2009-11-11 10:33:28 +00:00
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/* -*- mode: c; c-basic-offset: 4; tab-width: 4; indent-tabs-mode: t -*-
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* vim: ts=4 sw=4 noet ai cindent syntax=c
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*
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* Conky, a system monitor, based on torsmo
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*
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* Any original torsmo code is licensed under the BSD license
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*
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* All code written since the fork of torsmo is licensed under the GPL
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*
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* Please see COPYING for details
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*
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* Copyright (c) 2004, Hannu Saransaari and Lauri Hakkarainen
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* Copyright (c) 2005-2009 Brenden Matthews, Philip Kovacs, et. al.
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* (see AUTHORS)
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* All rights reserved.
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*
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* This program is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <http://www.gnu.org/licenses/>.
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*
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*/
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#include <logging.h>
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#include "conky.h"
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2009-11-11 12:23:05 +00:00
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#include "proc.h"
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2009-11-11 15:27:19 +00:00
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#include <unistd.h>
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2009-11-11 21:56:12 +00:00
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#include <ctype.h>
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2009-11-11 10:33:28 +00:00
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2009-11-11 15:27:19 +00:00
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void scan_pid_arg(struct text_object *obj, const char *arg, void* free_at_crash, const char *file)
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2009-11-11 10:33:28 +00:00
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{
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pid_t pid;
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2009-11-11 15:27:19 +00:00
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if(sscanf(arg, "%d", &pid) == 1) {
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asprintf(&obj->data.s, PROCDIR "/%d/%s", pid, file);
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2009-11-11 10:33:28 +00:00
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} else {
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2009-11-11 21:56:12 +00:00
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CRIT_ERR(obj, free_at_crash, "syntax error: ${pid_%s pid}", file);
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2009-11-11 10:33:28 +00:00
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}
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}
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2009-11-11 15:27:19 +00:00
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void scan_pid_cmdline_arg(struct text_object *obj, const char *arg, void* free_at_crash)
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{
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scan_pid_arg(obj, arg, free_at_crash, "cmdline");
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}
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void print_pid_cmdline(struct text_object *obj, char *p, int p_max_size)
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2009-11-11 10:33:28 +00:00
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{
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char buf[p_max_size];
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FILE* infofile;
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2009-11-11 12:43:14 +00:00
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int i, bytes_read;
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2009-11-11 10:33:28 +00:00
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infofile = fopen(obj->data.s, "r");
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if(infofile) {
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2009-11-11 12:43:14 +00:00
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bytes_read = fread(buf, 1, p_max_size, infofile);
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2009-11-11 12:44:50 +00:00
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for(i = 0; i < bytes_read-1; i++) {
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2009-11-11 10:33:28 +00:00
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if(buf[i] == 0) {
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buf[i] = ' ';
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}
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}
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snprintf(p, p_max_size, "%s", buf);
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fclose(infofile);
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} else {
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2009-11-11 12:23:05 +00:00
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NORM_ERR(READERR, obj->data.s);
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2009-11-11 10:33:28 +00:00
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}
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}
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2009-11-11 15:27:19 +00:00
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void scan_pid_cwd_arg(struct text_object *obj, const char *arg, void* free_at_crash)
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{
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scan_pid_arg(obj, arg, free_at_crash, "cwd");
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}
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void print_pid_cwd(struct text_object *obj, char *p, int p_max_size)
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{
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char buf[p_max_size];
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int bytes_read;
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memset(buf, 0, p_max_size);
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bytes_read = readlink(obj->data.s, buf, p_max_size);
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if(bytes_read != -1) {
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snprintf(p, p_max_size, "%s", buf);
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} else {
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NORM_ERR(READERR, obj->data.s);
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}
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}
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2009-11-11 21:56:12 +00:00
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void scan_pid_environ_arg(struct text_object *obj, const char *arg, void* free_at_crash)
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{
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pid_t pid;
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struct environ_data* ed = malloc(sizeof(struct environ_data));
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ed->var = malloc(strlen(arg));
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if(sscanf(arg, "%d %s", &pid, ed->var) == 2) {
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asprintf(&ed->file, PROCDIR "/%d/environ", pid);
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for(int i = 0; ed->var[i] != 0; i++) {
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ed->var[i] = toupper(ed->var[i]);
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}
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obj->data.opaque = ed;
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} else {
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free(ed->var);
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free(ed);
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CRIT_ERR(obj, free_at_crash, "${pid_environ pid varname}");
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}
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}
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void print_pid_environ(struct text_object *obj, char *p, int p_max_size)
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{
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char *buf = NULL;
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char *searchstring;
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FILE* infofile;
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int bytes_read, total_read = 0;
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2009-11-12 14:42:18 +00:00
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searchstring = malloc(strlen(((struct environ_data*) obj->data.opaque)->var) + strlen("=%[\1-\255]") + 1);
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2009-11-11 21:56:12 +00:00
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strcpy(searchstring, ((struct environ_data*) obj->data.opaque)->var);
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2009-11-12 14:42:18 +00:00
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strcat(searchstring, "=%[\1-\255]");
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2009-11-11 21:56:12 +00:00
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infofile = fopen(((struct environ_data*) obj->data.opaque)->file, "r");
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if(infofile) {
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do {
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buf = realloc(buf, total_read + p_max_size + 1);
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bytes_read = fread(buf + total_read, 1, p_max_size, infofile);
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total_read += bytes_read;
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buf[total_read] = 0;
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}while(bytes_read != 0);
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for(bytes_read = 0; bytes_read < total_read; bytes_read += strlen(buf + bytes_read) + 1) {
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if(sscanf(buf + bytes_read, searchstring, p) == 1) {
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free(buf);
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free(searchstring);
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fclose(infofile);
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return;
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}
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}
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2009-11-12 14:42:18 +00:00
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p[0] = 0;
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2009-11-11 21:56:12 +00:00
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free(buf);
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free(searchstring);
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fclose(infofile);
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} else {
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NORM_ERR(READERR, ((struct environ_data*) obj->data.opaque)->file);
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}
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}
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void free_pid_environ(struct text_object *obj) {
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free(((struct environ_data*) obj->data.opaque)->file);
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free(((struct environ_data*) obj->data.opaque)->var);
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free(obj->data.opaque);
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}
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2009-11-12 14:42:18 +00:00
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void scan_pid_environ_list_arg(struct text_object *obj, const char *arg, void* free_at_crash)
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{
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2009-11-12 19:34:43 +00:00
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scan_pid_arg(obj, arg, free_at_crash, "environ");
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2009-11-12 14:42:18 +00:00
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}
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void print_pid_environ_list(struct text_object *obj, char *p, int p_max_size)
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{
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char *buf = NULL;
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char *buf2;
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FILE* infofile;
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int bytes_read, total_read = 0;
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int i = 0;
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infofile = fopen(obj->data.s, "r");
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if(infofile) {
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do {
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buf = realloc(buf, total_read + p_max_size + 1);
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bytes_read = fread(buf + total_read, 1, p_max_size, infofile);
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total_read += bytes_read;
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buf[total_read] = 0;
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}while(bytes_read != 0);
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while(bytes_read < total_read) {
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buf2 = strdup(buf+bytes_read);
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bytes_read += strlen(buf2)+1;
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sscanf(buf2, "%[^=]", buf+i);
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free(buf2);
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i = strlen(buf) + 1;
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buf[i-1] = ';';
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}
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buf[i-1] = 0;
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snprintf(p, p_max_size, buf);
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free(buf);
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fclose(infofile);
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} else {
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NORM_ERR(READERR, obj->data.s);
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}
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}
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2009-11-12 19:34:43 +00:00
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void scan_pid_exe_arg(struct text_object *obj, const char *arg, void* free_at_crash)
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{
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scan_pid_arg(obj, arg, free_at_crash, "exe");
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}
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void print_pid_readlink(struct text_object *obj, char *p, int p_max_size)
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{
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char buf[p_max_size];
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memset(buf, 0, p_max_size);
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if(readlink(obj->data.s, buf, p_max_size) >= 0) {
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snprintf(p, p_max_size, buf);
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} else {
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NORM_ERR(READERR, obj->data.s);
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}
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}
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void print_pid_exe(struct text_object *obj, char *p, int p_max_size) {
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print_pid_readlink(obj, p, p_max_size);
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}
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void scan_pid_stderr_arg(struct text_object *obj, const char *arg, void* free_at_crash) {
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scan_pid_arg(obj, arg, free_at_crash, "fd/2");
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}
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void print_pid_stderr(struct text_object *obj, char *p, int p_max_size) {
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print_pid_readlink(obj, p, p_max_size);
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}
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void scan_pid_stdin_arg(struct text_object *obj, const char *arg, void* free_at_crash) {
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scan_pid_arg(obj, arg, free_at_crash, "fd/0");
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}
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void print_pid_stdin(struct text_object *obj, char *p, int p_max_size) {
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print_pid_readlink(obj, p, p_max_size);
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}
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void scan_pid_stdout_arg(struct text_object *obj, const char *arg, void* free_at_crash) {
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scan_pid_arg(obj, arg, free_at_crash, "fd/1");
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}
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void print_pid_stdout(struct text_object *obj, char *p, int p_max_size) {
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print_pid_readlink(obj, p, p_max_size);
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}
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