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https://github.com/ziglang/zig.git
synced 2025-12-06 14:23:09 +00:00
A compilation build step for which the binary is not required could not be compiled previously. There were 2 issues that caused this: - The compiler communicated only the results of the emitted binary and did not properly communicate the result if the binary was not emitted. This is fixed by communicating the final hash of the artifact path (the hash of the corresponding /o/<hash> directory) and communicating this instead of the entire path. This changes the zig build --listen protocol to communicate hashes instead of paths, and emit_bin_path is accordingly renamed to emit_digest. - There was an error related to the default llvm object path when CacheUse.Whole was selected. I'm not really sure why this didn't manifest when the binary is also emitted. This was fixed by improving the path handling related to flush() and emitLlvmObject(). In general, this commit also improves some of the path handling throughout the compiler and standard library.
165 lines
5.9 KiB
Zig
165 lines
5.9 KiB
Zig
const std = @import("std");
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const Step = std.Build.Step;
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const fs = std.fs;
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const mem = std.mem;
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const TranslateC = @This();
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pub const base_id: Step.Id = .translate_c;
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step: Step,
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source: std.Build.LazyPath,
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include_dirs: std.ArrayList([]const u8),
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c_macros: std.ArrayList([]const u8),
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out_basename: []const u8,
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target: std.Build.ResolvedTarget,
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optimize: std.builtin.OptimizeMode,
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output_file: std.Build.GeneratedFile,
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link_libc: bool,
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use_clang: bool,
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pub const Options = struct {
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root_source_file: std.Build.LazyPath,
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target: std.Build.ResolvedTarget,
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optimize: std.builtin.OptimizeMode,
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link_libc: bool = true,
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use_clang: bool = true,
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};
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pub fn create(owner: *std.Build, options: Options) *TranslateC {
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const translate_c = owner.allocator.create(TranslateC) catch @panic("OOM");
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const source = options.root_source_file.dupe(owner);
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translate_c.* = TranslateC{
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.step = Step.init(.{
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.id = base_id,
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.name = "translate-c",
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.owner = owner,
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.makeFn = make,
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}),
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.source = source,
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.include_dirs = std.ArrayList([]const u8).init(owner.allocator),
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.c_macros = std.ArrayList([]const u8).init(owner.allocator),
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.out_basename = undefined,
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.target = options.target,
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.optimize = options.optimize,
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.output_file = std.Build.GeneratedFile{ .step = &translate_c.step },
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.link_libc = options.link_libc,
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.use_clang = options.use_clang,
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};
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source.addStepDependencies(&translate_c.step);
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return translate_c;
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}
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pub const AddExecutableOptions = struct {
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name: ?[]const u8 = null,
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version: ?std.SemanticVersion = null,
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target: ?std.Build.ResolvedTarget = null,
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optimize: ?std.builtin.OptimizeMode = null,
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linkage: ?std.builtin.LinkMode = null,
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};
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pub fn getOutput(translate_c: *TranslateC) std.Build.LazyPath {
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return .{ .generated = .{ .file = &translate_c.output_file } };
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}
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/// Creates a step to build an executable from the translated source.
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pub fn addExecutable(translate_c: *TranslateC, options: AddExecutableOptions) *Step.Compile {
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return translate_c.step.owner.addExecutable(.{
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.root_source_file = translate_c.getOutput(),
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.name = options.name orelse "translated_c",
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.version = options.version,
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.target = options.target orelse translate_c.target,
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.optimize = options.optimize orelse translate_c.optimize,
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.linkage = options.linkage,
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});
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}
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/// Creates a module from the translated source and adds it to the package's
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/// module set making it available to other packages which depend on this one.
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/// `createModule` can be used instead to create a private module.
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pub fn addModule(translate_c: *TranslateC, name: []const u8) *std.Build.Module {
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return translate_c.step.owner.addModule(name, .{
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.root_source_file = translate_c.getOutput(),
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});
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}
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/// Creates a private module from the translated source to be used by the
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/// current package, but not exposed to other packages depending on this one.
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/// `addModule` can be used instead to create a public module.
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pub fn createModule(translate_c: *TranslateC) *std.Build.Module {
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return translate_c.step.owner.createModule(.{
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.root_source_file = translate_c.getOutput(),
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});
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}
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pub fn addIncludeDir(translate_c: *TranslateC, include_dir: []const u8) void {
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translate_c.include_dirs.append(translate_c.step.owner.dupePath(include_dir)) catch @panic("OOM");
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}
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pub fn addCheckFile(translate_c: *TranslateC, expected_matches: []const []const u8) *Step.CheckFile {
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return Step.CheckFile.create(
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translate_c.step.owner,
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translate_c.getOutput(),
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.{ .expected_matches = expected_matches },
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);
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}
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/// If the value is omitted, it is set to 1.
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/// `name` and `value` need not live longer than the function call.
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pub fn defineCMacro(translate_c: *TranslateC, name: []const u8, value: ?[]const u8) void {
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const macro = translate_c.step.owner.fmt("{s}={s}", .{ name, value orelse "1" });
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translate_c.c_macros.append(macro) catch @panic("OOM");
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}
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/// name_and_value looks like [name]=[value]. If the value is omitted, it is set to 1.
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pub fn defineCMacroRaw(translate_c: *TranslateC, name_and_value: []const u8) void {
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translate_c.c_macros.append(translate_c.step.owner.dupe(name_and_value)) catch @panic("OOM");
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}
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fn make(step: *Step, options: Step.MakeOptions) !void {
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const prog_node = options.progress_node;
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const b = step.owner;
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const translate_c: *TranslateC = @fieldParentPtr("step", step);
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var argv_list = std.ArrayList([]const u8).init(b.allocator);
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try argv_list.append(b.graph.zig_exe);
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try argv_list.append("translate-c");
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if (translate_c.link_libc) {
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try argv_list.append("-lc");
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}
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if (!translate_c.use_clang) {
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try argv_list.append("-fno-clang");
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}
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try argv_list.append("--listen=-");
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if (!translate_c.target.query.isNative()) {
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try argv_list.append("-target");
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try argv_list.append(try translate_c.target.query.zigTriple(b.allocator));
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}
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switch (translate_c.optimize) {
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.Debug => {}, // Skip since it's the default.
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else => try argv_list.append(b.fmt("-O{s}", .{@tagName(translate_c.optimize)})),
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}
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for (translate_c.include_dirs.items) |include_dir| {
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try argv_list.append("-I");
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try argv_list.append(include_dir);
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}
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for (translate_c.c_macros.items) |c_macro| {
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try argv_list.append("-D");
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try argv_list.append(c_macro);
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}
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const c_source_path = translate_c.source.getPath2(b, step);
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try argv_list.append(c_source_path);
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const output_dir = try step.evalZigProcess(argv_list.items, prog_node, false);
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const basename = std.fs.path.stem(std.fs.path.basename(c_source_path));
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translate_c.out_basename = b.fmt("{s}.zig", .{basename});
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translate_c.output_file.path = output_dir.?.joinString(b.allocator, translate_c.out_basename) catch @panic("OOM");
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}
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