191 lines
7.2 KiB
Zig
191 lines
7.2 KiB
Zig
const std = @import("std");
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pub fn build(b: *std.Build) void {
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const target = b.standardTargetOptions(.{ .default_target = .{ .cpu_model = .native } });
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const optimize = b.standardOptimizeOption(.{ .preferred_optimize_mode = .ReleaseFast });
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const assets = b.addInstallDirectory(.{
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.source_dir = b.path("assets"),
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.install_dir = .bin,
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.install_subdir = "assets",
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});
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const shared = b.addModule("shared", .{
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.root_source_file = b.path("src/shared/shared.zig"),
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.target = target,
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});
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const client = b.addExecutable(.{
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.name = "client",
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.root_module = b.createModule(.{
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.root_source_file = b.path("src/client/main.zig"),
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.target = target,
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.optimize = optimize,
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.imports = &.{
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.{
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.name = "shared",
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.module = shared
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},
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},
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}),
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.use_llvm = true,
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});
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client.root_module.strip = true;
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const server = b.addExecutable(.{
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.name = "server",
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.root_module = b.createModule(.{
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.root_source_file = b.path("src/server/main.zig"),
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.target = target,
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.optimize = optimize,
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.imports = &.{
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.{ .name = "shared", .module = shared },
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},
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}),
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.use_llvm = true,
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});
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server.root_module.strip = true;
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const ztracy = b.dependency("ztracy", .{
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.enable_ztracy = true,
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.enable_fibers = false,
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.on_demand = false,
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});
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client.root_module.addImport("ztracy", ztracy.module("root"));
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client.linkLibrary(ztracy.artifact("tracy"));
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const mach_freetype = b.dependency("mach_freetype", .{
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.target = target,
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.optimize = optimize,
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});
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client.root_module.addImport("mach-freetype", mach_freetype.module("mach-freetype"));
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client.root_module.addImport("mach-harfbuzz", mach_freetype.module("mach-harfbuzz"));
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client.root_module.addCSourceFile(.{
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.file = b.path("vendor/kb_text_shape/kb_text_shape.h"),
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.language = .c,
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.flags = &.{
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"-DKB_TEXT_SHAPE_IMPLEMENTATION",
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"-O3", // Maximum optimization
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// "-ffast-math", // Allows algebraic reorganizations (risky for precision, great for speed)
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// "-fno-plt", // Reduces overhead for library calls
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// "-march=native", // Use every instruction your CPU has
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// "-flto", // Enable LTO for the C side specifically
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},
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});
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const kb_text_shape = b.addTranslateC(.{
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.root_source_file = b.path("vendor/kb_text_shape/kb_text_shape.h"),
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.target = target,
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.optimize = optimize,
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});
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client.root_module.addImport("kb", kb_text_shape.createModule());
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client.root_module.addCSourceFile(.{ .file = b.path("vendor/stb/stb_rect_pack.h"), .language = .c, .flags = &.{} });
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const stb_rect_pack = b.addTranslateC(.{
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.root_source_file = b.path("vendor/stb/stb_rect_pack.h"),
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.target = target,
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.optimize = optimize,
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});
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client.root_module.addImport("stb_rect_pack", stb_rect_pack.createModule());
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const zmath = b.dependency("zmath", .{});
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client.root_module.addImport("zmath", zmath.module("root"));
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server.root_module.addImport("zmath", zmath.module("root"));
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shared.addImport("zmath", zmath.module("root"));
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const znet_dep = b.dependency(
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"znet",
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.{
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.target = target,
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.optimize = optimize,
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}
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);
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const znet_mod = znet_dep.module("znet");
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// const znet_artifact = znet_dep.artifact("znet");
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client.root_module.addImport("znet", znet_mod);
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// client.linkLibrary(znet_artifact);
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server.root_module.addImport("znet", znet_mod);
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// server.linkLibrary(znet_artifact);
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const bufzilla = b.dependency("bufzilla", .{});
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client.root_module.addImport("bufzilla", bufzilla.module("bufzilla"));
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server.root_module.addImport("bufzilla", bufzilla.module("bufzilla"));
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const raylib_dep = b.dependency("raylib_zig", .{
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.target = target,
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.optimize = optimize,
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});
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const raylib = raylib_dep.module("raylib"); // main raylib module
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const raygui = raylib_dep.module("raygui"); // raygui module
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const raylib_artifact = raylib_dep.artifact("raylib"); // raylib C library
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raylib_artifact.root_module.addCMacro("SUPPORT_CUSTOM_FRAME_CONTROL", "");
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client.linkLibrary(raylib_artifact);
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client.root_module.addImport("raylib", raylib);
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client.root_module.addImport("raygui", raygui);
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// const raylib_dep = b.dependency("raylib", .{ .target = target, .optimize = optimize });
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// const raylib = raylib_dep.artifact("raylib");
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// raylib.root_module.addCMacro("SUPPORT_CUSTOM_FRAME_CONTROL", "");
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// client.linkLibrary(raylib);
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b.installArtifact(client);
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b.installArtifact(server);
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b.getInstallStep().dependOn(&assets.step);
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const run_step = b.step("run", "Run the app");
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const run_cmd_client = b.addRunArtifact(client);
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const run_cmd_server = b.addRunArtifact(server);
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run_step.dependOn(&run_cmd_client.step);
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run_step.dependOn(&run_cmd_server.step);
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run_cmd_client.step.dependOn(b.getInstallStep());
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run_cmd_server.step.dependOn(b.getInstallStep());
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if (b.args) |args| {
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run_cmd_client.addArgs(args);
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}
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// Creates an executable that will run `test` blocks from the provided module.
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// Here `mod` needs to define a target, which is why earlier we made sure to
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// set the releative field.
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// const mod_tests = b.addTest(.{
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// .root_module = mod,
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// });
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// A run step that will run the test executable.
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// const run_mod_tests = b.addRunArtifact(mod_tests);
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// Creates an executable that will run `test` blocks from the executable's
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// root module. Note that test executables only test one module at a time,
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// hence why we have to create two separate ones.
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// const exe_tests = b.addTest(.{
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// .root_module = exe.root_module,
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// });
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// A run step that will run the second test executable.
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// const run_exe_tests = b.addRunArtifact(exe_tests);
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// A top level step for running all tests. dependOn can be called multiple
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// times and since the two run steps do not depend on one another, this will
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// make the two of them run in parallel.
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// const test_step = b.step("test", "Run tests");
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// test_step.dependOn(&run_mod_tests.step);
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// test_step.dependOn(&run_exe_tests.step);
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// Just like flags, top level steps are also listed in the `--help` menu.
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//
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// The Zig build system is entirely implemented in userland, which means
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// that it cannot hook into private compiler APIs. All compilation work
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// orchestrated by the build system will result in other Zig compiler
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// subcommands being invoked with the right flags defined. You can observe
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// these invocations when one fails (or you pass a flag to increase
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// verbosity) to validate assumptions and diagnose problems.
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//
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// Lastly, the Zig build system is relatively simple and self-contained,
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// and reading its source code will allow you to master it.
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}
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