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Add basic directed acyclic graph data structure

Also make use of this instead of Nixpkgs's strings-with-deps library
in activation script generation.
This commit is contained in:
Robert Helgesson 2017-05-04 00:36:39 +02:00
parent 62a9a8fa3c
commit 8fab2a5d9b
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4 changed files with 153 additions and 22 deletions

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@ -1,6 +1,7 @@
{ config, lib, pkgs, ... }:
with lib;
with import ./lib/dag.nix;
let
@ -241,7 +242,11 @@ in
//
(maybeSet "LC_TIME" cfg.language.time);
home.activation.linkGeneration =
# A dummy entry acting as a boundary between the activation
# script's "check" and the "write" phases.
home.activation.writeBoundary = dagEntryAnywhere "";
home.activation.linkGeneration = dagEntryAfter ["writeBoundary"] (
let
link = pkgs.writeText "link" ''
newGenFiles="$1"
@ -303,27 +308,26 @@ in
else
echo "Same home files as previous generation ... doing nothing"
fi
'';
''
);
home.activation.installPackages =
''
$DRY_RUN_CMD nix-env -i ${cfg.path}
'';
home.activation.installPackages = dagEntryAfter ["writeBoundary"] ''
$DRY_RUN_CMD nix-env -i ${cfg.path}
'';
home.activationPackage =
let
addHeader = n: v:
v // {
text = ''
echo Activating ${n}
${v.text}
'';
};
toDepString = n: v: if isString v then noDepEntry v else v;
activationWithDeps =
mapAttrs addHeader (mapAttrs toDepString cfg.activation);
mkCmd = res: ''
echo Activating ${res.name}
${res.data}
'';
sortedCommands = dagTopoSort cfg.activation;
activationCmds =
textClosureMap id activationWithDeps (attrNames activationWithDeps);
if sortedCommands ? result then
concatStringsSep "\n" (map mkCmd sortedCommands.result)
else
abort ("Dependency cycle in activation script: "
+ builtins.toJSON sortedCommands);
sf = pkgs.writeText "activation-script" ''
#!${pkgs.stdenv.shell}

124
modules/lib/dag.nix Normal file
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@ -0,0 +1,124 @@
# A generalization of Nixpkgs's `strings-with-deps.nix`.
#
# The main differences from the Nixpkgs version are
#
# - not specific to strings, i.e., any payload is OK,
#
# - the addition of the function `dagEntryBefore` indicating a
# "wanted by" relationship.
with import <nixpkgs/lib/strings.nix>;
with import <nixpkgs/lib/attrsets.nix>;
with import <nixpkgs/lib/lists.nix>;
rec {
emptyDag = {};
isDag = dag:
let
isEntry = e: (e ? data) && (e ? after) && (e ? before);
in
builtins.isAttrs dag && all (x: x) (mapAttrsToList (n: isEntry) dag);
# Takes an attribute set containing entries built by
# dagEntryAnywhere, dagEntryAfter, and dagEntryBefore to a
# topologically sorted list of entries.
#
# Internally this function uses the `toposort` function in
# `<nixpkgs/lib/lists.nix>` and its value is accordingly.
#
# Specifically, the result on success is
#
# { result = [{name = ?; data = ?;} …] }
#
# For example
#
# nix-repl> dagTopoSort {
# a = dagEntryAnywhere "1";
# b = dagEntryAfter ["a" "c"] "2";
# c = dagEntryBefore ["d"] "3";
# d = dagEntryBefore ["e"] "4";
# e = dagEntryAnywhere "5";
# } == {
# result = [
# { data = "1"; name = "a"; }
# { data = "3"; name = "c"; }
# { data = "2"; name = "b"; }
# { data = "4"; name = "d"; }
# { data = "5"; name = "e"; }
# ];
# }
# true
#
# And the result on error is
#
# {
# cycle = [ {after = ?; name = ?; data = ?} … ];
# loops = [ {after = ?; name = ?; data = ?} … ];
# }
#
# For example
#
# nix-repl> dagTopoSort {
# a = dagEntryAnywhere "1";
# b = dagEntryAfter ["a" "c"] "2";
# c = dagEntryAfter ["d"] "3";
# d = dagEntryAfter ["b"] "4";
# e = dagEntryAnywhere "5";
# } == {
# cycle = [
# { after = ["a" "c"]; data = "2"; name = "b"; }
# { after = ["d"]; data = "3"; name = "c"; }
# { after = ["b"]; data = "4"; name = "d"; }
# ];
# loops = [
# { after = ["a" "c"]; data = "2"; name = "b"; }
# ];
# } == {}
# true
dagTopoSort = dag:
let
dagBefore = dag: name:
mapAttrsToList (n: v: n) (
filterAttrs (n: v: any (a: a == name) v.before) dag
);
normalizedDag =
mapAttrs (n: v: {
name = n;
data = v.data;
after = v.after ++ dagBefore dag n;
}) dag;
before = a: b: any (c: a.name == c) b.after;
sorted = toposort before (mapAttrsToList (n: v: v) normalizedDag);
in
if sorted ? result then
{ result = map (v: { inherit (v) name data; }) sorted.result; }
else
sorted;
# Applies a function to each element of the given DAG.
dagMap = f: dag: mapAttrs (n: v: v // { data = f n v.data; }) dag;
# Create a DAG entry with no particular dependency information.
dagEntryAnywhere = data: {
inherit data;
before = [];
after = [];
};
dagEntryBetween = before: after: data: {
inherit data before after;
};
dagEntryAfter = after: data: {
inherit data after;
before = [];
};
dagEntryBefore = before: data: {
inherit data before;
after = [];
};
}

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@ -1,6 +1,7 @@
{ config, lib, pkgs, ... }:
with lib;
with import ../lib/dag.nix;
let
@ -177,18 +178,19 @@ in
config = mkIf cfg.enable {
home.packages = [ pkgs.gnome3.gnome_terminal ];
home.activation.gnomeTerminal =
# The dconf service needs to be installed and prepared.
home.activation.gnomeTerminal = dagEntryAfter ["installPackages"] (
let
sf = pkgs.writeText "gnome-terminal.ini" (toINI (buildIniSet cfg));
dconfPath = "/org/gnome/terminal/legacy/";
in
# The dconf service needs to be installed and prepared.
stringAfter [ "installPackages" ] ''
''
if [[ -v DRY_RUN ]]; then
echo ${pkgs.gnome3.dconf}/bin/dconf load ${dconfPath} "<" ${sf}
else
${pkgs.gnome3.dconf}/bin/dconf load ${dconfPath} < ${sf}
fi
'';
''
);
};
}

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@ -1,6 +1,7 @@
{ config, lib, pkgs, ... }:
with lib;
with import ./lib/dag.nix;
let
@ -69,7 +70,7 @@ in
(buildServices "timer" config.systemd.user.timers)
);
home.activation.reloadSystemD = ''
home.activation.reloadSystemD = dagEntryAfter ["linkGeneration"] ''
function systemdPostReload() {
local workDir
workDir="$(mktemp -d)"