Merge tag 'iwlwifi-next-for-kalle-2014-12-30' of https://git.kernel.org/pub/scm/linux...
[cascardo/linux.git] / drivers / pci / xen-pcifront.c
1 /*
2  * Xen PCI Frontend.
3  *
4  *   Author: Ryan Wilson <hap9@epoch.ncsc.mil>
5  */
6 #include <linux/module.h>
7 #include <linux/init.h>
8 #include <linux/mm.h>
9 #include <xen/xenbus.h>
10 #include <xen/events.h>
11 #include <xen/grant_table.h>
12 #include <xen/page.h>
13 #include <linux/spinlock.h>
14 #include <linux/pci.h>
15 #include <linux/msi.h>
16 #include <xen/interface/io/pciif.h>
17 #include <asm/xen/pci.h>
18 #include <linux/interrupt.h>
19 #include <linux/atomic.h>
20 #include <linux/workqueue.h>
21 #include <linux/bitops.h>
22 #include <linux/time.h>
23 #include <xen/platform_pci.h>
24
25 #include <asm/xen/swiotlb-xen.h>
26 #define INVALID_GRANT_REF (0)
27 #define INVALID_EVTCHN    (-1)
28
29 struct pci_bus_entry {
30         struct list_head list;
31         struct pci_bus *bus;
32 };
33
34 #define _PDEVB_op_active                (0)
35 #define PDEVB_op_active                 (1 << (_PDEVB_op_active))
36
37 struct pcifront_device {
38         struct xenbus_device *xdev;
39         struct list_head root_buses;
40
41         int evtchn;
42         int gnt_ref;
43
44         int irq;
45
46         /* Lock this when doing any operations in sh_info */
47         spinlock_t sh_info_lock;
48         struct xen_pci_sharedinfo *sh_info;
49         struct work_struct op_work;
50         unsigned long flags;
51
52 };
53
54 struct pcifront_sd {
55         int domain;
56         struct pcifront_device *pdev;
57 };
58
59 static inline struct pcifront_device *
60 pcifront_get_pdev(struct pcifront_sd *sd)
61 {
62         return sd->pdev;
63 }
64
65 static inline void pcifront_init_sd(struct pcifront_sd *sd,
66                                     unsigned int domain, unsigned int bus,
67                                     struct pcifront_device *pdev)
68 {
69         sd->domain = domain;
70         sd->pdev = pdev;
71 }
72
73 static DEFINE_SPINLOCK(pcifront_dev_lock);
74 static struct pcifront_device *pcifront_dev;
75
76 static int verbose_request;
77 module_param(verbose_request, int, 0644);
78
79 static int errno_to_pcibios_err(int errno)
80 {
81         switch (errno) {
82         case XEN_PCI_ERR_success:
83                 return PCIBIOS_SUCCESSFUL;
84
85         case XEN_PCI_ERR_dev_not_found:
86                 return PCIBIOS_DEVICE_NOT_FOUND;
87
88         case XEN_PCI_ERR_invalid_offset:
89         case XEN_PCI_ERR_op_failed:
90                 return PCIBIOS_BAD_REGISTER_NUMBER;
91
92         case XEN_PCI_ERR_not_implemented:
93                 return PCIBIOS_FUNC_NOT_SUPPORTED;
94
95         case XEN_PCI_ERR_access_denied:
96                 return PCIBIOS_SET_FAILED;
97         }
98         return errno;
99 }
100
101 static inline void schedule_pcifront_aer_op(struct pcifront_device *pdev)
102 {
103         if (test_bit(_XEN_PCIB_active, (unsigned long *)&pdev->sh_info->flags)
104                 && !test_and_set_bit(_PDEVB_op_active, &pdev->flags)) {
105                 dev_dbg(&pdev->xdev->dev, "schedule aer frontend job\n");
106                 schedule_work(&pdev->op_work);
107         }
108 }
109
110 static int do_pci_op(struct pcifront_device *pdev, struct xen_pci_op *op)
111 {
112         int err = 0;
113         struct xen_pci_op *active_op = &pdev->sh_info->op;
114         unsigned long irq_flags;
115         evtchn_port_t port = pdev->evtchn;
116         unsigned irq = pdev->irq;
117         s64 ns, ns_timeout;
118         struct timeval tv;
119
120         spin_lock_irqsave(&pdev->sh_info_lock, irq_flags);
121
122         memcpy(active_op, op, sizeof(struct xen_pci_op));
123
124         /* Go */
125         wmb();
126         set_bit(_XEN_PCIF_active, (unsigned long *)&pdev->sh_info->flags);
127         notify_remote_via_evtchn(port);
128
129         /*
130          * We set a poll timeout of 3 seconds but give up on return after
131          * 2 seconds. It is better to time out too late rather than too early
132          * (in the latter case we end up continually re-executing poll() with a
133          * timeout in the past). 1s difference gives plenty of slack for error.
134          */
135         do_gettimeofday(&tv);
136         ns_timeout = timeval_to_ns(&tv) + 2 * (s64)NSEC_PER_SEC;
137
138         xen_clear_irq_pending(irq);
139
140         while (test_bit(_XEN_PCIF_active,
141                         (unsigned long *)&pdev->sh_info->flags)) {
142                 xen_poll_irq_timeout(irq, jiffies + 3*HZ);
143                 xen_clear_irq_pending(irq);
144                 do_gettimeofday(&tv);
145                 ns = timeval_to_ns(&tv);
146                 if (ns > ns_timeout) {
147                         dev_err(&pdev->xdev->dev,
148                                 "pciback not responding!!!\n");
149                         clear_bit(_XEN_PCIF_active,
150                                   (unsigned long *)&pdev->sh_info->flags);
151                         err = XEN_PCI_ERR_dev_not_found;
152                         goto out;
153                 }
154         }
155
156         /*
157         * We might lose backend service request since we
158         * reuse same evtchn with pci_conf backend response. So re-schedule
159         * aer pcifront service.
160         */
161         if (test_bit(_XEN_PCIB_active,
162                         (unsigned long *)&pdev->sh_info->flags)) {
163                 dev_err(&pdev->xdev->dev,
164                         "schedule aer pcifront service\n");
165                 schedule_pcifront_aer_op(pdev);
166         }
167
168         memcpy(op, active_op, sizeof(struct xen_pci_op));
169
170         err = op->err;
171 out:
172         spin_unlock_irqrestore(&pdev->sh_info_lock, irq_flags);
173         return err;
174 }
175
176 /* Access to this function is spinlocked in drivers/pci/access.c */
177 static int pcifront_bus_read(struct pci_bus *bus, unsigned int devfn,
178                              int where, int size, u32 *val)
179 {
180         int err = 0;
181         struct xen_pci_op op = {
182                 .cmd    = XEN_PCI_OP_conf_read,
183                 .domain = pci_domain_nr(bus),
184                 .bus    = bus->number,
185                 .devfn  = devfn,
186                 .offset = where,
187                 .size   = size,
188         };
189         struct pcifront_sd *sd = bus->sysdata;
190         struct pcifront_device *pdev = pcifront_get_pdev(sd);
191
192         if (verbose_request)
193                 dev_info(&pdev->xdev->dev,
194                          "read dev=%04x:%02x:%02x.%d - offset %x size %d\n",
195                          pci_domain_nr(bus), bus->number, PCI_SLOT(devfn),
196                          PCI_FUNC(devfn), where, size);
197
198         err = do_pci_op(pdev, &op);
199
200         if (likely(!err)) {
201                 if (verbose_request)
202                         dev_info(&pdev->xdev->dev, "read got back value %x\n",
203                                  op.value);
204
205                 *val = op.value;
206         } else if (err == -ENODEV) {
207                 /* No device here, pretend that it just returned 0 */
208                 err = 0;
209                 *val = 0;
210         }
211
212         return errno_to_pcibios_err(err);
213 }
214
215 /* Access to this function is spinlocked in drivers/pci/access.c */
216 static int pcifront_bus_write(struct pci_bus *bus, unsigned int devfn,
217                               int where, int size, u32 val)
218 {
219         struct xen_pci_op op = {
220                 .cmd    = XEN_PCI_OP_conf_write,
221                 .domain = pci_domain_nr(bus),
222                 .bus    = bus->number,
223                 .devfn  = devfn,
224                 .offset = where,
225                 .size   = size,
226                 .value  = val,
227         };
228         struct pcifront_sd *sd = bus->sysdata;
229         struct pcifront_device *pdev = pcifront_get_pdev(sd);
230
231         if (verbose_request)
232                 dev_info(&pdev->xdev->dev,
233                          "write dev=%04x:%02x:%02x.%d - "
234                          "offset %x size %d val %x\n",
235                          pci_domain_nr(bus), bus->number,
236                          PCI_SLOT(devfn), PCI_FUNC(devfn), where, size, val);
237
238         return errno_to_pcibios_err(do_pci_op(pdev, &op));
239 }
240
241 static struct pci_ops pcifront_bus_ops = {
242         .read = pcifront_bus_read,
243         .write = pcifront_bus_write,
244 };
245
246 #ifdef CONFIG_PCI_MSI
247 static int pci_frontend_enable_msix(struct pci_dev *dev,
248                                     int vector[], int nvec)
249 {
250         int err;
251         int i;
252         struct xen_pci_op op = {
253                 .cmd    = XEN_PCI_OP_enable_msix,
254                 .domain = pci_domain_nr(dev->bus),
255                 .bus = dev->bus->number,
256                 .devfn = dev->devfn,
257                 .value = nvec,
258         };
259         struct pcifront_sd *sd = dev->bus->sysdata;
260         struct pcifront_device *pdev = pcifront_get_pdev(sd);
261         struct msi_desc *entry;
262
263         if (nvec > SH_INFO_MAX_VEC) {
264                 dev_err(&dev->dev, "too much vector for pci frontend: %x."
265                                    " Increase SH_INFO_MAX_VEC.\n", nvec);
266                 return -EINVAL;
267         }
268
269         i = 0;
270         list_for_each_entry(entry, &dev->msi_list, list) {
271                 op.msix_entries[i].entry = entry->msi_attrib.entry_nr;
272                 /* Vector is useless at this point. */
273                 op.msix_entries[i].vector = -1;
274                 i++;
275         }
276
277         err = do_pci_op(pdev, &op);
278
279         if (likely(!err)) {
280                 if (likely(!op.value)) {
281                         /* we get the result */
282                         for (i = 0; i < nvec; i++) {
283                                 if (op.msix_entries[i].vector <= 0) {
284                                         dev_warn(&dev->dev, "MSI-X entry %d is invalid: %d!\n",
285                                                 i, op.msix_entries[i].vector);
286                                         err = -EINVAL;
287                                         vector[i] = -1;
288                                         continue;
289                                 }
290                                 vector[i] = op.msix_entries[i].vector;
291                         }
292                 } else {
293                         printk(KERN_DEBUG "enable msix get value %x\n",
294                                 op.value);
295                         err = op.value;
296                 }
297         } else {
298                 dev_err(&dev->dev, "enable msix get err %x\n", err);
299         }
300         return err;
301 }
302
303 static void pci_frontend_disable_msix(struct pci_dev *dev)
304 {
305         int err;
306         struct xen_pci_op op = {
307                 .cmd    = XEN_PCI_OP_disable_msix,
308                 .domain = pci_domain_nr(dev->bus),
309                 .bus = dev->bus->number,
310                 .devfn = dev->devfn,
311         };
312         struct pcifront_sd *sd = dev->bus->sysdata;
313         struct pcifront_device *pdev = pcifront_get_pdev(sd);
314
315         err = do_pci_op(pdev, &op);
316
317         /* What should do for error ? */
318         if (err)
319                 dev_err(&dev->dev, "pci_disable_msix get err %x\n", err);
320 }
321
322 static int pci_frontend_enable_msi(struct pci_dev *dev, int vector[])
323 {
324         int err;
325         struct xen_pci_op op = {
326                 .cmd    = XEN_PCI_OP_enable_msi,
327                 .domain = pci_domain_nr(dev->bus),
328                 .bus = dev->bus->number,
329                 .devfn = dev->devfn,
330         };
331         struct pcifront_sd *sd = dev->bus->sysdata;
332         struct pcifront_device *pdev = pcifront_get_pdev(sd);
333
334         err = do_pci_op(pdev, &op);
335         if (likely(!err)) {
336                 vector[0] = op.value;
337                 if (op.value <= 0) {
338                         dev_warn(&dev->dev, "MSI entry is invalid: %d!\n",
339                                 op.value);
340                         err = -EINVAL;
341                         vector[0] = -1;
342                 }
343         } else {
344                 dev_err(&dev->dev, "pci frontend enable msi failed for dev "
345                                     "%x:%x\n", op.bus, op.devfn);
346                 err = -EINVAL;
347         }
348         return err;
349 }
350
351 static void pci_frontend_disable_msi(struct pci_dev *dev)
352 {
353         int err;
354         struct xen_pci_op op = {
355                 .cmd    = XEN_PCI_OP_disable_msi,
356                 .domain = pci_domain_nr(dev->bus),
357                 .bus = dev->bus->number,
358                 .devfn = dev->devfn,
359         };
360         struct pcifront_sd *sd = dev->bus->sysdata;
361         struct pcifront_device *pdev = pcifront_get_pdev(sd);
362
363         err = do_pci_op(pdev, &op);
364         if (err == XEN_PCI_ERR_dev_not_found) {
365                 /* XXX No response from backend, what shall we do? */
366                 printk(KERN_DEBUG "get no response from backend for disable MSI\n");
367                 return;
368         }
369         if (err)
370                 /* how can pciback notify us fail? */
371                 printk(KERN_DEBUG "get fake response frombackend\n");
372 }
373
374 static struct xen_pci_frontend_ops pci_frontend_ops = {
375         .enable_msi = pci_frontend_enable_msi,
376         .disable_msi = pci_frontend_disable_msi,
377         .enable_msix = pci_frontend_enable_msix,
378         .disable_msix = pci_frontend_disable_msix,
379 };
380
381 static void pci_frontend_registrar(int enable)
382 {
383         if (enable)
384                 xen_pci_frontend = &pci_frontend_ops;
385         else
386                 xen_pci_frontend = NULL;
387 };
388 #else
389 static inline void pci_frontend_registrar(int enable) { };
390 #endif /* CONFIG_PCI_MSI */
391
392 /* Claim resources for the PCI frontend as-is, backend won't allow changes */
393 static int pcifront_claim_resource(struct pci_dev *dev, void *data)
394 {
395         struct pcifront_device *pdev = data;
396         int i;
397         struct resource *r;
398
399         for (i = 0; i < PCI_NUM_RESOURCES; i++) {
400                 r = &dev->resource[i];
401
402                 if (!r->parent && r->start && r->flags) {
403                         dev_info(&pdev->xdev->dev, "claiming resource %s/%d\n",
404                                 pci_name(dev), i);
405                         if (pci_claim_resource(dev, i)) {
406                                 dev_err(&pdev->xdev->dev, "Could not claim resource %s/%d! "
407                                         "Device offline. Try using e820_host=1 in the guest config.\n",
408                                         pci_name(dev), i);
409                         }
410                 }
411         }
412
413         return 0;
414 }
415
416 static int pcifront_scan_bus(struct pcifront_device *pdev,
417                                 unsigned int domain, unsigned int bus,
418                                 struct pci_bus *b)
419 {
420         struct pci_dev *d;
421         unsigned int devfn;
422
423         /* Scan the bus for functions and add.
424          * We omit handling of PCI bridge attachment because pciback prevents
425          * bridges from being exported.
426          */
427         for (devfn = 0; devfn < 0x100; devfn++) {
428                 d = pci_get_slot(b, devfn);
429                 if (d) {
430                         /* Device is already known. */
431                         pci_dev_put(d);
432                         continue;
433                 }
434
435                 d = pci_scan_single_device(b, devfn);
436                 if (d)
437                         dev_info(&pdev->xdev->dev, "New device on "
438                                  "%04x:%02x:%02x.%d found.\n", domain, bus,
439                                  PCI_SLOT(devfn), PCI_FUNC(devfn));
440         }
441
442         return 0;
443 }
444
445 static int pcifront_scan_root(struct pcifront_device *pdev,
446                                  unsigned int domain, unsigned int bus)
447 {
448         struct pci_bus *b;
449         struct pcifront_sd *sd = NULL;
450         struct pci_bus_entry *bus_entry = NULL;
451         int err = 0;
452
453 #ifndef CONFIG_PCI_DOMAINS
454         if (domain != 0) {
455                 dev_err(&pdev->xdev->dev,
456                         "PCI Root in non-zero PCI Domain! domain=%d\n", domain);
457                 dev_err(&pdev->xdev->dev,
458                         "Please compile with CONFIG_PCI_DOMAINS\n");
459                 err = -EINVAL;
460                 goto err_out;
461         }
462 #endif
463
464         dev_info(&pdev->xdev->dev, "Creating PCI Frontend Bus %04x:%02x\n",
465                  domain, bus);
466
467         bus_entry = kmalloc(sizeof(*bus_entry), GFP_KERNEL);
468         sd = kmalloc(sizeof(*sd), GFP_KERNEL);
469         if (!bus_entry || !sd) {
470                 err = -ENOMEM;
471                 goto err_out;
472         }
473         pcifront_init_sd(sd, domain, bus, pdev);
474
475         pci_lock_rescan_remove();
476
477         b = pci_scan_bus_parented(&pdev->xdev->dev, bus,
478                                   &pcifront_bus_ops, sd);
479         if (!b) {
480                 dev_err(&pdev->xdev->dev,
481                         "Error creating PCI Frontend Bus!\n");
482                 err = -ENOMEM;
483                 pci_unlock_rescan_remove();
484                 goto err_out;
485         }
486
487         bus_entry->bus = b;
488
489         list_add(&bus_entry->list, &pdev->root_buses);
490
491         /* pci_scan_bus_parented skips devices which do not have a have
492         * devfn==0. The pcifront_scan_bus enumerates all devfn. */
493         err = pcifront_scan_bus(pdev, domain, bus, b);
494
495         /* Claim resources before going "live" with our devices */
496         pci_walk_bus(b, pcifront_claim_resource, pdev);
497
498         /* Create SysFS and notify udev of the devices. Aka: "going live" */
499         pci_bus_add_devices(b);
500
501         pci_unlock_rescan_remove();
502         return err;
503
504 err_out:
505         kfree(bus_entry);
506         kfree(sd);
507
508         return err;
509 }
510
511 static int pcifront_rescan_root(struct pcifront_device *pdev,
512                                    unsigned int domain, unsigned int bus)
513 {
514         int err;
515         struct pci_bus *b;
516
517 #ifndef CONFIG_PCI_DOMAINS
518         if (domain != 0) {
519                 dev_err(&pdev->xdev->dev,
520                         "PCI Root in non-zero PCI Domain! domain=%d\n", domain);
521                 dev_err(&pdev->xdev->dev,
522                         "Please compile with CONFIG_PCI_DOMAINS\n");
523                 return -EINVAL;
524         }
525 #endif
526
527         dev_info(&pdev->xdev->dev, "Rescanning PCI Frontend Bus %04x:%02x\n",
528                  domain, bus);
529
530         b = pci_find_bus(domain, bus);
531         if (!b)
532                 /* If the bus is unknown, create it. */
533                 return pcifront_scan_root(pdev, domain, bus);
534
535         err = pcifront_scan_bus(pdev, domain, bus, b);
536
537         /* Claim resources before going "live" with our devices */
538         pci_walk_bus(b, pcifront_claim_resource, pdev);
539
540         /* Create SysFS and notify udev of the devices. Aka: "going live" */
541         pci_bus_add_devices(b);
542
543         return err;
544 }
545
546 static void free_root_bus_devs(struct pci_bus *bus)
547 {
548         struct pci_dev *dev;
549
550         while (!list_empty(&bus->devices)) {
551                 dev = container_of(bus->devices.next, struct pci_dev,
552                                    bus_list);
553                 dev_dbg(&dev->dev, "removing device\n");
554                 pci_stop_and_remove_bus_device(dev);
555         }
556 }
557
558 static void pcifront_free_roots(struct pcifront_device *pdev)
559 {
560         struct pci_bus_entry *bus_entry, *t;
561
562         dev_dbg(&pdev->xdev->dev, "cleaning up root buses\n");
563
564         pci_lock_rescan_remove();
565         list_for_each_entry_safe(bus_entry, t, &pdev->root_buses, list) {
566                 list_del(&bus_entry->list);
567
568                 free_root_bus_devs(bus_entry->bus);
569
570                 kfree(bus_entry->bus->sysdata);
571
572                 device_unregister(bus_entry->bus->bridge);
573                 pci_remove_bus(bus_entry->bus);
574
575                 kfree(bus_entry);
576         }
577         pci_unlock_rescan_remove();
578 }
579
580 static pci_ers_result_t pcifront_common_process(int cmd,
581                                                 struct pcifront_device *pdev,
582                                                 pci_channel_state_t state)
583 {
584         pci_ers_result_t result;
585         struct pci_driver *pdrv;
586         int bus = pdev->sh_info->aer_op.bus;
587         int devfn = pdev->sh_info->aer_op.devfn;
588         struct pci_dev *pcidev;
589         int flag = 0;
590
591         dev_dbg(&pdev->xdev->dev,
592                 "pcifront AER process: cmd %x (bus:%x, devfn%x)",
593                 cmd, bus, devfn);
594         result = PCI_ERS_RESULT_NONE;
595
596         pcidev = pci_get_bus_and_slot(bus, devfn);
597         if (!pcidev || !pcidev->driver) {
598                 dev_err(&pdev->xdev->dev, "device or AER driver is NULL\n");
599                 pci_dev_put(pcidev);
600                 return result;
601         }
602         pdrv = pcidev->driver;
603
604         if (pdrv) {
605                 if (pdrv->err_handler && pdrv->err_handler->error_detected) {
606                         dev_dbg(&pcidev->dev,
607                                 "trying to call AER service\n");
608                         if (pcidev) {
609                                 flag = 1;
610                                 switch (cmd) {
611                                 case XEN_PCI_OP_aer_detected:
612                                         result = pdrv->err_handler->
613                                                  error_detected(pcidev, state);
614                                         break;
615                                 case XEN_PCI_OP_aer_mmio:
616                                         result = pdrv->err_handler->
617                                                  mmio_enabled(pcidev);
618                                         break;
619                                 case XEN_PCI_OP_aer_slotreset:
620                                         result = pdrv->err_handler->
621                                                  slot_reset(pcidev);
622                                         break;
623                                 case XEN_PCI_OP_aer_resume:
624                                         pdrv->err_handler->resume(pcidev);
625                                         break;
626                                 default:
627                                         dev_err(&pdev->xdev->dev,
628                                                 "bad request in aer recovery "
629                                                 "operation!\n");
630
631                                 }
632                         }
633                 }
634         }
635         if (!flag)
636                 result = PCI_ERS_RESULT_NONE;
637
638         return result;
639 }
640
641
642 static void pcifront_do_aer(struct work_struct *data)
643 {
644         struct pcifront_device *pdev =
645                 container_of(data, struct pcifront_device, op_work);
646         int cmd = pdev->sh_info->aer_op.cmd;
647         pci_channel_state_t state =
648                 (pci_channel_state_t)pdev->sh_info->aer_op.err;
649
650         /*If a pci_conf op is in progress,
651                 we have to wait until it is done before service aer op*/
652         dev_dbg(&pdev->xdev->dev,
653                 "pcifront service aer bus %x devfn %x\n",
654                 pdev->sh_info->aer_op.bus, pdev->sh_info->aer_op.devfn);
655
656         pdev->sh_info->aer_op.err = pcifront_common_process(cmd, pdev, state);
657
658         /* Post the operation to the guest. */
659         wmb();
660         clear_bit(_XEN_PCIB_active, (unsigned long *)&pdev->sh_info->flags);
661         notify_remote_via_evtchn(pdev->evtchn);
662
663         /*in case of we lost an aer request in four lines time_window*/
664         smp_mb__before_atomic();
665         clear_bit(_PDEVB_op_active, &pdev->flags);
666         smp_mb__after_atomic();
667
668         schedule_pcifront_aer_op(pdev);
669
670 }
671
672 static irqreturn_t pcifront_handler_aer(int irq, void *dev)
673 {
674         struct pcifront_device *pdev = dev;
675         schedule_pcifront_aer_op(pdev);
676         return IRQ_HANDLED;
677 }
678 static int pcifront_connect_and_init_dma(struct pcifront_device *pdev)
679 {
680         int err = 0;
681
682         spin_lock(&pcifront_dev_lock);
683
684         if (!pcifront_dev) {
685                 dev_info(&pdev->xdev->dev, "Installing PCI frontend\n");
686                 pcifront_dev = pdev;
687         } else
688                 err = -EEXIST;
689
690         spin_unlock(&pcifront_dev_lock);
691
692         if (!err && !swiotlb_nr_tbl()) {
693                 err = pci_xen_swiotlb_init_late();
694                 if (err)
695                         dev_err(&pdev->xdev->dev, "Could not setup SWIOTLB!\n");
696         }
697         return err;
698 }
699
700 static void pcifront_disconnect(struct pcifront_device *pdev)
701 {
702         spin_lock(&pcifront_dev_lock);
703
704         if (pdev == pcifront_dev) {
705                 dev_info(&pdev->xdev->dev,
706                          "Disconnecting PCI Frontend Buses\n");
707                 pcifront_dev = NULL;
708         }
709
710         spin_unlock(&pcifront_dev_lock);
711 }
712 static struct pcifront_device *alloc_pdev(struct xenbus_device *xdev)
713 {
714         struct pcifront_device *pdev;
715
716         pdev = kzalloc(sizeof(struct pcifront_device), GFP_KERNEL);
717         if (pdev == NULL)
718                 goto out;
719
720         pdev->sh_info =
721             (struct xen_pci_sharedinfo *)__get_free_page(GFP_KERNEL);
722         if (pdev->sh_info == NULL) {
723                 kfree(pdev);
724                 pdev = NULL;
725                 goto out;
726         }
727         pdev->sh_info->flags = 0;
728
729         /*Flag for registering PV AER handler*/
730         set_bit(_XEN_PCIB_AERHANDLER, (void *)&pdev->sh_info->flags);
731
732         dev_set_drvdata(&xdev->dev, pdev);
733         pdev->xdev = xdev;
734
735         INIT_LIST_HEAD(&pdev->root_buses);
736
737         spin_lock_init(&pdev->sh_info_lock);
738
739         pdev->evtchn = INVALID_EVTCHN;
740         pdev->gnt_ref = INVALID_GRANT_REF;
741         pdev->irq = -1;
742
743         INIT_WORK(&pdev->op_work, pcifront_do_aer);
744
745         dev_dbg(&xdev->dev, "Allocated pdev @ 0x%p pdev->sh_info @ 0x%p\n",
746                 pdev, pdev->sh_info);
747 out:
748         return pdev;
749 }
750
751 static void free_pdev(struct pcifront_device *pdev)
752 {
753         dev_dbg(&pdev->xdev->dev, "freeing pdev @ 0x%p\n", pdev);
754
755         pcifront_free_roots(pdev);
756
757         cancel_work_sync(&pdev->op_work);
758
759         if (pdev->irq >= 0)
760                 unbind_from_irqhandler(pdev->irq, pdev);
761
762         if (pdev->evtchn != INVALID_EVTCHN)
763                 xenbus_free_evtchn(pdev->xdev, pdev->evtchn);
764
765         if (pdev->gnt_ref != INVALID_GRANT_REF)
766                 gnttab_end_foreign_access(pdev->gnt_ref, 0 /* r/w page */,
767                                           (unsigned long)pdev->sh_info);
768         else
769                 free_page((unsigned long)pdev->sh_info);
770
771         dev_set_drvdata(&pdev->xdev->dev, NULL);
772
773         kfree(pdev);
774 }
775
776 static int pcifront_publish_info(struct pcifront_device *pdev)
777 {
778         int err = 0;
779         struct xenbus_transaction trans;
780
781         err = xenbus_grant_ring(pdev->xdev, virt_to_mfn(pdev->sh_info));
782         if (err < 0)
783                 goto out;
784
785         pdev->gnt_ref = err;
786
787         err = xenbus_alloc_evtchn(pdev->xdev, &pdev->evtchn);
788         if (err)
789                 goto out;
790
791         err = bind_evtchn_to_irqhandler(pdev->evtchn, pcifront_handler_aer,
792                 0, "pcifront", pdev);
793
794         if (err < 0)
795                 return err;
796
797         pdev->irq = err;
798
799 do_publish:
800         err = xenbus_transaction_start(&trans);
801         if (err) {
802                 xenbus_dev_fatal(pdev->xdev, err,
803                                  "Error writing configuration for backend "
804                                  "(start transaction)");
805                 goto out;
806         }
807
808         err = xenbus_printf(trans, pdev->xdev->nodename,
809                             "pci-op-ref", "%u", pdev->gnt_ref);
810         if (!err)
811                 err = xenbus_printf(trans, pdev->xdev->nodename,
812                                     "event-channel", "%u", pdev->evtchn);
813         if (!err)
814                 err = xenbus_printf(trans, pdev->xdev->nodename,
815                                     "magic", XEN_PCI_MAGIC);
816
817         if (err) {
818                 xenbus_transaction_end(trans, 1);
819                 xenbus_dev_fatal(pdev->xdev, err,
820                                  "Error writing configuration for backend");
821                 goto out;
822         } else {
823                 err = xenbus_transaction_end(trans, 0);
824                 if (err == -EAGAIN)
825                         goto do_publish;
826                 else if (err) {
827                         xenbus_dev_fatal(pdev->xdev, err,
828                                          "Error completing transaction "
829                                          "for backend");
830                         goto out;
831                 }
832         }
833
834         xenbus_switch_state(pdev->xdev, XenbusStateInitialised);
835
836         dev_dbg(&pdev->xdev->dev, "publishing successful!\n");
837
838 out:
839         return err;
840 }
841
842 static int pcifront_try_connect(struct pcifront_device *pdev)
843 {
844         int err = -EFAULT;
845         int i, num_roots, len;
846         char str[64];
847         unsigned int domain, bus;
848
849
850         /* Only connect once */
851         if (xenbus_read_driver_state(pdev->xdev->nodename) !=
852             XenbusStateInitialised)
853                 goto out;
854
855         err = pcifront_connect_and_init_dma(pdev);
856         if (err && err != -EEXIST) {
857                 xenbus_dev_fatal(pdev->xdev, err,
858                                  "Error setting up PCI Frontend");
859                 goto out;
860         }
861
862         err = xenbus_scanf(XBT_NIL, pdev->xdev->otherend,
863                            "root_num", "%d", &num_roots);
864         if (err == -ENOENT) {
865                 xenbus_dev_error(pdev->xdev, err,
866                                  "No PCI Roots found, trying 0000:00");
867                 err = pcifront_scan_root(pdev, 0, 0);
868                 if (err) {
869                         xenbus_dev_fatal(pdev->xdev, err,
870                                          "Error scanning PCI root 0000:00");
871                         goto out;
872                 }
873                 num_roots = 0;
874         } else if (err != 1) {
875                 if (err == 0)
876                         err = -EINVAL;
877                 xenbus_dev_fatal(pdev->xdev, err,
878                                  "Error reading number of PCI roots");
879                 goto out;
880         }
881
882         for (i = 0; i < num_roots; i++) {
883                 len = snprintf(str, sizeof(str), "root-%d", i);
884                 if (unlikely(len >= (sizeof(str) - 1))) {
885                         err = -ENOMEM;
886                         goto out;
887                 }
888
889                 err = xenbus_scanf(XBT_NIL, pdev->xdev->otherend, str,
890                                    "%x:%x", &domain, &bus);
891                 if (err != 2) {
892                         if (err >= 0)
893                                 err = -EINVAL;
894                         xenbus_dev_fatal(pdev->xdev, err,
895                                          "Error reading PCI root %d", i);
896                         goto out;
897                 }
898
899                 err = pcifront_scan_root(pdev, domain, bus);
900                 if (err) {
901                         xenbus_dev_fatal(pdev->xdev, err,
902                                          "Error scanning PCI root %04x:%02x",
903                                          domain, bus);
904                         goto out;
905                 }
906         }
907
908         err = xenbus_switch_state(pdev->xdev, XenbusStateConnected);
909
910 out:
911         return err;
912 }
913
914 static int pcifront_try_disconnect(struct pcifront_device *pdev)
915 {
916         int err = 0;
917         enum xenbus_state prev_state;
918
919
920         prev_state = xenbus_read_driver_state(pdev->xdev->nodename);
921
922         if (prev_state >= XenbusStateClosing)
923                 goto out;
924
925         if (prev_state == XenbusStateConnected) {
926                 pcifront_free_roots(pdev);
927                 pcifront_disconnect(pdev);
928         }
929
930         err = xenbus_switch_state(pdev->xdev, XenbusStateClosed);
931
932 out:
933
934         return err;
935 }
936
937 static int pcifront_attach_devices(struct pcifront_device *pdev)
938 {
939         int err = -EFAULT;
940         int i, num_roots, len;
941         unsigned int domain, bus;
942         char str[64];
943
944         if (xenbus_read_driver_state(pdev->xdev->nodename) !=
945             XenbusStateReconfiguring)
946                 goto out;
947
948         err = xenbus_scanf(XBT_NIL, pdev->xdev->otherend,
949                            "root_num", "%d", &num_roots);
950         if (err == -ENOENT) {
951                 xenbus_dev_error(pdev->xdev, err,
952                                  "No PCI Roots found, trying 0000:00");
953                 err = pcifront_rescan_root(pdev, 0, 0);
954                 if (err) {
955                         xenbus_dev_fatal(pdev->xdev, err,
956                                          "Error scanning PCI root 0000:00");
957                         goto out;
958                 }
959                 num_roots = 0;
960         } else if (err != 1) {
961                 if (err == 0)
962                         err = -EINVAL;
963                 xenbus_dev_fatal(pdev->xdev, err,
964                                  "Error reading number of PCI roots");
965                 goto out;
966         }
967
968         for (i = 0; i < num_roots; i++) {
969                 len = snprintf(str, sizeof(str), "root-%d", i);
970                 if (unlikely(len >= (sizeof(str) - 1))) {
971                         err = -ENOMEM;
972                         goto out;
973                 }
974
975                 err = xenbus_scanf(XBT_NIL, pdev->xdev->otherend, str,
976                                    "%x:%x", &domain, &bus);
977                 if (err != 2) {
978                         if (err >= 0)
979                                 err = -EINVAL;
980                         xenbus_dev_fatal(pdev->xdev, err,
981                                          "Error reading PCI root %d", i);
982                         goto out;
983                 }
984
985                 err = pcifront_rescan_root(pdev, domain, bus);
986                 if (err) {
987                         xenbus_dev_fatal(pdev->xdev, err,
988                                          "Error scanning PCI root %04x:%02x",
989                                          domain, bus);
990                         goto out;
991                 }
992         }
993
994         xenbus_switch_state(pdev->xdev, XenbusStateConnected);
995
996 out:
997         return err;
998 }
999
1000 static int pcifront_detach_devices(struct pcifront_device *pdev)
1001 {
1002         int err = 0;
1003         int i, num_devs;
1004         unsigned int domain, bus, slot, func;
1005         struct pci_dev *pci_dev;
1006         char str[64];
1007
1008         if (xenbus_read_driver_state(pdev->xdev->nodename) !=
1009             XenbusStateConnected)
1010                 goto out;
1011
1012         err = xenbus_scanf(XBT_NIL, pdev->xdev->otherend, "num_devs", "%d",
1013                            &num_devs);
1014         if (err != 1) {
1015                 if (err >= 0)
1016                         err = -EINVAL;
1017                 xenbus_dev_fatal(pdev->xdev, err,
1018                                  "Error reading number of PCI devices");
1019                 goto out;
1020         }
1021
1022         /* Find devices being detached and remove them. */
1023         for (i = 0; i < num_devs; i++) {
1024                 int l, state;
1025                 l = snprintf(str, sizeof(str), "state-%d", i);
1026                 if (unlikely(l >= (sizeof(str) - 1))) {
1027                         err = -ENOMEM;
1028                         goto out;
1029                 }
1030                 err = xenbus_scanf(XBT_NIL, pdev->xdev->otherend, str, "%d",
1031                                    &state);
1032                 if (err != 1)
1033                         state = XenbusStateUnknown;
1034
1035                 if (state != XenbusStateClosing)
1036                         continue;
1037
1038                 /* Remove device. */
1039                 l = snprintf(str, sizeof(str), "vdev-%d", i);
1040                 if (unlikely(l >= (sizeof(str) - 1))) {
1041                         err = -ENOMEM;
1042                         goto out;
1043                 }
1044                 err = xenbus_scanf(XBT_NIL, pdev->xdev->otherend, str,
1045                                    "%x:%x:%x.%x", &domain, &bus, &slot, &func);
1046                 if (err != 4) {
1047                         if (err >= 0)
1048                                 err = -EINVAL;
1049                         xenbus_dev_fatal(pdev->xdev, err,
1050                                          "Error reading PCI device %d", i);
1051                         goto out;
1052                 }
1053
1054                 pci_dev = pci_get_domain_bus_and_slot(domain, bus,
1055                                 PCI_DEVFN(slot, func));
1056                 if (!pci_dev) {
1057                         dev_dbg(&pdev->xdev->dev,
1058                                 "Cannot get PCI device %04x:%02x:%02x.%d\n",
1059                                 domain, bus, slot, func);
1060                         continue;
1061                 }
1062                 pci_lock_rescan_remove();
1063                 pci_stop_and_remove_bus_device(pci_dev);
1064                 pci_dev_put(pci_dev);
1065                 pci_unlock_rescan_remove();
1066
1067                 dev_dbg(&pdev->xdev->dev,
1068                         "PCI device %04x:%02x:%02x.%d removed.\n",
1069                         domain, bus, slot, func);
1070         }
1071
1072         err = xenbus_switch_state(pdev->xdev, XenbusStateReconfiguring);
1073
1074 out:
1075         return err;
1076 }
1077
1078 static void __init_refok pcifront_backend_changed(struct xenbus_device *xdev,
1079                                                   enum xenbus_state be_state)
1080 {
1081         struct pcifront_device *pdev = dev_get_drvdata(&xdev->dev);
1082
1083         switch (be_state) {
1084         case XenbusStateUnknown:
1085         case XenbusStateInitialising:
1086         case XenbusStateInitWait:
1087         case XenbusStateInitialised:
1088                 break;
1089
1090         case XenbusStateConnected:
1091                 pcifront_try_connect(pdev);
1092                 break;
1093
1094         case XenbusStateClosed:
1095                 if (xdev->state == XenbusStateClosed)
1096                         break;
1097                 /* Missed the backend's CLOSING state -- fallthrough */
1098         case XenbusStateClosing:
1099                 dev_warn(&xdev->dev, "backend going away!\n");
1100                 pcifront_try_disconnect(pdev);
1101                 break;
1102
1103         case XenbusStateReconfiguring:
1104                 pcifront_detach_devices(pdev);
1105                 break;
1106
1107         case XenbusStateReconfigured:
1108                 pcifront_attach_devices(pdev);
1109                 break;
1110         }
1111 }
1112
1113 static int pcifront_xenbus_probe(struct xenbus_device *xdev,
1114                                  const struct xenbus_device_id *id)
1115 {
1116         int err = 0;
1117         struct pcifront_device *pdev = alloc_pdev(xdev);
1118
1119         if (pdev == NULL) {
1120                 err = -ENOMEM;
1121                 xenbus_dev_fatal(xdev, err,
1122                                  "Error allocating pcifront_device struct");
1123                 goto out;
1124         }
1125
1126         err = pcifront_publish_info(pdev);
1127         if (err)
1128                 free_pdev(pdev);
1129
1130 out:
1131         return err;
1132 }
1133
1134 static int pcifront_xenbus_remove(struct xenbus_device *xdev)
1135 {
1136         struct pcifront_device *pdev = dev_get_drvdata(&xdev->dev);
1137         if (pdev)
1138                 free_pdev(pdev);
1139
1140         return 0;
1141 }
1142
1143 static const struct xenbus_device_id xenpci_ids[] = {
1144         {"pci"},
1145         {""},
1146 };
1147
1148 static struct xenbus_driver xenpci_driver = {
1149         .name                   = "pcifront",
1150         .ids                    = xenpci_ids,
1151         .probe                  = pcifront_xenbus_probe,
1152         .remove                 = pcifront_xenbus_remove,
1153         .otherend_changed       = pcifront_backend_changed,
1154 };
1155
1156 static int __init pcifront_init(void)
1157 {
1158         if (!xen_pv_domain() || xen_initial_domain())
1159                 return -ENODEV;
1160
1161         if (!xen_has_pv_devices())
1162                 return -ENODEV;
1163
1164         pci_frontend_registrar(1 /* enable */);
1165
1166         return xenbus_register_frontend(&xenpci_driver);
1167 }
1168
1169 static void __exit pcifront_cleanup(void)
1170 {
1171         xenbus_unregister_driver(&xenpci_driver);
1172         pci_frontend_registrar(0 /* disable */);
1173 }
1174 module_init(pcifront_init);
1175 module_exit(pcifront_cleanup);
1176
1177 MODULE_DESCRIPTION("Xen PCI passthrough frontend.");
1178 MODULE_LICENSE("GPL");
1179 MODULE_ALIAS("xen:pci");