Zig bindings for orca (still WIP) #140

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rdunnington wants to merge 24 commits from zig_ffi into main
2 changed files with 62 additions and 79 deletions
Showing only changes of commit 7a91ba471e - Show all commits

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@ -1,22 +0,0 @@
@echo off
:: compile wasm module
set ORCA_DIR=..\..
set STDLIB_DIR=%ORCA_DIR%\src\libc-shim
set wasmFlags=--target=wasm32^
--no-standard-libraries ^
-mbulk-memory ^
-g -O2 ^
-D__ORCA__ ^
-Wl,--no-entry ^
-Wl,--export-dynamic ^
-Wl,--relocatable ^
-isystem %STDLIB_DIR%\include ^
-I%ORCA_DIR%\src ^
-I%ORCA_DIR%\src\ext
clang %wasmFlags% -o .\liborca.a ..\..\src\orca.c ..\..\src\libc-shim\src\*.c
IF %ERRORLEVEL% NEQ 0 EXIT /B %ERRORLEVEL%
zig build bundle

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@ -1,4 +1,5 @@
const std = @import("std");
const builtin = @import("builtin");
fn addSourceString(str: []const u8, strings: *std.ArrayList(u8), sources: *std.ArrayList([]const u8)) !void {
var begin = strings.items.len;
@ -9,67 +10,63 @@ fn addSourceString(str: []const u8, strings: *std.ArrayList(u8), sources: *std.A
pub fn build(b: *std.Build) !void {
const optimize = b.standardOptimizeOption(.{});
const wasm_target = std.zig.CrossTarget{
var wasm_target = std.zig.CrossTarget{
.cpu_arch = .wasm32,
.os_tag = .freestanding,
};
wasm_target.cpu_features_add.addFeature(@intFromEnum(std.Target.wasm.Feature.bulk_memory));
//NOTE(reuben) - Ideally we would build the orca wasm lib and link it all within build.zig, but there
// seems to be a bug where the -mbulk-memory flag is ignored and memory.copy and
// memory.fill instructions aren't generated, leading the memcpy and memset instructions
// to become infinitely recursive, crashing the program. So for now we build the orca
// wasm lib with clang and link it in here.
var orca_source_strings = try std.ArrayList(u8).initCapacity(b.allocator, 1024 * 4);
var orca_sources = try std.ArrayList([]const u8).initCapacity(b.allocator, 128);
defer orca_source_strings.deinit();
defer orca_sources.deinit();
// var orca_source_strings = try std.ArrayList(u8).initCapacity(b.allocator, 1024 * 4);
// var orca_sources = try std.ArrayList([]const u8).initCapacity(b.allocator, 128);
// defer orca_source_strings.deinit();
// defer orca_sources.deinit();
{
try addSourceString("../../src/orca.c", &orca_source_strings, &orca_sources);
// {
// try addSourceString("../../src/orca.c", &orca_source_strings, &orca_sources);
var libc_shim_dir = try std.fs.cwd().openIterableDir("../../src/libc-shim/src", .{});
var walker = try libc_shim_dir.walk(b.allocator);
defer walker.deinit();
// var libc_shim_dir = try std.fs.cwd().openIterableDir("../../src/libc-shim/src", .{});
// var walker = try libc_shim_dir.walk(b.allocator);
// defer walker.deinit();
while (try walker.next()) |entry| {
const extension = std.fs.path.extension(entry.path);
if (std.mem.eql(u8, extension, ".c")) {
var path_buffer: [std.fs.MAX_PATH_BYTES]u8 = undefined;
var abs_path = try libc_shim_dir.dir.realpath(entry.path, &path_buffer);
try addSourceString(abs_path, &orca_source_strings, &orca_sources);
}
}
}
// while (try walker.next()) |entry| {
// const extension = std.fs.path.extension(entry.path);
// if (std.mem.eql(u8, extension, ".c")) {
// var path_buffer: [std.fs.MAX_PATH_BYTES]u8 = undefined;
// var abs_path = try libc_shim_dir.dir.realpath(entry.path, &path_buffer);
// try addSourceString(abs_path, &orca_source_strings, &orca_sources);
// // std.debug.print("adding libc shim source: {s}\n", .{abs_path});
// }
// }
// }
const orca_compile_opts = [_][]const u8{
"-D__ORCA__",
"--no-standard-libraries",
"-fno-builtin",
"-g",
"-O2",
"-mexec-model=reactor",
"-fno-sanitize=undefined",
"-isystem ../../src/libc-shim/include",
"-I../../src",
"-I../../src/ext",
"-Wl,--export-dynamic",
};
// const orca_compile_opts = [_][]const u8{
// "-D__ORCA__",
// "--no-standard-libraries",
// "-fno-builtin",
// "-isystem ../../src/libc-shim/include",
// "-I../../src",
// "-I../../ext",
// "-O2",
// "-mbulk-memory",
// "-Wl,--no-entry",
// "-Wl,--export-all",
// "-g",
// };
// var orca_lib = b.addStaticLibrary(.{
// .name = "orca",
// .target = wasm_target,
// .optimize = optimize,
// });
// orca_lib.rdynamic = true;
// orca_lib.addIncludePath(.{ .path = "../../src" });
// orca_lib.addIncludePath(.{ .path = "../../src/libc-shim/include" });
// orca_lib.addIncludePath(.{ .path = "../../ext" });
// orca_lib.addCSourceFiles(orca_sources.items, &orca_compile_opts);
// b.installArtifact(orca_lib);
var orca_lib = b.addStaticLibrary(.{
.name = "orca",
.target = wasm_target,
.optimize = optimize,
});
orca_lib.rdynamic = true;
orca_lib.addIncludePath(.{ .path = "../../src" });
orca_lib.addIncludePath(.{ .path = "../../src/libc-shim/include" });
orca_lib.addIncludePath(.{ .path = "../../src/ext" });
orca_lib.addCSourceFiles(orca_sources.items, &orca_compile_opts);
// builds the wasm module out of the orca C sources and main.zig
const orca_module: *std.Build.Module = b.createModule(.{
.source_file = .{ .path = "../../src/orca.zig" },
});
const wasm_lib = b.addSharedLibrary(.{
.name = "module",
.root_source_file = .{ .path = "src/main.zig" },
@ -77,17 +74,11 @@ pub fn build(b: *std.Build) !void {
.optimize = optimize,
});
wasm_lib.rdynamic = true;
const orca_module: *std.Build.Module = b.createModule(.{
.source_file = .{ .path = "../../src/orca.zig" },
});
wasm_lib.addIncludePath(.{ .path = "../../src" });
wasm_lib.addIncludePath(.{ .path = "../../src/libc-shim/include" });
wasm_lib.addIncludePath(.{ .path = "../../ext" });
wasm_lib.addModule("orca", orca_module);
// wasm_lib.linkLibrary(orca_lib);
wasm_lib.addLibraryPath(.{ .path = "." });
wasm_lib.linkSystemLibrary("orca");
wasm_lib.linkLibrary(orca_lib);
// copies the wasm module into zig-out/wasm_lib
b.installArtifact(wasm_lib);
@ -99,4 +90,18 @@ pub fn build(b: *std.Build) !void {
const bundle_step = b.step("bundle", "Runs the orca toolchain to bundle the wasm module into an orca app.");
bundle_step.dependOn(&bundle_cmd.step);
// Runs the app
const run_cmd_windows = [_][]const u8{"Sample/bin/Sample.exe"};
const run_cmd_macos = [_][]const u8{ "open", "Sample.app" };
const run_cmd_str: []const []const u8 = switch (builtin.os.tag) {
.windows => &run_cmd_windows,
.macos => &run_cmd_macos,
else => @compileError("unsupported platform"),
};
var run_cmd = b.addSystemCommand(run_cmd_str);
run_cmd.step.dependOn(&bundle_cmd.step);
const run_step = b.step("run", "Runs the bundled app using the Orca runtime.");
run_step.dependOn(&run_cmd.step);
}