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156 lines
4.7 KiB
Nix
156 lines
4.7 KiB
Nix
# From home-manager: https://github.com/nix-community/home-manager/blob/master/modules/lib/dag.nix
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# A generalization of Nixpkgs's `strings-with-deps.nix`.
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#
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# The main differences from the Nixpkgs version are
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#
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# - not specific to strings, i.e., any payload is OK,
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#
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# - the addition of the function `entryBefore` indicating a "wanted
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# by" relationship.
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{lib}: let
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inherit (builtins) isAttrs attrValues attrNames elem all head tail length;
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inherit (lib.attrsets) filterAttrs mapAttrs;
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inherit (lib.lists) toposort;
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inherit (lib.nvim.dag) empty isEntry entryBetween entryAfter entriesBetween;
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in {
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empty = {};
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isEntry = e: e ? data && e ? after && e ? before;
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isDag = dag:
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isAttrs dag && all isEntry (attrValues dag);
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/*
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Takes an attribute set containing entries built by entryAnywhere,
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entryAfter, and entryBefore to a topologically sorted list of
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entries.
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Internally this function uses the `toposort` function in
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`<nixpkgs/lib/lists.nix>` and its value is accordingly.
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Specifically, the result on success is
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{ result = [ { name = ?; data = ?; } … ] }
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For example
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nix-repl> topoSort {
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a = entryAnywhere "1";
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b = entryAfter [ "a" "c" ] "2";
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c = entryBefore [ "d" ] "3";
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d = entryBefore [ "e" ] "4";
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e = entryAnywhere "5";
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} == {
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result = [
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{ data = "1"; name = "a"; }
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{ data = "3"; name = "c"; }
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{ data = "2"; name = "b"; }
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{ data = "4"; name = "d"; }
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{ data = "5"; name = "e"; }
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];
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}
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true
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And the result on error is
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{
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cycle = [ { after = ?; name = ?; data = ? } … ];
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loops = [ { after = ?; name = ?; data = ? } … ];
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}
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For example
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nix-repl> topoSort {
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a = entryAnywhere "1";
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b = entryAfter [ "a" "c" ] "2";
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c = entryAfter [ "d" ] "3";
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d = entryAfter [ "b" ] "4";
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e = entryAnywhere "5";
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} == {
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cycle = [
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{ after = [ "a" "c" ]; data = "2"; name = "b"; }
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{ after = [ "d" ]; data = "3"; name = "c"; }
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{ after = [ "b" ]; data = "4"; name = "d"; }
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];
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loops = [
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{ after = [ "a" "c" ]; data = "2"; name = "b"; }
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];
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}
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true
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*/
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topoSort = dag: let
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dagBefore = dag: name:
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attrNames
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(filterAttrs (_n: v: elem name v.before) dag);
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normalizedDag =
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mapAttrs (n: v: {
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name = n;
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data = v.data;
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after = v.after ++ dagBefore dag n;
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})
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dag;
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before = a: b: elem a.name b.after;
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sorted = toposort before (attrValues normalizedDag);
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in
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if sorted ? result
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then {
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result = map (v: {inherit (v) name data;}) sorted.result;
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}
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else sorted;
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# Applies a function to each element of the given DAG.
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map = f: mapAttrs (n: v: v // {data = f n v.data;});
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entryBetween = before: after: data: {inherit data before after;};
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# Create a DAG entry with no particular dependency information.
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entryAnywhere = entryBetween [] [];
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entryAfter = entryBetween [];
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entryBefore = before: entryBetween before [];
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# Given a list of entries, this function places them in order within the DAG.
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# Each entry is labeled "${tag}-${entry index}" and other DAG entries can be
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# added with 'before' or 'after' referring these indexed entries.
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#
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# The entries as a whole can be given a relation to other DAG nodes. All
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# generated nodes are then placed before or after those dependencies.
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entriesBetween = tag: let
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go = i: before: after: entries: let
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name = "${tag}-${toString i}";
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i' = i + 1;
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in
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if entries == []
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then empty
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else if length entries == 1
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then {
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"${name}" = entryBetween before after (head entries);
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}
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else
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{
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"${name}" = entryAfter after (head entries);
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}
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// go (i + 1) before [name] (tail entries);
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in
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go 0;
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entriesAnywhere = tag: entriesBetween tag [] [];
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entriesAfter = tag: entriesBetween tag [];
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entriesBefore = tag: before: entriesBetween tag before [];
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# mkLuarcSection and mkVimrcSection take a section DAG
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# and return a string containing a comment to identify
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# the section, and the data contained within the section
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#
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# all operations are done without any modifications
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# to the inputted section data
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mkLuarcSection = section: ''
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-- SECTION: ${section.name}
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${section.data}
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'';
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mkVimrcSection = section: ''
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" SECTION: ${section.name}
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${section.data}
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'';
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}
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