netcdf-c/ncgen/ncgeny.c
2020-12-07 14:45:14 -07:00

3720 lines
114 KiB
C

/* A Bison parser, made by GNU Bison 3.5.1. */
/* Bison implementation for Yacc-like parsers in C
Copyright (C) 1984, 1989-1990, 2000-2015, 2018-2020 Free Software Foundation,
Inc.
This program is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>. */
/* As a special exception, you may create a larger work that contains
part or all of the Bison parser skeleton and distribute that work
under terms of your choice, so long as that work isn't itself a
parser generator using the skeleton or a modified version thereof
as a parser skeleton. Alternatively, if you modify or redistribute
the parser skeleton itself, you may (at your option) remove this
special exception, which will cause the skeleton and the resulting
Bison output files to be licensed under the GNU General Public
License without this special exception.
This special exception was added by the Free Software Foundation in
version 2.2 of Bison. */
/* C LALR(1) parser skeleton written by Richard Stallman, by
simplifying the original so-called "semantic" parser. */
/* All symbols defined below should begin with yy or YY, to avoid
infringing on user name space. This should be done even for local
variables, as they might otherwise be expanded by user macros.
There are some unavoidable exceptions within include files to
define necessary library symbols; they are noted "INFRINGES ON
USER NAME SPACE" below. */
/* Undocumented macros, especially those whose name start with YY_,
are private implementation details. Do not rely on them. */
/* Identify Bison output. */
#define YYBISON 1
/* Bison version. */
#define YYBISON_VERSION "3.5.1"
/* Skeleton name. */
#define YYSKELETON_NAME "yacc.c"
/* Pure parsers. */
#define YYPURE 0
/* Push parsers. */
#define YYPUSH 0
/* Pull parsers. */
#define YYPULL 1
/* Substitute the variable and function names. */
#define yyparse ncgparse
#define yylex ncglex
#define yyerror ncgerror
#define yydebug ncgdebug
#define yynerrs ncgnerrs
#define yylval ncglval
#define yychar ncgchar
/* First part of user prologue. */
#line 11 "ncgen.y"
/*
static char SccsId[] = "$Id: ncgen.y,v 1.42 2010/05/18 21:32:46 dmh Exp $";
*/
#include "includes.h"
#include "netcdf_aux.h"
#include "ncgeny.h"
#include "ncgen.h"
#ifdef USE_NETCDF4
#include "netcdf_filter.h"
#endif
/* Following are in ncdump (for now)*/
/* Need some (unused) definitions to get it to compile */
#define ncatt_t void*
#define ncvar_t void
#include "nctime.h"
/* parser controls */
#define YY_NO_INPUT 1
/* True if string a equals string b*/
#ifndef NCSTREQ
#define NCSTREQ(a, b) (*(a) == *(b) && strcmp((a), (b)) == 0)
#endif
#define VLENSIZE (sizeof(nc_vlen_t))
#define MAXFLOATDIM 4294967295.0
/* mnemonics */
typedef enum Attrkind {ATTRVAR, ATTRGLOBAL, DONTKNOW} Attrkind;
#define ISCONST 1
#define ISLIST 0
typedef nc_vlen_t vlen_t;
/* We retain the old representation of the symbol list
as a linked list.
*/
List* symlist;
/* Track rootgroup separately*/
Symbol* rootgroup;
/* Track the group sequence */
static List* groupstack;
/* Provide a separate sequence for accumulating values
during the parse.
*/
static List* stack;
/* track homogeneity of types for data lists*/
static nc_type consttype;
/* Misc. */
static int stackbase;
static int stacklen;
static int count;
static int opaqueid; /* counter for opaque constants*/
static int arrayuid; /* counter for pseudo-array types*/
char* primtypenames[PRIMNO] = {
"nat",
"byte", "char", "short",
"int", "float", "double",
"ubyte", "ushort", "uint",
"int64", "uint64",
"string"
};
static int GLOBAL_SPECIAL = _NCPROPS_FLAG
| _ISNETCDF4_FLAG
| _SUPERBLOCK_FLAG
| _FORMAT_FLAG ;
/*Defined in ncgen.l*/
extern int lineno; /* line number for error messages */
extern Bytebuffer* lextext; /* name or string with escapes removed */
extern double double_val; /* last double value read */
extern float float_val; /* last float value read */
extern long long int64_val; /* last int64 value read */
extern int int32_val; /* last int32 value read */
extern short int16_val; /* last short value read */
extern unsigned long long uint64_val; /* last int64 value read */
extern unsigned int uint32_val; /* last int32 value read */
extern unsigned short uint16_val; /* last short value read */
extern char char_val; /* last char value read */
extern signed char byte_val; /* last byte value read */
extern unsigned char ubyte_val; /* last byte value read */
/* Track definitions of dims, types, attributes, and vars*/
List* grpdefs;
List* dimdefs;
List* attdefs; /* variable-specific attributes*/
List* gattdefs; /* global attributes only*/
List* xattdefs; /* unknown attributes*/
List* typdefs;
List* vardefs;
List* tmp;
/* Forward */
static NCConstant* makeconstdata(nc_type);
static NCConstant* evaluate(Symbol* fcn, Datalist* arglist);
static NCConstant* makeenumconstref(Symbol*);
static void addtogroup(Symbol*);
static Symbol* currentgroup(void);
static Symbol* createrootgroup(const char*);
static Symbol* creategroup(Symbol*);
static int dupobjectcheck(nc_class,Symbol*);
static void setpathcurrent(Symbol* sym);
static Symbol* makeattribute(Symbol*,Symbol*,Symbol*,Datalist*,Attrkind);
static Symbol* makeprimitivetype(nc_type i);
static Symbol* makespecial(int tag, Symbol* vsym, Symbol* tsym, void* data, int isconst);
static int containsfills(Datalist* list);
static void vercheck(int ncid);
static long long extractint(NCConstant* con);
#ifdef USE_NETCDF4
static int parsefilterflag(const char* sdata0, Specialdata* special);
#ifdef GENDEBUG1
static void printfilters(int nfilters, NC_ParsedFilterSpec** filters);
#endif
#endif
int yylex(void);
#ifndef NO_STDARG
static void yyerror(const char *fmt, ...);
#else
static void yyerror(fmt,va_alist) const char* fmt; va_dcl;
#endif
/* Extern */
extern int lex_init(void);
#line 215 "ncgen.tab.c"
# ifndef YY_CAST
# ifdef __cplusplus
# define YY_CAST(Type, Val) static_cast<Type> (Val)
# define YY_REINTERPRET_CAST(Type, Val) reinterpret_cast<Type> (Val)
# else
# define YY_CAST(Type, Val) ((Type) (Val))
# define YY_REINTERPRET_CAST(Type, Val) ((Type) (Val))
# endif
# endif
# ifndef YY_NULLPTR
# if defined __cplusplus
# if 201103L <= __cplusplus
# define YY_NULLPTR nullptr
# else
# define YY_NULLPTR 0
# endif
# else
# define YY_NULLPTR ((void*)0)
# endif
# endif
/* Enabling verbose error messages. */
#ifdef YYERROR_VERBOSE
# undef YYERROR_VERBOSE
# define YYERROR_VERBOSE 1
#else
# define YYERROR_VERBOSE 1
#endif
/* Use api.header.include to #include this header
instead of duplicating it here. */
#ifndef YY_NCG_NCGEN_TAB_H_INCLUDED
# define YY_NCG_NCGEN_TAB_H_INCLUDED
/* Debug traces. */
#ifndef YYDEBUG
# define YYDEBUG 1
#endif
#if YYDEBUG
extern int ncgdebug;
#endif
/* Token type. */
#ifndef YYTOKENTYPE
# define YYTOKENTYPE
enum yytokentype
{
NC_UNLIMITED_K = 258,
CHAR_K = 259,
BYTE_K = 260,
SHORT_K = 261,
INT_K = 262,
FLOAT_K = 263,
DOUBLE_K = 264,
UBYTE_K = 265,
USHORT_K = 266,
UINT_K = 267,
INT64_K = 268,
UINT64_K = 269,
STRING_K = 270,
IDENT = 271,
TERMSTRING = 272,
CHAR_CONST = 273,
BYTE_CONST = 274,
SHORT_CONST = 275,
INT_CONST = 276,
INT64_CONST = 277,
UBYTE_CONST = 278,
USHORT_CONST = 279,
UINT_CONST = 280,
UINT64_CONST = 281,
FLOAT_CONST = 282,
DOUBLE_CONST = 283,
DIMENSIONS = 284,
VARIABLES = 285,
NETCDF = 286,
DATA = 287,
TYPES = 288,
COMPOUND = 289,
ENUM = 290,
OPAQUE_ = 291,
OPAQUESTRING = 292,
GROUP = 293,
PATH = 294,
FILLMARKER = 295,
NIL = 296,
_FILLVALUE = 297,
_FORMAT = 298,
_STORAGE = 299,
_CHUNKSIZES = 300,
_DEFLATELEVEL = 301,
_SHUFFLE = 302,
_ENDIANNESS = 303,
_NOFILL = 304,
_FLETCHER32 = 305,
_NCPROPS = 306,
_ISNETCDF4 = 307,
_SUPERBLOCK = 308,
_FILTER = 309,
DATASETID = 310
};
#endif
/* Value type. */
#if ! defined YYSTYPE && ! defined YYSTYPE_IS_DECLARED
union YYSTYPE
{
#line 151 "ncgen.y"
Symbol* sym;
unsigned long size; /* allow for zero size to indicate e.g. UNLIMITED*/
long mark; /* track indices into the sequence*/
int nctype; /* for tracking attribute list type*/
Datalist* datalist;
NCConstant* constant;
#line 332 "ncgen.tab.c"
};
typedef union YYSTYPE YYSTYPE;
# define YYSTYPE_IS_TRIVIAL 1
# define YYSTYPE_IS_DECLARED 1
#endif
extern YYSTYPE ncglval;
int ncgparse (void);
#endif /* !YY_NCG_NCGEN_TAB_H_INCLUDED */
#ifdef short
# undef short
#endif
/* On compilers that do not define __PTRDIFF_MAX__ etc., make sure
<limits.h> and (if available) <stdint.h> are included
so that the code can choose integer types of a good width. */
#ifndef __PTRDIFF_MAX__
# include <limits.h> /* INFRINGES ON USER NAME SPACE */
# if defined __STDC_VERSION__ && 199901 <= __STDC_VERSION__
# include <stdint.h> /* INFRINGES ON USER NAME SPACE */
# define YY_STDINT_H
# endif
#endif
/* Narrow types that promote to a signed type and that can represent a
signed or unsigned integer of at least N bits. In tables they can
save space and decrease cache pressure. Promoting to a signed type
helps avoid bugs in integer arithmetic. */
#ifdef __INT_LEAST8_MAX__
typedef __INT_LEAST8_TYPE__ yytype_int8;
#elif defined YY_STDINT_H
typedef int_least8_t yytype_int8;
#else
typedef signed char yytype_int8;
#endif
#ifdef __INT_LEAST16_MAX__
typedef __INT_LEAST16_TYPE__ yytype_int16;
#elif defined YY_STDINT_H
typedef int_least16_t yytype_int16;
#else
typedef short yytype_int16;
#endif
#if defined __UINT_LEAST8_MAX__ && __UINT_LEAST8_MAX__ <= __INT_MAX__
typedef __UINT_LEAST8_TYPE__ yytype_uint8;
#elif (!defined __UINT_LEAST8_MAX__ && defined YY_STDINT_H \
&& UINT_LEAST8_MAX <= INT_MAX)
typedef uint_least8_t yytype_uint8;
#elif !defined __UINT_LEAST8_MAX__ && UCHAR_MAX <= INT_MAX
typedef unsigned char yytype_uint8;
#else
typedef short yytype_uint8;
#endif
#if defined __UINT_LEAST16_MAX__ && __UINT_LEAST16_MAX__ <= __INT_MAX__
typedef __UINT_LEAST16_TYPE__ yytype_uint16;
#elif (!defined __UINT_LEAST16_MAX__ && defined YY_STDINT_H \
&& UINT_LEAST16_MAX <= INT_MAX)
typedef uint_least16_t yytype_uint16;
#elif !defined __UINT_LEAST16_MAX__ && USHRT_MAX <= INT_MAX
typedef unsigned short yytype_uint16;
#else
typedef int yytype_uint16;
#endif
#ifndef YYPTRDIFF_T
# if defined __PTRDIFF_TYPE__ && defined __PTRDIFF_MAX__
# define YYPTRDIFF_T __PTRDIFF_TYPE__
# define YYPTRDIFF_MAXIMUM __PTRDIFF_MAX__
# elif defined PTRDIFF_MAX
# ifndef ptrdiff_t
# include <stddef.h> /* INFRINGES ON USER NAME SPACE */
# endif
# define YYPTRDIFF_T ptrdiff_t
# define YYPTRDIFF_MAXIMUM PTRDIFF_MAX
# else
# define YYPTRDIFF_T long
# define YYPTRDIFF_MAXIMUM LONG_MAX
# endif
#endif
#ifndef YYSIZE_T
# ifdef __SIZE_TYPE__
# define YYSIZE_T __SIZE_TYPE__
# elif defined size_t
# define YYSIZE_T size_t
# elif defined __STDC_VERSION__ && 199901 <= __STDC_VERSION__
# include <stddef.h> /* INFRINGES ON USER NAME SPACE */
# define YYSIZE_T size_t
# else
# define YYSIZE_T unsigned
# endif
#endif
#define YYSIZE_MAXIMUM \
YY_CAST (YYPTRDIFF_T, \
(YYPTRDIFF_MAXIMUM < YY_CAST (YYSIZE_T, -1) \
? YYPTRDIFF_MAXIMUM \
: YY_CAST (YYSIZE_T, -1)))
#define YYSIZEOF(X) YY_CAST (YYPTRDIFF_T, sizeof (X))
/* Stored state numbers (used for stacks). */
typedef yytype_int16 yy_state_t;
/* State numbers in computations. */
typedef int yy_state_fast_t;
#ifndef YY_
# if defined YYENABLE_NLS && YYENABLE_NLS
# if ENABLE_NLS
# include <libintl.h> /* INFRINGES ON USER NAME SPACE */
# define YY_(Msgid) dgettext ("bison-runtime", Msgid)
# endif
# endif
# ifndef YY_
# define YY_(Msgid) Msgid
# endif
#endif
#ifndef YY_ATTRIBUTE_PURE
# if defined __GNUC__ && 2 < __GNUC__ + (96 <= __GNUC_MINOR__)
# define YY_ATTRIBUTE_PURE __attribute__ ((__pure__))
# else
# define YY_ATTRIBUTE_PURE
# endif
#endif
#ifndef YY_ATTRIBUTE_UNUSED
# if defined __GNUC__ && 2 < __GNUC__ + (7 <= __GNUC_MINOR__)
# define YY_ATTRIBUTE_UNUSED __attribute__ ((__unused__))
# else
# define YY_ATTRIBUTE_UNUSED
# endif
#endif
/* Suppress unused-variable warnings by "using" E. */
#if ! defined lint || defined __GNUC__
# define YYUSE(E) ((void) (E))
#else
# define YYUSE(E) /* empty */
#endif
#if defined __GNUC__ && ! defined __ICC && 407 <= __GNUC__ * 100 + __GNUC_MINOR__
/* Suppress an incorrect diagnostic about yylval being uninitialized. */
# define YY_IGNORE_MAYBE_UNINITIALIZED_BEGIN \
_Pragma ("GCC diagnostic push") \
_Pragma ("GCC diagnostic ignored \"-Wuninitialized\"") \
_Pragma ("GCC diagnostic ignored \"-Wmaybe-uninitialized\"")
# define YY_IGNORE_MAYBE_UNINITIALIZED_END \
_Pragma ("GCC diagnostic pop")
#else
# define YY_INITIAL_VALUE(Value) Value
#endif
#ifndef YY_IGNORE_MAYBE_UNINITIALIZED_BEGIN
# define YY_IGNORE_MAYBE_UNINITIALIZED_BEGIN
# define YY_IGNORE_MAYBE_UNINITIALIZED_END
#endif
#ifndef YY_INITIAL_VALUE
# define YY_INITIAL_VALUE(Value) /* Nothing. */
#endif
#if defined __cplusplus && defined __GNUC__ && ! defined __ICC && 6 <= __GNUC__
# define YY_IGNORE_USELESS_CAST_BEGIN \
_Pragma ("GCC diagnostic push") \
_Pragma ("GCC diagnostic ignored \"-Wuseless-cast\"")
# define YY_IGNORE_USELESS_CAST_END \
_Pragma ("GCC diagnostic pop")
#endif
#ifndef YY_IGNORE_USELESS_CAST_BEGIN
# define YY_IGNORE_USELESS_CAST_BEGIN
# define YY_IGNORE_USELESS_CAST_END
#endif
#define YY_ASSERT(E) ((void) (0 && (E)))
#if ! defined yyoverflow || YYERROR_VERBOSE
/* The parser invokes alloca or malloc; define the necessary symbols. */
# ifdef YYSTACK_USE_ALLOCA
# if YYSTACK_USE_ALLOCA
# ifdef __GNUC__
# define YYSTACK_ALLOC __builtin_alloca
# elif defined __BUILTIN_VA_ARG_INCR
# include <alloca.h> /* INFRINGES ON USER NAME SPACE */
# elif defined _AIX
# define YYSTACK_ALLOC __alloca
# elif defined _MSC_VER
# include <malloc.h> /* INFRINGES ON USER NAME SPACE */
# define alloca _alloca
# else
# define YYSTACK_ALLOC alloca
# if ! defined _ALLOCA_H && ! defined EXIT_SUCCESS
# include <stdlib.h> /* INFRINGES ON USER NAME SPACE */
/* Use EXIT_SUCCESS as a witness for stdlib.h. */
# ifndef EXIT_SUCCESS
# define EXIT_SUCCESS 0
# endif
# endif
# endif
# endif
# endif
# ifdef YYSTACK_ALLOC
/* Pacify GCC's 'empty if-body' warning. */
# define YYSTACK_FREE(Ptr) do { /* empty */; } while (0)
# ifndef YYSTACK_ALLOC_MAXIMUM
/* The OS might guarantee only one guard page at the bottom of the stack,
and a page size can be as small as 4096 bytes. So we cannot safely
invoke alloca (N) if N exceeds 4096. Use a slightly smaller number
to allow for a few compiler-allocated temporary stack slots. */
# define YYSTACK_ALLOC_MAXIMUM 4032 /* reasonable circa 2006 */
# endif
# else
# define YYSTACK_ALLOC YYMALLOC
# define YYSTACK_FREE YYFREE
# ifndef YYSTACK_ALLOC_MAXIMUM
# define YYSTACK_ALLOC_MAXIMUM YYSIZE_MAXIMUM
# endif
# if (defined __cplusplus && ! defined EXIT_SUCCESS \
&& ! ((defined YYMALLOC || defined malloc) \
&& (defined YYFREE || defined free)))
# include <stdlib.h> /* INFRINGES ON USER NAME SPACE */
# ifndef EXIT_SUCCESS
# define EXIT_SUCCESS 0
# endif
# endif
# ifndef YYMALLOC
# define YYMALLOC malloc
# if ! defined malloc && ! defined EXIT_SUCCESS
void *malloc (YYSIZE_T); /* INFRINGES ON USER NAME SPACE */
# endif
# endif
# ifndef YYFREE
# define YYFREE free
# if ! defined free && ! defined EXIT_SUCCESS
void free (void *); /* INFRINGES ON USER NAME SPACE */
# endif
# endif
# endif
#endif /* ! defined yyoverflow || YYERROR_VERBOSE */
#if (! defined yyoverflow \
&& (! defined __cplusplus \
|| (defined YYSTYPE_IS_TRIVIAL && YYSTYPE_IS_TRIVIAL)))
/* A type that is properly aligned for any stack member. */
union yyalloc
{
yy_state_t yyss_alloc;
YYSTYPE yyvs_alloc;
};
/* The size of the maximum gap between one aligned stack and the next. */
# define YYSTACK_GAP_MAXIMUM (YYSIZEOF (union yyalloc) - 1)
/* The size of an array large to enough to hold all stacks, each with
N elements. */
# define YYSTACK_BYTES(N) \
((N) * (YYSIZEOF (yy_state_t) + YYSIZEOF (YYSTYPE)) \
+ YYSTACK_GAP_MAXIMUM)
# define YYCOPY_NEEDED 1
/* Relocate STACK from its old location to the new one. The
local variables YYSIZE and YYSTACKSIZE give the old and new number of
elements in the stack, and YYPTR gives the new location of the
stack. Advance YYPTR to a properly aligned location for the next
stack. */
# define YYSTACK_RELOCATE(Stack_alloc, Stack) \
do \
{ \
YYPTRDIFF_T yynewbytes; \
YYCOPY (&yyptr->Stack_alloc, Stack, yysize); \
Stack = &yyptr->Stack_alloc; \
yynewbytes = yystacksize * YYSIZEOF (*Stack) + YYSTACK_GAP_MAXIMUM; \
yyptr += yynewbytes / YYSIZEOF (*yyptr); \
} \
while (0)
#endif
#if defined YYCOPY_NEEDED && YYCOPY_NEEDED
/* Copy COUNT objects from SRC to DST. The source and destination do
not overlap. */
# ifndef YYCOPY
# if defined __GNUC__ && 1 < __GNUC__
# define YYCOPY(Dst, Src, Count) \
__builtin_memcpy (Dst, Src, YY_CAST (YYSIZE_T, (Count)) * sizeof (*(Src)))
# else
# define YYCOPY(Dst, Src, Count) \
do \
{ \
YYPTRDIFF_T yyi; \
for (yyi = 0; yyi < (Count); yyi++) \
(Dst)[yyi] = (Src)[yyi]; \
} \
while (0)
# endif
# endif
#endif /* !YYCOPY_NEEDED */
/* YYFINAL -- State number of the termination state. */
#define YYFINAL 5
/* YYLAST -- Last index in YYTABLE. */
#define YYLAST 393
/* YYNTOKENS -- Number of terminals. */
#define YYNTOKENS 65
/* YYNNTS -- Number of nonterminals. */
#define YYNNTS 67
/* YYNRULES -- Number of rules. */
#define YYNRULES 153
/* YYNSTATES -- Number of states. */
#define YYNSTATES 262
#define YYUNDEFTOK 2
#define YYMAXUTOK 310
/* YYTRANSLATE(TOKEN-NUM) -- Symbol number corresponding to TOKEN-NUM
as returned by yylex, with out-of-bounds checking. */
#define YYTRANSLATE(YYX) \
(0 <= (YYX) && (YYX) <= YYMAXUTOK ? yytranslate[YYX] : YYUNDEFTOK)
/* YYTRANSLATE[TOKEN-NUM] -- Symbol number corresponding to TOKEN-NUM
as returned by yylex. */
static const yytype_int8 yytranslate[] =
{
0, 2, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
61, 62, 63, 2, 59, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 64, 58,
2, 60, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 56, 2, 57, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
2, 2, 2, 2, 2, 2, 1, 2, 3, 4,
5, 6, 7, 8, 9, 10, 11, 12, 13, 14,
15, 16, 17, 18, 19, 20, 21, 22, 23, 24,
25, 26, 27, 28, 29, 30, 31, 32, 33, 34,
35, 36, 37, 38, 39, 40, 41, 42, 43, 44,
45, 46, 47, 48, 49, 50, 51, 52, 53, 54,
55
};
#if YYDEBUG
/* YYRLINE[YYN] -- Source line where rule number YYN was defined. */
static const yytype_int16 yyrline[] =
{
0, 233, 233, 239, 241, 248, 255, 255, 258, 267,
257, 272, 273, 274, 278, 278, 280, 290, 290, 293,
294, 295, 296, 299, 299, 302, 332, 334, 351, 360,
372, 386, 419, 420, 423, 437, 438, 439, 440, 441,
442, 443, 444, 445, 446, 447, 448, 451, 452, 453,
456, 457, 460, 460, 462, 463, 467, 475, 485, 497,
498, 499, 502, 503, 506, 506, 508, 530, 534, 538,
567, 568, 571, 572, 576, 590, 594, 599, 628, 629,
633, 634, 639, 649, 669, 680, 691, 710, 717, 717,
720, 722, 724, 726, 728, 737, 748, 750, 752, 754,
756, 758, 760, 762, 764, 766, 768, 773, 780, 789,
790, 791, 794, 795, 798, 802, 803, 807, 811, 812,
817, 818, 822, 823, 824, 825, 826, 827, 831, 835,
839, 841, 846, 847, 848, 849, 850, 851, 852, 853,
854, 855, 856, 857, 861, 862, 866, 868, 870, 872,
877, 881, 882, 888
};
#endif
#if YYDEBUG || YYERROR_VERBOSE || 1
/* YYTNAME[SYMBOL-NUM] -- String name of the symbol SYMBOL-NUM.
First, the terminals, then, starting at YYNTOKENS, nonterminals. */
static const char *const yytname[] =
{
"$end", "error", "$undefined", "NC_UNLIMITED_K", "CHAR_K", "BYTE_K",
"SHORT_K", "INT_K", "FLOAT_K", "DOUBLE_K", "UBYTE_K", "USHORT_K",
"UINT_K", "INT64_K", "UINT64_K", "STRING_K", "IDENT", "TERMSTRING",
"CHAR_CONST", "BYTE_CONST", "SHORT_CONST", "INT_CONST", "INT64_CONST",
"UBYTE_CONST", "USHORT_CONST", "UINT_CONST", "UINT64_CONST",
"FLOAT_CONST", "DOUBLE_CONST", "DIMENSIONS", "VARIABLES", "NETCDF",
"DATA", "TYPES", "COMPOUND", "ENUM", "OPAQUE_", "OPAQUESTRING", "GROUP",
"PATH", "FILLMARKER", "NIL", "_FILLVALUE", "_FORMAT", "_STORAGE",
"_CHUNKSIZES", "_DEFLATELEVEL", "_SHUFFLE", "_ENDIANNESS", "_NOFILL",
"_FLETCHER32", "_NCPROPS", "_ISNETCDF4", "_SUPERBLOCK", "_FILTER",
"DATASETID", "'{'", "'}'", "';'", "','", "'='", "'('", "')'", "'*'",
"':'", "$accept", "ncdesc", "datasetid", "rootgroup", "groupbody",
"subgrouplist", "namedgroup", "$@1", "$@2", "typesection", "typedecls",
"typename", "type_or_attr_decl", "typedecl", "optsemicolon", "enumdecl",
"enumidlist", "enumid", "opaquedecl", "vlendecl", "compounddecl",
"fields", "field", "primtype", "dimsection", "dimdecls",
"dim_or_attr_decl", "dimdeclist", "dimdecl", "dimd", "vasection",
"vadecls", "vadecl_or_attr", "vardecl", "varlist", "varspec", "dimspec",
"dimlist", "dimref", "fieldlist", "fieldspec", "fielddimspec",
"fielddimlist", "fielddim", "varref", "typeref", "ambiguous_ref",
"attrdecllist", "attrdecl", "path", "datasection", "datadecls",
"datadecl", "datalist", "datalist0", "datalist1", "dataitem",
"constdata", "econstref", "function", "arglist", "simpleconstant",
"intlist", "constint", "conststring", "constbool", "ident", YY_NULLPTR
};
#endif
# ifdef YYPRINT
/* YYTOKNUM[NUM] -- (External) token number corresponding to the
(internal) symbol number NUM (which must be that of a token). */
static const yytype_int16 yytoknum[] =
{
0, 256, 257, 258, 259, 260, 261, 262, 263, 264,
265, 266, 267, 268, 269, 270, 271, 272, 273, 274,
275, 276, 277, 278, 279, 280, 281, 282, 283, 284,
285, 286, 287, 288, 289, 290, 291, 292, 293, 294,
295, 296, 297, 298, 299, 300, 301, 302, 303, 304,
305, 306, 307, 308, 309, 310, 123, 125, 59, 44,
61, 40, 41, 42, 58
};
# endif
#define YYPACT_NINF (-145)
#define yypact_value_is_default(Yyn) \
((Yyn) == YYPACT_NINF)
#define YYTABLE_NINF (-108)
#define yytable_value_is_error(Yyn) \
0
/* YYPACT[STATE-NUM] -- Index in YYTABLE of the portion describing
STATE-NUM. */
static const yytype_int16 yypact[] =
{
-10, -19, 54, -145, 12, -145, 219, -145, -145, -145,
-145, -145, -145, -145, -145, -145, -145, -145, -145, -145,
-145, -145, -8, -145, -145, 354, -9, 26, 11, -145,
-145, 15, 28, 31, 32, 36, -11, 34, 130, 183,
70, 219, 83, 83, 45, 52, 301, 85, -145, -145,
-1, 42, 46, 49, 50, 51, 57, 58, 59, 60,
61, 85, 53, 183, -145, -145, 64, 64, 64, 64,
88, 255, 66, 219, 95, -145, -145, -145, -145, -145,
-145, -145, -145, -145, -145, -145, -145, -145, -145, -145,
-145, -145, -145, -145, -145, -145, -145, -145, -145, -145,
-145, -145, 301, -145, 68, -145, -145, -145, -145, -145,
-145, -145, 71, 75, 73, 77, 301, 83, 52, 52,
45, 83, 45, 45, 83, 301, 79, -145, 117, -145,
-145, -145, -145, -145, -145, 85, 78, -145, 219, 82,
86, -145, 84, -145, 87, 219, 118, 30, 301, 355,
-145, 301, 301, 68, -145, 90, -145, -145, -145, -145,
-145, -145, -145, 68, 354, 93, 96, 97, 100, -145,
85, 35, 219, 102, -145, 354, -145, 354, -145, -145,
-145, -28, -145, 219, 68, 68, 52, 291, 103, 85,
-145, 85, 85, 85, -145, -145, -145, -145, -145, 104,
-145, 105, -145, -32, 108, -145, 354, 107, 355, -145,
-145, -145, -145, 115, -145, 123, -145, 125, -145, 38,
-145, 140, -145, -145, 85, 3, -145, 301, 143, -145,
-145, 166, -145, 85, -7, -145, -145, 85, 52, -145,
145, 17, -145, -145, 68, -145, 106, -145, -145, -145,
23, -145, -145, -145, 3, -145, 219, -7, -145, -145,
-145, -145
};
/* YYDEFACT[STATE-NUM] -- Default reduction number in state STATE-NUM.
Performed when YYTABLE does not specify something else to do. Zero
means the default is an error. */
static const yytype_uint8 yydefact[] =
{
0, 0, 0, 3, 0, 1, 88, 2, 35, 36,
37, 38, 39, 40, 41, 42, 43, 44, 45, 46,
153, 108, 0, 6, 87, 0, 85, 11, 0, 86,
107, 0, 0, 0, 0, 0, 0, 0, 0, 12,
47, 88, 0, 0, 0, 0, 117, 0, 4, 7,
0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 13, 14, 17, 23, 23, 23, 23,
87, 0, 0, 48, 59, 89, 150, 106, 90, 146,
148, 147, 149, 152, 151, 91, 92, 143, 132, 133,
134, 135, 136, 137, 138, 139, 140, 141, 142, 123,
124, 125, 117, 128, 93, 115, 116, 118, 120, 126,
127, 122, 107, 0, 0, 0, 117, 0, 0, 0,
0, 0, 0, 0, 0, 117, 0, 16, 0, 15,
24, 19, 22, 21, 20, 0, 0, 18, 49, 0,
52, 54, 0, 53, 107, 60, 109, 0, 0, 0,
8, 117, 117, 96, 98, 99, 144, 101, 102, 103,
105, 100, 104, 95, 0, 0, 0, 0, 0, 50,
0, 0, 61, 0, 64, 0, 65, 110, 5, 121,
119, 0, 130, 88, 97, 94, 0, 0, 0, 0,
85, 0, 0, 0, 51, 55, 58, 57, 56, 0,
62, 66, 67, 70, 0, 84, 111, 0, 0, 129,
6, 145, 31, 0, 32, 34, 75, 78, 29, 0,
26, 0, 30, 63, 0, 0, 69, 117, 0, 112,
131, 9, 33, 0, 0, 77, 25, 0, 0, 68,
70, 0, 72, 74, 114, 113, 0, 76, 83, 82,
0, 80, 27, 28, 0, 71, 88, 0, 79, 73,
10, 81
};
/* YYPGOTO[NTERM-NUM]. */
static const yytype_int16 yypgoto[] =
{
-145, -145, -145, -145, 24, -2, -145, -145, -145, -145,
-145, -128, 146, -145, -20, -145, -145, -25, -145, -145,
-145, -145, 27, -26, -145, -145, 80, -145, 43, -145,
-145, -145, 48, -145, -145, -3, -145, -145, -18, -145,
4, -145, -145, -17, -145, -30, -21, -40, -33, -44,
-145, -145, 33, -99, -145, -145, 94, -145, -145, -145,
-145, -144, -145, -35, -31, -100, -22
};
/* YYDEFGOTO[NTERM-NUM]. */
static const yytype_int16 yydefgoto[] =
{
-1, 2, 4, 7, 23, 36, 49, 183, 246, 40,
63, 126, 64, 65, 131, 66, 219, 220, 67, 68,
69, 187, 188, 24, 74, 138, 139, 140, 141, 142,
146, 172, 173, 174, 201, 202, 226, 241, 242, 215,
216, 235, 250, 251, 204, 25, 26, 27, 28, 29,
178, 206, 207, 104, 105, 106, 107, 108, 109, 110,
181, 111, 155, 83, 84, 85, 30
};
/* YYTABLE[YYPACT[STATE-NUM]] -- What to do in state STATE-NUM. If
positive, shift that token. If negative, reduce the rule whose
number is the opposite. If YYTABLE_NINF, syntax error. */
static const yytype_int16 yytable[] =
{
35, 75, 103, 147, 37, 182, 72, 166, 20, 71,
86, 77, 78, 70, 248, 20, 60, 153, 249, 20,
158, 1, 160, 161, 112, 113, 163, 47, 115, 225,
72, 208, -107, 71, 209, 31, 3, 70, 197, 127,
143, 114, 21, 32, 33, 34, 48, 132, 133, 134,
37, 144, 184, 185, 5, 38, 79, 80, 103, 39,
81, 82, 76, 218, 230, 222, 79, 80, 6, 41,
81, 82, 103, 79, 80, 42, 254, 81, 82, 255,
112, 103, 257, 156, 157, 258, 154, 179, 43, 148,
159, 44, 45, 162, 112, 236, 46, 237, 50, 73,
76, 20, 116, 112, 103, 143, 117, 103, 103, 118,
119, 120, 176, 127, 128, 175, 144, 121, 122, 123,
124, 125, 130, 135, 137, 145, 112, 148, 244, 112,
112, 150, 149, 151, 189, 164, 198, 152, 165, 176,
169, 167, 175, 190, 171, 170, 20, -58, 196, 186,
177, 211, 192, 203, 37, 191, 205, 189, 194, 193,
200, 214, 223, 256, 224, 229, 190, 217, 227, 127,
221, 127, 51, 232, 52, 53, 54, 55, 56, 57,
58, 243, 233, 103, 59, 205, 234, 8, 9, 10,
11, 12, 13, 14, 15, 16, 17, 18, 19, 20,
238, 245, 240, 253, 47, 112, 225, 210, 231, 129,
243, 217, 252, 195, 213, 221, 260, 61, 168, 62,
199, 239, 21, 8, 9, 10, 11, 12, 13, 14,
15, 16, 17, 18, 19, 20, 259, 247, 0, 228,
261, 0, 180, 0, 0, 0, 0, 22, 0, 0,
0, 0, 0, 0, 0, 0, 0, 0, 21, 8,
9, 10, 11, 12, 13, 14, 15, 16, 17, 18,
19, 20, 0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, 22, 0, 0, 0, 0, 0, 0,
0, 0, 0, 0, 21, 8, 9, 10, 11, 12,
13, 14, 15, 16, 17, 18, 19, 20, 0, 0,
0, 0, 0, 0, 0, 0, 136, 20, 87, 88,
89, 90, 91, 92, 93, 94, 95, 96, 97, 98,
21, 0, 0, 0, 0, 0, 0, 0, 99, 0,
21, 100, 101, 0, 0, 0, 0, 0, 212, 0,
0, 0, 0, 0, 0, 0, 0, 102, 8, 9,
10, 11, 12, 13, 14, 15, 16, 17, 18, 19,
20, 0, 87, 88, 89, 90, 91, 92, 93, 94,
95, 96, 97, 98, 0, 0, 0, 0, 0, 0,
0, 0, 0, 21
};
static const yytype_int16 yycheck[] =
{
22, 41, 46, 102, 25, 149, 39, 135, 16, 39,
45, 42, 43, 39, 21, 16, 38, 116, 25, 16,
120, 31, 122, 123, 46, 47, 125, 38, 50, 61,
63, 59, 64, 63, 62, 43, 55, 63, 3, 61,
73, 42, 39, 51, 52, 53, 57, 67, 68, 69,
71, 73, 151, 152, 0, 64, 21, 22, 102, 33,
25, 26, 17, 191, 208, 193, 21, 22, 56, 58,
25, 26, 116, 21, 22, 60, 59, 25, 26, 62,
102, 125, 59, 118, 119, 62, 117, 57, 60, 59,
121, 60, 60, 124, 116, 57, 60, 59, 64, 29,
17, 16, 60, 125, 148, 138, 60, 151, 152, 60,
60, 60, 145, 135, 61, 145, 138, 60, 60, 60,
60, 60, 58, 35, 58, 30, 148, 59, 227, 151,
152, 56, 61, 60, 164, 56, 171, 60, 21, 172,
58, 63, 172, 164, 60, 59, 16, 60, 170, 59,
32, 186, 56, 175, 175, 62, 177, 187, 58, 62,
58, 58, 58, 57, 59, 58, 187, 189, 60, 191,
192, 193, 42, 58, 44, 45, 46, 47, 48, 49,
50, 225, 59, 227, 54, 206, 61, 4, 5, 6,
7, 8, 9, 10, 11, 12, 13, 14, 15, 16,
60, 58, 224, 238, 38, 227, 61, 183, 210, 63,
254, 233, 237, 170, 187, 237, 256, 34, 138, 36,
172, 224, 39, 4, 5, 6, 7, 8, 9, 10,
11, 12, 13, 14, 15, 16, 254, 233, -1, 206,
257, -1, 148, -1, -1, -1, -1, 64, -1, -1,
-1, -1, -1, -1, -1, -1, -1, -1, 39, 4,
5, 6, 7, 8, 9, 10, 11, 12, 13, 14,
15, 16, -1, -1, -1, -1, -1, -1, -1, -1,
-1, -1, -1, 64, -1, -1, -1, -1, -1, -1,
-1, -1, -1, -1, 39, 4, 5, 6, 7, 8,
9, 10, 11, 12, 13, 14, 15, 16, -1, -1,
-1, -1, -1, -1, -1, -1, 61, 16, 17, 18,
19, 20, 21, 22, 23, 24, 25, 26, 27, 28,
39, -1, -1, -1, -1, -1, -1, -1, 37, -1,
39, 40, 41, -1, -1, -1, -1, -1, 57, -1,
-1, -1, -1, -1, -1, -1, -1, 56, 4, 5,
6, 7, 8, 9, 10, 11, 12, 13, 14, 15,
16, -1, 17, 18, 19, 20, 21, 22, 23, 24,
25, 26, 27, 28, -1, -1, -1, -1, -1, -1,
-1, -1, -1, 39
};
/* YYSTOS[STATE-NUM] -- The (internal number of the) accessing
symbol of state STATE-NUM. */
static const yytype_uint8 yystos[] =
{
0, 31, 66, 55, 67, 0, 56, 68, 4, 5,
6, 7, 8, 9, 10, 11, 12, 13, 14, 15,
16, 39, 64, 69, 88, 110, 111, 112, 113, 114,
131, 43, 51, 52, 53, 131, 70, 111, 64, 33,
74, 58, 60, 60, 60, 60, 60, 38, 57, 71,
64, 42, 44, 45, 46, 47, 48, 49, 50, 54,
131, 34, 36, 75, 77, 78, 80, 83, 84, 85,
88, 110, 113, 29, 89, 112, 17, 129, 129, 21,
22, 25, 26, 128, 129, 130, 128, 17, 18, 19,
20, 21, 22, 23, 24, 25, 26, 27, 28, 37,
40, 41, 56, 114, 118, 119, 120, 121, 122, 123,
124, 126, 131, 131, 42, 131, 60, 60, 60, 60,
60, 60, 60, 60, 60, 60, 76, 131, 61, 77,
58, 79, 79, 79, 79, 35, 61, 58, 90, 91,
92, 93, 94, 113, 131, 30, 95, 118, 59, 61,
56, 60, 60, 118, 129, 127, 128, 128, 130, 129,
130, 130, 129, 118, 56, 21, 76, 63, 91, 58,
59, 60, 96, 97, 98, 110, 113, 32, 115, 57,
121, 125, 126, 72, 118, 118, 59, 86, 87, 110,
111, 62, 56, 62, 58, 93, 131, 3, 128, 97,
58, 99, 100, 131, 109, 111, 116, 117, 59, 62,
69, 128, 57, 87, 58, 104, 105, 131, 76, 81,
82, 131, 76, 58, 59, 61, 101, 60, 117, 58,
126, 70, 58, 59, 61, 106, 57, 59, 60, 100,
131, 102, 103, 114, 118, 58, 73, 105, 21, 25,
107, 108, 82, 128, 59, 62, 57, 59, 62, 103,
112, 108
};
/* YYR1[YYN] -- Symbol number of symbol that rule YYN derives. */
static const yytype_uint8 yyr1[] =
{
0, 65, 66, 67, 68, 69, 70, 70, 72, 73,
71, 74, 74, 74, 75, 75, 76, 77, 77, 78,
78, 78, 78, 79, 79, 80, 81, 81, 82, 83,
84, 85, 86, 86, 87, 88, 88, 88, 88, 88,
88, 88, 88, 88, 88, 88, 88, 89, 89, 89,
90, 90, 91, 91, 92, 92, 93, 93, 94, 95,
95, 95, 96, 96, 97, 97, 98, 99, 99, 100,
101, 101, 102, 102, 103, 104, 104, 105, 106, 106,
107, 107, 108, 108, 109, 110, 111, 111, 112, 112,
113, 113, 113, 113, 113, 113, 113, 113, 113, 113,
113, 113, 113, 113, 113, 113, 113, 114, 114, 115,
115, 115, 116, 116, 117, 118, 118, 119, 120, 120,
121, 121, 122, 122, 122, 122, 122, 122, 123, 124,
125, 125, 126, 126, 126, 126, 126, 126, 126, 126,
126, 126, 126, 126, 127, 127, 128, 128, 128, 128,
129, 130, 130, 131
};
/* YYR2[YYN] -- Number of symbols on the right hand side of rule YYN. */
static const yytype_int8 yyr2[] =
{
0, 2, 3, 1, 4, 5, 0, 2, 0, 0,
9, 0, 1, 2, 1, 2, 1, 1, 2, 2,
2, 2, 2, 0, 1, 6, 1, 3, 3, 5,
5, 5, 2, 3, 2, 1, 1, 1, 1, 1,
1, 1, 1, 1, 1, 1, 1, 0, 1, 2,
2, 3, 1, 1, 1, 3, 3, 3, 1, 0,
1, 2, 2, 3, 1, 1, 2, 1, 3, 2,
0, 3, 1, 3, 1, 1, 3, 2, 0, 3,
1, 3, 1, 1, 1, 1, 1, 1, 0, 3,
4, 4, 4, 4, 6, 5, 5, 6, 5, 5,
5, 5, 5, 5, 5, 5, 4, 1, 1, 0,
1, 2, 2, 3, 3, 1, 1, 0, 1, 3,
1, 3, 1, 1, 1, 1, 1, 1, 1, 4,
1, 3, 1, 1, 1, 1, 1, 1, 1, 1,
1, 1, 1, 1, 1, 3, 1, 1, 1, 1,
1, 1, 1, 1
};
#define yyerrok (yyerrstatus = 0)
#define yyclearin (yychar = YYEMPTY)
#define YYEMPTY (-2)
#define YYEOF 0
#define YYACCEPT goto yyacceptlab
#define YYABORT goto yyabortlab
#define YYERROR goto yyerrorlab
#define YYRECOVERING() (!!yyerrstatus)
#define YYBACKUP(Token, Value) \
do \
if (yychar == YYEMPTY) \
{ \
yychar = (Token); \
yylval = (Value); \
YYPOPSTACK (yylen); \
yystate = *yyssp; \
goto yybackup; \
} \
else \
{ \
yyerror (YY_("syntax error: cannot back up")); \
YYERROR; \
} \
while (0)
/* Error token number */
#define YYTERROR 1
#define YYERRCODE 256
/* Enable debugging if requested. */
#if YYDEBUG
# ifndef YYFPRINTF
# include <stdio.h> /* INFRINGES ON USER NAME SPACE */
# define YYFPRINTF fprintf
# endif
# define YYDPRINTF(Args) \
do { \
if (yydebug) \
YYFPRINTF Args; \
} while (0)
/* This macro is provided for backward compatibility. */
#ifndef YY_LOCATION_PRINT
# define YY_LOCATION_PRINT(File, Loc) ((void) 0)
#endif
# define YY_SYMBOL_PRINT(Title, Type, Value, Location) \
do { \
if (yydebug) \
{ \
YYFPRINTF (stderr, "%s ", Title); \
yy_symbol_print (stderr, \
Type, Value); \
YYFPRINTF (stderr, "\n"); \
} \
} while (0)
/*-----------------------------------.
| Print this symbol's value on YYO. |
`-----------------------------------*/
static void
yy_symbol_value_print (FILE *yyo, int yytype, YYSTYPE const * const yyvaluep)
{
FILE *yyoutput = yyo;
YYUSE (yyoutput);
if (!yyvaluep)
return;
# ifdef YYPRINT
if (yytype < YYNTOKENS)
YYPRINT (yyo, yytoknum[yytype], *yyvaluep);
# endif
YY_IGNORE_MAYBE_UNINITIALIZED_BEGIN
YYUSE (yytype);
YY_IGNORE_MAYBE_UNINITIALIZED_END
}
/*---------------------------.
| Print this symbol on YYO. |
`---------------------------*/
static void
yy_symbol_print (FILE *yyo, int yytype, YYSTYPE const * const yyvaluep)
{
YYFPRINTF (yyo, "%s %s (",
yytype < YYNTOKENS ? "token" : "nterm", yytname[yytype]);
yy_symbol_value_print (yyo, yytype, yyvaluep);
YYFPRINTF (yyo, ")");
}
/*------------------------------------------------------------------.
| yy_stack_print -- Print the state stack from its BOTTOM up to its |
| TOP (included). |
`------------------------------------------------------------------*/
static void
yy_stack_print (yy_state_t *yybottom, yy_state_t *yytop)
{
YYFPRINTF (stderr, "Stack now");
for (; yybottom <= yytop; yybottom++)
{
int yybot = *yybottom;
YYFPRINTF (stderr, " %d", yybot);
}
YYFPRINTF (stderr, "\n");
}
# define YY_STACK_PRINT(Bottom, Top) \
do { \
if (yydebug) \
yy_stack_print ((Bottom), (Top)); \
} while (0)
/*------------------------------------------------.
| Report that the YYRULE is going to be reduced. |
`------------------------------------------------*/
static void
yy_reduce_print (yy_state_t *yyssp, YYSTYPE *yyvsp, int yyrule)
{
int yylno = yyrline[yyrule];
int yynrhs = yyr2[yyrule];
int yyi;
YYFPRINTF (stderr, "Reducing stack by rule %d (line %d):\n",
yyrule - 1, yylno);
/* The symbols being reduced. */
for (yyi = 0; yyi < yynrhs; yyi++)
{
YYFPRINTF (stderr, " $%d = ", yyi + 1);
yy_symbol_print (stderr,
yystos[+yyssp[yyi + 1 - yynrhs]],
&yyvsp[(yyi + 1) - (yynrhs)]
);
YYFPRINTF (stderr, "\n");
}
}
# define YY_REDUCE_PRINT(Rule) \
do { \
if (yydebug) \
yy_reduce_print (yyssp, yyvsp, Rule); \
} while (0)
/* Nonzero means print parse trace. It is left uninitialized so that
multiple parsers can coexist. */
int yydebug;
#else /* !YYDEBUG */
# define YYDPRINTF(Args)
# define YY_SYMBOL_PRINT(Title, Type, Value, Location)
# define YY_STACK_PRINT(Bottom, Top)
# define YY_REDUCE_PRINT(Rule)
#endif /* !YYDEBUG */
/* YYINITDEPTH -- initial size of the parser's stacks. */
#ifndef YYINITDEPTH
# define YYINITDEPTH 200
#endif
/* YYMAXDEPTH -- maximum size the stacks can grow to (effective only
if the built-in stack extension method is used).
Do not make this value too large; the results are undefined if
YYSTACK_ALLOC_MAXIMUM < YYSTACK_BYTES (YYMAXDEPTH)
evaluated with infinite-precision integer arithmetic. */
#ifndef YYMAXDEPTH
# define YYMAXDEPTH 10000
#endif
#if YYERROR_VERBOSE
# ifndef yystrlen
# if defined __GLIBC__ && defined _STRING_H
# define yystrlen(S) (YY_CAST (YYPTRDIFF_T, strlen (S)))
# else
/* Return the length of YYSTR. */
static YYPTRDIFF_T
yystrlen (const char *yystr)
{
YYPTRDIFF_T yylen;
for (yylen = 0; yystr[yylen]; yylen++)
continue;
return yylen;
}
# endif
# endif
# ifndef yystpcpy
# if defined __GLIBC__ && defined _STRING_H && defined _GNU_SOURCE
# define yystpcpy stpcpy
# else
/* Copy YYSRC to YYDEST, returning the address of the terminating '\0' in
YYDEST. */
static char *
yystpcpy (char *yydest, const char *yysrc)
{
char *yyd = yydest;
const char *yys = yysrc;
while ((*yyd++ = *yys++) != '\0')
continue;
return yyd - 1;
}
# endif
# endif
# ifndef yytnamerr
/* Copy to YYRES the contents of YYSTR after stripping away unnecessary
quotes and backslashes, so that it's suitable for yyerror. The
heuristic is that double-quoting is unnecessary unless the string
contains an apostrophe, a comma, or backslash (other than
backslash-backslash). YYSTR is taken from yytname. If YYRES is
null, do not copy; instead, return the length of what the result
would have been. */
static YYPTRDIFF_T
yytnamerr (char *yyres, const char *yystr)
{
if (*yystr == '"')
{
YYPTRDIFF_T yyn = 0;
char const *yyp = yystr;
for (;;)
switch (*++yyp)
{
case '\'':
case ',':
goto do_not_strip_quotes;
case '\\':
if (*++yyp != '\\')
goto do_not_strip_quotes;
else
goto append;
append:
default:
if (yyres)
yyres[yyn] = *yyp;
yyn++;
break;
case '"':
if (yyres)
yyres[yyn] = '\0';
return yyn;
}
do_not_strip_quotes: ;
}
if (yyres)
return yystpcpy (yyres, yystr) - yyres;
else
return yystrlen (yystr);
}
# endif
/* Copy into *YYMSG, which is of size *YYMSG_ALLOC, an error message
about the unexpected token YYTOKEN for the state stack whose top is
YYSSP.
Return 0 if *YYMSG was successfully written. Return 1 if *YYMSG is
not large enough to hold the message. In that case, also set
*YYMSG_ALLOC to the required number of bytes. Return 2 if the
required number of bytes is too large to store. */
static int
yysyntax_error (YYPTRDIFF_T *yymsg_alloc, char **yymsg,
yy_state_t *yyssp, int yytoken)
{
enum { YYERROR_VERBOSE_ARGS_MAXIMUM = 5 };
/* Internationalized format string. */
const char *yyformat = YY_NULLPTR;
/* Arguments of yyformat: reported tokens (one for the "unexpected",
one per "expected"). */
char const *yyarg[YYERROR_VERBOSE_ARGS_MAXIMUM];
/* Actual size of YYARG. */
int yycount = 0;
/* Cumulated lengths of YYARG. */
YYPTRDIFF_T yysize = 0;
/* There are many possibilities here to consider:
- If this state is a consistent state with a default action, then
the only way this function was invoked is if the default action
is an error action. In that case, don't check for expected
tokens because there are none.
- The only way there can be no lookahead present (in yychar) is if
this state is a consistent state with a default action. Thus,
detecting the absence of a lookahead is sufficient to determine
that there is no unexpected or expected token to report. In that
case, just report a simple "syntax error".
- Don't assume there isn't a lookahead just because this state is a
consistent state with a default action. There might have been a
previous inconsistent state, consistent state with a non-default
action, or user semantic action that manipulated yychar.
- Of course, the expected token list depends on states to have
correct lookahead information, and it depends on the parser not
to perform extra reductions after fetching a lookahead from the
scanner and before detecting a syntax error. Thus, state merging
(from LALR or IELR) and default reductions corrupt the expected
token list. However, the list is correct for canonical LR with
one exception: it will still contain any token that will not be
accepted due to an error action in a later state.
*/
if (yytoken != YYEMPTY)
{
int yyn = yypact[+*yyssp];
YYPTRDIFF_T yysize0 = yytnamerr (YY_NULLPTR, yytname[yytoken]);
yysize = yysize0;
yyarg[yycount++] = yytname[yytoken];
if (!yypact_value_is_default (yyn))
{
/* Start YYX at -YYN if negative to avoid negative indexes in
YYCHECK. In other words, skip the first -YYN actions for
this state because they are default actions. */
int yyxbegin = yyn < 0 ? -yyn : 0;
/* Stay within bounds of both yycheck and yytname. */
int yychecklim = YYLAST - yyn + 1;
int yyxend = yychecklim < YYNTOKENS ? yychecklim : YYNTOKENS;
int yyx;
for (yyx = yyxbegin; yyx < yyxend; ++yyx)
if (yycheck[yyx + yyn] == yyx && yyx != YYTERROR
&& !yytable_value_is_error (yytable[yyx + yyn]))
{
if (yycount == YYERROR_VERBOSE_ARGS_MAXIMUM)
{
yycount = 1;
yysize = yysize0;
break;
}
yyarg[yycount++] = yytname[yyx];
{
YYPTRDIFF_T yysize1
= yysize + yytnamerr (YY_NULLPTR, yytname[yyx]);
if (yysize <= yysize1 && yysize1 <= YYSTACK_ALLOC_MAXIMUM)
yysize = yysize1;
else
return 2;
}
}
}
}
switch (yycount)
{
# define YYCASE_(N, S) \
case N: \
yyformat = S; \
break
default: /* Avoid compiler warnings. */
YYCASE_(0, YY_("syntax error"));
YYCASE_(1, YY_("syntax error, unexpected %s"));
YYCASE_(2, YY_("syntax error, unexpected %s, expecting %s"));
YYCASE_(3, YY_("syntax error, unexpected %s, expecting %s or %s"));
YYCASE_(4, YY_("syntax error, unexpected %s, expecting %s or %s or %s"));
YYCASE_(5, YY_("syntax error, unexpected %s, expecting %s or %s or %s or %s"));
# undef YYCASE_
}
{
/* Don't count the "%s"s in the final size, but reserve room for
the terminator. */
YYPTRDIFF_T yysize1 = yysize + (yystrlen (yyformat) - 2 * yycount) + 1;
if (yysize <= yysize1 && yysize1 <= YYSTACK_ALLOC_MAXIMUM)
yysize = yysize1;
else
return 2;
}
if (*yymsg_alloc < yysize)
{
*yymsg_alloc = 2 * yysize;
if (! (yysize <= *yymsg_alloc
&& *yymsg_alloc <= YYSTACK_ALLOC_MAXIMUM))
*yymsg_alloc = YYSTACK_ALLOC_MAXIMUM;
return 1;
}
/* Avoid sprintf, as that infringes on the user's name space.
Don't have undefined behavior even if the translation
produced a string with the wrong number of "%s"s. */
{
char *yyp = *yymsg;
int yyi = 0;
while ((*yyp = *yyformat) != '\0')
if (*yyp == '%' && yyformat[1] == 's' && yyi < yycount)
{
yyp += yytnamerr (yyp, yyarg[yyi++]);
yyformat += 2;
}
else
{
++yyp;
++yyformat;
}
}
return 0;
}
#endif /* YYERROR_VERBOSE */
/*-----------------------------------------------.
| Release the memory associated to this symbol. |
`-----------------------------------------------*/
static void
yydestruct (const char *yymsg, int yytype, YYSTYPE *yyvaluep)
{
YYUSE (yyvaluep);
if (!yymsg)
yymsg = "Deleting";
YY_SYMBOL_PRINT (yymsg, yytype, yyvaluep, yylocationp);
YY_IGNORE_MAYBE_UNINITIALIZED_BEGIN
YYUSE (yytype);
YY_IGNORE_MAYBE_UNINITIALIZED_END
}
/* The lookahead symbol. */
int yychar;
/* The semantic value of the lookahead symbol. */
YYSTYPE yylval;
/* Number of syntax errors so far. */
int yynerrs;
/*----------.
| yyparse. |
`----------*/
int
yyparse (void)
{
yy_state_fast_t yystate;
/* Number of tokens to shift before error messages enabled. */
int yyerrstatus;
/* The stacks and their tools:
'yyss': related to states.
'yyvs': related to semantic values.
Refer to the stacks through separate pointers, to allow yyoverflow
to reallocate them elsewhere. */
/* The state stack. */
yy_state_t yyssa[YYINITDEPTH];
yy_state_t *yyss;
yy_state_t *yyssp;
/* The semantic value stack. */
YYSTYPE yyvsa[YYINITDEPTH];
YYSTYPE *yyvs;
YYSTYPE *yyvsp;
YYPTRDIFF_T yystacksize;
int yyn;
int yyresult;
/* Lookahead token as an internal (translated) token number. */
int yytoken = 0;
/* The variables used to return semantic value and location from the
action routines. */
YYSTYPE yyval;
#if YYERROR_VERBOSE
/* Buffer for error messages, and its allocated size. */
char yymsgbuf[128];
char *yymsg = yymsgbuf;
YYPTRDIFF_T yymsg_alloc = sizeof yymsgbuf;
#endif
#define YYPOPSTACK(N) (yyvsp -= (N), yyssp -= (N))
/* The number of symbols on the RHS of the reduced rule.
Keep to zero when no symbol should be popped. */
int yylen = 0;
yyssp = yyss = yyssa;
yyvsp = yyvs = yyvsa;
yystacksize = YYINITDEPTH;
YYDPRINTF ((stderr, "Starting parse\n"));
yystate = 0;
yyerrstatus = 0;
yynerrs = 0;
yychar = YYEMPTY; /* Cause a token to be read. */
goto yysetstate;
/*------------------------------------------------------------.
| yynewstate -- push a new state, which is found in yystate. |
`------------------------------------------------------------*/
yynewstate:
/* In all cases, when you get here, the value and location stacks
have just been pushed. So pushing a state here evens the stacks. */
yyssp++;
/*--------------------------------------------------------------------.
| yysetstate -- set current state (the top of the stack) to yystate. |
`--------------------------------------------------------------------*/
yysetstate:
YYDPRINTF ((stderr, "Entering state %d\n", yystate));
YY_ASSERT (0 <= yystate && yystate < YYNSTATES);
YY_IGNORE_USELESS_CAST_BEGIN
*yyssp = YY_CAST (yy_state_t, yystate);
YY_IGNORE_USELESS_CAST_END
if (yyss + yystacksize - 1 <= yyssp)
#if !defined yyoverflow && !defined YYSTACK_RELOCATE
goto yyexhaustedlab;
#else
{
/* Get the current used size of the three stacks, in elements. */
YYPTRDIFF_T yysize = yyssp - yyss + 1;
# if defined yyoverflow
{
/* Give user a chance to reallocate the stack. Use copies of
these so that the &'s don't force the real ones into
memory. */
yy_state_t *yyss1 = yyss;
YYSTYPE *yyvs1 = yyvs;
/* Each stack pointer address is followed by the size of the
data in use in that stack, in bytes. This used to be a
conditional around just the two extra args, but that might
be undefined if yyoverflow is a macro. */
yyoverflow (YY_("memory exhausted"),
&yyss1, yysize * YYSIZEOF (*yyssp),
&yyvs1, yysize * YYSIZEOF (*yyvsp),
&yystacksize);
yyss = yyss1;
yyvs = yyvs1;
}
# else /* defined YYSTACK_RELOCATE */
/* Extend the stack our own way. */
if (YYMAXDEPTH <= yystacksize)
goto yyexhaustedlab;
yystacksize *= 2;
if (YYMAXDEPTH < yystacksize)
yystacksize = YYMAXDEPTH;
{
yy_state_t *yyss1 = yyss;
union yyalloc *yyptr =
YY_CAST (union yyalloc *,
YYSTACK_ALLOC (YY_CAST (YYSIZE_T, YYSTACK_BYTES (yystacksize))));
if (! yyptr)
goto yyexhaustedlab;
YYSTACK_RELOCATE (yyss_alloc, yyss);
YYSTACK_RELOCATE (yyvs_alloc, yyvs);
# undef YYSTACK_RELOCATE
if (yyss1 != yyssa)
YYSTACK_FREE (yyss1);
}
# endif
yyssp = yyss + yysize - 1;
yyvsp = yyvs + yysize - 1;
YY_IGNORE_USELESS_CAST_BEGIN
YYDPRINTF ((stderr, "Stack size increased to %ld\n",
YY_CAST (long, yystacksize)));
YY_IGNORE_USELESS_CAST_END
if (yyss + yystacksize - 1 <= yyssp)
YYABORT;
}
#endif /* !defined yyoverflow && !defined YYSTACK_RELOCATE */
if (yystate == YYFINAL)
YYACCEPT;
goto yybackup;
/*-----------.
| yybackup. |
`-----------*/
yybackup:
/* Do appropriate processing given the current state. Read a
lookahead token if we need one and don't already have one. */
/* First try to decide what to do without reference to lookahead token. */
yyn = yypact[yystate];
if (yypact_value_is_default (yyn))
goto yydefault;
/* Not known => get a lookahead token if don't already have one. */
/* YYCHAR is either YYEMPTY or YYEOF or a valid lookahead symbol. */
if (yychar == YYEMPTY)
{
YYDPRINTF ((stderr, "Reading a token: "));
yychar = yylex ();
}
if (yychar <= YYEOF)
{
yychar = yytoken = YYEOF;
YYDPRINTF ((stderr, "Now at end of input.\n"));
}
else
{
yytoken = YYTRANSLATE (yychar);
YY_SYMBOL_PRINT ("Next token is", yytoken, &yylval, &yylloc);
}
/* If the proper action on seeing token YYTOKEN is to reduce or to
detect an error, take that action. */
yyn += yytoken;
if (yyn < 0 || YYLAST < yyn || yycheck[yyn] != yytoken)
goto yydefault;
yyn = yytable[yyn];
if (yyn <= 0)
{
if (yytable_value_is_error (yyn))
goto yyerrlab;
yyn = -yyn;
goto yyreduce;
}
/* Count tokens shifted since error; after three, turn off error
status. */
if (yyerrstatus)
yyerrstatus--;
/* Shift the lookahead token. */
YY_SYMBOL_PRINT ("Shifting", yytoken, &yylval, &yylloc);
yystate = yyn;
YY_IGNORE_MAYBE_UNINITIALIZED_BEGIN
*++yyvsp = yylval;
YY_IGNORE_MAYBE_UNINITIALIZED_END
/* Discard the shifted token. */
yychar = YYEMPTY;
goto yynewstate;
/*-----------------------------------------------------------.
| yydefault -- do the default action for the current state. |
`-----------------------------------------------------------*/
yydefault:
yyn = yydefact[yystate];
if (yyn == 0)
goto yyerrlab;
goto yyreduce;
/*-----------------------------.
| yyreduce -- do a reduction. |
`-----------------------------*/
yyreduce:
/* yyn is the number of a rule to reduce with. */
yylen = yyr2[yyn];
/* If YYLEN is nonzero, implement the default value of the action:
'$$ = $1'.
Otherwise, the following line sets YYVAL to garbage.
This behavior is undocumented and Bison
users should not rely upon it. Assigning to YYVAL
unconditionally makes the parser a bit smaller, and it avoids a
GCC warning that YYVAL may be used uninitialized. */
yyval = yyvsp[1-yylen];
YY_REDUCE_PRINT (yyn);
switch (yyn)
{
case 2:
#line 236 "ncgen.y"
{if (error_count > 0) YYABORT;}
#line 1741 "ncgen.tab.c"
break;
case 3:
#line 239 "ncgen.y"
{createrootgroup(datasetname);}
#line 1747 "ncgen.tab.c"
break;
case 8:
#line 258 "ncgen.y"
{
Symbol* id = (yyvsp[-1].sym);
markcdf4("Group specification");
if(creategroup(id) == NULL)
yyerror("duplicate group declaration within parent group for %s",
id->name);
}
#line 1759 "ncgen.tab.c"
break;
case 9:
#line 267 "ncgen.y"
{listpop(groupstack);}
#line 1765 "ncgen.tab.c"
break;
case 12:
#line 273 "ncgen.y"
{}
#line 1771 "ncgen.tab.c"
break;
case 13:
#line 275 "ncgen.y"
{markcdf4("Type specification");}
#line 1777 "ncgen.tab.c"
break;
case 16:
#line 281 "ncgen.y"
{ /* Use when defining a type */
(yyvsp[0].sym)->objectclass = NC_TYPE;
if(dupobjectcheck(NC_TYPE,(yyvsp[0].sym)))
yyerror("duplicate type declaration for %s",
(yyvsp[0].sym)->name);
listpush(typdefs,(void*)(yyvsp[0].sym));
}
#line 1789 "ncgen.tab.c"
break;
case 17:
#line 290 "ncgen.y"
{}
#line 1795 "ncgen.tab.c"
break;
case 18:
#line 290 "ncgen.y"
{}
#line 1801 "ncgen.tab.c"
break;
case 25:
#line 304 "ncgen.y"
{
int i;
addtogroup((yyvsp[-3].sym)); /* sets prefix*/
(yyvsp[-3].sym)->objectclass=NC_TYPE;
(yyvsp[-3].sym)->subclass=NC_ENUM;
(yyvsp[-3].sym)->typ.basetype=(yyvsp[-5].sym);
(yyvsp[-3].sym)->typ.size = (yyvsp[-5].sym)->typ.size;
(yyvsp[-3].sym)->typ.alignment = (yyvsp[-5].sym)->typ.alignment;
stackbase=(yyvsp[-1].mark);
stacklen=listlength(stack);
(yyvsp[-3].sym)->subnodes = listnew();
/* Variety of field fixups*/
/* 1. add in the enum values*/
/* 2. make this type be their container*/
/* 3. make constant names visible in the group*/
/* 4. set field basetype to be same as enum basetype*/
for(i=stackbase;i<stacklen;i++) {
Symbol* eid = (Symbol*)listget(stack,i);
assert(eid->subclass == NC_ECONST);
addtogroup(eid);
listpush((yyvsp[-3].sym)->subnodes,(void*)eid);
eid->container = (yyvsp[-3].sym);
eid->typ.basetype = (yyvsp[-3].sym)->typ.basetype;
}
listsetlength(stack,stackbase);/* remove stack nodes*/
}
#line 1832 "ncgen.tab.c"
break;
case 26:
#line 333 "ncgen.y"
{(yyval.mark)=listlength(stack); listpush(stack,(void*)(yyvsp[0].sym));}
#line 1838 "ncgen.tab.c"
break;
case 27:
#line 335 "ncgen.y"
{
int i;
(yyval.mark)=(yyvsp[-2].mark);
/* check for duplicates*/
stackbase=(yyvsp[-2].mark);
stacklen=listlength(stack);
for(i=stackbase;i<stacklen;i++) {
Symbol* elem = (Symbol*)listget(stack,i);
if(strcmp((yyvsp[0].sym)->name,elem->name)==0)
yyerror("duplicate enum declaration for %s",
elem->name);
}
listpush(stack,(void*)(yyvsp[0].sym));
}
#line 1857 "ncgen.tab.c"
break;
case 28:
#line 352 "ncgen.y"
{
(yyvsp[-2].sym)->objectclass=NC_TYPE;
(yyvsp[-2].sym)->subclass=NC_ECONST;
(yyvsp[-2].sym)->typ.econst=(yyvsp[0].constant);
(yyval.sym)=(yyvsp[-2].sym);
}
#line 1868 "ncgen.tab.c"
break;
case 29:
#line 361 "ncgen.y"
{
vercheck(NC_OPAQUE);
addtogroup((yyvsp[0].sym)); /*sets prefix*/
(yyvsp[0].sym)->objectclass=NC_TYPE;
(yyvsp[0].sym)->subclass=NC_OPAQUE;
(yyvsp[0].sym)->typ.typecode=NC_OPAQUE;
(yyvsp[0].sym)->typ.size=int32_val;
(yyvsp[0].sym)->typ.alignment=ncaux_class_alignment(NC_OPAQUE);
}
#line 1882 "ncgen.tab.c"
break;
case 30:
#line 373 "ncgen.y"
{
Symbol* basetype = (yyvsp[-4].sym);
vercheck(NC_VLEN);
addtogroup((yyvsp[0].sym)); /*sets prefix*/
(yyvsp[0].sym)->objectclass=NC_TYPE;
(yyvsp[0].sym)->subclass=NC_VLEN;
(yyvsp[0].sym)->typ.basetype=basetype;
(yyvsp[0].sym)->typ.typecode=NC_VLEN;
(yyvsp[0].sym)->typ.size=VLENSIZE;
(yyvsp[0].sym)->typ.alignment=ncaux_class_alignment(NC_VLEN);
}
#line 1898 "ncgen.tab.c"
break;
case 31:
#line 387 "ncgen.y"
{
int i,j;
vercheck(NC_COMPOUND);
addtogroup((yyvsp[-3].sym));
/* check for duplicate field names*/
stackbase=(yyvsp[-1].mark);
stacklen=listlength(stack);
for(i=stackbase;i<stacklen;i++) {
Symbol* elem1 = (Symbol*)listget(stack,i);
for(j=i+1;j<stacklen;j++) {
Symbol* elem2 = (Symbol*)listget(stack,j);
if(strcmp(elem1->name,elem2->name)==0) {
yyerror("duplicate field declaration for %s",elem1->name);
}
}
}
(yyvsp[-3].sym)->objectclass=NC_TYPE;
(yyvsp[-3].sym)->subclass=NC_COMPOUND;
(yyvsp[-3].sym)->typ.basetype=NULL;
(yyvsp[-3].sym)->typ.typecode=NC_COMPOUND;
(yyvsp[-3].sym)->subnodes = listnew();
/* Add in the fields*/
for(i=stackbase;i<stacklen;i++) {
Symbol* fsym = (Symbol*)listget(stack,i);
fsym->container = (yyvsp[-3].sym);
listpush((yyvsp[-3].sym)->subnodes,(void*)fsym);
}
listsetlength(stack,stackbase);/* remove stack nodes*/
}
#line 1932 "ncgen.tab.c"
break;
case 32:
#line 419 "ncgen.y"
{(yyval.mark)=(yyvsp[-1].mark);}
#line 1938 "ncgen.tab.c"
break;
case 33:
#line 420 "ncgen.y"
{(yyval.mark)=(yyvsp[-2].mark);}
#line 1944 "ncgen.tab.c"
break;
case 34:
#line 424 "ncgen.y"
{
int i;
(yyval.mark)=(yyvsp[0].mark);
stackbase=(yyvsp[0].mark);
stacklen=listlength(stack);
/* process each field in the fieldlist*/
for(i=stackbase;i<stacklen;i++) {
Symbol* f = (Symbol*)listget(stack,i);
f->typ.basetype = (yyvsp[-1].sym);
}
}
#line 1960 "ncgen.tab.c"
break;
case 35:
#line 437 "ncgen.y"
{ (yyval.sym) = primsymbols[NC_CHAR]; }
#line 1966 "ncgen.tab.c"
break;
case 36:
#line 438 "ncgen.y"
{ (yyval.sym) = primsymbols[NC_BYTE]; }
#line 1972 "ncgen.tab.c"
break;
case 37:
#line 439 "ncgen.y"
{ (yyval.sym) = primsymbols[NC_SHORT]; }
#line 1978 "ncgen.tab.c"
break;
case 38:
#line 440 "ncgen.y"
{ (yyval.sym) = primsymbols[NC_INT]; }
#line 1984 "ncgen.tab.c"
break;
case 39:
#line 441 "ncgen.y"
{ (yyval.sym) = primsymbols[NC_FLOAT]; }
#line 1990 "ncgen.tab.c"
break;
case 40:
#line 442 "ncgen.y"
{ (yyval.sym) = primsymbols[NC_DOUBLE]; }
#line 1996 "ncgen.tab.c"
break;
case 41:
#line 443 "ncgen.y"
{ vercheck(NC_UBYTE); (yyval.sym) = primsymbols[NC_UBYTE]; }
#line 2002 "ncgen.tab.c"
break;
case 42:
#line 444 "ncgen.y"
{ vercheck(NC_USHORT); (yyval.sym) = primsymbols[NC_USHORT]; }
#line 2008 "ncgen.tab.c"
break;
case 43:
#line 445 "ncgen.y"
{ vercheck(NC_UINT); (yyval.sym) = primsymbols[NC_UINT]; }
#line 2014 "ncgen.tab.c"
break;
case 44:
#line 446 "ncgen.y"
{ vercheck(NC_INT64); (yyval.sym) = primsymbols[NC_INT64]; }
#line 2020 "ncgen.tab.c"
break;
case 45:
#line 447 "ncgen.y"
{ vercheck(NC_UINT64); (yyval.sym) = primsymbols[NC_UINT64]; }
#line 2026 "ncgen.tab.c"
break;
case 46:
#line 448 "ncgen.y"
{ vercheck(NC_STRING); (yyval.sym) = primsymbols[NC_STRING]; }
#line 2032 "ncgen.tab.c"
break;
case 48:
#line 452 "ncgen.y"
{}
#line 2038 "ncgen.tab.c"
break;
case 49:
#line 453 "ncgen.y"
{}
#line 2044 "ncgen.tab.c"
break;
case 52:
#line 460 "ncgen.y"
{}
#line 2050 "ncgen.tab.c"
break;
case 53:
#line 460 "ncgen.y"
{}
#line 2056 "ncgen.tab.c"
break;
case 56:
#line 468 "ncgen.y"
{
(yyvsp[-2].sym)->dim.declsize = (size_t)extractint((yyvsp[0].constant));
#ifdef GENDEBUG1
fprintf(stderr,"dimension: %s = %llu\n",(yyvsp[-2].sym)->name,(unsigned long long)(yyvsp[-2].sym)->dim.declsize);
#endif
reclaimconstant((yyvsp[0].constant));
}
#line 2068 "ncgen.tab.c"
break;
case 57:
#line 476 "ncgen.y"
{
(yyvsp[-2].sym)->dim.declsize = NC_UNLIMITED;
(yyvsp[-2].sym)->dim.isunlimited = 1;
#ifdef GENDEBUG1
fprintf(stderr,"dimension: %s = UNLIMITED\n",(yyvsp[-2].sym)->name);
#endif
}
#line 2080 "ncgen.tab.c"
break;
case 58:
#line 486 "ncgen.y"
{
(yyvsp[0].sym)->objectclass=NC_DIM;
if(dupobjectcheck(NC_DIM,(yyvsp[0].sym)))
yyerror( "Duplicate dimension declaration for %s",
(yyvsp[0].sym)->name);
addtogroup((yyvsp[0].sym));
(yyval.sym)=(yyvsp[0].sym);
listpush(dimdefs,(void*)(yyvsp[0].sym));
}
#line 2094 "ncgen.tab.c"
break;
case 60:
#line 498 "ncgen.y"
{}
#line 2100 "ncgen.tab.c"
break;
case 61:
#line 499 "ncgen.y"
{}
#line 2106 "ncgen.tab.c"
break;
case 64:
#line 506 "ncgen.y"
{}
#line 2112 "ncgen.tab.c"
break;
case 65:
#line 506 "ncgen.y"
{}
#line 2118 "ncgen.tab.c"
break;
case 66:
#line 509 "ncgen.y"
{
int i;
stackbase=(yyvsp[0].mark);
stacklen=listlength(stack);
/* process each variable in the varlist*/
for(i=stackbase;i<stacklen;i++) {
Symbol* sym = (Symbol*)listget(stack,i);
sym->objectclass = NC_VAR;
if(dupobjectcheck(NC_VAR,sym)) {
yyerror("Duplicate variable declaration for %s",
sym->name);
} else {
sym->typ.basetype = (yyvsp[-1].sym);
addtogroup(sym);
listpush(vardefs,(void*)sym);
}
}
listsetlength(stack,stackbase);/* remove stack nodes*/
}
#line 2142 "ncgen.tab.c"
break;
case 67:
#line 531 "ncgen.y"
{(yyval.mark)=listlength(stack);
listpush(stack,(void*)(yyvsp[0].sym));
}
#line 2150 "ncgen.tab.c"
break;
case 68:
#line 535 "ncgen.y"
{(yyval.mark)=(yyvsp[-2].mark); listpush(stack,(void*)(yyvsp[0].sym));}
#line 2156 "ncgen.tab.c"
break;
case 69:
#line 539 "ncgen.y"
{
int i;
Dimset dimset;
Symbol* var = (yyvsp[-1].sym); /* for debugging */
stacklen=listlength(stack);
stackbase=(yyvsp[0].mark);
count = stacklen - stackbase;
if(count >= NC_MAX_VAR_DIMS) {
yyerror("%s has too many dimensions",(yyvsp[-1].sym)->name);
count = NC_MAX_VAR_DIMS - 1;
stacklen = stackbase + count;
}
dimset.ndims = count;
/* extract the actual dimensions*/
if(dimset.ndims > 0) {
for(i=0;i<count;i++) {
Symbol* dsym = (Symbol*)listget(stack,stackbase+i);
dimset.dimsyms[i] = dsym;
}
var->typ.dimset = dimset;
}
var->typ.basetype = NULL; /* not yet known*/
var->objectclass=NC_VAR;
listsetlength(stack,stackbase);/* remove stack nodes*/
(yyval.sym) = var;
}
#line 2187 "ncgen.tab.c"
break;
case 70:
#line 567 "ncgen.y"
{(yyval.mark)=listlength(stack);}
#line 2193 "ncgen.tab.c"
break;
case 71:
#line 568 "ncgen.y"
{(yyval.mark)=(yyvsp[-1].mark);}
#line 2199 "ncgen.tab.c"
break;
case 72:
#line 571 "ncgen.y"
{(yyval.mark)=listlength(stack); listpush(stack,(void*)(yyvsp[0].sym));}
#line 2205 "ncgen.tab.c"
break;
case 73:
#line 573 "ncgen.y"
{(yyval.mark)=(yyvsp[-2].mark); listpush(stack,(void*)(yyvsp[0].sym));}
#line 2211 "ncgen.tab.c"
break;
case 74:
#line 577 "ncgen.y"
{Symbol* dimsym = (yyvsp[0].sym);
dimsym->objectclass = NC_DIM;
/* Find the actual dimension*/
dimsym = locate(dimsym);
if(dimsym == NULL) {
derror("Undefined or forward referenced dimension: %s",(yyvsp[0].sym)->name);
YYABORT;
}
(yyval.sym)=dimsym;
}
#line 2226 "ncgen.tab.c"
break;
case 75:
#line 591 "ncgen.y"
{(yyval.mark)=listlength(stack);
listpush(stack,(void*)(yyvsp[0].sym));
}
#line 2234 "ncgen.tab.c"
break;
case 76:
#line 595 "ncgen.y"
{(yyval.mark)=(yyvsp[-2].mark); listpush(stack,(void*)(yyvsp[0].sym));}
#line 2240 "ncgen.tab.c"
break;
case 77:
#line 600 "ncgen.y"
{
int i;
Dimset dimset;
stackbase=(yyvsp[0].mark);
stacklen=listlength(stack);
count = stacklen - stackbase;
if(count >= NC_MAX_VAR_DIMS) {
yyerror("%s has too many dimensions",(yyvsp[-1].sym)->name);
count = NC_MAX_VAR_DIMS - 1;
stacklen = stackbase + count;
}
dimset.ndims = count;
if(count > 0) {
/* extract the actual dimensions*/
for(i=0;i<count;i++) {
Symbol* dsym = (Symbol*)listget(stack,stackbase+i);
dimset.dimsyms[i] = dsym;
}
(yyvsp[-1].sym)->typ.dimset = dimset;
}
(yyvsp[-1].sym)->typ.basetype = NULL; /* not yet known*/
(yyvsp[-1].sym)->objectclass=NC_TYPE;
(yyvsp[-1].sym)->subclass=NC_FIELD;
listsetlength(stack,stackbase);/* remove stack nodes*/
(yyval.sym) = (yyvsp[-1].sym);
}
#line 2271 "ncgen.tab.c"
break;
case 78:
#line 628 "ncgen.y"
{(yyval.mark)=listlength(stack);}
#line 2277 "ncgen.tab.c"
break;
case 79:
#line 629 "ncgen.y"
{(yyval.mark)=(yyvsp[-1].mark);}
#line 2283 "ncgen.tab.c"
break;
case 80:
#line 633 "ncgen.y"
{(yyval.mark)=listlength(stack); listpush(stack,(void*)(yyvsp[0].sym));}
#line 2289 "ncgen.tab.c"
break;
case 81:
#line 635 "ncgen.y"
{(yyval.mark)=(yyvsp[-2].mark); listpush(stack,(void*)(yyvsp[0].sym));}
#line 2295 "ncgen.tab.c"
break;
case 82:
#line 640 "ncgen.y"
{ /* Anonymous integer dimension.
Can only occur in type definitions*/
char anon[32];
sprintf(anon,"const%u",uint32_val);
(yyval.sym) = install(anon);
(yyval.sym)->objectclass = NC_DIM;
(yyval.sym)->dim.isconstant = 1;
(yyval.sym)->dim.declsize = uint32_val;
}
#line 2309 "ncgen.tab.c"
break;
case 83:
#line 650 "ncgen.y"
{ /* Anonymous integer dimension.
Can only occur in type definitions*/
char anon[32];
if(int32_val <= 0) {
derror("field dimension must be positive");
YYABORT;
}
sprintf(anon,"const%d",int32_val);
(yyval.sym) = install(anon);
(yyval.sym)->objectclass = NC_DIM;
(yyval.sym)->dim.isconstant = 1;
(yyval.sym)->dim.declsize = int32_val;
}
#line 2327 "ncgen.tab.c"
break;
case 84:
#line 670 "ncgen.y"
{Symbol* vsym = (yyvsp[0].sym);
if(vsym->objectclass != NC_VAR) {
derror("Undefined or forward referenced variable: %s",vsym->name);
YYABORT;
}
(yyval.sym)=vsym;
}
#line 2339 "ncgen.tab.c"
break;
case 85:
#line 681 "ncgen.y"
{Symbol* tsym = (yyvsp[0].sym);
if(tsym->objectclass != NC_TYPE) {
derror("Undefined or forward referenced type: %s",tsym->name);
YYABORT;
}
(yyval.sym)=tsym;
}
#line 2351 "ncgen.tab.c"
break;
case 86:
#line 692 "ncgen.y"
{Symbol* tvsym = (yyvsp[0].sym); Symbol* sym;
/* disambiguate*/
tvsym->objectclass = NC_VAR;
sym = locate(tvsym);
if(sym == NULL) {
tvsym->objectclass = NC_TYPE;
sym = locate(tvsym);
if(tvsym == NULL) {
derror("Undefined or forward referenced name: %s",(yyvsp[0].sym)->name);
YYABORT;
} else tvsym = sym;
} else tvsym = sym;
if(tvsym == NULL) {
derror("Undefined name (line %d): %s",(yyvsp[0].sym)->lineno,(yyvsp[0].sym)->name);
YYABORT;
}
(yyval.sym)=tvsym;
}
#line 2374 "ncgen.tab.c"
break;
case 87:
#line 710 "ncgen.y"
{(yyval.sym)=(yyvsp[0].sym);}
#line 2380 "ncgen.tab.c"
break;
case 88:
#line 717 "ncgen.y"
{}
#line 2386 "ncgen.tab.c"
break;
case 89:
#line 717 "ncgen.y"
{}
#line 2392 "ncgen.tab.c"
break;
case 90:
#line 721 "ncgen.y"
{(yyval.sym) = makespecial(_NCPROPS_FLAG,NULL,NULL,(void*)(yyvsp[0].constant),ISCONST);}
#line 2398 "ncgen.tab.c"
break;
case 91:
#line 723 "ncgen.y"
{(yyval.sym) = makespecial(_ISNETCDF4_FLAG,NULL,NULL,(void*)(yyvsp[0].constant),ISCONST);}
#line 2404 "ncgen.tab.c"
break;
case 92:
#line 725 "ncgen.y"
{(yyval.sym) = makespecial(_SUPERBLOCK_FLAG,NULL,NULL,(void*)(yyvsp[0].constant),ISCONST);}
#line 2410 "ncgen.tab.c"
break;
case 93:
#line 727 "ncgen.y"
{ (yyval.sym)=makeattribute((yyvsp[-2].sym),NULL,NULL,(yyvsp[0].datalist),ATTRGLOBAL);}
#line 2416 "ncgen.tab.c"
break;
case 94:
#line 729 "ncgen.y"
{Symbol* tsym = (yyvsp[-5].sym); Symbol* vsym = (yyvsp[-4].sym); Symbol* asym = (yyvsp[-2].sym);
if(vsym->objectclass == NC_VAR) {
(yyval.sym)=makeattribute(asym,vsym,tsym,(yyvsp[0].datalist),ATTRVAR);
} else {
derror("Doubly typed attribute: %s",asym->name);
YYABORT;
}
}
#line 2429 "ncgen.tab.c"
break;
case 95:
#line 738 "ncgen.y"
{Symbol* sym = (yyvsp[-4].sym); Symbol* asym = (yyvsp[-2].sym);
if(sym->objectclass == NC_VAR) {
(yyval.sym)=makeattribute(asym,sym,NULL,(yyvsp[0].datalist),ATTRVAR);
} else if(sym->objectclass == NC_TYPE) {
(yyval.sym)=makeattribute(asym,NULL,sym,(yyvsp[0].datalist),ATTRGLOBAL);
} else {
derror("Attribute prefix not a variable or type: %s",asym->name);
YYABORT;
}
}
#line 2444 "ncgen.tab.c"
break;
case 96:
#line 749 "ncgen.y"
{(yyval.sym) = makespecial(_FILLVALUE_FLAG,(yyvsp[-4].sym),NULL,(void*)(yyvsp[0].datalist),ISLIST);}
#line 2450 "ncgen.tab.c"
break;
case 97:
#line 751 "ncgen.y"
{(yyval.sym) = makespecial(_FILLVALUE_FLAG,(yyvsp[-4].sym),(yyvsp[-5].sym),(void*)(yyvsp[0].datalist),ISLIST);}
#line 2456 "ncgen.tab.c"
break;
case 98:
#line 753 "ncgen.y"
{(yyval.sym) = makespecial(_STORAGE_FLAG,(yyvsp[-4].sym),NULL,(void*)(yyvsp[0].constant),ISCONST);}
#line 2462 "ncgen.tab.c"
break;
case 99:
#line 755 "ncgen.y"
{(yyval.sym) = makespecial(_CHUNKSIZES_FLAG,(yyvsp[-4].sym),NULL,(void*)(yyvsp[0].datalist),ISLIST);}
#line 2468 "ncgen.tab.c"
break;
case 100:
#line 757 "ncgen.y"
{(yyval.sym) = makespecial(_FLETCHER32_FLAG,(yyvsp[-4].sym),NULL,(void*)(yyvsp[0].constant),ISCONST);}
#line 2474 "ncgen.tab.c"
break;
case 101:
#line 759 "ncgen.y"
{(yyval.sym) = makespecial(_DEFLATE_FLAG,(yyvsp[-4].sym),NULL,(void*)(yyvsp[0].constant),ISCONST);}
#line 2480 "ncgen.tab.c"
break;
case 102:
#line 761 "ncgen.y"
{(yyval.sym) = makespecial(_SHUFFLE_FLAG,(yyvsp[-4].sym),NULL,(void*)(yyvsp[0].constant),ISCONST);}
#line 2486 "ncgen.tab.c"
break;
case 103:
#line 763 "ncgen.y"
{(yyval.sym) = makespecial(_ENDIAN_FLAG,(yyvsp[-4].sym),NULL,(void*)(yyvsp[0].constant),ISCONST);}
#line 2492 "ncgen.tab.c"
break;
case 104:
#line 765 "ncgen.y"
{(yyval.sym) = makespecial(_FILTER_FLAG,(yyvsp[-4].sym),NULL,(void*)(yyvsp[0].constant),ISCONST);}
#line 2498 "ncgen.tab.c"
break;
case 105:
#line 767 "ncgen.y"
{(yyval.sym) = makespecial(_NOFILL_FLAG,(yyvsp[-4].sym),NULL,(void*)(yyvsp[0].constant),ISCONST);}
#line 2504 "ncgen.tab.c"
break;
case 106:
#line 769 "ncgen.y"
{(yyval.sym) = makespecial(_FORMAT_FLAG,NULL,NULL,(void*)(yyvsp[0].constant),ISCONST);}
#line 2510 "ncgen.tab.c"
break;
case 107:
#line 774 "ncgen.y"
{
(yyval.sym)=(yyvsp[0].sym);
(yyvsp[0].sym)->ref.is_ref=1;
(yyvsp[0].sym)->is_prefixed=0;
setpathcurrent((yyvsp[0].sym));
}
#line 2521 "ncgen.tab.c"
break;
case 108:
#line 781 "ncgen.y"
{
(yyval.sym)=(yyvsp[0].sym);
(yyvsp[0].sym)->ref.is_ref=1;
(yyvsp[0].sym)->is_prefixed=1;
/* path is set in ncgen.l*/
}
#line 2532 "ncgen.tab.c"
break;
case 110:
#line 790 "ncgen.y"
{}
#line 2538 "ncgen.tab.c"
break;
case 111:
#line 791 "ncgen.y"
{}
#line 2544 "ncgen.tab.c"
break;
case 114:
#line 799 "ncgen.y"
{(yyvsp[-2].sym)->data = (yyvsp[0].datalist);}
#line 2550 "ncgen.tab.c"
break;
case 115:
#line 802 "ncgen.y"
{(yyval.datalist) = (yyvsp[0].datalist);}
#line 2556 "ncgen.tab.c"
break;
case 116:
#line 803 "ncgen.y"
{(yyval.datalist) = (yyvsp[0].datalist);}
#line 2562 "ncgen.tab.c"
break;
case 117:
#line 807 "ncgen.y"
{(yyval.datalist) = builddatalist(0);}
#line 2568 "ncgen.tab.c"
break;
case 118:
#line 811 "ncgen.y"
{(yyval.datalist) = const2list((yyvsp[0].constant));}
#line 2574 "ncgen.tab.c"
break;
case 119:
#line 813 "ncgen.y"
{dlappend((yyvsp[-2].datalist),((yyvsp[0].constant))); (yyval.datalist)=(yyvsp[-2].datalist); }
#line 2580 "ncgen.tab.c"
break;
case 120:
#line 817 "ncgen.y"
{(yyval.constant)=(yyvsp[0].constant);}
#line 2586 "ncgen.tab.c"
break;
case 121:
#line 818 "ncgen.y"
{(yyval.constant)=builddatasublist((yyvsp[-1].datalist));}
#line 2592 "ncgen.tab.c"
break;
case 122:
#line 822 "ncgen.y"
{(yyval.constant)=(yyvsp[0].constant);}
#line 2598 "ncgen.tab.c"
break;
case 123:
#line 823 "ncgen.y"
{(yyval.constant)=makeconstdata(NC_OPAQUE);}
#line 2604 "ncgen.tab.c"
break;
case 124:
#line 824 "ncgen.y"
{(yyval.constant)=makeconstdata(NC_FILLVALUE);}
#line 2610 "ncgen.tab.c"
break;
case 125:
#line 825 "ncgen.y"
{(yyval.constant)=makeconstdata(NC_NIL);}
#line 2616 "ncgen.tab.c"
break;
case 126:
#line 826 "ncgen.y"
{(yyval.constant)=(yyvsp[0].constant);}
#line 2622 "ncgen.tab.c"
break;
case 128:
#line 831 "ncgen.y"
{(yyval.constant) = makeenumconstref((yyvsp[0].sym));}
#line 2628 "ncgen.tab.c"
break;
case 129:
#line 835 "ncgen.y"
{(yyval.constant)=evaluate((yyvsp[-3].sym),(yyvsp[-1].datalist));}
#line 2634 "ncgen.tab.c"
break;
case 130:
#line 840 "ncgen.y"
{(yyval.datalist) = const2list((yyvsp[0].constant));}
#line 2640 "ncgen.tab.c"
break;
case 131:
#line 842 "ncgen.y"
{dlappend((yyvsp[-2].datalist),((yyvsp[0].constant))); (yyval.datalist)=(yyvsp[-2].datalist);}
#line 2646 "ncgen.tab.c"
break;
case 132:
#line 846 "ncgen.y"
{(yyval.constant)=makeconstdata(NC_CHAR);}
#line 2652 "ncgen.tab.c"
break;
case 133:
#line 847 "ncgen.y"
{(yyval.constant)=makeconstdata(NC_BYTE);}
#line 2658 "ncgen.tab.c"
break;
case 134:
#line 848 "ncgen.y"
{(yyval.constant)=makeconstdata(NC_SHORT);}
#line 2664 "ncgen.tab.c"
break;
case 135:
#line 849 "ncgen.y"
{(yyval.constant)=makeconstdata(NC_INT);}
#line 2670 "ncgen.tab.c"
break;
case 136:
#line 850 "ncgen.y"
{(yyval.constant)=makeconstdata(NC_INT64);}
#line 2676 "ncgen.tab.c"
break;
case 137:
#line 851 "ncgen.y"
{(yyval.constant)=makeconstdata(NC_UBYTE);}
#line 2682 "ncgen.tab.c"
break;
case 138:
#line 852 "ncgen.y"
{(yyval.constant)=makeconstdata(NC_USHORT);}
#line 2688 "ncgen.tab.c"
break;
case 139:
#line 853 "ncgen.y"
{(yyval.constant)=makeconstdata(NC_UINT);}
#line 2694 "ncgen.tab.c"
break;
case 140:
#line 854 "ncgen.y"
{(yyval.constant)=makeconstdata(NC_UINT64);}
#line 2700 "ncgen.tab.c"
break;
case 141:
#line 855 "ncgen.y"
{(yyval.constant)=makeconstdata(NC_FLOAT);}
#line 2706 "ncgen.tab.c"
break;
case 142:
#line 856 "ncgen.y"
{(yyval.constant)=makeconstdata(NC_DOUBLE);}
#line 2712 "ncgen.tab.c"
break;
case 143:
#line 857 "ncgen.y"
{(yyval.constant)=makeconstdata(NC_STRING);}
#line 2718 "ncgen.tab.c"
break;
case 144:
#line 861 "ncgen.y"
{(yyval.datalist) = const2list((yyvsp[0].constant));}
#line 2724 "ncgen.tab.c"
break;
case 145:
#line 862 "ncgen.y"
{(yyval.datalist)=(yyvsp[-2].datalist); dlappend((yyvsp[-2].datalist),((yyvsp[0].constant)));}
#line 2730 "ncgen.tab.c"
break;
case 146:
#line 867 "ncgen.y"
{(yyval.constant)=makeconstdata(NC_INT);}
#line 2736 "ncgen.tab.c"
break;
case 147:
#line 869 "ncgen.y"
{(yyval.constant)=makeconstdata(NC_UINT);}
#line 2742 "ncgen.tab.c"
break;
case 148:
#line 871 "ncgen.y"
{(yyval.constant)=makeconstdata(NC_INT64);}
#line 2748 "ncgen.tab.c"
break;
case 149:
#line 873 "ncgen.y"
{(yyval.constant)=makeconstdata(NC_UINT64);}
#line 2754 "ncgen.tab.c"
break;
case 150:
#line 877 "ncgen.y"
{(yyval.constant)=makeconstdata(NC_STRING);}
#line 2760 "ncgen.tab.c"
break;
case 151:
#line 881 "ncgen.y"
{(yyval.constant)=(yyvsp[0].constant);}
#line 2766 "ncgen.tab.c"
break;
case 152:
#line 882 "ncgen.y"
{(yyval.constant)=(yyvsp[0].constant);}
#line 2772 "ncgen.tab.c"
break;
case 153:
#line 888 "ncgen.y"
{(yyval.sym)=(yyvsp[0].sym);}
#line 2778 "ncgen.tab.c"
break;
#line 2782 "ncgen.tab.c"
default: break;
}
/* User semantic actions sometimes alter yychar, and that requires
that yytoken be updated with the new translation. We take the
approach of translating immediately before every use of yytoken.
One alternative is translating here after every semantic action,
but that translation would be missed if the semantic action invokes
YYABORT, YYACCEPT, or YYERROR immediately after altering yychar or
if it invokes YYBACKUP. In the case of YYABORT or YYACCEPT, an
incorrect destructor might then be invoked immediately. In the
case of YYERROR or YYBACKUP, subsequent parser actions might lead
to an incorrect destructor call or verbose syntax error message
before the lookahead is translated. */
YY_SYMBOL_PRINT ("-> $$ =", yyr1[yyn], &yyval, &yyloc);
YYPOPSTACK (yylen);
yylen = 0;
YY_STACK_PRINT (yyss, yyssp);
*++yyvsp = yyval;
/* Now 'shift' the result of the reduction. Determine what state
that goes to, based on the state we popped back to and the rule
number reduced by. */
{
const int yylhs = yyr1[yyn] - YYNTOKENS;
const int yyi = yypgoto[yylhs] + *yyssp;
yystate = (0 <= yyi && yyi <= YYLAST && yycheck[yyi] == *yyssp
? yytable[yyi]
: yydefgoto[yylhs]);
}
goto yynewstate;
/*--------------------------------------.
| yyerrlab -- here on detecting error. |
`--------------------------------------*/
yyerrlab:
/* Make sure we have latest lookahead translation. See comments at
user semantic actions for why this is necessary. */
yytoken = yychar == YYEMPTY ? YYEMPTY : YYTRANSLATE (yychar);
/* If not already recovering from an error, report this error. */
if (!yyerrstatus)
{
++yynerrs;
#if ! YYERROR_VERBOSE
yyerror (YY_("syntax error"));
#else
# define YYSYNTAX_ERROR yysyntax_error (&yymsg_alloc, &yymsg, \
yyssp, yytoken)
{
char const *yymsgp = YY_("syntax error");
int yysyntax_error_status;
yysyntax_error_status = YYSYNTAX_ERROR;
if (yysyntax_error_status == 0)
yymsgp = yymsg;
else if (yysyntax_error_status == 1)
{
if (yymsg != yymsgbuf)
YYSTACK_FREE (yymsg);
yymsg = YY_CAST (char *, YYSTACK_ALLOC (YY_CAST (YYSIZE_T, yymsg_alloc)));
if (!yymsg)
{
yymsg = yymsgbuf;
yymsg_alloc = sizeof yymsgbuf;
yysyntax_error_status = 2;
}
else
{
yysyntax_error_status = YYSYNTAX_ERROR;
yymsgp = yymsg;
}
}
yyerror (yymsgp);
if (yysyntax_error_status == 2)
goto yyexhaustedlab;
}
# undef YYSYNTAX_ERROR
#endif
}
if (yyerrstatus == 3)
{
/* If just tried and failed to reuse lookahead token after an
error, discard it. */
if (yychar <= YYEOF)
{
/* Return failure if at end of input. */
if (yychar == YYEOF)
YYABORT;
}
else
{
yydestruct ("Error: discarding",
yytoken, &yylval);
yychar = YYEMPTY;
}
}
/* Else will try to reuse lookahead token after shifting the error
token. */
goto yyerrlab1;
/*---------------------------------------------------.
| yyerrorlab -- error raised explicitly by YYERROR. |
`---------------------------------------------------*/
yyerrorlab:
/* Pacify compilers when the user code never invokes YYERROR and the
label yyerrorlab therefore never appears in user code. */
if (0)
YYERROR;
/* Do not reclaim the symbols of the rule whose action triggered
this YYERROR. */
YYPOPSTACK (yylen);
yylen = 0;
YY_STACK_PRINT (yyss, yyssp);
yystate = *yyssp;
goto yyerrlab1;
/*-------------------------------------------------------------.
| yyerrlab1 -- common code for both syntax error and YYERROR. |
`-------------------------------------------------------------*/
yyerrlab1:
yyerrstatus = 3; /* Each real token shifted decrements this. */
for (;;)
{
yyn = yypact[yystate];
if (!yypact_value_is_default (yyn))
{
yyn += YYTERROR;
if (0 <= yyn && yyn <= YYLAST && yycheck[yyn] == YYTERROR)
{
yyn = yytable[yyn];
if (0 < yyn)
break;
}
}
/* Pop the current state because it cannot handle the error token. */
if (yyssp == yyss)
YYABORT;
yydestruct ("Error: popping",
yystos[yystate], yyvsp);
YYPOPSTACK (1);
yystate = *yyssp;
YY_STACK_PRINT (yyss, yyssp);
}
YY_IGNORE_MAYBE_UNINITIALIZED_BEGIN
*++yyvsp = yylval;
YY_IGNORE_MAYBE_UNINITIALIZED_END
/* Shift the error token. */
YY_SYMBOL_PRINT ("Shifting", yystos[yyn], yyvsp, yylsp);
yystate = yyn;
goto yynewstate;
/*-------------------------------------.
| yyacceptlab -- YYACCEPT comes here. |
`-------------------------------------*/
yyacceptlab:
yyresult = 0;
goto yyreturn;
/*-----------------------------------.
| yyabortlab -- YYABORT comes here. |
`-----------------------------------*/
yyabortlab:
yyresult = 1;
goto yyreturn;
#if !defined yyoverflow || YYERROR_VERBOSE
/*-------------------------------------------------.
| yyexhaustedlab -- memory exhaustion comes here. |
`-------------------------------------------------*/
yyexhaustedlab:
yyerror (YY_("memory exhausted"));
yyresult = 2;
/* Fall through. */
#endif
/*-----------------------------------------------------.
| yyreturn -- parsing is finished, return the result. |
`-----------------------------------------------------*/
yyreturn:
if (yychar != YYEMPTY)
{
/* Make sure we have latest lookahead translation. See comments at
user semantic actions for why this is necessary. */
yytoken = YYTRANSLATE (yychar);
yydestruct ("Cleanup: discarding lookahead",
yytoken, &yylval);
}
/* Do not reclaim the symbols of the rule whose action triggered
this YYABORT or YYACCEPT. */
YYPOPSTACK (yylen);
YY_STACK_PRINT (yyss, yyssp);
while (yyssp != yyss)
{
yydestruct ("Cleanup: popping",
yystos[+*yyssp], yyvsp);
YYPOPSTACK (1);
}
#ifndef yyoverflow
if (yyss != yyssa)
YYSTACK_FREE (yyss);
#endif
#if YYERROR_VERBOSE
if (yymsg != yymsgbuf)
YYSTACK_FREE (yymsg);
#endif
return yyresult;
}
#line 891 "ncgen.y"
#ifndef NO_STDARG
static void
yyerror(const char *fmt, ...)
#else
static void
yyerror(fmt,va_alist) const char* fmt; va_dcl
#endif
{
va_list argv;
va_start(argv,fmt);
(void)fprintf(stderr,"%s: %s line %d: ", progname, cdlname, lineno);
vderror(fmt,argv);
va_end(argv);
}
/* undefine yywrap macro, in case we are using bison instead of yacc */
#ifdef yywrap
#undef yywrap
#endif
static int
ncgwrap(void) /* returns 1 on EOF if no more input */
{
return 1;
}
/* get lexical input routine generated by lex */
#include "ncgenl.c"
/* Really should init our data within this file */
void
parse_init(void)
{
int i;
opaqueid = 0;
arrayuid = 0;
symlist = listnew();
stack = listnew();
groupstack = listnew();
consttype = NC_NAT;
grpdefs = listnew();
dimdefs = listnew();
attdefs = listnew();
gattdefs = listnew();
xattdefs = listnew();
typdefs = listnew();
vardefs = listnew();
tmp = listnew();
/* Create the primitive types */
for(i=NC_NAT+1;i<=NC_STRING;i++) {
primsymbols[i] = makeprimitivetype(i);
}
lex_init();
}
static Symbol*
makeprimitivetype(nc_type nctype)
{
Symbol* sym = install(primtypenames[nctype]);
sym->objectclass=NC_TYPE;
sym->subclass=NC_PRIM;
sym->nc_id = nctype;
sym->typ.typecode = nctype;
sym->typ.size = ncsize(nctype);
sym->typ.nelems = 1;
sym->typ.alignment = ncaux_class_alignment(nctype);
/* Make the basetype circular so we can always ask for it */
sym->typ.basetype = sym;
sym->prefix = listnew();
return sym;
}
/* Symbol table operations for ncgen tool */
/* install sname in symbol table even if it is already there */
Symbol*
install(const char *sname)
{
Symbol* sp;
sp = (Symbol*) ecalloc (sizeof (struct Symbol));
sp->name = nulldup(sname);
sp->lineno = lineno;
sp->location = currentgroup();
sp->container = currentgroup();
sp->var.special._Storage = NC_CONTIGUOUS;
listpush(symlist,sp);
return sp;
}
static Symbol*
currentgroup(void)
{
if(listlength(groupstack) == 0) return rootgroup;
return (Symbol*)listtop(groupstack);
}
static Symbol*
createrootgroup(const char* dataset)
{
Symbol* gsym = install(dataset);
gsym->objectclass = NC_GRP;
gsym->container = NULL;
gsym->subnodes = listnew();
gsym->grp.is_root = 1;
gsym->prefix = listnew();
listpush(grpdefs,(void*)gsym);
rootgroup = gsym;
return gsym;
}
static Symbol*
creategroup(Symbol * gsym)
{
/* See if this group already exists in currentgroup */
gsym->objectclass = NC_GRP;
if(dupobjectcheck(NC_GRP,gsym)) {
derror("Duplicate group name in same scope: %s",gsym->name);
return NULL;
}
addtogroup(gsym);
gsym->subnodes = listnew();
listpush(groupstack,(void*)gsym);
listpush(grpdefs,(void*)gsym);
return gsym;
}
static NCConstant*
makeconstdata(nc_type nctype)
{
NCConstant* con = nullconst();
consttype = nctype;
con->nctype = nctype;
con->lineno = lineno;
con->filled = 0;
switch (nctype) {
case NC_CHAR: con->value.charv = char_val; break;
case NC_BYTE: con->value.int8v = byte_val; break;
case NC_SHORT: con->value.int16v = int16_val; break;
case NC_INT: con->value.int32v = int32_val; break;
case NC_FLOAT:
con->value.floatv = float_val;
break;
case NC_DOUBLE:
con->value.doublev = double_val;
break;
case NC_STRING: { /* convert to a set of chars*/
size_t len;
len = bbLength(lextext);
con->value.stringv.len = len;
con->value.stringv.stringv = bbExtract(lextext);
}
break;
/* Allow these constants even in netcdf-3 */
case NC_UBYTE: con->value.uint8v = ubyte_val; break;
case NC_USHORT: con->value.uint16v = uint16_val; break;
case NC_UINT: con->value.uint32v = uint32_val; break;
case NC_INT64: con->value.int64v = int64_val; break;
case NC_UINT64: con->value.uint64v = uint64_val; break;
#ifdef USE_NETCDF4
case NC_OPAQUE: {
char* s;
int len;
len = bbLength(lextext);
s = (char*)ecalloc(len+1);
strncpy(s,bbContents(lextext),len);
s[len] = '\0';
con->value.opaquev.stringv = s;
con->value.opaquev.len = len;
} break;
case NC_NIL:
break; /* no associated value*/
#endif
case NC_FILLVALUE:
break; /* no associated value*/
default:
yyerror("Data constant: unexpected NC type: %s",
nctypename(nctype));
con->value.stringv.stringv = NULL;
con->value.stringv.len = 0;
}
return con;
}
static NCConstant*
makeenumconstref(Symbol* refsym)
{
NCConstant* con = nullconst();
markcdf4("Enum type");
consttype = NC_ENUM;
con->nctype = NC_ECONST;
con->lineno = lineno;
con->filled = 0;
refsym->objectclass = NC_TYPE;
refsym->subclass = NC_ECONST;
con->value.enumv = refsym;
return con;
}
static void
addtogroup(Symbol* sym)
{
Symbol* grp = currentgroup();
sym->container = grp;
listpush(grp->subnodes,(void*)sym);
setpathcurrent(sym);
}
/* Check for duplicate name of given type within current group*/
static int
dupobjectcheck(nc_class objectclass, Symbol* pattern)
{
int i;
Symbol* grp;
if(pattern == NULL) return 0;
grp = pattern->container;
if(grp == NULL || grp->subnodes == NULL) return 0;
for(i=0;i<listlength(grp->subnodes);i++) {
Symbol* sym = (Symbol*)listget(grp->subnodes,i);
if(!sym->ref.is_ref && sym->objectclass == objectclass
&& strcmp(sym->name,pattern->name)==0) return 1;
}
return 0;
}
static void
setpathcurrent(Symbol* sym)
{
sym->is_prefixed = 0;
sym->prefix = prefixdup(groupstack);
}
/* Convert an nc_type code to the corresponding Symbol*/
Symbol*
basetypefor(nc_type nctype)
{
return primsymbols[nctype];
}
static int
truefalse(NCConstant* con, int tag)
{
if(con->nctype == NC_STRING) {
char* sdata = con->value.stringv.stringv;
if(strncmp(sdata,"false",NC_MAX_NAME) == 0
|| strncmp(sdata,"0",NC_MAX_NAME) == 0)
return 0;
else if(strncmp(sdata,"true",NC_MAX_NAME) == 0
|| strncmp(sdata,"1",NC_MAX_NAME) == 0)
return 1;
else goto fail;
} else if(con->value.int32v < 0 || con->value.int32v > 1)
goto fail;
return con->value.int32v;
fail:
derror("%s: illegal value",specialname(tag));
return 0;
}
/* Since this may be affected by the _Format attribute, which
may come last, capture all the special info and sort it out
in semantics.
*/
static Symbol*
makespecial(int tag, Symbol* vsym, Symbol* tsym, void* data, int isconst)
{
Symbol* attr = NULL;
Datalist* list = NULL;
NCConstant* con = NULL;
NCConstant* tmp = NULL;
int tf = 0;
char* sdata = NULL;
int idata = -1;
if((GLOBAL_SPECIAL & tag) != 0) {
if(vsym != NULL) {
derror("_Format: must be global attribute");
vsym = NULL;
}
} else {
if(vsym == NULL) {
derror("%s: must have non-NULL vsym", specialname(tag));
return NULL;
}
}
if(tag != _FILLVALUE_FLAG && tag != _FORMAT_FLAG)
/*Main.*/specials_flag++;
if(isconst)
con = (NCConstant*)data;
else
list = (Datalist*)data;
switch (tag) {
case _FLETCHER32_FLAG:
case _SHUFFLE_FLAG:
case _ISNETCDF4_FLAG:
case _NOFILL_FLAG:
tmp = nullconst();
tmp->nctype = (con->nctype == NC_STRING?NC_STRING:NC_INT);
convert1(con,tmp);
tf = truefalse(tmp,tag);
reclaimconstant(tmp);
break;
case _FORMAT_FLAG:
case _STORAGE_FLAG:
case _NCPROPS_FLAG:
case _ENDIAN_FLAG:
case _FILTER_FLAG:
tmp = nullconst();
tmp->nctype = NC_STRING;
convert1(con,tmp);
if(tmp->nctype == NC_STRING) {
sdata = tmp->value.stringv.stringv;
tmp->value.stringv.stringv = NULL;
tmp->value.stringv.len = 0;
} else
derror("%s: illegal value",specialname(tag));
reclaimconstant(tmp);
break;
case _SUPERBLOCK_FLAG:
case _DEFLATE_FLAG:
tmp = nullconst();
tmp->nctype = NC_INT;
convert1(con,tmp);
if(tmp->nctype == NC_INT)
idata = tmp->value.int32v;
else
derror("%s: illegal value",specialname(tag));
reclaimconstant(tmp);
break;
case _CHUNKSIZES_FLAG:
case _FILLVALUE_FLAG:
/* Handle below */
break;
default: PANIC1("unexpected special tag: %d",tag);
}
if(tag == _FORMAT_FLAG) {
/* Watch out: this is a global attribute */
struct Kvalues* kvalue;
int found = 0;
/* Use the table in main.c */
for(kvalue = legalkinds; kvalue->name; kvalue++) {
if(sdata) {
if(strcmp(sdata, kvalue->name) == 0) {
globalspecials._Format = kvalue->k_flag;
/*Main.*/format_attribute = 1;
found = 1;
if(kvalue->deprecated)
fprintf(stderr,"_Format=%s is deprecated; use corresponding _Format=<name>\n",sdata);
break;
}
}
}
if(!found)
derror("_Format: illegal value: %s",sdata);
} else if((GLOBAL_SPECIAL & tag) != 0) {
if(tag == _ISNETCDF4_FLAG)
globalspecials._IsNetcdf4 = tf;
else if(tag == _SUPERBLOCK_FLAG)
globalspecials._Superblock = idata;
else if(tag == _NCPROPS_FLAG) {
globalspecials._NCProperties = sdata;
sdata = NULL;
}
} else {
Specialdata* special;
/* Set up special info */
special = &vsym->var.special;
if(tag == _FILLVALUE_FLAG) {
/* fillvalue must be a single value*/
if(!isconst && datalistlen(list) != 1)
derror("_FillValue: must be a single (possibly compound) value",
vsym->name);
if(isconst) {
list = const2list(con);
con = NULL;
}
/* check that the attribute value contains no fill values*/
if(containsfills(list)) {
derror("Attribute data may not contain fill values (i.e. _ )");
}
/* _FillValue is also a real attribute*/
if(vsym->objectclass != NC_VAR) {
derror("_FillValue attribute not associated with variable: %s",vsym->name);
}
if(tsym == NULL) tsym = vsym->typ.basetype;
else if(vsym->typ.basetype != tsym) {
derror("_FillValue attribute type does not match variable type: %s",vsym->name);
}
special->_Fillvalue = clonedatalist(list);
/* Create the corresponding attribute */
attr = makeattribute(install("_FillValue"),vsym,tsym,list,ATTRVAR);
list = NULL;
} else switch (tag) {
/* These will be output as attributes later */
case _STORAGE_FLAG:
if(!sdata)
derror("_Storage: illegal NULL value");
else if(strcmp(sdata,"contiguous") == 0)
special->_Storage = NC_CONTIGUOUS;
else if(strcmp(sdata,"compact") == 0)
special->_Storage = NC_COMPACT;
else if(strcmp(sdata,"chunked") == 0)
special->_Storage = NC_CHUNKED;
else
derror("_Storage: illegal value: %s",sdata);
special->flags |= _STORAGE_FLAG;
break;
case _FLETCHER32_FLAG:
special->_Fletcher32 = tf;
special->flags |= _FLETCHER32_FLAG;
break;
case _DEFLATE_FLAG:
special->_DeflateLevel = idata;
special->flags |= _DEFLATE_FLAG;
break;
case _SHUFFLE_FLAG:
special->_Shuffle = tf;
special->flags |= _SHUFFLE_FLAG;
break;
case _ENDIAN_FLAG:
if(!sdata)
derror("_Endianness: illegal NULL value");
else if(strcmp(sdata,"little") == 0)
special->_Endianness = 1;
else if(strcmp(sdata,"big") == 0)
special->_Endianness = 2;
else
derror("_Endianness: illegal value: %s",sdata);
special->flags |= _ENDIAN_FLAG;
break;
case _NOFILL_FLAG:
special->_Fill = (1 - tf); /* negate */
special->flags |= _NOFILL_FLAG;
break;
case _CHUNKSIZES_FLAG: {
int i;
list = (isconst ? const2list(con) : list);
special->nchunks = list->length;
special->_ChunkSizes = (size_t*)ecalloc(sizeof(size_t)*special->nchunks);
for(i=0;i<special->nchunks;i++) {
tmp = nullconst();
tmp->nctype = NC_INT;
convert1(list->data[i],tmp);
if(tmp->nctype == NC_INT) {
special->_ChunkSizes[i] = (size_t)tmp->value.int32v;
} else {
efree(special->_ChunkSizes);
derror("%s: illegal value",specialname(tag));
}
reclaimconstant(tmp);
}
special->flags |= _CHUNKSIZES_FLAG;
/* Chunksizes => storage == chunked */
special->flags |= _STORAGE_FLAG;
special->_Storage = NC_CHUNKED;
} break;
case _FILTER_FLAG:
#ifdef USE_NETCDF4
/* Parse the filter spec */
if(parsefilterflag(sdata,special) == NC_NOERR)
special->flags |= _FILTER_FLAG;
else {
derror("_Filter: unparsable filter spec: %s",sdata);
}
#else
derror("%s: the filter attribute requires netcdf-4 to be enabled",specialname(tag));
#endif
break;
default: PANIC1("makespecial: illegal token: %d",tag);
}
}
if(sdata) efree(sdata);
if(con) reclaimconstant(con);
if(list) reclaimdatalist(list);
return attr;
}
static Symbol*
makeattribute(Symbol* asym,
Symbol* vsym,
Symbol* tsym,
Datalist* data,
Attrkind kind) /* global var or unknown*/
{
asym->objectclass = NC_ATT;
asym->data = data;
switch (kind) {
case ATTRVAR:
asym->att.var = vsym;
asym->typ.basetype = tsym;
listpush(attdefs,(void*)asym);
addtogroup(asym);
break;
case ATTRGLOBAL:
asym->att.var = NULL; /* NULL => NC_GLOBAL*/
asym->typ.basetype = tsym;
listpush(gattdefs,(void*)asym);
addtogroup(asym);
break;
default: PANIC1("unexpected attribute type: %d",kind);
}
/* finally; check that the attribute value contains no fill values*/
if(containsfills(data)) {
derror("Attribute data may not contain fill values (i.e. _ ): %s",asym->name);
}
return asym;
}
static long long
extractint(NCConstant* con)
{
switch (con->nctype) {
case NC_BYTE: return (long long)(con->value.int8v);
case NC_SHORT: return (long long)(con->value.int16v);
case NC_INT: return (long long)(con->value.int32v);
case NC_UBYTE: return (long long)(con->value.uint8v);
case NC_USHORT: return (long long)(con->value.uint16v);
case NC_UINT: return (long long)(con->value.uint32v);
case NC_INT64: return (long long)(con->value.int64v);
default:
derror("Not a signed integer type: %d",con->nctype);
break;
}
return 0;
}
static int
containsfills(Datalist* list)
{
if(list != NULL) {
int i;
NCConstant** cons = list->data;
for(i=0;i<list->length;i++) {
if(cons[i]->nctype == NC_COMPOUND) {
if(containsfills(cons[i]->value.compoundv)) return 1;
} else if(cons[i]->nctype == NC_FILLVALUE)
return 1;
}
}
return 0;
}
/*
Try to infer the file type from the
kinds of constructs used in the cdl file.
*/
static void
vercheck(int tid)
{
switch (tid) {
case NC_UBYTE: markcdf4("netCDF4/5 type: UBYTE"); break;
case NC_USHORT: markcdf4("netCDF4/5 type: USHORT"); break;
case NC_UINT: markcdf4("netCDF4/5 type: UINT"); break;
case NC_INT64: markcdf4("netCDF4/5 type: INT64"); break;
case NC_UINT64: markcdf4("netCDF4/5 type: UINT64"); break;
case NC_STRING: markcdf4("netCDF4 type: STRING"); break;
case NC_VLEN: markcdf4("netCDF4 type: VLEN"); break;
case NC_OPAQUE: markcdf4("netCDF4 type: OPAQUE"); break;
case NC_ENUM: markcdf4("netCDF4 type: ENUM"); break;
case NC_COMPOUND: markcdf4("netCDF4 type: COMPOUND"); break;
default: break;
}
}
const char*
specialname(int tag)
{
struct Specialtoken* spp = specials;
for(;spp->name;spp++) {
if(spp->tag == tag)
return spp->name;
}
return "<unknown>";
}
#ifdef USE_NETCDF4
/*
Parse a filter spec string and store it in special
*/
static int
parsefilterflag(const char* sdata, Specialdata* special)
{
int stat = NC_NOERR;
if(sdata == NULL || strlen(sdata) == 0) return NC_EINVAL;
stat = ncaux_h5filterspec_parselist(sdata, NULL, &special->nfilters, &special->_Filters);
if(stat)
derror("Malformed filter spec: %s",sdata);
#ifdef GENDEBUG1
printfilters(special->nfilters,special->_Filters);
#endif
return stat;
}
#endif
/*
Since the arguments are all simple constants,
we can evaluate the function immediately
and return its value.
Note that currently, only a single value can
be returned.
*/
static NCConstant*
evaluate(Symbol* fcn, Datalist* arglist)
{
NCConstant* result = nullconst();
/* prepare the result */
result->lineno = fcn->lineno;
if(strcasecmp(fcn->name,"time") == 0) {
char* timekind = NULL;
char* timevalue = NULL;
result->nctype = NC_DOUBLE;
result->value.doublev = 0;
/* int time([string],string) */
switch (arglist->length) {
case 2:
if(arglist->data[1]->nctype != NC_STRING) {
derror("Expected function signature: time([string,]string)");
goto done;
}
/* fall thru */
case 1:
if(arglist->data[0]->nctype != NC_STRING) {
derror("Expected function signature: time([string,]string)");
goto done;
}
break;
case 0:
default:
derror("Expected function signature: time([string,]string)");
goto done;
}
if(arglist->length == 2) {
timekind = arglist->data[0]->value.stringv.stringv;
timevalue = arglist->data[1]->value.stringv.stringv;
} else
timevalue = arglist->data[0]->value.stringv.stringv;
if(timekind == NULL) { /* use cd time as the default */
cdCompTime comptime;
CdTime cdtime;
cdCalenType timetype = cdStandard;
cdChar2Comp(timetype,timevalue,&comptime);
/* convert comptime to cdTime */
cdtime.year = comptime.year;
cdtime.month = comptime.month;
cdtime.day = comptime.day;
cdtime.hour = comptime.hour;
cdtime.baseYear = 1970;
cdtime.timeType = CdChron;
/* convert to double value */
Cdh2e(&cdtime,&result->value.doublev);
} else {
derror("Time conversion '%s' not supported",timekind);
goto done;
}
} else { /* Unknown function */
derror("Unknown function name: %s",fcn->name);
goto done;
}
done:
return result;
}
#ifdef GENDEBUG1
static void
printfilters(int nfilters, NC_Filterspec** filters)
{
int i;
fprintf(stderr,"xxx: nfilters=%lu: ",(unsigned long)nfilters);
for(i=0;i<nfilters;i++) {
int k;
NC_Filterspec* sp = filters[i];
fprintf(stderr,"{");
fprintf(stderr,"filterid=%s format=%s nparams=%lu params=%p",
sp->filterid,sp->format,(unsigned long)sp->nparams,sp->params);
if(sp->nparams > 0 && sp->params != NULL) {
fprintf(stderr," params={");
for(k=0;k<sp->nparams;k++) {
if(i==0) fprintf(stderr,",");
fprintf(stderr,"%s",sp->params[i]);
}
fprintf(stderr,"}");
} else
fprintf(stderr,"params=NULL");
fprintf(stderr,"}");
}
fprintf(stderr,"\n");
fflush(stderr);
}
#endif