mirror of
https://github.com/moparisthebest/pacman
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9dd016001e
It wasn't even implemented correctly, and it really doesn't have a use if packagers just do their job correctly anyway for a distro. Let's not try to solve a problem with the wrong solution now. Signed-off-by: Dan McGee <dan@archlinux.org>
220 lines
9.1 KiB
Plaintext
220 lines
9.1 KiB
Plaintext
ALPM library overview & internals
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=================================
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Here is a list of the main objects and files from the ALPM (i.e. Arch Linux
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Package Management) library. This document, whilst not exhaustive, also
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indicates some limitations (on purpose, or sometimes due to its poor design) of
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the library at the present time.
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There is one special file,"alpm.h", which is the public interface that
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should be distributed and installed on systems with the library. Only
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structures, data and functions declared within this file are made available to
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the frontend. Lots of structures are of an opaque type and their fields are
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only accessible in read-only mode, through some clearly defined functions.
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In addition to "alpm.h", the interfaces of "alpm_list.h" have also been made
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available to the frontend. It is not a requirement for the frontend to use
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these list functions; however, it prevents frontends from having to reimplement
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a list data structure.
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Several structures and functions have been renamed compared to pacman 2.9 code.
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This was done at first for the sake of naming scheme consistency, and then
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primarily because of potential namespace conflicts between library and frontend
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spaces. Indeed, it is not possible to have two different functions with the
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same name declared in both spaces. To avoid such conflicts, internal function
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names have been prepended with "_alpm_".
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In a general manner, public library functions are named "alpm_<type>_<action>"
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(examples: alpm_trans_commit(), alpm_release(), alpm_pkg_getinfo(), ...).
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Internal (and thus private) functions should be named "_alpm_XXX" for instance
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(examples: _alpm_needbackup(), _alpm_runscriplet(), ...). Functions defined and
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used inside a single file should be defined as "static".
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[Initialization]
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alpm_init() is used to initialize library internals and to create
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a transparent handle object. Before its call, the library can't be used.
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alpm_lib_release() just does the opposite (memory used by the library, and the
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handle is freed). After its call, the library is no longer available.
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[Options]
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In the future, the library will not use any configuration file. It will be up
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to the front end to The handle holds a
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number of configuration options instead (IGNOREPKG, SYSLOG usage,
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log file name, registered databases, ...).
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All of the following options have a alpm_option_get_* and alpm_option_set_*
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function for getting and setting the value. The cannot be set before the
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library is initialized.
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* logcb: The callback function for "log" operations.
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* dlcb: The callback function for download progress.
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* logmask: The logging mask for which level of output is sent to the logcb.
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* root: The root directory on which pacman operates (Default: /)
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* dbpath: The base path to pacman's databases (Default: var/lib/pacman)
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* cachedir: The base path to pacman's download cache (Default: var/cache/pacman)
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* logfile: The base path to pacman's log file (Default: var/log/pacman.log)
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* usesyslog: Log to syslog instead of `logfile` for file-base logging.
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* xfercommand: The command to use for downloading instead of pacman's internal
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downloading functionality.
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* nopassiveftp: Do not use passive FTP commands for ftp connections.
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* chomp: No way, easter eggs are secret!
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* usecolor: Unimplemented, but for the future. You can assume what it means.
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The following options also have a `alpm_option_add_*` function, as the values
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are list structures (NOTE: The add functions are NOT plural, as they're in
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english: alpm_option_get_noupgrades -> alpm_option_add_noupgrade).
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* noupgrades: Files which will never be touched by pacman (extracted as .pacnew)
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* noextracts: Files which will never be extracted at all (no .pacnew file)
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* ignorepkgs: Packages to ignore when upgrading.
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* holdpkgs: Packages which must be upgraded before continuing.
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The following options are read-only, having ONLY alpm_option_get_* functions:
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* localdb: A pmdb_t structure for the local (installed) database
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* syncdbs: A list of pmdb_t structures to which pacman can sync from.
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[Transactions]
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The transaction sturcture permits easy manipulations of several packages
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at a time (i.e. adding, upgrade and removal operations).
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A transaction can be initiated with a type (ADD, UPGRADE or REMOVE),
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and some flags (NODEPS, FORCE, CASCADE, ...).
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Note: there can only be one type at a time: a transaction is either
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created to add packages to the system, or either created to remove packages.
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The frontend can't request for mixed operations: it has to run several
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transactions, one at a time, in such a case.
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The flags allow to tweak the library behaviour during its resolution.
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Note, that some options of the handle can also modify the behavior of a
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transaction (NOUPGRADE, IGNOREPKG, ...).
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Note: once a transaction has been initiated, it is not possible anymore
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to modify its type or its flags.
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One can also add some targets to a transaction (alpm_trans_addtarget()).
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These targets represent the list of packages to be handled.
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Then, a transaction needs to be prepared (alpm_trans_prepare()). It
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means that the various targets added, will be inspected and challenged
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against the set of already installed packages (dependency checkings,
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Last, a callback is associated with each transaction. During the
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transaction resolution, each time a new step is started or done (i.e
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dependency or conflict checking, package adding or removal, ...), the
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callback is called, allowing the frontend to be aware of the progress of
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the resolution. Can be useful to implement a progress bar.
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[Package Cache]
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libalpm maintains two caches for each DB. One is a general package cache, the
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other is a group cache (for package groups). These caches are loaded on demand,
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and freed when the libary is.
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It is important to note tha, as a general rule, package structures should NOT be
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freed manually, as they SHOULD be part of the cache.
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The cache of a database is always updated by the library after
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an operation changing the database content (adding and/or removal of
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packages). Beware frontends ;)
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[Package]
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The package structure maintains all information for a package. In general,
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packages should never be freed from front-ends, as they should always be part of
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the package cache.
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The 'origin' data member indicates whether the package is from a file
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(i.e. -U operations) or from the package cache. In the case of a file, all data
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members available are present in the structure. Packages indicated as being
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from the cache have data members filled on demand. For this reason, the
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alpm_pkg_get_* functions will load the data from the DB as needed.
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[Errors]
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The library provides a global variable pm_errno.
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It aims at being to the library what errno is for C system calls.
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Almost all public library functions are returning an integer value: 0
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indicating success, -1 indicating a failure.
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If -1 is returned, the variable pm_errno is set to a meaningful value
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Wise frontends should always care for these returned values.
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Note: the helper function alpm_strerror() can also be used to translate
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the error code into a more friendly sentence.
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[List - alpm_list_t]
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The alpm_list_t structure is a doubly-linked list for use with the libalpm
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routines. This type is provided publicly so that frontends are free to use it
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if they have no native list type (C++, glib, python, etc all have list types).
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See the proper man pages for alpm_list_t references.
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PACMAN frontend overview & internals
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====================================
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Here are some words about the frontend responsibilities.
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The library can operate only a small set of well defined operations and
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dummy operations.
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High level features are left to the frontend ;)
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For instance, during a sysupgrade, the library returns the whole list of
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packages to be upgraded, without any care for its content.
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The frontend can inspect the list and perhaps notice that "pacman"
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itself has to be upgraded. In such a case, the frontend can choose to
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perform a special action.
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[MAIN] (see pacman.c)
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Calls for alpm_lib_init(), and alpm_lib_release().
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Read the configuration file, and parse command line arguments.
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Based on the action requested, it initiates the appropriate transactions
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(see pacman_add(), pacman_remove(), pacman_sync() in files add.c,
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remove.c and sync.c).
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[CONFIGURATION] (see conf.c)
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The frontend is using a configuration file, usually "/etc/pacman.conf".
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Part of these options are only useful for the frontend only (mainly,
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the download stuffs, and some options like HOLDPKG).
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The rest is used to configure the library.
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[ADD/UPGRADE/REMOVE/SYNC]
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Nothing new here, excepted some reorganization.
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The file pacman.c has been divided into several smaller files, namely
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add.c, remove.c, sync.c and query.c, to hold the big parts: pacman_add,
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pacman_remove, pacman_sync.
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These 3 functions have been split to ease the code reading.
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LIMITATIONS/BEHAVIOR CHANGES COMPARED TO PACMAN 2.9
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===================================================
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Excepted missing features still needing to be implemented, one can
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notice the following limitations:
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- If pacman is out of date, the frontend displays a warning and recommends
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to give up the on-going transanction. The frontend does not allow to
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upgrade pacman itself on-the-fly, and thus it should be restarted with
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only "pacman" as a target.
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- ...
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