config: modify MouseScrollMultiplier to lean on args parsing
parent
9597cead92
commit
1031629741
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@ -507,13 +507,18 @@ pub fn parseTaggedUnion(comptime T: type, alloc: Allocator, v: []const u8) !T {
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fn parseStruct(comptime T: type, alloc: Allocator, v: []const u8) !T {
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return switch (@typeInfo(T).@"struct".layout) {
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.auto => parseAutoStruct(T, alloc, v),
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.auto => parseAutoStruct(T, alloc, v, null),
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.@"packed" => parsePackedStruct(T, v),
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else => @compileError("unsupported struct layout"),
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};
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}
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pub fn parseAutoStruct(comptime T: type, alloc: Allocator, v: []const u8) !T {
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pub fn parseAutoStruct(
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comptime T: type,
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alloc: Allocator,
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v: []const u8,
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default_: ?T,
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) !T {
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const info = @typeInfo(T).@"struct";
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comptime assert(info.layout == .auto);
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@ -573,9 +578,18 @@ pub fn parseAutoStruct(comptime T: type, alloc: Allocator, v: []const u8) !T {
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// Ensure all required fields are set
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inline for (info.fields, 0..) |field, i| {
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if (!fields_set.isSet(i)) {
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const default_ptr = field.default_value_ptr orelse return error.InvalidValue;
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const typed_ptr: *const field.type = @alignCast(@ptrCast(default_ptr));
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@field(result, field.name) = typed_ptr.*;
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@field(result, field.name) = default: {
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// If we're given a default value then we inherit those.
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// Otherwise we use the default values as specified by the
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// struct.
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if (default_) |default| {
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break :default @field(default, field.name);
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} else {
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const default_ptr = field.default_value_ptr orelse return error.InvalidValue;
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const typed_ptr: *const field.type = @alignCast(@ptrCast(default_ptr));
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break :default typed_ptr.*;
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}
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};
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}
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}
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@ -1194,7 +1208,18 @@ test "parseIntoField: struct with basic fields" {
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try testing.expectEqual(84, data.value.b);
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try testing.expectEqual(24, data.value.c);
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// Missing require dfield
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// Set with explicit default
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data.value = try parseAutoStruct(
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@TypeOf(data.value),
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alloc,
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"a:hello",
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.{ .a = "oh no", .b = 42 },
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);
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try testing.expectEqualStrings("hello", data.value.a);
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try testing.expectEqual(42, data.value.b);
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try testing.expectEqual(12, data.value.c);
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// Missing required field
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try testing.expectError(
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error.InvalidValue,
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parseIntoField(@TypeOf(data), alloc, &data, "value", "a:hello"),
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@ -833,15 +833,20 @@ palette: Palette = .{},
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/// * `never`
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@"mouse-shift-capture": MouseShiftCapture = .false,
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/// Multiplier for scrolling distance with the mouse wheel. Any value less
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/// than 0.01 (0.01 for precision scroll) or greater than 10,000 will be clamped
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/// to the nearest valid value.
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/// Multiplier for scrolling distance with the mouse wheel.
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///
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/// A discrete value of "3" (default) scrolls about 3 lines per wheel tick.
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/// And a precision value of "0.1" (default) scales pixel-level scrolling.
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/// A prefix of `precision:` or `discrete:` can be used to set the multiplier
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/// only for scrolling with the specific type of devices. These can be
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/// comma-separated to set both types of multipliers at the same time, e.g.
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/// `precision:0.1,discrete:3`. If no prefix is used, the multiplier applies
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/// to all scrolling devices. Specifying a prefix was introduced in Ghostty
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/// 1.2.1.
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///
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/// Available since: 1.2.1
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@"mouse-scroll-multiplier": MouseScrollMultiplier = .{ .precision = 0.1, .discrete = 3.0 },
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/// The value will be clamped to [0.01, 10,000]. Both of these are extreme
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/// and you're likely to have a bad experience if you set either extreme.
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///
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/// The default value is "3" for discrete devices and "1" for precision devices.
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@"mouse-scroll-multiplier": MouseScrollMultiplier = .default,
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/// The opacity level (opposite of transparency) of the background. A value of
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/// 1 is fully opaque and a value of 0 is fully transparent. A value less than 0
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@ -4078,7 +4083,7 @@ pub fn finalize(self: *Config) !void {
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}
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// Clamp our mouse scroll multiplier
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self.@"mouse-scroll-multiplier".precision = @min(10_000.0, @max(0.1, self.@"mouse-scroll-multiplier".precision));
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self.@"mouse-scroll-multiplier".precision = @min(10_000.0, @max(0.01, self.@"mouse-scroll-multiplier".precision));
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self.@"mouse-scroll-multiplier".discrete = @min(10_000.0, @max(0.01, self.@"mouse-scroll-multiplier".discrete));
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// Clamp our split opacity
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@ -7012,6 +7017,7 @@ pub const RepeatableCommand = struct {
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inputpkg.Command,
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alloc,
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input,
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null,
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);
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try self.value.append(alloc, cmd);
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}
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@ -7325,86 +7331,31 @@ pub const MouseShiftCapture = enum {
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pub const MouseScrollMultiplier = struct {
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const Self = @This();
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precision: f64,
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discrete: f64,
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precision: f64 = 1,
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discrete: f64 = 3,
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pub fn parseCLI(self: *Self, input_: ?[]const u8) !void {
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const input_raw = input_ orelse return error.ValueRequired;
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const whitespace = " \t";
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const input = std.mem.trim(u8, input_raw, whitespace);
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if (input.len == 0) return error.ValueRequired;
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pub const default: MouseScrollMultiplier = .{};
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const value = std.fmt.parseFloat(f64, input) catch null;
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if (value) |val| {
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self.precision = val;
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self.discrete = val;
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return;
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}
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const comma_idx = std.mem.indexOf(u8, input, ",");
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if (comma_idx) |idx| {
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if (std.mem.indexOf(u8, input[idx + 1 ..], ",")) |_| return error.InvalidValue;
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const lhs = std.mem.trim(u8, input[0..idx], whitespace);
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const rhs = std.mem.trim(u8, input[idx + 1 ..], whitespace);
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if (lhs.len == 0 or rhs.len == 0) return error.InvalidValue;
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const lcolon_idx = std.mem.indexOf(u8, lhs, ":") orelse return error.InvalidValue;
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const rcolon_idx = std.mem.indexOf(u8, rhs, ":") orelse return error.InvalidValue;
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const lkey = lhs[0..lcolon_idx];
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const lvalstr = std.mem.trim(u8, lhs[lcolon_idx + 1 ..], whitespace);
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const rkey = rhs[0..rcolon_idx];
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const rvalstr = std.mem.trim(u8, rhs[rcolon_idx + 1 ..], whitespace);
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// Only "precision" and "discrete" are valid keys. They
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// must be different.
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if (std.mem.eql(u8, lkey, rkey)) return error.InvalidValue;
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var found_precision = false;
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var found_discrete = false;
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var precision_val = self.precision;
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var discrete_val = self.discrete;
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if (std.mem.eql(u8, lkey, "precision")) {
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precision_val = std.fmt.parseFloat(f64, lvalstr) catch return error.InvalidValue;
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found_precision = true;
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} else if (std.mem.eql(u8, lkey, "discrete")) {
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discrete_val = std.fmt.parseFloat(f64, lvalstr) catch return error.InvalidValue;
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found_discrete = true;
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} else return error.InvalidValue;
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if (std.mem.eql(u8, rkey, "precision")) {
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precision_val = std.fmt.parseFloat(f64, rvalstr) catch return error.InvalidValue;
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found_precision = true;
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} else if (std.mem.eql(u8, rkey, "discrete")) {
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discrete_val = std.fmt.parseFloat(f64, rvalstr) catch return error.InvalidValue;
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found_discrete = true;
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} else return error.InvalidValue;
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if (!found_precision or !found_discrete) return error.InvalidValue;
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if (precision_val == 0 or discrete_val == 0) return error.InvalidValue;
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self.precision = precision_val;
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self.discrete = discrete_val;
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return;
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} else {
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const colon_idx = std.mem.indexOf(u8, input, ":") orelse return error.InvalidValue;
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const key = input[0..colon_idx];
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const valstr = std.mem.trim(u8, input[colon_idx + 1 ..], whitespace);
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if (valstr.len == 0) return error.InvalidValue;
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const val = std.fmt.parseFloat(f64, valstr) catch return error.InvalidValue;
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if (val == 0) return error.InvalidValue;
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if (std.mem.eql(u8, key, "precision")) {
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self.precision = val;
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return;
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} else if (std.mem.eql(u8, key, "discrete")) {
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self.discrete = val;
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return;
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} else return error.InvalidValue;
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}
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pub fn parseCLI(self: *Self, alloc: Allocator, input_: ?[]const u8) !void {
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const input = input_ orelse return error.ValueRequired;
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self.* = cli.args.parseAutoStruct(
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MouseScrollMultiplier,
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alloc,
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input,
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self.*,
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) catch |err| switch (err) {
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error.InvalidValue => bare: {
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const v = std.fmt.parseFloat(
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f64,
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input,
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) catch return error.InvalidValue;
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break :bare .{
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.precision = v,
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.discrete = v,
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};
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},
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else => return err,
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};
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}
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/// Deep copy of the struct. Required by Config.
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@ -7421,45 +7372,50 @@ pub const MouseScrollMultiplier = struct {
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/// Used by Formatter
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pub fn formatEntry(self: Self, formatter: anytype) !void {
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var buf: [32]u8 = undefined;
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const formatted = try std.fmt.bufPrint(&buf, "precision:{d},discrete:{d}", .{ self.precision, self.discrete });
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const formatted = std.fmt.bufPrint(
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&buf,
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"precision:{d},discrete:{d}",
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.{ self.precision, self.discrete },
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) catch return error.OutOfMemory;
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try formatter.formatEntry([]const u8, formatted);
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}
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test "parse MouseScrollMultiplier" {
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test "parse" {
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const testing = std.testing;
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const alloc = testing.allocator;
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const epsilon = 0.00001;
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var args: Self = .{ .precision = 0.1, .discrete = 3 };
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try args.parseCLI("3");
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try testing.expect(args.precision == 3 and args.discrete == 3);
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args = .{ .precision = 0.1, .discrete = 3 };
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try args.parseCLI("precision:1");
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try testing.expect(args.precision == 1 and args.discrete == 3);
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args = .{ .precision = 0.1, .discrete = 3 };
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try args.parseCLI("discrete:5");
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try testing.expect(args.precision == 0.1 and args.discrete == 5);
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args = .{ .precision = 0.1, .discrete = 3 };
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try args.parseCLI("precision:3,discrete:7");
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try testing.expect(args.precision == 3 and args.discrete == 7);
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args = .{ .precision = 0.1, .discrete = 3 };
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try args.parseCLI("discrete:8,precision:6");
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try testing.expect(args.precision == 6 and args.discrete == 8);
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try args.parseCLI(alloc, "3");
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try testing.expectApproxEqAbs(3, args.precision, epsilon);
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try testing.expectApproxEqAbs(3, args.discrete, epsilon);
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args = .{ .precision = 0.1, .discrete = 3 };
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try testing.expectError(error.InvalidValue, args.parseCLI("foo:1"));
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try args.parseCLI(alloc, "precision:1");
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try testing.expectApproxEqAbs(1, args.precision, epsilon);
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try testing.expectApproxEqAbs(3, args.discrete, epsilon);
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args = .{ .precision = 0.1, .discrete = 3 };
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try testing.expectError(error.InvalidValue, args.parseCLI("precision:bar"));
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try args.parseCLI(alloc, "discrete:5");
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try testing.expectApproxEqAbs(0.1, args.precision, epsilon);
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try testing.expectApproxEqAbs(5, args.discrete, epsilon);
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args = .{ .precision = 0.1, .discrete = 3 };
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try testing.expectError(error.InvalidValue, args.parseCLI("precision:1,precision:3"));
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try args.parseCLI(alloc, "precision:3,discrete:7");
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try testing.expectApproxEqAbs(3, args.precision, epsilon);
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try testing.expectApproxEqAbs(7, args.discrete, epsilon);
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args = .{ .precision = 0.1, .discrete = 3 };
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try testing.expectError(error.ValueRequired, args.parseCLI(""));
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args = .{ .precision = 0.1, .discrete = 3 };
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try testing.expectError(error.InvalidValue, args.parseCLI("precision:1,discrete:3,foo:5"));
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args = .{ .precision = 0.1, .discrete = 3 };
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try testing.expectError(error.InvalidValue, args.parseCLI("precision:1,,discrete:3"));
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args = .{ .precision = 0.1, .discrete = 3 };
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try testing.expectError(error.InvalidValue, args.parseCLI("precision:1,discrete:3,"));
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args = .{ .precision = 0.1, .discrete = 3 };
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try testing.expectError(error.InvalidValue, args.parseCLI(",precision:1,discrete:3"));
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try args.parseCLI(alloc, "discrete:8,precision:6");
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try testing.expectApproxEqAbs(6, args.precision, epsilon);
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try testing.expectApproxEqAbs(8, args.discrete, epsilon);
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args = .default;
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try testing.expectError(error.InvalidValue, args.parseCLI(alloc, "foo:1"));
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try testing.expectError(error.InvalidValue, args.parseCLI(alloc, "precision:bar"));
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try testing.expectError(error.InvalidValue, args.parseCLI(alloc, "precision:1,discrete:3,foo:5"));
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try testing.expectError(error.InvalidValue, args.parseCLI(alloc, "precision:1,,discrete:3"));
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try testing.expectError(error.InvalidValue, args.parseCLI(alloc, ",precision:1,discrete:3"));
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}
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test "format entry MouseScrollMultiplier" {
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@ -8087,6 +8043,7 @@ pub const Theme = struct {
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Theme,
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alloc,
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input,
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null,
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);
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return;
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}
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