"./qcvm"
};
+/*
+ * TODO: Windows version
+ * this implements a unique bi-directional popen-like function that
+ * allows reading data from both stdout and stderr. And writing to
+ * stdin :)
+ *
+ * Example of use:
+ * FILE *handles[3] = task_popen("ls", "-l", "r");
+ * if (!handles) { perror("failed to open stdin/stdout/stderr to ls");
+ * // handles[0] = stdin
+ * // handles[1] = stdout
+ * // handles[2] = stderr
+ *
+ * task_pclose(handles); // to close
+ */
+#ifndef _WIN32
+#include <sys/types.h>
+#include <sys/wait.h>
+
+#include <unistd.h>
+typedef struct {
+ FILE *handles[3];
+ int pipes [3];
+
+ int stderr_fd;
+ int stdout_fd;
+ int pid;
+} popen_t;
+
+FILE ** task_popen(const char *command, const char *mode) {
+ int inhandle [2];
+ int outhandle [2];
+ int errhandle [2];
+ int trypipe;
+
+ popen_t *data = mem_a(sizeof(popen_t));
+
+ /*
+ * Parse the command now into a list for execv, this is a pain
+ * in the ass.
+ */
+ char *line = (char*)command;
+ char **argv = NULL;
+ {
+
+ while (*line != '\0') {
+ while (*line == ' ' || *line == '\t' || *line == '\n')
+ *line++ = '\0';
+ vec_push(argv, line);
+
+ while (*line != '\0' && *line != ' ' &&
+ *line != '\t' && *line != '\n') line++;
+ }
+ vec_push(argv, '\0');
+ }
+
+
+ if ((trypipe = pipe(inhandle)) < 0) goto task_popen_error_0;
+ if ((trypipe = pipe(outhandle)) < 0) goto task_popen_error_1;
+ if ((trypipe = pipe(errhandle)) < 0) goto task_popen_error_2;
+
+ if ((data->pid = fork()) > 0) {
+ /* parent */
+ close(inhandle [0]);
+ close(outhandle [1]);
+ close(errhandle [1]);
+
+ data->pipes [0] = inhandle [1];
+ data->pipes [1] = outhandle[0];
+ data->pipes [2] = errhandle[0];
+ data->handles[0] = fdopen(inhandle [1], "w");
+ data->handles[1] = fdopen(outhandle[0], mode);
+ data->handles[2] = fdopen(errhandle[0], mode);
+
+ /* sigh */
+ if (argv)
+ vec_free(argv);
+ return data->handles;
+ } else if (data->pid == 0) {
+ /* child */
+ close(inhandle [1]);
+ close(outhandle[0]);
+ close(errhandle[0]);
+
+ /* see piping documentation for this sillyness :P */
+ close(0), dup(inhandle [0]);
+ close(1), dup(outhandle[1]);
+ close(2), dup(errhandle[1]);
+
+ execvp(*argv, argv);
+ exit(1);
+ } else {
+ /* fork failed */
+ goto task_popen_error_3;
+ }
+
+ if (argv)
+ vec_free(argv);
+ return data->handles;
+
+task_popen_error_3: close(errhandle[0]), close(errhandle[1]);
+task_popen_error_2: close(outhandle[0]), close(outhandle[1]);
+task_popen_error_1: close(inhandle [0]), close(inhandle [1]);
+task_popen_error_0:
+
+ if (argv)
+ vec_free(argv);
+ return NULL;
+}
+
+int task_pclose(FILE **handles) {
+ popen_t *data = (popen_t*)handles;
+ int status = 0;
+
+ close(data->pipes[0]); /* stdin */
+ close(data->pipes[1]); /* stdout */
+ close(data->pipes[2]); /* stderr */
+
+ waitpid(data->pid, &status, 0);
+
+ mem_d(data);
+
+ return status;
+}
+#endif
+
#define TASK_COMPILE 0
#define TASK_EXECUTE 1
*
* I:
* Used to specify the INPUT source file to operate on, this must be
- * provided, this tag is NOT optional.
+ * provided, this tag is NOT optional
+ *
*
* Notes:
* These tags have one-time use, using them more than once will result
*/
typedef struct {
task_template_t *template;
- FILE *handle;
+ FILE **runhandles;
+ FILE *stderrlog;
+ FILE *stdoutlog;
} task_t;
task_t *task_tasks = NULL;
*/
template->tempfilename = tempnam(curdir, "TMPDAT");
-
/*
* Generate the command required to open a pipe to a process
* which will be refered to with a handle in the task for
*/
task_t task;
task.template = template;
- if (!(task.handle = popen(buf, "r"))) {
+ if (!(task.runhandles = task_popen(buf, "r"))) {
con_err("error opening pipe to process for test: %s\n", template->description);
success = false;
continue;
}
+
+ /*
+ * Open up some file desciptors for logging the stdout/stderr
+ * to our own.
+ */
+ memset (buf,0,sizeof(buf));
+ snprintf(buf, sizeof(buf), "%s/%s.stdout", curdir, template->sourcefile);
+ task.stderrlog = fopen(buf, "w");
+
+ memset (buf,0,sizeof(buf));
+ snprintf(buf, sizeof(buf), "%s/%s.stderr", curdir, template->sourcefile);
+ task.stdoutlog = fopen(buf, "w");
+
con_out("executing test: `%s` [%s]\n", template->description, buf);
vec_push(task_tasks, task);
* temporary files.
*/
size_t i;
- for (i = 0; i < vec_size(task_tasks); i++)
+ for (i = 0; i < vec_size(task_tasks); i++) {
+ /*
+ * Close any open handles to files or processes here. It's mighty
+ * annoying to have to do all this cleanup work.
+ */
+ if (task_tasks[i].runhandles) task_pclose(task_tasks[i].runhandles);
+ if (task_tasks[i].stdoutlog) fclose (task_tasks[i].stdoutlog);
+ if (task_tasks[i].stderrlog) fclose (task_tasks[i].stderrlog);
+
task_template_destroy(&task_tasks[i].template);
+ }
vec_free(task_tasks);
/*
* from thin air and executed INLINE.
*/
void task_schedualize(const char *curdir) {
- bool execute = false;
- char *back = NULL;
- char *data = NULL;
- size_t size = 0;
+ bool execute = false;
+ bool compiled = true;
+ char *back = NULL;
+ char *data = NULL;
+ size_t size = 0;
size_t i;
for (i = 0; i < vec_size(task_tasks); i++) {
*/
if (!strcmp(task_tasks[i].template->proceduretype, "-execute"))
execute = true;
-
- while (util_getline(&data, &size, task_tasks[i].handle) != EOF) {
+
+ /*
+ * Read data from stdout first and pipe that stuff into a log file
+ * then we do the same for stderr.
+ */
+ while (util_getline(&data, &size, task_tasks[i].runhandles[1]) != EOF) {
+ back = data;
+ fwrite(data, 1, size, task_tasks[i].stdoutlog);
+ }
+ while (util_getline(&data, &size, task_tasks[i].runhandles[2]) != EOF) {
back = data;
- /* chances are we want to print errors */
+
+ /*
+ * If a string contains an error we just dissalow execution
+ * of it in the vm.
+ *
+ * TODO: make this more percise, e.g if we print a warning
+ * that refers to a variable named error, or something like
+ * that .. then this will blowup :P
+ */
if (strstr(data, "error")) {
- con_out("compile failed: %s\n",
- /* strip the newline from the end */
- (*strrchr(data, '\n')='\0')
- );
-
- /*
- * The compilation failed which means it cannot be executed
- * as the file simply will not exist.
- */
- execute = false;
- break;
+ compiled = false;
+ execute = false;
}
+ fwrite(data, 1, size, task_tasks[i].stderrlog);
}
+
if (back)
mem_d(back);