Normalize terminal input traces

This commit is contained in:
slhx agent
2026-06-21 02:06:37 +02:00
parent 16d2a023a3
commit 9d760b41c1
2 changed files with 276 additions and 0 deletions
+274
View File
@@ -0,0 +1,274 @@
const std = @import("std");
// Terminal input normalization and trace capture.
// req: input/004, input/005, testing/001, testing/002, testing/003, testing/004
test {
_ = normalize;
_ = TraceRecorder;
}
pub const Key = enum {
space,
enter,
tab,
backspace,
escape,
arrow_left,
arrow_right,
arrow_up,
arrow_down,
};
pub const Event = union(enum) {
key: Key,
text: []const u8,
unknown: []const u8,
};
pub const TraceResult = union(enum) {
ok,
diverged: Divergence,
pub fn deinit(self: TraceResult, allocator: std.mem.Allocator) void {
switch (self) {
.ok => {},
.diverged => |diverged| allocator.free(diverged.message),
}
}
};
pub const Divergence = struct {
step: usize,
message: []const u8,
};
pub const TraceRecorder = struct {
allocator: std.mem.Allocator,
lines: std.ArrayList(u8) = .empty,
pub fn init(allocator: std.mem.Allocator) TraceRecorder {
return .{ .allocator = allocator };
}
pub fn deinit(self: *TraceRecorder) void {
self.lines.deinit(self.allocator);
self.* = undefined;
}
pub fn capture(self: *TraceRecorder, raw: []const u8) !void {
const label = try eventLabelAlloc(self.allocator, normalize(raw));
defer self.allocator.free(label);
try appendHex(self.allocator, &self.lines, raw);
try self.lines.appendSlice(self.allocator, " => ");
try self.lines.appendSlice(self.allocator, label);
try self.lines.append(self.allocator, '\n');
}
pub fn text(self: *const TraceRecorder) []const u8 {
return self.lines.items;
}
};
pub fn normalize(raw: []const u8) Event {
if (raw.len == 0) return .{ .unknown = raw };
if (std.mem.eql(u8, raw, " ")) return .{ .key = .space };
if (std.mem.eql(u8, raw, "\r") or std.mem.eql(u8, raw, "\n")) return .{ .key = .enter };
if (std.mem.eql(u8, raw, "\t")) return .{ .key = .tab };
if (std.mem.eql(u8, raw, "\x7f") or std.mem.eql(u8, raw, "\x08")) return .{ .key = .backspace };
if (std.mem.eql(u8, raw, "\x1b")) return .{ .key = .escape };
if (std.mem.eql(u8, raw, "\x1b[D")) return .{ .key = .arrow_left };
if (std.mem.eql(u8, raw, "\x1b[C")) return .{ .key = .arrow_right };
if (std.mem.eql(u8, raw, "\x1b[A")) return .{ .key = .arrow_up };
if (std.mem.eql(u8, raw, "\x1b[B")) return .{ .key = .arrow_down };
if (std.unicode.utf8ValidateSlice(raw) and isPrintableText(raw)) return .{ .text = raw };
return .{ .unknown = raw };
}
pub fn replayTrace(allocator: std.mem.Allocator, trace: []const u8) !TraceResult {
var step: usize = 0;
var lines = std.mem.splitScalar(u8, trace, '\n');
while (lines.next()) |line| {
if (line.len == 0) continue;
step += 1;
const separator = std.mem.indexOf(u8, line, " => ") orelse return divergence(allocator, step, "trace line is missing separator");
const raw_hex = line[0..separator];
const expected = line[separator + 4 ..];
var raw = std.ArrayList(u8).empty;
defer raw.deinit(allocator);
parseHexInto(allocator, &raw, raw_hex) catch |err| switch (err) {
error.InvalidHex => return divergence(allocator, step, "trace line has invalid hex bytes"),
else => return err,
};
const actual = try eventLabelAlloc(allocator, normalize(raw.items));
defer allocator.free(actual);
if (!std.mem.eql(u8, expected, actual)) {
return divergenceFmt(allocator, step, "expected event '{s}' but got '{s}'", .{ expected, actual });
}
}
return .ok;
}
pub fn eventLabelAlloc(allocator: std.mem.Allocator, event: Event) ![]u8 {
return switch (event) {
.key => |key| std.fmt.allocPrint(allocator, "key:{s}", .{@tagName(key)}),
.text => |text| std.fmt.allocPrint(allocator, "text:{s}", .{text}),
.unknown => |raw| unknownLabelAlloc(allocator, raw),
};
}
fn unknownLabelAlloc(allocator: std.mem.Allocator, raw: []const u8) ![]u8 {
var out = std.ArrayList(u8).empty;
errdefer out.deinit(allocator);
try out.appendSlice(allocator, "unknown:");
try appendHex(allocator, &out, raw);
return out.toOwnedSlice(allocator);
}
fn isPrintableText(raw: []const u8) bool {
var i: usize = 0;
while (i < raw.len) {
const len = std.unicode.utf8ByteSequenceLength(raw[i]) catch return false;
if (i + len > raw.len) return false;
const cp = std.unicode.utf8Decode(raw[i .. i + len]) catch return false;
if (cp < 0x20 or cp == 0x7f) return false;
if (cp == 0x1b) return false;
i += len;
}
return true;
}
fn appendHex(allocator: std.mem.Allocator, out: *std.ArrayList(u8), bytes: []const u8) !void {
const alphabet = "0123456789abcdef";
for (bytes) |byte| {
try out.append(allocator, alphabet[byte >> 4]);
try out.append(allocator, alphabet[byte & 0x0f]);
}
}
fn parseHexInto(allocator: std.mem.Allocator, out: *std.ArrayList(u8), hex: []const u8) !void {
if (hex.len % 2 != 0) return error.InvalidHex;
var i: usize = 0;
while (i < hex.len) : (i += 2) {
const high = hexNibble(hex[i]) orelse return error.InvalidHex;
const low = hexNibble(hex[i + 1]) orelse return error.InvalidHex;
try out.append(allocator, (high << 4) | low);
}
}
fn hexNibble(byte: u8) ?u8 {
return switch (byte) {
'0'...'9' => byte - '0',
'a'...'f' => byte - 'a' + 10,
'A'...'F' => byte - 'A' + 10,
else => null,
};
}
fn divergence(allocator: std.mem.Allocator, step: usize, message: []const u8) !TraceResult {
return .{ .diverged = .{ .step = step, .message = try allocator.dupe(u8, message) } };
}
fn divergenceFmt(allocator: std.mem.Allocator, step: usize, comptime fmt: []const u8, args: anytype) !TraceResult {
return .{ .diverged = .{ .step = step, .message = try std.fmt.allocPrint(allocator, fmt, args) } };
}
fn expectEventLabel(raw: []const u8, expected: []const u8) !void {
const label = try eventLabelAlloc(std.testing.allocator, normalize(raw));
defer std.testing.allocator.free(label);
try std.testing.expectEqualStrings(expected, label);
}
fn expectTraceOk(result: TraceResult) !void {
switch (result) {
.ok => {},
.diverged => return error.ExpectedTraceOk,
}
}
test "regular: raw terminal bytes normalize to stable editor input events" {
try expectEventLabel("a", "text:a");
try expectEventLabel("ä", "text:ä");
try expectEventLabel("🔥", "text:🔥");
try expectEventLabel(" ", "key:space");
try expectEventLabel("\r", "key:enter");
try expectEventLabel("\x7f", "key:backspace");
try expectEventLabel("\x1b[D", "key:arrow_left");
try expectEventLabel("\x1b[C", "key:arrow_right");
try expectEventLabel("\x1b[A", "key:arrow_up");
try expectEventLabel("\x1b[B", "key:arrow_down");
}
test "regular: captured trace can be replayed" {
var recorder = TraceRecorder.init(std.testing.allocator);
defer recorder.deinit();
try recorder.capture("a");
try recorder.capture("ä");
try recorder.capture(" ");
try recorder.capture("\x1b[D");
try recorder.capture("\x7f");
const result = try replayTrace(std.testing.allocator, recorder.text());
defer result.deinit(std.testing.allocator);
try expectTraceOk(result);
}
test "regular: trace text preserves raw bytes rather than keyboard-layout guesses" {
var recorder = TraceRecorder.init(std.testing.allocator);
defer recorder.deinit();
try recorder.capture("z");
try recorder.capture("y");
try std.testing.expectEqualStrings(
\\7a => text:z
\\79 => text:y
\\
, recorder.text());
}
test "adversarial: invalid UTF-8 and control bytes normalize as unknown" {
const bad_utf8 = [_]u8{ 0xc3, 0x28 };
try expectEventLabel(&bad_utf8, "unknown:c328");
try expectEventLabel("\x00", "unknown:00");
try expectEventLabel("\x1b[999~", "unknown:1b5b3939397e");
}
test "adversarial: replay names malformed trace lines" {
const result = try replayTrace(std.testing.allocator, "61 text:a\n");
defer result.deinit(std.testing.allocator);
switch (result) {
.diverged => |diverged| {
try std.testing.expectEqual(@as(usize, 1), diverged.step);
try std.testing.expectEqualStrings("trace line is missing separator", diverged.message);
},
.ok => return error.ExpectedTraceDivergence,
}
}
test "adversarial: replay names invalid hex in traces" {
const result = try replayTrace(std.testing.allocator, "zz => text:a\n");
defer result.deinit(std.testing.allocator);
switch (result) {
.diverged => |diverged| {
try std.testing.expectEqual(@as(usize, 1), diverged.step);
try std.testing.expectEqualStrings("trace line has invalid hex bytes", diverged.message);
},
.ok => return error.ExpectedTraceDivergence,
}
}
test "adversarial: replay names first event mismatch" {
const result = try replayTrace(std.testing.allocator, "61 => key:space\n62 => text:b\n");
defer result.deinit(std.testing.allocator);
switch (result) {
.diverged => |diverged| {
try std.testing.expectEqual(@as(usize, 1), diverged.step);
try std.testing.expect(std.mem.indexOf(u8, diverged.message, "expected event") != null);
},
.ok => return error.ExpectedTraceDivergence,
}
}
+2
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@@ -1,4 +1,5 @@
const std = @import("std");
const input = @import("input.zig");
const protocol = @import("protocol.zig");
const replay = @import("replay.zig");
const session = @import("session.zig");
@@ -116,6 +117,7 @@ fn collectRemainingArgs(allocator: std.mem.Allocator, args: *std.process.Args.It
}
test {
_ = input;
_ = protocol;
_ = replay;
_ = session;