Files
rustdesk/flutter/lib/models/input_modifier_utils.dart
fufesou 03a7fc5992 fix(flutter): align terminal shortcuts with platform conventions (#15970)
* fix(flutter): align terminal shortcuts with platform conventions

Signed-off-by: fufesou <linlong1266@gmail.com>

* fix(flutter): handle Linux terminal paste with modifier locks

Detect platform-specific paste shortcuts so Ctrl+Shift+V bypasses
virtual Ctrl/Alt modifiers on Linux. Add regression coverage.

Signed-off-by: fufesou <linlong1266@gmail.com>

---------

Signed-off-by: fufesou <linlong1266@gmail.com>
2026-08-27 16:33:58 +08:00

202 lines
6.4 KiB
Dart

import 'package:flutter/services.dart';
import 'package:flutter/widgets.dart';
/// Identifies where terminal input originated so paste data can bypass all
/// keyboard-only transformations.
enum TerminalInputSource {
keyboard,
paste,
}
/// Returns true when a stale mobile one-shot Shift state should be released
/// by replaying a tracked Shift key-down as a synthesized key-up.
///
/// This is only valid on mobile when Flutter's cached Shift state is still on
/// (`cachedShiftPressed == true`) but the current hardware/raw event reports
/// Shift as off (`actualShiftPressed == false`).
///
/// A tracked Shift key-down is required so the caller can safely synthesize the
/// matching key-up. Both `shiftLeft` and `shiftRight` are excluded because the
/// Shift key event itself must be processed first; otherwise we could release
/// the tracked key while still handling the original Shift press/release.
/// Callers should evaluate this only after their cached modifier state has been
/// updated for the current event.
///
/// When this returns true, the caller logs a line like:
/// `input: releasing stale mobile Shift before replaying tracked raw key-up`
/// immediately before calling `_releaseTrackedRawShiftKeyEventIfNeeded()`.
bool shouldReleaseStaleMobileShift({
required bool isMobile,
required bool cachedShiftPressed,
required bool actualShiftPressed,
required LogicalKeyboardKey logicalKey,
required bool hasTrackedShiftKeyDown,
}) {
if (!isMobile || !cachedShiftPressed || actualShiftPressed) {
return false;
}
if (!hasTrackedShiftKeyDown) {
return false;
}
if (logicalKey == LogicalKeyboardKey.shiftLeft ||
logicalKey == LogicalKeyboardKey.shiftRight) {
return false;
}
return true;
}
/// Applies the terminal Ctrl/Alt one-shot modifiers to a single input payload.
///
String applyTerminalInputModifiers(
String data, {
required bool ctrlLocked,
required bool altLocked,
}) {
var result = data;
if (ctrlLocked) {
result = _applyTerminalCtrlModifier(result);
}
if (altLocked) {
result = '\x1B$result';
}
return result;
}
/// Builds the exact payload xterm sends for paste, without applying modifiers.
String terminalPastePayload(String text, {required bool bracketedPasteMode}) {
if (!bracketedPasteMode) {
return text;
}
return '\x1B[200~$text\x1B[201~';
}
/// Returns whether one-shot Ctrl/Alt may transform and consume this input.
///
/// xterm emits terminal control keys as either one control byte or a longer
/// escape sequence. Neither form is ordinary text input, so a pending modifier
/// must survive until the user enters a printable character.
bool shouldApplyTerminalInputModifiers(String data) {
if (data.characters.length != 1) return false;
final codeUnit = data.codeUnitAt(0);
return codeUnit >= 0x20 && codeUnit != 0x7F;
}
/// Builds the payload sent to the remote terminal for keyboard and paste input.
///
/// Keyboard input keeps the mobile Enter workaround and one-shot Ctrl/Alt
/// mapping. Paste input deliberately bypasses both transformations so even a
/// one-character clipboard payload is preserved exactly.
String prepareTerminalInputPayload(
String data, {
required TerminalInputSource source,
required bool isMobileOrWebMobile,
required bool bracketedPasteMode,
required bool ctrlLocked,
required bool altLocked,
}) {
if (source == TerminalInputSource.paste) {
return terminalPastePayload(
data,
bracketedPasteMode: bracketedPasteMode,
);
}
var result = data;
if (isMobileOrWebMobile && result == '\n') {
result = '\r';
}
if ((ctrlLocked || altLocked) && shouldApplyTerminalInputModifiers(result)) {
result = applyTerminalInputModifiers(
result,
ctrlLocked: ctrlLocked,
altLocked: altLocked,
);
}
return result;
}
/// Returns true when a hardware paste shortcut must bypass keyboard modifiers.
///
/// xterm already handles each platform's paste shortcut in the common case.
/// Only intercept while a virtual Ctrl/Alt lock is active, because xterm can
/// emit a one-character paste as normal text when bracketed paste mode is off.
bool shouldHandleTerminalPasteShortcut({
required TargetPlatform platform,
required LogicalKeyboardKey logicalKey,
required bool isKeyDown,
required bool isKeyRepeat,
required bool controlPressed,
required bool metaPressed,
required bool altPressed,
required bool shiftPressed,
required bool modifierLockActive,
}) {
if (!modifierLockActive) return false;
if (!isKeyDown && !isKeyRepeat) return false;
if (logicalKey != LogicalKeyboardKey.keyV) return false;
if (altPressed) return false;
switch (platform) {
case TargetPlatform.linux:
return controlPressed && !metaPressed && shiftPressed;
case TargetPlatform.iOS:
case TargetPlatform.macOS:
return !controlPressed && metaPressed && !shiftPressed;
case TargetPlatform.android:
case TargetPlatform.fuchsia:
case TargetPlatform.windows:
return controlPressed && !metaPressed && !shiftPressed;
}
}
/// Returns true when collapsing Row3 should also clear hidden modifier state.
bool shouldClearTerminalModifiersWhenRow3Collapses({
required bool wasExpanded,
required bool willExpand,
required bool ctrlLocked,
required bool altLocked,
}) {
return wasExpanded && !willExpand && (ctrlLocked || altLocked);
}
String _applyTerminalCtrlModifier(String data) {
// Ctrl mappings are defined only for ASCII scalars. A visible character can
// be multiple scalars (for example, a decomposed accent), so leave those
// graphemes untouched instead of rewriting only their ASCII base letter.
final graphemes = data.characters.toList(growable: false);
if (graphemes.length != 1) {
return data;
}
final runes = graphemes.single.runes.toList(growable: false);
if (runes.length != 1) {
return data;
}
final code = runes.single;
if (code >= 0x61 && code <= 0x7A) {
return String.fromCharCode(code - 0x60);
}
if (code >= 0x41 && code <= 0x5A) {
return String.fromCharCode(code - 0x40);
}
if (code == 0x20) {
return String.fromCharCode(0);
}
if (code == 0x5B) {
return String.fromCharCode(27);
}
if (code == 0x5C) {
return String.fromCharCode(28);
}
if (code == 0x5D) {
return String.fromCharCode(29);
}
if (code == 0x5E) {
return String.fromCharCode(30);
}
if (code == 0x5F || code == 0x2F) {
return String.fromCharCode(31);
}
return data;
}