nichts/nyx/lib/network/dag.nix
2024-04-09 23:11:33 +02:00

140 lines
4.2 KiB
Nix

# Adjusted from https://gitlab.com/rycee/nur-expressions/blob/b34e2e548da574c7bd4da14d1779c95b62349a3a/lib/dag.nix (MIT)
# 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 `entryBefore` indicating a
# "wanted by" relationship.
{lib, ...}: let
inherit (lib) mkOption filterAttrs mapAttrsToList toposort mapAttrs any types;
types' =
types
// {
dagOf = subType:
types.attrsOf (types.submodule {
options = {
data = mkOption {
type = subType;
description = "Entry value.";
};
before = mkOption {
type = types.listOf types.str;
default = [];
description = "Entries to guarantee before.";
};
after = mkOption {
type = types.listOf types.str;
default = [];
description = "Entries to guarantee after.";
};
};
});
};
dag = {
# Takes an attribute set containing entries built by
# entryAnywhere, entryAfter, and entryBefore 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> topoSort {
# a = entryAnywhere "1";
# b = entryAfter ["a" "c"] "2";
# c = entryBefore ["d"] "3";
# d = entryBefore ["e"] "4";
# e = entryAnywhere "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> topoSort {
# a = entryAnywhere "1";
# b = entryAfter ["a" "c"] "2";
# c = entryAfter ["d"] "3";
# d = entryAfter ["b"] "4";
# e = entryAnywhere "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
topoSort = 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;
# Create a DAG entry with no particular dependency information.
entryAnywhere = data: {
inherit data;
before = [];
after = [];
};
# Ordering of after and before flipped from the original
entryBetween = after: before: data: {
inherit data before after;
};
entryAfter = after: data: {
inherit data after;
before = [];
};
entryBefore = before: data: {
inherit data before;
after = [];
};
};
in {
inherit (dag) entryBefore entryBetween entryAfter entryAnywhere topoSort;
inherit (types') dagOf;
}