mirror of
https://sourceware.org/git/binutils-gdb.git
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4be290b251
This commit is preparation work for the next commit, and by itself makes no user visible change to GDB. I've split this work into a separate commit in order to make code review easier. This commit adds a new field 'la_is_string_type_p' to the language struct, this predicate will return true if a type is a string type for the given language. Some languages already have a "is this a string" predicate that I was able to reuse, while for other languages I've had to add a new predicate. In this case I took inspiration from the value printing code for that language - what different conditions would result in printing something as a string. A default "is this a string" method has also been added that looks for TYPE_CODE_STRING, this is the fallback I've used for a couple of languages. In this commit I add the new field and initialise it for each language, however at this stage the new field is never used. gdb/ChangeLog: * ada-lang.c (ada_language_defn): Initialise new field. * c-lang.c (c_is_string_type_p): New function. (c_language_defn): Initialise new field. (cplus_language_defn): Initialise new field. (asm_language_defn): Initialise new field. (minimal_language_defn): Initialise new field. * c-lang.h (c_is_string_type_p): Declare new function. * d-lang.c (d_language_defn): Initialise new field. * f-lang.c (f_is_string_type_p): New function. (f_language_defn): Initialise new field. * go-lang.c (go_is_string_type_p): New function. (go_language_defn): Initialise new field. * language.c (default_is_string_type_p): New function. (unknown_language_defn): Initialise new field. (auto_language_defn): Initialise new field. * language.h (struct language_defn) <la_is_string_type_p>: New member variable. (default_is_string_type_p): Declare new function. * m2-lang.c (m2_language_defn): Initialise new field. * objc-lang.c (objc_language_defn): Initialise new field. * opencl-lang.c (opencl_language_defn): Initialise new field. * p-lang.c (pascal_is_string_type_p): New function. (pascal_language_defn): Initialise new field. * rust-lang.c (rust_is_string_type_p): New function. (rust_language_defn): Initialise new field.
352 lines
12 KiB
C
352 lines
12 KiB
C
/* D language support routines for GDB, the GNU debugger.
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Copyright (C) 2005-2019 Free Software Foundation, Inc.
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This file is part of GDB.
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>. */
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#include "defs.h"
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#include "symtab.h"
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#include "language.h"
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#include "varobj.h"
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#include "d-lang.h"
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#include "c-lang.h"
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#include "demangle.h"
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#include "cp-support.h"
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/* The name of the symbol to use to get the name of the main subprogram. */
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static const char D_MAIN[] = "D main";
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/* Function returning the special symbol name used by D for the main
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procedure in the main program if it is found in minimal symbol list.
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This function tries to find minimal symbols so that it finds them even
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if the program was compiled without debugging information. */
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const char *
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d_main_name (void)
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{
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struct bound_minimal_symbol msym;
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msym = lookup_minimal_symbol (D_MAIN, NULL, NULL);
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if (msym.minsym != NULL)
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return D_MAIN;
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/* No known entry procedure found, the main program is probably not D. */
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return NULL;
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}
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/* Implements the la_demangle language_defn routine for language D. */
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char *
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d_demangle (const char *symbol, int options)
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{
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return gdb_demangle (symbol, options | DMGL_DLANG);
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}
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/* la_sniff_from_mangled_name implementation for D. */
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static int
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d_sniff_from_mangled_name (const char *mangled, char **demangled)
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{
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*demangled = d_demangle (mangled, 0);
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return *demangled != NULL;
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}
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/* Table mapping opcodes into strings for printing operators
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and precedences of the operators. */
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static const struct op_print d_op_print_tab[] =
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{
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{",", BINOP_COMMA, PREC_COMMA, 0},
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{"=", BINOP_ASSIGN, PREC_ASSIGN, 1},
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{"||", BINOP_LOGICAL_OR, PREC_LOGICAL_OR, 0},
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{"&&", BINOP_LOGICAL_AND, PREC_LOGICAL_AND, 0},
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{"|", BINOP_BITWISE_IOR, PREC_BITWISE_IOR, 0},
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{"^", BINOP_BITWISE_XOR, PREC_BITWISE_XOR, 0},
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{"&", BINOP_BITWISE_AND, PREC_BITWISE_AND, 0},
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{"==", BINOP_EQUAL, PREC_ORDER, 0},
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{"!=", BINOP_NOTEQUAL, PREC_ORDER, 0},
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{"<=", BINOP_LEQ, PREC_ORDER, 0},
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{">=", BINOP_GEQ, PREC_ORDER, 0},
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{">", BINOP_GTR, PREC_ORDER, 0},
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{"<", BINOP_LESS, PREC_ORDER, 0},
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{">>", BINOP_RSH, PREC_SHIFT, 0},
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{"<<", BINOP_LSH, PREC_SHIFT, 0},
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{"+", BINOP_ADD, PREC_ADD, 0},
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{"-", BINOP_SUB, PREC_ADD, 0},
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{"~", BINOP_CONCAT, PREC_ADD, 0},
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{"*", BINOP_MUL, PREC_MUL, 0},
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{"/", BINOP_DIV, PREC_MUL, 0},
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{"%", BINOP_REM, PREC_MUL, 0},
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{"^^", BINOP_EXP, PREC_REPEAT, 0},
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{"@", BINOP_REPEAT, PREC_REPEAT, 0},
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{"-", UNOP_NEG, PREC_PREFIX, 0},
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{"!", UNOP_LOGICAL_NOT, PREC_PREFIX, 0},
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{"~", UNOP_COMPLEMENT, PREC_PREFIX, 0},
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{"*", UNOP_IND, PREC_PREFIX, 0},
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{"&", UNOP_ADDR, PREC_PREFIX, 0},
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{"sizeof ", UNOP_SIZEOF, PREC_PREFIX, 0},
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{"++", UNOP_PREINCREMENT, PREC_PREFIX, 0},
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{"--", UNOP_PREDECREMENT, PREC_PREFIX, 0},
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{NULL, OP_NULL, PREC_PREFIX, 0}
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};
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/* Mapping of all D basic data types into the language vector. */
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enum d_primitive_types {
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d_primitive_type_void,
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d_primitive_type_bool,
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d_primitive_type_byte,
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d_primitive_type_ubyte,
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d_primitive_type_short,
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d_primitive_type_ushort,
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d_primitive_type_int,
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d_primitive_type_uint,
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d_primitive_type_long,
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d_primitive_type_ulong,
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d_primitive_type_cent, /* Signed 128 bit integer. */
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d_primitive_type_ucent, /* Unsigned 128 bit integer. */
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d_primitive_type_float,
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d_primitive_type_double,
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d_primitive_type_real,
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d_primitive_type_ifloat, /* Imaginary float types. */
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d_primitive_type_idouble,
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d_primitive_type_ireal,
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d_primitive_type_cfloat, /* Complex number of two float values. */
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d_primitive_type_cdouble,
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d_primitive_type_creal,
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d_primitive_type_char, /* Unsigned character types. */
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d_primitive_type_wchar,
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d_primitive_type_dchar,
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nr_d_primitive_types
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};
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/* Implements the la_language_arch_info language_defn routine
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for language D. */
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static void
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d_language_arch_info (struct gdbarch *gdbarch,
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struct language_arch_info *lai)
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{
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const struct builtin_d_type *builtin = builtin_d_type (gdbarch);
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lai->string_char_type = builtin->builtin_char;
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lai->primitive_type_vector
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= GDBARCH_OBSTACK_CALLOC (gdbarch, nr_d_primitive_types + 1,
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struct type *);
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lai->primitive_type_vector [d_primitive_type_void]
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= builtin->builtin_void;
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lai->primitive_type_vector [d_primitive_type_bool]
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= builtin->builtin_bool;
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lai->primitive_type_vector [d_primitive_type_byte]
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= builtin->builtin_byte;
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lai->primitive_type_vector [d_primitive_type_ubyte]
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= builtin->builtin_ubyte;
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lai->primitive_type_vector [d_primitive_type_short]
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= builtin->builtin_short;
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lai->primitive_type_vector [d_primitive_type_ushort]
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= builtin->builtin_ushort;
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lai->primitive_type_vector [d_primitive_type_int]
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= builtin->builtin_int;
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lai->primitive_type_vector [d_primitive_type_uint]
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= builtin->builtin_uint;
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lai->primitive_type_vector [d_primitive_type_long]
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= builtin->builtin_long;
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lai->primitive_type_vector [d_primitive_type_ulong]
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= builtin->builtin_ulong;
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lai->primitive_type_vector [d_primitive_type_cent]
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= builtin->builtin_cent;
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lai->primitive_type_vector [d_primitive_type_ucent]
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= builtin->builtin_ucent;
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lai->primitive_type_vector [d_primitive_type_float]
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= builtin->builtin_float;
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lai->primitive_type_vector [d_primitive_type_double]
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= builtin->builtin_double;
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lai->primitive_type_vector [d_primitive_type_real]
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= builtin->builtin_real;
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lai->primitive_type_vector [d_primitive_type_ifloat]
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= builtin->builtin_ifloat;
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lai->primitive_type_vector [d_primitive_type_idouble]
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= builtin->builtin_idouble;
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lai->primitive_type_vector [d_primitive_type_ireal]
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= builtin->builtin_ireal;
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lai->primitive_type_vector [d_primitive_type_cfloat]
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= builtin->builtin_cfloat;
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lai->primitive_type_vector [d_primitive_type_cdouble]
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= builtin->builtin_cdouble;
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lai->primitive_type_vector [d_primitive_type_creal]
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= builtin->builtin_creal;
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lai->primitive_type_vector [d_primitive_type_char]
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= builtin->builtin_char;
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lai->primitive_type_vector [d_primitive_type_wchar]
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= builtin->builtin_wchar;
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lai->primitive_type_vector [d_primitive_type_dchar]
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= builtin->builtin_dchar;
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lai->bool_type_symbol = "bool";
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lai->bool_type_default = builtin->builtin_bool;
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}
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static const char *d_extensions[] =
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{
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".d", NULL
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};
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extern const struct language_defn d_language_defn =
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{
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"d",
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"D",
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language_d,
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range_check_off,
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case_sensitive_on,
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array_row_major,
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macro_expansion_no,
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d_extensions,
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&exp_descriptor_c,
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d_parse,
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null_post_parser,
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c_printchar, /* Print a character constant. */
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c_printstr, /* Function to print string constant. */
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c_emit_char, /* Print a single char. */
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c_print_type, /* Print a type using appropriate syntax. */
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c_print_typedef, /* Print a typedef using appropriate
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syntax. */
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d_val_print, /* Print a value using appropriate syntax. */
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c_value_print, /* Print a top-level value. */
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default_read_var_value, /* la_read_var_value */
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NULL, /* Language specific skip_trampoline. */
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"this",
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false, /* la_store_sym_names_in_linkage_form_p */
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d_lookup_symbol_nonlocal,
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basic_lookup_transparent_type,
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d_demangle, /* Language specific symbol demangler. */
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d_sniff_from_mangled_name,
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NULL, /* Language specific
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class_name_from_physname. */
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d_op_print_tab, /* Expression operators for printing. */
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1, /* C-style arrays. */
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0, /* String lower bound. */
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default_word_break_characters,
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default_collect_symbol_completion_matches,
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d_language_arch_info,
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default_print_array_index,
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default_pass_by_reference,
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c_get_string,
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c_watch_location_expression,
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NULL, /* la_get_symbol_name_matcher */
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iterate_over_symbols,
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default_search_name_hash,
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&default_varobj_ops,
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NULL,
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NULL,
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c_is_string_type_p,
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"{...}" /* la_struct_too_deep_ellipsis */
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};
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/* Build all D language types for the specified architecture. */
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static void *
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build_d_types (struct gdbarch *gdbarch)
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{
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struct builtin_d_type *builtin_d_type
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= GDBARCH_OBSTACK_ZALLOC (gdbarch, struct builtin_d_type);
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/* Basic types. */
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builtin_d_type->builtin_void
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= arch_type (gdbarch, TYPE_CODE_VOID, TARGET_CHAR_BIT, "void");
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builtin_d_type->builtin_bool
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= arch_boolean_type (gdbarch, 8, 1, "bool");
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builtin_d_type->builtin_byte
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= arch_integer_type (gdbarch, 8, 0, "byte");
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builtin_d_type->builtin_ubyte
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= arch_integer_type (gdbarch, 8, 1, "ubyte");
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builtin_d_type->builtin_short
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= arch_integer_type (gdbarch, 16, 0, "short");
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builtin_d_type->builtin_ushort
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= arch_integer_type (gdbarch, 16, 1, "ushort");
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builtin_d_type->builtin_int
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= arch_integer_type (gdbarch, 32, 0, "int");
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builtin_d_type->builtin_uint
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= arch_integer_type (gdbarch, 32, 1, "uint");
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builtin_d_type->builtin_long
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= arch_integer_type (gdbarch, 64, 0, "long");
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builtin_d_type->builtin_ulong
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= arch_integer_type (gdbarch, 64, 1, "ulong");
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builtin_d_type->builtin_cent
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= arch_integer_type (gdbarch, 128, 0, "cent");
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builtin_d_type->builtin_ucent
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= arch_integer_type (gdbarch, 128, 1, "ucent");
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builtin_d_type->builtin_float
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= arch_float_type (gdbarch, gdbarch_float_bit (gdbarch),
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"float", gdbarch_float_format (gdbarch));
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builtin_d_type->builtin_double
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= arch_float_type (gdbarch, gdbarch_double_bit (gdbarch),
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"double", gdbarch_double_format (gdbarch));
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builtin_d_type->builtin_real
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= arch_float_type (gdbarch, gdbarch_long_double_bit (gdbarch),
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"real", gdbarch_long_double_format (gdbarch));
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TYPE_INSTANCE_FLAGS (builtin_d_type->builtin_byte)
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|= TYPE_INSTANCE_FLAG_NOTTEXT;
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TYPE_INSTANCE_FLAGS (builtin_d_type->builtin_ubyte)
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|= TYPE_INSTANCE_FLAG_NOTTEXT;
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/* Imaginary and complex types. */
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builtin_d_type->builtin_ifloat
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= arch_float_type (gdbarch, gdbarch_float_bit (gdbarch),
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"ifloat", gdbarch_float_format (gdbarch));
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builtin_d_type->builtin_idouble
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= arch_float_type (gdbarch, gdbarch_double_bit (gdbarch),
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"idouble", gdbarch_double_format (gdbarch));
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builtin_d_type->builtin_ireal
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= arch_float_type (gdbarch, gdbarch_long_double_bit (gdbarch),
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"ireal", gdbarch_long_double_format (gdbarch));
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builtin_d_type->builtin_cfloat
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= arch_complex_type (gdbarch, "cfloat",
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builtin_d_type->builtin_float);
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builtin_d_type->builtin_cdouble
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= arch_complex_type (gdbarch, "cdouble",
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builtin_d_type->builtin_double);
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builtin_d_type->builtin_creal
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= arch_complex_type (gdbarch, "creal",
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builtin_d_type->builtin_real);
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/* Character types. */
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builtin_d_type->builtin_char
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= arch_character_type (gdbarch, 8, 1, "char");
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builtin_d_type->builtin_wchar
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= arch_character_type (gdbarch, 16, 1, "wchar");
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builtin_d_type->builtin_dchar
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= arch_character_type (gdbarch, 32, 1, "dchar");
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return builtin_d_type;
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}
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static struct gdbarch_data *d_type_data;
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/* Return the D type table for the specified architecture. */
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const struct builtin_d_type *
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builtin_d_type (struct gdbarch *gdbarch)
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{
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return (const struct builtin_d_type *) gdbarch_data (gdbarch, d_type_data);
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}
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void
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_initialize_d_language (void)
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{
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d_type_data = gdbarch_data_register_post_init (build_d_types);
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}
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