Process management and logging
This commit is contained in:
parent
8b6ed7f4ae
commit
2bc3f75535
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@ -1 +1,2 @@
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cbt
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state
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8
cbt.c
8
cbt.c
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@ -1,9 +1,15 @@
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// x-run: tcc -Wextra -Wall -run %
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// x-run: ~/scripts/runc.sh % -Wall -Wextra
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#define CBT_IMPLEMENTATION
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#include "cbt.h"
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int main(int argc, char **argv) {
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cbt_verbosity = CBT_LOG_ALL;
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CBT_INIT(argc, argv);
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struct cbt_proc proc = cbt_proc_new(CBT_PROC_NORMAL, "sh", "-c", "while sleep 0.1; do echo 'nya'; done");
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cbt_proc_wait(proc);
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cbt_cleanup();
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return 0;
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}
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415
cbt.h
415
cbt.h
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@ -6,12 +6,6 @@
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#include <stddef.h>
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#include <stdio.h>
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extern int cbt_verbosity;
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extern char *cbt_cc;
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void cbt__init(int argc, char **argv);
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#define CBT_INIT(ARGC, ARGV) cbt__init(ARGC, ARGV);
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enum cbt_loglevel {
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CBT_LOG_FATAL,
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CBT_LOG_ERROR,
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@ -21,12 +15,35 @@ enum cbt_loglevel {
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CBT_LOG_ALL
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};
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const extern char *cbt_log__colors[CBT_LOG_ALL + 1];
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const extern char *cbt_log__typecolors[8];
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extern long cbt_start_time;
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extern enum cbt_loglevel cbt_verbosity;
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extern char *cbt_cc;
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void cbt__init(int argc, char **argv, const char *source_file);
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void cbt_cleanup(void);
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#define CBT_INIT(ARGC, ARGV) cbt__init(ARGC, ARGV, __FILE__);
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extern const char *cbt_log__colors[CBT_LOG_ALL + 1];
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extern const char *cbt_log__typecolors[8];
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void cbt_log(enum cbt_loglevel lvl, const char *fmt, ...);
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long cbt_get_time(void);
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unsigned long cbt_get_modtime(const char *filename);
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bool cbt_needs_recompilation(const char *input, const char *output);
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const char *cbt_escape_shell(char *arg);
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const char *cbt_escape_args(char **args);
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#ifndef CBT_FMT_NBUFS
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#define CBT_FMT_NBUFS 64
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#endif
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#ifndef CBT_FMT_BUFSIZE
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#define CBT_FMT_BUFSIZE 1024
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#endif
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const char *cbt_fmt(const char *fmt, ...);
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struct cbt_proc_args {
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@ -36,11 +53,7 @@ struct cbt_proc_args {
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struct cbt_proc {
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FILE *fp_stdin, *fp_stdout, *fp_stderr;
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#ifdef _WIN32
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HANDLE *handle;
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#else
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int pid;
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#endif
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};
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struct cbt_procgroup {
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size_t size, cap;
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};
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enum cbt_proc_mode {
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CBT_PROC_NORMAL = 0,
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CBT_PROC_R = 1,
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CBT_PROC_W = 2,
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CBT_PROC_RW = 3,
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};
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#define cbt_proc_new(...) _cbt_proc_new(__VA_ARGS__, NULL)
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struct cbt_proc _cbt_proc_new(enum cbt_proc_mode mode, ...);
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struct cbt_proc cbt_proc_newv(enum cbt_proc_mode mode, va_list args);
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int cbt_proc_wait(struct cbt_proc proc);
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#define CBT_ARRLEN(ARR) (sizeof(ARR)/sizeof(ARR[0]))
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#ifndef CBT_REALLOC
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#define CBT_DA_INIT_SIZE 256
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#define cbt_da_add(ARR, ITEM) { \
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if (ARR.size >= ARR.cap) { \
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size_t size = ARR.size == 0 ? CBT_DA_INIT_SIZE : ARR.size * 2; \
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ARR.items = CBT_REALLOC(NULL, size); \
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} \
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ARR.items[ARR.size] = (ITEM); \
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ARR.size++; \
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#define cbt_da_add(ARR, ITEM) { \
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if (ARR.size >= ARR.cap) { \
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size_t size = ARR.size == 0 ? CBT_DA_INIT_SIZE : ARR.size * 2; \
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ARR.items = CBT_REALLOC(ARR.items, size * sizeof(ARR.items[0])); \
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} \
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ARR.items[ARR.size] = (ITEM); \
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ARR.size++; \
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}
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#define cbt_da_remove(ARR, I) if (I >= 0 && I < ARR.size) { \
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memmove(&ARR.items[I], \
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&ARR.items[I+1], \
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(ARR.size - 1) * sizeof((ARR).items[0])); \
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ARR.size--; \
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}
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#endif
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// Implementation
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#ifdef CBT_IMPLEMENTATION
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#define __USE_GNU
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#include <stdbool.h>
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#include <stdlib.h>
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#include <unistd.h>
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int cbt_verbosity = 0;
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#include <ctype.h>
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#include <stdarg.h>
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#include <string.h>
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#include <time.h>
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#include <sys/types.h>
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#include <sys/stat.h>
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#include <sys/wait.h>
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#include <poll.h>
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#include <pthread.h>
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#include <signal.h>
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#include <errno.h>
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#define CBT_FAIL(COND) if (COND) { cbt_log(CBT_LOG_FATAL, "condition %s failed: %s", #COND, strerror(errno)); abort(); };
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enum cbt_loglevel cbt_verbosity = 0;
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char *cbt_cc = NULL;
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long cbt_start_time = 0;
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struct _cbt__autoproc_fdset {
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struct pollfd *items;
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size_t size, cap;
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} cbt__autoproc_fdset = { 0 };
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struct _cbt__autoproc_set {
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struct _cbt__autoproc_set__item {
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FILE *fp;
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bool is_err;
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} *items;
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size_t size, cap;
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} cbt__autoproc_set = { 0 };
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pthread_t _cbt__autoproc_thread;
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pthread_mutex_t _cbt__autoproc_mut = PTHREAD_MUTEX_INITIALIZER;
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bool cbt_running = false;
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const char *cbt_log__colors[CBT_LOG_ALL + 1] = {
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"\x1b[1;31m",
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"\x1b[31m",
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"\x1b[34m",
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"\x1b[35m"
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};
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const char *cbt_log__typecolors[8] = {
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/* int */ "\x1b[31m",
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/* float */ "\x1b[33m",
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/* char* */ "\x1b[34m",
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/* void* */ "\x1b[35m",
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/* bool */ NULL,
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/* */ "",
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/* */ "",
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/* */ "",
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const char *cbt_log__text[CBT_LOG_ALL + 1] = {
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"FATAL", "ERROR", "WARN ", "INFO ", "DEBUG", "TRACE"
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};
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void *cbt__line_processor(void *);
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void cbt__init(int argc, char **argv) {
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cbt_cc = getenv("CC");
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void cbt__init(int argc, char **argv, const char *source_file) {
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cbt_start_time = cbt_get_time();
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cbt_running = true;
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(void)argc;
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cbt_log(CBT_LOG_INFO, "Running CBT build %s %s from %s", __DATE__, __TIME__, __FILE__);
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if (!cbt_cc) cbt_cc = getenv("CC");
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if (!cbt_cc) cbt_cc = "cc";
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cbt_log(CBT_LOG_INFO, "omg hii hiiii hello %s", "world");
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cbt_log(CBT_LOG_INFO, "Found C Compiler: %s", cbt_cc);
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cbt_log(CBT_LOG_DEBUG, "Args: %s", cbt_escape_args(argv));
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cbt_log(CBT_LOG_DEBUG, "%s", cbt_fmt("format test: %s", "ok"));
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if (cbt_needs_recompilation(source_file, argv[0])) {
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cbt_log(CBT_LOG_WARNING, "Needs recompilation, but not implemented yet");
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}
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cbt_log(CBT_LOG_DEBUG, "Starting line processor thread");
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// TODO: error checking
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pthread_create(&_cbt__autoproc_thread, NULL, cbt__line_processor, NULL);
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}
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struct cbt_proc cbt_proc__open(void);
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void cbt_cleanup(void) {
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usleep(50000);
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pthread_mutex_lock(&_cbt__autoproc_mut);
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cbt_running = false;
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cbt_log(CBT_LOG_INFO, "cbt shutting down");
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pthread_join(_cbt__autoproc_thread, NULL);
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pthread_mutex_unlock(&_cbt__autoproc_mut);
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}
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const char *cbt_fmt(const char *fmt, ...) {
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static char cbt_fmt_buffers[CBT_FMT_NBUFS][CBT_FMT_BUFSIZE];
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static int cbt_fmt_buffer = 0;
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char *buffer = cbt_fmt_buffers[cbt_fmt_buffer++ % CBT_FMT_NBUFS];
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va_list args;
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va_start(args, fmt);
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vsnprintf(buffer, CBT_FMT_BUFSIZE - 1, fmt, args);
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va_end(args);
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return buffer;
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}
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long cbt_get_time(void) {
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struct timespec now;
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clock_gettime(CLOCK_REALTIME, &now);
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return (long)(now.tv_sec * 1000000L) + (long)(now.tv_nsec / 1000L);
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}
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/*
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* Simplified version of printf, but with pretty colors depending on the type
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*
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* Supported format specifiers:
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* %{len}d %{len}u - signed and unsigned integer
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* %(len}(.{len})f - float/double
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* %{len}s - string
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* %p - raw pointer
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*/
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void cbt_log(enum cbt_loglevel lvl, const char *fmt, ...) {
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const char *fmt_ptr = fmt;
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for (const char *fmt_ptr = fmt; *fmt_ptr != 0; fmt_ptr++) {
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if (*fmt_ptr != '%') {
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putchar(*fmt_ptr);
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if (lvl > cbt_verbosity) return;
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double time_delta = (double)(cbt_get_time() - cbt_start_time) / 1000.0L;
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printf("[%10.3lf] [%s%s\x1b[0m] ", time_delta, cbt_log__colors[lvl], cbt_log__text[lvl]);
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va_list args;
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va_start(args, fmt);
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vprintf(fmt, args);
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va_end(args);
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fputc('\n', stdout);
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}
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// TODO: find a better option
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const char *cbt_escape_shell(char *arg) {
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int n = strlen(arg);
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char *esc = (char *)cbt_fmt(""); // just take a buffer
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esc[0] = '\'';
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int j = 1, i;
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for (i = 0; i < n; i++) {
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if (arg[i] == '\'') {
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if (j + 4 >= CBT_FMT_BUFSIZE) { return NULL; }
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esc[j] = '\'';
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esc[j+1] = '\\';
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esc[j+2] = '\'';
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esc[j+3] = '\'';
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j += 4;
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} else {
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// todo
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if (j >= CBT_FMT_BUFSIZE) { return NULL; }
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esc[j++] = arg[i];
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}
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}
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putchar('\n');
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if (j >= CBT_FMT_BUFSIZE) { return NULL; }
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esc[j] = '\'';
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return esc;
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}
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const char *cbt_escape_args(char **args) {
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if (args == NULL || args[0] == NULL) return cbt_fmt("");
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char *out = (char *)cbt_escape_shell(args[0]);
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for (int i = 1; args[i] != NULL; i++) {
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out = (char *)cbt_fmt("%s %s", out, cbt_escape_shell(args[i]));
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}
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return out;
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}
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unsigned long cbt_get_modtime(const char *filename) {
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struct stat st;
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int ret = lstat(filename, &st);
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if (ret == -1) return -1;
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cbt_log(CBT_LOG_DEBUG, "stat(%s) -> %ld", filename, st.st_mtim.tv_sec);
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return st.st_mtim.tv_sec;
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}
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bool cbt_needs_recompilation(const char *input, const char *output) {
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unsigned long mod_in = cbt_get_modtime(input),
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mod_out = cbt_get_modtime(output);
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if (mod_in == (unsigned long)-1) {
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cbt_log(CBT_LOG_WARNING, "cbt_needs_recompilation(): input file %s does not exist", input);
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return false;
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}
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return mod_out == (unsigned long)-1 || mod_in > mod_out;
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}
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void cbt__add_fd(int fd, bool is_err) {
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cbt_log(CBT_LOG_DEBUG, "cbt__add_fd() adding %d", fd);
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pthread_kill(_cbt__autoproc_thread, SIGUSR1);
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pthread_mutex_lock(&_cbt__autoproc_mut);
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cbt_log(CBT_LOG_DEBUG, "cbt__add_fd() locked mutex for fd=%d", fd);
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struct pollfd pfd;
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pfd.fd = fd;
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pfd.events = POLLIN | POLLOUT;
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struct _cbt__autoproc_set__item info = {
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.is_err = is_err
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};
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cbt_da_add(cbt__autoproc_fdset, pfd);
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cbt_da_add(cbt__autoproc_set, info);
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pthread_mutex_unlock(&_cbt__autoproc_mut);
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}
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struct cbt_proc _cbt_proc_new(enum cbt_proc_mode mode, ...) {
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va_list args;
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va_start(args, mode);
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struct cbt_proc process = cbt_proc_newv(mode, args);
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va_end(args);
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return process;
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}
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struct cbt_proc cbt_proc_newv(enum cbt_proc_mode mode, va_list args) {
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struct cbt_proc procinfo = { 0 };
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struct cbt_proc_args args_da = { 0 };
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while (true) {
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const char *arg = va_arg(args, const char *);
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if (arg == NULL) break;
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cbt_da_add(args_da, strdup(arg));
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}
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cbt_log(CBT_LOG_DEBUG, "Spawning process with mode %d and args %s", mode, cbt_escape_args(args_da.items));
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int pipe_fds_sout[2] = { 0 },
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pipe_fds_serr[2] = { 0 },
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pipe_fds_sin[2] = { 0 };
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if (mode & CBT_PROC_W) CBT_FAIL(pipe(pipe_fds_sin) == -1);
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CBT_FAIL(pipe(pipe_fds_sout) == -1);
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CBT_FAIL(pipe(pipe_fds_serr) == -1);
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procinfo.pid = fork();
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if (procinfo.pid < 0) {
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cbt_log(CBT_LOG_ERROR, "fork() failed: %s", strerror(errno));
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goto cbt_proc_new_cleanup;
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}
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if (procinfo.pid == 0) { // child
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if (mode & CBT_PROC_W) CBT_FAIL(dup2(pipe_fds_sin[1], STDIN_FILENO) == -1);
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CBT_FAIL(dup2(pipe_fds_sout[1], STDOUT_FILENO) == -1);
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CBT_FAIL(dup2(pipe_fds_serr[1], STDERR_FILENO) == -1);
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execvp(args_da.items[0], (char* const*)args_da.items);
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__builtin_unreachable();
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} else {
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if (mode & CBT_PROC_W) procinfo.fp_stdin = fdopen(pipe_fds_sin[0], "w");
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if (mode & CBT_PROC_R) procinfo.fp_stdout = fdopen(pipe_fds_sout[0], "r");
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if (mode & CBT_PROC_R) procinfo.fp_stderr = fdopen(pipe_fds_serr[0], "r");
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cbt_log(CBT_LOG_DEBUG, "stdin: %p (fd=%d)", procinfo.fp_stdin, pipe_fds_sin[0]);
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cbt_log(CBT_LOG_DEBUG, "stdout: %p (fd=%d)", procinfo.fp_stdout, pipe_fds_sout[0]);
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cbt_log(CBT_LOG_DEBUG, "stderr: %p (fd=%d)", procinfo.fp_stderr, pipe_fds_serr[0]);
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if (!(mode & CBT_PROC_R)) {
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cbt__add_fd(pipe_fds_sout[0], false);
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cbt__add_fd(pipe_fds_serr[0], true);
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}
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cbt_proc_new_cleanup:
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cbt_log(CBT_LOG_DEBUG, "freeing up args");
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for (size_t i = 0; i < args_da.size; i++) {
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free(args_da.items[i]);
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}
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free(args_da.items);
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return procinfo;
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}
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}
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int cbt_proc_wait(struct cbt_proc proc) {
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int wstatus;
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do {
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pid_t w = waitpid(proc.pid, &wstatus, WUNTRACED | WCONTINUED);
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if (w == -1) {
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cbt_log(CBT_LOG_WARNING, "waitpid(%d) -> %d (%s)", proc.pid, w, strerror(errno));
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return -2000;
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}
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|
||||
if (WIFEXITED(wstatus)) {
|
||||
return WEXITSTATUS(wstatus);
|
||||
} else if (WIFSIGNALED(wstatus)) {
|
||||
return 1000 + WTERMSIG(wstatus);
|
||||
}
|
||||
} while (!WIFEXITED(wstatus) && !WIFSIGNALED(wstatus));
|
||||
return -1000;
|
||||
}
|
||||
|
||||
static void cbt__line_processor_sig_handler(int signal) {
|
||||
(void)signal;
|
||||
}
|
||||
|
||||
void *cbt__line_processor(void *arg) {
|
||||
(void)arg;
|
||||
struct timespec timeout = { .tv_sec = 0, .tv_nsec = 100 };
|
||||
|
||||
sigset_t sigmask;
|
||||
sigemptyset(&sigmask);
|
||||
sigaddset(&sigmask, SIGUSR1);
|
||||
|
||||
struct sigaction sa;
|
||||
sa.sa_handler = cbt__line_processor_sig_handler;
|
||||
sigemptyset(&sa.sa_mask);
|
||||
sa.sa_flags = SA_RESTART;
|
||||
|
||||
CBT_FAIL(sigaction(SIGUSR1, &sa, NULL) == -1);
|
||||
|
||||
while (cbt_running) {
|
||||
pthread_mutex_lock(&_cbt__autoproc_mut);
|
||||
|
||||
#if 1
|
||||
int res = ppoll(cbt__autoproc_fdset.items, cbt__autoproc_fdset.size, &timeout, &sigmask);
|
||||
if (res < 0) {
|
||||
cbt_log(CBT_LOG_ERROR, "ppoll() -> %d (%s)", res, strerror(errno));
|
||||
break;
|
||||
}
|
||||
#else
|
||||
for (int i = 0; i < cbt__autoproc_set.size; i++) {
|
||||
cbt_log(CBT_LOG_DEBUG, "fdset[%d] = { %d, %d }", i, cbt__autoproc_set.items[i].fd, cbt__autoproc_set.items[i].events);
|
||||
}
|
||||
cbt_log(CBT_LOG_DEBUG, "poll(_, %d, _) ...", cbt__autoproc_set.size);
|
||||
int res = poll(cbt__autoproc_set.items, cbt__autoproc_set.size, 1000);
|
||||
#endif
|
||||
|
||||
char buf[1024];
|
||||
for (size_t i = 0; i < cbt__autoproc_fdset.size; i++) {
|
||||
struct pollfd pfd = cbt__autoproc_fdset.items[i];
|
||||
struct _cbt__autoproc_set__item item = cbt__autoproc_set.items[i];
|
||||
if (pfd.revents != 0) {
|
||||
if (pfd.revents & POLLIN) {
|
||||
ssize_t s = read(pfd.fd, buf, sizeof(buf));
|
||||
cbt_log(item.is_err ? CBT_LOG_ERROR : CBT_LOG_INFO, "fd(%d): %.*s", pfd.fd, (int)s - 1, buf);
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
pthread_mutex_unlock(&_cbt__autoproc_mut);
|
||||
usleep(1000);
|
||||
}
|
||||
return NULL;
|
||||
}
|
||||
|
||||
#undef CBT_FAIL
|
||||
#endif
|
||||
|
||||
#endif
|
||||
|
|
Loading…
Reference in New Issue