3 * Copyright 2001, 2002 by Robert Olsson <robert.olsson@its.uu.se>
4 * Uppsala University and
5 * Swedish University of Agricultural Sciences
7 * Alexey Kuznetsov <kuznet@ms2.inr.ac.ru>
8 * Ben Greear <greearb@candelatech.com>
9 * Jens Låås <jens.laas@data.slu.se>
11 * This program is free software; you can redistribute it and/or
12 * modify it under the terms of the GNU General Public License
13 * as published by the Free Software Foundation; either version
14 * 2 of the License, or (at your option) any later version.
17 * A tool for loading the network with preconfigurated packets.
18 * The tool is implemented as a linux module. Parameters are output
19 * device, delay (to hard_xmit), number of packets, and whether
20 * to use multiple SKBs or just the same one.
21 * pktgen uses the installed interface's output routine.
23 * Additional hacking by:
25 * Jens.Laas@data.slu.se
26 * Improved by ANK. 010120.
27 * Improved by ANK even more. 010212.
28 * MAC address typo fixed. 010417 --ro
29 * Integrated. 020301 --DaveM
30 * Added multiskb option 020301 --DaveM
31 * Scaling of results. 020417--sigurdur@linpro.no
32 * Significant re-work of the module:
33 * * Convert to threaded model to more efficiently be able to transmit
34 * and receive on multiple interfaces at once.
35 * * Converted many counters to __u64 to allow longer runs.
36 * * Allow configuration of ranges, like min/max IP address, MACs,
37 * and UDP-ports, for both source and destination, and can
38 * set to use a random distribution or sequentially walk the range.
39 * * Can now change most values after starting.
40 * * Place 12-byte packet in UDP payload with magic number,
41 * sequence number, and timestamp.
42 * * Add receiver code that detects dropped pkts, re-ordered pkts, and
43 * latencies (with micro-second) precision.
44 * * Add IOCTL interface to easily get counters & configuration.
45 * --Ben Greear <greearb@candelatech.com>
47 * Renamed multiskb to clone_skb and cleaned up sending core for two distinct
48 * skb modes. A clone_skb=0 mode for Ben "ranges" work and a clone_skb != 0
49 * as a "fastpath" with a configurable number of clones after alloc's.
50 * clone_skb=0 means all packets are allocated this also means ranges time
51 * stamps etc can be used. clone_skb=100 means 1 malloc is followed by 100
54 * Also moved to /proc/net/pktgen/
57 * Sept 10: Fixed threading/locking. Lots of bone-headed and more clever
58 * mistakes. Also merged in DaveM's patch in the -pre6 patch.
59 * --Ben Greear <greearb@candelatech.com>
61 * Integrated to 2.5.x 021029 --Lucio Maciel (luciomaciel@zipmail.com.br)
64 * 021124 Finished major redesign and rewrite for new functionality.
65 * See Documentation/networking/pktgen.txt for how to use this.
68 * For each CPU one thread/process is created at start. This process checks
69 * for running devices in the if_list and sends packets until count is 0 it
70 * also the thread checks the thread->control which is used for inter-process
71 * communication. controlling process "posts" operations to the threads this
73 * The if_list is RCU protected, and the if_lock remains to protect updating
74 * of if_list, from "add_device" as it invoked from userspace (via proc write).
76 * By design there should only be *one* "controlling" process. In practice
77 * multiple write accesses gives unpredictable result. Understood by "write"
78 * to /proc gives result code thats should be read be the "writer".
79 * For practical use this should be no problem.
81 * Note when adding devices to a specific CPU there good idea to also assign
82 * /proc/irq/XX/smp_affinity so TX-interrupts gets bound to the same CPU.
85 * Fix refcount off by one if first packet fails, potential null deref,
88 * First "ranges" functionality for ipv6 030726 --ro
90 * Included flow support. 030802 ANK.
92 * Fixed unaligned access on IA-64 Grant Grundler <grundler@parisc-linux.org>
94 * Remove if fix from added Harald Welte <laforge@netfilter.org> 040419
95 * ia64 compilation fix from Aron Griffis <aron@hp.com> 040604
97 * New xmit() return, do_div and misc clean up by Stephen Hemminger
98 * <shemminger@osdl.org> 040923
100 * Randy Dunlap fixed u64 printk compiler warning
102 * Remove FCS from BW calculation. Lennert Buytenhek <buytenh@wantstofly.org>
103 * New time handling. Lennert Buytenhek <buytenh@wantstofly.org> 041213
105 * Corrections from Nikolai Malykh (nmalykh@bilim.com)
106 * Removed unused flags F_SET_SRCMAC & F_SET_SRCIP 041230
108 * interruptible_sleep_on_timeout() replaced Nishanth Aravamudan <nacc@us.ibm.com>
111 * MPLS support by Steven Whitehouse <steve@chygwyn.com>
113 * 802.1Q/Q-in-Q support by Francesco Fondelli (FF) <francesco.fondelli@gmail.com>
115 * Fixed src_mac command to set source mac of packet to value specified in
116 * command by Adit Ranadive <adit.262@gmail.com>
120 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
122 #include <linux/sys.h>
123 #include <linux/types.h>
124 #include <linux/module.h>
125 #include <linux/moduleparam.h>
126 #include <linux/kernel.h>
127 #include <linux/mutex.h>
128 #include <linux/sched.h>
129 #include <linux/slab.h>
130 #include <linux/vmalloc.h>
131 #include <linux/unistd.h>
132 #include <linux/string.h>
133 #include <linux/ptrace.h>
134 #include <linux/errno.h>
135 #include <linux/ioport.h>
136 #include <linux/interrupt.h>
137 #include <linux/capability.h>
138 #include <linux/hrtimer.h>
139 #include <linux/freezer.h>
140 #include <linux/delay.h>
141 #include <linux/timer.h>
142 #include <linux/list.h>
143 #include <linux/init.h>
144 #include <linux/skbuff.h>
145 #include <linux/netdevice.h>
146 #include <linux/inet.h>
147 #include <linux/inetdevice.h>
148 #include <linux/rtnetlink.h>
149 #include <linux/if_arp.h>
150 #include <linux/if_vlan.h>
151 #include <linux/in.h>
152 #include <linux/ip.h>
153 #include <linux/ipv6.h>
154 #include <linux/udp.h>
155 #include <linux/proc_fs.h>
156 #include <linux/seq_file.h>
157 #include <linux/wait.h>
158 #include <linux/etherdevice.h>
159 #include <linux/kthread.h>
160 #include <linux/prefetch.h>
161 #include <net/net_namespace.h>
162 #include <net/checksum.h>
163 #include <net/ipv6.h>
165 #include <net/ip6_checksum.h>
166 #include <net/addrconf.h>
168 #include <net/xfrm.h>
170 #include <net/netns/generic.h>
171 #include <asm/byteorder.h>
172 #include <linux/rcupdate.h>
173 #include <linux/bitops.h>
174 #include <linux/io.h>
175 #include <linux/timex.h>
176 #include <linux/uaccess.h>
178 #include <asm/div64.h> /* do_div */
180 #define VERSION "2.75"
181 #define IP_NAME_SZ 32
182 #define MAX_MPLS_LABELS 16 /* This is the max label stack depth */
183 #define MPLS_STACK_BOTTOM htonl(0x00000100)
185 #define func_enter() pr_debug("entering %s\n", __func__);
187 /* Device flag bits */
188 #define F_IPSRC_RND (1<<0) /* IP-Src Random */
189 #define F_IPDST_RND (1<<1) /* IP-Dst Random */
190 #define F_UDPSRC_RND (1<<2) /* UDP-Src Random */
191 #define F_UDPDST_RND (1<<3) /* UDP-Dst Random */
192 #define F_MACSRC_RND (1<<4) /* MAC-Src Random */
193 #define F_MACDST_RND (1<<5) /* MAC-Dst Random */
194 #define F_TXSIZE_RND (1<<6) /* Transmit size is random */
195 #define F_IPV6 (1<<7) /* Interface in IPV6 Mode */
196 #define F_MPLS_RND (1<<8) /* Random MPLS labels */
197 #define F_VID_RND (1<<9) /* Random VLAN ID */
198 #define F_SVID_RND (1<<10) /* Random SVLAN ID */
199 #define F_FLOW_SEQ (1<<11) /* Sequential flows */
200 #define F_IPSEC_ON (1<<12) /* ipsec on for flows */
201 #define F_QUEUE_MAP_RND (1<<13) /* queue map Random */
202 #define F_QUEUE_MAP_CPU (1<<14) /* queue map mirrors smp_processor_id() */
203 #define F_NODE (1<<15) /* Node memory alloc*/
204 #define F_UDPCSUM (1<<16) /* Include UDP checksum */
205 #define F_NO_TIMESTAMP (1<<17) /* Don't timestamp packets (default TS) */
207 /* Thread control flag bits */
208 #define T_STOP (1<<0) /* Stop run */
209 #define T_RUN (1<<1) /* Start run */
210 #define T_REMDEVALL (1<<2) /* Remove all devs */
211 #define T_REMDEV (1<<3) /* Remove one dev */
214 #define M_START_XMIT 0 /* Default normal TX */
215 #define M_NETIF_RECEIVE 1 /* Inject packets into stack */
217 /* If lock -- protects updating of if_list */
218 #define if_lock(t) spin_lock(&(t->if_lock));
219 #define if_unlock(t) spin_unlock(&(t->if_lock));
221 /* Used to help with determining the pkts on receive */
222 #define PKTGEN_MAGIC 0xbe9be955
223 #define PG_PROC_DIR "pktgen"
224 #define PGCTRL "pgctrl"
226 #define MAX_CFLOWS 65536
228 #define VLAN_TAG_SIZE(x) ((x)->vlan_id == 0xffff ? 0 : 4)
229 #define SVLAN_TAG_SIZE(x) ((x)->svlan_id == 0xffff ? 0 : 4)
235 struct xfrm_state
*x
;
241 #define F_INIT (1<<0) /* flow has been initialized */
245 * Try to keep frequent/infrequent used vars. separated.
247 struct proc_dir_entry
*entry
; /* proc file */
248 struct pktgen_thread
*pg_thread
;/* the owner */
249 struct list_head list
; /* chaining in the thread's run-queue */
250 struct rcu_head rcu
; /* freed by RCU */
252 int running
; /* if false, the test will stop */
254 /* If min != max, then we will either do a linear iteration, or
255 * we will do a random selection from within the range.
261 int pkt_overhead
; /* overhead for MPLS, VLANs, IPSEC etc */
263 int removal_mark
; /* non-zero => the device is marked for
264 * removal by worker thread */
267 u64 delay
; /* nano-seconds */
269 __u64 count
; /* Default No packets to send */
270 __u64 sofar
; /* How many pkts we've sent so far */
271 __u64 tx_bytes
; /* How many bytes we've transmitted */
272 __u64 errors
; /* Errors when trying to transmit, */
274 /* runtime counters relating to clone_skb */
276 __u64 allocated_skbs
;
278 int last_ok
; /* Was last skb sent?
279 * Or a failed transmit of some sort?
280 * This will keep sequence numbers in order
285 u64 idle_acc
; /* nano-seconds */
290 * Use multiple SKBs during packet gen.
291 * If this number is greater than 1, then
292 * that many copies of the same packet will be
293 * sent before a new packet is allocated.
294 * If you want to send 1024 identical packets
295 * before creating a new packet,
296 * set clone_skb to 1024.
299 char dst_min
[IP_NAME_SZ
]; /* IP, ie 1.2.3.4 */
300 char dst_max
[IP_NAME_SZ
]; /* IP, ie 1.2.3.4 */
301 char src_min
[IP_NAME_SZ
]; /* IP, ie 1.2.3.4 */
302 char src_max
[IP_NAME_SZ
]; /* IP, ie 1.2.3.4 */
304 struct in6_addr in6_saddr
;
305 struct in6_addr in6_daddr
;
306 struct in6_addr cur_in6_daddr
;
307 struct in6_addr cur_in6_saddr
;
309 struct in6_addr min_in6_daddr
;
310 struct in6_addr max_in6_daddr
;
311 struct in6_addr min_in6_saddr
;
312 struct in6_addr max_in6_saddr
;
314 /* If we're doing ranges, random or incremental, then this
315 * defines the min/max for those ranges.
317 __be32 saddr_min
; /* inclusive, source IP address */
318 __be32 saddr_max
; /* exclusive, source IP address */
319 __be32 daddr_min
; /* inclusive, dest IP address */
320 __be32 daddr_max
; /* exclusive, dest IP address */
322 __u16 udp_src_min
; /* inclusive, source UDP port */
323 __u16 udp_src_max
; /* exclusive, source UDP port */
324 __u16 udp_dst_min
; /* inclusive, dest UDP port */
325 __u16 udp_dst_max
; /* exclusive, dest UDP port */
328 __u8 tos
; /* six MSB of (former) IPv4 TOS
329 are for dscp codepoint */
330 __u8 traffic_class
; /* ditto for the (former) Traffic Class in IPv6
331 (see RFC 3260, sec. 4) */
334 unsigned int nr_labels
; /* Depth of stack, 0 = no MPLS */
335 __be32 labels
[MAX_MPLS_LABELS
];
337 /* VLAN/SVLAN (802.1Q/Q-in-Q) */
340 __u16 vlan_id
; /* 0xffff means no vlan tag */
344 __u16 svlan_id
; /* 0xffff means no svlan tag */
346 __u32 src_mac_count
; /* How many MACs to iterate through */
347 __u32 dst_mac_count
; /* How many MACs to iterate through */
349 unsigned char dst_mac
[ETH_ALEN
];
350 unsigned char src_mac
[ETH_ALEN
];
352 __u32 cur_dst_mac_offset
;
353 __u32 cur_src_mac_offset
;
365 0x00, 0x80, 0xC8, 0x79, 0xB3, 0xCB,
367 We fill in SRC address later
368 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
372 __u16 pad
; /* pad out the hh struct to an even 16 bytes */
374 struct sk_buff
*skb
; /* skb we are to transmit next, used for when we
375 * are transmitting the same one multiple times
377 struct net_device
*odev
; /* The out-going device.
378 * Note that the device should have it's
379 * pg_info pointer pointing back to this
381 * Set when the user specifies the out-going
382 * device name (not when the inject is
383 * started as it used to do.)
386 struct flow_state
*flows
;
387 unsigned int cflows
; /* Concurrent flows (config) */
388 unsigned int lflow
; /* Flow length (config) */
389 unsigned int nflows
; /* accumulated flows (stats) */
390 unsigned int curfl
; /* current sequenced flow (state)*/
394 __u32 skb_priority
; /* skb priority field */
395 unsigned int burst
; /* number of duplicated packets to burst */
396 int node
; /* Memory node */
399 __u8 ipsmode
; /* IPSEC mode (config) */
400 __u8 ipsproto
; /* IPSEC type (config) */
402 struct dst_entry dst
;
403 struct dst_ops dstops
;
416 static int pg_net_id __read_mostly
;
420 struct proc_dir_entry
*proc_dir
;
421 struct list_head pktgen_threads
;
425 struct pktgen_thread
{
426 spinlock_t if_lock
; /* for list of devices */
427 struct list_head if_list
; /* All device here */
428 struct list_head th_list
;
429 struct task_struct
*tsk
;
432 /* Field for thread to receive "posted" events terminate,
438 wait_queue_head_t queue
;
439 struct completion start_done
;
440 struct pktgen_net
*net
;
446 static const char version
[] =
447 "Packet Generator for packet performance testing. "
448 "Version: " VERSION
"\n";
450 static int pktgen_remove_device(struct pktgen_thread
*t
, struct pktgen_dev
*i
);
451 static int pktgen_add_device(struct pktgen_thread
*t
, const char *ifname
);
452 static struct pktgen_dev
*pktgen_find_dev(struct pktgen_thread
*t
,
453 const char *ifname
, bool exact
);
454 static int pktgen_device_event(struct notifier_block
*, unsigned long, void *);
455 static void pktgen_run_all_threads(struct pktgen_net
*pn
);
456 static void pktgen_reset_all_threads(struct pktgen_net
*pn
);
457 static void pktgen_stop_all_threads_ifs(struct pktgen_net
*pn
);
459 static void pktgen_stop(struct pktgen_thread
*t
);
460 static void pktgen_clear_counters(struct pktgen_dev
*pkt_dev
);
462 /* Module parameters, defaults. */
463 static int pg_count_d __read_mostly
= 1000;
464 static int pg_delay_d __read_mostly
;
465 static int pg_clone_skb_d __read_mostly
;
466 static int debug __read_mostly
;
468 static DEFINE_MUTEX(pktgen_thread_lock
);
470 static struct notifier_block pktgen_notifier_block
= {
471 .notifier_call
= pktgen_device_event
,
475 * /proc handling functions
479 static int pgctrl_show(struct seq_file
*seq
, void *v
)
481 seq_puts(seq
, version
);
485 static ssize_t
pgctrl_write(struct file
*file
, const char __user
*buf
,
486 size_t count
, loff_t
*ppos
)
489 struct pktgen_net
*pn
= net_generic(current
->nsproxy
->net_ns
, pg_net_id
);
491 if (!capable(CAP_NET_ADMIN
))
497 if (count
> sizeof(data
))
498 count
= sizeof(data
);
500 if (copy_from_user(data
, buf
, count
))
503 data
[count
- 1] = 0; /* Strip trailing '\n' and terminate string */
505 if (!strcmp(data
, "stop"))
506 pktgen_stop_all_threads_ifs(pn
);
508 else if (!strcmp(data
, "start"))
509 pktgen_run_all_threads(pn
);
511 else if (!strcmp(data
, "reset"))
512 pktgen_reset_all_threads(pn
);
520 static int pgctrl_open(struct inode
*inode
, struct file
*file
)
522 return single_open(file
, pgctrl_show
, PDE_DATA(inode
));
525 static const struct file_operations pktgen_fops
= {
526 .owner
= THIS_MODULE
,
530 .write
= pgctrl_write
,
531 .release
= single_release
,
534 static int pktgen_if_show(struct seq_file
*seq
, void *v
)
536 const struct pktgen_dev
*pkt_dev
= seq
->private;
541 "Params: count %llu min_pkt_size: %u max_pkt_size: %u\n",
542 (unsigned long long)pkt_dev
->count
, pkt_dev
->min_pkt_size
,
543 pkt_dev
->max_pkt_size
);
546 " frags: %d delay: %llu clone_skb: %d ifname: %s\n",
547 pkt_dev
->nfrags
, (unsigned long long) pkt_dev
->delay
,
548 pkt_dev
->clone_skb
, pkt_dev
->odevname
);
550 seq_printf(seq
, " flows: %u flowlen: %u\n", pkt_dev
->cflows
,
554 " queue_map_min: %u queue_map_max: %u\n",
555 pkt_dev
->queue_map_min
,
556 pkt_dev
->queue_map_max
);
558 if (pkt_dev
->skb_priority
)
559 seq_printf(seq
, " skb_priority: %u\n",
560 pkt_dev
->skb_priority
);
562 if (pkt_dev
->flags
& F_IPV6
) {
564 " saddr: %pI6c min_saddr: %pI6c max_saddr: %pI6c\n"
565 " daddr: %pI6c min_daddr: %pI6c max_daddr: %pI6c\n",
567 &pkt_dev
->min_in6_saddr
, &pkt_dev
->max_in6_saddr
,
569 &pkt_dev
->min_in6_daddr
, &pkt_dev
->max_in6_daddr
);
572 " dst_min: %s dst_max: %s\n",
573 pkt_dev
->dst_min
, pkt_dev
->dst_max
);
575 " src_min: %s src_max: %s\n",
576 pkt_dev
->src_min
, pkt_dev
->src_max
);
579 seq_puts(seq
, " src_mac: ");
581 seq_printf(seq
, "%pM ",
582 is_zero_ether_addr(pkt_dev
->src_mac
) ?
583 pkt_dev
->odev
->dev_addr
: pkt_dev
->src_mac
);
585 seq_puts(seq
, "dst_mac: ");
586 seq_printf(seq
, "%pM\n", pkt_dev
->dst_mac
);
589 " udp_src_min: %d udp_src_max: %d"
590 " udp_dst_min: %d udp_dst_max: %d\n",
591 pkt_dev
->udp_src_min
, pkt_dev
->udp_src_max
,
592 pkt_dev
->udp_dst_min
, pkt_dev
->udp_dst_max
);
595 " src_mac_count: %d dst_mac_count: %d\n",
596 pkt_dev
->src_mac_count
, pkt_dev
->dst_mac_count
);
598 if (pkt_dev
->nr_labels
) {
600 seq_puts(seq
, " mpls: ");
601 for (i
= 0; i
< pkt_dev
->nr_labels
; i
++)
602 seq_printf(seq
, "%08x%s", ntohl(pkt_dev
->labels
[i
]),
603 i
== pkt_dev
->nr_labels
-1 ? "\n" : ", ");
606 if (pkt_dev
->vlan_id
!= 0xffff)
607 seq_printf(seq
, " vlan_id: %u vlan_p: %u vlan_cfi: %u\n",
608 pkt_dev
->vlan_id
, pkt_dev
->vlan_p
,
611 if (pkt_dev
->svlan_id
!= 0xffff)
612 seq_printf(seq
, " svlan_id: %u vlan_p: %u vlan_cfi: %u\n",
613 pkt_dev
->svlan_id
, pkt_dev
->svlan_p
,
617 seq_printf(seq
, " tos: 0x%02x\n", pkt_dev
->tos
);
619 if (pkt_dev
->traffic_class
)
620 seq_printf(seq
, " traffic_class: 0x%02x\n", pkt_dev
->traffic_class
);
622 if (pkt_dev
->burst
> 1)
623 seq_printf(seq
, " burst: %d\n", pkt_dev
->burst
);
625 if (pkt_dev
->node
>= 0)
626 seq_printf(seq
, " node: %d\n", pkt_dev
->node
);
628 if (pkt_dev
->xmit_mode
== M_NETIF_RECEIVE
)
629 seq_puts(seq
, " xmit_mode: netif_receive\n");
631 seq_puts(seq
, " Flags: ");
633 if (pkt_dev
->flags
& F_IPV6
)
634 seq_puts(seq
, "IPV6 ");
636 if (pkt_dev
->flags
& F_IPSRC_RND
)
637 seq_puts(seq
, "IPSRC_RND ");
639 if (pkt_dev
->flags
& F_IPDST_RND
)
640 seq_puts(seq
, "IPDST_RND ");
642 if (pkt_dev
->flags
& F_TXSIZE_RND
)
643 seq_puts(seq
, "TXSIZE_RND ");
645 if (pkt_dev
->flags
& F_UDPSRC_RND
)
646 seq_puts(seq
, "UDPSRC_RND ");
648 if (pkt_dev
->flags
& F_UDPDST_RND
)
649 seq_puts(seq
, "UDPDST_RND ");
651 if (pkt_dev
->flags
& F_UDPCSUM
)
652 seq_puts(seq
, "UDPCSUM ");
654 if (pkt_dev
->flags
& F_NO_TIMESTAMP
)
655 seq_puts(seq
, "NO_TIMESTAMP ");
657 if (pkt_dev
->flags
& F_MPLS_RND
)
658 seq_puts(seq
, "MPLS_RND ");
660 if (pkt_dev
->flags
& F_QUEUE_MAP_RND
)
661 seq_puts(seq
, "QUEUE_MAP_RND ");
663 if (pkt_dev
->flags
& F_QUEUE_MAP_CPU
)
664 seq_puts(seq
, "QUEUE_MAP_CPU ");
666 if (pkt_dev
->cflows
) {
667 if (pkt_dev
->flags
& F_FLOW_SEQ
)
668 seq_puts(seq
, "FLOW_SEQ "); /*in sequence flows*/
670 seq_puts(seq
, "FLOW_RND ");
674 if (pkt_dev
->flags
& F_IPSEC_ON
) {
675 seq_puts(seq
, "IPSEC ");
677 seq_printf(seq
, "spi:%u", pkt_dev
->spi
);
681 if (pkt_dev
->flags
& F_MACSRC_RND
)
682 seq_puts(seq
, "MACSRC_RND ");
684 if (pkt_dev
->flags
& F_MACDST_RND
)
685 seq_puts(seq
, "MACDST_RND ");
687 if (pkt_dev
->flags
& F_VID_RND
)
688 seq_puts(seq
, "VID_RND ");
690 if (pkt_dev
->flags
& F_SVID_RND
)
691 seq_puts(seq
, "SVID_RND ");
693 if (pkt_dev
->flags
& F_NODE
)
694 seq_puts(seq
, "NODE_ALLOC ");
698 /* not really stopped, more like last-running-at */
699 stopped
= pkt_dev
->running
? ktime_get() : pkt_dev
->stopped_at
;
700 idle
= pkt_dev
->idle_acc
;
701 do_div(idle
, NSEC_PER_USEC
);
704 "Current:\n pkts-sofar: %llu errors: %llu\n",
705 (unsigned long long)pkt_dev
->sofar
,
706 (unsigned long long)pkt_dev
->errors
);
709 " started: %lluus stopped: %lluus idle: %lluus\n",
710 (unsigned long long) ktime_to_us(pkt_dev
->started_at
),
711 (unsigned long long) ktime_to_us(stopped
),
712 (unsigned long long) idle
);
715 " seq_num: %d cur_dst_mac_offset: %d cur_src_mac_offset: %d\n",
716 pkt_dev
->seq_num
, pkt_dev
->cur_dst_mac_offset
,
717 pkt_dev
->cur_src_mac_offset
);
719 if (pkt_dev
->flags
& F_IPV6
) {
720 seq_printf(seq
, " cur_saddr: %pI6c cur_daddr: %pI6c\n",
721 &pkt_dev
->cur_in6_saddr
,
722 &pkt_dev
->cur_in6_daddr
);
724 seq_printf(seq
, " cur_saddr: %pI4 cur_daddr: %pI4\n",
725 &pkt_dev
->cur_saddr
, &pkt_dev
->cur_daddr
);
727 seq_printf(seq
, " cur_udp_dst: %d cur_udp_src: %d\n",
728 pkt_dev
->cur_udp_dst
, pkt_dev
->cur_udp_src
);
730 seq_printf(seq
, " cur_queue_map: %u\n", pkt_dev
->cur_queue_map
);
732 seq_printf(seq
, " flows: %u\n", pkt_dev
->nflows
);
734 if (pkt_dev
->result
[0])
735 seq_printf(seq
, "Result: %s\n", pkt_dev
->result
);
737 seq_puts(seq
, "Result: Idle\n");
743 static int hex32_arg(const char __user
*user_buffer
, unsigned long maxlen
,
749 for (; i
< maxlen
; i
++) {
753 if (get_user(c
, &user_buffer
[i
]))
755 value
= hex_to_bin(c
);
764 static int count_trail_chars(const char __user
* user_buffer
,
769 for (i
= 0; i
< maxlen
; i
++) {
771 if (get_user(c
, &user_buffer
[i
]))
789 static long num_arg(const char __user
*user_buffer
, unsigned long maxlen
,
795 for (i
= 0; i
< maxlen
; i
++) {
797 if (get_user(c
, &user_buffer
[i
]))
799 if ((c
>= '0') && (c
<= '9')) {
808 static int strn_len(const char __user
* user_buffer
, unsigned int maxlen
)
812 for (i
= 0; i
< maxlen
; i
++) {
814 if (get_user(c
, &user_buffer
[i
]))
831 static ssize_t
get_labels(const char __user
*buffer
, struct pktgen_dev
*pkt_dev
)
838 pkt_dev
->nr_labels
= 0;
841 len
= hex32_arg(&buffer
[i
], 8, &tmp
);
844 pkt_dev
->labels
[n
] = htonl(tmp
);
845 if (pkt_dev
->labels
[n
] & MPLS_STACK_BOTTOM
)
846 pkt_dev
->flags
|= F_MPLS_RND
;
848 if (get_user(c
, &buffer
[i
]))
852 if (n
>= MAX_MPLS_LABELS
)
856 pkt_dev
->nr_labels
= n
;
860 static ssize_t
pktgen_if_write(struct file
*file
,
861 const char __user
* user_buffer
, size_t count
,
864 struct seq_file
*seq
= file
->private_data
;
865 struct pktgen_dev
*pkt_dev
= seq
->private;
867 char name
[16], valstr
[32];
868 unsigned long value
= 0;
869 char *pg_result
= NULL
;
873 pg_result
= &(pkt_dev
->result
[0]);
876 pr_warn("wrong command format\n");
881 tmp
= count_trail_chars(user_buffer
, max
);
883 pr_warn("illegal format\n");
888 /* Read variable name */
890 len
= strn_len(&user_buffer
[i
], sizeof(name
) - 1);
894 memset(name
, 0, sizeof(name
));
895 if (copy_from_user(name
, &user_buffer
[i
], len
))
900 len
= count_trail_chars(&user_buffer
[i
], max
);
907 size_t copy
= min_t(size_t, count
, 1023);
909 if (copy_from_user(tb
, user_buffer
, copy
))
912 pr_debug("%s,%lu buffer -:%s:-\n",
913 name
, (unsigned long)count
, tb
);
916 if (!strcmp(name
, "min_pkt_size")) {
917 len
= num_arg(&user_buffer
[i
], 10, &value
);
922 if (value
< 14 + 20 + 8)
924 if (value
!= pkt_dev
->min_pkt_size
) {
925 pkt_dev
->min_pkt_size
= value
;
926 pkt_dev
->cur_pkt_size
= value
;
928 sprintf(pg_result
, "OK: min_pkt_size=%u",
929 pkt_dev
->min_pkt_size
);
933 if (!strcmp(name
, "max_pkt_size")) {
934 len
= num_arg(&user_buffer
[i
], 10, &value
);
939 if (value
< 14 + 20 + 8)
941 if (value
!= pkt_dev
->max_pkt_size
) {
942 pkt_dev
->max_pkt_size
= value
;
943 pkt_dev
->cur_pkt_size
= value
;
945 sprintf(pg_result
, "OK: max_pkt_size=%u",
946 pkt_dev
->max_pkt_size
);
950 /* Shortcut for min = max */
952 if (!strcmp(name
, "pkt_size")) {
953 len
= num_arg(&user_buffer
[i
], 10, &value
);
958 if (value
< 14 + 20 + 8)
960 if (value
!= pkt_dev
->min_pkt_size
) {
961 pkt_dev
->min_pkt_size
= value
;
962 pkt_dev
->max_pkt_size
= value
;
963 pkt_dev
->cur_pkt_size
= value
;
965 sprintf(pg_result
, "OK: pkt_size=%u", pkt_dev
->min_pkt_size
);
969 if (!strcmp(name
, "debug")) {
970 len
= num_arg(&user_buffer
[i
], 10, &value
);
976 sprintf(pg_result
, "OK: debug=%u", debug
);
980 if (!strcmp(name
, "frags")) {
981 len
= num_arg(&user_buffer
[i
], 10, &value
);
986 pkt_dev
->nfrags
= value
;
987 sprintf(pg_result
, "OK: frags=%u", pkt_dev
->nfrags
);
990 if (!strcmp(name
, "delay")) {
991 len
= num_arg(&user_buffer
[i
], 10, &value
);
996 if (value
== 0x7FFFFFFF)
997 pkt_dev
->delay
= ULLONG_MAX
;
999 pkt_dev
->delay
= (u64
)value
;
1001 sprintf(pg_result
, "OK: delay=%llu",
1002 (unsigned long long) pkt_dev
->delay
);
1005 if (!strcmp(name
, "rate")) {
1006 len
= num_arg(&user_buffer
[i
], 10, &value
);
1013 pkt_dev
->delay
= pkt_dev
->min_pkt_size
*8*NSEC_PER_USEC
/value
;
1015 pr_info("Delay set at: %llu ns\n", pkt_dev
->delay
);
1017 sprintf(pg_result
, "OK: rate=%lu", value
);
1020 if (!strcmp(name
, "ratep")) {
1021 len
= num_arg(&user_buffer
[i
], 10, &value
);
1028 pkt_dev
->delay
= NSEC_PER_SEC
/value
;
1030 pr_info("Delay set at: %llu ns\n", pkt_dev
->delay
);
1032 sprintf(pg_result
, "OK: rate=%lu", value
);
1035 if (!strcmp(name
, "udp_src_min")) {
1036 len
= num_arg(&user_buffer
[i
], 10, &value
);
1041 if (value
!= pkt_dev
->udp_src_min
) {
1042 pkt_dev
->udp_src_min
= value
;
1043 pkt_dev
->cur_udp_src
= value
;
1045 sprintf(pg_result
, "OK: udp_src_min=%u", pkt_dev
->udp_src_min
);
1048 if (!strcmp(name
, "udp_dst_min")) {
1049 len
= num_arg(&user_buffer
[i
], 10, &value
);
1054 if (value
!= pkt_dev
->udp_dst_min
) {
1055 pkt_dev
->udp_dst_min
= value
;
1056 pkt_dev
->cur_udp_dst
= value
;
1058 sprintf(pg_result
, "OK: udp_dst_min=%u", pkt_dev
->udp_dst_min
);
1061 if (!strcmp(name
, "udp_src_max")) {
1062 len
= num_arg(&user_buffer
[i
], 10, &value
);
1067 if (value
!= pkt_dev
->udp_src_max
) {
1068 pkt_dev
->udp_src_max
= value
;
1069 pkt_dev
->cur_udp_src
= value
;
1071 sprintf(pg_result
, "OK: udp_src_max=%u", pkt_dev
->udp_src_max
);
1074 if (!strcmp(name
, "udp_dst_max")) {
1075 len
= num_arg(&user_buffer
[i
], 10, &value
);
1080 if (value
!= pkt_dev
->udp_dst_max
) {
1081 pkt_dev
->udp_dst_max
= value
;
1082 pkt_dev
->cur_udp_dst
= value
;
1084 sprintf(pg_result
, "OK: udp_dst_max=%u", pkt_dev
->udp_dst_max
);
1087 if (!strcmp(name
, "clone_skb")) {
1088 len
= num_arg(&user_buffer
[i
], 10, &value
);
1092 ((pkt_dev
->xmit_mode
== M_NETIF_RECEIVE
) ||
1093 !(pkt_dev
->odev
->priv_flags
& IFF_TX_SKB_SHARING
)))
1096 pkt_dev
->clone_skb
= value
;
1098 sprintf(pg_result
, "OK: clone_skb=%d", pkt_dev
->clone_skb
);
1101 if (!strcmp(name
, "count")) {
1102 len
= num_arg(&user_buffer
[i
], 10, &value
);
1107 pkt_dev
->count
= value
;
1108 sprintf(pg_result
, "OK: count=%llu",
1109 (unsigned long long)pkt_dev
->count
);
1112 if (!strcmp(name
, "src_mac_count")) {
1113 len
= num_arg(&user_buffer
[i
], 10, &value
);
1118 if (pkt_dev
->src_mac_count
!= value
) {
1119 pkt_dev
->src_mac_count
= value
;
1120 pkt_dev
->cur_src_mac_offset
= 0;
1122 sprintf(pg_result
, "OK: src_mac_count=%d",
1123 pkt_dev
->src_mac_count
);
1126 if (!strcmp(name
, "dst_mac_count")) {
1127 len
= num_arg(&user_buffer
[i
], 10, &value
);
1132 if (pkt_dev
->dst_mac_count
!= value
) {
1133 pkt_dev
->dst_mac_count
= value
;
1134 pkt_dev
->cur_dst_mac_offset
= 0;
1136 sprintf(pg_result
, "OK: dst_mac_count=%d",
1137 pkt_dev
->dst_mac_count
);
1140 if (!strcmp(name
, "burst")) {
1141 len
= num_arg(&user_buffer
[i
], 10, &value
);
1146 if ((value
> 1) && (pkt_dev
->xmit_mode
== M_START_XMIT
) &&
1147 (!(pkt_dev
->odev
->priv_flags
& IFF_TX_SKB_SHARING
)))
1149 pkt_dev
->burst
= value
< 1 ? 1 : value
;
1150 sprintf(pg_result
, "OK: burst=%d", pkt_dev
->burst
);
1153 if (!strcmp(name
, "node")) {
1154 len
= num_arg(&user_buffer
[i
], 10, &value
);
1160 if (node_possible(value
)) {
1161 pkt_dev
->node
= value
;
1162 sprintf(pg_result
, "OK: node=%d", pkt_dev
->node
);
1163 if (pkt_dev
->page
) {
1164 put_page(pkt_dev
->page
);
1165 pkt_dev
->page
= NULL
;
1169 sprintf(pg_result
, "ERROR: node not possible");
1172 if (!strcmp(name
, "xmit_mode")) {
1176 len
= strn_len(&user_buffer
[i
], sizeof(f
) - 1);
1180 if (copy_from_user(f
, &user_buffer
[i
], len
))
1184 if (strcmp(f
, "start_xmit") == 0) {
1185 pkt_dev
->xmit_mode
= M_START_XMIT
;
1186 } else if (strcmp(f
, "netif_receive") == 0) {
1187 /* clone_skb set earlier, not supported in this mode */
1188 if (pkt_dev
->clone_skb
> 0)
1191 pkt_dev
->xmit_mode
= M_NETIF_RECEIVE
;
1193 /* make sure new packet is allocated every time
1194 * pktgen_xmit() is called
1196 pkt_dev
->last_ok
= 1;
1198 /* override clone_skb if user passed default value
1199 * at module loading time
1201 pkt_dev
->clone_skb
= 0;
1204 "xmit_mode -:%s:- unknown\nAvailable modes: %s",
1205 f
, "start_xmit, netif_receive\n");
1208 sprintf(pg_result
, "OK: xmit_mode=%s", f
);
1211 if (!strcmp(name
, "flag")) {
1214 len
= strn_len(&user_buffer
[i
], sizeof(f
) - 1);
1218 if (copy_from_user(f
, &user_buffer
[i
], len
))
1221 if (strcmp(f
, "IPSRC_RND") == 0)
1222 pkt_dev
->flags
|= F_IPSRC_RND
;
1224 else if (strcmp(f
, "!IPSRC_RND") == 0)
1225 pkt_dev
->flags
&= ~F_IPSRC_RND
;
1227 else if (strcmp(f
, "TXSIZE_RND") == 0)
1228 pkt_dev
->flags
|= F_TXSIZE_RND
;
1230 else if (strcmp(f
, "!TXSIZE_RND") == 0)
1231 pkt_dev
->flags
&= ~F_TXSIZE_RND
;
1233 else if (strcmp(f
, "IPDST_RND") == 0)
1234 pkt_dev
->flags
|= F_IPDST_RND
;
1236 else if (strcmp(f
, "!IPDST_RND") == 0)
1237 pkt_dev
->flags
&= ~F_IPDST_RND
;
1239 else if (strcmp(f
, "UDPSRC_RND") == 0)
1240 pkt_dev
->flags
|= F_UDPSRC_RND
;
1242 else if (strcmp(f
, "!UDPSRC_RND") == 0)
1243 pkt_dev
->flags
&= ~F_UDPSRC_RND
;
1245 else if (strcmp(f
, "UDPDST_RND") == 0)
1246 pkt_dev
->flags
|= F_UDPDST_RND
;
1248 else if (strcmp(f
, "!UDPDST_RND") == 0)
1249 pkt_dev
->flags
&= ~F_UDPDST_RND
;
1251 else if (strcmp(f
, "MACSRC_RND") == 0)
1252 pkt_dev
->flags
|= F_MACSRC_RND
;
1254 else if (strcmp(f
, "!MACSRC_RND") == 0)
1255 pkt_dev
->flags
&= ~F_MACSRC_RND
;
1257 else if (strcmp(f
, "MACDST_RND") == 0)
1258 pkt_dev
->flags
|= F_MACDST_RND
;
1260 else if (strcmp(f
, "!MACDST_RND") == 0)
1261 pkt_dev
->flags
&= ~F_MACDST_RND
;
1263 else if (strcmp(f
, "MPLS_RND") == 0)
1264 pkt_dev
->flags
|= F_MPLS_RND
;
1266 else if (strcmp(f
, "!MPLS_RND") == 0)
1267 pkt_dev
->flags
&= ~F_MPLS_RND
;
1269 else if (strcmp(f
, "VID_RND") == 0)
1270 pkt_dev
->flags
|= F_VID_RND
;
1272 else if (strcmp(f
, "!VID_RND") == 0)
1273 pkt_dev
->flags
&= ~F_VID_RND
;
1275 else if (strcmp(f
, "SVID_RND") == 0)
1276 pkt_dev
->flags
|= F_SVID_RND
;
1278 else if (strcmp(f
, "!SVID_RND") == 0)
1279 pkt_dev
->flags
&= ~F_SVID_RND
;
1281 else if (strcmp(f
, "FLOW_SEQ") == 0)
1282 pkt_dev
->flags
|= F_FLOW_SEQ
;
1284 else if (strcmp(f
, "QUEUE_MAP_RND") == 0)
1285 pkt_dev
->flags
|= F_QUEUE_MAP_RND
;
1287 else if (strcmp(f
, "!QUEUE_MAP_RND") == 0)
1288 pkt_dev
->flags
&= ~F_QUEUE_MAP_RND
;
1290 else if (strcmp(f
, "QUEUE_MAP_CPU") == 0)
1291 pkt_dev
->flags
|= F_QUEUE_MAP_CPU
;
1293 else if (strcmp(f
, "!QUEUE_MAP_CPU") == 0)
1294 pkt_dev
->flags
&= ~F_QUEUE_MAP_CPU
;
1296 else if (strcmp(f
, "IPSEC") == 0)
1297 pkt_dev
->flags
|= F_IPSEC_ON
;
1300 else if (strcmp(f
, "!IPV6") == 0)
1301 pkt_dev
->flags
&= ~F_IPV6
;
1303 else if (strcmp(f
, "NODE_ALLOC") == 0)
1304 pkt_dev
->flags
|= F_NODE
;
1306 else if (strcmp(f
, "!NODE_ALLOC") == 0)
1307 pkt_dev
->flags
&= ~F_NODE
;
1309 else if (strcmp(f
, "UDPCSUM") == 0)
1310 pkt_dev
->flags
|= F_UDPCSUM
;
1312 else if (strcmp(f
, "!UDPCSUM") == 0)
1313 pkt_dev
->flags
&= ~F_UDPCSUM
;
1315 else if (strcmp(f
, "NO_TIMESTAMP") == 0)
1316 pkt_dev
->flags
|= F_NO_TIMESTAMP
;
1318 else if (strcmp(f
, "!NO_TIMESTAMP") == 0)
1319 pkt_dev
->flags
&= ~F_NO_TIMESTAMP
;
1323 "Flag -:%s:- unknown\nAvailable flags, (prepend ! to un-set flag):\n%s",
1325 "IPSRC_RND, IPDST_RND, UDPSRC_RND, UDPDST_RND, "
1326 "MACSRC_RND, MACDST_RND, TXSIZE_RND, IPV6, "
1327 "MPLS_RND, VID_RND, SVID_RND, FLOW_SEQ, "
1328 "QUEUE_MAP_RND, QUEUE_MAP_CPU, UDPCSUM, "
1336 sprintf(pg_result
, "OK: flags=0x%x", pkt_dev
->flags
);
1339 if (!strcmp(name
, "dst_min") || !strcmp(name
, "dst")) {
1340 len
= strn_len(&user_buffer
[i
], sizeof(pkt_dev
->dst_min
) - 1);
1344 if (copy_from_user(buf
, &user_buffer
[i
], len
))
1347 if (strcmp(buf
, pkt_dev
->dst_min
) != 0) {
1348 memset(pkt_dev
->dst_min
, 0, sizeof(pkt_dev
->dst_min
));
1349 strncpy(pkt_dev
->dst_min
, buf
, len
);
1350 pkt_dev
->daddr_min
= in_aton(pkt_dev
->dst_min
);
1351 pkt_dev
->cur_daddr
= pkt_dev
->daddr_min
;
1354 pr_debug("dst_min set to: %s\n", pkt_dev
->dst_min
);
1356 sprintf(pg_result
, "OK: dst_min=%s", pkt_dev
->dst_min
);
1359 if (!strcmp(name
, "dst_max")) {
1360 len
= strn_len(&user_buffer
[i
], sizeof(pkt_dev
->dst_max
) - 1);
1365 if (copy_from_user(buf
, &user_buffer
[i
], len
))
1369 if (strcmp(buf
, pkt_dev
->dst_max
) != 0) {
1370 memset(pkt_dev
->dst_max
, 0, sizeof(pkt_dev
->dst_max
));
1371 strncpy(pkt_dev
->dst_max
, buf
, len
);
1372 pkt_dev
->daddr_max
= in_aton(pkt_dev
->dst_max
);
1373 pkt_dev
->cur_daddr
= pkt_dev
->daddr_max
;
1376 pr_debug("dst_max set to: %s\n", pkt_dev
->dst_max
);
1378 sprintf(pg_result
, "OK: dst_max=%s", pkt_dev
->dst_max
);
1381 if (!strcmp(name
, "dst6")) {
1382 len
= strn_len(&user_buffer
[i
], sizeof(buf
) - 1);
1386 pkt_dev
->flags
|= F_IPV6
;
1388 if (copy_from_user(buf
, &user_buffer
[i
], len
))
1392 in6_pton(buf
, -1, pkt_dev
->in6_daddr
.s6_addr
, -1, NULL
);
1393 snprintf(buf
, sizeof(buf
), "%pI6c", &pkt_dev
->in6_daddr
);
1395 pkt_dev
->cur_in6_daddr
= pkt_dev
->in6_daddr
;
1398 pr_debug("dst6 set to: %s\n", buf
);
1401 sprintf(pg_result
, "OK: dst6=%s", buf
);
1404 if (!strcmp(name
, "dst6_min")) {
1405 len
= strn_len(&user_buffer
[i
], sizeof(buf
) - 1);
1409 pkt_dev
->flags
|= F_IPV6
;
1411 if (copy_from_user(buf
, &user_buffer
[i
], len
))
1415 in6_pton(buf
, -1, pkt_dev
->min_in6_daddr
.s6_addr
, -1, NULL
);
1416 snprintf(buf
, sizeof(buf
), "%pI6c", &pkt_dev
->min_in6_daddr
);
1418 pkt_dev
->cur_in6_daddr
= pkt_dev
->min_in6_daddr
;
1420 pr_debug("dst6_min set to: %s\n", buf
);
1423 sprintf(pg_result
, "OK: dst6_min=%s", buf
);
1426 if (!strcmp(name
, "dst6_max")) {
1427 len
= strn_len(&user_buffer
[i
], sizeof(buf
) - 1);
1431 pkt_dev
->flags
|= F_IPV6
;
1433 if (copy_from_user(buf
, &user_buffer
[i
], len
))
1437 in6_pton(buf
, -1, pkt_dev
->max_in6_daddr
.s6_addr
, -1, NULL
);
1438 snprintf(buf
, sizeof(buf
), "%pI6c", &pkt_dev
->max_in6_daddr
);
1441 pr_debug("dst6_max set to: %s\n", buf
);
1444 sprintf(pg_result
, "OK: dst6_max=%s", buf
);
1447 if (!strcmp(name
, "src6")) {
1448 len
= strn_len(&user_buffer
[i
], sizeof(buf
) - 1);
1452 pkt_dev
->flags
|= F_IPV6
;
1454 if (copy_from_user(buf
, &user_buffer
[i
], len
))
1458 in6_pton(buf
, -1, pkt_dev
->in6_saddr
.s6_addr
, -1, NULL
);
1459 snprintf(buf
, sizeof(buf
), "%pI6c", &pkt_dev
->in6_saddr
);
1461 pkt_dev
->cur_in6_saddr
= pkt_dev
->in6_saddr
;
1464 pr_debug("src6 set to: %s\n", buf
);
1467 sprintf(pg_result
, "OK: src6=%s", buf
);
1470 if (!strcmp(name
, "src_min")) {
1471 len
= strn_len(&user_buffer
[i
], sizeof(pkt_dev
->src_min
) - 1);
1475 if (copy_from_user(buf
, &user_buffer
[i
], len
))
1478 if (strcmp(buf
, pkt_dev
->src_min
) != 0) {
1479 memset(pkt_dev
->src_min
, 0, sizeof(pkt_dev
->src_min
));
1480 strncpy(pkt_dev
->src_min
, buf
, len
);
1481 pkt_dev
->saddr_min
= in_aton(pkt_dev
->src_min
);
1482 pkt_dev
->cur_saddr
= pkt_dev
->saddr_min
;
1485 pr_debug("src_min set to: %s\n", pkt_dev
->src_min
);
1487 sprintf(pg_result
, "OK: src_min=%s", pkt_dev
->src_min
);
1490 if (!strcmp(name
, "src_max")) {
1491 len
= strn_len(&user_buffer
[i
], sizeof(pkt_dev
->src_max
) - 1);
1495 if (copy_from_user(buf
, &user_buffer
[i
], len
))
1498 if (strcmp(buf
, pkt_dev
->src_max
) != 0) {
1499 memset(pkt_dev
->src_max
, 0, sizeof(pkt_dev
->src_max
));
1500 strncpy(pkt_dev
->src_max
, buf
, len
);
1501 pkt_dev
->saddr_max
= in_aton(pkt_dev
->src_max
);
1502 pkt_dev
->cur_saddr
= pkt_dev
->saddr_max
;
1505 pr_debug("src_max set to: %s\n", pkt_dev
->src_max
);
1507 sprintf(pg_result
, "OK: src_max=%s", pkt_dev
->src_max
);
1510 if (!strcmp(name
, "dst_mac")) {
1511 len
= strn_len(&user_buffer
[i
], sizeof(valstr
) - 1);
1515 memset(valstr
, 0, sizeof(valstr
));
1516 if (copy_from_user(valstr
, &user_buffer
[i
], len
))
1519 if (!mac_pton(valstr
, pkt_dev
->dst_mac
))
1521 /* Set up Dest MAC */
1522 ether_addr_copy(&pkt_dev
->hh
[0], pkt_dev
->dst_mac
);
1524 sprintf(pg_result
, "OK: dstmac %pM", pkt_dev
->dst_mac
);
1527 if (!strcmp(name
, "src_mac")) {
1528 len
= strn_len(&user_buffer
[i
], sizeof(valstr
) - 1);
1532 memset(valstr
, 0, sizeof(valstr
));
1533 if (copy_from_user(valstr
, &user_buffer
[i
], len
))
1536 if (!mac_pton(valstr
, pkt_dev
->src_mac
))
1538 /* Set up Src MAC */
1539 ether_addr_copy(&pkt_dev
->hh
[6], pkt_dev
->src_mac
);
1541 sprintf(pg_result
, "OK: srcmac %pM", pkt_dev
->src_mac
);
1545 if (!strcmp(name
, "clear_counters")) {
1546 pktgen_clear_counters(pkt_dev
);
1547 sprintf(pg_result
, "OK: Clearing counters.\n");
1551 if (!strcmp(name
, "flows")) {
1552 len
= num_arg(&user_buffer
[i
], 10, &value
);
1557 if (value
> MAX_CFLOWS
)
1560 pkt_dev
->cflows
= value
;
1561 sprintf(pg_result
, "OK: flows=%u", pkt_dev
->cflows
);
1565 if (!strcmp(name
, "spi")) {
1566 len
= num_arg(&user_buffer
[i
], 10, &value
);
1571 pkt_dev
->spi
= value
;
1572 sprintf(pg_result
, "OK: spi=%u", pkt_dev
->spi
);
1576 if (!strcmp(name
, "flowlen")) {
1577 len
= num_arg(&user_buffer
[i
], 10, &value
);
1582 pkt_dev
->lflow
= value
;
1583 sprintf(pg_result
, "OK: flowlen=%u", pkt_dev
->lflow
);
1587 if (!strcmp(name
, "queue_map_min")) {
1588 len
= num_arg(&user_buffer
[i
], 5, &value
);
1593 pkt_dev
->queue_map_min
= value
;
1594 sprintf(pg_result
, "OK: queue_map_min=%u", pkt_dev
->queue_map_min
);
1598 if (!strcmp(name
, "queue_map_max")) {
1599 len
= num_arg(&user_buffer
[i
], 5, &value
);
1604 pkt_dev
->queue_map_max
= value
;
1605 sprintf(pg_result
, "OK: queue_map_max=%u", pkt_dev
->queue_map_max
);
1609 if (!strcmp(name
, "mpls")) {
1610 unsigned int n
, cnt
;
1612 len
= get_labels(&user_buffer
[i
], pkt_dev
);
1616 cnt
= sprintf(pg_result
, "OK: mpls=");
1617 for (n
= 0; n
< pkt_dev
->nr_labels
; n
++)
1618 cnt
+= sprintf(pg_result
+ cnt
,
1619 "%08x%s", ntohl(pkt_dev
->labels
[n
]),
1620 n
== pkt_dev
->nr_labels
-1 ? "" : ",");
1622 if (pkt_dev
->nr_labels
&& pkt_dev
->vlan_id
!= 0xffff) {
1623 pkt_dev
->vlan_id
= 0xffff; /* turn off VLAN/SVLAN */
1624 pkt_dev
->svlan_id
= 0xffff;
1627 pr_debug("VLAN/SVLAN auto turned off\n");
1632 if (!strcmp(name
, "vlan_id")) {
1633 len
= num_arg(&user_buffer
[i
], 4, &value
);
1638 if (value
<= 4095) {
1639 pkt_dev
->vlan_id
= value
; /* turn on VLAN */
1642 pr_debug("VLAN turned on\n");
1644 if (debug
&& pkt_dev
->nr_labels
)
1645 pr_debug("MPLS auto turned off\n");
1647 pkt_dev
->nr_labels
= 0; /* turn off MPLS */
1648 sprintf(pg_result
, "OK: vlan_id=%u", pkt_dev
->vlan_id
);
1650 pkt_dev
->vlan_id
= 0xffff; /* turn off VLAN/SVLAN */
1651 pkt_dev
->svlan_id
= 0xffff;
1654 pr_debug("VLAN/SVLAN turned off\n");
1659 if (!strcmp(name
, "vlan_p")) {
1660 len
= num_arg(&user_buffer
[i
], 1, &value
);
1665 if ((value
<= 7) && (pkt_dev
->vlan_id
!= 0xffff)) {
1666 pkt_dev
->vlan_p
= value
;
1667 sprintf(pg_result
, "OK: vlan_p=%u", pkt_dev
->vlan_p
);
1669 sprintf(pg_result
, "ERROR: vlan_p must be 0-7");
1674 if (!strcmp(name
, "vlan_cfi")) {
1675 len
= num_arg(&user_buffer
[i
], 1, &value
);
1680 if ((value
<= 1) && (pkt_dev
->vlan_id
!= 0xffff)) {
1681 pkt_dev
->vlan_cfi
= value
;
1682 sprintf(pg_result
, "OK: vlan_cfi=%u", pkt_dev
->vlan_cfi
);
1684 sprintf(pg_result
, "ERROR: vlan_cfi must be 0-1");
1689 if (!strcmp(name
, "svlan_id")) {
1690 len
= num_arg(&user_buffer
[i
], 4, &value
);
1695 if ((value
<= 4095) && ((pkt_dev
->vlan_id
!= 0xffff))) {
1696 pkt_dev
->svlan_id
= value
; /* turn on SVLAN */
1699 pr_debug("SVLAN turned on\n");
1701 if (debug
&& pkt_dev
->nr_labels
)
1702 pr_debug("MPLS auto turned off\n");
1704 pkt_dev
->nr_labels
= 0; /* turn off MPLS */
1705 sprintf(pg_result
, "OK: svlan_id=%u", pkt_dev
->svlan_id
);
1707 pkt_dev
->vlan_id
= 0xffff; /* turn off VLAN/SVLAN */
1708 pkt_dev
->svlan_id
= 0xffff;
1711 pr_debug("VLAN/SVLAN turned off\n");
1716 if (!strcmp(name
, "svlan_p")) {
1717 len
= num_arg(&user_buffer
[i
], 1, &value
);
1722 if ((value
<= 7) && (pkt_dev
->svlan_id
!= 0xffff)) {
1723 pkt_dev
->svlan_p
= value
;
1724 sprintf(pg_result
, "OK: svlan_p=%u", pkt_dev
->svlan_p
);
1726 sprintf(pg_result
, "ERROR: svlan_p must be 0-7");
1731 if (!strcmp(name
, "svlan_cfi")) {
1732 len
= num_arg(&user_buffer
[i
], 1, &value
);
1737 if ((value
<= 1) && (pkt_dev
->svlan_id
!= 0xffff)) {
1738 pkt_dev
->svlan_cfi
= value
;
1739 sprintf(pg_result
, "OK: svlan_cfi=%u", pkt_dev
->svlan_cfi
);
1741 sprintf(pg_result
, "ERROR: svlan_cfi must be 0-1");
1746 if (!strcmp(name
, "tos")) {
1747 __u32 tmp_value
= 0;
1748 len
= hex32_arg(&user_buffer
[i
], 2, &tmp_value
);
1754 pkt_dev
->tos
= tmp_value
;
1755 sprintf(pg_result
, "OK: tos=0x%02x", pkt_dev
->tos
);
1757 sprintf(pg_result
, "ERROR: tos must be 00-ff");
1762 if (!strcmp(name
, "traffic_class")) {
1763 __u32 tmp_value
= 0;
1764 len
= hex32_arg(&user_buffer
[i
], 2, &tmp_value
);
1770 pkt_dev
->traffic_class
= tmp_value
;
1771 sprintf(pg_result
, "OK: traffic_class=0x%02x", pkt_dev
->traffic_class
);
1773 sprintf(pg_result
, "ERROR: traffic_class must be 00-ff");
1778 if (!strcmp(name
, "skb_priority")) {
1779 len
= num_arg(&user_buffer
[i
], 9, &value
);
1784 pkt_dev
->skb_priority
= value
;
1785 sprintf(pg_result
, "OK: skb_priority=%i",
1786 pkt_dev
->skb_priority
);
1790 sprintf(pkt_dev
->result
, "No such parameter \"%s\"", name
);
1794 static int pktgen_if_open(struct inode
*inode
, struct file
*file
)
1796 return single_open(file
, pktgen_if_show
, PDE_DATA(inode
));
1799 static const struct file_operations pktgen_if_fops
= {
1800 .owner
= THIS_MODULE
,
1801 .open
= pktgen_if_open
,
1803 .llseek
= seq_lseek
,
1804 .write
= pktgen_if_write
,
1805 .release
= single_release
,
1808 static int pktgen_thread_show(struct seq_file
*seq
, void *v
)
1810 struct pktgen_thread
*t
= seq
->private;
1811 const struct pktgen_dev
*pkt_dev
;
1815 seq_puts(seq
, "Running: ");
1818 list_for_each_entry_rcu(pkt_dev
, &t
->if_list
, list
)
1819 if (pkt_dev
->running
)
1820 seq_printf(seq
, "%s ", pkt_dev
->odevname
);
1822 seq_puts(seq
, "\nStopped: ");
1824 list_for_each_entry_rcu(pkt_dev
, &t
->if_list
, list
)
1825 if (!pkt_dev
->running
)
1826 seq_printf(seq
, "%s ", pkt_dev
->odevname
);
1829 seq_printf(seq
, "\nResult: %s\n", t
->result
);
1831 seq_puts(seq
, "\nResult: NA\n");
1838 static ssize_t
pktgen_thread_write(struct file
*file
,
1839 const char __user
* user_buffer
,
1840 size_t count
, loff_t
* offset
)
1842 struct seq_file
*seq
= file
->private_data
;
1843 struct pktgen_thread
*t
= seq
->private;
1844 int i
, max
, len
, ret
;
1849 // sprintf(pg_result, "Wrong command format");
1854 len
= count_trail_chars(user_buffer
, max
);
1860 /* Read variable name */
1862 len
= strn_len(&user_buffer
[i
], sizeof(name
) - 1);
1866 memset(name
, 0, sizeof(name
));
1867 if (copy_from_user(name
, &user_buffer
[i
], len
))
1872 len
= count_trail_chars(&user_buffer
[i
], max
);
1879 pr_debug("t=%s, count=%lu\n", name
, (unsigned long)count
);
1882 pr_err("ERROR: No thread\n");
1887 pg_result
= &(t
->result
[0]);
1889 if (!strcmp(name
, "add_device")) {
1892 len
= strn_len(&user_buffer
[i
], sizeof(f
) - 1);
1897 if (copy_from_user(f
, &user_buffer
[i
], len
))
1900 mutex_lock(&pktgen_thread_lock
);
1901 ret
= pktgen_add_device(t
, f
);
1902 mutex_unlock(&pktgen_thread_lock
);
1905 sprintf(pg_result
, "OK: add_device=%s", f
);
1907 sprintf(pg_result
, "ERROR: can not add device %s", f
);
1911 if (!strcmp(name
, "rem_device_all")) {
1912 mutex_lock(&pktgen_thread_lock
);
1913 t
->control
|= T_REMDEVALL
;
1914 mutex_unlock(&pktgen_thread_lock
);
1915 schedule_timeout_interruptible(msecs_to_jiffies(125)); /* Propagate thread->control */
1917 sprintf(pg_result
, "OK: rem_device_all");
1921 if (!strcmp(name
, "max_before_softirq")) {
1922 sprintf(pg_result
, "OK: Note! max_before_softirq is obsoleted -- Do not use");
1932 static int pktgen_thread_open(struct inode
*inode
, struct file
*file
)
1934 return single_open(file
, pktgen_thread_show
, PDE_DATA(inode
));
1937 static const struct file_operations pktgen_thread_fops
= {
1938 .owner
= THIS_MODULE
,
1939 .open
= pktgen_thread_open
,
1941 .llseek
= seq_lseek
,
1942 .write
= pktgen_thread_write
,
1943 .release
= single_release
,
1946 /* Think find or remove for NN */
1947 static struct pktgen_dev
*__pktgen_NN_threads(const struct pktgen_net
*pn
,
1948 const char *ifname
, int remove
)
1950 struct pktgen_thread
*t
;
1951 struct pktgen_dev
*pkt_dev
= NULL
;
1952 bool exact
= (remove
== FIND
);
1954 list_for_each_entry(t
, &pn
->pktgen_threads
, th_list
) {
1955 pkt_dev
= pktgen_find_dev(t
, ifname
, exact
);
1958 pkt_dev
->removal_mark
= 1;
1959 t
->control
|= T_REMDEV
;
1968 * mark a device for removal
1970 static void pktgen_mark_device(const struct pktgen_net
*pn
, const char *ifname
)
1972 struct pktgen_dev
*pkt_dev
= NULL
;
1973 const int max_tries
= 10, msec_per_try
= 125;
1976 mutex_lock(&pktgen_thread_lock
);
1977 pr_debug("%s: marking %s for removal\n", __func__
, ifname
);
1981 pkt_dev
= __pktgen_NN_threads(pn
, ifname
, REMOVE
);
1982 if (pkt_dev
== NULL
)
1983 break; /* success */
1985 mutex_unlock(&pktgen_thread_lock
);
1986 pr_debug("%s: waiting for %s to disappear....\n",
1988 schedule_timeout_interruptible(msecs_to_jiffies(msec_per_try
));
1989 mutex_lock(&pktgen_thread_lock
);
1991 if (++i
>= max_tries
) {
1992 pr_err("%s: timed out after waiting %d msec for device %s to be removed\n",
1993 __func__
, msec_per_try
* i
, ifname
);
1999 mutex_unlock(&pktgen_thread_lock
);
2002 static void pktgen_change_name(const struct pktgen_net
*pn
, struct net_device
*dev
)
2004 struct pktgen_thread
*t
;
2006 list_for_each_entry(t
, &pn
->pktgen_threads
, th_list
) {
2007 struct pktgen_dev
*pkt_dev
;
2010 list_for_each_entry_rcu(pkt_dev
, &t
->if_list
, list
) {
2011 if (pkt_dev
->odev
!= dev
)
2014 proc_remove(pkt_dev
->entry
);
2016 pkt_dev
->entry
= proc_create_data(dev
->name
, 0600,
2020 if (!pkt_dev
->entry
)
2021 pr_err("can't move proc entry for '%s'\n",
2029 static int pktgen_device_event(struct notifier_block
*unused
,
2030 unsigned long event
, void *ptr
)
2032 struct net_device
*dev
= netdev_notifier_info_to_dev(ptr
);
2033 struct pktgen_net
*pn
= net_generic(dev_net(dev
), pg_net_id
);
2035 if (pn
->pktgen_exiting
)
2038 /* It is OK that we do not hold the group lock right now,
2039 * as we run under the RTNL lock.
2043 case NETDEV_CHANGENAME
:
2044 pktgen_change_name(pn
, dev
);
2047 case NETDEV_UNREGISTER
:
2048 pktgen_mark_device(pn
, dev
->name
);
2055 static struct net_device
*pktgen_dev_get_by_name(const struct pktgen_net
*pn
,
2056 struct pktgen_dev
*pkt_dev
,
2062 for (i
= 0; ifname
[i
] != '@'; i
++) {
2070 return dev_get_by_name(pn
->net
, b
);
2074 /* Associate pktgen_dev with a device. */
2076 static int pktgen_setup_dev(const struct pktgen_net
*pn
,
2077 struct pktgen_dev
*pkt_dev
, const char *ifname
)
2079 struct net_device
*odev
;
2082 /* Clean old setups */
2083 if (pkt_dev
->odev
) {
2084 dev_put(pkt_dev
->odev
);
2085 pkt_dev
->odev
= NULL
;
2088 odev
= pktgen_dev_get_by_name(pn
, pkt_dev
, ifname
);
2090 pr_err("no such netdevice: \"%s\"\n", ifname
);
2094 if (odev
->type
!= ARPHRD_ETHER
) {
2095 pr_err("not an ethernet device: \"%s\"\n", ifname
);
2097 } else if (!netif_running(odev
)) {
2098 pr_err("device is down: \"%s\"\n", ifname
);
2101 pkt_dev
->odev
= odev
;
2109 /* Read pkt_dev from the interface and set up internal pktgen_dev
2110 * structure to have the right information to create/send packets
2112 static void pktgen_setup_inject(struct pktgen_dev
*pkt_dev
)
2116 if (!pkt_dev
->odev
) {
2117 pr_err("ERROR: pkt_dev->odev == NULL in setup_inject\n");
2118 sprintf(pkt_dev
->result
,
2119 "ERROR: pkt_dev->odev == NULL in setup_inject.\n");
2123 /* make sure that we don't pick a non-existing transmit queue */
2124 ntxq
= pkt_dev
->odev
->real_num_tx_queues
;
2126 if (ntxq
<= pkt_dev
->queue_map_min
) {
2127 pr_warn("WARNING: Requested queue_map_min (zero-based) (%d) exceeds valid range [0 - %d] for (%d) queues on %s, resetting\n",
2128 pkt_dev
->queue_map_min
, (ntxq
?: 1) - 1, ntxq
,
2130 pkt_dev
->queue_map_min
= (ntxq
?: 1) - 1;
2132 if (pkt_dev
->queue_map_max
>= ntxq
) {
2133 pr_warn("WARNING: Requested queue_map_max (zero-based) (%d) exceeds valid range [0 - %d] for (%d) queues on %s, resetting\n",
2134 pkt_dev
->queue_map_max
, (ntxq
?: 1) - 1, ntxq
,
2136 pkt_dev
->queue_map_max
= (ntxq
?: 1) - 1;
2139 /* Default to the interface's mac if not explicitly set. */
2141 if (is_zero_ether_addr(pkt_dev
->src_mac
))
2142 ether_addr_copy(&(pkt_dev
->hh
[6]), pkt_dev
->odev
->dev_addr
);
2144 /* Set up Dest MAC */
2145 ether_addr_copy(&(pkt_dev
->hh
[0]), pkt_dev
->dst_mac
);
2147 if (pkt_dev
->flags
& F_IPV6
) {
2148 int i
, set
= 0, err
= 1;
2149 struct inet6_dev
*idev
;
2151 if (pkt_dev
->min_pkt_size
== 0) {
2152 pkt_dev
->min_pkt_size
= 14 + sizeof(struct ipv6hdr
)
2153 + sizeof(struct udphdr
)
2154 + sizeof(struct pktgen_hdr
)
2155 + pkt_dev
->pkt_overhead
;
2158 for (i
= 0; i
< IN6_ADDR_HSIZE
; i
++)
2159 if (pkt_dev
->cur_in6_saddr
.s6_addr
[i
]) {
2167 * Use linklevel address if unconfigured.
2169 * use ipv6_get_lladdr if/when it's get exported
2173 idev
= __in6_dev_get(pkt_dev
->odev
);
2175 struct inet6_ifaddr
*ifp
;
2177 read_lock_bh(&idev
->lock
);
2178 list_for_each_entry(ifp
, &idev
->addr_list
, if_list
) {
2179 if ((ifp
->scope
& IFA_LINK
) &&
2180 !(ifp
->flags
& IFA_F_TENTATIVE
)) {
2181 pkt_dev
->cur_in6_saddr
= ifp
->addr
;
2186 read_unlock_bh(&idev
->lock
);
2190 pr_err("ERROR: IPv6 link address not available\n");
2193 if (pkt_dev
->min_pkt_size
== 0) {
2194 pkt_dev
->min_pkt_size
= 14 + sizeof(struct iphdr
)
2195 + sizeof(struct udphdr
)
2196 + sizeof(struct pktgen_hdr
)
2197 + pkt_dev
->pkt_overhead
;
2200 pkt_dev
->saddr_min
= 0;
2201 pkt_dev
->saddr_max
= 0;
2202 if (strlen(pkt_dev
->src_min
) == 0) {
2204 struct in_device
*in_dev
;
2207 in_dev
= __in_dev_get_rcu(pkt_dev
->odev
);
2209 if (in_dev
->ifa_list
) {
2210 pkt_dev
->saddr_min
=
2211 in_dev
->ifa_list
->ifa_address
;
2212 pkt_dev
->saddr_max
= pkt_dev
->saddr_min
;
2217 pkt_dev
->saddr_min
= in_aton(pkt_dev
->src_min
);
2218 pkt_dev
->saddr_max
= in_aton(pkt_dev
->src_max
);
2221 pkt_dev
->daddr_min
= in_aton(pkt_dev
->dst_min
);
2222 pkt_dev
->daddr_max
= in_aton(pkt_dev
->dst_max
);
2224 /* Initialize current values. */
2225 pkt_dev
->cur_pkt_size
= pkt_dev
->min_pkt_size
;
2226 if (pkt_dev
->min_pkt_size
> pkt_dev
->max_pkt_size
)
2227 pkt_dev
->max_pkt_size
= pkt_dev
->min_pkt_size
;
2229 pkt_dev
->cur_dst_mac_offset
= 0;
2230 pkt_dev
->cur_src_mac_offset
= 0;
2231 pkt_dev
->cur_saddr
= pkt_dev
->saddr_min
;
2232 pkt_dev
->cur_daddr
= pkt_dev
->daddr_min
;
2233 pkt_dev
->cur_udp_dst
= pkt_dev
->udp_dst_min
;
2234 pkt_dev
->cur_udp_src
= pkt_dev
->udp_src_min
;
2235 pkt_dev
->nflows
= 0;
2239 static void spin(struct pktgen_dev
*pkt_dev
, ktime_t spin_until
)
2241 ktime_t start_time
, end_time
;
2243 struct hrtimer_sleeper t
;
2245 hrtimer_init_on_stack(&t
.timer
, CLOCK_MONOTONIC
, HRTIMER_MODE_ABS
);
2246 hrtimer_set_expires(&t
.timer
, spin_until
);
2248 remaining
= ktime_to_ns(hrtimer_expires_remaining(&t
.timer
));
2249 if (remaining
<= 0) {
2250 pkt_dev
->next_tx
= ktime_add_ns(spin_until
, pkt_dev
->delay
);
2254 start_time
= ktime_get();
2255 if (remaining
< 100000) {
2256 /* for small delays (<100us), just loop until limit is reached */
2258 end_time
= ktime_get();
2259 } while (ktime_compare(end_time
, spin_until
) < 0);
2261 /* see do_nanosleep */
2262 hrtimer_init_sleeper(&t
, current
);
2264 set_current_state(TASK_INTERRUPTIBLE
);
2265 hrtimer_start_expires(&t
.timer
, HRTIMER_MODE_ABS
);
2270 hrtimer_cancel(&t
.timer
);
2271 } while (t
.task
&& pkt_dev
->running
&& !signal_pending(current
));
2272 __set_current_state(TASK_RUNNING
);
2273 end_time
= ktime_get();
2276 pkt_dev
->idle_acc
+= ktime_to_ns(ktime_sub(end_time
, start_time
));
2277 pkt_dev
->next_tx
= ktime_add_ns(spin_until
, pkt_dev
->delay
);
2280 static inline void set_pkt_overhead(struct pktgen_dev
*pkt_dev
)
2282 pkt_dev
->pkt_overhead
= 0;
2283 pkt_dev
->pkt_overhead
+= pkt_dev
->nr_labels
*sizeof(u32
);
2284 pkt_dev
->pkt_overhead
+= VLAN_TAG_SIZE(pkt_dev
);
2285 pkt_dev
->pkt_overhead
+= SVLAN_TAG_SIZE(pkt_dev
);
2288 static inline int f_seen(const struct pktgen_dev
*pkt_dev
, int flow
)
2290 return !!(pkt_dev
->flows
[flow
].flags
& F_INIT
);
2293 static inline int f_pick(struct pktgen_dev
*pkt_dev
)
2295 int flow
= pkt_dev
->curfl
;
2297 if (pkt_dev
->flags
& F_FLOW_SEQ
) {
2298 if (pkt_dev
->flows
[flow
].count
>= pkt_dev
->lflow
) {
2300 pkt_dev
->flows
[flow
].count
= 0;
2301 pkt_dev
->flows
[flow
].flags
= 0;
2302 pkt_dev
->curfl
+= 1;
2303 if (pkt_dev
->curfl
>= pkt_dev
->cflows
)
2304 pkt_dev
->curfl
= 0; /*reset */
2307 flow
= prandom_u32() % pkt_dev
->cflows
;
2308 pkt_dev
->curfl
= flow
;
2310 if (pkt_dev
->flows
[flow
].count
> pkt_dev
->lflow
) {
2311 pkt_dev
->flows
[flow
].count
= 0;
2312 pkt_dev
->flows
[flow
].flags
= 0;
2316 return pkt_dev
->curfl
;
2321 /* If there was already an IPSEC SA, we keep it as is, else
2322 * we go look for it ...
2324 #define DUMMY_MARK 0
2325 static void get_ipsec_sa(struct pktgen_dev
*pkt_dev
, int flow
)
2327 struct xfrm_state
*x
= pkt_dev
->flows
[flow
].x
;
2328 struct pktgen_net
*pn
= net_generic(dev_net(pkt_dev
->odev
), pg_net_id
);
2332 /* We need as quick as possible to find the right SA
2333 * Searching with minimum criteria to archieve this.
2335 x
= xfrm_state_lookup_byspi(pn
->net
, htonl(pkt_dev
->spi
), AF_INET
);
2337 /* slow path: we dont already have xfrm_state */
2338 x
= xfrm_stateonly_find(pn
->net
, DUMMY_MARK
,
2339 (xfrm_address_t
*)&pkt_dev
->cur_daddr
,
2340 (xfrm_address_t
*)&pkt_dev
->cur_saddr
,
2343 pkt_dev
->ipsproto
, 0);
2346 pkt_dev
->flows
[flow
].x
= x
;
2347 set_pkt_overhead(pkt_dev
);
2348 pkt_dev
->pkt_overhead
+= x
->props
.header_len
;
2354 static void set_cur_queue_map(struct pktgen_dev
*pkt_dev
)
2357 if (pkt_dev
->flags
& F_QUEUE_MAP_CPU
)
2358 pkt_dev
->cur_queue_map
= smp_processor_id();
2360 else if (pkt_dev
->queue_map_min
<= pkt_dev
->queue_map_max
) {
2362 if (pkt_dev
->flags
& F_QUEUE_MAP_RND
) {
2364 (pkt_dev
->queue_map_max
-
2365 pkt_dev
->queue_map_min
+ 1)
2366 + pkt_dev
->queue_map_min
;
2368 t
= pkt_dev
->cur_queue_map
+ 1;
2369 if (t
> pkt_dev
->queue_map_max
)
2370 t
= pkt_dev
->queue_map_min
;
2372 pkt_dev
->cur_queue_map
= t
;
2374 pkt_dev
->cur_queue_map
= pkt_dev
->cur_queue_map
% pkt_dev
->odev
->real_num_tx_queues
;
2377 /* Increment/randomize headers according to flags and current values
2378 * for IP src/dest, UDP src/dst port, MAC-Addr src/dst
2380 static void mod_cur_headers(struct pktgen_dev
*pkt_dev
)
2386 if (pkt_dev
->cflows
)
2387 flow
= f_pick(pkt_dev
);
2389 /* Deal with source MAC */
2390 if (pkt_dev
->src_mac_count
> 1) {
2394 if (pkt_dev
->flags
& F_MACSRC_RND
)
2395 mc
= prandom_u32() % pkt_dev
->src_mac_count
;
2397 mc
= pkt_dev
->cur_src_mac_offset
++;
2398 if (pkt_dev
->cur_src_mac_offset
>=
2399 pkt_dev
->src_mac_count
)
2400 pkt_dev
->cur_src_mac_offset
= 0;
2403 tmp
= pkt_dev
->src_mac
[5] + (mc
& 0xFF);
2404 pkt_dev
->hh
[11] = tmp
;
2405 tmp
= (pkt_dev
->src_mac
[4] + ((mc
>> 8) & 0xFF) + (tmp
>> 8));
2406 pkt_dev
->hh
[10] = tmp
;
2407 tmp
= (pkt_dev
->src_mac
[3] + ((mc
>> 16) & 0xFF) + (tmp
>> 8));
2408 pkt_dev
->hh
[9] = tmp
;
2409 tmp
= (pkt_dev
->src_mac
[2] + ((mc
>> 24) & 0xFF) + (tmp
>> 8));
2410 pkt_dev
->hh
[8] = tmp
;
2411 tmp
= (pkt_dev
->src_mac
[1] + (tmp
>> 8));
2412 pkt_dev
->hh
[7] = tmp
;
2415 /* Deal with Destination MAC */
2416 if (pkt_dev
->dst_mac_count
> 1) {
2420 if (pkt_dev
->flags
& F_MACDST_RND
)
2421 mc
= prandom_u32() % pkt_dev
->dst_mac_count
;
2424 mc
= pkt_dev
->cur_dst_mac_offset
++;
2425 if (pkt_dev
->cur_dst_mac_offset
>=
2426 pkt_dev
->dst_mac_count
) {
2427 pkt_dev
->cur_dst_mac_offset
= 0;
2431 tmp
= pkt_dev
->dst_mac
[5] + (mc
& 0xFF);
2432 pkt_dev
->hh
[5] = tmp
;
2433 tmp
= (pkt_dev
->dst_mac
[4] + ((mc
>> 8) & 0xFF) + (tmp
>> 8));
2434 pkt_dev
->hh
[4] = tmp
;
2435 tmp
= (pkt_dev
->dst_mac
[3] + ((mc
>> 16) & 0xFF) + (tmp
>> 8));
2436 pkt_dev
->hh
[3] = tmp
;
2437 tmp
= (pkt_dev
->dst_mac
[2] + ((mc
>> 24) & 0xFF) + (tmp
>> 8));
2438 pkt_dev
->hh
[2] = tmp
;
2439 tmp
= (pkt_dev
->dst_mac
[1] + (tmp
>> 8));
2440 pkt_dev
->hh
[1] = tmp
;
2443 if (pkt_dev
->flags
& F_MPLS_RND
) {
2445 for (i
= 0; i
< pkt_dev
->nr_labels
; i
++)
2446 if (pkt_dev
->labels
[i
] & MPLS_STACK_BOTTOM
)
2447 pkt_dev
->labels
[i
] = MPLS_STACK_BOTTOM
|
2448 ((__force __be32
)prandom_u32() &
2452 if ((pkt_dev
->flags
& F_VID_RND
) && (pkt_dev
->vlan_id
!= 0xffff)) {
2453 pkt_dev
->vlan_id
= prandom_u32() & (4096 - 1);
2456 if ((pkt_dev
->flags
& F_SVID_RND
) && (pkt_dev
->svlan_id
!= 0xffff)) {
2457 pkt_dev
->svlan_id
= prandom_u32() & (4096 - 1);
2460 if (pkt_dev
->udp_src_min
< pkt_dev
->udp_src_max
) {
2461 if (pkt_dev
->flags
& F_UDPSRC_RND
)
2462 pkt_dev
->cur_udp_src
= prandom_u32() %
2463 (pkt_dev
->udp_src_max
- pkt_dev
->udp_src_min
)
2464 + pkt_dev
->udp_src_min
;
2467 pkt_dev
->cur_udp_src
++;
2468 if (pkt_dev
->cur_udp_src
>= pkt_dev
->udp_src_max
)
2469 pkt_dev
->cur_udp_src
= pkt_dev
->udp_src_min
;
2473 if (pkt_dev
->udp_dst_min
< pkt_dev
->udp_dst_max
) {
2474 if (pkt_dev
->flags
& F_UDPDST_RND
) {
2475 pkt_dev
->cur_udp_dst
= prandom_u32() %
2476 (pkt_dev
->udp_dst_max
- pkt_dev
->udp_dst_min
)
2477 + pkt_dev
->udp_dst_min
;
2479 pkt_dev
->cur_udp_dst
++;
2480 if (pkt_dev
->cur_udp_dst
>= pkt_dev
->udp_dst_max
)
2481 pkt_dev
->cur_udp_dst
= pkt_dev
->udp_dst_min
;
2485 if (!(pkt_dev
->flags
& F_IPV6
)) {
2487 imn
= ntohl(pkt_dev
->saddr_min
);
2488 imx
= ntohl(pkt_dev
->saddr_max
);
2491 if (pkt_dev
->flags
& F_IPSRC_RND
)
2492 t
= prandom_u32() % (imx
- imn
) + imn
;
2494 t
= ntohl(pkt_dev
->cur_saddr
);
2500 pkt_dev
->cur_saddr
= htonl(t
);
2503 if (pkt_dev
->cflows
&& f_seen(pkt_dev
, flow
)) {
2504 pkt_dev
->cur_daddr
= pkt_dev
->flows
[flow
].cur_daddr
;
2506 imn
= ntohl(pkt_dev
->daddr_min
);
2507 imx
= ntohl(pkt_dev
->daddr_max
);
2511 if (pkt_dev
->flags
& F_IPDST_RND
) {
2517 } while (ipv4_is_loopback(s
) ||
2518 ipv4_is_multicast(s
) ||
2519 ipv4_is_lbcast(s
) ||
2520 ipv4_is_zeronet(s
) ||
2521 ipv4_is_local_multicast(s
));
2522 pkt_dev
->cur_daddr
= s
;
2524 t
= ntohl(pkt_dev
->cur_daddr
);
2529 pkt_dev
->cur_daddr
= htonl(t
);
2532 if (pkt_dev
->cflows
) {
2533 pkt_dev
->flows
[flow
].flags
|= F_INIT
;
2534 pkt_dev
->flows
[flow
].cur_daddr
=
2537 if (pkt_dev
->flags
& F_IPSEC_ON
)
2538 get_ipsec_sa(pkt_dev
, flow
);
2543 } else { /* IPV6 * */
2545 if (!ipv6_addr_any(&pkt_dev
->min_in6_daddr
)) {
2548 /* Only random destinations yet */
2550 for (i
= 0; i
< 4; i
++) {
2551 pkt_dev
->cur_in6_daddr
.s6_addr32
[i
] =
2552 (((__force __be32
)prandom_u32() |
2553 pkt_dev
->min_in6_daddr
.s6_addr32
[i
]) &
2554 pkt_dev
->max_in6_daddr
.s6_addr32
[i
]);
2559 if (pkt_dev
->min_pkt_size
< pkt_dev
->max_pkt_size
) {
2561 if (pkt_dev
->flags
& F_TXSIZE_RND
) {
2563 (pkt_dev
->max_pkt_size
- pkt_dev
->min_pkt_size
)
2564 + pkt_dev
->min_pkt_size
;
2566 t
= pkt_dev
->cur_pkt_size
+ 1;
2567 if (t
> pkt_dev
->max_pkt_size
)
2568 t
= pkt_dev
->min_pkt_size
;
2570 pkt_dev
->cur_pkt_size
= t
;
2573 set_cur_queue_map(pkt_dev
);
2575 pkt_dev
->flows
[flow
].count
++;
2580 static u32 pktgen_dst_metrics
[RTAX_MAX
+ 1] = {
2582 [RTAX_HOPLIMIT
] = 0x5, /* Set a static hoplimit */
2585 static int pktgen_output_ipsec(struct sk_buff
*skb
, struct pktgen_dev
*pkt_dev
)
2587 struct xfrm_state
*x
= pkt_dev
->flows
[pkt_dev
->curfl
].x
;
2589 struct net
*net
= dev_net(pkt_dev
->odev
);
2593 /* XXX: we dont support tunnel mode for now until
2594 * we resolve the dst issue */
2595 if ((x
->props
.mode
!= XFRM_MODE_TRANSPORT
) && (pkt_dev
->spi
== 0))
2598 /* But when user specify an valid SPI, transformation
2599 * supports both transport/tunnel mode + ESP/AH type.
2601 if ((x
->props
.mode
== XFRM_MODE_TUNNEL
) && (pkt_dev
->spi
!= 0))
2602 skb
->_skb_refdst
= (unsigned long)&pkt_dev
->dst
| SKB_DST_NOREF
;
2605 err
= x
->outer_mode
->output(x
, skb
);
2606 rcu_read_unlock_bh();
2608 XFRM_INC_STATS(net
, LINUX_MIB_XFRMOUTSTATEMODEERROR
);
2611 err
= x
->type
->output(x
, skb
);
2613 XFRM_INC_STATS(net
, LINUX_MIB_XFRMOUTSTATEPROTOERROR
);
2616 spin_lock_bh(&x
->lock
);
2617 x
->curlft
.bytes
+= skb
->len
;
2618 x
->curlft
.packets
++;
2619 spin_unlock_bh(&x
->lock
);
2624 static void free_SAs(struct pktgen_dev
*pkt_dev
)
2626 if (pkt_dev
->cflows
) {
2627 /* let go of the SAs if we have them */
2629 for (i
= 0; i
< pkt_dev
->cflows
; i
++) {
2630 struct xfrm_state
*x
= pkt_dev
->flows
[i
].x
;
2633 pkt_dev
->flows
[i
].x
= NULL
;
2639 static int process_ipsec(struct pktgen_dev
*pkt_dev
,
2640 struct sk_buff
*skb
, __be16 protocol
)
2642 if (pkt_dev
->flags
& F_IPSEC_ON
) {
2643 struct xfrm_state
*x
= pkt_dev
->flows
[pkt_dev
->curfl
].x
;
2650 nhead
= x
->props
.header_len
- skb_headroom(skb
);
2652 ret
= pskb_expand_head(skb
, nhead
, 0, GFP_ATOMIC
);
2654 pr_err("Error expanding ipsec packet %d\n",
2660 /* ipsec is not expecting ll header */
2661 skb_pull(skb
, ETH_HLEN
);
2662 ret
= pktgen_output_ipsec(skb
, pkt_dev
);
2664 pr_err("Error creating ipsec packet %d\n", ret
);
2668 eth
= (struct ethhdr
*)skb_push(skb
, ETH_HLEN
);
2669 memcpy(eth
, pkt_dev
->hh
, 2 * ETH_ALEN
);
2670 eth
->h_proto
= protocol
;
2672 /* Update IPv4 header len as well as checksum value */
2674 iph
->tot_len
= htons(skb
->len
- ETH_HLEN
);
2685 static void mpls_push(__be32
*mpls
, struct pktgen_dev
*pkt_dev
)
2688 for (i
= 0; i
< pkt_dev
->nr_labels
; i
++)
2689 *mpls
++ = pkt_dev
->labels
[i
] & ~MPLS_STACK_BOTTOM
;
2692 *mpls
|= MPLS_STACK_BOTTOM
;
2695 static inline __be16
build_tci(unsigned int id
, unsigned int cfi
,
2698 return htons(id
| (cfi
<< 12) | (prio
<< 13));
2701 static void pktgen_finalize_skb(struct pktgen_dev
*pkt_dev
, struct sk_buff
*skb
,
2704 struct timeval timestamp
;
2705 struct pktgen_hdr
*pgh
;
2707 pgh
= (struct pktgen_hdr
*)skb_put(skb
, sizeof(*pgh
));
2708 datalen
-= sizeof(*pgh
);
2710 if (pkt_dev
->nfrags
<= 0) {
2711 memset(skb_put(skb
, datalen
), 0, datalen
);
2713 int frags
= pkt_dev
->nfrags
;
2718 if (frags
> MAX_SKB_FRAGS
)
2719 frags
= MAX_SKB_FRAGS
;
2720 len
= datalen
- frags
* PAGE_SIZE
;
2722 memset(skb_put(skb
, len
), 0, len
);
2723 datalen
= frags
* PAGE_SIZE
;
2727 frag_len
= (datalen
/frags
) < PAGE_SIZE
?
2728 (datalen
/frags
) : PAGE_SIZE
;
2729 while (datalen
> 0) {
2730 if (unlikely(!pkt_dev
->page
)) {
2731 int node
= numa_node_id();
2733 if (pkt_dev
->node
>= 0 && (pkt_dev
->flags
& F_NODE
))
2734 node
= pkt_dev
->node
;
2735 pkt_dev
->page
= alloc_pages_node(node
, GFP_KERNEL
| __GFP_ZERO
, 0);
2739 get_page(pkt_dev
->page
);
2740 skb_frag_set_page(skb
, i
, pkt_dev
->page
);
2741 skb_shinfo(skb
)->frags
[i
].page_offset
= 0;
2742 /*last fragment, fill rest of data*/
2743 if (i
== (frags
- 1))
2744 skb_frag_size_set(&skb_shinfo(skb
)->frags
[i
],
2745 (datalen
< PAGE_SIZE
? datalen
: PAGE_SIZE
));
2747 skb_frag_size_set(&skb_shinfo(skb
)->frags
[i
], frag_len
);
2748 datalen
-= skb_frag_size(&skb_shinfo(skb
)->frags
[i
]);
2749 skb
->len
+= skb_frag_size(&skb_shinfo(skb
)->frags
[i
]);
2750 skb
->data_len
+= skb_frag_size(&skb_shinfo(skb
)->frags
[i
]);
2752 skb_shinfo(skb
)->nr_frags
= i
;
2756 /* Stamp the time, and sequence number,
2757 * convert them to network byte order
2759 pgh
->pgh_magic
= htonl(PKTGEN_MAGIC
);
2760 pgh
->seq_num
= htonl(pkt_dev
->seq_num
);
2762 if (pkt_dev
->flags
& F_NO_TIMESTAMP
) {
2766 do_gettimeofday(×tamp
);
2767 pgh
->tv_sec
= htonl(timestamp
.tv_sec
);
2768 pgh
->tv_usec
= htonl(timestamp
.tv_usec
);
2772 static struct sk_buff
*pktgen_alloc_skb(struct net_device
*dev
,
2773 struct pktgen_dev
*pkt_dev
,
2774 unsigned int extralen
)
2776 struct sk_buff
*skb
= NULL
;
2777 unsigned int size
= pkt_dev
->cur_pkt_size
+ 64 + extralen
+
2778 pkt_dev
->pkt_overhead
;
2780 if (pkt_dev
->flags
& F_NODE
) {
2781 int node
= pkt_dev
->node
>= 0 ? pkt_dev
->node
: numa_node_id();
2783 skb
= __alloc_skb(NET_SKB_PAD
+ size
, GFP_NOWAIT
, 0, node
);
2785 skb_reserve(skb
, NET_SKB_PAD
);
2789 skb
= __netdev_alloc_skb(dev
, size
, GFP_NOWAIT
);
2795 static struct sk_buff
*fill_packet_ipv4(struct net_device
*odev
,
2796 struct pktgen_dev
*pkt_dev
)
2798 struct sk_buff
*skb
= NULL
;
2800 struct udphdr
*udph
;
2803 __be16 protocol
= htons(ETH_P_IP
);
2805 __be16
*vlan_tci
= NULL
; /* Encapsulates priority and VLAN ID */
2806 __be16
*vlan_encapsulated_proto
= NULL
; /* packet type ID field (or len) for VLAN tag */
2807 __be16
*svlan_tci
= NULL
; /* Encapsulates priority and SVLAN ID */
2808 __be16
*svlan_encapsulated_proto
= NULL
; /* packet type ID field (or len) for SVLAN tag */
2811 if (pkt_dev
->nr_labels
)
2812 protocol
= htons(ETH_P_MPLS_UC
);
2814 if (pkt_dev
->vlan_id
!= 0xffff)
2815 protocol
= htons(ETH_P_8021Q
);
2817 /* Update any of the values, used when we're incrementing various
2820 mod_cur_headers(pkt_dev
);
2821 queue_map
= pkt_dev
->cur_queue_map
;
2823 datalen
= (odev
->hard_header_len
+ 16) & ~0xf;
2825 skb
= pktgen_alloc_skb(odev
, pkt_dev
, datalen
);
2827 sprintf(pkt_dev
->result
, "No memory");
2831 prefetchw(skb
->data
);
2832 skb_reserve(skb
, datalen
);
2834 /* Reserve for ethernet and IP header */
2835 eth
= (__u8
*) skb_push(skb
, 14);
2836 mpls
= (__be32
*)skb_put(skb
, pkt_dev
->nr_labels
*sizeof(__u32
));
2837 if (pkt_dev
->nr_labels
)
2838 mpls_push(mpls
, pkt_dev
);
2840 if (pkt_dev
->vlan_id
!= 0xffff) {
2841 if (pkt_dev
->svlan_id
!= 0xffff) {
2842 svlan_tci
= (__be16
*)skb_put(skb
, sizeof(__be16
));
2843 *svlan_tci
= build_tci(pkt_dev
->svlan_id
,
2846 svlan_encapsulated_proto
= (__be16
*)skb_put(skb
, sizeof(__be16
));
2847 *svlan_encapsulated_proto
= htons(ETH_P_8021Q
);
2849 vlan_tci
= (__be16
*)skb_put(skb
, sizeof(__be16
));
2850 *vlan_tci
= build_tci(pkt_dev
->vlan_id
,
2853 vlan_encapsulated_proto
= (__be16
*)skb_put(skb
, sizeof(__be16
));
2854 *vlan_encapsulated_proto
= htons(ETH_P_IP
);
2857 skb_set_mac_header(skb
, 0);
2858 skb_set_network_header(skb
, skb
->len
);
2859 iph
= (struct iphdr
*) skb_put(skb
, sizeof(struct iphdr
));
2861 skb_set_transport_header(skb
, skb
->len
);
2862 udph
= (struct udphdr
*) skb_put(skb
, sizeof(struct udphdr
));
2863 skb_set_queue_mapping(skb
, queue_map
);
2864 skb
->priority
= pkt_dev
->skb_priority
;
2866 memcpy(eth
, pkt_dev
->hh
, 12);
2867 *(__be16
*) & eth
[12] = protocol
;
2869 /* Eth + IPh + UDPh + mpls */
2870 datalen
= pkt_dev
->cur_pkt_size
- 14 - 20 - 8 -
2871 pkt_dev
->pkt_overhead
;
2872 if (datalen
< 0 || datalen
< sizeof(struct pktgen_hdr
))
2873 datalen
= sizeof(struct pktgen_hdr
);
2875 udph
->source
= htons(pkt_dev
->cur_udp_src
);
2876 udph
->dest
= htons(pkt_dev
->cur_udp_dst
);
2877 udph
->len
= htons(datalen
+ 8); /* DATA + udphdr */
2883 iph
->tos
= pkt_dev
->tos
;
2884 iph
->protocol
= IPPROTO_UDP
; /* UDP */
2885 iph
->saddr
= pkt_dev
->cur_saddr
;
2886 iph
->daddr
= pkt_dev
->cur_daddr
;
2887 iph
->id
= htons(pkt_dev
->ip_id
);
2890 iplen
= 20 + 8 + datalen
;
2891 iph
->tot_len
= htons(iplen
);
2893 skb
->protocol
= protocol
;
2895 skb
->pkt_type
= PACKET_HOST
;
2897 pktgen_finalize_skb(pkt_dev
, skb
, datalen
);
2899 if (!(pkt_dev
->flags
& F_UDPCSUM
)) {
2900 skb
->ip_summed
= CHECKSUM_NONE
;
2901 } else if (odev
->features
& NETIF_F_V4_CSUM
) {
2902 skb
->ip_summed
= CHECKSUM_PARTIAL
;
2904 udp4_hwcsum(skb
, iph
->saddr
, iph
->daddr
);
2906 __wsum csum
= skb_checksum(skb
, skb_transport_offset(skb
), datalen
+ 8, 0);
2908 /* add protocol-dependent pseudo-header */
2909 udph
->check
= csum_tcpudp_magic(iph
->saddr
, iph
->daddr
,
2910 datalen
+ 8, IPPROTO_UDP
, csum
);
2912 if (udph
->check
== 0)
2913 udph
->check
= CSUM_MANGLED_0
;
2917 if (!process_ipsec(pkt_dev
, skb
, protocol
))
2924 static struct sk_buff
*fill_packet_ipv6(struct net_device
*odev
,
2925 struct pktgen_dev
*pkt_dev
)
2927 struct sk_buff
*skb
= NULL
;
2929 struct udphdr
*udph
;
2930 int datalen
, udplen
;
2931 struct ipv6hdr
*iph
;
2932 __be16 protocol
= htons(ETH_P_IPV6
);
2934 __be16
*vlan_tci
= NULL
; /* Encapsulates priority and VLAN ID */
2935 __be16
*vlan_encapsulated_proto
= NULL
; /* packet type ID field (or len) for VLAN tag */
2936 __be16
*svlan_tci
= NULL
; /* Encapsulates priority and SVLAN ID */
2937 __be16
*svlan_encapsulated_proto
= NULL
; /* packet type ID field (or len) for SVLAN tag */
2940 if (pkt_dev
->nr_labels
)
2941 protocol
= htons(ETH_P_MPLS_UC
);
2943 if (pkt_dev
->vlan_id
!= 0xffff)
2944 protocol
= htons(ETH_P_8021Q
);
2946 /* Update any of the values, used when we're incrementing various
2949 mod_cur_headers(pkt_dev
);
2950 queue_map
= pkt_dev
->cur_queue_map
;
2952 skb
= pktgen_alloc_skb(odev
, pkt_dev
, 16);
2954 sprintf(pkt_dev
->result
, "No memory");
2958 prefetchw(skb
->data
);
2959 skb_reserve(skb
, 16);
2961 /* Reserve for ethernet and IP header */
2962 eth
= (__u8
*) skb_push(skb
, 14);
2963 mpls
= (__be32
*)skb_put(skb
, pkt_dev
->nr_labels
*sizeof(__u32
));
2964 if (pkt_dev
->nr_labels
)
2965 mpls_push(mpls
, pkt_dev
);
2967 if (pkt_dev
->vlan_id
!= 0xffff) {
2968 if (pkt_dev
->svlan_id
!= 0xffff) {
2969 svlan_tci
= (__be16
*)skb_put(skb
, sizeof(__be16
));
2970 *svlan_tci
= build_tci(pkt_dev
->svlan_id
,
2973 svlan_encapsulated_proto
= (__be16
*)skb_put(skb
, sizeof(__be16
));
2974 *svlan_encapsulated_proto
= htons(ETH_P_8021Q
);
2976 vlan_tci
= (__be16
*)skb_put(skb
, sizeof(__be16
));
2977 *vlan_tci
= build_tci(pkt_dev
->vlan_id
,
2980 vlan_encapsulated_proto
= (__be16
*)skb_put(skb
, sizeof(__be16
));
2981 *vlan_encapsulated_proto
= htons(ETH_P_IPV6
);
2984 skb_set_mac_header(skb
, 0);
2985 skb_set_network_header(skb
, skb
->len
);
2986 iph
= (struct ipv6hdr
*) skb_put(skb
, sizeof(struct ipv6hdr
));
2988 skb_set_transport_header(skb
, skb
->len
);
2989 udph
= (struct udphdr
*) skb_put(skb
, sizeof(struct udphdr
));
2990 skb_set_queue_mapping(skb
, queue_map
);
2991 skb
->priority
= pkt_dev
->skb_priority
;
2993 memcpy(eth
, pkt_dev
->hh
, 12);
2994 *(__be16
*) ð
[12] = protocol
;
2996 /* Eth + IPh + UDPh + mpls */
2997 datalen
= pkt_dev
->cur_pkt_size
- 14 -
2998 sizeof(struct ipv6hdr
) - sizeof(struct udphdr
) -
2999 pkt_dev
->pkt_overhead
;
3001 if (datalen
< 0 || datalen
< sizeof(struct pktgen_hdr
)) {
3002 datalen
= sizeof(struct pktgen_hdr
);
3003 net_info_ratelimited("increased datalen to %d\n", datalen
);
3006 udplen
= datalen
+ sizeof(struct udphdr
);
3007 udph
->source
= htons(pkt_dev
->cur_udp_src
);
3008 udph
->dest
= htons(pkt_dev
->cur_udp_dst
);
3009 udph
->len
= htons(udplen
);
3012 *(__be32
*) iph
= htonl(0x60000000); /* Version + flow */
3014 if (pkt_dev
->traffic_class
) {
3015 /* Version + traffic class + flow (0) */
3016 *(__be32
*)iph
|= htonl(0x60000000 | (pkt_dev
->traffic_class
<< 20));
3019 iph
->hop_limit
= 32;
3021 iph
->payload_len
= htons(udplen
);
3022 iph
->nexthdr
= IPPROTO_UDP
;
3024 iph
->daddr
= pkt_dev
->cur_in6_daddr
;
3025 iph
->saddr
= pkt_dev
->cur_in6_saddr
;
3027 skb
->protocol
= protocol
;
3029 skb
->pkt_type
= PACKET_HOST
;
3031 pktgen_finalize_skb(pkt_dev
, skb
, datalen
);
3033 if (!(pkt_dev
->flags
& F_UDPCSUM
)) {
3034 skb
->ip_summed
= CHECKSUM_NONE
;
3035 } else if (odev
->features
& NETIF_F_V6_CSUM
) {
3036 skb
->ip_summed
= CHECKSUM_PARTIAL
;
3037 skb
->csum_start
= skb_transport_header(skb
) - skb
->head
;
3038 skb
->csum_offset
= offsetof(struct udphdr
, check
);
3039 udph
->check
= ~csum_ipv6_magic(&iph
->saddr
, &iph
->daddr
, udplen
, IPPROTO_UDP
, 0);
3041 __wsum csum
= skb_checksum(skb
, skb_transport_offset(skb
), udplen
, 0);
3043 /* add protocol-dependent pseudo-header */
3044 udph
->check
= csum_ipv6_magic(&iph
->saddr
, &iph
->daddr
, udplen
, IPPROTO_UDP
, csum
);
3046 if (udph
->check
== 0)
3047 udph
->check
= CSUM_MANGLED_0
;
3053 static struct sk_buff
*fill_packet(struct net_device
*odev
,
3054 struct pktgen_dev
*pkt_dev
)
3056 if (pkt_dev
->flags
& F_IPV6
)
3057 return fill_packet_ipv6(odev
, pkt_dev
);
3059 return fill_packet_ipv4(odev
, pkt_dev
);
3062 static void pktgen_clear_counters(struct pktgen_dev
*pkt_dev
)
3064 pkt_dev
->seq_num
= 1;
3065 pkt_dev
->idle_acc
= 0;
3067 pkt_dev
->tx_bytes
= 0;
3068 pkt_dev
->errors
= 0;
3071 /* Set up structure for sending pkts, clear counters */
3073 static void pktgen_run(struct pktgen_thread
*t
)
3075 struct pktgen_dev
*pkt_dev
;
3081 list_for_each_entry_rcu(pkt_dev
, &t
->if_list
, list
) {
3084 * setup odev and create initial packet.
3086 pktgen_setup_inject(pkt_dev
);
3088 if (pkt_dev
->odev
) {
3089 pktgen_clear_counters(pkt_dev
);
3090 pkt_dev
->skb
= NULL
;
3091 pkt_dev
->started_at
= pkt_dev
->next_tx
= ktime_get();
3093 set_pkt_overhead(pkt_dev
);
3095 strcpy(pkt_dev
->result
, "Starting");
3096 pkt_dev
->running
= 1; /* Cranke yeself! */
3099 strcpy(pkt_dev
->result
, "Error starting");
3103 t
->control
&= ~(T_STOP
);
3106 static void pktgen_stop_all_threads_ifs(struct pktgen_net
*pn
)
3108 struct pktgen_thread
*t
;
3112 mutex_lock(&pktgen_thread_lock
);
3114 list_for_each_entry(t
, &pn
->pktgen_threads
, th_list
)
3115 t
->control
|= T_STOP
;
3117 mutex_unlock(&pktgen_thread_lock
);
3120 static int thread_is_running(const struct pktgen_thread
*t
)
3122 const struct pktgen_dev
*pkt_dev
;
3125 list_for_each_entry_rcu(pkt_dev
, &t
->if_list
, list
)
3126 if (pkt_dev
->running
) {
3134 static int pktgen_wait_thread_run(struct pktgen_thread
*t
)
3136 while (thread_is_running(t
)) {
3138 msleep_interruptible(100);
3140 if (signal_pending(current
))
3148 static int pktgen_wait_all_threads_run(struct pktgen_net
*pn
)
3150 struct pktgen_thread
*t
;
3153 mutex_lock(&pktgen_thread_lock
);
3155 list_for_each_entry(t
, &pn
->pktgen_threads
, th_list
) {
3156 sig
= pktgen_wait_thread_run(t
);
3162 list_for_each_entry(t
, &pn
->pktgen_threads
, th_list
)
3163 t
->control
|= (T_STOP
);
3165 mutex_unlock(&pktgen_thread_lock
);
3169 static void pktgen_run_all_threads(struct pktgen_net
*pn
)
3171 struct pktgen_thread
*t
;
3175 mutex_lock(&pktgen_thread_lock
);
3177 list_for_each_entry(t
, &pn
->pktgen_threads
, th_list
)
3178 t
->control
|= (T_RUN
);
3180 mutex_unlock(&pktgen_thread_lock
);
3182 /* Propagate thread->control */
3183 schedule_timeout_interruptible(msecs_to_jiffies(125));
3185 pktgen_wait_all_threads_run(pn
);
3188 static void pktgen_reset_all_threads(struct pktgen_net
*pn
)
3190 struct pktgen_thread
*t
;
3194 mutex_lock(&pktgen_thread_lock
);
3196 list_for_each_entry(t
, &pn
->pktgen_threads
, th_list
)
3197 t
->control
|= (T_REMDEVALL
);
3199 mutex_unlock(&pktgen_thread_lock
);
3201 /* Propagate thread->control */
3202 schedule_timeout_interruptible(msecs_to_jiffies(125));
3204 pktgen_wait_all_threads_run(pn
);
3207 static void show_results(struct pktgen_dev
*pkt_dev
, int nr_frags
)
3209 __u64 bps
, mbps
, pps
;
3210 char *p
= pkt_dev
->result
;
3211 ktime_t elapsed
= ktime_sub(pkt_dev
->stopped_at
,
3212 pkt_dev
->started_at
);
3213 ktime_t idle
= ns_to_ktime(pkt_dev
->idle_acc
);
3215 p
+= sprintf(p
, "OK: %llu(c%llu+d%llu) usec, %llu (%dbyte,%dfrags)\n",
3216 (unsigned long long)ktime_to_us(elapsed
),
3217 (unsigned long long)ktime_to_us(ktime_sub(elapsed
, idle
)),
3218 (unsigned long long)ktime_to_us(idle
),
3219 (unsigned long long)pkt_dev
->sofar
,
3220 pkt_dev
->cur_pkt_size
, nr_frags
);
3222 pps
= div64_u64(pkt_dev
->sofar
* NSEC_PER_SEC
,
3223 ktime_to_ns(elapsed
));
3225 bps
= pps
* 8 * pkt_dev
->cur_pkt_size
;
3228 do_div(mbps
, 1000000);
3229 p
+= sprintf(p
, " %llupps %lluMb/sec (%llubps) errors: %llu",
3230 (unsigned long long)pps
,
3231 (unsigned long long)mbps
,
3232 (unsigned long long)bps
,
3233 (unsigned long long)pkt_dev
->errors
);
3236 /* Set stopped-at timer, remove from running list, do counters & statistics */
3237 static int pktgen_stop_device(struct pktgen_dev
*pkt_dev
)
3239 int nr_frags
= pkt_dev
->skb
? skb_shinfo(pkt_dev
->skb
)->nr_frags
: -1;
3241 if (!pkt_dev
->running
) {
3242 pr_warn("interface: %s is already stopped\n",
3247 pkt_dev
->running
= 0;
3248 kfree_skb(pkt_dev
->skb
);
3249 pkt_dev
->skb
= NULL
;
3250 pkt_dev
->stopped_at
= ktime_get();
3252 show_results(pkt_dev
, nr_frags
);
3257 static struct pktgen_dev
*next_to_run(struct pktgen_thread
*t
)
3259 struct pktgen_dev
*pkt_dev
, *best
= NULL
;
3262 list_for_each_entry_rcu(pkt_dev
, &t
->if_list
, list
) {
3263 if (!pkt_dev
->running
)
3267 else if (ktime_compare(pkt_dev
->next_tx
, best
->next_tx
) < 0)
3275 static void pktgen_stop(struct pktgen_thread
*t
)
3277 struct pktgen_dev
*pkt_dev
;
3283 list_for_each_entry_rcu(pkt_dev
, &t
->if_list
, list
) {
3284 pktgen_stop_device(pkt_dev
);
3291 * one of our devices needs to be removed - find it
3294 static void pktgen_rem_one_if(struct pktgen_thread
*t
)
3296 struct list_head
*q
, *n
;
3297 struct pktgen_dev
*cur
;
3301 list_for_each_safe(q
, n
, &t
->if_list
) {
3302 cur
= list_entry(q
, struct pktgen_dev
, list
);
3304 if (!cur
->removal_mark
)
3307 kfree_skb(cur
->skb
);
3310 pktgen_remove_device(t
, cur
);
3316 static void pktgen_rem_all_ifs(struct pktgen_thread
*t
)
3318 struct list_head
*q
, *n
;
3319 struct pktgen_dev
*cur
;
3323 /* Remove all devices, free mem */
3325 list_for_each_safe(q
, n
, &t
->if_list
) {
3326 cur
= list_entry(q
, struct pktgen_dev
, list
);
3328 kfree_skb(cur
->skb
);
3331 pktgen_remove_device(t
, cur
);
3335 static void pktgen_rem_thread(struct pktgen_thread
*t
)
3337 /* Remove from the thread list */
3338 remove_proc_entry(t
->tsk
->comm
, t
->net
->proc_dir
);
3341 static void pktgen_resched(struct pktgen_dev
*pkt_dev
)
3343 ktime_t idle_start
= ktime_get();
3345 pkt_dev
->idle_acc
+= ktime_to_ns(ktime_sub(ktime_get(), idle_start
));
3348 static void pktgen_wait_for_skb(struct pktgen_dev
*pkt_dev
)
3350 ktime_t idle_start
= ktime_get();
3352 while (atomic_read(&(pkt_dev
->skb
->users
)) != 1) {
3353 if (signal_pending(current
))
3357 pktgen_resched(pkt_dev
);
3361 pkt_dev
->idle_acc
+= ktime_to_ns(ktime_sub(ktime_get(), idle_start
));
3364 static void pktgen_xmit(struct pktgen_dev
*pkt_dev
)
3366 unsigned int burst
= ACCESS_ONCE(pkt_dev
->burst
);
3367 struct net_device
*odev
= pkt_dev
->odev
;
3368 struct netdev_queue
*txq
;
3369 struct sk_buff
*skb
;
3372 /* If device is offline, then don't send */
3373 if (unlikely(!netif_running(odev
) || !netif_carrier_ok(odev
))) {
3374 pktgen_stop_device(pkt_dev
);
3378 /* This is max DELAY, this has special meaning of
3381 if (unlikely(pkt_dev
->delay
== ULLONG_MAX
)) {
3382 pkt_dev
->next_tx
= ktime_add_ns(ktime_get(), ULONG_MAX
);
3386 /* If no skb or clone count exhausted then get new one */
3387 if (!pkt_dev
->skb
|| (pkt_dev
->last_ok
&&
3388 ++pkt_dev
->clone_count
>= pkt_dev
->clone_skb
)) {
3389 /* build a new pkt */
3390 kfree_skb(pkt_dev
->skb
);
3392 pkt_dev
->skb
= fill_packet(odev
, pkt_dev
);
3393 if (pkt_dev
->skb
== NULL
) {
3394 pr_err("ERROR: couldn't allocate skb in fill_packet\n");
3396 pkt_dev
->clone_count
--; /* back out increment, OOM */
3399 pkt_dev
->last_pkt_size
= pkt_dev
->skb
->len
;
3400 pkt_dev
->allocated_skbs
++;
3401 pkt_dev
->clone_count
= 0; /* reset counter */
3404 if (pkt_dev
->delay
&& pkt_dev
->last_ok
)
3405 spin(pkt_dev
, pkt_dev
->next_tx
);
3407 if (pkt_dev
->xmit_mode
== M_NETIF_RECEIVE
) {
3409 skb
->protocol
= eth_type_trans(skb
, skb
->dev
);
3410 atomic_add(burst
, &skb
->users
);
3413 ret
= netif_receive_skb(skb
);
3414 if (ret
== NET_RX_DROP
)
3418 if (atomic_read(&skb
->users
) != burst
) {
3419 /* skb was queued by rps/rfs or taps,
3420 * so cannot reuse this skb
3422 atomic_sub(burst
- 1, &skb
->users
);
3423 /* get out of the loop and wait
3424 * until skb is consumed
3428 /* skb was 'freed' by stack, so clean few
3431 #ifdef CONFIG_NET_CLS_ACT
3432 skb
->tc_verd
= 0; /* reset reclass/redir ttl */
3434 } while (--burst
> 0);
3435 goto out
; /* Skips xmit_mode M_START_XMIT */
3438 txq
= skb_get_tx_queue(odev
, pkt_dev
->skb
);
3442 HARD_TX_LOCK(odev
, txq
, smp_processor_id());
3444 if (unlikely(netif_xmit_frozen_or_drv_stopped(txq
))) {
3445 ret
= NETDEV_TX_BUSY
;
3446 pkt_dev
->last_ok
= 0;
3449 atomic_add(burst
, &pkt_dev
->skb
->users
);
3452 ret
= netdev_start_xmit(pkt_dev
->skb
, odev
, txq
, --burst
> 0);
3456 pkt_dev
->last_ok
= 1;
3459 pkt_dev
->tx_bytes
+= pkt_dev
->last_pkt_size
;
3460 if (burst
> 0 && !netif_xmit_frozen_or_drv_stopped(txq
))
3465 case NET_XMIT_POLICED
:
3466 /* skb has been consumed */
3469 default: /* Drivers are not supposed to return other values! */
3470 net_info_ratelimited("%s xmit error: %d\n",
3471 pkt_dev
->odevname
, ret
);
3474 case NETDEV_TX_LOCKED
:
3475 case NETDEV_TX_BUSY
:
3476 /* Retry it next time */
3477 atomic_dec(&(pkt_dev
->skb
->users
));
3478 pkt_dev
->last_ok
= 0;
3480 if (unlikely(burst
))
3481 atomic_sub(burst
, &pkt_dev
->skb
->users
);
3483 HARD_TX_UNLOCK(odev
, txq
);
3488 /* If pkt_dev->count is zero, then run forever */
3489 if ((pkt_dev
->count
!= 0) && (pkt_dev
->sofar
>= pkt_dev
->count
)) {
3490 pktgen_wait_for_skb(pkt_dev
);
3492 /* Done with this */
3493 pktgen_stop_device(pkt_dev
);
3498 * Main loop of the thread goes here
3501 static int pktgen_thread_worker(void *arg
)
3504 struct pktgen_thread
*t
= arg
;
3505 struct pktgen_dev
*pkt_dev
= NULL
;
3508 BUG_ON(smp_processor_id() != cpu
);
3510 init_waitqueue_head(&t
->queue
);
3511 complete(&t
->start_done
);
3513 pr_debug("starting pktgen/%d: pid=%d\n", cpu
, task_pid_nr(current
));
3517 while (!kthread_should_stop()) {
3518 pkt_dev
= next_to_run(t
);
3520 if (unlikely(!pkt_dev
&& t
->control
== 0)) {
3521 if (t
->net
->pktgen_exiting
)
3523 wait_event_interruptible_timeout(t
->queue
,
3530 if (likely(pkt_dev
)) {
3531 pktgen_xmit(pkt_dev
);
3534 pktgen_resched(pkt_dev
);
3539 if (t
->control
& T_STOP
) {
3541 t
->control
&= ~(T_STOP
);
3544 if (t
->control
& T_RUN
) {
3546 t
->control
&= ~(T_RUN
);
3549 if (t
->control
& T_REMDEVALL
) {
3550 pktgen_rem_all_ifs(t
);
3551 t
->control
&= ~(T_REMDEVALL
);
3554 if (t
->control
& T_REMDEV
) {
3555 pktgen_rem_one_if(t
);
3556 t
->control
&= ~(T_REMDEV
);
3562 pr_debug("%s stopping all device\n", t
->tsk
->comm
);
3565 pr_debug("%s removing all device\n", t
->tsk
->comm
);
3566 pktgen_rem_all_ifs(t
);
3568 pr_debug("%s removing thread\n", t
->tsk
->comm
);
3569 pktgen_rem_thread(t
);
3574 static struct pktgen_dev
*pktgen_find_dev(struct pktgen_thread
*t
,
3575 const char *ifname
, bool exact
)
3577 struct pktgen_dev
*p
, *pkt_dev
= NULL
;
3578 size_t len
= strlen(ifname
);
3581 list_for_each_entry_rcu(p
, &t
->if_list
, list
)
3582 if (strncmp(p
->odevname
, ifname
, len
) == 0) {
3583 if (p
->odevname
[len
]) {
3584 if (exact
|| p
->odevname
[len
] != '@')
3592 pr_debug("find_dev(%s) returning %p\n", ifname
, pkt_dev
);
3597 * Adds a dev at front of if_list.
3600 static int add_dev_to_thread(struct pktgen_thread
*t
,
3601 struct pktgen_dev
*pkt_dev
)
3605 /* This function cannot be called concurrently, as its called
3606 * under pktgen_thread_lock mutex, but it can run from
3607 * userspace on another CPU than the kthread. The if_lock()
3608 * is used here to sync with concurrent instances of
3609 * _rem_dev_from_if_list() invoked via kthread, which is also
3610 * updating the if_list */
3613 if (pkt_dev
->pg_thread
) {
3614 pr_err("ERROR: already assigned to a thread\n");
3619 pkt_dev
->running
= 0;
3620 pkt_dev
->pg_thread
= t
;
3621 list_add_rcu(&pkt_dev
->list
, &t
->if_list
);
3628 /* Called under thread lock */
3630 static int pktgen_add_device(struct pktgen_thread
*t
, const char *ifname
)
3632 struct pktgen_dev
*pkt_dev
;
3634 int node
= cpu_to_node(t
->cpu
);
3636 /* We don't allow a device to be on several threads */
3638 pkt_dev
= __pktgen_NN_threads(t
->net
, ifname
, FIND
);
3640 pr_err("ERROR: interface already used\n");
3644 pkt_dev
= kzalloc_node(sizeof(struct pktgen_dev
), GFP_KERNEL
, node
);
3648 strcpy(pkt_dev
->odevname
, ifname
);
3649 pkt_dev
->flows
= vzalloc_node(MAX_CFLOWS
* sizeof(struct flow_state
),
3651 if (pkt_dev
->flows
== NULL
) {
3656 pkt_dev
->removal_mark
= 0;
3657 pkt_dev
->nfrags
= 0;
3658 pkt_dev
->delay
= pg_delay_d
;
3659 pkt_dev
->count
= pg_count_d
;
3661 pkt_dev
->udp_src_min
= 9; /* sink port */
3662 pkt_dev
->udp_src_max
= 9;
3663 pkt_dev
->udp_dst_min
= 9;
3664 pkt_dev
->udp_dst_max
= 9;
3665 pkt_dev
->vlan_p
= 0;
3666 pkt_dev
->vlan_cfi
= 0;
3667 pkt_dev
->vlan_id
= 0xffff;
3668 pkt_dev
->svlan_p
= 0;
3669 pkt_dev
->svlan_cfi
= 0;
3670 pkt_dev
->svlan_id
= 0xffff;
3674 err
= pktgen_setup_dev(t
->net
, pkt_dev
, ifname
);
3677 if (pkt_dev
->odev
->priv_flags
& IFF_TX_SKB_SHARING
)
3678 pkt_dev
->clone_skb
= pg_clone_skb_d
;
3680 pkt_dev
->entry
= proc_create_data(ifname
, 0600, t
->net
->proc_dir
,
3681 &pktgen_if_fops
, pkt_dev
);
3682 if (!pkt_dev
->entry
) {
3683 pr_err("cannot create %s/%s procfs entry\n",
3684 PG_PROC_DIR
, ifname
);
3689 pkt_dev
->ipsmode
= XFRM_MODE_TRANSPORT
;
3690 pkt_dev
->ipsproto
= IPPROTO_ESP
;
3692 /* xfrm tunnel mode needs additional dst to extract outter
3693 * ip header protocol/ttl/id field, here creat a phony one.
3694 * instead of looking for a valid rt, which definitely hurting
3695 * performance under such circumstance.
3697 pkt_dev
->dstops
.family
= AF_INET
;
3698 pkt_dev
->dst
.dev
= pkt_dev
->odev
;
3699 dst_init_metrics(&pkt_dev
->dst
, pktgen_dst_metrics
, false);
3700 pkt_dev
->dst
.child
= &pkt_dev
->dst
;
3701 pkt_dev
->dst
.ops
= &pkt_dev
->dstops
;
3704 return add_dev_to_thread(t
, pkt_dev
);
3706 dev_put(pkt_dev
->odev
);
3711 vfree(pkt_dev
->flows
);
3716 static int __net_init
pktgen_create_thread(int cpu
, struct pktgen_net
*pn
)
3718 struct pktgen_thread
*t
;
3719 struct proc_dir_entry
*pe
;
3720 struct task_struct
*p
;
3722 t
= kzalloc_node(sizeof(struct pktgen_thread
), GFP_KERNEL
,
3725 pr_err("ERROR: out of memory, can't create new thread\n");
3729 spin_lock_init(&t
->if_lock
);
3732 INIT_LIST_HEAD(&t
->if_list
);
3734 list_add_tail(&t
->th_list
, &pn
->pktgen_threads
);
3735 init_completion(&t
->start_done
);
3737 p
= kthread_create_on_node(pktgen_thread_worker
,
3740 "kpktgend_%d", cpu
);
3742 pr_err("kernel_thread() failed for cpu %d\n", t
->cpu
);
3743 list_del(&t
->th_list
);
3747 kthread_bind(p
, cpu
);
3750 pe
= proc_create_data(t
->tsk
->comm
, 0600, pn
->proc_dir
,
3751 &pktgen_thread_fops
, t
);
3753 pr_err("cannot create %s/%s procfs entry\n",
3754 PG_PROC_DIR
, t
->tsk
->comm
);
3756 list_del(&t
->th_list
);
3764 wait_for_completion(&t
->start_done
);
3770 * Removes a device from the thread if_list.
3772 static void _rem_dev_from_if_list(struct pktgen_thread
*t
,
3773 struct pktgen_dev
*pkt_dev
)
3775 struct list_head
*q
, *n
;
3776 struct pktgen_dev
*p
;
3779 list_for_each_safe(q
, n
, &t
->if_list
) {
3780 p
= list_entry(q
, struct pktgen_dev
, list
);
3782 list_del_rcu(&p
->list
);
3787 static int pktgen_remove_device(struct pktgen_thread
*t
,
3788 struct pktgen_dev
*pkt_dev
)
3790 pr_debug("remove_device pkt_dev=%p\n", pkt_dev
);
3792 if (pkt_dev
->running
) {
3793 pr_warn("WARNING: trying to remove a running interface, stopping it now\n");
3794 pktgen_stop_device(pkt_dev
);
3797 /* Dis-associate from the interface */
3799 if (pkt_dev
->odev
) {
3800 dev_put(pkt_dev
->odev
);
3801 pkt_dev
->odev
= NULL
;
3804 /* Remove proc before if_list entry, because add_device uses
3805 * list to determine if interface already exist, avoid race
3806 * with proc_create_data() */
3807 proc_remove(pkt_dev
->entry
);
3809 /* And update the thread if_list */
3810 _rem_dev_from_if_list(t
, pkt_dev
);
3815 vfree(pkt_dev
->flows
);
3817 put_page(pkt_dev
->page
);
3818 kfree_rcu(pkt_dev
, rcu
);
3822 static int __net_init
pg_net_init(struct net
*net
)
3824 struct pktgen_net
*pn
= net_generic(net
, pg_net_id
);
3825 struct proc_dir_entry
*pe
;
3829 INIT_LIST_HEAD(&pn
->pktgen_threads
);
3830 pn
->pktgen_exiting
= false;
3831 pn
->proc_dir
= proc_mkdir(PG_PROC_DIR
, pn
->net
->proc_net
);
3832 if (!pn
->proc_dir
) {
3833 pr_warn("cannot create /proc/net/%s\n", PG_PROC_DIR
);
3836 pe
= proc_create(PGCTRL
, 0600, pn
->proc_dir
, &pktgen_fops
);
3838 pr_err("cannot create %s procfs entry\n", PGCTRL
);
3843 for_each_online_cpu(cpu
) {
3846 err
= pktgen_create_thread(cpu
, pn
);
3848 pr_warn("Cannot create thread for cpu %d (%d)\n",
3852 if (list_empty(&pn
->pktgen_threads
)) {
3853 pr_err("Initialization failed for all threads\n");
3861 remove_proc_entry(PGCTRL
, pn
->proc_dir
);
3863 remove_proc_entry(PG_PROC_DIR
, pn
->net
->proc_net
);
3867 static void __net_exit
pg_net_exit(struct net
*net
)
3869 struct pktgen_net
*pn
= net_generic(net
, pg_net_id
);
3870 struct pktgen_thread
*t
;
3871 struct list_head
*q
, *n
;
3874 /* Stop all interfaces & threads */
3875 pn
->pktgen_exiting
= true;
3877 mutex_lock(&pktgen_thread_lock
);
3878 list_splice_init(&pn
->pktgen_threads
, &list
);
3879 mutex_unlock(&pktgen_thread_lock
);
3881 list_for_each_safe(q
, n
, &list
) {
3882 t
= list_entry(q
, struct pktgen_thread
, th_list
);
3883 list_del(&t
->th_list
);
3884 kthread_stop(t
->tsk
);
3885 put_task_struct(t
->tsk
);
3889 remove_proc_entry(PGCTRL
, pn
->proc_dir
);
3890 remove_proc_entry(PG_PROC_DIR
, pn
->net
->proc_net
);
3893 static struct pernet_operations pg_net_ops
= {
3894 .init
= pg_net_init
,
3895 .exit
= pg_net_exit
,
3897 .size
= sizeof(struct pktgen_net
),
3900 static int __init
pg_init(void)
3904 pr_info("%s", version
);
3905 ret
= register_pernet_subsys(&pg_net_ops
);
3908 ret
= register_netdevice_notifier(&pktgen_notifier_block
);
3910 unregister_pernet_subsys(&pg_net_ops
);
3915 static void __exit
pg_cleanup(void)
3917 unregister_netdevice_notifier(&pktgen_notifier_block
);
3918 unregister_pernet_subsys(&pg_net_ops
);
3919 /* Don't need rcu_barrier() due to use of kfree_rcu() */
3922 module_init(pg_init
);
3923 module_exit(pg_cleanup
);
3925 MODULE_AUTHOR("Robert Olsson <robert.olsson@its.uu.se>");
3926 MODULE_DESCRIPTION("Packet Generator tool");
3927 MODULE_LICENSE("GPL");
3928 MODULE_VERSION(VERSION
);
3929 module_param(pg_count_d
, int, 0);
3930 MODULE_PARM_DESC(pg_count_d
, "Default number of packets to inject");
3931 module_param(pg_delay_d
, int, 0);
3932 MODULE_PARM_DESC(pg_delay_d
, "Default delay between packets (nanoseconds)");
3933 module_param(pg_clone_skb_d
, int, 0);
3934 MODULE_PARM_DESC(pg_clone_skb_d
, "Default number of copies of the same packet");
3935 module_param(debug
, int, 0);
3936 MODULE_PARM_DESC(debug
, "Enable debugging of pktgen module");