43c939b6978ee8a787074a1ea81a7a486c9ac0b6
2
Commits
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c00e5dbc5c |
Let the terminal's text be made bigger, and remember how big
Taking pinch-zoom off the phone left nothing in its place, and there was nothing on the desktop either. This is the replacement, and it is deliberately not the thing that was removed: zoom scales what has already been drawn, so the remote goes on wrapping to a width that is no longer on screen. Changing the font size refits the grid and reports the new column count, so the far end is told it has fewer columns. That round trip is the feature. The size is one number, owned by the shell. It has to be, for two reasons that pull the same way: it must survive a relaunch, and it must be reachable from a phone that has no Ctrl key to press. So the page asks and the host decides — a signed step over a new client opcode, answered with a size over a new server opcode. The phone's buttons and the desktop's chords arrive at the same place, and a size set by either is the size both remember. Stored in settings.json beside the cache rather than in it, and that is not laziness about a migration. The cache is encrypted and unreadable until a vault is unlocked, and the first terminal of a locked launch needs the size already. Nothing secret may go in that file; ClientSettings says so out loud, because the next person to add a preference is the one who needs to read it. Where it is reachable from differs per head, and only here. The phone gets A− and A+ on the connection line — not in the accessory row, which scrolls, and a control that fixes unreadable text must never be the thing that is off-screen. The desktop gets the three chords every terminal emulator has, answered by the page while a terminal has focus and by the window when it does not, plus a row in preferences that shows the current value and names the chords rather than replacing them. Someone whose terminal is too small to read is not in a position to go looking. Clamped 8 to 32. Below eight a monospace grid stops being legible and becomes a texture, and every column of it is still a column the remote is being told exists; above thirty-two a phone in portrait has too few columns to hold a prompt. The buttons disable at the ends rather than accepting presses that do nothing, which on a terminal reads as the application having stopped responding. The preferences screen's header comment claimed none of the design's terminal settings could be saved, and listed the three things that were missing to make one work. All three now exist, so it says which one is real and why the other five still are not. Verified with the protocol suite — including that the step byte round-trips signed, since read unsigned a step down arrives as 255 and clamps to the largest font, making "smaller" do the most dramatic available version of "larger" — a data-plane test that the chord is heard with no session registered, and five shell tests: the default matches the renderer's, both clamps hold, reset works, and a size chosen in one shell is there in a second one over the same profile directory. Layout suite and both heads build. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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eb354bcdd9 |
Add the SSH session layer and the terminal data plane
The throughput harness the plan requires before any UI, plus the SSH plumbing under it. 94 new tests, no WebView involved. Credit-based flow control is what makes `yes` survivable. A terminal renders at 60 Hz at best while a remote produces output as fast as the network allows, and the difference has to accumulate somewhere or be refused. Credit is reserved *before* reading, never after: because the pump cannot read more than the renderer has room for, the coalescing buffer is bounded by the window rather than by how fast the remote can talk. When credit runs out the pump stops reading, SSH's own receive window closes, and the remote sshd blocks -- backpressure to the source with no custom protocol. Verified by falsification, not just by passing: with the credit gate removed three tests fail, including the throughput harness's bounded-memory assertion. Acknowledgements are clamped because they cross into JavaScript, where a buggy or hostile page could otherwise claim to have rendered a gigabyte and talk the host into an unbounded read. Host key trust is enforced by *failing* the connection rather than prompting inside the handshake. SSH.NET raises verification synchronously, so consulting the user there would block the handshake on a UI round trip and deadlock the first time the prompt needed the UI thread. Unknown host and changed key become distinct exceptions the caller resolves asynchronously. A mismatch has no retry path at all: a dialog offering to continue is how users are trained to click through the one warning that actually indicates interception. A legitimately rebuilt server is handled by removing the pin in settings, away from the moment of connecting. The data plane serves the renderer page from the same loopback listener as the socket, which makes Origin predictable -- always http://127.0.0.1:{port} -- where a WebView virtual-host mapping would give a different origin per backend and nothing to validate. The token is substituted at serve time, so it never touches disk and never appears in a URL. Being clear about what that buys: not protection from a process running as this user, which can read our memory anyway, but from a page in the user's browser attempting WebSocket connections to loopback ports, which is a real and routine thing. Two bugs the tests caught. The accept loop handled connections serially, so an upgraded WebSocket parked it inside the receive loop and every later request went unanswered -- the page's own script among them. The suite hung rather than failed, which is how I found it. And SHA-1 is unavoidable here: RFC 6455 mandates it for Sec-WebSocket-Accept, where it authenticates nothing. Suppressed narrowly with that reasoning; the alternative, HttpListener.AcceptWebSocketAsync, throws PlatformNotSupportedException off Windows. |