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a5ee536be2
The purpose of this patch is to better support renamings in the "info locals" command. Consider ... procedure Foo is GV : Integer renames Pck.Global_Variable; begin Increment (GV); -- STOP end Foo; ... Pck.Global_Variable is just an integer. After having stopped at the "STOP" line, "info locals" yields: (gdb) info locals gv = <error reading variable gv (Cannot access memory at address 0xffffffffffffffff)> In reality, two things are happening: (1) Variable "GV" does not exist, which is normal, since there is "GV" the renaming of another variable; (2) But to allow the user access to that renaming the same way the code has, the compiler produces an artificial variable whose name encodes the renaming: gv___XR_pck__global_variable___XE For practical reasons, the artificial variable itself is given irrelevant types and addresses. But the "info locals" command does not act as if it was a short-cut of "foreach VAR in locals, print VAR". Instead it gets the value of each VAR directly, which does not work in this case, since the variable is artificial and needs to be decoded first. This patch makes the "read_var_value" routine language-specific. The old implementation of "read_var_value" gets renamed to "default_read_var_value" and all languages now use it (unchanged behavior), except for Ada. In Ada, the new function ada_read_var_value checks if we have a renaming, and if so, evaluates its value, or else defers to default_read_var_value. gdb/ChangeLog: * language.h (struct language_defn): New "method" la_read_var_value. * findvar.c: #include "language.h". (default_read_var_value): Renames read_var_value. Rewrite function description. (read_var_value): New function. * value.h (default_read_var_value): Add prototype. * ada-lang.c (ada_read_renaming_var_value, ada_read_var_value): New functions. (ada_language_defn): Add entry for la_read_var_value. * c-lang.c, d-lang.c, f-lang.c, jv-lang.c, language.c, * m2-lang.c, objc-lang.c, opencl-lang.c, p-lang.c: Update language_defn structures to add entry for new la_read_var_value field.
289 lines
8.7 KiB
C
289 lines
8.7 KiB
C
/* D language support routines for GDB, the GNU debugger.
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Copyright (C) 2005-2006, 2008-2012 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 "d-lang.h"
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#include "c-lang.h"
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#include "gdb_string.h"
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#include "parser-defs.h"
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#include "gdb_obstack.h"
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#include <ctype.h>
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/* Extract identifiers from MANGLED_STR and append it to TEMPBUF.
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Return 1 on success or 0 on failure. */
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static int
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extract_identifiers (const char *mangled_str, struct obstack *tempbuf)
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{
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long i = 0;
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while (isdigit (*mangled_str))
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{
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char *end_ptr;
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i = strtol (mangled_str, &end_ptr, 10);
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mangled_str = end_ptr;
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if (i <= 0 || strlen (mangled_str) < i)
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return 0;
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obstack_grow (tempbuf, mangled_str, i);
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mangled_str += i;
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obstack_grow_str (tempbuf, ".");
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}
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if (*mangled_str == '\0' || i == 0)
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return 0;
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obstack_blank (tempbuf, -1);
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return 1;
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}
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/* Extract and demangle type from MANGLED_STR and append it to TEMPBUF.
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Return 1 on success or 0 on failure. */
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static int
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extract_type_info (const char *mangled_str, struct obstack *tempbuf)
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{
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if (*mangled_str == '\0')
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return 0;
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switch (*mangled_str++)
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{
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case 'A': /* dynamic array */
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case 'G': /* static array */
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case 'H': /* associative array */
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if (!extract_type_info (mangled_str, tempbuf))
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return 0;
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obstack_grow_str (tempbuf, "[]");
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return 1;
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case 'P': /* pointer */
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if (!extract_type_info (mangled_str, tempbuf))
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return 0;
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obstack_grow_str (tempbuf, "*");
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return 1;
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case 'R': /* reference */
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if (!extract_type_info (mangled_str, tempbuf))
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return 0;
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obstack_grow_str (tempbuf, "&");
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return 1;
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case 'Z': /* return value */
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return extract_type_info (mangled_str, tempbuf);
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case 'J': /* out */
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obstack_grow_str (tempbuf, "out ");
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return extract_type_info (mangled_str, tempbuf);
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case 'K': /* inout */
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obstack_grow_str (tempbuf, "inout ");
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return extract_type_info (mangled_str, tempbuf);
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case 'E': /* enum */
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case 'T': /* typedef */
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case 'D': /* delegate */
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case 'C': /* class */
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case 'S': /* struct */
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return extract_identifiers (mangled_str, tempbuf);
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/* basic types: */
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case 'n': obstack_grow_str (tempbuf, "none"); return 1;
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case 'v': obstack_grow_str (tempbuf, "void"); return 1;
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case 'g': obstack_grow_str (tempbuf, "byte"); return 1;
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case 'h': obstack_grow_str (tempbuf, "ubyte"); return 1;
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case 's': obstack_grow_str (tempbuf, "short"); return 1;
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case 't': obstack_grow_str (tempbuf, "ushort"); return 1;
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case 'i': obstack_grow_str (tempbuf, "int"); return 1;
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case 'k': obstack_grow_str (tempbuf, "uint"); return 1;
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case 'l': obstack_grow_str (tempbuf, "long"); return 1;
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case 'm': obstack_grow_str (tempbuf, "ulong"); return 1;
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case 'f': obstack_grow_str (tempbuf, "float"); return 1;
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case 'd': obstack_grow_str (tempbuf, "double"); return 1;
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case 'e': obstack_grow_str (tempbuf, "real"); return 1;
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/* imaginary and complex: */
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case 'o': obstack_grow_str (tempbuf, "ifloat"); return 1;
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case 'p': obstack_grow_str (tempbuf, "idouble"); return 1;
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case 'j': obstack_grow_str (tempbuf, "ireal"); return 1;
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case 'q': obstack_grow_str (tempbuf, "cfloat"); return 1;
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case 'r': obstack_grow_str (tempbuf, "cdouble"); return 1;
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case 'c': obstack_grow_str (tempbuf, "creal"); return 1;
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/* other types: */
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case 'b': obstack_grow_str (tempbuf, "bit"); return 1;
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case 'a': obstack_grow_str (tempbuf, "char"); return 1;
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case 'u': obstack_grow_str (tempbuf, "wchar"); return 1;
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case 'w': obstack_grow_str (tempbuf, "dchar"); return 1;
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default:
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obstack_grow_str (tempbuf, "unknown");
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return 1;
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}
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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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struct obstack tempbuf;
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char *out_str;
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unsigned char is_func = 0;
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if (symbol == NULL)
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return NULL;
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else if (strcmp (symbol, "_Dmain") == 0)
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return xstrdup ("D main");
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obstack_init (&tempbuf);
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if (symbol[0] == '_' && symbol[1] == 'D')
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{
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symbol += 2;
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is_func = 1;
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}
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else if (strncmp (symbol, "__Class_", 8) == 0)
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symbol += 8;
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else if (strncmp (symbol, "__init_", 7) == 0)
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symbol += 7;
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else if (strncmp (symbol, "__vtbl_", 7) == 0)
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symbol += 7;
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else if (strncmp (symbol, "__modctor_", 10) == 0)
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symbol += 10;
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else if (strncmp (symbol, "__moddtor_", 10) == 0)
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symbol += 10;
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else if (strncmp (symbol, "__ModuleInfo_", 13) == 0)
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symbol += 13;
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else
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{
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obstack_free (&tempbuf, NULL);
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return NULL;
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}
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if (!extract_identifiers (symbol, &tempbuf))
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{
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obstack_free (&tempbuf, NULL);
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return NULL;
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}
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obstack_grow_str (&tempbuf, "(");
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if (is_func == 1 && *symbol == 'F')
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{
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symbol++;
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while (*symbol != '\0' && *symbol != 'Z')
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{
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if (is_func == 1)
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is_func++;
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else
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obstack_grow_str (&tempbuf, ", ");
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if (!extract_type_info (symbol, &tempbuf))
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{
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obstack_free (&tempbuf, NULL);
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return NULL;
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}
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}
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}
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obstack_grow_str0 (&tempbuf, ")");
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/* Doesn't display the return type, but wouldn't be too hard to do. */
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out_str = xstrdup (obstack_finish (&tempbuf));
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obstack_free (&tempbuf, NULL);
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return out_str;
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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_EQUAL, 0},
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{"!=", BINOP_NOTEQUAL, PREC_EQUAL, 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_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_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, 0, 0, 0}
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};
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static const struct language_defn d_language_defn =
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{
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"d",
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language_d,
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range_check_off,
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type_check_off,
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case_sensitive_on,
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array_row_major,
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macro_expansion_c,
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&exp_descriptor_c,
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c_parse,
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c_error,
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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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basic_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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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_make_symbol_completion_list,
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c_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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NULL, /* la_get_symbol_name_cmp */
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NULL,
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LANG_MAGIC
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};
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/* Provide a prototype to silence -Wmissing-prototypes. */
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extern initialize_file_ftype _initialize_d_language;
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void
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_initialize_d_language (void)
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{
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add_language (&d_language_defn);
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}
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