newlib/winsup/cygwin/fhandler_random.cc
Christopher Faylor b0e82b74fb * Makefile.in: Add cygheap.o.
* child_info.h: Add specific exec class.
* cygheap.h: New file.  Contains declarations for cygwin heap.
* cygheap.cc: New file.  Implements cygwin heap functions.
* dcrt0.cc (quoted): Simplify due to new method for passing arguments between
cygwin programs.
(alloc_stack_hard_way): Attempt to handle overlapped stack.
(dll_crt0_1): Move child_info processing here.  Accomodate new method for
passing arguments between cygwin programs.  Initialize cygwin heap.  Establish
__argc and __argv variables.
(_dll_crt0): Move most of child_info processing to dll_crt0_1.
(cygwin_dll_init): Remove duplication.
* dtable.cc (dtable::extend): Allocate dtable using cygwin heap.
(dtable::build_fhandler): Ditto for fhandler type being constructed.
(dtable::dup_worker): Free new fhandler from cygwin heap on error.
(dtable::select_*): Don't assume that this == fdtab.
(dtable::linearize_fd_array): Delete.
(dtable::delinearize_fd_array): Delete.
(dtable::fixup_after_exec): New file.
(dtable::vfork_child_dup): Use cygwin heap.
(dtable::vfork_parent_restore): Ditto.
* dtable.h: Remove obsolete methods.  Add new method.
* environ.cc (posify): Eliminate already_posix parameter and logic.
(envsize): New function.
(_addenv): Use envsize.
(environ_init): Accept an argument pointing to an existing environment list.
If supplied, allocate space for this in the the program's heap.
* fhandler.cc (fhandler_base::operator =): Move here from fhandler.h.  Use
cygwin heap to allocate filenames.
(fhandler_base::set_name): Allocate/free names from cygwin heap.
(fhandler_base::linearize): Delete.
(fhandler_base::de_linearize): Delete.
(fhandler_base::operator delete): Free from cygwin heap.
(fhandler_base::~fhandler_base): Ditto.
* fhandler.h: Accomodate elimination of *linearize and other changes above.
* fhandler_console.cc (fhandler_console::fixup_after_exec): Rename from
de_linearize.
* heap.h: New file.
* fhandler_tty.cc (fhandler_tty_slave::fhandler_tty_slave): Use cygwin heap for
name.  fhandler_tty::fixup_after_exec): Rename from de_linearize.
* fork.cc (fork): Call cygheap_fixup_in_child.
* heap.cc: Use declarations in heap.h.
* malloc.cc: Sprinkle assertions throughout to catch attempts to free/realloc
something from the cygwin heap.
* path.cc: Throughout, eliminate use of per-thread cache for cwd.  Use cwd_*
functions rather than cwd_* variables to access cwd_win32 and cwd_posix.
(cwd_win32): New function.
(cwd_posix): New function.
(cwd_hash): New function.
(cwd_fixup_after_exec): New function.
* path.h: Accomodate path.cc changes.
* pinfo.cc (pinfo_init): Accept a pointer to an environment table.  Pass this
to environ_init.  Eliminate old 'title' tests.
* pinfo.h: Accomodate above change in argument.
* spawn.cc (struct av): New method for building argv list.
(av::unshift): New method.
(spawn_guts): Allocate everything that the child process needs in the cygwin
heap and pass a pointer to this to the child.  Build argv list using new
method.  Eliminate delinearize stuff.
* thread.h: Eliminate _cwd_win32 and _cwd_posix buffers.
* winsup.h: Eliminate obsolete functions.  Add envsize() declaration.
2000-09-03 04:16:35 +00:00

167 lines
3.8 KiB
C++

/* fhandler_dev_random.cc: code to access /dev/random and /dev/urandom
Copyright 2000 Cygnus Solutions.
Written by Corinna Vinschen (vinschen@cygnus.com)
This file is part of Cygwin.
This software is a copyrighted work licensed under the terms of the
Cygwin license. Please consult the file "CYGWIN_LICENSE" for
details. */
#include "winsup.h"
#include <errno.h>
#include <limits.h>
#include "cygerrno.h"
#include "fhandler.h"
#define RANDOM 8
#define URANDOM 9
#define PSEUDO_MULTIPLIER (6364136223846793005LL)
#define PSEUDO_SHIFTVAL (21)
fhandler_dev_random::fhandler_dev_random (const char *name, int nunit)
: fhandler_base (FH_RANDOM, name),
unit(nunit),
crypt_prov((HCRYPTPROV)NULL)
{
set_cb (sizeof *this);
}
int
fhandler_dev_random::open (const char *, int flags, mode_t)
{
set_flags (flags);
return 1;
}
BOOL
fhandler_dev_random::crypt_gen_random (void *ptr, size_t len)
{
if (!crypt_prov
&& !CryptAcquireContext (&crypt_prov, NULL, MS_DEF_PROV, PROV_RSA_FULL,
CRYPT_VERIFYCONTEXT | CRYPT_MACHINE_KEYSET)
&& !CryptAcquireContext (&crypt_prov, NULL, MS_DEF_PROV, PROV_RSA_FULL,
CRYPT_VERIFYCONTEXT | CRYPT_MACHINE_KEYSET
| CRYPT_NEWKEYSET))
{
debug_printf ("%E = CryptAquireContext()");
return FALSE;
}
if (!CryptGenRandom (crypt_prov, len, (BYTE *)ptr))
{
debug_printf ("%E = CryptGenRandom()");
return FALSE;
}
return TRUE;
}
int
fhandler_dev_random::pseudo_write (const void *ptr, size_t len)
{
/* Use buffer to mess up the pseudo random number generator. */
for (size_t i = 0; i < len; ++i)
pseudo = (pseudo + ((unsigned char *)ptr)[i]) * PSEUDO_MULTIPLIER + 1;
return len;
}
int
fhandler_dev_random::write (const void *ptr, size_t len)
{
if (!len)
return 0;
if (!ptr)
{
set_errno (EINVAL);
return -1;
}
/* Limit len to a value <= 512 since we don't want to overact.
Copy to local buffer because CryptGenRandom violates const. */
unsigned char buf[512];
size_t limited_len = len <= 512 ? len : 512;
memcpy (buf, ptr, limited_len);
/* Mess up system entropy source. Return error if device is /dev/random. */
if (!crypt_gen_random (buf, limited_len) && unit == RANDOM)
{
__seterrno ();
return -1;
}
/* Mess up the pseudo random number generator. */
pseudo_write (buf, limited_len);
return len;
}
int
fhandler_dev_random::pseudo_read (void *ptr, size_t len)
{
/* Use pseudo random number generator as fallback entropy source.
This multiplier was obtained from Knuth, D.E., "The Art of
Computer Programming," Vol 2, Seminumerical Algorithms, Third
Edition, Addison-Wesley, 1998, p. 106 (line 26) & p. 108 */
for (size_t i = 0; i < len; ++i)
{
pseudo = pseudo * PSEUDO_MULTIPLIER + 1;
((unsigned char *)ptr)[i] = (pseudo >> PSEUDO_SHIFTVAL) & UCHAR_MAX;
}
return len;
}
int
fhandler_dev_random::read (void *ptr, size_t len)
{
if (!len)
return 0;
if (!ptr)
{
set_errno (EINVAL);
return -1;
}
if (crypt_gen_random (ptr, len))
return len;
/* If device is /dev/urandom, use pseudo number generator as fallback.
Don't do this for /dev/random since it's intended for uses that need
very high quality randomness. */
if (unit == URANDOM)
return pseudo_read (ptr, len);
__seterrno ();
return -1;
}
off_t
fhandler_dev_random::lseek (off_t, int)
{
return 0;
}
int
fhandler_dev_random::close (void)
{
if (crypt_prov)
while (!CryptReleaseContext (crypt_prov, 0)
&& GetLastError () == ERROR_BUSY)
Sleep(10);
return 0;
}
int
fhandler_dev_random::dup (fhandler_base *child)
{
fhandler_dev_random *fhr = (fhandler_dev_random *) child;
fhr->unit = unit;
fhr->crypt_prov = (HCRYPTPROV)NULL;
return 0;
}
void
fhandler_dev_random::dump ()
{
paranoid_printf("here, fhandler_dev_random");
}