Add !command syntax that runs commands with inherited terminal (no
capture). The lexer treats ! as a statement-starting token, reading
to end-of-line with the same interpolation/escape/pipe support as
backtick commands. The C function sets _ = {code=N, stdout="", stderr=""}.
797 lines
21 KiB
C
797 lines
21 KiB
C
/*
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** $Id: lcmd.c $
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** Command execution for backtick syntax
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** See Copyright Notice in lua.h
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*/
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#define lcmd_c
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#define LUA_LIB
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#include "lprefix.h"
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#include <errno.h>
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#include <signal.h>
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#include <stdlib.h>
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#include <string.h>
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#include <sys/select.h>
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#include <sys/wait.h>
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#include <unistd.h>
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#include "lua.h"
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#include "lauxlib.h"
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#include "lcmd.h"
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/* ===== argv parser ===== */
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typedef struct {
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char **argv;
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char *buf;
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int argc;
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} ParsedArgs;
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static void free_argv (ParsedArgs *pa) {
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free(pa->buf);
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free(pa->argv);
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}
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/*
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** Tokenize command string into argv array.
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** Handles: whitespace splitting, single quotes (literal),
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** double quotes (with \", \\, \n, \t, \$ escapes), backslash escaping.
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** Returns 0 on success, -1 on error (unterminated quote).
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*/
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static int parse_argv (const char *cmd, ParsedArgs *result) {
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size_t len = strlen(cmd);
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char *buf = (char *)malloc(len + 1);
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int capacity = 8;
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char **argv = (char **)malloc((size_t)capacity * sizeof(char *));
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int argc = 0;
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size_t bp = 0; /* position in buf */
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const char *p = cmd;
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if (buf == NULL || argv == NULL) {
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free(buf);
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free(argv);
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return -1;
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}
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while (*p != '\0') {
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/* skip whitespace */
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while (*p == ' ' || *p == '\t' || *p == '\n' || *p == '\r')
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p++;
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if (*p == '\0')
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break;
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/* start of a token */
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if (argc >= capacity - 1) {
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capacity *= 2;
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argv = (char **)realloc(argv, (size_t)capacity * sizeof(char *));
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if (argv == NULL) { free(buf); return -1; }
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}
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argv[argc++] = buf + bp;
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while (*p != '\0') {
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if (*p == ' ' || *p == '\t' || *p == '\n' || *p == '\r')
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break;
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if (*p == '\'') {
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/* single quote: literal until closing quote */
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p++;
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while (*p != '\0' && *p != '\'')
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buf[bp++] = *p++;
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if (*p == '\'') p++;
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else { free(buf); free(argv); return -1; }
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}
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else if (*p == '"') {
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/* double quote: with escape sequences */
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p++;
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while (*p != '\0' && *p != '"') {
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if (*p == '\\' && p[1] != '\0') {
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p++;
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switch (*p) {
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case '"': buf[bp++] = '"'; break;
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case '\\': buf[bp++] = '\\'; break;
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case 'n': buf[bp++] = '\n'; break;
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case 't': buf[bp++] = '\t'; break;
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case '$': buf[bp++] = '$'; break;
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default: buf[bp++] = '\\'; buf[bp++] = *p; break;
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}
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p++;
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}
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else {
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buf[bp++] = *p++;
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}
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}
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if (*p == '"') p++;
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else { free(buf); free(argv); return -1; }
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}
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else if (*p == '\\' && p[1] != '\0') {
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/* backslash escape outside quotes */
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p++;
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buf[bp++] = *p++;
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}
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else {
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buf[bp++] = *p++;
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}
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}
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buf[bp++] = '\0';
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}
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argv[argc] = NULL;
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result->argv = argv;
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result->buf = buf;
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result->argc = argc;
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return 0;
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}
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/* ===== pipeline splitter ===== */
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#define MAX_PIPELINE_STAGES 64
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/*
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** Split a command string on unquoted '|' into pipeline stages.
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** Reuses the same quote-tracking logic as parse_argv().
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** Returns 0 on success, -1 on error (empty stage, leading/trailing pipe).
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** Writes stage pointers into stages[] and count into *nstages.
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** Caller must free stages[0] (the backing buffer).
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*/
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static int split_pipeline (const char *cmd, char **stages, int *nstages) {
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size_t len = strlen(cmd);
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char *buf = (char *)malloc(len + 1);
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int count = 0;
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const char *p = cmd;
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size_t bp = 0;
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if (buf == NULL) return -1;
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stages[count++] = buf;
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while (*p != '\0') {
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if (*p == '\'' ) {
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/* single-quoted string: copy through including quotes */
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buf[bp++] = *p++;
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while (*p != '\0' && *p != '\'')
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buf[bp++] = *p++;
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if (*p == '\'') buf[bp++] = *p++;
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}
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else if (*p == '"') {
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/* double-quoted string: copy through, respecting backslash */
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buf[bp++] = *p++;
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while (*p != '\0' && *p != '"') {
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if (*p == '\\' && p[1] != '\0') {
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buf[bp++] = *p++;
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buf[bp++] = *p++;
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} else {
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buf[bp++] = *p++;
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}
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}
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if (*p == '"') buf[bp++] = *p++;
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}
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else if (*p == '\\' && p[1] != '\0') {
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/* backslash escape: copy both chars */
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buf[bp++] = *p++;
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buf[bp++] = *p++;
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}
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else if (*p == '|') {
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/* unquoted pipe — split here */
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buf[bp++] = '\0';
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if (count >= MAX_PIPELINE_STAGES) { free(buf); return -1; }
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stages[count++] = buf + bp;
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p++;
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}
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else {
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buf[bp++] = *p++;
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}
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}
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buf[bp] = '\0';
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/* validate: no empty stages (only for multi-stage pipelines) */
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if (count > 1) {
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for (int i = 0; i < count; i++) {
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const char *s = stages[i];
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/* skip whitespace */
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while (*s == ' ' || *s == '\t' || *s == '\n' || *s == '\r') s++;
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if (*s == '\0') { free(buf); return -1; }
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}
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}
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*nstages = count;
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return 0;
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}
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/* ===== pipe reader ===== */
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#define READ_CHUNK 4096
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typedef struct {
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char *data;
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size_t len;
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size_t cap;
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} DynBuf;
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static void dynbuf_init (DynBuf *b) {
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b->data = NULL;
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b->len = 0;
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b->cap = 0;
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}
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static void dynbuf_free (DynBuf *b) {
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free(b->data);
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b->data = NULL;
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b->len = b->cap = 0;
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}
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static int dynbuf_grow (DynBuf *b, size_t need) {
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if (b->len + need > b->cap) {
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size_t newcap = (b->cap == 0) ? READ_CHUNK : b->cap;
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char *p;
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while (newcap < b->len + need)
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newcap *= 2;
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p = (char *)realloc(b->data, newcap);
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if (p == NULL) return -1;
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b->data = p;
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b->cap = newcap;
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}
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return 0;
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}
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/*
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** Read from two fds simultaneously into DynBufs using select().
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** Avoids deadlock when child fills one pipe buffer.
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*/
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static void read_pipes (int fd_out, int fd_err,
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DynBuf *buf_out, DynBuf *buf_err) {
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int nfds = (fd_out > fd_err ? fd_out : fd_err) + 1;
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int open_out = 1, open_err = 1;
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while (open_out || open_err) {
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fd_set rfds;
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int ret;
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FD_ZERO(&rfds);
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if (open_out) FD_SET(fd_out, &rfds);
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if (open_err) FD_SET(fd_err, &rfds);
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ret = select(nfds, &rfds, NULL, NULL, NULL);
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if (ret < 0) {
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if (errno == EINTR) continue;
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break; /* unexpected error */
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}
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if (open_out && FD_ISSET(fd_out, &rfds)) {
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ssize_t n;
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if (dynbuf_grow(buf_out, READ_CHUNK) != 0) break;
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n = read(fd_out, buf_out->data + buf_out->len, READ_CHUNK);
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if (n > 0)
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buf_out->len += (size_t)n;
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else {
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close(fd_out);
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open_out = 0;
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}
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}
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if (open_err && FD_ISSET(fd_err, &rfds)) {
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ssize_t n;
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if (dynbuf_grow(buf_err, READ_CHUNK) != 0) break;
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n = read(fd_err, buf_err->data + buf_err->len, READ_CHUNK);
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if (n > 0)
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buf_err->len += (size_t)n;
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else {
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close(fd_err);
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open_err = 0;
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}
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}
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}
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}
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/* ===== pipeline execution ===== */
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/*
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** Build result table {code=N, stdout=S, stderr=S} on the Lua stack.
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*/
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static void push_result_table (lua_State *L, int code,
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DynBuf *buf_out, DynBuf *buf_err) {
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lua_createtable(L, 0, 3);
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lua_pushinteger(L, code);
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lua_setfield(L, -2, "code");
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lua_pushlstring(L, buf_out->data ? buf_out->data : "", buf_out->len);
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lua_setfield(L, -2, "stdout");
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lua_pushlstring(L, buf_err->data ? buf_err->data : "", buf_err->len);
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lua_setfield(L, -2, "stderr");
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}
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/*
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** Execute a multi-stage pipeline.
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** stages[0..nstages-1] are command strings. Each is parsed with parse_argv().
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** Inter-stage pipes connect stdout→stdin. Only the last stage's stdout/stderr
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** are captured. Middle stages' stderr goes to the parent's stderr (inherited).
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** Returns 1 (one result table on the Lua stack).
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*/
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static int exec_pipeline (lua_State *L, char **stages, int nstages,
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int interactive) {
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ParsedArgs *pa = NULL;
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int (*inter_pipes)[2] = NULL; /* inter_pipes[i] connects stage i → i+1 */
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int out_pipe[2] = {-1, -1}, err_pipe[2] = {-1, -1};
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pid_t *pids = NULL;
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int i, last_code = -1;
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DynBuf buf_out, buf_err;
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struct sigaction sa_old_pipe, sa_old_int, sa_old_quit, sa_new;
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/* parse all stages */
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pa = (ParsedArgs *)calloc((size_t)nstages, sizeof(ParsedArgs));
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if (pa == NULL) return luaL_error(L, "out of memory");
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for (i = 0; i < nstages; i++) {
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if (parse_argv(stages[i], &pa[i]) != 0) {
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for (int j = 0; j < i; j++) free_argv(&pa[j]);
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free(pa);
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return luaL_error(L, "unterminated quote in pipeline stage %d", i + 1);
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}
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if (pa[i].argc == 0) {
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for (int j = 0; j <= i; j++) free_argv(&pa[j]);
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free(pa);
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return luaL_error(L, "empty command in pipeline stage %d", i + 1);
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}
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}
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/* allocate inter-stage pipes (nstages-1 of them) */
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if (nstages > 1) {
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inter_pipes = (int (*)[2])calloc((size_t)(nstages - 1), sizeof(int [2]));
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if (inter_pipes == NULL) {
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for (i = 0; i < nstages; i++) free_argv(&pa[i]);
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free(pa);
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return luaL_error(L, "out of memory");
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}
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for (i = 0; i < nstages - 1; i++) {
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if (pipe(inter_pipes[i]) != 0) {
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for (int j = 0; j < i; j++) { close(inter_pipes[j][0]); close(inter_pipes[j][1]); }
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free(inter_pipes);
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for (int j = 0; j < nstages; j++) free_argv(&pa[j]);
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free(pa);
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return luaL_error(L, "pipe() failed: %s", strerror(errno));
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}
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}
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}
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/* capture pipes for last stage (only in non-interactive mode) */
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if (!interactive) {
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if (pipe(out_pipe) != 0) {
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if (inter_pipes) {
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for (i = 0; i < nstages - 1; i++) { close(inter_pipes[i][0]); close(inter_pipes[i][1]); }
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free(inter_pipes);
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}
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for (i = 0; i < nstages; i++) free_argv(&pa[i]);
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free(pa);
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return luaL_error(L, "pipe() failed: %s", strerror(errno));
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}
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if (pipe(err_pipe) != 0) {
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close(out_pipe[0]); close(out_pipe[1]);
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if (inter_pipes) {
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for (i = 0; i < nstages - 1; i++) { close(inter_pipes[i][0]); close(inter_pipes[i][1]); }
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free(inter_pipes);
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}
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for (i = 0; i < nstages; i++) free_argv(&pa[i]);
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free(pa);
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return luaL_error(L, "pipe() failed: %s", strerror(errno));
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}
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}
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/* ignore signals in parent */
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memset(&sa_new, 0, sizeof(sa_new));
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sa_new.sa_handler = SIG_IGN;
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sigemptyset(&sa_new.sa_mask);
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sigaction(SIGPIPE, &sa_new, &sa_old_pipe);
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if (interactive) {
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sigaction(SIGINT, &sa_new, &sa_old_int);
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sigaction(SIGQUIT, &sa_new, &sa_old_quit);
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}
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/* allocate pid array */
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pids = (pid_t *)calloc((size_t)nstages, sizeof(pid_t));
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if (pids == NULL) {
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if (!interactive) {
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close(out_pipe[0]); close(out_pipe[1]);
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close(err_pipe[0]); close(err_pipe[1]);
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}
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if (inter_pipes) {
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for (i = 0; i < nstages - 1; i++) { close(inter_pipes[i][0]); close(inter_pipes[i][1]); }
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free(inter_pipes);
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}
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for (i = 0; i < nstages; i++) free_argv(&pa[i]);
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free(pa);
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sigaction(SIGPIPE, &sa_old_pipe, NULL);
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if (interactive) {
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sigaction(SIGINT, &sa_old_int, NULL);
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sigaction(SIGQUIT, &sa_old_quit, NULL);
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}
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return luaL_error(L, "out of memory");
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}
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/* fork all stages */
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for (i = 0; i < nstages; i++) {
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pids[i] = fork();
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if (pids[i] < 0) {
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/* fork failed — kill already-forked children */
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for (int j = 0; j < i; j++) {
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kill(pids[j], SIGTERM);
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waitpid(pids[j], NULL, 0);
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}
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if (!interactive) {
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close(out_pipe[0]); close(out_pipe[1]);
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close(err_pipe[0]); close(err_pipe[1]);
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}
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if (inter_pipes) {
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for (int j = 0; j < nstages - 1; j++) { close(inter_pipes[j][0]); close(inter_pipes[j][1]); }
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free(inter_pipes);
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}
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for (int j = 0; j < nstages; j++) free_argv(&pa[j]);
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free(pa); free(pids);
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sigaction(SIGPIPE, &sa_old_pipe, NULL);
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if (interactive) {
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sigaction(SIGINT, &sa_old_int, NULL);
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sigaction(SIGQUIT, &sa_old_quit, NULL);
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}
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return luaL_error(L, "fork() failed: %s", strerror(errno));
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}
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if (pids[i] == 0) {
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/* === child process for stage i === */
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int j;
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/* restore default signals */
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sa_new.sa_handler = SIG_DFL;
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sigaction(SIGPIPE, &sa_new, NULL);
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if (interactive) {
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sigaction(SIGINT, &sa_new, NULL);
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sigaction(SIGQUIT, &sa_new, NULL);
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}
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/* set up stdin */
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if (i > 0) {
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dup2(inter_pipes[i - 1][0], STDIN_FILENO);
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}
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/* set up stdout */
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if (i < nstages - 1) {
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dup2(inter_pipes[i][1], STDOUT_FILENO);
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} else if (!interactive) {
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/* last stage: capture stdout and stderr */
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dup2(out_pipe[1], STDOUT_FILENO);
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dup2(err_pipe[1], STDERR_FILENO);
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}
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/* else: interactive last stage inherits terminal */
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/* close all pipe fds in child */
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if (inter_pipes) {
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for (j = 0; j < nstages - 1; j++) {
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close(inter_pipes[j][0]);
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close(inter_pipes[j][1]);
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}
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}
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if (!interactive) {
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close(out_pipe[0]); close(out_pipe[1]);
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close(err_pipe[0]); close(err_pipe[1]);
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}
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execvp(pa[i].argv[0], pa[i].argv);
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/* exec failed */
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{
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const char *err = strerror(errno);
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size_t namelen = strlen(pa[i].argv[0]);
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size_t errlen = strlen(err);
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(void)write(STDERR_FILENO, pa[i].argv[0], namelen);
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(void)write(STDERR_FILENO, ": ", 2);
|
|
(void)write(STDERR_FILENO, err, errlen);
|
|
(void)write(STDERR_FILENO, "\n", 1);
|
|
}
|
|
_exit(127);
|
|
}
|
|
}
|
|
|
|
/* === parent: close all write ends === */
|
|
if (inter_pipes) {
|
|
for (i = 0; i < nstages - 1; i++) {
|
|
close(inter_pipes[i][0]);
|
|
close(inter_pipes[i][1]);
|
|
}
|
|
free(inter_pipes);
|
|
}
|
|
|
|
/* free parsed args (children have already exec'd) */
|
|
for (i = 0; i < nstages; i++) free_argv(&pa[i]);
|
|
free(pa);
|
|
|
|
dynbuf_init(&buf_out);
|
|
dynbuf_init(&buf_err);
|
|
|
|
if (!interactive) {
|
|
close(out_pipe[1]);
|
|
close(err_pipe[1]);
|
|
/* read captured output from last stage */
|
|
read_pipes(out_pipe[0], err_pipe[0], &buf_out, &buf_err);
|
|
}
|
|
|
|
/* wait for all children, keep last stage's exit code */
|
|
for (i = 0; i < nstages; i++) {
|
|
int status;
|
|
waitpid(pids[i], &status, 0);
|
|
if (i == nstages - 1) {
|
|
if (WIFEXITED(status))
|
|
last_code = WEXITSTATUS(status);
|
|
else if (WIFSIGNALED(status))
|
|
last_code = 128 + WTERMSIG(status);
|
|
else
|
|
last_code = -1;
|
|
}
|
|
}
|
|
free(pids);
|
|
|
|
/* restore signals */
|
|
sigaction(SIGPIPE, &sa_old_pipe, NULL);
|
|
if (interactive) {
|
|
sigaction(SIGINT, &sa_old_int, NULL);
|
|
sigaction(SIGQUIT, &sa_old_quit, NULL);
|
|
}
|
|
|
|
/* push result table */
|
|
push_result_table(L, last_code, &buf_out, &buf_err);
|
|
dynbuf_free(&buf_out);
|
|
dynbuf_free(&buf_err);
|
|
|
|
return 1;
|
|
}
|
|
|
|
|
|
/* ===== luaB_command ===== */
|
|
|
|
int luaB_command (lua_State *L) {
|
|
const char *cmd = luaL_checkstring(L, 1);
|
|
char *stages[MAX_PIPELINE_STAGES];
|
|
int nstages;
|
|
ParsedArgs pa;
|
|
int out_pipe[2], err_pipe[2];
|
|
pid_t pid;
|
|
int status;
|
|
DynBuf buf_out, buf_err;
|
|
struct sigaction sa_old, sa_new;
|
|
|
|
/* try to split into pipeline stages */
|
|
if (split_pipeline(cmd, stages, &nstages) != 0)
|
|
return luaL_error(L, "invalid pipeline syntax in command");
|
|
|
|
/* multi-stage pipeline: delegate to exec_pipeline */
|
|
if (nstages > 1) {
|
|
int result = exec_pipeline(L, stages, nstages, 0);
|
|
free(stages[0]); /* free backing buffer */
|
|
return result;
|
|
}
|
|
|
|
/* single stage: free pipeline buffer and use original path */
|
|
free(stages[0]);
|
|
|
|
/* parse command into argv */
|
|
if (parse_argv(cmd, &pa) != 0)
|
|
return luaL_error(L, "unterminated quote in command");
|
|
|
|
/* empty command: return {code=0, stdout="", stderr=""} */
|
|
if (pa.argc == 0) {
|
|
free_argv(&pa);
|
|
lua_createtable(L, 0, 3);
|
|
lua_pushinteger(L, 0);
|
|
lua_setfield(L, -2, "code");
|
|
lua_pushliteral(L, "");
|
|
lua_setfield(L, -2, "stdout");
|
|
lua_pushliteral(L, "");
|
|
lua_setfield(L, -2, "stderr");
|
|
return 1;
|
|
}
|
|
|
|
/* create pipes */
|
|
if (pipe(out_pipe) != 0) {
|
|
free_argv(&pa);
|
|
return luaL_error(L, "pipe() failed: %s", strerror(errno));
|
|
}
|
|
if (pipe(err_pipe) != 0) {
|
|
close(out_pipe[0]); close(out_pipe[1]);
|
|
free_argv(&pa);
|
|
return luaL_error(L, "pipe() failed: %s", strerror(errno));
|
|
}
|
|
|
|
/* ignore SIGPIPE so parent doesn't crash if child exits early */
|
|
memset(&sa_new, 0, sizeof(sa_new));
|
|
sa_new.sa_handler = SIG_IGN;
|
|
sigemptyset(&sa_new.sa_mask);
|
|
sigaction(SIGPIPE, &sa_new, &sa_old);
|
|
|
|
pid = fork();
|
|
if (pid < 0) {
|
|
close(out_pipe[0]); close(out_pipe[1]);
|
|
close(err_pipe[0]); close(err_pipe[1]);
|
|
free_argv(&pa);
|
|
sigaction(SIGPIPE, &sa_old, NULL);
|
|
return luaL_error(L, "fork() failed: %s", strerror(errno));
|
|
}
|
|
|
|
if (pid == 0) {
|
|
/* child */
|
|
close(out_pipe[0]);
|
|
close(err_pipe[0]);
|
|
dup2(out_pipe[1], STDOUT_FILENO);
|
|
dup2(err_pipe[1], STDERR_FILENO);
|
|
close(out_pipe[1]);
|
|
close(err_pipe[1]);
|
|
|
|
/* restore default SIGPIPE for child */
|
|
sa_new.sa_handler = SIG_DFL;
|
|
sigaction(SIGPIPE, &sa_new, NULL);
|
|
|
|
execvp(pa.argv[0], pa.argv);
|
|
|
|
/* exec failed — write error to stderr and exit */
|
|
{
|
|
const char *err = strerror(errno);
|
|
size_t namelen = strlen(pa.argv[0]);
|
|
size_t errlen = strlen(err);
|
|
/* write "cmd: error\n" */
|
|
(void)write(STDERR_FILENO, pa.argv[0], namelen);
|
|
(void)write(STDERR_FILENO, ": ", 2);
|
|
(void)write(STDERR_FILENO, err, errlen);
|
|
(void)write(STDERR_FILENO, "\n", 1);
|
|
}
|
|
_exit(127);
|
|
}
|
|
|
|
/* parent */
|
|
close(out_pipe[1]);
|
|
close(err_pipe[1]);
|
|
free_argv(&pa);
|
|
|
|
dynbuf_init(&buf_out);
|
|
dynbuf_init(&buf_err);
|
|
read_pipes(out_pipe[0], err_pipe[0], &buf_out, &buf_err);
|
|
|
|
waitpid(pid, &status, 0);
|
|
|
|
/* restore old SIGPIPE handler */
|
|
sigaction(SIGPIPE, &sa_old, NULL);
|
|
|
|
/* build result table */
|
|
lua_createtable(L, 0, 3);
|
|
|
|
if (WIFEXITED(status))
|
|
lua_pushinteger(L, WEXITSTATUS(status));
|
|
else if (WIFSIGNALED(status))
|
|
lua_pushinteger(L, 128 + WTERMSIG(status));
|
|
else
|
|
lua_pushinteger(L, -1);
|
|
lua_setfield(L, -2, "code");
|
|
|
|
lua_pushlstring(L, buf_out.data ? buf_out.data : "", buf_out.len);
|
|
lua_setfield(L, -2, "stdout");
|
|
|
|
lua_pushlstring(L, buf_err.data ? buf_err.data : "", buf_err.len);
|
|
lua_setfield(L, -2, "stderr");
|
|
|
|
dynbuf_free(&buf_out);
|
|
dynbuf_free(&buf_err);
|
|
|
|
return 1;
|
|
}
|
|
|
|
|
|
/* ===== luaB_interactive ===== */
|
|
|
|
int luaB_interactive (lua_State *L) {
|
|
const char *cmd = luaL_checkstring(L, 1);
|
|
char *stages[MAX_PIPELINE_STAGES];
|
|
int nstages;
|
|
ParsedArgs pa;
|
|
pid_t pid;
|
|
int status, code;
|
|
struct sigaction sa_old_pipe, sa_old_int, sa_old_quit, sa_new;
|
|
DynBuf buf_out, buf_err;
|
|
|
|
/* try to split into pipeline stages */
|
|
if (split_pipeline(cmd, stages, &nstages) != 0)
|
|
return luaL_error(L, "invalid pipeline syntax in command");
|
|
|
|
/* multi-stage pipeline: delegate to exec_pipeline with interactive=1 */
|
|
if (nstages > 1) {
|
|
exec_pipeline(L, stages, nstages, 1);
|
|
free(stages[0]);
|
|
lua_setglobal(L, "_");
|
|
return 0;
|
|
}
|
|
|
|
/* single stage */
|
|
free(stages[0]);
|
|
|
|
if (parse_argv(cmd, &pa) != 0)
|
|
return luaL_error(L, "unterminated quote in command");
|
|
|
|
if (pa.argc == 0) {
|
|
free_argv(&pa);
|
|
dynbuf_init(&buf_out);
|
|
dynbuf_init(&buf_err);
|
|
push_result_table(L, 0, &buf_out, &buf_err);
|
|
lua_setglobal(L, "_");
|
|
return 0;
|
|
}
|
|
|
|
/* ignore SIGINT, SIGQUIT, SIGPIPE in parent */
|
|
memset(&sa_new, 0, sizeof(sa_new));
|
|
sa_new.sa_handler = SIG_IGN;
|
|
sigemptyset(&sa_new.sa_mask);
|
|
sigaction(SIGPIPE, &sa_new, &sa_old_pipe);
|
|
sigaction(SIGINT, &sa_new, &sa_old_int);
|
|
sigaction(SIGQUIT, &sa_new, &sa_old_quit);
|
|
|
|
pid = fork();
|
|
if (pid < 0) {
|
|
free_argv(&pa);
|
|
sigaction(SIGPIPE, &sa_old_pipe, NULL);
|
|
sigaction(SIGINT, &sa_old_int, NULL);
|
|
sigaction(SIGQUIT, &sa_old_quit, NULL);
|
|
return luaL_error(L, "fork() failed: %s", strerror(errno));
|
|
}
|
|
|
|
if (pid == 0) {
|
|
/* child: restore signal defaults, inherit terminal */
|
|
sa_new.sa_handler = SIG_DFL;
|
|
sigaction(SIGPIPE, &sa_new, NULL);
|
|
sigaction(SIGINT, &sa_new, NULL);
|
|
sigaction(SIGQUIT, &sa_new, NULL);
|
|
|
|
execvp(pa.argv[0], pa.argv);
|
|
|
|
/* exec failed */
|
|
{
|
|
const char *err = strerror(errno);
|
|
size_t namelen = strlen(pa.argv[0]);
|
|
size_t errlen = strlen(err);
|
|
(void)write(STDERR_FILENO, pa.argv[0], namelen);
|
|
(void)write(STDERR_FILENO, ": ", 2);
|
|
(void)write(STDERR_FILENO, err, errlen);
|
|
(void)write(STDERR_FILENO, "\n", 1);
|
|
}
|
|
_exit(127);
|
|
}
|
|
|
|
/* parent */
|
|
free_argv(&pa);
|
|
waitpid(pid, &status, 0);
|
|
|
|
/* restore signals */
|
|
sigaction(SIGPIPE, &sa_old_pipe, NULL);
|
|
sigaction(SIGINT, &sa_old_int, NULL);
|
|
sigaction(SIGQUIT, &sa_old_quit, NULL);
|
|
|
|
if (WIFEXITED(status))
|
|
code = WEXITSTATUS(status);
|
|
else if (WIFSIGNALED(status))
|
|
code = 128 + WTERMSIG(status);
|
|
else
|
|
code = -1;
|
|
|
|
/* build {code=N, stdout="", stderr=""} and set as global _ */
|
|
dynbuf_init(&buf_out);
|
|
dynbuf_init(&buf_err);
|
|
push_result_table(L, code, &buf_out, &buf_err);
|
|
lua_setglobal(L, "_");
|
|
|
|
return 0; /* void — no Lua return values */
|
|
}
|