beansprout-custom/src/main.zig
Ben Buhse ec7474c9af
Implement some simple flags and runtime log-levels
I used flags.zig from Isaac Freund for parsing basic CLI arguments,
I don't need much else since most configuration is in Kdl.
e967499fb1/common/flags.zig

I also removed some of the duplicated bits for the exe_check step
since I realized I can just use the beansprout executable for all of it.
2026-02-08 16:25:30 -06:00

244 lines
9.5 KiB
Zig

// SPDX-FileCopyrightText: 2025 Ben Buhse <me@benbuhse.email>
//
// SPDX-License-Identifier: GPL-3.0-or-later
/// Wayland globals that we need to bind listen in alphabetical order
const Globals = struct {
river_layer_shell_v1: ?*river.LayerShellV1 = null,
river_window_manager_v1: ?*river.WindowManagerV1 = null,
river_xkb_bindings_v1: ?*river.XkbBindingsV1 = null,
wl_compositor: ?*wl.Compositor = null,
wl_shm: ?*wl.Shm = null,
wl_outputs: std.AutoHashMapUnmanaged(u32, *wl.Output) = .empty,
zwlr_layer_shell_v1: ?*zwlr.LayerShellV1 = null,
fn deinit(globals: *Globals) void {
var it = globals.wl_outputs.valueIterator();
while (it.next()) |output| {
output.*.release();
}
globals.wl_outputs.deinit(utils.allocator);
}
};
const usage: []const u8 =
\\usage: beansprout [options]
\\
\\ -h Print this help message and exit.
\\ -version Print the version number and exit.
\\ -log-level <level> Set the log level to error, warning, info, or debug.
\\
;
pub fn main() !void {
const result = flags.parser([*:0]const u8, &.{
.{ .name = "h", .kind = .boolean },
.{ .name = "version", .kind = .boolean },
.{ .name = "log-level", .kind = .arg },
}).parse(std.os.argv[1..]) catch {
try stderr.writeAll(usage);
try stderr.flush();
posix.exit(1);
};
if (result.flags.h) {
try stdout.writeAll(usage);
try stdout.flush();
posix.exit(0);
}
if (result.args.len != 0) {
log.err("unknown option '{s}'", .{result.args[0]});
try stderr.writeAll(usage);
try stderr.flush();
posix.exit(1);
}
if (result.flags.version) {
try stdout.writeAll(build_options.version ++ "\n");
try stdout.flush();
posix.exit(0);
}
if (result.flags.@"log-level") |level| {
if (mem.eql(u8, level, "error")) {
runtime_log_level = .err;
} else if (mem.eql(u8, level, "warning")) {
runtime_log_level = .warn;
} else if (mem.eql(u8, level, "info")) {
runtime_log_level = .info;
} else if (mem.eql(u8, level, "debug")) {
runtime_log_level = .debug;
} else {
log.err("invalid log level '{s}'", .{level});
posix.exit(1);
}
}
const wayland_display_var = try utils.allocator.dupeZ(u8, process.getEnvVarOwned(utils.allocator, "WAYLAND_DISPLAY") catch {
fatal("Error getting WAYLAND_DISPLAY environment variable. Exiting", .{});
});
defer utils.allocator.free(wayland_display_var);
const wl_display = wl.Display.connect(null) catch {
fatal("Error connecting to Wayland server. Exiting", .{});
};
defer wl_display.disconnect();
const wl_registry = try wl_display.getRegistry();
var globals: Globals = .{};
defer globals.deinit();
wl_registry.setListener(*Globals, registryListener, &globals);
const errno = wl_display.roundtrip();
if (errno != .SUCCESS) {
fatal("Initial roundtrip failed: E{s}", .{@tagName(errno)});
}
const wl_compositor = globals.wl_compositor orelse utils.interfaceNotAdvertised(wl.Compositor);
const wl_shm = globals.wl_shm orelse utils.interfaceNotAdvertised(wl.Shm);
// We can theoretically start with zero wl_outputs; don't panic if it's empty.
const wl_outputs = &globals.wl_outputs;
const river_layer_shell_v1 = globals.river_layer_shell_v1 orelse utils.interfaceNotAdvertised(river.LayerShellV1);
const river_window_manager_v1 = globals.river_window_manager_v1 orelse utils.interfaceNotAdvertised(river.WindowManagerV1);
const river_xkb_bindings_v1 = globals.river_xkb_bindings_v1 orelse utils.interfaceNotAdvertised(river.XkbBindingsV1);
const zwlr_layer_shell_v1 = globals.zwlr_layer_shell_v1 orelse utils.interfaceNotAdvertised(zwlr.LayerShellV1);
const config = try Config.create();
defer config.destroy();
const context = try Context.create(.{
.wl_compositor = wl_compositor,
.wl_display = wl_display,
.wl_outputs = wl_outputs,
.wl_registry = wl_registry,
.wl_shm = wl_shm,
.river_layer_shell_v1 = river_layer_shell_v1,
.river_window_manager_v1 = river_window_manager_v1,
.river_xkb_bindings_v1 = river_xkb_bindings_v1,
.zwlr_layer_shell_v1 = zwlr_layer_shell_v1,
.config = config,
});
defer context.destroy();
while (true) {
if (wl_display.dispatch() != .SUCCESS) {
fatal("wayland display dispatch failed", .{});
}
}
log.info("Exiting beansprout", .{});
}
fn registryListener(registry: *wl.Registry, event: wl.Registry.Event, globals: *Globals) void {
switch (event) {
.global => |ev| {
if (mem.orderZ(u8, ev.interface, wl.Compositor.interface.name) == .eq) {
if (ev.version < 4) utils.versionNotSupported(wl.Compositor, ev.version, 4);
globals.wl_compositor = registry.bind(ev.name, wl.Compositor, 4) catch |e| {
fatal("Failed to bind to wl_compositor: {any}", .{@errorName(e)});
};
} else if (mem.orderZ(u8, ev.interface, wl.Output.interface.name) == .eq) {
if (ev.version < 4) utils.versionNotSupported(wl.Output, ev.version, 4);
const wl_output = registry.bind(ev.name, wl.Output, 4) catch |e| {
fatal("Failed to bind to wl_output: {any}", .{@errorName(e)});
};
// We can get multiple wl_outputs, so we have to try add them to our HashMap
// instead of just keeping the one
globals.wl_outputs.put(utils.allocator, ev.name, wl_output) catch |e| {
fatal("Failed to add wl_output to hashmap: {any}", .{@errorName(e)});
};
} else if (mem.orderZ(u8, ev.interface, wl.Shm.interface.name) == .eq) {
globals.wl_shm = registry.bind(ev.name, wl.Shm, 1) catch |e| {
fatal("Failed to bind to wl_shm: {any}", .{@errorName(e)});
};
} else if (mem.orderZ(u8, ev.interface, river.LayerShellV1.interface.name) == .eq) {
globals.river_layer_shell_v1 = registry.bind(ev.name, river.LayerShellV1, 1) catch |e| {
fatal("Failed to bind to river_layer_shell_v1: {any}", .{@errorName(e)});
};
} else if (mem.orderZ(u8, ev.interface, river.WindowManagerV1.interface.name) == .eq) {
globals.river_window_manager_v1 = registry.bind(ev.name, river.WindowManagerV1, 3) catch |e| {
fatal("Failed to bind to river_window_manager_v1: {any}", .{@errorName(e)});
};
} else if (mem.orderZ(u8, ev.interface, river.XkbBindingsV1.interface.name) == .eq) {
globals.river_xkb_bindings_v1 = registry.bind(ev.name, river.XkbBindingsV1, 2) catch |e| {
fatal("Failed to bind to river_xkb_bindings_v1: {any}", .{@errorName(e)});
};
} else if (mem.orderZ(u8, ev.interface, zwlr.LayerShellV1.interface.name) == .eq) {
if (ev.version < 3) utils.versionNotSupported(zwlr.LayerShellV1, ev.version, 3);
globals.zwlr_layer_shell_v1 = registry.bind(ev.name, zwlr.LayerShellV1, 3) catch |e| {
fatal("Failed to bind to zwlr_layer_shell_v1: {any}", .{@errorName(e)});
};
}
},
// We don't need .global_remove
.global_remove => |ev| {
// The only remove we care about is for wl_outputs
if (!globals.wl_outputs.remove(ev.name)) {
log.debug("Received a global_remove event for something other than a wl_output", .{});
}
},
}
}
var stderr_buffer: [1024]u8 = undefined;
var stderr_writer = fs.File.stderr().writer(&stderr_buffer);
const stderr = &stderr_writer.interface;
var stdout_buffer: [1024]u8 = undefined;
var stdout_writer = fs.File.stdout().writer(&stdout_buffer);
const stdout = &stdout_writer.interface;
/// Set the default log level based on the build mode.
var runtime_log_level: std.log.Level = switch (builtin.mode) {
.Debug => .debug,
.ReleaseSafe, .ReleaseFast, .ReleaseSmall => .info,
};
pub const std_options: std.Options = .{
// Tell std.log to leave all log level filtering to us.
.log_level = .debug,
.logFn = logFn,
};
pub fn logFn(
comptime level: std.log.Level,
comptime scope: @TypeOf(.EnumLiteral),
comptime format: []const u8,
args: anytype,
) void {
if (@intFromEnum(level) > @intFromEnum(runtime_log_level)) return;
if (scope != .default) return;
const scope_prefix = if (scope == .default) ": " else "(" ++ @tagName(scope) ++ "): ";
stderr.print(level.asText() ++ scope_prefix ++ format ++ "\n", args) catch return;
stderr.flush() catch return;
}
const build_options = @import("build_options");
const builtin = @import("builtin");
const std = @import("std");
const fatal = std.process.fatal;
const fs = std.fs;
const mem = std.mem;
const posix = std.posix;
const process = std.process;
const wayland = @import("wayland");
const river = wayland.client.river;
const wl = wayland.client.wl;
const zwlr = wayland.client.zwlr;
const flags = @import("flags.zig");
const utils = @import("utils.zig");
const Config = @import("Config.zig");
const Context = @import("Context.zig");
const WindowManager = @import("WindowManager.zig");
const XkbBindings = @import("XkbBindings.zig");
const log = std.log.scoped(.main);