77 Commits

Author SHA1 Message Date
6e3e88919e Revert "fix glyph-overhang artifacts in partial row repaint"
This reverts commit 57103bb98b.
2026-05-31 21:50:17 +02:00
57103bb98b fix glyph-overhang artifacts in partial row repaint
repaintColumns cleared and redrew only [start,end], but a neighbouring cell's
glyph can overhang into that span. The clearRect erased the overhang and the
neighbour was never redrawn, leaving black notches through the line 1-2 cells
before the cursor that survived until a full rerender.

Redraw text for a couple of extra cells on each side, clipped to the cleared
span, so overhang from just-outside cells is restored without touching their
own cell areas. Keeps the per-column repaint efficiency (vs the full-row
repaint debug toggle, which fixed the bars but repainted every dirty cell).

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-05-31 21:48:34 +02:00
cb95a7188d update jlibghostty 2026-05-31 21:39:18 +02:00
Gregor Lohaus
5ca192b7be add full-row-repaint debug toggle
-Djprototerm.fullRowRepaint=true (or JPROTOTERM_FULL_ROW_REPAINT=1) bypasses the
per-column repaint in renderChanged and repaints the whole row, to bisect the
stale black-bar artifact that appears near the cursor and survives until a full
rerender.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-05-31 21:25:13 +02:00
Gregor Lohaus
e99a6ee33e split snapshot profiler bucket into update vs marshal
The snapshot bucket lumped ghostty's native dirty-state update together with
the Java-side cell marshaling. Time them separately to see which half of the
~7ms/frame snapshot cost (now the dominant frame cost after the detectShift
hoist) is the real target.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-05-31 21:18:07 +02:00
Gregor Lohaus
4923ea5527 hoist row hash out of detectShift delta scan
rowFingerprint(row) is invariant across the delta loop but was recomputed for
every candidate delta, making shift detection O(rows^2 x cols) on large changes
(full-screen scroll). Precompute each changed row's hash once, dropping it to
O(rows x cols). Profiling showed fingerprint hashing at ~74% of frame time under
heavy scroll, dominated by this loop.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-05-31 21:09:54 +02:00
Gregor Lohaus
1f7394d75a add opt-in render profiler instrumentation
Gated behind -Djprototerm.profile=true (or JPROTOTERM_PROFILE=1), accumulates
per-frame nanos into snapshot/fingerprint/draw/frame-total buckets and dumps
to stderr every N renders. Splits the three suspected render costs: native
snapshot marshaling, fingerprint hashing, and canvas draw recording.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-05-31 21:04:00 +02:00
Gregor Lohaus
50641d0a6a per-row cell-run repaint 2026-05-31 20:12:43 +02:00
Gregor Lohaus
51f64e7ca8 cache hidden panes 2026-05-31 19:56:09 +02:00
Gregor Lohaus
528afafcda no next floating pane keyboard shortcut 2026-05-31 19:52:24 +02:00
Gregor Lohaus
093a09da39 frame classifiaction not needed anymore 2026-05-31 19:46:55 +02:00
Gregor Lohaus
59ab33bc01 dont rerender full on every layout frame 2026-05-31 19:45:38 +02:00
Gregor Lohaus
d8447d9e29 port feasable performance improvements 2026-05-31 19:38:06 +02:00
Gregor Lohaus
dba6474491 apply race condition fix 2026-05-31 19:30:36 +02:00
Gregor Lohaus
743f312921 move unchanged rows 2026-05-31 18:55:53 +02:00
Gregor Lohaus
3054b3ec77 cleanup 2026-05-31 18:51:16 +02:00
Gregor Lohaus
2bcaf951df Render terminal rows as JavaFX nodes 2026-05-31 18:40:33 +02:00
Gregor Lohaus
beba14c3ea scene graph 2026-05-31 18:27:52 +02:00
Gregor Lohaus
f5562baf5f Merge branch 'refactor' 2026-05-31 16:27:21 +02:00
Gregor Lohaus
3017b99f87 recover pane 2026-05-31 16:24:43 +02:00
Gregor Lohaus
0958c93b4f recover tab 2026-05-31 16:23:36 +02:00
Gregor Lohaus
9c98d87783 recover abstract terminal renderer 2026-05-31 16:21:38 +02:00
Gregor Lohaus
76c731578f recover terminal metrics from helix buffer 2026-05-31 16:20:43 +02:00
Gregor Lohaus
95619f5b4c fuck did bad git reset hard to main, recovering from helix buffer 2026-05-31 16:19:37 +02:00
Gregor Lohaus
174cfc00d3 what is happening ?? 2026-05-31 16:15:37 +02:00
Gregor Lohaus
29e84c9830 remove unused old classes 2026-05-31 16:13:40 +02:00
Gregor Lohaus
a7baa08e68 add bin to gitignore 2026-05-31 15:45:55 +02:00
Gregor Lohaus
76f539d34a fix build error 2026-05-30 01:27:10 +02:00
Gregor Lohaus
ba884cd0a2 probably wrong fix 2026-05-30 01:23:16 +02:00
Gregor Lohaus
7dbbf89b27 non fix of clearing issue 2026-05-30 01:13:53 +02:00
Gregor Lohaus
e2850f067e readme update 2026-05-29 22:10:36 +02:00
Gregor Lohaus
022cf22463 tabbar, background coloring 2026-05-29 22:08:05 +02:00
Gregor Lohaus
250b182060 tabs 2026-05-29 21:41:25 +02:00
Gregor Lohaus
ebba6cc44f main pane splitting 2026-05-29 21:27:17 +02:00
Gregor Lohaus
4c3449129c no image caching, no transparency for performance 2026-05-29 21:18:16 +02:00
Gregor Lohaus
40d6287867 inverse bg 2026-05-29 20:37:16 +02:00
Gregor Lohaus
ff21bf3544 incremental render 2026-05-29 19:50:09 +02:00
Gregor Lohaus
c03d9245d0 remove .gradle 2026-05-29 13:01:11 +02:00
Gregor Lohaus
0915c649bd ignore .gradle 2026-05-29 13:00:19 +02:00
Gregor Lohaus
4a06a89400 update readme 2026-05-29 12:58:23 +02:00
Gregor Lohaus
4de2d31e91 clear env, dont inherit nix wrapper env 2026-05-29 12:51:45 +02:00
Gregor Lohaus
b98a18b49f f native image, just build a jar 2026-05-29 12:33:32 +02:00
Gregor Lohaus
08ad025f76 get rid of pty4j 2026-05-29 11:06:46 +02:00
Gregor Lohaus
c9fb8b5f0a pty4j meta 2026-05-29 10:43:04 +02:00
Gregor Lohaus
3b26a8d12c pty4j meta 2026-05-29 10:40:03 +02:00
Gregor Lohaus
f545375957 remove metadata here 2026-05-29 10:37:26 +02:00
Gregor Lohaus
224e8d0273 vm options 2026-05-29 10:32:35 +02:00
Gregor Lohaus
422b672dec metadata 2026-05-29 09:51:13 +02:00
Gregor Lohaus
2c7f71064c metadata 2026-05-29 09:48:28 +02:00
Gregor Lohaus
829eb66bbc gradle update script 2026-05-29 09:30:45 +02:00
Gregor Lohaus
8d36fbae35 fix jlibghostty metadata 2026-05-29 09:18:22 +02:00
Gregor Lohaus
f9454b28db super duper hacky shit 2026-05-29 00:05:09 +02:00
Gregor Lohaus
f75b8c29e0 super duper hacky shit 2026-05-28 23:52:23 +02:00
Gregor Lohaus
2816d99ce4 super duper hacky shit 2026-05-28 23:40:49 +02:00
Gregor Lohaus
a1e0c2b2d4 super duper hacky shit 2026-05-28 23:33:56 +02:00
Gregor Lohaus
3612de46bd super duper hacky shit 2026-05-28 23:29:09 +02:00
Gregor Lohaus
d588eb75a6 super duper hacky shit 2026-05-28 23:25:28 +02:00
Gregor Lohaus
7b8d30a058 super duper hacky shit 2026-05-28 23:20:18 +02:00
Gregor Lohaus
96a752566b super duper hacky shit 2026-05-28 22:57:08 +02:00
Gregor Lohaus
6ebf710031 super duper hacky shit 2026-05-28 22:53:41 +02:00
Gregor Lohaus
3f102a9ede remove gl from nix to check how linking fails 2026-05-28 22:49:59 +02:00
Gregor Lohaus
57f97e4119 remove gl from nix to check how linking fails 2026-05-28 22:46:07 +02:00
Gregor Lohaus
163c7b7279 those good damn graphics libraries :(((( 2026-05-28 22:37:42 +02:00
Gregor Lohaus
8669de2d32 those good damn graphics libraries :(((( 2026-05-28 22:31:47 +02:00
Gregor Lohaus
a1717438e4 gradle settings 2026-05-28 22:18:59 +02:00
Gregor Lohaus
d14fa5c1cb permission hack 2026-05-28 22:11:01 +02:00
Gregor Lohaus
6e1aff6200 perl dep 2026-05-28 22:10:23 +02:00
Gregor Lohaus
6e4ddbf9df patch with perl 2026-05-28 22:09:45 +02:00
Gregor Lohaus
ee127fd006 patch gluon 2026-05-28 22:08:58 +02:00
Gregor Lohaus
34ae351431 impure hack 2026-05-28 22:03:45 +02:00
Gregor Lohaus
191ec6d0e0 add gluon substrate as flake input 2026-05-28 21:57:10 +02:00
Gregor Lohaus
19f20a4039 add gluon substrate as flake input 2026-05-28 21:55:40 +02:00
Gregor Lohaus
0698016a65 add gluon substrate as flake input 2026-05-28 21:54:18 +02:00
Gregor Lohaus
0a84ec720a fix gradle deps, gradle task 2026-05-28 21:48:10 +02:00
Gregor Lohaus
e3405fee48 deps.json for gradle from nix 2026-05-28 21:42:26 +02:00
Gregor Lohaus
380996fe50 gluon java 2026-05-28 21:37:41 +02:00
Gregor Lohaus
c7f734bf64 flake 2026-05-28 21:33:37 +02:00
50 changed files with 3114 additions and 1225 deletions

1
.codexsession Normal file
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@@ -0,0 +1 @@
019e6999-b7c8-7591-a8aa-ea51b89a7f7e

2
.gitignore vendored
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@@ -12,3 +12,5 @@ devenv.local.yaml
.pre-commit-config.yaml
build
build
.gradle
bin

Binary file not shown.

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@@ -1,2 +0,0 @@
#Wed May 27 23:44:22 CEST 2026
gradle.version=9.4.1

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3
.ignore Normal file
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@@ -0,0 +1,3 @@
.gradle
result
bin

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@@ -1,7 +1,7 @@
arguments=--init-script /home/anon/.eclipse/1927926929_linux_gtk_x86_64/configuration/org.eclipse.osgi/58/0/.cp/gradle/init/init.gradle
arguments=--init-script /home/anon/Src/eclipse.jdt.ls/org.eclipse.jdt.ls.product/target/repository/configuration/org.eclipse.osgi/58/0/.cp/gradle/init/init.gradle
auto.sync=false
build.scans.enabled=false
connection.gradle.distribution=GRADLE_DISTRIBUTION(VERSION(8.9))
connection.gradle.distribution=GRADLE_DISTRIBUTION(LOCAL_INSTALLATION(/home/anon/.sdkman/candidates/gradle/current))
connection.project.dir=
eclipse.preferences.version=1
gradle.user.home=

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@@ -1,24 +1,64 @@
# jprototerm
JavaFX canvas terminal prototype using `jlibghostty` for terminal emulation, Nix for the build environment, and GluonFX/GraalVM Native Image for the Linux binary.
JavaFX canvas terminal prototype using `jlibghostty` for terminal emulation and Nix for
the build environment. It builds a plain JavaFX application (JDK 25, JavaFX 25 via Gradle)
packaged as a Nix derivation — no GraalVM/GluonFX native image. It supports tiled and
floating panes and tabs.
> [!CAUTION]
> `nix profile add` has only been tested on **Debian with the proprietary NVIDIA driver**.
> The runtime GL shim hardcodes Debian's `/lib/x86_64-linux-gnu` driver paths and selects
> the NVIDIA GLX/EGL vendor, so it likely won't work yet on other distros, Wayland-only
> setups, or Mesa/AMD/Intel GPUs. I'm happy to accept pull requests that broaden host
> support.
## Build
```sh
nix build
./result/bin/jprototerm
```
The package build uses GluonFX through Gradle so JavaFX native-image metadata is generated by the toolchain that is designed for it. In a strict pure Nix sandbox, Gradle dependencies must be vendored first with `gradle2nix` or a checked-in Maven/Gradle cache.
Install it into a profile (see the caution above on host support):
```sh
nix profile add .
jprototerm
```
Or install straight from the remote — note the `git+https://` scheme (a bare `https://`
URL is treated as a tarball, not a git repo):
```sh
nix profile add git+https://gitea.gregorlohaus.com/gregor/jprototerm
```
Add `?ref=<branch-or-tag>` to pin a revision. The target machine needs Nix with the
`nix-command` and `flakes` features enabled and network access — the build fetches the
`jlibghostty`/`ghostty` flake inputs plus the JDK and Gradle from the binary caches.
The flake bundles everything the app needs — the JDK 25 runtime, the Maven JavaFX modules
and their native libraries, and the gtk/glib/freetype/X11 libraries they load — **except**
the system OpenGL/graphics drivers. `libGL` is supplied by the host at runtime through a GL
shim in the launcher wrapper, so the same closure runs against NixOS, Mesa, or vendor
(e.g. NVIDIA) GPU drivers.
Gradle dependencies are vendored in `deps.json` for the pure Nix sandbox. Regenerate it
after changing dependencies in `build.gradle` (the update script writes `deps.json` in the
current directory):
```sh
$(nix build .#gradleDepsUpdateScript --no-link --print-out-paths)
```
For development:
```sh
nix develop
gradle -PjlibghosttyMavenRepo="$JLIBGHOSTTY_MAVEN_REPO" run
gradle -PjlibghosttyMavenRepo="$JLIBGHOSTTY_MAVEN_REPO" -Pgluonfx.mainClassName=com.gregor.jprototerm.Main nativeExecutable
gradle run
```
The Gradle project is the source of truth for native JavaFX builds.
The Gradle project is the source of truth for the JavaFX build.
## Config
@@ -56,15 +96,20 @@ enabled = true
[scrollback]
editor_command = "vi {file}"
[env.override]
ZELLIJ_SESSION_NAME = ""
[keybindings]
navigate_left = "ALT+H"
navigate_down = "ALT+J"
navigate_up = "ALT+K"
navigate_right = "ALT+L"
toggle_floating = "ALT+F"
new_floating = "ALT+SHIFT+F"
next_floating = "ALT+F12"
new_pane = "ALT+N"
close_pane = "ALT+X"
new_tab = "ALT+A"
previous_tab = "ALT+SHIFT+H"
next_tab = "ALT+SHIFT+L"
open_font_selector = "ALT+T"
open_scrollback = "ALT+S"
```
@@ -72,11 +117,18 @@ open_scrollback = "ALT+S"
## Defaults
- `Alt+h/j/k/l`: navigate panes
- `Alt+n`: new pane — a floating pane when floating panes are shown, otherwise a new tiled
pane (tiled panes are split equally across the width)
- `Alt+f`: show or hide all floating panes
- `Alt+Shift+f`: create a new floating pane
- `Alt+F12`: cycle floating panes
- `Alt+x`: close the active floating pane
- `Alt+x`: close the active pane; closing a tab's last pane closes the tab, and closing the
last pane of the last tab quits
- `Alt+a`: new tab
- `Alt+Shift+h` / `Alt+Shift+l`: previous / next tab
- `Alt+t`: open the font selector
- `Alt+s`: open the active pane scrollback in `$EDITOR`
- Font default: `JetBrainsMono Nerd Font`
- Kitty graphics protocol parsing is enabled by default
Each tab has its own stack of tiled and floating panes; only the active tab is rendered. A
thin tab bar appears at the top when more than one tab is open. Closing the last tiled pane
while floating panes exist promotes the most recently active floating pane to a tiled pane.

2
TODOS.md Normal file
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@@ -0,0 +1,2 @@
jlibghostty - why downcall metadata not propagated ?
jlibghostty - how need to change flake so consuming flakes dont have to depend on same ghostty flake ?

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@@ -14,11 +14,10 @@ repositories {
dependencies {
implementation 'io.github.wasabithumb:jtoml:1.5.2'
implementation 'dev.jlibghostty:jlibghostty:0.1.0-SNAPSHOT'
implementation 'org.jetbrains.pty4j:pty4j:0.13.11'
}
javafx {
version = '22'
version = '25'
modules = [ 'javafx.controls', 'javafx.fxml' ]
}

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@@ -16,14 +16,16 @@ enabled = true
[scrollback]
editor_command = "vi {file}"
[env.override]
ZELLIJ_SESSION_NAME = ""
[keybindings]
navigate_left = "ALT+H"
navigate_down = "ALT+J"
navigate_up = "ALT+K"
navigate_right = "ALT+L"
toggle_floating = "ALT+F"
new_floating = "ALT+SHIFT+F"
next_floating = "ALT+F12"
new_pane = "ALT+N"
close_pane = "ALT+X"
open_font_selector = "ALT+T"
open_scrollback = "ALT+S"

76
deps.json Normal file
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@@ -0,0 +1,76 @@
{
"!comment": "This is a nixpkgs Gradle dependency lockfile. For more details, refer to the Gradle section in the nixpkgs manual.",
"!version": 1,
"https://plugins.gradle.org/m2": {
"com/google/code/findbugs#jsr305/3.0.2": {
"jar": "sha256-dmrSoHg/JoeWLIrXTO7MOKKLn3Ki0IXuQ4t4E+ko0Mc=",
"pom": "sha256-GYidvfGyVLJgGl7mRbgUepdGRIgil2hMeYr+XWPXjf4="
},
"com/google/gradle#osdetector-gradle-plugin/1.7.3": {
"jar": "sha256-a0aS+ROiGx+2Axae54uo8+SrKvnXYq+cqIt5EmwcCtE=",
"pom": "sha256-hGDJUBJ8o1mHZhYeOLT/jWO01p+4MQoW4As1E1ABDBE="
},
"kr/motd/maven#os-maven-plugin/1.7.1": {
"jar": "sha256-9Hru+Ggh5SsrGHWJeL0EXwPXIikuMudHCCEixiKJUuA=",
"pom": "sha256-S3WABEIrljPdMY8p54Tx0YC9ilkgzVCvGTCGH21qVHY="
},
"org/openjfx#javafx-plugin/0.1.0": {
"jar": "sha256-Xq7sB5m0QGRrDKTP2iGaMttr4rpXktAyoNpKOlw4j6s=",
"module": "sha256-rf+3RA0kntF8BJOD1nBp+UU7F3gncMAFtoKkNBbYNmE=",
"pom": "sha256-NMjfVSfrWjXl8AmjzeH3oInEzkoOclgC8uy+UDu9PLY="
},
"org/openjfx/javafxplugin#org.openjfx.javafxplugin.gradle.plugin/0.1.0": {
"pom": "sha256-1tASf/Q2PQAXPDV6mByec+/wPDCl0Ohq2CtgVPrvqEE="
},
"org/sonatype/oss#oss-parent/7": {
"pom": "sha256-tR+IZ8kranIkmVV/w6H96ne9+e9XRyL+kM5DailVlFQ="
},
"org/sonatype/oss#oss-parent/9": {
"pom": "sha256-+0AmX5glSCEv+C42LllzKyGH7G8NgBgohcFO8fmCgno="
}
},
"https://repo.maven.apache.org/maven2": {
"io/github/wasabithumb#jtoml-api/1.5.2": {
"jar": "sha256-3MvElpV+cmdqWO+SAHVKCWDYs+KMUXwIYYk7ax85yWo=",
"module": "sha256-RUZYGHsxZfuGBi5TogMHhWcbRcCUBTUAPN8FZpPszlE=",
"pom": "sha256-VOaIPO8w4z9saTR8smoLTSoih2PUFOBhBio9eqpoqo8="
},
"io/github/wasabithumb#jtoml-internals/1.5.2": {
"jar": "sha256-k4z/Uxzugk2hXUIdeeNLTz//NeynHzPfHCDXzDHP1Ys=",
"module": "sha256-OsnYjM8Tylw/MNdw0/HRUWvXgrQHdnT09O5vYlaZENU=",
"pom": "sha256-qXtmwHMJBNIWgrewEoUq1FBZjs2eRuRO1wMLndgsndg="
},
"io/github/wasabithumb#jtoml/1.5.2": {
"jar": "sha256-zDtf6VVGSrvC8StneL9fKq9LyaJSfiDb86w52s+bRYs=",
"module": "sha256-TRoE8nqf0ULuQ4J1/u2+voUNf421lTOJ1SajE07F8/Y=",
"pom": "sha256-sG4IDPD+ItRgyQcfDiLqdd+wCd40JHcSLocA+jWX1p0="
},
"org/openjfx#javafx-base/25": {
"pom": "sha256-XFYpcqK673qkB7J9Wc4XOl6lCht7dRgEO3/I92/v5Tc="
},
"org/openjfx#javafx-base/25/linux": {
"jar": "sha256-MkJZRruLjbBxfPovsuAOIc1InzW5ZitvrKGLYVpKlmk="
},
"org/openjfx#javafx-controls/25": {
"pom": "sha256-74cad6gX7nuDrKWKKe6yv5h2AvRseKHRXEYAgzpq1uM="
},
"org/openjfx#javafx-controls/25/linux": {
"jar": "sha256-NzVeTZHGfoj9mBX2AeasW1Xd3p9em5P8j0qgRXfmkdM="
},
"org/openjfx#javafx-fxml/25": {
"pom": "sha256-RopsFNQeVHnwNK4v4FPwyJEpfqJoo8dtf/047zyrsio="
},
"org/openjfx#javafx-fxml/25/linux": {
"jar": "sha256-OUrjL2TBIsFPvRDvSb3efbsFVpt6uOf58XDIGSS5Wis="
},
"org/openjfx#javafx-graphics/25": {
"pom": "sha256-zB2jY7Id7uvymRWBk9qmIB+USw+Setv13DhL62qDOfQ="
},
"org/openjfx#javafx-graphics/25/linux": {
"jar": "sha256-PlGLwX7lWFWaKsWKX3/UUmFRCNnVCI9lsTvuk5nDcis="
},
"org/openjfx#javafx/25": {
"pom": "sha256-55IzCPyt1/LGiwcgQfR9jnNVIj2EZVnutceA3EuivxM="
}
}
}

226
flake.lock generated Normal file
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@@ -0,0 +1,226 @@
{
"nodes": {
"flake-compat": {
"flake": false,
"locked": {
"lastModified": 1761588595,
"narHash": "sha256-XKUZz9zewJNUj46b4AJdiRZJAvSZ0Dqj2BNfXvFlJC4=",
"owner": "edolstra",
"repo": "flake-compat",
"rev": "f387cd2afec9419c8ee37694406ca490c3f34ee5",
"type": "github"
},
"original": {
"owner": "edolstra",
"repo": "flake-compat",
"type": "github"
}
},
"ghostty": {
"inputs": {
"flake-compat": "flake-compat",
"home-manager": "home-manager",
"nixpkgs": [
"jlibghostty",
"nixpkgs"
],
"systems": "systems",
"zig": "zig",
"zon2nix": "zon2nix"
},
"locked": {
"lastModified": 1779812402,
"narHash": "sha256-gozJEyJHbaAyrbzODKeWJhxpUrGK6m4DIPDogfjz2BU=",
"owner": "ghostty-org",
"repo": "ghostty",
"rev": "2e5ad917eb4e325a3dbb161c3f41208a8cd35e44",
"type": "github"
},
"original": {
"owner": "ghostty-org",
"repo": "ghostty",
"type": "github"
}
},
"home-manager": {
"inputs": {
"nixpkgs": [
"jlibghostty",
"ghostty",
"nixpkgs"
]
},
"locked": {
"lastModified": 1770586272,
"narHash": "sha256-Ucci8mu8QfxwzyfER2DQDbvW9t1BnTUJhBmY7ybralo=",
"owner": "nix-community",
"repo": "home-manager",
"rev": "b1f916ba052341edc1f80d4b2399f1092a4873ca",
"type": "github"
},
"original": {
"owner": "nix-community",
"repo": "home-manager",
"type": "github"
}
},
"jlibghostty": {
"inputs": {
"ghostty": "ghostty",
"nixpkgs": "nixpkgs"
},
"locked": {
"lastModified": 1780256181,
"narHash": "sha256-/saXdnYMbAMfP7u6USSqtNkBIgqZhU+CPr3F8tUQhHU=",
"ref": "refs/heads/main",
"rev": "db5ee5d20daf8855de3a3b2fa9349eced70946f0",
"revCount": 21,
"type": "git",
"url": "https://gitea.gregorlohaus.com/gregor/jlibghostty.git"
},
"original": {
"type": "git",
"url": "https://gitea.gregorlohaus.com/gregor/jlibghostty.git"
}
},
"nixpkgs": {
"locked": {
"lastModified": 1779560665,
"narHash": "sha256-tpyBcxPpcQb8ukyNF7DoCwfSY3VPsxHoYwj00Cayv5o=",
"owner": "NixOS",
"repo": "nixpkgs",
"rev": "64c08a7ca051951c8eae34e3e3cb1e202fe36786",
"type": "github"
},
"original": {
"owner": "NixOS",
"ref": "nixos-unstable",
"repo": "nixpkgs",
"type": "github"
}
},
"nixpkgs_2": {
"locked": {
"lastModified": 1779560665,
"narHash": "sha256-tpyBcxPpcQb8ukyNF7DoCwfSY3VPsxHoYwj00Cayv5o=",
"owner": "NixOS",
"repo": "nixpkgs",
"rev": "64c08a7ca051951c8eae34e3e3cb1e202fe36786",
"type": "github"
},
"original": {
"owner": "NixOS",
"ref": "nixos-unstable",
"repo": "nixpkgs",
"type": "github"
}
},
"root": {
"inputs": {
"ghostty": [
"jlibghostty",
"ghostty"
],
"jlibghostty": "jlibghostty",
"nixpkgs": "nixpkgs_2"
}
},
"systems": {
"flake": false,
"locked": {
"lastModified": 1681028828,
"narHash": "sha256-Vy1rq5AaRuLzOxct8nz4T6wlgyUR7zLU309k9mBC768=",
"owner": "nix-systems",
"repo": "default",
"rev": "da67096a3b9bf56a91d16901293e51ba5b49a27e",
"type": "github"
},
"original": {
"owner": "nix-systems",
"repo": "default",
"type": "github"
}
},
"zig": {
"inputs": {
"flake-compat": [
"jlibghostty",
"ghostty",
"flake-compat"
],
"nixpkgs": [
"jlibghostty",
"ghostty",
"nixpkgs"
],
"systems": [
"jlibghostty",
"ghostty",
"systems"
]
},
"locked": {
"lastModified": 1776789209,
"narHash": "sha256-G6B7Q4TXn7MZ1mB+f9rymjsYF5PLWoSvmbxijb/99bw=",
"owner": "mitchellh",
"repo": "zig-overlay",
"rev": "14fe971844e841297ddd2ce9783d6892b467af39",
"type": "github"
},
"original": {
"owner": "mitchellh",
"repo": "zig-overlay",
"type": "github"
}
},
"zig_2": {
"inputs": {
"nixpkgs": [
"jlibghostty",
"ghostty",
"zon2nix",
"nixpkgs"
]
},
"locked": {
"lastModified": 1777234348,
"narHash": "sha256-fKw44a4qbUuI5eTG8k0gPbqMV5TOrjYF35PBzsYgd2U=",
"ref": "refs/heads/main",
"rev": "2c781c0609ecda600ab98f98cca417bbd981bd53",
"revCount": 1677,
"type": "git",
"url": "https://codeberg.org/jcollie/zig-overlay.git"
},
"original": {
"type": "git",
"url": "https://codeberg.org/jcollie/zig-overlay.git"
}
},
"zon2nix": {
"inputs": {
"nixpkgs": [
"jlibghostty",
"ghostty",
"nixpkgs"
],
"zig": "zig_2"
},
"locked": {
"lastModified": 1777314365,
"narHash": "sha256-eLxQaD0wc96Neqkln8wHS0rNq/chPODifFkhwrwilEU=",
"owner": "jcollie",
"repo": "zon2nix",
"rev": "a5a1d412ad1ab6305511997bbc92b3a9dd6cb784",
"type": "github"
},
"original": {
"owner": "jcollie",
"ref": "main",
"repo": "zon2nix",
"type": "github"
}
}
},
"root": "root",
"version": 7
}

150
flake.nix Normal file
View File

@@ -0,0 +1,150 @@
{
description = "jprototerm";
inputs = {
nixpkgs.url = "github:NixOS/nixpkgs/nixos-unstable";
jlibghostty.url = "git+https://gitea.gregorlohaus.com/gregor/jlibghostty.git";
ghostty.follows = "jlibghostty/ghostty";
};
outputs = { self, nixpkgs, jlibghostty, ghostty }:
let
supportedSystems = [ "x86_64-linux" ];
forAllSystems = nixpkgs.lib.genAttrs supportedSystems;
# Everything the JavaFX natives (and jlibghostty) dlopen at runtime, EXCEPT the
# system OpenGL/graphics drivers. libGL is intentionally left out: it is supplied
# by the host at runtime via the GL shim in the wrapper below, so the same closure
# works on NixOS and on a plain Debian box with vendor GPU drivers installed.
runtimeLibsFor = pkgs: ghosttyVt: [
pkgs.glib
pkgs.gtk3
pkgs.pango
pkgs.cairo
pkgs.gdk-pixbuf
pkgs.harfbuzz
pkgs.freetype
pkgs.fontconfig.lib
pkgs.libx11
pkgs.libxext
pkgs.libxrender
pkgs.libxtst
pkgs.libxi
pkgs.libxcursor
pkgs.libxrandr
pkgs.libxinerama
pkgs.libxcb
pkgs.libxxf86vm
pkgs.zlib
ghosttyVt
];
in {
packages = forAllSystems (system:
let
pkgs = import nixpkgs { inherit system; };
jlib = jlibghostty.packages.${system}.jlibghostty;
ghosttyVt = ghostty.packages.${system}.libghostty-vt;
runtimeLibs = runtimeLibsFor pkgs ghosttyVt;
jprototerm = pkgs.stdenv.mkDerivation (finalAttrs: {
pname = "jprototerm";
version = "0.1.0";
src = ./.;
nativeBuildInputs = [
pkgs.jdk25
pkgs.gradle_9
pkgs.makeWrapper
];
buildInputs = runtimeLibs;
mitmCache = pkgs.gradle_9.fetchDeps {
pkg = finalAttrs.finalPackage;
data = ./deps.json;
useBwrap = false;
};
# Builds build/install/jprototerm/{bin,lib} with every runtime jar, including
# the maven javafx-*-linux jars that carry the platform natives.
gradleBuildTask = "installDist";
gradleFlags = [
"--no-build-cache"
"--stacktrace"
"-Dorg.gradle.java.home=${pkgs.jdk25}"
];
JAVA_HOME = "${pkgs.jdk25}";
JLIBGHOSTTY_MAVEN_REPO = "${jlib}/maven";
preBuild = ''
export HOME="$TMPDIR/home"
export GRADLE_OPTS="-Duser.home=$HOME ''${GRADLE_OPTS:-}"
'';
preGradleUpdate = ''
export HOME="$TMPDIR/home"
'';
installPhase = ''
runHook preInstall
mkdir -p "$out/share/jprototerm"
cp -a build/install/jprototerm/lib "$out/share/jprototerm/lib"
# JavaFX is a set of proper modular jars: put them on the module path and
# keep the application + plain dependency jars on the classpath, so the two
# worlds do not collide.
mkdir -p "$out/share/jprototerm/javafx"
mv "$out/share/jprototerm/lib"/javafx-*.jar "$out/share/jprototerm/javafx/"
# Build an explicit colon-separated classpath. A "lib/*" glob would be
# expanded by the wrapper's shell before java sees it, breaking -cp.
classpath=""
for jar in "$out"/share/jprototerm/lib/*.jar; do
classpath="$classpath''${classpath:+:}$jar"
done
makeWrapper "${pkgs.jdk25}/bin/java" "$out/bin/jprototerm" \
--run 'export JPROTOTERM_HOST_LD_LIBRARY_PATH="''${LD_LIBRARY_PATH:-}"' \
--add-flags "--enable-native-access=ALL-UNNAMED,javafx.graphics" \
--add-flags "--module-path $out/share/jprototerm/javafx" \
--add-flags "--add-modules javafx.controls,javafx.fxml" \
--add-flags "-cp $classpath" \
--add-flags "com.gregor.jprototerm.Main" \
--prefix LD_LIBRARY_PATH : "${pkgs.lib.makeLibraryPath runtimeLibs}" \
--run 'glShimDir="''${XDG_RUNTIME_DIR:-/tmp}/jprototerm-gl"; mkdir -p "$glShimDir"; for lib in /lib/x86_64-linux-gnu/libGL.so.1 /lib/x86_64-linux-gnu/libGLX.so.0 /lib/x86_64-linux-gnu/libGLdispatch.so.0 /usr/lib/x86_64-linux-gnu/libGLX_nvidia.so* /usr/lib/x86_64-linux-gnu/libEGL_nvidia.so* /usr/lib/x86_64-linux-gnu/libnvidia*.so* /usr/lib/x86_64-linux-gnu/nvidia/current/lib*.so*; do [ -e "$lib" ] && ln -sfn "$lib" "$glShimDir/$(basename "$lib")"; done; export LD_LIBRARY_PATH="$glShimDir''${LD_LIBRARY_PATH:+:$LD_LIBRARY_PATH}"; export __GLX_VENDOR_LIBRARY_NAME="''${__GLX_VENDOR_LIBRARY_NAME:-nvidia}"; if [ -e /usr/share/glvnd/egl_vendor.d/10_nvidia.json ]; then export __EGL_VENDOR_LIBRARY_FILENAMES="''${__EGL_VENDOR_LIBRARY_FILENAMES:-/usr/share/glvnd/egl_vendor.d/10_nvidia.json}"; fi' \
--set JLIBGHOSTTY_LIBRARY "${ghosttyVt}/lib/libghostty-vt.so" \
--set GDK_BACKEND x11
runHook postInstall
'';
});
in {
default = jprototerm;
gradleDepsUpdateScript = jprototerm.mitmCache.updateScript;
});
devShells = forAllSystems (system:
let
pkgs = import nixpkgs { inherit system; };
jlib = jlibghostty.packages.${system}.jlibghostty;
ghosttyVt = ghostty.packages.${system}.libghostty-vt;
runtimeLibs = runtimeLibsFor pkgs ghosttyVt;
in {
default = pkgs.mkShell {
packages = [
pkgs.gradle_9
pkgs.jdk25
pkgs.jdt-language-server
] ++ runtimeLibs;
JLIBGHOSTTY_MAVEN_REPO = "${jlib}/maven";
JLIBGHOSTTY_LIBRARY = "${ghosttyVt}/lib/libghostty-vt.so";
LD_LIBRARY_PATH = pkgs.lib.makeLibraryPath runtimeLibs;
};
});
};
}

8
settings.gradle Normal file
View File

@@ -0,0 +1,8 @@
pluginManagement {
repositories {
gradlePluginPortal()
mavenCentral()
}
}
rootProject.name = 'jprototerm'

View File

@@ -3,6 +3,7 @@ package com.gregor.jprototerm;
import io.github.wasabithumb.jtoml.JToml;
import io.github.wasabithumb.jtoml.document.TomlDocument;
import io.github.wasabithumb.jtoml.except.TomlException;
import io.github.wasabithumb.jtoml.key.TomlKey;
import io.github.wasabithumb.jtoml.value.TomlValue;
import io.github.wasabithumb.jtoml.value.primitive.TomlPrimitive;
import io.github.wasabithumb.jtoml.value.table.TomlTable;
@@ -26,6 +27,7 @@ public record AppConfig(
double windowHeight,
boolean kittyGraphics,
String scrollbackEditorCommand,
Map<String, String> envOverride,
Map<String, KeyBinding> keybindings
) {
private static final List<String> KEYBINDING_KEYS = List.of(
@@ -34,9 +36,11 @@ public record AppConfig(
"navigate_up",
"navigate_right",
"toggle_floating",
"new_floating",
"next_floating",
"new_pane",
"close_pane",
"new_tab",
"previous_tab",
"next_tab",
"open_font_selector",
"open_scrollback"
);
@@ -62,6 +66,7 @@ public record AppConfig(
doubleValue(document, "window.height", defaults.windowHeight),
booleanValue(document, "kitty_graphics.enabled", defaults.kittyGraphics),
stringValue(document, "scrollback.editor_command", defaults.scrollbackEditorCommand),
envOverride(document, defaults.envOverride),
keybindings(document, defaults)
);
} catch (TomlException ex) {
@@ -82,17 +87,20 @@ public record AppConfig(
760.0,
true,
defaultScrollbackEditorCommand(),
Map.of(
"navigate_left", KeyBinding.parse("ALT+H"),
"navigate_down", KeyBinding.parse("ALT+J"),
"navigate_up", KeyBinding.parse("ALT+K"),
"navigate_right", KeyBinding.parse("ALT+L"),
"toggle_floating", KeyBinding.parse("ALT+F"),
"new_floating", KeyBinding.parse("ALT+SHIFT+F"),
"next_floating", KeyBinding.parse("ALT+F12"),
"close_pane", KeyBinding.parse("ALT+X"),
"open_font_selector", KeyBinding.parse("ALT+T"),
"open_scrollback", KeyBinding.parse("ALT+S")
Map.of(),
Map.ofEntries(
Map.entry("navigate_left", KeyBinding.parse("ALT+H")),
Map.entry("navigate_down", KeyBinding.parse("ALT+J")),
Map.entry("navigate_up", KeyBinding.parse("ALT+K")),
Map.entry("navigate_right", KeyBinding.parse("ALT+L")),
Map.entry("toggle_floating", KeyBinding.parse("ALT+F")),
Map.entry("new_pane", KeyBinding.parse("ALT+N")),
Map.entry("close_pane", KeyBinding.parse("ALT+X")),
Map.entry("new_tab", KeyBinding.parse("ALT+A")),
Map.entry("previous_tab", KeyBinding.parse("ALT+SHIFT+H")),
Map.entry("next_tab", KeyBinding.parse("ALT+SHIFT+L")),
Map.entry("open_font_selector", KeyBinding.parse("ALT+T")),
Map.entry("open_scrollback", KeyBinding.parse("ALT+S"))
)
);
}
@@ -109,6 +117,7 @@ public record AppConfig(
windowHeight,
kittyGraphics,
scrollbackEditorCommand,
envOverride,
keybindings
);
}
@@ -183,6 +192,11 @@ public record AppConfig(
builder.append("enabled = ").append(kittyGraphics).append("\n\n");
builder.append("[scrollback]\n");
builder.append("editor_command = ").append(quoted(scrollbackEditorCommand)).append("\n\n");
builder.append("[env.override]\n");
for (Map.Entry<String, String> entry : envOverride.entrySet()) {
builder.append(entry.getKey()).append(" = ").append(quoted(entry.getValue())).append('\n');
}
builder.append('\n');
builder.append("[keybindings]\n");
for (String key : KEYBINDING_KEYS) {
KeyBinding binding = keybindings.get(key);
@@ -222,6 +236,31 @@ public record AppConfig(
}
}
private static Map<String, String> envOverride(TomlTable table, Map<String, String> fallback) {
TomlValue value = table.get("env.override");
if (value == null || !value.isTable()) {
return fallback;
}
Map<String, String> result = new LinkedHashMap<>();
TomlTable overrides = value.asTable();
for (TomlKey key : overrides.keys(false)) {
if (key.size() != 1) {
continue;
}
TomlValue override = overrides.get(key);
if (override != null && override.isPrimitive()) {
try {
result.put(key.get(0), override.asPrimitive().asString());
} catch (RuntimeException ignored) {
// Ignore non-string values; environment values are strings.
}
}
}
return Map.copyOf(result);
}
private static String stringValue(TomlTable table, String key, String fallback) {
TomlPrimitive primitive = primitive(table, key);
return primitive == null ? fallback : primitive.asString();

View File

@@ -0,0 +1,442 @@
package com.gregor.jprototerm;
import dev.jlibghostty.KeyModifiers;
import dev.jlibghostty.MouseButton;
import dev.jlibghostty.MouseEncoderSize;
import dev.jlibghostty.MouseInput;
import javafx.geometry.Pos;
import javafx.scene.Parent;
import javafx.scene.control.Label;
import javafx.scene.input.InputEvent;
import javafx.scene.input.MouseEvent;
import javafx.scene.input.ScrollEvent;
import javafx.scene.input.ScrollEvent.VerticalTextScrollUnits;
import javafx.scene.layout.Background;
import javafx.scene.layout.BackgroundFill;
import javafx.scene.layout.CornerRadii;
import javafx.scene.layout.HBox;
import javafx.scene.layout.Pane;
import javafx.scene.paint.Color;
import java.util.ArrayList;
import java.util.HashMap;
import java.util.HashSet;
import java.util.List;
import java.util.Map;
import java.util.Set;
/**
* Owns the window's tabs and exposes the terminal surface as a JavaFX scene graph. Each
* terminal pane is mounted as its own node, so JavaFX child order handles stacking and clipping
* between panes. The pane model still owns terminals, ptys, cell geometry, and snapshots; this
* class handles tab/pane lifecycle, layout, focus, mouse routing, and frame scheduling.
*/
public final class Compositor {
private static final Color GAP_BACKGROUND = Color.rgb(16, 16, 18);
private static final Color TAB_TEXT = Color.rgb(225, 229, 235);
private static final Color TAB_INACTIVE_TEXT = Color.rgb(128, 136, 148);
private static final Color TAB_ACTIVE_BACKGROUND = Color.rgb(45, 55, 72);
private static final Color TAB_INACTIVE_BACKGROUND = Color.rgb(22, 24, 28);
private static final double TAB_BAR_HEIGHT = 22.0;
private final Pane root = new Pane();
private final Pane paneLayer = new Pane();
private final HBox tabBar = new HBox(1.0);
private final AppConfig config;
private final TerminalMetrics metrics;
private final List<Tab> tabs = new ArrayList<>();
private final Map<TerminalPane, TerminalPaneNode> nodes = new HashMap<>();
private int currentTabIndex;
private boolean sceneDirty = true;
private double lastWidth = -1.0;
private double lastHeight = -1.0;
private long lastContentVersion = Long.MIN_VALUE;
private boolean mouseButtonPressed;
private MouseButton pressedButton = MouseButton.UNKNOWN;
public Compositor(AppConfig config, TerminalMetrics metrics) {
this.config = config;
this.metrics = metrics;
tabs.add(new Tab(config, metrics));
root.setFocusTraversable(true);
root.setBackground(new Background(new BackgroundFill(GAP_BACKGROUND, CornerRadii.EMPTY, null)));
root.getChildren().setAll(paneLayer, tabBar);
root.setOnMousePressed(event -> root.requestFocus());
}
public Parent node() {
return root;
}
public void requestFocus() {
root.requestFocus();
}
public void setFont(String family, double size) {
metrics.setFont(family, size);
nodes.values().forEach(TerminalPaneNode::discard);
markSceneDirty();
}
// ---- Tabs and panes -------------------------------------------------------------
public boolean isEmpty() {
return tabs.isEmpty();
}
public TerminalPane activePane() {
return currentTab().activePane();
}
public void navigate(Direction direction) {
if (!isEmpty() && currentTab().navigate(direction)) {
markSceneDirty();
}
}
public void toggleFloating() {
if (isEmpty()) {
return;
}
currentTab().toggleFloating();
markSceneDirty();
}
public void createPane() {
if (isEmpty()) {
return;
}
currentTab().createPane();
markSceneDirty();
}
public void closeActivePane() {
if (isEmpty()) {
return;
}
currentTab().closeActivePane();
if (currentTab().isEmpty()) {
tabs.remove(currentTabIndex);
if (currentTabIndex >= tabs.size()) {
currentTabIndex = Math.max(0, tabs.size() - 1);
}
}
markSceneDirty();
}
public void newTab() {
tabs.add(new Tab(config, metrics));
currentTabIndex = tabs.size() - 1;
markSceneDirty();
}
public void nextTab() {
if (tabs.size() > 1) {
currentTabIndex = (currentTabIndex + 1) % tabs.size();
markSceneDirty();
}
}
public void previousTab() {
if (tabs.size() > 1) {
currentTabIndex = (currentTabIndex - 1 + tabs.size()) % tabs.size();
markSceneDirty();
}
}
public void close() {
for (Tab tab : tabs) {
tab.close();
}
tabs.clear();
nodes.clear();
paneLayer.getChildren().clear();
}
private Tab currentTab() {
return tabs.get(currentTabIndex);
}
private List<TerminalPane> currentPanes() {
return tabs.isEmpty() ? List.of() : currentTab().panes();
}
private List<TerminalPane> allOpenPanes() {
List<TerminalPane> panes = new ArrayList<>();
for (Tab tab : tabs) {
panes.addAll(tab.allPanes());
}
return panes;
}
private boolean isActive(TerminalPane pane) {
return !tabs.isEmpty() && currentTab().isActive(pane);
}
private void focus(TerminalPane pane) {
if (!tabs.isEmpty() && currentTab().focus(pane)) {
markSceneDirty();
}
}
// ---- Rendering ------------------------------------------------------------------
public void render() {
double width = root.getWidth();
double height = root.getHeight();
long contentVersion = tabs.isEmpty() ? 0 : currentTab().contentVersion();
boolean geometryChanged = width != lastWidth || height != lastHeight;
boolean contentChanged = contentVersion != lastContentVersion;
boolean syncScene = sceneDirty || geometryChanged;
if (!syncScene && !contentChanged) {
return;
}
lastWidth = width;
lastHeight = height;
lastContentVersion = contentVersion;
sceneDirty = false;
if (syncScene) {
syncSceneGraph(width, height);
}
renderVisiblePanes();
}
private void markSceneDirty() {
sceneDirty = true;
}
private void syncSceneGraph(double width, double height) {
double topInset = tabs.size() > 1 ? TAB_BAR_HEIGHT : 0.0;
paneLayer.resizeRelocate(0.0, 0.0, width, height);
updateTabBar(width, topInset);
if (!tabs.isEmpty()) {
currentTab().layout(width, height, topInset);
}
List<TerminalPane> panes = currentPanes();
retainNodes(allOpenPanes());
List<TerminalPaneNode> orderedNodes = new ArrayList<>(panes.size());
for (TerminalPane pane : panes) {
pane.fitToBounds();
TerminalPaneNode node = nodeFor(pane);
node.resizeRelocate(Math.round(pane.x()), Math.round(pane.y()), pane.width(), pane.height());
orderedNodes.add(node);
}
paneLayer.getChildren().setAll(orderedNodes);
}
private void renderVisiblePanes() {
for (TerminalPane pane : currentPanes()) {
TerminalPaneNode node = nodes.get(pane);
if (node != null) {
node.renderIncremental(isActive(pane));
}
}
}
private TerminalPaneNode nodeFor(TerminalPane pane) {
return nodes.computeIfAbsent(pane, this::createNode);
}
private TerminalPaneNode createNode(TerminalPane pane) {
TerminalPaneNode node = new TerminalPaneNode(pane, metrics);
node.setOnMousePressed(event -> handleMousePressed(pane, event));
node.setOnMouseReleased(event -> handleMouseReleased(pane, event));
node.setOnMouseDragged(event -> handleMouseDragged(pane, event));
node.setOnMouseMoved(event -> handleMouseMoved(pane, event));
node.setOnScroll(event -> handleScroll(pane, event));
return node;
}
private void retainNodes(List<TerminalPane> openPanes) {
Set<TerminalPane> open = new HashSet<>(openPanes);
nodes.keySet().removeIf(pane -> !open.contains(pane));
}
private void updateTabBar(double width, double barHeight) {
tabBar.setVisible(barHeight > 0.0);
tabBar.setManaged(false);
tabBar.resizeRelocate(0.0, 0.0, width, barHeight);
tabBar.getChildren().clear();
if (barHeight <= 0.0) {
return;
}
double segmentWidth = width / tabs.size();
for (int i = 0; i < tabs.size(); i++) {
Label label = new Label(Integer.toString(i + 1));
boolean current = i == currentTabIndex;
label.setAlignment(Pos.CENTER);
label.setTextFill(current ? TAB_TEXT : TAB_INACTIVE_TEXT);
label.setBackground(new Background(new BackgroundFill(
current ? TAB_ACTIVE_BACKGROUND : TAB_INACTIVE_BACKGROUND,
CornerRadii.EMPTY,
null)));
label.setFont(javafx.scene.text.Font.font(metrics.fontFamily(), Math.max(9.0, Math.min(13.0, barHeight * 0.62))));
label.setMinSize(0.0, barHeight);
label.setPrefSize(Math.max(0.0, segmentWidth - 1.0), barHeight);
label.setMaxSize(Double.MAX_VALUE, barHeight);
final int index = i;
label.setOnMousePressed(event -> {
currentTabIndex = index;
markSceneDirty();
root.requestFocus();
event.consume();
});
tabBar.getChildren().add(label);
}
}
// ---- Input ----------------------------------------------------------------------
private void handleMousePressed(TerminalPane pane, MouseEvent event) {
root.requestFocus();
focus(pane);
pressedButton = mouseButton(event);
mouseButtonPressed = true;
MouseTarget target = mouseTarget(pane);
if (target == null) {
return;
}
send(pane, target, MouseInput.press(pressedButton, localX(event.getX(), target), localY(event.getY(), target), modifiers(event)), true, event);
}
private void handleMouseReleased(TerminalPane pane, MouseEvent event) {
MouseButton button = pressedButton == MouseButton.UNKNOWN ? mouseButton(event) : pressedButton;
MouseTarget target = mouseTarget(pane);
if (target != null) {
send(pane, target, MouseInput.release(button, localX(event.getX(), target), localY(event.getY(), target), modifiers(event)), false, event);
}
mouseButtonPressed = false;
pressedButton = MouseButton.UNKNOWN;
}
private void handleMouseDragged(TerminalPane pane, MouseEvent event) {
MouseButton button = pressedButton == MouseButton.UNKNOWN ? mouseButton(event) : pressedButton;
MouseTarget target = mouseTarget(pane);
if (target == null) {
return;
}
send(pane, target, MouseInput.drag(button, localX(event.getX(), target), localY(event.getY(), target), modifiers(event)), true, event);
}
private void handleMouseMoved(TerminalPane pane, MouseEvent event) {
MouseTarget target = mouseTarget(pane);
if (target == null) {
return;
}
send(pane, target, MouseInput.motion(localX(event.getX(), target), localY(event.getY(), target), modifiers(event)), mouseButtonPressed, event);
}
private void handleScroll(TerminalPane pane, ScrollEvent event) {
root.requestFocus();
focus(pane);
int direction = scrollDirection(event);
if (direction == 0) {
return;
}
MouseButton wheelButton = direction > 0 ? MouseButton.FOUR : MouseButton.FIVE;
int rows = scrollRows(event);
MouseTarget target = mouseTarget(pane);
boolean sent = false;
if (target != null) {
double ex = localX(event.getX(), target);
double ey = localY(event.getY(), target);
KeyModifiers modifiers = modifiers(event);
for (int i = 0; i < rows; i++) {
if (!send(pane, target, MouseInput.press(wheelButton, ex, ey, modifiers), mouseButtonPressed, event)) {
break;
}
sent = true;
}
}
if (!sent) {
pane.scrollViewport(direction > 0 ? -rows : rows);
event.consume();
}
}
private boolean send(TerminalPane pane, MouseTarget target, MouseInput input, boolean anyButtonPressed, InputEvent event) {
boolean sent = pane.sendMouse(input, target.size(), anyButtonPressed);
if (sent) {
event.consume();
}
return sent;
}
private MouseTarget mouseTarget(TerminalPane pane) {
if (pane.width() <= 2 * TerminalMetrics.PADDING || pane.height() <= 2 * TerminalMetrics.PADDING) {
return null;
}
int columns = metrics.columnsFor(pane.width());
int rows = metrics.rowsFor(pane.height());
long cellWidth = Math.max(1L, Math.round(metrics.cellWidth()));
long cellHeight = Math.max(1L, Math.round(metrics.lineHeight()));
long screenWidth = Math.max(1L, Math.round(columns * metrics.cellWidth()));
long screenHeight = Math.max(1L, Math.round(rows * metrics.lineHeight()));
return new MouseTarget(MouseEncoderSize.of(screenWidth, screenHeight, cellWidth, cellHeight), screenWidth, screenHeight);
}
private static double localX(double nodeX, MouseTarget target) {
return clamp(nodeX - TerminalMetrics.PADDING, 0.0, target.screenWidth() - 1.0);
}
private static double localY(double nodeY, MouseTarget target) {
return clamp(nodeY - TerminalMetrics.PADDING, 0.0, target.screenHeight() - 1.0);
}
private static double clamp(double value, double min, double max) {
return Math.max(min, Math.min(max, value));
}
private static KeyModifiers modifiers(MouseEvent event) {
return KeyModifiers.of(event.isShiftDown(), event.isControlDown(), event.isAltDown(), event.isMetaDown());
}
private static KeyModifiers modifiers(ScrollEvent event) {
return KeyModifiers.of(event.isShiftDown(), event.isControlDown(), event.isAltDown(), event.isMetaDown());
}
private static int scrollRows(ScrollEvent event) {
double rows;
if (event.getTextDeltaYUnits() == VerticalTextScrollUnits.LINES && event.getTextDeltaY() != 0.0) {
rows = Math.abs(event.getTextDeltaY());
} else if (event.getTextDeltaYUnits() == VerticalTextScrollUnits.PAGES && event.getTextDeltaY() != 0.0) {
rows = Math.abs(event.getTextDeltaY()) * 24.0;
} else if (event.getMultiplierY() > 0.0) {
rows = Math.abs(event.getDeltaY()) / event.getMultiplierY();
} else {
rows = Math.abs(event.getDeltaY()) / 40.0;
}
return Math.max(1, Math.min(64, (int) Math.ceil(rows)));
}
private static int scrollDirection(ScrollEvent event) {
if (event.getDeltaY() != 0.0) {
return event.getDeltaY() > 0.0 ? 1 : -1;
}
if (event.getTextDeltaYUnits() != VerticalTextScrollUnits.NONE && event.getTextDeltaY() != 0.0) {
return event.getTextDeltaY() > 0.0 ? 1 : -1;
}
return 0;
}
private static MouseButton mouseButton(MouseEvent event) {
return switch (event.getButton()) {
case PRIMARY -> MouseButton.LEFT;
case SECONDARY -> MouseButton.RIGHT;
case MIDDLE -> MouseButton.MIDDLE;
default -> MouseButton.UNKNOWN;
};
}
private record MouseTarget(MouseEncoderSize size, long screenWidth, long screenHeight) {
}
}

View File

@@ -0,0 +1,401 @@
package com.gregor.jprototerm;
import java.lang.foreign.AddressLayout;
import java.lang.foreign.Arena;
import java.lang.foreign.FunctionDescriptor;
import java.lang.foreign.Linker;
import java.lang.foreign.MemoryLayout;
import java.lang.foreign.MemorySegment;
import java.lang.foreign.SymbolLookup;
import java.lang.foreign.ValueLayout;
import java.lang.invoke.MethodHandle;
import java.util.ArrayList;
import java.util.List;
import java.util.Map;
/**
* A Linux PTY backed by libc via the Foreign Function & Memory API.
*
* <p>This replaces pty4j (which loads a JNA JNI shim). It uses
* {@code posix_openpt}/{@code posix_spawnp} rather than {@code fork}/{@code forkpty}:
* doing work between {@code fork} and {@code exec} inside a multithreaded JVM is unsafe
* (only async-signal-safe calls are permitted), whereas {@code posix_spawn} performs the
* dangerous part in libc with no Java on the stack.
*
* <p>The child gets a fresh session via {@code POSIX_SPAWN_SETSID}; it then opens the slave
* PTY itself (as fd 0, without {@code O_NOCTTY}) so the slave becomes its controlling
* terminal. glibc applies attribute flags (the setsid) before file actions, so the open
* happens in the new session.
*/
public final class LinuxPty implements AutoCloseable {
static final Linker LINKER = Linker.nativeLinker();
private static final SymbolLookup LIBC = LINKER.defaultLookup();
static final AddressLayout C_POINTER = (AddressLayout) LINKER.canonicalLayouts().get("void*");
static final ValueLayout.OfShort C_SHORT = (ValueLayout.OfShort) LINKER.canonicalLayouts().get("short");
static final ValueLayout.OfInt C_INT = (ValueLayout.OfInt) LINKER.canonicalLayouts().get("int");
static final ValueLayout.OfLong C_LONG = (ValueLayout.OfLong) LINKER.canonicalLayouts().get("long");
static final ValueLayout.OfLong C_SIZE_T = (ValueLayout.OfLong) LINKER.canonicalLayouts().get("size_t");
// Function descriptors.
static final FunctionDescriptor FD_INT_INT = FunctionDescriptor.of(C_INT, C_INT);
static final FunctionDescriptor FD_PTSNAME_R = FunctionDescriptor.of(C_INT, C_INT, C_POINTER, C_SIZE_T);
static final FunctionDescriptor FD_RW = FunctionDescriptor.of(C_LONG, C_INT, C_POINTER, C_SIZE_T);
static final FunctionDescriptor FD_IOCTL = FunctionDescriptor.of(C_INT, C_INT, C_LONG, C_POINTER);
static final FunctionDescriptor FD_KILL = FunctionDescriptor.of(C_INT, C_INT, C_INT);
static final FunctionDescriptor FD_WAITPID = FunctionDescriptor.of(C_INT, C_INT, C_POINTER, C_INT);
static final FunctionDescriptor FD_SPAWN = FunctionDescriptor.of(
C_INT, C_POINTER, C_POINTER, C_POINTER, C_POINTER, C_POINTER, C_POINTER);
static final FunctionDescriptor FD_FA_INIT = FunctionDescriptor.of(C_INT, C_POINTER);
static final FunctionDescriptor FD_FA_ADDCLOSE = FunctionDescriptor.of(C_INT, C_POINTER, C_INT);
static final FunctionDescriptor FD_FA_ADDDUP2 = FunctionDescriptor.of(C_INT, C_POINTER, C_INT, C_INT);
static final FunctionDescriptor FD_FA_ADDOPEN =
FunctionDescriptor.of(C_INT, C_POINTER, C_INT, C_POINTER, C_INT, C_INT);
static final FunctionDescriptor FD_FA_ADDCHDIR = FunctionDescriptor.of(C_INT, C_POINTER, C_POINTER);
static final FunctionDescriptor FD_ATTR_SETFLAGS = FunctionDescriptor.of(C_INT, C_POINTER, C_SHORT);
// Linux constants (x86-64 / arm64).
private static final int O_RDWR = 0x0002;
private static final int O_NOCTTY = 0x0100;
private static final long TIOCSWINSZ = 0x5414L;
private static final short POSIX_SPAWN_SETSID = 0x80;
private static final int SIGHUP = 1;
private static final int SIGKILL = 9;
private static final int WNOHANG = 1;
// struct winsize { unsigned short ws_row, ws_col, ws_xpixel, ws_ypixel; }
private static final MemoryLayout WINSIZE = MemoryLayout.structLayout(
C_SHORT.withName("ws_row"),
C_SHORT.withName("ws_col"),
C_SHORT.withName("ws_xpixel"),
C_SHORT.withName("ws_ypixel"));
// posix_spawn_file_actions_t / posix_spawnattr_t are opaque; over-allocate generously.
private static final long SPAWN_ACTIONS_SIZE = 256;
private static final long SPAWN_ATTR_SIZE = 512;
private static final MethodHandle POSIX_OPENPT = handle("posix_openpt", FD_INT_INT);
private static final MethodHandle GRANTPT = handle("grantpt", FD_INT_INT);
private static final MethodHandle UNLOCKPT = handle("unlockpt", FD_INT_INT);
private static final MethodHandle PTSNAME_R = handle("ptsname_r", FD_PTSNAME_R);
private static final MethodHandle CLOSE = handle("close", FD_INT_INT);
private static final MethodHandle READ = handle("read", FD_RW);
private static final MethodHandle WRITE = handle("write", FD_RW);
private static final MethodHandle IOCTL = handle("ioctl", FD_IOCTL, Linker.Option.firstVariadicArg(2));
private static final MethodHandle KILL = handle("kill", FD_KILL);
private static final MethodHandle WAITPID = handle("waitpid", FD_WAITPID);
private static final MethodHandle POSIX_SPAWNP = handle("posix_spawnp", FD_SPAWN);
private static final MethodHandle FA_INIT = handle("posix_spawn_file_actions_init", FD_FA_INIT);
private static final MethodHandle FA_DESTROY = handle("posix_spawn_file_actions_destroy", FD_FA_INIT);
private static final MethodHandle FA_ADDCLOSE = handle("posix_spawn_file_actions_addclose", FD_FA_ADDCLOSE);
private static final MethodHandle FA_ADDDUP2 = handle("posix_spawn_file_actions_adddup2", FD_FA_ADDDUP2);
private static final MethodHandle FA_ADDOPEN = handle("posix_spawn_file_actions_addopen", FD_FA_ADDOPEN);
private static final MethodHandle FA_ADDCHDIR = handle("posix_spawn_file_actions_addchdir_np", FD_FA_ADDCHDIR);
private static final MethodHandle ATTR_INIT = handle("posix_spawnattr_init", FD_FA_INIT);
private static final MethodHandle ATTR_DESTROY = handle("posix_spawnattr_destroy", FD_FA_INIT);
private static final MethodHandle ATTR_SETFLAGS = handle("posix_spawnattr_setflags", FD_ATTR_SETFLAGS);
private final Arena arena = Arena.ofShared();
private final MemorySegment readBuffer = arena.allocate(65536);
private final Object writeLock = new Object();
private final int masterFd;
private final int pid;
private volatile boolean closed;
private LinuxPty(int masterFd, int pid) {
this.masterFd = masterFd;
this.pid = pid;
}
/**
* Opens a PTY and spawns {@code argv} attached to its slave end.
*
* @param argv command and arguments (e.g. {@code {"/bin/zsh", "-i"}})
* @param environment environment for the child, as KEY=VALUE pairs
* @param workingDirectory directory the child starts in, or {@code null} to inherit
*/
public static LinuxPty spawn(String[] argv, Map<String, String> environment, String workingDirectory) {
Arena setup = Arena.ofConfined();
try {
int master = check(callInt(POSIX_OPENPT, O_RDWR | O_NOCTTY), "posix_openpt");
try {
check(callInt(GRANTPT, master), "grantpt");
check(callInt(UNLOCKPT, master), "unlockpt");
MemorySegment nameBuf = setup.allocate(256);
check(callPtsnameR(master, nameBuf), "ptsname_r");
String slavePath = nameBuf.getString(0);
MemorySegment actions = setup.allocate(SPAWN_ACTIONS_SIZE);
MemorySegment attr = setup.allocate(SPAWN_ATTR_SIZE);
check(callInt(FA_INIT, actions), "posix_spawn_file_actions_init");
check(callInt(ATTR_INIT, attr), "posix_spawnattr_init");
try {
check(callInt(ATTR_SETFLAGS, attr, POSIX_SPAWN_SETSID), "posix_spawnattr_setflags");
if (workingDirectory != null) {
MemorySegment dir = setup.allocateFrom(workingDirectory);
check(callAddChdir(actions, dir), "posix_spawn_file_actions_addchdir_np");
}
// Open the slave as fd 0 in the new session -> controlling terminal, then fan out.
MemorySegment slave = setup.allocateFrom(slavePath);
check(callAddOpen(actions, 0, slave, O_RDWR, 0), "posix_spawn_file_actions_addopen");
check(callAddDup2(actions, 0, 1), "posix_spawn_file_actions_adddup2");
check(callAddDup2(actions, 0, 2), "posix_spawn_file_actions_adddup2");
check(callAddClose(actions, master), "posix_spawn_file_actions_addclose");
MemorySegment argvSeg = cStringArray(setup, List.of(argv));
MemorySegment envpSeg = cStringArray(setup, toEnvList(environment));
MemorySegment path = setup.allocateFrom(argv[0]);
MemorySegment pidOut = setup.allocate(C_INT);
int rc = callSpawn(pidOut, path, actions, attr, argvSeg, envpSeg);
if (rc != 0) {
throw new IllegalStateException("posix_spawnp failed for " + argv[0] + " (rc=" + rc + ")");
}
return new LinuxPty(master, pidOut.get(C_INT, 0));
} finally {
callInt(ATTR_DESTROY, attr);
callInt(FA_DESTROY, actions);
}
} catch (RuntimeException ex) {
callInt(CLOSE, master);
throw ex;
}
} finally {
setup.close();
}
}
/** Reads available output into {@code dst}; returns bytes read, or -1 at EOF. */
public int read(byte[] dst) {
if (closed) {
return -1;
}
long n = callLong(READ, masterFd, readBuffer, Math.min(dst.length, readBuffer.byteSize()));
if (n <= 0) {
return -1;
}
MemorySegment.copy(readBuffer, ValueLayout.JAVA_BYTE, 0, dst, 0, (int) n);
return (int) n;
}
/** Writes all of {@code data} to the master end. */
public void write(byte[] data) {
if (closed || data.length == 0) {
return;
}
synchronized (writeLock) {
try (Arena a = Arena.ofConfined()) {
MemorySegment buf = a.allocate(data.length);
MemorySegment.copy(data, 0, buf, ValueLayout.JAVA_BYTE, 0, data.length);
long offset = 0;
while (offset < data.length) {
long n = callLong(WRITE, masterFd, buf.asSlice(offset), data.length - offset);
if (n < 0) {
throw new IllegalStateException("write to pty failed");
}
offset += n;
}
}
}
}
/** Resizes the terminal window. */
public void setWinSize(int columns, int rows) {
if (closed) {
return;
}
try (Arena a = Arena.ofConfined()) {
MemorySegment ws = a.allocate(WINSIZE);
ws.set(C_SHORT, 0, (short) rows);
ws.set(C_SHORT, 2, (short) columns);
ws.set(C_SHORT, 4, (short) 0);
ws.set(C_SHORT, 6, (short) 0);
callIoctl(masterFd, TIOCSWINSZ, ws);
}
}
@Override
public void close() {
if (closed) {
return;
}
closed = true;
callKill(pid, SIGHUP);
callInt(CLOSE, masterFd);
reap();
arena.close();
}
private void reap() {
try (Arena a = Arena.ofConfined()) {
MemorySegment status = a.allocate(C_INT);
// Closing the master sends EOF/SIGHUP; an interactive shell exits promptly.
for (int attempt = 0; attempt < 50; attempt++) {
int r = callWaitpid(pid, status, WNOHANG);
if (r != 0) {
return; // reaped, or no such child
}
if (attempt == 25) {
callKill(pid, SIGKILL);
}
try {
Thread.sleep(2);
} catch (InterruptedException ie) {
Thread.currentThread().interrupt();
return;
}
}
}
}
// --- typed invokeExact wrappers ---------------------------------------------------------
private static int callInt(MethodHandle handle, int arg) {
try {
return (int) handle.invokeExact(arg);
} catch (Throwable t) {
throw sneaky(t);
}
}
private static int callInt(MethodHandle handle, MemorySegment arg) {
try {
return (int) handle.invokeExact(arg);
} catch (Throwable t) {
throw sneaky(t);
}
}
private static int callInt(MethodHandle handle, MemorySegment a, short b) {
try {
return (int) handle.invokeExact(a, b);
} catch (Throwable t) {
throw sneaky(t);
}
}
private static long callLong(MethodHandle handle, int fd, MemorySegment buf, long len) {
try {
return (long) handle.invokeExact(fd, buf, len);
} catch (Throwable t) {
throw sneaky(t);
}
}
private static int callPtsnameR(int fd, MemorySegment buf) {
try {
return (int) PTSNAME_R.invokeExact(fd, buf, buf.byteSize());
} catch (Throwable t) {
throw sneaky(t);
}
}
private static int callAddChdir(MemorySegment actions, MemorySegment path) {
try {
return (int) FA_ADDCHDIR.invokeExact(actions, path);
} catch (Throwable t) {
throw sneaky(t);
}
}
private static int callAddOpen(MemorySegment actions, int fd, MemorySegment path, int oflag, int mode) {
try {
return (int) FA_ADDOPEN.invokeExact(actions, fd, path, oflag, mode);
} catch (Throwable t) {
throw sneaky(t);
}
}
private static int callAddDup2(MemorySegment actions, int fd, int newFd) {
try {
return (int) FA_ADDDUP2.invokeExact(actions, fd, newFd);
} catch (Throwable t) {
throw sneaky(t);
}
}
private static int callAddClose(MemorySegment actions, int fd) {
try {
return (int) FA_ADDCLOSE.invokeExact(actions, fd);
} catch (Throwable t) {
throw sneaky(t);
}
}
private static int callSpawn(MemorySegment pid, MemorySegment path, MemorySegment actions,
MemorySegment attr, MemorySegment argv, MemorySegment envp) {
try {
return (int) POSIX_SPAWNP.invokeExact(pid, path, actions, attr, argv, envp);
} catch (Throwable t) {
throw sneaky(t);
}
}
private static void callIoctl(int fd, long request, MemorySegment arg) {
try {
int unused = (int) IOCTL.invokeExact(fd, request, arg);
} catch (Throwable t) {
throw sneaky(t);
}
}
private static void callKill(int pid, int signal) {
try {
int unused = (int) KILL.invokeExact(pid, signal);
} catch (Throwable t) {
throw sneaky(t);
}
}
private static int callWaitpid(int pid, MemorySegment status, int options) {
try {
return (int) WAITPID.invokeExact(pid, status, options);
} catch (Throwable t) {
throw sneaky(t);
}
}
// --- helpers ----------------------------------------------------------------------------
private static MethodHandle handle(String symbol, FunctionDescriptor descriptor, Linker.Option... options) {
MemorySegment address = LIBC.find(symbol)
.orElseThrow(() -> new IllegalStateException("libc symbol not found: " + symbol));
return LINKER.downcallHandle(address, descriptor, options);
}
private static MemorySegment cStringArray(Arena arena, List<String> values) {
MemorySegment array = arena.allocate(C_POINTER, values.size() + 1L);
for (int i = 0; i < values.size(); i++) {
array.setAtIndex(C_POINTER, i, arena.allocateFrom(values.get(i)));
}
array.setAtIndex(C_POINTER, values.size(), MemorySegment.NULL);
return array;
}
private static List<String> toEnvList(Map<String, String> environment) {
List<String> out = new ArrayList<>(environment.size());
for (Map.Entry<String, String> entry : environment.entrySet()) {
out.add(entry.getKey() + "=" + entry.getValue());
}
return out;
}
private static int check(int rc, String what) {
if (rc < 0) {
throw new IllegalStateException(what + " failed (rc=" + rc + ")");
}
return rc;
}
private static RuntimeException sneaky(Throwable t) {
if (t instanceof RuntimeException re) {
return re;
}
if (t instanceof Error e) {
throw e;
}
return new IllegalStateException(t);
}
}

View File

@@ -2,6 +2,7 @@ package com.gregor.jprototerm;
import javafx.animation.AnimationTimer;
import javafx.application.Application;
import javafx.application.Platform;
import javafx.scene.Scene;
import javafx.scene.control.ButtonType;
import javafx.scene.control.ComboBox;
@@ -11,7 +12,6 @@ import javafx.scene.control.Spinner;
import javafx.scene.control.SpinnerValueFactory;
import javafx.scene.input.KeyEvent;
import javafx.scene.layout.GridPane;
import javafx.scene.layout.StackPane;
import javafx.scene.text.Font;
import javafx.stage.Stage;
@@ -20,65 +20,72 @@ import java.nio.file.Files;
import java.nio.file.Path;
public final class Main extends Application {
private TerminalWorkspace workspace;
private TerminalCanvasView terminalView;
private Compositor compositor;
private TerminalMetrics metrics;
private AppConfig config;
@Override
public void start(Stage stage) {
config = AppConfig.load();
workspace = new TerminalWorkspace(config);
terminalView = new TerminalCanvasView(workspace, config);
metrics = new TerminalMetrics(config.fontFamily(), config.fontSize());
compositor = new Compositor(config, metrics);
StackPane root = new StackPane(terminalView.canvas());
terminalView.canvas().widthProperty().bind(root.widthProperty());
terminalView.canvas().heightProperty().bind(root.heightProperty());
Scene scene = new Scene(root, config.windowWidth(), config.windowHeight());
Scene scene = new Scene(compositor.node(), config.windowWidth(), config.windowHeight());
scene.addEventFilter(KeyEvent.KEY_PRESSED, this::handlePressed);
scene.addEventFilter(KeyEvent.KEY_TYPED, event -> handleTyped(event));
new AnimationTimer() {
@Override
public void handle(long now) {
terminalView.render();
compositor.render();
}
}.start();
stage.setTitle("jprototerm");
stage.setScene(scene);
stage.setOnCloseRequest(event -> {
workspace.close();
compositor.close();
});
stage.show();
terminalView.canvas().requestFocus();
compositor.requestFocus();
}
private void handlePressed(KeyEvent event) {
if (config.keybindings().get("navigate_left").matches(event)) {
workspace.navigate(Direction.LEFT);
compositor.navigate(Direction.LEFT);
event.consume();
} else if (config.keybindings().get("navigate_down").matches(event)) {
workspace.navigate(Direction.DOWN);
compositor.navigate(Direction.DOWN);
event.consume();
} else if (config.keybindings().get("navigate_up").matches(event)) {
workspace.navigate(Direction.UP);
compositor.navigate(Direction.UP);
event.consume();
} else if (config.keybindings().get("navigate_right").matches(event)) {
workspace.navigate(Direction.RIGHT);
compositor.navigate(Direction.RIGHT);
event.consume();
} else if (config.keybindings().get("toggle_floating").matches(event)) {
workspace.toggleFloating();
compositor.toggleFloating();
event.consume();
} else if (config.keybindings().get("new_floating").matches(event)) {
workspace.createFloatingPane();
event.consume();
} else if (config.keybindings().get("next_floating").matches(event)) {
workspace.nextFloatingPane();
} else if (config.keybindings().get("new_pane").matches(event)) {
compositor.createPane();
event.consume();
} else if (config.keybindings().get("close_pane").matches(event)) {
workspace.closeActivePane();
compositor.closeActivePane();
event.consume();
if (compositor.isEmpty()) {
// Closing the last pane quits the app.
compositor.close();
Platform.exit();
}
} else if (config.keybindings().get("new_tab").matches(event)) {
compositor.newTab();
event.consume();
} else if (config.keybindings().get("previous_tab").matches(event)) {
compositor.previousTab();
event.consume();
} else if (config.keybindings().get("next_tab").matches(event)) {
compositor.nextTab();
event.consume();
} else if (config.keybindings().get("open_font_selector").matches(event)) {
openFontSelector();
@@ -89,7 +96,7 @@ public final class Main extends Application {
} else {
String encoded = KeyEncoder.encode(event);
if (encoded != null) {
workspace.activePane().send(encoded);
compositor.activePane().send(encoded);
event.consume();
}
}
@@ -102,7 +109,7 @@ public final class Main extends Application {
String text = event.getCharacter();
if (text != null && !text.isEmpty() && text.charAt(0) >= 0x20 && text.charAt(0) != 0x7f) {
workspace.activePane().send(text);
compositor.activePane().send(text);
event.consume();
}
}
@@ -145,18 +152,18 @@ public final class Main extends Application {
double selectedSize = size.getValue();
config = config.withFont(selectedFamily.trim(), selectedSize);
config.save();
terminalView.setFont(config.fontFamily(), config.fontSize());
terminalView.canvas().requestFocus();
compositor.setFont(config.fontFamily(), config.fontSize());
compositor.requestFocus();
});
}
private void openScrollbackInEditor() {
try {
Path file = Files.createTempFile("jprototerm-scrollback-", ".txt");
Files.writeString(file, workspace.activePane().scrollbackText());
Files.writeString(file, compositor.activePane().scrollbackText());
file.toFile().deleteOnExit();
workspace.activePane().send(scrollbackEditorCommand(file) + "\r");
compositor.activePane().send(scrollbackEditorCommand(file) + "\r");
} catch (IOException ex) {
System.err.println("Could not open scrollback in editor: " + ex.getMessage());
}

View File

@@ -0,0 +1,79 @@
package com.gregor.jprototerm;
/**
* Lightweight render profiler, disabled unless {@code -Djprototerm.profile=true} (or the
* {@code JPROTOTERM_PROFILE=1} environment variable) is set. It accumulates wall-clock nanos
* into a handful of buckets and prints aggregate per-frame stats to stderr every
* {@code jprototerm.profile.frames} render invocations (default 120).
*
* <p>All render work runs on the JavaFX application thread, so the accumulators are plain
* fields with no synchronization.
*
* <p>Caveat: JavaFX canvas drawing is deferred to the QuantumRenderer thread, so the
* {@link #DRAW} bucket measures only the cost of <em>recording</em> draw commands, not the
* GPU paint. Pair this with {@code -Djavafx.pulseLogger=true} to see the render-thread side.
*/
final class RenderProfiler {
static final int SNAPSHOT = 0;
static final int FINGERPRINT = 1;
static final int DRAW = 2;
static final int FRAME = 3;
static final int UPDATE = 4;
static final int MARSHAL = 5;
private static final int BUCKETS = 6;
private static final String[] NAMES =
{"snapshot", "fingerprint", "draw", "frame-total", "update", "marshal"};
private static final boolean ENABLED =
Boolean.getBoolean("jprototerm.profile") || "1".equals(System.getenv("JPROTOTERM_PROFILE"));
private static final int DUMP_FRAMES = Integer.getInteger("jprototerm.profile.frames", 120);
private static final long[] totalNanos = new long[BUCKETS];
private static final long[] counts = new long[BUCKETS];
private static int frames;
private RenderProfiler() {
}
static boolean enabled() {
return ENABLED;
}
/** Returns a start timestamp, or 0 when profiling is disabled. */
static long start() {
return ENABLED ? System.nanoTime() : 0L;
}
/** Records the time elapsed since {@code startNanos} into {@code bucket}. */
static void stop(int bucket, long startNanos) {
if (!ENABLED) {
return;
}
totalNanos[bucket] += System.nanoTime() - startNanos;
counts[bucket]++;
}
/** Marks the end of one render invocation; dumps and resets every {@code DUMP_FRAMES}. */
static void frame() {
if (!ENABLED) {
return;
}
if (++frames < DUMP_FRAMES) {
return;
}
dump();
}
private static void dump() {
StringBuilder sb = new StringBuilder(192);
sb.append("[render-profile] ").append(frames).append(" renders");
for (int i = 0; i < BUCKETS; i++) {
double totalMs = totalNanos[i] / 1_000_000.0;
sb.append(String.format(" | %s %.3fms/f (n=%d)", NAMES[i], totalMs / frames, counts[i]));
totalNanos[i] = 0;
counts[i] = 0;
}
System.err.println(sb);
frames = 0;
}
}

View File

@@ -1,12 +1,5 @@
package com.gregor.jprototerm;
import com.pty4j.PtyProcess;
import com.pty4j.PtyProcessBuilder;
import com.pty4j.WinSize;
import javafx.application.Platform;
import java.io.IOException;
import java.io.OutputStream;
import java.nio.charset.StandardCharsets;
import java.util.HashMap;
import java.util.Map;
@@ -14,14 +7,12 @@ import java.util.concurrent.ExecutorService;
import java.util.concurrent.Executors;
public final class ShellSession implements AutoCloseable {
private final PtyProcess process;
private final OutputStream stdin;
private final LinuxPty pty;
private final ExecutorService reader;
private volatile boolean closed;
private ShellSession(PtyProcess process) {
this.process = process;
this.stdin = process.getOutputStream();
private ShellSession(LinuxPty pty) {
this.pty = pty;
this.reader = Executors.newSingleThreadExecutor(runnable -> {
Thread thread = new Thread(runnable, "shell-output-reader");
thread.setDaemon(true);
@@ -29,25 +20,51 @@ public final class ShellSession implements AutoCloseable {
});
}
public static ShellSession start(String shell, TerminalPane pane, int columns, int rows) {
public static ShellSession start(String shell, Map<String, String> envOverride, TerminalPane pane, int columns, int rows) {
try {
Map<String, String> environment = new HashMap<>(System.getenv());
environment.put("TERM", "xterm-kitty");
environment.put("COLORTERM", "truecolor");
sanitizeWrapperEnvironment(environment);
environment.putAll(envOverride);
PtyProcess process = new PtyProcessBuilder(new String[] {shell, "-i"})
.setEnvironment(environment)
.setInitialColumns(columns)
.setInitialRows(rows)
.setDirectory(System.getProperty("user.home"))
.start();
return new ShellSession(process);
} catch (IOException ex) {
LinuxPty pty = LinuxPty.spawn(
new String[] {shell, "-i"},
environment,
System.getProperty("user.home"));
ShellSession session = new ShellSession(pty);
session.resize(columns, rows);
return session;
} catch (RuntimeException ex) {
pane.write("failed to start shell: " + ex.getMessage() + "\r\n");
throw new IllegalStateException("Could not start shell " + shell, ex);
}
}
/**
* Strips the variables injected by the Nix launcher wrapper from the shell's
* environment so they do not leak into terminal subprocesses.
*
* <p>jprototerm is launched from a Nix wrapper that prepends Nix store paths to
* {@code LD_LIBRARY_PATH} (and adds a GL shim) so the bundled JavaFX/ghostty natives
* resolve. If the shell inherited that path, host programs run inside the terminal
* (e.g. {@code flatpak}, {@code pdftoppm}) would load the Nix copies of libraries such
* as freetype/fontconfig/glib, which in turn drag in the Nix glibc through their
* RUNPATHs and clash with the host {@code libc.so.6}. We restore the user's original
* {@code LD_LIBRARY_PATH}, captured by the wrapper before it prepended anything.
*/
private static void sanitizeWrapperEnvironment(Map<String, String> environment) {
String hostLibraryPath = environment.remove("JPROTOTERM_HOST_LD_LIBRARY_PATH");
if (hostLibraryPath == null || hostLibraryPath.isEmpty()) {
environment.remove("LD_LIBRARY_PATH");
} else {
environment.put("LD_LIBRARY_PATH", hostLibraryPath);
}
// These are jprototerm's own runtime settings, not the user's shell environment.
environment.remove("GDK_BACKEND");
environment.remove("JLIBGHOSTTY_LIBRARY");
}
public void startReading(TerminalPane pane) {
reader.submit(() -> readOutput(pane));
}
@@ -56,7 +73,7 @@ public final class ShellSession implements AutoCloseable {
if (closed) {
return;
}
process.setWinSize(new WinSize(columns, rows));
pty.setWinSize(columns, rows);
}
public void send(String text) {
@@ -68,31 +85,32 @@ public final class ShellSession implements AutoCloseable {
return;
}
try {
stdin.write(bytes);
stdin.flush();
} catch (IOException ex) {
pty.write(bytes);
} catch (RuntimeException ex) {
close();
}
}
private void readOutput(TerminalPane pane) {
byte[] buffer = new byte[8192];
byte[] buffer = new byte[65536];
try {
int read;
while ((read = process.getInputStream().read(buffer)) != -1) {
if (!closed) {
while ((read = pty.read(buffer)) != -1) {
if (closed) {
break;
}
byte[] bytes = new byte[read];
System.arraycopy(buffer, 0, bytes, 0, read);
Platform.runLater(() -> {
if (!closed) {
// Feed the terminal model straight from the reader thread. terminal access is
// guarded by the per-terminal lock, and the render loop picks the change up on
// the next pulse. Avoiding a Platform.runLater hop per chunk removes a frame of
// latency and stops write tasks from contending with rendering on the FX thread
// when a TUI repaints heavily (the input-lag culprit).
pane.write(bytes);
}
});
}
}
} catch (IOException ex) {
} catch (RuntimeException ex) {
if (!closed) {
Platform.runLater(() -> pane.write("\r\nshell output stopped: " + ex.getMessage() + "\r\n"));
pane.write("\r\nshell output stopped: " + ex.getMessage() + "\r\n");
}
}
}
@@ -101,6 +119,6 @@ public final class ShellSession implements AutoCloseable {
public void close() {
closed = true;
reader.shutdownNow();
process.destroy();
pty.close();
}
}

View File

@@ -0,0 +1,288 @@
package com.gregor.jprototerm;
import java.util.ArrayList;
import java.util.Comparator;
import java.util.List;
import java.util.stream.Stream;
/**
* One tab: a row of tiled panes with a group of floating panes shown over them. Floating panes
* are shown/hidden as a group ({@code floatingVisible}), and there is always at least one tiled
* pane — a floating pane is promoted if the last tiled one closes — so the layout always has a
* base. The {@link Compositor} owns the tabs and renders only the current one; mutating methods
* return whether they actually changed anything so it can bump its layout version.
*/
final class Tab implements AutoCloseable {
private final AppConfig config;
private final TerminalMetrics metrics;
private final List<TerminalPane> tiled = new ArrayList<>();
private final List<TerminalPane> floating = new ArrayList<>();
private boolean floatingVisible;
private TerminalPane active;
// The floating pane to re-focus when the group is shown again, and to prefer when promoting
// after the last tiled pane closes.
private TerminalPane lastFocusedFloating;
// Last laid-out size, so a newly opened pane can be created at roughly its eventual rect
// (and thus grid). Seeded from the configured window size for the first pane, which is
// opened before any layout pass runs.
private double lastWidth;
private double lastHeight;
private double lastTopInset;
// Bumped whenever one of this tab's panes changes content; the compositor reads the current
// tab's value each frame as an O(1) "anything to repaint?" check.
private long contentVersion;
Tab(AppConfig config, TerminalMetrics metrics) {
this.config = config;
this.metrics = metrics;
this.lastWidth = config.windowWidth();
this.lastHeight = config.windowHeight();
TerminalPane first = openPane(false);
tiled.add(first);
active = first;
}
TerminalPane activePane() {
return active;
}
boolean isEmpty() {
return tiled.isEmpty() && floating.isEmpty();
}
long contentVersion() {
return contentVersion;
}
/**
* Panes to composite, bottom-to-top: tiled first, then (when shown) the floating group with
* the active floating pane on top.
*/
List<TerminalPane> panes() {
if (!floatingVisible || floating.isEmpty()) {
return List.copyOf(tiled);
}
List<TerminalPane> ordered = new ArrayList<>(tiled.size() + floating.size());
ordered.addAll(tiled);
for (TerminalPane pane : floating) {
if (pane != active) {
ordered.add(pane);
}
}
if (floating.contains(active)) {
ordered.add(active); // active floating pane on top
}
return List.copyOf(ordered);
}
List<TerminalPane> allPanes() {
List<TerminalPane> all = new ArrayList<>(tiled.size() + floating.size());
all.addAll(tiled);
all.addAll(floating);
return List.copyOf(all);
}
boolean isActive(TerminalPane pane) {
return pane != null && pane == active;
}
boolean focus(TerminalPane pane) {
if (pane == active || !isFocusable(pane)) {
return false;
}
setActive(pane);
return true;
}
void layout(double width, double height, double topInset) {
this.lastWidth = width;
this.lastHeight = height;
this.lastTopInset = topInset;
double availHeight = height - topInset;
double tileWidth = width / Math.max(1, tiled.size());
for (int i = 0; i < tiled.size(); i++) {
tiled.get(i).bounds(i * tileWidth, topInset, tileWidth, availHeight);
}
double floatingWidth = Math.max(420, width * 0.58);
double floatingHeight = Math.max(260, availHeight * 0.58);
for (int i = 0; i < floating.size(); i++) {
double offset = i * 28.0;
floating.get(i).bounds(
Math.min(width - floatingWidth - 12.0, ((width - floatingWidth) / 2.0) + offset),
Math.min(height - floatingHeight - 12.0, topInset + ((availHeight - floatingHeight) / 2.0) + offset),
floatingWidth,
floatingHeight);
}
}
boolean navigate(Direction direction) {
if (floating.contains(active) && navigateFloatingStack(direction)) {
return true;
}
TerminalPane target = focusable()
.filter(pane -> pane != active)
.filter(pane -> directionFilter(direction, active, pane))
.min(Comparator.comparingDouble(pane -> distance(active, pane)))
.orElse(null);
if (target != null) {
setActive(target);
return true;
}
return false;
}
void toggleFloating() {
if (floating.isEmpty()) {
createFloatingPane();
return;
}
if (floatingVisible) {
floatingVisible = false;
if (floating.contains(active)) {
setActive(tiled.get(0));
}
} else {
floatingVisible = true;
setActive(floating.contains(lastFocusedFloating) ? lastFocusedFloating : floating.get(floating.size() - 1));
}
}
/** Adds a floating pane while the floating group is shown, otherwise a tiled pane. */
void createPane() {
if (floatingVisible) {
createFloatingPane();
} else {
TerminalPane pane = openPane(false);
tiled.add(pane);
setActive(pane);
}
}
void closeActivePane() {
TerminalPane closing = active;
boolean wasFloating = floating.remove(closing);
if (!wasFloating) {
tiled.remove(closing);
}
if (closing == lastFocusedFloating) {
lastFocusedFloating = null;
}
closing.close();
if (tiled.isEmpty() && floating.isEmpty()) {
active = null; // tab is now empty; the compositor drops it
return;
}
// Always keep a tiled base: if the last tiled pane just closed, promote a floating one
// (preferring the last focused).
if (tiled.isEmpty()) {
TerminalPane promote = floating.contains(lastFocusedFloating) ? lastFocusedFloating : floating.get(0);
var promoteIndex = floating.indexOf(promote);
var nextFocussed = promoteIndex == 0 ? 0 : promoteIndex - 1;
floating.remove(promote);
tiled.add(promote);
if (promote == lastFocusedFloating) {
lastFocusedFloating = null;
if (!floating.isEmpty()) {
lastFocusedFloating = floating.isEmpty() ? null : floating.get(nextFocussed);
}
}
}
if (floating.isEmpty()) {
floatingVisible = false;
}
setActive(wasFloating && floatingVisible ? floating.get(floating.size() - 1) : tiled.get(0));
}
private void setActive(TerminalPane pane) {
active = pane;
if (floating.contains(pane)) {
lastFocusedFloating = pane;
}
}
private void createFloatingPane() {
TerminalPane pane = openPane(true);
floating.add(pane);
floatingVisible = true;
setActive(pane);
}
private boolean navigateFloatingStack(Direction direction) {
if (floating.size() < 2) {
return false;
}
int current = floating.indexOf(active);
if (current < 0) {
return false;
}
int next = switch (direction) {
case LEFT, UP -> current - 1;
case DOWN, RIGHT -> current + 1;
};
if (next < 0 || next >= floating.size()) {
return false;
}
setActive(floating.get(next));
return true;
}
private boolean isFocusable(TerminalPane pane) {
return tiled.contains(pane) || (floatingVisible && floating.contains(pane));
}
private Stream<TerminalPane> focusable() {
return floatingVisible ? Stream.concat(tiled.stream(), floating.stream()) : tiled.stream();
}
private void markContentChanged() {
contentVersion++;
}
private TerminalPane openPane(boolean asFloating) {
double availHeight = lastHeight - lastTopInset;
double widthPx;
double heightPx;
if (asFloating) {
widthPx = Math.max(420, lastWidth * 0.58);
heightPx = Math.max(260, availHeight * 0.58);
} else {
// A new tiled pane joins the row, so each gets 1/(n+1) of the width.
widthPx = lastWidth / (tiled.size() + 1);
heightPx = availHeight;
}
return TerminalPane.create(config, metrics, this::markContentChanged, widthPx, heightPx);
}
private static boolean directionFilter(Direction direction, TerminalPane current, TerminalPane candidate) {
double currentCenterX = current.x() + current.width() / 2.0;
double currentCenterY = current.y() + current.height() / 2.0;
double candidateCenterX = candidate.x() + candidate.width() / 2.0;
double candidateCenterY = candidate.y() + candidate.height() / 2.0;
return switch (direction) {
case LEFT -> candidateCenterX < currentCenterX;
case DOWN -> candidateCenterY > currentCenterY;
case UP -> candidateCenterY < currentCenterY;
case RIGHT -> candidateCenterX > currentCenterX;
};
}
private static double distance(TerminalPane current, TerminalPane candidate) {
double dx = (current.x() + current.width() / 2.0) - (candidate.x() + candidate.width() / 2.0);
double dy = (current.y() + current.height() / 2.0) - (candidate.y() + candidate.height() / 2.0);
return Math.sqrt(dx * dx + dy * dy);
}
@Override
public void close() {
tiled.forEach(TerminalPane::close);
floating.forEach(TerminalPane::close);
tiled.clear();
floating.clear();
}
}

View File

@@ -1,788 +0,0 @@
package com.gregor.jprototerm;
import dev.jlibghostty.KittyImageCompression;
import dev.jlibghostty.KittyImageFormat;
import dev.jlibghostty.KittyImageSnapshot;
import dev.jlibghostty.KittyPlacement;
import dev.jlibghostty.KittyPlacementLayer;
import dev.jlibghostty.KittyPlaceholder;
import dev.jlibghostty.KittyRenderInfo;
import dev.jlibghostty.KeyModifiers;
import dev.jlibghostty.MouseButton;
import dev.jlibghostty.MouseEncoderSize;
import dev.jlibghostty.MouseInput;
import dev.jlibghostty.RenderCell;
import dev.jlibghostty.RenderColor;
import dev.jlibghostty.RenderCursorStyle;
import dev.jlibghostty.RenderRow;
import dev.jlibghostty.RenderStateSnapshot;
import javafx.scene.canvas.Canvas;
import javafx.scene.canvas.GraphicsContext;
import javafx.scene.image.Image;
import javafx.scene.image.PixelFormat;
import javafx.scene.image.WritableImage;
import javafx.scene.input.InputEvent;
import javafx.scene.input.MouseEvent;
import javafx.scene.input.ScrollEvent;
import javafx.scene.input.ScrollEvent.VerticalTextScrollUnits;
import javafx.scene.paint.Color;
import javafx.scene.text.Font;
import javafx.scene.text.FontSmoothingType;
import javafx.scene.text.Text;
import java.io.ByteArrayInputStream;
import java.util.HashMap;
import java.util.List;
import java.util.Map;
public final class TerminalCanvasView {
private static final Color DEFAULT_FOREGROUND = Color.rgb(225, 229, 235);
private static final Color SELECTED_BACKGROUND = Color.rgb(52, 92, 140);
private final Canvas canvas = new Canvas();
private final TerminalWorkspace workspace;
private final AppConfig config;
private final Map<KittyImageKey, Image> kittyImageCache = new HashMap<>();
private final Map<TerminalPane, PaneRenderCache> paneRenderCache = new HashMap<>();
private String fontFamily;
private double fontSize;
private Font cachedFont;
private FontMetrics cachedMetrics;
private String cachedFontFamily;
private double cachedFontSize;
private String lastRenderKey;
private boolean mouseButtonPressed;
private MouseButton pressedButton = MouseButton.UNKNOWN;
public TerminalCanvasView(TerminalWorkspace workspace, AppConfig config) {
this.workspace = workspace;
this.config = config;
this.fontFamily = config.fontFamily();
this.fontSize = config.fontSize();
canvas.setFocusTraversable(true);
canvas.setOnMousePressed(this::handleMousePressed);
canvas.setOnMouseReleased(this::handleMouseReleased);
canvas.setOnMouseDragged(this::handleMouseDragged);
canvas.setOnMouseMoved(this::handleMouseMoved);
canvas.setOnScroll(this::handleScroll);
}
public Canvas canvas() {
return canvas;
}
public void setFont(String family, double size) {
this.fontFamily = family;
this.fontSize = size;
cachedFont = null;
cachedMetrics = null;
paneRenderCache.clear();
lastRenderKey = null;
}
public void render() {
double width = canvas.getWidth();
double height = canvas.getHeight();
workspace.layout(width, height);
Font font = currentFont();
FontMetrics metrics = currentFontMetrics();
List<TerminalPane> panes = workspace.panes();
String renderKey = renderKey(width, height, metrics, panes);
if (renderKey.equals(lastRenderKey)) {
return;
}
lastRenderKey = renderKey;
GraphicsContext gc = canvas.getGraphicsContext2D();
gc.setFill(Color.rgb(16, 16, 18));
gc.fillRect(0, 0, width, height);
gc.setFontSmoothingType(FontSmoothingType.LCD);
paneRenderCache.keySet().removeIf(pane -> !panes.contains(pane));
for (TerminalPane pane : panes) {
drawPane(gc, pane, font, metrics);
}
}
private void drawPane(GraphicsContext gc, TerminalPane pane, Font font, FontMetrics metrics) {
if (config.kittyGraphics() && paneHasKittyGraphics(pane)) {
paneRenderCache.remove(pane);
gc.save();
gc.beginPath();
gc.rect(pane.x(), pane.y(), pane.width(), pane.height());
gc.clip();
drawPaneContent(gc, pane, font, metrics, pane.x(), pane.y(), pane.width(), pane.height(), false);
gc.restore();
return;
}
PaneRenderCache cache = paneRenderCache.computeIfAbsent(pane, ignored -> new PaneRenderCache());
String cacheKey = paneCacheKey(pane, metrics);
int imageWidth = Math.max(1, (int) Math.ceil(pane.width()));
int imageHeight = Math.max(1, (int) Math.ceil(pane.height()));
if (cache.image == null || cache.canvas == null || cache.imageWidth != imageWidth || cache.imageHeight != imageHeight || !cacheKey.equals(cache.key)) {
cache.canvas = new Canvas(imageWidth, imageHeight);
drawPaneContent(cache.canvas.getGraphicsContext2D(), pane, font, metrics, 0.0, 0.0, imageWidth, imageHeight, true);
cache.image = new WritableImage(imageWidth, imageHeight);
cache.canvas.snapshot(null, cache.image);
cache.imageWidth = imageWidth;
cache.imageHeight = imageHeight;
cache.key = cacheKey;
}
gc.drawImage(cache.image, pane.x(), pane.y());
}
private void drawPaneContent(
GraphicsContext gc,
TerminalPane pane,
Font font,
FontMetrics metrics,
double x,
double y,
double width,
double height,
boolean clear
) {
if (clear) {
gc.clearRect(x, y, width, height);
}
gc.setFontSmoothingType(FontSmoothingType.LCD);
if (pane.floating()) {
gc.setGlobalAlpha(0.96);
}
gc.setFill(Color.rgb(9, 10, 12));
gc.fillRect(x, y, width, height);
gc.setGlobalAlpha(1.0);
gc.setStroke(workspace.isActive(pane) ? Color.rgb(87, 166, 255) : Color.rgb(52, 57, 65));
gc.setLineWidth(workspace.isActive(pane) ? 2.0 : 1.0);
gc.strokeRect(x + 0.5, y + 0.5, width - 1.0, height - 1.0);
gc.setFont(font);
int columns = Math.max(1, (int) ((width - 24.0) / metrics.cellWidth));
int rows = Math.max(1, (int) ((height - 24.0) / metrics.lineHeight));
pane.resize(columns, rows, (int) Math.round(metrics.cellWidth), (int) Math.round(metrics.lineHeight));
double left = x + 12.0;
double top = y + 12.0;
double baseline = top + metrics.baselineOffset;
RenderStateSnapshot snapshot = pane.renderSnapshot();
Map<KittyPlaceholderKey, KittyPlaceholderBounds> placeholderBounds = config.kittyGraphics()
? kittyPlaceholderBounds(snapshot)
: Map.of();
if (config.kittyGraphics()) {
drawKittyGraphics(gc, pane, KittyPlacementLayer.BELOW_TEXT, placeholderBounds, left, top, metrics.cellWidth, metrics.lineHeight);
}
if (snapshot != null) {
for (RenderRow row : snapshot.renderRows()) {
drawRow(gc, row, left, top, baseline, metrics.cellWidth, metrics.lineHeight);
}
}
if (snapshot != null) {
drawCursor(gc, snapshot, left, top, metrics.cellWidth, metrics.lineHeight);
}
if (config.kittyGraphics()) {
drawKittyGraphics(gc, pane, KittyPlacementLayer.ABOVE_TEXT, placeholderBounds, left, top, metrics.cellWidth, metrics.lineHeight);
}
}
private static FontMetrics measureFontMetrics(Font font) {
Text text = new Text("┃MgÅjy");
text.setFont(font);
double lineHeight = Math.max(1.0, text.getLayoutBounds().getHeight());
double baselineOffset = -text.getLayoutBounds().getMinY();
Text cell = new Text("M");
cell.setFont(font);
double cellWidth = Math.max(1.0, cell.getLayoutBounds().getWidth());
return new FontMetrics(cellWidth, lineHeight, baselineOffset);
}
private Font currentFont() {
if (cachedFont == null || !fontFamily.equals(cachedFontFamily) || fontSize != cachedFontSize) {
cachedFont = Font.font(fontFamily, fontSize);
cachedMetrics = null;
cachedFontFamily = fontFamily;
cachedFontSize = fontSize;
}
return cachedFont;
}
private FontMetrics currentFontMetrics() {
if (cachedMetrics == null) {
cachedMetrics = measureFontMetrics(currentFont());
}
return cachedMetrics;
}
private String renderKey(double width, double height, FontMetrics metrics, List<TerminalPane> panes) {
StringBuilder builder = new StringBuilder();
builder.append(width).append(':')
.append(height).append(':')
.append(workspace.version()).append(':')
.append(fontFamily).append(':')
.append(fontSize).append(':')
.append(metrics.cellWidth).append(':')
.append(metrics.lineHeight);
for (TerminalPane pane : panes) {
builder.append('|')
.append(System.identityHashCode(pane)).append(',')
.append(pane.renderVersion()).append(',')
.append(workspace.isActive(pane)).append(',')
.append(pane.x()).append(',')
.append(pane.y()).append(',')
.append(pane.width()).append(',')
.append(pane.height());
}
return builder.toString();
}
private String paneCacheKey(TerminalPane pane, FontMetrics metrics) {
return pane.renderVersion()
+ ":" + workspace.isActive(pane)
+ ":" + pane.width()
+ ":" + pane.height()
+ ":" + fontFamily
+ ":" + fontSize
+ ":" + metrics.cellWidth
+ ":" + metrics.lineHeight
+ ":" + config.kittyGraphics();
}
private static Map<KittyPlaceholderKey, KittyPlaceholderBounds> kittyPlaceholderBounds(RenderStateSnapshot snapshot) {
if (snapshot == null) {
return Map.of();
}
Map<KittyPlaceholderKey, KittyPlaceholderBounds> result = new HashMap<>();
for (RenderRow row : snapshot.renderRows()) {
for (RenderCell cell : row.cells()) {
cell.kittyPlaceholder().ifPresent(placeholder -> {
KittyPlaceholderKey key = new KittyPlaceholderKey(placeholder.imageId(), placeholder.placementId());
result.computeIfAbsent(key, ignored -> new KittyPlaceholderBounds()).include(row.row(), cell.column(), placeholder);
});
}
}
return result;
}
private void handleMousePressed(MouseEvent event) {
canvas.requestFocus();
TerminalPane pane = paneAt(event.getX(), event.getY());
if (pane == null) {
return;
}
workspace.focus(pane);
pressedButton = mouseButton(event);
mouseButtonPressed = true;
sendMouse(pane, MouseInput.press(pressedButton, eventX(pane, event.getX()), eventY(pane, event.getY()), modifiers(event)), true, event);
}
private void handleMouseReleased(MouseEvent event) {
TerminalPane pane = paneAt(event.getX(), event.getY());
if (pane == null) {
pane = workspace.activePane();
}
MouseButton button = pressedButton == MouseButton.UNKNOWN ? mouseButton(event) : pressedButton;
sendMouse(pane, MouseInput.release(button, eventX(pane, event.getX()), eventY(pane, event.getY()), modifiers(event)), false, event);
mouseButtonPressed = false;
pressedButton = MouseButton.UNKNOWN;
}
private void handleMouseDragged(MouseEvent event) {
TerminalPane pane = paneAt(event.getX(), event.getY());
if (pane == null) {
pane = workspace.activePane();
}
MouseButton button = pressedButton == MouseButton.UNKNOWN ? mouseButton(event) : pressedButton;
sendMouse(pane, MouseInput.drag(button, eventX(pane, event.getX()), eventY(pane, event.getY()), modifiers(event)), true, event);
}
private void handleMouseMoved(MouseEvent event) {
TerminalPane pane = paneAt(event.getX(), event.getY());
if (pane == null) {
return;
}
sendMouse(pane, MouseInput.motion(eventX(pane, event.getX()), eventY(pane, event.getY()), modifiers(event)), mouseButtonPressed, event);
}
private void handleScroll(ScrollEvent event) {
TerminalPane pane = paneAt(event.getX(), event.getY());
if (pane == null) {
return;
}
canvas.requestFocus();
workspace.focus(pane);
int direction = scrollDirection(event);
if (direction == 0) {
return;
}
MouseButton wheelButton = direction > 0 ? MouseButton.FOUR : MouseButton.FIVE;
int rows = scrollRows(event);
boolean sent = false;
for (int i = 0; i < rows; i++) {
sent |= sendMouse(
pane,
MouseInput.press(wheelButton, eventX(pane, event.getX()), eventY(pane, event.getY()), modifiers(event)),
mouseButtonPressed,
event
);
}
if (!sent) {
pane.scrollViewport(direction > 0 ? -rows : rows);
event.consume();
}
}
private boolean sendMouse(TerminalPane pane, MouseInput input, boolean anyButtonPressed, InputEvent event) {
MouseTarget target = mouseTarget(pane);
if (target == null) {
return false;
}
boolean sent = pane.sendMouse(input, target.size(), anyButtonPressed);
if (sent) {
event.consume();
}
return sent;
}
private TerminalPane paneAt(double x, double y) {
java.util.List<TerminalPane> panes = workspace.panes();
for (int i = panes.size() - 1; i >= 0; i--) {
TerminalPane pane = panes.get(i);
if (x >= pane.x() && x < pane.x() + pane.width() && y >= pane.y() && y < pane.y() + pane.height()) {
return pane;
}
}
return null;
}
private MouseTarget mouseTarget(TerminalPane pane) {
if (pane.width() <= 24.0 || pane.height() <= 24.0) {
return null;
}
FontMetrics metrics = currentFontMetrics();
int columns = Math.max(1, (int) ((pane.width() - 24.0) / metrics.cellWidth));
int rows = Math.max(1, (int) ((pane.height() - 24.0) / metrics.lineHeight));
long cellWidth = Math.max(1L, Math.round(metrics.cellWidth));
long cellHeight = Math.max(1L, Math.round(metrics.lineHeight));
long screenWidth = Math.max(1L, Math.round(columns * metrics.cellWidth));
long screenHeight = Math.max(1L, Math.round(rows * metrics.lineHeight));
return new MouseTarget(MouseEncoderSize.of(screenWidth, screenHeight, cellWidth, cellHeight), screenWidth, screenHeight);
}
private double eventX(TerminalPane pane, double canvasX) {
MouseTarget target = mouseTarget(pane);
if (target == null) {
return 0.0;
}
return clamp(canvasX - pane.x() - 12.0, 0.0, target.screenWidth() - 1.0);
}
private double eventY(TerminalPane pane, double canvasY) {
MouseTarget target = mouseTarget(pane);
if (target == null) {
return 0.0;
}
return clamp(canvasY - pane.y() - 12.0, 0.0, target.screenHeight() - 1.0);
}
private static double clamp(double value, double min, double max) {
return Math.max(min, Math.min(max, value));
}
private static KeyModifiers modifiers(MouseEvent event) {
return KeyModifiers.of(event.isShiftDown(), event.isControlDown(), event.isAltDown(), event.isMetaDown());
}
private static KeyModifiers modifiers(ScrollEvent event) {
return KeyModifiers.of(event.isShiftDown(), event.isControlDown(), event.isAltDown(), event.isMetaDown());
}
private static int scrollRows(ScrollEvent event) {
double rows;
if (event.getTextDeltaYUnits() == VerticalTextScrollUnits.LINES && event.getTextDeltaY() != 0.0) {
rows = Math.abs(event.getTextDeltaY());
} else if (event.getTextDeltaYUnits() == VerticalTextScrollUnits.PAGES && event.getTextDeltaY() != 0.0) {
rows = Math.abs(event.getTextDeltaY()) * 24.0;
} else if (event.getMultiplierY() > 0.0) {
rows = Math.abs(event.getDeltaY()) / event.getMultiplierY();
} else {
rows = Math.abs(event.getDeltaY()) / 40.0;
}
return Math.max(1, Math.min(64, (int) Math.ceil(rows)));
}
private static int scrollDirection(ScrollEvent event) {
if (event.getDeltaY() != 0.0) {
return event.getDeltaY() > 0.0 ? 1 : -1;
}
if (event.getTextDeltaYUnits() != VerticalTextScrollUnits.NONE && event.getTextDeltaY() != 0.0) {
return event.getTextDeltaY() > 0.0 ? 1 : -1;
}
return 0;
}
private static MouseButton mouseButton(MouseEvent event) {
return switch (event.getButton()) {
case PRIMARY -> MouseButton.LEFT;
case SECONDARY -> MouseButton.RIGHT;
case MIDDLE -> MouseButton.MIDDLE;
default -> MouseButton.UNKNOWN;
};
}
private static void drawRow(
GraphicsContext gc,
RenderRow row,
double left,
double top,
double baseline,
double cellWidth,
double lineHeight
) {
for (RenderCell cell : row.cells()) {
if (cell.kittyPlaceholder().isPresent()) {
continue;
}
double x = left + (cell.column() * cellWidth);
double cellTop = top + (row.row() * lineHeight);
cell.background().ifPresent(background -> {
gc.setFill(toFxColor(background));
gc.fillRect(x, cellTop, cellWidth, lineHeight);
});
if (cell.selected()) {
gc.setFill(SELECTED_BACKGROUND);
gc.fillRect(x, cellTop, cellWidth, lineHeight);
}
if (cell.codepoints().length == 0) {
continue;
}
double y = baseline + (row.row() * lineHeight);
Color foreground = cell.foreground().map(TerminalCanvasView::toFxColor).orElse(DEFAULT_FOREGROUND);
gc.setFill(foreground);
gc.fillText(cell.text(), x, y);
}
}
private static Color toFxColor(RenderColor color) {
return Color.rgb(color.red(), color.green(), color.blue());
}
private static void drawCursor(GraphicsContext gc, RenderStateSnapshot snapshot, double left, double top, double cellWidth, double lineHeight) {
if (!snapshot.cursorVisible() || !snapshot.cursorViewportHasValue()) {
return;
}
double x = left + (snapshot.cursorViewportX() * cellWidth);
double y = top + (snapshot.cursorViewportY() * lineHeight);
gc.setStroke(Color.rgb(225, 229, 235));
gc.setFill(Color.rgb(225, 229, 235, 0.28));
gc.setLineWidth(1.5);
RenderCursorStyle style = snapshot.cursorStyle();
if (style == RenderCursorStyle.BAR) {
gc.strokeLine(x + 0.5, y + 2.0, x + 0.5, y + lineHeight - 2.0);
} else if (style == RenderCursorStyle.UNDERLINE) {
gc.strokeLine(x + 1.0, y + lineHeight - 2.0, x + cellWidth - 1.0, y + lineHeight - 2.0);
} else if (style == RenderCursorStyle.BLOCK) {
gc.fillRect(x + 0.5, y + 1.0, Math.max(1.0, cellWidth - 1.0), Math.max(1.0, lineHeight - 2.0));
} else {
gc.strokeRect(x + 0.5, y + 1.0, Math.max(1.0, cellWidth - 1.0), Math.max(1.0, lineHeight - 2.0));
}
}
private void drawKittyGraphics(
GraphicsContext gc,
TerminalPane pane,
KittyPlacementLayer layer,
Map<KittyPlaceholderKey, KittyPlaceholderBounds> placeholderBounds,
double originX,
double originY,
double cellWidth,
double lineHeight
) {
pane.kittyGraphics().ifPresent(graphics -> {
for (KittyPlacement placement : graphics.placements(layer)) {
Image image = imageFor(placement);
if (image == null) {
continue;
}
if (placement.virtual()) {
drawVirtualKittyPlacement(gc, placement, image, placeholderBounds, originX, originY, cellWidth, lineHeight);
} else {
drawPinnedKittyPlacement(gc, placement, image, originX, originY, cellWidth, lineHeight);
}
}
});
}
private static void drawPinnedKittyPlacement(
GraphicsContext gc,
KittyPlacement placement,
Image image,
double originX,
double originY,
double cellWidth,
double lineHeight
) {
KittyRenderInfo renderInfo = placement.renderInfo().orElse(null);
if (renderInfo == null || !renderInfo.viewportVisible()) {
return;
}
double sourceX = renderInfo.sourceX();
double sourceY = renderInfo.sourceY();
double sourceWidth = renderInfo.sourceWidth();
double sourceHeight = renderInfo.sourceHeight();
if (sourceWidth <= 0.0 || sourceHeight <= 0.0) {
return;
}
double x = originX + (renderInfo.viewportColumn() * cellWidth) + placement.xOffset();
double y = originY + (renderInfo.viewportRow() * lineHeight) + placement.yOffset();
double width = renderInfo.pixelWidth() > 0 ? renderInfo.pixelWidth() : renderInfo.gridColumns() * cellWidth;
double height = renderInfo.pixelHeight() > 0 ? renderInfo.pixelHeight() : renderInfo.gridRows() * lineHeight;
if (width <= 0.0 || height <= 0.0) {
return;
}
gc.drawImage(image, sourceX, sourceY, sourceWidth, sourceHeight, x, y, width, height);
}
private static void drawVirtualKittyPlacement(
GraphicsContext gc,
KittyPlacement placement,
Image image,
Map<KittyPlaceholderKey, KittyPlaceholderBounds> placeholderBounds,
double originX,
double originY,
double cellWidth,
double lineHeight
) {
KittyPlaceholderBounds bounds = placeholderBounds.get(new KittyPlaceholderKey(placement.imageId(), placement.placementId()));
if (bounds == null) {
bounds = placeholderBounds.get(new KittyPlaceholderKey(placement.imageId(), 0));
}
if (bounds == null && placement.placementId() == 0) {
bounds = placeholderBounds.entrySet().stream()
.filter(entry -> entry.getKey().imageId() == placement.imageId())
.map(Map.Entry::getValue)
.findFirst()
.orElse(null);
}
if (bounds == null || bounds.isEmpty()) {
return;
}
SourceRect source = sourceRect(placement, image);
if (source.width() <= 0.0 || source.height() <= 0.0) {
return;
}
long gridColumns = gridColumns(placement, bounds);
long gridRows = gridRows(placement, bounds);
double sourceCellWidth = source.width() / Math.max(1L, gridColumns);
double sourceCellHeight = source.height() / Math.max(1L, gridRows);
double sourceX = source.x() + (bounds.minSourceColumn * sourceCellWidth);
double sourceY = source.y() + (bounds.minSourceRow * sourceCellHeight);
double sourceWidth = bounds.sourceColumns() * sourceCellWidth;
double sourceHeight = bounds.sourceRows() * sourceCellHeight;
double x = originX + (bounds.minColumn * cellWidth);
double y = originY + (bounds.minRow * lineHeight);
double availableWidth = bounds.columns() * cellWidth;
double availableHeight = bounds.rows() * lineHeight;
if (sourceWidth <= 0.0 || sourceHeight <= 0.0 || availableWidth <= 0.0 || availableHeight <= 0.0) {
return;
}
double scale = Math.min(availableWidth / sourceWidth, availableHeight / sourceHeight);
double width = sourceWidth * scale;
double height = sourceHeight * scale;
gc.drawImage(image, sourceX, sourceY, sourceWidth, sourceHeight, x, y, width, height);
}
private static long gridColumns(KittyPlacement placement, KittyPlaceholderBounds bounds) {
if (placement.columns() > 0) {
return placement.columns();
}
return Math.max(bounds.maxSourceColumn + 1, bounds.sourceColumns());
}
private static long gridRows(KittyPlacement placement, KittyPlaceholderBounds bounds) {
if (placement.rows() > 0) {
return placement.rows();
}
return Math.max(bounds.maxSourceRow + 1, bounds.sourceRows());
}
private static SourceRect sourceRect(KittyPlacement placement, Image image) {
double sourceX = placement.sourceX();
double sourceY = placement.sourceY();
double sourceWidth = placement.sourceWidth() > 0 ? placement.sourceWidth() : image.getWidth() - sourceX;
double sourceHeight = placement.sourceHeight() > 0 ? placement.sourceHeight() : image.getHeight() - sourceY;
return new SourceRect(sourceX, sourceY, Math.min(sourceWidth, image.getWidth() - sourceX), Math.min(sourceHeight, image.getHeight() - sourceY));
}
private Image imageFor(KittyPlacement placement) {
return placement.image().map(snapshot -> {
byte[] data = snapshot.data();
KittyImageKey key = KittyImageKey.of(snapshot, data);
Image cached = kittyImageCache.get(key);
if (cached != null) {
return cached;
}
kittyImageCache.keySet().removeIf(existing -> existing.id() == snapshot.id());
Image decoded = decodeImage(snapshot, data);
if (decoded != null) {
kittyImageCache.put(key, decoded);
}
return decoded;
}).orElse(null);
}
private boolean paneHasKittyGraphics(TerminalPane pane) {
return pane.kittyGraphics()
.map(graphics -> !graphics.placements().isEmpty())
.orElse(false);
}
private Image decodeImage(KittyImageSnapshot snapshot, byte[] data) {
if (snapshot.compression() != KittyImageCompression.NONE) {
return null;
}
if (snapshot.format() == KittyImageFormat.PNG) {
return new Image(new ByteArrayInputStream(data));
}
int width = Math.toIntExact(snapshot.width());
int height = Math.toIntExact(snapshot.height());
WritableImage image = new WritableImage(width, height);
if (snapshot.format() == KittyImageFormat.RGBA) {
image.getPixelWriter().setPixels(0, 0, width, height, PixelFormat.getByteBgraInstance(), rgbaToBgra(data), 0, width * 4);
} else if (snapshot.format() == KittyImageFormat.RGB) {
image.getPixelWriter().setPixels(0, 0, width, height, PixelFormat.getByteRgbInstance(), data, 0, width * 3);
}
return image;
}
private static byte[] rgbaToBgra(byte[] rgba) {
byte[] bgra = new byte[rgba.length];
for (int i = 0; i + 3 < rgba.length; i += 4) {
bgra[i] = rgba[i + 2];
bgra[i + 1] = rgba[i + 1];
bgra[i + 2] = rgba[i];
bgra[i + 3] = rgba[i + 3];
}
return bgra;
}
private record FontMetrics(double cellWidth, double lineHeight, double baselineOffset) {
}
private record MouseTarget(MouseEncoderSize size, long screenWidth, long screenHeight) {
}
private record KittyImageKey(long id, long number, long width, long height, KittyImageFormat format, int dataLength, long fingerprint) {
private static KittyImageKey of(KittyImageSnapshot snapshot, byte[] data) {
return new KittyImageKey(
snapshot.id(),
snapshot.number(),
snapshot.width(),
snapshot.height(),
snapshot.format(),
data.length,
fingerprint(data)
);
}
private static long fingerprint(byte[] data) {
long hash = 0xcbf29ce484222325L;
for (byte value : data) {
hash ^= Byte.toUnsignedInt(value);
hash *= 0x100000001b3L;
}
return hash;
}
}
private record KittyPlaceholderKey(long imageId, long placementId) {
}
private record SourceRect(double x, double y, double width, double height) {
}
private static final class KittyPlaceholderBounds {
private int minRow = Integer.MAX_VALUE;
private int maxRow = Integer.MIN_VALUE;
private int minColumn = Integer.MAX_VALUE;
private int maxColumn = Integer.MIN_VALUE;
private long minSourceRow = Long.MAX_VALUE;
private long maxSourceRow = Long.MIN_VALUE;
private long minSourceColumn = Long.MAX_VALUE;
private long maxSourceColumn = Long.MIN_VALUE;
private void include(int row, int column, KittyPlaceholder placeholder) {
minRow = Math.min(minRow, row);
maxRow = Math.max(maxRow, row);
minColumn = Math.min(minColumn, column);
maxColumn = Math.max(maxColumn, column);
minSourceRow = Math.min(minSourceRow, placeholder.sourceRow());
maxSourceRow = Math.max(maxSourceRow, placeholder.sourceRow());
minSourceColumn = Math.min(minSourceColumn, placeholder.sourceColumn());
maxSourceColumn = Math.max(maxSourceColumn, placeholder.sourceColumn());
}
private boolean isEmpty() {
return minRow == Integer.MAX_VALUE;
}
private int rows() {
return maxRow - minRow + 1;
}
private int columns() {
return maxColumn - minColumn + 1;
}
private long sourceRows() {
return maxSourceRow - minSourceRow + 1;
}
private long sourceColumns() {
return maxSourceColumn - minSourceColumn + 1;
}
}
private static final class PaneRenderCache {
private Canvas canvas;
private WritableImage image;
private int imageWidth;
private int imageHeight;
private String key;
}
}

View File

@@ -0,0 +1,86 @@
package com.gregor.jprototerm;
import javafx.scene.text.Font;
import javafx.scene.text.Text;
/**
* Cell geometry shared by the {@link Compositor} and every {@link TerminalPane}.
*
* <p>The nominal cell width/height come from measuring the font, but a grid can't use
* fractional cells, so the measured size is snapped to whole (logical) pixels here — that
* snapping is why the value isn't purely a property of the font. The compositor owns the
* single instance (it holds the canvas, which is the pixel context), hands it to panes so
* they can turn their rect into a column/row count themselves, and re-measures it on a font
* change so every pane observes the new geometry through the shared reference.
*/
public final class TerminalMetrics {
/** Inset, in pixels, between a pane's edge and its content on every side. */
public static final double PADDING = 12.0;
private String fontFamily;
private double fontSize;
private Font font;
private double cellWidth;
private double lineHeight;
private double baselineOffset;
public TerminalMetrics(String fontFamily, double fontSize) {
setFont(fontFamily, fontSize);
}
public void setFont(String fontFamily, double fontSize) {
this.fontFamily = fontFamily;
this.fontSize = fontSize;
this.font = Font.font(fontFamily, fontSize);
measure(font);
}
public String fontFamily() {
return fontFamily;
}
public double fontSize() {
return fontSize;
}
public Font font() {
return font;
}
public double cellWidth() {
return cellWidth;
}
public double lineHeight() {
return lineHeight;
}
public double baselineOffset() {
return baselineOffset;
}
/** Columns that fit in a pane of the given pixel width (after subtracting the padding). */
public int columnsFor(double widthPx) {
return Math.max(1, (int) ((widthPx - 2 * PADDING) / cellWidth));
}
/** Rows that fit in a pane of the given pixel height (after subtracting the padding). */
public int rowsFor(double heightPx) {
return Math.max(1, (int) ((heightPx - 2 * PADDING) / lineHeight));
}
private void measure(Font font) {
Text text = new Text("┃MgÅjy");
text.setFont(font);
// Snap the cell size to whole pixels so cells tile on integer boundaries. Fractional
// cell metrics put every cell edge on a sub-pixel position, leaving anti-aliased
// seams that show up as a faint grid behind the themed cell backgrounds. Rounding
// leaves a few pixels of unused space at the right/bottom edge, which is fine.
this.lineHeight = Math.max(1.0, Math.round(text.getLayoutBounds().getHeight()));
this.baselineOffset = -text.getLayoutBounds().getMinY();
Text cell = new Text("M");
cell.setFont(font);
this.cellWidth = Math.max(1.0, Math.round(cell.getLayoutBounds().getWidth()));
}
}

View File

@@ -1,27 +1,39 @@
package com.gregor.jprototerm;
import dev.jlibghostty.DeviceAttributes;
import dev.jlibghostty.Ghostty;
import dev.jlibghostty.KittyGraphics;
import dev.jlibghostty.MouseAction;
import dev.jlibghostty.MouseEncoder;
import dev.jlibghostty.MouseEncoderSize;
import dev.jlibghostty.MouseInput;
import dev.jlibghostty.RenderState;
import dev.jlibghostty.RenderStateSnapshot;
import dev.jlibghostty.ScrollViewport;
import dev.jlibghostty.Terminal;
import dev.jlibghostty.TerminalOptions;
import dev.jlibghostty.DeviceAttributes;
import java.util.Optional;
import java.util.concurrent.atomic.AtomicReference;
import java.util.concurrent.atomic.AtomicLong;
/**
* One terminal: owns its ghostty {@link Terminal}, the {@link ShellSession}/pty driving it,
* and its on-screen geometry and grid. It does not draw itself; {@link TerminalPaneNode}
* reads snapshots from it and represents the visible rows and kitty graphics as JavaFX nodes.
*/
public final class TerminalPane implements AutoCloseable {
private final Terminal terminal;
private final TerminalMetrics metrics;
private final boolean kittyEnabled;
// Run on every content change so the owning tab can bump its content version — the
// compositor's O(1) "did the current tab change?" gate.
private final Runnable onContentChange;
private final MouseEncoder mouseEncoder = new MouseEncoder();
private final AtomicReference<RenderStateSnapshot> renderSnapshot = new AtomicReference<>();
// A persistent render state (reused across frames) is what makes ghostty's per-row dirty
// tracking meaningful: update() accumulates dirty since the last resetDirty().
private final RenderState renderState = new RenderState();
private RenderStateSnapshot cachedSnapshot;
private ShellSession session;
private boolean floating;
private boolean visible = true;
private double x;
private double y;
private double width;
@@ -30,22 +42,48 @@ public final class TerminalPane implements AutoCloseable {
private int rows;
private int pixelWidth;
private int pixelHeight;
private long renderVersion;
private final AtomicLong contentVersion = new AtomicLong();
private volatile long snapshotVersion = -1;
private TerminalPane(Terminal terminal, int columns, int rows) {
private TerminalPane(Terminal terminal, TerminalMetrics metrics, boolean kittyEnabled,
Runnable onContentChange, int columns, int rows) {
this.terminal = terminal;
this.metrics = metrics;
this.kittyEnabled = kittyEnabled;
this.onContentChange = onContentChange;
this.columns = columns;
this.rows = rows;
}
public static TerminalPane create(int columns, int rows, long maxScrollback) {
Terminal terminal = Ghostty.open(new TerminalOptions(columns, rows, maxScrollback));
/**
* Opens a pane sized to fit the given pixel rect: the shared cell metrics decide how many
* columns and rows fit, and that grid is handed to ghostty and the shell at start-up. A
* non-positive size falls back to the configured default grid (used before the first
* layout, when no rect is known yet). The pane owns the shell session it starts and runs
* {@code onContentChange} on every content change.
*/
public static TerminalPane create(AppConfig config, TerminalMetrics metrics, Runnable onContentChange, double widthPx, double heightPx) {
int columns = widthPx > 0 ? metrics.columnsFor(widthPx) : config.columns();
int rows = heightPx > 0 ? metrics.rowsFor(heightPx) : config.rows();
Terminal terminal = Ghostty.open(new TerminalOptions(columns, rows, config.maxScrollback()));
terminal.setDeviceAttributesProvider(DeviceAttributes::xtermCompatible);
TerminalPane pane = new TerminalPane(terminal, columns, rows);
TerminalPane pane = new TerminalPane(terminal, metrics, config.kittyGraphics(), onContentChange, columns, rows);
pane.refresh();
pane.attach(ShellSession.start(config.shell(), config.envOverride(), pane, columns, rows));
return pane;
}
private void attach(ShellSession session) {
this.session = session;
terminal.setPtyWriter(bytes -> {
ShellSession current = this.session;
if (current != null) {
current.send(bytes);
}
});
session.startReading(this);
}
public void write(String text) {
synchronized (terminal) {
terminal.write(text);
@@ -60,17 +98,6 @@ public final class TerminalPane implements AutoCloseable {
}
}
public void attach(ShellSession session) {
this.session = session;
terminal.setPtyWriter(bytes -> {
ShellSession current = this.session;
if (current != null) {
current.send(bytes);
}
});
session.startReading(this);
}
public void send(String text) {
scrollViewportToBottom();
if (session != null) {
@@ -104,15 +131,55 @@ public final class TerminalPane implements AutoCloseable {
}
}
public void scrollViewportToBottom() {
private void scrollViewportToBottom() {
synchronized (terminal) {
terminal.scrollViewport(ScrollViewport.bottom());
refresh();
}
}
public RenderStateSnapshot renderSnapshot() {
return renderSnapshot.get();
/**
* Incremental snapshot: cells are marshalled only for rows that changed since the last
* frame (global dirty == PARTIAL), reused across calls for the same content version.
* Snapshotting is deferred here rather than done in refresh(), so a burst of writes
* between two frames collapses into a single snapshot.
*/
public RenderStateSnapshot snapshot() {
return takeSnapshot(false);
}
/**
* Full snapshot with every row's cells populated. Used where the whole pane is redrawn
* regardless of dirty state (the kitty-graphics path).
*/
public RenderStateSnapshot snapshotFull() {
return takeSnapshot(true);
}
private RenderStateSnapshot takeSnapshot(boolean full) {
synchronized (terminal) {
long version = contentVersion.get();
if (full) {
long updateStart = RenderProfiler.start();
renderState.update(terminal);
RenderProfiler.stop(RenderProfiler.UPDATE, updateStart);
long marshalStart = RenderProfiler.start();
cachedSnapshot = renderState.snapshot();
RenderProfiler.stop(RenderProfiler.MARSHAL, marshalStart);
renderState.resetDirty();
snapshotVersion = version;
} else if (snapshotVersion != version) {
long updateStart = RenderProfiler.start();
renderState.update(terminal);
RenderProfiler.stop(RenderProfiler.UPDATE, updateStart);
long marshalStart = RenderProfiler.start();
cachedSnapshot = renderState.snapshotIncremental();
RenderProfiler.stop(RenderProfiler.MARSHAL, marshalStart);
renderState.resetDirty();
snapshotVersion = version;
}
return cachedSnapshot;
}
}
public String scrollbackText() {
@@ -121,8 +188,17 @@ public final class TerminalPane implements AutoCloseable {
}
}
public long renderVersion() {
return renderVersion;
/** This pane's own content revision, bumped on every change (see {@link #refresh()}). */
public long contentVersion() {
return contentVersion.get();
}
long snapshotVersion() {
return snapshotVersion;
}
public boolean kittyEnabled() {
return kittyEnabled;
}
public Optional<KittyGraphics> kittyGraphics() {
@@ -131,22 +207,6 @@ public final class TerminalPane implements AutoCloseable {
}
}
public boolean floating() {
return floating;
}
public void setFloating(boolean floating) {
this.floating = floating;
}
public boolean visible() {
return visible;
}
public void setVisible(boolean visible) {
this.visible = visible;
}
public double x() {
return x;
}
@@ -170,7 +230,14 @@ public final class TerminalPane implements AutoCloseable {
this.height = height;
}
public void resize(int columns, int rows, int pixelWidth, int pixelHeight) {
/** Recompute the ghostty grid from the current bounds and the shared cell metrics. */
public void fitToBounds() {
int columns = metrics.columnsFor(width);
int rows = metrics.rowsFor(height);
resize(columns, rows, (int) Math.round(metrics.cellWidth()), (int) Math.round(metrics.lineHeight()));
}
private void resize(int columns, int rows, int pixelWidth, int pixelHeight) {
if (columns <= 0 || rows <= 0 || pixelWidth <= 0 || pixelHeight <= 0) {
return;
}
@@ -192,8 +259,11 @@ public final class TerminalPane implements AutoCloseable {
}
private void refresh() {
renderSnapshot.set(terminal.renderSnapshot());
renderVersion++;
// Mark this pane's content dirty (the snapshot is computed lazily in the paint path,
// so a burst of writes collapses into one snapshot per frame) and tell the owning tab
// one of its panes changed.
contentVersion.incrementAndGet();
onContentChange.run();
}
@Override
@@ -203,6 +273,7 @@ public final class TerminalPane implements AutoCloseable {
session = null;
}
mouseEncoder.close();
renderState.close();
terminal.close();
}
}

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@@ -1,293 +0,0 @@
package com.gregor.jprototerm;
import java.util.ArrayList;
import java.util.Comparator;
import java.util.List;
public final class TerminalWorkspace implements AutoCloseable {
private final AppConfig config;
private final List<TerminalPane> panes = new ArrayList<>();
private int activeIndex;
private int hiddenFloatingFocusIndex = -1;
private long version;
public TerminalWorkspace(AppConfig config) {
this.config = config;
panes.add(openPane(false));
}
public TerminalPane activePane() {
return panes.get(activeIndex);
}
public List<TerminalPane> panes() {
List<TerminalPane> visible = panes.stream().filter(TerminalPane::visible).toList();
TerminalPane active = activePane();
if (!active.visible() || !active.floating()) {
return visible;
}
List<TerminalPane> ordered = new ArrayList<>(visible.size());
visible.stream()
.filter(pane -> pane != active)
.forEach(ordered::add);
ordered.add(active);
return List.copyOf(ordered);
}
public boolean isActive(TerminalPane pane) {
return activePane() == pane;
}
public long version() {
return version;
}
public void focus(TerminalPane pane) {
int index = panes.indexOf(pane);
if (index >= 0 && pane.visible() && activeIndex != index) {
activeIndex = index;
version++;
}
}
public void layout(double width, double height) {
List<TerminalPane> tiled = panes.stream()
.filter(TerminalPane::visible)
.filter(pane -> !pane.floating())
.toList();
int tileCount = Math.max(1, tiled.size());
double tileWidth = width / tileCount;
for (int i = 0; i < tiled.size(); i++) {
tiled.get(i).bounds(i * tileWidth, 0, tileWidth, height);
}
List<TerminalPane> floating = panes.stream()
.filter(TerminalPane::visible)
.filter(TerminalPane::floating)
.toList();
for (int i = 0; i < floating.size(); i++) {
TerminalPane pane = floating.get(i);
if (pane.visible() && pane.floating()) {
double floatingWidth = Math.max(420, width * 0.58);
double floatingHeight = Math.max(260, height * 0.58);
double offset = i * 28.0;
pane.bounds(
Math.min(width - floatingWidth - 12.0, ((width - floatingWidth) / 2.0) + offset),
Math.min(height - floatingHeight - 12.0, ((height - floatingHeight) / 2.0) + offset),
floatingWidth,
floatingHeight
);
}
}
}
public void navigate(Direction direction) {
TerminalPane current = activePane();
if (current.floating() && navigateFloatingStack(direction)) {
version++;
return;
}
panes.stream()
.filter(TerminalPane::visible)
.filter(pane -> pane != current)
.filter(pane -> directionFilter(direction, current, pane))
.min(Comparator.comparingDouble(pane -> distance(current, pane)))
.ifPresent(pane -> {
activeIndex = panes.indexOf(pane);
version++;
});
}
public void toggleFloating() {
List<TerminalPane> floating = panes.stream()
.filter(TerminalPane::floating)
.toList();
if (floating.isEmpty()) {
createFloatingPane();
return;
}
boolean anyVisible = floating.stream().anyMatch(TerminalPane::visible);
if (anyVisible) {
TerminalPane active = activePane();
hiddenFloatingFocusIndex = active.floating() ? activeIndex : firstVisibleFloatingIndex();
floating.forEach(pane -> pane.setVisible(false));
activeIndex = firstVisibleNonFloatingIndex();
version++;
} else {
floating.forEach(pane -> pane.setVisible(true));
activeIndex = visibleIndexOrFallback(hiddenFloatingFocusIndex, panes.indexOf(floating.get(floating.size() - 1)));
hiddenFloatingFocusIndex = -1;
version++;
}
}
public void createFloatingPane() {
TerminalPane pane = openPane(true);
panes.add(pane);
activeIndex = panes.size() - 1;
version++;
}
public void nextFloatingPane() {
TerminalPane next = nextFloatingAfter(activeIndex);
next.setVisible(true);
activeIndex = panes.indexOf(next);
version++;
}
public void closeActivePane() {
TerminalPane active = activePane();
if (!active.floating() || panes.stream().filter(pane -> !pane.floating()).count() == 0) {
return;
}
int removed = activeIndex;
int previous = previousVisibleIndex(removed);
panes.remove(removed);
active.close();
activeIndex = adjustIndexAfterRemoval(previous, removed);
hiddenFloatingFocusIndex = adjustHiddenFocusAfterRemoval(hiddenFloatingFocusIndex, removed);
version++;
}
private TerminalPane nextFloatingAfter(int index) {
for (int i = index + 1; i < panes.size(); i++) {
TerminalPane pane = panes.get(i);
if (pane.floating()) {
return pane;
}
}
for (int i = 0; i <= index && i < panes.size(); i++) {
TerminalPane pane = panes.get(i);
if (pane.floating()) {
return pane;
}
}
return createAndReturnFloatingPane();
}
private TerminalPane createAndReturnFloatingPane() {
TerminalPane pane = openPane(true);
panes.add(pane);
return pane;
}
private boolean navigateFloatingStack(Direction direction) {
List<TerminalPane> floating = panes.stream()
.filter(TerminalPane::visible)
.filter(TerminalPane::floating)
.toList();
if (floating.size() < 2) {
return false;
}
int current = floating.indexOf(activePane());
if (current < 0) {
return false;
}
int next = switch (direction) {
case LEFT, UP -> current - 1;
case DOWN, RIGHT -> current + 1;
};
if (next < 0 || next >= floating.size()) {
return false;
}
activeIndex = panes.indexOf(floating.get(next));
return true;
}
private int firstVisibleFloatingIndex() {
for (int i = 0; i < panes.size(); i++) {
TerminalPane pane = panes.get(i);
if (pane.visible() && pane.floating()) {
return i;
}
}
return -1;
}
private int firstVisibleNonFloatingIndex() {
for (int i = 0; i < panes.size(); i++) {
TerminalPane pane = panes.get(i);
if (pane.visible() && !pane.floating()) {
return i;
}
}
return 0;
}
private int previousVisibleIndex(int index) {
for (int i = index - 1; i >= 0; i--) {
if (panes.get(i).visible()) {
return i;
}
}
for (int i = index + 1; i < panes.size(); i++) {
if (panes.get(i).visible()) {
return i;
}
}
return firstVisibleNonFloatingIndex();
}
private int visibleIndexOrFallback(int index, int fallback) {
if (index >= 0 && index < panes.size() && panes.get(index).visible()) {
return index;
}
return fallback;
}
private static int adjustIndexAfterRemoval(int index, int removedIndex) {
if (index < 0) {
return 0;
}
return index > removedIndex ? index - 1 : index;
}
private static int adjustHiddenFocusAfterRemoval(int index, int removedIndex) {
if (index < 0 || index == removedIndex) {
return -1;
}
return index > removedIndex ? index - 1 : index;
}
private TerminalPane openPane(boolean floating) {
TerminalPane pane = TerminalPane.create(config.columns(), config.rows(), config.maxScrollback());
pane.setFloating(floating);
pane.attach(ShellSession.start(config.shell(), pane, config.columns(), config.rows()));
return pane;
}
private static boolean directionFilter(Direction direction, TerminalPane current, TerminalPane candidate) {
double currentCenterX = current.x() + current.width() / 2.0;
double currentCenterY = current.y() + current.height() / 2.0;
double candidateCenterX = candidate.x() + candidate.width() / 2.0;
double candidateCenterY = candidate.y() + candidate.height() / 2.0;
return switch (direction) {
case LEFT -> candidateCenterX < currentCenterX;
case DOWN -> candidateCenterY > currentCenterY;
case UP -> candidateCenterY < currentCenterY;
case RIGHT -> candidateCenterX > currentCenterX;
};
}
private static double distance(TerminalPane current, TerminalPane candidate) {
double dx = (current.x() + current.width() / 2.0) - (candidate.x() + candidate.width() / 2.0);
double dy = (current.y() + current.height() / 2.0) - (candidate.y() + candidate.height() / 2.0);
return Math.sqrt(dx * dx + dy * dy);
}
@Override
public void close() {
for (TerminalPane pane : panes) {
pane.close();
}
panes.clear();
}
}