Go 1.26.5 maps each test binary's stdout and stderr to the same product writer. Teach the captured executor to share one open file description for byte-equal output paths, then make directory test products emit that one ordered capture on coordinator stdout. Build captures and inherited-stdio routes remain unchanged.\n\nKeep the executor mechanism, package policy, native Cstage/WWstage proof, and normative contract together so every commit preserves the observable test-output behavior.
733 lines
19 KiB
Plaintext
733 lines
19 KiB
Plaintext
// exec runs subprocesses. It owns argv/environment conversion, launch error
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// reporting, waiting, deadlines, and process-group cleanup; callers own build
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// and test policy.
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package exec;
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import os;
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import time;
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@symbol("rt_syscall") fn syscall3(num: i64, a: i64, b: i64, c: i64) i64;
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def SYS_FCNTL: i64 = 72i64;
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def F_DUPFD_CLOEXEC: i32 = 1030;
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export type termination = enum i32 {
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EXIT = 0,
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SIGNAL = 1,
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TIMEOUT = 2,
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ERROR = 3,
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};
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export type result = struct {
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termination: termination,
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code: i32,
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errno: i32,
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cleanuperrno: i32,
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};
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// command is deliberately concrete. argv includes argv[0], env is the full
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// environment, and an empty dir inherits the caller's working directory.
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// An empty stdinpath selects the null device; stdoutpath and stderrpath are
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// created exclusively with mode 0600. Equal output paths share one open
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// capture. A zero deadline means no timeout.
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export type command = struct {
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path: str,
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argv: []str,
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env: []str,
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dir: str,
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stdinpath: str,
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stdoutpath: str,
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stderrpath: str,
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deadline: time.instant,
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grace: time.duration,
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};
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type state = enum i32 {
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EMPTY = 0,
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RUNNING = 1,
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TERM = 2,
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KILL = 3,
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};
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export type process = struct {
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pid: i32,
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state: i32,
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markerfd: i32,
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marker: [4]u8,
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markern: i32,
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markerclosed: bool,
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deadline: i64,
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termdeadline: i64,
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grace: time.duration,
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hasdeadline: bool,
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done: bool,
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reaped: bool,
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leaderdone: bool,
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reaptermination: termination,
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reapcode: i32,
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result: result,
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};
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// interrupt is the small signalfd watch paired with child launch. start
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// restores the pre-watch mask in children before exec, so SIGINT/SIGTERM do
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// not remain blocked in executed programs.
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export type interrupt = struct {
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fd: i32,
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oldmask: u64,
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active: bool,
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errno: i32,
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};
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let launchmaskactive: bool = false;
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let launcholdmask: u64 = 0u64;
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fn instantns(i: *time.instant) i64 = {
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return i.sec * (time.second: i64) + i.nsec;
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};
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fn nowns() i64 = {
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let now: time.instant = time.now(time.clock.monotonic);
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return instantns(&now);
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};
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fn reset(p: *process) void = {
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p.pid = -1;
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p.state = state.EMPTY as i32;
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p.markerfd = -1;
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p.markern = 0;
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p.markerclosed = false;
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p.deadline = 0i64;
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p.termdeadline = 0i64;
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p.grace = 0i64: time.duration;
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p.hasdeadline = false;
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p.done = false;
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p.reaped = false;
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p.leaderdone = false;
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p.reaptermination = termination.ERROR;
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p.reapcode = 0;
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p.result.termination = termination.ERROR;
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p.result.code = 0;
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p.result.errno = 0;
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p.result.cleanuperrno = 0;
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};
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fn hasnul(s: str) bool = {
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let i: i32 = 0;
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for (i < s.len) {
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if (s[i] == 0u8) { return true; };
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i += 1;
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};
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return false;
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};
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fn samepath(a: str, b: str) bool = {
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if (a.len != b.len) { return false; };
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let i: i32 = 0;
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for (i < a.len) {
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if (a[i] != b[i]) { return false; };
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i += 1;
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};
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return true;
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};
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fn valid(c: *command) bool = {
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if (c.path.len == 0 || c.argv.len == 0 || c.argv[0].len == 0) {
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return false;
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};
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if ((c.grace: i64) < 0i64) { return false; };
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if (hasnul(c.path) || hasnul(c.dir) || hasnul(c.stdinpath)
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|| hasnul(c.stdoutpath)
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|| hasnul(c.stderrpath)) {
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return false;
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};
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let i: i32 = 0;
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for (i < c.argv.len) {
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if (hasnul(c.argv[i])) { return false; };
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i += 1;
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};
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i = 0;
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for (i < c.env.len) {
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if (hasnul(c.env[i])) { return false; };
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i += 1;
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};
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return true;
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};
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fn cstr(s: str) *u8 = {
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let b: []u8 = alloc([], (s.len + 1): u64)!;
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b.len = s.len + 1;
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let i: i32 = 0;
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for (i < s.len) { b[i] = s[i]; i += 1; };
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b[s.len] = 0u8;
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return b.ptr;
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};
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fn ctable(v: []str) []*u8 = {
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let r: []*u8 = alloc([], (v.len + 1): u64)!;
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let i: i32 = 0;
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for (i < v.len) { append(r, cstr(v[i])); i += 1; };
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append(r, nil: *u8);
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return r;
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};
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fn setcleanup(r: *result, rc: i32) void = {
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if (rc >= 0 || rc == -3 || r.cleanuperrno != 0) { return; };
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r.cleanuperrno = -rc;
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};
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fn closefd(r: *result, fd: i32) void = {
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if (fd >= 0) { setcleanup(r, os.close(fd)); };
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};
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// Capture and marker descriptors must not occupy stdin/stdout/stderr. The
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// caller may legitimately have closed any of those descriptors before run.
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fn safefd(r: *result, fd: i32) i32 = {
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if (fd > os.STDERR_FILENO) { return fd; };
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let moved: i32 = syscall3(SYS_FCNTL, fd: i64,
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F_DUPFD_CLOEXEC: i64, (os.STDERR_FILENO + 1): i64): i32;
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closefd(r, fd);
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return moved;
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};
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fn fail(p: *process, rc: i32) void = {
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p.result.termination = termination.ERROR;
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p.result.errno = rc;
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if (p.result.errno < 0) { p.result.errno = -p.result.errno; };
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if (p.result.errno == 0) { p.result.errno = 5; };
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p.done = true;
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};
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fn childmark(fd: i32, rc: i32) void = {
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let ei: i32 = rc;
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if (ei < 0) { ei = -ei; };
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if (ei == 0) { ei = 5; };
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let e: u32 = ei: u32;
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let b: [4]u8;
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b[0] = e: u8;
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b[1] = (e >> 8u32): u8;
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b[2] = (e >> 16u32): u8;
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b[3] = (e >> 24u32): u8;
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for (true) {
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let n: i64 = os.write(fd, &b[0], size([4]u8));
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if (n == size([4]u8): i64) { break; };
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if (n != -4i64) { os.exit(126); };
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};
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os.close(fd);
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os.exit(127);
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};
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fn childclose(fd: i32, markerfd: i32) void = {
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let rc: i32 = os.close(fd);
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if (rc < 0) { childmark(markerfd, rc); };
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};
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fn child(c: *command, av: []*u8, ep: []*u8, infd: i32,
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outfd: i32, errfd: i32, markerread: i32, markerwrite: i32) void = {
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let rc: i32 = os.setpgid(0, 0);
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if (rc < 0) { childmark(markerwrite, rc); };
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if (launchmaskactive) {
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rc = os.sigprocmask(os.SIG_SETMASK, &launcholdmask, nil: *u64);
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if (rc < 0) { childmark(markerwrite, rc); };
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};
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childclose(markerread, markerwrite);
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rc = os.dup2(infd, os.STDIN_FILENO);
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if (rc < 0) { childmark(markerwrite, rc); };
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childclose(infd, markerwrite);
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rc = os.dup2(outfd, os.STDOUT_FILENO);
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if (rc < 0) { childmark(markerwrite, rc); };
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rc = os.dup2(errfd, os.STDERR_FILENO);
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if (rc < 0) { childmark(markerwrite, rc); };
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childclose(outfd, markerwrite);
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childclose(errfd, markerwrite);
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if (c.dir.len != 0) {
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rc = os.chdir(c.dir);
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if (rc < 0) { childmark(markerwrite, rc); };
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};
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rc = os.execve(c.path, av.ptr, ep.ptr);
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childmark(markerwrite, rc);
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};
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export fn start(p: *process, c: *command) void = {
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reset(p);
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p.deadline = instantns(&c.deadline);
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p.hasdeadline = c.deadline.sec != 0i64 || c.deadline.nsec != 0i64;
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p.grace = c.grace;
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if (!valid(c)) { fail(p, 22); return; };
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let stdinpath: str = c.stdinpath;
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if (stdinpath.len == 0) { stdinpath = "/dev/null"; };
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let infd: i32 = os.open(stdinpath, os.flag.RDONLY, 0i32);
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if (infd < 0) { fail(p, infd); return; };
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infd = safefd(&p.result, infd);
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if (infd < 0) { fail(p, infd); return; };
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let outfd: i32 = os.open(c.stdoutpath,
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os.flag.WRONLY | os.flag.CREATE | os.flag.EXCL, 384);
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if (outfd < 0) {
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fail(p, outfd);
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closefd(&p.result, infd);
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return;
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};
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outfd = safefd(&p.result, outfd);
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if (outfd < 0) {
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fail(p, outfd);
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closefd(&p.result, infd);
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return;
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};
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let errfd: i32;
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if (samepath(c.stdoutpath, c.stderrpath)) {
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errfd = syscall3(SYS_FCNTL, outfd: i64,
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F_DUPFD_CLOEXEC: i64, (os.STDERR_FILENO + 1): i64): i32;
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} else {
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errfd = os.open(c.stderrpath,
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os.flag.WRONLY | os.flag.CREATE | os.flag.EXCL, 384);
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};
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if (errfd < 0) {
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fail(p, errfd);
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closefd(&p.result, infd);
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closefd(&p.result, outfd);
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return;
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};
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errfd = safefd(&p.result, errfd);
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if (errfd < 0) {
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fail(p, errfd);
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closefd(&p.result, infd);
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closefd(&p.result, outfd);
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return;
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};
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let marker: [2]i32;
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let rc: i32 = os.pipe2(&marker, os.O_CLOEXEC | os.O_NONBLOCK);
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if (rc < 0) {
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fail(p, rc);
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closefd(&p.result, infd);
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closefd(&p.result, outfd);
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closefd(&p.result, errfd);
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return;
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};
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marker[0] = safefd(&p.result, marker[0]);
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if (marker[0] < 0) {
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fail(p, marker[0]);
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closefd(&p.result, infd);
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closefd(&p.result, outfd);
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closefd(&p.result, errfd);
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closefd(&p.result, marker[1]);
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return;
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};
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marker[1] = safefd(&p.result, marker[1]);
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if (marker[1] < 0) {
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fail(p, marker[1]);
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closefd(&p.result, infd);
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closefd(&p.result, outfd);
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closefd(&p.result, errfd);
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closefd(&p.result, marker[0]);
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return;
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};
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let av: []*u8 = ctable(c.argv);
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let ep: []*u8 = ctable(c.env);
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let pid: i32 = os.fork();
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if (pid < 0) {
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fail(p, pid);
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closefd(&p.result, infd);
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closefd(&p.result, outfd);
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closefd(&p.result, errfd);
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closefd(&p.result, marker[0]);
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closefd(&p.result, marker[1]);
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return;
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};
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if (pid == 0) {
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child(c, av, ep, infd, outfd, errfd, marker[0], marker[1]);
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};
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p.pid = pid;
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p.state = state.RUNNING as i32;
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p.markerfd = marker[0];
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closefd(&p.result, infd);
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closefd(&p.result, outfd);
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closefd(&p.result, errfd);
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closefd(&p.result, marker[1]);
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// The child creates its group before user code. The parent repeats the
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// operation to close the cancel-before-child-runs race.
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let pgrc: i32 = os.setpgid(pid, pid);
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if (pgrc < 0 && pgrc != -13 && pgrc != -3) {
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p.result.termination = termination.ERROR;
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p.result.errno = -pgrc;
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setcleanup(&p.result, os.kill(-pid, os.SIGTERM));
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p.termdeadline = nowns() + (p.grace: i64);
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p.state = state.TERM as i32;
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};
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};
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fn decodemarker(p: *process) void = {
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if (p.markern != 4) {
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if (p.result.termination != termination.TIMEOUT) {
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p.result.termination = termination.ERROR;
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};
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if (p.result.errno == 0) { p.result.errno = 71; };
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return;
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};
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let e: u32 = p.marker[0]: u32
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| ((p.marker[1]: u32) << 8u32)
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| ((p.marker[2]: u32) << 16u32)
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| ((p.marker[3]: u32) << 24u32);
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if (p.result.termination != termination.TIMEOUT) {
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p.result.termination = termination.ERROR;
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};
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if (p.result.errno == 0) { p.result.errno = e: i32; };
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if (p.result.errno == 0) { p.result.errno = 5; };
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};
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fn closemarker(p: *process) void = {
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if (p.markerfd < 0) { return; };
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closefd(&p.result, p.markerfd);
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p.markerfd = -1;
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};
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fn readmarker(p: *process) void = {
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if (p.markerfd < 0 || p.markerclosed || p.markern == 4) { return; };
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for (true) {
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let n: i64 = os.read(p.markerfd, &p.marker[p.markern],
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(4 - p.markern): u64);
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if (n > 0) {
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p.markern += n: i32;
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if (p.markern == 4) { decodemarker(p); return; };
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continue;
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};
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if (n == 0) { p.markerclosed = true; return; };
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if (n == -4i64) { continue; };
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if (n == -11i64) { return; };
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p.markerclosed = true;
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if (p.result.termination != termination.TIMEOUT) {
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p.result.termination = termination.ERROR;
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};
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if (p.result.errno == 0) { p.result.errno = (-n): i32; };
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return;
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};
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};
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fn groupsignal(p: *process, sig: i32) i32 = {
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let rc: i32 = os.kill(-p.pid, sig);
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setcleanup(&p.result, rc);
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return rc;
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};
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fn leadersignal(p: *process, sig: i32) i32 = {
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let rc: i32 = os.kill(p.pid, sig);
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setcleanup(&p.result, rc);
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return rc;
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};
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fn leaderterminal(p: *process) bool = {
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return p.reaped || p.leaderdone;
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};
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// 0 means no group member remains, 1 means the group is live, and -1 is an
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// explicit cleanup failure.
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fn groupstate(p: *process) i32 = {
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let rc: i32 = os.kill(-p.pid, 0);
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if (rc == -3) { return 0; };
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if (rc == 0) { return 1; };
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setcleanup(&p.result, rc);
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return -1;
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};
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fn finish(p: *process) void = {
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closemarker(p);
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p.state = state.EMPTY as i32;
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p.done = true;
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};
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fn startterm(p: *process, now: i64) void = {
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groupsignal(p, os.SIGTERM);
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p.termdeadline = now + (p.grace: i64);
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p.state = state.TERM as i32;
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};
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fn startkill(p: *process) void = {
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groupsignal(p, os.SIGKILL);
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if (!leaderterminal(p)) { leadersignal(p, os.SIGKILL); };
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p.state = state.KILL as i32;
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};
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fn advancecleanup(p: *process, now: i64) bool = {
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if (p.state == (state.RUNNING as i32)) { return false; };
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let gs: i32 = groupstate(p);
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if (leaderterminal(p) && gs == 0) { finish(p); return true; };
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if (p.state == (state.TERM as i32) && now >= p.termdeadline) {
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startkill(p);
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gs = groupstate(p);
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};
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if (p.state == (state.KILL as i32)) {
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groupsignal(p, os.SIGKILL);
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if (!leaderterminal(p)) { leadersignal(p, os.SIGKILL); };
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gs = groupstate(p);
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if (leaderterminal(p) && (gs == 0 || gs < 0)) {
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finish(p);
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return true;
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};
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};
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return false;
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};
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|
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fn reap(p: *process, status: i32) void = {
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p.reaped = true;
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p.leaderdone = true;
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if (os.wifexited(status)) {
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p.reaptermination = termination.EXIT;
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p.reapcode = os.wexitstatus(status);
|
|
} else if (os.wifsignaled(status)) {
|
|
p.reaptermination = termination.SIGNAL;
|
|
p.reapcode = os.wtermsig(status);
|
|
} else {
|
|
if (p.result.errno == 0) { p.result.errno = 71; };
|
|
};
|
|
readmarker(p);
|
|
if (p.markern == 0 && p.markerclosed) {
|
|
if (p.result.termination != termination.TIMEOUT
|
|
&& p.result.errno == 0) {
|
|
p.result.termination = p.reaptermination;
|
|
p.result.code = p.reapcode;
|
|
};
|
|
} else if (p.markern != 4 && p.result.errno == 0) {
|
|
decodemarker(p);
|
|
};
|
|
if (p.state == (state.RUNNING as i32)) {
|
|
startterm(p, nowns());
|
|
};
|
|
};
|
|
|
|
fn waitleader(p: *process) bool = {
|
|
if (p.reaped) { return true; };
|
|
let status: i32 = 0;
|
|
for (true) {
|
|
let pid: i32 = os.wait4(p.pid, &status, os.WNOHANG, nil: *void);
|
|
if (pid == p.pid) { reap(p, status); return true; };
|
|
if (pid == 0) { return false; };
|
|
if (pid == -4) { continue; };
|
|
if (p.result.errno == 0) { p.result.errno = -pid; };
|
|
if (pid == -10) { p.leaderdone = true; };
|
|
if (p.result.termination != termination.TIMEOUT) {
|
|
p.result.termination = termination.ERROR;
|
|
};
|
|
if (p.state == (state.RUNNING as i32)) { startterm(p, nowns()); };
|
|
return false;
|
|
};
|
|
return false;
|
|
};
|
|
|
|
export fn poll(p: *process) bool = {
|
|
if (p.done) { return true; };
|
|
if (p.pid <= 0 || p.state == (state.EMPTY as i32)) { return true; };
|
|
readmarker(p);
|
|
waitleader(p);
|
|
let now: i64 = nowns();
|
|
if (p.state == (state.RUNNING as i32) && p.hasdeadline
|
|
&& p.markerclosed && p.markern == 0 && p.result.errno == 0
|
|
&& now >= p.deadline) {
|
|
p.result.termination = termination.TIMEOUT;
|
|
p.result.code = 0;
|
|
startterm(p, now);
|
|
};
|
|
advancecleanup(p, now);
|
|
return p.done;
|
|
};
|
|
|
|
export fn cancel(p: *process) void = {
|
|
if (p.done || p.pid <= 0 || p.state == (state.EMPTY as i32)) { return; };
|
|
if (p.state == (state.RUNNING as i32)) { startterm(p, nowns()); };
|
|
};
|
|
|
|
export fn run(c: *command, out: *result) void = {
|
|
let watch: interrupt;
|
|
if (!interruptopen(&watch)) {
|
|
out.termination = termination.ERROR;
|
|
out.code = 0;
|
|
out.errno = watch.errno;
|
|
out.cleanuperrno = 0;
|
|
return;
|
|
};
|
|
let p: process;
|
|
let interrupted: i32 = 0;
|
|
start(&p, c);
|
|
for (!p.done) {
|
|
let signo: i32 = interruptpoll(&watch);
|
|
if (signo != 0) {
|
|
if (signo > 0 && interrupted == 0) { interrupted = signo; };
|
|
cancel(&p);
|
|
};
|
|
if (poll(&p)) { break; };
|
|
time.sleep(time.millisecond, time.clock.monotonic);
|
|
};
|
|
interruptclose(&watch);
|
|
if (watch.errno != 0 && p.result.cleanuperrno == 0) {
|
|
p.result.cleanuperrno = watch.errno;
|
|
};
|
|
*out = p.result;
|
|
if (interrupted != 0) { os.kill(os.getpid(), interrupted); };
|
|
};
|
|
|
|
// runstdio executes one child with the caller's stdin/stdout/stderr and waits
|
|
// only for that child. It deliberately does not create or clean a process
|
|
// group: commands such as a compiler driver or a user program own any
|
|
// descendants they create. env is the complete environment; an empty slice
|
|
// requests an empty environment. The close-on-exec marker keeps an execve
|
|
// setup failure distinct from a real program exit 127.
|
|
export fn runstdio(path: str, argv: []str, env: []str, out: *result) void = {
|
|
out.termination = termination.ERROR;
|
|
out.code = 0;
|
|
out.errno = 0;
|
|
out.cleanuperrno = 0;
|
|
if (path.len == 0 || argv.len == 0 || argv[0].len == 0
|
|
|| hasnul(path)) {
|
|
out.errno = 22;
|
|
return;
|
|
};
|
|
let i: i32 = 0;
|
|
for (i < argv.len) {
|
|
if (hasnul(argv[i])) { out.errno = 22; return; };
|
|
i += 1;
|
|
};
|
|
i = 0;
|
|
for (i < env.len) {
|
|
if (hasnul(env[i])) { out.errno = 22; return; };
|
|
i += 1;
|
|
};
|
|
|
|
let marker: [2]i32;
|
|
let rc: i32 = os.pipe2(&marker, os.O_CLOEXEC);
|
|
if (rc < 0) { out.errno = -rc; return; };
|
|
marker[0] = safefd(out, marker[0]);
|
|
if (marker[0] < 0) {
|
|
out.errno = -marker[0];
|
|
closefd(out, marker[1]);
|
|
return;
|
|
};
|
|
marker[1] = safefd(out, marker[1]);
|
|
if (marker[1] < 0) {
|
|
out.errno = -marker[1];
|
|
closefd(out, marker[0]);
|
|
return;
|
|
};
|
|
let av: []*u8 = ctable(argv);
|
|
let ep: []*u8 = ctable(env);
|
|
let pid: i32 = os.fork();
|
|
if (pid < 0) {
|
|
out.errno = -pid;
|
|
closefd(out, marker[0]);
|
|
closefd(out, marker[1]);
|
|
return;
|
|
};
|
|
if (pid == 0) {
|
|
if (launchmaskactive) {
|
|
rc = os.sigprocmask(os.SIG_SETMASK, &launcholdmask,
|
|
nil: *u64);
|
|
if (rc < 0) { childmark(marker[1], rc); };
|
|
};
|
|
childclose(marker[0], marker[1]);
|
|
rc = os.execve(path, av.ptr, ep.ptr);
|
|
childmark(marker[1], rc);
|
|
};
|
|
closefd(out, marker[1]);
|
|
|
|
let status: i32 = 0;
|
|
let waited: i32 = 0;
|
|
for (true) {
|
|
waited = os.wait4(pid, &status, 0, nil: *void);
|
|
if (waited == pid) { break; };
|
|
if (waited == -4) { continue; };
|
|
out.errno = -waited;
|
|
if (out.errno <= 0) { out.errno = 5; };
|
|
break;
|
|
};
|
|
|
|
let mark: [4]u8;
|
|
let markn: i32 = 0;
|
|
for (waited == pid && markn < 4) {
|
|
let n: i64 = os.read(marker[0], &mark[markn], (4 - markn): u64);
|
|
if (n > 0) { markn += n: i32; continue; };
|
|
if (n == 0) { break; };
|
|
if (n == -4i64) { continue; };
|
|
out.errno = (-n): i32;
|
|
break;
|
|
};
|
|
closefd(out, marker[0]);
|
|
if (waited != pid || out.errno != 0) { return; };
|
|
if (markn != 0) {
|
|
if (markn != 4) { out.errno = 71; return; };
|
|
let e: u32 = mark[0]: u32
|
|
| ((mark[1]: u32) << 8u32)
|
|
| ((mark[2]: u32) << 16u32)
|
|
| ((mark[3]: u32) << 24u32);
|
|
out.errno = e: i32;
|
|
if (out.errno == 0) { out.errno = 5; };
|
|
out.code = 127;
|
|
return;
|
|
};
|
|
if (os.wifexited(status)) {
|
|
out.termination = termination.EXIT;
|
|
out.code = os.wexitstatus(status);
|
|
return;
|
|
};
|
|
if (os.wifsignaled(status)) {
|
|
out.termination = termination.SIGNAL;
|
|
out.code = os.wtermsig(status);
|
|
return;
|
|
};
|
|
out.errno = 71;
|
|
};
|
|
|
|
export fn interruptopen(w: *interrupt) bool = {
|
|
w.fd = -1;
|
|
w.oldmask = 0u64;
|
|
w.active = false;
|
|
w.errno = 0;
|
|
if (launchmaskactive) { w.errno = 16; return false; };
|
|
let mask: u64 = (1u64 << ((os.SIGINT - 1): u64))
|
|
| (1u64 << ((os.SIGTERM - 1): u64));
|
|
let rc: i32 = os.sigprocmask(os.SIG_BLOCK, &mask, &w.oldmask);
|
|
if (rc < 0) { w.errno = -rc; return false; };
|
|
w.fd = os.signalfd(-1, &mask, os.SFD_CLOEXEC | os.SFD_NONBLOCK);
|
|
if (w.fd < 0) {
|
|
w.errno = -w.fd;
|
|
os.sigprocmask(os.SIG_SETMASK, &w.oldmask, nil: *u64);
|
|
w.fd = -1;
|
|
return false;
|
|
};
|
|
launcholdmask = w.oldmask;
|
|
launchmaskactive = true;
|
|
w.active = true;
|
|
return true;
|
|
};
|
|
|
|
export fn interruptpoll(w: *interrupt) i32 = {
|
|
if (!w.active || w.fd < 0) { w.errno = 22; return -22; };
|
|
let info: [128]u8;
|
|
for (true) {
|
|
let n: i64 = os.read(w.fd, &info[0], size([128]u8));
|
|
if (n == -4i64) { continue; };
|
|
if (n == -11i64) { return 0; };
|
|
if (n < 0) { w.errno = (-n): i32; return n: i32; };
|
|
if (n != size([128]u8): i64) { w.errno = 71; return -71; };
|
|
let signo: u32 = info[0]: u32
|
|
| ((info[1]: u32) << 8u32)
|
|
| ((info[2]: u32) << 16u32)
|
|
| ((info[3]: u32) << 24u32);
|
|
return signo: i32;
|
|
};
|
|
return 0;
|
|
};
|
|
|
|
export fn interruptclose(w: *interrupt) bool = {
|
|
if (!w.active) { return w.errno == 0; };
|
|
let ok: bool = true;
|
|
let rc: i32 = os.close(w.fd);
|
|
if (rc < 0) { w.errno = -rc; ok = false; };
|
|
rc = os.sigprocmask(os.SIG_SETMASK, &w.oldmask, nil: *u64);
|
|
if (rc < 0) {
|
|
if (w.errno == 0) { w.errno = -rc; };
|
|
ok = false;
|
|
};
|
|
launchmaskactive = false;
|
|
launcholdmask = 0u64;
|
|
w.fd = -1;
|
|
w.active = false;
|
|
return ok;
|
|
};
|