blob: 347521ec52c3dfd618a013f34a41084535bdaa36 [file] [log] [blame]
b.liue9582032025-04-17 19:18:16 +08001// SPDX-License-Identifier: GPL-2.0-only
2/*
3 * Copyright (c) 2012 Bjørn Mork <bjorn@mork.no>
4 *
5 * The probing code is heavily inspired by cdc_ether, which is:
6 * Copyright (C) 2003-2005 by David Brownell
7 * Copyright (C) 2006 by Ole Andre Vadla Ravnas (ActiveSync)
8 */
9
10#include <linux/module.h>
11#include <linux/sched/signal.h>
12#include <linux/netdevice.h>
13#include <linux/ethtool.h>
14#include <linux/etherdevice.h>
15#include <linux/if_arp.h>
16#include <linux/mii.h>
17#include <linux/rtnetlink.h>
18#include <linux/usb.h>
19#include <linux/usb/cdc.h>
20#include <linux/usb/usbnet.h>
21#include <linux/usb/cdc-wdm.h>
22#include <linux/u64_stats_sync.h>
23
24/* This driver supports wwan (3G/LTE/?) devices using a vendor
25 * specific management protocol called Qualcomm MSM Interface (QMI) -
26 * in addition to the more common AT commands over serial interface
27 * management
28 *
29 * QMI is wrapped in CDC, using CDC encapsulated commands on the
30 * control ("master") interface of a two-interface CDC Union
31 * resembling standard CDC ECM. The devices do not use the control
32 * interface for any other CDC messages. Most likely because the
33 * management protocol is used in place of the standard CDC
34 * notifications NOTIFY_NETWORK_CONNECTION and NOTIFY_SPEED_CHANGE
35 *
36 * Alternatively, control and data functions can be combined in a
37 * single USB interface.
38 *
39 * Handling a protocol like QMI is out of the scope for any driver.
40 * It is exported as a character device using the cdc-wdm driver as
41 * a subdriver, enabling userspace applications ("modem managers") to
42 * handle it.
43 *
44 * These devices may alternatively/additionally be configured using AT
45 * commands on a serial interface
46 */
47
48/* driver specific data */
49struct qmi_wwan_state {
50 struct usb_driver *subdriver;
51 atomic_t pmcount;
52 unsigned long flags;
53 struct usb_interface *control;
54 struct usb_interface *data;
55};
56
57enum qmi_wwan_flags {
58 QMI_WWAN_FLAG_RAWIP = 1 << 0,
59 QMI_WWAN_FLAG_MUX = 1 << 1,
60};
61
62enum qmi_wwan_quirks {
63 QMI_WWAN_QUIRK_DTR = 1 << 0, /* needs "set DTR" request */
64};
65
66struct qmimux_hdr {
67 u8 pad;
68 u8 mux_id;
69 __be16 pkt_len;
70};
71
72struct qmimux_priv {
73 struct net_device *real_dev;
74 u8 mux_id;
75 struct pcpu_sw_netstats __percpu *stats64;
76};
77
78static int qmimux_open(struct net_device *dev)
79{
80 struct qmimux_priv *priv = netdev_priv(dev);
81 struct net_device *real_dev = priv->real_dev;
82
83 if (!(priv->real_dev->flags & IFF_UP))
84 return -ENETDOWN;
85
86 if (netif_carrier_ok(real_dev))
87 netif_carrier_on(dev);
88 return 0;
89}
90
91static int qmimux_stop(struct net_device *dev)
92{
93 netif_carrier_off(dev);
94 return 0;
95}
96
97static netdev_tx_t qmimux_start_xmit(struct sk_buff *skb, struct net_device *dev)
98{
99 struct qmimux_priv *priv = netdev_priv(dev);
100 unsigned int len = skb->len;
101 struct qmimux_hdr *hdr;
102 netdev_tx_t ret;
103
104 hdr = skb_push(skb, sizeof(struct qmimux_hdr));
105 hdr->pad = 0;
106 hdr->mux_id = priv->mux_id;
107 hdr->pkt_len = cpu_to_be16(len);
108 skb->dev = priv->real_dev;
109 ret = dev_queue_xmit(skb);
110
111 if (likely(ret == NET_XMIT_SUCCESS || ret == NET_XMIT_CN)) {
112 struct pcpu_sw_netstats *stats64 = this_cpu_ptr(priv->stats64);
113
114 u64_stats_update_begin(&stats64->syncp);
115 stats64->tx_packets++;
116 stats64->tx_bytes += len;
117 u64_stats_update_end(&stats64->syncp);
118 } else {
119 dev->stats.tx_dropped++;
120 }
121
122 return ret;
123}
124
125static void qmimux_get_stats64(struct net_device *net,
126 struct rtnl_link_stats64 *stats)
127{
128 struct qmimux_priv *priv = netdev_priv(net);
129 unsigned int start;
130 int cpu;
131
132 netdev_stats_to_stats64(stats, &net->stats);
133
134 for_each_possible_cpu(cpu) {
135 struct pcpu_sw_netstats *stats64;
136 u64 rx_packets, rx_bytes;
137 u64 tx_packets, tx_bytes;
138
139 stats64 = per_cpu_ptr(priv->stats64, cpu);
140
141 do {
142 start = u64_stats_fetch_begin_irq(&stats64->syncp);
143 rx_packets = stats64->rx_packets;
144 rx_bytes = stats64->rx_bytes;
145 tx_packets = stats64->tx_packets;
146 tx_bytes = stats64->tx_bytes;
147 } while (u64_stats_fetch_retry_irq(&stats64->syncp, start));
148
149 stats->rx_packets += rx_packets;
150 stats->rx_bytes += rx_bytes;
151 stats->tx_packets += tx_packets;
152 stats->tx_bytes += tx_bytes;
153 }
154}
155
156static const struct net_device_ops qmimux_netdev_ops = {
157 .ndo_open = qmimux_open,
158 .ndo_stop = qmimux_stop,
159 .ndo_start_xmit = qmimux_start_xmit,
160 .ndo_get_stats64 = qmimux_get_stats64,
161};
162
163static void qmimux_setup(struct net_device *dev)
164{
165 dev->header_ops = NULL; /* No header */
166 dev->type = ARPHRD_NONE;
167 dev->hard_header_len = 0;
168 dev->addr_len = 0;
169 dev->flags = IFF_POINTOPOINT | IFF_NOARP | IFF_MULTICAST;
170 dev->netdev_ops = &qmimux_netdev_ops;
171 dev->mtu = 1500;
172 dev->needs_free_netdev = true;
173}
174
175static struct net_device *qmimux_find_dev(struct usbnet *dev, u8 mux_id)
176{
177 struct qmimux_priv *priv;
178 struct list_head *iter;
179 struct net_device *ldev;
180
181 rcu_read_lock();
182 netdev_for_each_upper_dev_rcu(dev->net, ldev, iter) {
183 priv = netdev_priv(ldev);
184 if (priv->mux_id == mux_id) {
185 rcu_read_unlock();
186 return ldev;
187 }
188 }
189 rcu_read_unlock();
190 return NULL;
191}
192
193static bool qmimux_has_slaves(struct usbnet *dev)
194{
195 return !list_empty(&dev->net->adj_list.upper);
196}
197
198static int qmimux_rx_fixup(struct usbnet *dev, struct sk_buff *skb)
199{
200 unsigned int len, offset = 0, pad_len, pkt_len;
201 struct qmimux_hdr *hdr;
202 struct net_device *net;
203 struct sk_buff *skbn;
204 u8 qmimux_hdr_sz = sizeof(*hdr);
205
206 while (offset + qmimux_hdr_sz < skb->len) {
207 hdr = (struct qmimux_hdr *)(skb->data + offset);
208 len = be16_to_cpu(hdr->pkt_len);
209
210 /* drop the packet, bogus length */
211 if (offset + len + qmimux_hdr_sz > skb->len)
212 return 0;
213
214 /* control packet, we do not know what to do */
215 if (hdr->pad & 0x80)
216 goto skip;
217
218 /* extract padding length and check for valid length info */
219 pad_len = hdr->pad & 0x3f;
220 if (len == 0 || pad_len >= len)
221 goto skip;
222 pkt_len = len - pad_len;
223
224 net = qmimux_find_dev(dev, hdr->mux_id);
225 if (!net)
226 goto skip;
227 skbn = netdev_alloc_skb(net, pkt_len);
228 if (!skbn)
229 return 0;
230 skbn->dev = net;
231
232 switch (skb->data[offset + qmimux_hdr_sz] & 0xf0) {
233 case 0x40:
234 skbn->protocol = htons(ETH_P_IP);
235 break;
236 case 0x60:
237 skbn->protocol = htons(ETH_P_IPV6);
238 break;
239 default:
240 /* not ip - do not know what to do */
241 kfree_skb(skbn);
242 goto skip;
243 }
244
245 skb_put_data(skbn, skb->data + offset + qmimux_hdr_sz, pkt_len);
246 if (netif_rx(skbn) != NET_RX_SUCCESS) {
247 net->stats.rx_errors++;
248 return 0;
249 } else {
250 struct pcpu_sw_netstats *stats64;
251 struct qmimux_priv *priv = netdev_priv(net);
252
253 stats64 = this_cpu_ptr(priv->stats64);
254 u64_stats_update_begin(&stats64->syncp);
255 stats64->rx_packets++;
256 stats64->rx_bytes += pkt_len;
257 u64_stats_update_end(&stats64->syncp);
258 }
259
260skip:
261 offset += len + qmimux_hdr_sz;
262 }
263 return 1;
264}
265
266static int qmimux_register_device(struct net_device *real_dev, u8 mux_id)
267{
268 struct net_device *new_dev;
269 struct qmimux_priv *priv;
270 int err;
271
272 new_dev = alloc_netdev(sizeof(struct qmimux_priv),
273 "qmimux%d", NET_NAME_UNKNOWN, qmimux_setup);
274 if (!new_dev)
275 return -ENOBUFS;
276
277 dev_net_set(new_dev, dev_net(real_dev));
278 priv = netdev_priv(new_dev);
279 priv->mux_id = mux_id;
280 priv->real_dev = real_dev;
281
282 priv->stats64 = netdev_alloc_pcpu_stats(struct pcpu_sw_netstats);
283 if (!priv->stats64) {
284 err = -ENOBUFS;
285 goto out_free_newdev;
286 }
287
288 err = register_netdevice(new_dev);
289 if (err < 0)
290 goto out_free_newdev;
291
292 /* Account for reference in struct qmimux_priv_priv */
293 dev_hold(real_dev);
294
295 err = netdev_upper_dev_link(real_dev, new_dev, NULL);
296 if (err)
297 goto out_unregister_netdev;
298
299 netif_stacked_transfer_operstate(real_dev, new_dev);
300
301 return 0;
302
303out_unregister_netdev:
304 unregister_netdevice(new_dev);
305 dev_put(real_dev);
306
307out_free_newdev:
308 free_netdev(new_dev);
309 return err;
310}
311
312static void qmimux_unregister_device(struct net_device *dev,
313 struct list_head *head)
314{
315 struct qmimux_priv *priv = netdev_priv(dev);
316 struct net_device *real_dev = priv->real_dev;
317
318 free_percpu(priv->stats64);
319 netdev_upper_dev_unlink(real_dev, dev);
320 unregister_netdevice_queue(dev, head);
321
322 /* Get rid of the reference to real_dev */
323 dev_put(real_dev);
324}
325
326static void qmi_wwan_netdev_setup(struct net_device *net)
327{
328 struct usbnet *dev = netdev_priv(net);
329 struct qmi_wwan_state *info = (void *)&dev->data;
330
331 if (info->flags & QMI_WWAN_FLAG_RAWIP) {
332 net->header_ops = NULL; /* No header */
333 net->type = ARPHRD_NONE;
334 net->hard_header_len = 0;
335 net->addr_len = 0;
336 net->flags = IFF_POINTOPOINT | IFF_NOARP | IFF_MULTICAST;
337 set_bit(EVENT_NO_IP_ALIGN, &dev->flags);
338 netdev_dbg(net, "mode: raw IP\n");
339 } else if (!net->header_ops) { /* don't bother if already set */
340 ether_setup(net);
341 /* Restoring min/max mtu values set originally by usbnet */
342 net->min_mtu = 0;
343 net->max_mtu = ETH_MAX_MTU;
344 clear_bit(EVENT_NO_IP_ALIGN, &dev->flags);
345 netdev_dbg(net, "mode: Ethernet\n");
346 }
347
348 /* recalculate buffers after changing hard_header_len */
349 usbnet_change_mtu(net, net->mtu);
350}
351
352static ssize_t raw_ip_show(struct device *d, struct device_attribute *attr, char *buf)
353{
354 struct usbnet *dev = netdev_priv(to_net_dev(d));
355 struct qmi_wwan_state *info = (void *)&dev->data;
356
357 return sprintf(buf, "%c\n", info->flags & QMI_WWAN_FLAG_RAWIP ? 'Y' : 'N');
358}
359
360static ssize_t raw_ip_store(struct device *d, struct device_attribute *attr, const char *buf, size_t len)
361{
362 struct usbnet *dev = netdev_priv(to_net_dev(d));
363 struct qmi_wwan_state *info = (void *)&dev->data;
364 bool enable;
365 int ret;
366
367 if (strtobool(buf, &enable))
368 return -EINVAL;
369
370 /* no change? */
371 if (enable == (info->flags & QMI_WWAN_FLAG_RAWIP))
372 return len;
373
374 if (!rtnl_trylock())
375 return restart_syscall();
376
377 /* we don't want to modify a running netdev */
378 if (netif_running(dev->net)) {
379 netdev_err(dev->net, "Cannot change a running device\n");
380 ret = -EBUSY;
381 goto err;
382 }
383
384 /* let other drivers deny the change */
385 ret = call_netdevice_notifiers(NETDEV_PRE_TYPE_CHANGE, dev->net);
386 ret = notifier_to_errno(ret);
387 if (ret) {
388 netdev_err(dev->net, "Type change was refused\n");
389 goto err;
390 }
391
392 if (enable)
393 info->flags |= QMI_WWAN_FLAG_RAWIP;
394 else
395 info->flags &= ~QMI_WWAN_FLAG_RAWIP;
396 qmi_wwan_netdev_setup(dev->net);
397 call_netdevice_notifiers(NETDEV_POST_TYPE_CHANGE, dev->net);
398 ret = len;
399err:
400 rtnl_unlock();
401 return ret;
402}
403
404static ssize_t add_mux_show(struct device *d, struct device_attribute *attr, char *buf)
405{
406 struct net_device *dev = to_net_dev(d);
407 struct qmimux_priv *priv;
408 struct list_head *iter;
409 struct net_device *ldev;
410 ssize_t count = 0;
411
412 rcu_read_lock();
413 netdev_for_each_upper_dev_rcu(dev, ldev, iter) {
414 priv = netdev_priv(ldev);
415 count += scnprintf(&buf[count], PAGE_SIZE - count,
416 "0x%02x\n", priv->mux_id);
417 }
418 rcu_read_unlock();
419 return count;
420}
421
422static ssize_t add_mux_store(struct device *d, struct device_attribute *attr, const char *buf, size_t len)
423{
424 struct usbnet *dev = netdev_priv(to_net_dev(d));
425 struct qmi_wwan_state *info = (void *)&dev->data;
426 u8 mux_id;
427 int ret;
428
429 if (kstrtou8(buf, 0, &mux_id))
430 return -EINVAL;
431
432 /* mux_id [1 - 254] for compatibility with ip(8) and the rmnet driver */
433 if (mux_id < 1 || mux_id > 254)
434 return -EINVAL;
435
436 if (!rtnl_trylock())
437 return restart_syscall();
438
439 if (qmimux_find_dev(dev, mux_id)) {
440 netdev_err(dev->net, "mux_id already present\n");
441 ret = -EINVAL;
442 goto err;
443 }
444
445 ret = qmimux_register_device(dev->net, mux_id);
446 if (!ret) {
447 info->flags |= QMI_WWAN_FLAG_MUX;
448 ret = len;
449 }
450err:
451 rtnl_unlock();
452 return ret;
453}
454
455static ssize_t del_mux_show(struct device *d, struct device_attribute *attr, char *buf)
456{
457 return add_mux_show(d, attr, buf);
458}
459
460static ssize_t del_mux_store(struct device *d, struct device_attribute *attr, const char *buf, size_t len)
461{
462 struct usbnet *dev = netdev_priv(to_net_dev(d));
463 struct qmi_wwan_state *info = (void *)&dev->data;
464 struct net_device *del_dev;
465 u8 mux_id;
466 int ret = 0;
467
468 if (kstrtou8(buf, 0, &mux_id))
469 return -EINVAL;
470
471 if (!rtnl_trylock())
472 return restart_syscall();
473
474 del_dev = qmimux_find_dev(dev, mux_id);
475 if (!del_dev) {
476 netdev_err(dev->net, "mux_id not present\n");
477 ret = -EINVAL;
478 goto err;
479 }
480 qmimux_unregister_device(del_dev, NULL);
481
482 if (!qmimux_has_slaves(dev))
483 info->flags &= ~QMI_WWAN_FLAG_MUX;
484 ret = len;
485err:
486 rtnl_unlock();
487 return ret;
488}
489
490static DEVICE_ATTR_RW(raw_ip);
491static DEVICE_ATTR_RW(add_mux);
492static DEVICE_ATTR_RW(del_mux);
493
494static struct attribute *qmi_wwan_sysfs_attrs[] = {
495 &dev_attr_raw_ip.attr,
496 &dev_attr_add_mux.attr,
497 &dev_attr_del_mux.attr,
498 NULL,
499};
500
501static struct attribute_group qmi_wwan_sysfs_attr_group = {
502 .name = "qmi",
503 .attrs = qmi_wwan_sysfs_attrs,
504};
505
506/* default ethernet address used by the modem */
507static const u8 default_modem_addr[ETH_ALEN] = {0x02, 0x50, 0xf3};
508
509static const u8 buggy_fw_addr[ETH_ALEN] = {0x00, 0xa0, 0xc6, 0x00, 0x00, 0x00};
510
511/* Make up an ethernet header if the packet doesn't have one.
512 *
513 * A firmware bug common among several devices cause them to send raw
514 * IP packets under some circumstances. There is no way for the
515 * driver/host to know when this will happen. And even when the bug
516 * hits, some packets will still arrive with an intact header.
517 *
518 * The supported devices are only capably of sending IPv4, IPv6 and
519 * ARP packets on a point-to-point link. Any packet with an ethernet
520 * header will have either our address or a broadcast/multicast
521 * address as destination. ARP packets will always have a header.
522 *
523 * This means that this function will reliably add the appropriate
524 * header iff necessary, provided our hardware address does not start
525 * with 4 or 6.
526 *
527 * Another common firmware bug results in all packets being addressed
528 * to 00:a0:c6:00:00:00 despite the host address being different.
529 * This function will also fixup such packets.
530 */
531static int qmi_wwan_rx_fixup(struct usbnet *dev, struct sk_buff *skb)
532{
533 struct qmi_wwan_state *info = (void *)&dev->data;
534 bool rawip = info->flags & QMI_WWAN_FLAG_RAWIP;
535 __be16 proto;
536
537 /* This check is no longer done by usbnet */
538 if (skb->len < dev->net->hard_header_len)
539 return 0;
540
541 if (info->flags & QMI_WWAN_FLAG_MUX)
542 return qmimux_rx_fixup(dev, skb);
543
544 switch (skb->data[0] & 0xf0) {
545 case 0x40:
546 proto = htons(ETH_P_IP);
547 break;
548 case 0x60:
549 proto = htons(ETH_P_IPV6);
550 break;
551 case 0x00:
552 if (rawip)
553 return 0;
554 if (is_multicast_ether_addr(skb->data))
555 return 1;
556 /* possibly bogus destination - rewrite just in case */
557 skb_reset_mac_header(skb);
558 goto fix_dest;
559 default:
560 if (rawip)
561 return 0;
562 /* pass along other packets without modifications */
563 return 1;
564 }
565 if (rawip) {
566 skb_reset_mac_header(skb);
567 skb->dev = dev->net; /* normally set by eth_type_trans */
568 skb->protocol = proto;
569 return 1;
570 }
571
572 if (skb_headroom(skb) < ETH_HLEN)
573 return 0;
574 skb_push(skb, ETH_HLEN);
575 skb_reset_mac_header(skb);
576 eth_hdr(skb)->h_proto = proto;
577 eth_zero_addr(eth_hdr(skb)->h_source);
578fix_dest:
579 memcpy(eth_hdr(skb)->h_dest, dev->net->dev_addr, ETH_ALEN);
580 return 1;
581}
582
583/* very simplistic detection of IPv4 or IPv6 headers */
584static bool possibly_iphdr(const char *data)
585{
586 return (data[0] & 0xd0) == 0x40;
587}
588
589/* disallow addresses which may be confused with IP headers */
590static int qmi_wwan_mac_addr(struct net_device *dev, void *p)
591{
592 int ret;
593 struct sockaddr *addr = p;
594
595 ret = eth_prepare_mac_addr_change(dev, p);
596 if (ret < 0)
597 return ret;
598 if (possibly_iphdr(addr->sa_data))
599 return -EADDRNOTAVAIL;
600 eth_commit_mac_addr_change(dev, p);
601 return 0;
602}
603
604static const struct net_device_ops qmi_wwan_netdev_ops = {
605 .ndo_open = usbnet_open,
606 .ndo_stop = usbnet_stop,
607 .ndo_start_xmit = usbnet_start_xmit,
608 .ndo_tx_timeout = usbnet_tx_timeout,
609 .ndo_change_mtu = usbnet_change_mtu,
610 .ndo_get_stats64 = usbnet_get_stats64,
611 .ndo_set_mac_address = qmi_wwan_mac_addr,
612 .ndo_validate_addr = eth_validate_addr,
613};
614
615/* using a counter to merge subdriver requests with our own into a
616 * combined state
617 */
618static int qmi_wwan_manage_power(struct usbnet *dev, int on)
619{
620 struct qmi_wwan_state *info = (void *)&dev->data;
621 int rv;
622
623 dev_dbg(&dev->intf->dev, "%s() pmcount=%d, on=%d\n", __func__,
624 atomic_read(&info->pmcount), on);
625
626 if ((on && atomic_add_return(1, &info->pmcount) == 1) ||
627 (!on && atomic_dec_and_test(&info->pmcount))) {
628 /* need autopm_get/put here to ensure the usbcore sees
629 * the new value
630 */
631 rv = usb_autopm_get_interface(dev->intf);
632 dev->intf->needs_remote_wakeup = on;
633 if (!rv)
634 usb_autopm_put_interface(dev->intf);
635 }
636 return 0;
637}
638
639static int qmi_wwan_cdc_wdm_manage_power(struct usb_interface *intf, int on)
640{
641 struct usbnet *dev = usb_get_intfdata(intf);
642
643 /* can be called while disconnecting */
644 if (!dev)
645 return 0;
646 return qmi_wwan_manage_power(dev, on);
647}
648
649/* collect all three endpoints and register subdriver */
650static int qmi_wwan_register_subdriver(struct usbnet *dev)
651{
652 int rv;
653 struct usb_driver *subdriver = NULL;
654 struct qmi_wwan_state *info = (void *)&dev->data;
655
656 /* collect bulk endpoints */
657 rv = usbnet_get_endpoints(dev, info->data);
658 if (rv < 0)
659 goto err;
660
661 /* update status endpoint if separate control interface */
662 if (info->control != info->data)
663 dev->status = &info->control->cur_altsetting->endpoint[0];
664
665 /* require interrupt endpoint for subdriver */
666 if (!dev->status) {
667 rv = -EINVAL;
668 goto err;
669 }
670
671 /* for subdriver power management */
672 atomic_set(&info->pmcount, 0);
673
674 /* register subdriver */
675 subdriver = usb_cdc_wdm_register(info->control, &dev->status->desc,
676 4096, &qmi_wwan_cdc_wdm_manage_power);
677 if (IS_ERR(subdriver)) {
678 dev_err(&info->control->dev, "subdriver registration failed\n");
679 rv = PTR_ERR(subdriver);
680 goto err;
681 }
682
683 /* prevent usbnet from using status endpoint */
684 dev->status = NULL;
685
686 /* save subdriver struct for suspend/resume wrappers */
687 info->subdriver = subdriver;
688
689err:
690 return rv;
691}
692
693/* Send CDC SetControlLineState request, setting or clearing the DTR.
694 * "Required for Autoconnect and 9x30 to wake up" according to the
695 * GobiNet driver. The requirement has been verified on an MDM9230
696 * based Sierra Wireless MC7455
697 */
698static int qmi_wwan_change_dtr(struct usbnet *dev, bool on)
699{
700 u8 intf = dev->intf->cur_altsetting->desc.bInterfaceNumber;
701
702 return usbnet_write_cmd(dev, USB_CDC_REQ_SET_CONTROL_LINE_STATE,
703 USB_DIR_OUT | USB_TYPE_CLASS | USB_RECIP_INTERFACE,
704 on ? 0x01 : 0x00, intf, NULL, 0);
705}
706
707static int qmi_wwan_bind(struct usbnet *dev, struct usb_interface *intf)
708{
709 int status = -1;
710 u8 *buf = intf->cur_altsetting->extra;
711 int len = intf->cur_altsetting->extralen;
712 struct usb_interface_descriptor *desc = &intf->cur_altsetting->desc;
713 struct usb_cdc_union_desc *cdc_union;
714 struct usb_cdc_ether_desc *cdc_ether;
715 struct usb_driver *driver = driver_of(intf);
716 struct qmi_wwan_state *info = (void *)&dev->data;
717 struct usb_cdc_parsed_header hdr;
718
719 BUILD_BUG_ON((sizeof(((struct usbnet *)0)->data) <
720 sizeof(struct qmi_wwan_state)));
721
722 /* set up initial state */
723 info->control = intf;
724 info->data = intf;
725
726 /* and a number of CDC descriptors */
727 cdc_parse_cdc_header(&hdr, intf, buf, len);
728 cdc_union = hdr.usb_cdc_union_desc;
729 cdc_ether = hdr.usb_cdc_ether_desc;
730
731 /* Use separate control and data interfaces if we found a CDC Union */
732 if (cdc_union) {
733 info->data = usb_ifnum_to_if(dev->udev,
734 cdc_union->bSlaveInterface0);
735 if (desc->bInterfaceNumber != cdc_union->bMasterInterface0 ||
736 !info->data) {
737 dev_err(&intf->dev,
738 "bogus CDC Union: master=%u, slave=%u\n",
739 cdc_union->bMasterInterface0,
740 cdc_union->bSlaveInterface0);
741
742 /* ignore and continue... */
743 cdc_union = NULL;
744 info->data = intf;
745 }
746 }
747
748 /* errors aren't fatal - we can live with the dynamic address */
749 if (cdc_ether && cdc_ether->wMaxSegmentSize) {
750 dev->hard_mtu = le16_to_cpu(cdc_ether->wMaxSegmentSize);
751 usbnet_get_ethernet_addr(dev, cdc_ether->iMACAddress);
752 }
753
754 /* claim data interface and set it up */
755 if (info->control != info->data) {
756 status = usb_driver_claim_interface(driver, info->data, dev);
757 if (status < 0)
758 goto err;
759 }
760
761 status = qmi_wwan_register_subdriver(dev);
762 if (status < 0 && info->control != info->data) {
763 usb_set_intfdata(info->data, NULL);
764 usb_driver_release_interface(driver, info->data);
765 }
766
767 /* disabling remote wakeup on MDM9x30 devices has the same
768 * effect as clearing DTR. The device will not respond to QMI
769 * requests until we set DTR again. This is similar to a
770 * QMI_CTL SYNC request, clearing a lot of firmware state
771 * including the client ID allocations.
772 *
773 * Our usage model allows a session to span multiple
774 * open/close events, so we must prevent the firmware from
775 * clearing out state the clients might need.
776 *
777 * MDM9x30 is the first QMI chipset with USB3 support. Abuse
778 * this fact to enable the quirk for all USB3 devices.
779 *
780 * There are also chipsets with the same "set DTR" requirement
781 * but without USB3 support. Devices based on these chips
782 * need a quirk flag in the device ID table.
783 */
784 if (dev->driver_info->data & QMI_WWAN_QUIRK_DTR ||
785 le16_to_cpu(dev->udev->descriptor.bcdUSB) >= 0x0201) {
786 qmi_wwan_manage_power(dev, 1);
787 qmi_wwan_change_dtr(dev, true);
788 }
789
790 /* Never use the same address on both ends of the link, even if the
791 * buggy firmware told us to. Or, if device is assigned the well-known
792 * buggy firmware MAC address, replace it with a random address,
793 */
794 if (ether_addr_equal(dev->net->dev_addr, default_modem_addr) ||
795 ether_addr_equal(dev->net->dev_addr, buggy_fw_addr))
796 eth_hw_addr_random(dev->net);
797
798 /* make MAC addr easily distinguishable from an IP header */
799 if (possibly_iphdr(dev->net->dev_addr)) {
800 dev->net->dev_addr[0] |= 0x02; /* set local assignment bit */
801 dev->net->dev_addr[0] &= 0xbf; /* clear "IP" bit */
802 }
803 dev->net->netdev_ops = &qmi_wwan_netdev_ops;
804 dev->net->sysfs_groups[0] = &qmi_wwan_sysfs_attr_group;
805err:
806 return status;
807}
808
809static void qmi_wwan_unbind(struct usbnet *dev, struct usb_interface *intf)
810{
811 struct qmi_wwan_state *info = (void *)&dev->data;
812 struct usb_driver *driver = driver_of(intf);
813 struct usb_interface *other;
814
815 if (info->subdriver && info->subdriver->disconnect)
816 info->subdriver->disconnect(info->control);
817
818 /* disable MDM9x30 quirk */
819 if (le16_to_cpu(dev->udev->descriptor.bcdUSB) >= 0x0201) {
820 qmi_wwan_change_dtr(dev, false);
821 qmi_wwan_manage_power(dev, 0);
822 }
823
824 /* allow user to unbind using either control or data */
825 if (intf == info->control)
826 other = info->data;
827 else
828 other = info->control;
829
830 /* only if not shared */
831 if (other && intf != other) {
832 usb_set_intfdata(other, NULL);
833 usb_driver_release_interface(driver, other);
834 }
835
836 info->subdriver = NULL;
837 info->data = NULL;
838 info->control = NULL;
839}
840
841/* suspend/resume wrappers calling both usbnet and the cdc-wdm
842 * subdriver if present.
843 *
844 * NOTE: cdc-wdm also supports pre/post_reset, but we cannot provide
845 * wrappers for those without adding usbnet reset support first.
846 */
847static int qmi_wwan_suspend(struct usb_interface *intf, pm_message_t message)
848{
849 struct usbnet *dev = usb_get_intfdata(intf);
850 struct qmi_wwan_state *info = (void *)&dev->data;
851 int ret;
852
853 /* Both usbnet_suspend() and subdriver->suspend() MUST return 0
854 * in system sleep context, otherwise, the resume callback has
855 * to recover device from previous suspend failure.
856 */
857 ret = usbnet_suspend(intf, message);
858 if (ret < 0)
859 goto err;
860
861 if (intf == info->control && info->subdriver &&
862 info->subdriver->suspend)
863 ret = info->subdriver->suspend(intf, message);
864 if (ret < 0)
865 usbnet_resume(intf);
866err:
867 return ret;
868}
869
870static int qmi_wwan_resume(struct usb_interface *intf)
871{
872 struct usbnet *dev = usb_get_intfdata(intf);
873 struct qmi_wwan_state *info = (void *)&dev->data;
874 int ret = 0;
875 bool callsub = (intf == info->control && info->subdriver &&
876 info->subdriver->resume);
877
878 if (callsub)
879 ret = info->subdriver->resume(intf);
880 if (ret < 0)
881 goto err;
882 ret = usbnet_resume(intf);
883 if (ret < 0 && callsub)
884 info->subdriver->suspend(intf, PMSG_SUSPEND);
885err:
886 return ret;
887}
888
889static const struct driver_info qmi_wwan_info = {
890 .description = "WWAN/QMI device",
891 .flags = FLAG_WWAN | FLAG_SEND_ZLP,
892 .bind = qmi_wwan_bind,
893 .unbind = qmi_wwan_unbind,
894 .manage_power = qmi_wwan_manage_power,
895 .rx_fixup = qmi_wwan_rx_fixup,
896};
897
898static const struct driver_info qmi_wwan_info_quirk_dtr = {
899 .description = "WWAN/QMI device",
900 .flags = FLAG_WWAN | FLAG_SEND_ZLP,
901 .bind = qmi_wwan_bind,
902 .unbind = qmi_wwan_unbind,
903 .manage_power = qmi_wwan_manage_power,
904 .rx_fixup = qmi_wwan_rx_fixup,
905 .data = QMI_WWAN_QUIRK_DTR,
906};
907
908#define HUAWEI_VENDOR_ID 0x12D1
909
910/* map QMI/wwan function by a fixed interface number */
911#define QMI_FIXED_INTF(vend, prod, num) \
912 USB_DEVICE_INTERFACE_NUMBER(vend, prod, num), \
913 .driver_info = (unsigned long)&qmi_wwan_info
914
915/* devices requiring "set DTR" quirk */
916#define QMI_QUIRK_SET_DTR(vend, prod, num) \
917 USB_DEVICE_INTERFACE_NUMBER(vend, prod, num), \
918 .driver_info = (unsigned long)&qmi_wwan_info_quirk_dtr
919
920/* Gobi 1000 QMI/wwan interface number is 3 according to qcserial */
921#define QMI_GOBI1K_DEVICE(vend, prod) \
922 QMI_FIXED_INTF(vend, prod, 3)
923
924/* Gobi 2000/3000 QMI/wwan interface number is 0 according to qcserial */
925#define QMI_GOBI_DEVICE(vend, prod) \
926 QMI_FIXED_INTF(vend, prod, 0)
927
928/* Many devices have QMI and DIAG functions which are distinguishable
929 * from other vendor specific functions by class, subclass and
930 * protocol all being 0xff. The DIAG function has exactly 2 endpoints
931 * and is silently rejected when probed.
932 *
933 * This makes it possible to match dynamically numbered QMI functions
934 * as seen on e.g. many Quectel modems.
935 */
936#define QMI_MATCH_FF_FF_FF(vend, prod) \
937 USB_DEVICE_AND_INTERFACE_INFO(vend, prod, USB_CLASS_VENDOR_SPEC, \
938 USB_SUBCLASS_VENDOR_SPEC, 0xff), \
939 .driver_info = (unsigned long)&qmi_wwan_info_quirk_dtr
940
941static const struct usb_device_id products[] = {
942 /* 1. CDC ECM like devices match on the control interface */
943 { /* Huawei E392, E398 and possibly others sharing both device id and more... */
944 USB_VENDOR_AND_INTERFACE_INFO(HUAWEI_VENDOR_ID, USB_CLASS_VENDOR_SPEC, 1, 9),
945 .driver_info = (unsigned long)&qmi_wwan_info,
946 },
947 { /* Vodafone/Huawei K5005 (12d1:14c8) and similar modems */
948 USB_VENDOR_AND_INTERFACE_INFO(HUAWEI_VENDOR_ID, USB_CLASS_VENDOR_SPEC, 1, 57),
949 .driver_info = (unsigned long)&qmi_wwan_info,
950 },
951 { /* HUAWEI_INTERFACE_NDIS_CONTROL_QUALCOMM */
952 USB_VENDOR_AND_INTERFACE_INFO(HUAWEI_VENDOR_ID, USB_CLASS_VENDOR_SPEC, 0x01, 0x69),
953 .driver_info = (unsigned long)&qmi_wwan_info,
954 },
955 { /* Motorola Mapphone devices with MDM6600 */
956 USB_VENDOR_AND_INTERFACE_INFO(0x22b8, USB_CLASS_VENDOR_SPEC, 0xfb, 0xff),
957 .driver_info = (unsigned long)&qmi_wwan_info,
958 },
959
960 /* 2. Combined interface devices matching on class+protocol */
961 { /* Huawei E367 and possibly others in "Windows mode" */
962 USB_VENDOR_AND_INTERFACE_INFO(HUAWEI_VENDOR_ID, USB_CLASS_VENDOR_SPEC, 1, 7),
963 .driver_info = (unsigned long)&qmi_wwan_info,
964 },
965 { /* Huawei E392, E398 and possibly others in "Windows mode" */
966 USB_VENDOR_AND_INTERFACE_INFO(HUAWEI_VENDOR_ID, USB_CLASS_VENDOR_SPEC, 1, 17),
967 .driver_info = (unsigned long)&qmi_wwan_info,
968 },
969 { /* HUAWEI_NDIS_SINGLE_INTERFACE_VDF */
970 USB_VENDOR_AND_INTERFACE_INFO(HUAWEI_VENDOR_ID, USB_CLASS_VENDOR_SPEC, 0x01, 0x37),
971 .driver_info = (unsigned long)&qmi_wwan_info,
972 },
973 { /* HUAWEI_INTERFACE_NDIS_HW_QUALCOMM */
974 USB_VENDOR_AND_INTERFACE_INFO(HUAWEI_VENDOR_ID, USB_CLASS_VENDOR_SPEC, 0x01, 0x67),
975 .driver_info = (unsigned long)&qmi_wwan_info,
976 },
977 { /* Pantech UML290, P4200 and more */
978 USB_VENDOR_AND_INTERFACE_INFO(0x106c, USB_CLASS_VENDOR_SPEC, 0xf0, 0xff),
979 .driver_info = (unsigned long)&qmi_wwan_info,
980 },
981 { /* Pantech UML290 - newer firmware */
982 USB_VENDOR_AND_INTERFACE_INFO(0x106c, USB_CLASS_VENDOR_SPEC, 0xf1, 0xff),
983 .driver_info = (unsigned long)&qmi_wwan_info,
984 },
985 { /* Novatel USB551L and MC551 */
986 USB_DEVICE_AND_INTERFACE_INFO(0x1410, 0xb001,
987 USB_CLASS_COMM,
988 USB_CDC_SUBCLASS_ETHERNET,
989 USB_CDC_PROTO_NONE),
990 .driver_info = (unsigned long)&qmi_wwan_info,
991 },
992 { /* Novatel E362 */
993 USB_DEVICE_AND_INTERFACE_INFO(0x1410, 0x9010,
994 USB_CLASS_COMM,
995 USB_CDC_SUBCLASS_ETHERNET,
996 USB_CDC_PROTO_NONE),
997 .driver_info = (unsigned long)&qmi_wwan_info,
998 },
999 { /* Novatel Expedite E371 */
1000 USB_DEVICE_AND_INTERFACE_INFO(0x1410, 0x9011,
1001 USB_CLASS_COMM,
1002 USB_CDC_SUBCLASS_ETHERNET,
1003 USB_CDC_PROTO_NONE),
1004 .driver_info = (unsigned long)&qmi_wwan_info,
1005 },
1006 { /* Dell Wireless 5800 (Novatel E362) */
1007 USB_DEVICE_AND_INTERFACE_INFO(0x413C, 0x8195,
1008 USB_CLASS_COMM,
1009 USB_CDC_SUBCLASS_ETHERNET,
1010 USB_CDC_PROTO_NONE),
1011 .driver_info = (unsigned long)&qmi_wwan_info,
1012 },
1013 { /* Dell Wireless 5800 V2 (Novatel E362) */
1014 USB_DEVICE_AND_INTERFACE_INFO(0x413C, 0x8196,
1015 USB_CLASS_COMM,
1016 USB_CDC_SUBCLASS_ETHERNET,
1017 USB_CDC_PROTO_NONE),
1018 .driver_info = (unsigned long)&qmi_wwan_info,
1019 },
1020 { /* Dell Wireless 5804 (Novatel E371) */
1021 USB_DEVICE_AND_INTERFACE_INFO(0x413C, 0x819b,
1022 USB_CLASS_COMM,
1023 USB_CDC_SUBCLASS_ETHERNET,
1024 USB_CDC_PROTO_NONE),
1025 .driver_info = (unsigned long)&qmi_wwan_info,
1026 },
1027 { /* ADU960S */
1028 USB_DEVICE_AND_INTERFACE_INFO(0x16d5, 0x650a,
1029 USB_CLASS_COMM,
1030 USB_CDC_SUBCLASS_ETHERNET,
1031 USB_CDC_PROTO_NONE),
1032 .driver_info = (unsigned long)&qmi_wwan_info,
1033 },
1034 { /* HP lt2523 (Novatel E371) */
1035 USB_DEVICE_AND_INTERFACE_INFO(0x03f0, 0x421d,
1036 USB_CLASS_COMM,
1037 USB_CDC_SUBCLASS_ETHERNET,
1038 USB_CDC_PROTO_NONE),
1039 .driver_info = (unsigned long)&qmi_wwan_info,
1040 },
1041 { /* HP lt4112 LTE/HSPA+ Gobi 4G Module (Huawei me906e) */
1042 USB_DEVICE_AND_INTERFACE_INFO(0x03f0, 0x581d, USB_CLASS_VENDOR_SPEC, 1, 7),
1043 .driver_info = (unsigned long)&qmi_wwan_info,
1044 },
1045 {QMI_MATCH_FF_FF_FF(0x2c7c, 0x0122)}, /* Quectel RG650V */
1046 {QMI_MATCH_FF_FF_FF(0x2c7c, 0x0125)}, /* Quectel EC25, EC20 R2.0 Mini PCIe */
1047 {QMI_MATCH_FF_FF_FF(0x2c7c, 0x0306)}, /* Quectel EP06/EG06/EM06 */
1048 {QMI_MATCH_FF_FF_FF(0x2c7c, 0x0512)}, /* Quectel EG12/EM12 */
1049 {QMI_MATCH_FF_FF_FF(0x2c7c, 0x0620)}, /* Quectel EM160R-GL */
1050 {QMI_MATCH_FF_FF_FF(0x2c7c, 0x0800)}, /* Quectel RM500Q-GL */
1051 {QMI_MATCH_FF_FF_FF(0x2c7c, 0x0801)}, /* Quectel RM520N */
1052
1053 /* 3. Combined interface devices matching on interface number */
1054 {QMI_FIXED_INTF(0x0408, 0xea42, 4)}, /* Yota / Megafon M100-1 */
1055 {QMI_FIXED_INTF(0x05c6, 0x6001, 3)}, /* 4G LTE usb-modem U901 */
1056 {QMI_FIXED_INTF(0x05c6, 0x7000, 0)},
1057 {QMI_FIXED_INTF(0x05c6, 0x7001, 1)},
1058 {QMI_FIXED_INTF(0x05c6, 0x7002, 1)},
1059 {QMI_FIXED_INTF(0x05c6, 0x7101, 1)},
1060 {QMI_FIXED_INTF(0x05c6, 0x7101, 2)},
1061 {QMI_FIXED_INTF(0x05c6, 0x7101, 3)},
1062 {QMI_FIXED_INTF(0x05c6, 0x7102, 1)},
1063 {QMI_FIXED_INTF(0x05c6, 0x7102, 2)},
1064 {QMI_FIXED_INTF(0x05c6, 0x7102, 3)},
1065 {QMI_FIXED_INTF(0x05c6, 0x8000, 7)},
1066 {QMI_FIXED_INTF(0x05c6, 0x8001, 6)},
1067 {QMI_FIXED_INTF(0x05c6, 0x9000, 4)},
1068 {QMI_FIXED_INTF(0x05c6, 0x9003, 4)},
1069 {QMI_FIXED_INTF(0x05c6, 0x9005, 2)},
1070 {QMI_FIXED_INTF(0x05c6, 0x900a, 4)},
1071 {QMI_FIXED_INTF(0x05c6, 0x900b, 2)},
1072 {QMI_FIXED_INTF(0x05c6, 0x900c, 4)},
1073 {QMI_FIXED_INTF(0x05c6, 0x900c, 5)},
1074 {QMI_FIXED_INTF(0x05c6, 0x900c, 6)},
1075 {QMI_FIXED_INTF(0x05c6, 0x900d, 5)},
1076 {QMI_FIXED_INTF(0x05c6, 0x900f, 3)},
1077 {QMI_FIXED_INTF(0x05c6, 0x900f, 4)},
1078 {QMI_FIXED_INTF(0x05c6, 0x900f, 5)},
1079 {QMI_FIXED_INTF(0x05c6, 0x9010, 4)},
1080 {QMI_FIXED_INTF(0x05c6, 0x9010, 5)},
1081 {QMI_FIXED_INTF(0x05c6, 0x9011, 3)},
1082 {QMI_FIXED_INTF(0x05c6, 0x9011, 4)},
1083 {QMI_FIXED_INTF(0x05c6, 0x9021, 1)},
1084 {QMI_FIXED_INTF(0x05c6, 0x9022, 2)},
1085 {QMI_QUIRK_SET_DTR(0x05c6, 0x9025, 4)}, /* Alcatel-sbell ASB TL131 TDD LTE (China Mobile) */
1086 {QMI_FIXED_INTF(0x05c6, 0x9026, 3)},
1087 {QMI_FIXED_INTF(0x05c6, 0x902e, 5)},
1088 {QMI_FIXED_INTF(0x05c6, 0x9031, 5)},
1089 {QMI_FIXED_INTF(0x05c6, 0x9032, 4)},
1090 {QMI_FIXED_INTF(0x05c6, 0x9033, 3)},
1091 {QMI_FIXED_INTF(0x05c6, 0x9033, 4)},
1092 {QMI_FIXED_INTF(0x05c6, 0x9033, 5)},
1093 {QMI_FIXED_INTF(0x05c6, 0x9033, 6)},
1094 {QMI_FIXED_INTF(0x05c6, 0x9034, 3)},
1095 {QMI_FIXED_INTF(0x05c6, 0x9034, 4)},
1096 {QMI_FIXED_INTF(0x05c6, 0x9034, 5)},
1097 {QMI_FIXED_INTF(0x05c6, 0x9034, 6)},
1098 {QMI_FIXED_INTF(0x05c6, 0x9034, 7)},
1099 {QMI_FIXED_INTF(0x05c6, 0x9035, 4)},
1100 {QMI_FIXED_INTF(0x05c6, 0x9036, 3)},
1101 {QMI_FIXED_INTF(0x05c6, 0x9037, 5)},
1102 {QMI_FIXED_INTF(0x05c6, 0x9038, 4)},
1103 {QMI_FIXED_INTF(0x05c6, 0x903b, 7)},
1104 {QMI_FIXED_INTF(0x05c6, 0x903c, 6)},
1105 {QMI_FIXED_INTF(0x05c6, 0x903d, 6)},
1106 {QMI_FIXED_INTF(0x05c6, 0x903e, 5)},
1107 {QMI_FIXED_INTF(0x05c6, 0x9043, 3)},
1108 {QMI_FIXED_INTF(0x05c6, 0x9046, 3)},
1109 {QMI_FIXED_INTF(0x05c6, 0x9046, 4)},
1110 {QMI_FIXED_INTF(0x05c6, 0x9046, 5)},
1111 {QMI_FIXED_INTF(0x05c6, 0x9047, 2)},
1112 {QMI_FIXED_INTF(0x05c6, 0x9047, 3)},
1113 {QMI_FIXED_INTF(0x05c6, 0x9047, 4)},
1114 {QMI_FIXED_INTF(0x05c6, 0x9048, 4)},
1115 {QMI_FIXED_INTF(0x05c6, 0x9048, 5)},
1116 {QMI_FIXED_INTF(0x05c6, 0x9048, 6)},
1117 {QMI_FIXED_INTF(0x05c6, 0x9048, 7)},
1118 {QMI_FIXED_INTF(0x05c6, 0x9048, 8)},
1119 {QMI_FIXED_INTF(0x05c6, 0x904c, 5)},
1120 {QMI_FIXED_INTF(0x05c6, 0x904c, 6)},
1121 {QMI_FIXED_INTF(0x05c6, 0x904c, 7)},
1122 {QMI_FIXED_INTF(0x05c6, 0x904c, 8)},
1123 {QMI_FIXED_INTF(0x05c6, 0x9050, 3)},
1124 {QMI_FIXED_INTF(0x05c6, 0x9052, 4)},
1125 {QMI_FIXED_INTF(0x05c6, 0x9053, 6)},
1126 {QMI_FIXED_INTF(0x05c6, 0x9053, 7)},
1127 {QMI_FIXED_INTF(0x05c6, 0x9054, 5)},
1128 {QMI_FIXED_INTF(0x05c6, 0x9054, 6)},
1129 {QMI_FIXED_INTF(0x05c6, 0x9055, 3)},
1130 {QMI_FIXED_INTF(0x05c6, 0x9055, 4)},
1131 {QMI_FIXED_INTF(0x05c6, 0x9055, 5)},
1132 {QMI_FIXED_INTF(0x05c6, 0x9055, 6)},
1133 {QMI_FIXED_INTF(0x05c6, 0x9055, 7)},
1134 {QMI_FIXED_INTF(0x05c6, 0x9056, 3)},
1135 {QMI_FIXED_INTF(0x05c6, 0x9062, 2)},
1136 {QMI_FIXED_INTF(0x05c6, 0x9062, 3)},
1137 {QMI_FIXED_INTF(0x05c6, 0x9062, 4)},
1138 {QMI_FIXED_INTF(0x05c6, 0x9062, 5)},
1139 {QMI_FIXED_INTF(0x05c6, 0x9062, 6)},
1140 {QMI_FIXED_INTF(0x05c6, 0x9062, 7)},
1141 {QMI_FIXED_INTF(0x05c6, 0x9062, 8)},
1142 {QMI_FIXED_INTF(0x05c6, 0x9062, 9)},
1143 {QMI_FIXED_INTF(0x05c6, 0x9064, 3)},
1144 {QMI_FIXED_INTF(0x05c6, 0x9065, 6)},
1145 {QMI_FIXED_INTF(0x05c6, 0x9065, 7)},
1146 {QMI_FIXED_INTF(0x05c6, 0x9066, 5)},
1147 {QMI_FIXED_INTF(0x05c6, 0x9066, 6)},
1148 {QMI_FIXED_INTF(0x05c6, 0x9067, 1)},
1149 {QMI_FIXED_INTF(0x05c6, 0x9068, 2)},
1150 {QMI_FIXED_INTF(0x05c6, 0x9068, 3)},
1151 {QMI_FIXED_INTF(0x05c6, 0x9068, 4)},
1152 {QMI_FIXED_INTF(0x05c6, 0x9068, 5)},
1153 {QMI_FIXED_INTF(0x05c6, 0x9068, 6)},
1154 {QMI_FIXED_INTF(0x05c6, 0x9068, 7)},
1155 {QMI_FIXED_INTF(0x05c6, 0x9069, 5)},
1156 {QMI_FIXED_INTF(0x05c6, 0x9069, 6)},
1157 {QMI_FIXED_INTF(0x05c6, 0x9069, 7)},
1158 {QMI_FIXED_INTF(0x05c6, 0x9069, 8)},
1159 {QMI_FIXED_INTF(0x05c6, 0x9070, 4)},
1160 {QMI_FIXED_INTF(0x05c6, 0x9070, 5)},
1161 {QMI_FIXED_INTF(0x05c6, 0x9075, 5)},
1162 {QMI_FIXED_INTF(0x05c6, 0x9076, 4)},
1163 {QMI_FIXED_INTF(0x05c6, 0x9076, 5)},
1164 {QMI_FIXED_INTF(0x05c6, 0x9076, 6)},
1165 {QMI_FIXED_INTF(0x05c6, 0x9076, 7)},
1166 {QMI_FIXED_INTF(0x05c6, 0x9076, 8)},
1167 {QMI_FIXED_INTF(0x05c6, 0x9077, 3)},
1168 {QMI_FIXED_INTF(0x05c6, 0x9077, 4)},
1169 {QMI_FIXED_INTF(0x05c6, 0x9077, 5)},
1170 {QMI_FIXED_INTF(0x05c6, 0x9077, 6)},
1171 {QMI_FIXED_INTF(0x05c6, 0x9078, 3)},
1172 {QMI_FIXED_INTF(0x05c6, 0x9079, 4)},
1173 {QMI_FIXED_INTF(0x05c6, 0x9079, 5)},
1174 {QMI_FIXED_INTF(0x05c6, 0x9079, 6)},
1175 {QMI_FIXED_INTF(0x05c6, 0x9079, 7)},
1176 {QMI_FIXED_INTF(0x05c6, 0x9079, 8)},
1177 {QMI_FIXED_INTF(0x05c6, 0x9080, 5)},
1178 {QMI_FIXED_INTF(0x05c6, 0x9080, 6)},
1179 {QMI_FIXED_INTF(0x05c6, 0x9080, 7)},
1180 {QMI_FIXED_INTF(0x05c6, 0x9080, 8)},
1181 {QMI_FIXED_INTF(0x05c6, 0x9083, 3)},
1182 {QMI_FIXED_INTF(0x05c6, 0x9084, 4)},
1183 {QMI_QUIRK_SET_DTR(0x05c6, 0x9091, 2)}, /* Compal RXM-G1 */
1184 {QMI_FIXED_INTF(0x05c6, 0x90b2, 3)}, /* ublox R410M */
1185 {QMI_QUIRK_SET_DTR(0x05c6, 0x90db, 2)}, /* Compal RXM-G1 */
1186 {QMI_FIXED_INTF(0x05c6, 0x920d, 0)},
1187 {QMI_FIXED_INTF(0x05c6, 0x920d, 5)},
1188 {QMI_QUIRK_SET_DTR(0x05c6, 0x9625, 4)}, /* YUGA CLM920-NC5 */
1189 {QMI_FIXED_INTF(0x0846, 0x68a2, 8)},
1190 {QMI_FIXED_INTF(0x0846, 0x68d3, 8)}, /* Netgear Aircard 779S */
1191 {QMI_FIXED_INTF(0x12d1, 0x140c, 1)}, /* Huawei E173 */
1192 {QMI_FIXED_INTF(0x12d1, 0x14ac, 1)}, /* Huawei E1820 */
1193 {QMI_FIXED_INTF(0x1435, 0x0918, 3)}, /* Wistron NeWeb D16Q1 */
1194 {QMI_FIXED_INTF(0x1435, 0x0918, 4)}, /* Wistron NeWeb D16Q1 */
1195 {QMI_FIXED_INTF(0x1435, 0x0918, 5)}, /* Wistron NeWeb D16Q1 */
1196 {QMI_FIXED_INTF(0x1435, 0x3185, 4)}, /* Wistron NeWeb M18Q5 */
1197 {QMI_FIXED_INTF(0x1435, 0xd111, 4)}, /* M9615A DM11-1 D51QC */
1198 {QMI_FIXED_INTF(0x1435, 0xd181, 3)}, /* Wistron NeWeb D18Q1 */
1199 {QMI_FIXED_INTF(0x1435, 0xd181, 4)}, /* Wistron NeWeb D18Q1 */
1200 {QMI_FIXED_INTF(0x1435, 0xd181, 5)}, /* Wistron NeWeb D18Q1 */
1201 {QMI_FIXED_INTF(0x1435, 0xd182, 4)}, /* Wistron NeWeb D18 */
1202 {QMI_FIXED_INTF(0x1435, 0xd182, 5)}, /* Wistron NeWeb D18 */
1203 {QMI_FIXED_INTF(0x1435, 0xd191, 4)}, /* Wistron NeWeb D19Q1 */
1204 {QMI_QUIRK_SET_DTR(0x1508, 0x1001, 4)}, /* Fibocom NL668 series */
1205 {QMI_FIXED_INTF(0x1690, 0x7588, 4)}, /* ASKEY WWHC050 */
1206 {QMI_FIXED_INTF(0x16d8, 0x6003, 0)}, /* CMOTech 6003 */
1207 {QMI_FIXED_INTF(0x16d8, 0x6007, 0)}, /* CMOTech CHE-628S */
1208 {QMI_FIXED_INTF(0x16d8, 0x6008, 0)}, /* CMOTech CMU-301 */
1209 {QMI_FIXED_INTF(0x16d8, 0x6280, 0)}, /* CMOTech CHU-628 */
1210 {QMI_FIXED_INTF(0x16d8, 0x7001, 0)}, /* CMOTech CHU-720S */
1211 {QMI_FIXED_INTF(0x16d8, 0x7002, 0)}, /* CMOTech 7002 */
1212 {QMI_FIXED_INTF(0x16d8, 0x7003, 4)}, /* CMOTech CHU-629K */
1213 {QMI_FIXED_INTF(0x16d8, 0x7004, 3)}, /* CMOTech 7004 */
1214 {QMI_FIXED_INTF(0x16d8, 0x7006, 5)}, /* CMOTech CGU-629 */
1215 {QMI_FIXED_INTF(0x16d8, 0x700a, 4)}, /* CMOTech CHU-629S */
1216 {QMI_FIXED_INTF(0x16d8, 0x7211, 0)}, /* CMOTech CHU-720I */
1217 {QMI_FIXED_INTF(0x16d8, 0x7212, 0)}, /* CMOTech 7212 */
1218 {QMI_FIXED_INTF(0x16d8, 0x7213, 0)}, /* CMOTech 7213 */
1219 {QMI_FIXED_INTF(0x16d8, 0x7251, 1)}, /* CMOTech 7251 */
1220 {QMI_FIXED_INTF(0x16d8, 0x7252, 1)}, /* CMOTech 7252 */
1221 {QMI_FIXED_INTF(0x16d8, 0x7253, 1)}, /* CMOTech 7253 */
1222 {QMI_FIXED_INTF(0x19d2, 0x0002, 1)},
1223 {QMI_FIXED_INTF(0x19d2, 0x0012, 1)},
1224 {QMI_FIXED_INTF(0x19d2, 0x0017, 3)},
1225 {QMI_FIXED_INTF(0x19d2, 0x0019, 3)}, /* ONDA MT689DC */
1226 {QMI_FIXED_INTF(0x19d2, 0x0021, 4)},
1227 {QMI_FIXED_INTF(0x19d2, 0x0025, 1)},
1228 {QMI_FIXED_INTF(0x19d2, 0x0031, 4)},
1229 {QMI_FIXED_INTF(0x19d2, 0x0042, 4)},
1230 {QMI_FIXED_INTF(0x19d2, 0x0049, 5)},
1231 {QMI_FIXED_INTF(0x19d2, 0x0052, 4)},
1232 {QMI_FIXED_INTF(0x19d2, 0x0055, 1)}, /* ZTE (Vodafone) K3520-Z */
1233 {QMI_FIXED_INTF(0x19d2, 0x0058, 4)},
1234 {QMI_FIXED_INTF(0x19d2, 0x0063, 4)}, /* ZTE (Vodafone) K3565-Z */
1235 {QMI_FIXED_INTF(0x19d2, 0x0104, 4)}, /* ZTE (Vodafone) K4505-Z */
1236 {QMI_FIXED_INTF(0x19d2, 0x0113, 5)},
1237 {QMI_FIXED_INTF(0x19d2, 0x0118, 5)},
1238 {QMI_FIXED_INTF(0x19d2, 0x0121, 5)},
1239 {QMI_FIXED_INTF(0x19d2, 0x0123, 4)},
1240 {QMI_FIXED_INTF(0x19d2, 0x0124, 5)},
1241 {QMI_FIXED_INTF(0x19d2, 0x0125, 6)},
1242 {QMI_FIXED_INTF(0x19d2, 0x0126, 5)},
1243 {QMI_FIXED_INTF(0x19d2, 0x0130, 1)},
1244 {QMI_FIXED_INTF(0x19d2, 0x0133, 3)},
1245 {QMI_FIXED_INTF(0x19d2, 0x0141, 5)},
1246 {QMI_FIXED_INTF(0x19d2, 0x0157, 5)}, /* ZTE MF683 */
1247 {QMI_FIXED_INTF(0x19d2, 0x0158, 3)},
1248 {QMI_FIXED_INTF(0x19d2, 0x0167, 4)}, /* ZTE MF820D */
1249 {QMI_FIXED_INTF(0x19d2, 0x0168, 4)},
1250 {QMI_FIXED_INTF(0x19d2, 0x0176, 3)},
1251 {QMI_FIXED_INTF(0x19d2, 0x0178, 3)},
1252 {QMI_FIXED_INTF(0x19d2, 0x0189, 4)}, /* ZTE MF290 */
1253 {QMI_FIXED_INTF(0x19d2, 0x0191, 4)}, /* ZTE EuFi890 */
1254 {QMI_FIXED_INTF(0x19d2, 0x0199, 1)}, /* ZTE MF820S */
1255 {QMI_FIXED_INTF(0x19d2, 0x0200, 1)},
1256 {QMI_FIXED_INTF(0x19d2, 0x0257, 3)}, /* ZTE MF821 */
1257 {QMI_FIXED_INTF(0x19d2, 0x0265, 4)}, /* ONDA MT8205 4G LTE */
1258 {QMI_FIXED_INTF(0x19d2, 0x0284, 4)}, /* ZTE MF880 */
1259 {QMI_FIXED_INTF(0x19d2, 0x0326, 4)}, /* ZTE MF821D */
1260 {QMI_FIXED_INTF(0x19d2, 0x0396, 3)}, /* ZTE ZM8620 */
1261 {QMI_FIXED_INTF(0x19d2, 0x0412, 4)}, /* Telewell TW-LTE 4G */
1262 {QMI_FIXED_INTF(0x19d2, 0x1008, 4)}, /* ZTE (Vodafone) K3570-Z */
1263 {QMI_FIXED_INTF(0x19d2, 0x1010, 4)}, /* ZTE (Vodafone) K3571-Z */
1264 {QMI_FIXED_INTF(0x19d2, 0x1012, 4)},
1265 {QMI_FIXED_INTF(0x19d2, 0x1018, 3)}, /* ZTE (Vodafone) K5006-Z */
1266 {QMI_FIXED_INTF(0x19d2, 0x1021, 2)},
1267 {QMI_FIXED_INTF(0x19d2, 0x1245, 4)},
1268 {QMI_FIXED_INTF(0x19d2, 0x1247, 4)},
1269 {QMI_FIXED_INTF(0x19d2, 0x1252, 4)},
1270 {QMI_FIXED_INTF(0x19d2, 0x1254, 4)},
1271 {QMI_FIXED_INTF(0x19d2, 0x1255, 3)},
1272 {QMI_FIXED_INTF(0x19d2, 0x1255, 4)},
1273 {QMI_FIXED_INTF(0x19d2, 0x1256, 4)},
1274 {QMI_FIXED_INTF(0x19d2, 0x1270, 5)}, /* ZTE MF667 */
1275 {QMI_FIXED_INTF(0x19d2, 0x1275, 3)}, /* ZTE P685M */
1276 {QMI_FIXED_INTF(0x19d2, 0x1401, 2)},
1277 {QMI_FIXED_INTF(0x19d2, 0x1402, 2)}, /* ZTE MF60 */
1278 {QMI_FIXED_INTF(0x19d2, 0x1424, 2)},
1279 {QMI_FIXED_INTF(0x19d2, 0x1425, 2)},
1280 {QMI_FIXED_INTF(0x19d2, 0x1426, 2)}, /* ZTE MF91 */
1281 {QMI_FIXED_INTF(0x19d2, 0x1428, 2)}, /* Telewell TW-LTE 4G v2 */
1282 {QMI_FIXED_INTF(0x19d2, 0x1432, 3)}, /* ZTE ME3620 */
1283 {QMI_FIXED_INTF(0x19d2, 0x2002, 4)}, /* ZTE (Vodafone) K3765-Z */
1284 {QMI_FIXED_INTF(0x2001, 0x7e16, 3)}, /* D-Link DWM-221 */
1285 {QMI_FIXED_INTF(0x2001, 0x7e19, 4)}, /* D-Link DWM-221 B1 */
1286 {QMI_FIXED_INTF(0x2001, 0x7e35, 4)}, /* D-Link DWM-222 */
1287 {QMI_FIXED_INTF(0x2001, 0x7e3d, 4)}, /* D-Link DWM-222 A2 */
1288 {QMI_FIXED_INTF(0x2020, 0x2031, 4)}, /* Olicard 600 */
1289 {QMI_FIXED_INTF(0x2020, 0x2033, 4)}, /* BroadMobi BM806U */
1290 {QMI_QUIRK_SET_DTR(0x2020, 0x2060, 4)}, /* BroadMobi BM818 */
1291 {QMI_FIXED_INTF(0x0f3d, 0x68a2, 8)}, /* Sierra Wireless MC7700 */
1292 {QMI_FIXED_INTF(0x114f, 0x68a2, 8)}, /* Sierra Wireless MC7750 */
1293 {QMI_FIXED_INTF(0x1199, 0x68a2, 8)}, /* Sierra Wireless MC7710 in QMI mode */
1294 {QMI_FIXED_INTF(0x1199, 0x68a2, 19)}, /* Sierra Wireless MC7710 in QMI mode */
1295 {QMI_QUIRK_SET_DTR(0x1199, 0x68c0, 8)}, /* Sierra Wireless MC7304/MC7354, WP76xx */
1296 {QMI_QUIRK_SET_DTR(0x1199, 0x68c0, 10)},/* Sierra Wireless MC7304/MC7354 */
1297 {QMI_FIXED_INTF(0x1199, 0x901c, 8)}, /* Sierra Wireless EM7700 */
1298 {QMI_FIXED_INTF(0x1199, 0x901f, 8)}, /* Sierra Wireless EM7355 */
1299 {QMI_FIXED_INTF(0x1199, 0x9041, 8)}, /* Sierra Wireless MC7305/MC7355 */
1300 {QMI_FIXED_INTF(0x1199, 0x9041, 10)}, /* Sierra Wireless MC7305/MC7355 */
1301 {QMI_FIXED_INTF(0x1199, 0x9051, 8)}, /* Netgear AirCard 340U */
1302 {QMI_FIXED_INTF(0x1199, 0x9053, 8)}, /* Sierra Wireless Modem */
1303 {QMI_FIXED_INTF(0x1199, 0x9054, 8)}, /* Sierra Wireless Modem */
1304 {QMI_FIXED_INTF(0x1199, 0x9055, 8)}, /* Netgear AirCard 341U */
1305 {QMI_FIXED_INTF(0x1199, 0x9056, 8)}, /* Sierra Wireless Modem */
1306 {QMI_FIXED_INTF(0x1199, 0x9057, 8)},
1307 {QMI_FIXED_INTF(0x1199, 0x9061, 8)}, /* Sierra Wireless Modem */
1308 {QMI_FIXED_INTF(0x1199, 0x9063, 8)}, /* Sierra Wireless EM7305 */
1309 {QMI_FIXED_INTF(0x1199, 0x9063, 10)}, /* Sierra Wireless EM7305 */
1310 {QMI_QUIRK_SET_DTR(0x1199, 0x9071, 8)}, /* Sierra Wireless MC74xx */
1311 {QMI_QUIRK_SET_DTR(0x1199, 0x9071, 10)},/* Sierra Wireless MC74xx */
1312 {QMI_QUIRK_SET_DTR(0x1199, 0x9079, 8)}, /* Sierra Wireless EM74xx */
1313 {QMI_QUIRK_SET_DTR(0x1199, 0x9079, 10)},/* Sierra Wireless EM74xx */
1314 {QMI_QUIRK_SET_DTR(0x1199, 0x907b, 8)}, /* Sierra Wireless EM74xx */
1315 {QMI_QUIRK_SET_DTR(0x1199, 0x907b, 10)},/* Sierra Wireless EM74xx */
1316 {QMI_QUIRK_SET_DTR(0x1199, 0x9091, 8)}, /* Sierra Wireless EM7565 */
1317 {QMI_FIXED_INTF(0x1bbb, 0x011e, 4)}, /* Telekom Speedstick LTE II (Alcatel One Touch L100V LTE) */
1318 {QMI_FIXED_INTF(0x1bbb, 0x0203, 2)}, /* Alcatel L800MA */
1319 {QMI_FIXED_INTF(0x2357, 0x0201, 4)}, /* TP-LINK HSUPA Modem MA180 */
1320 {QMI_FIXED_INTF(0x2357, 0x9000, 4)}, /* TP-LINK MA260 */
1321 {QMI_QUIRK_SET_DTR(0x1bc7, 0x1031, 3)}, /* Telit LE910C1-EUX */
1322 {QMI_QUIRK_SET_DTR(0x1bc7, 0x103a, 0)}, /* Telit LE910C4-WWX */
1323 {QMI_QUIRK_SET_DTR(0x1bc7, 0x1040, 2)}, /* Telit LE922A */
1324 {QMI_QUIRK_SET_DTR(0x1bc7, 0x1050, 2)}, /* Telit FN980 */
1325 {QMI_QUIRK_SET_DTR(0x1bc7, 0x1060, 2)}, /* Telit LN920 */
1326 {QMI_QUIRK_SET_DTR(0x1bc7, 0x1070, 2)}, /* Telit FN990 */
1327 {QMI_QUIRK_SET_DTR(0x1bc7, 0x1080, 2)}, /* Telit FE990 */
1328 {QMI_QUIRK_SET_DTR(0x1bc7, 0x10a0, 0)}, /* Telit FN920C04 */
1329 {QMI_QUIRK_SET_DTR(0x1bc7, 0x10a4, 0)}, /* Telit FN920C04 */
1330 {QMI_QUIRK_SET_DTR(0x1bc7, 0x10a9, 0)}, /* Telit FN920C04 */
1331 {QMI_QUIRK_SET_DTR(0x1bc7, 0x10c0, 0)}, /* Telit FE910C04 */
1332 {QMI_QUIRK_SET_DTR(0x1bc7, 0x10c4, 0)}, /* Telit FE910C04 */
1333 {QMI_QUIRK_SET_DTR(0x1bc7, 0x10c8, 0)}, /* Telit FE910C04 */
1334 {QMI_FIXED_INTF(0x1bc7, 0x1100, 3)}, /* Telit ME910 */
1335 {QMI_FIXED_INTF(0x1bc7, 0x1101, 3)}, /* Telit ME910 dual modem */
1336 {QMI_FIXED_INTF(0x1bc7, 0x1200, 5)}, /* Telit LE920 */
1337 {QMI_QUIRK_SET_DTR(0x1bc7, 0x1201, 2)}, /* Telit LE920, LE920A4 */
1338 {QMI_QUIRK_SET_DTR(0x1bc7, 0x1230, 2)}, /* Telit LE910Cx */
1339 {QMI_QUIRK_SET_DTR(0x1bc7, 0x1260, 2)}, /* Telit LE910Cx */
1340 {QMI_QUIRK_SET_DTR(0x1bc7, 0x1261, 2)}, /* Telit LE910Cx */
1341 {QMI_QUIRK_SET_DTR(0x1bc7, 0x1900, 1)}, /* Telit LN940 series */
1342 {QMI_QUIRK_SET_DTR(0x1bc7, 0x3000, 0)}, /* Telit FN912 series */
1343 {QMI_QUIRK_SET_DTR(0x1bc7, 0x3001, 0)}, /* Telit FN912 series */
1344 {QMI_FIXED_INTF(0x1c9e, 0x9801, 3)}, /* Telewell TW-3G HSPA+ */
1345 {QMI_FIXED_INTF(0x1c9e, 0x9803, 4)}, /* Telewell TW-3G HSPA+ */
1346 {QMI_FIXED_INTF(0x1c9e, 0x9b01, 3)}, /* XS Stick W100-2 from 4G Systems */
1347 {QMI_FIXED_INTF(0x0b3c, 0xc000, 4)}, /* Olivetti Olicard 100 */
1348 {QMI_FIXED_INTF(0x0b3c, 0xc001, 4)}, /* Olivetti Olicard 120 */
1349 {QMI_FIXED_INTF(0x0b3c, 0xc002, 4)}, /* Olivetti Olicard 140 */
1350 {QMI_FIXED_INTF(0x0b3c, 0xc004, 6)}, /* Olivetti Olicard 155 */
1351 {QMI_FIXED_INTF(0x0b3c, 0xc005, 6)}, /* Olivetti Olicard 200 */
1352 {QMI_FIXED_INTF(0x0b3c, 0xc00a, 6)}, /* Olivetti Olicard 160 */
1353 {QMI_FIXED_INTF(0x0b3c, 0xc00b, 4)}, /* Olivetti Olicard 500 */
1354 {QMI_FIXED_INTF(0x1e2d, 0x0060, 4)}, /* Cinterion PLxx */
1355 {QMI_QUIRK_SET_DTR(0x1e2d, 0x006f, 8)}, /* Cinterion PLS83/PLS63 */
1356 {QMI_FIXED_INTF(0x1e2d, 0x0053, 4)}, /* Cinterion PHxx,PXxx */
1357 {QMI_FIXED_INTF(0x1e2d, 0x0063, 10)}, /* Cinterion ALASxx (1 RmNet) */
1358 {QMI_FIXED_INTF(0x1e2d, 0x0082, 4)}, /* Cinterion PHxx,PXxx (2 RmNet) */
1359 {QMI_FIXED_INTF(0x1e2d, 0x0082, 5)}, /* Cinterion PHxx,PXxx (2 RmNet) */
1360 {QMI_FIXED_INTF(0x1e2d, 0x0083, 4)}, /* Cinterion PHxx,PXxx (1 RmNet + USB Audio)*/
1361 {QMI_QUIRK_SET_DTR(0x1e2d, 0x00b0, 4)}, /* Cinterion CLS8 */
1362 {QMI_FIXED_INTF(0x1e2d, 0x00b7, 0)}, /* Cinterion MV31 RmNet */
1363 {QMI_FIXED_INTF(0x413c, 0x81a2, 8)}, /* Dell Wireless 5806 Gobi(TM) 4G LTE Mobile Broadband Card */
1364 {QMI_FIXED_INTF(0x413c, 0x81a3, 8)}, /* Dell Wireless 5570 HSPA+ (42Mbps) Mobile Broadband Card */
1365 {QMI_FIXED_INTF(0x413c, 0x81a4, 8)}, /* Dell Wireless 5570e HSPA+ (42Mbps) Mobile Broadband Card */
1366 {QMI_FIXED_INTF(0x413c, 0x81a8, 8)}, /* Dell Wireless 5808 Gobi(TM) 4G LTE Mobile Broadband Card */
1367 {QMI_FIXED_INTF(0x413c, 0x81a9, 8)}, /* Dell Wireless 5808e Gobi(TM) 4G LTE Mobile Broadband Card */
1368 {QMI_FIXED_INTF(0x413c, 0x81b1, 8)}, /* Dell Wireless 5809e Gobi(TM) 4G LTE Mobile Broadband Card */
1369 {QMI_FIXED_INTF(0x413c, 0x81b3, 8)}, /* Dell Wireless 5809e Gobi(TM) 4G LTE Mobile Broadband Card (rev3) */
1370 {QMI_FIXED_INTF(0x413c, 0x81b6, 8)}, /* Dell Wireless 5811e */
1371 {QMI_FIXED_INTF(0x413c, 0x81b6, 10)}, /* Dell Wireless 5811e */
1372 {QMI_FIXED_INTF(0x413c, 0x81c2, 8)}, /* Dell Wireless 5811e */
1373 {QMI_FIXED_INTF(0x413c, 0x81cc, 8)}, /* Dell Wireless 5816e */
1374 {QMI_FIXED_INTF(0x413c, 0x81d7, 0)}, /* Dell Wireless 5821e */
1375 {QMI_FIXED_INTF(0x413c, 0x81d7, 1)}, /* Dell Wireless 5821e preproduction config */
1376 {QMI_FIXED_INTF(0x413c, 0x81e0, 0)}, /* Dell Wireless 5821e with eSIM support*/
1377 {QMI_FIXED_INTF(0x413c, 0x81e4, 0)}, /* Dell Wireless 5829e with eSIM support*/
1378 {QMI_FIXED_INTF(0x413c, 0x81e6, 0)}, /* Dell Wireless 5829e */
1379 {QMI_FIXED_INTF(0x03f0, 0x4e1d, 8)}, /* HP lt4111 LTE/EV-DO/HSPA+ Gobi 4G Module */
1380 {QMI_FIXED_INTF(0x03f0, 0x9d1d, 1)}, /* HP lt4120 Snapdragon X5 LTE */
1381 {QMI_FIXED_INTF(0x22de, 0x9061, 3)}, /* WeTelecom WPD-600N */
1382 {QMI_QUIRK_SET_DTR(0x1e0e, 0x9001, 5)}, /* SIMCom 7100E, 7230E, 7600E ++ */
1383 {QMI_QUIRK_SET_DTR(0x2c7c, 0x0121, 4)}, /* Quectel EC21 Mini PCIe */
1384 {QMI_QUIRK_SET_DTR(0x2c7c, 0x0191, 4)}, /* Quectel EG91 */
1385 {QMI_QUIRK_SET_DTR(0x2c7c, 0x0195, 4)}, /* Quectel EG95 */
1386 {QMI_FIXED_INTF(0x2c7c, 0x0296, 4)}, /* Quectel BG96 */
1387 {QMI_QUIRK_SET_DTR(0x2c7c, 0x030e, 4)}, /* Quectel EM05GV2 */
1388 {QMI_QUIRK_SET_DTR(0x2cb7, 0x0104, 4)}, /* Fibocom NL678 series */
1389 {QMI_QUIRK_SET_DTR(0x2cb7, 0x0112, 0)}, /* Fibocom FG132 */
1390 {QMI_FIXED_INTF(0x0489, 0xe0b4, 0)}, /* Foxconn T77W968 LTE */
1391 {QMI_FIXED_INTF(0x0489, 0xe0b5, 0)}, /* Foxconn T77W968 LTE with eSIM support*/
1392 {QMI_FIXED_INTF(0x2692, 0x9025, 4)}, /* Cellient MPL200 (rebranded Qualcomm 05c6:9025) */
1393 {QMI_QUIRK_SET_DTR(0x1546, 0x1342, 4)}, /* u-blox LARA-L6 */
1394 {QMI_QUIRK_SET_DTR(0x33f8, 0x0104, 4)}, /* Rolling RW101 RMNET */
1395 {QMI_FIXED_INTF(0x2dee, 0x4d22, 5)}, /* MeiG Smart SRM825L */
1396
1397 /* 4. Gobi 1000 devices */
1398 {QMI_GOBI1K_DEVICE(0x05c6, 0x9212)}, /* Acer Gobi Modem Device */
1399 {QMI_GOBI1K_DEVICE(0x03f0, 0x1f1d)}, /* HP un2400 Gobi Modem Device */
1400 {QMI_GOBI1K_DEVICE(0x04da, 0x250d)}, /* Panasonic Gobi Modem device */
1401 {QMI_GOBI1K_DEVICE(0x413c, 0x8172)}, /* Dell Gobi Modem device */
1402 {QMI_GOBI1K_DEVICE(0x1410, 0xa001)}, /* Novatel/Verizon USB-1000 */
1403 {QMI_GOBI1K_DEVICE(0x1410, 0xa002)}, /* Novatel Gobi Modem device */
1404 {QMI_GOBI1K_DEVICE(0x1410, 0xa003)}, /* Novatel Gobi Modem device */
1405 {QMI_GOBI1K_DEVICE(0x1410, 0xa004)}, /* Novatel Gobi Modem device */
1406 {QMI_GOBI1K_DEVICE(0x1410, 0xa005)}, /* Novatel Gobi Modem device */
1407 {QMI_GOBI1K_DEVICE(0x1410, 0xa006)}, /* Novatel Gobi Modem device */
1408 {QMI_GOBI1K_DEVICE(0x1410, 0xa007)}, /* Novatel Gobi Modem device */
1409 {QMI_GOBI1K_DEVICE(0x0b05, 0x1776)}, /* Asus Gobi Modem device */
1410 {QMI_GOBI1K_DEVICE(0x19d2, 0xfff3)}, /* ONDA Gobi Modem device */
1411 {QMI_GOBI1K_DEVICE(0x05c6, 0x9001)}, /* Generic Gobi Modem device */
1412 {QMI_GOBI1K_DEVICE(0x05c6, 0x9002)}, /* Generic Gobi Modem device */
1413 {QMI_GOBI1K_DEVICE(0x05c6, 0x9202)}, /* Generic Gobi Modem device */
1414 {QMI_GOBI1K_DEVICE(0x05c6, 0x9203)}, /* Generic Gobi Modem device */
1415 {QMI_GOBI1K_DEVICE(0x05c6, 0x9222)}, /* Generic Gobi Modem device */
1416 {QMI_GOBI1K_DEVICE(0x05c6, 0x9009)}, /* Generic Gobi Modem device */
1417
1418 /* 5. Gobi 2000 and 3000 devices */
1419 {QMI_GOBI_DEVICE(0x413c, 0x8186)}, /* Dell Gobi 2000 Modem device (N0218, VU936) */
1420 {QMI_GOBI_DEVICE(0x413c, 0x8194)}, /* Dell Gobi 3000 Composite */
1421 {QMI_GOBI_DEVICE(0x05c6, 0x920b)}, /* Generic Gobi 2000 Modem device */
1422 {QMI_GOBI_DEVICE(0x05c6, 0x9225)}, /* Sony Gobi 2000 Modem device (N0279, VU730) */
1423 {QMI_GOBI_DEVICE(0x05c6, 0x9245)}, /* Samsung Gobi 2000 Modem device (VL176) */
1424 {QMI_GOBI_DEVICE(0x03f0, 0x251d)}, /* HP Gobi 2000 Modem device (VP412) */
1425 {QMI_GOBI_DEVICE(0x05c6, 0x9215)}, /* Acer Gobi 2000 Modem device (VP413) */
1426 {QMI_FIXED_INTF(0x05c6, 0x9215, 4)}, /* Quectel EC20 Mini PCIe */
1427 {QMI_GOBI_DEVICE(0x05c6, 0x9265)}, /* Asus Gobi 2000 Modem device (VR305) */
1428 {QMI_GOBI_DEVICE(0x05c6, 0x9235)}, /* Top Global Gobi 2000 Modem device (VR306) */
1429 {QMI_GOBI_DEVICE(0x05c6, 0x9275)}, /* iRex Technologies Gobi 2000 Modem device (VR307) */
1430 {QMI_GOBI_DEVICE(0x0af0, 0x8120)}, /* Option GTM681W */
1431 {QMI_GOBI_DEVICE(0x1199, 0x68a5)}, /* Sierra Wireless Modem */
1432 {QMI_GOBI_DEVICE(0x1199, 0x68a9)}, /* Sierra Wireless Modem */
1433 {QMI_GOBI_DEVICE(0x1199, 0x9001)}, /* Sierra Wireless Gobi 2000 Modem device (VT773) */
1434 {QMI_GOBI_DEVICE(0x1199, 0x9002)}, /* Sierra Wireless Gobi 2000 Modem device (VT773) */
1435 {QMI_GOBI_DEVICE(0x1199, 0x9003)}, /* Sierra Wireless Gobi 2000 Modem device (VT773) */
1436 {QMI_GOBI_DEVICE(0x1199, 0x9004)}, /* Sierra Wireless Gobi 2000 Modem device (VT773) */
1437 {QMI_GOBI_DEVICE(0x1199, 0x9005)}, /* Sierra Wireless Gobi 2000 Modem device (VT773) */
1438 {QMI_GOBI_DEVICE(0x1199, 0x9006)}, /* Sierra Wireless Gobi 2000 Modem device (VT773) */
1439 {QMI_GOBI_DEVICE(0x1199, 0x9007)}, /* Sierra Wireless Gobi 2000 Modem device (VT773) */
1440 {QMI_GOBI_DEVICE(0x1199, 0x9008)}, /* Sierra Wireless Gobi 2000 Modem device (VT773) */
1441 {QMI_GOBI_DEVICE(0x1199, 0x9009)}, /* Sierra Wireless Gobi 2000 Modem device (VT773) */
1442 {QMI_GOBI_DEVICE(0x1199, 0x900a)}, /* Sierra Wireless Gobi 2000 Modem device (VT773) */
1443 {QMI_GOBI_DEVICE(0x1199, 0x9011)}, /* Sierra Wireless Gobi 2000 Modem device (MC8305) */
1444 {QMI_GOBI_DEVICE(0x16d8, 0x8002)}, /* CMDTech Gobi 2000 Modem device (VU922) */
1445 {QMI_GOBI_DEVICE(0x05c6, 0x9205)}, /* Gobi 2000 Modem device */
1446 {QMI_GOBI_DEVICE(0x1199, 0x9013)}, /* Sierra Wireless Gobi 3000 Modem device (MC8355) */
1447 {QMI_GOBI_DEVICE(0x03f0, 0x371d)}, /* HP un2430 Mobile Broadband Module */
1448 {QMI_GOBI_DEVICE(0x1199, 0x9015)}, /* Sierra Wireless Gobi 3000 Modem device */
1449 {QMI_GOBI_DEVICE(0x1199, 0x9019)}, /* Sierra Wireless Gobi 3000 Modem device */
1450 {QMI_GOBI_DEVICE(0x1199, 0x901b)}, /* Sierra Wireless MC7770 */
1451 {QMI_GOBI_DEVICE(0x12d1, 0x14f1)}, /* Sony Gobi 3000 Composite */
1452 {QMI_GOBI_DEVICE(0x1410, 0xa021)}, /* Foxconn Gobi 3000 Modem device (Novatel E396) */
1453
1454 { } /* END */
1455};
1456MODULE_DEVICE_TABLE(usb, products);
1457
1458static bool quectel_ec20_detected(struct usb_interface *intf)
1459{
1460 struct usb_device *dev = interface_to_usbdev(intf);
1461
1462 if (dev->actconfig &&
1463 le16_to_cpu(dev->descriptor.idVendor) == 0x05c6 &&
1464 le16_to_cpu(dev->descriptor.idProduct) == 0x9215 &&
1465 dev->actconfig->desc.bNumInterfaces == 5)
1466 return true;
1467
1468 return false;
1469}
1470
1471static int qmi_wwan_probe(struct usb_interface *intf,
1472 const struct usb_device_id *prod)
1473{
1474 struct usb_device_id *id = (struct usb_device_id *)prod;
1475 struct usb_interface_descriptor *desc = &intf->cur_altsetting->desc;
1476
1477 /* Workaround to enable dynamic IDs. This disables usbnet
1478 * blacklisting functionality. Which, if required, can be
1479 * reimplemented here by using a magic "blacklist" value
1480 * instead of 0 in the static device id table
1481 */
1482 if (!id->driver_info) {
1483 dev_dbg(&intf->dev, "setting defaults for dynamic device id\n");
1484 id->driver_info = (unsigned long)&qmi_wwan_info;
1485 }
1486
1487 /* There are devices where the same interface number can be
1488 * configured as different functions. We should only bind to
1489 * vendor specific functions when matching on interface number
1490 */
1491 if (id->match_flags & USB_DEVICE_ID_MATCH_INT_NUMBER &&
1492 desc->bInterfaceClass != USB_CLASS_VENDOR_SPEC) {
1493 dev_dbg(&intf->dev,
1494 "Rejecting interface number match for class %02x\n",
1495 desc->bInterfaceClass);
1496 return -ENODEV;
1497 }
1498
1499 /* Quectel EC20 quirk where we've QMI on interface 4 instead of 0 */
1500 if (quectel_ec20_detected(intf) && desc->bInterfaceNumber == 0) {
1501 dev_dbg(&intf->dev, "Quectel EC20 quirk, skipping interface 0\n");
1502 return -ENODEV;
1503 }
1504
1505 /* Several Quectel modems supports dynamic interface configuration, so
1506 * we need to match on class/subclass/protocol. These values are
1507 * identical for the diagnostic- and QMI-interface, but bNumEndpoints is
1508 * different. Ignore the current interface if the number of endpoints
1509 * equals the number for the diag interface (two).
1510 */
1511 if (desc->bNumEndpoints == 2)
1512 return -ENODEV;
1513
1514 return usbnet_probe(intf, id);
1515}
1516
1517static void qmi_wwan_disconnect(struct usb_interface *intf)
1518{
1519 struct usbnet *dev = usb_get_intfdata(intf);
1520 struct qmi_wwan_state *info;
1521 struct list_head *iter;
1522 struct net_device *ldev;
1523 LIST_HEAD(list);
1524
1525 /* called twice if separate control and data intf */
1526 if (!dev)
1527 return;
1528 info = (void *)&dev->data;
1529 if (info->flags & QMI_WWAN_FLAG_MUX) {
1530 if (!rtnl_trylock()) {
1531 restart_syscall();
1532 return;
1533 }
1534 rcu_read_lock();
1535 netdev_for_each_upper_dev_rcu(dev->net, ldev, iter)
1536 qmimux_unregister_device(ldev, &list);
1537 rcu_read_unlock();
1538 unregister_netdevice_many(&list);
1539 rtnl_unlock();
1540 info->flags &= ~QMI_WWAN_FLAG_MUX;
1541 }
1542 usbnet_disconnect(intf);
1543}
1544
1545static struct usb_driver qmi_wwan_driver = {
1546 .name = "qmi_wwan",
1547 .id_table = products,
1548 .probe = qmi_wwan_probe,
1549 .disconnect = qmi_wwan_disconnect,
1550 .suspend = qmi_wwan_suspend,
1551 .resume = qmi_wwan_resume,
1552 .reset_resume = qmi_wwan_resume,
1553 .supports_autosuspend = 1,
1554 .disable_hub_initiated_lpm = 1,
1555};
1556
1557module_usb_driver(qmi_wwan_driver);
1558
1559MODULE_AUTHOR("Bjørn Mork <bjorn@mork.no>");
1560MODULE_DESCRIPTION("Qualcomm MSM Interface (QMI) WWAN driver");
1561MODULE_LICENSE("GPL");