412 lines
16 KiB
Zig
412 lines
16 KiB
Zig
const std = @import("std");
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const Build = std.Build;
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const Step = Build.Step;
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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: *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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const buildOptimize = b.option(
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std.builtin.OptimizeMode,
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"boptimize",
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"Prioritize performance, safety, or binary size for build time tools",
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) orelse .Debug;
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const zalgebra_dep = b.dependency("zalgebra", .{});
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const assets_mod = b.addModule("assets", .{ .root_source_file = .{ .path = "src/assets/root.zig" } });
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const asset_manifest_mod = b.addModule("asset_manifest", .{ .root_source_file = .{ .path = "src/gen/asset_manifest.zig" } });
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asset_manifest_mod.addImport("assets", assets_mod);
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const assets_step = b.step("assets", "Build and install assets");
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b.getInstallStep().dependOn(assets_step);
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const assetc = buildAssetCompiler(b, buildOptimize);
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const install_assetc_step = b.addInstallArtifact(assetc, .{ .dest_dir = .{ .override = .prefix } });
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assets_step.dependOn(&install_assetc_step.step);
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assetc.root_module.addImport("assets", assets_mod);
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assetc.root_module.addImport("asset_manifest", asset_manifest_mod);
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const gen_asset_manifest = buildAssets(b, &install_assetc_step.step, assets_step, assetc, "assets") catch |err| {
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std.log.err("Failed to build assets {}\n", .{err});
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@panic("buildAssets");
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};
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const gen_asset_manifest_mod = b.createModule(.{ .root_source_file = gen_asset_manifest });
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gen_asset_manifest_mod.addImport("assets", assets_mod);
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asset_manifest_mod.addImport("asset_manifest_gen", gen_asset_manifest_mod);
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const lib = b.addSharedLibrary(.{
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.name = "learnopengl",
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.root_source_file = .{ .path = "src/game.zig" },
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.target = target,
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.optimize = optimize,
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});
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const lib_unit_tests = b.addTest(.{
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.root_source_file = .{ .path = "src/game.zig" },
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.target = target,
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.optimize = optimize,
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});
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const lib_compiles = [_]*Step.Compile{ lib, lib_unit_tests };
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inline for (lib_compiles) |l| {
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l.root_module.addImport("zalgebra", zalgebra_dep.module("zalgebra"));
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l.root_module.addImport("assets", assets_mod);
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l.root_module.addImport("asset_manifest", asset_manifest_mod);
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}
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const install_lib = b.addInstallArtifact(lib, .{ .dest_dir = .{ .override = .prefix } });
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b.getInstallStep().dependOn(&install_lib.step);
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const exe = b.addExecutable(.{
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.name = "learnopengl",
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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 = .{ .path = "src/main.zig" },
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.target = target,
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.optimize = optimize,
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});
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if (b.systemIntegrationOption("SDL2", .{ .default = b.host.result.os.tag != .windows })) {
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exe.linkSystemLibrary("SDL2");
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inline for (lib_compiles) |l| {
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l.linkSystemLibrary("SDL2");
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}
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} else {
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const sdl_dep = b.dependency("SDL", .{
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.target = target,
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.optimize = .ReleaseSafe,
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});
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const sdl2 = sdl_dep.artifact("SDL2");
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b.getInstallStep().dependOn(&b.addInstallArtifact(sdl2, .{ .dest_dir = .{ .override = .prefix } }).step);
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exe.linkLibrary(sdl2);
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inline for (lib_compiles) |l| {
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l.linkLibrary(sdl2);
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}
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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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const install_exe = b.addInstallArtifact(exe, .{ .dest_dir = .{ .override = .prefix } });
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b.getInstallStep().dependOn(&install_exe.step);
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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 run_lib_unit_tests = b.addRunArtifact(lib_unit_tests);
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const exe_unit_tests = b.addTest(.{
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.root_source_file = .{ .path = "src/main.zig" },
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.target = target,
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.optimize = optimize,
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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_lib_unit_tests.step);
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test_step.dependOn(&run_exe_unit_tests.step);
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}
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const NestedAssetDef = union(enum) {
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path: std.StringArrayHashMapUnmanaged(NestedAssetDef),
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asset: usize,
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pub fn put(self: *NestedAssetDef, allocator: std.mem.Allocator, path: []const u8, id: usize) !void {
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var iter = try std.fs.path.componentIterator(path);
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const filename = iter.last().?.name;
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_ = iter.first();
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// Skip first one because it's always "assets"
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_ = iter.next();
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var current = &self.path;
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while (iter.next()) |comp| {
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if (comp.name.ptr == filename.ptr) break;
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const gop = try current.getOrPut(allocator, comp.name);
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if (!gop.found_existing) {
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gop.value_ptr.* = NestedAssetDef{ .path = .{} };
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}
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current = &gop.value_ptr.path;
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}
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try current.put(allocator, std.fs.path.stem(filename), NestedAssetDef{ .asset = id });
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}
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pub fn deinit(self: *NestedAssetDef, allocator: std.mem.Allocator) void {
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switch (self.*) {
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.path => |*path| path.deinit(allocator),
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else => {},
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}
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}
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};
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// Find all assets and cook them using assetc
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fn buildAssets(b: *std.Build, install_assetc_step: *Step, step: *Step, assetc: *Step.Compile, path: []const u8) !Build.LazyPath {
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const assetsPath = b.pathFromRoot(path);
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defer b.allocator.free(assetsPath);
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var assetsDir = try std.fs.openDirAbsolute(assetsPath, .{ .iterate = true });
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defer assetsDir.close();
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var asset_id: usize = 1; // Start at 1 because asset id 0 = null asset
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var meshes = NestedAssetDef{ .path = .{} };
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var shaders = NestedAssetDef{ .path = .{} };
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var shader_programs = NestedAssetDef{ .path = .{} };
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var textures = NestedAssetDef{ .path = .{} };
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var asset_paths = std.ArrayList([]const u8).init(b.allocator);
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var walker = try assetsDir.walk(b.allocator);
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defer walker.deinit();
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while (try walker.next()) |entry| {
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if (std.mem.endsWith(u8, entry.basename, ".obj")) {
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const run_assetc = b.addRunArtifact(assetc);
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run_assetc.step.dependOn(install_assetc_step);
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run_assetc.addPathDir(b.pathFromRoot("libs/ispc_texcomp/lib"));
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run_assetc.addFileArg(.{ .path = b.pathJoin(&.{ path, entry.path }) });
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const out_name = try std.mem.concat(
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b.allocator,
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u8,
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&.{ std.fs.path.stem(entry.basename), ".mesh" },
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);
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const compiled_file = run_assetc.addOutputFileArg(out_name);
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const out_path = b.pathJoin(&.{
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path,
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std.fs.path.dirname(entry.path) orelse "",
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out_name,
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});
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const install_asset = b.addInstallFileWithDir(
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compiled_file,
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.prefix,
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out_path,
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);
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step.dependOn(&install_asset.step);
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{
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const id = asset_id;
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asset_id += 1;
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try meshes.put(b.allocator, out_path, id);
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try asset_paths.append(out_path);
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}
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}
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if (std.mem.endsWith(u8, entry.basename, ".glsl")) {
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const out_path = b.pathJoin(&.{
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path,
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entry.path,
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});
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const install_shader = b.addInstallFileWithDir(.{ .path = out_path }, .prefix, out_path);
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step.dependOn(&install_shader.step);
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{
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const id = asset_id;
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asset_id += 1;
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try shaders.put(b.allocator, out_path, id);
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try asset_paths.append(out_path);
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}
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}
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// Shader program
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if (std.mem.endsWith(u8, entry.basename, ".prog")) {
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const run_assetc = b.addRunArtifact(assetc);
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run_assetc.step.dependOn(install_assetc_step);
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run_assetc.addPathDir(b.pathFromRoot("libs/ispc_texcomp/lib"));
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run_assetc.addFileArg(.{ .path = b.pathJoin(&.{ path, entry.path }) });
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const compiled_file = run_assetc.addOutputFileArg(b.dupe(entry.basename));
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const out_path = b.pathJoin(&.{
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path,
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entry.path,
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});
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const install_asset = b.addInstallFileWithDir(
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compiled_file,
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.prefix,
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out_path,
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);
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step.dependOn(&install_asset.step);
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{
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const id = asset_id;
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asset_id += 1;
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try shader_programs.put(b.allocator, out_path, id);
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try asset_paths.append(out_path);
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}
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}
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if (std.mem.endsWith(u8, entry.basename, ".png") or std.mem.endsWith(u8, entry.basename, ".jpg") or std.mem.endsWith(u8, entry.basename, ".exr")) {
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const run_assetc = b.addRunArtifact(assetc);
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run_assetc.step.dependOn(install_assetc_step);
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run_assetc.addPathDir(b.pathFromRoot("libs/ispc_texcomp/lib"));
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run_assetc.addFileArg(.{ .path = b.pathJoin(&.{ path, entry.path }) });
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const out_name = try std.mem.concat(
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b.allocator,
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u8,
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&.{ std.fs.path.stem(entry.basename), ".tex" },
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);
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const compiled_file = run_assetc.addOutputFileArg(out_name);
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const out_path = b.pathJoin(&.{
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path,
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std.fs.path.dirname(entry.path) orelse "",
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out_name,
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});
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const install_asset = b.addInstallFileWithDir(
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compiled_file,
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.prefix,
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out_path,
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);
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step.dependOn(&install_asset.step);
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{
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const id = asset_id;
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asset_id += 1;
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try textures.put(b.allocator, out_path, id);
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try asset_paths.append(out_path);
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}
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}
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}
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const manifest_path = try writeAssetManifest(b, asset_paths.items, &meshes, &shaders, &shader_programs, &textures);
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return manifest_path;
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}
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fn writeNestedAssetDef(writer: anytype, handle: []const u8, name: []const u8, asset_def: *NestedAssetDef, indent: usize) !void {
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switch (asset_def.*) {
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.path => |*path| {
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var iter = path.iterator();
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try writer.writeByteNTimes(' ', indent * 4);
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try std.fmt.format(writer, "pub const {} = struct {{\n", .{std.zig.fmtId(name)});
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while (iter.next()) |entry| {
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try writeNestedAssetDef(writer, handle, entry.key_ptr.*, entry.value_ptr, indent + 1);
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}
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try writer.writeByteNTimes(' ', indent * 4);
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try std.fmt.format(writer, "}};\n", .{});
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},
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.asset => |id| {
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try writer.writeByteNTimes(' ', indent * 4);
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try std.fmt.format(writer, "pub const {} = Handle.{s}{{ .id = {} }};\n", .{ std.zig.fmtId(name), handle, id });
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},
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}
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}
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fn writeAssetManifest(
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b: *Build,
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asset_paths: [][]const u8,
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meshes: *NestedAssetDef,
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shaders: *NestedAssetDef,
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shader_programs: *NestedAssetDef,
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textures: *NestedAssetDef,
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) !Build.LazyPath {
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var mesh_asset_manifest = std.ArrayList(u8).init(b.allocator);
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const writer = mesh_asset_manifest.writer();
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try writer.writeAll("// Generated file, do not edit manually!\n\n");
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try writer.writeAll("const std = @import(\"std\");\n");
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// TODO: import AssetId instead of harcoding u32s
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try writer.writeAll("const Handle = @import(\"assets\").Handle;\n\n");
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try writeNestedAssetDef(writer, "Mesh", "Meshes", meshes, 0);
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try writer.writeByte('\n');
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try writeNestedAssetDef(writer, "Shader", "Shaders", shaders, 0);
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try writer.writeByte('\n');
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try writeNestedAssetDef(writer, "ShaderProgram", "ShaderPrograms", shader_programs, 0);
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try writer.writeByte('\n');
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try writeNestedAssetDef(writer, "Texture", "Textures", textures, 0);
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try writer.writeByte('\n');
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try writer.writeAll("pub const asset_paths = [_][]const u8{\n");
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for (asset_paths) |path| {
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try std.fmt.format(writer, " \"{}\",\n", .{std.zig.fmtEscapes(path)});
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}
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try writer.writeAll("};\n\n");
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try writer.writeAll("pub const asset_path_to_asset_id = std.ComptimeStringMap(u32, .{\n");
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for (asset_paths, 0..) |path, i| {
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try std.fmt.format(writer, " .{{ \"{}\", {} }},\n", .{ std.zig.fmtEscapes(path), i + 1 });
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}
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try writer.writeAll("});\n\n");
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const result = mesh_asset_manifest.toOwnedSlice() catch @panic("OOM");
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const write_step = b.addWriteFiles();
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const manifest_path = write_step.add("asset_manifest.gen.zig", result);
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return manifest_path;
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}
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fn buildAssetCompiler(b: *Build, optimize: std.builtin.OptimizeMode) *Step.Compile {
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const assimp_dep = b.dependency("zig-assimp", .{
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.target = b.host,
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.optimize = optimize,
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//.formats = @as([]const u8, "3DS,3MF,AC,AMF,ASE,Assbin,Assjson,Assxml,B3D,Blender,BVH,C4D,COB,Collada,CSM,DXF,FBX,glTF,glTF2,HMP,IFC,Irr,LWO,LWS,M3D,MD2,MD3,MD5,MDC,MDL,MMD,MS3D,NDO,NFF,Obj,OFF,Ogre,OpenGEX,Ply,Q3BSP,Q3D,Raw,SIB,SMD,Step,STEPParser,STL,Terragen,Unreal,X,X3D,XGL"),
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.formats = @as([]const u8, "Obj"),
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});
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const assimp_lib = assimp_dep.artifact("assimp");
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const assetc = b.addExecutable(.{
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.name = "assetc",
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.target = b.host,
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.root_source_file = .{ .path = "tools/asset_compiler.zig" },
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.optimize = optimize,
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});
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assetc.linkLibC();
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b.installFile("libs/ispc_texcomp/lib/ispc_texcomp.dll", "ispc_texcomp.dll");
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b.installFile("libs/ispc_texcomp/lib/ispc_texcomp.pdb", "ispc_texcomp.pdb");
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assetc.addLibraryPath(.{ .path = "libs/ispc_texcomp/lib" });
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assetc.addIncludePath(.{ .path = "libs/ispc_texcomp/include" });
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assetc.linkSystemLibrary("ispc_texcomp");
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assetc.root_module.addAnonymousImport("formats", .{ .root_source_file = .{ .path = "src/formats.zig" } });
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assetc.linkLibrary(assimp_lib);
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assetc.linkLibC();
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assetc.linkLibCpp();
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assetc.addCSourceFile(.{ .file = .{ .path = "libs/stb/stb_image.c" }, .flags = &.{"-std=c99"} });
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assetc.addIncludePath(.{ .path = "libs/stb" });
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return assetc;
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}
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