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6.1 KiB
OCaml

type result = { built : int; cached : int; failed : int; aborted : int; interrupted : bool }
type state = Blocked | Ready | Running | Done | Failed
let inputs_of (n : Graph.node) =
match n.depfile with
| None -> n.ins
| Some d -> (
match Dep.of_file d with
| Some l -> List.sort_uniq compare (n.ins @ l)
| None -> n.ins)
let key_of n = Cache.key ~cmd:(Exec.show n.Graph.cmd) ~inputs:(inputs_of n)
let up_to_date cache (n : Graph.node) =
let outputs_present = List.for_all Sys.file_exists n.Graph.outs in
let have_deps = match n.Graph.depfile with None -> true | Some d -> Sys.file_exists d in
outputs_present && have_deps && Cache.current cache (List.hd n.Graph.outs) = Some (key_of n)
let run g ~selected ~jobs ~cache ~verbose ~keep_going ~on_start ~on_done =
let nodes = g.Graph.nodes in
let n = Array.length nodes in
let state = Array.make n Blocked in
let pending = Array.make n 0 in
let rdeps = Array.make n [] in
Array.iter
(fun (v : Graph.node) ->
pending.(v.id) <- List.length v.deps;
List.iter (fun d -> rdeps.(d) <- v.id :: rdeps.(d)) v.deps)
nodes;
let wanted i = Hashtbl.mem selected i in
let ready = Queue.create () in
Array.iter (fun (v : Graph.node) -> if wanted v.id && pending.(v.id) = 0 then Queue.add v.id ready) nodes;
let running = Hashtbl.create 8 in
let cancelled = Hashtbl.create 8 in
let built = ref 0 and cached = ref 0 and failed = ref 0 and aborted_count = ref 0 in
let interrupted = ref false in
let stopping () = !interrupted || (!failed > 0 && not keep_going) in
let release i =
List.iter
(fun j ->
if wanted j then begin
pending.(j) <- pending.(j) - 1;
if pending.(j) = 0 && state.(j) = Blocked then (state.(j) <- Ready; Queue.add j ready)
end)
rdeps.(i)
in
let skip i =
state.(i) <- Failed;
List.iter (fun j -> if wanted j && state.(j) = Blocked then pending.(j) <- pending.(j) - 1) rdeps.(i)
in
let spawn (v : Graph.node) =
List.iter (fun o -> Fs.mkdir_p (Filename.dirname o)) v.outs;
(* The node keeps the command it means, which is what the cache key and
every report are built from, and only the spawn goes through @file. *)
let argv =
match v.rsp with
| Some path when Exec.too_long v.cmd -> Exec.response path v.cmd
| _ -> v.cmd
in
let tmp = Filename.temp_file "meowc" ".log" in
let fd = Unix.openfile tmp [ Unix.O_WRONLY; Unix.O_CREAT; Unix.O_TRUNC ] 0o600 in
let nul = Exec.devnull () in
flush stdout;
let pid =
match Unix.fork () with
| 0 ->
(try ignore (Unix.setsid ()) with Unix.Unix_error _ -> ());
(try
Unix.dup2 nul Unix.stdin;
Unix.dup2 fd Unix.stdout;
Unix.dup2 fd Unix.stderr;
Unix.close fd;
Unix.close nul;
Unix.execvp argv.(0) argv
with _ -> ());
Unix._exit 127
| pid -> pid
| exception Unix.Unix_error (e, _, _) ->
Unix.close fd;
Unix.close nul;
Diag.error "cannot fork for %s: %s" v.cmd.(0) (Unix.error_message e)
in
Unix.close fd;
Unix.close nul;
state.(v.id) <- Running;
on_start v;
Hashtbl.replace running pid (v, tmp)
in
let cancel_running () =
Hashtbl.iter
(fun pid _ ->
Hashtbl.replace cancelled pid ();
try Unix.kill (-pid) Sys.sigterm with Unix.Unix_error _ -> ())
running
in
let discard (v : Graph.node) =
List.iter Cache.forget v.outs;
Cache.drop cache (List.hd v.outs);
List.iter (fun o -> try Sys.remove o with Sys_error _ -> ()) v.outs;
skip v.id
in
let rec wait_child () =
match Unix.wait () with
| r -> Some r
| exception Unix.Unix_error (Unix.EINTR, _, _) -> wait_child ()
| exception Unix.Unix_error (Unix.ECHILD, _, _) -> None
in
let reap () =
match wait_child () with
| None -> Hashtbl.reset running
| Some (pid, status) -> (
match Hashtbl.find_opt running pid with
| None -> ()
| Some (v, tmp) ->
Hashtbl.remove running pid;
let aborted = Hashtbl.mem cancelled pid in
Hashtbl.remove cancelled pid;
let ok = status = Unix.WEXITED 0 in
let log = try Fs.read tmp with Sys_error _ -> "" in
(try Sys.remove tmp with Sys_error _ -> ());
if ok then begin
incr built;
state.(v.id) <- Done;
List.iter Cache.forget v.outs;
(match v.depfile with Some d -> Cache.forget d | None -> ());
Cache.put cache (List.hd v.outs) (key_of v);
release v.id;
on_done ~ok ~log v;
if verbose then print_endline (" " ^ Style.dim (Exec.show v.cmd))
end
else if aborted then begin
incr aborted_count;
discard v
end
else begin
incr failed;
discard v;
on_done ~ok ~log v;
if verbose then print_endline (" " ^ Style.dim (Exec.show v.cmd));
if not keep_going then cancel_running ()
end)
in
let take_signals () =
let handle _ =
if not !interrupted then begin
interrupted := true;
Sys.set_signal Sys.sigint Sys.Signal_default;
Sys.set_signal Sys.sigterm Sys.Signal_default;
cancel_running ()
end
in
(Sys.signal Sys.sigint (Sys.Signal_handle handle), Sys.signal Sys.sigterm (Sys.Signal_handle handle))
in
let prev_int, prev_term = take_signals () in
let restore_signals () =
Sys.set_signal Sys.sigint prev_int;
Sys.set_signal Sys.sigterm prev_term
in
while (not (Queue.is_empty ready) && not (stopping ())) || Hashtbl.length running > 0 do
while (not (Queue.is_empty ready)) && Hashtbl.length running < jobs && not (stopping ()) do
let i = Queue.pop ready in
let v = nodes.(i) in
if up_to_date cache v then begin
incr cached;
state.(i) <- Done;
release i
end
else spawn v
done;
if Hashtbl.length running > 0 then reap ()
else if Queue.is_empty ready then ()
done;
restore_signals ();
{ built = !built; cached = !cached; failed = !failed; aborted = !aborted_count; interrupted = !interrupted }