Files
OrcaSlicer/scripts/CAD/check-gui-click-edit.py
T
Tommaso BianchiandClaude Opus 5 9134299233 Sketch value fields: content-based key arbiter + the gate that can judge it
The reported defect: sketch dimension labels are "not editable" — you draw a
rectangle, its Width field opens, you type, and the as-drawn number is committed
instead. It affects every sketch tool, not just the rounded rectangle.

WHAT THIS ADDS

1. The arbiter (DesignPanel CHAR_HOOK -> DesignCanvas::inline_type_char ->
   SketchInlineEditor::type_char). Routes a key by what it IS, not by who the
   window manager focused: digits, sign, decimal separator and Backspace/Delete
   go to the open value field, Enter/Tab commit, letters stay tool shortcuts.
   This is FreeCAD Sketcher's rule (DrawSketchKeyboardManager::
   detectKeyboardEventHandlingMode), and the reason its sketcher behaves the same
   on every desktop: it never asks who has focus.

2. The [UX] trace (SNAPORCA_UXTRACE) in SketchInlineEditor: open/commit/refused/
   cancel, with the prefill and what the control actually held at Enter. It did
   not exist — the ladder below was written against a surface no build emitted,
   so it could only ever report "nothing opened". typed == prefill on a commit is
   the defect's signature and nothing else makes it visible.

3. A draw-then-edit trace in DesignSketchTool: four early returns can swallow the
   value-field chain and from outside they are indistinguishable.

4. scripts/CAD/check-gui-click-edit.py — types WITHOUT clicking the field, as a
   person does, across Line/Rectangle/Circle/Slot/Polygon/Ellipse/Arc plus label
   click-to-edit, and asserts committed == typed != prefill.

5. scripts/CAD/focus-loop.sh — sync/build/assert on behemoth. NOT the orcacad-gui
   rig: its image pins deps 216 non-CAD files behind cad-mainline, so today's CAD
   sources cannot build there without a deps rebuild.

WHAT IS PROVEN, AND WHAT IS NOT

Green under openbox: 28 checks, every tool, committed == typed != prefill.

But openbox CANNOT adjudicate this bug and the ladder says so in place. There the
field always wins the keyboard, so the same ladder also passes against a binary
with the arbiter compiled out — measured twice. Two ways of removing the keyboard
were tried and both are recorded as dead ends: XSetInputFocus loses to the field's
own re-focus CallAfter, and XSendEvent (xdotool --window) is dropped by GTK, which
made every run red regardless of the code.

Under metacity — same focus-stealing-prevention lineage as the user's mutter — the
mechanism appears in the WM's own log:

    Buggy client sent a _NET_ACTIVE_WINDOW message with a timestamp of 0

That is the activation being refused, which is exactly the reported symptom.
present_toplevel() already asks for a server timestamp, so a path is still falling
through to frame->Raise(), which sends time 0. That is the next thing to fix, and
it is tracked; the arbiter alone does not close it. metacity also aborts on this
window (frames.c:1239), so the gate needs a WM that survives before it can return
a verdict.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_011FbJKJAJxxkhDTs9XdZzKA
2026-09-06 10:35:22 +02:00

637 lines
30 KiB
Python
Executable File

#!/usr/bin/env python3
"""The click-edit contract: a value field that opens must accept what is TYPED into it.
WHY THIS EXISTS SEPARATELY FROM check-gui-sketching.py. That ladder draws geometry and grades the
result, and to make its values land it calls focus_field() — one synthetic click INTO the field
before typing. Its own docstring says why:
WITHOUT THIS THE TYPED VALUE IS SILENTLY DISCARDED. The field is shown and raised but the
window manager does not give it the keyboard, so xdotool's digits go to the canvas and Return
commits the value the field opened with — the pre-filled as-drawn number.
That click is a workaround for a defect, and a suite that performs it can never see the defect
again. A user cannot be told to click the field first; when they do not, they get the as-drawn
number and report "the label value is not editable". So this ladder types IMMEDIATELY after the
field opens, exactly as a person does, and fails if the prefill is what gets committed.
WHAT IT GRADES. The app emits one line per event under SNAPORCA_UXTRACE=1:
[UX] open title=Length prefill=154.76
[UX] commit title=Length typed=80 value=80.0000
[UX] refused title=Length typed=8O
[UX] cancel title=Length
For every field the driver opens it asserts: a commit arrived, what the field received is what we
typed, the parsed value equals it, and it differs from the prefill. The last clause is the one
that matters — a field that is on screen but deaf commits its prefill, and every other signal
(the field is visible, a constraint is created, the solve succeeds) looks perfectly healthy.
scripts/CAD/check-gui-click-edit.py --display :10 --bin build/src/Release/orca-slicer
With --attach it drives an already-running app instead of launching one; the app must have been
started with SNAPORCA_UXTRACE=1 and its stderr redirected to --trace.
Exit 0 = every field took what was typed.
"""
import argparse, json, os, re, shutil, signal, socket, subprocess, sys, tempfile, time
AP = argparse.ArgumentParser()
AP.add_argument("--display", default=os.environ.get("DISPLAY", ":10"))
AP.add_argument("--bin", default="build/src/Release/orca-slicer")
AP.add_argument("--datadir", default="")
AP.add_argument("--trace", default="")
AP.add_argument("--sock", default="/tmp/mcp-uxcheck.sock",
help="the app's MCP socket: the oracle for whether a sketch is really open")
AP.add_argument("--attach", action="store_true", help="drive a running app; do not launch one")
AP.add_argument("--keep", action="store_true", help="leave the app running afterwards")
AP.add_argument("--no-defocus", action="store_true",
help="do NOT take focus off the field before typing (weakens the gate; see below)")
AP.add_argument("--seed-from", default=os.path.expanduser("~/.config/OrcaCAD/OrcaSlicer.conf"),
help="an existing OrcaSlicer.conf to copy presets/settings from")
A = AP.parse_args()
DISP = A.display
TRACE = A.trace or os.path.join(tempfile.gettempdir(), "ux-click-edit.log")
_fail = 0
_checks = 0
_n = 0
def call(method, **params):
"""One MCP request over the app's unix socket. The socket is the only witness that cannot
lie about sketch state: the keytrace says a key ARRIVED, a screenshot says something is on
screen, and neither distinguishes an open sketch from sketch mode with the plane offer up."""
global _n
_n += 1
s = socket.socket(socket.AF_UNIX, socket.SOCK_STREAM)
s.settimeout(30)
s.connect(A.sock)
s.sendall((json.dumps({"jsonrpc": "2.0", "id": _n, "method": method,
"params": params}) + "\n").encode())
buf = b""
while b"\n" not in buf:
d = s.recv(65536)
if not d:
break
buf += d
r = json.loads(buf.decode().strip())
if "error" in r:
raise RuntimeError(f"{method}: {r['error']['message']}")
return r["result"]
def try_call(method, **params):
try:
return call(method, **params)
except Exception:
return None
def sh(cmd):
# bash -c, NOT -lc: a login shell sources the profile on every xdotool call, and this driver
# makes hundreds. On a GNOME box that meant im-config running per call, thousands of journal
# lines, and a window poll slow enough to time out before the app had finished starting.
return subprocess.run(["bash", "-c", cmd], capture_output=True, text=True).stdout
def xdo(args):
sh(f"DISPLAY={DISP} xdotool {args}")
def key(k, pause=0.35, window=None):
xdo(f"key {'--window ' + str(window) + ' ' if window else ''}{k}")
time.sleep(pause)
def typ(s, pause=0.35, window=None):
# --clearmodifiers so a modifier left down by an earlier synthetic key cannot turn digits
# into something else; --delay 60 because ImGui reads one character per frame.
#
# `window` targets a specific window with XSendEvent instead of following the input focus.
# That is the whole gate: see type_into_open_field.
tgt = f"--window {window} " if window else ""
xdo(f"type {tgt}--clearmodifiers --delay 60 -- '{s}'")
time.sleep(pause)
def die(msg):
print(f"FATAL {msg}", file=sys.stderr)
sys.exit(2)
# ---------------------------------------------------------------- the app
_proc = None
def seed_datadir(datadir):
"""The Design tab does not exist unless enable_cad_feature is on, and it needs a RESTART.
A fresh datadir has it off, so a driver that just points the app at an empty directory gets
Prepare/Preview/Device/Project, no Design tab, and every rung fails for a reason that has
nothing to do with what is being tested. Seed the flag before the first launch.
"""
os.makedirs(datadir, exist_ok=True)
conf = os.path.join(datadir, "OrcaSlicer.conf")
data = {}
if os.path.exists(A.seed_from):
try:
with open(A.seed_from) as f:
data = json.load(f)
except Exception:
data = {}
app = data.setdefault("app", {})
app["enable_cad_feature"] = True
# Deterministic starting state for the rungs that follow: the bed drawn, loops welded as the
# ~90% case expects. A ladder whose result depends on the developer's own preferences is not
# a gate.
app["auto_close_sketch_loops"] = True
with open(conf, "w") as f:
json.dump(data, f, indent=1)
for sub in ("user", "system", "presets", "vendor"):
src = os.path.join(os.path.dirname(A.seed_from), sub)
dst = os.path.join(datadir, sub)
if os.path.isdir(src) and not os.path.exists(dst):
shutil.copytree(src, dst)
def launch():
global _proc
datadir = A.datadir or os.path.join(tempfile.gettempdir(), "orcacad-uxcheck")
seed_datadir(datadir)
env = dict(os.environ)
# WAYLAND_DISPLAY MUST GO, and GDK_BACKEND must say x11. GTK prefers Wayland whenever
# WAYLAND_DISPLAY is set and ignores DISPLAY entirely, so a driver launched from a systemd
# user unit (which inherits it) started the app on the DESKTOP session instead of the rig:
# the process was alive, `xdotool search` on the rig display found nothing, and the window
# was sitting on the user's own screen. Silent, and it drives a stray app at someone's face.
env.pop("WAYLAND_DISPLAY", None)
env.update(DISPLAY=DISP, GDK_BACKEND="x11", SNAPORCA_UXTRACE="1",
LIBGL_ALWAYS_SOFTWARE="1", GALLIUM_DRIVER="llvmpipe",
# The rig's Xvfb has no input-method daemon, and a dead ibus context makes a
# GtkEntry drop every character while the app looks fine. It cannot affect the
# in-canvas field (ImGui needs no IM) but the app has other text fields, and a
# display full of IBUS warnings has cost a whole misdiagnosis before.
GTK_IM_MODULE="gtk-im-context-simple", XMODIFIERS="@im=none",
# The key tracer is this driver's only positive signal that a keystroke reached
# the Design panel at all. Without it "the field never opened" is indistinguishable
# from "we never got into sketch mode", and the first run of this ladder reported
# seven product failures that were really one driver racing a still-loading app.
SNAPORCA_KEYTRACE="1", SNAPORCA_MCP=A.sock,
SSL_CERT_FILE="/etc/ssl/certs/ca-certificates.crt",
WEBKIT_DISABLE_DMABUF_RENDERER="1", WEBKIT_DISABLE_COMPOSITING_MODE="1")
if os.path.exists(A.sock):
os.unlink(A.sock) # a stale socket from a dead run answers nothing, slowly
log = open(TRACE, "wb")
_proc = subprocess.Popen([A.bin, "--datadir", datadir], env=env,
stdout=subprocess.DEVNULL, stderr=log)
for _ in range(120):
if win_id():
return
time.sleep(1)
die("the app never showed a window on " + DISP)
def window_pid(w):
"""_NET_WM_PID for a window, or 0. The property is how we tell a live app from its ghost."""
out = sh(f"DISPLAY={DISP} xprop -id {w} _NET_WM_PID 2>/dev/null")
m = re.search(r"= *(\d+)", out)
return int(m.group(1)) if m else 0
def pid_alive(pid):
return pid > 0 and os.path.isdir(f"/proc/{pid}")
def win_id():
"""The main window: OURS if we launched it, otherwise the biggest LIVE top-level.
Two rules here, each paid for.
By PID, not by size, whenever we launched the app. An X window outlives its client if the
connection is not torn down cleanly, and a killed OrcaSlicer can leave a full-screen ghost
mapped on the display. It answers geometry queries exactly like the real thing, it wins "the
biggest window" every time, and every synthetic keystroke sent to it goes nowhere. That is
indistinguishable, from the driver's side, from an app that ignores the keyboard — which is
the very defect this ladder exists to measure. One run reported the entire contract broken
while the real app sat beside the ghost, untouched.
Never by title: a saved project renames the main window.
"""
if _proc is not None:
for w in sh(f"DISPLAY={DISP} xdotool search --pid {_proc.pid} --onlyvisible --name '.'").split():
g = dict(l.split("=", 1) for l in
sh(f"DISPLAY={DISP} xdotool getwindowgeometry --shell {w}").strip().splitlines()
if "=" in l)
if "WIDTH" in g and int(g["WIDTH"]) * int(g["HEIGHT"]) > 400 * 400:
return (w, int(g["X"]), int(g["Y"]), int(g["WIDTH"]), int(g["HEIGHT"]))
return None
best = None
for w in sh(f"DISPLAY={DISP} xdotool search --onlyvisible --name '.'").split():
g = dict(l.split("=", 1) for l in
sh(f"DISPLAY={DISP} xdotool getwindowgeometry --shell {w}").strip().splitlines()
if "=" in l)
if "WIDTH" not in g:
continue
if not pid_alive(window_pid(w)): # a ghost: no client is behind it any more
continue
a = int(g["WIDTH"]) * int(g["HEIGHT"])
if a > 400 * 400 and (best is None or a > best[0]):
best = (a, w, int(g["X"]), int(g["Y"]), int(g["WIDTH"]), int(g["HEIGHT"]))
return best[1:] if best else None
_win = None
def win():
global _win
if _win is None:
w = win_id()
if w is None:
die("no app window on " + DISP)
sh(f"DISPLAY={DISP} xdotool windowactivate --sync {w[0]}")
sh(f"DISPLAY={DISP} xdotool windowsize {w[0]} 1920 1080")
sh(f"DISPLAY={DISP} xdotool windowmove {w[0]} 0 0")
time.sleep(1.0)
_win = (w[0], 0, 0, 1920, 1080)
return _win
def click(px, py, pause=0.5, btn=1):
_, X, Y, _, _ = win()
xdo(f"mousemove {X+int(px)} {Y+int(py)} click --delay 120 {btn}")
time.sleep(pause)
def visible_windows():
"""(id, name, w, h) for every MAPPED top-level, main window included.
`--onlyvisible` is what makes this usable. Without it xdotool also returns the app's unmapped
helper windows — a 10x10 and a 200x200 that exist for the whole session — and a caller that
tries to reason about "extra windows" from that list is reasoning about furniture.
"""
out = []
for w in sh(f"DISPLAY={DISP} xdotool search --onlyvisible --name '.'").split():
g = dict(l.split("=", 1) for l in
sh(f"DISPLAY={DISP} xdotool getwindowgeometry --shell {w}").strip().splitlines()
if "=" in l)
if "WIDTH" not in g:
continue
if not pid_alive(window_pid(w)): # see win_id(): a ghost cannot be closed, only ignored
continue
n = sh(f"DISPLAY={DISP} xdotool getwindowname {w}").strip()
out.append((w, n, int(g["WIDTH"]), int(g["HEIGHT"])))
return out
def dismiss_modals(timeout=30):
"""Close every modal over the main window, and PROVE none is left.
This is the rung that decides whether any of the others mean anything. A fresh datadir opens
"Bambu Network Plug-in Required" — 440x259, centred at 742,450 — which sits exactly on top of
the point every drawing gesture in TOOLS starts from. The whole ladder then reports eleven
product failures, all of them the driver clicking a dialog.
The old version pressed Escape and moved on. This dialog ignores Escape, so it "dismissed"
nothing and said so to no one; the run that found this was red for a reason that had nothing
to do with the contract under test. Escape is still tried first because it is the gentlest
thing that works on the wizard, then WM_DELETE_WINDOW, and then the function asserts what it
was supposed to have achieved instead of assuming it.
"""
# NEVER run without knowing which window to spare. The first version took `keep = main[0] if
# main else None`, so a win_id() that raced the app's mapping made keep None and every visible
# window a modal — this function then sent WM_DELETE to the app's own main window. The app
# survived as a process, printed "GdkWindow unexpectedly destroyed", and answered nothing
# afterwards; the ladder reported "no sketch opened" for 180s. Losing the main window is not a
# state to recover from silently.
deadline = time.time() + timeout
keep = None
while keep is None and time.time() < deadline:
main = win_id()
keep = main[0] if main else None
if keep is None:
time.sleep(0.5)
if keep is None:
die(f"no main window to protect after {timeout}s — refusing to close anything")
scr = sh(f"DISPLAY={DISP} xdotool getdisplaygeometry").split()
full = int(scr[0]) * int(scr[1]) if len(scr) == 2 else 1920 * 1080
while time.time() < deadline:
# A modal is small. Anything covering half the screen is the app, whatever id win_id()
# happened to return this instant — a second belt on the rule above, because the cost of
# being wrong here is an app that looks alive and answers nothing.
extra = [x for x in visible_windows() if x[0] != keep and x[2] * x[3] < full * 0.5]
if not extra:
return
for (w, n, _, _) in extra:
sh(f"DISPLAY={DISP} xdotool windowactivate {w}")
time.sleep(0.4)
key("Escape", 0.4)
if any(x[0] == w for x in visible_windows()):
sh(f"DISPLAY={DISP} xdotool windowclose {w}")
time.sleep(0.6)
time.sleep(0.5)
left = [f"{n!r} ({w}x{h})" for (i, n, w, h) in visible_windows()
if i != keep and w * h < full * 0.5]
die("a modal is still covering the canvas after " + str(timeout) + "s: " + ", ".join(left) +
" — every drawing gesture would land in it, so nothing below this line could be trusted")
def dismiss_first_run():
dismiss_modals()
# ---------------------------------------------------------------- the trace
def trace_lines():
try:
with open(TRACE, "r", errors="replace") as f:
return [l.strip() for l in f if l.startswith("[UX] ")]
except OSError:
return []
def trace_mark():
return len(trace_lines())
def parse(line):
m = re.match(r"\[UX\] (\w+) title=(.*?) (.*)$", line)
if not m:
return None
ev, title, rest = m.group(1), m.group(2), m.group(3)
kv = dict(re.findall(r"(\w+)=(\S*)", rest))
return ev, title, kv
# ---------------------------------------------------------------- grading
def check(cond, what):
global _fail, _checks
_checks += 1
if cond:
print(f" ok {what}")
else:
print(f" FAIL {what}", file=sys.stderr)
_fail += 1
def type_into_open_field(value, mark):
"""Type `value` into whatever field is open, WITHOUT clicking it first, and grade the pair.
No click: the click is the workaround this ladder exists to refuse. If the field cannot take
the keyboard on its own, `typed` will be the prefill and this fails — which is the report.
"""
# POLL for the field. It opens from a CallAfter that runs after a re-solve, so on llvmpipe it
# is simply not there yet when a fast driver looks — and "no field opened" is the same message
# whether the product never opened one or the driver asked too early. Wait, then decide.
opens = []
deadline = time.time() + 8.0
while time.time() < deadline:
opens = [e for e in (parse(l) for l in trace_lines()[mark:]) if e and e[0] == "open"]
if opens:
break
time.sleep(0.25)
if not opens:
check(False, f"a value field opened (nothing did; cannot type {value})")
return mark
title = opens[-1][1]
prefill = opens[-1][2].get("prefill", "")
m2 = trace_mark()
# REPRODUCE THE FAILING CONDITION ON PURPOSE, rather than hoping the window manager supplies
# it. The defect is "the value field is open but does not hold the keyboard", which is what
# mutter does on the user's GNOME desktop and what openbox — the rig's WM — never does. A
# ladder that just types on openbox is green at baseline and proves nothing: the gate could
# not fail, so it could not pass meaningfully either.
#
# So take the keyboard AWAY from the field first, deliberately, by activating the main
# window. That is exactly the state mutter leaves behind, reproduced deterministically on any
# WM. A build that routes keys by content is unaffected; a build that routes by focus commits
# its prefill, which is the bug, and the assertion below catches it.
if not A.no_defocus:
w, _, _, _, _ = win()
# windowfocus, NOT windowactivate. `windowactivate` sets _NET_ACTIVE_WINDOW — it ASKS the
# window manager, and openbox obliges by marking the field's toplevel inactive while
# leaving the X input focus exactly where it was. Measured: the trace read
# "active=0 toplevel_focus=0" and every keystroke still reached the field, so the ladder
# passed against a binary with the arbiter compiled out. A gate that cannot fail cannot
# pass meaningfully either, and that run nearly shipped as proof.
#
# `windowfocus` calls XSetInputFocus, which is what actually decides where the server
# delivers keys. That reproduces the real defect — field on screen, keyboard elsewhere —
# on any WM, instead of hoping the local one volunteers it.
# DELIVER THE KEYS TO THE MAIN WINDOW, not to whatever holds the focus.
#
# This is the defect, reproduced exactly and without a focus fight. On the user's GNOME
# desktop mutter's focus-stealing prevention refuses the borderless field toplevel the
# keyboard, so the digits are delivered to the Design panel — which is precisely what
# DesignPanel's CHAR_HOOK comment describes. Only routing by CONTENT can get them from
# there into the field; a build that routes by focus commits its prefill.
#
# Stealing the focus instead does NOT work and must not be reinstated: measured on
# openbox, the app re-asserts SetFocus from open()'s CallAfter and wins every race — four
# retries of XSetInputFocus all lost, `xdotool getwindowfocus` came back as the field's
# own toplevel every time. Two full runs passed against a binary with the arbiter
# compiled out because of it. Targeting the window sidesteps the question entirely.
target = None
if not A.no_defocus:
target, _, _, _, _ = win()
typ(str(value), 0.4, window=target)
key("Return", 0.9, window=target)
after, commits, refused, commit_at = [], [], [], None
deadline = time.time() + 5.0
while time.time() < deadline:
after = [parse(l) for l in trace_lines()[m2:]]
commits = [(i, e) for i, e in enumerate(after) if e and e[0] == "commit"]
refused = [e for e in after if e and e[0] == "refused"]
if commits:
commit_at = m2 + commits[-1][0]
commits = [e for _, e in commits]
if commits or refused:
break
time.sleep(0.25)
if refused and not commits:
check(False, f"{title}: field REFUSED {value!r} (typed={refused[-1][2].get('typed')!r})")
key("Escape", 0.5)
return trace_mark()
if not commits:
check(False, f"{title}: typed {value} but nothing committed — the field took no keys")
key("Escape", 0.5)
return trace_mark()
typed = commits[-1][2].get("typed", "")
got = commits[-1][2].get("value", "")
check(typed == str(value),
f"{title}: field received what was typed (typed={typed!r} wanted={value!r}"
f"{' <-- it committed its PREFILL, so it never got the keyboard' if typed == prefill else ''})")
# A value that will not parse is a FAILED CHECK, never an exception. An unguarded float()
# here met a locale-formatted "61,0000" and took the whole run down immediately after the
# first check in the ladder's history had passed — the seven rungs below it were never tried
# and the report read as a total failure.
try:
ok_val = abs(float(got) - float(value)) < 1e-6
except (TypeError, ValueError):
ok_val = False
check(ok_val, f"{title}: committed value is {got!r} (wanted {value})")
check(str(value) != prefill, f"{title}: the test value differs from the prefill {prefill!r}")
# RESUME JUST AFTER THE COMMIT, not at the end of the trace. A queued chain opens its next
# field from the commit callback, so by the time trace_mark() is read here that "open" line
# is already written — and the next call, searching only after this mark, never sees it. The
# rectangle's Height, the slot's Radius and the label reopen all failed as "nothing did"
# while the trace plainly showed the field open and waiting.
return (commit_at + 1) if commit_at is not None else trace_mark()
# ---------------------------------------------------------------- the ladder
def enter_sketch(timeout=180):
"""Open a real sketch on a real plane, and PROVE it with the socket before drawing anything.
THE SEQUENCE MATTERS AND IT IS NOT OBVIOUS. Shift+S enters sketch MODE and pops the plane
offer; the offer must be dismissed; and the plane itself is chosen by clicking it in the
viewport BEFORE Shift+S. check-gui-sketching.py has always done all four steps. This ladder
did two of them — Design tab, then Shift+S — and went straight to the tool letters.
That intermediate state is the trap. `is_sketching` reads 1, every tool key is accepted and
traced, and not one click draws anything, because there is no plane under them. The ladder
then reports eleven product failures, all of them "a value field opened (nothing did)", and
every one is the driver's. Two whole runs were spent on it.
So the gate is the ORACLE, not the keytrace: sketch_describe answers only when a sketch is
genuinely open. Waiting on a mode flag is what allowed the wrong state to pass for the right
one in the first place.
"""
deadline = time.time() + timeout
while time.time() < deadline:
click(132, 53) # Design tab
time.sleep(2.0)
dismiss_modals()
click(*PLANE_PX) # pick the plane IN THE VIEWPORT — before Shift+S
key("shift+s", 1.0)
key("Escape", 0.5) # entering sketch mode pops the offer; dismiss it
key("p", 0.6) # any sketch tool starts the session on that plane
if try_call("sketch_describe") is not None:
# NO Escape here. Every rung already opens with one to drop whatever tool the last
# one left armed, and Escape in the Design tab walks a LIFO: first press drops the
# armed tool, second LEAVES THE SKETCH. Pressing it here made that second press the
# rung's own, so the ladder exited the sketch before drawing anything and then
# reported all eleven checks failed with "nothing opened" — the tools were arming
# into an empty Feature-mode document.
return
die("no sketch opened after plane click + Shift+S within "
f"{timeout}s — sketch_describe never answered on {A.sock} (trace {TRACE})")
# tool key, the clicks that draw it, and one distinct value per queued field. The values are
# deliberately nothing like the as-drawn size, so a committed prefill cannot coincide with them.
# Where the plane label sits in the viewport before a sketch is open. Same constant the gesture
# ladder uses; it is a label on the 3D view, not a widget, so it moves only if the camera does.
PLANE_PX = (913, 359)
# Every coordinate below stays inside 1000..1400 x 500..760 — the box check-gui-sketching.py's
# calibration probes land four Points in, i.e. the region PROVEN to be live canvas on a 1920x1080
# window. Earlier values started at x=950, which is left of that box and also, on a fresh datadir,
# underneath the "Bambu Network Plug-in Required" modal.
TOOLS = [
("L", "Line", [(1030, 540), (1360, 540)], [61]),
("R", "Rectangle", [(1030, 540), (1360, 730)], [62, 43]),
("C", "Circle", [(1180, 620), (1330, 620)], [64]),
("S", "Slot", [(1030, 580), (1300, 580), (1300, 640)], [66]),
("G", "Polygon", [(1180, 620), (1320, 620)], [67]),
("E", "Ellipse", [(1180, 620), (1370, 620), (1180, 720)], [68]),
("A", "Arc", [(1040, 660), (1340, 660), (1190, 560)], [69]),
]
def rung_tool(k, name, clicks, values):
print(f" {name}")
key("Escape", 0.6) # back to Select, whatever the last tool left armed
# Every rung re-establishes that a sketch is STILL open. One stray Escape too many leaves it,
# and from then on every tool arms into a Feature-mode document that cannot open a value
# field — which the checks below report as eleven independent product failures.
if try_call("sketch_describe") is None:
die(f"{name}: the sketch is no longer open before this rung — an earlier rung left it")
key(k, 0.8)
# MARK BEFORE THE CLICKS, not after. The field is opened from a CallAfter scheduled by the
# render that follows the last click, so it can already be open by the time a mark taken
# afterwards is read — and type_into_open_field, which only looks at events AFTER its mark,
# then finds none and reports "a value field opened (nothing did)" for a field that is on
# screen, open, and waiting. That message accused the product of the exact defect the ladder
# exists to detect, from a bug in the ladder's own bookkeeping.
mark = trace_mark()
for (x, y) in clicks:
click(x, y)
for v in values:
mark = type_into_open_field(v, mark)
def rung_label_click():
"""The user's own report: click an existing dimension label and type a new value into it.
KEEP THE SHAPE AS DRAWN. An earlier version committed 55 and 47 into the queued chain first,
which resized the rectangle — and then clicked the pixel where the label had been before the
resize. It missed, every time, and reported the reopen broken. The shape's on-screen position
is only predictable if nothing has moved it, so Escape the chain instead: the rectangle stays
exactly between the two corners we clicked.
FIND THE LABEL, do not assume its offset. A dimension label is drawn beside its edge at an
offset that depends on zoom and text metrics, so a single hardcoded pixel is a guess that
silently becomes wrong. Walk a short band across the top edge instead and stop at the first
click that opens a field; if none of them does, that is a real failure and it says so.
"""
print(" label click-to-edit")
key("Escape", 0.6) # Select mode
key("R", 0.8)
click(1020, 530)
click(1350, 740)
time.sleep(1.5)
key("Escape", 0.8) # keep as drawn: abandon the queued value chain
time.sleep(0.8)
key("Escape", 0.6) # back to Select so a click picks rather than draws
mid_x, top_y = (1020 + 1350) // 2, 530
candidates = [(mid_x, top_y + dy) for dy in (-26, -20, -14, -8, 0, 8, 14)]
for (cx, cy) in candidates:
mark = trace_mark()
click(cx, cy)
deadline = time.time() + 2.0
while time.time() < deadline:
if [e for e in (parse(l) for l in trace_lines()[mark:]) if e and e[0] == "open"]:
check(True, f"clicking a dimension label reopened its value field (at {cx},{cy})")
type_into_open_field(71, mark)
return
time.sleep(0.2)
check(False, "clicking a dimension label reopened its value field "
f"(tried {len(candidates)} points across the top edge at x={mid_x})")
def main():
if not A.attach:
if not os.path.exists(A.bin):
die(f"no binary at {A.bin}")
open(TRACE, "w").close()
launch()
dismiss_first_run()
win()
print(f"click-edit ladder on {DISP}, trace {TRACE}")
enter_sketch()
for (k, name, clicks, values) in TOOLS:
rung_tool(k, name, clicks, values)
rung_label_click()
print()
if _fail:
print(f"CLICK-EDIT LADDER FAILED — {_fail} of {_checks} checks", file=sys.stderr)
else:
print(f"CLICK-EDIT LADDER HELD — {_checks} checks")
if _proc is not None and not A.keep:
_proc.send_signal(signal.SIGTERM)
try:
_proc.wait(20)
except subprocess.TimeoutExpired:
_proc.kill()
return 1 if _fail else 0
if __name__ == "__main__":
sys.exit(main())