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package devices; # $Id$

use diagnostics;
use strict;

use common;
use run_program;
use log;
use c;

sub size {
    my ($dev) = @_;
    sysopen(my $F, $dev, 0) or log::l("open $dev: $!"), return 0;

    my $valid_offset = sub { sysseek($F, $_[0], 0) && sysread($F, my $_a, 1) };

    #- first try getting the size nicely
    if (my $size = c::total_sectors(fileno $F)) {
	return $size * $common::SECTORSIZE;
    }

    #- sad it didn't work, well searching the size using the dichotomy algorithm!
    my $low = 0;
    my ($high, $mid);

    #- first find n where 2^n < size <= 2^n+1
    for ($high = 1; $high > 0 && $valid_offset->($high); $high *= 2) { $low = $high }

    while ($low < $high - 1) {
	$mid = int(($low + $high) / 2);
	$valid_offset->($mid) ? $low : $high = $mid;
    }
    $low + 1;
}

sub del_loop {
    my ($dev) = @_;
    run_program::run("losetup", "-d", $dev);
}
sub find_free_loop() {
    foreach (0..7) {
	my $dev = make("loop$_");
	sysopen(my $F, $dev, 2) or next;
	!ioctl($F, c::LOOP_GET_STATUS(), my $_tmp) && $! == 6 or next; #- 6 == ENXIO
	return $dev;
    }
    die "no free loop found";
}
sub set_loop {
    my ($file, $o_encrypt_key, $o_encryption) = @_;
    my $dev = find_free_loop();

    if ($o_encrypt_key && $o_encryption) {
	my $cmd = "losetup -p 0 -e $o_encryption $dev $file";
	log::l("calling $cmd");
	open(my $F, "|$cmd");
	print $F $o_encrypt_key;
	close $F or die "losetup failed";
    } else {
	run_program::run("losetup", $dev, $file) or return;
    }
    $dev;
}

sub entry {
    my ($type, $major, $minor);
    local ($_) = @_;

    if (/^0x([\da-f]{3,4})$/i) {
	$type = c::S_IFBLK();
	($major, $minor) = unmakedev(hex $1);
    } elsif (/^sd(.)(\d{0,2})/) {
	$type = c::S_IFBLK();
	$major = 8;
	$minor = 16 * (ord($1) - ord('a')) + ($2 || 0);
    } elsif (/^hd(.)(\d{0,2})/) {
	$type = c::S_IFBLK();
	($major, $minor) =
	    @{ ${{'a' => [3, 0], 'b' => [3, 64],
		   'c' => [22,0], 'd' => [22,64],
		   'e' => [33,0], 'f' => [33,64],
		   'g' => [34,0], 'h' => [34,64],
		   'i' => [56,0], 'j' => [56,64],
		   'k' => [57,0], 'l' => [57,64],
                   'm' => [88,0], 'n' => [88,64],
                   'o' => [89,0], 'p' => [89,64],
                   'q' => [90,0], 'r' => [90,64],
                   's' => [91,0], 't' => [91,64],
	       }}{$1} or die "unknown device $_" };
	$minor += $2 || 0;
    } elsif (/^ram(.*)/) {
	$type = c::S_IFBLK();
	$major = 1;
	$minor = $1 eq '' ? 1 : $1;
    } elsif (m|^rd/c(\d+)d(\d+)(p(\d+))?|) {
	# dac 960 "rd/cXdXXpX"
        $type = c::S_IFBLK();
	$major = 48 + $1;
	$minor = 8 * $2 + $4;
    } elsif (m,(ida|cciss)/c(\d+)d(\d+)(?:p(\d+))?,) {
	# Compaq Smart Array "ida/c0d0{p1}"
	$type = c::S_IFBLK();
	$major = ($1 eq 'ida' ? 72 : 104) + $2;
	$minor = 16 * $3 + ($4 || 0);
    } elsif (m,(ataraid)/d(\d+)(?:p(\d+))?,) {
	# ATA raid "ataraid/d0{p1}"
	$type = c::S_IFBLK();
	$major = 114;
	$minor = 16 * $1 + ($2 || 0);
    } elsif (/(.*?)(\d+)$/) {
	    ($type, $major, $minor) =
	     @{ ${{"fd"          => [ c::S_IFBLK(), 2,  0  ],
		   "hidbp-mse-"  => [ c::S_IFCHR(), 10, 32 ],
		   "lp"          => [ c::S_IFCHR(), 6,  0  ],
		   "usb/lp"      => [ c::S_IFCHR(), 180, 0 ],
		   "input/event" => [ c::S_IFCHR(), 13, 64 ],
		   "loop"        => [ c::S_IFBLK(), 7,  0  ],
		   "md"          => [ c::S_IFBLK(), 9,  0  ],
		   "nst"         => [ c::S_IFCHR(), 9, 128 ],
		   "scd"         => [ c::S_IFBLK(), 11, 0  ],
		   "ttyS"        => [ c::S_IFCHR(), 4, 64  ],
		   "ubd/"        => [ c::S_IFBLK(), 98, 0  ],
	       }}{$1} };
	    $minor += $2;
    }
    unless ($type) {
	($type, $major, $minor) =
	     @{ ${{"aztcd"    => [ c::S_IFBLK(), 29, 0  ],
		   "bpcd"     => [ c::S_IFBLK(), 41, 0  ],
		   "cdu31a"   => [ c::S_IFBLK(), 15, 0  ],
		   "cdu535"   => [ c::S_IFBLK(), 24, 0  ],
		   "cm206cd"  => [ c::S_IFBLK(), 32, 0  ],
		   "gscd"     => [ c::S_IFBLK(), 16, 0  ],
		   "mcd"      => [ c::S_IFBLK(), 23, 0  ],
		   "mcdx"     => [ c::S_IFBLK(), 20, 0  ],
		   "mem"      => [ c::S_IFCHR(), 1,  1  ],
		   "optcd"    => [ c::S_IFBLK(), 17, 0  ],
		   "kbd"      => [ c::S_IFCHR(), 11, 0  ],
		   "psaux"    => [ c::S_IFCHR(), 10, 1  ],
		   "atibm"    => [ c::S_IFCHR(), 10, 3  ],
		   "random"   => [ c::S_IFCHR(), 1,  8  ],
		   "sbpcd"    => [ c::S_IFBLK(), 25, 0  ],
		   "sjcd"     => [ c::S_IFBLK(), 18, 0  ],
		   "tty"      => [ c::S_IFCHR(),  5, 0  ],
		   "usbmouse" => [ c::S_IFCHR(), 13, 63 ], #- aka /dev/input/mice
		   "adbmouse" => [ c::S_IFCHR(), 10, 10 ], #- PPC
		   "vcsa"     => [ c::S_IFCHR(), 7,  128 ],
		   "zero"     => [ c::S_IFCHR(), 1,  5  ],		     
		   "null"     => [ c::S_IFCHR(), 1,  3  ],		     
	       }}{$_} or die "unknown device $_ (caller is " . join(":", caller()) . ")" };
    }
    ($type, $major, $minor);
}


sub make($) {
    local $_ = my $file = $_[0];

    if (m,^(.*/(?:dev|tmp))/(.*),) {
	$_ = $2;
    } else {
	$file =~ m|^/| && -e $file or $file = "/tmp/$_";
	$file =~ m|^/| && -e $file or $file = "/dev/$_";
    }
    -e $file and return $file; #- assume nobody takes fun at creating files named as device

    my ($type, $major, $minor) = eval { entry($_) };
    $@ and die "unknown device $_ (caller is " . join(":", caller()) . ")";

    if ($file =~ m|/dev/| && -e '/dev/.devfsd') {
	#- argh, creating devices is no good with devfs...
	#- return the file even if the device file doesn't exist
	#- the caller will fail or not, better compatibility than raising an exception here
	return $file;
    }

    #- make a directory for this inode if needed.
    mkdir_p(dirname($file));

    syscall_('mknod', $file, $type | 0600, makedev($major, $minor)) or die "mknod failed (dev $_): $!";

    $file;
}


#- only isomorphic entries are allowed, 
#- i.e. entries which can go devfs -> normal and normal -> devfs
my %to_devfs = (
    psaux => 'misc/psaux',
    usbmouse => 'input/mice',
);
my %to_devfs_prefix = (
    ttyS => 'tts/',
);

sub to_devfs {
    my ($dev) = @_;
    if (my $r = $to_devfs{$dev}) { 
	return $r;
    } elsif ($dev =~ /(.*?)(\d+)$/) {
	my $r = $to_devfs_prefix{$1};
	return "$r$2" if $r;
    }
    readlink("/dev/" . $dev);
}

sub read_proc_partitions_raw() {
    my (undef, undef, @all) = cat_("/proc/partitions");
    grep {
	$_->{size} != 1 &&	 # skip main extended partition
	$_->{size} != 0x3fffffff # skip cdroms (otherwise stops cd-audios)
    } map { 
	my %l; 
	@l{qw(major minor size dev)} = split; 
	\%l;
    } @all;
}

sub from_devfs {
    my ($dev) = @_;
    my %from_devfs = reverse %to_devfs;
    if (my $r = $from_devfs{$dev}) { 
	return $r;
    } elsif ($dev =~ /(.*?)(\d+)$/) {
	my %from_devfs_prefix = reverse %to_devfs_prefix;
	my $r = $from_devfs_prefix{$1};
	return "$r$2" if $r;
    }
    $dev = "/dev/" . $dev;
    if (-e $dev) {
        my ($major, $minor) = unmakedev((stat($dev))[6]);
        my $r = find { $_->{major} == $major && $_->{minor} == $minor } read_proc_partitions_raw();
        $r and return $r->{dev};
    }
    undef;
}

1;
)); addr.sin_family = AF_INET; addr.sin_port = 0; inet_aton(gateway, &addr.sin_addr); memcpy(&route.rt_gateway, &addr, sizeof(addr)); addr.sin_addr.s_addr = INADDR_ANY; memcpy(&route.rt_dst, &addr, sizeof(addr)); memcpy(&route.rt_genmask, &addr, sizeof(addr)); route.rt_flags = RTF_UP | RTF_GATEWAY; route.rt_metric = 0; RETVAL = !ioctl(s, SIOCADDRT, &route); OUTPUT: RETVAL char* get_hw_address(const char* ifname) CODE: int s; struct ifreq ifr; unsigned char *a; char *res; s = socket(AF_INET, SOCK_DGRAM, IPPROTO_IP); if (s < 0) { perror("socket"); RETVAL = NULL; return; } strncpy((char*) &ifr.ifr_name, ifname, IFNAMSIZ); if (ioctl(s, SIOCGIFHWADDR, &ifr) < 0) { perror("ioctl(SIOCGIFHWADDR)"); RETVAL = NULL; return; } a = (unsigned char*)ifr.ifr_hwaddr.sa_data; asprintf(&res, "%02x:%02x:%02x:%02x:%02x:%02x", a[0],a[1],a[2],a[3],a[4],a[5]); RETVAL= res; OUTPUT: RETVAL void strftime(fmt, sec, min, hour, mday, mon, year, wday = -1, yday = -1, isdst = -1) char * fmt int sec int min int hour int mday int mon int year int wday int yday int isdst CODE: { char *buf = my_strftime(fmt, sec, min, hour, mday, mon, year, wday, yday, isdst); if (buf) { ST(0) = sv_2mortal(newSVpv(buf, 0)); Safefree(buf); } } #define BITS_PER_LONG (sizeof(long) * 8) #define NBITS(x) ((((x)-1)/BITS_PER_LONG)+1) #define OFF(x) ((x)%BITS_PER_LONG) #define BIT(x) (1UL<<OFF(x)) #define LONG(x) ((x)/BITS_PER_LONG) #define test_bit(bit, array) ((array[LONG(bit)] >> OFF(bit)) & 1) void EVIocGBitKey (char *file) PPCODE: int fd; int i; long bitmask[NBITS(KEY_MAX)]; fd = open (file, O_RDONLY); if (fd < 0) { perror("Cannot open /dev/input/eventX"); return; } if (ioctl (fd, EVIOCGBIT(EV_KEY, sizeof (bitmask)), bitmask) < 0) { perror ("ioctl EVIOCGBIT failed"); close (fd); return; } close (fd); for (i = NBITS(KEY_MAX) - 1; i > 0; i--) if (bitmask[i]) break; for (; i >= 0; i--) { EXTEND(sp, 1); PUSHs(sv_2mortal(newSViv(bitmask[i]))); } char * kernel_version() CODE: struct utsname u; if (uname(&u) == 0) RETVAL = u.release; else RETVAL = NULL; OUTPUT: RETVAL void set_tagged_utf8(s) SV *s CODE: SvUTF8_on(s); void get_iso_volume_ids(int fd) INIT: struct iso_primary_descriptor voldesc; PPCODE: lseek(fd, 16 * ISOFS_BLOCK_SIZE, SEEK_SET); if (read(fd, &voldesc, sizeof(struct iso_primary_descriptor)) == sizeof(struct iso_primary_descriptor)) { if (voldesc.type[0] == ISO_VD_PRIMARY && !strncmp(voldesc.id, ISO_STANDARD_ID, sizeof(voldesc.id))) { size_t vol_id_len = length_of_space_padded(voldesc.volume_id, sizeof(voldesc.volume_id)); size_t app_id_len = length_of_space_padded(voldesc.application_id, sizeof(voldesc.application_id)); XPUSHs(vol_id_len != -1 ? sv_2mortal(newSVpv(voldesc.volume_id, vol_id_len)) : newSVpvs("")); XPUSHs(app_id_len != -1 ? sv_2mortal(newSVpv(voldesc.application_id, app_id_len)) : newSVpvs("")); } } '; print ' const char * get_disk_type(char * device_path) CODE: PedDevice *dev = ped_device_get(device_path); RETVAL = NULL; if(dev) { PedDisk* disk = ped_disk_new(dev); if(disk) { RETVAL = disk->type->name; ped_disk_destroy(disk); } } OUTPUT: RETVAL void get_disk_partitions(char * device_path) PPCODE: PedDevice *dev = ped_device_get(device_path); if(dev) { PedDisk* disk = ped_disk_new(dev); PedPartition *part = NULL; if(disk) part = ped_disk_next_partition(disk, NULL); while(part) { if(part->num != -1) { char desc[4196]; char *path = ped_partition_get_path(part); sprintf(desc, "%d ", part->num); sprintf(desc+strlen(desc), "%s ", path); free(path); if(part->fs_type) strcat(desc, part->fs_type->name); if(part->type == 0x0) strcat(desc, " normal"); else { if(part->type & PED_PARTITION_LOGICAL) strcat(desc, " logical"); if(part->type & PED_PARTITION_EXTENDED) strcat(desc, " extended"); if(part->type & PED_PARTITION_FREESPACE) strcat(desc, " freespace"); if(part->type & PED_PARTITION_METADATA) strcat(desc, " metadata"); if(part->type & PED_PARTITION_PROTECTED) strcat(desc, " protected"); } sprintf(desc+strlen(desc), " (%lld,%lld,%lld)", part->geom.start, part->geom.end, part->geom.length); XPUSHs(sv_2mortal(newSVpv(desc, 0))); } part = ped_disk_next_partition(disk, part); } if(disk) ped_disk_destroy(disk); } int set_disk_type(char * device_path, const char * type_name) CODE: PedDevice *dev = ped_device_get(device_path); RETVAL = 0; if(dev) { PedDiskType* type = ped_disk_type_get(type_name); if(type) { PedDisk* disk = ped_disk_new_fresh(dev, type); if(disk) { RETVAL = ped_disk_commit(disk); ped_disk_destroy(disk); } } } OUTPUT: RETVAL int disk_delete_all(char * device_path) CODE: PedDevice *dev = ped_device_get(device_path); RETVAL = 0; if(dev) { PedDisk* disk = ped_disk_new(dev); if(disk) { RETVAL = ped_disk_delete_all(disk); if(RETVAL) RETVAL = ped_disk_commit(disk); ped_disk_destroy(disk); } } OUTPUT: RETVAL int disk_del_partition(char * device_path, int part_number) CODE: PedDevice *dev = ped_device_get(device_path); RETVAL = 0; if(dev) { PedDisk* disk = ped_disk_new(dev); if(disk) { PedPartition* part = ped_disk_get_partition(disk, part_number); if(!part) { printf("disk_del_partition: failed to find partition\n"); } else { RETVAL=ped_disk_delete_partition(disk, part); if(RETVAL) { RETVAL = ped_disk_commit(disk); } else { printf("del_partition failed\n"); } } ped_disk_destroy(disk); } } OUTPUT: RETVAL int disk_add_partition(char * device_path, double start, double length, const char * fs_type) CODE: PedDevice *dev = ped_device_get(device_path); RETVAL=0; if(dev) { PedDisk* disk = ped_disk_new(dev); if(disk) { PedGeometry* geom = ped_geometry_new(dev, (long long)start, (long long)length); PedPartition* part = ped_partition_new (disk, PED_PARTITION_NORMAL, ped_file_system_type_get(fs_type), (long long)start, (long long)start+length-1); PedConstraint* constraint = ped_constraint_new_from_max(geom); if(!part) { printf("ped_partition_new failed\n"); } else RETVAL = ped_disk_add_partition (disk, part, constraint); if(RETVAL) { RETVAL = ped_disk_commit(disk); } else { printf("add_partition failed\n"); } ped_geometry_destroy(geom); ped_constraint_destroy(constraint); ped_disk_destroy(disk); } } OUTPUT: RETVAL #define BACKTRACE_DEPTH 20 char* C_backtrace() CODE: static char buf[1024]; int nAddresses, i; unsigned long idx = 0; void * addresses[BACKTRACE_DEPTH]; char ** symbols = NULL; nAddresses = backtrace(addresses, BACKTRACE_DEPTH); symbols = backtrace_symbols(addresses, nAddresses); if (symbols == NULL) { idx += sprintf(buf+idx, "ERROR: Retrieving symbols failed.\n"); } else { /* dump stack trace */ for (i = 0; i < nAddresses; ++i) idx += sprintf(buf+idx, "%d: %s\n", i, symbols[i]); } RETVAL = strdup(buf); OUTPUT: RETVAL '; @macros = ( [ qw(int S_IFCHR S_IFBLK S_IFIFO S_IFMT KDSKBENT K_NOSUCHMAP NR_KEYS MAX_NR_KEYMAPS BLKRRPART TIOCSCTTY HDIO_GETGEO LOOP_GET_STATUS MS_MGC_VAL O_WRONLY O_RDWR O_CREAT O_NONBLOCK F_SETFL F_GETFL WNOHANG VT_ACTIVATE VT_WAITACTIVE VT_GETSTATE CDROMEJECT CDROMCLOSETRAY CDROM_LOCKDOOR LOG_WARNING LOG_INFO LOG_LOCAL1 LC_COLLATE ) ], ); $\= "\n"; print; foreach (@macros) { my ($type, @l) = @$_; foreach (@l) { print<< "END" $type $_() CODE: RETVAL = $_; OUTPUT: RETVAL END } } print ' PROTOTYPES: DISABLE ';