cachepc-linux

Fork of AMDESE/linux with modifications for CachePC side-channel attack
git clone https://git.sinitax.com/sinitax/cachepc-linux
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so_txtime.c (12119B)


      1// SPDX-License-Identifier: GPL-2.0
      2/*
      3 * Test the SO_TXTIME API
      4 *
      5 * Takes a stream of { payload, delivery time }[], to be sent across two
      6 * processes. Start this program on two separate network namespaces or
      7 * connected hosts, one instance in transmit mode and the other in receive
      8 * mode using the '-r' option. Receiver will compare arrival timestamps to
      9 * the expected stream. Sender will read transmit timestamps from the error
     10 * queue. The streams can differ due to out-of-order delivery and drops.
     11 */
     12
     13#define _GNU_SOURCE
     14
     15#include <arpa/inet.h>
     16#include <error.h>
     17#include <errno.h>
     18#include <inttypes.h>
     19#include <linux/net_tstamp.h>
     20#include <linux/errqueue.h>
     21#include <linux/if_ether.h>
     22#include <linux/ipv6.h>
     23#include <linux/udp.h>
     24#include <stdbool.h>
     25#include <stdlib.h>
     26#include <stdio.h>
     27#include <string.h>
     28#include <sys/socket.h>
     29#include <sys/stat.h>
     30#include <sys/time.h>
     31#include <sys/types.h>
     32#include <time.h>
     33#include <unistd.h>
     34#include <poll.h>
     35
     36static int	cfg_clockid	= CLOCK_TAI;
     37static uint16_t	cfg_port	= 8000;
     38static int	cfg_variance_us	= 4000;
     39static uint64_t	cfg_start_time_ns;
     40static int	cfg_mark;
     41static bool	cfg_rx;
     42
     43static uint64_t glob_tstart;
     44static uint64_t tdeliver_max;
     45
     46/* encode one timed transmission (of a 1B payload) */
     47struct timed_send {
     48	char	data;
     49	int64_t	delay_us;
     50};
     51
     52#define MAX_NUM_PKT	8
     53static struct timed_send cfg_buf[MAX_NUM_PKT];
     54static int cfg_num_pkt;
     55
     56static int cfg_errq_level;
     57static int cfg_errq_type;
     58
     59static struct sockaddr_storage cfg_dst_addr;
     60static struct sockaddr_storage cfg_src_addr;
     61static socklen_t cfg_alen;
     62
     63static uint64_t gettime_ns(clockid_t clock)
     64{
     65	struct timespec ts;
     66
     67	if (clock_gettime(clock, &ts))
     68		error(1, errno, "gettime");
     69
     70	return ts.tv_sec * (1000ULL * 1000 * 1000) + ts.tv_nsec;
     71}
     72
     73static void do_send_one(int fdt, struct timed_send *ts)
     74{
     75	char control[CMSG_SPACE(sizeof(uint64_t))];
     76	struct msghdr msg = {0};
     77	struct iovec iov = {0};
     78	struct cmsghdr *cm;
     79	uint64_t tdeliver;
     80	int ret;
     81
     82	iov.iov_base = &ts->data;
     83	iov.iov_len = 1;
     84
     85	msg.msg_iov = &iov;
     86	msg.msg_iovlen = 1;
     87	msg.msg_name = (struct sockaddr *)&cfg_dst_addr;
     88	msg.msg_namelen = cfg_alen;
     89
     90	if (ts->delay_us >= 0) {
     91		memset(control, 0, sizeof(control));
     92		msg.msg_control = &control;
     93		msg.msg_controllen = sizeof(control);
     94
     95		tdeliver = glob_tstart + ts->delay_us * 1000;
     96		tdeliver_max = tdeliver_max > tdeliver ?
     97			       tdeliver_max : tdeliver;
     98
     99		cm = CMSG_FIRSTHDR(&msg);
    100		cm->cmsg_level = SOL_SOCKET;
    101		cm->cmsg_type = SCM_TXTIME;
    102		cm->cmsg_len = CMSG_LEN(sizeof(tdeliver));
    103		memcpy(CMSG_DATA(cm), &tdeliver, sizeof(tdeliver));
    104	}
    105
    106	ret = sendmsg(fdt, &msg, 0);
    107	if (ret == -1)
    108		error(1, errno, "write");
    109	if (ret == 0)
    110		error(1, 0, "write: 0B");
    111
    112}
    113
    114static void do_recv_one(int fdr, struct timed_send *ts)
    115{
    116	int64_t tstop, texpect;
    117	char rbuf[2];
    118	int ret;
    119
    120	ret = recv(fdr, rbuf, sizeof(rbuf), 0);
    121	if (ret == -1 && errno == EAGAIN)
    122		error(1, EAGAIN, "recv: timeout");
    123	if (ret == -1)
    124		error(1, errno, "read");
    125	if (ret != 1)
    126		error(1, 0, "read: %dB", ret);
    127
    128	tstop = (gettime_ns(cfg_clockid) - glob_tstart) / 1000;
    129	texpect = ts->delay_us >= 0 ? ts->delay_us : 0;
    130
    131	fprintf(stderr, "payload:%c delay:%lld expected:%lld (us)\n",
    132			rbuf[0], (long long)tstop, (long long)texpect);
    133
    134	if (rbuf[0] != ts->data)
    135		error(1, 0, "payload mismatch. expected %c", ts->data);
    136
    137	if (llabs(tstop - texpect) > cfg_variance_us)
    138		error(1, 0, "exceeds variance (%d us)", cfg_variance_us);
    139}
    140
    141static void do_recv_verify_empty(int fdr)
    142{
    143	char rbuf[1];
    144	int ret;
    145
    146	ret = recv(fdr, rbuf, sizeof(rbuf), 0);
    147	if (ret != -1 || errno != EAGAIN)
    148		error(1, 0, "recv: not empty as expected (%d, %d)", ret, errno);
    149}
    150
    151static int do_recv_errqueue_timeout(int fdt)
    152{
    153	char control[CMSG_SPACE(sizeof(struct sock_extended_err)) +
    154		     CMSG_SPACE(sizeof(struct sockaddr_in6))] = {0};
    155	char data[sizeof(struct ethhdr) + sizeof(struct ipv6hdr) +
    156		  sizeof(struct udphdr) + 1];
    157	struct sock_extended_err *err;
    158	int ret, num_tstamp = 0;
    159	struct msghdr msg = {0};
    160	struct iovec iov = {0};
    161	struct cmsghdr *cm;
    162	int64_t tstamp = 0;
    163
    164	iov.iov_base = data;
    165	iov.iov_len = sizeof(data);
    166
    167	msg.msg_iov = &iov;
    168	msg.msg_iovlen = 1;
    169
    170	msg.msg_control = control;
    171	msg.msg_controllen = sizeof(control);
    172
    173	while (1) {
    174		const char *reason;
    175
    176		ret = recvmsg(fdt, &msg, MSG_ERRQUEUE);
    177		if (ret == -1 && errno == EAGAIN)
    178			break;
    179		if (ret == -1)
    180			error(1, errno, "errqueue");
    181		if (msg.msg_flags != MSG_ERRQUEUE)
    182			error(1, 0, "errqueue: flags 0x%x\n", msg.msg_flags);
    183
    184		cm = CMSG_FIRSTHDR(&msg);
    185		if (cm->cmsg_level != cfg_errq_level ||
    186		    cm->cmsg_type != cfg_errq_type)
    187			error(1, 0, "errqueue: type 0x%x.0x%x\n",
    188				    cm->cmsg_level, cm->cmsg_type);
    189
    190		err = (struct sock_extended_err *)CMSG_DATA(cm);
    191		if (err->ee_origin != SO_EE_ORIGIN_TXTIME)
    192			error(1, 0, "errqueue: origin 0x%x\n", err->ee_origin);
    193
    194		switch (err->ee_errno) {
    195		case ECANCELED:
    196			if (err->ee_code != SO_EE_CODE_TXTIME_MISSED)
    197				error(1, 0, "errqueue: unknown ECANCELED %u\n",
    198				      err->ee_code);
    199			reason = "missed txtime";
    200		break;
    201		case EINVAL:
    202			if (err->ee_code != SO_EE_CODE_TXTIME_INVALID_PARAM)
    203				error(1, 0, "errqueue: unknown EINVAL %u\n",
    204				      err->ee_code);
    205			reason = "invalid txtime";
    206		break;
    207		default:
    208			error(1, 0, "errqueue: errno %u code %u\n",
    209			      err->ee_errno, err->ee_code);
    210		}
    211
    212		tstamp = ((int64_t) err->ee_data) << 32 | err->ee_info;
    213		tstamp -= (int64_t) glob_tstart;
    214		tstamp /= 1000 * 1000;
    215		fprintf(stderr, "send: pkt %c at %" PRId64 "ms dropped: %s\n",
    216			data[ret - 1], tstamp, reason);
    217
    218		msg.msg_flags = 0;
    219		msg.msg_controllen = sizeof(control);
    220		num_tstamp++;
    221	}
    222
    223	return num_tstamp;
    224}
    225
    226static void recv_errqueue_msgs(int fdt)
    227{
    228	struct pollfd pfd = { .fd = fdt, .events = POLLERR };
    229	const int timeout_ms = 10;
    230	int ret, num_tstamp = 0;
    231
    232	do {
    233		ret = poll(&pfd, 1, timeout_ms);
    234		if (ret == -1)
    235			error(1, errno, "poll");
    236
    237		if (ret && (pfd.revents & POLLERR))
    238			num_tstamp += do_recv_errqueue_timeout(fdt);
    239
    240		if (num_tstamp == cfg_num_pkt)
    241			break;
    242
    243	} while (gettime_ns(cfg_clockid) < tdeliver_max);
    244}
    245
    246static void start_time_wait(void)
    247{
    248	uint64_t now;
    249	int err;
    250
    251	if (!cfg_start_time_ns)
    252		return;
    253
    254	now = gettime_ns(CLOCK_REALTIME);
    255	if (cfg_start_time_ns < now)
    256		return;
    257
    258	err = usleep((cfg_start_time_ns - now) / 1000);
    259	if (err)
    260		error(1, errno, "usleep");
    261}
    262
    263static void setsockopt_txtime(int fd)
    264{
    265	struct sock_txtime so_txtime_val = { .clockid = cfg_clockid };
    266	struct sock_txtime so_txtime_val_read = { 0 };
    267	socklen_t vallen = sizeof(so_txtime_val);
    268
    269	so_txtime_val.flags = SOF_TXTIME_REPORT_ERRORS;
    270
    271	if (setsockopt(fd, SOL_SOCKET, SO_TXTIME,
    272		       &so_txtime_val, sizeof(so_txtime_val)))
    273		error(1, errno, "setsockopt txtime");
    274
    275	if (getsockopt(fd, SOL_SOCKET, SO_TXTIME,
    276		       &so_txtime_val_read, &vallen))
    277		error(1, errno, "getsockopt txtime");
    278
    279	if (vallen != sizeof(so_txtime_val) ||
    280	    memcmp(&so_txtime_val, &so_txtime_val_read, vallen))
    281		error(1, 0, "getsockopt txtime: mismatch");
    282}
    283
    284static int setup_tx(struct sockaddr *addr, socklen_t alen)
    285{
    286	int fd;
    287
    288	fd = socket(addr->sa_family, SOCK_DGRAM, 0);
    289	if (fd == -1)
    290		error(1, errno, "socket t");
    291
    292	if (connect(fd, addr, alen))
    293		error(1, errno, "connect");
    294
    295	setsockopt_txtime(fd);
    296
    297	if (cfg_mark &&
    298	    setsockopt(fd, SOL_SOCKET, SO_MARK, &cfg_mark, sizeof(cfg_mark)))
    299		error(1, errno, "setsockopt mark");
    300
    301	return fd;
    302}
    303
    304static int setup_rx(struct sockaddr *addr, socklen_t alen)
    305{
    306	struct timeval tv = { .tv_usec = 100 * 1000 };
    307	int fd;
    308
    309	fd = socket(addr->sa_family, SOCK_DGRAM, 0);
    310	if (fd == -1)
    311		error(1, errno, "socket r");
    312
    313	if (bind(fd, addr, alen))
    314		error(1, errno, "bind");
    315
    316	if (setsockopt(fd, SOL_SOCKET, SO_RCVTIMEO, &tv, sizeof(tv)))
    317		error(1, errno, "setsockopt rcv timeout");
    318
    319	return fd;
    320}
    321
    322static void do_test_tx(struct sockaddr *addr, socklen_t alen)
    323{
    324	int fdt, i;
    325
    326	fprintf(stderr, "\nSO_TXTIME ipv%c clock %s\n",
    327			addr->sa_family == PF_INET ? '4' : '6',
    328			cfg_clockid == CLOCK_TAI ? "tai" : "monotonic");
    329
    330	fdt = setup_tx(addr, alen);
    331
    332	start_time_wait();
    333	glob_tstart = gettime_ns(cfg_clockid);
    334
    335	for (i = 0; i < cfg_num_pkt; i++)
    336		do_send_one(fdt, &cfg_buf[i]);
    337
    338	recv_errqueue_msgs(fdt);
    339
    340	if (close(fdt))
    341		error(1, errno, "close t");
    342}
    343
    344static void do_test_rx(struct sockaddr *addr, socklen_t alen)
    345{
    346	int fdr, i;
    347
    348	fdr = setup_rx(addr, alen);
    349
    350	start_time_wait();
    351	glob_tstart = gettime_ns(cfg_clockid);
    352
    353	for (i = 0; i < cfg_num_pkt; i++)
    354		do_recv_one(fdr, &cfg_buf[i]);
    355
    356	do_recv_verify_empty(fdr);
    357
    358	if (close(fdr))
    359		error(1, errno, "close r");
    360}
    361
    362static void setup_sockaddr(int domain, const char *str_addr,
    363			   struct sockaddr_storage *sockaddr)
    364{
    365	struct sockaddr_in6 *addr6 = (void *) sockaddr;
    366	struct sockaddr_in *addr4 = (void *) sockaddr;
    367
    368	switch (domain) {
    369	case PF_INET:
    370		memset(addr4, 0, sizeof(*addr4));
    371		addr4->sin_family = AF_INET;
    372		addr4->sin_port = htons(cfg_port);
    373		if (str_addr &&
    374		    inet_pton(AF_INET, str_addr, &(addr4->sin_addr)) != 1)
    375			error(1, 0, "ipv4 parse error: %s", str_addr);
    376		break;
    377	case PF_INET6:
    378		memset(addr6, 0, sizeof(*addr6));
    379		addr6->sin6_family = AF_INET6;
    380		addr6->sin6_port = htons(cfg_port);
    381		if (str_addr &&
    382		    inet_pton(AF_INET6, str_addr, &(addr6->sin6_addr)) != 1)
    383			error(1, 0, "ipv6 parse error: %s", str_addr);
    384		break;
    385	}
    386}
    387
    388static int parse_io(const char *optarg, struct timed_send *array)
    389{
    390	char *arg, *tok;
    391	int aoff = 0;
    392
    393	arg = strdup(optarg);
    394	if (!arg)
    395		error(1, errno, "strdup");
    396
    397	while ((tok = strtok(arg, ","))) {
    398		arg = NULL;	/* only pass non-zero on first call */
    399
    400		if (aoff / 2 == MAX_NUM_PKT)
    401			error(1, 0, "exceeds max pkt count (%d)", MAX_NUM_PKT);
    402
    403		if (aoff & 1) {	/* parse delay */
    404			array->delay_us = strtol(tok, NULL, 0) * 1000;
    405			array++;
    406		} else {	/* parse character */
    407			array->data = tok[0];
    408		}
    409
    410		aoff++;
    411	}
    412
    413	free(arg);
    414
    415	return aoff / 2;
    416}
    417
    418static void usage(const char *progname)
    419{
    420	fprintf(stderr, "\nUsage: %s [options] <payload>\n"
    421			"Options:\n"
    422			"  -4            only IPv4\n"
    423			"  -6            only IPv6\n"
    424			"  -c <clock>    monotonic or tai (default)\n"
    425			"  -D <addr>     destination IP address (server)\n"
    426			"  -S <addr>     source IP address (client)\n"
    427			"  -r            run rx mode\n"
    428			"  -t <nsec>     start time (UTC nanoseconds)\n"
    429			"  -m <mark>     socket mark\n"
    430			"\n",
    431			progname);
    432	exit(1);
    433}
    434
    435static void parse_opts(int argc, char **argv)
    436{
    437	char *daddr = NULL, *saddr = NULL;
    438	int domain = PF_UNSPEC;
    439	int c;
    440
    441	while ((c = getopt(argc, argv, "46c:S:D:rt:m:")) != -1) {
    442		switch (c) {
    443		case '4':
    444			if (domain != PF_UNSPEC)
    445				error(1, 0, "Pass one of -4 or -6");
    446			domain = PF_INET;
    447			cfg_alen = sizeof(struct sockaddr_in);
    448			cfg_errq_level = SOL_IP;
    449			cfg_errq_type = IP_RECVERR;
    450			break;
    451		case '6':
    452			if (domain != PF_UNSPEC)
    453				error(1, 0, "Pass one of -4 or -6");
    454			domain = PF_INET6;
    455			cfg_alen = sizeof(struct sockaddr_in6);
    456			cfg_errq_level = SOL_IPV6;
    457			cfg_errq_type = IPV6_RECVERR;
    458			break;
    459		case 'c':
    460			if (!strcmp(optarg, "tai"))
    461				cfg_clockid = CLOCK_TAI;
    462			else if (!strcmp(optarg, "monotonic") ||
    463				 !strcmp(optarg, "mono"))
    464				cfg_clockid = CLOCK_MONOTONIC;
    465			else
    466				error(1, 0, "unknown clock id %s", optarg);
    467			break;
    468		case 'S':
    469			saddr = optarg;
    470			break;
    471		case 'D':
    472			daddr = optarg;
    473			break;
    474		case 'r':
    475			cfg_rx = true;
    476			break;
    477		case 't':
    478			cfg_start_time_ns = strtoll(optarg, NULL, 0);
    479			break;
    480		case 'm':
    481			cfg_mark = strtol(optarg, NULL, 0);
    482			break;
    483		default:
    484			usage(argv[0]);
    485		}
    486	}
    487
    488	if (argc - optind != 1)
    489		usage(argv[0]);
    490
    491	if (domain == PF_UNSPEC)
    492		error(1, 0, "Pass one of -4 or -6");
    493	if (!daddr)
    494		error(1, 0, "-D <server addr> required\n");
    495	if (!cfg_rx && !saddr)
    496		error(1, 0, "-S <client addr> required\n");
    497
    498	setup_sockaddr(domain, daddr, &cfg_dst_addr);
    499	setup_sockaddr(domain, saddr, &cfg_src_addr);
    500
    501	cfg_num_pkt = parse_io(argv[optind], cfg_buf);
    502}
    503
    504int main(int argc, char **argv)
    505{
    506	parse_opts(argc, argv);
    507
    508	if (cfg_rx)
    509		do_test_rx((void *)&cfg_dst_addr, cfg_alen);
    510	else
    511		do_test_tx((void *)&cfg_src_addr, cfg_alen);
    512
    513	return 0;
    514}