mirror of
https://github.com/upa/mscp.git
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638 lines
14 KiB
C
638 lines
14 KiB
C
/* SPDX-License-Identifier: GPL-3.0-only */
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#include <stdio.h>
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#include <stdlib.h>
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#include <stdarg.h>
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#include <unistd.h>
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#include <limits.h>
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#include <math.h>
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#include <signal.h>
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#include <sys/time.h>
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#include <sys/ioctl.h>
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#include <poll.h>
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#include <netinet/in.h>
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#include <sys/socket.h>
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#include <pthread.h>
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#include <mscp.h>
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#include <minmax.h>
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#include <strerrno.h>
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#include <print.h>
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#include "config.h"
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void usage(bool print_help)
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{
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printf("mscp " MSCP_BUILD_VERSION ": copy files over multiple SSH connections\n"
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"\n"
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"Usage: mscp [-46vqDpHdNh] [-n nr_conns] [-m coremask]\n"
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" [-u max_startups] [-I interval]\n"
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" [-s min_chunk_sz] [-S max_chunk_sz] [-a nr_ahead] [-b buf_sz]\n"
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" [-l login_name] [-P port] [-F ssh_config] [-i identity_file]\n"
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" [-c cipher_spec] [-M hmac_spec] [-C compress] [-g congestion]\n"
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" source ... target\n"
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"\n");
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if (!print_help)
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return;
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printf(" -n NR_CONNECTIONS number of connections "
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"(default: floor(log(cores)*2)+1)\n"
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" -m COREMASK hex value to specify cores where threads pinned\n"
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" -u MAX_STARTUPS number of concurrent SSH connection attempts "
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"(default: 8)\n"
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" -I INTERVAL interval between SSH connection attempts (default: 0)\n"
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"\n"
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" -s MIN_CHUNK_SIZE min chunk size (default: 64MB)\n"
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" -S MAX_CHUNK_SIZE max chunk size (default: filesize/nr_conn)\n"
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" -a NR_AHEAD number of inflight SFTP commands (default: 32)\n"
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" -b BUF_SZ buffer size for i/o and transfer\n"
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"\n"
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" -4 use IPv4\n"
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" -6 use IPv6\n"
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" -v increment verbose output level\n"
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" -q disable output\n"
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" -D dry run. check copy destinations with -vvv\n"
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" -r no effect\n"
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"\n"
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" -l LOGIN_NAME login name\n"
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" -P PORT port number\n"
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" -F CONFIG path to user ssh config (default ~/.ssh/config)\n"
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" -i IDENTITY identity file for public key authentication\n"
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" -c CIPHER cipher spec\n"
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" -M HMAC hmac spec\n"
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" -C COMPRESS enable compression: "
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"yes, no, zlib, zlib@openssh.com\n"
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" -g CONGESTION specify TCP congestion control algorithm\n"
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" -p preserve timestamps of files\n"
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" -H disable hostkey check\n"
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" -d increment ssh debug output level\n"
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" -N enable Nagle's algorithm (default disabled)\n"
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" -h print this help\n"
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"\n");
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}
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char *strip_brackets(char *s)
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{
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if (s[0] == '[' && s[strlen(s) - 1] == ']') {
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s[strlen(s) - 1] = '\0';
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return s + 1;
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}
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return s;
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}
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char *split_user_host_path(const char *s, char **userp, char **hostp, char **pathp)
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{
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char *tmp, *cp, *user = NULL, *host = NULL, *path = NULL;
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bool inbrackets = false;
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if (!(tmp = strdup(s))) {
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pr_err("stdrup: %s", strerror(errno));
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return NULL;
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}
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user = NULL;
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host = NULL;
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path = tmp;
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for (cp = tmp; *cp; cp++) {
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if (*cp == '@' && (cp > tmp) && *(cp - 1) != '\\' && user == NULL) {
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/* cp is non-escaped '@', so this '@' is the
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* delimitater between username and host. */
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*cp = '\0';
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user = tmp;
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host = cp + 1;
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}
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if (*cp == '[')
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inbrackets = true;
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if (*cp == ']')
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inbrackets = false;
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if (*cp == ':' && (cp > tmp) && *(cp - 1) != '\\') {
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if (!inbrackets) {
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/* cp is non-escaped ':' and not in
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* brackets for IPv6 address
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* notation. So, this ':' is the
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* delimitater between host and
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* path. */
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*cp = '\0';
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host = host == NULL ? tmp : host;
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path = cp + 1;
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break;
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}
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}
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}
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*userp = user;
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*hostp = host ? strip_brackets(host) : NULL;
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*pathp = path;
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return tmp;
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}
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struct target {
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char *copy;
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char *user;
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char *host;
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char *path;
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};
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int compare_remote(struct target *a, struct target *b)
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{
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/* return 0 if a and b have the identical user@host, otherwise 1 */
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int alen, blen;
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if (a->user) {
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if (!b->user)
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return 1;
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alen = strlen(a->user);
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blen = strlen(b->user);
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if (alen != blen)
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return 1;
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if (strncmp(a->user, b->user, alen) != 0)
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return 1;
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} else if (b->user)
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return 1;
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if (a->host) {
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if (!b->host)
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return 1;
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alen = strlen(a->host);
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blen = strlen(b->host);
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if (alen != blen)
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return 1;
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if (strncmp(a->host, b->host, alen) != 0)
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return 1;
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} else if (b->host)
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return 1;
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return 0;
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}
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struct target *validate_targets(char **arg, int len)
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{
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/* arg is array of source ... destination.
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* There are two cases:
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*
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* 1. user@host:path host:path ... path, remote to local copy
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* 2. path path ... host:path, local to remote copy.
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*
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* This function split user@remote:path args into struct target,
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* and validate all remotes are identical (mscp does not support
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* remote to remote copy).
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*/
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struct target *t, *t0;
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int n;
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if ((t = calloc(len, sizeof(struct target))) == NULL) {
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pr_err("calloc: %s", strerrno());
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return NULL;
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}
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memset(t, 0, len * sizeof(struct target));
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/* split remote:path into remote and path */
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for (n = 0; n < len; n++) {
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t[n].copy =
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split_user_host_path(arg[n], &t[n].user, &t[n].host, &t[n].path);
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if (!t[n].copy) {
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pr_err("failed to parse '%s'", arg[n]);
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goto free_target_out;
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}
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}
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/* check all user@host are identical. t[len - 1] is destination,
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* so we need to check t[0] to t[len - 2] having the identical
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* remote notation */
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t0 = &t[0];
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for (n = 1; n < len - 1; n++) {
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if (compare_remote(t0, &t[n]) != 0)
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goto invalid_remotes;
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}
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/* check inconsistent remote position in args */
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if (t[0].host == NULL && t[len - 1].host == NULL) {
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pr_err("no remote host given");
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goto free_split_out;
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}
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if (t[0].host != NULL && t[len - 1].host != NULL) {
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pr_err("no local path given");
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goto free_split_out;
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}
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return t;
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invalid_remotes:
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pr_err("invalid remote host notation");
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free_split_out:
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for (n = 0; n < len; n++)
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if (t[n].copy)
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free(t[n].copy);
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free_target_out:
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free(t);
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return NULL;
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}
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struct mscp *m = NULL;
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pthread_t tid_stat = 0;
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bool interrupted = false;
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void sigint_handler(int sig)
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{
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interrupted = true;
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mscp_stop(m);
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}
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void *print_stat_thread(void *arg);
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void print_cli(const char *fmt, ...)
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{
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va_list va;
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va_start(va, fmt);
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vfprintf(stdout, fmt, va);
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fflush(stdout);
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va_end(va);
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}
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void print_stat(bool final);
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int main(int argc, char **argv)
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{
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struct mscp_ssh_opts s;
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struct mscp_opts o;
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struct target *t;
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int pipe_fd[2];
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int ch, n, i, ret;
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int direction = 0;
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char *remote;
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bool dryrun = false;
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memset(&s, 0, sizeof(s));
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memset(&o, 0, sizeof(o));
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o.severity = MSCP_SEVERITY_WARN;
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#define mscpopts "n:m:u:I:s:S:a:b:46vqDrl:P:i:F:c:M:C:g:pHdNh"
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while ((ch = getopt(argc, argv, mscpopts)) != -1) {
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switch (ch) {
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case 'n':
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o.nr_threads = atoi(optarg);
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if (o.nr_threads < 1) {
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pr_err("invalid number of connections: %s", optarg);
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return 1;
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}
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break;
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case 'm':
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o.coremask = optarg;
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break;
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case 'u':
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o.max_startups = atoi(optarg);
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break;
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case 'I':
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o.interval = atoi(optarg);
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break;
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case 's':
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o.min_chunk_sz = atoi(optarg);
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break;
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case 'S':
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o.max_chunk_sz = atoi(optarg);
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break;
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case 'a':
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o.nr_ahead = atoi(optarg);
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break;
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case 'b':
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o.buf_sz = atoi(optarg);
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break;
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case '4':
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s.ai_family = AF_INET;
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break;
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case '6':
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s.ai_family = AF_INET6;
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break;
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case 'v':
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o.severity++;
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break;
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case 'q':
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o.severity = MSCP_SEVERITY_NONE;
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break;
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case 'D':
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dryrun = true;
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break;
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case 'r':
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/* for compatibility with scp */
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break;
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case 'l':
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s.login_name = optarg;
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break;
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case 'P':
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s.port = optarg;
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break;
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case 'F':
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s.config = optarg;
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break;
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case 'i':
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s.identity = optarg;
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break;
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case 'c':
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s.cipher = optarg;
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break;
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case 'M':
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s.hmac = optarg;
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break;
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case 'C':
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s.compress = optarg;
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break;
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case 'g':
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s.ccalgo = optarg;
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break;
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case 'p':
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o.preserve_ts = true;
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break;
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case 'H':
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s.no_hostkey_check = true;
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break;
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case 'd':
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s.debug_level++;
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break;
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case 'N':
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s.enable_nagle = true;
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break;
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case 'h':
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usage(true);
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return 0;
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default:
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usage(false);
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return 1;
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}
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}
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s.password = getenv(ENV_SSH_AUTH_PASSWORD);
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s.passphrase = getenv(ENV_SSH_AUTH_PASSPHRASE);
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if (argc - optind < 2) {
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/* mscp needs at lease 2 (src and target) argument */
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usage(false);
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return 1;
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}
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i = argc - optind;
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if ((t = validate_targets(argv + optind, i)) == NULL)
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return -1;
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if (t[0].host) {
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/* copy remote to local */
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direction = MSCP_DIRECTION_R2L;
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remote = t[0].host;
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s.login_name = s.login_name ? s.login_name : t[0].user;
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} else {
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/* copy local to remote */
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direction = MSCP_DIRECTION_L2R;
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remote = t[i - 1].host;
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s.login_name = s.login_name ? s.login_name : t[i - 1].user;
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}
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if ((m = mscp_init(remote, direction, &o, &s)) == NULL) {
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pr_err("mscp_init: %s", priv_get_err());
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return -1;
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}
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if (mscp_connect(m) < 0) {
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pr_err("mscp_connect: %s", priv_get_err());
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return -1;
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}
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for (n = 0; n < i - 1; n++) {
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if (mscp_add_src_path(m, t[n].path) < 0) {
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pr_err("mscp_add_src_path: %s", priv_get_err());
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return -1;
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}
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}
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if (mscp_set_dst_path(m, t[i - 1].path) < 0) {
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pr_err("mscp_set_dst_path: %s", priv_get_err());
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return -1;
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}
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if (mscp_scan(m) < 0) {
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pr_err("mscp_scan: %s", priv_get_err());
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return -1;
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}
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if (dryrun) {
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ret = mscp_scan_join(m);
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goto out;
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}
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if (pthread_create(&tid_stat, NULL, print_stat_thread, NULL) < 0) {
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pr_err("pthread_create: %s", strerror(errno));
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return -1;
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}
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if (signal(SIGINT, sigint_handler) == SIG_ERR) {
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pr_err("signal: %s", strerror(errno));
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return -1;
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}
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ret = mscp_start(m);
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if (ret < 0)
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pr_err("mscp_start: %s", priv_get_err());
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ret = mscp_join(m);
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pthread_cancel(tid_stat);
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pthread_join(tid_stat, NULL);
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print_stat(true);
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print_cli("\n"); /* final output */
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out:
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mscp_cleanup(m);
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mscp_free(m);
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if (interrupted)
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ret = 1;
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return ret;
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}
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/* progress bar-related functions */
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double calculate_timedelta(struct timeval *b, struct timeval *a)
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{
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double sec, usec;
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if (a->tv_usec < b->tv_usec) {
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a->tv_usec += 1000000;
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a->tv_sec--;
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}
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sec = a->tv_sec - b->tv_sec;
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usec = a->tv_usec - b->tv_usec;
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sec += usec / 1000000;
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return sec;
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}
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double calculate_bps(size_t diff, struct timeval *b, struct timeval *a)
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{
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return (double)diff / calculate_timedelta(b, a);
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}
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char *calculate_eta(size_t remain, size_t diff, struct timeval *b, struct timeval *a,
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bool final)
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{
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static char buf[16];
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#define bps_window_size 16
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static double bps_window[bps_window_size];
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static size_t sum, idx, count;
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double elapsed = calculate_timedelta(b, a);
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double bps = diff / elapsed;
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double avg, eta;
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/* early return when diff == 0 (stalled) or final output */
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if (diff == 0) {
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snprintf(buf, sizeof(buf), "--:-- ETA");
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return buf;
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}
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if (final) {
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snprintf(buf, sizeof(buf), "%02d:%02d ", (int)(floor(elapsed / 60)),
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(int)round(elapsed) % 60);
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return buf;
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}
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/* drop the old bps value and add the recent one */
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sum -= bps_window[idx];
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bps_window[idx] = bps;
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sum += bps_window[idx];
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idx = (idx + 1) % bps_window_size;
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count++;
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/* calcuate ETA from avg of recent bps values */
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avg = sum / min(count, bps_window_size);
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eta = remain / avg;
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snprintf(buf, sizeof(buf), "%02d:%02d ETA", (int)floor(eta / 60),
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(int)round(eta) % 60);
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return buf;
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}
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void print_progress_bar(double percent, char *suffix)
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{
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int n, thresh, bar_width;
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struct winsize ws;
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char buf[128];
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/*
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* [=======> ] XX% SUFFIX
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*/
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buf[0] = '\0';
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if (ioctl(STDOUT_FILENO, TIOCGWINSZ, &ws) < 0)
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return; /* XXX */
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bar_width = min(sizeof(buf), ws.ws_col) - strlen(suffix) - 7;
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memset(buf, 0, sizeof(buf));
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if (bar_width > 8) {
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thresh = floor(bar_width * (percent / 100)) - 1;
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for (n = 1; n < bar_width - 1; n++) {
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if (n <= thresh)
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buf[n] = '=';
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else
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buf[n] = ' ';
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}
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buf[thresh] = '>';
|
|
buf[0] = '[';
|
|
buf[bar_width - 1] = ']';
|
|
snprintf(buf + bar_width, sizeof(buf) - bar_width, " %3d%% ",
|
|
(int)floor(percent));
|
|
}
|
|
|
|
print_cli("\r\033[K"
|
|
"%s%s",
|
|
buf, suffix);
|
|
}
|
|
|
|
void print_progress(struct timeval *b, struct timeval *a, size_t total, size_t last,
|
|
size_t done, bool final)
|
|
{
|
|
char *bps_units[] = { "B/s ", "KB/s", "MB/s", "GB/s" };
|
|
char *byte_units[] = { "B ", "KB", "MB", "GB", "TB", "PB" };
|
|
char suffix[128];
|
|
int bps_u, byte_tu, byte_du;
|
|
double total_round, done_round;
|
|
int percent;
|
|
double bps;
|
|
|
|
#define array_size(a) (sizeof(a) / sizeof(a[0]))
|
|
|
|
if (total <= 0) {
|
|
print_cli("\r\033[K"
|
|
"total 0 byte transferred");
|
|
return; /* copy 0-byte file(s) */
|
|
}
|
|
|
|
total_round = total;
|
|
for (byte_tu = 0; total_round > 1000 && byte_tu < array_size(byte_units) - 1;
|
|
byte_tu++)
|
|
total_round /= 1024;
|
|
|
|
bps = calculate_bps(done - last, b, a);
|
|
for (bps_u = 0; bps > 1000 && bps_u < array_size(bps_units); bps_u++)
|
|
bps /= 1000;
|
|
|
|
percent = floor(((double)(done) / (double)total) * 100);
|
|
|
|
done_round = done;
|
|
for (byte_du = 0; done_round > 1024 && byte_du < array_size(byte_units) - 1;
|
|
byte_du++)
|
|
done_round /= 1024;
|
|
|
|
snprintf(suffix, sizeof(suffix), "%4.1lf%s/%.1lf%s %6.1f%s %s", done_round,
|
|
byte_units[byte_du], total_round, byte_units[byte_tu], bps,
|
|
bps_units[bps_u], calculate_eta(total - done, done - last, b, a, final));
|
|
|
|
print_progress_bar(percent, suffix);
|
|
}
|
|
|
|
struct xfer_stat {
|
|
struct timeval start, before, after;
|
|
size_t total;
|
|
size_t last;
|
|
size_t done;
|
|
};
|
|
struct xfer_stat x;
|
|
|
|
void print_stat(bool final)
|
|
{
|
|
struct mscp_stats s;
|
|
char buf[8192];
|
|
int timeout;
|
|
|
|
gettimeofday(&x.after, NULL);
|
|
if (calculate_timedelta(&x.before, &x.after) > 1 || final) {
|
|
mscp_get_stats(m, &s);
|
|
x.total = s.total;
|
|
x.done = s.done;
|
|
print_progress(!final ? &x.before : &x.start, &x.after, x.total,
|
|
!final ? x.last : 0, x.done, final);
|
|
x.before = x.after;
|
|
x.last = x.done;
|
|
}
|
|
}
|
|
|
|
void *print_stat_thread(void *arg)
|
|
{
|
|
struct mscp_stats s;
|
|
char buf[8192];
|
|
|
|
memset(&x, 0, sizeof(x));
|
|
gettimeofday(&x.start, NULL);
|
|
x.before = x.start;
|
|
|
|
while (true) {
|
|
print_stat(false);
|
|
sleep(1);
|
|
}
|
|
|
|
return NULL;
|
|
}
|