#!/usr/bin/perl -w # # Regenerate (overwriting only if changed): # # reentr.h # reentr.c # # from information stored in the DATA section of this file. # # With the -U option, it also unconditionally regenerates the relevant # metaconfig units: # # d_${func}_r.U # # Also accepts the standard regen_lib -q and -v args. # # This script is normally invoked from regen.pl. BEGIN { # Get function prototypes require './regen/regen_lib.pl'; } use strict; use Getopt::Std; my %opts; getopts('Uv', \%opts); my %map = ( V => "void", A => "char*", # as an input argument B => "char*", # as an output argument C => "const char*", # as a read-only input argument I => "int", L => "long", W => "size_t", H => "FILE**", E => "int*", ); # (See the definitions after __DATA__.) # In func|inc|type|... a "S" means "type*", and a "R" means "type**". # (The "types" are often structs, such as "struct passwd".) # # After the prototypes one can have |X=...|Y=... to define more types. # A commonly used extra type is to define D to be equal to "type_data", # for example "struct_hostent_data to" go with "struct hostent". # # Example #1: I_XSBWR means int func_r(X, type, char*, size_t, type**) # Example #2: S_SBIE means type func_r(type, char*, int, int*) # Example #3: S_CBI means type func_r(const char*, char*, int) sub open_print_header { my ($file, $quote) = @_; return open_new($file, '>', { by => 'regen/reentr.pl', from => 'data in regen/reentr.pl', file => $file, style => '*', copyright => [2002, 2003, 2005 .. 2007], quote => $quote }); } my $h = open_print_header('reentr.h'); print $h <. * * For a function 'foo', use the compile-time directive * #ifdef PERL_REENTR_USING_FOO_R * to test if the function actually did get replaced by the reentrant version. * (If it isn't getting replaced, it might mean it uses a different prototype * on the given platform than any we are expecting. To fix that, add the * prototype to the __DATA__ section of regen/reentr.pl.) */ #ifndef PERL_REENTR_API # if defined(PERL_CORE) || defined(PERL_EXT) || defined(PERL_REENTRANT) # define PERL_REENTR_API 1 # else # define PERL_REENTR_API 0 # endif #endif #ifdef USE_REENTRANT_API /* For thread-safe builds, alternative methods are used to make calls to this * safe. */ #ifdef USE_THREAD_SAFE_LOCALE # undef HAS_SETLOCALE_R #endif /* Deprecations: some platforms have the said reentrant interfaces * but they are declared obsolete and are not to be used. Often this * means that the platform has threadsafed the interfaces (hopefully). * All this is OS version dependent, so we are of course fooling ourselves. * If you know of more deprecations on some platforms, please add your own * (by editing reentr.pl, mind!) */ # ifdef __hpux # undef HAS_CRYPT_R # undef HAS_ENDGRENT_R # undef HAS_ENDPWENT_R # undef HAS_GETGRENT_R # undef HAS_GETPWENT_R # undef HAS_SETLOCALE_R # undef HAS_STRERROR_R # define NETDB_R_OBSOLETE # endif # if defined(__osf__) && defined(__alpha) /* Tru64 aka Digital UNIX */ # undef HAS_CRYPT_R # undef HAS_STRERROR_R # define NETDB_R_OBSOLETE # endif # if defined(__GLIBC__) && (__GLIBC__ > 2 || (__GLIBC__ == 2 && __GLIBC_MINOR__ >= 24)) # undef HAS_READDIR_R # undef HAS_READDIR64_R # endif /* * As of OpenBSD 3.7, reentrant functions are now working, they just are * incompatible with everyone else. To make OpenBSD happy, we have to * memzero out certain structures before calling the functions. */ # if defined(__OpenBSD__) # define REENTR_MEMZERO(a,b) memzero(a,b) # else # define REENTR_MEMZERO(a,b) 0 # endif # ifdef NETDB_R_OBSOLETE # undef HAS_ENDHOSTENT_R # undef HAS_ENDNETENT_R # undef HAS_ENDPROTOENT_R # undef HAS_ENDSERVENT_R # undef HAS_GETHOSTBYADDR_R # undef HAS_GETHOSTBYNAME_R # undef HAS_GETHOSTENT_R # undef HAS_GETNETBYADDR_R # undef HAS_GETNETBYNAME_R # undef HAS_GETNETENT_R # undef HAS_GETPROTOBYNAME_R # undef HAS_GETPROTOBYNUMBER_R # undef HAS_GETPROTOENT_R # undef HAS_GETSERVBYNAME_R # undef HAS_GETSERVBYPORT_R # undef HAS_GETSERVENT_R # undef HAS_SETHOSTENT_R # undef HAS_SETNETENT_R # undef HAS_SETPROTOENT_R # undef HAS_SETSERVENT_R # endif # ifdef I_PWD # include # endif # ifdef I_GRP # include # endif # ifdef I_NETDB # include # endif # ifdef I_CRYPT # ifdef I_CRYPT # include # endif # endif # ifdef HAS_GETSPNAM_R # ifdef I_SHADOW # include # endif # endif EOF my %seenh; # the different prototypes signatures for this function my %seena; # the different prototypes signatures for this function in order my @seenf; # all the seen functions my %seenp; # the different prototype signatures for all functions my %seent; # the return type of this function my %seens; # the type of this function's "S" my %seend; # the type of this function's "D" my %seenm; # all the types my %seenu; # the length of the argument list of this function while () { # Read in the prototypes. next if /^\s+$/; chomp; my ($func, $hdr, $type, @p) = split(/\s*\|\s*/, $_, -1); my $u; # Split off the real function name and the argument list. ($func, $u) = split(' ', $func); $seenu{$func} = defined $u ? length $u : 0; my $FUNC = uc $func; # for output. push @seenf, $func; my %m = %map; if ($type) { $m{S} = "$type*"; $m{R} = "$type**"; } # Set any special mapping variables (like X=x_t) if (@p) { while ($p[-1] =~ /=/) { my ($k, $v) = ($p[-1] =~ /^([A-Za-z])\s*=\s*(.*)/); $m{$k} = $v; pop @p; } } # If given the -U option open up the metaconfig unit for this function. if ($opts{U} && open(U, ">", "d_${func}_r.U")) { binmode U; } if ($opts{U}) { # The metaconfig units needs prerequisite dependencies. my $prereqs = ''; my $prereqh = ''; my $prereqsh = ''; if ($hdr ne 'stdio') { # There's no i_stdio. $prereqs = "i_$hdr"; $prereqh = "$hdr.h"; $prereqsh = "\$$prereqs $prereqh"; } my @prereq = qw(Inlibc Protochk Hasproto i_systypes usethreads); push @prereq, $prereqs; my $hdrs = "\$i_systypes sys/types.h define stdio.h $prereqsh"; if ($hdr eq 'time') { $hdrs .= " \$i_systime sys/time.h"; push @prereq, 'i_systime'; } # Output the metaconfig unit header. print U <<"EOF"; ?RCS: \$Id: d_${func}_r.U,v $ ?RCS: ?RCS: Copyright (c) 2002,2003 Jarkko Hietaniemi ?RCS: ?RCS: You may distribute under the terms of either the GNU General Public ?RCS: License or the Artistic License, as specified in the README file. ?RCS: ?RCS: Generated by the reentr.pl from the Perl 5.8 distribution. ?RCS: ?MAKE:d_${func}_r ${func}_r_proto: @prereq ?MAKE: -pick add \$@ %< ?S:d_${func}_r: ?S: This variable conditionally defines the HAS_${FUNC}_R symbol, ?S: which indicates to the C program that the ${func}_r() ?S: routine is available. ?S:. ?S:${func}_r_proto: ?S: This variable encodes the prototype of ${func}_r. ?S: It is zero if d_${func}_r is undef, and one of the ?S: REENTRANT_PROTO_T_ABC macros of reentr.h if d_${func}_r ?S: is defined. ?S:. ?C:HAS_${FUNC}_R: ?C: This symbol, if defined, indicates that the ${func}_r routine ?C: is available to ${func} re-entrantly. ?C:. ?C:${FUNC}_R_PROTO: ?C: This symbol encodes the prototype of ${func}_r. ?C: It is zero if d_${func}_r is undef, and one of the ?C: REENTRANT_PROTO_T_ABC macros of reentr.h if d_${func}_r ?C: is defined. ?C:. ?H:#\$d_${func}_r HAS_${FUNC}_R /**/ ?H:#define ${FUNC}_R_PROTO \$${func}_r_proto /**/ ?H:. ?T:try hdrs d_${func}_r_proto ?LINT:set d_${func}_r ?LINT:set ${func}_r_proto : see if ${func}_r exists set ${func}_r d_${func}_r eval \$inlibc case "\$d_${func}_r" in "\$define") EOF print U <<"EOF"; hdrs="$hdrs" case "\$d_${func}_r_proto:\$usethreads" in ":define") d_${func}_r_proto=define set d_${func}_r_proto ${func}_r \$hdrs eval \$hasproto ;; *) ;; esac case "\$d_${func}_r_proto" in define) EOF } for my $p (@p) { my ($r, $a) = ($p =~ /^(.)_(.+)/); my $v = join(", ", map { $m{$_} } split '', $a); if ($opts{U}) { print U <<"EOF"; case "\$${func}_r_proto" in ''|0) try='$m{$r} ${func}_r($v);' ./protochk "extern \$try" \$hdrs && ${func}_r_proto=$p ;; esac EOF } $seenh{$func}->{$p}++; push @{$seena{$func}}, $p; $seenp{$p}++; $seent{$func} = $type; $seens{$func} = $m{S}; $seend{$func} = $m{D}; $seenm{$func} = \%m; } if ($opts{U}) { print U <<"EOF"; case "\$${func}_r_proto" in ''|0) d_${func}_r=undef ${func}_r_proto=0 echo "Disabling ${func}_r, cannot determine prototype." >&4 ;; * ) case "\$${func}_r_proto" in REENTRANT_PROTO*) ;; *) ${func}_r_proto="REENTRANT_PROTO_\$${func}_r_proto" ;; esac echo "Prototype: \$try" ;; esac ;; *) case "\$usethreads" in define) echo "${func}_r has no prototype, not using it." >&4 ;; esac d_${func}_r=undef ${func}_r_proto=0 ;; esac ;; *) ${func}_r_proto=0 ;; esac EOF close(U); } } close DATA; { # Write out all the known prototype signatures. my $i = 1; for my $p (sort keys %seenp) { print $h "# define REENTRANT_PROTO_${p} ${i}\n"; $i++; } } my @struct; # REENTR struct members my @size; # struct member buffer size initialization code my @init; # struct member buffer initialization (malloc) code my @free; # struct member buffer release (free) code my @wrap; # the wrapper (foo(a) -> foo_r(a,...)) cpp code my @define; # defines for optional features sub ifprotomatch { my $FUNC = shift; join " || ", map { "${FUNC}_R_PROTO == REENTRANT_PROTO_$_" } @_; } sub pushssif { push @struct, @_; push @size, @_; push @init, @_; push @free, @_; } sub pushinitfree { my $func = shift; push @init, <_${func}_buffer, PL_reentrant_buffer->_${func}_size, char); EOF push @free, <_${func}_buffer); EOF } sub define { my ($n, $p, @F) = @_; my @H; my $H = uc $F[0]; push @define, <_${func}_size = $size; EOF pushinitfree $func; pushssif $endif; } elsif ($func =~ /^(gm|local)time$/) { pushssif $ifdef; push @struct, <_${func}_struct_buffer = 0; # endif EOF push @free, <_${func}_struct_buffer); # endif EOF pushssif $endif; } elsif ($func =~ /^(getgrnam|getpwnam|getspnam)$/) { pushssif $ifdef; # 'genfunc' can be read either as 'generic' or 'genre', # it represents a group of functions. my $genfunc = $func; $genfunc =~ s/nam/ent/g; $genfunc =~ s/^get//; my $GENFUNC = uc $genfunc; push @struct, <_${genfunc}_fptr = NULL; # endif EOF my $sc = $genfunc eq 'grent' ? '_SC_GETGR_R_SIZE_MAX' : '_SC_GETPW_R_SIZE_MAX'; my $sz = "_${genfunc}_size"; push @size, <$sz = sysconf($sc); if (PL_reentrant_buffer->$sz == (size_t) -1) PL_reentrant_buffer->$sz = REENTRANTUSUALSIZE; # elif defined(__osf__) && defined(__alpha) && defined(SIABUFSIZ) PL_reentrant_buffer->$sz = SIABUFSIZ; # elif defined(__sgi) PL_reentrant_buffer->$sz = BUFSIZ; # else PL_reentrant_buffer->$sz = REENTRANTUSUALSIZE; # endif EOF pushinitfree $genfunc; pushssif $endif; } elsif ($func =~ /^(gethostbyname|getnetbyname|getservbyname|getprotobyname)$/) { pushssif $ifdef; my $genfunc = $func; $genfunc =~ s/byname/ent/; $genfunc =~ s/^get//; my $GENFUNC = uc $genfunc; my $D = ifprotomatch($FUNC, grep {/D/} @p); my $d = $seend{$func}; $d =~ s/\*$//; # snip: we need the base type. push @struct, <_${genfunc}_size = REENTRANTUSUALSIZE; # endif EOF push @init, <_${genfunc}_buffer, PL_reentrant_buffer->_${genfunc}_size, char); # endif EOF push @free, <_${genfunc}_buffer); # endif EOF pushssif $endif; } elsif ($func =~ /^(readdir|readdir64)$/) { pushssif $ifdef; my $R = ifprotomatch($FUNC, grep {/R/} @p); push @struct, <_${func}_size = sizeof($seent{$func}) + MAXPATHLEN + 1; EOF push @init, <_${func}_struct = ($seent{$func}*)safemalloc(PL_reentrant_buffer->_${func}_size); EOF push @free, <_${func}_struct); EOF pushssif $endif; } push @wrap, $ifdef; push @wrap, <_${genfunc}_ptr" : $_ eq 'E' ? "&PL_reentrant_buffer->_${genfunc}_errno" : $_ eq 'B' ? "PL_reentrant_buffer->_${genfunc}_buffer" : $_ =~ /^[WI]$/ ? "PL_reentrant_buffer->_${genfunc}_size" : $_ eq 'H' ? "&PL_reentrant_buffer->_${genfunc}_fptr" : $_ eq 'D' ? "&PL_reentrant_buffer->_${genfunc}_data" : $_ eq 'S' ? ($func =~ /^readdir\d*$/ ? "PL_reentrant_buffer->_${genfunc}_struct" : $func =~ /^crypt$/ ? "PL_reentrant_buffer->_${genfunc}_struct_buffer" : "&PL_reentrant_buffer->_${genfunc}_struct") : $_ } split '', $b; $w = ", $w" if length $v; } # This needs a special case, see its definition in config.h my $setup = ($func eq 'localtime') ? "L_R_TZSET " : ""; my $call = "$setup${func}_r($v$w)"; # Must make OpenBSD happy my $memzero = ''; if($p =~ /D$/ && ($genfunc eq 'protoent' || $genfunc eq 'servent')) { $memzero = 'REENTR_MEMZERO(&PL_reentrant_buffer->_' . $genfunc . '_data, sizeof(PL_reentrant_buffer->_' . $genfunc . '_data)),'; } push @wrap, <_hostent_size <= PERL_REENTRANT_MAXSIZE / 2) # endif RenewDouble(PL_reentrant_buffer->_hostent_buffer, &PL_reentrant_buffer->_hostent_size, char); switch (key) { case KEY_gethostbyaddr: host_addr = va_arg(ap, char *); asize = va_arg(ap, Size_t); anint = va_arg(ap, int); /* socklen_t is what Posix 2001 says this should be */ retptr = gethostbyaddr(host_addr, (socklen_t) asize, anint); break; case KEY_gethostbyname: host_name = va_arg(ap, char *); retptr = gethostbyname(host_name); break; case KEY_endhostent: retptr = gethostent(); break; default: SETERRNO(ERANGE, LIB_INVARG); break; } } break; # endif # ifdef USE_GRENT_BUFFER case KEY_getgrent: case KEY_getgrgid: case KEY_getgrnam: { char * name; Gid_t gid; # ifdef PERL_REENTRANT_MAXSIZE if (PL_reentrant_buffer->_grent_size <= PERL_REENTRANT_MAXSIZE / 2) # endif RenewDouble(PL_reentrant_buffer->_grent_buffer, &PL_reentrant_buffer->_grent_size, char); switch (key) { case KEY_getgrnam: name = va_arg(ap, char *); retptr = getgrnam(name); break; case KEY_getgrgid: # if Gid_t_size < INTSIZE gid = (Gid_t)va_arg(ap, int); # else gid = va_arg(ap, Gid_t); # endif retptr = getgrgid(gid); break; case KEY_getgrent: retptr = getgrent(); break; default: SETERRNO(ERANGE, LIB_INVARG); break; } } break; # endif # ifdef USE_NETENT_BUFFER case KEY_getnetbyaddr: case KEY_getnetbyname: case KEY_getnetent: { char * name; Netdb_net_t net; int anint; # ifdef PERL_REENTRANT_MAXSIZE if (PL_reentrant_buffer->_netent_size <= PERL_REENTRANT_MAXSIZE / 2) # endif RenewDouble(PL_reentrant_buffer->_netent_buffer, &PL_reentrant_buffer->_netent_size, char); switch (key) { case KEY_getnetbyaddr: net = va_arg(ap, Netdb_net_t); anint = va_arg(ap, int); retptr = getnetbyaddr(net, anint); break; case KEY_getnetbyname: name = va_arg(ap, char *); retptr = getnetbyname(name); break; case KEY_getnetent: retptr = getnetent(); break; default: SETERRNO(ERANGE, LIB_INVARG); break; } } break; # endif # ifdef USE_PWENT_BUFFER case KEY_getpwnam: case KEY_getpwuid: case KEY_getpwent: { Uid_t uid; char * name; # ifdef PERL_REENTRANT_MAXSIZE if (PL_reentrant_buffer->_pwent_size <= PERL_REENTRANT_MAXSIZE / 2) # endif RenewDouble(PL_reentrant_buffer->_pwent_buffer, &PL_reentrant_buffer->_pwent_size, char); switch (key) { case KEY_getpwnam: name = va_arg(ap, char *); retptr = getpwnam(name); break; case KEY_getpwuid: # if Uid_t_size < INTSIZE uid = (Uid_t)va_arg(ap, int); # else uid = va_arg(ap, Uid_t); # endif retptr = getpwuid(uid); break; # if defined(HAS_GETPWENT) || defined(HAS_GETPWENT_R) case KEY_getpwent: retptr = getpwent(); break; # endif default: SETERRNO(ERANGE, LIB_INVARG); break; } } break; # endif # ifdef USE_SPENT_BUFFER case KEY_getspnam: { char * name; # ifdef PERL_REENTRANT_MAXSIZE if (PL_reentrant_buffer->_spent_size <= PERL_REENTRANT_MAXSIZE / 2) # endif RenewDouble(PL_reentrant_buffer->_spent_buffer, &PL_reentrant_buffer->_spent_size, char); switch (key) { case KEY_getspnam: name = va_arg(ap, char *); retptr = getspnam(name); break; default: SETERRNO(ERANGE, LIB_INVARG); break; } } break; # endif # ifdef USE_PROTOENT_BUFFER case KEY_getprotobyname: case KEY_getprotobynumber: case KEY_getprotoent: { char * name; int anint; # ifdef PERL_REENTRANT_MAXSIZE if (PL_reentrant_buffer->_protoent_size <= PERL_REENTRANT_MAXSIZE / 2) # endif RenewDouble(PL_reentrant_buffer->_protoent_buffer, &PL_reentrant_buffer->_protoent_size, char); switch (key) { case KEY_getprotobyname: name = va_arg(ap, char *); retptr = getprotobyname(name); break; case KEY_getprotobynumber: anint = va_arg(ap, int); retptr = getprotobynumber(anint); break; case KEY_getprotoent: retptr = getprotoent(); break; default: SETERRNO(ERANGE, LIB_INVARG); break; } } break; # endif # ifdef USE_SERVENT_BUFFER case KEY_getservbyname: case KEY_getservbyport: case KEY_getservent: { char * name; char * proto; int anint; # ifdef PERL_REENTRANT_MAXSIZE if (PL_reentrant_buffer->_servent_size <= PERL_REENTRANT_MAXSIZE / 2) # endif RenewDouble(PL_reentrant_buffer->_servent_buffer, &PL_reentrant_buffer->_servent_size, char); switch (key) { case KEY_getservbyname: name = va_arg(ap, char *); proto = va_arg(ap, char *); retptr = getservbyname(name, proto); break; case KEY_getservbyport: anint = va_arg(ap, int); name = va_arg(ap, char *); retptr = getservbyport(anint, name); break; case KEY_getservent: retptr = getservent(); break; default: SETERRNO(ERANGE, LIB_INVARG); break; } } break; # endif default: /* Not known how to retry, so just fail. */ break; } #else PERL_UNUSED_ARG(f); #endif va_end(ap); return retptr; } EOF read_only_bottom_close_and_rename($c); # As of March 2020, the config.h entries that have reentrant prototypes that # aren't in this file are: # drand48 # random # srand48 # srandom # The meanings of the flags are derivable from %map above # Fnc, arg flags| hdr | ? struct type | prototypes... __DATA__ asctime S |time |const struct tm|B_SB|B_SBI|I_SB|I_SBI crypt CC |crypt |struct crypt_data|B_CCS|B_CCD|D=CRYPTD* ctermid B |stdio | |B_B ctime S |time |const time_t |B_SB|B_SBI|I_SB|I_SBI endgrent |grp | |I_H|V_H endhostent |netdb | |I_D|V_D|D=struct hostent_data* endnetent |netdb | |I_D|V_D|D=struct netent_data* endprotoent |netdb | |I_D|V_D|D=struct protoent_data* endpwent |pwd | |I_H|V_H endservent |netdb | |I_D|V_D|D=struct servent_data* getgrent |grp |struct group |I_SBWR|I_SBIR|S_SBW|S_SBI|I_SBI|I_SBIH getgrgid T |grp |struct group |I_TSBWR|I_TSBIR|I_TSBI|S_TSBI|T=gid_t getgrnam C |grp |struct group |I_CSBWR|I_CSBIR|S_CBI|I_CSBI|S_CSBI gethostbyaddr CWI |netdb |struct hostent |I_CWISBWRE|S_CWISBWIE|S_CWISBIE|S_TWISBIE|S_CIISBIE|S_CSBIE|S_TSBIE|I_CWISD|I_CIISD|I_CII|I_TsISBWRE|D=struct hostent_data*|T=const void*|s=socklen_t gethostbyname C |netdb |struct hostent |I_CSBWRE|S_CSBIE|I_CSD|D=struct hostent_data* gethostent |netdb |struct hostent |I_SBWRE|I_SBIE|S_SBIE|S_SBI|I_SBI|I_SD|D=struct hostent_data* getlogin |unistd |char |I_BW|I_BI|B_BW|B_BI getnetbyaddr LI |netdb |struct netent |I_UISBWRE|I_LISBI|S_TISBI|S_LISBI|I_TISD|I_LISD|I_IISD|I_uISBWRE|D=struct netent_data*|T=in_addr_t|U=unsigned long|u=uint32_t getnetbyname C |netdb |struct netent |I_CSBWRE|I_CSBI|S_CSBI|I_CSD|D=struct netent_data* getnetent |netdb |struct netent |I_SBWRE|I_SBIE|S_SBIE|S_SBI|I_SBI|I_SD|D=struct netent_data* getprotobyname C|netdb |struct protoent|I_CSBWR|S_CSBI|I_CSD|D=struct protoent_data* getprotobynumber I |netdb |struct protoent|I_ISBWR|S_ISBI|I_ISD|D=struct protoent_data* getprotoent |netdb |struct protoent|I_SBWR|I_SBI|S_SBI|I_SD|D=struct protoent_data* getpwent |pwd |struct passwd |I_SBWR|I_SBIR|S_SBW|S_SBI|I_SBI|I_SBIH getpwnam C |pwd |struct passwd |I_CSBWR|I_CSBIR|S_CSBI|I_CSBI getpwuid T |pwd |struct passwd |I_TSBWR|I_TSBIR|I_TSBI|S_TSBI|T=uid_t getservbyname CC|netdb |struct servent |I_CCSBWR|S_CCSBI|I_CCSD|D=struct servent_data* getservbyport IC|netdb |struct servent |I_ICSBWR|S_ICSBI|I_ICSD|D=struct servent_data* getservent |netdb |struct servent |I_SBWR|I_SBI|S_SBI|I_SD|D=struct servent_data* getspnam C |shadow |struct spwd |I_CSBWR|S_CSBI gmtime T |time |struct tm |S_TS|T=time_t* localtime T |time |struct tm |S_TS|T=time_t* readdir T |dirent |struct dirent |I_TSR|I_TS|T=DIR* readdir64 T |dirent |struct dirent64|I_TSR|I_TS|T=DIR* setgrent |grp | |I_H|V_H sethostent I |netdb | |I_ID|V_ID|D=struct hostent_data* setlocale IC |locale | |I_ICBI setnetent I |netdb | |I_ID|V_ID|D=struct netent_data* setprotoent I |netdb | |I_ID|V_ID|D=struct protoent_data* setpwent |pwd | |I_H|V_H setservent I |netdb | |I_ID|V_ID|D=struct servent_data* strerror I |string | |I_IBW|I_IBI|B_IBW tmpnam B |stdio | |B_B ttyname I |unistd | |I_IBW|I_IBI|B_IBI