Added gnu bc 1.06

git-svn-id: file:///srv/svn/repos/haiku/trunk/current@7647 a95241bf-73f2-0310-859d-f6bbb57e9c96
This commit is contained in:
Jérôme Duval
2004-05-26 08:01:51 +00:00
parent d9e5697c73
commit f337194053
42 changed files with 16495 additions and 0 deletions
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GNU GENERAL PUBLIC LICENSE
Version 2, June 1991
Copyright (C) 1989, 1991 Free Software Foundation, Inc.
59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
Everyone is permitted to copy and distribute verbatim copies
of this license document, but changing it is not allowed.
Preamble
The licenses for most software are designed to take away your
freedom to share and change it. By contrast, the GNU General Public
License is intended to guarantee your freedom to share and change free
software--to make sure the software is free for all its users. This
General Public License applies to most of the Free Software
Foundation's software and to any other program whose authors commit to
using it. (Some other Free Software Foundation software is covered by
the GNU Library General Public License instead.) You can apply it to
your programs, too.
When we speak of free software, we are referring to freedom, not
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to attach them to the start of each source file to most effectively
convey the exclusion of warranty; and each file should have at least
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<one line to give the program's name and a brief idea of what it does.>
Copyright (C) <year> <name of author>
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it under the terms of the GNU General Public License as published by
the Free Software Foundation; either version 2 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.
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along with this program; if not, write to the Free Software
Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
Also add information on how to contact you by electronic and paper mail.
If the program is interactive, make it output a short notice like this
when it starts in an interactive mode:
Gnomovision version 69, Copyright (C) year name of author
Gnomovision comes with ABSOLUTELY NO WARRANTY; for details type `show w'.
This is free software, and you are welcome to redistribute it
under certain conditions; type `show c' for details.
The hypothetical commands `show w' and `show c' should show the appropriate
parts of the General Public License. Of course, the commands you use may
be called something other than `show w' and `show c'; they could even be
mouse-clicks or menu items--whatever suits your program.
You should also get your employer (if you work as a programmer) or your
school, if any, to sign a "copyright disclaimer" for the program, if
necessary. Here is a sample; alter the names:
Yoyodyne, Inc., hereby disclaims all copyright interest in the program
`Gnomovision' (which makes passes at compilers) written by James Hacker.
<signature of Ty Coon>, 1 April 1989
Ty Coon, President of Vice
This General Public License does not permit incorporating your program into
proprietary programs. If your program is a subroutine library, you may
consider it more useful to permit linking proprietary applications with the
library. If this is what you want to do, use the GNU Library General
Public License instead of this License.
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SubDir OBOS_TOP src apps bin bc ;
SubInclude OBOS_TOP src apps bin bc lib ;
SubInclude OBOS_TOP src apps bin bc bc ;
SubInclude OBOS_TOP src apps bin bc dc ;
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SubDir OBOS_TOP src apps bin bc bc ;
SubDirCcFlags -DHAVE_CONFIG_H ;
SubDirHdrs [ FDirName $(SUBDIR) $(DOTDOT) lib ] ;
SubDirHdrs [ FDirName $(SUBDIR) $(DOTDOT) ] ;
SubDirHdrs [ FDirName $(SUBDIR) $(DOTDOT) h ] ;
BinCommand bc :
main.c bc.y scan.l execute.c load.c storage.c util.c global.c
: libbc.a ;
File diff suppressed because it is too large Load Diff
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typedef union {
char *s_value;
char c_value;
int i_value;
arg_list *a_value;
} YYSTYPE;
#define ENDOFLINE 257
#define AND 258
#define OR 259
#define NOT 260
#define STRING 261
#define NAME 262
#define NUMBER 263
#define ASSIGN_OP 264
#define REL_OP 265
#define INCR_DECR 266
#define Define 267
#define Break 268
#define Quit 269
#define Length 270
#define Return 271
#define For 272
#define If 273
#define While 274
#define Sqrt 275
#define Else 276
#define Scale 277
#define Ibase 278
#define Obase 279
#define Auto 280
#define Read 281
#define Warranty 282
#define Halt 283
#define Last 284
#define Continue 285
#define Print 286
#define Limits 287
#define UNARY_MINUS 288
#define HistoryVar 289
extern YYSTYPE yylval;
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%{
/* bc.y: The grammar for a POSIX compatable bc processor with some
extensions to the language. */
/* This file is part of GNU bc.
Copyright (C) 1991, 1992, 1993, 1994, 1997 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 2 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; see the file COPYING. If not, write to:
The Free Software Foundation, Inc.
59 Temple Place, Suite 330
Boston, MA 02111 USA
You may contact the author by:
e-mail: [email protected]
us-mail: Philip A. Nelson
Computer Science Department, 9062
Western Washington University
Bellingham, WA 98226-9062
*************************************************************************/
#include "bcdefs.h"
#include "global.h"
#include "proto.h"
%}
%start program
%union {
char *s_value;
char c_value;
int i_value;
arg_list *a_value;
}
/* Extensions over POSIX bc.
a) NAME was LETTER. This grammar allows longer names.
Single letter names will still work.
b) Relational_expression allowed only one comparison.
This grammar has added boolean expressions with
&& (and) || (or) and ! (not) and allowed all of them in
full expressions.
c) Added an else to the if.
d) Call by variable array parameters
e) read() procedure that reads a number under program control from stdin.
f) halt statement that halts the the program under program control. It
is an executed statement.
g) continue statement for for loops.
h) optional expressions in the for loop.
i) print statement to print multiple numbers per line.
j) warranty statement to print an extended warranty notice.
j) limits statement to print the processor's limits.
*/
%token <i_value> ENDOFLINE AND OR NOT
%token <s_value> STRING NAME NUMBER
/* '-', '+' are tokens themselves */
/* '=', '+=', '-=', '*=', '/=', '%=', '^=' */
%token <c_value> ASSIGN_OP
/* '==', '<=', '>=', '!=', '<', '>' */
%token <s_value> REL_OP
/* '++', '--' */
%token <c_value> INCR_DECR
/* 'define', 'break', 'quit', 'length' */
%token <i_value> Define Break Quit Length
/* 'return', 'for', 'if', 'while', 'sqrt', 'else' */
%token <i_value> Return For If While Sqrt Else
/* 'scale', 'ibase', 'obase', 'auto', 'read' */
%token <i_value> Scale Ibase Obase Auto Read
/* 'warranty', 'halt', 'last', 'continue', 'print', 'limits' */
%token <i_value> Warranty, Halt, Last, Continue, Print, Limits
/* 'history' */
%token <i_value> UNARY_MINUS HistoryVar
/* Types of all other things. */
%type <i_value> expression return_expression named_expression opt_expression
%type <c_value> '+' '-' '*' '/' '%'
%type <a_value> opt_parameter_list opt_auto_define_list define_list
%type <a_value> opt_argument_list argument_list
%type <i_value> program input_item semicolon_list statement_list
%type <i_value> statement function statement_or_error required_eol
/* precedence */
%left OR
%left AND
%nonassoc NOT
%left REL_OP
%right ASSIGN_OP
%left '+' '-'
%left '*' '/' '%'
%right '^'
%nonassoc UNARY_MINUS
%nonassoc INCR_DECR
%%
program : /* empty */
{
$$ = 0;
if (interactive && !quiet)
{
show_bc_version ();
welcome ();
}
}
| program input_item
;
input_item : semicolon_list ENDOFLINE
{ run_code (); }
| function
{ run_code (); }
| error ENDOFLINE
{
yyerrok;
init_gen ();
}
;
opt_newline : /* empty */
| ENDOFLINE
{ warn ("newline not allowed"); }
;
semicolon_list : /* empty */
{ $$ = 0; }
| statement_or_error
| semicolon_list ';' statement_or_error
| semicolon_list ';'
;
statement_list : /* empty */
{ $$ = 0; }
| statement_or_error
| statement_list ENDOFLINE
| statement_list ENDOFLINE statement_or_error
| statement_list ';'
| statement_list ';' statement
;
statement_or_error : statement
| error statement
{ $$ = $2; }
;
statement : Warranty
{ warranty (""); }
| Limits
{ limits (); }
| expression
{
if ($1 & 2)
warn ("comparison in expression");
if ($1 & 1)
generate ("W");
else
generate ("p");
}
| STRING
{
$$ = 0;
generate ("w");
generate ($1);
free ($1);
}
| Break
{
if (break_label == 0)
yyerror ("Break outside a for/while");
else
{
sprintf (genstr, "J%1d:", break_label);
generate (genstr);
}
}
| Continue
{
warn ("Continue statement");
if (continue_label == 0)
yyerror ("Continue outside a for");
else
{
sprintf (genstr, "J%1d:", continue_label);
generate (genstr);
}
}
| Quit
{ exit (0); }
| Halt
{ generate ("h"); }
| Return return_expression
{ generate ("R"); }
| For
{
$1 = break_label;
break_label = next_label++;
}
'(' opt_expression ';'
{
if ($4 & 2)
warn ("Comparison in first for expression");
if ($4 >= 0)
generate ("p");
$4 = next_label++;
sprintf (genstr, "N%1d:", $4);
generate (genstr);
}
opt_expression ';'
{
if ($7 < 0) generate ("1");
$7 = next_label++;
sprintf (genstr, "B%1d:J%1d:", $7, break_label);
generate (genstr);
$<i_value>$ = continue_label;
continue_label = next_label++;
sprintf (genstr, "N%1d:", continue_label);
generate (genstr);
}
opt_expression ')'
{
if ($10 & 2 )
warn ("Comparison in third for expression");
if ($10 & 16)
sprintf (genstr, "J%1d:N%1d:", $4, $7);
else
sprintf (genstr, "pJ%1d:N%1d:", $4, $7);
generate (genstr);
}
opt_newline statement
{
sprintf (genstr, "J%1d:N%1d:",
continue_label, break_label);
generate (genstr);
break_label = $1;
continue_label = $<i_value>9;
}
| If '(' expression ')'
{
$3 = if_label;
if_label = next_label++;
sprintf (genstr, "Z%1d:", if_label);
generate (genstr);
}
opt_newline statement opt_else
{
sprintf (genstr, "N%1d:", if_label);
generate (genstr);
if_label = $3;
}
| While
{
$1 = next_label++;
sprintf (genstr, "N%1d:", $1);
generate (genstr);
}
'(' expression
{
$4 = break_label;
break_label = next_label++;
sprintf (genstr, "Z%1d:", break_label);
generate (genstr);
}
')' opt_newline statement
{
sprintf (genstr, "J%1d:N%1d:", $1, break_label);
generate (genstr);
break_label = $4;
}
| '{' statement_list '}'
{ $$ = 0; }
| Print
{ warn ("print statement"); }
print_list
;
print_list : print_element
| print_element ',' print_list
;
print_element : STRING
{
generate ("O");
generate ($1);
free ($1);
}
| expression
{ generate ("P"); }
;
opt_else : /* nothing */
| Else
{
warn ("else clause in if statement");
$1 = next_label++;
sprintf (genstr, "J%d:N%1d:", $1, if_label);
generate (genstr);
if_label = $1;
}
opt_newline statement
function : Define NAME '(' opt_parameter_list ')' opt_newline
'{' required_eol opt_auto_define_list
{
/* Check auto list against parameter list? */
check_params ($4,$9);
sprintf (genstr, "F%d,%s.%s[",
lookup($2,FUNCTDEF),
arg_str ($4), arg_str ($9));
generate (genstr);
free_args ($4);
free_args ($9);
$1 = next_label;
next_label = 1;
}
statement_list /* ENDOFLINE */ '}'
{
generate ("0R]");
next_label = $1;
}
;
opt_parameter_list : /* empty */
{ $$ = NULL; }
| define_list
;
opt_auto_define_list : /* empty */
{ $$ = NULL; }
| Auto define_list ENDOFLINE
{ $$ = $2; }
| Auto define_list ';'
{ $$ = $2; }
;
define_list : NAME
{ $$ = nextarg (NULL, lookup ($1,SIMPLE), FALSE);}
| NAME '[' ']'
{ $$ = nextarg (NULL, lookup ($1,ARRAY), FALSE); }
| '*' NAME '[' ']'
{ $$ = nextarg (NULL, lookup ($2,ARRAY), TRUE); }
| define_list ',' NAME
{ $$ = nextarg ($1, lookup ($3,SIMPLE), FALSE); }
| define_list ',' NAME '[' ']'
{ $$ = nextarg ($1, lookup ($3,ARRAY), FALSE); }
| define_list ',' '*' NAME '[' ']'
{ $$ = nextarg ($1, lookup ($4,ARRAY), TRUE); }
;
opt_argument_list : /* empty */
{ $$ = NULL; }
| argument_list
;
argument_list : expression
{
if ($1 & 2) warn ("comparison in argument");
$$ = nextarg (NULL,0,FALSE);
}
| NAME '[' ']'
{
sprintf (genstr, "K%d:", -lookup ($1,ARRAY));
generate (genstr);
$$ = nextarg (NULL,1,FALSE);
}
| argument_list ',' expression
{
if ($3 & 2) warn ("comparison in argument");
$$ = nextarg ($1,0,FALSE);
}
| argument_list ',' NAME '[' ']'
{
sprintf (genstr, "K%d:", -lookup ($3,ARRAY));
generate (genstr);
$$ = nextarg ($1,1,FALSE);
}
;
/* Expression lval meanings! (Bits mean something!)
* 0 => Top op is assignment.
* 1 => Top op is not assignment.
* 2 => Comparison is somewhere in expression.
* 4 => Expression is in parenthesis.
* 16 => Empty optional expression.
*/
opt_expression : /* empty */
{
$$ = 16;
warn ("Missing expression in for statement");
}
| expression
;
return_expression : /* empty */
{
$$ = 0;
generate ("0");
}
| expression
{
if ($1 & 2)
warn ("comparison in return expresion");
if (!($1 & 4))
warn ("return expression requires parenthesis");
}
;
expression : named_expression ASSIGN_OP
{
if ($2 != '=')
{
if ($1 < 0)
sprintf (genstr, "DL%d:", -$1);
else
sprintf (genstr, "l%d:", $1);
generate (genstr);
}
}
expression
{
if ($4 & 2) warn("comparison in assignment");
if ($2 != '=')
{
sprintf (genstr, "%c", $2);
generate (genstr);
}
if ($1 < 0)
sprintf (genstr, "S%d:", -$1);
else
sprintf (genstr, "s%d:", $1);
generate (genstr);
$$ = 0;
}
;
| expression AND
{
warn("&& operator");
$2 = next_label++;
sprintf (genstr, "DZ%d:p", $2);
generate (genstr);
}
expression
{
sprintf (genstr, "DZ%d:p1N%d:", $2, $2);
generate (genstr);
$$ = ($1 | $4) & ~4;
}
| expression OR
{
warn("|| operator");
$2 = next_label++;
sprintf (genstr, "B%d:", $2);
generate (genstr);
}
expression
{
int tmplab;
tmplab = next_label++;
sprintf (genstr, "B%d:0J%d:N%d:1N%d:",
$2, tmplab, $2, tmplab);
generate (genstr);
$$ = ($1 | $4) & ~4;
}
| NOT expression
{
$$ = $2 & ~4;
warn("! operator");
generate ("!");
}
| expression REL_OP expression
{
$$ = 3;
switch (*($2))
{
case '=':
generate ("=");
break;
case '!':
generate ("#");
break;
case '<':
if ($2[1] == '=')
generate ("{");
else
generate ("<");
break;
case '>':
if ($2[1] == '=')
generate ("}");
else
generate (">");
break;
}
}
| expression '+' expression
{
generate ("+");
$$ = ($1 | $3) & ~4;
}
| expression '-' expression
{
generate ("-");
$$ = ($1 | $3) & ~4;
}
| expression '*' expression
{
generate ("*");
$$ = ($1 | $3) & ~4;
}
| expression '/' expression
{
generate ("/");
$$ = ($1 | $3) & ~4;
}
| expression '%' expression
{
generate ("%");
$$ = ($1 | $3) & ~4;
}
| expression '^' expression
{
generate ("^");
$$ = ($1 | $3) & ~4;
}
| '-' expression %prec UNARY_MINUS
{
generate ("n");
$$ = $2 & ~4;
}
| named_expression
{
$$ = 1;
if ($1 < 0)
sprintf (genstr, "L%d:", -$1);
else
sprintf (genstr, "l%d:", $1);
generate (genstr);
}
| NUMBER
{
int len = strlen($1);
$$ = 1;
if (len == 1 && *$1 == '0')
generate ("0");
else if (len == 1 && *$1 == '1')
generate ("1");
else
{
generate ("K");
generate ($1);
generate (":");
}
free ($1);
}
| '(' expression ')'
{ $$ = $2 | 5; }
| NAME '(' opt_argument_list ')'
{
$$ = 1;
if ($3 != NULL)
{
sprintf (genstr, "C%d,%s:",
lookup ($1,FUNCT),
call_str ($3));
free_args ($3);
}
else
{
sprintf (genstr, "C%d:", lookup ($1,FUNCT));
}
generate (genstr);
}
| INCR_DECR named_expression
{
$$ = 1;
if ($2 < 0)
{
if ($1 == '+')
sprintf (genstr, "DA%d:L%d:", -$2, -$2);
else
sprintf (genstr, "DM%d:L%d:", -$2, -$2);
}
else
{
if ($1 == '+')
sprintf (genstr, "i%d:l%d:", $2, $2);
else
sprintf (genstr, "d%d:l%d:", $2, $2);
}
generate (genstr);
}
| named_expression INCR_DECR
{
$$ = 1;
if ($1 < 0)
{
sprintf (genstr, "DL%d:x", -$1);
generate (genstr);
if ($2 == '+')
sprintf (genstr, "A%d:", -$1);
else
sprintf (genstr, "M%d:", -$1);
}
else
{
sprintf (genstr, "l%d:", $1);
generate (genstr);
if ($2 == '+')
sprintf (genstr, "i%d:", $1);
else
sprintf (genstr, "d%d:", $1);
}
generate (genstr);
}
| Length '(' expression ')'
{ generate ("cL"); $$ = 1;}
| Sqrt '(' expression ')'
{ generate ("cR"); $$ = 1;}
| Scale '(' expression ')'
{ generate ("cS"); $$ = 1;}
| Read '(' ')'
{
warn ("read function");
generate ("cI"); $$ = 1;
}
;
named_expression : NAME
{ $$ = lookup($1,SIMPLE); }
| NAME '[' expression ']'
{
if ($3 > 1) warn("comparison in subscript");
$$ = lookup($1,ARRAY);
}
| Ibase
{ $$ = 0; }
| Obase
{ $$ = 1; }
| Scale
{ $$ = 2; }
| HistoryVar
{ $$ = 3;
warn ("History variable");
}
| Last
{ $$ = 4;
warn ("Last variable");
}
;
required_eol : { warn ("End of line required"); }
| ENDOFLINE
| required_eol ENDOFLINE
{ warn ("Too many end of lines"); }
;
%%
+188
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@@ -0,0 +1,188 @@
/* bcdefs.h: The single file to include all constants and type definitions. */
/* This file is part of GNU bc.
Copyright (C) 1991, 1992, 1993, 1994, 1997 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 2 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; see the file COPYING. If not, write to
The Free Software Foundation, Inc.
59 Temple Place, Suite 330
Boston, MA 02111 USA
You may contact the author by:
e-mail: [email protected]
us-mail: Philip A. Nelson
Computer Science Department, 9062
Western Washington University
Bellingham, WA 98226-9062
*************************************************************************/
/* Include the configuration file. */
#include "config.h"
/* Standard includes for all files. */
#include <stdio.h>
#include <sys/types.h>
#include <ctype.h>
#ifdef HAVE_STRINGS_H
#include <strings.h>
#else
#include <string.h>
#endif
#ifdef HAVE_LIMITS_H
#include <limits.h>
#endif
#if defined(LIBEDIT)
#include <histedit.h>
#endif
#if defined(READLINE)
#include <readline/readline.h>
#include <readline/history.h>
#endif
/* Include the other definitions. */
#include "const.h"
#include "number.h"
/* These definitions define all the structures used in
code and data storage. This includes the representation of
labels. The "guiding" principle is to make structures that
take a minimum of space when unused but can be built to contain
the full structures. */
/* Labels are first. Labels are generated sequentially in functions
and full code. They just "point" to a single bye in the code. The
"address" is the byte number. The byte number is used to get an
actual character pointer. */
typedef struct bc_label_group
{
long l_adrs [ BC_LABEL_GROUP ];
struct bc_label_group *l_next;
} bc_label_group;
/* Argument list. Recorded in the function so arguments can
be checked at call time. */
typedef struct arg_list
{
int av_name;
int arg_is_var; /* Extension ... variable parameters. */
struct arg_list *next;
} arg_list;
/* Each function has its own code segments and labels. There can be
no jumps between functions so labels are unique to a function. */
typedef struct
{
char f_defined; /* Is this function defined yet. */
char *f_body;
int f_body_size; /* Size of body. Power of 2. */
int f_code_size;
bc_label_group *f_label;
arg_list *f_params;
arg_list *f_autos;
} bc_function;
/* Code addresses. */
typedef struct {
int pc_func;
int pc_addr;
} program_counter;
/* Variables are "pushable" (auto) and thus we need a stack mechanism.
This is built into the variable record. */
typedef struct bc_var
{
bc_num v_value;
struct bc_var *v_next;
} bc_var;
/* bc arrays can also be "auto" variables and thus need the same
kind of stacking mechanisms. */
typedef struct bc_array_node
{
union
{
bc_num n_num [NODE_SIZE];
struct bc_array_node *n_down [NODE_SIZE];
} n_items;
} bc_array_node;
typedef struct bc_array
{
bc_array_node *a_tree;
short a_depth;
} bc_array;
typedef struct bc_var_array
{
bc_array *a_value;
char a_param;
struct bc_var_array *a_next;
} bc_var_array;
/* For the stacks, execution and function, we need records to allow
for arbitrary size. */
typedef struct estack_rec {
bc_num s_num;
struct estack_rec *s_next;
} estack_rec;
typedef struct fstack_rec {
int s_val;
struct fstack_rec *s_next;
} fstack_rec;
/* The following are for the name tree. */
typedef struct id_rec {
char *id; /* The program name. */
/* A name == 0 => nothing assigned yet. */
int a_name; /* The array variable name (number). */
int f_name; /* The function name (number). */
int v_name; /* The variable name (number). */
short balance; /* For the balanced tree. */
struct id_rec *left, *right; /* Tree pointers. */
} id_rec;
/* A list of files to process. */
typedef struct file_node {
char *name;
struct file_node *next;
} file_node;
/* Macro Definitions */
#if defined(LIBEDIT)
#define HISTORY_SIZE(n) history(hist, &histev, H_SETSIZE, n)
#define UNLIMIT_HISTORY history(hist, &histev, H_SETSIZE, INT_MAX)
#endif
#if defined(READLINE)
#define HISTORY_SIZE(n) stifle_history(n)
#define UNLIMIT_HISTORY unstifle_history()
#endif
+98
View File
@@ -0,0 +1,98 @@
/* const.h: Constants for bc. */
/* This file is part of GNU bc.
Copyright (C) 1991, 1992, 1993, 1994, 1997 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 2 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; see the file COPYING. If not, write to
The Free Software Foundation, Inc.
59 Temple Place, Suite 330
Boston, MA 02111 USA
You may contact the author by:
e-mail: [email protected]
us-mail: Philip A. Nelson
Computer Science Department, 9062
Western Washington University
Bellingham, WA 98226-9062
*************************************************************************/
/* Define INT_MAX and LONG_MAX if not defined. Assuming 32 bits... */
#ifndef INT_MAX
#define INT_MAX 0x7FFFFFFF
#endif
#ifndef LONG_MAX
#define LONG_MAX 0x7FFFFFFF
#endif
/* Define constants in some reasonable size. The next 4 constants are
POSIX constants. */
#ifdef BC_BASE_MAX
/* <limits.h> on a POSIX.2 system may have defined these. Override. */
# undef BC_BASE_MAX
# undef BC_SCALE_MAX
# undef BC_STRING_MAX
# undef BC_DIM_MAX
#endif
#define BC_BASE_MAX INT_MAX
#define BC_SCALE_MAX INT_MAX
#define BC_STRING_MAX INT_MAX
/* Definitions for arrays. */
#define BC_DIM_MAX 65535 /* this should be NODE_SIZE^NODE_DEPTH-1 */
#define NODE_SIZE 16 /* Must be a power of 2. */
#define NODE_MASK 0xf /* Must be NODE_SIZE-1. */
#define NODE_SHIFT 4 /* Number of 1 bits in NODE_MASK. */
#define NODE_DEPTH 4
/* Other BC limits defined but not part of POSIX. */
#define BC_LABEL_GROUP 64
#define BC_LABEL_LOG 6
#define BC_START_SIZE 1024 /* Initial code body size. */
/* Maximum number of variables, arrays and functions and the
allocation increment for the dynamic arrays. */
#define MAX_STORE 32767
#define STORE_INCR 32
/* Other interesting constants. */
#define FALSE 0
#define TRUE 1
/* for use with lookup (). */
#define SIMPLE 0
#define ARRAY 1
#define FUNCT 2
#define FUNCTDEF 3
#define EXTERN extern
#ifdef __STDC__
#define CONST const
#define VOID void
#else
#define CONST
#define VOID
#endif
+788
View File
@@ -0,0 +1,788 @@
/* execute.c - run a bc program. */
/* This file is part of GNU bc.
Copyright (C) 1991-1994, 1997, 2000 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 2 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; see the file COPYING. If not, write to
The Free Software Foundation, Inc.
59 Temple Place, Suite 330
Boston, MA 02111 USA
You may contact the author by:
e-mail: [email protected]
us-mail: Philip A. Nelson
Computer Science Department, 9062
Western Washington University
Bellingham, WA 98226-9062
*************************************************************************/
#include "bcdefs.h"
#include <signal.h>
#include "global.h"
#include "proto.h"
/* The SIGINT interrupt handling routine. */
int had_sigint;
void
stop_execution (sig)
int sig;
{
had_sigint = TRUE;
printf ("\n");
rt_error ("interrupted execution");
}
/* Get the current byte and advance the PC counter. */
unsigned char
byte (pc)
program_counter *pc;
{
return (functions[pc->pc_func].f_body[pc->pc_addr++]);
}
/* The routine that actually runs the machine. */
void
execute ()
{
int label_num, l_gp, l_off;
bc_label_group *gp;
char inst, ch;
int new_func;
int var_name;
int const_base;
bc_num temp_num;
arg_list *auto_list;
/* Initialize this run... */
pc.pc_func = 0;
pc.pc_addr = 0;
runtime_error = FALSE;
bc_init_num (&temp_num);
/* Set up the interrupt mechanism for an interactive session. */
if (interactive)
{
signal (SIGINT, stop_execution);
had_sigint = FALSE;
}
while (pc.pc_addr < functions[pc.pc_func].f_code_size && !runtime_error)
{
inst = byte(&pc);
#if DEBUG > 3
{ /* Print out address and the stack before each instruction.*/
int depth; estack_rec *temp = ex_stack;
printf ("func=%d addr=%d inst=%c\n",pc.pc_func, pc.pc_addr, inst);
if (temp == NULL) printf ("empty stack.\n", inst);
else
{
depth = 1;
while (temp != NULL)
{
printf (" %d = ", depth);
bc_out_num (temp->s_num, 10, out_char, std_only);
depth++;
temp = temp->s_next;
}
out_char ('\n');
}
}
#endif
switch ( inst )
{
case 'A' : /* increment array variable (Add one). */
var_name = byte(&pc);
if ((var_name & 0x80) != 0)
var_name = ((var_name & 0x7f) << 8) + byte(&pc);
incr_array (var_name);
break;
case 'B' : /* Branch to a label if TOS != 0. Remove value on TOS. */
case 'Z' : /* Branch to a label if TOS == 0. Remove value on TOS. */
c_code = !bc_is_zero (ex_stack->s_num);
pop ();
case 'J' : /* Jump to a label. */
label_num = byte(&pc); /* Low order bits first. */
label_num += byte(&pc) << 8;
if (inst == 'J' || (inst == 'B' && c_code)
|| (inst == 'Z' && !c_code)) {
gp = functions[pc.pc_func].f_label;
l_gp = label_num >> BC_LABEL_LOG;
l_off = label_num % BC_LABEL_GROUP;
while (l_gp-- > 0) gp = gp->l_next;
pc.pc_addr = gp->l_adrs[l_off];
}
break;
case 'C' : /* Call a function. */
/* Get the function number. */
new_func = byte(&pc);
if ((new_func & 0x80) != 0)
new_func = ((new_func & 0x7f) << 8) + byte(&pc);
/* Check to make sure it is defined. */
if (!functions[new_func].f_defined)
{
rt_error ("Function %s not defined.", f_names[new_func]);
break;
}
/* Check and push parameters. */
process_params (&pc, new_func);
/* Push auto variables. */
for (auto_list = functions[new_func].f_autos;
auto_list != NULL;
auto_list = auto_list->next)
auto_var (auto_list->av_name);
/* Push pc and ibase. */
fpush (pc.pc_func);
fpush (pc.pc_addr);
fpush (i_base);
/* Reset pc to start of function. */
pc.pc_func = new_func;
pc.pc_addr = 0;
break;
case 'D' : /* Duplicate top of stack */
push_copy (ex_stack->s_num);
break;
case 'K' : /* Push a constant */
/* Get the input base and convert it to a bc number. */
if (pc.pc_func == 0)
const_base = i_base;
else
const_base = fn_stack->s_val;
if (const_base == 10)
push_b10_const (&pc);
else
push_constant (prog_char, const_base);
break;
case 'L' : /* load array variable */
var_name = byte(&pc);
if ((var_name & 0x80) != 0)
var_name = ((var_name & 0x7f) << 8) + byte(&pc);
load_array (var_name);
break;
case 'M' : /* decrement array variable (Minus!) */
var_name = byte(&pc);
if ((var_name & 0x80) != 0)
var_name = ((var_name & 0x7f) << 8) + byte(&pc);
decr_array (var_name);
break;
case 'O' : /* Write a string to the output with processing. */
while ((ch = byte(&pc)) != '"')
if (ch != '\\')
out_schar (ch);
else
{
ch = byte(&pc);
if (ch == '"') break;
switch (ch)
{
case 'a': out_schar (007); break;
case 'b': out_schar ('\b'); break;
case 'f': out_schar ('\f'); break;
case 'n': out_schar ('\n'); break;
case 'q': out_schar ('"'); break;
case 'r': out_schar ('\r'); break;
case 't': out_schar ('\t'); break;
case '\\': out_schar ('\\'); break;
default: break;
}
}
fflush (stdout);
break;
case 'R' : /* Return from function */
if (pc.pc_func != 0)
{
/* "Pop" autos and parameters. */
pop_vars(functions[pc.pc_func].f_autos);
pop_vars(functions[pc.pc_func].f_params);
/* reset the pc. */
fpop ();
pc.pc_addr = fpop ();
pc.pc_func = fpop ();
}
else
rt_error ("Return from main program.");
break;
case 'S' : /* store array variable */
var_name = byte(&pc);
if ((var_name & 0x80) != 0)
var_name = ((var_name & 0x7f ) << 8) + byte(&pc);
store_array (var_name);
break;
case 'T' : /* Test tos for zero */
c_code = bc_is_zero (ex_stack->s_num);
assign (c_code);
break;
case 'W' : /* Write the value on the top of the stack. */
case 'P' : /* Write the value on the top of the stack. No newline. */
bc_out_num (ex_stack->s_num, o_base, out_char, std_only);
if (inst == 'W') out_char ('\n');
store_var (4); /* Special variable "last". */
fflush (stdout);
pop ();
break;
case 'c' : /* Call special function. */
new_func = byte(&pc);
switch (new_func)
{
case 'L': /* Length function. */
/* For the number 0.xxxx, 0 is not significant. */
if (ex_stack->s_num->n_len == 1 &&
ex_stack->s_num->n_scale != 0 &&
ex_stack->s_num->n_value[0] == 0 )
bc_int2num (&ex_stack->s_num, ex_stack->s_num->n_scale);
else
bc_int2num (&ex_stack->s_num, ex_stack->s_num->n_len
+ ex_stack->s_num->n_scale);
break;
case 'S': /* Scale function. */
bc_int2num (&ex_stack->s_num, ex_stack->s_num->n_scale);
break;
case 'R': /* Square Root function. */
if (!bc_sqrt (&ex_stack->s_num, scale))
rt_error ("Square root of a negative number");
break;
case 'I': /* Read function. */
push_constant (input_char, i_base);
break;
}
break;
case 'd' : /* Decrement number */
var_name = byte(&pc);
if ((var_name & 0x80) != 0)
var_name = ((var_name & 0x7f) << 8) + byte(&pc);
decr_var (var_name);
break;
case 'h' : /* Halt the machine. */
exit (0);
case 'i' : /* increment number */
var_name = byte(&pc);
if ((var_name & 0x80) != 0)
var_name = ((var_name & 0x7f) << 8) + byte(&pc);
incr_var (var_name);
break;
case 'l' : /* load variable */
var_name = byte(&pc);
if ((var_name & 0x80) != 0)
var_name = ((var_name & 0x7f) << 8) + byte(&pc);
load_var (var_name);
break;
case 'n' : /* Negate top of stack. */
bc_sub (_zero_, ex_stack->s_num, &ex_stack->s_num, 0);
break;
case 'p' : /* Pop the execution stack. */
pop ();
break;
case 's' : /* store variable */
var_name = byte(&pc);
if ((var_name & 0x80) != 0)
var_name = ((var_name & 0x7f) << 8) + byte(&pc);
store_var (var_name);
break;
case 'w' : /* Write a string to the output. */
while ((ch = byte(&pc)) != '"') out_schar (ch);
fflush (stdout);
break;
case 'x' : /* Exchange Top of Stack with the one under the tos. */
if (check_stack(2)) {
bc_num temp = ex_stack->s_num;
ex_stack->s_num = ex_stack->s_next->s_num;
ex_stack->s_next->s_num = temp;
}
break;
case '0' : /* Load Constant 0. */
push_copy (_zero_);
break;
case '1' : /* Load Constant 0. */
push_copy (_one_);
break;
case '!' : /* Negate the boolean value on top of the stack. */
c_code = bc_is_zero (ex_stack->s_num);
assign (c_code);
break;
case '&' : /* compare greater than */
if (check_stack(2))
{
c_code = !bc_is_zero (ex_stack->s_next->s_num)
&& !bc_is_zero (ex_stack->s_num);
pop ();
assign (c_code);
}
break;
case '|' : /* compare greater than */
if (check_stack(2))
{
c_code = !bc_is_zero (ex_stack->s_next->s_num)
|| !bc_is_zero (ex_stack->s_num);
pop ();
assign (c_code);
}
break;
case '+' : /* add */
if (check_stack(2))
{
bc_add (ex_stack->s_next->s_num, ex_stack->s_num, &temp_num, 0);
pop();
pop();
push_num (temp_num);
bc_init_num (&temp_num);
}
break;
case '-' : /* subtract */
if (check_stack(2))
{
bc_sub (ex_stack->s_next->s_num, ex_stack->s_num, &temp_num, 0);
pop();
pop();
push_num (temp_num);
bc_init_num (&temp_num);
}
break;
case '*' : /* multiply */
if (check_stack(2))
{
bc_multiply (ex_stack->s_next->s_num, ex_stack->s_num,
&temp_num, scale);
pop();
pop();
push_num (temp_num);
bc_init_num (&temp_num);
}
break;
case '/' : /* divide */
if (check_stack(2))
{
if (bc_divide (ex_stack->s_next->s_num,
ex_stack->s_num, &temp_num, scale) == 0)
{
pop();
pop();
push_num (temp_num);
bc_init_num (&temp_num);
}
else
rt_error ("Divide by zero");
}
break;
case '%' : /* remainder */
if (check_stack(2))
{
if (bc_is_zero (ex_stack->s_num))
rt_error ("Modulo by zero");
else
{
bc_modulo (ex_stack->s_next->s_num,
ex_stack->s_num, &temp_num, scale);
pop();
pop();
push_num (temp_num);
bc_init_num (&temp_num);
}
}
break;
case '^' : /* raise */
if (check_stack(2))
{
bc_raise (ex_stack->s_next->s_num,
ex_stack->s_num, &temp_num, scale);
if (bc_is_zero (ex_stack->s_next->s_num) && bc_is_neg (ex_stack->s_num))
rt_error ("divide by zero");
pop();
pop();
push_num (temp_num);
bc_init_num (&temp_num);
}
break;
case '=' : /* compare equal */
if (check_stack(2))
{
c_code = bc_compare (ex_stack->s_next->s_num,
ex_stack->s_num) == 0;
pop ();
assign (c_code);
}
break;
case '#' : /* compare not equal */
if (check_stack(2))
{
c_code = bc_compare (ex_stack->s_next->s_num,
ex_stack->s_num) != 0;
pop ();
assign (c_code);
}
break;
case '<' : /* compare less than */
if (check_stack(2))
{
c_code = bc_compare (ex_stack->s_next->s_num,
ex_stack->s_num) == -1;
pop ();
assign (c_code);
}
break;
case '{' : /* compare less than or equal */
if (check_stack(2))
{
c_code = bc_compare (ex_stack->s_next->s_num,
ex_stack->s_num) <= 0;
pop ();
assign (c_code);
}
break;
case '>' : /* compare greater than */
if (check_stack(2))
{
c_code = bc_compare (ex_stack->s_next->s_num,
ex_stack->s_num) == 1;
pop ();
assign (c_code);
}
break;
case '}' : /* compare greater than or equal */
if (check_stack(2))
{
c_code = bc_compare (ex_stack->s_next->s_num,
ex_stack->s_num) >= 0;
pop ();
assign (c_code);
}
break;
default : /* error! */
rt_error ("bad instruction: inst=%c", inst);
}
}
/* Clean up the function stack and pop all autos/parameters. */
while (pc.pc_func != 0)
{
pop_vars(functions[pc.pc_func].f_autos);
pop_vars(functions[pc.pc_func].f_params);
fpop ();
pc.pc_addr = fpop ();
pc.pc_func = fpop ();
}
/* Clean up the execution stack. */
while (ex_stack != NULL) pop();
/* Clean up the interrupt stuff. */
if (interactive)
{
signal (SIGINT, use_quit);
if (had_sigint)
printf ("Interruption completed.\n");
}
}
/* Prog_char gets another byte from the program. It is used for
conversion of text constants in the code to numbers. */
char
prog_char ()
{
return byte(&pc);
}
/* Read a character from the standard input. This function is used
by the "read" function. */
char
input_char ()
{
char in_ch;
/* Get a character from the standard input for the read function. */
in_ch = getchar();
/* Check for a \ quoted newline. */
if (in_ch == '\\')
{
in_ch = getchar();
if (in_ch == '\n')
in_ch = getchar();
}
/* Classify and preprocess the input character. */
if (isdigit((int)in_ch))
return (in_ch - '0');
if (in_ch >= 'A' && in_ch <= 'F')
return (in_ch + 10 - 'A');
if (in_ch >= 'a' && in_ch <= 'f')
return (in_ch + 10 - 'a');
if (in_ch == '.' || in_ch == '+' || in_ch == '-')
return (in_ch);
if (in_ch <= ' ')
return (' ');
return (':');
}
/* Push_constant converts a sequence of input characters as returned
by IN_CHAR into a number. The number is pushed onto the execution
stack. The number is converted as a number in base CONV_BASE. */
void
push_constant (in_char, conv_base)
char (*in_char)(VOID);
int conv_base;
{
int digits;
bc_num build, temp, result, mult, divisor;
char in_ch, first_ch;
char negative;
/* Initialize all bc numbers */
bc_init_num (&temp);
bc_init_num (&result);
bc_init_num (&mult);
build = bc_copy_num (_zero_);
negative = FALSE;
/* The conversion base. */
bc_int2num (&mult, conv_base);
/* Get things ready. */
in_ch = in_char();
while (in_ch == ' ')
in_ch = in_char();
if (in_ch == '+')
in_ch = in_char();
else
if (in_ch == '-')
{
negative = TRUE;
in_ch = in_char();
}
/* Check for the special case of a single digit. */
if (in_ch < 16)
{
first_ch = in_ch;
in_ch = in_char();
if (in_ch < 16 && first_ch >= conv_base)
first_ch = conv_base - 1;
bc_int2num (&build, (int) first_ch);
}
/* Convert the integer part. */
while (in_ch < 16)
{
if (in_ch < 16 && in_ch >= conv_base) in_ch = conv_base-1;
bc_multiply (build, mult, &result, 0);
bc_int2num (&temp, (int) in_ch);
bc_add (result, temp, &build, 0);
in_ch = in_char();
}
if (in_ch == '.')
{
in_ch = in_char();
if (in_ch >= conv_base) in_ch = conv_base-1;
bc_free_num (&result);
bc_free_num (&temp);
divisor = bc_copy_num (_one_);
result = bc_copy_num (_zero_);
digits = 0;
while (in_ch < 16)
{
bc_multiply (result, mult, &result, 0);
bc_int2num (&temp, (int) in_ch);
bc_add (result, temp, &result, 0);
bc_multiply (divisor, mult, &divisor, 0);
digits++;
in_ch = in_char();
if (in_ch < 16 && in_ch >= conv_base) in_ch = conv_base-1;
}
bc_divide (result, divisor, &result, digits);
bc_add (build, result, &build, 0);
}
/* Final work. */
if (negative)
bc_sub (_zero_, build, &build, 0);
push_num (build);
bc_free_num (&temp);
bc_free_num (&result);
bc_free_num (&mult);
}
/* When converting base 10 constants from the program, we use this
more efficient way to convert them to numbers. PC tells where
the constant starts and is expected to be advanced to after
the constant. */
void
push_b10_const (pc)
program_counter *pc;
{
bc_num build;
program_counter look_pc;
int kdigits, kscale;
char inchar;
char *ptr;
/* Count the digits and get things ready. */
look_pc = *pc;
kdigits = 0;
kscale = 0;
inchar = byte (&look_pc);
while (inchar != '.' && inchar != ':')
{
kdigits++;
inchar = byte(&look_pc);
}
if (inchar == '.' )
{
inchar = byte(&look_pc);
while (inchar != ':')
{
kscale++;
inchar = byte(&look_pc);
}
}
/* Get the first character again and move the pc. */
inchar = byte(pc);
/* Secial cases of 0, 1, and A-F single inputs. */
if (kdigits == 1 && kscale == 0)
{
if (inchar == 0)
{
push_copy (_zero_);
inchar = byte(pc);
return;
}
if (inchar == 1) {
push_copy (_one_);
inchar = byte(pc);
return;
}
if (inchar > 9)
{
bc_init_num (&build);
bc_int2num (&build, inchar);
push_num (build);
inchar = byte(pc);
return;
}
}
/* Build the new number. */
if (kdigits == 0)
{
build = bc_new_num (1,kscale);
ptr = build->n_value;
*ptr++ = 0;
}
else
{
build = bc_new_num (kdigits,kscale);
ptr = build->n_value;
}
while (inchar != ':')
{
if (inchar != '.')
{
if (inchar > 9)
*ptr++ = 9;
else
*ptr++ = inchar;
}
inchar = byte(pc);
}
push_num (build);
}
/* Put the correct value on the stack for C_CODE. Frees TOS num. */
void
assign (c_code)
char c_code;
{
bc_free_num (&ex_stack->s_num);
if (c_code)
ex_stack->s_num = bc_copy_num (_one_);
else
ex_stack->s_num = bc_copy_num (_zero_);
}
+9
View File
@@ -0,0 +1,9 @@
ed libmath.h <<EOS-EOS
1,1s/^/{"/
1,\$s/\$/",/
2,\$s/^/"/
\$,\$d
\$,\$s/,\$/,0}/
w
q
EOS-EOS
+42
View File
@@ -0,0 +1,42 @@
/* global.c: This defines the global variables. */
/* This file is part of GNU bc.
Copyright (C) 1991-1994, 1997, 2000 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 2 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; see the file COPYING. If not, write to
The Free Software Foundation, Inc.
59 Temple Place, Suite 330
Boston, MA 02111 USA
You may contact the author by:
e-mail: [email protected]
us-mail: Philip A. Nelson
Computer Science Department, 9062
Western Washington University
Bellingham, WA 98226-9062
*************************************************************************/
#include "bcdefs.h"
/* Since we want to define them here, we use the following define. */
#undef EXTERN
#define EXTERN
/* Define all the global variables for bc. */
#include "global.h"
CONST char *libmath[] =
#include "libmath.h"
;
+154
View File
@@ -0,0 +1,154 @@
/* global.h: The global variables for bc. */
/* This file is part of GNU bc.
Copyright (C) 1991, 1992, 1993, 1994, 1997 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 2 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; see the file COPYING. If not, write to
The Free Software Foundation, Inc.
59 Temple Place, Suite 330
Boston, MA 02111 USA
You may contact the author by:
e-mail: [email protected]
us-mail: Philip A. Nelson
Computer Science Department, 9062
Western Washington University
Bellingham, WA 98226-9062
*************************************************************************/
/* The current break level's lable. */
EXTERN int break_label;
/* The current if statement's else label or label after else. */
EXTERN int if_label;
/* The current for statement label for continuing the loop. */
EXTERN int continue_label;
/* Next available label number. */
EXTERN int next_label;
/* Byte code character storage. Used in many places for generation of code. */
EXTERN char genstr[80];
/* Count of characters printed to the output in compile_only mode. */
EXTERN int out_count;
/* Have we generated any code since the last initialization of the code
generator. */
EXTERN char did_gen;
/* Is this run an interactive execution. (Is stdin a terminal?) */
EXTERN char interactive;
/* Just generate the byte code. -c flag. */
EXTERN int compile_only;
/* Load the standard math functions. -l flag. */
EXTERN int use_math;
/* Give a warning on use of any non-standard feature (non-POSIX). -w flag. */
EXTERN int warn_not_std;
/* Accept POSIX bc only! -s flag. */
EXTERN int std_only;
/* Don't print the banner at start up. -q flag. */
EXTERN int quiet;
/* The list of file names to process. */
EXTERN file_node *file_names;
/* The name of the current file being processed. */
EXTERN char *file_name;
/* Is the current file a named file or standard input? */
EXTERN char is_std_in;
/* global variables for the bc machine. All will be dynamic in size.*/
/* Function storage. main is (0) and functions (1-f_count) */
EXTERN bc_function *functions;
EXTERN char **f_names;
EXTERN int f_count;
/* Variable stoarge and reverse names. */
EXTERN bc_var **variables;
EXTERN char **v_names;
EXTERN int v_count;
/* Array Variable storage and reverse names. */
EXTERN bc_var_array **arrays;
EXTERN char **a_names;
EXTERN int a_count;
/* Execution stack. */
EXTERN estack_rec *ex_stack;
/* Function return stack. */
EXTERN fstack_rec *fn_stack;
/* Current ibase, obase, scale, and n_history (if needed). */
EXTERN int i_base;
EXTERN int o_base;
EXTERN int scale;
#if defined(READLINE) || defined(LIBEDIT)
EXTERN int n_history;
#endif
#if defined(LIBEDIT)
/* LIBEDIT data */
EditLine *edit;
History *hist;
HistEvent histev;
#endif
/* "Condition code" -- false (0) or true (1) */
EXTERN char c_code;
/* Records the number of the runtime error. */
EXTERN char runtime_error;
/* Holds the current location of execution. */
EXTERN program_counter pc;
/* For POSIX bc, this is just for number output, not strings. */
EXTERN int out_col;
/* Keeps track of the current number of characters per output line.
This includes the \n at the end of the line. */
EXTERN int line_size;
/* Input Line numbers and other error information. */
EXTERN int line_no;
EXTERN int had_error;
/* For larger identifiers, a tree, and how many "storage" locations
have been allocated. */
EXTERN int next_array;
EXTERN int next_func;
EXTERN int next_var;
EXTERN id_rec *name_tree;
/* For use with getopt. Do not declare them here.*/
extern int optind;
/* Access to the yy input file. Defined in scan.c. */
extern FILE *yyin;
+287
View File
@@ -0,0 +1,287 @@
/* libmath.b for GNU bc. */
/* This file is part of GNU bc.
Copyright (C) 1991, 1992, 1993, 1997 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 2 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; see the file COPYING. If not, write to
The Free Software Foundation, Inc.
59 Temple Place, Suite 330
Boston, MA 02111 USA
You may contact the author by:
e-mail: philnelson@acm.org
us-mail: Philip A. Nelson
Computer Science Department, 9062
Western Washington University
Bellingham, WA 98226-9062
*************************************************************************/
scale = 20
/* Uses the fact that e^x = (e^(x/2))^2
When x is small enough, we use the series:
e^x = 1 + x + x^2/2! + x^3/3! + ...
*/
define e(x) {
auto a, d, e, f, i, m, n, v, z
/* a - holds x^y of x^y/y! */
/* d - holds y! */
/* e - is the value x^y/y! */
/* v - is the sum of the e's */
/* f - number of times x was divided by 2. */
/* m - is 1 if x was minus. */
/* i - iteration count. */
/* n - the scale to compute the sum. */
/* z - orignal scale. */
/* Check the sign of x. */
if (x<0) {
m = 1
x = -x
}
/* Precondition x. */
z = scale;
n = 6 + z + .44*x;
scale = scale(x)+1;
while (x > 1) {
f += 1;
x /= 2;
scale += 1;
}
/* Initialize the variables. */
scale = n;
v = 1+x
a = x
d = 1
for (i=2; 1; i++) {
e = (a *= x) / (d *= i)
if (e == 0) {
if (f>0) while (f--) v = v*v;
scale = z
if (m) return (1/v);
return (v/1);
}
v += e
}
}
/* Natural log. Uses the fact that ln(x^2) = 2*ln(x)
The series used is:
ln(x) = 2(a+a^3/3+a^5/5+...) where a=(x-1)/(x+1)
*/
define l(x) {
auto e, f, i, m, n, v, z
/* return something for the special case. */
if (x <= 0) return ((1 - 10^scale)/1)
/* Precondition x to make .5 < x < 2.0. */
z = scale;
scale = 6 + scale;
f = 2;
i=0
while (x >= 2) { /* for large numbers */
f *= 2;
x = sqrt(x);
}
while (x <= .5) { /* for small numbers */
f *= 2;
x = sqrt(x);
}
/* Set up the loop. */
v = n = (x-1)/(x+1)
m = n*n
/* Sum the series. */
for (i=3; 1; i+=2) {
e = (n *= m) / i
if (e == 0) {
v = f*v
scale = z
return (v/1)
}
v += e
}
}
/* Sin(x) uses the standard series:
sin(x) = x - x^3/3! + x^5/5! - x^7/7! ... */
define s(x) {
auto e, i, m, n, s, v, z
/* precondition x. */
z = scale
scale = 1.1*z + 2;
v = a(1)
if (x < 0) {
m = 1;
x = -x;
}
scale = 0
n = (x / v + 2 )/4
x = x - 4*n*v
if (n%2) x = -x
/* Do the loop. */
scale = z + 2;
v = e = x
s = -x*x
for (i=3; 1; i+=2) {
e *= s/(i*(i-1))
if (e == 0) {
scale = z
if (m) return (-v/1);
return (v/1);
}
v += e
}
}
/* Cosine : cos(x) = sin(x+pi/2) */
define c(x) {
auto v, z;
z = scale;
scale = scale*1.2;
v = s(x+a(1)*2);
scale = z;
return (v/1);
}
/* Arctan: Using the formula:
atan(x) = atan(c) + atan((x-c)/(1+xc)) for a small c (.2 here)
For under .2, use the series:
atan(x) = x - x^3/3 + x^5/5 - x^7/7 + ... */
define a(x) {
auto a, e, f, i, m, n, s, v, z
/* a is the value of a(.2) if it is needed. */
/* f is the value to multiply by a in the return. */
/* e is the value of the current term in the series. */
/* v is the accumulated value of the series. */
/* m is 1 or -1 depending on x (-x -> -1). results are divided by m. */
/* i is the denominator value for series element. */
/* n is the numerator value for the series element. */
/* s is -x*x. */
/* z is the saved user's scale. */
/* Negative x? */
m = 1;
if (x<0) {
m = -1;
x = -x;
}
/* Special case and for fast answers */
if (x==1) {
if (scale <= 25) return (.7853981633974483096156608/m)
if (scale <= 40) return (.7853981633974483096156608458198757210492/m)
if (scale <= 60) \
return (.785398163397448309615660845819875721049292349843776455243736/m)
}
if (x==.2) {
if (scale <= 25) return (.1973955598498807583700497/m)
if (scale <= 40) return (.1973955598498807583700497651947902934475/m)
if (scale <= 60) \
return (.197395559849880758370049765194790293447585103787852101517688/m)
}
/* Save the scale. */
z = scale;
/* Note: a and f are known to be zero due to being auto vars. */
/* Calculate atan of a known number. */
if (x > .2) {
scale = z+5;
a = a(.2);
}
/* Precondition x. */
scale = z+3;
while (x > .2) {
f += 1;
x = (x-.2) / (1+x*.2);
}
/* Initialize the series. */
v = n = x;
s = -x*x;
/* Calculate the series. */
for (i=3; 1; i+=2) {
e = (n *= s) / i;
if (e == 0) {
scale = z;
return ((f*a+v)/m);
}
v += e
}
}
/* Bessel function of integer order. Uses the following:
j(-n,x) = (-1)^n*j(n,x)
j(n,x) = x^n/(2^n*n!) * (1 - x^2/(2^2*1!*(n+1)) + x^4/(2^4*2!*(n+1)*(n+2))
- x^6/(2^6*3!*(n+1)*(n+2)*(n+3)) .... )
*/
define j(n,x) {
auto a, b, d, e, f, i, m, s, v, z
/* Make n an integer and check for negative n. */
z = scale;
scale = 0;
n = n/1;
if (n<0) {
n = -n;
if (n%2 == 1) m = 1;
}
/* save ibase */
b = ibase;
ibase = A;
/* Compute the factor of x^n/(2^n*n!) */
f = 1;
for (i=2; i<=n; i++) f = f*i;
scale = 1.5*z;
f = x^n / 2^n / f;
/* Initialize the loop .*/
v = e = 1;
s = -x*x/4
scale = 1.5*z + length(f) - scale(f);
/* The Loop.... */
for (i=1; 1; i++) {
e = e * s / i / (n+i);
if (e == 0) {
ibase = b;
scale = z
if (m) return (-f*v/1);
return (f*v/1);
}
v += e;
}
}
+40
View File
@@ -0,0 +1,40 @@
{"@iK20:s2:p@r",
"@iF1,5.6,7,8,9,10,11,12,13,14[l5:0<Z1:1s11:pl5:ns5:pN1:l2:s14:",
"pK6:l14:+K.44:l5:*+s12:pl5:cS1+s2:pN2:l5:1>Z3:l9:1+s9:pl5:K2:",
"/s5:pl2:1+s2:pJ2:N3:l12:s2:p1l5:+s13:pl5:s6:p1s7:pK2:s10:pN5:",
"1B6:J4:N7:l10:i10:pJ5:N6:l6:l5:*s6:l7:l10:*s7:/s8:pl8:0=Z8:l9:",
"0>Z9:N10:l9:d9:Z11:l13:l13:*s13:pJ10:N11:N9:l14:s2:pl11:Z12:1",
"l13:/RN12:l13:1/RN8:l13:l8:+s13:pJ7:N4:0R]@r",
"@iF2,5.8,9,10,11,12,13,14[l5:0{Z1:1K10:l2:^-1/RN1:l2:s14:pK6:",
"l2:+s2:pK2:s9:p0s10:pN2:l5:K2:}Z3:l9:K2:*s9:pl5:cRs5:pJ2:N3:N4:",
"l5:K.5:{Z5:l9:K2:*s9:pl5:cRs5:pJ4:N5:l5:1-l5:1+/s12:s13:pl12:",
"l12:*s11:pK3:s10:pN7:1B8:J6:N9:l10:K2:+s10:pJ7:N8:l12:l11:*s12:",
"l10:/s8:pl8:0=Z10:l9:l13:*s13:pl14:s2:pl13:1/RN10:l13:l8:+s13:",
"pJ9:N6:0R]@r",
"@iF3,5.8,10,11,12,15,13,14[l2:s14:pK1.1:l14:*K2:+s2:p1C4,0:s13:",
"pl5:0<Z1:1s11:pl5:ns5:pN1:0s2:pl5:l13:/K2:+K4:/s12:pl5:K4:l12:",
"*l13:*-s5:pl12:K2:%Z2:l5:ns5:pN2:l14:K2:+s2:pl5:s8:s13:pl5:nl5:",
"*s15:pK3:s10:pN4:1B5:J3:N6:l10:K2:+s10:pJ4:N5:l8:l15:l10:l10:",
"1-*/*s8:pl8:0=Z7:l14:s2:pl11:Z8:l13:n1/RN8:l13:1/RN7:l13:l8:+",
"s13:pJ6:N3:0R]@r",
"@iF5,5.13,14[l2:s14:pl2:K1.2:*s2:pl5:1C4,0:K2:*+C3,0:s13:pl14:",
"s2:pl13:1/R0R]@r",
"@iF4,5.6,8,9,10,11,12,15,13,14[1s11:pl5:0<Z1:1ns11:pl5:ns5:pN1:",
"l5:1=Z2:l2:K25:{Z3:K.7853981633974483096156608:l11:/RN3:l2:K40",
":{Z4:K.7853981633974483096156608458198757210492:l11:/RN4:l2:K",
"60:{Z5:K.785398163397448309615660845819875721049292349843776455243736",
":l11:/RN5:N2:l5:K.2:=Z6:l2:K25:{Z7:K.1973955598498807583700497",
":l11:/RN7:l2:K40:{Z8:K.1973955598498807583700497651947902934475",
":l11:/RN8:l2:K60:{Z9:K.197395559849880758370049765194790293447585103787852101517688",
":l11:/RN9:N6:l2:s14:pl5:K.2:>Z10:l14:K5:+s2:pK.2:C4,0:s6:pN10:",
"l14:K3:+s2:pN11:l5:K.2:>Z12:l9:1+s9:pl5:K.2:-1l5:K.2:*+/s5:pJ11:N12:",
"l5:s12:s13:pl5:nl5:*s15:pK3:s10:pN14:1B15:J13:N16:l10:K2:+s10:",
"pJ14:N15:l12:l15:*s12:l10:/s8:pl8:0=Z17:l14:s2:pl9:l6:*l13:+l11:",
"/RN17:l13:l8:+s13:pJ16:N13:0R]@r",
"@iF6,12,5.6,16,7,8,9,10,11,15,13,14[l2:s14:p0s2:pl12:1/s12:pl12:",
"0<Z1:l12:ns12:pl12:K2:%1=Z2:1s11:pN2:N1:l0:s16:pKA:s0:p1s9:pK",
"2:s10:pN4:l10:l12:{B5:J3:N6:l10:i10:pJ4:N5:l9:l10:*s9:pJ6:N3:",
"K1.5:l14:*s2:pl5:l12:^K2:l12:^/l9:/s9:p1s8:s13:pl5:nl5:*K4:/s15:",
"pK1.5:l14:*l9:cL+l9:cS-s2:p1s10:pN8:1B9:J7:N10:l10:i10:pJ8:N9:",
"l8:l15:*l10:/l12:l10:+/s8:pl8:0=Z11:l16:s0:pl14:s2:pl11:Z12:l9:",
"nl13:*1/RN12:l9:l13:*1/RN11:l13:l8:+s13:pJ10:N7:0R]@r",0}
+351
View File
@@ -0,0 +1,351 @@
/* load.c: This code "loads" code into the code segments. */
/* This file is part of GNU bc.
Copyright (C) 1991-1994, 1997, 2000 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 2 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; see the file COPYING. If not, write to
The Free Software Foundation, Inc.
59 Temple Place, Suite 330
Boston, MA 02111 USA
You may contact the author by:
e-mail: [email protected]
us-mail: Philip A. Nelson
Computer Science Department, 9062
Western Washington University
Bellingham, WA 98226-9062
*************************************************************************/
#include "bcdefs.h"
#include "global.h"
#include "proto.h"
/* Load variables. */
program_counter load_adr;
char load_str;
char load_const;
/* Initialize the load sequence. */
void
init_load ()
{
clear_func(0);
load_adr.pc_func = 0;
load_adr.pc_addr = 0;
load_str = FALSE;
load_const = FALSE;
}
/* addbyte adds one BYTE to the current code segment. */
void
addbyte (byte)
char byte;
{
int pc;
bc_function *f;
char *new_body;
/* If there was an error, don't continue. */
if (had_error) return;
/* Calculate the segment and offset. */
pc = load_adr.pc_addr++;
f = &functions[load_adr.pc_func];
if (pc >= f->f_body_size)
{
f->f_body_size *= 2;
new_body = (char *) bc_malloc (f->f_body_size);
memcpy(new_body, f->f_body, f->f_body_size/2);
free (f->f_body);
f->f_body = new_body;
}
/* Store the byte. */
f->f_body[pc] = byte;
f->f_code_size++;
}
/* Define a label LAB to be the current program counter. */
void
def_label (lab)
long lab;
{
bc_label_group *temp;
int group, offset, func;
/* Get things ready. */
group = lab >> BC_LABEL_LOG;
offset = lab % BC_LABEL_GROUP;
func = load_adr.pc_func;
/* Make sure there is at least one label group. */
if (functions[func].f_label == NULL)
{
functions[func].f_label =
(bc_label_group *) bc_malloc (sizeof(bc_label_group));
functions[func].f_label->l_next = NULL;
}
/* Add the label group. */
temp = functions[func].f_label;
while (group > 0)
{
if (temp->l_next == NULL)
{
temp->l_next = (bc_label_group *) bc_malloc (sizeof(bc_label_group));
temp->l_next->l_next = NULL;
}
temp = temp->l_next;
group --;
}
/* Define it! */
temp->l_adrs [offset] = load_adr.pc_addr;
}
/* Several instructions have integers in the code. They
are all known to be legal longs. So, no error code
is added. STR is the pointer to the load string and
must be moved to the last non-digit character. */
long
long_val (str)
char **str;
{ int val = 0;
char neg = FALSE;
if (**str == '-')
{
neg = TRUE;
(*str)++;
}
while (isdigit((int)(**str)))
val = val*10 + *(*str)++ - '0';
if (neg)
return -val;
else
return val;
}
/* load_code loads the CODE into the machine. */
void
load_code (code)
char *code;
{
char *str;
long ap_name; /* auto or parameter name. */
long label_no;
long vaf_name; /* variable, array or function number. */
long func;
program_counter save_adr;
/* Initialize. */
str = code;
/* Scan the code. */
while (*str != 0)
{
/* If there was an error, don't continue. */
if (had_error) return;
if (load_str)
{
if (*str == '"') load_str = FALSE;
addbyte (*str++);
}
else
if (load_const)
{
if (*str == '\n')
str++;
else
{
if (*str == ':')
{
load_const = FALSE;
addbyte (*str++);
}
else
if (*str == '.')
addbyte (*str++);
else
if (*str >= 'A')
addbyte (*str++ + 10 - 'A');
else
addbyte (*str++ - '0');
}
}
else
{
switch (*str)
{
case '"': /* Starts a string. */
load_str = TRUE;
break;
case 'N': /* A label */
str++;
label_no = long_val (&str);
def_label (label_no);
break;
case 'B': /* Branch to label. */
case 'J': /* Jump to label. */
case 'Z': /* Branch Zero to label. */
addbyte(*str++);
label_no = long_val (&str);
if (label_no > 65535L)
{ /* Better message? */
fprintf (stderr,"Program too big.\n");
exit(1);
}
addbyte ( (char) (label_no & 0xFF));
addbyte ( (char) (label_no >> 8));
break;
case 'F': /* A function, get the name and initialize it. */
str++;
func = long_val (&str);
clear_func (func);
#if DEBUG > 2
printf ("Loading function number %d\n", func);
#endif
/* get the parameters */
while (*str++ != '.')
{
if (*str == '.')
{
str++;
break;
}
if (*str == '*')
{
str++;
ap_name = long_val (&str);
#if DEBUG > 2
printf ("var parameter number %d\n", ap_name);
#endif
functions[(int)func].f_params =
nextarg (functions[(int)func].f_params, ap_name,
TRUE);
}
else
{
ap_name = long_val (&str);
#if DEBUG > 2
printf ("parameter number %d\n", ap_name);
#endif
functions[(int)func].f_params =
nextarg (functions[(int)func].f_params, ap_name,
FALSE);
}
}
/* get the auto vars */
while (*str != '[')
{
if (*str == ',') str++;
ap_name = long_val (&str);
#if DEBUG > 2
printf ("auto number %d\n", ap_name);
#endif
functions[(int)func].f_autos =
nextarg (functions[(int)func].f_autos, ap_name, FALSE);
}
save_adr = load_adr;
load_adr.pc_func = func;
load_adr.pc_addr = 0;
break;
case ']': /* A function end */
functions[load_adr.pc_func].f_defined = TRUE;
load_adr = save_adr;
break;
case 'C': /* Call a function. */
addbyte (*str++);
func = long_val (&str);
if (func < 128)
addbyte ( (char) func);
else
{
addbyte (((func >> 8) & 0xff) | 0x80);
addbyte (func & 0xff);
}
if (*str == ',') str++;
while (*str != ':')
addbyte (*str++);
addbyte (':');
break;
case 'c': /* Call a special function. */
addbyte (*str++);
addbyte (*str);
break;
case 'K': /* A constant.... may have an "F" in it. */
addbyte (*str);
load_const = TRUE;
break;
case 'd': /* Decrement. */
case 'i': /* Increment. */
case 'l': /* Load. */
case 's': /* Store. */
case 'A': /* Array Increment */
case 'M': /* Array Decrement */
case 'L': /* Array Load */
case 'S': /* Array Store */
addbyte (*str++);
vaf_name = long_val (&str);
if (vaf_name < 128)
addbyte (vaf_name);
else
{
addbyte (((vaf_name >> 8) & 0xff) | 0x80);
addbyte (vaf_name & 0xff);
}
break;
case '@': /* A command! */
switch (*(++str))
{
case 'i':
init_load ();
break;
case 'r':
execute ();
break;
}
break;
case '\n': /* Ignore the newlines */
break;
default: /* Anything else */
addbyte (*str);
}
str++;
}
}
}
+352
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@@ -0,0 +1,352 @@
/* main.c: The main program for bc. */
/* This file is part of GNU bc.
Copyright (C) 1991-1994, 1997, 1998, 2000 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 2 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; see the file COPYING. If not, write to
The Free Software Foundation, Inc.
59 Temple Place, Suite 330
Boston, MA 02111 USA
You may contact the author by:
e-mail: [email protected]
us-mail: Philip A. Nelson
Computer Science Department, 9062
Western Washington University
Bellingham, WA 98226-9062
*************************************************************************/
#include "bcdefs.h"
#include <signal.h>
#include "global.h"
#include "proto.h"
#include "getopt.h"
/* Variables for processing multiple files. */
static char first_file;
/* Points to the last node in the file name list for easy adding. */
static file_node *last = NULL;
/* long option support */
static struct option long_options[] =
{
{"compile", 0, &compile_only, TRUE},
{"help", 0, 0, 'h'},
{"interactive", 0, 0, 'i'},
{"mathlib", 0, &use_math, TRUE},
{"quiet", 0, &quiet, TRUE},
{"standard", 0, &std_only, TRUE},
{"version", 0, 0, 'v'},
{"warn", 0, &warn_not_std, TRUE},
{0, 0, 0, 0}
};
void
usage (char *progname)
{
printf ("usage: %s [options] [file ...]\n%s%s%s%s%s%s%s", progname,
" -h --help print this usage and exit\n",
" -i --interactive force interactive mode\n",
" -l --mathlib use the predefine math routnes\n",
" -q --quiet don't print initial banner\n",
" -s --standard non-standard bc constructs are errors\n",
" -w --warn warn about non-standard bc constructs\n",
" -v --version print version information and exit\n");
}
void
parse_args (argc, argv)
int argc;
char **argv;
{
int optch;
int long_index;
file_node *temp;
/* Force getopt to initialize. Depends on GNU getopt. */
optind = 0;
/* Parse the command line */
while (1)
{
optch = getopt_long (argc, argv, "chilqswv", long_options, &long_index);
if (optch == EOF) /* End of arguments. */
break;
switch (optch)
{
case 'c': /* compile only */
compile_only = TRUE;
break;
case 'h': /* help */
usage(argv[0]);
exit (0);
break;
case 'i': /* force interactive */
interactive = TRUE;
break;
case 'l': /* math lib */
use_math = TRUE;
break;
case 'q': /* quiet mode */
quiet = TRUE;
break;
case 's': /* Non standard features give errors. */
std_only = TRUE;
break;
case 'v': /* Print the version. */
show_bc_version ();
exit (0);
break;
case 'w': /* Non standard features give warnings. */
warn_not_std = TRUE;
break;
default:
usage(argv[0]);
exit (1);
}
}
/* Add file names to a list of files to process. */
while (optind < argc)
{
temp = (file_node *) bc_malloc(sizeof(file_node));
temp->name = argv[optind];
temp->next = NULL;
if (last == NULL)
file_names = temp;
else
last->next = temp;
last = temp;
optind++;
}
}
/* The main program for bc. */
int
main (argc, argv)
int argc;
char *argv[];
{
char *env_value;
char *env_argv[30];
int env_argc;
/* Initialize many variables. */
compile_only = FALSE;
use_math = FALSE;
warn_not_std = FALSE;
std_only = FALSE;
if (isatty(0) && isatty(1))
interactive = TRUE;
else
interactive = FALSE;
quiet = FALSE;
file_names = NULL;
#ifdef HAVE_SETVBUF
/* attempt to simplify interaction with applications such as emacs */
(void) setvbuf(stdout, NULL, _IOLBF, 0);
#endif
/* Environment arguments. */
env_value = getenv ("BC_ENV_ARGS");
if (env_value != NULL)
{
env_argc = 1;
env_argv[0] = "BC_ENV_ARGS";
while (*env_value != 0)
{
if (*env_value != ' ')
{
env_argv[env_argc++] = env_value;
while (*env_value != ' ' && *env_value != 0)
env_value++;
if (*env_value != 0)
{
*env_value = 0;
env_value++;
}
}
else
env_value++;
}
parse_args (env_argc, env_argv);
}
/* Command line arguments. */
parse_args (argc, argv);
/* Other environment processing. */
if (getenv ("POSIXLY_CORRECT") != NULL)
std_only = TRUE;
env_value = getenv ("BC_LINE_LENGTH");
if (env_value != NULL)
{
line_size = atoi (env_value);
if (line_size < 2)
line_size = 70;
}
else
line_size = 70;
/* Initialize the machine. */
init_storage();
init_load();
/* Set up interrupts to print a message. */
if (interactive)
signal (SIGINT, use_quit);
/* Initialize the front end. */
init_tree();
init_gen ();
is_std_in = FALSE;
first_file = TRUE;
if (!open_new_file ())
exit (1);
#if defined(LIBEDIT)
if (interactive) {
/* Enable libedit support. */
edit = el_init ("bc", stdin, stdout, stderr);
hist = history_init();
el_set (edit, EL_EDITOR, "emacs");
el_set (edit, EL_HIST, history, hist);
el_set (edit, EL_PROMPT, null_prompt);
el_source (edit, NULL);
history (hist, &histev, H_SETSIZE, INT_MAX);
}
#endif
#if defined(READLINE)
if (interactive) {
/* Readline support. Set both application name and input file. */
rl_readline_name = "bc";
rl_instream = stdin;
using_history ();
}
#endif
/* Do the parse. */
yyparse ();
/* End the compile only output with a newline. */
if (compile_only)
printf ("\n");
exit (0);
}
/* This is the function that opens all the files.
It returns TRUE if the file was opened, otherwise
it returns FALSE. */
int
open_new_file ()
{
FILE *new_file;
file_node *temp;
/* Set the line number. */
line_no = 1;
/* Check to see if we are done. */
if (is_std_in) return (FALSE);
/* Open the other files. */
if (use_math && first_file)
{
/* Load the code from a precompiled version of the math libarary. */
extern char *libmath[];
char **mstr;
char tmp;
/* These MUST be in the order of first mention of each function.
That is why "a" comes before "c" even though "a" is defined after
after "c". "a" is used in "s"! */
tmp = lookup ("e", FUNCT);
tmp = lookup ("l", FUNCT);
tmp = lookup ("s", FUNCT);
tmp = lookup ("a", FUNCT);
tmp = lookup ("c", FUNCT);
tmp = lookup ("j", FUNCT);
mstr = libmath;
while (*mstr) {
load_code (*mstr);
mstr++;
}
}
/* One of the argv values. */
if (file_names != NULL)
{
new_file = fopen (file_names->name, "r");
if (new_file != NULL)
{
new_yy_file (new_file);
temp = file_names;
file_name = temp->name;
file_names = temp->next;
free (temp);
return TRUE;
}
fprintf (stderr, "File %s is unavailable.\n", file_names->name);
exit (1);
}
/* If we fall through to here, we should return stdin. */
new_yy_file (stdin);
is_std_in = TRUE;
return TRUE;
}
/* Set yyin to the new file. */
void
new_yy_file (file)
FILE *file;
{
if (!first_file) fclose (yyin);
yyin = file;
first_file = FALSE;
}
/* Message to use quit. */
void
use_quit (sig)
int sig;
{
printf ("\n(interrupt) use quit to exit.\n");
signal (SIGINT, use_quit);
}
+148
View File
@@ -0,0 +1,148 @@
/* proto.h: Prototype function definitions for "external" functions. */
/* This file is part of GNU bc.
Copyright (C) 1991-1994, 1997, 2000 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 2 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; see the file COPYING. If not, write to
The Free Software Foundation, Inc.
59 Temple Place, Suite 330
Boston, MA 02111 USA
You may contact the author by:
e-mail: [email protected]
us-mail: Philip A. Nelson
Computer Science Department, 9062
Western Washington University
Bellingham, WA 98226-9062
*************************************************************************/
/* For the pc version using k&r ACK. (minix1.5 and earlier.) */
#ifdef SHORTNAMES
#define init_numbers i_numbers
#define push_constant push__constant
#define load_const in_load_const
#define yy_get_next_buffer yyget_next_buffer
#define yy_init_buffer yyinit_buffer
#define yy_last_accepting_state yylast_accepting_state
#define arglist1 arg1list
#endif
/* Include the standard library header files. */
#ifdef HAVE_UNISTD_H
#include <unistd.h>
#endif
#ifdef HAVE_STDLIB_H
#include <stdlib.h>
#endif
/* Define the _PROTOTYPE macro if it is needed. */
#ifndef _PROTOTYPE
#ifdef __STDC__
#define _PROTOTYPE(func, args) func args
#else
#define _PROTOTYPE(func, args) func()
#endif
#endif
/* From execute.c */
_PROTOTYPE(void stop_execution, (int));
_PROTOTYPE(unsigned char byte, (program_counter *pc));
_PROTOTYPE(void execute, (void));
_PROTOTYPE(char prog_char, (void));
_PROTOTYPE(char input_char, (void));
_PROTOTYPE(void push_constant, (char (*in_char)(void), int conv_base));
_PROTOTYPE(void push_b10_const, (program_counter *pc));
_PROTOTYPE(void assign, (int c_code));
/* From util.c */
_PROTOTYPE(char *strcopyof, (char *str));
_PROTOTYPE(arg_list *nextarg, (arg_list *args, int val, int is_var));
_PROTOTYPE(char *arg_str, (arg_list *args));
_PROTOTYPE(char *call_str, (arg_list *args));
_PROTOTYPE(void free_args, (arg_list *args));
_PROTOTYPE(void check_params, (arg_list *params, arg_list *autos));
_PROTOTYPE(void init_gen, (void));
_PROTOTYPE(void generate, (char *str));
_PROTOTYPE(void run_code, (void));
_PROTOTYPE(void out_char, (int ch));
_PROTOTYPE(void out_schar, (int ch));
_PROTOTYPE(id_rec *find_id, (id_rec *tree, char *id));
_PROTOTYPE(int insert_id_rec, (id_rec **root, id_rec *new_id));
_PROTOTYPE(void init_tree, (void));
_PROTOTYPE(int lookup, (char *name, int namekind));
_PROTOTYPE(char *bc_malloc, (int));
_PROTOTYPE(void out_of_memory, (void));
_PROTOTYPE(void welcome, (void));
_PROTOTYPE(void warranty, (char *));
_PROTOTYPE(void show_bc_version, (void));
_PROTOTYPE(void limits, (void));
_PROTOTYPE(void yyerror, (char *str ,...));
_PROTOTYPE(void warn, (char *mesg ,...));
_PROTOTYPE(void rt_error, (char *mesg ,...));
_PROTOTYPE(void rt_warn, (char *mesg ,...));
/* From load.c */
_PROTOTYPE(void init_load, (void));
_PROTOTYPE(void addbyte, (int byte));
_PROTOTYPE(void def_label, (long lab));
_PROTOTYPE(long long_val, (char **str));
_PROTOTYPE(void load_code, (char *code));
/* From main.c */
_PROTOTYPE(int open_new_file, (void));
_PROTOTYPE(void new_yy_file, (FILE *file));
_PROTOTYPE(void use_quit, (int));
/* From storage.c */
_PROTOTYPE(void init_storage, (void));
_PROTOTYPE(void more_functions, (void));
_PROTOTYPE(void more_variables, (void));
_PROTOTYPE(void more_arrays, (void));
_PROTOTYPE(void clear_func, (int func ));
_PROTOTYPE(int fpop, (void));
_PROTOTYPE(void fpush, (int val ));
_PROTOTYPE(void pop, (void));
_PROTOTYPE(void push_copy, (bc_num num ));
_PROTOTYPE(void push_num, (bc_num num ));
_PROTOTYPE(char check_stack, (int depth ));
_PROTOTYPE(bc_var *get_var, (int var_name ));
_PROTOTYPE(bc_num *get_array_num, (int var_index, long index ));
_PROTOTYPE(void store_var, (int var_name ));
_PROTOTYPE(void store_array, (int var_name ));
_PROTOTYPE(void load_var, (int var_name ));
_PROTOTYPE(void load_array, (int var_name ));
_PROTOTYPE(void decr_var, (int var_name ));
_PROTOTYPE(void decr_array, (int var_name ));
_PROTOTYPE(void incr_var, (int var_name ));
_PROTOTYPE(void incr_array, (int var_name ));
_PROTOTYPE(void auto_var, (int name ));
_PROTOTYPE(void free_a_tree, (bc_array_node *root, int depth ));
_PROTOTYPE(void pop_vars, (arg_list *list ));
_PROTOTYPE(void process_params, (program_counter *pc, int func ));
/* For the scanner and parser.... */
_PROTOTYPE(int yyparse, (void));
_PROTOTYPE(int yylex, (void));
#if defined(LIBEDIT)
/* The *?*&^ prompt function */
_PROTOTYPE(char *null_prompt, (EditLine *));
#endif
/* Other things... */
#ifndef HAVE_UNISTD_H
_PROTOTYPE (int getopt, (int, char *[], CONST char *));
#endif
+448
View File
@@ -0,0 +1,448 @@
%{
/* sbc.y: A POSIX bc processor written for minix with no extensions. */
/* This file is part of GNU bc.
Copyright (C) 1991, 1992, 1993, 1994, 1997 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 2 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; see the file COPYING. If not, write to
The Free Software Foundation, Inc.
59 Temple Place, Suite 330
Boston, MA 02111 USA
You may contact the author by:
e-mail: [email protected]
us-mail: Philip A. Nelson
Computer Science Department, 9062
Western Washington University
Bellingham, WA 98226-9062
*************************************************************************/
#include "bcdefs.h"
#include "global.h" /* To get the global variables. */
#include "proto.h"
%}
%start program
%union {
char *s_value;
char c_value;
int i_value;
arg_list *a_value;
}
%token <i_value> ENDOFLINE AND OR NOT
%token <s_value> STRING NAME NUMBER
/* '-', '+' are tokens themselves */
%token <c_value> ASSIGN_OP
/* '=', '+=', '-=', '*=', '/=', '%=', '^=' */
%token <s_value> REL_OP
/* '==', '<=', '>=', '!=', '<', '>' */
%token <c_value> INCR_DECR
/* '++', '--' */
%token <i_value> Define Break Quit Length
/* 'define', 'break', 'quit', 'length' */
%token <i_value> Return For If While Sqrt Else
/* 'return', 'for', 'if', 'while', 'sqrt', 'else' */
%token <i_value> Scale Ibase Obase Auto Read
/* 'scale', 'ibase', 'obase', 'auto', 'read' */
%token <i_value> Warranty, Halt, Last, Continue, Print, Limits
/* 'warranty', 'halt', 'last', 'continue', 'print', 'limits' */
/* The types of all other non-terminals. */
%type <i_value> expression named_expression return_expression
%type <a_value> opt_parameter_list parameter_list opt_auto_define_list
%type <a_value> define_list opt_argument_list argument_list
%type <i_value> program input_item semicolon_list statement_list
%type <i_value> statement_or_error statement function relational_expression
/* precedence */
%nonassoc REL_OP
%right ASSIGN_OP
%left '+' '-'
%left '*' '/' '%'
%right '^'
%nonassoc UNARY_MINUS
%nonassoc INCR_DECR
%%
program : /* empty */
{
$$ = 0;
std_only = TRUE;
if (interactive)
{
printf ("s%s\n", BC_VERSION);
welcome();
}
}
| program input_item
;
input_item : semicolon_list ENDOFLINE
{ run_code(); }
| function
{ run_code(); }
| error ENDOFLINE
{
yyerrok;
init_gen() ;
}
;
semicolon_list : /* empty */
{ $$ = 0; }
| statement_or_error
| semicolon_list ';' statement_or_error
| semicolon_list ';'
;
statement_list : /* empty */
{ $$ = 0; }
| statement
| statement_list ENDOFLINE
| statement_list ENDOFLINE statement
| statement_list ';'
| statement_list ';' statement
;
statement_or_error : statement
| error statement
{ $$ = $2; }
;
statement : Warranty
{ warranty("s"); }
| expression
{
if ($1 & 1)
generate ("W");
else
generate ("p");
}
| STRING
{
$$ = 0;
generate ("w");
generate ($1);
free ($1);
}
| Break
{
if (break_label == 0)
yyerror ("Break outside a for/while");
else
{
sprintf (genstr, "J%1d:", break_label);
generate (genstr);
}
}
| Quit
{ exit(0); }
| Return
{ generate ("0R"); }
| Return '(' return_expression ')'
{ generate ("R"); }
| For
{
$1 = break_label;
break_label = next_label++;
}
'(' expression ';'
{
$4 = next_label++;
sprintf (genstr, "pN%1d:", $4);
generate (genstr);
}
relational_expression ';'
{
$7 = next_label++;
sprintf (genstr, "B%1d:J%1d:", $7, break_label);
generate (genstr);
$<i_value>$ = next_label++;
sprintf (genstr, "N%1d:", $<i_value>$);
generate (genstr);
}
expression ')'
{
sprintf (genstr, "pJ%1d:N%1d:", $4, $7);
generate (genstr);
}
statement
{
sprintf (genstr, "J%1d:N%1d:", $<i_value>9,
break_label);
generate (genstr);
break_label = $1;
}
| If '(' relational_expression ')'
{
$3 = next_label++;
sprintf (genstr, "Z%1d:", $3);
generate (genstr);
}
statement
{
sprintf (genstr, "N%1d:", $3);
generate (genstr);
}
| While
{
$1 = next_label++;
sprintf (genstr, "N%1d:", $1);
generate (genstr);
}
'(' relational_expression
{
$4 = break_label;
break_label = next_label++;
sprintf (genstr, "Z%1d:", break_label);
generate (genstr);
}
')' statement
{
sprintf (genstr, "J%1d:N%1d:", $1, break_label);
generate (genstr);
break_label = $4;
}
| '{' statement_list '}'
{ $$ = 0; }
;
function : Define NAME '(' opt_parameter_list ')' '{'
ENDOFLINE opt_auto_define_list
{
check_params ($4,$8);
sprintf (genstr, "F%d,%s.%s[", lookup($2,FUNCT),
arg_str ($4), arg_str ($8));
generate (genstr);
free_args ($4);
free_args ($8);
$1 = next_label;
next_label = 0;
}
statement_list ENDOFLINE '}'
{
generate ("0R]");
next_label = $1;
}
;
opt_parameter_list : /* empty */
{ $$ = NULL; }
| parameter_list
;
parameter_list : NAME
{ $$ = nextarg (NULL, lookup($1,SIMPLE), FALSE); }
| define_list ',' NAME
{ $$ = nextarg ($1, lookup($3,SIMPLE), FALSE); }
;
opt_auto_define_list : /* empty */
{ $$ = NULL; }
| Auto define_list ENDOFLINE
{ $$ = $2; }
| Auto define_list ';'
{ $$ = $2; }
;
define_list : NAME
{ $$ = nextarg (NULL, lookup($1,SIMPLE), FALSE); }
| NAME '[' ']'
{ $$ = nextarg (NULL, lookup($1,ARRAY), FALSE); }
| define_list ',' NAME
{ $$ = nextarg ($1, lookup($3,SIMPLE), FALSE); }
| define_list ',' NAME '[' ']'
{ $$ = nextarg ($1, lookup($3,ARRAY), FALSE); }
;
opt_argument_list : /* empty */
{ $$ = NULL; }
| argument_list
;
argument_list : expression
{ $$ = nextarg (NULL,0, FALSE); }
| argument_list ',' expression
{ $$ = nextarg ($1,0, FALSE); }
;
relational_expression : expression
{ $$ = 0; }
| expression REL_OP expression
{
$$ = 0;
switch (*($2))
{
case '=':
generate ("=");
break;
case '!':
generate ("#");
break;
case '<':
if ($2[1] == '=')
generate ("{");
else
generate ("<");
break;
case '>':
if ($2[1] == '=')
generate ("}");
else
generate (">");
break;
}
}
;
return_expression : /* empty */
{
$$ = 0;
generate ("0");
}
| expression
;
expression : named_expression ASSIGN_OP
{
if ($2 != '=')
{
if ($1 < 0)
sprintf (genstr, "DL%d:", -$1);
else
sprintf (genstr, "l%d:", $1);
generate (genstr);
}
}
expression
{
$$ = 0;
if ($2 != '=')
{
sprintf (genstr, "%c", $2);
generate (genstr);
}
if ($1 < 0)
sprintf (genstr, "S%d:", -$1);
else
sprintf (genstr, "s%d:", $1);
generate (genstr);
}
| expression '+' expression
{ generate ("+"); }
| expression '-' expression
{ generate ("-"); }
| expression '*' expression
{ generate ("*"); }
| expression '/' expression
{ generate ("/"); }
| expression '%' expression
{ generate ("%"); }
| expression '^' expression
{ generate ("^"); }
| '-' expression %prec UNARY_MINUS
{ generate ("n"); $$ = 1;}
| named_expression
{
$$ = 1;
if ($1 < 0)
sprintf (genstr, "L%d:", -$1);
else
sprintf (genstr, "l%d:", $1);
generate (genstr);
}
| NUMBER
{
int len = strlen($1);
$$ = 1;
if (len == 1 && *$1 == '0')
generate ("0");
else
{
if (len == 1 && *$1 == '1')
generate ("1");
else
{
generate ("K");
generate ($1);
generate (":");
}
free ($1);
}
}
| '(' expression ')'
{ $$ = 1; }
| NAME '(' opt_argument_list ')'
{
$$ = 1;
if ($3 != NULL)
{
sprintf (genstr, "C%d,%s:", lookup($1,FUNCT),
arg_str ($3));
free_args ($3);
}
else
sprintf (genstr, "C%d:", lookup($1,FUNCT));
generate (genstr);
}
| INCR_DECR named_expression
{
$$ = 1;
if ($2 < 0)
{
if ($1 == '+')
sprintf (genstr, "DA%d:L%d:", -$2, -$2);
else
sprintf (genstr, "DM%d:L%d:", -$2, -$2);
}
else
{
if ($1 == '+')
sprintf (genstr, "i%d:l%d:", $2, $2);
else
sprintf (genstr, "d%d:l%d:", $2, $2);
}
generate (genstr);
}
| named_expression INCR_DECR
{
$$ = 1;
if ($1 < 0)
{
sprintf (genstr, "DL%d:x", -$1);
generate (genstr);
if ($2 == '+')
sprintf (genstr, "A%d:", -$1);
else
sprintf (genstr, "M%d:", -$1);
}
else
{
sprintf (genstr, "l%d:", $1);
generate (genstr);
if ($2 == '+')
sprintf (genstr, "i%d:", $1);
else
sprintf (genstr, "d%d:", $1);
}
generate (genstr);
}
| Length '(' expression ')'
{ generate ("cL"); $$ = 1;}
| Sqrt '(' expression ')'
{ generate ("cR"); $$ = 1;}
| Scale '(' expression ')'
{ generate ("cS"); $$ = 1;}
;
named_expression : NAME
{ $$ = lookup($1,SIMPLE); }
| NAME '[' expression ']'
{ $$ = lookup($1,ARRAY); }
| Ibase
{ $$ = 0; }
| Obase
{ $$ = 1; }
| Scale
{ $$ = 2; }
;
%%
File diff suppressed because it is too large Load Diff
+374
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@@ -0,0 +1,374 @@
%{
/* scan.l: the (f)lex description file for the scanner. */
/* This file is part of GNU bc.
Copyright (C) 1991, 1992, 1993, 1994, 1997 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 2 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; see the file COPYING. If not, write to
The Free Software Foundation, Inc.
59 Temple Place, Suite 330
Boston, MA 02111 USA
You may contact the author by:
e-mail: [email protected]
us-mail: Philip A. Nelson
Computer Science Department, 9062
Western Washington University
Bellingham, WA 98226-9062
*************************************************************************/
#include "bcdefs.h"
#include "bc.h"
#include "global.h"
#include "proto.h"
#include <errno.h>
/* Using flex, we can ask for a smaller input buffer. With lex, this
does nothing! */
#ifdef SMALL_BUF
#undef YY_READ_BUF_SIZE
#define YY_READ_BUF_SIZE 512
#endif
/* Force . as last for now. */
#define DOT_IS_LAST
/* We want to define our own yywrap. */
#undef yywrap
_PROTOTYPE(int yywrap, (void));
#if defined(LIBEDIT)
/* Support for the BSD libedit with history for
nicer input on the interactive part of input. */
#include <histedit.h>
/* Have input call the following function. */
#undef YY_INPUT
#define YY_INPUT(buf,result,max_size) \
bcel_input((char *)buf, &result, max_size)
/* Variables to help interface editline with bc. */
static const char *bcel_line = (char *)NULL;
static int bcel_len = 0;
/* Required to get rid of that ugly ? default prompt! */
char *
null_prompt (EditLine *el)
{
return "";
}
/* bcel_input puts upto MAX characters into BUF with the number put in
BUF placed in *RESULT. If the yy input file is the same as
stdin, use editline. Otherwise, just read it.
*/
static void
bcel_input (buf, result, max)
char *buf;
int *result;
int max;
{
if (!edit || yyin != stdin)
{
while ( (*result = read( fileno(yyin), buf, max )) < 0 )
if (errno != EINTR)
{
yyerror( "read() in flex scanner failed" );
exit (1);
}
return;
}
/* Do we need a new string? */
if (bcel_len == 0)
{
bcel_line = el_gets(edit, &bcel_len);
if (bcel_line == NULL) {
/* end of file */
*result = 0;
bcel_len = 0;
return;
}
if (bcel_len != 0)
history (hist, &histev, H_ENTER, bcel_line);
fflush (stdout);
}
if (bcel_len <= max)
{
strncpy (buf, bcel_line, bcel_len);
*result = bcel_len;
bcel_len = 0;
}
else
{
strncpy (buf, bcel_line, max);
*result = max;
bcel_line += max;
bcel_len -= max;
}
}
#endif
#ifdef READLINE
/* Support for the readline and history libraries. This allows
nicer input on the interactive part of input. */
/* Have input call the following function. */
#undef YY_INPUT
#define YY_INPUT(buf,result,max_size) \
rl_input((char *)buf, &result, max_size)
/* Variables to help interface readline with bc. */
static char *rl_line = (char *)NULL;
static char *rl_start = (char *)NULL;
static int rl_len = 0;
/* Definitions for readline access. */
extern FILE *rl_instream;
_PROTOTYPE(char *readline, (char *));
/* rl_input puts upto MAX characters into BUF with the number put in
BUF placed in *RESULT. If the yy input file is the same as
rl_instream (stdin), use readline. Otherwise, just read it.
*/
static void
rl_input (buf, result, max)
char *buf;
int *result;
int max;
{
if (yyin != rl_instream)
{
while ( (*result = read( fileno(yyin), buf, max )) < 0 )
if (errno != EINTR)
{
yyerror( "read() in flex scanner failed" );
exit (1);
}
return;
}
/* Do we need a new string? */
if (rl_len == 0)
{
if (rl_start)
free(rl_start);
rl_start = readline ("");
if (rl_start == NULL) {
/* end of file */
*result = 0;
rl_len = 0;
return;
}
rl_line = rl_start;
rl_len = strlen (rl_line)+1;
if (rl_len != 1)
add_history (rl_line);
rl_line[rl_len-1] = '\n';
fflush (stdout);
}
if (rl_len <= max)
{
strncpy (buf, rl_line, rl_len);
*result = rl_len;
rl_len = 0;
}
else
{
strncpy (buf, rl_line, max);
*result = max;
rl_line += max;
rl_len -= max;
}
}
#endif
#if !defined(READLINE) && !defined(LIBEDIT)
/* MINIX returns from read with < 0 if SIGINT is encountered.
In flex, we can redefine YY_INPUT to the following. In lex, this
does nothing! */
#undef YY_INPUT
#define YY_INPUT(buf,result,max_size) \
while ( (result = read( fileno(yyin), (char *) buf, max_size )) < 0 ) \
if (errno != EINTR) \
YY_FATAL_ERROR( "read() in flex scanner failed" );
#endif
%}
DIGIT [0-9A-F]
LETTER [a-z]
%s slcomment
%%
"#" {
if (!std_only)
BEGIN(slcomment);
else
yyerror ("illegal character: #");
}
<slcomment>[^\n]* { BEGIN(INITIAL); }
<slcomment>"\n" { line_no++; BEGIN(INITIAL); return(ENDOFLINE); }
define return(Define);
break return(Break);
quit return(Quit);
length return(Length);
return return(Return);
for return(For);
if return(If);
while return(While);
sqrt return(Sqrt);
scale return(Scale);
ibase return(Ibase);
obase return(Obase);
auto return(Auto);
else return(Else);
read return(Read);
halt return(Halt);
last return(Last);
history {
#if defined(READLINE) || defined(LIBEDIT)
return(HistoryVar);
#else
yylval.s_value = strcopyof(yytext); return(NAME);
#endif
}
warranty return(Warranty);
continue return(Continue);
print return(Print);
limits return(Limits);
"." {
#ifdef DOT_IS_LAST
return(Last);
#else
yyerror ("illegal character: %s",yytext);
#endif
}
"+"|"-"|";"|"("|")"|"{"|"}"|"["|"]"|","|"^" { yylval.c_value = yytext[0];
return((int)yytext[0]); }
&& { return(AND); }
\|\| { return(OR); }
"!" { return(NOT); }
"*"|"/"|"%" { yylval.c_value = yytext[0]; return((int)yytext[0]); }
"="|\+=|-=|\*=|\/=|%=|\^= { yylval.c_value = yytext[0]; return(ASSIGN_OP); }
=\+|=-|=\*|=\/|=%|=\^ {
#ifdef OLD_EQ_OP
char warn_save;
warn_save = warn_not_std;
warn_not_std = TRUE;
warn ("Old fashioned =<op>");
warn_not_std = warn_save;
yylval.c_value = yytext[1];
#else
yylval.c_value = '=';
yyless (1);
#endif
return(ASSIGN_OP);
}
==|\<=|\>=|\!=|"<"|">" { yylval.s_value = strcopyof(yytext); return(REL_OP); }
\+\+|-- { yylval.c_value = yytext[0]; return(INCR_DECR); }
"\n" { line_no++; return(ENDOFLINE); }
\\\n { line_no++; /* ignore a "quoted" newline */ }
[ \t]+ { /* ignore spaces and tabs */ }
"/*" {
int c;
for (;;)
{
while ( ((c=input()) != '*') && (c != EOF))
/* eat it */
if (c == '\n') line_no++;
if (c == '*')
{
while ( (c=input()) == '*') /* eat it*/;
if (c == '/') break; /* at end of comment */
if (c == '\n') line_no++;
}
if (c == EOF)
{
fprintf (stderr,"EOF encountered in a comment.\n");
break;
}
}
}
[a-z][a-z0-9_]* { yylval.s_value = strcopyof(yytext); return(NAME); }
\"[^\"]*\" {
unsigned char *look;
int count = 0;
yylval.s_value = strcopyof(yytext);
for (look = yytext; *look != 0; look++)
{
if (*look == '\n') line_no++;
if (*look == '"') count++;
}
if (count != 2) yyerror ("NUL character in string.");
return(STRING);
}
{DIGIT}({DIGIT}|\\\n)*("."({DIGIT}|\\\n)*)?|"."(\\\n)*{DIGIT}({DIGIT}|\\\n)* {
unsigned char *src, *dst;
int len;
/* remove a trailing decimal point. */
len = strlen(yytext);
if (yytext[len-1] == '.')
yytext[len-1] = 0;
/* remove leading zeros. */
src = yytext;
dst = yytext;
while (*src == '0') src++;
if (*src == 0) src--;
/* Copy strings removing the newlines. */
while (*src != 0)
{
if (*src == '\\')
{
src++; src++;
line_no++;
}
else
*dst++ = *src++;
}
*dst = 0;
yylval.s_value = strcopyof(yytext);
return(NUMBER);
}
. {
if (yytext[0] < ' ')
yyerror ("illegal character: ^%c",yytext[0] + '@');
else
if (yytext[0] > '~')
yyerror ("illegal character: \\%03o", (int) yytext[0]);
else
yyerror ("illegal character: %s",yytext);
}
%%
/* This is the way to get multiple files input into lex. */
int
yywrap()
{
if (!open_new_file ()) return (1); /* EOF on standard in. */
return (0); /* We have more input. */
}
File diff suppressed because it is too large Load Diff
+873
View File
@@ -0,0 +1,873 @@
/* util.c: Utility routines for bc. */
/* This file is part of GNU bc.
Copyright (C) 1991-1994, 1997, 2000 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 2 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; see the file COPYING. If not, write to
The Free Software Foundation, Inc.
59 Temple Place, Suite 330
Boston, MA 02111 USA
You may contact the author by:
e-mail: [email protected]
us-mail: Philip A. Nelson
Computer Science Department, 9062
Western Washington University
Bellingham, WA 98226-9062
*************************************************************************/
#include "bcdefs.h"
#ifndef VARARGS
#include <stdarg.h>
#else
#include <varargs.h>
#endif
#include "global.h"
#include "proto.h"
/* strcopyof mallocs new memory and copies a string to to the new
memory. */
char *
strcopyof (str)
char *str;
{
char *temp;
temp = (char *) bc_malloc (strlen (str)+1);
return (strcpy (temp,str));
}
/* nextarg adds another value to the list of arguments. */
arg_list *
nextarg (args, val, is_var)
arg_list *args;
int val;
int is_var;
{ arg_list *temp;
temp = (arg_list *) bc_malloc (sizeof (arg_list));
temp->av_name = val;
temp->arg_is_var = is_var;
temp->next = args;
return (temp);
}
/* For generate, we must produce a string in the form
"val,val,...,val". We also need a couple of static variables
for retaining old generated strings. It also uses a recursive
function that builds the string. */
static char *arglist1 = NULL, *arglist2 = NULL;
/* make_arg_str does the actual construction of the argument string.
ARGS is the pointer to the list and LEN is the maximum number of
characters needed. 1 char is the minimum needed.
*/
_PROTOTYPE (static char *make_arg_str, (arg_list *args, int len));
static char *
make_arg_str (args, len)
arg_list *args;
int len;
{
char *temp;
char sval[20];
/* Recursive call. */
if (args != NULL)
temp = make_arg_str (args->next, len+12);
else
{
temp = (char *) bc_malloc (len);
*temp = 0;
return temp;
}
/* Add the current number to the end of the string. */
if (args->arg_is_var)
if (len != 1)
sprintf (sval, "*%d,", args->av_name);
else
sprintf (sval, "*%d", args->av_name);
else
if (len != 1)
sprintf (sval, "%d,", args->av_name);
else
sprintf (sval, "%d", args->av_name);
temp = strcat (temp, sval);
return (temp);
}
char *
arg_str (args)
arg_list *args;
{
if (arglist2 != NULL)
free (arglist2);
arglist2 = arglist1;
arglist1 = make_arg_str (args, 1);
return (arglist1);
}
char *
call_str (args)
arg_list *args;
{
arg_list *temp;
int arg_count;
int ix;
if (arglist2 != NULL)
free (arglist2);
arglist2 = arglist1;
/* Count the number of args and add the 0's and 1's. */
for (temp = args, arg_count = 0; temp != NULL; temp = temp->next)
arg_count++;
arglist1 = (char *) bc_malloc(arg_count+1);
for (temp = args, ix=0; temp != NULL; temp = temp->next)
arglist1[ix++] = ( temp->av_name ? '1' : '0');
arglist1[ix] = 0;
return (arglist1);
}
/* free_args frees an argument list ARGS. */
void
free_args (args)
arg_list *args;
{
arg_list *temp;
temp = args;
while (temp != NULL)
{
args = args->next;
free (temp);
temp = args;
}
}
/* Check for valid parameter (PARAMS) and auto (AUTOS) lists.
There must be no duplicates any where. Also, this is where
warnings are generated for array parameters. */
void
check_params ( params, autos )
arg_list *params, *autos;
{
arg_list *tmp1, *tmp2;
/* Check for duplicate parameters. */
if (params != NULL)
{
tmp1 = params;
while (tmp1 != NULL)
{
tmp2 = tmp1->next;
while (tmp2 != NULL)
{
if (tmp2->av_name == tmp1->av_name)
yyerror ("duplicate parameter names");
tmp2 = tmp2->next;
}
if (tmp1->arg_is_var)
warn ("Variable array parameter");
tmp1 = tmp1->next;
}
}
/* Check for duplicate autos. */
if (autos != NULL)
{
tmp1 = autos;
while (tmp1 != NULL)
{
tmp2 = tmp1->next;
while (tmp2 != NULL)
{
if (tmp2->av_name == tmp1->av_name)
yyerror ("duplicate auto variable names");
tmp2 = tmp2->next;
}
if (tmp1->arg_is_var)
yyerror ("* not allowed here");
tmp1 = tmp1->next;
}
}
/* Check for duplicate between parameters and autos. */
if ((params != NULL) && (autos != NULL))
{
tmp1 = params;
while (tmp1 != NULL)
{
tmp2 = autos;
while (tmp2 != NULL)
{
if (tmp2->av_name == tmp1->av_name)
yyerror ("variable in both parameter and auto lists");
tmp2 = tmp2->next;
}
tmp1 = tmp1->next;
}
}
}
/* Initialize the code generator the parser. */
void
init_gen ()
{
/* Get things ready. */
break_label = 0;
continue_label = 0;
next_label = 1;
out_count = 2;
if (compile_only)
printf ("@i");
else
init_load ();
had_error = FALSE;
did_gen = FALSE;
}
/* generate code STR for the machine. */
void
generate (str)
char *str;
{
did_gen = TRUE;
if (compile_only)
{
printf ("%s",str);
out_count += strlen(str);
if (out_count > 60)
{
printf ("\n");
out_count = 0;
}
}
else
load_code (str);
}
/* Execute the current code as loaded. */
void
run_code()
{
/* If no compile errors run the current code. */
if (!had_error && did_gen)
{
if (compile_only)
{
printf ("@r\n");
out_count = 0;
}
else
execute ();
}
/* Reinitialize the code generation and machine. */
if (did_gen)
init_gen();
else
had_error = FALSE;
}
/* Output routines: Write a character CH to the standard output.
It keeps track of the number of characters output and may
break the output with a "\<cr>". Always used for numbers. */
void
out_char (ch)
int ch;
{
if (ch == '\n')
{
out_col = 0;
putchar ('\n');
}
else
{
out_col++;
if (out_col == line_size-1)
{
putchar ('\\');
putchar ('\n');
out_col = 1;
}
putchar (ch);
}
}
/* Output routines: Write a character CH to the standard output.
It keeps track of the number of characters output and may
break the output with a "\<cr>". This one is for strings.
In POSIX bc, strings are not broken across lines. */
void
out_schar (ch)
int ch;
{
if (ch == '\n')
{
out_col = 0;
putchar ('\n');
}
else
{
if (!std_only)
{
out_col++;
if (out_col == line_size-1)
{
putchar ('\\');
putchar ('\n');
out_col = 1;
}
}
putchar (ch);
}
}
/* The following are "Symbol Table" routines for the parser. */
/* find_id returns a pointer to node in TREE that has the correct
ID. If there is no node in TREE with ID, NULL is returned. */
id_rec *
find_id (tree, id)
id_rec *tree;
char *id;
{
int cmp_result;
/* Check for an empty tree. */
if (tree == NULL)
return NULL;
/* Recursively search the tree. */
cmp_result = strcmp (id, tree->id);
if (cmp_result == 0)
return tree; /* This is the item. */
else if (cmp_result < 0)
return find_id (tree->left, id);
else
return find_id (tree->right, id);
}
/* insert_id_rec inserts a NEW_ID rec into the tree whose ROOT is
provided. insert_id_rec returns TRUE if the tree height from
ROOT down is increased otherwise it returns FALSE. This is a
recursive balanced binary tree insertion algorithm. */
int insert_id_rec (root, new_id)
id_rec **root;
id_rec *new_id;
{
id_rec *A, *B;
/* If root is NULL, this where it is to be inserted. */
if (*root == NULL)
{
*root = new_id;
new_id->left = NULL;
new_id->right = NULL;
new_id->balance = 0;
return (TRUE);
}
/* We need to search for a leaf. */
if (strcmp (new_id->id, (*root)->id) < 0)
{
/* Insert it on the left. */
if (insert_id_rec (&((*root)->left), new_id))
{
/* The height increased. */
(*root)->balance --;
switch ((*root)->balance)
{
case 0: /* no height increase. */
return (FALSE);
case -1: /* height increase. */
return (FALSE);
case -2: /* we need to do a rebalancing act. */
A = *root;
B = (*root)->left;
if (B->balance <= 0)
{
/* Single Rotate. */
A->left = B->right;
B->right = A;
*root = B;
A->balance = 0;
B->balance = 0;
}
else
{
/* Double Rotate. */
*root = B->right;
B->right = (*root)->left;
A->left = (*root)->right;
(*root)->left = B;
(*root)->right = A;
switch ((*root)->balance)
{
case -1:
A->balance = 1;
B->balance = 0;
break;
case 0:
A->balance = 0;
B->balance = 0;
break;
case 1:
A->balance = 0;
B->balance = -1;
break;
}
(*root)->balance = 0;
}
}
}
}
else
{
/* Insert it on the right. */
if (insert_id_rec (&((*root)->right), new_id))
{
/* The height increased. */
(*root)->balance ++;
switch ((*root)->balance)
{
case 0: /* no height increase. */
return (FALSE);
case 1: /* height increase. */
return (FALSE);
case 2: /* we need to do a rebalancing act. */
A = *root;
B = (*root)->right;
if (B->balance >= 0)
{
/* Single Rotate. */
A->right = B->left;
B->left = A;
*root = B;
A->balance = 0;
B->balance = 0;
}
else
{
/* Double Rotate. */
*root = B->left;
B->left = (*root)->right;
A->right = (*root)->left;
(*root)->left = A;
(*root)->right = B;
switch ((*root)->balance)
{
case -1:
A->balance = 0;
B->balance = 1;
break;
case 0:
A->balance = 0;
B->balance = 0;
break;
case 1:
A->balance = -1;
B->balance = 0;
break;
}
(*root)->balance = 0;
}
}
}
}
/* If we fall through to here, the tree did not grow in height. */
return (FALSE);
}
/* Initialize variables for the symbol table tree. */
void
init_tree()
{
name_tree = NULL;
next_array = 1;
next_func = 1;
/* 0 => ibase, 1 => obase, 2 => scale, 3 => history, 4 => last. */
next_var = 5;
}
/* Lookup routines for symbol table names. */
int
lookup (name, namekind)
char *name;
int namekind;
{
id_rec *id;
/* Warn about non-standard name. */
if (strlen(name) != 1)
warn ("multiple letter name - %s", name);
/* Look for the id. */
id = find_id (name_tree, name);
if (id == NULL)
{
/* We need to make a new item. */
id = (id_rec *) bc_malloc (sizeof (id_rec));
id->id = strcopyof (name);
id->a_name = 0;
id->f_name = 0;
id->v_name = 0;
insert_id_rec (&name_tree, id);
}
/* Return the correct value. */
switch (namekind)
{
case ARRAY:
/* ARRAY variable numbers are returned as negative numbers. */
if (id->a_name != 0)
{
free (name);
return (-id->a_name);
}
id->a_name = next_array++;
a_names[id->a_name] = name;
if (id->a_name < MAX_STORE)
{
if (id->a_name >= a_count)
more_arrays ();
return (-id->a_name);
}
yyerror ("Too many array variables");
exit (1);
case FUNCT:
case FUNCTDEF:
if (id->f_name != 0)
{
free(name);
/* Check to see if we are redefining a math lib function. */
if (use_math && namekind == FUNCTDEF && id->f_name <= 6)
id->f_name = next_func++;
return (id->f_name);
}
id->f_name = next_func++;
f_names[id->f_name] = name;
if (id->f_name < MAX_STORE)
{
if (id->f_name >= f_count)
more_functions ();
return (id->f_name);
}
yyerror ("Too many functions");
exit (1);
case SIMPLE:
if (id->v_name != 0)
{
free(name);
return (id->v_name);
}
id->v_name = next_var++;
v_names[id->v_name - 1] = name;
if (id->v_name <= MAX_STORE)
{
if (id->v_name >= v_count)
more_variables ();
return (id->v_name);
}
yyerror ("Too many variables");
exit (1);
}
yyerror ("End of util.c/lookup() reached. Please report this bug.");
exit (1);
/* not reached */
}
/* Print the welcome banner. */
void
welcome()
{
printf ("This is free software with ABSOLUTELY NO WARRANTY.\n");
printf ("For details type `warranty'. \n");
}
/* Print out the version information. */
void
show_bc_version()
{
printf("%s %s\n%s\n", PACKAGE, VERSION, BC_COPYRIGHT);
}
/* Print out the warranty information. */
void
warranty(prefix)
char *prefix;
{
printf ("\n%s", prefix);
show_bc_version ();
printf ("\n"
" This program is free software; you can redistribute it and/or modify\n"
" it under the terms of the GNU General Public License as published by\n"
" the Free Software Foundation; either version 2 of the License , or\n"
" (at your option) any later version.\n\n"
" This program is distributed in the hope that it will be useful,\n"
" but WITHOUT ANY WARRANTY; without even the implied warranty of\n"
" MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the\n"
" GNU General Public License for more details.\n\n"
" You should have received a copy of the GNU General Public License\n"
" along with this program. If not, write to\n\n"
" The Free Software Foundation, Inc.\n"
" 59 Temple Place, Suite 330\n"
" Boston, MA 02111, USA.\n\n");
}
/* Print out the limits of this program. */
void
limits()
{
printf ("BC_BASE_MAX = %d\n", BC_BASE_MAX);
printf ("BC_DIM_MAX = %ld\n", (long) BC_DIM_MAX);
printf ("BC_SCALE_MAX = %d\n", BC_SCALE_MAX);
printf ("BC_STRING_MAX = %d\n", BC_STRING_MAX);
printf ("MAX Exponent = %ld\n", (long) LONG_MAX);
printf ("Number of vars = %ld\n", (long) MAX_STORE);
#ifdef OLD_EQ_OP
printf ("Old assignment operatiors are valid. (=-, =+, ...)\n");
#endif
}
/* bc_malloc will check the return value so all other places do not
have to do it! SIZE is the number of bytes to allocate. */
char *
bc_malloc (size)
int size;
{
char *ptr;
ptr = (char *) malloc (size);
if (ptr == NULL)
out_of_memory ();
return ptr;
}
/* The following routines are error routines for various problems. */
/* Malloc could not get enought memory. */
void
out_of_memory()
{
fprintf (stderr, "Fatal error: Out of memory for malloc.\n");
exit (1);
}
/* The standard yyerror routine. Built with variable number of argumnets. */
#ifndef VARARGS
#ifdef __STDC__
void
yyerror (char *str, ...)
#else
void
yyerror (str)
char *str;
#endif
#else
void
yyerror (str, va_alist)
char *str;
#endif
{
char *name;
va_list args;
#ifndef VARARGS
va_start (args, str);
#else
va_start (args);
#endif
if (is_std_in)
name = "(standard_in)";
else
name = file_name;
fprintf (stderr,"%s %d: ",name,line_no);
vfprintf (stderr, str, args);
fprintf (stderr, "\n");
had_error = TRUE;
va_end (args);
}
/* The routine to produce warnings about non-standard features
found during parsing. */
#ifndef VARARGS
#ifdef __STDC__
void
warn (char *mesg, ...)
#else
void
warn (mesg)
char *mesg;
#endif
#else
void
warn (mesg, va_alist)
char *mesg;
#endif
{
char *name;
va_list args;
#ifndef VARARGS
va_start (args, mesg);
#else
va_start (args);
#endif
if (std_only)
{
if (is_std_in)
name = "(standard_in)";
else
name = file_name;
fprintf (stderr,"%s %d: ",name,line_no);
vfprintf (stderr, mesg, args);
fprintf (stderr, "\n");
had_error = TRUE;
}
else
if (warn_not_std)
{
if (is_std_in)
name = "(standard_in)";
else
name = file_name;
fprintf (stderr,"%s %d: (Warning) ",name,line_no);
vfprintf (stderr, mesg, args);
fprintf (stderr, "\n");
}
va_end (args);
}
/* Runtime error will print a message and stop the machine. */
#ifndef VARARGS
#ifdef __STDC__
void
rt_error (char *mesg, ...)
#else
void
rt_error (mesg)
char *mesg;
#endif
#else
void
rt_error (mesg, va_alist)
char *mesg;
#endif
{
va_list args;
fprintf (stderr, "Runtime error (func=%s, adr=%d): ",
f_names[pc.pc_func], pc.pc_addr);
#ifndef VARARGS
va_start (args, mesg);
#else
va_start (args);
#endif
vfprintf (stderr, mesg, args);
va_end (args);
fprintf (stderr, "\n");
runtime_error = TRUE;
}
/* A runtime warning tells of some action taken by the processor that
may change the program execution but was not enough of a problem
to stop the execution. */
#ifndef VARARGS
#ifdef __STDC__
void
rt_warn (char *mesg, ...)
#else
void
rt_warn (mesg)
char *mesg;
#endif
#else
void
rt_warn (mesg, va_alist)
char *mesg;
#endif
{
va_list args;
fprintf (stderr, "Runtime warning (func=%s, adr=%d): ",
f_names[pc.pc_func], pc.pc_addr);
#ifndef VARARGS
va_start (args, mesg);
#else
va_start (args);
#endif
vfprintf (stderr, mesg, args);
va_end (args);
fprintf (stderr, "\n");
}
+82
View File
@@ -0,0 +1,82 @@
/* config.h. Generated automatically by configure. */
/* config.h.in. Generated automatically from configure.in by autoheader. */
/* Define to empty if the keyword does not work. */
/* #undef const */
/* Define if you don't have vprintf but do have _doprnt. */
/* #undef HAVE_DOPRNT */
/* Define if you have the vprintf function. */
#define HAVE_VPRINTF 1
/* Define if on MINIX. */
/* #undef _MINIX */
/* Define if the system does not provide POSIX.1 features except
with this defined. */
/* #undef _POSIX_1_SOURCE */
/* Define if you need to in order for stat and other things to work. */
/* #undef _POSIX_SOURCE */
/* Define to `unsigned' if <sys/types.h> doesn't define. */
/* #undef size_t */
/* Define if you have the ANSI C header files. */
#define STDC_HEADERS 1
/* Define if lex declares yytext as a char * by default, not a char[]. */
#define YYTEXT_POINTER 1
/* VERSION number for DC target*/
#define DC_VERSION "1.3"
/* COPYRIGHT notice for DC target */
#define DC_COPYRIGHT "Copyright 1994, 1997, 1998, 2000 Free Software Foundation, Inc."
/* COPYRIGHT notice for BC target */
#define BC_COPYRIGHT "Copyright 1991-1994, 1997, 1998, 2000 Free Software Foundation, Inc."
/* Define to use the readline library. */
/* #undef READLINE */
/* Define to use the BSD libedit library. */
/* #undef LIBEDIT */
/* Define to `size_t' if <sys/types.h> and <stddef.h> don't define. */
/* #undef ptrdiff_t */
/* Define if you have the isgraph function. */
#define HAVE_ISGRAPH 1
/* Define if you have the setvbuf function. */
#define HAVE_SETVBUF 1
/* Define if you have the <lib.h> header file. */
/* #undef HAVE_LIB_H */
/* Define if you have the <limits.h> header file. */
#define HAVE_LIMITS_H 1
/* Define if you have the <stdarg.h> header file. */
#define HAVE_STDARG_H 1
/* Define if you have the <stddef.h> header file. */
#define HAVE_STDDEF_H 1
/* Define if you have the <stdlib.h> header file. */
#define HAVE_STDLIB_H 1
/* Define if you have the <string.h> header file. */
#define HAVE_STRING_H 1
/* Define if you have the <unistd.h> header file. */
#define HAVE_UNISTD_H 1
/* Name of package */
#define PACKAGE "bc"
/* Version number of package */
#define VERSION "1.06"
+11
View File
@@ -0,0 +1,11 @@
SubDir OBOS_TOP src apps bin bc dc ;
SubDirCcFlags -DHAVE_CONFIG_H ;
SubDirHdrs [ FDirName $(SUBDIR) $(DOTDOT) lib ] ;
SubDirHdrs [ FDirName $(SUBDIR) $(DOTDOT) ] ;
SubDirHdrs [ FDirName $(SUBDIR) $(DOTDOT) h ] ;
BinCommand dc :
dc.c misc.c eval.c stack.c array.c numeric.c string.c
: libbc.a ;
+122
View File
@@ -0,0 +1,122 @@
/*
* implement arrays for dc
*
* Copyright (C) 1994, 1997, 1998 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 2, 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, you can either send email to this
* program's author (see below) or write to:
*
* The Free Software Foundation, Inc.
* 59 Temple Place, Suite 330
* Boston, MA 02111 USA
*/
/* This module is the only one that knows what arrays look like. */
#include "config.h"
#include <stdio.h> /* "dc-proto.h" wants this */
#ifdef HAVE_STDLIB_H
/* get size_t definition from "almost ANSI" compiling environments. */
#include <stdlib.h>
#endif
#include "dc.h"
#include "dc-proto.h"
#include "dc-regdef.h"
/* what's most useful: quick access or sparse arrays? */
/* I'll go with sparse arrays for now */
struct dc_array {
int Index;
dc_data value;
struct dc_array *next;
};
/* initialize the arrays */
void
dc_array_init DC_DECLVOID()
{
}
/* store value into array_id[Index] */
void
dc_array_set DC_DECLARG((array_id, Index, value))
int array_id DC_DECLSEP
int Index DC_DECLSEP
dc_data value DC_DECLEND
{
struct dc_array *cur;
struct dc_array *prev=NULL;
struct dc_array *newentry;
cur = dc_get_stacked_array(array_id);
while (cur && cur->Index < Index){
prev = cur;
cur = cur->next;
}
if (cur && cur->Index == Index){
if (cur->value.dc_type == DC_NUMBER)
dc_free_num(&cur->value.v.number);
else if (cur->value.dc_type == DC_STRING)
dc_free_str(&cur->value.v.string);
else
dc_garbage(" in array", array_id);
cur->value = value;
}else{
newentry = dc_malloc(sizeof *newentry);
newentry->Index = Index;
newentry->value = value;
newentry->next = cur;
if (prev)
prev->next = newentry;
else
dc_set_stacked_array(array_id, newentry);
}
}
/* retrieve a dup of a value from array_id[Index] */
/* A zero value is returned if the specified value is unintialized. */
dc_data
dc_array_get DC_DECLARG((array_id, Index))
int array_id DC_DECLSEP
int Index DC_DECLEND
{
struct dc_array *cur;
for (cur=dc_get_stacked_array(array_id); cur; cur=cur->next)
if (cur->Index == Index)
return dc_dup(cur->value);
return dc_int2data(0);
}
/* free an array chain */
void
dc_array_free DC_DECLARG((a_head))
struct dc_array *a_head DC_DECLEND
{
struct dc_array *cur;
struct dc_array *next;
for (cur=a_head; cur; cur=next) {
next = cur->next;
if (cur->value.dc_type == DC_NUMBER)
dc_free_num(&cur->value.v.number);
else if (cur->value.dc_type == DC_STRING)
dc_free_str(&cur->value.v.string);
else
dc_garbage("in stack", -1);
free(cur);
}
}
+90
View File
@@ -0,0 +1,90 @@
/*
* prototypes of all externally visible dc functions
*
* Copyright (C) 1994, 1997, 1998 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 2, 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, you can either send email to this
* program's author (see below) or write to:
*
* The Free Software Foundation, Inc.
* 59 Temple Place, Suite 330
* Boston, MA 02111 USA
*/
extern const char *dc_str2charp DC_PROTO((dc_str));
extern const char *dc_system DC_PROTO((const char *));
extern void *dc_malloc DC_PROTO((size_t));
extern struct dc_array *dc_get_stacked_array DC_PROTO((int));
extern void dc_array_set DC_PROTO((int, int, dc_data));
extern void dc_array_free DC_PROTO((struct dc_array *));
extern void dc_array_init DC_PROTO((void));
extern void dc_binop DC_PROTO((int (*)(dc_num, dc_num, int, dc_num *), int));
extern void dc_binop2 DC_PROTO((int (*)(dc_num, dc_num, int,
dc_num *, dc_num *), int));
extern void dc_triop DC_PROTO((int (*)(dc_num, dc_num, dc_num, int,
dc_num *), int));
extern void dc_clear_stack DC_PROTO((void));
extern void dc_dump_num(dc_num, dc_discard);
extern void dc_free_num DC_PROTO((dc_num *));
extern void dc_free_str DC_PROTO((dc_str *));
extern void dc_garbage DC_PROTO((const char *, int));
extern void dc_math_init DC_PROTO((void));
extern void dc_memfail DC_PROTO((void));
extern void dc_out_num DC_PROTO((dc_num, int, dc_newline, dc_discard));
extern void dc_out_str DC_PROTO((dc_str, dc_newline, dc_discard));
extern void dc_print DC_PROTO((dc_data, int, dc_newline, dc_discard));
extern void dc_printall DC_PROTO((int));
extern void dc_push DC_PROTO((dc_data));
extern void dc_register_init DC_PROTO((void));
extern void dc_register_push DC_PROTO((int, dc_data));
extern void dc_register_set DC_PROTO((int, dc_data));
extern void dc_set_stacked_array DC_PROTO((int, struct dc_array *));
extern void dc_show_id DC_PROTO((FILE *, int, const char *));
extern void dc_string_init DC_PROTO((void));
extern int dc_cmpop DC_PROTO((void));
extern int dc_compare DC_PROTO((dc_num, dc_num));
extern int dc_evalfile DC_PROTO((FILE *));
extern int dc_evalstr DC_PROTO((dc_data));
extern int dc_num2int DC_PROTO((dc_num, dc_discard));
extern int dc_numlen DC_PROTO((dc_num));
extern int dc_pop DC_PROTO((dc_data *));
extern int dc_register_get DC_PROTO((int, dc_data *));
extern int dc_register_pop DC_PROTO((int, dc_data *));
extern int dc_tell_length DC_PROTO((dc_data, dc_discard));
extern int dc_tell_scale DC_PROTO((dc_num, dc_discard));
extern int dc_tell_stackdepth DC_PROTO((void));
extern int dc_top_of_stack DC_PROTO((dc_data *));
extern size_t dc_strlen DC_PROTO((dc_str));
extern dc_data dc_array_get DC_PROTO((int, int));
extern dc_data dc_dup DC_PROTO((dc_data));
extern dc_data dc_dup_num DC_PROTO((dc_num));
extern dc_data dc_dup_str DC_PROTO((dc_str));
extern dc_data dc_getnum DC_PROTO((int (*)(void), int, int *));
extern dc_data dc_int2data DC_PROTO((int));
extern dc_data dc_makestring DC_PROTO((const char *, size_t));
extern dc_data dc_readstring DC_PROTO((FILE *, int , int));
extern int dc_add DC_PROTO((dc_num, dc_num, int, dc_num *));
extern int dc_div DC_PROTO((dc_num, dc_num, int, dc_num *));
extern int dc_divrem DC_PROTO((dc_num, dc_num, int, dc_num *, dc_num *));
extern int dc_exp DC_PROTO((dc_num, dc_num, int, dc_num *));
extern int dc_modexp DC_PROTO((dc_num, dc_num, dc_num, int, dc_num *));
extern int dc_mul DC_PROTO((dc_num, dc_num, int, dc_num *));
extern int dc_rem DC_PROTO((dc_num, dc_num, int, dc_num *));
extern int dc_sub DC_PROTO((dc_num, dc_num, int, dc_num *));
extern int dc_sqrt DC_PROTO((dc_num, int, dc_num *));
+43
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/*
* definitions for dc's "register" declarations
*
* Copyright (C) 1994 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 2, 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, you can either send email to this
* program's author (see below) or write to:
*
* The Free Software Foundation, Inc.
* 59 Temple Place, Suite 330
* Boston, MA 02111 USA
*/
#ifdef HAVE_LIMITS_H
# include <limits.h> /* UCHAR_MAX */
#endif
/* determine how many register stacks there are */
#ifndef DC_REGCOUNT
# ifndef UCHAR_MAX
# define DC_REGCOUNT 256
# else
# define DC_REGCOUNT (UCHAR_MAX+1)
# endif
#endif /* not DC_REGCOUNT */
/* efficiency hack for masking arbritrary integers to 0..(DC_REGCOUNT-1) */
#if (DC_REGCOUNT & (DC_REGCOUNT-1)) == 0 /* DC_REGCOUNT is power of 2 */
# define regmap(r) ((r) & (DC_REGCOUNT-1))
#else
# define regmap(r) ((r) % DC_REGCOUNT)
#endif
+183
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/*
* implement the "dc" Desk Calculator language.
*
* Copyright (C) 1994, 1997, 1998, 2000 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 2, 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, you can either send email to this
* program's author (see below) or write to:
* The Free Software Foundation, Inc.
* 59 Temple Place, Suite 330
* Boston, MA 02111 USA
*/
/* Written with strong hiding of implementation details
* in their own specialized modules.
*/
/* This module contains the argument processing/main functions.
*/
#include "config.h"
#include <stdio.h>
#ifdef HAVE_STDLIB_H
# include <stdlib.h>
#endif
#ifdef HAVE_STRING_H
# include <string.h>
#else
# ifdef HAVE_STRINGS_H
# include <strings.h>
# endif
#endif
#include <getopt.h>
#include "dc.h"
#include "dc-proto.h"
#ifndef EXIT_SUCCESS /* C89 <stdlib.h> */
# define EXIT_SUCCESS 0
#endif
#ifndef EXIT_FAILURE /* C89 <stdlib.h> */
# define EXIT_FAILURE 1
#endif
const char *progname; /* basename of program invocation */
static void
bug_report_info DC_DECLVOID()
{
printf("Email bug reports to: [email protected] .\n");
}
static void
show_version DC_DECLVOID()
{
printf("dc (GNU %s %s) %s\n", PACKAGE, VERSION, DC_VERSION);
printf("\n%s\n\
This is free software; see the source for copying conditions. There is NO\n\
warranty; not even for MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE,\n\
to the extent permitted by law.\n", DC_COPYRIGHT);
}
/* your generic usage function */
static void
usage DC_DECLARG((f))
FILE *f DC_DECLEND
{
fprintf(f, "\
Usage: %s [OPTION] [file ...]\n\
-e, --expression=EXPR evaluate expression\n\
-f, --file=FILE evaluate contents of file\n\
-h, --help display this help and exit\n\
-V, --version output version information and exit\n\
\n\
", progname);
bug_report_info();
}
/* returns a pointer to one past the last occurance of c in s,
* or s if c does not occur in s.
*/
static char *
r1bindex DC_DECLARG((s, c))
char *s DC_DECLSEP
int c DC_DECLEND
{
char *p = strrchr(s, c);
if (!p)
return s;
return p + 1;
}
static void
try_file(const char *filename)
{
FILE *input;
if (strcmp(filename, "-") == 0) {
input = stdin;
} else if ( !(input=fopen(filename, "r")) ) {
fprintf(stderr, "Could not open file ");
perror(filename);
exit(EXIT_FAILURE);
}
if (dc_evalfile(input))
exit(EXIT_FAILURE);
if (input != stdin)
fclose(input);
}
int
main DC_DECLARG((argc, argv))
int argc DC_DECLSEP
char **argv DC_DECLEND
{
static struct option const long_opts[] = {
{"expression", required_argument, NULL, 'e'},
{"file", required_argument, NULL, 'f'},
{"help", no_argument, NULL, 'h'},
{"version", no_argument, NULL, 'V'},
{NULL, 0, NULL, 0}
};
int did_eval = 0;
int c;
progname = r1bindex(*argv, '/');
#ifdef HAVE_SETVBUF
/* attempt to simplify interaction with applications such as emacs */
(void) setvbuf(stdout, NULL, _IOLBF, 0);
#endif
dc_math_init();
dc_string_init();
dc_register_init();
dc_array_init();
while ((c = getopt_long(argc, argv, "hVe:f:", long_opts, (int *)0)) != EOF) {
switch (c) {
case 'e':
{ dc_data string = dc_makestring(optarg, strlen(optarg));
if (dc_evalstr(string))
return EXIT_SUCCESS;
dc_free_str(&string.v.string);
did_eval = 1;
}
break;
case 'f':
try_file(optarg);
did_eval = 1;
break;
case 'h':
usage(stdout);
return EXIT_SUCCESS;
case 'V':
show_version();
return EXIT_SUCCESS;
default:
usage(stderr);
return EXIT_FAILURE;
}
}
for (; optind < argc; ++optind) {
try_file(argv[optind]);
did_eval = 1;
}
if (!did_eval) {
/* if no -e commands and no command files, then eval stdin */
if (dc_evalfile(stdin))
return EXIT_FAILURE;
}
return EXIT_SUCCESS;
}
+82
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/*
* Header file for dc routines
*
* Copyright (C) 1994, 1997, 1998 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 2, 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, you can either send email to this
* program's author (see below) or write to:
*
* The Free Software Foundation, Inc.
* 59 Temple Place, Suite 330
* Boston, MA 02111 USA
*/
#ifndef DC_DEFS_H
#define DC_DEFS_H
/* 'I' is a command, and bases 17 and 18 are quite
* unusual, so we limit ourselves to bases 2 to 16
*/
#define DC_IBASE_MAX 16
#define DC_SUCCESS 0
#define DC_DOMAIN_ERROR 1
#define DC_FAIL 2 /* generic failure */
#ifndef __STDC__
# define DC_PROTO(x) ()
# define DC_DECLVOID() ()
# define DC_DECLARG(arglist) arglist
# define DC_DECLSEP ;
# define DC_DECLEND ;
#else /* __STDC__ */
# define DC_PROTO(x) x
# define DC_DECLVOID() (void)
# define DC_DECLARG(arglist) (
# define DC_DECLSEP ,
# define DC_DECLEND )
#endif /* __STDC__ */
typedef enum {DC_TOSS, DC_KEEP} dc_discard;
typedef enum {DC_NONL, DC_WITHNL} dc_newline;
/* type discriminant for dc_data */
typedef enum {DC_UNINITIALIZED, DC_NUMBER, DC_STRING} dc_value_type;
/* only numeric.c knows what dc_num's *really* look like */
typedef struct dc_number *dc_num;
/* only string.c knows what dc_str's *really* look like */
typedef struct dc_string *dc_str;
/* except for the two implementation-specific modules, all
* dc functions only know of this one generic type of object
*/
typedef struct {
dc_value_type dc_type; /* discriminant for union */
union {
dc_num number;
dc_str string;
} v;
} dc_data;
/* This is dc's only global variable: */
extern const char *progname; /* basename of program invocation */
#endif /* not DC_DEFS_H */
+682
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/*
* evaluate the dc language, from a FILE* or a string
*
* Copyright (C) 1994, 1997, 1998, 2000 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 2, 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, you can either send email to this
* program's author (see below) or write to:
* The Free Software Foundation, Inc.
* 59 Temple Place, Suite 330
* Boston, MA 02111 USA
*/
/* This is the only module which knows about the dc input language */
#include "config.h"
#include <stdio.h>
#ifdef HAVE_STRING_H
# include <string.h> /* memchr */
#else
# ifdef HAVE_MEMORY_H
# include <memory.h> /* memchr, maybe */
# else
# ifdef HAVE_STRINGS_H
# include <strings.h> /* memchr, maybe */
# endif
#endif
#endif
#include "dc.h"
#include "dc-proto.h"
typedef enum {DC_FALSE, DC_TRUE} dc_boolean;
typedef enum {
DC_OKAY = DC_SUCCESS, /* no further intervention needed for this command */
DC_EATONE, /* caller needs to eat the lookahead char */
DC_QUIT, /* quit out of unwind_depth levels of evaluation */
/* with the following return values, the caller does not have to
* fret about stdin_lookahead's value
*/
DC_INT, /* caller needs to parse a dc_num from input stream */
DC_STR, /* caller needs to parse a dc_str from input stream */
DC_SYSTEM, /* caller needs to run a system() on next input line */
DC_COMMENT, /* caller needs to skip to the next input line */
DC_NEGCMP, /* caller needs to re-call dc_func() with `negcmp' set */
DC_EOF_ERROR /* unexpected end of input; abort current eval */
} dc_status;
static int dc_ibase=10; /* input base, 2 <= dc_ibase <= DC_IBASE_MAX */
static int dc_obase=10; /* output base, 2 <= dc_obase */
static int dc_scale=0; /* scale (see user documentaton) */
/* for Quitting evaluations */
static int unwind_depth=0;
/* if true, active Quit will not exit program */
static dc_boolean unwind_noexit=DC_FALSE;
/*
* Used to synchronize lookahead on stdin for '?' command.
* If set to EOF then lookahead is used up.
*/
static int stdin_lookahead=EOF;
/* input_fil and input_str are passed as arguments to dc_getnum */
/* used by the input_* functions: */
static FILE *input_fil_fp;
static const char *input_str_string;
/* Since we have a need for two characters of pushback, and
* ungetc() only guarantees one, we place the second pushback here
*/
static int input_pushback;
/* passed as an argument to dc_getnum */
static int
input_fil DC_DECLVOID()
{
if (input_pushback != EOF){
int c = input_pushback;
input_pushback = EOF;
return c;
}
return getc(input_fil_fp);
}
/* passed as an argument to dc_getnum */
static int
input_str DC_DECLVOID()
{
if (!*input_str_string)
return EOF;
return *input_str_string++;
}
/* takes a string and evals it; frees the string when done */
/* Wrapper around dc_evalstr to avoid duplicating the free call
* at all possible return points.
*/
static int
dc_eval_and_free_str DC_DECLARG((string))
dc_data string DC_DECLEND
{
dc_status status;
status = dc_evalstr(string);
if (string.dc_type == DC_STRING)
dc_free_str(&string.v.string);
return status;
}
/* dc_func does the grunt work of figuring out what each input
* character means; used by both dc_evalstr and dc_evalfile
*
* c -> the "current" input character under consideration
* peekc -> the lookahead input character
* negcmp -> negate comparison test (for <,=,> commands)
*/
static dc_status
dc_func DC_DECLARG((c, peekc, negcmp))
int c DC_DECLSEP
int peekc DC_DECLSEP
int negcmp DC_DECLEND
{
/* we occasionally need these for temporary data */
/* Despite the GNU coding standards, it is much easier
* to have these declared once here, since this function
* is just one big switch statement.
*/
dc_data datum;
int tmpint;
switch (c){
case '_': case '.':
case '0': case '1': case '2': case '3':
case '4': case '5': case '6': case '7':
case '8': case '9': case 'A': case 'B':
case 'C': case 'D': case 'E': case 'F':
return DC_INT;
case ' ':
case '\t':
case '\n':
/* standard command separators */
break;
case '+': /* add top two stack elements */
dc_binop(dc_add, dc_scale);
break;
case '-': /* subtract top two stack elements */
dc_binop(dc_sub, dc_scale);
break;
case '*': /* multiply top two stack elements */
dc_binop(dc_mul, dc_scale);
break;
case '/': /* divide top two stack elements */
dc_binop(dc_div, dc_scale);
break;
case '%':
/* take the remainder from division of the top two stack elements */
dc_binop(dc_rem, dc_scale);
break;
case '~':
/* Do division on the top two stack elements. Return the
* quotient as next-to-top of stack and the remainder as
* top-of-stack.
*/
dc_binop2(dc_divrem, dc_scale);
break;
case '|':
/* Consider the top three elements of the stack as (base, exp, mod),
* where mod is top-of-stack, exp is next-to-top, and base is
* second-from-top. Mod must be non-zero, exp must be non-negative,
* and all three must be integers. Push the result of raising
* base to the exp power, reduced modulo mod. If we had base in
* register b, exp in register e, and mod in register m then this
* is conceptually equivalent to "lble^lm%", but it is implemented
* in a more efficient manner, and can handle arbritrarily large
* values for exp.
*/
dc_triop(dc_modexp, dc_scale);
break;
case '^': /* exponientiation of the top two stack elements */
dc_binop(dc_exp, dc_scale);
break;
case '<':
/* eval register named by peekc if
* less-than holds for top two stack elements
*/
if (peekc == EOF)
return DC_EOF_ERROR;
if ( (dc_cmpop() < 0) == !negcmp )
if (dc_register_get(peekc, &datum) == DC_SUCCESS)
if (dc_eval_and_free_str(datum) == DC_QUIT)
return DC_QUIT;
return DC_EATONE;
case '=':
/* eval register named by peekc if
* equal-to holds for top two stack elements
*/
if (peekc == EOF)
return DC_EOF_ERROR;
if ( (dc_cmpop() == 0) == !negcmp )
if (dc_register_get(peekc, &datum) == DC_SUCCESS)
if (dc_eval_and_free_str(datum) == DC_QUIT)
return DC_QUIT;
return DC_EATONE;
case '>':
/* eval register named by peekc if
* greater-than holds for top two stack elements
*/
if (peekc == EOF)
return DC_EOF_ERROR;
if ( (dc_cmpop() > 0) == !negcmp )
if (dc_register_get(peekc, &datum) == DC_SUCCESS)
if (dc_eval_and_free_str(datum) == DC_QUIT)
return DC_QUIT;
return DC_EATONE;
case '?': /* read a line from standard-input and eval it */
if (stdin_lookahead != EOF){
ungetc(stdin_lookahead, stdin);
stdin_lookahead = EOF;
}
if (dc_eval_and_free_str(dc_readstring(stdin, '\n', '\n')) == DC_QUIT)
return DC_QUIT;
return DC_OKAY;
case '[': /* read to balancing ']' into a dc_str */
return DC_STR;
case '!': /* read to newline and call system() on resulting string */
if (peekc == '<' || peekc == '=' || peekc == '>')
return DC_NEGCMP;
return DC_SYSTEM;
case '#': /* comment; skip remainder of current line */
return DC_COMMENT;
case 'a': /* Convert top of stack to an ascii character. */
if (dc_pop(&datum) == DC_SUCCESS){
char tmps;
if (datum.dc_type == DC_NUMBER){
tmps = (char) dc_num2int(datum.v.number, DC_TOSS);
}else if (datum.dc_type == DC_STRING){
tmps = *dc_str2charp(datum.v.string);
dc_free_str(&datum.v.string);
}else{
dc_garbage("at top of stack", -1);
}
dc_push(dc_makestring(&tmps, 1));
}
break;
case 'c': /* clear whole stack */
dc_clear_stack();
break;
case 'd': /* duplicate the datum on the top of stack */
if (dc_top_of_stack(&datum) == DC_SUCCESS)
dc_push(dc_dup(datum));
break;
case 'f': /* print list of all stack items */
dc_printall(dc_obase);
break;
case 'i': /* set input base to value on top of stack */
if (dc_pop(&datum) == DC_SUCCESS){
tmpint = 0;
if (datum.dc_type == DC_NUMBER)
tmpint = dc_num2int(datum.v.number, DC_TOSS);
if ( ! (2 <= tmpint && tmpint <= DC_IBASE_MAX) )
fprintf(stderr,
"%s: input base must be a number \
between 2 and %d (inclusive)\n",
progname, DC_IBASE_MAX);
else
dc_ibase = tmpint;
}
break;
case 'k': /* set scale to value on top of stack */
if (dc_pop(&datum) == DC_SUCCESS){
tmpint = -1;
if (datum.dc_type == DC_NUMBER)
tmpint = dc_num2int(datum.v.number, DC_TOSS);
if ( ! (tmpint >= 0) )
fprintf(stderr,
"%s: scale must be a nonnegative number\n",
progname);
else
dc_scale = tmpint;
}
break;
case 'l': /* "load" -- push value on top of register stack named
* by peekc onto top of evaluation stack; does not
* modify the register stack
*/
if (peekc == EOF)
return DC_EOF_ERROR;
if (dc_register_get(peekc, &datum) == DC_SUCCESS)
dc_push(datum);
return DC_EATONE;
case 'n': /* print the value popped off of top-of-stack;
* do not add a trailing newline
*/
if (dc_pop(&datum) == DC_SUCCESS)
dc_print(datum, dc_obase, DC_NONL, DC_TOSS);
break;
case 'o': /* set output base to value on top of stack */
if (dc_pop(&datum) == DC_SUCCESS){
tmpint = 0;
if (datum.dc_type == DC_NUMBER)
tmpint = dc_num2int(datum.v.number, DC_TOSS);
if ( ! (tmpint > 1) )
fprintf(stderr,
"%s: output base must be a number greater than 1\n",
progname);
else
dc_obase = tmpint;
}
break;
case 'p': /* print the datum on the top of stack,
* with a trailing newline
*/
if (dc_top_of_stack(&datum) == DC_SUCCESS)
dc_print(datum, dc_obase, DC_WITHNL, DC_KEEP);
break;
case 'q': /* quit two levels of evaluation, posibly exiting program */
unwind_depth = 1; /* the return below is the first level of returns */
unwind_noexit = DC_FALSE;
return DC_QUIT;
case 'r': /* rotate (swap) the top two elements on the stack
*/
if (dc_pop(&datum) == DC_SUCCESS) {
dc_data datum2;
int two_status;
two_status = dc_pop(&datum2);
dc_push(datum);
if (two_status == DC_SUCCESS)
dc_push(datum2);
}
break;
case 's': /* "store" -- replace top of register stack named
* by peekc with the value popped from the top
* of the evaluation stack
*/
if (peekc == EOF)
return DC_EOF_ERROR;
if (dc_pop(&datum) == DC_SUCCESS)
dc_register_set(peekc, datum);
return DC_EATONE;
case 'v': /* replace top of stack with its square root */
if (dc_pop(&datum) == DC_SUCCESS){
dc_num tmpnum;
if (datum.dc_type != DC_NUMBER){
fprintf(stderr,
"%s: square root of nonnumeric attempted\n",
progname);
}else if (dc_sqrt(datum.v.number, dc_scale, &tmpnum) == DC_SUCCESS){
dc_free_num(&datum.v.number);
datum.v.number = tmpnum;
dc_push(datum);
}
}
break;
case 'x': /* eval the datum popped from top of stack */
if (dc_pop(&datum) == DC_SUCCESS){
if (datum.dc_type == DC_STRING){
if (dc_eval_and_free_str(datum) == DC_QUIT)
return DC_QUIT;
}else if (datum.dc_type == DC_NUMBER){
dc_push(datum);
}else{
dc_garbage("at top of stack", -1);
}
}
break;
case 'z': /* push the current stack depth onto the top of stack */
dc_push(dc_int2data(dc_tell_stackdepth()));
break;
case 'I': /* push the current input base onto the stack */
dc_push(dc_int2data(dc_ibase));
break;
case 'K': /* push the current scale onto the stack */
dc_push(dc_int2data(dc_scale));
break;
case 'L': /* pop a value off of register stack named by peekc
* and push it onto the evaluation stack
*/
if (peekc == EOF)
return DC_EOF_ERROR;
if (dc_register_pop(peekc, &datum) == DC_SUCCESS)
dc_push(datum);
return DC_EATONE;
case 'O': /* push the current output base onto the stack */
dc_push(dc_int2data(dc_obase));
break;
case 'P':
/* Pop the value off the top of a stack. If it is
* a number, dump out the integer portion of its
* absolute value as a "base UCHAR_MAX+1" byte stream;
* if it is a string, just print it.
* In either case, do not append a trailing newline.
*/
if (dc_pop(&datum) == DC_SUCCESS){
if (datum.dc_type == DC_NUMBER)
dc_dump_num(datum.v.number, DC_TOSS);
else if (datum.dc_type == DC_STRING)
dc_out_str(datum.v.string, DC_NONL, DC_TOSS);
else
dc_garbage("at top of stack", -1);
}
break;
case 'Q': /* quit out of top-of-stack nested evals;
* pops value from stack;
* does not exit program (stops short if necessary)
*/
if (dc_pop(&datum) == DC_SUCCESS){
unwind_depth = 0;
unwind_noexit = DC_TRUE;
if (datum.dc_type == DC_NUMBER)
unwind_depth = dc_num2int(datum.v.number, DC_TOSS);
if (unwind_depth-- > 0)
return DC_QUIT;
unwind_depth = 0; /* paranoia */
fprintf(stderr,
"%s: Q command requires a number >= 1\n",
progname);
}
break;
#if 0
case 'R': /* pop a value off of the evaluation stack,;
* rotate the top
remaining stack elements that many
* places forward (negative numbers mean rotate
* backward).
*/
if (dc_pop(&datum) == DC_SUCCESS){
tmpint = 0;
if (datum.dc_type == DC_NUMBER)
tmpint = dc_num2int(datum.v.number, DC_TOSS);
dc_stack_rotate(tmpint);
}
break;
#endif
case 'S': /* pop a value off of the evaluation stack
* and push it onto the register stack named by peekc
*/
if (peekc == EOF)
return DC_EOF_ERROR;
if (dc_pop(&datum) == DC_SUCCESS)
dc_register_push(peekc, datum);
return DC_EATONE;
case 'X': /* replace the number on top-of-stack with its scale factor */
if (dc_pop(&datum) == DC_SUCCESS){
tmpint = 0;
if (datum.dc_type == DC_NUMBER)
tmpint = dc_tell_scale(datum.v.number, DC_TOSS);
dc_push(dc_int2data(tmpint));
}
break;
case 'Z': /* replace the datum on the top-of-stack with its length */
if (dc_pop(&datum) == DC_SUCCESS)
dc_push(dc_int2data(dc_tell_length(datum, DC_TOSS)));
break;
case ':': /* store into array */
if (peekc == EOF)
return DC_EOF_ERROR;
if (dc_pop(&datum) == DC_SUCCESS){
tmpint = -1;
if (datum.dc_type == DC_NUMBER)
tmpint = dc_num2int(datum.v.number, DC_TOSS);
if (dc_pop(&datum) == DC_SUCCESS){
if (tmpint < 0)
fprintf(stderr,
"%s: array index must be a nonnegative integer\n",
progname);
else
dc_array_set(peekc, tmpint, datum);
}
}
return DC_EATONE;
case ';': /* retreive from array */
if (peekc == EOF)
return DC_EOF_ERROR;
if (dc_pop(&datum) == DC_SUCCESS){
tmpint = -1;
if (datum.dc_type == DC_NUMBER)
tmpint = dc_num2int(datum.v.number, DC_TOSS);
if (tmpint < 0)
fprintf(stderr,
"%s: array index must be a nonnegative integer\n",
progname);
else
dc_push(dc_array_get(peekc, tmpint));
}
return DC_EATONE;
default: /* What did that user mean? */
fprintf(stderr, "%s: ", progname);
dc_show_id(stdout, c, " unimplemented\n");
break;
}
return DC_OKAY;
}
/* takes a string and evals it */
int
dc_evalstr DC_DECLARG((string))
dc_data string DC_DECLEND
{
const char *s;
const char *end;
const char *p;
size_t len;
int c;
int peekc;
int count;
int negcmp;
int next_negcmp = 0;
if (string.dc_type != DC_STRING){
fprintf(stderr,
"%s: eval called with non-string argument\n",
progname);
return DC_OKAY;
}
s = dc_str2charp(string.v.string);
end = s + dc_strlen(string.v.string);
while (s < end){
c = *(const unsigned char *)s++;
peekc = EOF;
if (s < end)
peekc = *(const unsigned char *)s;
negcmp = next_negcmp;
next_negcmp = 0;
switch (dc_func(c, peekc, negcmp)){
case DC_OKAY:
break;
case DC_EATONE:
if (peekc != EOF)
++s;
break;
case DC_QUIT:
if (unwind_depth > 0){
--unwind_depth;
return DC_QUIT;
}
return DC_OKAY;
case DC_INT:
input_str_string = s - 1;
dc_push(dc_getnum(input_str, dc_ibase, &peekc));
s = input_str_string;
if (peekc != EOF)
--s;
break;
case DC_STR:
count = 1;
for (p=s; p<end && count>0; ++p)
if (*p == ']')
--count;
else if (*p == '[')
++count;
len = p - s;
dc_push(dc_makestring(s, len-1));
s = p;
break;
case DC_SYSTEM:
s = dc_system(s);
case DC_COMMENT:
s = memchr(s, '\n', (size_t)(end-s));
if (!s)
s = end;
else
++s;
break;
case DC_NEGCMP:
next_negcmp = 1;
break;
case DC_EOF_ERROR:
fprintf(stderr, "%s: unexpected EOS\n", progname);
return DC_OKAY;
}
}
return DC_OKAY;
}
/* This is the main function of the whole DC program.
* Reads the file described by fp, calls dc_func to do
* the dirty work, and takes care of dc_func's shortcomings.
*/
int
dc_evalfile DC_DECLARG((fp))
FILE *fp DC_DECLEND
{
int c;
int peekc;
int negcmp;
int next_negcmp = 0;
dc_data datum;
stdin_lookahead = EOF;
for (c=getc(fp); c!=EOF; c=peekc){
peekc = getc(fp);
/*
* The following if() is the only place where ``stdin_lookahead''
* might be set to other than EOF:
*/
if (fp == stdin)
stdin_lookahead = peekc;
negcmp = next_negcmp;
next_negcmp = 0;
switch (dc_func(c, peekc, negcmp)){
case DC_OKAY:
if (stdin_lookahead != peekc && fp == stdin)
peekc = getc(fp);
break;
case DC_EATONE:
peekc = getc(fp);
break;
case DC_QUIT:
if (unwind_noexit != DC_TRUE)
return DC_SUCCESS;
fprintf(stderr,
"%s: Q command argument exceeded string execution depth\n",
progname);
if (stdin_lookahead != peekc && fp == stdin)
peekc = getc(fp);
break;
case DC_INT:
input_fil_fp = fp;
input_pushback = c;
ungetc(peekc, fp);
dc_push(dc_getnum(input_fil, dc_ibase, &peekc));
break;
case DC_STR:
ungetc(peekc, fp);
datum = dc_readstring(fp, '[', ']');
dc_push(datum);
peekc = getc(fp);
break;
case DC_SYSTEM:
ungetc(peekc, fp);
datum = dc_readstring(stdin, '\n', '\n');
(void)dc_system(dc_str2charp(datum.v.string));
dc_free_str(&datum.v.string);
peekc = getc(fp);
break;
case DC_COMMENT:
while (peekc!=EOF && peekc!='\n')
peekc = getc(fp);
if (peekc != EOF)
peekc = getc(fp);
break;
case DC_NEGCMP:
next_negcmp = 1;
break;
case DC_EOF_ERROR:
fprintf(stderr, "%s: unexpected EOF\n", progname);
return DC_FAIL;
}
}
return DC_SUCCESS;
}
+179
View File
@@ -0,0 +1,179 @@
/*
* misc. functions for the "dc" Desk Calculator language.
*
* Copyright (C) 1994, 1997, 1998, 2000 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 2, 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, you can either send email to this
* program's author (see below) or write to:
* The Free Software Foundation, Inc.
* 59 Temple Place, Suite 330
* Boston, MA 02111 USA
*/
/* This module contains miscelaneous functions that have no
* special knowledge of any private data structures.
* They could all be moved to their own separate modules, but
* are agglomerated here for convenience.
*/
#include "config.h"
#include <stdio.h>
#ifdef HAVE_STDLIB_H
# include <stdlib.h>
#endif
#ifdef HAVE_STRING_H
# include <string.h>
#else
# ifdef HAVE_STRINGS_H
# include <strings.h>
# endif
#endif
#include <ctype.h>
#ifndef isgraph
# ifndef HAVE_ISGRAPH
# define isgraph isprint
# endif
#endif
#include <getopt.h>
#include "dc.h"
#include "dc-proto.h"
#ifndef EXIT_FAILURE /* C89 <stdlib.h> */
# define EXIT_FAILURE 1
#endif
/* print an "out of memory" diagnostic and exit program */
void
dc_memfail DC_DECLVOID()
{
fprintf(stderr, "%s: out of memory\n", progname);
exit(EXIT_FAILURE);
}
/* malloc or die */
void *
dc_malloc DC_DECLARG((len))
size_t len DC_DECLEND
{
void *result = malloc(len);
if (!result)
dc_memfail();
return result;
}
/* print the id in a human-understandable form
* fp is the output stream to place the output on
* id is the name of the register (or command) to be printed
* suffix is a modifier (such as "stack") to be printed
*/
void
dc_show_id DC_DECLARG((fp, id, suffix))
FILE *fp DC_DECLSEP
int id DC_DECLSEP
const char *suffix DC_DECLEND
{
if (isgraph(id))
fprintf(fp, "'%c' (%#o)%s", id, id, suffix);
else
fprintf(fp, "%#o%s", id, suffix);
}
/* report that corrupt data has been detected;
* use the msg and regid (if nonnegative) to give information
* about where the garbage was found,
*
* will abort() so that a debugger might be used to help find
* the bug
*/
/* If this routine is called, then there is a bug in the code;
* i.e. it is _not_ a data or user error
*/
void
dc_garbage DC_DECLARG((msg, regid))
const char *msg DC_DECLSEP
int regid DC_DECLEND
{
if (regid < 0) {
fprintf(stderr, "%s: garbage %s\n", progname, msg);
} else {
fprintf(stderr, "%s:%s register ", progname, msg);
dc_show_id(stderr, regid, " is garbage\n");
}
abort();
}
/* call system() with the passed string;
* if the string contains a newline, terminate the string
* there before calling system.
* Return a pointer to the first unused character in the string
* (i.e. past the '\n' if there was one, to the '\0' otherwise).
*/
const char *
dc_system DC_DECLARG((s))
const char *s DC_DECLEND
{
const char *p;
char *tmpstr;
size_t len;
p = strchr(s, '\n');
if (p) {
len = p - s;
tmpstr = dc_malloc(len + 1);
strncpy(tmpstr, s, len);
tmpstr[len] = '\0';
system(tmpstr);
free(tmpstr);
return p + 1;
}
system(s);
return s + strlen(s);
}
/* print out the indicated value */
void
dc_print DC_DECLARG((value, obase, newline_p, discard_p))
dc_data value DC_DECLSEP
int obase DC_DECLSEP
dc_newline newline_p DC_DECLSEP
dc_discard discard_p DC_DECLEND
{
if (value.dc_type == DC_NUMBER) {
dc_out_num(value.v.number, obase, newline_p, discard_p);
} else if (value.dc_type == DC_STRING) {
dc_out_str(value.v.string, newline_p, discard_p);
} else {
dc_garbage("in data being printed", -1);
}
}
/* return a duplicate of the passed value, regardless of type */
dc_data
dc_dup DC_DECLARG((value))
dc_data value DC_DECLEND
{
if (value.dc_type!=DC_NUMBER && value.dc_type!=DC_STRING)
dc_garbage("in value being duplicated", -1);
if (value.dc_type == DC_NUMBER)
return dc_dup_num(value.v.number);
/*else*/
return dc_dup_str(value.v.string);
}
+600
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@@ -0,0 +1,600 @@
/*
* interface dc to the bc numeric routines
*
* Copyright (C) 1994, 1997, 1998, 2000 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 2, 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, you can either send email to this
* program's author (see below) or write to:
* The Free Software Foundation, Inc.
* 59 Temple Place, Suite 330
* Boston, MA 02111 USA
*/
/* This should be the only module that knows the internals of type dc_num */
/* In this particular implementation we just slather out some glue and
* make use of bc's numeric routines.
*/
#include "config.h"
#include <stdio.h>
#include <ctype.h>
#ifdef HAVE_LIMITS_H
# include <limits.h>
#else
# define UCHAR_MAX ((unsigned char)~0)
#endif
#include <stdlib.h>
#include "number.h"
#include "dc.h"
#include "dc-proto.h"
#ifdef __GNUC__
# if __GNUC__ > 2 || (__GNUC__ == 2 && __GNUC_MINOR__-0 >= 7)
# define ATTRIB(x) __attribute__(x)
# endif
#endif
#ifndef ATTRIB
# define ATTRIB(x)
#endif
/* Forward prototype */
static void out_char (int);
/* there is no POSIX standard for dc, so we'll take the GNU definitions */
int std_only = FALSE;
/* convert an opaque dc_num into a real bc_num */
#define CastNum(x) ((bc_num)(x))
/* add two dc_nums, place into *result;
* return DC_SUCCESS on success, DC_DOMAIN_ERROR on domain error
*/
int
dc_add DC_DECLARG((a, b, kscale, result))
dc_num a DC_DECLSEP
dc_num b DC_DECLSEP
int kscale ATTRIB((unused)) DC_DECLSEP
dc_num *result DC_DECLEND
{
bc_init_num((bc_num *)result);
bc_add(CastNum(a), CastNum(b), (bc_num *)result, 0);
return DC_SUCCESS;
}
/* subtract two dc_nums, place into *result;
* return DC_SUCCESS on success, DC_DOMAIN_ERROR on domain error
*/
int
dc_sub DC_DECLARG((a, b, kscale, result))
dc_num a DC_DECLSEP
dc_num b DC_DECLSEP
int kscale ATTRIB((unused)) DC_DECLSEP
dc_num *result DC_DECLEND
{
bc_init_num((bc_num *)result);
bc_sub(CastNum(a), CastNum(b), (bc_num *)result, 0);
return DC_SUCCESS;
}
/* multiply two dc_nums, place into *result;
* return DC_SUCCESS on success, DC_DOMAIN_ERROR on domain error
*/
int
dc_mul DC_DECLARG((a, b, kscale, result))
dc_num a DC_DECLSEP
dc_num b DC_DECLSEP
int kscale DC_DECLSEP
dc_num *result DC_DECLEND
{
bc_init_num((bc_num *)result);
bc_multiply(CastNum(a), CastNum(b), (bc_num *)result, kscale);
return DC_SUCCESS;
}
/* divide two dc_nums, place into *result;
* return DC_SUCCESS on success, DC_DOMAIN_ERROR on domain error
*/
int
dc_div DC_DECLARG((a, b, kscale, result))
dc_num a DC_DECLSEP
dc_num b DC_DECLSEP
int kscale DC_DECLSEP
dc_num *result DC_DECLEND
{
bc_init_num((bc_num *)result);
if (bc_divide(CastNum(a), CastNum(b), (bc_num *)result, kscale)){
fprintf(stderr, "%s: divide by zero\n", progname);
return DC_DOMAIN_ERROR;
}
return DC_SUCCESS;
}
/* divide two dc_nums, place quotient into *quotient and remainder
* into *remainder;
* return DC_SUCCESS on success, DC_DOMAIN_ERROR on domain error
*/
int
dc_divrem DC_DECLARG((a, b, kscale, quotient, remainder))
dc_num a DC_DECLSEP
dc_num b DC_DECLSEP
int kscale DC_DECLSEP
dc_num *quotient DC_DECLSEP
dc_num *remainder DC_DECLEND
{
bc_init_num((bc_num *)quotient);
bc_init_num((bc_num *)remainder);
if (bc_divmod(CastNum(a), CastNum(b),
(bc_num *)quotient, (bc_num *)remainder, kscale)){
fprintf(stderr, "%s: divide by zero\n", progname);
return DC_DOMAIN_ERROR;
}
return DC_SUCCESS;
}
/* place the reminder of dividing a by b into *result;
* return DC_SUCCESS on success, DC_DOMAIN_ERROR on domain error
*/
int
dc_rem DC_DECLARG((a, b, kscale, result))
dc_num a DC_DECLSEP
dc_num b DC_DECLSEP
int kscale DC_DECLSEP
dc_num *result DC_DECLEND
{
bc_init_num((bc_num *)result);
if (bc_modulo(CastNum(a), CastNum(b), (bc_num *)result, kscale)){
fprintf(stderr, "%s: remainder by zero\n", progname);
return DC_DOMAIN_ERROR;
}
return DC_SUCCESS;
}
int
dc_modexp DC_DECLARG((base, expo, mod, kscale, result))
dc_num base DC_DECLSEP
dc_num expo DC_DECLSEP
dc_num mod DC_DECLSEP
int kscale DC_DECLSEP
dc_num *result DC_DECLEND
{
bc_init_num((bc_num *)result);
if (bc_raisemod(CastNum(base), CastNum(expo), CastNum(mod),
(bc_num *)result, kscale)){
if (bc_is_zero(CastNum(mod)))
fprintf(stderr, "%s: remainder by zero\n", progname);
return DC_DOMAIN_ERROR;
}
return DC_SUCCESS;
}
/* place the result of exponentiationg a by b into *result;
* return DC_SUCCESS on success, DC_DOMAIN_ERROR on domain error
*/
int
dc_exp DC_DECLARG((a, b, kscale, result))
dc_num a DC_DECLSEP
dc_num b DC_DECLSEP
int kscale DC_DECLSEP
dc_num *result DC_DECLEND
{
bc_init_num((bc_num *)result);
bc_raise(CastNum(a), CastNum(b), (bc_num *)result, kscale);
return DC_SUCCESS;
}
/* take the square root of the value, place into *result;
* return DC_SUCCESS on success, DC_DOMAIN_ERROR on domain error
*/
int
dc_sqrt DC_DECLARG((value, kscale, result))
dc_num value DC_DECLSEP
int kscale DC_DECLSEP
dc_num *result DC_DECLEND
{
bc_num tmp;
tmp = bc_copy_num(CastNum(value));
if (!bc_sqrt(&tmp, kscale)){
fprintf(stderr, "%s: square root of negative number\n", progname);
bc_free_num(&tmp);
return DC_DOMAIN_ERROR;
}
*((bc_num *)result) = tmp;
return DC_SUCCESS;
}
/* compare dc_nums a and b;
* return a negative value if a < b;
* return a positive value if a > b;
* return zero value if a == b
*/
int
dc_compare DC_DECLARG((a, b))
dc_num a DC_DECLSEP
dc_num b DC_DECLEND
{
return bc_compare(CastNum(a), CastNum(b));
}
/* attempt to convert a dc_num to its corresponding int value
* If discard_p is DC_TOSS then deallocate the value after use.
*/
int
dc_num2int DC_DECLARG((value, discard_p))
dc_num value DC_DECLSEP
dc_discard discard_p DC_DECLEND
{
long result;
result = bc_num2long(CastNum(value));
if (discard_p == DC_TOSS)
dc_free_num(&value);
return (int)result;
}
/* convert a C integer value into a dc_num */
/* For convenience of the caller, package the dc_num
* into a dc_data result.
*/
dc_data
dc_int2data DC_DECLARG((value))
int value DC_DECLEND
{
dc_data result;
bc_init_num((bc_num *)&result.v.number);
bc_int2num((bc_num *)&result.v.number, value);
result.dc_type = DC_NUMBER;
return result;
}
/* get a dc_num from some input stream;
* input is a function which knows how to read the desired input stream
* ibase is the input base (2<=ibase<=DC_IBASE_MAX)
* *readahead will be set to the readahead character consumed while
* looking for the end-of-number
*/
/* For convenience of the caller, package the dc_num
* into a dc_data result.
*/
dc_data
dc_getnum DC_DECLARG((input, ibase, readahead))
int (*input) DC_PROTO((void)) DC_DECLSEP
int ibase DC_DECLSEP
int *readahead DC_DECLEND
{
bc_num base;
bc_num result;
bc_num build;
bc_num tmp;
bc_num divisor;
dc_data full_result;
int negative = 0;
int digit;
int decimal;
int c;
bc_init_num(&tmp);
bc_init_num(&build);
bc_init_num(&base);
result = bc_copy_num(_zero_);
bc_int2num(&base, ibase);
c = (*input)();
while (isspace(c))
c = (*input)();
if (c == '_' || c == '-'){
negative = c;
c = (*input)();
}else if (c == '+'){
c = (*input)();
}
while (isspace(c))
c = (*input)();
for (;;){
if (isdigit(c))
digit = c - '0';
else if ('A' <= c && c <= 'F')
digit = 10 + c - 'A';
else
break;
c = (*input)();
bc_int2num(&tmp, digit);
bc_multiply(result, base, &result, 0);
bc_add(result, tmp, &result, 0);
}
if (c == '.'){
bc_free_num(&build);
bc_free_num(&tmp);
divisor = bc_copy_num(_one_);
build = bc_copy_num(_zero_);
decimal = 0;
for (;;){
c = (*input)();
if (isdigit(c))
digit = c - '0';
else if ('A' <= c && c <= 'F')
digit = 10 + c - 'A';
else
break;
bc_int2num(&tmp, digit);
bc_multiply(build, base, &build, 0);
bc_add(build, tmp, &build, 0);
bc_multiply(divisor, base, &divisor, 0);
++decimal;
}
bc_divide(build, divisor, &build, decimal);
bc_add(result, build, &result, 0);
}
/* Final work. */
if (negative)
bc_sub(_zero_, result, &result, 0);
bc_free_num(&tmp);
bc_free_num(&build);
bc_free_num(&base);
if (readahead)
*readahead = c;
full_result.v.number = (dc_num)result;
full_result.dc_type = DC_NUMBER;
return full_result;
}
/* return the "length" of the number */
int
dc_numlen DC_DECLARG((value))
dc_num value DC_DECLEND
{
bc_num num = CastNum(value);
/* is this right??? */
return num->n_len + num->n_scale - (*num->n_value == '\0');
}
/* return the scale factor of the passed dc_num
* If discard_p is DC_TOSS then deallocate the value after use.
*/
int
dc_tell_scale DC_DECLARG((value, discard_p))
dc_num value DC_DECLSEP
dc_discard discard_p DC_DECLEND
{
int kscale;
kscale = CastNum(value)->n_scale;
if (discard_p == DC_TOSS)
dc_free_num(&value);
return kscale;
}
/* initialize the math subsystem */
void
dc_math_init DC_DECLVOID()
{
bc_init_numbers();
}
/* print out a dc_num in output base obase to stdout;
* if newline_p is DC_WITHNL, terminate output with a '\n';
* if discard_p is DC_TOSS then deallocate the value after use
*/
void
dc_out_num DC_DECLARG((value, obase, newline_p, discard_p))
dc_num value DC_DECLSEP
int obase DC_DECLSEP
dc_newline newline_p DC_DECLSEP
dc_discard discard_p DC_DECLEND
{
out_char('\0'); /* clear the column counter */
bc_out_num(CastNum(value), obase, out_char, 0);
if (newline_p == DC_WITHNL)
putchar ('\n');
if (discard_p == DC_TOSS)
dc_free_num(&value);
}
/* dump out the absolute value of the integer part of a
* dc_num as a byte stream, without any line wrapping;
* if discard_p is DC_TOSS then deallocate the value after use
*/
void
dc_dump_num DC_DECLARG((dcvalue, discard_p))
dc_num dcvalue DC_DECLSEP
dc_discard discard_p DC_DECLEND
{
struct digit_stack { int digit; struct digit_stack *link;};
struct digit_stack *top_of_stack = NULL;
struct digit_stack *cur;
struct digit_stack *next;
bc_num value;
bc_num obase;
bc_num digit;
bc_init_num(&value);
bc_init_num(&obase);
bc_init_num(&digit);
/* we only handle the integer portion: */
bc_divide(CastNum(dcvalue), _one_, &value, 0);
/* we only handle the absolute value: */
value->n_sign = PLUS;
/* we're done with the dcvalue parameter: */
if (discard_p == DC_TOSS)
dc_free_num(&dcvalue);
bc_int2num(&obase, 1+UCHAR_MAX);
do {
(void) bc_divmod(value, obase, &value, &digit, 0);
cur = dc_malloc(sizeof *cur);
cur->digit = (int)bc_num2long(digit);
cur->link = top_of_stack;
top_of_stack = cur;
} while (!bc_is_zero(value));
for (cur=top_of_stack; cur; cur=next) {
putchar(cur->digit);
next = cur->link;
free(cur);
}
bc_free_num(&digit);
bc_free_num(&obase);
bc_free_num(&value);
}
/* deallocate an instance of a dc_num */
void
dc_free_num DC_DECLARG((value))
dc_num *value DC_DECLEND
{
bc_free_num((bc_num *)value);
}
/* return a duplicate of the number in the passed value */
/* The mismatched data types forces the caller to deal with
* bad dc_type'd dc_data values, and makes it more convenient
* for the caller to not have to do the grunge work of setting
* up a dc_type result.
*/
dc_data
dc_dup_num DC_DECLARG((value))
dc_num value DC_DECLEND
{
dc_data result;
++CastNum(value)->n_refs;
result.v.number = value;
result.dc_type = DC_NUMBER;
return result;
}
/*---------------------------------------------------------------------------\
| The rest of this file consists of stubs for bc routines called by numeric.c|
| so as to minimize the amount of bc code needed to build dc. |
| The bulk of the code was just lifted straight out of the bc source. |
\---------------------------------------------------------------------------*/
#ifdef HAVE_STDLIB_H
# include <stdlib.h>
#endif
#ifdef HAVE_STDARG_H
# include <stdarg.h>
#else
# include <varargs.h>
#endif
int out_col = 0;
/* Output routines: Write a character CH to the standard output.
It keeps track of the number of characters output and may
break the output with a "\<cr>". */
static void
out_char (ch)
int ch;
{
if (ch == '\0')
{
out_col = 0;
}
else
{
out_col++;
if (out_col == 70)
{
putchar ('\\');
putchar ('\n');
out_col = 1;
}
putchar (ch);
}
}
/* Malloc could not get enough memory. */
void
out_of_memory()
{
dc_memfail();
}
/* Runtime error will print a message and stop the machine. */
#ifdef HAVE_STDARG_H
#ifdef __STDC__
void
rt_error (char *mesg, ...)
#else
void
rt_error (mesg)
char *mesg;
#endif
#else
void
rt_error (mesg, va_alist)
char *mesg;
#endif
{
va_list args;
fprintf (stderr, "Runtime error: ");
#ifdef HAVE_STDARG_H
va_start (args, mesg);
#else
va_start (args);
#endif
vfprintf (stderr, mesg, args);
va_end (args);
fprintf (stderr, "\n");
}
/* A runtime warning tells of some action taken by the processor that
may change the program execution but was not enough of a problem
to stop the execution. */
#ifdef HAVE_STDARG_H
#ifdef __STDC__
void
rt_warn (char *mesg, ...)
#else
void
rt_warn (mesg)
char *mesg;
#endif
#else
void
rt_warn (mesg, va_alist)
char *mesg;
#endif
{
va_list args;
fprintf (stderr, "Runtime warning: ");
#ifdef HAVE_STDARG_H
va_start (args, mesg);
#else
va_start (args);
#endif
vfprintf (stderr, mesg, args);
va_end (args);
fprintf (stderr, "\n");
}
+494
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@@ -0,0 +1,494 @@
/*
* implement stack functions for dc
*
* Copyright (C) 1994, 1997, 1998 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 2, 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, you can either send email to this
* program's author (see below) or write to:
*
* The Free Software Foundation, Inc.
* 59 Temple Place, Suite 330
* Boston, MA 02111 USA
*/
/* This module is the only one that knows what stacks (both the
* regular evaluation stack and the named register stacks)
* look like.
*/
#include "config.h"
#include <stdio.h>
#ifdef HAVE_STDLIB_H
# include <stdlib.h>
#endif
#include "dc.h"
#include "dc-proto.h"
#include "dc-regdef.h"
/* an oft-used error message: */
#define Empty_Stack fprintf(stderr, "%s: stack empty\n", progname)
/* simple linked-list implementaion suffices: */
struct dc_list {
dc_data value;
struct dc_array *array; /* opaque */
struct dc_list *link;
};
typedef struct dc_list dc_list;
/* the anonymous evaluation stack */
static dc_list *dc_stack=NULL;
/* the named register stacks */
static dc_list *dc_register[DC_REGCOUNT];
/* allocate a new dc_list item */
static dc_list *
dc_alloc DC_DECLVOID()
{
dc_list *result;
result = dc_malloc(sizeof *result);
result->value.dc_type = DC_UNINITIALIZED;
result->array = NULL;
result->link = NULL;
return result;
}
/* check that there are two numbers on top of the stack,
* then call op with the popped numbers. Construct a dc_data
* value from the dc_num returned by op and push it
* on the stack.
* If the op call doesn't return DC_SUCCESS, then leave the stack
* unmodified.
*/
void
dc_binop DC_DECLARG((op, kscale))
int (*op)DC_PROTO((dc_num, dc_num, int, dc_num *)) DC_DECLSEP
int kscale DC_DECLEND
{
dc_data a;
dc_data b;
dc_data r;
if (!dc_stack || !dc_stack->link){
Empty_Stack;
return;
}
if (dc_stack->value.dc_type!=DC_NUMBER
|| dc_stack->link->value.dc_type!=DC_NUMBER){
fprintf(stderr, "%s: non-numeric value\n", progname);
return;
}
(void)dc_pop(&b);
(void)dc_pop(&a);
if ((*op)(a.v.number, b.v.number, kscale, &r.v.number) == DC_SUCCESS){
r.dc_type = DC_NUMBER;
dc_push(r);
dc_free_num(&a.v.number);
dc_free_num(&b.v.number);
}else{
/* op failed; restore the stack */
dc_push(a);
dc_push(b);
}
}
/* check that there are two numbers on top of the stack,
* then call op with the popped numbers. Construct two dc_data
* values from the dc_num's returned by op and push them
* on the stack.
* If the op call doesn't return DC_SUCCESS, then leave the stack
* unmodified.
*/
void
dc_binop2 DC_DECLARG((op, kscale))
int (*op)DC_PROTO((dc_num, dc_num, int, dc_num *, dc_num *)) DC_DECLSEP
int kscale DC_DECLEND
{
dc_data a;
dc_data b;
dc_data r1;
dc_data r2;
if (!dc_stack || !dc_stack->link){
Empty_Stack;
return;
}
if (dc_stack->value.dc_type!=DC_NUMBER
|| dc_stack->link->value.dc_type!=DC_NUMBER){
fprintf(stderr, "%s: non-numeric value\n", progname);
return;
}
(void)dc_pop(&b);
(void)dc_pop(&a);
if ((*op)(a.v.number, b.v.number, kscale,
&r1.v.number, &r2.v.number) == DC_SUCCESS){
r1.dc_type = DC_NUMBER;
dc_push(r1);
r2.dc_type = DC_NUMBER;
dc_push(r2);
dc_free_num(&a.v.number);
dc_free_num(&b.v.number);
}else{
/* op failed; restore the stack */
dc_push(a);
dc_push(b);
}
}
/* check that there are two numbers on top of the stack,
* then call dc_compare with the popped numbers.
* Return negative, zero, or positive based on the ordering
* of the two numbers.
*/
int
dc_cmpop DC_DECLVOID()
{
int result;
dc_data a;
dc_data b;
if (!dc_stack || !dc_stack->link){
Empty_Stack;
return 0;
}
if (dc_stack->value.dc_type!=DC_NUMBER
|| dc_stack->link->value.dc_type!=DC_NUMBER){
fprintf(stderr, "%s: non-numeric value\n", progname);
return 0;
}
(void)dc_pop(&b);
(void)dc_pop(&a);
result = dc_compare(b.v.number, a.v.number);
dc_free_num(&a.v.number);
dc_free_num(&b.v.number);
return result;
}
/* check that there are three numbers on top of the stack,
* then call op with the popped numbers. Construct a dc_data
* value from the dc_num returned by op and push it
* on the stack.
* If the op call doesn't return DC_SUCCESS, then leave the stack
* unmodified.
*/
void
dc_triop DC_DECLARG((op, kscale))
int (*op)DC_PROTO((dc_num, dc_num, dc_num, int, dc_num *)) DC_DECLSEP
int kscale DC_DECLEND
{
dc_data a;
dc_data b;
dc_data c;
dc_data r;
if (!dc_stack || !dc_stack->link || !dc_stack->link->link){
Empty_Stack;
return;
}
if (dc_stack->value.dc_type!=DC_NUMBER
|| dc_stack->link->value.dc_type!=DC_NUMBER
|| dc_stack->link->link->value.dc_type!=DC_NUMBER){
fprintf(stderr, "%s: non-numeric value\n", progname);
return;
}
(void)dc_pop(&c);
(void)dc_pop(&b);
(void)dc_pop(&a);
if ((*op)(a.v.number, b.v.number, c.v.number,
kscale, &r.v.number) == DC_SUCCESS){
r.dc_type = DC_NUMBER;
dc_push(r);
dc_free_num(&a.v.number);
dc_free_num(&b.v.number);
dc_free_num(&c.v.number);
}else{
/* op failed; restore the stack */
dc_push(a);
dc_push(b);
dc_push(c);
}
}
/* initialize the register stacks to their initial values */
void
dc_register_init DC_DECLVOID()
{
int i;
for (i=0; i<DC_REGCOUNT; ++i)
dc_register[i] = NULL;
}
/* clear the evaluation stack */
void
dc_clear_stack DC_DECLVOID()
{
dc_list *n;
dc_list *t;
for (n=dc_stack; n; n=t){
t = n->link;
if (n->value.dc_type == DC_NUMBER)
dc_free_num(&n->value.v.number);
else if (n->value.dc_type == DC_STRING)
dc_free_str(&n->value.v.string);
else
dc_garbage("in stack", -1);
dc_array_free(n->array);
free(n);
}
dc_stack = NULL;
}
/* push a value onto the evaluation stack */
void
dc_push DC_DECLARG((value))
dc_data value DC_DECLEND
{
dc_list *n = dc_alloc();
if (value.dc_type!=DC_NUMBER && value.dc_type!=DC_STRING)
dc_garbage("in data being pushed", -1);
n->value = value;
n->link = dc_stack;
dc_stack = n;
}
/* push a value onto the named register stack */
void
dc_register_push DC_DECLARG((stackid, value))
int stackid DC_DECLSEP
dc_data value DC_DECLEND
{
dc_list *n = dc_alloc();
stackid = regmap(stackid);
n->value = value;
n->link = dc_register[stackid];
dc_register[stackid] = n;
}
/* set *result to the value on the top of the evaluation stack */
/* The caller is responsible for duplicating the value if it
* is to be maintained as anything more than a transient identity.
*
* DC_FAIL is returned if the stack is empty (and *result unchanged),
* DC_SUCCESS is returned otherwise
*/
int
dc_top_of_stack DC_DECLARG((result))
dc_data *result DC_DECLEND
{
if (!dc_stack){
Empty_Stack;
return DC_FAIL;
}
if (dc_stack->value.dc_type!=DC_NUMBER
&& dc_stack->value.dc_type!=DC_STRING)
dc_garbage("at top of stack", -1);
*result = dc_stack->value;
return DC_SUCCESS;
}
/* set *result to a dup of the value on the top of the named register stack */
/*
* DC_FAIL is returned if the named stack is empty (and *result unchanged),
* DC_SUCCESS is returned otherwise
*/
int
dc_register_get DC_DECLARG((regid, result))
int regid DC_DECLSEP
dc_data *result DC_DECLEND
{
dc_list *r;
regid = regmap(regid);
r = dc_register[regid];
if ( ! r ){
fprintf(stderr, "%s: register ", progname);
dc_show_id(stderr, regid, " is empty\n");
return DC_FAIL;
}
*result = dc_dup(r->value);
return DC_SUCCESS;
}
/* set the top of the named register stack to the indicated value */
/* If the named stack is empty, craft a stack entry to enter the
* value into.
*/
void
dc_register_set DC_DECLARG((regid, value))
int regid DC_DECLSEP
dc_data value DC_DECLEND
{
dc_list *r;
regid = regmap(regid);
r = dc_register[regid];
if ( ! r )
dc_register[regid] = dc_alloc();
else if (r->value.dc_type == DC_NUMBER)
dc_free_num(&r->value.v.number);
else if (r->value.dc_type == DC_STRING)
dc_free_str(&r->value.v.string);
else if (r->value.dc_type == DC_UNINITIALIZED)
;
else
dc_garbage("", regid);
dc_register[regid]->value = value;
}
/* pop from the evaluation stack
*
* DC_FAIL is returned if the stack is empty (and *result unchanged),
* DC_SUCCESS is returned otherwise
*/
int
dc_pop DC_DECLARG((result))
dc_data *result DC_DECLEND
{
dc_list *r;
r = dc_stack;
if (!r){
Empty_Stack;
return DC_FAIL;
}
if (r->value.dc_type!=DC_NUMBER && r->value.dc_type!=DC_STRING)
dc_garbage("at top of stack", -1);
*result = r->value;
dc_stack = r->link;
dc_array_free(r->array);
free(r);
return DC_SUCCESS;
}
/* pop from the named register stack
*
* DC_FAIL is returned if the named stack is empty (and *result unchanged),
* DC_SUCCESS is returned otherwise
*/
int
dc_register_pop DC_DECLARG((stackid, result))
int stackid DC_DECLSEP
dc_data *result DC_DECLEND
{
dc_list *r;
stackid = regmap(stackid);
r = dc_register[stackid];
if (!r){
fprintf(stderr, "%s: stack register ", progname);
dc_show_id(stderr, stackid, " is empty\n");
return DC_FAIL;
}
if (r->value.dc_type!=DC_NUMBER && r->value.dc_type!=DC_STRING)
dc_garbage(" stack", stackid);
*result = r->value;
dc_register[stackid] = r->link;
dc_array_free(r->array);
free(r);
return DC_SUCCESS;
}
/* tell how many entries are currently on the evaluation stack */
int
dc_tell_stackdepth DC_DECLVOID()
{
dc_list *n;
int depth=0;
for (n=dc_stack; n; n=n->link)
++depth;
return depth;
}
/* return the length of the indicated data value;
* if discard_p is DC_TOSS, the deallocate the value when done
*
* The definition of a datum's length is deligated to the
* appropriate module.
*/
int
dc_tell_length DC_DECLARG((value, discard_p))
dc_data value DC_DECLSEP
dc_discard discard_p DC_DECLEND
{
int length;
if (value.dc_type == DC_NUMBER){
length = dc_numlen(value.v.number);
if (discard_p == DC_TOSS)
dc_free_num(&value.v.number);
} else if (value.dc_type == DC_STRING) {
length = dc_strlen(value.v.string);
if (discard_p == DC_TOSS)
dc_free_str(&value.v.string);
} else {
dc_garbage("in tell_length", -1);
/*NOTREACHED*/
length = 0; /*just to suppress spurious compiler warnings*/
}
return length;
}
/* print out all of the values on the evaluation stack */
void
dc_printall DC_DECLARG((obase))
int obase DC_DECLEND
{
dc_list *n;
for (n=dc_stack; n; n=n->link)
dc_print(n->value, obase, DC_WITHNL, DC_KEEP);
}
/* get the current array head for the named array */
struct dc_array *
dc_get_stacked_array DC_DECLARG((array_id))
int array_id DC_DECLEND
{
dc_list *r = dc_register[regmap(array_id)];
return r ? r->array : NULL;
}
/* set the current array head for the named array */
void
dc_set_stacked_array DC_DECLARG((array_id, new_head))
int array_id DC_DECLSEP
struct dc_array *new_head DC_DECLEND
{
dc_list *r;
array_id = regmap(array_id);
r = dc_register[array_id];
if ( ! r )
r = dc_register[array_id] = dc_alloc();
r->array = new_head;
}
+211
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@@ -0,0 +1,211 @@
/*
* implement string functions for dc
*
* Copyright (C) 1994, 1997, 1998 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 2, 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, you can either send email to this
* program's author (see below) or write to:
*
* The Free Software Foundation, Inc.
* 59 Temple Place, Suite 330
* Boston, MA 02111 USA
*/
/* This should be the only module that knows the internals of type dc_string */
#include "config.h"
#include <stdio.h>
#ifdef HAVE_STDDEF_H
# include <stddef.h> /* ptrdiff_t */
#else
# define ptrdiff_t size_t
#endif
#ifdef HAVE_STDLIB_H
# include <stdlib.h>
#endif
#ifdef HAVE_STRING_H
# include <string.h> /* memcpy */
#else
# ifdef HAVE_MEMORY_H
# include <memory.h> /* memcpy, maybe */
# else
# ifdef HAVE_STRINGS_H
# include <strings.h> /* memcpy, maybe */
# endif
# endif
#endif
#include "dc.h"
#include "dc-proto.h"
/* here is the completion of the dc_string type: */
struct dc_string {
char *s_ptr; /* pointer to base of string */
size_t s_len; /* length of counted string */
int s_refs; /* reference count to cut down on memory use by duplicates */
};
/* return a duplicate of the string in the passed value */
/* The mismatched data types forces the caller to deal with
* bad dc_type'd dc_data values, and makes it more convenient
* for the caller to not have to do the grunge work of setting
* up a dc_type result.
*/
dc_data
dc_dup_str DC_DECLARG((value))
dc_str value DC_DECLEND
{
dc_data result;
++value->s_refs;
result.v.string = value;
result.dc_type = DC_STRING;
return result;
}
/* free an instance of a dc_str value */
void
dc_free_str DC_DECLARG((value))
dc_str *value DC_DECLEND
{
struct dc_string *string = *value;
if (--string->s_refs < 1){
free(string->s_ptr);
free(string);
}
}
/* Output a dc_str value.
* Add a trailing newline if "newline" is set.
* Free the value after use if discard_flag is set.
*/
void
dc_out_str DC_DECLARG((value, newline, discard_flag))
dc_str value DC_DECLSEP
dc_newline newline DC_DECLSEP
dc_discard discard_flag DC_DECLEND
{
fwrite(value->s_ptr, value->s_len, sizeof *value->s_ptr, stdout);
if (newline == DC_WITHNL)
putchar('\n');
if (discard_flag == DC_TOSS)
dc_free_str(&value);
}
/* make a copy of a string (base s, length len)
* into a dc_str value; return a dc_data result
* with this value
*/
dc_data
dc_makestring DC_DECLARG((s, len))
const char *s DC_DECLSEP
size_t len DC_DECLEND
{
dc_data result;
struct dc_string *string;
string = dc_malloc(sizeof *string);
string->s_ptr = dc_malloc(len+1);
memcpy(string->s_ptr, s, len);
string->s_ptr[len] = '\0'; /* nul terminated for those who need it */
string->s_len = len;
string->s_refs = 1;
result.v.string = string;
result.dc_type = DC_STRING;
return result;
}
/* read a dc_str value from FILE *fp;
* if ldelim == rdelim, then read until a ldelim char or EOF is reached;
* if ldelim != rdelim, then read until a matching rdelim for the
* (already eaten) first ldelim is read.
* Return a dc_data result with the dc_str value as its contents.
*/
dc_data
dc_readstring DC_DECLARG((fp, ldelim, rdelim))
FILE *fp DC_DECLSEP
int ldelim DC_DECLSEP
int rdelim DC_DECLEND
{
static char *line_buf = NULL; /* a buffer to build the string in */
static size_t buflen = 0; /* the current size of line_buf */
int depth=1;
int c;
char *p;
const char *end;
if (!line_buf){
/* initial buflen should be large enough to handle most cases */
buflen = 2016;
line_buf = dc_malloc(buflen);
}
p = line_buf;
end = line_buf + buflen;
for (;;){
c = getc(fp);
if (c == EOF)
break;
else if (c == rdelim && --depth < 1)
break;
else if (c == ldelim)
++depth;
if (p >= end){
ptrdiff_t offset = p - line_buf;
/* buflen increment should be big enough
* to avoid execessive reallocs:
*/
buflen += 2048;
line_buf = realloc(line_buf, buflen);
if (!line_buf)
dc_memfail();
p = line_buf + offset;
end = line_buf + buflen;
}
*p++ = c;
}
return dc_makestring(line_buf, (size_t)(p-line_buf));
}
/* return the base pointer of the dc_str value;
* This function is needed because no one else knows what dc_str
* looks like.
*/
const char *
dc_str2charp DC_DECLARG((value))
dc_str value DC_DECLEND
{
return value->s_ptr;
}
/* return the length of the dc_str value;
* This function is needed because no one else knows what dc_str
* looks like, and strlen(dc_str2charp(value)) won't work
* if there's an embedded '\0'.
*/
size_t
dc_strlen DC_DECLARG((value))
dc_str value DC_DECLEND
{
return value->s_len;
}
/* initialize the strings subsystem */
void
dc_string_init DC_DECLVOID()
{
/* nothing to do for this implementation */
}
+133
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@@ -0,0 +1,133 @@
/* Declarations for getopt.
Copyright (C) 1989, 90, 91, 92, 93, 94 Free Software Foundation, Inc.
This file is part of the GNU C Library. Its master source is NOT part of
the C library, however. The master source lives in /gd/gnu/lib.
The GNU C Library is free software; you can redistribute it and/or
modify it under the terms of the GNU Library General Public License as
published by the Free Software Foundation; either version 2 of the
License, or (at your option) any later version.
The GNU C Library 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
Library General Public License for more details.
You should have received a copy of the GNU Library General Public
License along with the GNU C Library; see the file COPYING.LIB. If
not, write to the Free Software Foundation, Inc., 675 Mass Ave,
Cambridge, MA 02139, USA. */
#ifndef _GETOPT_H
#define _GETOPT_H 1
#ifdef __cplusplus
extern "C" {
#endif
/* For communication from `getopt' to the caller.
When `getopt' finds an option that takes an argument,
the argument value is returned here.
Also, when `ordering' is RETURN_IN_ORDER,
each non-option ARGV-element is returned here. */
extern char *optarg;
/* Index in ARGV of the next element to be scanned.
This is used for communication to and from the caller
and for communication between successive calls to `getopt'.
On entry to `getopt', zero means this is the first call; initialize.
When `getopt' returns EOF, this is the index of the first of the
non-option elements that the caller should itself scan.
Otherwise, `optind' communicates from one call to the next
how much of ARGV has been scanned so far. */
extern int optind;
/* Callers store zero here to inhibit the error message `getopt' prints
for unrecognized options. */
extern int opterr;
/* Set to an option character which was unrecognized. */
extern int optopt;
/* Describe the long-named options requested by the application.
The LONG_OPTIONS argument to getopt_long or getopt_long_only is a vector
of `struct option' terminated by an element containing a name which is
zero.
The field `has_arg' is:
no_argument (or 0) if the option does not take an argument,
required_argument (or 1) if the option requires an argument,
optional_argument (or 2) if the option takes an optional argument.
If the field `flag' is not NULL, it points to a variable that is set
to the value given in the field `val' when the option is found, but
left unchanged if the option is not found.
To have a long-named option do something other than set an `int' to
a compiled-in constant, such as set a value from `optarg', set the
option's `flag' field to zero and its `val' field to a nonzero
value (the equivalent single-letter option character, if there is
one). For long options that have a zero `flag' field, `getopt'
returns the contents of the `val' field. */
struct option
{
#if defined (__STDC__) && __STDC__
const char *name;
#else
char *name;
#endif
/* has_arg can't be an enum because some compilers complain about
type mismatches in all the code that assumes it is an int. */
int has_arg;
int *flag;
int val;
};
/* Names for the values of the `has_arg' field of `struct option'. */
#define no_argument 0
#define required_argument 1
#define optional_argument 2
#if defined (__STDC__) && __STDC__
#ifdef __GNU_LIBRARY__
/* Many other libraries have conflicting prototypes for getopt, with
differences in the consts, in stdlib.h. To avoid compilation
errors, only prototype getopt for the GNU C library. */
extern int getopt (int argc, char *const *argv, const char *shortopts);
#else /* not __GNU_LIBRARY__ */
extern int getopt ();
#endif /* __GNU_LIBRARY__ */
extern int getopt_long (int argc, char *const *argv, const char *shortopts,
const struct option *longopts, int *longind);
extern int getopt_long_only (int argc, char *const *argv,
const char *shortopts,
const struct option *longopts, int *longind);
/* Internal only. Users should not call this directly. */
extern int _getopt_internal (int argc, char *const *argv,
const char *shortopts,
const struct option *longopts, int *longind,
int long_only);
#else /* not __STDC__ */
extern int getopt ();
extern int getopt_long ();
extern int getopt_long_only ();
extern int _getopt_internal ();
#endif /* __STDC__ */
#ifdef __cplusplus
}
#endif
#endif /* _GETOPT_H */
+153
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@@ -0,0 +1,153 @@
/* number.h: Arbitrary precision numbers header file. */
/*
Copyright (C) 1991, 1992, 1993, 1994, 1997, 2000 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 2 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; see the file COPYING. If not, write to:
The Free Software Foundation, Inc.
59 Temple Place, Suite 330
Boston, MA 02111-1307 USA.
You may contact the author by:
e-mail: philnelson@acm.org
us-mail: Philip A. Nelson
Computer Science Department, 9062
Western Washington University
Bellingham, WA 98226-9062
*************************************************************************/
#ifndef _NUMBER_H_
#define _NUMBER_H_
typedef enum {PLUS, MINUS} sign;
typedef struct bc_struct *bc_num;
typedef struct bc_struct
{
sign n_sign;
int n_len; /* The number of digits before the decimal point. */
int n_scale; /* The number of digits after the decimal point. */
int n_refs; /* The number of pointers to this number. */
bc_num n_next; /* Linked list for available list. */
char *n_ptr; /* The pointer to the actual storage.
If NULL, n_value points to the inside of
another number (bc_multiply...) and should
not be "freed." */
char *n_value; /* The number. Not zero char terminated.
May not point to the same place as n_ptr as
in the case of leading zeros generated. */
} bc_struct;
/* The base used in storing the numbers in n_value above.
Currently this MUST be 10. */
#define BASE 10
/* Some useful macros and constants. */
#define CH_VAL(c) (c - '0')
#define BCD_CHAR(d) (d + '0')
#ifdef MIN
#undef MIN
#undef MAX
#endif
#define MAX(a,b) ((a)>(b)?(a):(b))
#define MIN(a,b) ((a)>(b)?(b):(a))
#define ODD(a) ((a)&1)
#ifndef TRUE
#define TRUE 1
#define FALSE 0
#endif
#ifndef LONG_MAX
#define LONG_MAX 0x7ffffff
#endif
/* Global numbers. */
extern bc_num _zero_;
extern bc_num _one_;
extern bc_num _two_;
/* Function Prototypes */
/* Define the _PROTOTYPE macro if it is needed. */
#ifndef _PROTOTYPE
#ifdef __STDC__
#define _PROTOTYPE(func, args) func args
#else
#define _PROTOTYPE(func, args) func()
#endif
#endif
_PROTOTYPE(void bc_init_numbers, (void));
_PROTOTYPE(bc_num bc_new_num, (int length, int scale));
_PROTOTYPE(void bc_free_num, (bc_num *num));
_PROTOTYPE(bc_num bc_copy_num, (bc_num num));
_PROTOTYPE(void bc_init_num, (bc_num *num));
_PROTOTYPE(void bc_str2num, (bc_num *num, char *str, int scale));
_PROTOTYPE(char *bc_num2str, (bc_num num));
_PROTOTYPE(void bc_int2num, (bc_num *num, int val));
_PROTOTYPE(long bc_num2long, (bc_num num));
_PROTOTYPE(int bc_compare, (bc_num n1, bc_num n2));
_PROTOTYPE(char bc_is_zero, (bc_num num));
_PROTOTYPE(char bc_is_near_zero, (bc_num num, int scale));
_PROTOTYPE(char bc_is_neg, (bc_num num));
_PROTOTYPE(void bc_add, (bc_num n1, bc_num n2, bc_num *result, int scale_min));
_PROTOTYPE(void bc_sub, (bc_num n1, bc_num n2, bc_num *result, int scale_min));
_PROTOTYPE(void bc_multiply, (bc_num n1, bc_num n2, bc_num *prod, int scale));
_PROTOTYPE(int bc_divide, (bc_num n1, bc_num n2, bc_num *quot, int scale));
_PROTOTYPE(int bc_modulo, (bc_num num1, bc_num num2, bc_num *result,
int scale));
_PROTOTYPE(int bc_divmod, (bc_num num1, bc_num num2, bc_num *quot,
bc_num *rem, int scale));
_PROTOTYPE(int bc_raisemod, (bc_num base, bc_num expo, bc_num mod,
bc_num *result, int scale));
_PROTOTYPE(void bc_raise, (bc_num num1, bc_num num2, bc_num *result,
int scale));
_PROTOTYPE(int bc_sqrt, (bc_num *num, int scale));
_PROTOTYPE(void bc_out_num, (bc_num num, int o_base, void (* out_char)(int),
int leading_zero));
#endif
+10
View File
@@ -0,0 +1,10 @@
SubDir OBOS_TOP src apps bin bc lib ;
SubDirCcFlags -DHAVE_CONFIG_H ;
SubDirHdrs [ FDirName $(SUBDIR) $(DOTDOT) ] ;
SubDirHdrs [ FDirName $(SUBDIR) $(DOTDOT) h ] ;
StaticLibrary bc :
getopt.c getopt1.c vfprintf.c number.c
;
+752
View File
@@ -0,0 +1,752 @@
/* Getopt for GNU.
NOTE: getopt is now part of the C library, so if you don't know what
"Keep this file name-space clean" means, talk to roland@gnu.ai.mit.edu
before changing it!
Copyright (C) 1987, 88, 89, 90, 91, 92, 93, 94
Free Software Foundation, Inc.
This file is part of the GNU C Library. Its master source is NOT part of
the C library, however. The master source lives in /gd/gnu/lib.
The GNU C Library is free software; you can redistribute it and/or
modify it under the terms of the GNU Library General Public License as
published by the Free Software Foundation; either version 2 of the
License, or (at your option) any later version.
The GNU C Library 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
Library General Public License for more details.
You should have received a copy of the GNU Library General Public
License along with the GNU C Library; see the file COPYING.LIB. If
not, write to the Free Software Foundation, Inc., 675 Mass Ave,
Cambridge, MA 02139, USA. */
/* This tells Alpha OSF/1 not to define a getopt prototype in <stdio.h>.
Ditto for AIX 3.2 and <stdlib.h>. */
#ifndef _NO_PROTO
#define _NO_PROTO
#endif
#ifdef HAVE_CONFIG_H
#include <config.h>
#endif
#if !defined (__STDC__) || !__STDC__
/* This is a separate conditional since some stdc systems
reject `defined (const)'. */
#ifndef const
#define const
#endif
#endif
#include <stdio.h>
/* Comment out all this code if we are using the GNU C Library, and are not
actually compiling the library itself. This code is part of the GNU C
Library, but also included in many other GNU distributions. Compiling
and linking in this code is a waste when using the GNU C library
(especially if it is a shared library). Rather than having every GNU
program understand `configure --with-gnu-libc' and omit the object files,
it is simpler to just do this in the source for each such file. */
#if defined (_LIBC) || !defined (__GNU_LIBRARY__)
/* This needs to come after some library #include
to get __GNU_LIBRARY__ defined. */
#ifdef __GNU_LIBRARY__
/* Don't include stdlib.h for non-GNU C libraries because some of them
contain conflicting prototypes for getopt. */
#include <stdlib.h>
#endif /* GNU C library. */
/* This version of `getopt' appears to the caller like standard Unix `getopt'
but it behaves differently for the user, since it allows the user
to intersperse the options with the other arguments.
As `getopt' works, it permutes the elements of ARGV so that,
when it is done, all the options precede everything else. Thus
all application programs are extended to handle flexible argument order.
Setting the environment variable POSIXLY_CORRECT disables permutation.
Then the behavior is completely standard.
GNU application programs can use a third alternative mode in which
they can distinguish the relative order of options and other arguments. */
#include "getopt.h"
/* For communication from `getopt' to the caller.
When `getopt' finds an option that takes an argument,
the argument value is returned here.
Also, when `ordering' is RETURN_IN_ORDER,
each non-option ARGV-element is returned here. */
char *optarg = NULL;
/* Index in ARGV of the next element to be scanned.
This is used for communication to and from the caller
and for communication between successive calls to `getopt'.
On entry to `getopt', zero means this is the first call; initialize.
When `getopt' returns EOF, this is the index of the first of the
non-option elements that the caller should itself scan.
Otherwise, `optind' communicates from one call to the next
how much of ARGV has been scanned so far. */
/* XXX 1003.2 says this must be 1 before any call. */
int optind = 0;
/* The next char to be scanned in the option-element
in which the last option character we returned was found.
This allows us to pick up the scan where we left off.
If this is zero, or a null string, it means resume the scan
by advancing to the next ARGV-element. */
static char *nextchar;
/* Callers store zero here to inhibit the error message
for unrecognized options. */
int opterr = 1;
/* Set to an option character which was unrecognized.
This must be initialized on some systems to avoid linking in the
system's own getopt implementation. */
int optopt = '?';
/* Describe how to deal with options that follow non-option ARGV-elements.
If the caller did not specify anything,
the default is REQUIRE_ORDER if the environment variable
POSIXLY_CORRECT is defined, PERMUTE otherwise.
REQUIRE_ORDER means don't recognize them as options;
stop option processing when the first non-option is seen.
This is what Unix does.
This mode of operation is selected by either setting the environment
variable POSIXLY_CORRECT, or using `+' as the first character
of the list of option characters.
PERMUTE is the default. We permute the contents of ARGV as we scan,
so that eventually all the non-options are at the end. This allows options
to be given in any order, even with programs that were not written to
expect this.
RETURN_IN_ORDER is an option available to programs that were written
to expect options and other ARGV-elements in any order and that care about
the ordering of the two. We describe each non-option ARGV-element
as if it were the argument of an option with character code 1.
Using `-' as the first character of the list of option characters
selects this mode of operation.
The special argument `--' forces an end of option-scanning regardless
of the value of `ordering'. In the case of RETURN_IN_ORDER, only
`--' can cause `getopt' to return EOF with `optind' != ARGC. */
static enum
{
REQUIRE_ORDER, PERMUTE, RETURN_IN_ORDER
} ordering;
/* Value of POSIXLY_CORRECT environment variable. */
static char *posixly_correct;
#ifdef __GNU_LIBRARY__
/* We want to avoid inclusion of string.h with non-GNU libraries
because there are many ways it can cause trouble.
On some systems, it contains special magic macros that don't work
in GCC. */
#include <string.h>
#define my_index strchr
#else
/* Avoid depending on library functions or files
whose names are inconsistent. */
char *getenv ();
static char *
my_index (str, chr)
const char *str;
int chr;
{
while (*str)
{
if (*str == chr)
return (char *) str;
str++;
}
return 0;
}
/* If using GCC, we can safely declare strlen this way.
If not using GCC, it is ok not to declare it. */
#ifdef __GNUC__
/* Note that Motorola Delta 68k R3V7 comes with GCC but not stddef.h.
That was relevant to code that was here before. */
#if !defined (__STDC__) || !__STDC__
/* gcc with -traditional declares the built-in strlen to return int,
and has done so at least since version 2.4.5. -- rms. */
extern int strlen (const char *);
#endif /* not __STDC__ */
#endif /* __GNUC__ */
#endif /* not __GNU_LIBRARY__ */
/* Handle permutation of arguments. */
/* Describe the part of ARGV that contains non-options that have
been skipped. `first_nonopt' is the index in ARGV of the first of them;
`last_nonopt' is the index after the last of them. */
static int first_nonopt;
static int last_nonopt;
/* Exchange two adjacent subsequences of ARGV.
One subsequence is elements [first_nonopt,last_nonopt)
which contains all the non-options that have been skipped so far.
The other is elements [last_nonopt,optind), which contains all
the options processed since those non-options were skipped.
`first_nonopt' and `last_nonopt' are relocated so that they describe
the new indices of the non-options in ARGV after they are moved. */
static void
exchange (argv)
char **argv;
{
int bottom = first_nonopt;
int middle = last_nonopt;
int top = optind;
char *tem;
/* Exchange the shorter segment with the far end of the longer segment.
That puts the shorter segment into the right place.
It leaves the longer segment in the right place overall,
but it consists of two parts that need to be swapped next. */
while (top > middle && middle > bottom)
{
if (top - middle > middle - bottom)
{
/* Bottom segment is the short one. */
int len = middle - bottom;
register int i;
/* Swap it with the top part of the top segment. */
for (i = 0; i < len; i++)
{
tem = argv[bottom + i];
argv[bottom + i] = argv[top - (middle - bottom) + i];
argv[top - (middle - bottom) + i] = tem;
}
/* Exclude the moved bottom segment from further swapping. */
top -= len;
}
else
{
/* Top segment is the short one. */
int len = top - middle;
register int i;
/* Swap it with the bottom part of the bottom segment. */
for (i = 0; i < len; i++)
{
tem = argv[bottom + i];
argv[bottom + i] = argv[middle + i];
argv[middle + i] = tem;
}
/* Exclude the moved top segment from further swapping. */
bottom += len;
}
}
/* Update records for the slots the non-options now occupy. */
first_nonopt += (optind - last_nonopt);
last_nonopt = optind;
}
/* Initialize the internal data when the first call is made. */
static const char *
_getopt_initialize (optstring)
const char *optstring;
{
/* Start processing options with ARGV-element 1 (since ARGV-element 0
is the program name); the sequence of previously skipped
non-option ARGV-elements is empty. */
first_nonopt = last_nonopt = optind = 1;
nextchar = NULL;
posixly_correct = getenv ("POSIXLY_CORRECT");
/* Determine how to handle the ordering of options and nonoptions. */
if (optstring[0] == '-')
{
ordering = RETURN_IN_ORDER;
++optstring;
}
else if (optstring[0] == '+')
{
ordering = REQUIRE_ORDER;
++optstring;
}
else if (posixly_correct != NULL)
ordering = REQUIRE_ORDER;
else
ordering = PERMUTE;
return optstring;
}
/* Scan elements of ARGV (whose length is ARGC) for option characters
given in OPTSTRING.
If an element of ARGV starts with '-', and is not exactly "-" or "--",
then it is an option element. The characters of this element
(aside from the initial '-') are option characters. If `getopt'
is called repeatedly, it returns successively each of the option characters
from each of the option elements.
If `getopt' finds another option character, it returns that character,
updating `optind' and `nextchar' so that the next call to `getopt' can
resume the scan with the following option character or ARGV-element.
If there are no more option characters, `getopt' returns `EOF'.
Then `optind' is the index in ARGV of the first ARGV-element
that is not an option. (The ARGV-elements have been permuted
so that those that are not options now come last.)
OPTSTRING is a string containing the legitimate option characters.
If an option character is seen that is not listed in OPTSTRING,
return '?' after printing an error message. If you set `opterr' to
zero, the error message is suppressed but we still return '?'.
If a char in OPTSTRING is followed by a colon, that means it wants an arg,
so the following text in the same ARGV-element, or the text of the following
ARGV-element, is returned in `optarg'. Two colons mean an option that
wants an optional arg; if there is text in the current ARGV-element,
it is returned in `optarg', otherwise `optarg' is set to zero.
If OPTSTRING starts with `-' or `+', it requests different methods of
handling the non-option ARGV-elements.
See the comments about RETURN_IN_ORDER and REQUIRE_ORDER, above.
Long-named options begin with `--' instead of `-'.
Their names may be abbreviated as long as the abbreviation is unique
or is an exact match for some defined option. If they have an
argument, it follows the option name in the same ARGV-element, separated
from the option name by a `=', or else the in next ARGV-element.
When `getopt' finds a long-named option, it returns 0 if that option's
`flag' field is nonzero, the value of the option's `val' field
if the `flag' field is zero.
The elements of ARGV aren't really const, because we permute them.
But we pretend they're const in the prototype to be compatible
with other systems.
LONGOPTS is a vector of `struct option' terminated by an
element containing a name which is zero.
LONGIND returns the index in LONGOPT of the long-named option found.
It is only valid when a long-named option has been found by the most
recent call.
If LONG_ONLY is nonzero, '-' as well as '--' can introduce
long-named options. */
int
_getopt_internal (argc, argv, optstring, longopts, longind, long_only)
int argc;
char *const *argv;
const char *optstring;
const struct option *longopts;
int *longind;
int long_only;
{
optarg = NULL;
if (optind == 0)
optstring = _getopt_initialize (optstring);
if (nextchar == NULL || *nextchar == '\0')
{
/* Advance to the next ARGV-element. */
if (ordering == PERMUTE)
{
/* If we have just processed some options following some non-options,
exchange them so that the options come first. */
if (first_nonopt != last_nonopt && last_nonopt != optind)
exchange ((char **) argv);
else if (last_nonopt != optind)
first_nonopt = optind;
/* Skip any additional non-options
and extend the range of non-options previously skipped. */
while (optind < argc
&& (argv[optind][0] != '-' || argv[optind][1] == '\0'))
optind++;
last_nonopt = optind;
}
/* The special ARGV-element `--' means premature end of options.
Skip it like a null option,
then exchange with previous non-options as if it were an option,
then skip everything else like a non-option. */
if (optind != argc && !strcmp (argv[optind], "--"))
{
optind++;
if (first_nonopt != last_nonopt && last_nonopt != optind)
exchange ((char **) argv);
else if (first_nonopt == last_nonopt)
first_nonopt = optind;
last_nonopt = argc;
optind = argc;
}
/* If we have done all the ARGV-elements, stop the scan
and back over any non-options that we skipped and permuted. */
if (optind == argc)
{
/* Set the next-arg-index to point at the non-options
that we previously skipped, so the caller will digest them. */
if (first_nonopt != last_nonopt)
optind = first_nonopt;
return EOF;
}
/* If we have come to a non-option and did not permute it,
either stop the scan or describe it to the caller and pass it by. */
if ((argv[optind][0] != '-' || argv[optind][1] == '\0'))
{
if (ordering == REQUIRE_ORDER)
return EOF;
optarg = argv[optind++];
return 1;
}
/* We have found another option-ARGV-element.
Skip the initial punctuation. */
nextchar = (argv[optind] + 1
+ (longopts != NULL && argv[optind][1] == '-'));
}
/* Decode the current option-ARGV-element. */
/* Check whether the ARGV-element is a long option.
If long_only and the ARGV-element has the form "-f", where f is
a valid short option, don't consider it an abbreviated form of
a long option that starts with f. Otherwise there would be no
way to give the -f short option.
On the other hand, if there's a long option "fubar" and
the ARGV-element is "-fu", do consider that an abbreviation of
the long option, just like "--fu", and not "-f" with arg "u".
This distinction seems to be the most useful approach. */
if (longopts != NULL
&& (argv[optind][1] == '-'
|| (long_only && (argv[optind][2] || !my_index (optstring, argv[optind][1])))))
{
char *nameend;
const struct option *p;
const struct option *pfound = NULL;
int exact = 0;
int ambig = 0;
int indfound;
int option_index;
for (nameend = nextchar; *nameend && *nameend != '='; nameend++)
/* Do nothing. */ ;
/* Test all long options for either exact match
or abbreviated matches. */
for (p = longopts, option_index = 0; p->name; p++, option_index++)
if (!strncmp (p->name, nextchar, nameend - nextchar))
{
if (nameend - nextchar == strlen (p->name))
{
/* Exact match found. */
pfound = p;
indfound = option_index;
exact = 1;
break;
}
else if (pfound == NULL)
{
/* First nonexact match found. */
pfound = p;
indfound = option_index;
}
else
/* Second or later nonexact match found. */
ambig = 1;
}
if (ambig && !exact)
{
if (opterr)
fprintf (stderr, "%s: option `%s' is ambiguous\n",
argv[0], argv[optind]);
nextchar += strlen (nextchar);
optind++;
return '?';
}
if (pfound != NULL)
{
option_index = indfound;
optind++;
if (*nameend)
{
/* Don't test has_arg with >, because some C compilers don't
allow it to be used on enums. */
if (pfound->has_arg)
optarg = nameend + 1;
else
{
if (opterr)
{
if (argv[optind - 1][1] == '-')
/* --option */
fprintf (stderr,
"%s: option `--%s' doesn't allow an argument\n",
argv[0], pfound->name);
else
/* +option or -option */
fprintf (stderr,
"%s: option `%c%s' doesn't allow an argument\n",
argv[0], argv[optind - 1][0], pfound->name);
}
nextchar += strlen (nextchar);
return '?';
}
}
else if (pfound->has_arg == 1)
{
if (optind < argc)
optarg = argv[optind++];
else
{
if (opterr)
fprintf (stderr, "%s: option `%s' requires an argument\n",
argv[0], argv[optind - 1]);
nextchar += strlen (nextchar);
return optstring[0] == ':' ? ':' : '?';
}
}
nextchar += strlen (nextchar);
if (longind != NULL)
*longind = option_index;
if (pfound->flag)
{
*(pfound->flag) = pfound->val;
return 0;
}
return pfound->val;
}
/* Can't find it as a long option. If this is not getopt_long_only,
or the option starts with '--' or is not a valid short
option, then it's an error.
Otherwise interpret it as a short option. */
if (!long_only || argv[optind][1] == '-'
|| my_index (optstring, *nextchar) == NULL)
{
if (opterr)
{
if (argv[optind][1] == '-')
/* --option */
fprintf (stderr, "%s: unrecognized option `--%s'\n",
argv[0], nextchar);
else
/* +option or -option */
fprintf (stderr, "%s: unrecognized option `%c%s'\n",
argv[0], argv[optind][0], nextchar);
}
nextchar = (char *) "";
optind++;
return '?';
}
}
/* Look at and handle the next short option-character. */
{
char c = *nextchar++;
char *temp = my_index (optstring, c);
/* Increment `optind' when we start to process its last character. */
if (*nextchar == '\0')
++optind;
if (temp == NULL || c == ':')
{
if (opterr)
{
if (posixly_correct)
/* 1003.2 specifies the format of this message. */
fprintf (stderr, "%s: illegal option -- %c\n", argv[0], c);
else
fprintf (stderr, "%s: invalid option -- %c\n", argv[0], c);
}
optopt = c;
return '?';
}
if (temp[1] == ':')
{
if (temp[2] == ':')
{
/* This is an option that accepts an argument optionally. */
if (*nextchar != '\0')
{
optarg = nextchar;
optind++;
}
else
optarg = NULL;
nextchar = NULL;
}
else
{
/* This is an option that requires an argument. */
if (*nextchar != '\0')
{
optarg = nextchar;
/* If we end this ARGV-element by taking the rest as an arg,
we must advance to the next element now. */
optind++;
}
else if (optind == argc)
{
if (opterr)
{
/* 1003.2 specifies the format of this message. */
fprintf (stderr, "%s: option requires an argument -- %c\n",
argv[0], c);
}
optopt = c;
if (optstring[0] == ':')
c = ':';
else
c = '?';
}
else
/* We already incremented `optind' once;
increment it again when taking next ARGV-elt as argument. */
optarg = argv[optind++];
nextchar = NULL;
}
}
return c;
}
}
int
getopt (argc, argv, optstring)
int argc;
char *const *argv;
const char *optstring;
{
return _getopt_internal (argc, argv, optstring,
(const struct option *) 0,
(int *) 0,
0);
}
#endif /* _LIBC or not __GNU_LIBRARY__. */
#ifdef TEST
/* Compile with -DTEST to make an executable for use in testing
the above definition of `getopt'. */
int
main (argc, argv)
int argc;
char **argv;
{
int c;
int digit_optind = 0;
while (1)
{
int this_option_optind = optind ? optind : 1;
c = getopt (argc, argv, "abc:d:0123456789");
if (c == EOF)
break;
switch (c)
{
case '0':
case '1':
case '2':
case '3':
case '4':
case '5':
case '6':
case '7':
case '8':
case '9':
if (digit_optind != 0 && digit_optind != this_option_optind)
printf ("digits occur in two different argv-elements.\n");
digit_optind = this_option_optind;
printf ("option %c\n", c);
break;
case 'a':
printf ("option a\n");
break;
case 'b':
printf ("option b\n");
break;
case 'c':
printf ("option c with value `%s'\n", optarg);
break;
case '?':
break;
default:
printf ("?? getopt returned character code 0%o ??\n", c);
}
}
if (optind < argc)
{
printf ("non-option ARGV-elements: ");
while (optind < argc)
printf ("%s ", argv[optind++]);
printf ("\n");
}
exit (0);
}
#endif /* TEST */
+184
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/* getopt_long and getopt_long_only entry points for GNU getopt.
Copyright (C) 1987, 88, 89, 90, 91, 92, 1993, 1994
Free Software Foundation, Inc.
This file is part of the GNU C Library. Its master source is NOT part of
the C library, however. The master source lives in /gd/gnu/lib.
The GNU C Library is free software; you can redistribute it and/or
modify it under the terms of the GNU Library General Public License as
published by the Free Software Foundation; either version 2 of the
License, or (at your option) any later version.
The GNU C Library 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
Library General Public License for more details.
You should have received a copy of the GNU Library General Public
License along with the GNU C Library; see the file COPYING.LIB. If
not, write to the Free Software Foundation, Inc., 675 Mass Ave,
Cambridge, MA 02139, USA. */
#ifdef HAVE_CONFIG_H
#include <config.h>
#endif
#include "getopt.h"
#if !defined (__STDC__) || !__STDC__
/* This is a separate conditional since some stdc systems
reject `defined (const)'. */
#ifndef const
#define const
#endif
#endif
#include <stdio.h>
/* Comment out all this code if we are using the GNU C Library, and are not
actually compiling the library itself. This code is part of the GNU C
Library, but also included in many other GNU distributions. Compiling
and linking in this code is a waste when using the GNU C library
(especially if it is a shared library). Rather than having every GNU
program understand `configure --with-gnu-libc' and omit the object files,
it is simpler to just do this in the source for each such file. */
#if defined (_LIBC) || !defined (__GNU_LIBRARY__)
/* This needs to come after some library #include
to get __GNU_LIBRARY__ defined. */
#ifdef __GNU_LIBRARY__
#include <stdlib.h>
#else
char *getenv ();
#endif
#ifndef NULL
#define NULL 0
#endif
int
getopt_long (argc, argv, options, long_options, opt_index)
int argc;
char *const *argv;
const char *options;
const struct option *long_options;
int *opt_index;
{
return _getopt_internal (argc, argv, options, long_options, opt_index, 0);
}
/* Like getopt_long, but '-' as well as '--' can indicate a long option.
If an option that starts with '-' (not '--') doesn't match a long option,
but does match a short option, it is parsed as a short option
instead. */
int
getopt_long_only (argc, argv, options, long_options, opt_index)
int argc;
char *const *argv;
const char *options;
const struct option *long_options;
int *opt_index;
{
return _getopt_internal (argc, argv, options, long_options, opt_index, 1);
}
#endif /* _LIBC or not __GNU_LIBRARY__. */
#ifdef TEST
#include <stdio.h>
int
main (argc, argv)
int argc;
char **argv;
{
int c;
int digit_optind = 0;
while (1)
{
int this_option_optind = optind ? optind : 1;
int option_index = 0;
static struct option long_options[] =
{
{"add", 1, 0, 0},
{"append", 0, 0, 0},
{"delete", 1, 0, 0},
{"verbose", 0, 0, 0},
{"create", 0, 0, 0},
{"file", 1, 0, 0},
{0, 0, 0, 0}
};
c = getopt_long (argc, argv, "abc:d:0123456789",
long_options, &option_index);
if (c == EOF)
break;
switch (c)
{
case 0:
printf ("option %s", long_options[option_index].name);
if (optarg)
printf (" with arg %s", optarg);
printf ("\n");
break;
case '0':
case '1':
case '2':
case '3':
case '4':
case '5':
case '6':
case '7':
case '8':
case '9':
if (digit_optind != 0 && digit_optind != this_option_optind)
printf ("digits occur in two different argv-elements.\n");
digit_optind = this_option_optind;
printf ("option %c\n", c);
break;
case 'a':
printf ("option a\n");
break;
case 'b':
printf ("option b\n");
break;
case 'c':
printf ("option c with value `%s'\n", optarg);
break;
case 'd':
printf ("option d with value `%s'\n", optarg);
break;
case '?':
break;
default:
printf ("?? getopt returned character code 0%o ??\n", c);
}
}
if (optind < argc)
{
printf ("non-option ARGV-elements: ");
while (optind < argc)
printf ("%s ", argv[optind++]);
printf ("\n");
}
exit (0);
}
#endif /* TEST */
File diff suppressed because it is too large Load Diff
+244
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@@ -0,0 +1,244 @@
/* compute the crossover for recursive and simple multiplication */
#include <stdio.h>
#include <time.h>
#include "number.h"
#ifndef VARARGS
#include <stdarg.h>
#else
#include <varargs.h>
#endif
/* from number.c ... */
extern int mul_base_digits;
/* extern int mul_small_digits; */
extern bc_num _one_;
/* global variables */
int test_n = 1000;
int test_time = 30 * CLOCKS_PER_SEC; /* 30 seconds */
/* Other things for number.c. */
int std_only;
void
out_of_memory()
{
fprintf (stderr, "Fatal error: Out of memory for malloc.\n");
exit (1);
}
/* Runtime error will print a message and stop the machine. */
#ifndef VARARGS
#ifdef __STDC__
void
rt_error (char *mesg, ...)
#else
void
rt_error (mesg)
char *mesg;
#endif
#else
void
rt_error (mesg, va_alist)
char *mesg;
#endif
{
va_list args;
char error_mesg [255];
#ifndef VARARGS
va_start (args, mesg);
#else
va_start (args);
#endif
vsprintf (error_mesg, mesg, args);
va_end (args);
fprintf (stderr, "Runtime error: %s\n", error_mesg);
}
/* A runtime warning tells of some action taken by the processor that
may change the program execution but was not enough of a problem
to stop the execution. */
#ifndef VARARGS
#ifdef __STDC__
void
rt_warn (char *mesg, ...)
#else
void
rt_warn (mesg)
char *mesg;
#endif
#else
void
rt_warn (mesg, va_alist)
char *mesg;
#endif
{
va_list args;
char error_mesg [255];
#ifndef VARARGS
va_start (args, mesg);
#else
va_start (args);
#endif
vsprintf (error_mesg, mesg, args);
va_end (args);
fprintf (stderr, "Runtime warning: %s\n", error_mesg);
}
void
out_char (int ch)
{
putchar (ch);
}
/* Time stuff !!! */
int
timeit ( bc_num a, bc_num b, int *n)
{
clock_t first;
int i, res;
bc_num c;
bc_init_num (&c);
first = clock();
*n = 0;
do {
for (i=0; i<test_n; i++)
bc_multiply(a,b,&c,0);
*n += test_n;
res = (int) (clock() - first);
} while (res < test_time);
return res;
}
int debug = 0; /* Print debugging messages? */
int main (int argc, char **argv)
{
bc_num ten, num, expo, big;
int min, max, mid;
#if 0
int smallsize;
#endif
int n1, n2;
clock_t t1, t2;
float permul1, permul2;
/* args? */
if (argc > 1)
if (strcmp (argv[1], "-d") == 0)
debug = 1;
bc_init_numbers();
bc_init_num (&ten);
bc_init_num (&num);
bc_init_num (&expo);
bc_init_num (&big);
bc_int2num (&ten, 10);
if (debug)
fprintf (stderr, "Timings are for %d multiplies\n"
"Minimum time is %d seconds\n", test_n,
test_time/CLOCKS_PER_SEC);
/* Two of the same size */
min = 10;
max = 500;
if (debug)
fprintf (stderr, "Testing numbers of the same length.\n");
while (min < max) {
mid = (min+max)/2;
if (debug) fprintf (stderr,"Checking %d...\n", mid);
bc_int2num (&expo, mid);
bc_raise (ten, expo, &num, 0);
bc_sub (num, _one_, &num, 0);
mul_base_digits = 2*mid+1;
t1 = timeit (num, num, &n1);
permul1 = (float)t1/(float)n1;
mul_base_digits = 2*mid-1;
t2 = timeit (num, num, &n2);
permul2 = (float)t2/(float)n2;
if (permul1 < permul2)
min = mid+1;
else
max = mid-1;
if (debug) {
fprintf (stderr, "n1 = %d :: n2 = %d\n", n1, n2);
fprintf (stderr, "p1 = %f :: p2 = %f\n", permul1, permul2);
}
}
if (debug)
fprintf (stderr, "Base digits crossover at %d digits\n", min);
printf ("#define MUL_BASE_DIGITS %d\n", 2*min);
#if 0
mul_base_digits = min;
/* Small one times a big one. */
smallsize = min/2;
bc_int2num (&expo, smallsize);
bc_raise (ten, expo, &big, 0);
bc_sub (num, _one_, &big, 0);
min = min / 2;
max = 500;
if (debug)
fprintf (stderr, "Testing numbers of the different length.\n");
while (min < max) {
mid = (min+max)/2;
if (debug) fprintf (stderr, "Checking %d...\n", mid);
bc_int2num (&expo, mid-smallsize);
bc_raise (ten, expo, &num, 0);
bc_sub (num, _one_, &num, 0);
mul_small_digits = mid+1;
t1 = timeit (big, num, &n1);
permul1 = (float)t1/(float)n1;
mul_small_digits = mid-1;
t2 = timeit (big, num, &n2);
permul2 = (float)t2/(float)n2;
if (permul1 < permul2)
min = mid+1;
else
max = mid-1;
if (debug) {
fprintf (stderr, "n1 = %d :: n2 = %d\n", n1, n2);
fprintf (stderr, "p1 = %f :: p2 = %f\n", permul1, permul2);
}
}
if (debug)
fprintf (stderr, "Non equal digits crossover at %d total digits\n", min);
printf ("#define MUL_SMALL_DIGITS = %d\n", min);
#endif
return 0;
}
+31
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@@ -0,0 +1,31 @@
/* vfprintf.c -- this was provided for minix. It may not
work on any other system. */
#include "config.h"
#ifndef HAVE_VPRINTF
#ifndef HAVE_DOPRINT
#error need vfprintf() or doprint()
#else
#ifdef HAVE_LIB_H
#include <lib.h>
#endif
#ifdef HAVE_STDARG_H
#include <stdarg.h>
#endif
#ifdef HAVE_STDIO_H
#include <stdio.h>
#endif
int vfprintf(file, format, argp)
FILE *file;
_CONST char *format;
va_list argp;
{
_doprintf(file, format, argp);
if (testflag(file, PERPRINTF)) fflush(file);
return 0;
}
#endif /* HAVE_DOPRINT */
#endif /* !HAVE_VFPRINTF */