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// cmdline_do_action.cc
//
// Copyright (C) 2004, 2010 Daniel Burrows
//
// This program 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 2 of the
// License, or (at your option) any later version.
//
// This program 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 this program; see the file COPYING. If not, write to
// the Free Software Foundation, Inc., 59 Temple Place - Suite 330,
// Boston, MA 02111-1307, USA.
// Local includes:
#include "cmdline_do_action.h"
#include "cmdline_action.h"
#include "cmdline_common.h"
#include "cmdline_prompt.h"
#include "cmdline_resolver.h"
#include "cmdline_show_broken.h"
#include "cmdline_simulate.h"
#include "cmdline_util.h"
#include "terminal.h"
#include "text_progress.h"
#include <generic/apt/apt.h>
#include <generic/apt/config_signal.h>
#include <generic/apt/download_install_manager.h>
#include <aptitude.h>
// System includes:
#include <apt-pkg/algorithms.h>
#include <apt-pkg/error.h>
#include <apt-pkg/policy.h>
#include <apt-pkg/progress.h>
#include <stdio.h>
using namespace std;
using aptitude::cmdline::create_terminal;
using aptitude::cmdline::make_text_progress;
using aptitude::cmdline::terminal_io;
using boost::shared_ptr;
namespace
{
void run_dpkg_directly(sigc::slot1<pkgPackageManager::OrderResult, int> f,
sigc::slot1<void, pkgPackageManager::OrderResult> k)
{
k(f(aptcfg->FindI("APT::Status-Fd", -1)));
}
}
/** \brief Used to track whether an upgrade is being performed, and if
* so, what sort of upgrade is being performed.
*/
enum upgrade_mode_tp
{
/** \brief Indicates that no upgrade is being performed. */
no_upgrade,
/** \brief Indicates that a full-upgrade is being performed: all
* packages will be marked for upgrade by default, and the
* resolver will consider "unsafe" actions.
*/
full_upgrade,
/** \brief Indicates that a safe-upgrade is being performed: all
* packages will be marked for upgrade by default, and the
* resolver will not consider "unsafe" actions; automatic
* installation of dependencies is also disabled.
*/
safe_upgrade
};
// TODO: add an option to obey sticky states even if it wasn't
// explicitly requested.
//
// TODO: perhaps when trying to find a list of possible candidates for
// installation, we should use a formatted display?
int cmdline_do_action(int argc, char *argv[],
const char *status_fname, bool simulate,
bool assume_yes, bool download_only, bool fix_broken,
bool showvers, bool showdeps,
bool showsize, bool showwhy,
bool visual_preview, bool always_prompt,
resolver_mode_tp resolver_mode, bool safe_resolver_show_actions,
bool no_new_installs, bool no_new_upgrades,
const std::vector<aptitude::cmdline::tag_application> &user_tags,
bool arch_only,
bool queue_only, int verbose)
{
shared_ptr<terminal_io> term = create_terminal();
_error->DumpErrors();
cmdline_pkgaction_type default_action=cmdline_install;
upgrade_mode_tp upgrade_mode = no_upgrade;
// Parse the action. This sets the upgrade mode and (if it was not
// overridden by the user) the resolver mode.
if(!strcasecmp(argv[0], "install"))
default_action=cmdline_install;
else if(!strcasecmp(argv[0], "reinstall"))
default_action=cmdline_reinstall;
else if(!strcasecmp(argv[0], "full-upgrade") ||
!strcasecmp(argv[0], "dist-upgrade"))
{
default_action = cmdline_upgrade;
if(argc == 1)
upgrade_mode = full_upgrade;
if(resolver_mode == resolver_mode_default)
resolver_mode = resolver_mode_full;
}
else if(!strcasecmp(argv[0], "safe-upgrade") ||
!strcasecmp(argv[0], "upgrade"))
{
default_action = cmdline_upgrade;
// If safe-upgrade is the only argument, we treat this as a full
// upgrade; otherwise we treat it as an install-type action that
// applies only to the packages listed on the command-line.
if(argc == 1)
upgrade_mode = safe_upgrade;
if(resolver_mode == resolver_mode_default)
resolver_mode = resolver_mode_safe;
}
else if(!strcasecmp(argv[0], "remove"))
default_action=cmdline_remove;
else if(!strcasecmp(argv[0], "purge"))
default_action=cmdline_purge;
else if(!strcasecmp(argv[0], "hold"))
default_action=cmdline_hold;
else if(!strcasecmp(argv[0], "keep") || !strcasecmp(argv[0], "keep-all"))
default_action=cmdline_keep;
else if(!strcasecmp(argv[0], "unhold"))
default_action=cmdline_unhold;
else if(!strcasecmp(argv[0], "markauto"))
default_action=cmdline_markauto;
else if(!strcasecmp(argv[0], "unmarkauto"))
default_action=cmdline_unmarkauto;
else if(!strcasecmp(argv[0], "forbid-version"))
default_action=cmdline_forbid_version;
else if(!strcasecmp(argv[0], "build-depends") ||
!strcasecmp(argv[0], "build-dep"))
default_action = cmdline_build_depends;
else
{
// Should never happen.
_error->Error(_("Invalid operation %s"), argv[0]);
_error->DumpErrors();
return -1;
}
if(resolver_mode == resolver_mode_default)
resolver_mode = resolver_mode_full;
shared_ptr<OpProgress> progress = make_text_progress(false, term, term, term);
aptcfg->SetNoUser(PACKAGE "::Auto-Upgrade", "false");
// If there are no arguments and the default action is "install", act
// on stickies.
//
// This way, "aptitude install" will just perform any pending
// installations.
apt_init(progress.get(),
(argc==1 && default_action==cmdline_install &&
upgrade_mode == no_upgrade), status_fname);
if(_error->PendingError())
{
_error->DumpErrors();
return -1;
}
// In case we aren't root.
if(!simulate)
apt_cache_file->GainLock();
else
apt_cache_file->ReleaseLock();
if(_error->PendingError())
{
_error->DumpErrors();
return -1;
}
pkgPolicy policy(&(*apt_cache_file)->GetCache());
ReadPinFile(policy);
ReadPinDir(policy);
pkgset to_upgrade, to_install, to_hold, to_remove, to_purge;
if(upgrade_mode == full_upgrade || upgrade_mode == safe_upgrade)
{
bool ignore_removed = (upgrade_mode == safe_upgrade);
(*apt_cache_file)->get_upgradable(ignore_removed, to_install);
bool use_autoinst = (resolver_mode != resolver_mode_safe);
(*apt_cache_file)->mark_all_upgradable(use_autoinst, ignore_removed, NULL);
}
/*else if(argc==1 && default_action==cmdline_install)
{
// FIXME: Build to_install to avoid a big printout
for(pkgCache::PkgIterator i=(*apt_cache_file)->PkgBegin(); !i.end(); ++i)
{
}
}*/
// TODO: look for filenames and call dpkg directly if that's the case.
{
aptitudeDepCache::action_group group(*apt_cache_file, NULL);
// If keep-all is the argument, we expect no patterns and keep all
// packages back.
if(!strcasecmp(argv[0], "keep-all"))
{
if(argc != 1)
{
cerr << _("Unexpected pattern argument following \"keep-all\"") << endl;
return -1;
}
for(pkgCache::PkgIterator i=(*apt_cache_file)->PkgBegin();
!i.end(); ++i)
(*apt_cache_file)->mark_keep(i, false, false, NULL);
}
else
{
typedef std::pair<cmdline_pkgaction_type, std::string> action_pair;
std::vector<action_pair> actions;
for(int i=1; i<argc; ++i)
{
cmdline_pkgaction_type action = default_action;
std::string target = argv[i];
int tmp = strlen(argv[i]) - 1;
// HACK: disable interpreting of escapes if it's an existing
// package name.
if((*apt_cache_file)->FindPkg(argv[i]).end())
switch(argv[i][tmp])
{
case '-':
action = cmdline_remove;
target = std::string(argv[i], 0, tmp);
break;
case '=':
action = cmdline_hold;
target = std::string(argv[i], 0, tmp);
break;
case '+':
action = cmdline_install;
target = std::string(argv[i], 0, tmp);
break;
case '_':
action = cmdline_purge;
target = std::string(argv[i], 0, tmp);
break;
case ':':
action = cmdline_keep;
target = std::string(argv[i], 0, tmp);
break;
case 'D':
// "&BD" for installing build depends.
if(tmp >= 2 &&
argv[i][tmp - 1] == 'B' &&
argv[i][tmp - 2] == '&')
{
action = cmdline_build_depends;
target = std::string(argv[i], 0, strlen(argv[i]) - 3);
}
break;
case 'm':
case 'M':
if(tmp > 0 && argv[i][tmp - 1] == '&')
{
if(argv[i][tmp] == 'm')
action = cmdline_unmarkauto;
else
action = cmdline_markauto;
target = std::string(argv[i], 0, tmp - 1);
}
else if(tmp>0 && argv[i][tmp-1] == '+' && argv[i][tmp] == 'M')
{
action = cmdline_installauto;
target = std::string(argv[i], 0, tmp - 1);
}
}
actions.push_back(action_pair(action, target));
}
// If we have auto-install turned on, do a second run over all
// the packages being installed to blindly resolve their deps.
// Note that we skip auto-install if the safe resolver is turned
// on, on the grounds that auto-install will remove packages for
// Conflicts too.
const bool do_autoinstall = (resolver_mode != resolver_mode_safe) && aptcfg->FindB(PACKAGE "::Auto-Install", true);
const int num_passes = do_autoinstall ? 2 : 1;
std::set<pkgCache::PkgIterator> seen_virtual_packages;
for(int pass = 0; pass < num_passes; ++pass)
{
// Clear these to avoid undesirable interactions between the
// first and second passes.
to_install.clear();
to_hold.clear();
to_remove.clear();
to_purge.clear();
for(std::vector<action_pair>::const_iterator it = actions.begin();
it != actions.end(); ++it)
{
cmdline_applyaction(it->second, seen_virtual_packages, it->first,
to_install, to_hold, to_remove, to_purge,
verbose, policy, arch_only, pass > 0,
term);
}
}
}
}
if(resolver_mode == resolver_mode_safe)
{
if(!aptitude::cmdline::safe_resolve_deps(verbose,
no_new_installs,
no_new_upgrades,
safe_resolver_show_actions,
term))
{
fprintf(stderr, _("Unable to safely resolve dependencies, try running with --full-resolver.\n"));
return -1;
}
}
if(visual_preview)
{
ui_preview();
return 0;
}
else if(simulate)
return cmdline_simulate(upgrade_mode != no_upgrade,
to_install, to_hold, to_remove, to_purge,
showvers, showdeps,
showsize, showwhy,
always_prompt, verbose, assume_yes,
!fix_broken,
policy, arch_only,
term);
else if(queue_only)
{
aptitude::cmdline::apply_user_tags(user_tags);
if(!(*apt_cache_file)->save_selection_list(*progress))
{
_error->DumpErrors();
return -1;
}
else
return 0;
}
else
{
if(!cmdline_do_prompt(upgrade_mode != no_upgrade,
to_install, to_hold, to_remove, to_purge,
showvers, showdeps, showsize, showwhy,
always_prompt, verbose, assume_yes,
!fix_broken,
policy, arch_only, term))
{
printf(_("Abort.\n"));
return 0;
}
aptitude::cmdline::apply_user_tags(user_tags);
download_install_manager m(download_only,
sigc::ptr_fun(&run_dpkg_directly));
int rval =
(cmdline_do_download(&m, verbose, term, term, term, term)
== download_manager::success ? 0 : -1);
if(_error->PendingError())
rval = -1;
_error->DumpErrors();
return rval;
}
}
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