diff options
Diffstat (limited to 'src/mesa/shader/slang')
29 files changed, 4603 insertions, 3651 deletions
diff --git a/src/mesa/shader/slang/descrip.mms b/src/mesa/shader/slang/descrip.mms new file mode 100644 index 00000000000..6eefbcf5bdd --- /dev/null +++ b/src/mesa/shader/slang/descrip.mms @@ -0,0 +1,68 @@ +# Makefile for core library for VMS +# contributed by Jouk Jansen [email protected] +# Last revision : 3 October 2007 + +.first + define gl [----.include.gl] + define math [--.math] + define swrast [--.swrast] + define array_cache [--.array_cache] + define main [--.main] + define glapi [--.glapi] + define shader [--.shader] + +.include [----]mms-config. + +##### MACROS ##### + +VPATH = RCS + +INCDIR = [----.include],[--.main],[--.glapi],[-.slang],[-.grammar],[-] +LIBDIR = [----.lib] +CFLAGS = /include=($(INCDIR),[])/define=(PTHREADS=1)/name=(as_is,short)/float=ieee/ieee=denorm + +SOURCES = \ + slang_compile.c,slang_preprocess.c + +OBJECTS = slang_builtin.obj,slang_codegen.obj,slang_compile.obj,\ + slang_compile_function.obj,slang_compile_operation.obj,\ + slang_compile_struct.obj,slang_compile_variable.obj,slang_emit.obj,\ + slang_ir.obj,slang_label.obj,slang_library_noise.obj,slang_link.obj,\ + slang_log.obj,slang_mem.obj,slang_preprocess.obj,slang_print.obj,\ + slang_simplify.obj,slang_storage.obj,slang_typeinfo.obj,\ + slang_utility.obj,slang_vartable.obj + +##### RULES ##### + +VERSION=Mesa V3.4 + +##### TARGETS ##### +# Make the library +$(LIBDIR)$(GL_LIB) : $(OBJECTS) + @ library $(LIBDIR)$(GL_LIB) $(OBJECTS) + +clean : + purge + delete *.obj;* + +slang_builtin.obj : slang_builtin.c +slang_codegen.obj : slang_codegen.c +slang_compile.obj : slang_compile.c +slang_compile_function.obj : slang_compile_function.c +slang_compile_operation.obj : slang_compile_operation.c +slang_compile_struct.obj : slang_compile_struct.c +slang_compile_variable.obj : slang_compile_variable.c +slang_emit.obj : slang_emit.c +slang_ir.obj : slang_ir.c +slang_label.obj : slang_label.c +slang_library_noise.obj : slang_library_noise.c +slang_link.obj : slang_link.c +slang_log.obj : slang_log.c +slang_mem.obj : slang_mem.c +slang_preprocess.obj : slang_preprocess.c +slang_print.obj : slang_print.c +slang_simplify.obj : slang_simplify.c +slang_storage.obj : slang_storage.c +slang_typeinfo.obj : slang_typeinfo.c +slang_utility.obj : slang_utility.c +slang_vartable.obj : slang_vartable.c 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 15e3a3f5775..ad2ef34909a 100644 --- a/src/mesa/shader/slang/library/slang_120_core_gc.h +++ b/src/mesa/shader/slang/library/slang_120_core_gc.h @@ -2,725 +2,756 @@ /* DO NOT EDIT - THIS FILE IS AUTOMATICALLY GENERATED FROM THE FOLLOWING FILE: */ /* slang_120_core.gc */ -4,1,0,0,26,1,1,1,0,0,9,102,48,48,0,0,1,1,0,0,9,102,49,48,0,0,1,1,0,0,9,102,50,48,0,0,1,1,0,0,9,102, -48,49,0,0,1,1,0,0,9,102,49,49,0,0,1,1,0,0,9,102,50,49,0,0,0,1,9,18,95,95,114,101,116,86,97,108,0, 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+18,109,0,16,10,49,0,57,59,121,0,0,18,109,0,16,10,50,0,57,59,121,0,0,18,109,0,16,8,48,0,57,59,122,0, +0,18,109,0,16,10,49,0,57,59,122,0,0,18,109,0,16,10,50,0,57,59,122,0,0,18,109,0,16,8,48,0,57,59,119, +0,0,18,109,0,16,10,49,0,57,59,119,0,0,18,109,0,16,10,50,0,57,59,119,0,0,0,0,0,0 diff --git a/src/mesa/shader/slang/library/slang_builtin_120_fragment_gc.h b/src/mesa/shader/slang/library/slang_builtin_120_fragment_gc.h index 72d86fb25dd..5532678fe55 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 */ -4,2,2,3,0,10,1,103,108,95,80,111,105,110,116,67,111,111,114,100,0,0,0,0 +4,2,2,90,95,3,0,10,221,1,103,108,95,80,111,105,110,116,67,111,111,114,100,0,0,0,0 diff --git a/src/mesa/shader/slang/library/slang_common_builtin.gc b/src/mesa/shader/slang/library/slang_common_builtin.gc index 561e94f6bab..a051c53eea3 100644 --- a/src/mesa/shader/slang/library/slang_common_builtin.gc +++ b/src/mesa/shader/slang/library/slang_common_builtin.gc @@ -47,7 +47,6 @@ uniform mat4 gl_ModelViewProjectionMatrix; uniform mat4 gl_TextureMatrix[gl_MaxTextureCoords]; uniform mat3 gl_NormalMatrix; -uniform mat3 __NormalMatrixTranspose; // Mesa only uniform mat4 gl_ModelViewMatrixInverse; uniform mat4 gl_ProjectionMatrixInverse; 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 69da18e268e..1ee776984fb 100644 --- a/src/mesa/shader/slang/library/slang_common_builtin_gc.h +++ b/src/mesa/shader/slang/library/slang_common_builtin_gc.h @@ -2,823 +2,863 @@ /* DO NOT EDIT - THIS FILE IS AUTOMATICALLY GENERATED FROM THE FOLLOWING FILE: */ /* slang_common_builtin.gc */ 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a/src/mesa/shader/slang/library/slang_pp_directives.syn b/src/mesa/shader/slang/library/slang_pp_directives.syn index d4a321034d1..d4a321034d1 100755..100644 --- a/src/mesa/shader/slang/library/slang_pp_directives.syn +++ b/src/mesa/shader/slang/library/slang_pp_directives.syn diff --git a/src/mesa/shader/slang/library/slang_pp_expression.syn b/src/mesa/shader/slang/library/slang_pp_expression.syn index bfdb220bf5c..bfdb220bf5c 100755..100644 --- a/src/mesa/shader/slang/library/slang_pp_expression.syn +++ b/src/mesa/shader/slang/library/slang_pp_expression.syn diff --git a/src/mesa/shader/slang/library/slang_shader.syn b/src/mesa/shader/slang/library/slang_shader.syn index ef4b410669c..760dfbcea7e 100644 --- a/src/mesa/shader/slang/library/slang_shader.syn +++ b/src/mesa/shader/slang/library/slang_shader.syn @@ -32,18 +32,28 @@ * usage: * syn2c slang_shader.syn > slang_shader_syn.h * - * when modifying or extending this file, several things must be taken into consideration: - * - when adding new operators that were marked as reserved in the initial specification, - * one must only uncomment particular lines of code that refer to operators being added; - * - when adding new shader target, one must reserve new value for shader_type register and - * use it in .if constructs for symbols that are exclusive for that shader; - * - some symbols mimic output of other symbols - the best example is the "for" construct: - * expression "for (foo(); ; bar())" is seen as "for (foo(); true; bar())" by the output - * processor - hence, special care must be taken when rearranging output of essential symbols; - * - order of single-quoted tokens does matter in alternatives - so do not parse "<" operator - * before "<<" and "<<" before "<<="; - * - all double-quoted tokens are internally preprocessed to eliminate problems with parsing - * strings that are prefixes of other strings, like "sampler1D" and "sampler1DShadow"; + * when modifying or extending this file, several things must be taken into + * consideration: + * + * - when adding new operators that were marked as reserved in the + * initial specification, one must only uncomment particular lines of + * code that refer to operators being added; + * + * - when adding new shader targets, one must reserve a new value for + * shader_type register and use it in .if constructs for symbols that + * are exclusive for that shader; + * + * - some symbols mimic output of other symbols - the best example is + * the "for" construct: expression "for (foo(); ; bar())" is seen as + * "for (foo(); true; bar())" by the output processor - hence, special + * care must be taken when rearranging output of essential symbols; + * + * - order of single-quoted tokens does matter in alternatives - so do not + * parse "<" operator before "<<" and "<<" before "<<="; + * + * - all double-quoted tokens are internally preprocessed to eliminate + * problems with parsing strings that are prefixes of other strings, + * like "sampler1D" and "sampler1DShadow"; */ .syntax translation_unit; @@ -124,6 +134,14 @@ .emtcode TYPE_QUALIFIER_FIXEDOUTPUT 5 .emtcode TYPE_QUALIFIER_FIXEDINPUT 6 +/* invariant qualifier */ +.emtcode TYPE_VARIANT 90 +.emtcode TYPE_INVARIANT 91 + +/* centroid qualifier */ +.emtcode TYPE_CENTER 95 +.emtcode TYPE_CENTROID 96 + /* type specifier */ .emtcode TYPE_SPECIFIER_VOID 0 .emtcode TYPE_SPECIFIER_BOOL 1 @@ -160,6 +178,9 @@ .emtcode TYPE_SPECIFIER_MAT34 30 .emtcode TYPE_SPECIFIER_MAT43 31 +/* optional array size. Ex: "float[6] myarray;" */ +.emtcode TYPE_ARRAY_SIZE 220 +.emtcode TYPE_NO_ARRAY_SIZE 221 /* structure field */ .emtcode FIELD_NONE 0 @@ -230,6 +251,7 @@ .emtcode OP_POSTINCREMENT 60 .emtcode OP_POSTDECREMENT 61 .emtcode OP_PRECISION 62 +.emtcode OP_METHOD 63 /* parameter qualifier */ .emtcode PARAM_QUALIFIER_IN 0 @@ -255,44 +277,49 @@ .errtext INVALID_PRECISION_TYPE "2007: Invalid precision type '$err_token$'." -/* tells whether the shader that is being parsed is a built-in shader or not */ -/* 0 - normal behaviour */ -/* 1 - accepts constructor and operator definitions and __asm statements */ -/* the implementation will set it to 1 when compiling internal built-in shaders */ +/* + * tells whether the shader that is being parsed is a built-in shader or not + * 0 - normal behaviour + * 1 - accepts constructor and operator definitions and __asm statements + * the implementation will set it to 1 when compiling internal built-in shaders + */ .regbyte parsing_builtin 0 -/* holds the type of the shader being parsed; possible values are listed below */ -/* FRAGMENT_SHADER 1 */ -/* VERTEX_SHADER 2 */ -/* shader type is set by the caller before parsing */ +/* + * holds the type of the shader being parsed; possible values are + * listed below. + * FRAGMENT_SHADER 1 + * VERTEX_SHADER 2 + * shader type is set by the caller before parsing + */ .regbyte shader_type 0 /* - <variable_identifier> ::= <identifier> -*/ + * <variable_identifier> ::= <identifier> + */ variable_identifier identifier .emit OP_PUSH_IDENTIFIER; /* - <primary_expression> ::= <variable_identifier> - | <intconstant> - | <floatconstant> - | <boolconstant> - | "(" <expression> ")" -*/ + * <primary_expression> ::= <variable_identifier> + * | <intconstant> + * | <floatconstant> + * | <boolconstant> + * | "(" <expression> ")" + */ primary_expression floatconstant .or boolconstant .or intconstant .or variable_identifier .or primary_expression_1; primary_expression_1 lparen .and expression .and rparen; /* - <postfix_expression> ::= <primary_expression> - | <postfix_expression> "[" <integer_expression> "]" - | <function_call> - | <postfix_expression> "." <field_selection> - | <postfix_expression> "++" - | <postfix_expression> "--" -*/ + * <postfix_expression> ::= <primary_expression> + * | <postfix_expression> "[" <integer_expression> "]" + * | <function_call> + * | <postfix_expression> "." <field_selection> + * | <postfix_expression> "++" + * | <postfix_expression> "--" + */ postfix_expression postfix_expression_1 .and .loop postfix_expression_2; postfix_expression_1 @@ -307,21 +334,40 @@ postfix_expression_4 dot .and field_selection .emit OP_FIELD; /* - <integer_expression> ::= <expression> -*/ + * <integer_expression> ::= <expression> + */ integer_expression expression; /* - <function_call> ::= <function_call_generic> -*/ + * <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; /* - <function_call_generic> ::= <function_call_header_with_parameters> ")" - | <function_call_header_no_parameters> ")" -*/ + * <function_call_generic> ::= <function_call_header_with_parameters> ")" + * | <function_call_header_no_parameters> ")" + */ function_call_generic function_call_generic_1 .or function_call_generic_2; function_call_generic_1 @@ -330,19 +376,18 @@ function_call_generic_2 function_call_header_no_parameters .and rparen .error RPAREN_EXPECTED; /* - <function_call_header_no_parameters>::= <function_call_header> "void" - | <function_call_header> -*/ + * <function_call_header_no_parameters>::= <function_call_header> "void" + * | <function_call_header> + */ function_call_header_no_parameters function_call_header .and function_call_header_no_parameters_1; function_call_header_no_parameters_1 "void" .or .true; /* - <function_call_header_with_parameters>::= <function_call_header> <assignment_expression> - | <function_call_header_with_parameters> "," - <assignment_expression> -*/ + * <function_call_header_with_parameters> ::= <function_call_header> <assignment_expression> + * | <function_call_header_with_parameters> "," <assignment_expression> + */ function_call_header_with_parameters function_call_header .and assignment_expression .and .true .emit OP_END .and .loop function_call_header_with_parameters_1; @@ -350,31 +395,31 @@ function_call_header_with_parameters_1 comma .and assignment_expression .and .true .emit OP_END; /* - <function_call_header> ::= <function_identifier> "(" -*/ + * <function_call_header> ::= <function_identifier> "(" + */ function_call_header function_identifier .and lparen; /* - <function_identifier> ::= <constructor_identifier> - | <identifier> - -note: <constructor_identifier> has been deleted -*/ + * <function_identifier> ::= <constructor_identifier> + * | <identifier> + * + * note: <constructor_identifier> has been deleted + */ function_identifier identifier; /* - <unary_expression> ::= <postfix_expression> - | "++" <unary_expression> - | "--" <unary_expression> - | <unary_operator> <unary_expression> - - <unary_operator> ::= "+" - | "-" - | "!" - | "~" // reserved -*/ + * <unary_expression> ::= <postfix_expression> + * | "++" <unary_expression> + * | "--" <unary_expression> + * | <unary_operator> <unary_expression> + * + * <unary_operator> ::= "+" + * | "-" + * | "!" + * | "~" // reserved + */ unary_expression postfix_expression .or unary_expression_1 .or unary_expression_2 .or unary_expression_3 .or unary_expression_4 .or unary_expression_5/* .or unary_expression_6*/; @@ -392,11 +437,11 @@ unary_expression_5 tilde .and unary_expression .and .true .emit OP_COMPLEMENT;*/ /* - <multiplicative_expression> ::= <unary_expression> - | <multiplicative_expression> "*" <unary_expression> - | <multiplicative_expression> "/" <unary_expression> - | <multiplicative_expression> "%" <unary_expression> // reserved -*/ + * <multiplicative_expression> ::= <unary_expression> + * | <multiplicative_expression> "*" <unary_expression> + * | <multiplicative_expression> "/" <unary_expression> + * | <multiplicative_expression> "%" <unary_expression> // reserved + */ multiplicative_expression unary_expression .and .loop multiplicative_expression_1; multiplicative_expression_1 @@ -409,10 +454,10 @@ multiplicative_expression_3 percent .and unary_expression .and .true .emit OP_MODULUS;*/ /* - <additive_expression> ::= <multiplicative_expression> - | <additive_expression> "+" <multiplicative_expression> - | <additive_expression> "-" <multiplicative_expression> -*/ + * <additive_expression> ::= <multiplicative_expression> + * | <additive_expression> "+" <multiplicative_expression> + * | <additive_expression> "-" <multiplicative_expression> + */ additive_expression multiplicative_expression .and .loop additive_expression_1; additive_expression_1 @@ -423,10 +468,10 @@ additive_expression_3 minus .and multiplicative_expression .and .true .emit OP_SUBTRACT; /* - <shift_expression> ::= <additive_expression> - | <shift_expression> "<<" <additive_expression> // reserved - | <shift_expression> ">>" <additive_expression> // reserved -*/ + * <shift_expression> ::= <additive_expression> + * | <shift_expression> "<<" <additive_expression> // reserved + * | <shift_expression> ">>" <additive_expression> // reserved + */ shift_expression additive_expression/* .and .loop shift_expression_1*/; /*shift_expression_1 @@ -437,12 +482,12 @@ shift_expression greatergreater .and additive_expression .and .true .emit OP_RSHIFT;*/ /* - <relational_expression> ::= <shift_expression> - | <relational_expression> "<" <shift_expression> - | <relational_expression> ">" <shift_expression> - | <relational_expression> "<=" <shift_expression> - | <relational_expression> ">=" <shift_expression> -*/ + * <relational_expression> ::= <shift_expression> + * | <relational_expression> "<" <shift_expression> + * | <relational_expression> ">" <shift_expression> + * | <relational_expression> "<=" <shift_expression> + * | <relational_expression> ">=" <shift_expression> + */ relational_expression shift_expression .and .loop relational_expression_1; relational_expression_1 @@ -458,10 +503,10 @@ relational_expression_5 greater .and shift_expression .and .true .emit OP_GREATER; /* - <equality_expression> ::= <relational_expression> - | <equality_expression> "==" <relational_expression> - | <equality_expression> "!=" <relational_expression> -*/ + * <equality_expression> ::= <relational_expression> + * | <equality_expression> "==" <relational_expression> + * | <equality_expression> "!=" <relational_expression> + */ equality_expression relational_expression .and .loop equality_expression_1; equality_expression_1 @@ -472,86 +517,84 @@ equality_expression_3 bangequals .and relational_expression .and .true .emit OP_NOTEQUAL; /* - <and_expression> ::= <equality_expression> - | <and_expression> "&" <equality_expression> // reserved -*/ + * <and_expression> ::= <equality_expression> + * | <and_expression> "&" <equality_expression> // reserved + */ and_expression equality_expression/* .and .loop and_expression_1*/; /*and_expression_1 ampersand .and equality_expression .and .true .emit OP_BITAND;*/ /* - <exclusive_or_expression> ::= <and_expression> - | <exclusive_or_expression> "^" <and_expression> // reserved -*/ + * <exclusive_or_expression> ::= <and_expression> + * | <exclusive_or_expression> "^" <and_expression> // reserved + */ exclusive_or_expression and_expression/* .and .loop exclusive_or_expression_1*/; /*exclusive_or_expression_1 caret .and and_expression .and .true .emit OP_BITXOR;*/ /* - <inclusive_or_expression> ::= <exclusive_or_expression> - | <inclusive_or_expression> "|" <exclusive_or_expression> // reserved -*/ + * <inclusive_or_expression> ::= <exclusive_or_expression> + * | <inclusive_or_expression> "|" <exclusive_or_expression> // reserved + */ inclusive_or_expression exclusive_or_expression/* .and .loop inclusive_or_expression_1*/; /*inclusive_or_expression_1 bar .and exclusive_or_expression .and .true .emit OP_BITOR;*/ /* - <logical_and_expression> ::= <inclusive_or_expression> - | <logical_and_expression> "&&" <inclusive_or_expression> -*/ + * <logical_and_expression> ::= <inclusive_or_expression> + * | <logical_and_expression> "&&" <inclusive_or_expression> + */ logical_and_expression inclusive_or_expression .and .loop logical_and_expression_1; logical_and_expression_1 ampersandampersand .and inclusive_or_expression .and .true .emit OP_LOGICALAND; /* - <logical_xor_expression> ::= <logical_and_expression> - | <logical_xor_expression> "^^" <logical_and_expression> -*/ + * <logical_xor_expression> ::= <logical_and_expression> + * | <logical_xor_expression> "^^" <logical_and_expression> + */ logical_xor_expression logical_and_expression .and .loop logical_xor_expression_1; logical_xor_expression_1 caretcaret .and logical_and_expression .and .true .emit OP_LOGICALXOR; /* - <logical_or_expression> ::= <logical_xor_expression> - | <logical_or_expression> "||" <logical_xor_expression> -*/ + * <logical_or_expression> ::= <logical_xor_expression> + * | <logical_or_expression> "||" <logical_xor_expression> + */ logical_or_expression logical_xor_expression .and .loop logical_or_expression_1; logical_or_expression_1 barbar .and logical_xor_expression .and .true .emit OP_LOGICALOR; /* - <conditional_expression> ::= <logical_or_expression> - | <logical_or_expression> "?" <expression> ":" - <conditional_expression> -*/ + * <conditional_expression> ::= <logical_or_expression> + * | <logical_or_expression> "?" <expression> ":" <conditional_expression> + */ conditional_expression logical_or_expression .and .loop conditional_expression_1; conditional_expression_1 question .and expression .and colon .and conditional_expression .and .true .emit OP_SELECT; /* - <assignment_expression> ::= <conditional_expression> - | <unary_expression> <assignment_operator> - <assignment_expression> - - <assignment_operator> ::= "=" - | "*=" - | "/=" - | "+=" - | "-=" - | "%=" // reserved - | "<<=" // reserved - | ">>=" // reserved - | "&=" // reserved - | "^=" // reserved - | "|=" // reserved -*/ + * <assignment_expression> ::= <conditional_expression> + * | <unary_expression> <assignment_operator> <assignment_expression> + * + * <assignment_operator> ::= "=" + * | "*=" + * | "/=" + * | "+=" + * | "-=" + * | "%=" // reserved + * | "<<=" // reserved + * | ">>=" // reserved + * | "&=" // reserved + * | "^=" // reserved + * | "|=" // reserved + */ assignment_expression assignment_expression_1 .or assignment_expression_2 .or assignment_expression_3 .or assignment_expression_4 .or assignment_expression_5/* .or assignment_expression_6 .or @@ -582,24 +625,24 @@ assignment_expression_5 unary_expression .and barequals .and assignment_expression .and .true .emit OP_ORASSIGN;*/ /* - <expression> ::= <assignment_expression> - | <expression> "," <assignment_expression> -*/ + * <expression> ::= <assignment_expression> + * | <expression> "," <assignment_expression> + */ expression assignment_expression .and .loop expression_1; expression_1 comma .and assignment_expression .and .true .emit OP_SEQUENCE; /* - <constant_expression> ::= <conditional_expression> -*/ + * <constant_expression> ::= <conditional_expression> + */ constant_expression conditional_expression .and .true .emit OP_END; /* - <declaration> ::= <function_prototype> ";" - | <init_declarator_list> ";" -*/ + * <declaration> ::= <function_prototype> ";" + * | <init_declarator_list> ";" + */ declaration declaration_1 .or declaration_2; declaration_1 @@ -608,9 +651,9 @@ declaration_2 init_declarator_list .emit DECLARATION_INIT_DECLARATOR_LIST .and semicolon; /* - <function_prototype> ::= <function_header> "void" ")" - | <function_declarator> ")" -*/ + * <function_prototype> ::= <function_header> "void" ")" + * | <function_declarator> ")" + */ function_prototype function_prototype_1 .or function_prototype_2; function_prototype_1 @@ -619,25 +662,25 @@ function_prototype_2 function_declarator .and rparen .error RPAREN_EXPECTED .emit PARAMETER_NONE; /* - <function_declarator> ::= <function_header> - | <function_header_with_parameters> -*/ + * <function_declarator> ::= <function_header> + * | <function_header_with_parameters> + */ function_declarator function_header_with_parameters .or function_header; /* - <function_header_with_parameters> ::= <function_header> <parameter_declaration> - | <function_header_with_parameters> "," - <parameter_declaration> -*/ + * <function_header_with_parameters> ::= <function_header> <parameter_declaration> + * | <function_header_with_parameters> "," + * <parameter_declaration> + */ function_header_with_parameters function_header .and parameter_declaration .and .loop function_header_with_parameters_1; function_header_with_parameters_1 comma .and parameter_declaration; /* - <function_header> ::= <fully_specified_type> <identifier> "(" -*/ + * <function_header> ::= <fully_specified_type> <identifier> "(" + */ function_header function_header_nospace .or function_header_space; function_header_space @@ -646,64 +689,64 @@ function_header_nospace fully_specified_type_nospace .and function_decl_identifier .and lparen; /* - <function_decl_identifier> ::= "__constructor" - | <__operator> - | <identifier> - -note: this is an extension to the standard language specification - normally slang disallows - operator and constructor prototypes and definitions -*/ + * <function_decl_identifier> ::= "__constructor" + * | <__operator> + * | <identifier> + * + * note: this is an extension to the standard language specification. + * normally slang disallows operator and constructor prototypes and definitions + */ function_decl_identifier .if (parsing_builtin != 0) __operator .emit FUNCTION_OPERATOR .or .if (parsing_builtin != 0) "__constructor" .emit FUNCTION_CONSTRUCTOR .or identifier .emit FUNCTION_ORDINARY; /* - <__operator> ::= "__operator" <overriden_op> - -note: this is an extension to the standard language specification - normally slang disallows - operator prototypes and definitions -*/ + * <__operator> ::= "__operator" <overriden_op> + * + * note: this is an extension to the standard language specification. + * normally slang disallows operator prototypes and definitions + */ __operator "__operator" .and overriden_operator .error INVALID_OPERATOR_OVERRIDE; /* - <overriden_op> ::= "=" - | "+=" - | "-=" - | "*=" - | "/=" - | "%=" // reserved - | "<<=" // reserved - | ">>=" // reserved - | "&=" // reserved - | "^=" // reserved - | "|=" // reserved - | "^^" - | "|" // reserved - | "^" // reserved - | "&" // reserved - | "==" - | "!=" - | "<" - | ">" - | "<=" - | ">=" - | "<<" // reserved - | ">>" // reserved - | "*" - | "/" - | "%" // reserved - | "++" - | "--" - | "+" - | "-" - | "~" // reserved - | "!" - -note: this is an extension to the standard language specification - normally slang disallows - operator prototypes and definitions -*/ + * <overriden_op> ::= "=" + * | "+=" + * | "-=" + * | "*=" + * | "/=" + * | "%=" // reserved + * | "<<=" // reserved + * | ">>=" // reserved + * | "&=" // reserved + * | "^=" // reserved + * | "|=" // reserved + * | "^^" + * | "|" // reserved + * | "^" // reserved + * | "&" // reserved + * | "==" + * | "!=" + * | "<" + * | ">" + * | "<=" + * | ">=" + * | "<<" // reserved + * | ">>" // reserved + * | "*" + * | "/" + * | "%" // reserved + * | "++" + * | "--" + * | "+" + * | "-" + * | "~" // reserved + * | "!" + * + * note: this is an extension to the standard language specification. + * normally slang disallows operator prototypes and definitions + */ overriden_operator plusplus .emit OPERATOR_INCREMENT .or plusequals .emit OPERATOR_ADDASSIGN .or @@ -736,10 +779,9 @@ overriden_operator caret .emit OPERATOR_BITXOR*/; /* - <parameter_declarator> ::= <type_specifier> <identifier> - | <type_specifier> <identifier> "[" <constant_expression> - "]" -*/ + * <parameter_declarator> ::= <type_specifier> <identifier> + * | <type_specifier> <identifier> "[" <constant_expression> "]" + */ parameter_declarator parameter_declarator_nospace .or parameter_declarator_space; parameter_declarator_nospace @@ -753,21 +795,21 @@ parameter_declarator_2 lbracket .and constant_expression .and rbracket; /* - <parameter_declaration> ::= <type_qualifier> <parameter_qualifier> - <precision> <parameter_declarator> - | <type_qualifier> <parameter_qualifier> - <precision> <parameter_type_specifier> - | <type_qualifier> <parameter_qualifier> - <parameter_declarator> - | <type_qualifier> <parameter_qualifier> - <parameter_type_specifier> - | <parameter_qualifier> <precision> - <parameter_declarator> - | <parameter_qualifier> <precision> - <parameter_type_specifier> - | <parameter_qualifier> <parameter_declarator> - | <parameter_qualifier> <parameter_type_specifier> -*/ + * <parameter_declaration> ::= <type_qualifier> <parameter_qualifier> + * <precision> <parameter_declarator> + * | <type_qualifier> <parameter_qualifier> + * <precision> <parameter_type_specifier> + * | <type_qualifier> <parameter_qualifier> + * <parameter_declarator> + * | <type_qualifier> <parameter_qualifier> + * <parameter_type_specifier> + * | <parameter_qualifier> <precision> + * <parameter_declarator> + * | <parameter_qualifier> <precision> + * <parameter_type_specifier> + * | <parameter_qualifier> <parameter_declarator> + * | <parameter_qualifier> <parameter_type_specifier> + */ parameter_declaration parameter_declaration_1 .emit PARAMETER_NEXT; parameter_declaration_1 @@ -786,11 +828,11 @@ parameter_declaration_rest parameter_declarator .or parameter_type_specifier; /* - <parameter_qualifier> ::= "in" - | "out" - | "inout" - | "" -*/ + * <parameter_qualifier> ::= "in" + * | "out" + * | "inout" + * | "" + */ parameter_qualifier parameter_qualifier_1 .or .true .emit PARAM_QUALIFIER_IN; parameter_qualifier_1 @@ -801,9 +843,9 @@ parameter_qualifier_2 "inout" .emit PARAM_QUALIFIER_INOUT; /* - <parameter_type_specifier> ::= <type_specifier> - | <type_specifier> "[" <constant_expression> "]" -*/ + * <parameter_type_specifier> ::= <type_specifier> + * | <type_specifier> "[" <constant_expression> "]" + */ parameter_type_specifier parameter_type_specifier_1 .and .true .emit '\0' .and parameter_type_specifier_2; parameter_type_specifier_1 @@ -815,14 +857,12 @@ parameter_type_specifier_3 lbracket .and constant_expression .and rbracket; /* - <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> ::= <single_declaration> + * | <init_declarator_list> "," <identifier> + * | <init_declarator_list> "," <identifier> "[" "]" + * | <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 .true .emit DECLARATOR_NONE; @@ -838,13 +878,12 @@ init_declarator_list_5 constant_expression .emit VARIABLE_ARRAY_EXPLICIT .or .true .emit VARIABLE_ARRAY_UNKNOWN; /* - <single_declaration> ::= <fully_specified_type> - | <fully_specified_type> <identifier> - | <fully_specified_type> <identifier> "[" "]" - | <fully_specified_type> <identifier> "[" - <constant_expression> "]" - | <fully_specified_type> <identifier> "=" <initializer> -*/ + * <single_declaration> ::= <fully_specified_type> + * | <fully_specified_type> <identifier> + * | <fully_specified_type> <identifier> "[" "]" + * | <fully_specified_type> <identifier> "[" <constant_expression> "]" + * | <fully_specified_type> <identifier> "=" <initializer> + */ single_declaration single_declaration_nospace .or single_declaration_space; single_declaration_space @@ -869,15 +908,30 @@ single_declaration_6 constant_expression .emit VARIABLE_ARRAY_EXPLICIT .or .true .emit VARIABLE_ARRAY_UNKNOWN; /* - <fully_specified_type> ::= <type_specifier> - | <type_qualifier> <type_specifier> - | <precision> <type_specifier> - | <type_qualifier> <precision> <type_specifier> -*/ + * <fully_specified_type> ::= <opt_invariant> <opt_centroid> <opt_qualifer> <opt_precision> <type_specifier> <opt_array_size> + * + * Example: "invariant varying highp vec3 [4]" + * + * Note that the *_space version doesn't parse the array size, make sure it is being invoked after the *_nospace version. + */ fully_specified_type_space - fully_specified_type_optqual .and fully_specified_type_optprec .and type_specifier_space; + fully_specified_type_optinvariant .and fully_specified_type_optcentroid .and fully_specified_type_optqual .and fully_specified_type_optprec .and type_specifier_space .and .true .emit TYPE_NO_ARRAY_SIZE; fully_specified_type_nospace - fully_specified_type_optqual .and fully_specified_type_optprec .and type_specifier_nospace; + fully_specified_type_optinvariant .and fully_specified_type_optcentroid .and fully_specified_type_optqual .and fully_specified_type_optprec .and type_specifier_array; +type_specifier_array + type_specifier_array_1 .or type_specifier_array_2; +type_specifier_array_1 + type_specifier_space .and array_size; +type_specifier_array_2 + type_specifier_nospace .and opt_array_size; +fully_specified_type_optinvariant + fully_specified_type_invariant .or .true .emit TYPE_VARIANT; +fully_specified_type_invariant + invariant_qualifier .and space; +fully_specified_type_optcentroid + fully_specified_type_centroid .or .true .emit TYPE_CENTER; +fully_specified_type_centroid + centroid_qualifier .and space; fully_specified_type_optqual fully_specified_type_qual .or .true .emit TYPE_QUALIFIER_NONE; fully_specified_type_qual @@ -886,60 +940,75 @@ fully_specified_type_optprec fully_specified_type_prec .or .true .emit PRECISION_DEFAULT; fully_specified_type_prec precision .and space; +opt_array_size + array_size .or .true .emit TYPE_NO_ARRAY_SIZE; +array_size + lbracket .emit TYPE_ARRAY_SIZE .and constant_expression .and rbracket; + /* - <type_qualifier> ::= "const" - | "attribute" // Vertex only. - | "varying" - | "uniform" - | "__fixed_output" - | "__fixed_input" + * <invariant_qualifier> ::= "invariant" + */ +invariant_qualifier + "invariant" .emit TYPE_INVARIANT; + +centroid_qualifier + "centroid" .emit TYPE_CENTROID; -note: this is an extension to the standard language specification - normally slang disallows - __fixed_output and __fixed_input type qualifiers -*/ + +/* + * <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 + */ type_qualifier "const" .emit TYPE_QUALIFIER_CONST .or .if (shader_type == 2) "attribute" .emit TYPE_QUALIFIER_ATTRIBUTE .or "varying" .emit TYPE_QUALIFIER_VARYING .or "uniform" .emit TYPE_QUALIFIER_UNIFORM .or - .if (parsing_builtin != 0) "__fixed_output" .emit TYPE_QUALIFIER_FIXEDOUTPUT .or - .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> -*/ + .if (parsing_builtin != 0) "__fixed_output" .emit TYPE_QUALIFIER_FIXEDOUTPUT .or + .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 "void" .emit TYPE_SPECIFIER_VOID .or "float" .emit TYPE_SPECIFIER_FLOAT .or @@ -976,9 +1045,9 @@ type_specifier_nospace struct_specifier .emit TYPE_SPECIFIER_STRUCT; /* - <struct_specifier> ::= "struct" <identifier> "{" <struct_declaration_list> "}" - | "struct" "{" <struct_declaration_list> "}" -*/ + * <struct_specifier> ::= "struct" <identifier> "{" <struct_declaration_list> "}" + * | "struct" "{" <struct_declaration_list> "}" + */ struct_specifier "struct" .and struct_specifier_1 .and optional_space .and lbrace .error LBRACE_EXPECTED .and struct_declaration_list .and rbrace .emit FIELD_NONE; @@ -988,15 +1057,15 @@ struct_specifier_2 space .and identifier; /* - <struct_declaration_list> ::= <struct_declaration> - | <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; /* - <struct_declaration> ::= <type_specifier> <struct_declarator_list> ";" -*/ + * <struct_declaration> ::= <type_specifier> <struct_declarator_list> ";" + */ struct_declaration struct_declaration_nospace .or struct_declaration_space; struct_declaration_space @@ -1005,18 +1074,18 @@ struct_declaration_nospace type_specifier_nospace .and struct_declarator_list .and semicolon .emit FIELD_NONE; /* - <struct_declarator_list> ::= <struct_declarator> - | <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; struct_declarator_list_1 comma .and struct_declarator; /* - <struct_declarator> ::= <identifier> - | <identifier> "[" <constant_expression> "]" -*/ + * <struct_declarator> ::= <identifier> + * | <identifier> "[" <constant_expression> "]" + */ struct_declarator identifier .and struct_declarator_1; struct_declarator_1 @@ -1025,21 +1094,21 @@ struct_declarator_2 lbracket .and constant_expression .and rbracket; /* - <initializer> ::= <assignment_expression> -*/ + * <initializer> ::= <assignment_expression> + */ initializer assignment_expression .and .true .emit OP_END; /* - <declaration_statement> ::= <declaration> -*/ + * <declaration_statement> ::= <declaration> + */ declaration_statement declaration; /* - <statement> ::= <compound_statement> - | <simple_statement> -*/ + * <statement> ::= <compound_statement> + * | <simple_statement> + */ statement compound_statement .or simple_statement; statement_space @@ -1048,16 +1117,16 @@ statement_space_1 space .and simple_statement; /* - <simple_statement> ::= <__asm_statement> - | <selection_statement> - | <iteration_statement> - | <jump_statement> - | <expression_statement> - | <declaration_statement> - -note: this is an extension to the standard language specification - normally slang disallows - use of __asm statements -*/ + * <simple_statement> ::= <__asm_statement> + * | <selection_statement> + * | <iteration_statement> + * | <jump_statement> + * | <expression_statement> + * | <declaration_statement> + * + * note: this is an extension to the standard language specification. + * normally slang disallows use of __asm statements + */ simple_statement .if (parsing_builtin != 0) __asm_statement .emit OP_ASM .or selection_statement .or @@ -1068,9 +1137,9 @@ simple_statement declaration_statement .emit OP_DECLARE; /* - <compound_statement> ::= "{" "}" - | "{" <statement_list> "}" -*/ + * <compound_statement> ::= "{" "}" + * | "{" <statement_list> "}" + */ compound_statement compound_statement_1 .emit OP_BLOCK_BEGIN_NEW_SCOPE .and .true .emit OP_END; compound_statement_1 @@ -1081,16 +1150,16 @@ 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> + * | <simple_statement> + */ statement_no_new_scope compound_statement_no_new_scope .or simple_statement; /* - <compound_statement_no_new_scope> ::= "{" "}" - | "{" <statement_list> "}" -*/ + * <compound_statement_no_new_scope> ::= "{" "}" + * | "{" <statement_list> "}" + */ compound_statement_no_new_scope compound_statement_no_new_scope_1 .emit OP_BLOCK_BEGIN_NO_NEW_SCOPE .and .true .emit OP_END; compound_statement_no_new_scope_1 @@ -1101,16 +1170,16 @@ compound_statement_no_new_scope_3 lbrace .and statement_list .and rbrace; /* - <statement_list> ::= <statement> - | <statement_list> <statement> -*/ + * <statement_list> ::= <statement> + * | <statement_list> <statement> + */ statement_list statement .and .loop statement; /* - <expression_statement> ::= ";" - | <expression> ";" -*/ + * <expression_statement> ::= ";" + * | <expression> ";" + */ expression_statement expression_statement_1 .or expression_statement_2; expression_statement_1 @@ -1119,16 +1188,16 @@ expression_statement_2 expression .and semicolon .emit OP_END; /* - <selection_statement> ::= "if" "(" <expression> ")" <selection_rest_statement> -*/ + * <selection_statement> ::= "if" "(" <expression> ")" <selection_rest_statement> + */ selection_statement "if" .emit OP_IF .and lparen .error LPAREN_EXPECTED .and expression .and rparen .error RPAREN_EXPECTED .emit OP_END .and selection_rest_statement; /* - <selection_rest_statement> ::= <statement> "else" <statement> - | <statement> -*/ + * <selection_rest_statement> ::= <statement> "else" <statement> + * | <statement> + */ selection_rest_statement statement .and selection_rest_statement_1; selection_rest_statement_1 @@ -1137,11 +1206,12 @@ selection_rest_statement_2 "else" .and optional_space .and statement; /* - <condition> ::= <expression> - | <fully_specified_type> <identifier> "=" <initializer> - -note: if <condition_1> is executed, the emit format must match <declaration> emit format -*/ + * <condition> ::= <expression> + * | <fully_specified_type> <identifier> "=" <initializer> + * + * note: if <condition_1> is executed, the emit format must + * match <declaration> emit format + */ condition condition_1 .emit OP_DECLARE .emit DECLARATION_INIT_DECLARATOR_LIST .or condition_3 .emit OP_EXPRESSION; @@ -1158,11 +1228,11 @@ condition_3 expression .and .true .emit OP_END; /* - <iteration_statement> ::= "while" "(" <condition> ")" <statement> - | "do" <statement> "while" "(" <expression> ")" ";" - | "for" "(" <for_init_statement> <for_rest_statement> ")" - <statement_no_new_scope> -*/ + * <iteration_statement> ::= "while" "(" <condition> ")" <statement> + * | "do" <statement> "while" "(" <expression> ")" ";" + * | "for" "(" <for_init_statement> <for_rest_statement> ")" + * <statement_no_new_scope> + */ iteration_statement iteration_statement_1 .or iteration_statement_2 .or iteration_statement_3; iteration_statement_1 @@ -1176,27 +1246,28 @@ iteration_statement_3 for_rest_statement .and rparen .error RPAREN_EXPECTED .and statement_no_new_scope; /* - <for_init_statement> ::= <expression_statement> - | <declaration_statement> -*/ + * <for_init_statement> ::= <expression_statement> + * | <declaration_statement> + */ for_init_statement expression_statement .emit OP_EXPRESSION .or declaration_statement .emit OP_DECLARE; /* - <conditionopt> ::= <condition> - | "" - -note: <conditionopt> is used only by "for" statement - if <condition> is ommitted, parser - simulates default behaviour, that is simulates "true" expression -*/ + * <conditionopt> ::= <condition> + * | "" + * + * note: <conditionopt> is used only by "for" statement. + * if <condition> is ommitted, parser simulates default behaviour, + * that is simulates "true" expression + */ conditionopt condition .or .true .emit OP_EXPRESSION .emit OP_PUSH_BOOL .emit 2 .emit '1' .emit '\0' .emit OP_END; /* - <for_rest_statement> ::= <conditionopt> ";" - | <conditionopt> ";" <expression> -*/ + * <for_rest_statement> ::= <conditionopt> ";" + * | <conditionopt> ";" <expression> + */ for_rest_statement conditionopt .and semicolon .and for_rest_statement_1; for_rest_statement_1 @@ -1205,12 +1276,12 @@ for_rest_statement_2 expression .and .true .emit OP_END; /* - <jump_statement> ::= "continue" ";" - | "break" ";" - | "return" ";" - | "return" <expression> ";" - | "discard" ";" // Fragment shader only. -*/ + * <jump_statement> ::= "continue" ";" + * | "break" ";" + * | "return" ";" + * | "return" <expression> ";" + * | "discard" ";" // Fragment shader only. + */ jump_statement jump_statement_1 .or jump_statement_2 .or jump_statement_3 .or jump_statement_4 .or .if (shader_type == 1) jump_statement_5; @@ -1226,33 +1297,33 @@ jump_statement_5 "discard" .and semicolon .emit OP_DISCARD; /* - <__asm_statement> ::= "__asm" <identifier> <asm_arguments> ";" - -note: this is an extension to the standard language specification - normally slang disallows - __asm statements -*/ + * <__asm_statement> ::= "__asm" <identifier> <asm_arguments> ";" + * + * note: this is an extension to the standard language specification. + * normally slang disallows __asm statements + */ __asm_statement "__asm" .and space .and identifier .and space .and asm_arguments .and semicolon .emit OP_END; /* - <asm_arguments> ::= <asm_argument> - | <asm_arguments> "," <asm_argument> - -note: this is an extension to the standard language specification - normally slang disallows - __asm statements -*/ + * <asm_arguments> ::= <asm_argument> + * | <asm_arguments> "," <asm_argument> + * + * note: this is an extension to the standard language specification. + * normally slang disallows __asm statements + */ asm_arguments asm_argument .and .true .emit OP_END .and .loop asm_arguments_1; asm_arguments_1 comma .and asm_argument .and .true .emit OP_END; /* - <asm_argument> ::= <variable_identifier> - | <floatconstant> - -note: this is an extension to the standard language specification - normally slang disallows - __asm statements -*/ + * <asm_argument> ::= <variable_identifier> + * | <floatconstant> + * + * note: this is an extension to the standard language specification. + * normally slang disallows __asm statements + */ asm_argument var_with_field .or variable_identifier .or @@ -1263,8 +1334,8 @@ var_with_field /* - * <translation_unit> ::= <external_declaration> - * | <translation_unit> <external_declaration> + * <translation_unit> ::= <external_declaration> + * | <translation_unit> <external_declaration> */ translation_unit optional_space .emit REVISION .and external_declaration .error INVALID_EXTERNAL_DECLARATION .and @@ -1273,26 +1344,26 @@ translation_unit /* - * <external_declaration> ::= <function_definition> - * | <declaration> + * <external_declaration> ::= <function_definition> + * | <declaration> */ external_declaration precision_stmt .emit DEFAULT_PRECISION .or - invariant_stmt .emit INVARIANT_STMT .or function_definition .emit EXTERNAL_FUNCTION_DEFINITION .or + invariant_stmt .emit INVARIANT_STMT .or declaration .emit EXTERNAL_DECLARATION; /* - * <precision_stmt> ::= "precision" <precision> <prectype> + * <precision_stmt> ::= "precision" <precision> <prectype> */ precision_stmt "precision" .and space .and precision .error INVALID_PRECISION .and space .and prectype .error INVALID_PRECISION_TYPE .and semicolon; /* - * <precision> ::= "lowp" - * | "mediump" - * | "highp" + * <precision> ::= "lowp" + * | "mediump" + * | "highp" */ precision "lowp" .emit PRECISION_LOW .or @@ -1318,20 +1389,23 @@ prectype /* - * <invariant_stmt> ::= "invariant" identifier; + * <invariant_stmt> ::= "invariant" identifier; */ invariant_stmt "invariant" .and space .and identifier .and semicolon; - /* - <function_definition> :: <function_prototype> <compound_statement_no_new_scope> -*/ + * <function_definition> :: <function_prototype> <compound_statement_no_new_scope> + */ function_definition function_prototype .and compound_statement_no_new_scope; -/* helper rulez, not part of the official language syntax */ + + +/* + * helper rules, not part of the official language syntax + */ digit_oct '0'-'7'; @@ -1352,11 +1426,13 @@ identifier id_character_first .emit * .and .loop id_character_next .emit * .and .true .emit '\0'; float - float_1 .or float_2; + float_1 .or float_2 .or float_3; float_1 - float_fractional_constant .and float_optional_exponent_part; + float_fractional_constant .and float_optional_exponent_part .and optional_f_suffix; float_2 - float_digit_sequence .and .true .emit '\0' .and float_exponent_part; + float_digit_sequence .and .true .emit '\0' .and float_exponent_part .and optional_f_suffix; +float_3 + float_digit_sequence .and .true .emit '\0' .and 'f' .emit '\0'; float_fractional_constant float_fractional_constant_1 .or float_fractional_constant_2 .or float_fractional_constant_3; @@ -1386,6 +1462,10 @@ float_optional_sign float_sign '+' .or '-' .emit '-'; +optional_f_suffix + 'f' .or .true; + + integer integer_hex .or integer_oct .or integer_dec; @@ -1469,7 +1549,7 @@ cpp_style_comment_block_3 cpp_style_comment_char '\x0E'-'\xFF' .or '\x01'-'\x09' .or '\x0B'-'\x0C'; -/* lexical rulez */ +/* lexical rules */ /*ampersand optional_space .and '&' .and optional_space;*/ @@ -1606,7 +1686,7 @@ starequals /*tilde optional_space .and '~' .and optional_space;*/ -/* string rulez - these are used internally by the parser when parsing quoted strings */ +/* string rules - these are used internally by the parser when parsing quoted strings */ .string string_lexer; @@ -1619,7 +1699,7 @@ lex_first_identifier_character lex_next_identifier_character 'a'-'z' .or 'A'-'Z' .or '0'-'9' .or '_'; -/* error rulez - these are used by error messages */ +/* error rules - these are used by error messages */ err_token '~' .or '`' .or '!' .or '@' .or '#' .or '$' .or '%' .or '^' .or '&' .or '*' .or '(' .or ')' .or diff --git a/src/mesa/shader/slang/library/slang_shader_syn.h b/src/mesa/shader/slang/library/slang_shader_syn.h index 6457bb69bd4..42ff92b65a8 100644 --- a/src/mesa/shader/slang/library/slang_shader_syn.h +++ b/src/mesa/shader/slang/library/slang_shader_syn.h @@ -47,6 +47,10 @@ ".emtcode TYPE_QUALIFIER_UNIFORM 4\n" ".emtcode TYPE_QUALIFIER_FIXEDOUTPUT 5\n" ".emtcode TYPE_QUALIFIER_FIXEDINPUT 6\n" +".emtcode TYPE_VARIANT 90\n" +".emtcode TYPE_INVARIANT 91\n" +".emtcode TYPE_CENTER 95\n" +".emtcode TYPE_CENTROID 96\n" ".emtcode TYPE_SPECIFIER_VOID 0\n" ".emtcode TYPE_SPECIFIER_BOOL 1\n" ".emtcode TYPE_SPECIFIER_BVEC2 2\n" @@ -79,6 +83,8 @@ ".emtcode TYPE_SPECIFIER_MAT42 29\n" ".emtcode TYPE_SPECIFIER_MAT34 30\n" ".emtcode TYPE_SPECIFIER_MAT43 31\n" +".emtcode TYPE_ARRAY_SIZE 220\n" +".emtcode TYPE_NO_ARRAY_SIZE 221\n" ".emtcode FIELD_NONE 0\n" ".emtcode FIELD_NEXT 1\n" ".emtcode FIELD_ARRAY 2\n" @@ -132,6 +138,7 @@ ".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" @@ -169,6 +176,12 @@ "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" @@ -421,9 +434,23 @@ "single_declaration_6\n" " constant_expression .emit VARIABLE_ARRAY_EXPLICIT .or .true .emit VARIABLE_ARRAY_UNKNOWN;\n" "fully_specified_type_space\n" -" fully_specified_type_optqual .and fully_specified_type_optprec .and type_specifier_space;\n" +" fully_specified_type_optinvariant .and fully_specified_type_optcentroid .and fully_specified_type_optqual .and fully_specified_type_optprec .and type_specifier_space .and .true .emit TYPE_NO_ARRAY_SIZE;\n" "fully_specified_type_nospace\n" -" fully_specified_type_optqual .and fully_specified_type_optprec .and type_specifier_nospace;\n" +" fully_specified_type_optinvariant .and fully_specified_type_optcentroid .and fully_specified_type_optqual .and fully_specified_type_optprec .and type_specifier_array;\n" +"type_specifier_array\n" +" type_specifier_array_1 .or type_specifier_array_2;\n" +"type_specifier_array_1\n" +" type_specifier_space .and array_size;\n" +"type_specifier_array_2\n" +" type_specifier_nospace .and opt_array_size;\n" +"fully_specified_type_optinvariant\n" +" fully_specified_type_invariant .or .true .emit TYPE_VARIANT;\n" +"fully_specified_type_invariant\n" +" invariant_qualifier .and space;\n" +"fully_specified_type_optcentroid\n" +" fully_specified_type_centroid .or .true .emit TYPE_CENTER;\n" +"fully_specified_type_centroid\n" +" centroid_qualifier .and space;\n" "fully_specified_type_optqual\n" " fully_specified_type_qual .or .true .emit TYPE_QUALIFIER_NONE;\n" "fully_specified_type_qual\n" @@ -432,13 +459,21 @@ " fully_specified_type_prec .or .true .emit PRECISION_DEFAULT;\n" "fully_specified_type_prec\n" " precision .and space;\n" +"opt_array_size\n" +" array_size .or .true .emit TYPE_NO_ARRAY_SIZE;\n" +"array_size\n" +" lbracket .emit TYPE_ARRAY_SIZE .and constant_expression .and rbracket;\n" +"invariant_qualifier\n" +" \"invariant\" .emit TYPE_INVARIANT;\n" +"centroid_qualifier\n" +" \"centroid\" .emit TYPE_CENTROID;\n" "type_qualifier\n" " \"const\" .emit TYPE_QUALIFIER_CONST .or\n" " .if (shader_type == 2) \"attribute\" .emit TYPE_QUALIFIER_ATTRIBUTE .or\n" " \"varying\" .emit TYPE_QUALIFIER_VARYING .or\n" " \"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" +" .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" " \"void\" .emit TYPE_SPECIFIER_VOID .or\n" " \"float\" .emit TYPE_SPECIFIER_FLOAT .or\n" @@ -618,8 +653,8 @@ " '\\0' .error INVALID_EXTERNAL_DECLARATION .emit EXTERNAL_NULL;\n" "external_declaration\n" " precision_stmt .emit DEFAULT_PRECISION .or\n" -" invariant_stmt .emit INVARIANT_STMT .or\n" " function_definition .emit EXTERNAL_FUNCTION_DEFINITION .or\n" +" invariant_stmt .emit INVARIANT_STMT .or\n" " declaration .emit EXTERNAL_DECLARATION;\n" "precision_stmt\n" " \"precision\" .and space .and precision .error INVALID_PRECISION .and space .and prectype .error INVALID_PRECISION_TYPE .and semicolon;\n" @@ -655,11 +690,13 @@ "identifier\n" " id_character_first .emit * .and .loop id_character_next .emit * .and .true .emit '\\0';\n" "float\n" -" float_1 .or float_2;\n" +" float_1 .or float_2 .or float_3;\n" "float_1\n" -" float_fractional_constant .and float_optional_exponent_part;\n" +" float_fractional_constant .and float_optional_exponent_part .and optional_f_suffix;\n" "float_2\n" -" float_digit_sequence .and .true .emit '\\0' .and float_exponent_part;\n" +" float_digit_sequence .and .true .emit '\\0' .and float_exponent_part .and optional_f_suffix;\n" +"float_3\n" +" float_digit_sequence .and .true .emit '\\0' .and 'f' .emit '\\0';\n" "float_fractional_constant\n" " float_fractional_constant_1 .or float_fractional_constant_2 .or float_fractional_constant_3;\n" "float_fractional_constant_1\n" @@ -682,6 +719,8 @@ " float_sign .or .true;\n" "float_sign\n" " '+' .or '-' .emit '-';\n" +"optional_f_suffix\n" +" 'f' .or .true;\n" "integer\n" " integer_hex .or integer_oct .or integer_dec;\n" "integer_hex\n" diff --git a/src/mesa/shader/slang/library/slang_version.syn b/src/mesa/shader/slang/library/slang_version.syn index aaf8bef342f..aaf8bef342f 100755..100644 --- a/src/mesa/shader/slang/library/slang_version.syn +++ b/src/mesa/shader/slang/library/slang_version.syn 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 2c2aecb916f..01980826a95 100644 --- a/src/mesa/shader/slang/library/slang_vertex_builtin_gc.h +++ b/src/mesa/shader/slang/library/slang_vertex_builtin_gc.h @@ -2,100 +2,105 @@ /* DO NOT EDIT - THIS FILE IS AUTOMATICALLY GENERATED FROM THE FOLLOWING FILE: */ /* slang_vertex_builtin.gc */ -4,2,2,5,0,12,1,103,108,95,80,111,115,105,116,105,111,110,0,0,0,2,2,5,0,9,1,103,108,95,80,111,105, -110,116,83,105,122,101,0,0,0,2,2,5,0,12,1,103,108,95,67,108,105,112,86,101,114,116,101,120,0,0,0,2, -2,2,0,12,1,103,108,95,67,111,108,111,114,0,0,0,2,2,2,0,12,1,103,108,95,83,101,99,111,110,100,97, -114,121,67,111,108,111,114,0,0,0,2,2,2,0,11,1,103,108,95,78,111,114,109,97,108,0,0,0,2,2,2,0,12,1, -103,108,95,86,101,114,116,101,120,0,0,0,2,2,2,0,12,1,103,108,95,77,117,108,116,105,84,101,120,67, 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+221,1,112,99,111,111,114,100,0,0,0,9,18,112,99,111,111,114,100,0,59,120,121,0,18,99,111,111,114, +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 ed6de40d4b6..db00c54b8a2 100644 --- a/src/mesa/shader/slang/slang_builtin.c +++ b/src/mesa/shader/slang/slang_builtin.c @@ -80,9 +80,7 @@ lookup_statevar(const char *var, GLint index1, GLint index2, const char *field, { "gl_TextureMatrixTranspose", STATE_TEXTURE_MATRIX, 0 }, { "gl_TextureMatrixInverseTranspose", STATE_TEXTURE_MATRIX, STATE_MATRIX_INVERSE }, - /* XXX verify these!!! */ { "gl_NormalMatrix", STATE_MODELVIEW_MATRIX, STATE_MATRIX_TRANSPOSE }, - { "__NormalMatrixTranspose", STATE_MODELVIEW_MATRIX, 0 }, { NULL, 0, 0 } }; @@ -109,10 +107,14 @@ lookup_statevar(const char *var, GLint index1, GLint index2, const char *field, if (isMatrix) { if (tokens[0] == STATE_TEXTURE_MATRIX) { if (index1 >= 0) { - tokens[1] = index1; + tokens[1] = index1; /* which texture matrix */ index1 = 0; /* prevent extra addition at end of function */ } } + if (index1 < 0) { + /* index1 is unused: prevent extra addition at end of function */ + index1 = 0; + } } else if (strcmp(var, "gl_DepthRange") == 0) { tokens[0] = STATE_DEPTH_RANGE; diff --git a/src/mesa/shader/slang/slang_codegen.c b/src/mesa/shader/slang/slang_codegen.c index d83e3b01e6b..8d2655ec517 100644 --- a/src/mesa/shader/slang/slang_codegen.c +++ b/src/mesa/shader/slang/slang_codegen.c @@ -238,9 +238,9 @@ _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 +251,8 @@ _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); } } } @@ -413,6 +413,9 @@ static slang_asm_info AsmInfo[] = { { "vec4_multiply", IR_MUL, 1, 2 }, { "vec4_dot", IR_DOT4, 1, 2 }, { "vec3_dot", IR_DOT3, 1, 2 }, + { "vec2_dot", IR_DOT2, 1, 2 }, + { "vec3_nrm", IR_NRM3, 1, 1 }, + { "vec4_nrm", IR_NRM4, 1, 1 }, { "vec3_cross", IR_CROSS, 1, 2 }, { "vec4_lrp", IR_LRP, 1, 3 }, { "vec4_min", IR_MIN, 1, 2 }, @@ -477,7 +480,6 @@ new_node3(slang_ir_opcode op, n->Children[0] = c0; n->Children[1] = c1; n->Children[2] = c2; - n->Writemask = WRITEMASK_XYZW; n->InstLocation = -1; } return n; @@ -1475,6 +1477,8 @@ _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 @@ -1599,19 +1603,6 @@ resolve_swizzle(const slang_operation *oper) /** - * As above, but produce a writemask. - */ -static GLuint -resolve_writemask(slang_assemble_ctx *A, const slang_operation *oper) -{ - GLuint swizzle = resolve_swizzle(oper); - GLuint writemask, swizzleOut; - swizzle_to_writemask(A, swizzle, &writemask, &swizzleOut); - return writemask; -} - - -/** * Recursively descend through swizzle nodes to find the node's storage info. */ static slang_ir_storage * @@ -1674,14 +1665,11 @@ _slang_gen_asm(slang_assemble_ctx *A, slang_operation *oper, /* Setup n->Store to be a particular location. Otherwise, storage * for the result (a temporary) will be allocated later. */ - GLuint writemask = WRITEMASK_XYZW; slang_operation *dest_oper; slang_ir_node *n0; dest_oper = &oper->children[0]; - writemask = resolve_writemask(A, dest_oper); - n0 = _slang_gen_operation(A, dest_oper); if (!n0) return NULL; @@ -2032,6 +2020,13 @@ _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; + } n = _slang_gen_function_call(A, fun, oper, dest); @@ -2047,6 +2042,46 @@ _slang_gen_function_call_name(slang_assemble_ctx *A, const char *name, } +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_locate_variable(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) var->array_len; + n->Store = _slang_new_ir_storage(PROGRAM_CONSTANT, -1, 1); + } + return n; +} + + static GLboolean _slang_is_constant_cond(const slang_operation *oper, GLboolean *value) { @@ -2442,8 +2477,8 @@ _slang_gen_var_decl(slang_assemble_ctx *A, slang_variable *var) n = new_node0(IR_VAR_DECL); if (n) { _slang_attach_storage(n, var); - assert(var->aux); - assert(n->Store == var->aux); + assert(var->store); + assert(n->Store == var->store); assert(n->Store); assert(n->Store->Index < 0); @@ -3061,7 +3096,6 @@ _slang_gen_assignment(slang_assemble_ctx * A, slang_operation *oper) rhs = _slang_gen_swizzle(rhs, newSwizzle); } n = new_node2(IR_COPY, lhs, rhs); - n->Writemask = writemask; return n; } else { @@ -3129,7 +3163,7 @@ _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); @@ -3162,22 +3196,12 @@ _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; } @@ -3218,8 +3242,6 @@ _slang_gen_array_element(slang_assemble_ctx * A, slang_operation *oper) SWIZZLE_NIL, SWIZZLE_NIL); n = _slang_gen_swizzle(n, swizzle); - /*n->Store = _slang_clone_ir_storage_swz(n->Store, */ - n->Writemask = WRITEMASK_X << index; } assert(n->Store); return n; @@ -3272,12 +3294,12 @@ _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); + return elem; } else { @@ -3552,6 +3574,8 @@ _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: @@ -3705,11 +3729,6 @@ _slang_codegen_global_variable(slang_assemble_ctx *A, slang_variable *var, const GLint totalSize = array_size(size, var->array_len); const GLuint swizzle = _slang_var_swizzle(totalSize, 0); - if (var->initializer) { - slang_info_log_error(A->log, "illegal initializer for uniform '%s'", varName); - return GL_FALSE; - } - if (prog) { /* user-defined uniform */ if (datatype == GL_NONE) { @@ -3717,7 +3736,7 @@ _slang_codegen_global_variable(slang_assemble_ctx *A, slang_variable *var, /* temporary work-around */ GLenum datatype = GL_FLOAT; GLint uniformLoc = _mesa_add_uniform(prog->Parameters, varName, - totalSize, datatype); + totalSize, datatype, NULL); store = _slang_new_ir_storage_swz(PROGRAM_UNIFORM, uniformLoc, totalSize, swizzle); @@ -3734,6 +3753,12 @@ _slang_codegen_global_variable(slang_assemble_ctx *A, slang_variable *var, * "f.a" (GL_FLOAT_VEC3) * "f.b" (GL_FLOAT_VEC4) */ + + if (var->initializer) { + slang_info_log_error(A->log, + "unsupported initializer for uniform '%s'", varName); + return GL_FALSE; + } } else { slang_info_log_error(A->log, @@ -3743,8 +3768,25 @@ _slang_codegen_global_variable(slang_assemble_ctx *A, slang_variable *var, } } else { - GLint uniformLoc = _mesa_add_uniform(prog->Parameters, varName, - totalSize, datatype); + 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); } @@ -3779,8 +3821,19 @@ _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); } @@ -3897,7 +3950,7 @@ _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; diff --git a/src/mesa/shader/slang/slang_compile.c b/src/mesa/shader/slang/slang_compile.c index 294e46235c2..efae4e98fbe 100644 --- a/src/mesa/shader/slang/slang_compile.c +++ b/src/mesa/shader/slang/slang_compile.c @@ -160,10 +160,24 @@ typedef struct slang_output_ctx_ struct gl_program *program; 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) { @@ -220,7 +234,7 @@ 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); @@ -244,7 +258,7 @@ 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; @@ -331,8 +345,8 @@ 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)); @@ -384,23 +398,23 @@ parse_struct_field(slang_parse_ctx * C, slang_output_ctx * O, o.structs = st->structs; if (!parse_type_specifier(C, &o, sp)) - return 0; + 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)) { 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; + RETURN0; } while (*C->I++ != FIELD_NONE); @@ -416,26 +430,26 @@ 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; @@ -447,7 +461,7 @@ 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); } @@ -465,20 +479,62 @@ 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; } +/* invariant qualifer */ +#define TYPE_VARIANT 90 +#define TYPE_INVARIANT 91 + +static int +parse_type_variant(slang_parse_ctx * C, slang_type_variant *variant) +{ + GLuint invariant = *C->I++; + switch (invariant) { + case TYPE_VARIANT: + *variant = SLANG_VARIANT; + return 1; + case TYPE_INVARIANT: + *variant = SLANG_INVARIANT; + return 1; + default: + RETURN0; + } +} + + +/* centroid qualifer */ +#define TYPE_CENTER 95 +#define TYPE_CENTROID 96 + +static int +parse_type_centroid(slang_parse_ctx * C, slang_type_centroid *centroid) +{ + GLuint c = *C->I++; + switch (c) { + case TYPE_CENTER: + *centroid = SLANG_CENTER; + return 1; + case TYPE_CENTROID: + *centroid = SLANG_CENTROID; + return 1; + default: + RETURN0; + } +} + + /* type qualifier */ #define TYPE_QUALIFIER_NONE 0 #define TYPE_QUALIFIER_CONST 1 @@ -491,7 +547,8 @@ parse_struct(slang_parse_ctx * C, slang_output_ctx * O, slang_struct ** st) static int parse_type_qualifier(slang_parse_ctx * C, slang_type_qualifier * qual) { - switch (*C->I++) { + GLuint qualifier = *C->I++; + switch (qualifier) { case TYPE_QUALIFIER_NONE: *qual = SLANG_QUAL_NONE; break; @@ -514,7 +571,7 @@ parse_type_qualifier(slang_parse_ctx * C, slang_type_qualifier * qual) *qual = SLANG_QUAL_FIXEDINPUT; break; default: - return 0; + RETURN0; } return 1; } @@ -652,7 +709,7 @@ 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; @@ -662,77 +719,163 @@ 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 PRECISION_DEFAULT 0 #define PRECISION_LOW 1 #define PRECISION_MEDIUM 2 #define PRECISION_HIGH 3 static int +parse_type_precision(slang_parse_ctx *C, + slang_type_precision *precision) +{ + GLint prec = *C->I++; + switch (prec) { + case PRECISION_DEFAULT: + *precision = SLANG_PREC_DEFAULT; + return 1; + case PRECISION_LOW: + *precision = SLANG_PREC_LOW; + return 1; + case PRECISION_MEDIUM: + *precision = SLANG_PREC_MEDIUM; + return 1; + case PRECISION_HIGH: + *precision = SLANG_PREC_HIGH; + return 1; + default: + RETURN0; + } +} + + +#define TYPE_ARRAY_SIZE 220 +#define TYPE_NO_ARRAY_SIZE 221 + + +/* + * Parse array size (if present) in something like "uniform float [6] var;". + */ +static int +parse_type_array_size(slang_parse_ctx *C, slang_output_ctx * O, + GLint *size) +{ + GLint arr = *C->I++; + GLuint sz; + + switch (arr) { + case TYPE_ARRAY_SIZE: + if (!parse_array_len(C, O, &sz)) + RETURN0; + *size = sz; + return 1; + case TYPE_NO_ARRAY_SIZE: + *size = -1; /* -1 = not an array */ + return 1; + default: + assert(0); + RETURN0; + } +} + +static int parse_fully_specified_type(slang_parse_ctx * C, slang_output_ctx * O, slang_fully_specified_type * type) { - GLuint precision; + if (!parse_type_variant(C, &type->variant)) + RETURN0; + + if (!parse_type_centroid(C, &type->centroid)) + RETURN0; if (!parse_type_qualifier(C, &type->qualifier)) - return 0; - precision = *C->I++; + RETURN0; + + if (!parse_type_precision(C, &type->precision)) + RETURN0; + if (!parse_type_specifier(C, O, &type->specifier)) - return 0; + RETURN0; - switch (precision) { - case PRECISION_DEFAULT: - assert(type->specifier.type < TYPE_SPECIFIER_COUNT); - if (type->specifier.type < TYPE_SPECIFIER_COUNT) + 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)"); + RETURN0; + } + + if (!O->allow_centroid && type->centroid == SLANG_CENTROID) { + slang_info_log_error(C->L, + "'centroid' keyword not allowed (perhaps set #version 120)"); + 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"); + RETURN0; + } + + + /* need this? + if (type->qualifier != SLANG_QUAL_VARYING && + type->variant == SLANG_INVARIANT) { + slang_info_log_error(C->L, + "invariant qualifer only allowed for varying vars"); + RETURN0; + } + */ + + if (O->allow_precision) { + if (type->precision == SLANG_PREC_DEFAULT) { + assert(type->specifier.type < TYPE_SPECIFIER_COUNT); + /* use the default precision for this datatype */ type->precision = O->default_precision[type->specifier.type]; - break; - case PRECISION_LOW: - type->precision = SLANG_PREC_LOW; - break; - case PRECISION_MEDIUM: - type->precision = SLANG_PREC_MEDIUM; - break; - case PRECISION_HIGH: - type->precision = SLANG_PREC_HIGH; - break; - default: - return 0; + } + } + else { + /* only default is allowed */ + if (type->precision != SLANG_PREC_DEFAULT) { + slang_info_log_error(C->L, "precision qualifiers not allowed"); + RETURN0; + } } -#if !FEATURE_es2_glsl - if (precision != PRECISION_DEFAULT) { - slang_info_log_error(C->L, "precision qualifiers not allowed"); - return 0; + if (!O->allow_array_types && type->array_len >= 0) { + slang_info_log_error(C->L, "first-class array types not allowed"); + RETURN0; } -#endif return 1; } @@ -801,6 +944,7 @@ 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 /** @@ -841,7 +985,7 @@ parse_statement(slang_parse_ctx * C, slang_output_ctx * O, oper->type = SLANG_OPER_BLOCK_NO_NEW_SCOPE; while (*C->I != OP_END) if (!parse_child_operation(C, O, oper, 1)) - return 0; + RETURN0; C->I++; break; case OP_BLOCK_BEGIN_NEW_SCOPE: @@ -853,7 +997,7 @@ parse_statement(slang_parse_ctx * C, slang_output_ctx * O, o.vars = oper->locals; while (*C->I != OP_END) if (!parse_child_operation(C, &o, oper, 1)) - return 0; + RETURN0; C->I++; } break; @@ -869,7 +1013,7 @@ 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; @@ -878,18 +1022,23 @@ 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; } } } @@ -902,10 +1051,10 @@ 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; + RETURN0; } C->I++; break; @@ -921,21 +1070,21 @@ parse_statement(slang_parse_ctx * C, slang_output_ctx * O, case OP_RETURN: oper->type = SLANG_OPER_RETURN; if (!parse_child_operation(C, O, oper, 0)) - return 0; + RETURN0; break; case OP_EXPRESSION: oper->type = SLANG_OPER_EXPRESSION; if (!parse_child_operation(C, O, oper, 0)) - return 0; + RETURN0; break; case OP_IF: oper->type = SLANG_OPER_IF; if (!parse_child_operation(C, O, oper, 0)) - return 0; + RETURN0; if (!parse_child_operation(C, O, oper, 1)) - return 0; + RETURN0; if (!parse_child_operation(C, O, oper, 1)) - return 0; + RETURN0; break; case OP_WHILE: { @@ -944,17 +1093,17 @@ 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; + RETURN0; if (!parse_child_operation(C, &o, oper, 1)) - return 0; + RETURN0; } break; case OP_DO: oper->type = SLANG_OPER_DO; if (!parse_child_operation(C, O, oper, 1)) - return 0; + RETURN0; if (!parse_child_operation(C, O, oper, 0)) - return 0; + RETURN0; break; case OP_FOR: { @@ -963,13 +1112,13 @@ 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; + RETURN0; if (!parse_child_operation(C, &o, oper, 1)) - return 0; + RETURN0; if (!parse_child_operation(C, &o, oper, 0)) - return 0; + RETURN0; if (!parse_child_operation(C, &o, oper, 1)) - return 0; + RETURN0; } break; case OP_PRECISION: @@ -983,7 +1132,7 @@ parse_statement(slang_parse_ctx * C, slang_output_ctx * O, } break; default: - return 0; + RETURN0; } return 1; } @@ -998,7 +1147,7 @@ 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; @@ -1016,7 +1165,7 @@ 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; } @@ -1049,12 +1198,12 @@ 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; @@ -1066,7 +1215,7 @@ 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] = @@ -1076,7 +1225,7 @@ 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] = @@ -1086,7 +1235,7 @@ 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]; @@ -1096,37 +1245,37 @@ 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: */ @@ -1137,22 +1286,22 @@ 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: */ @@ -1160,95 +1309,124 @@ 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_METHOD: + printf("******* begin OP_METHOD\n"); + 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) + RETURN0; + + while (*C->I != OP_END) + if (!parse_child_operation(C, O, op, 0)) + 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; + + 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; + } + } +#endif break; case OP_CALL: op->type = SLANG_OPER_CALL; op->a_id = parse_identifier(C); if (op->a_id == SLANG_ATOM_NULL) - return 0; + RETURN0; while (*C->I != OP_END) if (!parse_child_operation(C, O, op, 0)) - return 0; + RETURN0; C->I++; if (!C->parsing_builtin @@ -1258,7 +1436,7 @@ 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; } } break; @@ -1266,22 +1444,22 @@ 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++; @@ -1312,7 +1490,7 @@ 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) { @@ -1320,7 +1498,7 @@ 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: @@ -1328,7 +1506,7 @@ 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: @@ -1336,11 +1514,11 @@ 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 */ @@ -1350,10 +1528,10 @@ 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; param->a_name = parse_identifier(C); if (param->a_name == SLANG_ATOM_NULL) - return 0; + RETURN0; /* if the parameter is an array, parse its size (the size must be * explicitly defined @@ -1470,13 +1648,13 @@ 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; } @@ -1484,43 +1662,46 @@ static int parse_function_prototype(slang_parse_ctx * C, slang_output_ctx * O, slang_function * func) { + GLuint functype; /* parse function type and name */ if (!parse_fully_specified_type(C, O, &func->header.type)) - return 0; - switch (*C->I++) { + RETURN0; + + functype = *C->I++; + switch (functype) { case FUNCTION_ORDINARY: 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 */ @@ -1528,10 +1709,10 @@ 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' @@ -1565,19 +1746,19 @@ 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 @@ -1586,7 +1767,7 @@ 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; @@ -1682,46 +1863,49 @@ parse_init_declarator(slang_parse_ctx * C, slang_output_ctx * O, 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->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; + 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 @@ -1737,7 +1921,17 @@ parse_init_declarator(slang_parse_ctx * C, slang_output_ctx * O, return GL_FALSE; break; default: - return 0; + RETURN0; + } + + if (type->array_len >= 0) { + /* The type was something like "float[4]" */ + if (var->array_len != 0) { + slang_info_log_error(C->L, "multi-dimensional arrays not allowed"); + RETURN0; + } + convert_to_array(C, var, &type->specifier); + var->array_len = type->array_len; } /* allocate global address space for a variable with a known size */ @@ -1761,7 +1955,7 @@ parse_init_declarator(slang_parse_ctx * C, slang_output_ctx * O, A.log = C->L; A.curFuncEndLabel = NULL; if (!_slang_codegen_global_variable(&A, var, C->type)) - return 0; + RETURN0; } /* initialize global variable */ @@ -1774,7 +1968,7 @@ 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; @@ -1791,17 +1985,17 @@ 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); @@ -1908,18 +2102,18 @@ 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; } @@ -1927,9 +2121,13 @@ parse_declaration(slang_parse_ctx * C, slang_output_ctx * O) static int parse_default_precision(slang_parse_ctx * C, slang_output_ctx * O) { -#if FEATURE_es2_glsl int precision, type; + if (!O->allow_precision) { + slang_info_log_error(C->L, "syntax error at \"precision\""); + RETURN0; + } + precision = *C->I++; switch (precision) { case PRECISION_LOW: @@ -1940,7 +2138,7 @@ 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++; @@ -1960,17 +2158,13 @@ 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); O->default_precision[type] = precision; return 1; -#else - slang_info_log_error(C->L, "syntax error at \"precision\""); - return 0; -#endif } @@ -1989,7 +2183,7 @@ init_default_precision(slang_output_ctx *O, slang_unit_type type) O->default_precision[i] = PRECISION_HIGH; #endif } -#if FEATURE_es2_glsl + if (type == SLANG_UNIT_VERTEX_SHADER) { O->default_precision[TYPE_SPECIFIER_FLOAT] = PRECISION_HIGH; O->default_precision[TYPE_SPECIFIER_INT] = PRECISION_HIGH; @@ -1997,14 +2191,13 @@ init_default_precision(slang_output_ctx *O, slang_unit_type type) else { O->default_precision[TYPE_SPECIFIER_INT] = PRECISION_MEDIUM; } -#endif } static int parse_invariant(slang_parse_ctx * C, slang_output_ctx * O) { - if (C->version >= 120 || FEATURE_es2_glsl) { + if (O->allow_invariant) { slang_atom *a = parse_identifier(C); /* XXX not doing anything with this var yet */ /*printf("ID: %s\n", (char*) a);*/ @@ -2012,7 +2205,7 @@ parse_invariant(slang_parse_ctx * C, slang_output_ctx * O) } else { slang_info_log_error(C->L, "syntax error at \"invariant\""); - return 0; + RETURN0; } } @@ -2046,7 +2239,6 @@ parse_code_unit(slang_parse_ctx * C, slang_code_unit * unit, } /* setup output context */ - init_default_precision(&o, unit->type); o.funs = &unit->funs; o.structs = &unit->structs; o.vars = &unit->vars; @@ -2055,6 +2247,27 @@ parse_code_unit(slang_parse_ctx * C, slang_code_unit * unit, o.vartable = _slang_new_var_table(maxRegs); _slang_push_var_table(o.vartable); + /* allow 'invariant' keyword? */ +#if FEATURE_es2_glsl + o.allow_invariant = GL_TRUE; +#else + o.allow_invariant = (C->version >= 120) ? GL_TRUE : GL_FALSE; +#endif + + /* allow 'centroid' keyword? */ + o.allow_centroid = (C->version >= 120) ? GL_TRUE : GL_FALSE; + + /* allow 'lowp/mediump/highp' keywords? */ +#if FEATURE_es2_glsl + o.allow_precision = GL_TRUE; +#else + o.allow_precision = (C->version >= 120) ? GL_TRUE : GL_FALSE; +#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) { switch (*C->I++) { diff --git a/src/mesa/shader/slang/slang_compile_operation.h b/src/mesa/shader/slang/slang_compile_operation.h index 4f92aa9a086..ec99338cb88 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] "--" */ @@ -115,6 +116,7 @@ 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 */ diff --git a/src/mesa/shader/slang/slang_compile_variable.c b/src/mesa/shader/slang/slang_compile_variable.c index 3428b49e166..abe9c55d799 100644 --- a/src/mesa/shader/slang/slang_compile_variable.c +++ b/src/mesa/shader/slang/slang_compile_variable.c @@ -122,6 +122,9 @@ slang_fully_specified_type_copy(slang_fully_specified_type * x, 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; if (!slang_type_specifier_copy(&z.specifier, &y->specifier)) { slang_fully_specified_type_destruct(&z); return 0; @@ -266,7 +269,7 @@ slang_variable_construct(slang_variable * var) var->address = ~0; var->size = 0; var->isTemp = GL_FALSE; - var->aux = NULL; + var->store = NULL; var->declared = 0; return 1; } diff --git a/src/mesa/shader/slang/slang_compile_variable.h b/src/mesa/shader/slang/slang_compile_variable.h index d81a3d28699..d2a86b772c6 100644 --- a/src/mesa/shader/slang/slang_compile_variable.h +++ b/src/mesa/shader/slang/slang_compile_variable.h @@ -30,6 +30,23 @@ extern "C" { #endif +struct slang_ir_storage_; + + +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, @@ -65,6 +82,9 @@ 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 @@ -91,7 +111,7 @@ typedef struct slang_variable_ 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; diff --git a/src/mesa/shader/slang/slang_emit.c b/src/mesa/shader/slang/slang_emit.c index 672ec4bd606..f31e9b4e6c7 100644 --- a/src/mesa/shader/slang/slang_emit.c +++ b/src/mesa/shader/slang/slang_emit.c @@ -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; @@ -108,6 +110,30 @@ writemask_to_swizzle(GLuint writemask) /** + * Convert a swizzle mask to a writemask. + * Note that the slang_ir_storage->Swizzle field can represent either a + * swizzle mask or a writemask, depending on how it's used. For example, + * when we parse "direction.yz" alone, we don't know whether .yz is a + * writemask or a swizzle. In this case, we encode ".yz" in store->Swizzle + * as a swizzle mask (.yz?? actually). Later, if direction.yz is used as + * an R-value, we use store->Swizzle as-is. Otherwise, if direction.yz is + * used as an L-value, we convert it to a writemask. + */ +static GLuint +swizzle_to_writemask(GLuint swizzle) +{ + GLuint i, writemask = 0x0; + for (i = 0; i < 4; i++) { + GLuint swz = GET_SWZ(swizzle, i); + if (swz <= SWIZZLE_W) { + writemask |= (1 << swz); + } + } + return writemask; +} + + +/** * Swizzle a swizzle (function composition). * That is, return swz2(swz1), or said another way: swz1.szw2 * Example: swizzle_swizzle(".zwxx", ".xxyw") yields ".zzwx" @@ -233,16 +259,18 @@ fix_swizzle(GLuint swizzle) * Convert IR storage to an instruction dst register. */ static void -storage_to_dst_reg(struct prog_dst_register *dst, const slang_ir_storage *st, - GLuint writemask) +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); } @@ -256,14 +284,31 @@ storage_to_dst_reg(struct prog_dst_register *dst, const slang_ir_storage *st, assert(size >= 1); assert(size <= 4); - if (size == 1) { - GLuint comp = GET_SWZ(swizzle, 0); - assert(comp < 4); - dst->WriteMask = WRITEMASK_X << comp; + if (swizzle != SWIZZLE_XYZW) { + dst->WriteMask = swizzle_to_writemask(swizzle); } else { + GLuint writemask; + switch (size) { + case 1: + writemask = WRITEMASK_X << GET_SWZ(st->Swizzle, 0); + break; + case 2: + writemask = WRITEMASK_XY; + break; + case 3: + writemask = WRITEMASK_XYZ; + break; + case 4: + writemask = WRITEMASK_XYZW; + break; + default: + ; /* error would have been caught above */ + } dst->WriteMask = writemask; } + + dst->RelAddr = relAddr; } @@ -278,8 +323,10 @@ 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; + assert(st->Index >= 0); index += st->Index; swizzle = _slang_swizzle_swizzle(fix_swizzle(st->Swizzle), swizzle); } @@ -309,38 +356,28 @@ storage_to_src_reg(struct prog_src_register *src, const slang_ir_storage *st) /* - * Setup an instrucion src register to point to a scalar constant. + * Setup storage pointing to a scalar constant/literal. */ static void -constant_to_src_reg(struct prog_src_register *src, GLfloat val, - slang_emit_info *emitInfo) +constant_to_storage(slang_emit_info *emitInfo, + GLfloat val, + slang_ir_storage *store) { - GLuint zeroSwizzle; - GLint zeroReg; + GLuint swizzle; + GLint reg; GLfloat value[4]; value[0] = val; - zeroReg = _mesa_add_unnamed_constant(emitInfo->prog->Parameters, - value, 1, &zeroSwizzle); - assert(zeroReg >= 0); + reg = _mesa_add_unnamed_constant(emitInfo->prog->Parameters, + value, 1, &swizzle); - src->File = PROGRAM_CONSTANT; - src->Index = zeroReg; - src->Swizzle = zeroSwizzle; -} - - -static void -address_to_dst_reg(struct prog_dst_register *dst, GLuint index) -{ - assert(index == 0); /* only one address reg at this time */ - dst->File = PROGRAM_ADDRESS; - dst->Index = index; - dst->WriteMask = WRITEMASK_X; + memset(store, 0, sizeof(*store)); + store->File = PROGRAM_CONSTANT; + store->Index = reg; + store->Swizzle = swizzle; } - /** * Add new instruction at end of given program. * \param prog the program to append instruction onto @@ -359,9 +396,17 @@ 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); @@ -375,6 +420,166 @@ 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) +{ + 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]; + } + } + } + } + + /* 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; + } + + /* 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); + + for (i = 0; i < 3; i++) { + if (src[i]) + storage_to_src_reg(&inst->SrcReg[i], src[i]); + } + + /* Free any temp registers that we allocated above */ + for (i = 0; i < 3; i++) { + if (isTemp[i]) + _slang_free_temp(emitInfo->vt, &newSrc[i]); + } + + return inst; +} + + + +/** + * Put a comment on the given instruction. + */ +static void +inst_comment(struct prog_instruction *inst, const char *comment) +{ + if (inst) + inst->Comment = _mesa_strdup(comment); +} + + + /** * Return pointer to last instruction in program. */ @@ -488,6 +693,9 @@ instruction_annotation(gl_inst_opcode opcode, char *dstAnnot, case OPCODE_MUL: operator = "*"; break; + case OPCODE_DP2: + operator = "DP2"; + break; case OPCODE_DP3: operator = "DP3"; break; @@ -528,12 +736,10 @@ instruction_annotation(gl_inst_opcode opcode, char *dstAnnot, * Emit an instruction that's just a comment. */ static struct prog_instruction * -emit_comment(slang_emit_info *emitInfo, const char *s) +emit_comment(slang_emit_info *emitInfo, const char *comment) { struct prog_instruction *inst = new_instruction(emitInfo, OPCODE_NOP); - if (inst) { - inst->Comment = _mesa_strdup(s); - } + inst_comment(inst, comment); return inst; } @@ -545,22 +751,13 @@ emit_comment(slang_emit_info *emitInfo, const char *s) static struct prog_instruction * emit_arith(slang_emit_info *emitInfo, slang_ir_node *n) { - struct prog_instruction *inst; const slang_ir_info *info = _slang_ir_info(n->Opcode); - char *srcAnnot[3], *dstAnnot; + struct prog_instruction *inst; GLuint i; - slang_ir_node *temps[3]; - - /* we'll save pointers to nodes/storage to free in temps[] until - * the very end. - */ - temps[0] = temps[1] = temps[2] = NULL; assert(info); assert(info->InstOpcode != OPCODE_NOP); - srcAnnot[0] = srcAnnot[1] = srcAnnot[2] = dstAnnot = NULL; - #if PEEPHOLE_OPTIMIZATIONS /* Look for MAD opportunity */ if (info->NumParams == 2 && @@ -569,85 +766,67 @@ emit_arith(slang_emit_info *emitInfo, slang_ir_node *n) emit(emitInfo, n->Children[0]->Children[0]); /* A */ emit(emitInfo, n->Children[0]->Children[1]); /* B */ emit(emitInfo, n->Children[1]); /* C */ - /* generate MAD instruction */ - inst = new_instruction(emitInfo, OPCODE_MAD); - /* operands: A, B, C: */ - storage_to_src_reg(&inst->SrcReg[0], n->Children[0]->Children[0]->Store); - storage_to_src_reg(&inst->SrcReg[1], n->Children[0]->Children[1]->Store); - storage_to_src_reg(&inst->SrcReg[2], n->Children[1]->Store); - temps[0] = n->Children[0]->Children[0]; - temps[1] = n->Children[0]->Children[1]; - temps[2] = n->Children[1]; - } - else if (info->NumParams == 2 && - n->Opcode == IR_ADD && n->Children[1]->Opcode == IR_MUL) { + alloc_node_storage(emitInfo, n, -1); /* dest */ + + inst = emit_instruction(emitInfo, + OPCODE_MAD, + n->Store, + n->Children[0]->Children[0]->Store, + n->Children[0]->Children[1]->Store, + n->Children[1]->Store); + + free_node_storage(emitInfo->vt, n->Children[0]->Children[0]); + free_node_storage(emitInfo->vt, n->Children[0]->Children[1]); + free_node_storage(emitInfo->vt, n->Children[1]); + return inst; + } + + if (info->NumParams == 2 && + n->Opcode == IR_ADD && n->Children[1]->Opcode == IR_MUL) { /* found pattern IR_ADD(A, IR_MUL(B, C)) */ emit(emitInfo, n->Children[0]); /* A */ emit(emitInfo, n->Children[1]->Children[0]); /* B */ emit(emitInfo, n->Children[1]->Children[1]); /* C */ - /* generate MAD instruction */ - inst = new_instruction(emitInfo, OPCODE_MAD); - /* operands: B, C, A */ - storage_to_src_reg(&inst->SrcReg[0], n->Children[1]->Children[0]->Store); - storage_to_src_reg(&inst->SrcReg[1], n->Children[1]->Children[1]->Store); - storage_to_src_reg(&inst->SrcReg[2], n->Children[0]->Store); - temps[0] = n->Children[1]->Children[0]; - temps[1] = n->Children[1]->Children[1]; - temps[2] = n->Children[0]; + alloc_node_storage(emitInfo, n, -1); /* dest */ + + inst = emit_instruction(emitInfo, + OPCODE_MAD, + n->Store, + n->Children[1]->Children[0]->Store, + n->Children[1]->Children[1]->Store, + n->Children[0]->Store); + + free_node_storage(emitInfo->vt, n->Children[1]->Children[0]); + free_node_storage(emitInfo->vt, n->Children[1]->Children[1]); + free_node_storage(emitInfo->vt, n->Children[0]); + return inst; } - else #endif - { - /* normal case */ - /* gen code for children */ - for (i = 0; i < info->NumParams; i++) { - emit(emitInfo, n->Children[i]); - if (!n->Children[i] || !n->Children[i]->Store) { - /* error recovery */ - return NULL; - } + /* gen code for children, may involve temp allocation */ + for (i = 0; i < info->NumParams; i++) { + emit(emitInfo, n->Children[i]); + if (!n->Children[i] || !n->Children[i]->Store) { + /* error recovery */ + return NULL; } - - /* gen this instruction and src registers */ - inst = new_instruction(emitInfo, info->InstOpcode); - for (i = 0; i < info->NumParams; i++) - storage_to_src_reg(&inst->SrcReg[i], n->Children[i]->Store); - - /* annotation */ - for (i = 0; i < info->NumParams; i++) - srcAnnot[i] = storage_annotation(n->Children[i], emitInfo->prog); - - /* record (potential) temps to free */ - for (i = 0; i < info->NumParams; i++) - temps[i] = n->Children[i]; } /* result storage */ alloc_node_storage(emitInfo, n, -1); - assert(n->Store->Index >= 0); - if (n->Store->Size == 2) - n->Writemask = WRITEMASK_XY; - else if (n->Store->Size == 3) - n->Writemask = WRITEMASK_XYZ; - else if (n->Store->Size == 1) - n->Writemask = WRITEMASK_X << GET_SWZ(n->Store->Swizzle, 0); - - - storage_to_dst_reg(&inst->DstReg, n->Store, n->Writemask); + inst = emit_instruction(emitInfo, + info->InstOpcode, + n->Store, /* dest */ + (info->NumParams > 0 ? n->Children[0]->Store : NULL), + (info->NumParams > 1 ? n->Children[1]->Store : NULL), + (info->NumParams > 2 ? n->Children[2]->Store : NULL) + ); - dstAnnot = storage_annotation(n, emitInfo->prog); - - inst->Comment = instruction_annotation(inst->Opcode, dstAnnot, srcAnnot[0], - srcAnnot[1], srcAnnot[2]); - - /* really free temps now */ - for (i = 0; i < 3; i++) - if (temps[i]) - free_node_storage(emitInfo->vt, temps[i]); + /* free temps */ + for (i = 0; i < info->NumParams; i++) + free_node_storage(emitInfo->vt, n->Children[i]); - /*_mesa_print_instruction(inst);*/ return inst; } @@ -659,7 +838,7 @@ emit_arith(slang_emit_info *emitInfo, slang_ir_node *n) static struct prog_instruction * emit_compare(slang_emit_info *emitInfo, slang_ir_node *n) { - struct prog_instruction *inst; + struct prog_instruction *inst = NULL; GLint size; assert(n->Opcode == IR_EQUAL || n->Opcode == IR_NOTEQUAL); @@ -680,15 +859,20 @@ emit_compare(slang_emit_info *emitInfo, slang_ir_node *n) size = n->Children[0]->Store->Size; if (size == 1) { - gl_inst_opcode opcode; - - opcode = n->Opcode == IR_EQUAL ? OPCODE_SEQ : OPCODE_SNE; - inst = new_instruction(emitInfo, opcode); - storage_to_src_reg(&inst->SrcReg[0], n->Children[0]->Store); - storage_to_src_reg(&inst->SrcReg[1], n->Children[1]->Store); - storage_to_dst_reg(&inst->DstReg, n->Store, n->Writemask); + gl_inst_opcode opcode = n->Opcode == IR_EQUAL ? OPCODE_SEQ : OPCODE_SNE; + inst = emit_instruction(emitInfo, + opcode, + n->Store, /* dest */ + n->Children[0]->Store, + n->Children[1]->Store, + NULL); } else if (size <= 4) { + /* compare two vectors. + * Unfortunately, there's no instruction to compare vectors and + * return a scalar result. Do it with some compare and dot product + * instructions... + */ GLuint swizzle; gl_inst_opcode dotOp; slang_ir_storage tempStore; @@ -708,34 +892,42 @@ emit_compare(slang_emit_info *emitInfo, slang_ir_node *n) } else { assert(size == 2); - dotOp = OPCODE_DP3; + dotOp = OPCODE_DP3; /* XXX use OPCODE_DP2 eventually */ swizzle = MAKE_SWIZZLE4(SWIZZLE_X, SWIZZLE_Y, SWIZZLE_Y, SWIZZLE_Y); } /* Compute inequality (temp = (A != B)) */ - inst = new_instruction(emitInfo, OPCODE_SNE); - storage_to_dst_reg(&inst->DstReg, &tempStore, n->Writemask); - storage_to_src_reg(&inst->SrcReg[0], n->Children[0]->Store); - storage_to_src_reg(&inst->SrcReg[1], n->Children[1]->Store); - inst->Comment = _mesa_strdup("Compare values"); + inst = emit_instruction(emitInfo, + OPCODE_SNE, + &tempStore, + n->Children[0]->Store, + n->Children[1]->Store, + NULL); + inst_comment(inst, "Compare values"); /* Compute val = DOT(temp, temp) (reduction) */ - inst = new_instruction(emitInfo, dotOp); - storage_to_dst_reg(&inst->DstReg, n->Store, n->Writemask); - storage_to_src_reg(&inst->SrcReg[0], &tempStore); - storage_to_src_reg(&inst->SrcReg[1], &tempStore); + inst = emit_instruction(emitInfo, + dotOp, + n->Store, + &tempStore, + &tempStore, + NULL); inst->SrcReg[0].Swizzle = inst->SrcReg[1].Swizzle = swizzle; /*override*/ - inst->Comment = _mesa_strdup("Reduce vec to bool"); + inst_comment(inst, "Reduce vec to bool"); _slang_free_temp(emitInfo->vt, &tempStore); /* free temp */ if (n->Opcode == IR_EQUAL) { /* compute val = !val.x with SEQ val, val, 0; */ - inst = new_instruction(emitInfo, OPCODE_SEQ); - storage_to_src_reg(&inst->SrcReg[0], n->Store); - constant_to_src_reg(&inst->SrcReg[1], 0.0, emitInfo); - storage_to_dst_reg(&inst->DstReg, n->Store, n->Writemask); - inst->Comment = _mesa_strdup("Invert true/false"); + slang_ir_storage zero; + constant_to_storage(emitInfo, 0.0, &zero); + inst = emit_instruction(emitInfo, + OPCODE_SEQ, + n->Store, /* dest */ + n->Store, + &zero, + NULL); + inst_comment(inst, "Invert true/false"); } } else { @@ -752,41 +944,54 @@ emit_compare(slang_emit_info *emitInfo, slang_ir_node *n) return NULL; for (i = 0; i < num; i++) { - /* SNE sneTemp, left[i], right[i] */ - inst = new_instruction(emitInfo, OPCODE_SNE); - storage_to_src_reg(&inst->SrcReg[0], n->Children[0]->Store); - storage_to_src_reg(&inst->SrcReg[1], n->Children[1]->Store); - inst->SrcReg[0].Index += i; - inst->SrcReg[1].Index += i; + slang_ir_storage srcStore0 = *n->Children[0]->Store; + slang_ir_storage srcStore1 = *n->Children[1]->Store; + srcStore0.Index += i; + srcStore1.Index += i; + if (i == 0) { - storage_to_dst_reg(&inst->DstReg, &accTemp, WRITEMASK_XYZW); - inst->Comment = _mesa_strdup("Begin struct/array comparison"); + /* SNE accTemp, left[i], right[i] */ + inst = emit_instruction(emitInfo, OPCODE_SNE, + &accTemp, /* dest */ + &srcStore0, + &srcStore1, + NULL); + inst_comment(inst, "Begin struct/array comparison"); } else { - storage_to_dst_reg(&inst->DstReg, &sneTemp, WRITEMASK_XYZW); - + /* SNE sneTemp, left[i], right[i] */ + inst = emit_instruction(emitInfo, OPCODE_SNE, + &sneTemp, /* dest */ + &srcStore0, + &srcStore1, + NULL); /* ADD accTemp, accTemp, sneTemp; # like logical-OR */ - inst = new_instruction(emitInfo, OPCODE_ADD); - storage_to_dst_reg(&inst->DstReg, &accTemp, WRITEMASK_XYZW); - storage_to_src_reg(&inst->SrcReg[0], &accTemp); - storage_to_src_reg(&inst->SrcReg[1], &sneTemp); + inst = emit_instruction(emitInfo, OPCODE_ADD, + &accTemp, /* dest */ + &accTemp, + &sneTemp, + NULL); } } /* compute accTemp.x || accTemp.y || accTemp.z || accTemp.w with DOT4 */ - inst = new_instruction(emitInfo, OPCODE_DP4); - storage_to_dst_reg(&inst->DstReg, n->Store, n->Writemask); - storage_to_src_reg(&inst->SrcReg[0], &accTemp); - storage_to_src_reg(&inst->SrcReg[1], &accTemp); - inst->Comment = _mesa_strdup("End struct/array comparison"); + inst = emit_instruction(emitInfo, OPCODE_DP4, + n->Store, + &accTemp, + &accTemp, + NULL); + inst_comment(inst, "End struct/array comparison"); if (n->Opcode == IR_EQUAL) { /* compute tmp.x = !tmp.x via tmp.x = (tmp.x == 0) */ - inst = new_instruction(emitInfo, OPCODE_SEQ); - storage_to_dst_reg(&inst->DstReg, n->Store, n->Writemask); - storage_to_src_reg(&inst->SrcReg[0], n->Store); - constant_to_src_reg(&inst->SrcReg[1], 0.0, emitInfo); - inst->Comment = _mesa_strdup("Invert true/false"); + slang_ir_storage zero; + constant_to_storage(emitInfo, 0.0, &zero); + inst = emit_instruction(emitInfo, OPCODE_SEQ, + n->Store, /* dest */ + n->Store, + &zero, + NULL); + inst_comment(inst, "Invert true/false"); } _slang_free_temp(emitInfo->vt, &accTemp); @@ -862,16 +1067,18 @@ emit_clamp(slang_emit_info *emitInfo, slang_ir_node *n) alloc_node_storage(emitInfo, &tmpNode, n->Store->Size); /* tmp = max(ch[0], ch[1]) */ - inst = new_instruction(emitInfo, OPCODE_MAX); - storage_to_dst_reg(&inst->DstReg, tmpNode.Store, n->Writemask); - storage_to_src_reg(&inst->SrcReg[0], n->Children[0]->Store); - storage_to_src_reg(&inst->SrcReg[1], n->Children[1]->Store); + inst = emit_instruction(emitInfo, OPCODE_MAX, + tmpNode.Store, /* dest */ + n->Children[0]->Store, + n->Children[1]->Store, + NULL); /* n->dest = min(tmp, ch[2]) */ - inst = new_instruction(emitInfo, OPCODE_MIN); - storage_to_dst_reg(&inst->DstReg, n->Store, n->Writemask); - storage_to_src_reg(&inst->SrcReg[0], tmpNode.Store); - storage_to_src_reg(&inst->SrcReg[1], n->Children[2]->Store); + inst = emit_instruction(emitInfo, OPCODE_MIN, + n->Store, /* dest */ + tmpNode.Store, + n->Children[2]->Store, + NULL); free_node_storage(emitInfo->vt, &tmpNode); @@ -893,9 +1100,12 @@ emit_negation(slang_emit_info *emitInfo, slang_ir_node *n) if (!alloc_node_storage(emitInfo, n, n->Children[0]->Store->Size)) return NULL; - inst = new_instruction(emitInfo, OPCODE_MOV); - storage_to_dst_reg(&inst->DstReg, n->Store, n->Writemask); - storage_to_src_reg(&inst->SrcReg[0], n->Children[0]->Store); + inst = emit_instruction(emitInfo, + OPCODE_MOV, + n->Store, /* dest */ + n->Children[0]->Store, + NULL, + NULL); inst->SrcReg[0].NegateBase = NEGATE_XYZW; return inst; } @@ -930,13 +1140,17 @@ 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); @@ -948,7 +1162,7 @@ emit_fcall(slang_emit_info *emitInfo, slang_ir_node *n) * really just a NOP to attach the label to. */ inst = new_instruction(emitInfo, OPCODE_BGNSUB); - inst->Comment = _mesa_strdup(n->Label->Name); + inst_comment(inst, n->Label->Name); } /* body of function: */ @@ -963,17 +1177,18 @@ emit_fcall(slang_emit_info *emitInfo, slang_ir_node *n) if (emitInfo->EmitBeginEndSub) { inst = new_instruction(emitInfo, OPCODE_ENDSUB); - inst->Comment = _mesa_strdup(n->Label->Name); + inst_comment(inst, n->Label->Name); } /* pop/restore cur program */ emitInfo->prog = progSave; + emitInfo->MaxInstructions = maxInstSave; /* emit the function call */ inst = new_instruction(emitInfo, OPCODE_CAL); /* The branch target is just the subroutine number (changed later) */ inst->BranchTarget = subroutineId; - inst->Comment = _mesa_strdup(n->Label->Name); + inst_comment(inst, n->Label->Name); assert(inst->BranchTarget >= 0); return inst; @@ -1019,28 +1234,33 @@ static struct prog_instruction * emit_tex(slang_emit_info *emitInfo, slang_ir_node *n) { struct prog_instruction *inst; - - (void) emit(emitInfo, n->Children[1]); + gl_inst_opcode opcode; if (n->Opcode == IR_TEX) { - inst = new_instruction(emitInfo, OPCODE_TEX); + opcode = OPCODE_TEX; } else if (n->Opcode == IR_TEXB) { - inst = new_instruction(emitInfo, OPCODE_TXB); + opcode = OPCODE_TXB; } else { assert(n->Opcode == IR_TEXP); - inst = new_instruction(emitInfo, OPCODE_TXP); + opcode = OPCODE_TXP; } + /* emit code for the texcoord operand */ + (void) emit(emitInfo, n->Children[1]); + + /* alloc storage for result of texture fetch */ if (!alloc_node_storage(emitInfo, n, 4)) return NULL; - storage_to_dst_reg(&inst->DstReg, n->Store, n->Writemask); - - /* Child[1] is the coord */ - assert(n->Children[1]->Store->Index >= 0); - storage_to_src_reg(&inst->SrcReg[0], n->Children[1]->Store); + /* emit TEX instruction; Child[1] is the texcoord */ + inst = emit_instruction(emitInfo, + opcode, + n->Store, + n->Children[1]->Store, + NULL, + NULL); /* Child[0] is the sampler (a uniform which'll indicate the texture unit) */ assert(n->Children[0]->Store); @@ -1051,14 +1271,8 @@ emit_tex(slang_emit_info *emitInfo, slang_ir_node *n) assert(n->Children[0]->Store->Size <= TEXTURE_RECT_INDEX); inst->TexSrcTarget = n->Children[0]->Store->Size; -#if 0 - inst->TexSrcUnit = 27; /* Dummy value; the TexSrcUnit will be computed at - * link time, using the sampler uniform's value. - */ - inst->Sampler = n->Children[0]->Store->Index; /* i.e. uniform's index */ -#else inst->TexSrcUnit = n->Children[0]->Store->Index; /* i.e. uniform's index */ -#endif + return inst; } @@ -1109,12 +1323,18 @@ 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) { /* Peephole optimization: * The Right-Hand-Side has its results in a temporary place. * Modify the RHS (and the prev instruction) to store its results * in the destination specified by n->Children[0]. * Then, this MOVE is a no-op. + * Ex: + * MUL tmp, x, y; + * MOV a, tmp; + * becomes: + * MUL a, x, y; */ if (n->Children[1]->Opcode != IR_SWIZZLE) _slang_free_temp(emitInfo->vt, n->Children[1]->Store); @@ -1123,11 +1343,7 @@ emit_copy(slang_emit_info *emitInfo, slang_ir_node *n) /* fixup the previous instruction (which stored the RHS result) */ assert(n->Children[0]->Store->Index >= 0); - /* use tighter writemask when possible */ - if (n->Writemask == WRITEMASK_XYZW) - n->Writemask = inst->DstReg.WriteMask; - - storage_to_dst_reg(&inst->DstReg, n->Children[0]->Store, n->Writemask); + storage_to_dst_reg(&inst->DstReg, n->Children[0]->Store); return inst; } else @@ -1138,15 +1354,16 @@ emit_copy(slang_emit_info *emitInfo, slang_ir_node *n) slang_ir_storage dstStore = *n->Children[0]->Store; slang_ir_storage srcStore = *n->Children[1]->Store; GLint size = srcStore.Size; - ASSERT(n->Children[0]->Writemask == WRITEMASK_XYZW); ASSERT(n->Children[1]->Store->Swizzle == SWIZZLE_NOOP); dstStore.Size = 4; srcStore.Size = 4; while (size >= 4) { - inst = new_instruction(emitInfo, OPCODE_MOV); - inst->Comment = _mesa_strdup("IR_COPY block"); - storage_to_dst_reg(&inst->DstReg, &dstStore, n->Writemask); - storage_to_src_reg(&inst->SrcReg[0], &srcStore); + inst = emit_instruction(emitInfo, OPCODE_MOV, + &dstStore, + &srcStore, + NULL, + NULL); + inst_comment(inst, "IR_COPY block"); srcStore.Index++; dstStore.Index++; size -= 4; @@ -1155,10 +1372,12 @@ emit_copy(slang_emit_info *emitInfo, slang_ir_node *n) else { /* single register move */ char *srcAnnot, *dstAnnot; - inst = new_instruction(emitInfo, OPCODE_MOV); assert(n->Children[0]->Store->Index >= 0); - storage_to_dst_reg(&inst->DstReg, n->Children[0]->Store, n->Writemask); - storage_to_src_reg(&inst->SrcReg[0], n->Children[1]->Store); + inst = emit_instruction(emitInfo, OPCODE_MOV, + n->Children[0]->Store, /* dest */ + n->Children[1]->Store, + NULL, + NULL); dstAnnot = storage_annotation(n->Children[0], emitInfo->prog); srcAnnot = storage_annotation(n->Children[1], emitInfo->prog); inst->Comment = instruction_annotation(inst->Opcode, dstAnnot, @@ -1215,12 +1434,14 @@ emit_cond(slang_emit_info *emitInfo, slang_ir_node *n) */ if (!alloc_node_storage(emitInfo, n, 1)) return NULL; - inst = new_instruction(emitInfo, OPCODE_MOV); + inst = emit_instruction(emitInfo, OPCODE_MOV, + n->Store, /* dest */ + n->Children[0]->Store, + NULL, + NULL); inst->CondUpdate = GL_TRUE; - storage_to_dst_reg(&inst->DstReg, n->Store, n->Writemask); - storage_to_src_reg(&inst->SrcReg[0], n->Children[0]->Store); + inst_comment(inst, "COND expr"); _slang_free_temp(emitInfo->vt, n->Store); - inst->Comment = _mesa_strdup("COND expr"); return inst; } } @@ -1250,6 +1471,7 @@ emit_not(slang_emit_info *emitInfo, slang_ir_node *n) { 0, 0 } }; struct prog_instruction *inst; + slang_ir_storage zero; GLuint i; /* child expr */ @@ -1272,13 +1494,17 @@ emit_not(slang_emit_info *emitInfo, slang_ir_node *n) if (!alloc_node_storage(emitInfo, n, n->Children[0]->Store->Size)) return NULL; - inst = new_instruction(emitInfo, OPCODE_SEQ); - storage_to_dst_reg(&inst->DstReg, n->Store, n->Writemask); - storage_to_src_reg(&inst->SrcReg[0], n->Children[0]->Store); - constant_to_src_reg(&inst->SrcReg[1], 0.0, emitInfo); + constant_to_storage(emitInfo, 0.0, &zero); + inst = emit_instruction(emitInfo, + OPCODE_SEQ, + n->Store, + n->Children[0]->Store, + &zero, + NULL); + inst_comment(inst, "NOT"); + free_node_storage(emitInfo->vt, n->Children[0]); - inst->Comment = _mesa_strdup("NOT"); return inst; } @@ -1312,8 +1538,10 @@ emit_if(slang_emit_info *emitInfo, slang_ir_node *n) ifInstLoc = prog->NumInstructions; if (emitInfo->EmitHighLevelInstructions) { - struct prog_instruction *ifInst = new_instruction(emitInfo, OPCODE_IF); if (emitInfo->EmitCondCodes) { + /* IF condcode THEN ... */ + struct prog_instruction *ifInst; + ifInst = new_instruction(emitInfo, OPCODE_IF); ifInst->DstReg.CondMask = COND_NE; /* if cond is non-zero */ /* only test the cond code (1 of 4) that was updated by the * previous instruction. @@ -1321,15 +1549,19 @@ emit_if(slang_emit_info *emitInfo, slang_ir_node *n) ifInst->DstReg.CondSwizzle = writemask_to_swizzle(condWritemask); } else { - /* test reg.x */ - storage_to_src_reg(&ifInst->SrcReg[0], n->Children[0]->Store); + /* IF src[0] THEN ... */ + emit_instruction(emitInfo, OPCODE_IF, + NULL, /* dst */ + n->Children[0]->Store, /* op0 */ + NULL, + NULL); } } else { /* conditional jump to else, or endif */ struct prog_instruction *ifInst = new_instruction(emitInfo, OPCODE_BRA); ifInst->DstReg.CondMask = COND_EQ; /* BRA if cond is zero */ - ifInst->Comment = _mesa_strdup("if zero"); + inst_comment(ifInst, "if zero"); ifInst->DstReg.CondSwizzle = writemask_to_swizzle(condWritemask); } @@ -1346,7 +1578,7 @@ emit_if(slang_emit_info *emitInfo, slang_ir_node *n) /* jump to endif instruction */ struct prog_instruction *inst; inst = new_instruction(emitInfo, OPCODE_BRA); - inst->Comment = _mesa_strdup("else"); + inst_comment(inst, "else"); inst->DstReg.CondMask = COND_TR; /* always branch */ } prog->Instructions[ifInstLoc].BranchTarget = prog->NumInstructions; @@ -1517,8 +1749,11 @@ emit_cont_break_if_true(slang_emit_info *emitInfo, slang_ir_node *n) */ GLint ifInstLoc; ifInstLoc = emitInfo->prog->NumInstructions; - inst = new_instruction(emitInfo, OPCODE_IF); - storage_to_src_reg(&inst->SrcReg[0], n->Children[0]->Store); + inst = emit_instruction(emitInfo, OPCODE_IF, + NULL, /* dest */ + n->Children[0]->Store, + NULL, + NULL); n->InstLocation = emitInfo->prog->NumInstructions; inst = new_instruction(emitInfo, opcode); @@ -1547,158 +1782,140 @@ 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); - - 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) - */ -static struct prog_instruction * -move_block(slang_emit_info *emitInfo, - GLuint size, GLboolean relAddr, - const slang_ir_storage *dst, - const slang_ir_storage *src) -{ - struct prog_instruction *inst; - - if (size > 4) { - /* move matrix/struct etc (block of registers) */ - slang_ir_storage dstStore = *dst; - slang_ir_storage srcStore = *src; - //GLint size = srcStore.Size; - /*ASSERT(n->Children[0]->Writemask == WRITEMASK_XYZW); - ASSERT(n->Children[1]->Store->Swizzle == SWIZZLE_NOOP); - */ - dstStore.Size = 4; - srcStore.Size = 4; - while (size >= 4) { - inst = new_instruction(emitInfo, OPCODE_MOV); - inst->Comment = _mesa_strdup("IR_COPY block"); - storage_to_dst_reg(&inst->DstReg, &dstStore, WRITEMASK_XYZW); - storage_to_src_reg(&inst->SrcReg[0], &srcStore); - inst->SrcReg[0].RelAddr = relAddr; - srcStore.Index++; - dstStore.Index++; - size -= 4; - } - } - else { - /* single register move */ - GLuint writemask; - if (size == 1) { - GLuint comp = GET_SWZ(src->Swizzle, 0); - assert(comp < 4); - writemask = WRITEMASK_X << comp; - } - else { - writemask = WRITEMASK_XYZW; - } - inst = new_instruction(emitInfo, OPCODE_MOV); - storage_to_dst_reg(&inst->DstReg, dst, writemask); - storage_to_src_reg(&inst->SrcReg[0], src); - inst->SrcReg[0].RelAddr = relAddr; - } + /* 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; } - /** - * Dereference array element. Just resolve storage for the array - * element represented by this node. + * 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 * emit_array_element(slang_emit_info *emitInfo, slang_ir_node *n) { - slang_ir_storage *root; + 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; assert(n->Opcode == IR_ELEMENT); - assert(n->Store); - assert(n->Store->File == PROGRAM_UNDEFINED); - assert(n->Store->Parent); - assert(n->Store->Size > 0); - - root = n->Store; - while (root->Parent) - root = root->Parent; + assert(elemSize > 0); - if (root->File == PROGRAM_STATE_VAR) { - GLint index = _slang_alloc_statevar(n, emitInfo->prog->Parameters); - assert(n->Store->Index == index); - return NULL; + /* 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; + } } - /* 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. + */ + + + /*indexStore = tempstore();*/ + } - /* 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); - if (n->Store->Size > 4) { - /* need to multiply the index by the element size */ - GLint elemSize = (n->Store->Size + 3) / 4; - slang_ir_storage indexTemp; + 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 = new_instruction(emitInfo, OPCODE_MUL); - storage_to_dst_reg(&inst->DstReg, &indexTemp, WRITEMASK_X); - storage_to_src_reg(&inst->SrcReg[0], n->Children[1]->Store); - constant_to_src_reg(&inst->SrcReg[1], elemSize, emitInfo); + /* allocate a constant containing the element size */ + constant_to_storage(emitInfo, (float) elemSizeVec, &elemSizeStore); - /* load ADDR[0].X = temp */ - inst = new_instruction(emitInfo, OPCODE_ARL); - storage_to_src_reg(&inst->SrcReg[0], &indexTemp); - address_to_dst_reg(&inst->DstReg, 0); + /* multiply array index by element size */ + inst = emit_instruction(emitInfo, + OPCODE_MUL, + indexTemp, /* dest */ + indexStore, /* the index */ + &elemSizeStore, + NULL); - _slang_free_temp(emitInfo->vt, &indexTemp); + indexStore = indexTemp; } - else { - /* simply load address reg w/ array index */ - inst = new_instruction(emitInfo, OPCODE_ARL); - storage_to_src_reg(&inst->SrcReg[0], n->Children[1]->Store); - address_to_dst_reg(&inst->DstReg, 0); + + 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; return NULL; /* no instruction */ } @@ -1711,9 +1928,11 @@ 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; @@ -1729,12 +1948,45 @@ emit_struct_field(slang_emit_info *emitInfo, slang_ir_node *n) slang_info_log_error(emitInfo->log, "Error parsing state variable"); return NULL; } + return NULL; } else { /* 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; + /* XXX test this: + n->Store->Index += fieldOffset / 4; + */ + + 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 */ } @@ -1747,8 +1999,6 @@ emit_struct_field(slang_emit_info *emitInfo, slang_ir_node *n) static struct prog_instruction * emit_var_decl(slang_emit_info *emitInfo, slang_ir_node *n) { - struct prog_instruction *inst; - assert(n->Store); assert(n->Store->File != PROGRAM_UNDEFINED); assert(n->Store->Size > 0); @@ -1775,7 +2025,7 @@ 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 */ @@ -1785,8 +2035,7 @@ emit_var_decl(slang_emit_info *emitInfo, slang_ir_node *n) _mesa_swizzle_string(n->Store->Swizzle, 0, GL_FALSE), (n->Var ? (char *) n->Var->a_name : "anonymous"), n->Store->Size); - inst = emit_comment(emitInfo, s); - return inst; + emit_comment(emitInfo, s); } return NULL; } @@ -1794,7 +2043,7 @@ 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 * @@ -1893,12 +2142,15 @@ emit(slang_emit_info *emitInfo, slang_ir_node *n) case IR_NOISE2: case IR_NOISE3: case IR_NOISE4: + case IR_NRM4: + case IR_NRM3: /* binary */ case IR_ADD: case IR_SUB: case IR_MUL: case IR_DOT4: case IR_DOT3: + case IR_DOT2: case IR_CROSS: case IR_MIN: case IR_MAX: @@ -2012,7 +2264,7 @@ _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; @@ -2081,6 +2333,7 @@ _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; diff --git a/src/mesa/shader/slang/slang_ir.c b/src/mesa/shader/slang/slang_ir.c index 3a0b8bf3a0d..c33c80da999 100644 --- a/src/mesa/shader/slang/slang_ir.c +++ b/src/mesa/shader/slang/slang_ir.c @@ -27,6 +27,7 @@ #include "main/context.h" #include "slang_ir.h" #include "slang_mem.h" +#include "shader/prog_instruction.h" #include "shader/prog_print.h" @@ -36,8 +37,11 @@ static const slang_ir_info IrInfo[] = { { IR_SUB, "IR_SUB", OPCODE_SUB, 4, 2 }, { IR_MUL, "IR_MUL", OPCODE_MUL, 4, 2 }, { IR_DIV, "IR_DIV", OPCODE_NOP, 0, 2 }, /* XXX broke */ - { IR_DOT4, "IR_DOT_4", OPCODE_DP4, 1, 2 }, - { IR_DOT3, "IR_DOT_3", OPCODE_DP3, 1, 2 }, + { IR_DOT4, "IR_DOT4", OPCODE_DP4, 1, 2 }, + { IR_DOT3, "IR_DOT3", OPCODE_DP3, 1, 2 }, + { IR_DOT2, "IR_DOT2", OPCODE_DP2, 1, 2 }, + { IR_NRM4, "IR_NRM4", OPCODE_NRM4, 1, 1 }, + { IR_NRM3, "IR_NRM3", OPCODE_NRM3, 1, 1 }, { IR_CROSS, "IR_CROSS", OPCODE_XPD, 3, 2 }, { IR_LRP, "IR_LRP", OPCODE_LRP, 4, 3 }, { IR_MIN, "IR_MIN", OPCODE_MIN, 4, 2 }, @@ -56,7 +60,7 @@ static const slang_ir_info IrInfo[] = { /* unary ops */ { IR_MOVE, "IR_MOVE", OPCODE_MOV, 4, 1 }, { IR_I_TO_F, "IR_I_TO_F", OPCODE_MOV, 4, 1 }, /* int[4] to float[4] */ - { IR_F_TO_I, "IR_F_TO_I", OPCODE_INT, 4, 1 }, /* 4 floats to 4 ints */ + { IR_F_TO_I, "IR_F_TO_I", OPCODE_TRUNC, 4, 1 }, { IR_EXP, "IR_EXP", OPCODE_EXP, 1, 1 }, { IR_EXP2, "IR_EXP2", OPCODE_EX2, 1, 1 }, { IR_LOG2, "IR_LOG2", OPCODE_LG2, 1, 1 }, @@ -112,6 +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. */ @@ -126,6 +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; } @@ -146,6 +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; } @@ -166,11 +186,45 @@ _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; } +/* 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) @@ -239,22 +293,6 @@ _slang_free_ir_tree(slang_ir_node *n) } - -static const char * -writemask_string(GLuint writemask) -{ - static char s[6]; - GLuint i, j = 0; - s[j++] = '.'; - for (i = 0; i < 4; i++) { - if (writemask & (1 << i)) - s[j++] = "xyzw"[i]; - } - s[j] = 0; - return s; -} - - static const char * storage_string(const slang_ir_storage *st) { @@ -328,7 +366,7 @@ _slang_print_ir_tree(const slang_ir_node *n, int indent) _slang_print_ir_tree(n->Children[0], indent + 3); break; case IR_COPY: - printf("COPY (writemask = %s)\n", writemask_string(n->Writemask)); + printf("COPY\n"); _slang_print_ir_tree(n->Children[0], indent+3); _slang_print_ir_tree(n->Children[1], indent+3); break; diff --git a/src/mesa/shader/slang/slang_ir.h b/src/mesa/shader/slang/slang_ir.h index f64f9a93b78..a258e92e06f 100644 --- a/src/mesa/shader/slang/slang_ir.h +++ b/src/mesa/shader/slang/slang_ir.h @@ -83,6 +83,9 @@ typedef enum IR_DIV, IR_DOT4, IR_DOT3, + IR_DOT2, + IR_NRM4, + IR_NRM3, IR_CROSS, /* vec3 cross product */ IR_LRP, IR_CLAMP, @@ -137,24 +140,53 @@ 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; + 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; /** 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; /** @@ -170,7 +202,6 @@ typedef struct slang_ir_node_ /** special fields depending on Opcode: */ const char *Field; /**< If Opcode == IR_FIELD */ - GLuint Writemask; /**< If Opcode == IR_MOVE */ GLfloat Value[4]; /**< If Opcode == IR_FLOAT */ slang_variable *Var; /**< If Opcode == IR_VAR or IR_VAR_DECL */ struct slang_ir_node_ *List; /**< For various linked lists */ @@ -197,6 +228,11 @@ 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); @@ -210,6 +246,17 @@ _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 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_link.c b/src/mesa/shader/slang/slang_link.c index 4361efc56e5..2cd02d72140 100644 --- a/src/mesa/shader/slang/slang_link.c +++ b/src/mesa/shader/slang/slang_link.c @@ -76,42 +76,93 @@ 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]; + 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]; + 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 +172,6 @@ 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. */ @@ -193,7 +229,10 @@ link_uniform_vars(struct gl_shader_program *shProg, if ((p->Type == PROGRAM_UNIFORM && p->Used) || p->Type == PROGRAM_SAMPLER) { - _mesa_append_uniform(shProg->Uniforms, p->Name, prog->Target, i); + 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) { @@ -419,7 +458,6 @@ _slang_update_inputs_outputs(struct gl_program *prog) maxAddrReg = MAX2(maxAddrReg, inst->DstReg.Index + 1); } } - prog->NumAddressRegs = maxAddrReg; } @@ -602,6 +640,11 @@ _slang_link(GLcontext *ctx, } } + if (MESA_VERBOSE & VERBOSE_GLSL_DUMP) { + printf("Varying vars:\n"); + _mesa_print_parameter_list(shProg->Varying); + } + shProg->LinkStatus = (shProg->VertexProgram || shProg->FragmentProgram); } diff --git a/src/mesa/shader/slang/slang_print.c b/src/mesa/shader/slang/slang_print.c index b88cefc283b..1194d0b4b99 100644 --- a/src/mesa/shader/slang/slang_print.c +++ b/src/mesa/shader/slang/slang_print.c @@ -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_typeinfo.c b/src/mesa/shader/slang/slang_typeinfo.c index b2f0f149956..b1afd969d95 100644 --- a/src/mesa/shader/slang/slang_typeinfo.c +++ b/src/mesa/shader/slang/slang_typeinfo.c @@ -630,6 +630,12 @@ _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; diff --git a/src/mesa/shader/slang/slang_vartable.c b/src/mesa/shader/slang/slang_vartable.c index 95971a70a93..de0c93957b4 100644 --- a/src/mesa/shader/slang/slang_vartable.c +++ b/src/mesa/shader/slang/slang_vartable.c @@ -107,7 +107,7 @@ _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", @@ -165,7 +165,7 @@ _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 *), 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 */ diff --git a/src/mesa/shader/slang/sources b/src/mesa/shader/slang/sources deleted file mode 100644 index 00d617fa8af..00000000000 --- a/src/mesa/shader/slang/sources +++ /dev/null @@ -1,44 +0,0 @@ -MESA_SHADER_SLANG_SOURCES = \ -slang_analyse.c \ -slang_assemble_assignment.c \ -slang_assemble.c \ -slang_assemble_conditional.c \ -slang_assemble_constructor.c \ -slang_assemble_typeinfo.c \ -slang_compile.c \ -slang_compile_function.c \ -slang_compile_operation.c \ -slang_compile_struct.c \ -slang_compile_variable.c \ -slang_execute.c \ -slang_execute_x86.c \ -slang_export.c \ -slang_library_texsample.c \ -slang_library_noise.c \ -slang_link.c \ -slang_preprocess.c \ -slang_storage.c \ -slang_utility.c - -MESA_SHADER_SLANG_HEADERS = \ -slang_analyse.h \ -slang_assemble.h \ -slang_assemble_assignment.h \ -slang_assemble_conditional.h \ -slang_assemble_constructor.h \ -slang_assemble_typeinfo.h \ -slang_compile.h \ -slang_compile_function.h \ -slang_compile_operation.h \ -slang_compile_struct.h \ -slang_compile_variable.h \ -slang_execute.h \ -slang_export.h \ -slang_library_noise.h \ -slang_library_texsample.h \ -slang_link.h \ -slang_mesa.h \ -slang_preprocess.h \ -slang_storage.h \ -slang_utility.h \ -traverse_wrap.h |