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package pkgs; # $Id: pkgs.pm 269470 2010-05-26 09:23:39Z pterjan $

use strict;

use common;
use run_program;
use detect_devices;
use log;

sub rpmsrate_rate_max() {
    5; # also defined in perl-URPM
}

sub rpmsrate_rate_default() {
    detect_devices::need_light_desktop() ? 5 : 4;
}

sub read_rpmsrate_raw {
    my ($file) = @_;
    my $line_nb = 0;
    my $fatal_error;
    my (%flags, %rates, @need_to_copy);
    my (@l);
    local $_;
    foreach (cat_($file)) {
	$line_nb++;
	/\t/ and die "tabulations not allowed at line $line_nb\n";
	s/#.*//; # comments

	my ($indent, $data) = /(\s*)(.*)/;
	next if !$data; # skip empty lines

	@l = grep { $_->[0] < length $indent } @l;

	my @m = @l ? @{$l[-1][1]} : ();
	my ($t, $flag, @l2);
	while ($data =~ 
	       /^((
                   [1-6]
                   |
                   (?:            (?: !\s*)? [0-9A-Z_]+(?:".*?")?)
                   (?: \s*\|\|\s* (?: !\s*)? [0-9A-Z_]+(?:".*?")?)*
                  )
                  (?:\s+|$)
                 )(.*)/x) { #@")) {
	    ($t, $flag, $data) = ($1,$2,$3);
	    while ($flag =~ s,^\s*(("[^"]*"|[^"\s]*)*)\s+,$1,) {}
	    push @m, $flag;
	    push @l2, [ length $indent, [ @m ] ];
	    $indent .= $t;
	}
	if ($data) {
	    # has packages on same line
	    my ($rates, $flags) = partition { /^\d$/ } @m;
	    my ($rate) = @$rates or die sprintf qq(missing rate for "%s" at line %d (flags are %s)\n), $data, $line_nb, join('&&', @m);
	    foreach my $name (split ' ', $data) {
		if (uc($name) eq $name) {
		    log::l("$line_nb: $name is parsed as a package name, not as a flag");
		}
		if (member('INSTALL', @$flags)) {
		    push @need_to_copy, $name if !member('NOCOPY', @$flags);
		    next;    #- do not need to put INSTALL flag for a package.
		}
		if (member('PRINTER', @$flags)) {
		    push @need_to_copy, $name;
		}
		my @new_flags = @$flags;
		if (my $previous = $flags{$name}) {
		    my @common = intersection($flags, $previous);
		    my @diff1 = difference2($flags, \@common);
		    my @diff2 = difference2($previous, \@common);
		    if (!@diff1 || !@diff2) {
			@new_flags = @common;
		    } elsif (@diff1 == 1 && @diff2 == 1) {
			@new_flags = (@common, join('||', $diff1[0], $diff2[0]));
		    } else {
			log::l("$line_nb: cannot handle complicate flags for packages appearing twice ($name)");
			$fatal_error++;
		    }
		    log::l("$line_nb: package $name appearing twice with different rates ($rate != " . $rates{$name} . ")") if $rate != $rates{$name};
		}
		$rates{$name} = $rate;
		$flags{$name} = \@new_flags;
	    }
	    push @l, @l2;
	} else {
	    push @l, [ $l2[0][0], $l2[-1][1] ];
	}
    }
    $fatal_error and die "$fatal_error fatal errors in rpmsrate";
    \%rates, \%flags, \@need_to_copy;
}

sub read_rpmsrate {
    my ($packages, $rpmsrate_flags_chosen, $file, $match_all_hardware) = @_;

    my ($rates, $flags, $need_to_copy) = read_rpmsrate_raw($file);
    
    my ($TYPEs, @probeall);
    if (!$match_all_hardware) {
	$TYPEs = detect_devices::matching_types();
	@probeall = detect_devices::probeall();
    }

    foreach (keys %$flags) {
	my @flags = @{$flags->{$_}};
	my $p;
	if ($::isInstall) {
            $p = install::pkgs::packageByName($packages, $_) or next;
            if (my @l = map { /locales-(.*)/ ? qq(LOCALES"$1") : () } $p->requires_nosense) {
                if (@l > 1) {
                    log::l("ERROR: package $_ is requiring many locales") if $_ ne 'lsb';
                } else {
                    push @flags, @l;
                }
            }
	}

	@flags = map {
	    my ($user_flags, $known_flags) = partition { /^!?CAT_/ } split('\|\|', $_);
	    my $ok = find {
		my $inv = s/^!//;
		return 0 if $::isStandalone && $inv;
		if (my ($p) = /^HW"(.*)"/) {
		    $match_all_hardware ? 1 : ($inv xor find { $_->{description} =~ /$p/i } @probeall);
		} elsif (($p) = /^DRIVER"(.*)"/) {
		    $match_all_hardware ? 1 : ($inv xor find { $_->{driver} =~ /$p/i } @probeall);
		} elsif (($p) = /^TYPE"(.*)"/) {
		    $match_all_hardware ? 1 : ($inv xor $TYPEs->{$p});
		} elsif (($p) = /^HW_CAT"(.*)"/) {
		    $match_all_hardware ? 1 : ($inv xor detect_devices::probe_category($p));
		} else { # LOCALES"", SOUND, ...
		    $inv xor $rpmsrate_flags_chosen->{$_};
		}
	    } @$known_flags;
	    $ok ? 'TRUE' : @$user_flags ? join('||', @$user_flags) : 'FALSE';
	} @flags;

	@flags = member('FALSE', @flags) ? 'FALSE' : @flags;
	if ($::isInstall) {
            $p->set_rate($rates->{$_});
            $p->set_rflags(@flags);
	} else {
            $flags->{$_} = \@flags;
	}
    }
    push @{$packages->{needToCopy} ||= []}, @$need_to_copy if ref($packages);
    return ($rates, $flags);
}


sub simple_read_rpmsrate {
    my ($o_match_all_hardware, $o_ignore_flags) = @_;
    my ($rates, $flags) = read_rpmsrate({}, {}, $::prefix . '/usr/share/meta-task/rpmsrate-raw', $o_match_all_hardware);

    # FIXME: we do not handle !CAT_desktop but we do not care for now:
    if (!$o_match_all_hardware && $o_ignore_flags) {
        while (my ($pkg, $pkg_flags) = each %$flags) {
            my $flags_str = "@$pkg_flags";
            if ($flags_str =~ /TRUE/ && any { $flags_str =~ /[^!]$_/ } @$o_ignore_flags) {
                delete $flags->{$pkg};
            }
        }
    }

    grep { member('TRUE', @{$flags->{$_}}) && $rates->{$_} >= 5 } keys %$flags;
}

sub detect_rpmsrate_hardware_packages {
    my ($o_match_all_hardware, $ignore_flags) = @_;
    grep { !/openoffice|java/ } simple_read_rpmsrate($o_match_all_hardware, $ignore_flags);
}

sub detect_graphical_drivers {
    my ($do_pkgs, $o_match_all_hardware) = @_;
    require Xconfig::card;
    require Xconfig::proprietary;

    my @cards;
    if ($o_match_all_hardware) {
        my $all_cards = Xconfig::card::readCardsDB("$ENV{SHARE_PATH}/ldetect-lst/Cards+");
        @cards = values %$all_cards;
    } else {
        @cards = Xconfig::card::probe();
    }

    my @drivers = grep { $_ } uniq(map { $_->{Driver2} } @cards);
    map { Xconfig::proprietary::pkgs_for_Driver2($_, $do_pkgs) } @drivers;
}

sub detect_network_drivers {
    my ($do_pkgs, $o_match_all_hardware) = @_;
    require network::connection;
    require network::thirdparty;

    my @l;
    foreach my $type (network::connection->get_types) {
        $type->can('get_thirdparty_settings') or next;
        my @network_settings;
        my @all_settings = @{$type->get_thirdparty_settings || []};
        if ($o_match_all_hardware) {
            @network_settings = @all_settings;
        } else {
            my @connections = $type->get_connections(automatic_only => 1, fast_only => 1);
            @network_settings = map { network::thirdparty::find_settings(\@all_settings, $_->get_driver) } @connections;
        }
        foreach my $settings (@network_settings) {
            foreach (@network::thirdparty::thirdparty_types) {
                my @packages = network::thirdparty::get_required_packages($_, $settings);
                push @l, network::thirdparty::get_available_packages($_, $do_pkgs, @packages);
            }
        }
    }
    @l;
}

sub detect_hardware_packages {
    my ($do_pkgs, $o_match_all_hardware) = @_;
    my @ignore_flags = $::isInstall ? () : (
        if_(!$do_pkgs->is_installed('task-kde4-minimal'), "CAT_KDE"),
        if_(!$do_pkgs->is_installed('task-gnome-minimal'), "CAT_GNOME"),
    );
    (
        ($::isInstall ? () : detect_rpmsrate_hardware_packages($o_match_all_hardware, \@ignore_flags)),
        detect_graphical_drivers($do_pkgs, $o_match_all_hardware),
        detect_network_drivers($do_pkgs, $o_match_all_hardware),
    );
}

sub detect_unused_hardware_packages {
    my ($do_pkgs) = @_;
    my @all_hardware_packages = detect_hardware_packages($do_pkgs, 'match_all_hardware');
    my @used_hardware_packages = detect_hardware_packages($do_pkgs);
    my @unneeded_hardware_packages = difference2(\@all_hardware_packages, \@used_hardware_packages);
    $do_pkgs->are_installed(@unneeded_hardware_packages);
}

sub detect_unselected_locale_packages {
    my ($do_pkgs) = @_;
    require lang;
    my $locales_prefix = 'locales-';
    my $locale = lang::read();
    my $selected_locale = $locales_prefix . lang::locale_to_main_locale($locale->{lang});
    my @available_locales = $do_pkgs->are_installed($locales_prefix . '*');
    member($selected_locale, @available_locales) ? difference2(\@available_locales, [ $selected_locale ]) : ();
}

sub remove_unused_packages {
    my ($in, $do_pkgs, $o_prefix) = @_;

    my $wait;
    $wait = $in->wait_message(N("Unused packages removal"), N("Finding unused hardware packages..."));
    my @unused_hardware_packages = detect_unused_hardware_packages($do_pkgs);
    undef $wait;
    $wait = $in->wait_message(N("Unused packages removal"), N("Finding unused localization packages..."));
    my @unselected_locales = detect_unselected_locale_packages($do_pkgs);
    undef $wait;

    # Packages to not remove even if they seem unused
    my @wanted_hardware_packages = qw(gnome-bluetooth gnome-phone-manager kbluetooth kppp ppp wireless-tools wpa_supplicant);
    @unused_hardware_packages = difference2(\@unused_hardware_packages, \@wanted_hardware_packages);

    @unused_hardware_packages || @unselected_locales or return;

    my $hardware = @unused_hardware_packages;
    my $locales = @unselected_locales;
    $in->ask_from(
	N("Unused packages removal"),
	N("We have detected that some packages are not needed for your system configuration.") . "\n" .
	N("We will remove the following packages, unless you choose otherwise:"),
	[
	 if_(@unused_hardware_packages,
	     { text => N("Unused hardware support"), val => \$hardware, type => "bool" },
	     { label => N("Unused hardware support") . "\n" . join("\n", map { "  " . $_ } sort(@unused_hardware_packages)), advanced => 1 },
	 ),
	 if_(@unselected_locales,
	     { text => N("Unused localization"), val => \$locales, type => "bool" },
	     { label => N("Unused localization") . "\n"  . join("\n", map { "  " . $_ } sort(@unselected_locales)), advanced => 1 },
	 ),
	],
	if_($::isWizard, cancel => N("Skip")),
    ) && ($hardware || $locales) or return;

    #- we should have some gurpme
    $wait = $in->wait_message(N("Please wait"), N("Removing packages..."));
    run_program::rooted($o_prefix, 'urpme', '--auto',
		     if_($hardware, @unused_hardware_packages),
		     if_($locales, @unselected_locales),
	);
    #- use script from One to list language files (/usr/share/locale mainly) and remove them?
}

1;
; 1; sub important_types { my @l = (@important_types, if_($::expert, @important_types2, sort values %types)); difference2(\@l, \@bad_types); } sub type2fs { $type2fs{$_[0]{type}} || $_[0]{type} } sub fs2type { $fs2type{$_[0]} || $_[0] } sub type2name { $types{$_[0]} || $_[0] } sub name2type { local ($_) = @_; /0x(.*)/ ? hex $1 : $types_rev{$_} || $_; } sub isWholedisk { arch() =~ /^sparc/ && $_[0]{type} == 5 } sub isExtended { arch() !~ /^sparc/ && ($_[0]{type} == 5 || $_[0]{type} == 0xf || $_[0]{type} == 0x85) } sub isRawLVM { $_[0]{type} == 0x8e } sub isRawRAID { $_[0]{type} == 0xfd } sub isSwap { type2fs($_[0]) eq 'swap' } sub isExt2 { type2fs($_[0]) eq 'ext2' } sub isDos { arch() !~ /^sparc/ && $ {{ 1=>1, 4=>1, 6=>1 }}{$_[0]{type}} } sub isWin { $ {{ 0xb=>1, 0xc=>1, 0xe=>1, 0x1b=>1, 0x1c=>1, 0x1e=>1 }}{$_[0]{type}} } sub isFat { isDos($_[0]) || isWin($_[0]) } sub isSunOS { arch() =~ /sparc/ && $ {{ 0x1=>1, 0x2=>1, 0x4=>1, 0x6=>1, 0x7=>1, 0x8=>1 }}{$_[0]{type}} } sub isNfs { $_[0]{type} eq 'nfs' } sub isNT { arch() !~ /^sparc/ && $_[0]{type} == 0x7 } sub isApple { type2fs($_[0]) eq 'apple' && defined $_[0]{isDriver} } sub isAppleBootstrap { type2fs($_[0]) eq 'apple' && defined $_[0]{isBoot} } sub isHiddenMacPart { defined $_[0]{isMap} } sub isThisFs { type2fs($_[1]) eq $_[0] } sub isTrueFS { member(type2fs($_[0]), qw(ext2 reiserfs xfs jfs ext3)) } sub isOtherAvailableFS { isFat($_[0]) || isSunOS($_[0]) || isThisFs('hfs', $_[0]) } #- other OS that linux can access its filesystem sub isMountableRW { isTrueFS($_[0]) || isOtherAvailableFS($_[0]) } sub isNonMountable { isRawRAID($_[0]) || isRawLVM($_[0]) } sub isPartOfLVM { defined $_[0]{lvm} } sub isPartOfRAID { defined $_[0]{raid} } sub isPartOfLoopback { defined $_[0]{loopback} } sub isRAID { $_[0]{device} =~ /^md/ } sub isLVM { $_[0]{LVMname} } sub isLoopback { defined $_[0]{loopback_file} } sub isMounted { $_[0]{isMounted} } sub isBusy { isMounted($_[0]) || isPartOfRAID($_[0]) || isPartOfLVM($_[0]) || isPartOfLoopback($_[0]) } sub isSpecial { isRAID($_[0]) || isLVM($_[0]) || isLoopback($_[0]) } sub maybeFormatted { $_[0]{isFormatted} || !$_[0]{notFormatted} } #- works for both hard drives and partitions ;p sub description { my ($hd) = @_; my $win = $hd->{device_windobe}; sprintf "%s%s (%s%s%s%s)", $hd->{device}, $win && " [$win:]", formatXiB($hd->{totalsectors} || $hd->{size}, 512), $hd->{info} && ", $hd->{info}", $hd->{mntpoint} && ", " . $hd->{mntpoint}, $hd->{type} && ", " . type2name($hd->{type}); } sub isPrimary { my ($part, $hd) = @_; foreach (@{$hd->{primary}{raw}}) { $part eq $_ and return 1; } 0; } sub adjustStartAndEnd { my ($hd, $part) = @_; $hd->adjustStart($part); $hd->adjustEnd($part); } sub verifyNotOverlap { my ($a, $b) = @_; $a->{start} + $a->{size} <= $b->{start} || $b->{start} + $b->{size} <= $a->{start}; } sub verifyInside { my ($a, $b) = @_; $b->{start} <= $a->{start} && $a->{start} + $a->{size} <= $b->{start} + $b->{size}; } sub verifyParts_ { foreach my $i (@_) { foreach (@_) { next if !$i || !$_ || $i == $_ || isWholedisk($i) || isExtended($i); #- avoid testing twice for simplicity :-) if (isWholedisk($_)) { verifyInside($i, $_) or cdie sprintf("partition sector #$i->{start} (%s) is not inside whole disk (%s)!", formatXiB($i->{size}, 512), formatXiB($_->{size}, 512)); } elsif (isExtended($_)) { verifyNotOverlap($i, $_) or log::l(sprintf("warning partition sector #$i->{start} (%s) is overlapping with extended partition!", formatXiB($i->{size}, 512))); #- only warning for this one is acceptable } else { verifyNotOverlap($i, $_) or cdie sprintf("partitions sector #$i->{start} (%s) and sector #$_->{start} (%s) are overlapping!", formatXiB($i->{size}, 512), formatXiB($_->{size}, 512)); } } } } sub verifyParts { my ($hd) = @_; verifyParts_(get_normal_parts($hd)); } sub verifyPrimary { my ($pt) = @_; $_->{start} > 0 || arch() =~ /^sparc/ || die "partition must NOT start at sector 0" foreach @{$pt->{normal}}; verifyParts_(@{$pt->{normal}}, $pt->{extended}); } sub assign_device_numbers { my ($hd) = @_; my $i = 1; my $start = 1; #- on PPC we need to assign device numbers to the holes too - big FUN! #- not if it's an IBM machine using a DOS partition table though if (arch() =~ /ppc/ && detect_devices::get_mac_model() !~ /^IBM/) { #- first sort the normal parts $hd->{primary}{normal} = [sort { $a->{start} <=> $b->{start} } @{$hd->{primary}{normal}} ]; #- now loop through them, assigning partition numbers - reserve one for the holes foreach (@{$hd->{primary}{normal}}) { if ($_->{start} > $start) { log::l("PPC: found a hole on $hd->{prefix} before $_->{start}, skipping device..."); $i++; } $_->{device} = $hd->{prefix} . $i++; $start = $_->{start} + $_->{size}; } } else { foreach (@{$hd->{primary}{raw}}) { my $dev = $hd->{prefix} . $i++; $_->{device} = $dev; } foreach (map { $_->{normal} } @{$hd->{extended} || []}) { my $dev = $hd->{prefix} . $i++; push @{$hd->{partitionsRenumbered}}, [ $_->{device}, $dev ] if $_->{device} && $dev ne $_->{device}; $_->{device} = $dev; } } #- try to figure what the windobe drive letter could be! # #- first verify there's at least one primary dos partition, otherwise it #- means it is a secondary disk and all will be false :( my ($c, @others) = grep { isFat($_) } @{$hd->{primary}{normal}}; $i = ord 'C'; $c->{device_windobe} = chr($i++) if $c; $_->{device_windobe} = chr($i++) foreach grep { isFat($_) } map { $_->{normal} } @{$hd->{extended}}; $_->{device_windobe} = chr($i++) foreach @others; } sub remove_empty_extended { my ($hd) = @_; my $last = $hd->{primary}{extended} or return; @{$hd->{extended}} = grep { if ($_->{normal}) { $last = $_; } else { %{$last->{extended}} = $_->{extended} ? %{$_->{extended}} : (); } $_->{normal}; } @{$hd->{extended}}; adjust_main_extended($hd); } sub adjust_main_extended { my ($hd) = @_; if (!is_empty_array_ref $hd->{extended}) { my ($l, @l) = @{$hd->{extended}}; # the first is a special case, must recompute its real size my $start = round_down($l->{normal}{start} - 1, $hd->{geom}{sectors}); my $end = $l->{normal}{start} + $l->{normal}{size}; my $only_linux = 1; my $has_win_lba = 0; foreach (map $_->{normal}, $l, @l) { $start = min($start, $_->{start}); $end = max($end, $_->{start} + $_->{size}); $only_linux &&= isTrueFS($_) || isSwap($_); $has_win_lba ||= $_->{type} == 0xc || $_->{type} == 0xe; } $l->{start} = $hd->{primary}{extended}{start} = $start; $l->{size} = $hd->{primary}{extended}{size} = $end - $start; } unless (@{$hd->{extended} || []} || !$hd->{primary}{extended}) { %{$hd->{primary}{extended}} = (); #- modify the raw entry delete $hd->{primary}{extended}; } verifyParts($hd); #- verify everything is all right } sub adjust_local_extended { my ($hd, $part) = @_; foreach (@{$hd->{extended} || []}) { $_->{normal} == $part or next; $_->{size} = $part->{size} + $part->{start} - $_->{start}; last; } } sub get_normal_parts { my ($hd) = @_; @{$hd->{primary}{normal} || []}, map { $_->{normal} } @{$hd->{extended} || []} } sub get_normal_parts_and_holes { my ($hd) = @_; my ($start, $last) = ($hd->first_usable_sector, $hd->last_usable_sector); ref($hd) or print("get_normal_parts_and_holes: bad hd" . backtrace(), "\n"); my @l = map { my $current = $start; $start = $_->{start} + $_->{size}; my $hole = { start => $current, size => $_->{start} - $current, type => 0, rootDevice => $hd->{device} }; $hole, $_; } sort { $a->{start} <=> $b->{start} } grep { !isWholedisk($_) } get_normal_parts($hd); push @l, { start => $start, size => $last - $start, type => 0, rootDevice => $hd->{device} }; grep { $_->{type} || $_->{size} >= $hd->cylinder_size } @l; } sub read_one($$) { my ($hd, $sector) = @_; my ($pt, $info); #- it can be safely considered that the first sector is used to probe the partition table #- but other sectors (typically for extended partition ones) have to match this type! if (!$sector) { my @parttype = ( if_(arch() =~ /^ia64/, 'gpt'), arch() =~ /^sparc/ ? ('sun', 'bsd', 'unknown') : ('dos', 'bsd', 'sun', 'mac', 'unknown'), ); foreach ('empty', @parttype) { /unknown/ and die "unknown partition table format"; eval { require("partition_table_$_.pm"); bless $hd, "partition_table_$_"; ($pt, $info) = $hd->read($sector); log::l("found a $_ partition table on $hd->{file} at sector $sector"); }; $@ or last; } } else { #- keep current blessed object for that, this means it is neccessary to read sector 0 before. ($pt, $info) = $hd->read($sector); } my @extended = $hd->hasExtended ? grep { isExtended($_) } @$pt : (); my @normal = grep { $_->{size} && $_->{type} && !isExtended($_) } @$pt; @extended > 1 and die "more than one extended partition"; $_->{rootDevice} = $hd->{device} foreach @normal, @extended; { raw => $pt, extended => $extended[0], normal => \@normal, info => $info }; } sub read($;$) { my ($hd, $clearall) = @_; if ($clearall) { partition_table_raw::zero_MBR_and_dirty($hd); return 1; } my $pt = read_one($hd, 0) or return 0; $hd->{primary} = $pt; undef $hd->{extended}; verifyPrimary($pt); eval { my $need_removing_empty_extended; $pt->{extended} and read_extended($hd, $pt->{extended}, \$need_removing_empty_extended) || return 0; if ($need_removing_empty_extended) { #- special case when hda5 is empty, it must be skipped #- (windows XP generates such partition tables) remove_empty_extended($hd); #- includes adjust_main_extended } }; die "extended partition: $@" if $@; assign_device_numbers($hd); remove_empty_extended($hd); 1; } sub read_extended { my ($hd, $extended, $need_removing_empty_extended) = @_; my $pt = read_one($hd, $extended->{start}) or return 0; $pt = { %$extended, %$pt }; push @{$hd->{extended}}, $pt; @{$hd->{extended}} > 100 and die "oops, seems like we're looping here :( (or you have more than 100 extended partitions!)"; if (@{$pt->{normal}} == 0) { $$need_removing_empty_extended = 1; delete $pt->{normal}; print "need_removing_empty_extended\n"; } elsif (@{$pt->{normal}} > 1) { die "more than one normal partition in extended partition"; } else { $pt->{normal} = $pt->{normal}[0]; #- in case of extended partitions, the start sector is local to the partition or to the first extended_part! $pt->{normal}{start} += $pt->{start}; #- the following verification can broke an existing partition table that is #- correctly read by fdisk or cfdisk. maybe the extended partition can be #- recomputed to get correct size. if (!verifyInside($pt->{normal}, $extended)) { $extended->{size} = $pt->{normal}{start} + $pt->{normal}{size}; verifyInside($pt->{normal}, $extended) or die "partition $pt->{normal}{device} is not inside its extended partition"; } } if ($pt->{extended}) { $pt->{extended}{start} += $hd->{primary}{extended}{start}; return read_extended($hd, $pt->{extended}, $need_removing_empty_extended); } else { 1; } } # write the partition table sub write { my ($hd) = @_; $hd->{isDirty} or return; #- set first primary partition active if no primary partitions are marked as active. if (my @l = @{$hd->{primary}{raw}}) { foreach (@l) { $_->{local_start} = $_->{start}; $_->{active} ||= 0; } $l[0]{active} = 0x80 if !grep { $_->{active} } @l; } #- last chance for verification, this make sure if an error is detected, #- it will never be writed back on partition table. verifyParts($hd); $hd->write(0, $hd->{primary}{raw}, $hd->{primary}{info}) or die "writing of partition table failed"; #- should be fixed but a extended exist with no real extended partition, that blanks mbr! if (arch() !~ /^sparc/) { foreach (@{$hd->{extended}}) { # in case of extended partitions, the start sector must be local to the partition $_->{normal}{local_start} = $_->{normal}{start} - $_->{start}; $_->{extended} and $_->{extended}{local_start} = $_->{extended}{start} - $hd->{primary}{extended}{start}; $hd->write($_->{start}, $_->{raw}) or die "writing of partition table failed"; } } $hd->{isDirty} = 0; $hd->{hasBeenDirty} = 1; #- used in undo (to know if undo should believe isDirty or not) if ($hd->{needKernelReread} && ref($hd->{needKernelReread}) eq 'ARRAY' && $::isStandalone) { #- we've only been adding partitions. Try special add_partition (using BLKPG_ADD_PARTITION) local *F; partition_table_raw::openit($hd, *F) or goto force_reread; foreach (@{$hd->{needKernelReread}}) { c::add_partition(fileno F, $_->{start}, $_->{size}, $_->{device} =~ /(\d+)$/) or goto force_reread; } } elsif ($hd->{needKernelReread}) { force_reread: #- now sync disk and re-read the partition table common::sync(); my @magic_parts = grep { $_->{isMounted} && $_->{real_mntpoint} } get_normal_parts($hd); foreach (@magic_parts) { syscall_('umount', $_->{real_mntpoint}) or log::l(_("error unmounting %s: %s", $_->{real_mntpoint}, "$!")); } $hd->kernel_read; foreach (@magic_parts) { syscall_('mount', , $_->{real_mntpoint}, type2fs($_), c::MS_MGC_VAL()) or log::l(_("mount failed: ") . "$!"); } } $hd->{needKernelReread} = 0; } sub active { my ($hd, $part) = @_; $_->{active} = 0 foreach @{$hd->{primary}{normal}}; $part->{active} = 0x80; $hd->{isDirty} = 1; } # remove a normal partition from hard drive hd sub remove { my ($hd, $part) = @_; my $i; #- first search it in the primary partitions $i = 0; foreach (@{$hd->{primary}{normal}}) { if ($_ eq $part) { splice(@{$hd->{primary}{normal}}, $i, 1); %$_ = (); #- blank it $hd->raw_removed($hd->{primary}{raw}); return $hd->{isDirty} = $hd->{needKernelReread} = 1; } $i++; } my ($first, $second, $third) = map { $_->{normal} } @{$hd->{extended} || []}; if ($third && $first eq $part) { die "Can't handle removing hda5 when hda6 is not the second partition" if $second->{start} > $third->{start}; } #- otherwise search it in extended partitions foreach (@{$hd->{extended} || []}) { $_->{normal} eq $part or next; delete $_->{normal}; #- remove it remove_empty_extended($hd); assign_device_numbers($hd); return $hd->{isDirty} = $hd->{needKernelReread} = 1; } 0; } # create of partition at starting at `start', of size `size' and of type `type' (nice comment, uh?) sub add_primary { my ($hd, $part) = @_; { local $hd->{primary}{normal}; #- save it to fake an addition of $part, that way add_primary do not modify $hd if it fails push @{$hd->{primary}{normal}}, $part; adjust_main_extended($hd); #- verify $hd->raw_add($hd->{primary}{raw}, $part); } push @{$hd->{primary}{normal}}, $part; #- really do it } sub add_extended { arch() =~ /^sparc|ppc/ and die _("Extended partition not supported on this platform"); my ($hd, $part, $extended_type) = @_; $extended_type =~ s/Extended_?//; my $e = $hd->{primary}{extended}; if ($e && !verifyInside($part, $e)) { #-die "sorry, can't add outside the main extended partition" unless $::unsafe; my $end = $e->{start} + $e->{size}; my $start = min($e->{start}, $part->{start}); $end = max($end, $part->{start} + $part->{size}) - $start; { #- faking a resizing of the main extended partition to test for problems local $e->{start} = $start; local $e->{size} = $end - $start; eval { verifyPrimary($hd->{primary}) }; $@ and die _("You have a hole in your partition table but I can't use it. The only solution is to move your primary partitions to have the hole next to the extended partitions"); } } if ($e && $part->{start} < $e->{start}) { my $l = first (@{$hd->{extended}}); #- the first is a special case, must recompute its real size $l->{start} = round_down($l->{normal}{start} - 1, $hd->cylinder_size()); $l->{size} = $l->{normal}{start} + $l->{normal}{size} - $l->{start}; my $ext = { %$l }; unshift @{$hd->{extended}}, { type => 5, raw => [ $part, $ext, {}, {} ], normal => $part, extended => $ext }; #- size will be autocalculated :) } else { my ($ext, $ext_size) = is_empty_array_ref($hd->{extended}) ? ($hd->{primary}, -1) : #- -1 size will be computed by adjust_main_extended (top(@{$hd->{extended}}), $part->{size}); my %ext = ( type => $extended_type || 5, start => $part->{start}, size => $ext_size ); $hd->raw_add($ext->{raw}, \%ext); $ext->{extended} = \%ext; push @{$hd->{extended}}, { %ext, raw => [ $part, {}, {}, {} ], normal => $part }; } $part->{start}++; $part->{size}--; #- let it start after the extended partition sector adjustStartAndEnd($hd, $part); adjust_main_extended($hd); } sub add { my ($hd, $part, $primaryOrExtended, $forceNoAdjust) = @_; get_normal_parts($hd) >= ($hd->{device} =~ /^rd/ ? 7 : $hd->{device} =~ /^(sd|ida|cciss|ataraid)/ ? 15 : 63) and cdie "maximum number of partitions handled by linux reached"; $part->{notFormatted} = 1; $part->{isFormatted} = 0; $part->{rootDevice} = $hd->{device}; $part->{start} ||= 1 if arch() !~ /^sparc/; #- starting at sector 0 is not allowed adjustStartAndEnd($hd, $part) unless $forceNoAdjust; my $e = $hd->{primary}{extended}; my $nb_primaries = $hd->{device} =~ /^rd/ ? 3 : 1; if (arch() =~ /^sparc|ppc/ || $primaryOrExtended eq 'Primary' || $primaryOrExtended !~ /Extended/ && @{$hd->{primary}{normal} || []} < $nb_primaries) { eval { add_primary($hd, $part) }; goto success if !$@; } eval { add_extended($hd, $part, $primaryOrExtended) } if $hd->hasExtended; #- try adding extended if ($@ || !$hd->hasExtended) { eval { add_primary($hd, $part) }; die $@ if $@; #- send the add extended error which should be better } success: assign_device_numbers($hd); $hd->{isDirty} = 1; push @{$hd->{needKernelReread} ||= []}, $part if !$hd->{needKernelReread} || ref($hd->{needKernelReread}) eq 'ARRAY' } # search for the next partition sub next { my ($hd, $part) = @_; first( sort { $a->{start} <=> $b->{start} } grep { $_->{start} >= $part->{start} + $part->{size} } get_normal_parts($hd) ); } sub next_start { my ($hd, $part) = @_; my $next = &next($hd, $part); $next ? $next->{start} : $hd->{totalsectors}; } sub load { my ($hd, $file, $force) = @_; local *F; open F, $file or die _("Error reading file %s", $file); my $h; { local $/ = "\0"; eval <F>; } $@ and die _("Restoring from file %s failed: %s", $file, $@); ref $h eq 'ARRAY' or die _("Bad backup file"); my %h; @h{@fields2save} = @$h; $h{totalsectors} == $hd->{totalsectors} or $force or cdie "bad totalsectors"; #- unsure we don't modify totalsectors local $hd->{totalsectors}; @{$hd}{@fields2save} = @$h; delete @$_{qw(isMounted isFormatted notFormatted toFormat toFormatUnsure)} foreach get_normal_parts($hd); $hd->{isDirty} = $hd->{needKernelReread} = 1; } sub save { my ($hd, $file) = @_; my @h = @{$hd}{@fields2save}; local *F; require Data::Dumper; open F, ">$file" and print F Data::Dumper->Dump([\@h], ['$h']), "\0" or die _("Error writing to file %s", $file); }