.e.: ".next" or ".xzy" or ".xxx" etc */ SLANG_OPER_POSTINCREMENT, /* [var] "++" */ SLANG_OPER_POSTDECREMENT /* [var] "--" */ @@ -115,10 +116,17 @@ typedef struct slang_operation_ GLfloat literal[4]; /**< Used for float, int and bool values */ GLuint literal_size; /**< 1, 2, 3, or 4 */ slang_atom a_id; /**< type: asm, identifier, call, field */ + slang_atom a_obj; /**< object in a method call */ slang_variable_scope *locals; /**< local vars for scope */ struct slang_function_ *fun; /**< If type == SLANG_OPER_CALL */ struct slang_variable_ *var; /**< If type == slang_oper_identier */ struct slang_label_ *label; /**< If type == SLANG_OPER_LABEL */ + /** If type==SLANG_OPER_CALL and we're calling an array constructor, + * for which there's no real function, we need to have a flag to + * indicate such. num_children indicates number of elements. + */ + GLboolean array_constructor; + double x; } slang_operation; diff --git a/src/mesa/shader/slang/slang_compile_variable.c b/src/mesa/shader/slang/slang_compile_variable.c index 3428b49e166..eab912710e8 100644 --- a/src/mesa/shader/slang/slang_compile_variable.c +++ b/src/mesa/shader/slang/slang_compile_variable.c @@ -33,105 +33,6 @@ #include "slang_mem.h" -typedef struct -{ - const char *name; - slang_type_specifier_type type; -} type_specifier_type_name; - -static const type_specifier_type_name type_specifier_type_names[] = { - {"void", SLANG_SPEC_VOID}, - {"bool", SLANG_SPEC_BOOL}, - {"bvec2", SLANG_SPEC_BVEC2}, - {"bvec3", SLANG_SPEC_BVEC3}, - {"bvec4", SLANG_SPEC_BVEC4}, - {"int", SLANG_SPEC_INT}, - {"ivec2", SLANG_SPEC_IVEC2}, - {"ivec3", SLANG_SPEC_IVEC3}, - {"ivec4", SLANG_SPEC_IVEC4}, - {"float", SLANG_SPEC_FLOAT}, - {"vec2", SLANG_SPEC_VEC2}, - {"vec3", SLANG_SPEC_VEC3}, - {"vec4", SLANG_SPEC_VEC4}, - {"mat2", SLANG_SPEC_MAT2}, - {"mat3", SLANG_SPEC_MAT3}, - {"mat4", SLANG_SPEC_MAT4}, - {"mat2x3", SLANG_SPEC_MAT23}, - {"mat3x2", SLANG_SPEC_MAT32}, - {"mat2x4", SLANG_SPEC_MAT24}, - {"mat4x2", SLANG_SPEC_MAT42}, - {"mat3x4", SLANG_SPEC_MAT34}, - {"mat4x3", SLANG_SPEC_MAT43}, - {"sampler1D", SLANG_SPEC_SAMPLER1D}, - {"sampler2D", SLANG_SPEC_SAMPLER2D}, - {"sampler3D", SLANG_SPEC_SAMPLER3D}, - {"samplerCube", SLANG_SPEC_SAMPLERCUBE}, - {"sampler1DShadow", SLANG_SPEC_SAMPLER1DSHADOW}, - {"sampler2DShadow", SLANG_SPEC_SAMPLER2DSHADOW}, - {"sampler2DRect", SLANG_SPEC_SAMPLER2DRECT}, - {"sampler2DRectShadow", SLANG_SPEC_SAMPLER2DRECTSHADOW}, - {NULL, SLANG_SPEC_VOID} -}; - -slang_type_specifier_type -slang_type_specifier_type_from_string(const char *name) -{ - const type_specifier_type_name *p = type_specifier_type_names; - while (p->name != NULL) { - if (slang_string_compare(p->name, name) == 0) - break; - p++; - } - return p->type; -} - -const char * -slang_type_specifier_type_to_string(slang_type_specifier_type type) -{ - const type_specifier_type_name *p = type_specifier_type_names; - while (p->name != NULL) { - if (p->type == type) - break; - p++; - } - return p->name; -} - -/* slang_fully_specified_type */ - -int -slang_fully_specified_type_construct(slang_fully_specified_type * type) -{ - type->qualifier = SLANG_QUAL_NONE; - slang_type_specifier_ctr(&type->specifier); - return 1; -} - -void -slang_fully_specified_type_destruct(slang_fully_specified_type * type) -{ - slang_type_specifier_dtr(&type->specifier); -} - -int -slang_fully_specified_type_copy(slang_fully_specified_type * x, - const slang_fully_specified_type * y) -{ - slang_fully_specified_type z; - - if (!slang_fully_specified_type_construct(&z)) - return 0; - z.qualifier = y->qualifier; - if (!slang_type_specifier_copy(&z.specifier, &y->specifier)) { - slang_fully_specified_type_destruct(&z); - return 0; - } - slang_fully_specified_type_destruct(x); - *x = z; - return 1; -} - - static slang_variable * slang_variable_new(void) { @@ -263,10 +164,9 @@ slang_variable_construct(slang_variable * var) var->a_name = SLANG_ATOM_NULL; var->array_len = 0; var->initializer = NULL; - var->address = ~0; var->size = 0; var->isTemp = GL_FALSE; - var->aux = NULL; + var->store = NULL; var->declared = 0; return 1; } @@ -318,7 +218,6 @@ slang_variable_copy(slang_variable * x, const slang_variable * y) return 0; } } - z.address = y->address; z.size = y->size; slang_variable_destruct(x); *x = z; @@ -331,7 +230,7 @@ slang_variable_copy(slang_variable * x, const slang_variable * y) * \param all if true, search parent scopes too. */ slang_variable * -_slang_locate_variable(const slang_variable_scope * scope, +_slang_variable_locate(const slang_variable_scope * scope, const slang_atom a_name, GLboolean all) { while (scope) { diff --git a/src/mesa/shader/slang/slang_compile_variable.h b/src/mesa/shader/slang/slang_compile_variable.h index c6db16fcfa9..a667d91b471 100644 --- a/src/mesa/shader/slang/slang_compile_variable.h +++ b/src/mesa/shader/slang/slang_compile_variable.h @@ -25,73 +25,8 @@ #ifndef SLANG_COMPILE_VARIABLE_H #define SLANG_COMPILE_VARIABLE_H -#if defined __cplusplus -extern "C" { -#endif - -typedef enum slang_type_variant_ -{ - SLANG_VARIANT, /* the default */ - SLANG_INVARIANT /* indicates the "invariant" keyword */ -} slang_type_variant; - - -typedef enum slang_type_centroid_ -{ - SLANG_CENTER, /* the default */ - SLANG_CENTROID /* indicates the "centroid" keyword */ -} slang_type_centroid; - - -typedef enum slang_type_qualifier_ -{ - SLANG_QUAL_NONE, - SLANG_QUAL_CONST, - SLANG_QUAL_ATTRIBUTE, - SLANG_QUAL_VARYING, - SLANG_QUAL_UNIFORM, - SLANG_QUAL_OUT, - SLANG_QUAL_INOUT, - SLANG_QUAL_FIXEDOUTPUT, /* internal */ - SLANG_QUAL_FIXEDINPUT /* internal */ -} slang_type_qualifier; - -extern slang_type_specifier_type -slang_type_specifier_type_from_string(const char *); - -extern const char * -slang_type_specifier_type_to_string(slang_type_specifier_type); - - - -typedef enum slang_type_precision_ -{ - SLANG_PREC_DEFAULT, - SLANG_PREC_LOW, - SLANG_PREC_MEDIUM, - SLANG_PREC_HIGH -} slang_type_precision; - - -typedef struct slang_fully_specified_type_ -{ - slang_type_qualifier qualifier; - slang_type_specifier specifier; - slang_type_precision precision; - slang_type_variant variant; - slang_type_centroid centroid; -} slang_fully_specified_type; - -extern int -slang_fully_specified_type_construct(slang_fully_specified_type *); - -extern void -slang_fully_specified_type_destruct(slang_fully_specified_type *); - -extern int -slang_fully_specified_type_copy(slang_fully_specified_type *, - const slang_fully_specified_type *); +struct slang_ir_storage_; /** @@ -103,11 +38,10 @@ typedef struct slang_variable_ slang_atom a_name; /**< The variable's name (char *) */ GLuint array_len; /**< only if type == SLANG_SPEC_ARRAy */ struct slang_operation_ *initializer; /**< Optional initializer code */ - GLuint address; /**< Storage location */ GLuint size; /**< Variable's size in bytes */ GLboolean isTemp; /**< a named temporary (__resultTmp) */ GLboolean declared; /**< for debug */ - void *aux; /**< Used during code gen */ + struct slang_ir_storage_ *store; /**< Storage for this var */ } slang_variable; @@ -148,12 +82,8 @@ extern int slang_variable_copy(slang_variable *, const slang_variable *); extern slang_variable * -_slang_locate_variable(const slang_variable_scope *, const slang_atom a_name, +_slang_variable_locate(const slang_variable_scope *, const slang_atom a_name, GLboolean all); -#ifdef __cplusplus -} -#endif - #endif /* SLANG_COMPILE_VARIABLE_H */ diff --git a/src/mesa/shader/slang/slang_emit.c b/src/mesa/shader/slang/slang_emit.c index b67cea7617d..2dd122c9a54 100644 --- a/src/mesa/shader/slang/slang_emit.c +++ b/src/mesa/shader/slang/slang_emit.c @@ -1,8 +1,8 @@ /* * Mesa 3-D graphics library - * Version: 7.1 * * Copyright (C) 2005-2008 Brian Paul All Rights Reserved. + * Copyright (C) 2008 VMware, Inc. All Rights Reserved. * * Permission is hereby granted, free of charge, to any person obtaining a * copy of this software and associated documentation files (the "Software"), @@ -60,6 +60,8 @@ typedef struct struct gl_program **Subroutines; GLuint NumSubroutines; + GLuint MaxInstructions; /**< size of prog->Instructions[] buffer */ + /* code-gen options */ GLboolean EmitHighLevelInstructions; GLboolean EmitCondCodes; @@ -153,6 +155,28 @@ _slang_swizzle_swizzle(GLuint swz1, GLuint swz2) /** + * Return the default swizzle mask for accessing a variable of the + * given size (in floats). If size = 1, comp is used to identify + * which component [0..3] of the register holds the variable. + */ +GLuint +_slang_var_swizzle(GLint size, GLint comp) +{ + switch (size) { + case 1: + return MAKE_SWIZZLE4(comp, comp, comp, comp); + case 2: + return MAKE_SWIZZLE4(SWIZZLE_X, SWIZZLE_Y, SWIZZLE_NIL, SWIZZLE_NIL); + case 3: + return MAKE_SWIZZLE4(SWIZZLE_X, SWIZZLE_Y, SWIZZLE_Z, SWIZZLE_NIL); + default: + return SWIZZLE_XYZW; + } +} + + + +/** * Allocate storage for the given node (if it hasn't already been allocated). * * Typically this is temporary storage for an intermediate result (such as @@ -259,13 +283,16 @@ fix_swizzle(GLuint swizzle) static void storage_to_dst_reg(struct prog_dst_register *dst, const slang_ir_storage *st) { + const GLboolean relAddr = st->RelAddr; const GLint size = st->Size; GLint index = st->Index; GLuint swizzle = st->Swizzle; + assert(index >= 0); /* if this is storage relative to some parent storage, walk up the tree */ while (st->Parent) { st = st->Parent; + assert(st->Index >= 0); index += st->Index; swizzle = _slang_swizzle_swizzle(st->Swizzle, swizzle); } @@ -283,25 +310,25 @@ storage_to_dst_reg(struct prog_dst_register *dst, const slang_ir_storage *st) dst->WriteMask = swizzle_to_writemask(swizzle); } else { - GLuint writemask; switch (size) { case 1: - writemask = WRITEMASK_X << GET_SWZ(st->Swizzle, 0); + dst->WriteMask = WRITEMASK_X << GET_SWZ(st->Swizzle, 0); break; case 2: - writemask = WRITEMASK_XY; + dst->WriteMask = WRITEMASK_XY; break; case 3: - writemask = WRITEMASK_XYZ; + dst->WriteMask = WRITEMASK_XYZ; break; case 4: - writemask = WRITEMASK_XYZW; + dst->WriteMask = WRITEMASK_XYZW; break; default: ; /* error would have been caught above */ } - dst->WriteMask = writemask; } + + dst->RelAddr = relAddr; } @@ -316,8 +343,14 @@ storage_to_src_reg(struct prog_src_register *src, const slang_ir_storage *st) GLuint swizzle = st->Swizzle; /* if this is storage relative to some parent storage, walk up the tree */ + assert(index >= 0); while (st->Parent) { st = st->Parent; + if (st->Index < 0) { + /* an error should have been reported already */ + return; + } + assert(st->Index >= 0); index += st->Index; swizzle = _slang_swizzle_swizzle(fix_swizzle(st->Swizzle), swizzle); } @@ -387,9 +420,17 @@ new_instruction(slang_emit_info *emitInfo, gl_inst_opcode opcode) _mesa_print_instruction(prog->Instructions + prog->NumInstructions - 1); } #endif - prog->Instructions = _mesa_realloc_instructions(prog->Instructions, - prog->NumInstructions, - prog->NumInstructions + 1); + assert(prog->NumInstructions <= emitInfo->MaxInstructions); + + if (prog->NumInstructions == emitInfo->MaxInstructions) { + /* grow the instruction buffer */ + emitInfo->MaxInstructions += 20; + prog->Instructions = + _mesa_realloc_instructions(prog->Instructions, + prog->NumInstructions, + emitInfo->MaxInstructions); + } + inst = prog->Instructions + prog->NumInstructions; prog->NumInstructions++; _mesa_init_instructions(inst, 1); @@ -403,60 +444,149 @@ new_instruction(slang_emit_info *emitInfo, gl_inst_opcode opcode) } +static struct prog_instruction * +emit_arl_load(slang_emit_info *emitInfo, + enum register_file file, GLint index, GLuint swizzle) +{ + struct prog_instruction *inst = new_instruction(emitInfo, OPCODE_ARL); + inst->SrcReg[0].File = file; + inst->SrcReg[0].Index = index; + inst->SrcReg[0].Swizzle = swizzle; + inst->DstReg.File = PROGRAM_ADDRESS; + inst->DstReg.Index = 0; + inst->DstReg.WriteMask = WRITEMASK_X; + return inst; +} + + /** * Emit a new instruction with given opcode, operands. + * At this point the instruction may have multiple indirect register + * loads/stores. We convert those into ARL loads and address-relative + * operands. See comments inside. + * At some point in the future we could directly emit indirectly addressed + * registers in Mesa GPU instructions. */ static struct prog_instruction * emit_instruction(slang_emit_info *emitInfo, gl_inst_opcode opcode, const slang_ir_storage *dst, + const slang_ir_storage *src0, const slang_ir_storage *src1, - const slang_ir_storage *src2, - const slang_ir_storage *src3) + const slang_ir_storage *src2) { - struct gl_program *prog = emitInfo->prog; struct prog_instruction *inst; + GLuint numIndirect = 0; + const slang_ir_storage *src[3]; + slang_ir_storage newSrc[3], newDst; + GLuint i; + GLboolean isTemp[3]; + + isTemp[0] = isTemp[1] = isTemp[2] = GL_FALSE; + + src[0] = src0; + src[1] = src1; + src[2] = src2; + + /* count up how many operands are indirect loads */ + for (i = 0; i < 3; i++) { + if (src[i] && src[i]->IsIndirect) + numIndirect++; + } + if (dst && dst->IsIndirect) + numIndirect++; + + /* Take special steps for indirect register loads. + * If we had multiple address registers this would be simpler. + * For example, this GLSL code: + * x[i] = y[j] + z[k]; + * would translate into something like: + * ARL ADDR.x, i; + * ARL ADDR.y, j; + * ARL ADDR.z, k; + * ADD TEMP[ADDR.x+5], TEMP[ADDR.y+9], TEMP[ADDR.z+4]; + * But since we currently only have one address register we have to do this: + * ARL ADDR.x, i; + * MOV t1, TEMP[ADDR.x+9]; + * ARL ADDR.x, j; + * MOV t2, TEMP[ADDR.x+4]; + * ARL ADDR.x, k; + * ADD TEMP[ADDR.x+5], t1, t2; + * The code here figures this out... + */ + if (numIndirect > 0) { + for (i = 0; i < 3; i++) { + if (src[i] && src[i]->IsIndirect) { + /* load the ARL register with the indirect register */ + emit_arl_load(emitInfo, + src[i]->IndirectFile, + src[i]->IndirectIndex, + src[i]->IndirectSwizzle); + + if (numIndirect > 1) { + /* Need to load src[i] into a temporary register */ + slang_ir_storage srcRelAddr; + alloc_local_temp(emitInfo, &newSrc[i], src[i]->Size); + isTemp[i] = GL_TRUE; + + /* set RelAddr flag on src register */ + srcRelAddr = *src[i]; + srcRelAddr.RelAddr = GL_TRUE; + srcRelAddr.IsIndirect = GL_FALSE; /* not really needed */ + + /* MOV newSrc, srcRelAddr; */ + inst = emit_instruction(emitInfo, + OPCODE_MOV, + &newSrc[i], + &srcRelAddr, + NULL, + NULL); + + src[i] = &newSrc[i]; + } + else { + /* just rewrite the src[i] storage to be ARL-relative */ + newSrc[i] = *src[i]; + newSrc[i].RelAddr = GL_TRUE; + newSrc[i].IsIndirect = GL_FALSE; /* not really needed */ + src[i] = &newSrc[i]; + } + } + } + } - prog->Instructions = _mesa_realloc_instructions(prog->Instructions, - prog->NumInstructions, - prog->NumInstructions + 1); - inst = prog->Instructions + prog->NumInstructions; - prog->NumInstructions++; + /* Take special steps for indirect dest register write */ + if (dst && dst->IsIndirect) { + /* load the ARL register with the indirect register */ + emit_arl_load(emitInfo, + dst->IndirectFile, + dst->IndirectIndex, + dst->IndirectSwizzle); + newDst = *dst; + newDst.RelAddr = GL_TRUE; + newDst.IsIndirect = GL_FALSE; + dst = &newDst; + } - _mesa_init_instructions(inst, 1); - inst->Opcode = opcode; - inst->BranchTarget = -1; /* invalid */ + /* OK, emit the instruction and its dst, src regs */ + inst = new_instruction(emitInfo, opcode); + if (!inst) + return NULL; if (dst) storage_to_dst_reg(&inst->DstReg, dst); - if (src1) - storage_to_src_reg(&inst->SrcReg[0], src1); - if (src2) - storage_to_src_reg(&inst->SrcReg[1], src2); - if (src3) - storage_to_src_reg(&inst->SrcReg[2], src3); - - return inst; -} - + for (i = 0; i < 3; i++) { + if (src[i]) + storage_to_src_reg(&inst->SrcReg[i], src[i]); + } -/** - * Emit an ARL instruction. - */ -static struct prog_instruction * -emit_arl_instruction(slang_emit_info *emitInfo, - GLint addrReg, - const slang_ir_storage *src) -{ - struct prog_instruction *inst; + /* Free any temp registers that we allocated above */ + for (i = 0; i < 3; i++) { + if (isTemp[i]) + _slang_free_temp(emitInfo->vt, &newSrc[i]); + } - assert(addrReg == 0); /* only one addr reg at this time */ - inst = new_instruction(emitInfo, OPCODE_ARL); - storage_to_src_reg(&inst->SrcReg[0], src); - inst->DstReg.File = PROGRAM_ADDRESS; - inst->DstReg.Index = addrReg; - inst->DstReg.WriteMask = WRITEMASK_X; return inst; } @@ -1034,13 +1164,17 @@ emit_fcall(slang_emit_info *emitInfo, slang_ir_node *n) struct gl_program *progSave; struct prog_instruction *inst; GLuint subroutineId; + GLuint maxInstSave; assert(n->Opcode == IR_CALL); assert(n->Label); /* save/push cur program */ + maxInstSave = emitInfo->MaxInstructions; progSave = emitInfo->prog; + emitInfo->prog = new_subroutine(emitInfo, &subroutineId); + emitInfo->MaxInstructions = emitInfo->prog->NumInstructions; _slang_label_set_location(n->Label, emitInfo->prog->NumInstructions, emitInfo->prog); @@ -1072,6 +1206,7 @@ emit_fcall(slang_emit_info *emitInfo, slang_ir_node *n) /* pop/restore cur program */ emitInfo->prog = progSave; + emitInfo->MaxInstructions = maxInstSave; /* emit the function call */ inst = new_instruction(emitInfo, OPCODE_CAL); @@ -1136,6 +1271,20 @@ emit_tex(slang_emit_info *emitInfo, slang_ir_node *n) opcode = OPCODE_TXP; } + if (n->Children[0]->Opcode == IR_ELEMENT) { + /* array is the sampler (a uniform which'll indicate the texture unit) */ + assert(n->Children[0]->Children[0]->Store); + assert(n->Children[0]->Children[0]->Store->File == PROGRAM_SAMPLER); + + emit(emitInfo, n->Children[0]); + + n->Children[0]->Var = n->Children[0]->Children[0]->Var; + } else { + /* this is the sampler (a uniform which'll indicate the texture unit) */ + assert(n->Children[0]->Store); + assert(n->Children[0]->Store->File == PROGRAM_SAMPLER); + } + /* emit code for the texcoord operand */ (void) emit(emitInfo, n->Children[1]); @@ -1151,16 +1300,14 @@ emit_tex(slang_emit_info *emitInfo, slang_ir_node *n) NULL, NULL); - /* Child[0] is the sampler (a uniform which'll indicate the texture unit) */ - assert(n->Children[0]->Store); - /* Store->Index is the sampler index */ + /* Store->Index is the uniform/sampler index */ assert(n->Children[0]->Store->Index >= 0); - /* Store->Size is the texture target */ - assert(n->Children[0]->Store->Size >= TEXTURE_1D_INDEX); - assert(n->Children[0]->Store->Size <= TEXTURE_RECT_INDEX); + inst->TexSrcUnit = n->Children[0]->Store->Index; + inst->TexSrcTarget = n->Children[0]->Store->TexTarget; - inst->TexSrcTarget = n->Children[0]->Store->Size; - inst->TexSrcUnit = n->Children[0]->Store->Index; /* i.e. uniform's index */ + /* mark the sampler as being used */ + _mesa_use_uniform(emitInfo->prog->Parameters, + (char *) n->Children[0]->Var->a_name); return inst; } @@ -1202,9 +1349,10 @@ emit_copy(slang_emit_info *emitInfo, slang_ir_node *n) if (n->Store->File == PROGRAM_SAMPLER) { /* no code generated for sampler assignments, - * just copy the sampler index at compile time. + * just copy the sampler index/target at compile time. */ n->Store->Index = n->Children[1]->Store->Index; + n->Store->TexTarget = n->Children[1]->Store->TexTarget; return NULL; } @@ -1212,7 +1360,9 @@ emit_copy(slang_emit_info *emitInfo, slang_ir_node *n) if (inst && _slang_is_temp(emitInfo->vt, n->Children[1]->Store) && (inst->DstReg.File == n->Children[1]->Store->File) && - (inst->DstReg.Index == n->Children[1]->Store->Index)) { + (inst->DstReg.Index == n->Children[1]->Store->Index) && + !n->Children[0]->Store->IsIndirect && + n->Children[0]->Store->Size <= 4) { /* Peephole optimization: * The Right-Hand-Side has its results in a temporary place. * Modify the RHS (and the prev instruction) to store its results @@ -1670,153 +1820,149 @@ emit_swizzle(slang_emit_info *emitInfo, slang_ir_node *n) inst = emit(emitInfo, n->Children[0]); - /* setup storage info, if needed */ - if (!n->Store->Parent) - n->Store->Parent = n->Children[0]->Store; - +#if 0 assert(n->Store->Parent); - + /* Apply this node's swizzle to parent's storage */ + GLuint swizzle = n->Store->Swizzle; + _slang_copy_ir_storage(n->Store, n->Store->Parent); + n->Store->Swizzle = _slang_swizzle_swizzle(n->Store->Swizzle, swizzle); + assert(!n->Store->Parent); +#endif return inst; } /** - * Move a block registers from src to dst (or move a single register). - * \param size size of block, in floats (<=4 means one register) + * Dereference array element: element == array[index] + * This basically involves emitting code for computing the array index + * and updating the node/element's storage info. */ static struct prog_instruction * -move_block(slang_emit_info *emitInfo, - GLuint size, GLboolean relAddr, - const slang_ir_storage *dst, - const slang_ir_storage *src) +emit_array_element(slang_emit_info *emitInfo, slang_ir_node *n) { + slang_ir_storage *arrayStore, *indexStore; + const int elemSize = n->Store->Size; /* number of floats */ + const GLint elemSizeVec = (elemSize + 3) / 4; /* number of vec4 */ struct prog_instruction *inst; - if (size > 4) { - /* move matrix/struct etc (block of registers) */ - slang_ir_storage dstStore = *dst; - slang_ir_storage srcStore = *src; - - dstStore.Size = 4; - srcStore.Size = 4; - while (size >= 4) { - inst = emit_instruction(emitInfo, OPCODE_MOV, - &dstStore, - &srcStore, - NULL, - NULL); - inst->SrcReg[0].RelAddr = relAddr; - inst_comment(inst, "IR_COPY block"); - srcStore.Index++; - dstStore.Index++; - size -= 4; - } - } - else { - /* single register move */ - inst = emit_instruction(emitInfo, - OPCODE_MOV, - dst, - src, - NULL, - NULL); - inst->SrcReg[0].RelAddr = relAddr; - } - return inst; -} - - - -/** - * Dereference array element. Just resolve storage for the array - * element represented by this node. - * This is typically where Indirect addressing comes into play. - * See comments on struct slang_ir_storage. - */ -static struct prog_instruction * -emit_array_element(slang_emit_info *emitInfo, slang_ir_node *n) -{ assert(n->Opcode == IR_ELEMENT); - assert(n->Store); - assert(n->Store->File == PROGRAM_UNDEFINED); - assert(n->Store->Parent); - assert(n->Store->Size > 0); + assert(elemSize > 0); + /* special case for built-in state variables, like light state */ { slang_ir_storage *root = n->Store; + assert(!root->Parent); while (root->Parent) root = root->Parent; if (root->File == PROGRAM_STATE_VAR) { - GLint index = _slang_alloc_statevar(n, emitInfo->prog->Parameters); - assert(n->Store->Index == index); - return NULL; + GLboolean direct; + GLint index = + _slang_alloc_statevar(n, emitInfo->prog->Parameters, &direct); + if (index < 0) { + /* error */ + return NULL; + } + if (direct) { + n->Store->Index = index; + return NULL; /* all done */ + } } } - /* do codegen for array */ + /* do codegen for array itself */ emit(emitInfo, n->Children[0]); + arrayStore = n->Children[0]->Store; + + /* The initial array element storage is the array's storage, + * then modified below. + */ + _slang_copy_ir_storage(n->Store, arrayStore); + if (n->Children[1]->Opcode == IR_FLOAT) { - /* Constant array index. - * Set Store's index to be the offset of the array element in - * the register file. - */ + /* Constant array index */ const GLint element = (GLint) n->Children[1]->Value[0]; - const GLint sz = (n->Store->Size + 3) / 4; /* size in slots/registers */ - n->Store->Index = sz * element; - assert(n->Store->Parent); + /* this element's storage is the array's storage, plus constant offset */ + n->Store->Index += elemSizeVec * element; } else { /* Variable array index */ - struct prog_instruction *inst; /* do codegen for array index expression */ emit(emitInfo, n->Children[1]); + indexStore = n->Children[1]->Store; + + if (indexStore->IsIndirect) { + /* need to put the array index into a temporary since we can't + * directly support a[b[i]] constructs. + */ + - /* allocate temp storage for the array element */ - assert(n->Store->Index < 0); - n->Store->File = PROGRAM_TEMPORARY; - n->Store->Parent = NULL; - alloc_node_storage(emitInfo, n, -1); + /*indexStore = tempstore();*/ + } - if (n->Store->Size > 4) { - /* need to multiply the index by the element size */ - const GLint elemSize = (n->Store->Size + 3) / 4; - slang_ir_storage indexTemp, elemSizeStore; - /* constant containing the element size */ - constant_to_storage(emitInfo, (float) elemSize, &elemSizeStore); + if (elemSize > 4) { + /* need to multiply array index by array element size */ + struct prog_instruction *inst; + slang_ir_storage *indexTemp; + slang_ir_storage elemSizeStore; /* allocate 1 float indexTemp */ - alloc_local_temp(emitInfo, &indexTemp, 1); + indexTemp = _slang_new_ir_storage(PROGRAM_TEMPORARY, -1, 1); + _slang_alloc_temp(emitInfo->vt, indexTemp); - /* MUL temp, index, elemSize */ - inst = emit_instruction(emitInfo, OPCODE_MUL, - &indexTemp, /* dest */ - n->Children[1]->Store, /* the index */ + /* allocate a constant containing the element size */ + constant_to_storage(emitInfo, (float) elemSizeVec, &elemSizeStore); + + /* multiply array index by element size */ + inst = emit_instruction(emitInfo, + OPCODE_MUL, + indexTemp, /* dest */ + indexStore, /* the index */ &elemSizeStore, NULL); - /* load ADDR[0].X = temp */ - inst = emit_arl_instruction(emitInfo, 0, &indexTemp); - - _slang_free_temp(emitInfo->vt, &indexTemp); + indexStore = indexTemp; } - else { - /* simply load address reg w/ array index */ - inst = emit_arl_instruction(emitInfo, 0, n->Children[1]->Store); + + if (arrayStore->IsIndirect) { + /* ex: in a[i][j], a[i] (the arrayStore) is indirect */ + /* Need to add indexStore to arrayStore->Indirect store */ + slang_ir_storage indirectArray; + slang_ir_storage *indexTemp; + + _slang_init_ir_storage(&indirectArray, + arrayStore->IndirectFile, + arrayStore->IndirectIndex, + 1, + arrayStore->IndirectSwizzle); + + /* allocate 1 float indexTemp */ + indexTemp = _slang_new_ir_storage(PROGRAM_TEMPORARY, -1, 1); + _slang_alloc_temp(emitInfo->vt, indexTemp); + + inst = emit_instruction(emitInfo, + OPCODE_ADD, + indexTemp, /* dest */ + indexStore, /* the index */ + &indirectArray, /* indirect array base */ + NULL); + + indexStore = indexTemp; } - /* copy from array element to temp storage */ - move_block(emitInfo, n->Store->Size, GL_TRUE, - n->Store, n->Children[0]->Store); + /* update the array element storage info */ + n->Store->IsIndirect = GL_TRUE; + n->Store->IndirectFile = indexStore->File; + n->Store->IndirectIndex = indexStore->Index; + n->Store->IndirectSwizzle = indexStore->Swizzle; } - /* if array element size is one, make sure we only access X */ - if (n->Store->Size == 1) - n->Store->Swizzle = SWIZZLE_XXXX; + n->Store->Size = elemSize; + n->Store->Swizzle = _slang_var_swizzle(elemSize, 0); return NULL; /* no instruction */ } @@ -1829,9 +1975,11 @@ static struct prog_instruction * emit_struct_field(slang_emit_info *emitInfo, slang_ir_node *n) { slang_ir_storage *root = n->Store; + GLint fieldOffset, fieldSize; assert(n->Opcode == IR_FIELD); + assert(!root->Parent); while (root->Parent) root = root->Parent; @@ -1842,17 +1990,52 @@ emit_struct_field(slang_emit_info *emitInfo, slang_ir_node *n) * space for the ones that we actually use! */ if (root->File == PROGRAM_STATE_VAR) { - root->Index = _slang_alloc_statevar(n, emitInfo->prog->Parameters); - if (root->Index < 0) { + GLboolean direct; + GLint index = _slang_alloc_statevar(n, emitInfo->prog->Parameters, &direct); + if (index < 0) { slang_info_log_error(emitInfo->log, "Error parsing state variable"); return NULL; } + if (direct) { + root->Index = index; + return NULL; /* all done */ + } } - else { - /* do codegen for struct */ - emit(emitInfo, n->Children[0]); + + /* do codegen for struct */ + emit(emitInfo, n->Children[0]); + assert(n->Children[0]->Store->Index >= 0); + + + fieldOffset = n->Store->Index; + fieldSize = n->Store->Size; + + _slang_copy_ir_storage(n->Store, n->Children[0]->Store); + + n->Store->Index = n->Children[0]->Store->Index + fieldOffset / 4; + n->Store->Size = fieldSize; + + switch (fieldSize) { + case 1: + { + GLint swz = fieldOffset % 4; + n->Store->Swizzle = MAKE_SWIZZLE4(swz, swz, swz, swz); + } + break; + case 2: + n->Store->Swizzle = MAKE_SWIZZLE4(SWIZZLE_X, SWIZZLE_Y, + SWIZZLE_NIL, SWIZZLE_NIL); + break; + case 3: + n->Store->Swizzle = MAKE_SWIZZLE4(SWIZZLE_X, SWIZZLE_Y, + SWIZZLE_Z, SWIZZLE_NIL); + break; + default: + n->Store->Swizzle = SWIZZLE_XYZW; } + assert(n->Store->Index >= 0); + return NULL; /* no instruction */ } @@ -1891,7 +2074,7 @@ emit_var_decl(slang_emit_info *emitInfo, slang_ir_node *n) printf("IR_VAR_DECL %s %d store %p\n", (char*) n->Var->a_name, n->Store->Index, (void*) n->Store); */ - assert(n->Var->aux == n->Store); + assert(n->Var->store == n->Store); } if (emitInfo->EmitComments) { /* emit NOP with comment describing the variable's storage location */ @@ -1909,7 +2092,7 @@ emit_var_decl(slang_emit_info *emitInfo, slang_ir_node *n) /** * Emit code for a reference to a variable. - * Actually, no code is generated but we may do some memory alloation. + * Actually, no code is generated but we may do some memory allocation. * In particular, state vars (uniforms) are allocated on an as-needed basis. */ static struct prog_instruction * @@ -1919,12 +2102,28 @@ emit_var_ref(slang_emit_info *emitInfo, slang_ir_node *n) assert(n->Store->File != PROGRAM_UNDEFINED); if (n->Store->File == PROGRAM_STATE_VAR && n->Store->Index < 0) { - n->Store->Index = _slang_alloc_statevar(n, emitInfo->prog->Parameters); + GLboolean direct; + GLint index = _slang_alloc_statevar(n, emitInfo->prog->Parameters, &direct); + if (index < 0) { + /* error */ + char s[100]; + _mesa_snprintf(s, sizeof(s), "Undefined variable '%s'", + (char *) n->Var->a_name); + slang_info_log_error(emitInfo->log, s); + return NULL; + } + + n->Store->Index = index; } - else if (n->Store->File == PROGRAM_UNIFORM) { + else if (n->Store->File == PROGRAM_UNIFORM || + n->Store->File == PROGRAM_SAMPLER) { /* mark var as used */ _mesa_use_uniform(emitInfo->prog->Parameters, (char *) n->Var->a_name); } + else if (n->Store->File == PROGRAM_INPUT) { + assert(n->Store->Index >= 0); + emitInfo->prog->InputsRead |= (1 << n->Store->Index); + } if (n->Store->Index < 0) { /* probably ran out of registers */ @@ -2130,7 +2329,7 @@ _slang_resolve_subroutines(slang_emit_info *emitInfo) total += emitInfo->Subroutines[i]->NumInstructions; } - /* adjust BrancTargets within the functions */ + /* adjust BranchTargets within the functions */ for (i = 0; i < emitInfo->NumSubroutines; i++) { struct gl_program *sub = emitInfo->Subroutines[i]; GLuint j; @@ -2183,10 +2382,20 @@ _slang_resolve_subroutines(slang_emit_info *emitInfo) - +/** + * Convert the IR tree into GPU instructions. + * \param n root of IR tree + * \param vt variable table + * \param prog program to put GPU instructions into + * \param pragmas controls codegen options + * \param withEnd if true, emit END opcode at end + * \param log log for emitting errors/warnings/info + */ GLboolean _slang_emit_code(slang_ir_node *n, slang_var_table *vt, - struct gl_program *prog, GLboolean withEnd, + struct gl_program *prog, + const struct gl_sl_pragmas *pragmas, + GLboolean withEnd, slang_info_log *log) { GET_CURRENT_CONTEXT(ctx); @@ -2199,10 +2408,11 @@ _slang_emit_code(slang_ir_node *n, slang_var_table *vt, emitInfo.prog = prog; emitInfo.Subroutines = NULL; emitInfo.NumSubroutines = 0; + emitInfo.MaxInstructions = prog->NumInstructions; emitInfo.EmitHighLevelInstructions = ctx->Shader.EmitHighLevelInstructions; emitInfo.EmitCondCodes = ctx->Shader.EmitCondCodes; - emitInfo.EmitComments = ctx->Shader.EmitComments; + emitInfo.EmitComments = ctx->Shader.EmitComments || pragmas->Debug; emitInfo.EmitBeginEndSub = GL_TRUE; if (!emitInfo.EmitCondCodes) { diff --git a/src/mesa/shader/slang/slang_emit.h b/src/mesa/shader/slang/slang_emit.h index 4db4bbe5621..ab4c202d673 100644 --- a/src/mesa/shader/slang/slang_emit.h +++ b/src/mesa/shader/slang/slang_emit.h @@ -32,17 +32,19 @@ #include "main/mtypes.h" -extern void -slang_print_ir(const slang_ir_node *n, int indent); +extern GLuint +_slang_swizzle_swizzle(GLuint swz1, GLuint swz2); extern GLuint -_slang_swizzle_swizzle(GLuint swz1, GLuint swz2); +_slang_var_swizzle(GLint size, GLint comp); extern GLboolean _slang_emit_code(slang_ir_node *n, slang_var_table *vartable, - struct gl_program *prog, GLboolean withEnd, + struct gl_program *prog, + const struct gl_sl_pragmas *pragmas, + GLboolean withEnd, slang_info_log *log); diff --git a/src/mesa/shader/slang/slang_ir.c b/src/mesa/shader/slang/slang_ir.c index 4fe3a2b85d5..e4c6e0ea516 100644 --- a/src/mesa/shader/slang/slang_ir.c +++ b/src/mesa/shader/slang/slang_ir.c @@ -1,8 +1,8 @@ /* * Mesa 3-D graphics library - * Version: 7.1 * * Copyright (C) 2005-2008 Brian Paul All Rights Reserved. + * Copyright (C) 2009 VMware, Inc. All Rights Reserved. * * Permission is hereby granted, free of charge, to any person obtaining a * copy of this software and associated documentation files (the "Software"), @@ -116,6 +116,20 @@ _slang_ir_info(slang_ir_opcode opcode) } +void +_slang_init_ir_storage(slang_ir_storage *st, + enum register_file file, GLint index, GLint size, + GLuint swizzle) +{ + st->File = file; + st->Index = index; + st->Size = size; + st->Swizzle = swizzle; + st->Parent = NULL; + st->IsIndirect = GL_FALSE; +} + + /** * Return a new slang_ir_storage object. */ @@ -130,6 +144,7 @@ _slang_new_ir_storage(enum register_file file, GLint index, GLint size) st->Size = size; st->Swizzle = SWIZZLE_NOOP; st->Parent = NULL; + st->IsIndirect = GL_FALSE; } return st; } @@ -150,6 +165,7 @@ _slang_new_ir_storage_swz(enum register_file file, GLint index, GLint size, st->Size = size; st->Swizzle = swizzle; st->Parent = NULL; + st->IsIndirect = GL_FALSE; } return st; } @@ -170,12 +186,66 @@ _slang_new_ir_storage_relative(GLint index, GLint size, st->Size = size; st->Swizzle = SWIZZLE_NOOP; st->Parent = parent; + st->IsIndirect = GL_FALSE; + } + return st; +} + + +slang_ir_storage * +_slang_new_ir_storage_indirect(enum register_file file, + GLint index, + GLint size, + enum register_file indirectFile, + GLint indirectIndex, + GLuint indirectSwizzle) +{ + slang_ir_storage *st; + st = (slang_ir_storage *) _slang_alloc(sizeof(slang_ir_storage)); + if (st) { + st->File = file; + st->Index = index; + st->Size = size; + st->Swizzle = SWIZZLE_NOOP; + st->IsIndirect = GL_TRUE; + st->IndirectFile = indirectFile; + st->IndirectIndex = indirectIndex; + st->IndirectSwizzle = indirectSwizzle; + } + return st; +} + + +/** + * Allocate IR storage for a texture sampler. + * \param sampNum the sampler number/index + * \param texTarget one of TEXTURE_x_INDEX values + * \param size number of samplers (in case of sampler array) + */ +slang_ir_storage * +_slang_new_ir_storage_sampler(GLint sampNum, GLuint texTarget, GLint size) +{ + slang_ir_storage *st; + assert(texTarget < NUM_TEXTURE_TARGETS); + st = _slang_new_ir_storage(PROGRAM_SAMPLER, sampNum, size); + if (st) { + st->TexTarget = texTarget; } return st; } +/* XXX temporary function */ +void +_slang_copy_ir_storage(slang_ir_storage *dst, const slang_ir_storage *src) +{ + *dst = *src; + dst->Parent = NULL; +} + + + static const char * _slang_ir_name(slang_ir_opcode opcode) { diff --git a/src/mesa/shader/slang/slang_ir.h b/src/mesa/shader/slang/slang_ir.h index a4552ae1442..644269d491c 100644 --- a/src/mesa/shader/slang/slang_ir.h +++ b/src/mesa/shader/slang/slang_ir.h @@ -1,8 +1,8 @@ /* * Mesa 3-D graphics library - * Version: 6.5.3 * - * Copyright (C) 2005-2007 Brian Paul All Rights Reserved. + * Copyright (C) 2005-2008 Brian Paul All Rights Reserved. + * Copyright (C) 2009 VMware, Inc. All Rights Reserved. * * Permission is hereby granted, free of charge, to any person obtaining a * copy of this software and associated documentation files (the "Software"), @@ -140,24 +140,54 @@ typedef enum /** - * Describes where data storage is allocated. + * Describes where data/variables are stored in the various register files. + * + * In the simple case, the File, Index and Size fields indicate where + * a variable is stored. For example, a vec3 variable may be stored + * as (File=PROGRAM_TEMPORARY, Index=6, Size=3). Or, File[Index]. + * Or, a program input like color may be stored as + * (File=PROGRAM_INPUT,Index=3,Size=4); + * + * For single-float values, the Swizzle field indicates which component + * of the vector contains the float. + * + * If IsIndirect is set, the storage is accessed through an indirect + * register lookup. The value in question will be located at: + * File[Index + IndirectFile[IndirectIndex]] + * + * This is primary used for indexing arrays. For example, consider this + * GLSL code: + * uniform int i; + * float a[10]; + * float x = a[i]; + * + * here, storage for a[i] would be described by (File=PROGRAM_TEMPORAY, + * Index=aPos, IndirectFile=PROGRAM_UNIFORM, IndirectIndex=iPos), which + * would mean TEMP[aPos + UNIFORM[iPos]] */ -struct _slang_ir_storage +struct slang_ir_storage_ { enum register_file File; /**< PROGRAM_TEMPORARY, PROGRAM_INPUT, etc */ - GLint Index; /**< -1 means unallocated */ - GLint Size; /**< number of floats */ - GLuint Swizzle; + GLint Index; /**< -1 means unallocated */ + GLint Size; /**< number of floats or ints */ + GLuint Swizzle; /**< Swizzle AND writemask info */ GLint RefCount; /**< Used during IR tree delete */ - GLboolean RelAddr; + + GLboolean RelAddr; /* we'll remove this eventually */ + + GLboolean IsIndirect; + enum register_file IndirectFile; + GLint IndirectIndex; + GLuint IndirectSwizzle; + GLuint TexTarget; /**< If File==PROGRAM_SAMPLER, one of TEXTURE_x_INDEX */ /** If Parent is non-null, Index is relative to parent. * The other fields are ignored. */ - struct _slang_ir_storage *Parent; + struct slang_ir_storage_ *Parent; }; -typedef struct _slang_ir_storage slang_ir_storage; +typedef struct slang_ir_storage_ slang_ir_storage; /** @@ -199,6 +229,11 @@ extern const slang_ir_info * _slang_ir_info(slang_ir_opcode opcode); +extern void +_slang_init_ir_storage(slang_ir_storage *st, + enum register_file file, GLint index, GLint size, + GLuint swizzle); + extern slang_ir_storage * _slang_new_ir_storage(enum register_file file, GLint index, GLint size); @@ -212,6 +247,21 @@ _slang_new_ir_storage_relative(GLint index, GLint size, slang_ir_storage *parent); +extern slang_ir_storage * +_slang_new_ir_storage_indirect(enum register_file file, + GLint index, + GLint size, + enum register_file indirectFile, + GLint indirectIndex, + GLuint indirectSwizzle); + +extern slang_ir_storage * +_slang_new_ir_storage_sampler(GLint sampNum, GLuint texTarget, GLint size); + + +extern void +_slang_copy_ir_storage(slang_ir_storage *dst, const slang_ir_storage *src); + extern void _slang_free_ir_tree(slang_ir_node *n); diff --git a/src/mesa/shader/slang/slang_library_noise.c b/src/mesa/shader/slang/slang_library_noise.c deleted file mode 100644 index 25a05657cc8..00000000000 --- a/src/mesa/shader/slang/slang_library_noise.c +++ /dev/null @@ -1,501 +0,0 @@ -/* - * Mesa 3-D graphics library - * Version: 6.5 - * - * Copyright (C) 2006 Brian Paul All Rights Reserved. - * - * Permission is hereby granted, free of charge, to any person obtaining a - * copy of this software and associated documentation files (the "Software"), - * to deal in the Software without restriction, including without limitation - * the rights to use, copy, modify, merge, publish, distribute, sublicense, - * and/or sell copies of the Software, and to permit persons to whom the - * Software is furnished to do so, subject to the following conditions: - * - * The above copyright notice and this permission notice shall be included - * in all copies or substantial portions of the Software. - * - * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS - * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, - * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL - * BRIAN PAUL BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN - * AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN - * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. - */ - -/* - * SimplexNoise1234 - * Copyright (c) 2003-2005, Stefan Gustavson - * - * Contact: [email protected] - */ - -/** \file - \brief C implementation of Perlin Simplex Noise over 1,2,3, and 4 dimensions. - \author Stefan Gustavson ([email protected]) -*/ - -/* - * This implementation is "Simplex Noise" as presented by - * Ken Perlin at a relatively obscure and not often cited course - * session "Real-Time Shading" at Siggraph 2001 (before real - * time shading actually took on), under the title "hardware noise". - * The 3D function is numerically equivalent to his Java reference - * code available in the PDF course notes, although I re-implemented - * it from scratch to get more readable code. The 1D, 2D and 4D cases - * were implemented from scratch by me from Ken Perlin's text. - * - * This file has no dependencies on any other file, not even its own - * header file. The header file is made for use by external code only. - */ - - -#include "main/imports.h" -#include "slang_library_noise.h" - -#define FASTFLOOR(x) ( ((x)>0) ? ((int)x) : (((int)x)-1) ) - -/* - * --------------------------------------------------------------------- - * Static data - */ - -/* - * Permutation table. This is just a random jumble of all numbers 0-255, - * repeated twice to avoid wrapping the index at 255 for each lookup. - * This needs to be exactly the same for all instances on all platforms, - * so it's easiest to just keep it as static explicit data. - * This also removes the need for any initialisation of this class. - * - * Note that making this an int[] instead of a char[] might make the - * code run faster on platforms with a high penalty for unaligned single - * byte addressing. Intel x86 is generally single-byte-friendly, but - * some other CPUs are faster with 4-aligned reads. - * However, a char[] is smaller, which avoids cache trashing, and that - * is probably the most important aspect on most architectures. - * This array is accessed a *lot* by the noise functions. - * A vector-valued noise over 3D accesses it 96 times, and a - * float-valued 4D noise 64 times. We want this to fit in the cache! - */ -unsigned char perm[512] = {151,160,137,91,90,15, - 131,13,201,95,96,53,194,233,7,225,140,36,103,30,69,142,8,99,37,240,21,10,23, - 190, 6,148,247,120,234,75,0,26,197,62,94,252,219,203,117,35,11,32,57,177,33, - 88,237,149,56,87,174,20,125,136,171,168, 68,175,74,165,71,134,139,48,27,166, - 77,146,158,231,83,111,229,122,60,211,133,230,220,105,92,41,55,46,245,40,244, - 102,143,54, 65,25,63,161, 1,216,80,73,209,76,132,187,208, 89,18,169,200,196, - 135,130,116,188,159,86,164,100,109,198,173,186, 3,64,52,217,226,250,124,123, - 5,202,38,147,118,126,255,82,85,212,207,206,59,227,47,16,58,17,182,189,28,42, - 223,183,170,213,119,248,152, 2,44,154,163, 70,221,153,101,155,167, 43,172,9, - 129,22,39,253, 19,98,108,110,79,113,224,232,178,185, 112,104,218,246,97,228, - 251,34,242,193,238,210,144,12,191,179,162,241, 81,51,145,235,249,14,239,107, - 49,192,214, 31,181,199,106,157,184, 84,204,176,115,121,50,45,127, 4,150,254, - 138,236,205,93,222,114,67,29,24,72,243,141,128,195,78,66,215,61,156,180, - 151,160,137,91,90,15, - 131,13,201,95,96,53,194,233,7,225,140,36,103,30,69,142,8,99,37,240,21,10,23, - 190, 6,148,247,120,234,75,0,26,197,62,94,252,219,203,117,35,11,32,57,177,33, - 88,237,149,56,87,174,20,125,136,171,168, 68,175,74,165,71,134,139,48,27,166, - 77,146,158,231,83,111,229,122,60,211,133,230,220,105,92,41,55,46,245,40,244, - 102,143,54, 65,25,63,161, 1,216,80,73,209,76,132,187,208, 89,18,169,200,196, - 135,130,116,188,159,86,164,100,109,198,173,186, 3,64,52,217,226,250,124,123, - 5,202,38,147,118,126,255,82,85,212,207,206,59,227,47,16,58,17,182,189,28,42, - 223,183,170,213,119,248,152, 2,44,154,163, 70,221,153,101,155,167, 43,172,9, - 129,22,39,253, 19,98,108,110,79,113,224,232,178,185, 112,104,218,246,97,228, - 251,34,242,193,238,210,144,12,191,179,162,241, 81,51,145,235,249,14,239,107, - 49,192,214, 31,181,199,106,157,184, 84,204,176,115,121,50,45,127, 4,150,254, - 138,236,205,93,222,114,67,29,24,72,243,141,128,195,78,66,215,61,156,180 -}; - -/* - * --------------------------------------------------------------------- - */ - -/* - * Helper functions to compute gradients-dot-residualvectors (1D to 4D) - * Note that these generate gradients of more than unit length. To make - * a close match with the value range of classic Perlin noise, the final - * noise values need to be rescaled to fit nicely within [-1,1]. - * (The simplex noise functions as such also have different scaling.) - * Note also that these noise functions are the most practical and useful - * signed version of Perlin noise. To return values according to the - * RenderMan specification from the SL noise() and pnoise() functions, - * the noise values need to be scaled and offset to [0,1], like this: - * float SLnoise = (SimplexNoise1234::noise(x,y,z) + 1.0) * 0.5; - */ - -static float grad1( int hash, float x ) { - int h = hash & 15; - float grad = 1.0f + (h & 7); /* Gradient value 1.0, 2.0, ..., 8.0 */ - if (h&8) grad = -grad; /* Set a random sign for the gradient */ - return ( grad * x ); /* Multiply the gradient with the distance */ -} - -static float grad2( int hash, float x, float y ) { - int h = hash & 7; /* Convert low 3 bits of hash code */ - float u = h<4 ? x : y; /* into 8 simple gradient directions, */ - float v = h<4 ? y : x; /* and compute the dot product with (x,y). */ - return ((h&1)? -u : u) + ((h&2)? -2.0f*v : 2.0f*v); -} - -static float grad3( int hash, float x, float y , float z ) { - int h = hash & 15; /* Convert low 4 bits of hash code into 12 simple */ - float u = h<8 ? x : y; /* gradient directions, and compute dot product. */ - float v = h<4 ? y : h==12||h==14 ? x : z; /* Fix repeats at h = 12 to 15 */ - return ((h&1)? -u : u) + ((h&2)? -v : v); -} - -static float grad4( int hash, float x, float y, float z, float t ) { - int h = hash & 31; /* Convert low 5 bits of hash code into 32 simple */ - float u = h<24 ? x : y; /* gradient directions, and compute dot product. */ - float v = h<16 ? y : z; - float w = h<8 ? z : t; - return ((h&1)? -u : u) + ((h&2)? -v : v) + ((h&4)? -w : w); -} - - /* A lookup table to traverse the simplex around a given point in 4D. */ - /* Details can be found where this table is used, in the 4D noise method. */ - /* TODO: This should not be required, backport it from Bill's GLSL code! */ - static unsigned char simplex[64][4] = { - {0,1,2,3},{0,1,3,2},{0,0,0,0},{0,2,3,1},{0,0,0,0},{0,0,0,0},{0,0,0,0},{1,2,3,0}, - {0,2,1,3},{0,0,0,0},{0,3,1,2},{0,3,2,1},{0,0,0,0},{0,0,0,0},{0,0,0,0},{1,3,2,0}, - {0,0,0,0},{0,0,0,0},{0,0,0,0},{0,0,0,0},{0,0,0,0},{0,0,0,0},{0,0,0,0},{0,0,0,0}, - {1,2,0,3},{0,0,0,0},{1,3,0,2},{0,0,0,0},{0,0,0,0},{0,0,0,0},{2,3,0,1},{2,3,1,0}, - {1,0,2,3},{1,0,3,2},{0,0,0,0},{0,0,0,0},{0,0,0,0},{2,0,3,1},{0,0,0,0},{2,1,3,0}, - {0,0,0,0},{0,0,0,0},{0,0,0,0},{0,0,0,0},{0,0,0,0},{0,0,0,0},{0,0,0,0},{0,0,0,0}, - {2,0,1,3},{0,0,0,0},{0,0,0,0},{0,0,0,0},{3,0,1,2},{3,0,2,1},{0,0,0,0},{3,1,2,0}, - {2,1,0,3},{0,0,0,0},{0,0,0,0},{0,0,0,0},{3,1,0,2},{0,0,0,0},{3,2,0,1},{3,2,1,0}}; - -/* 1D simplex noise */ -GLfloat _slang_library_noise1 (GLfloat x) -{ - int i0 = FASTFLOOR(x); - int i1 = i0 + 1; - float x0 = x - i0; - float x1 = x0 - 1.0f; - float t1 = 1.0f - x1*x1; - float n0, n1; - - float t0 = 1.0f - x0*x0; -/* if(t0 < 0.0f) t0 = 0.0f; // this never happens for the 1D case */ - t0 *= t0; - n0 = t0 * t0 * grad1(perm[i0 & 0xff], x0); - -/* if(t1 < 0.0f) t1 = 0.0f; // this never happens for the 1D case */ - t1 *= t1; - n1 = t1 * t1 * grad1(perm[i1 & 0xff], x1); - /* The maximum value of this noise is 8*(3/4)^4 = 2.53125 */ - /* A factor of 0.395 would scale to fit exactly within [-1,1], but */ - /* we want to match PRMan's 1D noise, so we scale it down some more. */ - return 0.25f * (n0 + n1); -} - -/* 2D simplex noise */ -GLfloat _slang_library_noise2 (GLfloat x, GLfloat y) -{ -#define F2 0.366025403f /* F2 = 0.5*(sqrt(3.0)-1.0) */ -#define G2 0.211324865f /* G2 = (3.0-Math.sqrt(3.0))/6.0 */ - - float n0, n1, n2; /* Noise contributions from the three corners */ - - /* Skew the input space to determine which simplex cell we're in */ - float s = (x+y)*F2; /* Hairy factor for 2D */ - float xs = x + s; - float ys = y + s; - int i = FASTFLOOR(xs); - int j = FASTFLOOR(ys); - - float t = (float)(i+j)*G2; - float X0 = i-t; /* Unskew the cell origin back to (x,y) space */ - float Y0 = j-t; - float x0 = x-X0; /* The x,y distances from the cell origin */ - float y0 = y-Y0; - - float x1, y1, x2, y2; - int ii, jj; - float t0, t1, t2; - - /* For the 2D case, the simplex shape is an equilateral triangle. */ - /* Determine which simplex we are in. */ - int i1, j1; /* Offsets for second (middle) corner of simplex in (i,j) coords */ - if(x0>y0) {i1=1; j1=0;} /* lower triangle, XY order: (0,0)->(1,0)->(1,1) */ - else {i1=0; j1=1;} /* upper triangle, YX order: (0,0)->(0,1)->(1,1) */ - - /* A step of (1,0) in (i,j) means a step of (1-c,-c) in (x,y), and */ - /* a step of (0,1) in (i,j) means a step of (-c,1-c) in (x,y), where */ - /* c = (3-sqrt(3))/6 */ - - x1 = x0 - i1 + G2; /* Offsets for middle corner in (x,y) unskewed coords */ - y1 = y0 - j1 + G2; - x2 = x0 - 1.0f + 2.0f * G2; /* Offsets for last corner in (x,y) unskewed coords */ - y2 = y0 - 1.0f + 2.0f * G2; - - /* Wrap the integer indices at 256, to avoid indexing perm[] out of bounds */ - ii = i % 256; - jj = j % 256; - - /* Calculate the contribution from the three corners */ - t0 = 0.5f - x0*x0-y0*y0; - if(t0 < 0.0f) n0 = 0.0f; - else { - t0 *= t0; - n0 = t0 * t0 * grad2(perm[ii+perm[jj]], x0, y0); - } - - t1 = 0.5f - x1*x1-y1*y1; - if(t1 < 0.0f) n1 = 0.0f; - else { - t1 *= t1; - n1 = t1 * t1 * grad2(perm[ii+i1+perm[jj+j1]], x1, y1); - } - - t2 = 0.5f - x2*x2-y2*y2; - if(t2 < 0.0f) n2 = 0.0f; - else { - t2 *= t2; - n2 = t2 * t2 * grad2(perm[ii+1+perm[jj+1]], x2, y2); - } - - /* Add contributions from each corner to get the final noise value. */ - /* The result is scaled to return values in the interval [-1,1]. */ - return 40.0f * (n0 + n1 + n2); /* TODO: The scale factor is preliminary! */ -} - -/* 3D simplex noise */ -GLfloat _slang_library_noise3 (GLfloat x, GLfloat y, GLfloat z) -{ -/* Simple skewing factors for the 3D case */ -#define F3 0.333333333f -#define G3 0.166666667f - - float n0, n1, n2, n3; /* Noise contributions from the four corners */ - - /* Skew the input space to determine which simplex cell we're in */ - float s = (x+y+z)*F3; /* Very nice and simple skew factor for 3D */ - float xs = x+s; - float ys = y+s; - float zs = z+s; - int i = FASTFLOOR(xs); - int j = FASTFLOOR(ys); - int k = FASTFLOOR(zs); - - float t = (float)(i+j+k)*G3; - float X0 = i-t; /* Unskew the cell origin back to (x,y,z) space */ - float Y0 = j-t; - float Z0 = k-t; - float x0 = x-X0; /* The x,y,z distances from the cell origin */ - float y0 = y-Y0; - float z0 = z-Z0; - - float x1, y1, z1, x2, y2, z2, x3, y3, z3; - int ii, jj, kk; - float t0, t1, t2, t3; - - /* For the 3D case, the simplex shape is a slightly irregular tetrahedron. */ - /* Determine which simplex we are in. */ - int i1, j1, k1; /* Offsets for second corner of simplex in (i,j,k) coords */ - int i2, j2, k2; /* Offsets for third corner of simplex in (i,j,k) coords */ - -/* This code would benefit from a backport from the GLSL version! */ - if(x0>=y0) { - if(y0>=z0) - { i1=1; j1=0; k1=0; i2=1; j2=1; k2=0; } /* X Y Z order */ - else if(x0>=z0) { i1=1; j1=0; k1=0; i2=1; j2=0; k2=1; } /* X Z Y order */ - else { i1=0; j1=0; k1=1; i2=1; j2=0; k2=1; } /* Z X Y order */ - } - else { /* x0<y0 */ - if(y0<z0) { i1=0; j1=0; k1=1; i2=0; j2=1; k2=1; } /* Z Y X order */ - else if(x0<z0) { i1=0; j1=1; k1=0; i2=0; j2=1; k2=1; } /* Y Z X order */ - else { i1=0; j1=1; k1=0; i2=1; j2=1; k2=0; } /* Y X Z order */ - } - - /* A step of (1,0,0) in (i,j,k) means a step of (1-c,-c,-c) in (x,y,z), */ - /* a step of (0,1,0) in (i,j,k) means a step of (-c,1-c,-c) in (x,y,z), and */ - /* a step of (0,0,1) in (i,j,k) means a step of (-c,-c,1-c) in (x,y,z), where */ - /* c = 1/6. */ - - x1 = x0 - i1 + G3; /* Offsets for second corner in (x,y,z) coords */ - y1 = y0 - j1 + G3; - z1 = z0 - k1 + G3; - x2 = x0 - i2 + 2.0f*G3; /* Offsets for third corner in (x,y,z) coords */ - y2 = y0 - j2 + 2.0f*G3; - z2 = z0 - k2 + 2.0f*G3; - x3 = x0 - 1.0f + 3.0f*G3; /* Offsets for last corner in (x,y,z) coords */ - y3 = y0 - 1.0f + 3.0f*G3; - z3 = z0 - 1.0f + 3.0f*G3; - - /* Wrap the integer indices at 256, to avoid indexing perm[] out of bounds */ - ii = i % 256; - jj = j % 256; - kk = k % 256; - - /* Calculate the contribution from the four corners */ - t0 = 0.6f - x0*x0 - y0*y0 - z0*z0; - if(t0 < 0.0f) n0 = 0.0f; - else { - t0 *= t0; - n0 = t0 * t0 * grad3(perm[ii+perm[jj+perm[kk]]], x0, y0, z0); - } - - t1 = 0.6f - x1*x1 - y1*y1 - z1*z1; - if(t1 < 0.0f) n1 = 0.0f; - else { - t1 *= t1; - n1 = t1 * t1 * grad3(perm[ii+i1+perm[jj+j1+perm[kk+k1]]], x1, y1, z1); - } - - t2 = 0.6f - x2*x2 - y2*y2 - z2*z2; - if(t2 < 0.0f) n2 = 0.0f; - else { - t2 *= t2; - n2 = t2 * t2 * grad3(perm[ii+i2+perm[jj+j2+perm[kk+k2]]], x2, y2, z2); - } - - t3 = 0.6f - x3*x3 - y3*y3 - z3*z3; - if(t3<0.0f) n3 = 0.0f; - else { - t3 *= t3; - n3 = t3 * t3 * grad3(perm[ii+1+perm[jj+1+perm[kk+1]]], x3, y3, z3); - } - - /* Add contributions from each corner to get the final noise value. */ - /* The result is scaled to stay just inside [-1,1] */ - return 32.0f * (n0 + n1 + n2 + n3); /* TODO: The scale factor is preliminary! */ -} - -/* 4D simplex noise */ -GLfloat _slang_library_noise4 (GLfloat x, GLfloat y, GLfloat z, GLfloat w) -{ - /* The skewing and unskewing factors are hairy again for the 4D case */ -#define F4 0.309016994f /* F4 = (Math.sqrt(5.0)-1.0)/4.0 */ -#define G4 0.138196601f /* G4 = (5.0-Math.sqrt(5.0))/20.0 */ - - float n0, n1, n2, n3, n4; /* Noise contributions from the five corners */ - - /* Skew the (x,y,z,w) space to determine which cell of 24 simplices we're in */ - float s = (x + y + z + w) * F4; /* Factor for 4D skewing */ - float xs = x + s; - float ys = y + s; - float zs = z + s; - float ws = w + s; - int i = FASTFLOOR(xs); - int j = FASTFLOOR(ys); - int k = FASTFLOOR(zs); - int l = FASTFLOOR(ws); - - float t = (i + j + k + l) * G4; /* Factor for 4D unskewing */ - float X0 = i - t; /* Unskew the cell origin back to (x,y,z,w) space */ - float Y0 = j - t; - float Z0 = k - t; - float W0 = l - t; - - float x0 = x - X0; /* The x,y,z,w distances from the cell origin */ - float y0 = y - Y0; - float z0 = z - Z0; - float w0 = w - W0; - - /* For the 4D case, the simplex is a 4D shape I won't even try to describe. */ - /* To find out which of the 24 possible simplices we're in, we need to */ - /* determine the magnitude ordering of x0, y0, z0 and w0. */ - /* The method below is a good way of finding the ordering of x,y,z,w and */ - /* then find the correct traversal order for the simplex we're in. */ - /* First, six pair-wise comparisons are performed between each possible pair */ - /* of the four coordinates, and the results are used to add up binary bits */ - /* for an integer index. */ - int c1 = (x0 > y0) ? 32 : 0; - int c2 = (x0 > z0) ? 16 : 0; - int c3 = (y0 > z0) ? 8 : 0; - int c4 = (x0 > w0) ? 4 : 0; - int c5 = (y0 > w0) ? 2 : 0; - int c6 = (z0 > w0) ? 1 : 0; - int c = c1 + c2 + c3 + c4 + c5 + c6; - - int i1, j1, k1, l1; /* The integer offsets for the second simplex corner */ - int i2, j2, k2, l2; /* The integer offsets for the third simplex corner */ - int i3, j3, k3, l3; /* The integer offsets for the fourth simplex corner */ - - float x1, y1, z1, w1, x2, y2, z2, w2, x3, y3, z3, w3, x4, y4, z4, w4; - int ii, jj, kk, ll; - float t0, t1, t2, t3, t4; - - /* simplex[c] is a 4-vector with the numbers 0, 1, 2 and 3 in some order. */ - /* Many values of c will never occur, since e.g. x>y>z>w makes x<z, y<w and x<w */ - /* impossible. Only the 24 indices which have non-zero entries make any sense. */ - /* We use a thresholding to set the coordinates in turn from the largest magnitude. */ - /* The number 3 in the "simplex" array is at the position of the largest coordinate. */ - i1 = simplex[c][0]>=3 ? 1 : 0; - j1 = simplex[c][1]>=3 ? 1 : 0; - k1 = simplex[c][2]>=3 ? 1 : 0; - l1 = simplex[c][3]>=3 ? 1 : 0; - /* The number 2 in the "simplex" array is at the second largest coordinate. */ - i2 = simplex[c][0]>=2 ? 1 : 0; - j2 = simplex[c][1]>=2 ? 1 : 0; - k2 = simplex[c][2]>=2 ? 1 : 0; - l2 = simplex[c][3]>=2 ? 1 : 0; - /* The number 1 in the "simplex" array is at the second smallest coordinate. */ - i3 = simplex[c][0]>=1 ? 1 : 0; - j3 = simplex[c][1]>=1 ? 1 : 0; - k3 = simplex[c][2]>=1 ? 1 : 0; - l3 = simplex[c][3]>=1 ? 1 : 0; - /* The fifth corner has all coordinate offsets = 1, so no need to look that up. */ - - x1 = x0 - i1 + G4; /* Offsets for second corner in (x,y,z,w) coords */ - y1 = y0 - j1 + G4; - z1 = z0 - k1 + G4; - w1 = w0 - l1 + G4; - x2 = x0 - i2 + 2.0f*G4; /* Offsets for third corner in (x,y,z,w) coords */ - y2 = y0 - j2 + 2.0f*G4; - z2 = z0 - k2 + 2.0f*G4; - w2 = w0 - l2 + 2.0f*G4; - x3 = x0 - i3 + 3.0f*G4; /* Offsets for fourth corner in (x,y,z,w) coords */ - y3 = y0 - j3 + 3.0f*G4; - z3 = z0 - k3 + 3.0f*G4; - w3 = w0 - l3 + 3.0f*G4; - x4 = x0 - 1.0f + 4.0f*G4; /* Offsets for last corner in (x,y,z,w) coords */ - y4 = y0 - 1.0f + 4.0f*G4; - z4 = z0 - 1.0f + 4.0f*G4; - w4 = w0 - 1.0f + 4.0f*G4; - - /* Wrap the integer indices at 256, to avoid indexing perm[] out of bounds */ - ii = i % 256; - jj = j % 256; - kk = k % 256; - ll = l % 256; - - /* Calculate the contribution from the five corners */ - t0 = 0.6f - x0*x0 - y0*y0 - z0*z0 - w0*w0; - if(t0 < 0.0f) n0 = 0.0f; - else { - t0 *= t0; - n0 = t0 * t0 * grad4(perm[ii+perm[jj+perm[kk+perm[ll]]]], x0, y0, z0, w0); - } - - t1 = 0.6f - x1*x1 - y1*y1 - z1*z1 - w1*w1; - if(t1 < 0.0f) n1 = 0.0f; - else { - t1 *= t1; - n1 = t1 * t1 * grad4(perm[ii+i1+perm[jj+j1+perm[kk+k1+perm[ll+l1]]]], x1, y1, z1, w1); - } - - t2 = 0.6f - x2*x2 - y2*y2 - z2*z2 - w2*w2; - if(t2 < 0.0f) n2 = 0.0f; - else { - t2 *= t2; - n2 = t2 * t2 * grad4(perm[ii+i2+perm[jj+j2+perm[kk+k2+perm[ll+l2]]]], x2, y2, z2, w2); - } - - t3 = 0.6f - x3*x3 - y3*y3 - z3*z3 - w3*w3; - if(t3 < 0.0f) n3 = 0.0f; - else { - t3 *= t3; - n3 = t3 * t3 * grad4(perm[ii+i3+perm[jj+j3+perm[kk+k3+perm[ll+l3]]]], x3, y3, z3, w3); - } - - t4 = 0.6f - x4*x4 - y4*y4 - z4*z4 - w4*w4; - if(t4 < 0.0f) n4 = 0.0f; - else { - t4 *= t4; - n4 = t4 * t4 * grad4(perm[ii+1+perm[jj+1+perm[kk+1+perm[ll+1]]]], x4, y4, z4, w4); - } - - /* Sum up and scale the result to cover the range [-1,1] */ - return 27.0f * (n0 + n1 + n2 + n3 + n4); /* TODO: The scale factor is preliminary! */ -} - diff --git a/src/mesa/shader/slang/slang_link.c b/src/mesa/shader/slang/slang_link.c index 79fd9a064f5..99f2cbdcc05 100644 --- a/src/mesa/shader/slang/slang_link.c +++ b/src/mesa/shader/slang/slang_link.c @@ -1,8 +1,9 @@ /* * Mesa 3-D graphics library - * Version: 7.2 + * Version: 7.3 * * Copyright (C) 2008 Brian Paul All Rights Reserved. + * Copyright (C) 2009 VMware, Inc. All Rights Reserved. * * Permission is hereby granted, free of charge, to any person obtaining a * copy of this software and associated documentation files (the "Software"), @@ -76,42 +77,93 @@ link_error(struct gl_shader_program *shProg, const char *msg) /** + * Check if the given bit is either set or clear in both bitfields. + */ +static GLboolean +bits_agree(GLbitfield flags1, GLbitfield flags2, GLbitfield bit) +{ + return (flags1 & bit) == (flags2 & bit); +} + + +/** * Linking varying vars involves rearranging varying vars so that the * vertex program's output varyings matches the order of the fragment * program's input varyings. + * We'll then rewrite instructions to replace PROGRAM_VARYING with either + * PROGRAM_INPUT or PROGRAM_OUTPUT depending on whether it's a vertex or + * fragment shader. + * This is also where we set program Input/OutputFlags to indicate + * which inputs are centroid-sampled, invariant, etc. */ static GLboolean link_varying_vars(struct gl_shader_program *shProg, struct gl_program *prog) { GLuint *map, i, firstVarying, newFile; + GLbitfield *inOutFlags; map = (GLuint *) malloc(prog->Varying->NumParameters * sizeof(GLuint)); if (!map) return GL_FALSE; + /* Varying variables are treated like other vertex program outputs + * (and like other fragment program inputs). The position of the + * first varying differs for vertex/fragment programs... + * Also, replace File=PROGRAM_VARYING with File=PROGRAM_INPUT/OUTPUT. + */ + if (prog->Target == GL_VERTEX_PROGRAM_ARB) { + firstVarying = VERT_RESULT_VAR0; + newFile = PROGRAM_OUTPUT; + inOutFlags = prog->OutputFlags; + } + else { + assert(prog->Target == GL_FRAGMENT_PROGRAM_ARB); + firstVarying = FRAG_ATTRIB_VAR0; + newFile = PROGRAM_INPUT; + inOutFlags = prog->InputFlags; + } + for (i = 0; i < prog->Varying->NumParameters; i++) { /* see if this varying is in the linked varying list */ const struct gl_program_parameter *var = prog->Varying->Parameters + i; GLint j = _mesa_lookup_parameter_index(shProg->Varying, -1, var->Name); if (j >= 0) { - /* already in list, check size */ - if (var->Size != shProg->Varying->Parameters[j].Size) { - /* error */ + /* varying is already in list, do some error checking */ + const struct gl_program_parameter *v = + &shProg->Varying->Parameters[j]; + if (var->Size != v->Size) { link_error(shProg, "mismatched varying variable types"); return GL_FALSE; } + if (!bits_agree(var->Flags, v->Flags, PROG_PARAM_BIT_CENTROID)) { + char msg[100]; + _mesa_snprintf(msg, sizeof(msg), + "centroid modifier mismatch for '%s'", var->Name); + link_error(shProg, msg); + return GL_FALSE; + } + if (!bits_agree(var->Flags, v->Flags, PROG_PARAM_BIT_INVARIANT)) { + char msg[100]; + _mesa_snprintf(msg, sizeof(msg), + "invariant modifier mismatch for '%s'", var->Name); + link_error(shProg, msg); + return GL_FALSE; + } } else { /* not already in linked list */ - j = _mesa_add_varying(shProg->Varying, var->Name, var->Size); + j = _mesa_add_varying(shProg->Varying, var->Name, var->Size, + var->Flags); } - /* map varying[i] to varying[j]. + /* Map varying[i] to varying[j]. + * Plus, set prog->Input/OutputFlags[] as described above. * Note: the loop here takes care of arrays or large (sz>4) vars. */ { GLint sz = var->Size; while (sz > 0) { + inOutFlags[firstVarying + j] = var->Flags; /*printf("Link varying from %d to %d\n", i, j);*/ map[i++] = j++; sz -= 4; @@ -121,21 +173,6 @@ link_varying_vars(struct gl_shader_program *shProg, struct gl_program *prog) } - /* Varying variables are treated like other vertex program outputs - * (and like other fragment program inputs). The position of the - * first varying differs for vertex/fragment programs... - * Also, replace File=PROGRAM_VARYING with File=PROGRAM_INPUT/OUTPUT. - */ - if (prog->Target == GL_VERTEX_PROGRAM_ARB) { - firstVarying = VERT_RESULT_VAR0; - newFile = PROGRAM_OUTPUT; - } - else { - assert(prog->Target == GL_FRAGMENT_PROGRAM_ARB); - firstVarying = FRAG_ATTRIB_VAR0; - newFile = PROGRAM_INPUT; - } - /* OK, now scan the program/shader instructions looking for varying vars, * replacing the old index with the new index. */ @@ -170,13 +207,27 @@ link_varying_vars(struct gl_shader_program *shProg, struct gl_program *prog) * Build the shProg->Uniforms list. * This is basically a list/index of all uniforms found in either/both of * the vertex and fragment shaders. + * + * About uniforms: + * Each uniform has two indexes, one that points into the vertex + * program's parameter array and another that points into the fragment + * program's parameter array. When the user changes a uniform's value + * we have to change the value in the vertex and/or fragment program's + * parameter array. + * + * This function will be called twice to set up the two uniform->parameter + * mappings. + * + * If a uniform is only present in the vertex program OR fragment program + * then the fragment/vertex parameter index, respectively, will be -1. */ -static void -link_uniform_vars(struct gl_shader_program *shProg, +static GLboolean +link_uniform_vars(GLcontext *ctx, + struct gl_shader_program *shProg, struct gl_program *prog, GLuint *numSamplers) { - GLuint samplerMap[MAX_SAMPLERS]; + GLuint samplerMap[200]; /* max number of samplers declared, not used */ GLuint i; for (i = 0; i < prog->Parameters->NumParameters; i++) { @@ -191,44 +242,64 @@ link_uniform_vars(struct gl_shader_program *shProg, * Furthermore, we'll need to fix the state-var's size/datatype info. */ - if ((p->Type == PROGRAM_UNIFORM && p->Used) || - p->Type == PROGRAM_SAMPLER) { + if ((p->Type == PROGRAM_UNIFORM || p->Type == PROGRAM_SAMPLER) + && p->Used) { + /* add this uniform, indexing into the target's Parameters list */ struct gl_uniform *uniform = _mesa_append_uniform(shProg->Uniforms, p->Name, prog->Target, i); if (uniform) uniform->Initialized = p->Initialized; } - if (p->Type == PROGRAM_SAMPLER) { + /* The samplerMap[] table we build here is used to remap/re-index + * sampler references by TEX instructions. + */ + if (p->Type == PROGRAM_SAMPLER && p->Used) { /* Allocate a new sampler index */ - GLuint sampNum = *numSamplers; GLuint oldSampNum = (GLuint) prog->Parameters->ParameterValues[i][0]; - assert(oldSampNum < MAX_SAMPLERS); - samplerMap[oldSampNum] = sampNum; + GLuint newSampNum = *numSamplers; + if (newSampNum >= ctx->Const.MaxTextureImageUnits) { + char s[100]; + _mesa_sprintf(s, "Too many texture samplers (%u, max is %u)", + newSampNum, ctx->Const.MaxTextureImageUnits); + link_error(shProg, s); + return GL_FALSE; + } + /* save old->new mapping in the table */ + if (oldSampNum < Elements(samplerMap)) + samplerMap[oldSampNum] = newSampNum; + /* update parameter's sampler index */ + prog->Parameters->ParameterValues[i][0] = (GLfloat) newSampNum; (*numSamplers)++; } } - - /* OK, now scan the program/shader instructions looking for sampler vars, - * replacing the old index with the new index. + /* OK, now scan the program/shader instructions looking for texture + * instructions using sampler vars. Replace old sampler indexes with + * new ones. */ prog->SamplersUsed = 0x0; for (i = 0; i < prog->NumInstructions; i++) { struct prog_instruction *inst = prog->Instructions + i; if (_mesa_is_tex_instruction(inst->Opcode)) { - /* + const GLint oldSampNum = inst->TexSrcUnit; + +#if 0 printf("====== remap sampler from %d to %d\n", - inst->Sampler, map[ inst->Sampler ]); - */ + inst->TexSrcUnit, samplerMap[ inst->TexSrcUnit ]); +#endif + /* here, texUnit is really samplerUnit */ - assert(inst->TexSrcUnit < MAX_SAMPLERS); - inst->TexSrcUnit = samplerMap[inst->TexSrcUnit]; - prog->SamplerTargets[inst->TexSrcUnit] = inst->TexSrcTarget; - prog->SamplersUsed |= (1 << inst->TexSrcUnit); + if (oldSampNum < Elements(samplerMap)) { + const GLuint newSampNum = samplerMap[oldSampNum]; + inst->TexSrcUnit = newSampNum; + prog->SamplerTargets[newSampNum] = inst->TexSrcTarget; + prog->SamplersUsed |= (1 << newSampNum); + } } } + return GL_TRUE; } @@ -247,7 +318,7 @@ _slang_resolve_attributes(struct gl_shader_program *shProg, { GLint attribMap[MAX_VERTEX_ATTRIBS]; GLuint i, j; - GLbitfield usedAttributes; + GLbitfield usedAttributes; /* generics only, not legacy attributes */ assert(origProg != linkedProg); assert(origProg->Target == GL_VERTEX_PROGRAM_ARB); @@ -271,6 +342,15 @@ _slang_resolve_attributes(struct gl_shader_program *shProg, usedAttributes |= (1 << attr); } + /* If gl_Vertex is used, that actually counts against the limit + * on generic vertex attributes. This avoids the ambiguity of + * whether glVertexAttrib4fv(0, v) sets legacy attribute 0 (vert pos) + * or generic attribute[0]. If gl_Vertex is used, we want the former. + */ + if (origProg->InputsRead & VERT_BIT_POS) { + usedAttributes |= 0x1; + } + /* initialize the generic attribute map entries to -1 */ for (i = 0; i < MAX_VERTEX_ATTRIBS; i++) { attribMap[i] = -1; @@ -313,7 +393,7 @@ _slang_resolve_attributes(struct gl_shader_program *shProg, * Start at 1 since generic attribute 0 always aliases * glVertex/position. */ - for (attr = 1; attr < MAX_VERTEX_ATTRIBS; attr++) { + for (attr = 0; attr < MAX_VERTEX_ATTRIBS; attr++) { if (((1 << attr) & usedAttributes) == 0) break; } @@ -422,7 +502,6 @@ _slang_update_inputs_outputs(struct gl_program *prog) maxAddrReg = MAX2(maxAddrReg, inst->DstReg.Index + 1); } } - prog->NumAddressRegs = maxAddrReg; } @@ -524,10 +603,18 @@ _slang_link(GLcontext *ctx, } /* link uniform vars */ - if (shProg->VertexProgram) - link_uniform_vars(shProg, &shProg->VertexProgram->Base, &numSamplers); - if (shProg->FragmentProgram) - link_uniform_vars(shProg, &shProg->FragmentProgram->Base, &numSamplers); + if (shProg->VertexProgram) { + if (!link_uniform_vars(ctx, shProg, &shProg->VertexProgram->Base, + &numSamplers)) { + return; + } + } + if (shProg->FragmentProgram) { + if (!link_uniform_vars(ctx, shProg, &shProg->FragmentProgram->Base, + &numSamplers)) { + return; + } + } /*_mesa_print_uniforms(shProg->Uniforms);*/ @@ -568,6 +655,17 @@ _slang_link(GLcontext *ctx, } } + /* check that gl_FragColor and gl_FragData are not both written to */ + if (shProg->FragmentProgram) { + GLbitfield outputsWritten = shProg->FragmentProgram->Base.OutputsWritten; + if ((outputsWritten & ((1 << FRAG_RESULT_COLR))) && + (outputsWritten >= (1 << FRAG_RESULT_DATA0))) { + link_error(shProg, "Fragment program cannot write both gl_FragColor" + " and gl_FragData[].\n"); + return; + } + } + if (fragProg && shProg->FragmentProgram) { /* Compute initial program's TexturesUsed info */ @@ -576,12 +674,12 @@ _slang_link(GLcontext *ctx, /* notify driver that a new fragment program has been compiled/linked */ ctx->Driver.ProgramStringNotify(ctx, GL_FRAGMENT_PROGRAM_ARB, &shProg->FragmentProgram->Base); - if (MESA_VERBOSE & VERBOSE_GLSL_DUMP) { - printf("Mesa original fragment program:\n"); + if (ctx->Shader.Flags & GLSL_DUMP) { + _mesa_printf("Mesa pre-link fragment program:\n"); _mesa_print_program(&fragProg->Base); _mesa_print_program_parameters(ctx, &fragProg->Base); - printf("Mesa post-link fragment program:\n"); + _mesa_printf("Mesa post-link fragment program:\n"); _mesa_print_program(&shProg->FragmentProgram->Base); _mesa_print_program_parameters(ctx, &shProg->FragmentProgram->Base); } @@ -594,17 +692,25 @@ _slang_link(GLcontext *ctx, /* notify driver that a new vertex program has been compiled/linked */ ctx->Driver.ProgramStringNotify(ctx, GL_VERTEX_PROGRAM_ARB, &shProg->VertexProgram->Base); - if (MESA_VERBOSE & VERBOSE_GLSL_DUMP) { - printf("Mesa original vertex program:\n"); + if (ctx->Shader.Flags & GLSL_DUMP) { + _mesa_printf("Mesa pre-link vertex program:\n"); _mesa_print_program(&vertProg->Base); _mesa_print_program_parameters(ctx, &vertProg->Base); - printf("Mesa post-link vertex program:\n"); + _mesa_printf("Mesa post-link vertex program:\n"); _mesa_print_program(&shProg->VertexProgram->Base); _mesa_print_program_parameters(ctx, &shProg->VertexProgram->Base); } } + if (ctx->Shader.Flags & GLSL_DUMP) { + _mesa_printf("Varying vars:\n"); + _mesa_print_parameter_list(shProg->Varying); + if (shProg->InfoLog) { + _mesa_printf("Info Log: %s\n", shProg->InfoLog); + } + } + shProg->LinkStatus = (shProg->VertexProgram || shProg->FragmentProgram); } diff --git a/src/mesa/shader/slang/slang_log.c b/src/mesa/shader/slang/slang_log.c index 25f696f67ea..d7d2b4fbfd0 100644 --- a/src/mesa/shader/slang/slang_log.c +++ b/src/mesa/shader/slang/slang_log.c @@ -1,8 +1,9 @@ /* * Mesa 3-D graphics library - * Version: 6.5.3 + * Version: 7.3 * * Copyright (C) 2005-2007 Brian Paul All Rights Reserved. + * Copyright (C) 2009 VMware, Inc. All Rights Reserved. * * Permission is hereby granted, free of charge, to any person obtaining a * copy of this software and associated documentation files (the "Software"), @@ -43,11 +44,7 @@ void slang_info_log_destruct(slang_info_log * log) { if (!log->dont_free_text) -#if 0 - slang_alloc_free(log->text); -#else _mesa_free(log->text); -#endif } static int @@ -64,18 +61,10 @@ slang_info_log_message(slang_info_log * log, const char *prefix, if (log->text != NULL) { GLuint old_len = slang_string_length(log->text); log->text = (char *) -#if 0 - slang_alloc_realloc(log->text, old_len + 1, old_len + size); -#else _mesa_realloc(log->text, old_len + 1, old_len + size); -#endif } else { -#if 0 - log->text = (char *) (slang_alloc_malloc(size)); -#else log->text = (char *) (_mesa_malloc(size)); -#endif if (log->text != NULL) log->text[0] = '\0'; } @@ -88,10 +77,6 @@ slang_info_log_message(slang_info_log * log, const char *prefix, slang_string_concat(log->text, msg); slang_string_concat(log->text, "\n"); - if (MESA_VERBOSE & VERBOSE_GLSL) { - _mesa_printf("Mesa: GLSL %s", log->text); - } - return 1; } diff --git a/src/mesa/shader/slang/slang_mem.c b/src/mesa/shader/slang/slang_mem.c index 21d6bfce88d..9224578edb0 100644 --- a/src/mesa/shader/slang/slang_mem.c +++ b/src/mesa/shader/slang/slang_mem.c @@ -184,6 +184,7 @@ _slang_realloc(void *oldBuffer, GLuint oldSize, GLuint newSize) #else GET_CURRENT_CONTEXT(ctx); slang_mempool *pool = (slang_mempool *) ctx->Shader.MemPool; + (void) pool; if (newSize < oldSize) { return oldBuffer; @@ -235,6 +236,7 @@ _slang_free(void *addr) if (addr) { GET_CURRENT_CONTEXT(ctx); slang_mempool *pool = (slang_mempool *) ctx->Shader.MemPool; + (void) pool; ASSERT(is_valid_address(pool, addr)); } #endif diff --git a/src/mesa/shader/slang/slang_preprocess.c b/src/mesa/shader/slang/slang_preprocess.c index 786f6467c93..89aaa3a6213 100644 --- a/src/mesa/shader/slang/slang_preprocess.c +++ b/src/mesa/shader/slang/slang_preprocess.c @@ -1,8 +1,8 @@ /* * Mesa 3-D graphics library - * Version: 6.5.2 * - * Copyright (C) 2005-2006 Brian Paul All Rights Reserved. + * Copyright (C) 2005-2008 Brian Paul All Rights Reserved. + * Copyright (C) 2009 VMware, Inc. All Rights Reserved. * * Permission is hereby granted, free of charge, to any person obtaining a * copy of this software and associated documentation files (the "Software"), @@ -51,6 +51,9 @@ grammar_error_to_log (slang_info_log *log) GLint pos; grammar_get_last_error ((byte *) (buf), sizeof (buf), &pos); + if (buf[0] == 0) { + _mesa_snprintf(buf, sizeof(buf), "Preprocessor error"); + } slang_info_log_error (log, buf); } @@ -475,52 +478,112 @@ pp_cond_stack_reevaluate (pp_cond_stack *self) self->top->effective = self->top->current && self->top[1].effective; } -/* + +/** * Extension enables through #extension directive. * NOTE: Currently, only enable/disable state is stored. */ - typedef struct { - GLboolean MESA_shader_debug; /* GL_MESA_shader_debug enable */ - GLboolean ARB_texture_rectangle; /* GL_ARB_texture_rectangle enable */ + GLboolean ARB_draw_buffers; + GLboolean ARB_texture_rectangle; } pp_ext; -/* + +/** * Disable all extensions. Called at startup and on #extension all: disable. */ static GLvoid -pp_ext_disable_all (pp_ext *self) +pp_ext_disable_all(pp_ext *self) { - self->MESA_shader_debug = GL_FALSE; + _mesa_memset(self, 0, sizeof(self)); } + +/** + * Called during preprocessor initialization to set the initial enable/disable + * state of extensions. + */ static GLvoid -pp_ext_init (pp_ext *self) +pp_ext_init(pp_ext *self, const struct gl_extensions *extensions) { pp_ext_disable_all (self); - self->ARB_texture_rectangle = GL_TRUE; - /* Other initialization code goes here. */ + self->ARB_draw_buffers = GL_TRUE; + if (extensions->NV_texture_rectangle) + self->ARB_texture_rectangle = GL_TRUE; } +/** + * Called in response to #extension directives to enable/disable + * the named extension. + */ static GLboolean -pp_ext_set (pp_ext *self, const char *name, GLboolean enable) +pp_ext_set(pp_ext *self, const char *name, GLboolean enable) { - if (_mesa_strcmp (name, "MESA_shader_debug") == 0) - self->MESA_shader_debug = enable; + if (_mesa_strcmp (name, "GL_ARB_draw_buffers") == 0) + self->ARB_draw_buffers = enable; else if (_mesa_strcmp (name, "GL_ARB_texture_rectangle") == 0) self->ARB_texture_rectangle = enable; - /* Next extension name tests go here. */ else return GL_FALSE; return GL_TRUE; } -/* - * The state of preprocessor: current line, file and version number, list of all defined macros - * and the #if/#endif context. + +static void +pp_pragmas_init(struct gl_sl_pragmas *pragmas) +{ + pragmas->Optimize = GL_TRUE; + pragmas->Debug = GL_FALSE; +} + + +/** + * Called in response to #pragma. For example, "#pragma debug(on)" would + * call this function as pp_pragma("debug", "on"). + * \return GL_TRUE if pragma is valid, GL_FALSE if invalid */ +static GLboolean +pp_pragma(struct gl_sl_pragmas *pragmas, const char *pragma, const char *param) +{ +#if 0 + printf("#pragma %s %s\n", pragma, param); +#endif + if (_mesa_strcmp(pragma, "optimize") == 0) { + if (!param) + return GL_FALSE; /* missing required param */ + if (_mesa_strcmp(param, "on") == 0) { + pragmas->Optimize = GL_TRUE; + } + else if (_mesa_strcmp(param, "off") == 0) { + pragmas->Optimize = GL_FALSE; + } + else { + return GL_FALSE; /* invalid param */ + } + } + else if (_mesa_strcmp(pragma, "debug") == 0) { + if (!param) + return GL_FALSE; /* missing required param */ + if (_mesa_strcmp(param, "on") == 0) { + pragmas->Debug = GL_TRUE; + } + else if (_mesa_strcmp(param, "off") == 0) { + pragmas->Debug = GL_FALSE; + } + else { + return GL_FALSE; /* invalid param */ + } + } + /* all other pragmas are silently ignored */ + return GL_TRUE; +} + +/** + * The state of preprocessor: current line, file and version number, list + * of all defined macros and the #if/#endif context. + */ typedef struct { GLint line; @@ -533,7 +596,8 @@ typedef struct } pp_state; static GLvoid -pp_state_init (pp_state *self, slang_info_log *elog) +pp_state_init (pp_state *self, slang_info_log *elog, + const struct gl_extensions *extensions) { self->line = 0; self->file = 1; @@ -543,7 +607,7 @@ pp_state_init (pp_state *self, slang_info_log *elog) self->version = 110; #endif pp_symbols_init (&self->symbols); - pp_ext_init (&self->ext); + pp_ext_init (&self->ext, extensions); self->elog = elog; /* Initialize condition stack and create the global context. */ @@ -641,8 +705,10 @@ expand_symbol (expand_state *e, pp_symbol *symbol) SKIP_WHITE(e->input); /* Parse macro actual parameters. This can be anything, separated by a colon. - * TODO: What about nested/grouped parameters by parenthesis? */ + */ for (i = 0; i < symbol->parameters.count; i++) { + GLuint nested_paren_count = 0; /* track number of nested parentheses */ + if (*e->input == ')') { slang_info_log_error (e->state->elog, "preprocess error: unexpected ')'."); return GL_FALSE; @@ -650,8 +716,19 @@ expand_symbol (expand_state *e, pp_symbol *symbol) /* Eat all characters up to the comma or closing parentheses. */ pp_symbol_reset (&symbol->parameters.symbols[i]); - while (!IS_NULL(*e->input) && *e->input != ',' && *e->input != ')') + while (!IS_NULL(*e->input)) { + /* Exit loop only when all nested parens have been eaten. */ + if (nested_paren_count == 0 && (*e->input == ',' || *e->input == ')')) + break; + + /* Actually count nested parens here. */ + if (*e->input == '(') + nested_paren_count++; + else if (*e->input == ')') + nested_paren_count--; + slang_string_pushc (&symbol->parameters.symbols[i].replacement, *e->input++); + } /* If it was not the last paremeter, skip the comma. Otherwise, skip the * closing parentheses. */ @@ -837,9 +914,16 @@ parse_if (slang_string *output, const byte *prod, GLuint *pi, GLint *result, pp_ #define BEHAVIOR_WARN 3 #define BEHAVIOR_DISABLE 4 +#define PRAGMA_NO_PARAM 0 +#define PRAGMA_PARAM 1 + + static GLboolean -preprocess_source (slang_string *output, const char *source, grammar pid, grammar eid, - slang_info_log *elog) +preprocess_source (slang_string *output, const char *source, + grammar pid, grammar eid, + slang_info_log *elog, + const struct gl_extensions *extensions, + struct gl_sl_pragmas *pragmas) { static const char *predefined[] = { "__FILE__", @@ -860,7 +944,8 @@ preprocess_source (slang_string *output, const char *source, grammar pid, gramma return GL_FALSE; } - pp_state_init (&state, elog); + pp_state_init (&state, elog, extensions); + pp_pragmas_init (pragmas); /* add the predefined symbols to the symbol table */ for (i = 0; predefined[i]; i++) { @@ -913,9 +998,11 @@ preprocess_source (slang_string *output, const char *source, grammar pid, gramma else { const char *id; GLuint idlen; + GLubyte token; i++; - switch (prod[i++]) { + token = prod[i++]; + switch (token) { case TOKEN_END: /* End of source string. @@ -1132,6 +1219,25 @@ preprocess_source (slang_string *output, const char *source, grammar pid, gramma } break; + case TOKEN_PRAGMA: + { + GLint have_param; + const char *pragma, *param; + + pragma = (const char *) (&prod[i]); + i += _mesa_strlen(pragma) + 1; + have_param = (prod[i++] == PRAGMA_PARAM); + if (have_param) { + param = (const char *) (&prod[i]); + i += _mesa_strlen(param) + 1; + } + else { + param = NULL; + } + pp_pragma(pragmas, pragma, param); + } + break; + case TOKEN_LINE: id = (const char *) (&prod[i]); i += _mesa_strlen (id) + 1; @@ -1183,8 +1289,21 @@ error: return GL_FALSE; } + +/** + * Run preprocessor on source code. + * \param extensions indicates which GL extensions are enabled + * \param output the post-process results + * \param input the input text + * \param elog log to record warnings, errors + * \return GL_TRUE for success, GL_FALSE for error + */ GLboolean -_slang_preprocess_directives (slang_string *output, const char *input, slang_info_log *elog) +_slang_preprocess_directives(slang_string *output, + const char *input, + slang_info_log *elog, + const struct gl_extensions *extensions, + struct gl_sl_pragmas *pragmas) { grammar pid, eid; GLboolean success; @@ -1200,7 +1319,7 @@ _slang_preprocess_directives (slang_string *output, const char *input, slang_inf grammar_destroy (pid); return GL_FALSE; } - success = preprocess_source (output, input, pid, eid, elog); + success = preprocess_source (output, input, pid, eid, elog, extensions, pragmas); grammar_destroy (eid); grammar_destroy (pid); return success; diff --git a/src/mesa/shader/slang/slang_preprocess.h b/src/mesa/shader/slang/slang_preprocess.h index d8eb12e4ff2..f344820daef 100644 --- a/src/mesa/shader/slang/slang_preprocess.h +++ b/src/mesa/shader/slang/slang_preprocess.h @@ -1,8 +1,8 @@ /* * Mesa 3-D graphics library - * Version: 6.5.3 * - * Copyright (C) 2005-2007 Brian Paul All Rights Reserved. + * Copyright (C) 2005-2008 Brian Paul All Rights Reserved. + * Copyright (C) 2009 VMware, Inc. All Rights Reserved. * * Permission is hereby granted, free of charge, to any person obtaining a * copy of this software and associated documentation files (the "Software"), @@ -33,8 +33,9 @@ extern GLboolean _slang_preprocess_version (const char *, GLuint *, GLuint *, slang_info_log *); extern GLboolean -_slang_preprocess_directives (slang_string *output, const char *input, - slang_info_log *); - +_slang_preprocess_directives(slang_string *output, const char *input, + slang_info_log *, + const struct gl_extensions *extensions, + struct gl_sl_pragmas *pragmas); #endif /* SLANG_PREPROCESS_H */ diff --git a/src/mesa/shader/slang/slang_print.c b/src/mesa/shader/slang/slang_print.c index b88cefc283b..bf1475f91d9 100644 --- a/src/mesa/shader/slang/slang_print.c +++ b/src/mesa/shader/slang/slang_print.c @@ -278,7 +278,7 @@ slang_print_tree(const slang_operation *op, int indent) assert(op->num_children == 0 || op->num_children == 1); { slang_variable *v; - v = _slang_locate_variable(op->locals, op->a_id, GL_TRUE); + v = _slang_variable_locate(op->locals, op->a_id, GL_TRUE); if (v) { const slang_variable_scope *scope; spaces(indent); @@ -636,7 +636,7 @@ slang_print_tree(const slang_operation *op, int indent) case SLANG_OPER_CALL: #if 0 slang_function *fun - = _slang_locate_function(A->space.funcs, oper->a_id, + = _slang_function_locate(A->space.funcs, oper->a_id, oper->children, oper->num_children, &A->space, A->atoms); #endif @@ -653,6 +653,11 @@ slang_print_tree(const slang_operation *op, int indent) printf(")\n"); break; + case SLANG_OPER_METHOD: + spaces(indent); + printf("METHOD CALL %s.%s\n", (char *) op->a_obj, (char *) op->a_id); + break; + case SLANG_OPER_FIELD: spaces(indent); printf("FIELD %s of\n", (char*) op->a_id); diff --git a/src/mesa/shader/slang/slang_simplify.c b/src/mesa/shader/slang/slang_simplify.c index 6ef95c48f91..b8a21f642cb 100644 --- a/src/mesa/shader/slang/slang_simplify.c +++ b/src/mesa/shader/slang/slang_simplify.c @@ -135,7 +135,7 @@ _slang_simplify(slang_operation *oper, /* look for user-defined constant */ { slang_variable *var; - var = _slang_locate_variable(oper->locals, oper->a_id, GL_TRUE); + var = _slang_variable_locate(oper->locals, oper->a_id, GL_TRUE); if (var) { if (var->type.qualifier == SLANG_QUAL_CONST && var->initializer && @@ -380,7 +380,7 @@ _slang_cast_func_params(slang_operation *callOper, const slang_function *fun, /* Get type of arg[i] */ if (!slang_typeinfo_construct(&argType)) return GL_FALSE; - if (!_slang_typeof_operation_(&callOper->children[i], space, + if (!_slang_typeof_operation(&callOper->children[i], space, &argType, atoms, log)) { slang_typeinfo_destruct(&argType); return GL_FALSE; @@ -464,7 +464,7 @@ _slang_adapt_call(slang_operation *callOper, const slang_function *fun, /* Get type of arg[i] */ if (!slang_typeinfo_construct(&argType)) return GL_FALSE; - if (!_slang_typeof_operation_(&callOper->children[i], space, + if (!_slang_typeof_operation(&callOper->children[i], space, &argType, atoms, log)) { slang_typeinfo_destruct(&argType); return GL_FALSE; diff --git a/src/mesa/shader/slang/slang_storage.h b/src/mesa/shader/slang/slang_storage.h index d3047ee5164..1876a36dd63 100644 --- a/src/mesa/shader/slang/slang_storage.h +++ b/src/mesa/shader/slang/slang_storage.h @@ -26,7 +26,6 @@ #define SLANG_STORAGE_H #include "slang_compile.h" -#include "slang_typeinfo.h" /* diff --git a/src/mesa/shader/slang/slang_typeinfo.c b/src/mesa/shader/slang/slang_typeinfo.c index b2f0f149956..1ef43f58c02 100644 --- a/src/mesa/shader/slang/slang_typeinfo.c +++ b/src/mesa/shader/slang/slang_typeinfo.c @@ -23,7 +23,7 @@ */ /** - * \file slang_assemble_typeinfo.c + * \file slang_typeinfo.c * slang type info * \author Michal Krol */ @@ -130,7 +130,7 @@ _slang_is_swizzle(const char *field, GLuint rows, slang_swizzle * swz) * do not have duplicated fields. Returns GL_TRUE if this is a * swizzle mask. Returns GL_FALSE otherwise */ -GLboolean +static GLboolean _slang_is_swizzle_mask(const slang_swizzle * swz, GLuint rows) { GLuint i, c = 0; @@ -154,7 +154,7 @@ _slang_is_swizzle_mask(const slang_swizzle * swz, GLuint rows) * Combines (multiplies) two swizzles to form single swizzle. * Example: "vec.wzyx.yx" --> "vec.zw". */ -GLvoid +static void _slang_multiply_swizzles(slang_swizzle * dst, const slang_swizzle * left, const slang_swizzle * right) { @@ -166,6 +166,110 @@ _slang_multiply_swizzles(slang_swizzle * dst, const slang_swizzle * left, } +typedef struct +{ + const char *name; + slang_type_specifier_type type; +} type_specifier_type_name; + +static const type_specifier_type_name type_specifier_type_names[] = { + {"void", SLANG_SPEC_VOID}, + {"bool", SLANG_SPEC_BOOL}, + {"bvec2", SLANG_SPEC_BVEC2}, + {"bvec3", SLANG_SPEC_BVEC3}, + {"bvec4", SLANG_SPEC_BVEC4}, + {"int", SLANG_SPEC_INT}, + {"ivec2", SLANG_SPEC_IVEC2}, + {"ivec3", SLANG_SPEC_IVEC3}, + {"ivec4", SLANG_SPEC_IVEC4}, + {"float", SLANG_SPEC_FLOAT}, + {"vec2", SLANG_SPEC_VEC2}, + {"vec3", SLANG_SPEC_VEC3}, + {"vec4", SLANG_SPEC_VEC4}, + {"mat2", SLANG_SPEC_MAT2}, + {"mat3", SLANG_SPEC_MAT3}, + {"mat4", SLANG_SPEC_MAT4}, + {"mat2x3", SLANG_SPEC_MAT23}, + {"mat3x2", SLANG_SPEC_MAT32}, + {"mat2x4", SLANG_SPEC_MAT24}, + {"mat4x2", SLANG_SPEC_MAT42}, + {"mat3x4", SLANG_SPEC_MAT34}, + {"mat4x3", SLANG_SPEC_MAT43}, + {"sampler1D", SLANG_SPEC_SAMPLER1D}, + {"sampler2D", SLANG_SPEC_SAMPLER2D}, + {"sampler3D", SLANG_SPEC_SAMPLER3D}, + {"samplerCube", SLANG_SPEC_SAMPLERCUBE}, + {"sampler1DShadow", SLANG_SPEC_SAMPLER1DSHADOW}, + {"sampler2DShadow", SLANG_SPEC_SAMPLER2DSHADOW}, + {"sampler2DRect", SLANG_SPEC_SAMPLER2DRECT}, + {"sampler2DRectShadow", SLANG_SPEC_SAMPLER2DRECTSHADOW}, + {NULL, SLANG_SPEC_VOID} +}; + +slang_type_specifier_type +slang_type_specifier_type_from_string(const char *name) +{ + const type_specifier_type_name *p = type_specifier_type_names; + while (p->name != NULL) { + if (slang_string_compare(p->name, name) == 0) + break; + p++; + } + return p->type; +} + +const char * +slang_type_specifier_type_to_string(slang_type_specifier_type type) +{ + const type_specifier_type_name *p = type_specifier_type_names; + while (p->name != NULL) { + if (p->type == type) + break; + p++; + } + return p->name; +} + +/* slang_fully_specified_type */ + +int +slang_fully_specified_type_construct(slang_fully_specified_type * type) +{ + type->qualifier = SLANG_QUAL_NONE; + slang_type_specifier_ctr(&type->specifier); + return 1; +} + +void +slang_fully_specified_type_destruct(slang_fully_specified_type * type) +{ + slang_type_specifier_dtr(&type->specifier); +} + +int +slang_fully_specified_type_copy(slang_fully_specified_type * x, + const slang_fully_specified_type * y) +{ + slang_fully_specified_type z; + + if (!slang_fully_specified_type_construct(&z)) + return 0; + z.qualifier = y->qualifier; + z.precision = y->precision; + z.variant = y->variant; + z.centroid = y->centroid; + z.array_len = y->array_len; + if (!slang_type_specifier_copy(&z.specifier, &y->specifier)) { + slang_fully_specified_type_destruct(&z); + return 0; + } + slang_fully_specified_type_destruct(x); + *x = z; + return 1; +} + + + GLvoid slang_type_specifier_ctr(slang_type_specifier * self) { @@ -187,6 +291,21 @@ slang_type_specifier_dtr(slang_type_specifier * self) } } +slang_type_specifier * +slang_type_specifier_new(slang_type_specifier_type type, + struct slang_struct_ *_struct, + struct slang_type_specifier_ *_array) +{ + slang_type_specifier *spec = + (slang_type_specifier *) _slang_alloc(sizeof(slang_type_specifier)); + if (spec) { + spec->type = type; + spec->_struct = _struct; + spec->_array = _array; + } + return spec; +} + GLboolean slang_type_specifier_copy(slang_type_specifier * x, const slang_type_specifier * y) @@ -250,7 +369,7 @@ slang_type_specifier_equal(const slang_type_specifier * x, /** * As above, but allow float/int casting. */ -static GLboolean +GLboolean slang_type_specifier_compatible(const slang_type_specifier * x, const slang_type_specifier * y) { @@ -307,7 +426,7 @@ _slang_typeof_function(slang_atom a_name, { GLboolean error; - *funFound = _slang_locate_function(space->funcs, a_name, params, + *funFound = _slang_function_locate(space->funcs, a_name, params, num_params, space, atoms, log, &error); if (error) return GL_FALSE; @@ -362,14 +481,6 @@ typeof_math_call(const char *name, slang_operation *call, } } -GLboolean -_slang_typeof_operation(const slang_assemble_ctx * A, - slang_operation * op, - slang_typeinfo * ti) -{ - return _slang_typeof_operation_(op, &A->space, ti, A->atoms, A->log); -} - /** * Determine the return type of an operation. @@ -380,7 +491,7 @@ _slang_typeof_operation(const slang_assemble_ctx * A, * \return GL_TRUE for success, GL_FALSE if failure */ GLboolean -_slang_typeof_operation_(slang_operation * op, +_slang_typeof_operation(slang_operation * op, const slang_name_space * space, slang_typeinfo * ti, slang_atom_pool * atoms, @@ -412,7 +523,7 @@ _slang_typeof_operation_(slang_operation * op, case SLANG_OPER_DIVASSIGN: case SLANG_OPER_PREINCREMENT: case SLANG_OPER_PREDECREMENT: - if (!_slang_typeof_operation_(op->children, space, ti, atoms, log)) + if (!_slang_typeof_operation(op->children, space, ti, atoms, log)) return GL_FALSE; break; case SLANG_OPER_LITERAL_BOOL: @@ -479,7 +590,7 @@ _slang_typeof_operation_(slang_operation * op, case SLANG_OPER_VARIABLE_DECL: { slang_variable *var; - var = _slang_locate_variable(op->locals, op->a_id, GL_TRUE); + var = _slang_variable_locate(op->locals, op->a_id, GL_TRUE); if (!var) { slang_info_log_error(log, "undefined variable '%s'", (char *) op->a_id); @@ -490,12 +601,20 @@ _slang_typeof_operation_(slang_operation * op, return GL_FALSE; } ti->can_be_referenced = GL_TRUE; - ti->array_len = var->array_len; + if (var->type.specifier.type == SLANG_SPEC_ARRAY && + var->type.array_len >= 1) { + /* the datatype is an array, ex: float[3] x; */ + ti->array_len = var->type.array_len; + } + else { + /* the variable is an array, ex: float x[3]; */ + ti->array_len = var->array_len; + } } break; case SLANG_OPER_SEQUENCE: /* TODO: check [0] and [1] if they match */ - if (!_slang_typeof_operation_(&op->children[1], space, ti, atoms, log)) { + if (!_slang_typeof_operation(&op->children[1], space, ti, atoms, log)) { return GL_FALSE; } ti->can_be_referenced = GL_FALSE; @@ -509,7 +628,7 @@ _slang_typeof_operation_(slang_operation * op, /*case SLANG_OPER_ANDASSIGN: */ case SLANG_OPER_SELECT: /* TODO: check [1] and [2] if they match */ - if (!_slang_typeof_operation_(&op->children[1], space, ti, atoms, log)) { + if (!_slang_typeof_operation(&op->children[1], space, ti, atoms, log)) { return GL_FALSE; } ti->can_be_referenced = GL_FALSE; @@ -542,7 +661,7 @@ _slang_typeof_operation_(slang_operation * op, break; /*case SLANG_OPER_MODULUS: */ case SLANG_OPER_PLUS: - if (!_slang_typeof_operation_(op->children, space, ti, atoms, log)) + if (!_slang_typeof_operation(op->children, space, ti, atoms, log)) return GL_FALSE; ti->can_be_referenced = GL_FALSE; ti->is_swizzled = GL_FALSE; @@ -559,7 +678,7 @@ _slang_typeof_operation_(slang_operation * op, if (!slang_typeinfo_construct(&_ti)) return GL_FALSE; - if (!_slang_typeof_operation_(op->children, space, &_ti, atoms, log)) { + if (!_slang_typeof_operation(op->children, space, &_ti, atoms, log)) { slang_typeinfo_destruct(&_ti); return GL_FALSE; } @@ -583,7 +702,18 @@ _slang_typeof_operation_(slang_operation * op, } break; case SLANG_OPER_CALL: - if (op->fun) { + if (op->array_constructor) { + /* build array typeinfo */ + ti->spec.type = SLANG_SPEC_ARRAY; + ti->spec._array = (slang_type_specifier *) + _slang_alloc(sizeof(slang_type_specifier)); + slang_type_specifier_ctr(ti->spec._array); + + ti->spec._array->type = + slang_type_specifier_type_from_string((char *) op->a_id); + ti->array_len = op->num_children; + } + else if (op->fun) { /* we've resolved this call before */ slang_type_specifier_copy(&ti->spec, &op->fun->header.type.specifier); } @@ -630,20 +760,26 @@ _slang_typeof_operation_(slang_operation * op, } } break; + case SLANG_OPER_METHOD: + /* at this time, GLSL 1.20 only has one method: array.length() + * which returns an integer. + */ + ti->spec.type = SLANG_SPEC_INT; + break; case SLANG_OPER_FIELD: { slang_typeinfo _ti; if (!slang_typeinfo_construct(&_ti)) return GL_FALSE; - if (!_slang_typeof_operation_(op->children, space, &_ti, atoms, log)) { + if (!_slang_typeof_operation(op->children, space, &_ti, atoms, log)) { slang_typeinfo_destruct(&_ti); return GL_FALSE; } if (_ti.spec.type == SLANG_SPEC_STRUCT) { slang_variable *field; - field = _slang_locate_variable(_ti.spec._struct->fields, op->a_id, + field = _slang_variable_locate(_ti.spec._struct->fields, op->a_id, GL_FALSE); if (field == NULL) { slang_typeinfo_destruct(&_ti); @@ -742,7 +878,7 @@ _slang_typeof_operation_(slang_operation * op, break; case SLANG_OPER_POSTINCREMENT: case SLANG_OPER_POSTDECREMENT: - if (!_slang_typeof_operation_(op->children, space, ti, atoms, log)) + if (!_slang_typeof_operation(op->children, space, ti, atoms, log)) return GL_FALSE; ti->can_be_referenced = GL_FALSE; ti->is_swizzled = GL_FALSE; @@ -756,77 +892,6 @@ _slang_typeof_operation_(slang_operation * op, /** - * Lookup a function according to name and parameter count/types. - */ -slang_function * -_slang_locate_function(const slang_function_scope * funcs, slang_atom a_name, - slang_operation * args, GLuint num_args, - const slang_name_space * space, slang_atom_pool * atoms, - slang_info_log *log, GLboolean *error) -{ - slang_typeinfo arg_ti[100]; - GLuint i; - - *error = GL_FALSE; - - /* determine type of each argument */ - assert(num_args < 100); - for (i = 0; i < num_args; i++) { - if (!slang_typeinfo_construct(&arg_ti[i])) - return NULL; - if (!_slang_typeof_operation_(&args[i], space, &arg_ti[i], atoms, log)) { - return NULL; - } - } - - /* loop over function scopes */ - while (funcs) { - - /* look for function with matching name and argument/param types */ - for (i = 0; i < funcs->num_functions; i++) { - slang_function *f = &funcs->functions[i]; - const GLuint haveRetValue = _slang_function_has_return_value(f); - GLuint j; - - if (a_name != f->header.a_name) - continue; - if (f->param_count - haveRetValue != num_args) - continue; - - /* compare parameter / argument types */ - for (j = 0; j < num_args; j++) { - if (!slang_type_specifier_compatible(&arg_ti[j].spec, - &f->parameters->variables[j]->type.specifier)) { - /* param/arg types don't match */ - break; - } - - /* "out" and "inout" formal parameter requires the actual - * argument to be an l-value. - */ - if (!arg_ti[j].can_be_referenced && - (f->parameters->variables[j]->type.qualifier == SLANG_QUAL_OUT || - f->parameters->variables[j]->type.qualifier == SLANG_QUAL_INOUT)) { - /* param is not an lvalue! */ - *error = GL_TRUE; - return NULL; - } - } - - if (j == num_args) { - /* name and args match! */ - return f; - } - } - - funcs = funcs->outer_scope; - } - - return NULL; -} - - -/** * Determine if a type is a matrix. * \return GL_TRUE if is a matrix, GL_FALSE otherwise. */ diff --git a/src/mesa/shader/slang/slang_typeinfo.h b/src/mesa/shader/slang/slang_typeinfo.h index b3ad06b65c2..e6fecd350af 100644 --- a/src/mesa/shader/slang/slang_typeinfo.h +++ b/src/mesa/shader/slang/slang_typeinfo.h @@ -34,6 +34,9 @@ struct slang_operation_; +struct slang_name_space_; + + /** * Holds complete information about vector swizzle - the <swizzle> @@ -47,45 +50,45 @@ typedef struct slang_swizzle_ GLuint swizzle[4]; } slang_swizzle; -typedef struct slang_name_space_ -{ - struct slang_function_scope_ *funcs; - struct slang_struct_scope_ *structs; - struct slang_variable_scope_ *vars; -} slang_name_space; +extern GLboolean +_slang_is_swizzle(const char *field, GLuint rows, slang_swizzle *swz); -typedef struct slang_assemble_ctx_ +typedef enum slang_type_variant_ { - slang_atom_pool *atoms; - slang_name_space space; - struct gl_program *program; - slang_var_table *vartable; - slang_info_log *log; - struct slang_label_ *curFuncEndLabel; - struct slang_ir_node_ *CurLoop; - struct slang_function_ *CurFunction; -} slang_assemble_ctx; - - -extern struct slang_function_ * -_slang_locate_function(const struct slang_function_scope_ *funcs, - slang_atom name, struct slang_operation_ *params, - GLuint num_params, - const slang_name_space *space, - slang_atom_pool *atoms, slang_info_log *log, - GLboolean *error); + SLANG_VARIANT, /* the default */ + SLANG_INVARIANT /* indicates the "invariant" keyword */ +} slang_type_variant; -extern GLboolean -_slang_is_swizzle(const char *field, GLuint rows, slang_swizzle *swz); +typedef enum slang_type_centroid_ +{ + SLANG_CENTER, /* the default */ + SLANG_CENTROID /* indicates the "centroid" keyword */ +} slang_type_centroid; -extern GLboolean -_slang_is_swizzle_mask(const slang_swizzle *swz, GLuint rows); -extern GLvoid -_slang_multiply_swizzles(slang_swizzle *, const slang_swizzle *, - const slang_swizzle *); +typedef enum slang_type_qualifier_ +{ + SLANG_QUAL_NONE, + SLANG_QUAL_CONST, + SLANG_QUAL_ATTRIBUTE, + SLANG_QUAL_VARYING, + SLANG_QUAL_UNIFORM, + SLANG_QUAL_OUT, + SLANG_QUAL_INOUT, + SLANG_QUAL_FIXEDOUTPUT, /* internal */ + SLANG_QUAL_FIXEDINPUT /* internal */ +} slang_type_qualifier; + + +typedef enum slang_type_precision_ +{ + SLANG_PREC_DEFAULT, + SLANG_PREC_LOW, + SLANG_PREC_MEDIUM, + SLANG_PREC_HIGH +} slang_type_precision; /** @@ -128,14 +131,21 @@ typedef enum slang_type_specifier_type_ } slang_type_specifier_type; +extern slang_type_specifier_type +slang_type_specifier_type_from_string(const char *); + +extern const char * +slang_type_specifier_type_to_string(slang_type_specifier_type); + + /** * Describes more sophisticated types, like structs and arrays. */ typedef struct slang_type_specifier_ { slang_type_specifier_type type; - struct slang_struct_ *_struct; /**< used if type == spec_struct */ - struct slang_type_specifier_ *_array; /**< used if type == spec_array */ + struct slang_struct_ *_struct; /**< if type == SLANG_SPEC_STRUCT */ + struct slang_type_specifier_ *_array; /**< if type == SLANG_SPEC_ARRAY */ } slang_type_specifier; @@ -145,6 +155,12 @@ slang_type_specifier_ctr(slang_type_specifier *); extern GLvoid slang_type_specifier_dtr(slang_type_specifier *); +extern slang_type_specifier * +slang_type_specifier_new(slang_type_specifier_type type, + struct slang_struct_ *_struct, + struct slang_type_specifier_ *_array); + + extern GLboolean slang_type_specifier_copy(slang_type_specifier *, const slang_type_specifier *); @@ -153,6 +169,33 @@ slang_type_specifier_equal(const slang_type_specifier *, const slang_type_specifier *); +extern GLboolean +slang_type_specifier_compatible(const slang_type_specifier * x, + const slang_type_specifier * y); + + +typedef struct slang_fully_specified_type_ +{ + slang_type_qualifier qualifier; + slang_type_specifier specifier; + slang_type_precision precision; + slang_type_variant variant; + slang_type_centroid centroid; + GLint array_len; /**< -1 if not an array type */ +} slang_fully_specified_type; + +extern int +slang_fully_specified_type_construct(slang_fully_specified_type *); + +extern void +slang_fully_specified_type_destruct(slang_fully_specified_type *); + +extern int +slang_fully_specified_type_copy(slang_fully_specified_type *, + const slang_fully_specified_type *); + + + typedef struct slang_typeinfo_ { GLboolean can_be_referenced; @@ -169,19 +212,9 @@ extern GLvoid slang_typeinfo_destruct(slang_typeinfo *); -/** - * Retrieves type information about an operation. - * Returns GL_TRUE on success. - * Returns GL_FALSE otherwise. - */ -extern GLboolean -_slang_typeof_operation(const slang_assemble_ctx *, - struct slang_operation_ *, - slang_typeinfo *); - extern GLboolean -_slang_typeof_operation_(struct slang_operation_ *, - const slang_name_space *, +_slang_typeof_operation(struct slang_operation_ *, + const struct slang_name_space_ *, slang_typeinfo *, slang_atom_pool *, slang_info_log *log); diff --git a/src/mesa/shader/slang/slang_vartable.c b/src/mesa/shader/slang/slang_vartable.c index 95971a70a93..a4ebacc0936 100644 --- a/src/mesa/shader/slang/slang_vartable.c +++ b/src/mesa/shader/slang/slang_vartable.c @@ -4,6 +4,7 @@ #include "shader/prog_print.h" #include "slang_compile.h" #include "slang_compile_variable.h" +#include "slang_emit.h" #include "slang_mem.h" #include "slang_vartable.h" #include "slang_ir.h" @@ -72,9 +73,8 @@ _slang_delete_var_table(slang_var_table *vt) /** - * Create new table, put at head, return ptr to it. - * XXX we should take a maxTemps parameter to indicate how many temporaries - * are available for the current shader/program target. + * Create new table on top of vartable stack. + * Used when we enter a {} block. */ void _slang_push_var_table(slang_var_table *vt) @@ -95,7 +95,8 @@ _slang_push_var_table(slang_var_table *vt) /** - * Destroy given table, return ptr to Parent + * Pop top entry from variable table. + * Used when we leave a {} block. */ void _slang_pop_var_table(slang_var_table *vt) @@ -107,7 +108,7 @@ _slang_pop_var_table(slang_var_table *vt) /* free the storage allocated for each variable */ for (i = 0; i < t->NumVars; i++) { - slang_ir_storage *store = (slang_ir_storage *) t->Vars[i]->aux; + slang_ir_storage *store = t->Vars[i]->store; GLint j; GLuint comp; if (dbg) printf(" Free var %s, size %d at %d.%s\n", @@ -125,10 +126,12 @@ _slang_pop_var_table(slang_var_table *vt) else comp = 0; - assert(store->Index >= 0); - for (j = 0; j < store->Size; j++) { - assert(t->Temps[store->Index * 4 + j + comp] == VAR); - t->Temps[store->Index * 4 + j + comp] = FREE; + /* store->Index may be -1 if we run out of registers */ + if (store->Index >= 0) { + for (j = 0; j < store->Size; j++) { + assert(t->Temps[store->Index * 4 + j + comp] == VAR); + t->Temps[store->Index * 4 + j + comp] = FREE; + } } store->Index = -1; } @@ -156,7 +159,7 @@ _slang_pop_var_table(slang_var_table *vt) /** - * Add a new variable to the given symbol table. + * Add a new variable to the given var/symbol table. */ void _slang_add_variable(slang_var_table *vt, slang_variable *v) @@ -165,7 +168,7 @@ _slang_add_variable(slang_var_table *vt, slang_variable *v) assert(vt); t = vt->Top; assert(t); - if (dbg) printf("Adding var %s, store %p\n", (char *) v->a_name, v->aux); + if (dbg) printf("Adding var %s, store %p\n", (char *) v->a_name, (void *) v->store); t->Vars = (slang_variable **) _slang_realloc(t->Vars, t->NumVars * sizeof(slang_variable *), @@ -214,6 +217,7 @@ alloc_reg(slang_var_table *vt, GLint size, GLboolean isTemp) for (i = 0; i <= vt->MaxRegisters * 4 - size; i += step) { GLuint found = 0; for (j = 0; j < (GLuint) size; j++) { + assert(i + j < 4 * MAX_PROGRAM_TEMPS); if (i + j < vt->MaxRegisters * 4 && t->Temps[i + j] == FREE) { found++; } @@ -225,13 +229,17 @@ alloc_reg(slang_var_table *vt, GLint size, GLboolean isTemp) /* found block of size free regs */ if (size > 1) assert(i % 4 == 0); - for (j = 0; j < (GLuint) size; j++) + for (j = 0; j < (GLuint) size; j++) { + assert(i + j < 4 * MAX_PROGRAM_TEMPS); t->Temps[i + j] = isTemp ? TEMP : VAR; + } assert(i < MAX_PROGRAM_TEMPS * 4); t->ValSize[i] = size; return i; } } + + /* if we get here, we ran out of registers */ return -1; } @@ -259,21 +267,7 @@ _slang_alloc_var(slang_var_table *vt, slang_ir_storage *store) return GL_FALSE; store->Index = i / 4; - if (store->Size == 1) { - const GLuint comp = i % 4; - store->Swizzle = MAKE_SWIZZLE4(comp, comp, comp, comp); - } - else if (store->Size == 2) { - store->Swizzle = MAKE_SWIZZLE4(SWIZZLE_X, SWIZZLE_Y, - SWIZZLE_NIL, SWIZZLE_NIL); - } - else if (store->Size == 3) { - store->Swizzle = MAKE_SWIZZLE4(SWIZZLE_X, SWIZZLE_Y, - SWIZZLE_Z, SWIZZLE_NIL); - } - else { - store->Swizzle = SWIZZLE_NOOP; - } + store->Swizzle = _slang_var_swizzle(store->Size, i % 4); if (dbg) printf("Alloc var storage sz %d at %d.%s (level %d) store %p\n", @@ -301,20 +295,7 @@ _slang_alloc_temp(slang_var_table *vt, slang_ir_storage *store) 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); - } - 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; - } + store->Swizzle = _slang_var_swizzle(store->Size, i % 4); if (dbg) printf("Alloc temp sz %d at %d.%s (level %d) store %p\n", store->Size, store->Index, diff --git a/src/mesa/shader/slang/slang_vartable.h b/src/mesa/shader/slang/slang_vartable.h index 8a3b992c969..94bcd63f45a 100644 --- a/src/mesa/shader/slang/slang_vartable.h +++ b/src/mesa/shader/slang/slang_vartable.h @@ -2,7 +2,7 @@ #ifndef SLANG_VARTABLE_H #define SLANG_VARTABLE_H -struct _slang_ir_storage; +struct slang_ir_storage_; typedef struct slang_var_table_ slang_var_table; @@ -27,16 +27,16 @@ extern struct slang_variable_ * _slang_find_variable(const slang_var_table *t, slang_atom name); extern GLboolean -_slang_alloc_var(slang_var_table *t, struct _slang_ir_storage *store); +_slang_alloc_var(slang_var_table *t, struct slang_ir_storage_ *store); extern GLboolean -_slang_alloc_temp(slang_var_table *t, struct _slang_ir_storage *store); +_slang_alloc_temp(slang_var_table *t, struct slang_ir_storage_ *store); extern void -_slang_free_temp(slang_var_table *t, struct _slang_ir_storage *store); +_slang_free_temp(slang_var_table *t, struct slang_ir_storage_ *store); extern GLboolean -_slang_is_temp(const slang_var_table *t, const struct _slang_ir_storage *store); +_slang_is_temp(const slang_var_table *t, const struct slang_ir_storage_ *store); #endif /* SLANG_VARTABLE_H */ |