2 * Copyright IBM Corp. 2012
5 * Jan Glauber <jang@linux.vnet.ibm.com>
7 * The System z PCI code is a rewrite from a prototype by
8 * the following people (Kudoz!):
18 #define COMPONENT "zPCI"
19 #define pr_fmt(fmt) COMPONENT ": " fmt
21 #include <linux/kernel.h>
22 #include <linux/slab.h>
23 #include <linux/err.h>
24 #include <linux/export.h>
25 #include <linux/delay.h>
26 #include <linux/irq.h>
27 #include <linux/kernel_stat.h>
28 #include <linux/seq_file.h>
29 #include <linux/pci.h>
30 #include <linux/msi.h>
34 #include <asm/facility.h>
35 #include <asm/pci_insn.h>
36 #include <asm/pci_clp.h>
37 #include <asm/pci_dma.h>
39 #define DEBUG /* enable pr_debug */
41 #define SIC_IRQ_MODE_ALL 0
42 #define SIC_IRQ_MODE_SINGLE 1
44 #define ZPCI_NR_DMA_SPACES 1
45 #define ZPCI_MSI_VEC_BITS 6
46 #define ZPCI_NR_DEVICES CONFIG_PCI_NR_FUNCTIONS
48 /* list of all detected zpci devices */
50 EXPORT_SYMBOL_GPL(zpci_list
);
51 DEFINE_MUTEX(zpci_list_lock
);
52 EXPORT_SYMBOL_GPL(zpci_list_lock
);
54 static struct pci_hp_callback_ops
*hotplug_ops
;
56 static DECLARE_BITMAP(zpci_domain
, ZPCI_NR_DEVICES
);
57 static DEFINE_SPINLOCK(zpci_domain_lock
);
60 irq_handler_t handler
;
65 unsigned long aibv
; /* AI bit vector */
66 int msi_vecs
; /* consecutive MSI-vectors used */
68 struct callback cb
[ZPCI_NR_MSI_VECS
]; /* callback handler array */
69 spinlock_t lock
; /* protect callbacks against de-reg */
73 /* amap of adapters, one bit per dev, corresponds to one irq nr */
75 /* AI summary bit, global page for all devices */
77 /* pointer to aibv and callback data in zdev */
78 struct zdev_irq_map
*imap
[ZPCI_NR_DEVICES
];
79 /* protects the whole bucket struct */
83 static struct intr_bucket
*bucket
;
85 /* Adapter local summary indicator */
86 static u8
*zpci_irq_si
;
88 static atomic_t irq_retries
= ATOMIC_INIT(0);
91 static DEFINE_SPINLOCK(zpci_iomap_lock
);
92 static DECLARE_BITMAP(zpci_iomap
, ZPCI_IOMAP_MAX_ENTRIES
);
93 struct zpci_iomap_entry
*zpci_iomap_start
;
94 EXPORT_SYMBOL_GPL(zpci_iomap_start
);
96 /* highest irq summary bit */
97 static int __read_mostly aisb_max
;
99 static struct kmem_cache
*zdev_irq_cache
;
100 static struct kmem_cache
*zdev_fmb_cache
;
102 static inline int irq_to_msi_nr(unsigned int irq
)
104 return irq
& ZPCI_MSI_MASK
;
107 static inline int irq_to_dev_nr(unsigned int irq
)
109 return irq
>> ZPCI_MSI_VEC_BITS
;
112 static inline struct zdev_irq_map
*get_imap(unsigned int irq
)
114 return bucket
->imap
[irq_to_dev_nr(irq
)];
117 struct zpci_dev
*get_zdev(struct pci_dev
*pdev
)
119 return (struct zpci_dev
*) pdev
->sysdata
;
122 struct zpci_dev
*get_zdev_by_fid(u32 fid
)
124 struct zpci_dev
*tmp
, *zdev
= NULL
;
126 mutex_lock(&zpci_list_lock
);
127 list_for_each_entry(tmp
, &zpci_list
, entry
) {
128 if (tmp
->fid
== fid
) {
133 mutex_unlock(&zpci_list_lock
);
137 bool zpci_fid_present(u32 fid
)
139 return (get_zdev_by_fid(fid
) != NULL
) ? true : false;
142 static struct zpci_dev
*get_zdev_by_bus(struct pci_bus
*bus
)
144 return (bus
&& bus
->sysdata
) ? (struct zpci_dev
*) bus
->sysdata
: NULL
;
147 int pci_domain_nr(struct pci_bus
*bus
)
149 return ((struct zpci_dev
*) bus
->sysdata
)->domain
;
151 EXPORT_SYMBOL_GPL(pci_domain_nr
);
153 int pci_proc_domain(struct pci_bus
*bus
)
155 return pci_domain_nr(bus
);
157 EXPORT_SYMBOL_GPL(pci_proc_domain
);
159 /* Modify PCI: Register adapter interruptions */
160 static int zpci_register_airq(struct zpci_dev
*zdev
, unsigned int aisb
,
163 u64 req
= ZPCI_CREATE_REQ(zdev
->fh
, 0, ZPCI_MOD_FC_REG_INT
);
164 struct zpci_fib
*fib
;
167 fib
= (void *) get_zeroed_page(GFP_KERNEL
);
172 fib
->noi
= zdev
->irq_map
->msi_vecs
;
173 fib
->sum
= 1; /* enable summary notifications */
175 fib
->aibvo
= 0; /* every function has its own page */
176 fib
->aisb
= (u64
) bucket
->aisb
+ aisb
/ 8;
177 fib
->aisbo
= aisb
& ZPCI_MSI_MASK
;
179 rc
= s390pci_mod_fc(req
, fib
);
180 pr_debug("%s mpcifc returned noi: %d\n", __func__
, fib
->noi
);
182 free_page((unsigned long) fib
);
186 struct mod_pci_args
{
193 static int mod_pci(struct zpci_dev
*zdev
, int fn
, u8 dmaas
, struct mod_pci_args
*args
)
195 u64 req
= ZPCI_CREATE_REQ(zdev
->fh
, dmaas
, fn
);
196 struct zpci_fib
*fib
;
199 /* The FIB must be available even if it's not used */
200 fib
= (void *) get_zeroed_page(GFP_KERNEL
);
204 fib
->pba
= args
->base
;
205 fib
->pal
= args
->limit
;
206 fib
->iota
= args
->iota
;
207 fib
->fmb_addr
= args
->fmb_addr
;
209 rc
= s390pci_mod_fc(req
, fib
);
210 free_page((unsigned long) fib
);
214 /* Modify PCI: Register I/O address translation parameters */
215 int zpci_register_ioat(struct zpci_dev
*zdev
, u8 dmaas
,
216 u64 base
, u64 limit
, u64 iota
)
218 struct mod_pci_args args
= { base
, limit
, iota
, 0 };
220 WARN_ON_ONCE(iota
& 0x3fff);
221 args
.iota
|= ZPCI_IOTA_RTTO_FLAG
;
222 return mod_pci(zdev
, ZPCI_MOD_FC_REG_IOAT
, dmaas
, &args
);
225 /* Modify PCI: Unregister I/O address translation parameters */
226 int zpci_unregister_ioat(struct zpci_dev
*zdev
, u8 dmaas
)
228 struct mod_pci_args args
= { 0, 0, 0, 0 };
230 return mod_pci(zdev
, ZPCI_MOD_FC_DEREG_IOAT
, dmaas
, &args
);
233 /* Modify PCI: Unregister adapter interruptions */
234 static int zpci_unregister_airq(struct zpci_dev
*zdev
)
236 struct mod_pci_args args
= { 0, 0, 0, 0 };
238 return mod_pci(zdev
, ZPCI_MOD_FC_DEREG_INT
, 0, &args
);
241 /* Modify PCI: Set PCI function measurement parameters */
242 int zpci_fmb_enable_device(struct zpci_dev
*zdev
)
244 struct mod_pci_args args
= { 0, 0, 0, 0 };
249 zdev
->fmb
= kmem_cache_zalloc(zdev_fmb_cache
, GFP_KERNEL
);
252 WARN_ON((u64
) zdev
->fmb
& 0xf);
254 args
.fmb_addr
= virt_to_phys(zdev
->fmb
);
255 return mod_pci(zdev
, ZPCI_MOD_FC_SET_MEASURE
, 0, &args
);
258 /* Modify PCI: Disable PCI function measurement */
259 int zpci_fmb_disable_device(struct zpci_dev
*zdev
)
261 struct mod_pci_args args
= { 0, 0, 0, 0 };
267 /* Function measurement is disabled if fmb address is zero */
268 rc
= mod_pci(zdev
, ZPCI_MOD_FC_SET_MEASURE
, 0, &args
);
270 kmem_cache_free(zdev_fmb_cache
, zdev
->fmb
);
275 #define ZPCI_PCIAS_CFGSPC 15
277 static int zpci_cfg_load(struct zpci_dev
*zdev
, int offset
, u32
*val
, u8 len
)
279 u64 req
= ZPCI_CREATE_REQ(zdev
->fh
, ZPCI_PCIAS_CFGSPC
, len
);
283 rc
= s390pci_load(&data
, req
, offset
);
285 data
= data
<< ((8 - len
) * 8);
286 data
= le64_to_cpu(data
);
293 static int zpci_cfg_store(struct zpci_dev
*zdev
, int offset
, u32 val
, u8 len
)
295 u64 req
= ZPCI_CREATE_REQ(zdev
->fh
, ZPCI_PCIAS_CFGSPC
, len
);
299 data
= cpu_to_le64(data
);
300 data
= data
>> ((8 - len
) * 8);
301 rc
= s390pci_store(data
, req
, offset
);
305 void enable_irq(unsigned int irq
)
307 struct msi_desc
*msi
= irq_get_msi_desc(irq
);
309 zpci_msi_set_mask_bits(msi
, 1, 0);
311 EXPORT_SYMBOL_GPL(enable_irq
);
313 void disable_irq(unsigned int irq
)
315 struct msi_desc
*msi
= irq_get_msi_desc(irq
);
317 zpci_msi_set_mask_bits(msi
, 1, 1);
319 EXPORT_SYMBOL_GPL(disable_irq
);
321 void pcibios_fixup_bus(struct pci_bus
*bus
)
325 resource_size_t
pcibios_align_resource(void *data
, const struct resource
*res
,
326 resource_size_t size
,
327 resource_size_t align
)
332 /* combine single writes by using store-block insn */
333 void __iowrite64_copy(void __iomem
*to
, const void *from
, size_t count
)
335 zpci_memcpy_toio(to
, from
, count
);
338 /* Create a virtual mapping cookie for a PCI BAR */
339 void __iomem
*pci_iomap(struct pci_dev
*pdev
, int bar
, unsigned long max
)
341 struct zpci_dev
*zdev
= get_zdev(pdev
);
345 if ((bar
& 7) != bar
)
348 idx
= zdev
->bars
[bar
].map_idx
;
349 spin_lock(&zpci_iomap_lock
);
350 zpci_iomap_start
[idx
].fh
= zdev
->fh
;
351 zpci_iomap_start
[idx
].bar
= bar
;
352 spin_unlock(&zpci_iomap_lock
);
354 addr
= ZPCI_IOMAP_ADDR_BASE
| ((u64
) idx
<< 48);
355 return (void __iomem
*) addr
;
357 EXPORT_SYMBOL_GPL(pci_iomap
);
359 void pci_iounmap(struct pci_dev
*pdev
, void __iomem
*addr
)
363 idx
= (((__force u64
) addr
) & ~ZPCI_IOMAP_ADDR_BASE
) >> 48;
364 spin_lock(&zpci_iomap_lock
);
365 zpci_iomap_start
[idx
].fh
= 0;
366 zpci_iomap_start
[idx
].bar
= 0;
367 spin_unlock(&zpci_iomap_lock
);
369 EXPORT_SYMBOL_GPL(pci_iounmap
);
371 static int pci_read(struct pci_bus
*bus
, unsigned int devfn
, int where
,
374 struct zpci_dev
*zdev
= get_zdev_by_bus(bus
);
377 if (!zdev
|| devfn
!= ZPCI_DEVFN
)
380 ret
= zpci_cfg_load(zdev
, where
, val
, size
);
385 static int pci_write(struct pci_bus
*bus
, unsigned int devfn
, int where
,
388 struct zpci_dev
*zdev
= get_zdev_by_bus(bus
);
391 if (!zdev
|| devfn
!= ZPCI_DEVFN
)
394 ret
= zpci_cfg_store(zdev
, where
, val
, size
);
399 static struct pci_ops pci_root_ops
= {
404 /* store the last handled bit to implement fair scheduling of devices */
405 static DEFINE_PER_CPU(unsigned long, next_sbit
);
407 static void zpci_irq_handler(void *dont
, void *need
)
409 unsigned long sbit
, mbit
, last
= 0, start
= __get_cpu_var(next_sbit
);
410 int rescan
= 0, max
= aisb_max
;
411 struct zdev_irq_map
*imap
;
413 inc_irq_stat(IRQIO_PCI
);
417 /* find summary_bit */
418 for_each_set_bit_left_cont(sbit
, bucket
->aisb
, max
) {
419 clear_bit(63 - (sbit
& 63), bucket
->aisb
+ (sbit
>> 6));
422 /* find vector bit */
423 imap
= bucket
->imap
[sbit
];
424 for_each_set_bit_left(mbit
, &imap
->aibv
, imap
->msi_vecs
) {
425 inc_irq_stat(IRQIO_MSI
);
426 clear_bit(63 - mbit
, &imap
->aibv
);
428 spin_lock(&imap
->lock
);
429 if (imap
->cb
[mbit
].handler
)
430 imap
->cb
[mbit
].handler(mbit
,
431 imap
->cb
[mbit
].data
);
432 spin_unlock(&imap
->lock
);
439 /* scan the skipped bits */
447 /* enable interrupts again */
448 set_irq_ctrl(SIC_IRQ_MODE_SINGLE
, NULL
, PCI_ISC
);
450 /* check again to not lose initiative */
453 sbit
= find_first_bit_left(bucket
->aisb
, max
);
455 atomic_inc(&irq_retries
);
460 /* store next device bit to scan */
461 __get_cpu_var(next_sbit
) = (++last
>= aisb_max
) ? 0 : last
;
464 /* msi_vecs - number of requested interrupts, 0 place function to error state */
465 static int zpci_setup_msi(struct pci_dev
*pdev
, int msi_vecs
)
467 struct zpci_dev
*zdev
= get_zdev(pdev
);
468 unsigned int aisb
, msi_nr
;
469 struct msi_desc
*msi
;
472 /* store the number of used MSI vectors */
473 zdev
->irq_map
->msi_vecs
= min(msi_vecs
, ZPCI_NR_MSI_VECS
);
475 spin_lock(&bucket
->lock
);
476 aisb
= find_first_zero_bit(bucket
->alloc
, PAGE_SIZE
);
477 /* alloc map exhausted? */
478 if (aisb
== PAGE_SIZE
) {
479 spin_unlock(&bucket
->lock
);
482 set_bit(aisb
, bucket
->alloc
);
483 spin_unlock(&bucket
->lock
);
486 if (aisb
+ 1 > aisb_max
)
489 /* wire up IRQ shortcut pointer */
490 bucket
->imap
[zdev
->aisb
] = zdev
->irq_map
;
491 pr_debug("%s: imap[%u] linked to %p\n", __func__
, zdev
->aisb
, zdev
->irq_map
);
493 /* TODO: irq number 0 wont be found if we return less than requested MSIs.
494 * ignore it for now and fix in common code.
496 msi_nr
= aisb
<< ZPCI_MSI_VEC_BITS
;
498 list_for_each_entry(msi
, &pdev
->msi_list
, list
) {
499 rc
= zpci_setup_msi_irq(zdev
, msi
, msi_nr
,
500 aisb
<< ZPCI_MSI_VEC_BITS
);
506 rc
= zpci_register_airq(zdev
, aisb
, (u64
) &zdev
->irq_map
->aibv
);
508 clear_bit(aisb
, bucket
->alloc
);
509 dev_err(&pdev
->dev
, "register MSI failed with: %d\n", rc
);
512 return (zdev
->irq_map
->msi_vecs
== msi_vecs
) ?
513 0 : zdev
->irq_map
->msi_vecs
;
516 static void zpci_teardown_msi(struct pci_dev
*pdev
)
518 struct zpci_dev
*zdev
= get_zdev(pdev
);
519 struct msi_desc
*msi
;
522 rc
= zpci_unregister_airq(zdev
);
524 dev_err(&pdev
->dev
, "deregister MSI failed with: %d\n", rc
);
528 msi
= list_first_entry(&pdev
->msi_list
, struct msi_desc
, list
);
529 aisb
= irq_to_dev_nr(msi
->irq
);
531 list_for_each_entry(msi
, &pdev
->msi_list
, list
)
532 zpci_teardown_msi_irq(zdev
, msi
);
534 clear_bit(aisb
, bucket
->alloc
);
535 if (aisb
+ 1 == aisb_max
)
539 int arch_setup_msi_irqs(struct pci_dev
*pdev
, int nvec
, int type
)
541 pr_debug("%s: requesting %d MSI-X interrupts...", __func__
, nvec
);
542 if (type
!= PCI_CAP_ID_MSIX
&& type
!= PCI_CAP_ID_MSI
)
544 return zpci_setup_msi(pdev
, nvec
);
547 void arch_teardown_msi_irqs(struct pci_dev
*pdev
)
549 pr_info("%s: on pdev: %p\n", __func__
, pdev
);
550 zpci_teardown_msi(pdev
);
553 static void zpci_map_resources(struct zpci_dev
*zdev
)
555 struct pci_dev
*pdev
= zdev
->pdev
;
559 for (i
= 0; i
< PCI_BAR_COUNT
; i
++) {
560 len
= pci_resource_len(pdev
, i
);
563 pdev
->resource
[i
].start
= (resource_size_t
) pci_iomap(pdev
, i
, 0);
564 pdev
->resource
[i
].end
= pdev
->resource
[i
].start
+ len
- 1;
565 pr_debug("BAR%i: -> start: %Lx end: %Lx\n",
566 i
, pdev
->resource
[i
].start
, pdev
->resource
[i
].end
);
570 struct zpci_dev
*zpci_alloc_device(void)
572 struct zpci_dev
*zdev
;
574 /* Alloc memory for our private pci device data */
575 zdev
= kzalloc(sizeof(*zdev
), GFP_KERNEL
);
577 return ERR_PTR(-ENOMEM
);
579 /* Alloc aibv & callback space */
580 zdev
->irq_map
= kmem_cache_zalloc(zdev_irq_cache
, GFP_KERNEL
);
583 WARN_ON((u64
) zdev
->irq_map
& 0xff);
588 return ERR_PTR(-ENOMEM
);
591 void zpci_free_device(struct zpci_dev
*zdev
)
593 kmem_cache_free(zdev_irq_cache
, zdev
->irq_map
);
598 * Too late for any s390 specific setup, since interrupts must be set up
599 * already which requires DMA setup too and the pci scan will access the
600 * config space, which only works if the function handle is enabled.
602 int pcibios_enable_device(struct pci_dev
*pdev
, int mask
)
604 struct resource
*res
;
608 pci_read_config_word(pdev
, PCI_COMMAND
, &cmd
);
610 for (i
= 0; i
< PCI_BAR_COUNT
; i
++) {
611 res
= &pdev
->resource
[i
];
613 if (res
->flags
& IORESOURCE_IO
)
616 if (res
->flags
& IORESOURCE_MEM
)
617 cmd
|= PCI_COMMAND_MEMORY
;
619 pci_write_config_word(pdev
, PCI_COMMAND
, cmd
);
623 int pcibios_add_platform_entries(struct pci_dev
*pdev
)
625 return zpci_sysfs_add_device(&pdev
->dev
);
628 int zpci_request_irq(unsigned int irq
, irq_handler_t handler
, void *data
)
630 int msi_nr
= irq_to_msi_nr(irq
);
631 struct zdev_irq_map
*imap
;
632 struct msi_desc
*msi
;
634 msi
= irq_get_msi_desc(irq
);
638 imap
= get_imap(irq
);
639 spin_lock_init(&imap
->lock
);
641 pr_debug("%s: register handler for IRQ:MSI %d:%d\n", __func__
, irq
>> 6, msi_nr
);
642 imap
->cb
[msi_nr
].handler
= handler
;
643 imap
->cb
[msi_nr
].data
= data
;
646 * The generic MSI code returns with the interrupt disabled on the
647 * card, using the MSI mask bits. Firmware doesn't appear to unmask
648 * at that level, so we do it here by hand.
650 zpci_msi_set_mask_bits(msi
, 1, 0);
654 void zpci_free_irq(unsigned int irq
)
656 struct zdev_irq_map
*imap
= get_imap(irq
);
657 int msi_nr
= irq_to_msi_nr(irq
);
660 pr_debug("%s: for irq: %d\n", __func__
, irq
);
662 spin_lock_irqsave(&imap
->lock
, flags
);
663 imap
->cb
[msi_nr
].handler
= NULL
;
664 imap
->cb
[msi_nr
].data
= NULL
;
665 spin_unlock_irqrestore(&imap
->lock
, flags
);
668 int request_irq(unsigned int irq
, irq_handler_t handler
,
669 unsigned long irqflags
, const char *devname
, void *dev_id
)
671 pr_debug("%s: irq: %d handler: %p flags: %lx dev: %s\n",
672 __func__
, irq
, handler
, irqflags
, devname
);
674 return zpci_request_irq(irq
, handler
, dev_id
);
676 EXPORT_SYMBOL_GPL(request_irq
);
678 void free_irq(unsigned int irq
, void *dev_id
)
682 EXPORT_SYMBOL_GPL(free_irq
);
684 static int __init
zpci_irq_init(void)
688 bucket
= kzalloc(sizeof(*bucket
), GFP_KERNEL
);
692 bucket
->aisb
= (unsigned long *) get_zeroed_page(GFP_KERNEL
);
698 bucket
->alloc
= (unsigned long *) get_zeroed_page(GFP_KERNEL
);
699 if (!bucket
->alloc
) {
704 isc_register(PCI_ISC
);
705 zpci_irq_si
= s390_register_adapter_interrupt(&zpci_irq_handler
, NULL
, PCI_ISC
);
706 if (IS_ERR(zpci_irq_si
)) {
707 rc
= PTR_ERR(zpci_irq_si
);
712 for_each_online_cpu(cpu
)
713 per_cpu(next_sbit
, cpu
) = 0;
715 spin_lock_init(&bucket
->lock
);
716 /* set summary to 1 to be called every time for the ISC */
718 set_irq_ctrl(SIC_IRQ_MODE_SINGLE
, NULL
, PCI_ISC
);
722 isc_unregister(PCI_ISC
);
723 free_page((unsigned long) bucket
->alloc
);
725 free_page((unsigned long) bucket
->aisb
);
731 static void zpci_irq_exit(void)
733 free_page((unsigned long) bucket
->alloc
);
734 free_page((unsigned long) bucket
->aisb
);
735 s390_unregister_adapter_interrupt(zpci_irq_si
, PCI_ISC
);
736 isc_unregister(PCI_ISC
);
740 void zpci_debug_info(struct zpci_dev
*zdev
, struct seq_file
*m
)
745 seq_printf(m
, "global irq retries: %u\n", atomic_read(&irq_retries
));
746 seq_printf(m
, "aibv[0]:%016lx aibv[1]:%016lx aisb:%016lx\n",
747 get_imap(0)->aibv
, get_imap(1)->aibv
, *bucket
->aisb
);
750 static struct resource
*zpci_alloc_bus_resource(unsigned long start
, unsigned long size
,
751 unsigned long flags
, int domain
)
757 r
= kzalloc(sizeof(*r
), GFP_KERNEL
);
759 return ERR_PTR(-ENOMEM
);
761 r
->end
= r
->start
+ size
- 1;
763 r
->parent
= &iomem_resource
;
764 name
= kmalloc(18, GFP_KERNEL
);
767 return ERR_PTR(-ENOMEM
);
769 sprintf(name
, "PCI Bus: %04x:%02x", domain
, ZPCI_BUS_NR
);
772 rc
= request_resource(&iomem_resource
, r
);
774 pr_debug("request resource %pR failed\n", r
);
778 static int zpci_alloc_iomap(struct zpci_dev
*zdev
)
782 spin_lock(&zpci_iomap_lock
);
783 entry
= find_first_zero_bit(zpci_iomap
, ZPCI_IOMAP_MAX_ENTRIES
);
784 if (entry
== ZPCI_IOMAP_MAX_ENTRIES
) {
785 spin_unlock(&zpci_iomap_lock
);
788 set_bit(entry
, zpci_iomap
);
789 spin_unlock(&zpci_iomap_lock
);
793 static void zpci_free_iomap(struct zpci_dev
*zdev
, int entry
)
795 spin_lock(&zpci_iomap_lock
);
796 memset(&zpci_iomap_start
[entry
], 0, sizeof(struct zpci_iomap_entry
));
797 clear_bit(entry
, zpci_iomap
);
798 spin_unlock(&zpci_iomap_lock
);
801 int pcibios_add_device(struct pci_dev
*pdev
)
803 struct zpci_dev
*zdev
= get_zdev(pdev
);
806 zpci_debug_init_device(zdev
);
807 zpci_fmb_enable_device(zdev
);
808 zpci_map_resources(zdev
);
813 static int zpci_scan_bus(struct zpci_dev
*zdev
)
815 struct resource
*res
;
816 LIST_HEAD(resources
);
819 /* allocate mapping entry for each used bar */
820 for (i
= 0; i
< PCI_BAR_COUNT
; i
++) {
821 unsigned long addr
, size
, flags
;
824 if (!zdev
->bars
[i
].size
)
826 entry
= zpci_alloc_iomap(zdev
);
829 zdev
->bars
[i
].map_idx
= entry
;
831 /* only MMIO is supported */
832 flags
= IORESOURCE_MEM
;
833 if (zdev
->bars
[i
].val
& 8)
834 flags
|= IORESOURCE_PREFETCH
;
835 if (zdev
->bars
[i
].val
& 4)
836 flags
|= IORESOURCE_MEM_64
;
838 addr
= ZPCI_IOMAP_ADDR_BASE
+ ((u64
) entry
<< 48);
840 size
= 1UL << zdev
->bars
[i
].size
;
842 res
= zpci_alloc_bus_resource(addr
, size
, flags
, zdev
->domain
);
844 zpci_free_iomap(zdev
, entry
);
847 pci_add_resource(&resources
, res
);
850 zdev
->bus
= pci_scan_root_bus(NULL
, ZPCI_BUS_NR
, &pci_root_ops
,
855 zdev
->bus
->max_bus_speed
= zdev
->max_bus_speed
;
859 static int zpci_alloc_domain(struct zpci_dev
*zdev
)
861 spin_lock(&zpci_domain_lock
);
862 zdev
->domain
= find_first_zero_bit(zpci_domain
, ZPCI_NR_DEVICES
);
863 if (zdev
->domain
== ZPCI_NR_DEVICES
) {
864 spin_unlock(&zpci_domain_lock
);
867 set_bit(zdev
->domain
, zpci_domain
);
868 spin_unlock(&zpci_domain_lock
);
872 static void zpci_free_domain(struct zpci_dev
*zdev
)
874 spin_lock(&zpci_domain_lock
);
875 clear_bit(zdev
->domain
, zpci_domain
);
876 spin_unlock(&zpci_domain_lock
);
879 int zpci_enable_device(struct zpci_dev
*zdev
)
883 rc
= clp_enable_fh(zdev
, ZPCI_NR_DMA_SPACES
);
886 pr_info("Enabled fh: 0x%x fid: 0x%x\n", zdev
->fh
, zdev
->fid
);
888 rc
= zpci_dma_init_device(zdev
);
894 clp_disable_fh(zdev
);
898 EXPORT_SYMBOL_GPL(zpci_enable_device
);
900 int zpci_disable_device(struct zpci_dev
*zdev
)
902 zpci_dma_exit_device(zdev
);
903 return clp_disable_fh(zdev
);
905 EXPORT_SYMBOL_GPL(zpci_disable_device
);
907 int zpci_create_device(struct zpci_dev
*zdev
)
911 rc
= zpci_alloc_domain(zdev
);
915 if (zdev
->state
== ZPCI_FN_STATE_CONFIGURED
) {
916 rc
= zpci_enable_device(zdev
);
920 zdev
->state
= ZPCI_FN_STATE_ONLINE
;
922 rc
= zpci_scan_bus(zdev
);
926 mutex_lock(&zpci_list_lock
);
927 list_add_tail(&zdev
->entry
, &zpci_list
);
929 hotplug_ops
->create_slot(zdev
);
930 mutex_unlock(&zpci_list_lock
);
935 if (zdev
->state
== ZPCI_FN_STATE_ONLINE
)
936 zpci_disable_device(zdev
);
938 zpci_free_domain(zdev
);
943 void zpci_stop_device(struct zpci_dev
*zdev
)
945 zpci_dma_exit_device(zdev
);
947 * Note: SCLP disables fh via set-pci-fn so don't
951 EXPORT_SYMBOL_GPL(zpci_stop_device
);
953 int zpci_scan_device(struct zpci_dev
*zdev
)
955 zdev
->pdev
= pci_scan_single_device(zdev
->bus
, ZPCI_DEVFN
);
957 pr_err("pci_scan_single_device failed for fid: 0x%x\n",
962 pci_bus_add_devices(zdev
->bus
);
966 zpci_dma_exit_device(zdev
);
967 clp_disable_fh(zdev
);
970 EXPORT_SYMBOL_GPL(zpci_scan_device
);
972 static inline int barsize(u8 size
)
974 return (size
) ? (1 << size
) >> 10 : 0;
977 static int zpci_mem_init(void)
979 zdev_irq_cache
= kmem_cache_create("PCI_IRQ_cache", sizeof(struct zdev_irq_map
),
980 L1_CACHE_BYTES
, SLAB_HWCACHE_ALIGN
, NULL
);
984 zdev_fmb_cache
= kmem_cache_create("PCI_FMB_cache", sizeof(struct zpci_fmb
),
989 /* TODO: use realloc */
990 zpci_iomap_start
= kzalloc(ZPCI_IOMAP_MAX_ENTRIES
* sizeof(*zpci_iomap_start
),
992 if (!zpci_iomap_start
)
997 kmem_cache_destroy(zdev_fmb_cache
);
999 kmem_cache_destroy(zdev_irq_cache
);
1004 static void zpci_mem_exit(void)
1006 kfree(zpci_iomap_start
);
1007 kmem_cache_destroy(zdev_irq_cache
);
1008 kmem_cache_destroy(zdev_fmb_cache
);
1011 void zpci_register_hp_ops(struct pci_hp_callback_ops
*ops
)
1013 mutex_lock(&zpci_list_lock
);
1015 mutex_unlock(&zpci_list_lock
);
1017 EXPORT_SYMBOL_GPL(zpci_register_hp_ops
);
1019 void zpci_deregister_hp_ops(void)
1021 mutex_lock(&zpci_list_lock
);
1023 mutex_unlock(&zpci_list_lock
);
1025 EXPORT_SYMBOL_GPL(zpci_deregister_hp_ops
);
1027 unsigned int s390_pci_probe
;
1028 EXPORT_SYMBOL_GPL(s390_pci_probe
);
1030 char * __init
pcibios_setup(char *str
)
1032 if (!strcmp(str
, "on")) {
1039 static int __init
pci_base_init(void)
1043 if (!s390_pci_probe
)
1046 if (!test_facility(2) || !test_facility(69)
1047 || !test_facility(71) || !test_facility(72))
1050 pr_info("Probing PCI hardware: PCI:%d SID:%d AEN:%d\n",
1051 test_facility(69), test_facility(70),
1054 rc
= zpci_debug_init();
1058 rc
= zpci_mem_init();
1062 rc
= zpci_msihash_init();
1066 rc
= zpci_irq_init();
1070 rc
= zpci_dma_init();
1074 rc
= clp_find_pci_devices();
1085 zpci_msihash_exit();
1092 subsys_initcall(pci_base_init
);