feat: base project
This commit is contained in:
77
build.zig
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77
build.zig
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@@ -0,0 +1,77 @@
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const std = @import("std");
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// Although this function looks imperative, note that its job is to
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// declaratively construct a build graph that will be executed by an external
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// runner.
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pub fn build(b: *std.Build) void {
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// Standard target options allows the person running `zig build` to choose
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// what target to build for. Here we do not override the defaults, which
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// means any target is allowed, and the default is native. Other options
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// for restricting supported target set are available.
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const target = b.standardTargetOptions(.{});
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// Standard optimization options allow the person running `zig build` to select
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// between Debug, ReleaseSafe, ReleaseFast, and ReleaseSmall. Here we do not
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// set a preferred release mode, allowing the user to decide how to optimize.
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const optimize = b.standardOptimizeOption(.{});
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// We will also create a module for our other entry point, 'main.zig'.
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const exe_mod = b.createModule(.{
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// `root_source_file` is the Zig "entry point" of the module. If a module
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// only contains e.g. external object files, you can make this `null`.
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// In this case the main source file is merely a path, however, in more
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// complicated build scripts, this could be a generated file.
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.root_source_file = b.path("src/main.zig"),
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.target = target,
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.optimize = optimize,
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});
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// This creates another `std.Build.Step.Compile`, but this one builds an executable
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// rather than a static library.
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const exe = b.addExecutable(.{
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.name = "icon_searcher",
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.root_module = exe_mod,
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});
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// This declares intent for the executable to be installed into the
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// standard location when the user invokes the "install" step (the default
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// step when running `zig build`).
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b.installArtifact(exe);
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// This *creates* a Run step in the build graph, to be executed when another
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// step is evaluated that depends on it. The next line below will establish
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// such a dependency.
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const run_cmd = b.addRunArtifact(exe);
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// By making the run step depend on the install step, it will be run from the
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// installation directory rather than directly from within the cache directory.
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// This is not necessary, however, if the application depends on other installed
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// files, this ensures they will be present and in the expected location.
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run_cmd.step.dependOn(b.getInstallStep());
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// This allows the user to pass arguments to the application in the build
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// command itself, like this: `zig build run -- arg1 arg2 etc`
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if (b.args) |args| {
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run_cmd.addArgs(args);
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}
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// This creates a build step. It will be visible in the `zig build --help` menu,
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// and can be selected like this: `zig build run`
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// This will evaluate the `run` step rather than the default, which is "install".
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const run_step = b.step("run", "Run the app");
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run_step.dependOn(&run_cmd.step);
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const exe_unit_tests = b.addTest(.{
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.root_module = exe_mod,
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});
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const run_exe_unit_tests = b.addRunArtifact(exe_unit_tests);
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// Similar to creating the run step earlier, this exposes a `test` step to
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// the `zig build --help` menu, providing a way for the user to request
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// running the unit tests.
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const test_step = b.step("test", "Run unit tests");
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test_step.dependOn(&run_exe_unit_tests.step);
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}
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86
build.zig.zon
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86
build.zig.zon
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@@ -0,0 +1,86 @@
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.{
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// This is the default name used by packages depending on this one. For
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// example, when a user runs `zig fetch --save <url>`, this field is used
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// as the key in the `dependencies` table. Although the user can choose a
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// different name, most users will stick with this provided value.
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//
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// It is redundant to include "zig" in this name because it is already
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// within the Zig package namespace.
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.name = .icon_searcher,
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// This is a [Semantic Version](https://semver.org/).
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// In a future version of Zig it will be used for package deduplication.
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.version = "0.0.0",
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// Together with name, this represents a globally unique package
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// identifier. This field is generated by the Zig toolchain when the
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// package is first created, and then *never changes*. This allows
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// unambiguous detection of one package being an updated version of
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// another.
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//
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// When forking a Zig project, this id should be regenerated (delete the
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// field and run `zig build`) if the upstream project is still maintained.
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// Otherwise, the fork is *hostile*, attempting to take control over the
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// original project's identity. Thus it is recommended to leave the comment
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// on the following line intact, so that it shows up in code reviews that
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// modify the field.
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.fingerprint = 0xa0a27b01ba3dadd, // Changing this has security and trust implications.
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// Tracks the earliest Zig version that the package considers to be a
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// supported use case.
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.minimum_zig_version = "0.14.0",
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// This field is optional.
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// Each dependency must either provide a `url` and `hash`, or a `path`.
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// `zig build --fetch` can be used to fetch all dependencies of a package, recursively.
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// Once all dependencies are fetched, `zig build` no longer requires
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// internet connectivity.
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.dependencies = .{
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// See `zig fetch --save <url>` for a command-line interface for adding dependencies.
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//.example = .{
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// // When updating this field to a new URL, be sure to delete the corresponding
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// // `hash`, otherwise you are communicating that you expect to find the old hash at
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// // the new URL. If the contents of a URL change this will result in a hash mismatch
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// // which will prevent zig from using it.
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// .url = "https://example.com/foo.tar.gz",
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//
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// // This is computed from the file contents of the directory of files that is
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// // obtained after fetching `url` and applying the inclusion rules given by
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// // `paths`.
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// //
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// // This field is the source of truth; packages do not come from a `url`; they
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// // come from a `hash`. `url` is just one of many possible mirrors for how to
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// // obtain a package matching this `hash`.
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// //
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// // Uses the [multihash](https://multiformats.io/multihash/) format.
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// .hash = "...",
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//
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// // When this is provided, the package is found in a directory relative to the
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// // build root. In this case the package's hash is irrelevant and therefore not
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// // computed. This field and `url` are mutually exclusive.
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// .path = "foo",
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//
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// // When this is set to `true`, a package is declared to be lazily
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// // fetched. This makes the dependency only get fetched if it is
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// // actually used.
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// .lazy = false,
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//},
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},
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// Specifies the set of files and directories that are included in this package.
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// Only files and directories listed here are included in the `hash` that
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// is computed for this package. Only files listed here will remain on disk
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// when using the zig package manager. As a rule of thumb, one should list
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// files required for compilation plus any license(s).
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// Paths are relative to the build root. Use the empty string (`""`) to refer to
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// the build root itself.
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// A directory listed here means that all files within, recursively, are included.
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.paths = .{
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"build.zig",
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"build.zig.zon",
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"src",
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// For example...
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//"LICENSE",
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//"README.md",
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},
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}
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263
src/main.zig
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263
src/main.zig
Normal file
@@ -0,0 +1,263 @@
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const FindAppIconContext = struct {
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allocator: std.mem.Allocator,
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apps_with_possible_icons: []AppWithPossiblyIcons,
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apps_with_found_icons: std.ArrayList(AppWithFoundIcon),
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};
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const AppWithPossiblyIcons = struct {
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app_id: []const u8,
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possible_icons: []PossibleIcon,
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};
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const AppWithFoundIcon = struct {
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appId: []const u8,
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icon: []const u8,
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};
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const PossibleIcon = struct {
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icon: []const u8,
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possible_filenames: std.ArrayList([]const u8),
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};
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pub fn main() !u8 {
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var gpa: std.heap.GeneralPurposeAllocator(.{}) = .init;
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const allocator = gpa.allocator();
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const niri_window_result = blk: {
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const niri_windows_proc = try std.process.Child.run(.{
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.argv = &.{ "niri", "msg", "--json", "windows" },
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.allocator = allocator,
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});
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defer allocator.free(niri_windows_proc.stdout);
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defer allocator.free(niri_windows_proc.stderr);
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const niri_window_result = try std.json.parseFromSlice([]NiriWindowsResult, allocator, niri_windows_proc.stdout, .{});
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break :blk niri_window_result;
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};
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const selected_index = blk: {
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var fuzzel_proc = std.process.Child.init(
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&.{ "fuzzel", "--counter", "--dmenu", "--index" },
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allocator,
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);
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fuzzel_proc.stdin_behavior = .Pipe;
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fuzzel_proc.stdout_behavior = .Pipe;
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try fuzzel_proc.spawn();
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var possible_icons: std.ArrayList(AppWithPossiblyIcons) = .empty;
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window_loop: for (niri_window_result.value) |niri_window| {
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for (possible_icons.items) |i| {
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if (std.mem.eql(u8, i.app_id, niri_window.app_id)) continue :window_loop;
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}
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var possible_icons_for_app = std.ArrayList(PossibleIcon).empty;
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var iter = std.mem.splitBackwardsScalar(u8, niri_window.app_id, '.');
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var possible_icon = iter.next() orelse continue;
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possible_icon = try allocator.dupe(u8, possible_icon);
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try possible_icons_for_app.insert(allocator, 0, .{
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.icon = possible_icon,
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.possible_filenames = try getFileNamesForIcon(possible_icon, allocator),
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});
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while (iter.next()) |s| {
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possible_icon = try std.fmt.allocPrint(allocator, "{s}.{s}", .{ s, possible_icon });
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try possible_icons_for_app.insert(allocator, 0, .{
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.icon = possible_icon,
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.possible_filenames = try getFileNamesForIcon(possible_icon, allocator),
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});
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}
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try possible_icons.append(allocator, .{
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.app_id = niri_window.app_id,
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.possible_icons = try possible_icons_for_app.toOwnedSlice(allocator),
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});
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}
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const icon_for_appIds = try findIcons(possible_icons, allocator);
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for (niri_window_result.value) |niri_window| {
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const icon = icon: for (icon_for_appIds) |icon_for_appid| {
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if (std.mem.eql(u8, icon_for_appid.appId, niri_window.app_id)) break :icon icon_for_appid.icon;
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} else niri_window.app_id;
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const txt = std.fmt.allocPrint(
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allocator,
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"{s} \x00icon\x1f{s}\n",
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.{ niri_window.title, icon },
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) catch continue;
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defer allocator.free(txt);
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_ = fuzzel_proc.stdin.?.write(txt) catch continue;
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}
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fuzzel_proc.stdin.?.close();
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fuzzel_proc.stdin = null;
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var fuzzel_read_buffer: [10]u8 = undefined;
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const size = try fuzzel_proc.stdout.?.read(&fuzzel_read_buffer);
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const trimmed_selected_index_string = std.mem.trimRight(u8, fuzzel_read_buffer[0..size], &.{'\n'});
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const selected_index = std.fmt.parseInt(u8, trimmed_selected_index_string, 10) catch |e| {
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std.log.err("could not parse the selected index {}", .{e});
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return 1;
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};
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_ = try fuzzel_proc.wait();
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break :blk selected_index;
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};
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const selected_app = niri_window_result.value[selected_index];
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var stdout_buffer: [1024]u8 = undefined;
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var stdout_writer = std.fs.File.stdout().writer(&stdout_buffer);
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const stdout = &stdout_writer.interface;
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_ = try stdout.write(try std.fmt.allocPrint(allocator, "{d}\n", .{selected_app.id}));
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return 0;
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}
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fn getFileNamesForIcon(icon: []const u8, allocator: std.mem.Allocator) !std.ArrayList([]const u8) {
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var file_names: std.ArrayList([]const u8) = .empty;
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try file_names.append(allocator, try std.fmt.allocPrint(allocator, "{s}.svg", .{icon}));
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try file_names.append(allocator, try std.fmt.allocPrint(allocator, "{s}.png", .{icon}));
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return file_names;
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}
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fn findIcons(possible_icons_for_apps: std.ArrayList(AppWithPossiblyIcons), allocator: std.mem.Allocator) ![]AppWithFoundIcon {
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const icon_dirs: std.ArrayList([]const u8) = try init_icon_dirs(allocator);
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var context: FindAppIconContext = .{
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.allocator = allocator,
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.apps_with_possible_icons = possible_icons_for_apps.items,
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.apps_with_found_icons = .empty,
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};
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for (icon_dirs.items) |icon_dir| {
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const icons_dir = try std.fmt.allocPrint(allocator, "{s}/icons", .{icon_dir});
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var dir = std.fs.cwd().openDir(icons_dir, .{ .iterate = true }) catch continue;
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defer dir.close();
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try findIconsInner(
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allocator,
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dir,
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icons_dir,
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&context,
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);
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}
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return context.apps_with_found_icons.toOwnedSlice(allocator);
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}
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fn findIconsInner(
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allocator: std.mem.Allocator,
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dir: std.fs.Dir,
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icon_dir: []const u8,
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context: *FindAppIconContext,
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) !void {
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var dir_iter = dir.iterate();
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while (try dir_iter.next()) |item| {
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// We found all icons, no need to travers further
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if (context.apps_with_found_icons.items.len == context.apps_with_possible_icons.len) return;
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if (item.kind == .directory) {
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const inner_path = try std.fmt.allocPrint(context.allocator, "{s}/{s}", .{ icon_dir, item.name });
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var inner_dir = std.fs.cwd().openDir(inner_path, .{ .iterate = true }) catch continue;
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defer inner_dir.close();
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try findIconsInner(allocator, inner_dir, inner_path, context);
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} else {
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app_loop: for (context.apps_with_possible_icons) |app_with_possible_icons| {
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for (context.apps_with_found_icons.items) |found_app| {
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if (std.mem.eql(u8, found_app.appId, app_with_possible_icons.app_id)) continue :app_loop;
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}
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for (app_with_possible_icons.possible_icons) |possible_icon| {
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for (possible_icon.possible_filenames.items) |file_name| {
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if (std.mem.eql(u8, item.name, file_name)) {
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try context.apps_with_found_icons.append(allocator, .{
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.appId = app_with_possible_icons.app_id,
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.icon = possible_icon.icon,
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});
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continue :app_loop;
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}
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}
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}
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}
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}
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}
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}
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fn init_icon_dirs(allocator: std.mem.Allocator) !std.ArrayList([]const u8) {
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// BASES ON FUZZEL'S ICON DIRECTORY FINDING
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var dirs: std.ArrayList([]const u8) = .empty;
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var env_map = try std.process.getEnvMap(allocator);
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defer env_map.deinit();
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{
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const xdg_data_home: ?[]const u8 = env_map.get("XDG_DATA_HOME") orelse home: {
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const home = env_map.get("HOME");
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if (home) |h| {
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break :home try std.fmt.allocPrint(allocator, "{s}/.local/share", .{h});
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}
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break :home null;
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};
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if (xdg_data_home) |h| {
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try appendIfNotExist(allocator, &dirs, h);
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}
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}
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{
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const xdg_data_dirs = env_map.get("XDG_DATA_DIRS");
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if (xdg_data_dirs) |d| {
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var data_dirs_iter = std.mem.splitScalar(u8, d, ':');
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while (data_dirs_iter.next()) |data_dir| {
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try appendIfNotExist(allocator, &dirs, try allocator.dupe(u8, data_dir));
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}
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} else {
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try appendIfNotExist(allocator, &dirs, "/usr/local/share");
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try appendIfNotExist(allocator, &dirs, "/usr/share");
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}
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}
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{
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const home = env_map.get("HOME");
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if (home) |h| {
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try appendIfNotExist(allocator, &dirs, try std.fmt.allocPrint(allocator, "{s}/.icons", .{h}));
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}
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}
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{
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try appendIfNotExist(allocator, &dirs, "/usr/share/pixmaps");
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try appendIfNotExist(allocator, &dirs, "/usr/local/share/pixmaps");
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}
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return dirs;
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}
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fn appendIfNotExist(allocator: std.mem.Allocator, list: *std.ArrayList([]const u8), item: []const u8) !void {
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if (item.len == 0) return;
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for (list.items) |i| {
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if (std.mem.eql(u8, item, i)) return;
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}
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var dir = std.fs.cwd().openDir(item, .{}) catch return;
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dir.close();
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try list.append(allocator, item);
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}
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const NiriWindowsResult = struct {
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id: u32,
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title: []u8,
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app_id: []u8,
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pid: u32,
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workspace_id: u32,
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is_focused: bool,
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is_floating: bool,
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is_urgent: bool,
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};
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const std = @import("std");
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Reference in New Issue
Block a user