Mercurial > hg > xemacs-beta
view src/vdb-posix.c @ 5911:48386fd60fd0
GMP functions that take doubles choke on non-finite values, avoid that.
src/ChangeLog addition:
2015-05-10 Aidan Kehoe <kehoea@parhasard.net>
* floatfns.c (double_to_integer):
Rename this from float_to_int to fit our newer, bignum-compatible
terminology.
GMP can signal SIGFPE when asked to turn NaN or infinity into a
bignum, and we're not prepared to handle that signal if the OS float
library routines don't do that, so check for those values
explicitly.
* floatfns.c (ceiling_two_float):
* floatfns.c (ceiling_one_float):
* floatfns.c (floor_two_float):
* floatfns.c (floor_one_float):
* floatfns.c (round_two_float):
* floatfns.c (round_one_float):
* floatfns.c (truncate_two_float):
* floatfns.c (truncate_one_float):
Call double_to_integer() with its new name.
* number.c:
Don't use the {bignum,ratio,bigfloat}_set_double functions
directly here, with GMP they can choke when handed non-finite C
doubles, call Ftruncate() and the new float_to_bigfloat() from
floatfns.c. Maybe we should extend number-gmp.c with GMP-specific
implementations that check for non-finite values.
tests/ChangeLog addition:
2015-05-10 Aidan Kehoe <kehoea@parhasard.net>
* automated/lisp-tests.el:
Backslash a few parentheses in the first column for the sake of
fontification.
* automated/lisp-tests.el:
Check that the rounding functions signal Lisp errors correctly
when handed positive and negative infinity and NaN.
author | Aidan Kehoe <kehoea@parhasard.net> |
---|---|
date | Sun, 10 May 2015 19:07:09 +0100 |
parents | 308d34e9f07d |
children |
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/* Virtual diry bit implementation for XEmacs. Copyright (C) 2005 Marcus Crestani. This file is part of XEmacs. XEmacs 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. XEmacs 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 XEmacs. If not, see <http://www.gnu.org/licenses/>. */ /* Synched up with: Not in FSF. */ #include <config.h> #include "lisp.h" #include "gc.h" #include "mc-alloc.h" #include "vdb.h" #include <errno.h> #include <signal.h> #include <sys/mman.h> #if defined (HAVE_SIGACTION) # if defined (HAVE_STRUCT_SIGINFO_SI_ADDR) # define FAULT_HANDLER_ARGUMENTS \ int signum, struct siginfo *siginfo, void *UNUSED (ctx) # define GET_FAULT_ADDRESS siginfo->si_addr # elif defined (HAVE_SIGINFO_T_SI_ADDR) # define FAULT_HANDLER_ARGUMENTS \ int signum, siginfo_t *siginfo, void *UNUSED (ctx) # define GET_FAULT_ADDRESS siginfo->si_addr # endif # define USE_SIGACTION # define FAULT_HANDLER_REMOVE_HANDLER #elif defined (HAVE_SIGNAL) # define FAULT_HANDLER_ARGUMENTS int signum, struct sigcontext sc # define GET_FAULT_ADDRESS (void *) sc.cr2 # define USE_SIGNAL #endif #ifdef USE_SIGACTION struct sigaction act, segv_oact, bus_oact; #endif /* USE_SIGACTION */ #ifdef USE_SIGNAL sighandler_t segv_oact, bus_oact; #endif /* USE_SIGNAL */ void vdb_remove_signal_handler (void); void vdb_fault_handler (FAULT_HANDLER_ARGUMENTS) { if (write_barrier_enabled && (fault_on_protected_page (GET_FAULT_ADDRESS))) { vdb_designate_modified (GET_FAULT_ADDRESS); unprotect_page_and_mark_dirty (GET_FAULT_ADDRESS); #ifdef FAULT_HANDLER_REINSTALL_HANDLER vdb_install_signal_handler (); #endif /* FAULT_HANDLER_REINSTALL_HANDLER */ } else /* default sigsegv handler */ { const Ascbyte *signal_name = ""; if (signum == SIGSEGV) signal_name = "SIGSEGV"; else if (signum == SIGBUS) signal_name = "SIGBUS"; else ABORT (); /* something weird happened: wrong signal caught */ fprintf (stderr, "\n\nFatal Error: Received %s (%d) for address %p\n", signal_name, signum, (void *) GET_FAULT_ADDRESS); #ifdef FAULT_HANDLER_CALL_PREVIOUS_HANDLER if (signum == SIGSEGV) segv_oact (signum); else if (signum == SIGBUS) bus_oact (signum); #endif /* FAULT_HANDLER_CALL_PREVIOUS_HANDLER */ #ifdef FAULT_HANDLER_REMOVE_HANDLER vdb_remove_signal_handler (); #endif /* FAULT_HANDLER_REMOVE_HANDLER */ } } void vdb_remove_signal_handler (void) { #ifdef USE_SIGACTION sigaction(SIGSEGV, &segv_oact, 0); sigaction(SIGBUS, &bus_oact, 0); #endif /* USE_SIGACTION */ #ifdef USE_SIGNAL signal (SIGSEGV, segv_oact); signal (SIGBUS, bus_oact); #endif } void vdb_install_signal_handler (void) { /* See init_signals_very_early () in signal.c. */ if (noninteractive && !initialized) { allow_incremental_gc = 0; return; } #ifdef USE_SIGACTION memset(&act, 0, sizeof(struct sigaction)); act.sa_sigaction = vdb_fault_handler; sigemptyset (&act.sa_mask); act.sa_flags = SA_SIGINFO; sigaction (SIGSEGV, &act, &segv_oact); sigaction (SIGBUS, &act, &bus_oact); allow_incremental_gc = 1; #endif /* USE_SIGACTION */ #ifdef USE_SIGNAL segv_oact = signal (SIGSEGV, (void (*)(int)) vdb_fault_handler); bus_oact = signal (SIGBUS, (void (*)(int)) vdb_fault_handler); #endif /* USE_SIGNAL */ } void vdb_protect (void *ptr, EMACS_INT len) { if (mprotect (ptr, len, PROT_READ)) { perror ("Couldn't mprotect"); ABORT (); } } void vdb_unprotect (void *ptr, EMACS_INT len) { if (mprotect (ptr, len, PROT_READ | PROT_WRITE)) { perror ("Couldn't mprotect"); ABORT (); } }