feat: process exit codes, posix_spawn, 4 KiB command lines
Groundwork for the GCC driver: a compiler driver must spawn cc1/as/ld and know whether each stage succeeded. Kernel: the scheduler keeps an exit-code ledger (pid -> code; pids are monotonic so entries never alias), published during teardown right before waiters wake. SYS_EXIT records main()'s return value, SYS_KILL records 256+SIGKILL, and the exception handler records 256+signal mapped from the fault vector (#PF/#GP -> SIGSEGV, #DE/FP -> SIGFPE, #UD -> SIGILL). SYS_WAITPID now returns the code: 0..255 for a normal exit, 256+signal for a violent death. Process args grow from 256 bytes to 4 KiB (cc1 invocations do not fit in 256), with crt1 now parsing up to 255 argv entries from a static buffer. libc: new spawn.h with posix_spawn/posix_spawnp over SYS_SPAWN - libiberty's pex layer has a posix_spawn backend, so GCC's driver works without fork. argv is joined into the kernel args string (spaces in arguments rejected; no kernel quoting), envp is not transferred, and non-empty file actions fail loudly with ENOTSUP until the kernel can redirect stdio on spawn. waitpid() now decodes real POSIX status and the sys/wait.h macros distinguish exited from signaled children. Shell: prints [exit code N] after nonzero exits and [terminated by signal N] for killed or crashed children. Verified on the OS: cat on a missing file reports exit code 1; a window-close (clean exit 0) stays silent as it should. Co-Authored-By: Claude Fable 5 <[email protected]>
This commit is contained in:
@@ -12,4 +12,4 @@
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#pragma once
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#define MONTAUK_BUILD_NUMBER 13
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#define MONTAUK_BUILD_NUMBER 15
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@@ -20,7 +20,7 @@
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namespace montauk::abi {
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static void Sys_Exit(int exitCode) {
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(void)exitCode;
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Sched::SetProcessExitCode(Sched::GetCurrentPid(), exitCode & 0xFF);
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Sched::ExitProcess();
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}
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@@ -36,8 +36,11 @@ namespace montauk::abi {
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return Sched::GetCurrentPid();
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}
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static void Sys_WaitPid(int pid) {
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// Returns 0..255 for a normal exit, 256+signal for killed/crashed,
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// 0 when the pid is unknown or its ledger entry has been evicted.
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static int Sys_WaitPid(int pid) {
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Sched::BlockOnPid(pid);
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return Sched::LookupExitCode(pid);
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}
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static int Sys_Spawn(const char* path, const char* args) {
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@@ -47,7 +47,8 @@ namespace montauk::abi {
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static constexpr uint64_t kMaxPrintableStringBytes = 4096;
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static constexpr uint64_t kMaxPathBytes = 256;
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static constexpr uint64_t kMaxArgsBytes = 256;
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// Large enough for compiler driver command lines (cc1/ld invocations).
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static constexpr uint64_t kMaxArgsBytes = 4096;
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static constexpr uint64_t kMaxWindowTitleBytes = 256;
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static constexpr uint64_t kMaxHostnameBytes = 256;
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static constexpr uint64_t kMaxUserNameBytes = 32;
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@@ -140,8 +141,7 @@ namespace montauk::abi {
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return (int64_t)Sys_Spawn((const char*)frame->arg1,
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UserMemory::IsUserPtr(frame->arg2) ? (const char*)frame->arg2 : nullptr);
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case SYS_WAITPID:
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Sys_WaitPid((int)frame->arg1);
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return 0;
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return Sys_WaitPid((int)frame->arg1);
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case SYS_FBINFO:
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if (!UserMemory::Writable<FbInfo>(frame->arg1)) return -1;
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Sys_FbInfo((FbInfo*)frame->arg1);
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@@ -143,6 +143,16 @@ namespace Hal {
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CrashReport::AddReport(rep);
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Sched::SpawnCrashPad(proc->pid);
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// Record a killed-by-signal exit code (256+sig) so a parent
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// blocked in SYS_WAITPID can tell a crash from a clean exit.
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{
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int sig = 11; /* SIGSEGV */
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if (i == 0x00) sig = 8; /* #DE -> SIGFPE */
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else if (i == 0x06) sig = 4; /* #UD -> SIGILL */
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else if (i == 0x10 || i == 0x13) sig = 8; /* x87/SIMD FP */
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Sched::SetProcessExitCode(proc->pid, 256 + sig);
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}
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Sched::ExitProcess();
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__builtin_unreachable();
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} else {
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@@ -43,6 +43,15 @@ namespace Sched {
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static Process processTable[MaxProcesses];
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static int nextPid = 0;
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// Exit-code ledger. Pids are monotonic and never recycled, so entries
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// cannot alias. Written under schedLock during process teardown; read
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// by SYS_WAITPID after the waiter unblocks. Codes: 0..255 = normal
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// exit status, 256+signal = killed or crashed.
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static constexpr int ExitLedgerSize = 128;
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static int exitLedgerPid[ExitLedgerSize];
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static int exitLedgerCode[ExitLedgerSize];
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static int exitLedgerHead = 0;
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// The scheduler lock MUST be a Spinlock (interrupt-disabling).
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// It is held ACROSS context switches to prevent the race where
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// another CPU picks up a process whose RSP hasn't been saved yet.
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@@ -212,6 +221,11 @@ namespace Sched {
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}
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nextPid = 0;
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for (int i = 0; i < ExitLedgerSize; i++) {
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exitLedgerPid[i] = -1;
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exitLedgerCode[i] = 0;
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}
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exitLedgerHead = 0;
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Hal::RegisterIrqHandler(Hal::IRQ_RESCHEDULE, RescheduleIpiHandler);
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Kt::KernelLogStream(Kt::OK, "Sched") << "Initialized (" << MaxProcesses
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@@ -389,7 +403,7 @@ namespace Sched {
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proc.args[0] = '\0';
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if (args != nullptr) {
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int i = 0;
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for (; i < 255 && args[i]; i++) {
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for (; i < 4095 && args[i]; i++) {
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proc.args[i] = args[i];
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}
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proc.args[i] = '\0';
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@@ -1152,6 +1166,12 @@ namespace Sched {
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proc.runningOnCpu = -1;
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proc.reapReady = true;
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// Publish the exit code before waking waiters so SYS_WAITPID
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// observes it the moment it unblocks.
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exitLedgerPid[exitLedgerHead] = exitingPid;
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exitLedgerCode[exitLedgerHead] = proc.exitCode;
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exitLedgerHead = (exitLedgerHead + 1) % ExitLedgerSize;
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// Wake any processes blocked on this PID
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for (int i = 0; i < MaxProcesses; i++) {
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if (processTable[i].state == ProcessState::Blocked &&
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@@ -1232,6 +1252,8 @@ namespace Sched {
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return -1;
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}
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processTable[primarySlot_].exitCode = 256 + 9; /* killed (SIGKILL) */
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// Flag the main thread so its next tick (or scheduler dispatch)
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// routes through ExitProcess, which sweeps every sibling thread
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// and tears down the address space. If the main thread is parked
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@@ -1263,6 +1285,33 @@ namespace Sched {
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return 0;
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}
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int LookupExitCode(int pid) {
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schedLock.Acquire();
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int code = 0;
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for (int i = 0; i < ExitLedgerSize; i++) {
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if (exitLedgerPid[i] == pid) {
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code = exitLedgerCode[i];
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break;
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}
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}
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schedLock.Release();
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return code;
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}
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void SetProcessExitCode(int pid, int code) {
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schedLock.Acquire();
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for (int i = 0; i < MaxProcesses; i++) {
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if (processTable[i].pid != pid) continue;
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// Only a process (primary slot) carries a process exit code;
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// sibling-thread exit values go through the join path.
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if (processTable[i].primarySlot == i) {
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processTable[i].exitCode = code;
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}
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break;
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}
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schedLock.Release();
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}
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void BlockOnPid(int pid) {
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// If the target is already dead, return immediately
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if (!IsAlive(pid)) return;
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@@ -54,7 +54,7 @@ namespace Sched {
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uint64_t userStackTop; // User-space stack top
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uint64_t heapNext; // Simple bump allocator for user heap
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uint32_t readdirCursor; // Next SYS_READDIR scratch slot
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char args[256]; // Command-line arguments (set by parent via Spawn)
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char args[4096]; // Command-line arguments (set by parent via Spawn)
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char user[32]; // Owner user name (inherited from parent on spawn)
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char cwd[256]; // Absolute current working directory
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@@ -158,6 +158,8 @@ namespace Sched {
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// Block the current process until the given PID exits.
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void BlockOnPid(int pid);
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int LookupExitCode(int pid);
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void SetProcessExitCode(int pid, int code);
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// Block the current process for the given number of milliseconds.
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void BlockForSleep(uint64_t ms);
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@@ -51,6 +51,7 @@ extern int errno;
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#define EWOULDBLOCK EAGAIN
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#define EOVERFLOW 75
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#define ETIMEDOUT 110
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#define ENOTSUP 95
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#ifdef __cplusplus
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}
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@@ -0,0 +1,60 @@
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#ifndef _LIBC_SPAWN_H
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#define _LIBC_SPAWN_H
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#pragma once
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#include <sys/types.h>
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#ifdef __cplusplus
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extern "C" {
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#endif
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/*
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* posix_spawn for MontaukOS, layered on SYS_SPAWN.
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*
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* Limitations (kernel spawn model):
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* - argv is joined into a single args string; arguments containing
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* spaces are rejected with EINVAL (no quoting in the kernel).
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* - envp is ignored (no environment transfer on spawn).
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* - file actions must be empty: stdio redirection needs kernel
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* support that does not exist yet, so any recorded action makes
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* posix_spawn fail with ENOTSUP rather than misbehave silently.
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*/
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typedef struct {
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short flags;
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} posix_spawnattr_t;
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typedef struct {
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int action_count;
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} posix_spawn_file_actions_t;
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int posix_spawnattr_init(posix_spawnattr_t *attr);
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int posix_spawnattr_destroy(posix_spawnattr_t *attr);
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int posix_spawnattr_setflags(posix_spawnattr_t *attr, short flags);
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int posix_spawnattr_getflags(const posix_spawnattr_t *attr, short *flags);
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int posix_spawn_file_actions_init(posix_spawn_file_actions_t *actions);
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int posix_spawn_file_actions_destroy(posix_spawn_file_actions_t *actions);
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int posix_spawn_file_actions_adddup2(posix_spawn_file_actions_t *actions,
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int fd, int newfd);
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int posix_spawn_file_actions_addclose(posix_spawn_file_actions_t *actions,
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int fd);
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int posix_spawn_file_actions_addopen(posix_spawn_file_actions_t *actions,
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int fd, const char *path, int oflag,
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mode_t mode);
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int posix_spawn(pid_t *pid, const char *path,
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const posix_spawn_file_actions_t *actions,
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const posix_spawnattr_t *attr,
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char *const argv[], char *const envp[]);
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int posix_spawnp(pid_t *pid, const char *file,
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const posix_spawn_file_actions_t *actions,
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const posix_spawnattr_t *attr,
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char *const argv[], char *const envp[]);
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#ifdef __cplusplus
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}
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#endif
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#endif /* _LIBC_SPAWN_H */
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@@ -9,12 +9,12 @@
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extern "C" {
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#endif
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/* Status decoding. The Montauk kernel does not yet report exit codes
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through SYS_WAITPID, so waited children always decode as exit 0. */
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/* POSIX status decoding. waitpid() encodes a normal exit as code<<8
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and a killed/crashed child as the signal number in the low bits. */
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#define WIFEXITED(s) (((s) & 0x7F) == 0)
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#define WEXITSTATUS(s) (((s) >> 8) & 0xFF)
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#define WIFSIGNALED(s) (0)
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#define WTERMSIG(s) (0)
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#define WIFSIGNALED(s) (((s) & 0x7F) != 0)
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#define WTERMSIG(s) ((s) & 0x7F)
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#define WIFSTOPPED(s) (0)
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#define WSTOPSIG(s) (0)
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@@ -321,7 +321,9 @@ namespace montauk {
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}
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// Process management
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inline void waitpid(int pid) { syscall1(montauk::abi::SYS_WAITPID, (uint64_t)pid); }
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// Blocks until pid exits. Returns 0..255 for a normal exit,
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// 256+signal when the process was killed or crashed.
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inline int waitpid(int pid) { return (int)syscall1(montauk::abi::SYS_WAITPID, (uint64_t)pid); }
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// Framebuffer
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inline void fb_info(montauk::abi::FbInfo* info) { syscall1(montauk::abi::SYS_FBINFO, (uint64_t)info); }
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@@ -37,23 +37,24 @@ static inline long _sys2(long nr, long a1, long a2) {
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extern int main(int argc, char** argv);
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void _start(void) {
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char argbuf[256];
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/* Static: 4 KiB args + 256 argv slots would crowd a 32 KiB stack. */
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static char argbuf[4096];
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static char* argv[256];
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int len = (int)_sys2(SYS_GETARGS, (long)argbuf, (long)sizeof(argbuf));
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char* argv[32];
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int argc = 0;
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argv[argc++] = (char*)"prog";
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if (len > 0) {
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if (len > 255) {
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len = 255;
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if (len > (int)sizeof(argbuf) - 1) {
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len = (int)sizeof(argbuf) - 1;
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}
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argbuf[len] = '\0';
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char* p = argbuf;
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while (*p != '\0' && argc < 31) {
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while (*p != '\0' && argc < 255) {
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while (*p == ' ') {
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p++;
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}
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Binary file not shown.
+157
-4
@@ -21,6 +21,7 @@
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#include <errno.h>
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#include <sys/stat.h>
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#include <utime.h>
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#include <spawn.h>
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#include <sys/time.h>
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#include <unistd.h>
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@@ -3404,17 +3405,21 @@ int dup2(int oldfd, int newfd) {
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return newfd;
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}
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/* SYS_WAITPID blocks until the child exits but does not report its
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exit code yet, so successful waits decode as exit status 0. */
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/* SYS_WAITPID blocks until the child exits and returns 0..255 for a
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normal exit or 256+signal for a killed/crashed child. */
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pid_t waitpid(pid_t pid, int *status, int options) {
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(void)options;
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if (pid <= 0) {
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errno = ECHILD; /* no process groups / wait-any support */
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return -1;
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}
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_zos_syscall1(SYS_WAITPID, (long)pid);
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long code = _zos_syscall1(SYS_WAITPID, (long)pid);
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if (status != NULL) {
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*status = 0;
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if (code >= 256) {
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*status = (int)((code - 256) & 0x7F); /* signaled */
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} else {
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*status = (int)((code & 0xFF) << 8); /* exited */
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}
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}
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return pid;
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}
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@@ -3448,6 +3453,154 @@ long pathconf(const char *path, int name) {
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}
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}
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/* ========================================================================
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posix_spawn (spawn.h) over SYS_SPAWN
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======================================================================== */
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int posix_spawnattr_init(posix_spawnattr_t *attr) {
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if (attr == NULL) return EINVAL;
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attr->flags = 0;
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return 0;
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}
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int posix_spawnattr_destroy(posix_spawnattr_t *attr) {
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(void)attr;
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return 0;
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}
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int posix_spawnattr_setflags(posix_spawnattr_t *attr, short flags) {
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if (attr == NULL) return EINVAL;
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attr->flags = flags;
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return 0;
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}
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int posix_spawnattr_getflags(const posix_spawnattr_t *attr, short *flags) {
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if (attr == NULL || flags == NULL) return EINVAL;
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*flags = attr->flags;
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return 0;
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}
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int posix_spawn_file_actions_init(posix_spawn_file_actions_t *actions) {
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if (actions == NULL) return EINVAL;
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actions->action_count = 0;
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return 0;
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}
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int posix_spawn_file_actions_destroy(posix_spawn_file_actions_t *actions) {
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(void)actions;
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return 0;
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}
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/* Actions are counted but cannot be honored yet (no kernel support for
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stdio redirection on spawn); posix_spawn refuses non-empty sets. */
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int posix_spawn_file_actions_adddup2(posix_spawn_file_actions_t *actions,
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int fd, int newfd) {
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(void)fd; (void)newfd;
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if (actions == NULL) return EINVAL;
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actions->action_count++;
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return 0;
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}
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int posix_spawn_file_actions_addclose(posix_spawn_file_actions_t *actions,
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int fd) {
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(void)fd;
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if (actions == NULL) return EINVAL;
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actions->action_count++;
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return 0;
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}
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int posix_spawn_file_actions_addopen(posix_spawn_file_actions_t *actions,
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int fd, const char *path, int oflag,
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mode_t mode) {
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(void)fd; (void)path; (void)oflag; (void)mode;
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if (actions == NULL) return EINVAL;
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actions->action_count++;
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return 0;
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}
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int posix_spawn(pid_t *pid, const char *path,
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const posix_spawn_file_actions_t *actions,
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const posix_spawnattr_t *attr,
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char *const argv[], char *const envp[]) {
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(void)attr;
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(void)envp; /* no environment transfer on Montauk spawn */
|
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if (path == NULL) {
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return EINVAL;
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}
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if (actions != NULL && actions->action_count > 0) {
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return ENOTSUP; /* redirection needs kernel support */
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}
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/* Join argv[1..] into the kernel's single args string. The kernel
|
||||
tokenizer has no quoting, so embedded spaces cannot round-trip. */
|
||||
static char argsbuf[4096];
|
||||
size_t o = 0;
|
||||
argsbuf[0] = '\0';
|
||||
if (argv != NULL) {
|
||||
for (int i = 1; argv[i] != NULL; i++) {
|
||||
size_t alen = strlen(argv[i]);
|
||||
for (size_t k = 0; k < alen; k++) {
|
||||
if (argv[i][k] == ' ') {
|
||||
return EINVAL;
|
||||
}
|
||||
}
|
||||
if (o + alen + 2 >= sizeof(argsbuf)) {
|
||||
return E2BIG;
|
||||
}
|
||||
if (o > 0) {
|
||||
argsbuf[o++] = ' ';
|
||||
}
|
||||
memcpy(argsbuf + o, argv[i], alen);
|
||||
o += alen;
|
||||
}
|
||||
}
|
||||
argsbuf[o] = '\0';
|
||||
|
||||
long child = _zos_syscall2(SYS_SPAWN, (long)path, (long)argsbuf);
|
||||
if (child < 0) {
|
||||
return ENOENT;
|
||||
}
|
||||
if (pid != NULL) {
|
||||
*pid = (pid_t)child;
|
||||
}
|
||||
return 0;
|
||||
}
|
||||
|
||||
int posix_spawnp(pid_t *pid, const char *file,
|
||||
const posix_spawn_file_actions_t *actions,
|
||||
const posix_spawnattr_t *attr,
|
||||
char *const argv[], char *const envp[]) {
|
||||
if (file == NULL) {
|
||||
return EINVAL;
|
||||
}
|
||||
|
||||
int has_slash = 0;
|
||||
for (const char *p = file; *p; p++) {
|
||||
if (*p == '/') {
|
||||
has_slash = 1;
|
||||
break;
|
||||
}
|
||||
}
|
||||
if (has_slash) {
|
||||
return posix_spawn(pid, file, actions, attr, argv, envp);
|
||||
}
|
||||
|
||||
/* Bare name: search the SDK and system tool directories. */
|
||||
static const char *prefixes[] = { "/sdk/bin/", "/os/", "" };
|
||||
char candidate[512];
|
||||
for (int pi = 0; pi < 3; pi++) {
|
||||
for (int ext = 0; ext < 2; ext++) {
|
||||
snprintf(candidate, sizeof(candidate), "%s%s%s",
|
||||
prefixes[pi], file, ext ? "" : ".elf");
|
||||
if (access(candidate, F_OK) == 0) {
|
||||
return posix_spawn(pid, candidate, actions, attr, argv, envp);
|
||||
}
|
||||
}
|
||||
}
|
||||
return ENOENT;
|
||||
}
|
||||
|
||||
/* The libc environment lives in name/value slots (getenv/setenv), not
|
||||
NAME=VALUE strings, and exec* is unimplemented, so nothing can
|
||||
consume a populated environ yet. An empty, valid vector satisfies
|
||||
|
||||
Binary file not shown.
Binary file not shown.
Binary file not shown.
Binary file not shown.
Binary file not shown.
@@ -17,11 +17,33 @@ static bool file_exists(const char* path) {
|
||||
|
||||
// ---- Try to spawn an ELF at the given path ----
|
||||
|
||||
static void print_exit_code(int code) {
|
||||
if (code == 0) return;
|
||||
char buf[16];
|
||||
int n = 0;
|
||||
if (code >= 256) {
|
||||
montauk::print("[terminated by signal ");
|
||||
code -= 256;
|
||||
} else {
|
||||
montauk::print("[exit code ");
|
||||
}
|
||||
if (code == 0) buf[n++] = '0';
|
||||
while (code > 0 && n < 15) {
|
||||
buf[n++] = (char)('0' + code % 10);
|
||||
code /= 10;
|
||||
}
|
||||
while (n > 0) {
|
||||
char c[2] = { buf[--n], 0 };
|
||||
montauk::print(c);
|
||||
}
|
||||
montauk::print("]\n");
|
||||
}
|
||||
|
||||
static bool try_exec(const char* path, const char* args) {
|
||||
if (!file_exists(path)) return false;
|
||||
int pid = montauk::spawn(path, args);
|
||||
if (pid < 0) return false;
|
||||
montauk::waitpid(pid);
|
||||
print_exit_code(montauk::waitpid(pid));
|
||||
return true;
|
||||
}
|
||||
|
||||
|
||||
Reference in New Issue
Block a user