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0ab535f772
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0ab535f772 | |
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10a5fbb33b | |
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a1d5185ac8 | |
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32420fd2c8 |
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@ -23,5 +23,5 @@ hl.on("hyprland.start", function()
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hl.exec_cmd("bash ~/Dotfiles/desktopenvs/hyprlua/scripts/presence-detect.sh")
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hl.exec_cmd("chamel")
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hl.exec_cmd("ydotoold")
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hl.exec_cmd("flatpak run com.mairtech.OpenDeck")
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hl.exec_cmd("opendeck")
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end)
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@ -1,26 +1,17 @@
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-- generated by monitor-manager -- do not edit by hand
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-- Default monitor configuration.
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--
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-- This is a functional fallback only: a single catch-all rule that brings up
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-- every connected output at its preferred mode, auto-positioned with an
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-- automatic scale. It is enough to get a usable screen on any machine.
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--
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-- Per-machine layout (resolution, position, scale, rotation, mirroring) is
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-- managed by scripts/monitor-manager, which overwrites this file. Don't hand-
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-- edit it for a specific setup -- run the manager instead.
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hl.monitor({
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output = "DP-1",
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mode = "1920x1080@60",
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position = "3816x0",
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scale = 0.75,
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transform = 1,
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})
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hl.monitor({
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output = "DP-3",
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mode = "1280x1024@76",
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position = "0x0",
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scale = 1.0,
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transform = 0,
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})
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hl.monitor({
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output = "HDMI-A-1",
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mode = "3840x2160@60",
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position = "1280x0",
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scale = 1.5,
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transform = 0,
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output = "", -- empty output = wildcard, matches every monitor
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mode = "preferred", -- use each monitor's preferred resolution/refresh
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position = "auto", -- let Hyprland place outputs side by side
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scale = "auto", -- pick a sensible scale per monitor
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})
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hl.config({
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@ -35,7 +35,11 @@ from typing import List, Optional
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# Constants
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# ---------------------------------------------------------------------------
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MONITORS_LUA = Path.home() / "Dotfiles/desktopenvs/hyprlua/hypr/usr/monitors.lua"
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# The live config Hyprland actually loads (hyprland.lua does `require("usr.monitors")`,
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# which resolves to ~/.config/hypr/usr/monitors.lua). Writing here means `hyprctl
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# reload` applies the layout immediately. The Dotfiles repo copy is the deploy
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# source and is intentionally NOT written by this tool.
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MONITORS_LUA = Path.home() / ".config/hypr/usr/monitors.lua"
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MOVE_STEP = 50
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MOVE_STEP_FINE = 10
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MIN_SCALE = 0.25
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@ -45,6 +49,7 @@ MIN_BOX_W = 14
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MIN_BOX_H = 4
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INFO_W = 32
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STATUS_ROWS = 2 # status + help rows at the bottom
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MAX_RESOLVE_ITERS = 8 # auto-resolve nudges before giving up
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TRANSFORM_LABEL = {
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0: "↕ 0°",
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@ -185,6 +190,36 @@ def apply_monitor(m: MonitorState) -> Optional[str]:
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return (r.stderr or r.stdout).strip()
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return None
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# ---------------------------------------------------------------------------
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# Overlap geometry
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# ---------------------------------------------------------------------------
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def _logical_rect(m: "MonitorState"):
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return (m.x, m.y, m.x + m.logical_width, m.y + m.logical_height)
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def _overlap_px(a, b):
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"""Return (ox, oy) — overlapping width/height of two (x0,y0,x1,y1) rects."""
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ox = max(0, min(a[2], b[2]) - max(a[0], b[0]))
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oy = max(0, min(a[3], b[3]) - max(a[1], b[1]))
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return ox, oy
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def find_overlaps(monitors: List["MonitorState"]):
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"""Return list of (name_a, name_b, ox, oy) for every overlapping pair.
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Mirrored outputs are excluded — they intentionally share their target's
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region and don't occupy independent layout space.
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"""
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active = [m for m in monitors if not m.mirror_of]
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out = []
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for i in range(len(active)):
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for j in range(i + 1, len(active)):
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ox, oy = _overlap_px(_logical_rect(active[i]), _logical_rect(active[j]))
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if ox > 0 and oy > 0:
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out.append((active[i].name, active[j].name, ox, oy))
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return out
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# ---------------------------------------------------------------------------
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# Save
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# ---------------------------------------------------------------------------
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@ -418,10 +453,7 @@ class App:
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elif ch == ord("m"):
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if mon.mirror_of:
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mon.mirror_of = ""
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err = apply_monitor(mon)
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mon.dirty = True
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self.dirty = True
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self.status_msg = err or f"Un-mirrored {mon.name}"
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self._apply_and_status(mon, f"Un-mirrored {mon.name}")
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elif len(self.monitors) < 2:
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self.status_msg = "Need 2+ monitors to mirror"
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else:
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@ -475,14 +507,122 @@ class App:
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# Actions
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# -----------------------------------------------------------------------
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def move_monitor(self, dx: int, dy: int):
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mon = self.monitors[self.selected_idx]
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mon.x = max(0, mon.x + dx)
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mon.y = max(0, mon.y + dy)
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def _live_overlap_warning(self) -> Optional[str]:
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"""Re-fetch live monitor positions and report any actual overlap.
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Hyprland re-snaps fractionally-scaled/rotated outputs at apply time, so
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the positions it ends up with can differ from what this TUI set. Only a
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check against the live state catches snap-induced collisions.
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"""
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try:
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ov = find_overlaps(fetch_monitors())
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except Exception:
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return None
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if not ov:
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return None
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a, b, ox, _ = ov[0]
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extra = f" (+{len(ov) - 1} more)" if len(ov) > 1 else ""
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return f"{a} overlaps {b} by {ox}px{extra}"
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def _auto_resolve(self, mon: MonitorState) -> bool:
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"""Nudge `mon` until its *live* rectangle no longer overlaps a neighbor.
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Hyprland may snap a fractionally-scaled/rotated output to a position
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that collides with its neighbor. We can't predict the snap, so we read
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the live layout, push `mon` by the minimal grid-aligned translation that
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would separate it from its worst overlapper, re-apply, and repeat. Only
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`mon` moves; other monitors are left where the user put them. Returns
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True if any adjustment was made.
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"""
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if mon.mirror_of:
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return False
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moved = False
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for _ in range(MAX_RESOLVE_ITERS):
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try:
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live = fetch_monitors()
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except Exception:
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break
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me = next((lm for lm in live if lm.name == mon.name), None)
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if me is None or me.mirror_of:
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break
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a = _logical_rect(me)
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worst = None # (overlap_area, neighbor_rect)
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for o in live:
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if o.name == mon.name or o.mirror_of:
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continue
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ox, oy = _overlap_px(a, _logical_rect(o))
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if ox > 0 and oy > 0 and (worst is None or ox * oy > worst[0]):
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worst = (ox * oy, _logical_rect(o))
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if worst is None:
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break # no overlap left — resolved
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b = worst[1]
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# Minimal separating translation of `mon` along either axis.
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axis, delta = min(
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(("x", b[2] - a[0]), ("x", b[0] - a[2]),
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("y", b[3] - a[1]), ("y", b[1] - a[3])),
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key=lambda c: abs(c[1]),
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)
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# Round magnitude up to the grid so the next snap keeps a margin.
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step = MOVE_STEP_FINE
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mag = ((abs(delta) + step - 1) // step) * step
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delta = mag if delta > 0 else -mag
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if axis == "x":
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mon.x = max(0, mon.x + delta)
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else:
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mon.y = max(0, mon.y + delta)
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if apply_monitor(mon):
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break
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moved = True
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return moved
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def _apply_and_status(self, mon: MonitorState, success_msg: str):
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"""Apply a monitor, mark dirty, auto-resolve snap overlap, set status."""
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err = apply_monitor(mon)
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mon.dirty = True
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self.dirty = True
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self.status_msg = err or f"Moved {mon.name} to {mon.x},{mon.y}"
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if err:
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self.status_msg = err
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return
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resolved = self._auto_resolve(mon)
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warn = self._live_overlap_warning()
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if warn:
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self.status_msg = f"{success_msg} ⚠ {warn}"
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elif resolved:
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self.status_msg = f"{success_msg} (auto-resolved → {mon.x},{mon.y})"
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else:
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self.status_msg = success_msg
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def _would_overlap(self, idx: int) -> Optional[str]:
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"""Name of the first monitor that monitor `idx` overlaps (TUI coords)."""
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mon = self.monitors[idx]
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if mon.mirror_of:
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return None
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a = _logical_rect(mon)
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for j, other in enumerate(self.monitors):
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if j == idx or other.mirror_of:
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continue
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ox, oy = _overlap_px(a, _logical_rect(other))
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if ox > 0 and oy > 0:
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return other.name
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return None
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def move_monitor(self, dx: int, dy: int):
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mon = self.monitors[self.selected_idx]
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# Snap to a round grid so positions stay multiples of MOVE_STEP_FINE.
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# The seed comes from hyprctl, which may report a snapped value (e.g.
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# a fractionally-scaled/rotated monitor), so raw addition would freeze
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# the last digit. Rounding normalizes any odd seed on the first move.
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base = MOVE_STEP_FINE
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old_x, old_y = mon.x, mon.y
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mon.x = max(0, round((mon.x + dx) / base) * base)
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mon.y = max(0, round((mon.y + dy) / base) * base)
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# Block moves that would drive this monitor into another (TUI coords).
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clash = self._would_overlap(self.selected_idx)
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if clash:
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mon.x, mon.y = old_x, old_y
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self.status_msg = f"Blocked: {mon.name} would overlap {clash}"
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return
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self._apply_and_status(mon, f"Moved {mon.name} to {mon.x},{mon.y}")
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def rotate_monitor(self, direction: int):
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mon = self.monitors[self.selected_idx]
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@ -490,10 +630,7 @@ class App:
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mon.transform = rotate_cw(mon.transform)
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else:
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mon.transform = rotate_ccw(mon.transform)
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err = apply_monitor(mon)
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mon.dirty = True
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self.dirty = True
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self.status_msg = err or f"Rotated {mon.name} → {TRANSFORM_LABEL[mon.transform]}"
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self._apply_and_status(mon, f"Rotated {mon.name} → {TRANSFORM_LABEL[mon.transform]}")
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def scale_monitor(self, direction: int):
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mon = self.monitors[self.selected_idx]
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@ -512,10 +649,7 @@ class App:
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return
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new_scale = candidates[-1]
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mon.scale = new_scale
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err = apply_monitor(mon)
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mon.dirty = True
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self.dirty = True
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self.status_msg = err or f"{mon.name} scale → {new_scale}x"
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self._apply_and_status(mon, f"{mon.name} scale → {new_scale}x")
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def cycle_mode(self, delta: int):
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mon = self.monitors[self.selected_idx]
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@ -528,19 +662,13 @@ class App:
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mon.width = int(mo.group(1))
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mon.height = int(mo.group(2))
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mon.refresh_rate = float(mo.group(3))
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err = apply_monitor(mon)
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mon.dirty = True
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self.dirty = True
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self.status_msg = err or f"{mon.name} → {mon.mode_str}"
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self._apply_and_status(mon, f"{mon.name} → {mon.mode_str}")
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def set_mirror(self, src_idx: int, tgt_idx: int):
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src = self.monitors[src_idx]
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tgt = self.monitors[tgt_idx]
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src.mirror_of = tgt.name
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err = apply_monitor(src)
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src.dirty = True
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self.dirty = True
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self.status_msg = err or f"Mirroring {src.name} → {tgt.name}"
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self._apply_and_status(src, f"Mirroring {src.name} → {tgt.name}")
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def _save(self):
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try:
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@ -548,8 +676,13 @@ class App:
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for m in self.monitors:
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m.dirty = False
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self.dirty = False
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self.status_msg = f"Saved to {MONITORS_LUA.name}"
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subprocess.run(["hyprctl", "reload"], capture_output=True, check=False)
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# Reload re-applies the saved config; re-check the live layout so a
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# snap-induced collision is surfaced rather than silently saved.
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warn = self._live_overlap_warning()
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self.status_msg = (
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f"Saved — ⚠ {warn}" if warn else f"Saved to {MONITORS_LUA.name}"
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)
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except Exception as e:
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self.status_msg = f"Save failed: {e}"
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@ -5,17 +5,19 @@ source "$(dirname "${BASH_SOURCE[0]}")/../../lib/logging.sh"
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log "Installing ydotool (pacman)..."
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sudo pacman -S --noconfirm --needed ydotool
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log "Installing OpenDeck (Flatpak)..."
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ensure_flatpak
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flatpak install -y flathub com.mairtech.OpenDeck
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log "Installing OpenDeck (AUR)..."
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# opendeck is not in the official Arch repos; install the native package from
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# the AUR instead of Flatpak so it runs as a plain `opendeck` binary.
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# --answerdiff None / --answerclean All suppress interactive PKGBUILD/clean prompts.
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yay -S --answerdiff None --answerclean All --noconfirm opendeck
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log "Wiring ydotoold + OpenDeck into Hyprland autostart..."
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AUTOSTART="$HOME/Dotfiles/desktopenvs/hyprlua/hypr/usr/autostart.lua"
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if grep -q "ydotoold\|OpenDeck\|com.mairtech.OpenDeck" "$AUTOSTART"; then
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if grep -q "ydotoold\|opendeck\|OpenDeck" "$AUTOSTART"; then
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skip "ydotoold/OpenDeck already present in autostart.lua — skipping."
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else
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# Insert before the closing end) so entries appear inside the on("hyprland.start") block
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sed -i 's|^end)$| hl.exec_cmd("ydotoold")\n hl.exec_cmd("flatpak run com.mairtech.OpenDeck")\nend)|' "$AUTOSTART"
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sed -i 's|^end)$| hl.exec_cmd("ydotoold")\n hl.exec_cmd("opendeck")\nend)|' "$AUTOSTART"
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log "Autostart entries added."
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fi
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Loading…
Reference in New Issue