mes/src/math.c

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/* -*-comment-start: "//";comment-end:""-*-
* GNU Mes --- Maxwell Equations of Software
* Copyright © 2016,2017,2018,2019 Jan (janneke) Nieuwenhuizen <janneke@gnu.org>
* Copyright © 2021 W. J. van der Laan <laanwj@protonmail.com>
*
* This file is part of GNU Mes.
*
* GNU Mes is free software; you can redistribute it and/or modify it
* under the terms of the GNU General Public License as published by
* the Free Software Foundation; either version 3 of the License, or (at
* your option) any later version.
*
* GNU Mes 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 GNU Mes. If not, see <http://www.gnu.org/licenses/>.
*/
build: Simplify. core: Make mes src/ c files separate compilation units. * include/mes/constants.h: New file. * include/mes/macros.h: New file. * include/mes/mes.h: New file. * src/gc.c: Update. * src/hash.c: Update. * src/lib.c: Update. * src/math.c: Update. * src/mes.c: Update. * src/module.c: Update. * src/posix.c: Update. * src/reader.c: Update. * src/string.c: Update. * src/struct.c: Update. * src/vector.c: Update. mes: Update datadir. * src/mes.c (g_datadir): New global. (open_boot): Rename from read_boot. (read_boot): New function. * mes/module/mes/boot-0.scm: Move from boot-0.scm.in * configure: Update. * configure.sh: Update. mescc: Create libraries from separate files. * .gitignore: Update. * build-aux/bootstrap-mes.sh: Remove. * build-aux/bootstrap.sh.in: Remove. * build-aux/build-guile.sh: Update. * build-aux/build-mes.sh: Update. * build-aux/build-scaffold.sh: New file. * build-aux/build.sh.in: Update. * build-aux/cc.sh: Update. * build-aux/check-tcc.sh: Remove. * build-aux/config.sh.in: New file. * build-aux/config.sh: Remove. * build-aux/install.sh.in: Update. * build-aux/test-boot.sh: New file. * build-aux/test-c.sh: New file. * build-aux/test-driver: New file. * build-aux/test-suite.sh: New file. * build-aux/trace.sh: Update. * build-aux/uninstall.sh.in: Update. * configure: Update. * configure.sh: Update. * lib/linux/x86-mes-mescc/crt1.c: Move from lib/linux/x86-mes. * lib/linux/x86-mes-mescc/mini.c: Likewise. * lib/linux/x86_64-mes-mescc/crt1.c: Move from lib/linux/x86_64-mes. * lib/linux/x86_64-mes-mescc/mini.c: Likewise. * lib/linux/x86-mes-gcc/syscall.c: Rename from mes.c. * lib/linux/x86-mes-mescc/syscall.c: Likewise. * lib/linux/x86_64-mes-gcc/syscall.c: Likewise. * lib/linux/x86_64-mes-mescc/syscall.c: Likewise. * lib/mes/mes_open.c: Include config.h. * lib/tests/stdio/70-printf-hello.c: Likewise. * lib/tests/stdio/70-printf-simple.c: Likewise. * scaffold/gc-test.sh: New file. * simple.sh: Update.
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#include "mes/lib.h"
#include "mes/mes.h"
#include <ctype.h>
#include <limits.h>
build: Simplify. core: Make mes src/ c files separate compilation units. * include/mes/constants.h: New file. * include/mes/macros.h: New file. * include/mes/mes.h: New file. * src/gc.c: Update. * src/hash.c: Update. * src/lib.c: Update. * src/math.c: Update. * src/mes.c: Update. * src/module.c: Update. * src/posix.c: Update. * src/reader.c: Update. * src/string.c: Update. * src/struct.c: Update. * src/vector.c: Update. mes: Update datadir. * src/mes.c (g_datadir): New global. (open_boot): Rename from read_boot. (read_boot): New function. * mes/module/mes/boot-0.scm: Move from boot-0.scm.in * configure: Update. * configure.sh: Update. mescc: Create libraries from separate files. * .gitignore: Update. * build-aux/bootstrap-mes.sh: Remove. * build-aux/bootstrap.sh.in: Remove. * build-aux/build-guile.sh: Update. * build-aux/build-mes.sh: Update. * build-aux/build-scaffold.sh: New file. * build-aux/build.sh.in: Update. * build-aux/cc.sh: Update. * build-aux/check-tcc.sh: Remove. * build-aux/config.sh.in: New file. * build-aux/config.sh: Remove. * build-aux/install.sh.in: Update. * build-aux/test-boot.sh: New file. * build-aux/test-c.sh: New file. * build-aux/test-driver: New file. * build-aux/test-suite.sh: New file. * build-aux/trace.sh: Update. * build-aux/uninstall.sh.in: Update. * configure: Update. * configure.sh: Update. * lib/linux/x86-mes-mescc/crt1.c: Move from lib/linux/x86-mes. * lib/linux/x86-mes-mescc/mini.c: Likewise. * lib/linux/x86_64-mes-mescc/crt1.c: Move from lib/linux/x86_64-mes. * lib/linux/x86_64-mes-mescc/mini.c: Likewise. * lib/linux/x86-mes-gcc/syscall.c: Rename from mes.c. * lib/linux/x86-mes-mescc/syscall.c: Likewise. * lib/linux/x86_64-mes-gcc/syscall.c: Likewise. * lib/linux/x86_64-mes-mescc/syscall.c: Likewise. * lib/mes/mes_open.c: Include config.h. * lib/tests/stdio/70-printf-hello.c: Likewise. * lib/tests/stdio/70-printf-simple.c: Likewise. * scaffold/gc-test.sh: New file. * simple.sh: Update.
2019-06-08 14:36:22 +01:00
#include <stdio.h>
#include <string.h>
void
assert_number (char const *name, SCM x)
{
if (TYPE (x) != TNUMBER)
{
eputs (name);
error (cell_symbol_not_a_number, x);
}
}
SCM
greater_p (SCM x) /*:((name . ">") (arity . n)) */
{
if (x == cell_nil)
return cell_t;
assert_number ("greater_p", CAR (x));
long n = VALUE (CAR (x));
x = CDR (x);
while (x != cell_nil)
{
assert_number ("greater_p", CAR (x));
SCM i = car (x);
long v = VALUE (i);
if (v >= n)
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return cell_f;
n = v;
x = cdr (x);
}
return cell_t;
}
SCM
less_p (SCM x) /*:((name . "<") (arity . n)) */
{
if (x == cell_nil)
return cell_t;
assert_number ("less_p", CAR (x));
long n = VALUE (CAR (x));
x = CDR (x);
while (x != cell_nil)
{
assert_number ("less_p", CAR (x));
SCM i = car (x);
long v = VALUE (i);
if (v <= n)
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return cell_f;
n = v;
x = cdr (x);
}
return cell_t;
}
SCM
is_p (SCM x) /*:((name . "=") (arity . n)) */
{
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if (x == cell_nil)
return cell_t;
assert_number ("is_p", CAR (x));
long n = VALUE (CAR (x));
x = cdr (x);
while (x != cell_nil)
{
SCM i = car (x);
long v = VALUE (i);
if (v != n)
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return cell_f;
x = cdr (x);
}
return cell_t;
}
SCM
minus (SCM x) /*:((name . "-") (arity . n)) */
{
assert_number ("minus", CAR (x));
long n = VALUE (CAR (x));
x = cdr (x);
if (x == cell_nil)
n = -n;
while (x != cell_nil)
{
SCM i = car (x);
assert_number ("minus", i);
long v = VALUE (i);
n = n - v;
x = cdr (x);
}
return make_number (n);
}
SCM
plus (SCM x) /*:((name . "+") (arity . n)) */
{
long n = 0;
while (x != cell_nil)
{
SCM i = car (x);
assert_number ("plus", i);
long v = VALUE (i);
n = n + v;
x = cdr (x);
}
return make_number (n);
}
SCM
divide (SCM x) /*:((name . "/") (arity . n)) */
{
long n = 1;
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if (x != cell_nil)
{
SCM i = car (x);
assert_number ("divide", i);
long v = VALUE (i);
n = v;
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x = cdr (x);
}
while (x != cell_nil)
{
SCM i = car (x);
assert_number ("divide", i);
long v = VALUE (i);
if (v == 0)
error (cstring_to_symbol ("divide-by-zero"), x);
if (n == 0)
break;
n = n / v;
x = cdr (x);
}
return make_number (n);
}
SCM
modulo (SCM a, SCM b)
{
assert_number ("modulo", a);
assert_number ("modulo", b);
long x = VALUE (a);
long y = VALUE (b);
if (y == 0)
error (cstring_to_symbol ("divide-by-zero"), a);
while (x < 0)
x = x + y;
if (x != 0)
x = x % y;
return make_number (x);
}
SCM
multiply (SCM x) /*:((name . "*") (arity . n)) */
{
long n = 1;
while (x != cell_nil)
{
SCM i = car (x);
assert_number ("multiply", i);
long v = VALUE (i);
n = n * v;
x = cdr (x);
}
return make_number (n);
}
SCM
logand (SCM x) /*:((arity . n)) */
{
long n = -1;
while (x != cell_nil)
{
SCM i = car (x);
assert_number ("multiply", i);
long v = VALUE (i);
n = n & v;
x = cdr (x);
}
return make_number (n);
}
SCM
logior (SCM x) /*:((arity . n)) */
{
long n = 0;
while (x != cell_nil)
{
SCM i = car (x);
assert_number ("logior", i);
long v = VALUE (i);
n = n | v;
x = cdr (x);
}
return make_number (n);
}
SCM
lognot (SCM x)
{
assert_number ("lognot", x);
long n = ~VALUE (x);
return make_number (n);
}
SCM
logxor (SCM x) /*:((arity . n)) */
{
long n = 0;
while (x != cell_nil)
{
SCM i = car (x);
assert_number ("logxor", i);
long v = VALUE (i);
n = n ^ v;
x = cdr (x);
}
return make_number (n);
}
SCM
ash (SCM n, SCM count)
{
assert_number ("ash", n);
assert_number ("ash", count);
long cn = VALUE (n);
long ccount = VALUE (count);
long result;
if (ccount < 0)
result = cn >> -ccount;
else
result = cn << ccount;
return make_number (result);
}