A test binary names the signal that killed a daemon, and the break buffer keeps its keys under Evil
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TODO.org
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TODO.org
@ -1649,16 +1649,22 @@ sanitizer flag to it. Named as the check worth adding next; a day rather than an
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hour. The x86 backend is not a gap here — that pair is refused by name, because
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there is no sanitizer pass over hand-written assembly.
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** TODO A transient signal 11 on a globals daemon
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Seen once, never reproduced, on a daemon whose fixture had just gained a host
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global =Vec= and a run-time-new one. A reproduction under load would settle it.
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** DONE A transient signal 11 on a globals daemon
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CLOSED: [2026-09-25]
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Not a segfault. The report was OCaml's signal number, and in OCaml's numbering
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-11 is SIGTERM (SIGSEGV is -10). Nothing in the daemon sends itself SIGTERM, so
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it was killed from outside. The test binaries now print a signal by name
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(=Test_support.signal_name=); a number from =WSIGNALED= is never printed raw.
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** TODO test_dev daemons fail to bind under load
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Daemons exiting with status 1 or 2 before binding their socket, across most of the
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file at once, while the load average is high. No stale socket or leftover daemon
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afterwards; green on a quiet machine. Distinct from the registry race and the
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stale-park re-run flake, both of which are fixed. A daemon that dies before it
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binds died on the compiler's side, before any program it built has run a line.
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** DONE test_dev daemons fail to bind under load
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CLOSED: [2026-09-25]
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The failure was a full /tmp, not the load. /tmp is a tmpfs, and every session
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left its =flan-dev-<pid>= build directory behind (a test_dev run leaves about
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300MB); a few concurrent runs filled it and each daemon after that died on its
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link with ENOSPC. The fix is the session removing its own directory on a clean
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=close=, which the build-plumbing lane owns. The half-write test's abort also
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goes through =aborted= now, which took the same run down with an uncaught
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=Wire.Closed=.
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** DONE A test binary that hangs is killed by its own alarm
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A reader branch that forgets to advance loops for ever and the suite waits as long
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@ -1799,13 +1805,21 @@ function of that name. Not reproduced: the file type checks, =flan reload= of
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the same form builds, and a minimal =defclass= + =get= + =return= program
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compiles. So it is the session path against an installed program, and what is
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missing is what that daemon had installed at the time.
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Also not reproduced against a live daemon (2026-09-25): an =eval= of the
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=defclass=, of a =defn= doing the =get= and =return=, and of both in one form,
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and an =eval-expr= of the =get=, all succeed. In a session every installed
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function of no arguments returning =()= has the type =(CFn [] ())=, not only
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=pause= — a bare =pause= or =tick= asked of the session says so — so the
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keyword may not be what resolved. The next report wants the exact form sent.
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** TODO A digit does not take the restart RET takes
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Pressing =0= left the program stopped; RET on the same line resumed it. Both
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end in =flan-cnr-take=, but the digit path (=flan-cnr-take-number=,
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=flan-cnr.el:559=) scans from =point-min= for the line whose =flan-cnr-index=
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matches and calls =take= inside a =save-excursion=. Not reproduced yet — needs
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a non-raylib program stopped under a test daemon.
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** DONE A digit does not take the restart RET takes
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CLOSED: [2026-09-25]
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Evil's normal state binds =0= (beginning of line), =1=-=9= (a count) and RET
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above the major mode's map, so the digit never reached =flan-cnr-take-number=.
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The keys =flan-cnr-mode-map= itself binds are given to Evil's normal and
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motion states in that mode; every other key, including what =special-mode-map=
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binds, stays Evil's. The other special-mode buffers (inspect, watch, doc, disassembly,
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diagnostics, lower) have the same exposure and are not changed.
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** TODO Eval in the frame, from the break loop
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An expression is evaluated at a frame boundary, so it sees globals and not the
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@ -702,6 +702,24 @@ anyone who would rather TAB always moved."
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map)
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"Keys in `flan-cnr-mode'.")
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;; Evil's normal state binds 0, the other digits and RET above any major
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;; mode's map, so under Evil a digit moved point or started a count and took
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;; nothing. The keys this file binds are given to Evil's normal and motion
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;; states in this mode. Only those keys: `flan-cnr-mode-map' inherits
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;; `special-mode-map', and making it an overriding map would carry h, SPC, <
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;; and - over from there as well. Every key not listed stays Evil's.
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(with-eval-after-load 'evil
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(when (fboundp 'evil-define-key*)
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;; Collected first, and without the parent's bindings, because
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;; `evil-define-key*' writes into the map being walked.
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(let ((own nil))
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(map-keymap-internal (lambda (key def)
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(when (commandp def) (push (cons key def) own)))
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flan-cnr-mode-map)
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(dolist (b own)
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(evil-define-key* '(normal motion) flan-cnr-mode-map
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(vector (car b)) (cdr b))))))
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(define-derived-mode flan-cnr-mode special-mode "flan-break"
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"What a stopped Flan program is offering."
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(setq buffer-read-only t))
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@ -1704,6 +1704,55 @@ stopped program, which is the case where it should fire."
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(file-name-directory load-file-name))
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nil t)
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;; The break buffer's keys under Evil, pressed through the command loop rather
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;; than called. Evil's normal state binds 0 (beginning of line), 1-9 (a count)
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;; and RET (next line) above any major mode's map, so without the buffer's map
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;; taking precedence a digit moved point and took nothing. Run only where
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;; Evil is installed: -Q loads no packages, so it is looked for in the two
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;; places a package install puts it, and turned off again afterwards so nothing
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;; above or below this runs under it.
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(let* ((dirs (append (file-expand-wildcards "~/.config/emacs/elpa/evil-[0-9]*")
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(file-expand-wildcards "~/.emacs.d/elpa/evil-[0-9]*")
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(file-expand-wildcards "~/.config/emacs/elpa/goto-chg-*")
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(file-expand-wildcards "~/.emacs.d/elpa/goto-chg-*")))
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(load-path (append dirs load-path)))
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(if (not (require 'evil nil t))
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(message " skip the break buffer under Evil (Evil is not installed)")
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(evil-mode 1)
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(unwind-protect
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(let* ((sent nil)
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(flan-cnr-request-function
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(lambda (form) (setq sent form) (list :status "ok")))
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(buf (test-flan--cnr
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(list :condition "Missing" :restarts '("retry" "skip")))))
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(switch-to-buffer buf)
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(evil-initialize-state)
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(goto-char (point-min))
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(execute-kbd-macro (kbd "0"))
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(test-flan--check "under Evil, 0 takes restart 0"
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(equal sent '(:op "restart-at" :index 0 :name "retry")))
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(setq sent nil)
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(switch-to-buffer buf)
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(execute-kbd-macro (kbd "1"))
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(test-flan--check "under Evil, 1 takes restart 1"
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(equal sent '(:op "restart-at" :index 1 :name "skip")))
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(setq sent nil)
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(switch-to-buffer buf)
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(goto-char (point-min))
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(search-forward " 1: ")
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(execute-kbd-macro (kbd "RET"))
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(test-flan--check "under Evil, RET takes the restart on its line"
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(equal sent '(:op "restart-at" :index 1 :name "skip")))
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;; And the keys the buffer does not bind are still Evil's, not the
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;; ones `special-mode-map' would bring with it.
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(switch-to-buffer buf)
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(dolist (k '(("h" . evil-backward-char) ("SPC" . evil-forward-char)
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("<" . evil-shift-left)
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("-" . evil-previous-line-first-non-blank)))
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(test-flan--check (format "under Evil, %s is still Evil's" (car k))
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(eq (key-binding (kbd (car k))) (cdr k)))))
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(evil-mode -1))))
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(message "\n%d checks, %d failures" test-flan--ran test-flan--failures)
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(kill-emacs (if (> test-flan--failures 0) 1 0))
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@ -186,8 +186,8 @@ module Pool = struct
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name
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(match status with
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| Unix.WEXITED n -> Printf.sprintf "with code %d" n
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| Unix.WSIGNALED n -> Printf.sprintf "on signal %d" n
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| Unix.WSTOPPED n -> Printf.sprintf "stopped on signal %d" n))
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| Unix.WSIGNALED n -> "on " ^ Test_support.signal_name n
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| Unix.WSTOPPED n -> "stopped on " ^ Test_support.signal_name n))
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| None, _ ->
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Some
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(Printf.sprintf
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@ -195,8 +195,8 @@ module Pool = struct
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name
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(match status with
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| Unix.WEXITED n -> Printf.sprintf "exit %d" n
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| Unix.WSIGNALED n -> Printf.sprintf "signal %d" n
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| Unix.WSTOPPED n -> Printf.sprintf "stopped, signal %d" n))
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| Unix.WSIGNALED n -> Test_support.signal_name n
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| Unix.WSTOPPED n -> "stopped on " ^ Test_support.signal_name n))
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in
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ignore (Queue.pop inflight);
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match msg with
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@ -149,8 +149,8 @@ let () =
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fail "agent reload\n got: %S (%s)\n wanted: %S" text
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(match status with
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| Unix.WEXITED c -> Printf.sprintf "exit %d" c
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| Unix.WSIGNALED c -> Printf.sprintf "signal %d" c
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| Unix.WSTOPPED c -> Printf.sprintf "stopped %d" c)
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| Unix.WSIGNALED c -> Test_support.signal_name c
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| Unix.WSTOPPED c -> "stopped on " ^ Test_support.signal_name c)
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"1\n1000\n1007\n"
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end;
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@ -309,8 +309,8 @@ let () =
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%S (exit 1)" text
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(match !bstat with
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| Unix.WEXITED c -> Printf.sprintf "exit %d" c
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| Unix.WSIGNALED c -> Printf.sprintf "signal %d" c
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| Unix.WSTOPPED c -> Printf.sprintf "stopped %d" c)
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| Unix.WSIGNALED c -> Test_support.signal_name c
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| Unix.WSTOPPED c -> "stopped on " ^ Test_support.signal_name c)
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"cannot listen\n"
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end;
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@ -766,8 +766,8 @@ let () =
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fail "abort left status %s, wanted exit 134"
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(match !lstatus with
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| Unix.WEXITED c -> Printf.sprintf "exit %d" c
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| Unix.WSIGNALED c -> Printf.sprintf "signal %d" c
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| Unix.WSTOPPED c -> Printf.sprintf "stopped %d" c)
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| Unix.WSIGNALED c -> Test_support.signal_name c
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| Unix.WSTOPPED c -> "stopped on " ^ Test_support.signal_name c)
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(* The other way out, and the one that skips atexit on purpose: [abort]
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leaves by [_exit] so that it cannot hang on the loader lock, and the
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socket is therefore unlinked by hand there. A file left here would
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@ -196,6 +196,23 @@ let () =
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if not (contains_sub other "flan.abi.x86") then
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fail "a parked program's other refusals were rewritten too: %S" other
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(* A daemon's death is reported by the signal's name. [WSIGNALED] carries
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OCaml's own numbering, in which SIGTERM is -11, and a SIGTERM printed as
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"signal -11" was once recorded as a segfault. A real process, really
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terminated, so the number is whatever [waitpid] hands back. *)
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let () =
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let p =
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Unix.create_process "sleep" [| "sleep"; "30" |] Unix.stdin Unix.stdout
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Unix.stderr
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in
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Unix.kill p Sys.sigterm;
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match Unix.waitpid [] p with
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| _, Unix.WSIGNALED n when Test_support.signal_name n = "SIGTERM" -> ()
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| _, Unix.WSIGNALED n ->
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fail "a process ended by SIGTERM is reported as %s"
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(Test_support.signal_name n)
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| _, _ -> fail "a process sent SIGTERM did not end on a signal"
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let () =
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match Sys.command "command -v clang > /dev/null 2>&1 && command -v llc > /dev/null 2>&1" with
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| 0 ->
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@ -5104,8 +5121,8 @@ let () =
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(match st with
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| Unix.WEXITED n -> Printf.sprintf "exit %d" n
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| Unix.WSIGNALED n when n = Sys.sigpipe -> "killed by SIGPIPE"
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| Unix.WSIGNALED n -> Printf.sprintf "signal %d" n
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| Unix.WSTOPPED n -> Printf.sprintf "stopped on %d" n);
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| Unix.WSIGNALED n -> Test_support.signal_name n
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| Unix.WSTOPPED n -> "stopped on " ^ Test_support.signal_name n);
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None
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| exception Unix.Unix_error _ -> Some (connect rsock)
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in
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@ -5605,9 +5622,12 @@ let () =
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abort is refused by a program that is *running*, which is what a
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failure above would leave behind — and this fixture then polls for
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twenty seconds and parks, so the wait below would be a hang rather
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than a report. The signal is for that case only. *)
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if status (request c "(:op \"abort\")") <> "ok" then
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(try Unix.kill hpid Sys.sigkill with Unix.Unix_error _ -> ());
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than a report. The signal is for that case only. Through [aborted],
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because an abort that worked can arrive as the socket closing. *)
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(match aborted c with
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| Some r when status r <> "ok" ->
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(try Unix.kill hpid Sys.sigkill with Unix.Unix_error _ -> ())
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| _ -> ());
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(try Unix.close c with Unix.Unix_error _ -> ());
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(try ignore (Unix.waitpid [] hpid) with Unix.Unix_error _ -> ())
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end;
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@ -112,9 +112,10 @@ let () =
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match !status with
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| Some (Unix.WEXITED n) -> Printf.sprintf "exited with status %d" n
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| Some (Unix.WSIGNALED n) ->
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Printf.sprintf "was killed by signal %d — nothing ran its cleanup, so \
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the socket file is stale rather than gone" n
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| Some (Unix.WSTOPPED n) -> Printf.sprintf "stopped on signal %d" n
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Printf.sprintf "was killed by %s — nothing ran its cleanup, so \
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the socket file is stale rather than gone"
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(Test_support.signal_name n)
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| Some (Unix.WSTOPPED n) -> Printf.sprintf "stopped on %s" (Test_support.signal_name n)
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| None -> "was still running when the client finished, and was terminated"
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in
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(* Read before the removal below, because on a failure this is the evidence
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@ -326,9 +326,11 @@ let () =
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"the daemon had already been killed by SIGPIPE — a reply written \
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into a socket whose reader had gone"
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| Some (Unix.WSIGNALED n) ->
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Printf.printf "the daemon had already been killed by signal %d\n" n
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Printf.printf "the daemon had already been killed by %s\n"
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(Test_support.signal_name n)
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| Some (Unix.WSTOPPED n) ->
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Printf.printf "the daemon was stopped on signal %d\n" n
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Printf.printf "the daemon was stopped on %s\n"
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(Test_support.signal_name n)
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| None -> print_endline "the daemon was still running at the end");
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Printf.printf "\n-- the program's own output, last 4k --\n%s\n" prog_out;
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exit 1
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@ -152,6 +152,24 @@ let rec connect ?(ms = 5000) path =
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thing after a failed wait is always the report of it. *)
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let listen_why = ref ""
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(* A signal as [WSIGNALED] carries it, by name. OCaml numbers the signals it
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knows negatively and in its own order — [Sys.sigterm] is -11 and
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[Sys.sigsegv] is -10 — so printing the number reads as the wrong signal to
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anyone who knows the POSIX table: a daemon terminated by SIGTERM was once
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recorded here as "a transient signal 11", a segfault that never happened. *)
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let signal_name n =
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let known =
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[ Sys.sigabrt, "SIGABRT"; Sys.sigalrm, "SIGALRM"; Sys.sigfpe, "SIGFPE";
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Sys.sighup, "SIGHUP"; Sys.sigill, "SIGILL"; Sys.sigint, "SIGINT";
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Sys.sigkill, "SIGKILL"; Sys.sigpipe, "SIGPIPE"; Sys.sigquit, "SIGQUIT";
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Sys.sigsegv, "SIGSEGV"; Sys.sigterm, "SIGTERM"; Sys.sigusr1, "SIGUSR1";
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Sys.sigusr2, "SIGUSR2"; Sys.sigchld, "SIGCHLD"; Sys.sigbus, "SIGBUS";
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Sys.sigtrap, "SIGTRAP"; Sys.sigxcpu, "SIGXCPU" ]
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in
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match List.assoc_opt n known with
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| Some s -> s
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| None -> Printf.sprintf "signal %d" n
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let listening ?(ms = 30000) ~pid path =
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let died = ref None in
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ignore
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@ -171,10 +189,10 @@ let listening ?(ms = 30000) ~pid path =
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| Some (Unix.WEXITED n) ->
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Printf.sprintf "exited with status %d before binding %s" n path
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| Some (Unix.WSIGNALED n) ->
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Printf.sprintf "was killed by signal %d before binding %s" n path
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Printf.sprintf "was killed by %s before binding %s" (signal_name n) path
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(* Unreachable without WUNTRACED, and here only for exhaustiveness. *)
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| Some (Unix.WSTOPPED n) ->
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Printf.sprintf "stopped on signal %d without binding %s" n path
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Printf.sprintf "stopped on %s without binding %s" (signal_name n) path
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| None ->
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Printf.sprintf
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"was still running after %ds without binding %s, so it was the \
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