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1 /*
2  * Copyright IBM Corp. 2012
3  *
4  * Author(s):
5  *   Jan Glauber <jang@linux.vnet.ibm.com>
6  *
7  * The System z PCI code is a rewrite from a prototype by
8  * the following people (Kudoz!):
9  *   Alexander Schmidt
10  *   Christoph Raisch
11  *   Hannes Hering
12  *   Hoang-Nam Nguyen
13  *   Jan-Bernd Themann
14  *   Stefan Roscher
15  *   Thomas Klein
16  */
17 
18 #define KMSG_COMPONENT "zpci"
19 #define pr_fmt(fmt) KMSG_COMPONENT ": " fmt
20 
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>
31 
32 #include <asm/isc.h>
33 #include <asm/airq.h>
34 #include <asm/facility.h>
35 #include <asm/pci_insn.h>
36 #include <asm/pci_clp.h>
37 #include <asm/pci_dma.h>
38 
39 #define DEBUG				/* enable pr_debug */
40 
41 #define	SIC_IRQ_MODE_ALL		0
42 #define	SIC_IRQ_MODE_SINGLE		1
43 
44 #define ZPCI_NR_DMA_SPACES		1
45 #define ZPCI_NR_DEVICES			CONFIG_PCI_NR_FUNCTIONS
46 
47 /* list of all detected zpci devices */
48 static LIST_HEAD(zpci_list);
49 static DEFINE_SPINLOCK(zpci_list_lock);
50 
51 static struct irq_chip zpci_irq_chip = {
52 	.name = "zPCI",
53 	.irq_unmask = pci_msi_unmask_irq,
54 	.irq_mask = pci_msi_mask_irq,
55 };
56 
57 static DECLARE_BITMAP(zpci_domain, ZPCI_NR_DEVICES);
58 static DEFINE_SPINLOCK(zpci_domain_lock);
59 
60 static struct airq_iv *zpci_aisb_iv;
61 static struct airq_iv *zpci_aibv[ZPCI_NR_DEVICES];
62 
63 #define ZPCI_IOMAP_ENTRIES						\
64 	min(((unsigned long) ZPCI_NR_DEVICES * PCI_BAR_COUNT / 2),	\
65 	    ZPCI_IOMAP_MAX_ENTRIES)
66 
67 static DEFINE_SPINLOCK(zpci_iomap_lock);
68 static unsigned long *zpci_iomap_bitmap;
69 struct zpci_iomap_entry *zpci_iomap_start;
70 EXPORT_SYMBOL_GPL(zpci_iomap_start);
71 
72 static struct kmem_cache *zdev_fmb_cache;
73 
get_zdev_by_fid(u32 fid)74 struct zpci_dev *get_zdev_by_fid(u32 fid)
75 {
76 	struct zpci_dev *tmp, *zdev = NULL;
77 
78 	spin_lock(&zpci_list_lock);
79 	list_for_each_entry(tmp, &zpci_list, entry) {
80 		if (tmp->fid == fid) {
81 			zdev = tmp;
82 			break;
83 		}
84 	}
85 	spin_unlock(&zpci_list_lock);
86 	return zdev;
87 }
88 
zpci_remove_reserved_devices(void)89 void zpci_remove_reserved_devices(void)
90 {
91 	struct zpci_dev *tmp, *zdev;
92 	enum zpci_state state;
93 	LIST_HEAD(remove);
94 
95 	spin_lock(&zpci_list_lock);
96 	list_for_each_entry_safe(zdev, tmp, &zpci_list, entry) {
97 		if (zdev->state == ZPCI_FN_STATE_STANDBY &&
98 		    !clp_get_state(zdev->fid, &state) &&
99 		    state == ZPCI_FN_STATE_RESERVED)
100 			list_move_tail(&zdev->entry, &remove);
101 	}
102 	spin_unlock(&zpci_list_lock);
103 
104 	list_for_each_entry_safe(zdev, tmp, &remove, entry)
105 		zpci_remove_device(zdev);
106 }
107 
get_zdev_by_bus(struct pci_bus * bus)108 static struct zpci_dev *get_zdev_by_bus(struct pci_bus *bus)
109 {
110 	return (bus && bus->sysdata) ? (struct zpci_dev *) bus->sysdata : NULL;
111 }
112 
pci_domain_nr(struct pci_bus * bus)113 int pci_domain_nr(struct pci_bus *bus)
114 {
115 	return ((struct zpci_dev *) bus->sysdata)->domain;
116 }
117 EXPORT_SYMBOL_GPL(pci_domain_nr);
118 
pci_proc_domain(struct pci_bus * bus)119 int pci_proc_domain(struct pci_bus *bus)
120 {
121 	return pci_domain_nr(bus);
122 }
123 EXPORT_SYMBOL_GPL(pci_proc_domain);
124 
125 /* Modify PCI: Register adapter interruptions */
zpci_set_airq(struct zpci_dev * zdev)126 static int zpci_set_airq(struct zpci_dev *zdev)
127 {
128 	u64 req = ZPCI_CREATE_REQ(zdev->fh, 0, ZPCI_MOD_FC_REG_INT);
129 	struct zpci_fib fib = {0};
130 	u8 status;
131 
132 	fib.isc = PCI_ISC;
133 	fib.sum = 1;		/* enable summary notifications */
134 	fib.noi = airq_iv_end(zdev->aibv);
135 	fib.aibv = (unsigned long) zdev->aibv->vector;
136 	fib.aibvo = 0;		/* each zdev has its own interrupt vector */
137 	fib.aisb = (unsigned long) zpci_aisb_iv->vector + (zdev->aisb/64)*8;
138 	fib.aisbo = zdev->aisb & 63;
139 
140 	return zpci_mod_fc(req, &fib, &status) ? -EIO : 0;
141 }
142 
143 /* Modify PCI: Unregister adapter interruptions */
zpci_clear_airq(struct zpci_dev * zdev)144 static int zpci_clear_airq(struct zpci_dev *zdev)
145 {
146 	u64 req = ZPCI_CREATE_REQ(zdev->fh, 0, ZPCI_MOD_FC_DEREG_INT);
147 	struct zpci_fib fib = {0};
148 	u8 cc, status;
149 
150 	cc = zpci_mod_fc(req, &fib, &status);
151 	if (cc == 3 || (cc == 1 && status == 24))
152 		/* Function already gone or IRQs already deregistered. */
153 		cc = 0;
154 
155 	return cc ? -EIO : 0;
156 }
157 
158 /* Modify PCI: Register I/O address translation parameters */
zpci_register_ioat(struct zpci_dev * zdev,u8 dmaas,u64 base,u64 limit,u64 iota)159 int zpci_register_ioat(struct zpci_dev *zdev, u8 dmaas,
160 		       u64 base, u64 limit, u64 iota)
161 {
162 	u64 req = ZPCI_CREATE_REQ(zdev->fh, dmaas, ZPCI_MOD_FC_REG_IOAT);
163 	struct zpci_fib fib = {0};
164 	u8 status;
165 
166 	WARN_ON_ONCE(iota & 0x3fff);
167 	fib.pba = base;
168 	fib.pal = limit;
169 	fib.iota = iota | ZPCI_IOTA_RTTO_FLAG;
170 	return zpci_mod_fc(req, &fib, &status) ? -EIO : 0;
171 }
172 
173 /* Modify PCI: Unregister I/O address translation parameters */
zpci_unregister_ioat(struct zpci_dev * zdev,u8 dmaas)174 int zpci_unregister_ioat(struct zpci_dev *zdev, u8 dmaas)
175 {
176 	u64 req = ZPCI_CREATE_REQ(zdev->fh, dmaas, ZPCI_MOD_FC_DEREG_IOAT);
177 	struct zpci_fib fib = {0};
178 	u8 cc, status;
179 
180 	cc = zpci_mod_fc(req, &fib, &status);
181 	if (cc == 3) /* Function already gone. */
182 		cc = 0;
183 	return cc ? -EIO : 0;
184 }
185 
186 /* Modify PCI: Set PCI function measurement parameters */
zpci_fmb_enable_device(struct zpci_dev * zdev)187 int zpci_fmb_enable_device(struct zpci_dev *zdev)
188 {
189 	u64 req = ZPCI_CREATE_REQ(zdev->fh, 0, ZPCI_MOD_FC_SET_MEASURE);
190 	struct zpci_fib fib = {0};
191 	u8 cc, status;
192 
193 	if (zdev->fmb || sizeof(*zdev->fmb) < zdev->fmb_length)
194 		return -EINVAL;
195 
196 	zdev->fmb = kmem_cache_zalloc(zdev_fmb_cache, GFP_KERNEL);
197 	if (!zdev->fmb)
198 		return -ENOMEM;
199 	WARN_ON((u64) zdev->fmb & 0xf);
200 
201 	/* reset software counters */
202 	atomic64_set(&zdev->allocated_pages, 0);
203 	atomic64_set(&zdev->mapped_pages, 0);
204 	atomic64_set(&zdev->unmapped_pages, 0);
205 
206 	fib.fmb_addr = virt_to_phys(zdev->fmb);
207 	cc = zpci_mod_fc(req, &fib, &status);
208 	if (cc) {
209 		kmem_cache_free(zdev_fmb_cache, zdev->fmb);
210 		zdev->fmb = NULL;
211 	}
212 	return cc ? -EIO : 0;
213 }
214 
215 /* Modify PCI: Disable PCI function measurement */
zpci_fmb_disable_device(struct zpci_dev * zdev)216 int zpci_fmb_disable_device(struct zpci_dev *zdev)
217 {
218 	u64 req = ZPCI_CREATE_REQ(zdev->fh, 0, ZPCI_MOD_FC_SET_MEASURE);
219 	struct zpci_fib fib = {0};
220 	u8 cc, status;
221 
222 	if (!zdev->fmb)
223 		return -EINVAL;
224 
225 	/* Function measurement is disabled if fmb address is zero */
226 	cc = zpci_mod_fc(req, &fib, &status);
227 	if (cc == 3) /* Function already gone. */
228 		cc = 0;
229 
230 	if (!cc) {
231 		kmem_cache_free(zdev_fmb_cache, zdev->fmb);
232 		zdev->fmb = NULL;
233 	}
234 	return cc ? -EIO : 0;
235 }
236 
zpci_cfg_load(struct zpci_dev * zdev,int offset,u32 * val,u8 len)237 static int zpci_cfg_load(struct zpci_dev *zdev, int offset, u32 *val, u8 len)
238 {
239 	u64 req = ZPCI_CREATE_REQ(zdev->fh, ZPCI_PCIAS_CFGSPC, len);
240 	u64 data;
241 	int rc;
242 
243 	rc = zpci_load(&data, req, offset);
244 	if (!rc) {
245 		data = le64_to_cpu((__force __le64) data);
246 		data >>= (8 - len) * 8;
247 		*val = (u32) data;
248 	} else
249 		*val = 0xffffffff;
250 	return rc;
251 }
252 
zpci_cfg_store(struct zpci_dev * zdev,int offset,u32 val,u8 len)253 static int zpci_cfg_store(struct zpci_dev *zdev, int offset, u32 val, u8 len)
254 {
255 	u64 req = ZPCI_CREATE_REQ(zdev->fh, ZPCI_PCIAS_CFGSPC, len);
256 	u64 data = val;
257 	int rc;
258 
259 	data <<= (8 - len) * 8;
260 	data = (__force u64) cpu_to_le64(data);
261 	rc = zpci_store(data, req, offset);
262 	return rc;
263 }
264 
pcibios_align_resource(void * data,const struct resource * res,resource_size_t size,resource_size_t align)265 resource_size_t pcibios_align_resource(void *data, const struct resource *res,
266 				       resource_size_t size,
267 				       resource_size_t align)
268 {
269 	return 0;
270 }
271 
272 /* combine single writes by using store-block insn */
__iowrite64_copy(void __iomem * to,const void * from,size_t count)273 void __iowrite64_copy(void __iomem *to, const void *from, size_t count)
274 {
275        zpci_memcpy_toio(to, from, count);
276 }
277 
278 /* Create a virtual mapping cookie for a PCI BAR */
pci_iomap_range(struct pci_dev * pdev,int bar,unsigned long offset,unsigned long max)279 void __iomem *pci_iomap_range(struct pci_dev *pdev,
280 			      int bar,
281 			      unsigned long offset,
282 			      unsigned long max)
283 {
284 	struct zpci_dev *zdev =	to_zpci(pdev);
285 	int idx;
286 
287 	if (!pci_resource_len(pdev, bar))
288 		return NULL;
289 
290 	idx = zdev->bars[bar].map_idx;
291 	spin_lock(&zpci_iomap_lock);
292 	/* Detect overrun */
293 	WARN_ON(!++zpci_iomap_start[idx].count);
294 	zpci_iomap_start[idx].fh = zdev->fh;
295 	zpci_iomap_start[idx].bar = bar;
296 	spin_unlock(&zpci_iomap_lock);
297 
298 	return (void __iomem *) ZPCI_ADDR(idx) + offset;
299 }
300 EXPORT_SYMBOL(pci_iomap_range);
301 
pci_iomap(struct pci_dev * dev,int bar,unsigned long maxlen)302 void __iomem *pci_iomap(struct pci_dev *dev, int bar, unsigned long maxlen)
303 {
304 	return pci_iomap_range(dev, bar, 0, maxlen);
305 }
306 EXPORT_SYMBOL(pci_iomap);
307 
pci_iounmap(struct pci_dev * pdev,void __iomem * addr)308 void pci_iounmap(struct pci_dev *pdev, void __iomem *addr)
309 {
310 	unsigned int idx = ZPCI_IDX(addr);
311 
312 	spin_lock(&zpci_iomap_lock);
313 	/* Detect underrun */
314 	WARN_ON(!zpci_iomap_start[idx].count);
315 	if (!--zpci_iomap_start[idx].count) {
316 		zpci_iomap_start[idx].fh = 0;
317 		zpci_iomap_start[idx].bar = 0;
318 	}
319 	spin_unlock(&zpci_iomap_lock);
320 }
321 EXPORT_SYMBOL(pci_iounmap);
322 
pci_read(struct pci_bus * bus,unsigned int devfn,int where,int size,u32 * val)323 static int pci_read(struct pci_bus *bus, unsigned int devfn, int where,
324 		    int size, u32 *val)
325 {
326 	struct zpci_dev *zdev = get_zdev_by_bus(bus);
327 	int ret;
328 
329 	if (!zdev || devfn != ZPCI_DEVFN)
330 		ret = -ENODEV;
331 	else
332 		ret = zpci_cfg_load(zdev, where, val, size);
333 
334 	return ret;
335 }
336 
pci_write(struct pci_bus * bus,unsigned int devfn,int where,int size,u32 val)337 static int pci_write(struct pci_bus *bus, unsigned int devfn, int where,
338 		     int size, u32 val)
339 {
340 	struct zpci_dev *zdev = get_zdev_by_bus(bus);
341 	int ret;
342 
343 	if (!zdev || devfn != ZPCI_DEVFN)
344 		ret = -ENODEV;
345 	else
346 		ret = zpci_cfg_store(zdev, where, val, size);
347 
348 	return ret;
349 }
350 
351 static struct pci_ops pci_root_ops = {
352 	.read = pci_read,
353 	.write = pci_write,
354 };
355 
zpci_irq_handler(struct airq_struct * airq)356 static void zpci_irq_handler(struct airq_struct *airq)
357 {
358 	unsigned long si, ai;
359 	struct airq_iv *aibv;
360 	int irqs_on = 0;
361 
362 	inc_irq_stat(IRQIO_PCI);
363 	for (si = 0;;) {
364 		/* Scan adapter summary indicator bit vector */
365 		si = airq_iv_scan(zpci_aisb_iv, si, airq_iv_end(zpci_aisb_iv));
366 		if (si == -1UL) {
367 			if (irqs_on++)
368 				/* End of second scan with interrupts on. */
369 				break;
370 			/* First scan complete, reenable interrupts. */
371 			if (zpci_set_irq_ctrl(SIC_IRQ_MODE_SINGLE, NULL, PCI_ISC))
372 				break;
373 			si = 0;
374 			continue;
375 		}
376 
377 		/* Scan the adapter interrupt vector for this device. */
378 		aibv = zpci_aibv[si];
379 		for (ai = 0;;) {
380 			ai = airq_iv_scan(aibv, ai, airq_iv_end(aibv));
381 			if (ai == -1UL)
382 				break;
383 			inc_irq_stat(IRQIO_MSI);
384 			airq_iv_lock(aibv, ai);
385 			generic_handle_irq(airq_iv_get_data(aibv, ai));
386 			airq_iv_unlock(aibv, ai);
387 		}
388 	}
389 }
390 
arch_setup_msi_irqs(struct pci_dev * pdev,int nvec,int type)391 int arch_setup_msi_irqs(struct pci_dev *pdev, int nvec, int type)
392 {
393 	struct zpci_dev *zdev = to_zpci(pdev);
394 	unsigned int hwirq, msi_vecs;
395 	unsigned long aisb;
396 	struct msi_desc *msi;
397 	struct msi_msg msg;
398 	int rc, irq;
399 
400 	zdev->aisb = -1UL;
401 	if (type == PCI_CAP_ID_MSI && nvec > 1)
402 		return 1;
403 	msi_vecs = min_t(unsigned int, nvec, zdev->max_msi);
404 
405 	/* Allocate adapter summary indicator bit */
406 	aisb = airq_iv_alloc_bit(zpci_aisb_iv);
407 	if (aisb == -1UL)
408 		return -EIO;
409 	zdev->aisb = aisb;
410 
411 	/* Create adapter interrupt vector */
412 	zdev->aibv = airq_iv_create(msi_vecs, AIRQ_IV_DATA | AIRQ_IV_BITLOCK);
413 	if (!zdev->aibv)
414 		return -ENOMEM;
415 
416 	/* Wire up shortcut pointer */
417 	zpci_aibv[aisb] = zdev->aibv;
418 
419 	/* Request MSI interrupts */
420 	hwirq = 0;
421 	for_each_pci_msi_entry(msi, pdev) {
422 		rc = -EIO;
423 		if (hwirq >= msi_vecs)
424 			break;
425 		irq = irq_alloc_desc(0);	/* Alloc irq on node 0 */
426 		if (irq < 0)
427 			return -ENOMEM;
428 		rc = irq_set_msi_desc(irq, msi);
429 		if (rc)
430 			return rc;
431 		irq_set_chip_and_handler(irq, &zpci_irq_chip,
432 					 handle_simple_irq);
433 		msg.data = hwirq;
434 		msg.address_lo = zdev->msi_addr & 0xffffffff;
435 		msg.address_hi = zdev->msi_addr >> 32;
436 		pci_write_msi_msg(irq, &msg);
437 		airq_iv_set_data(zdev->aibv, hwirq, irq);
438 		hwirq++;
439 	}
440 
441 	/* Enable adapter interrupts */
442 	rc = zpci_set_airq(zdev);
443 	if (rc)
444 		return rc;
445 
446 	return (msi_vecs == nvec) ? 0 : msi_vecs;
447 }
448 
arch_teardown_msi_irqs(struct pci_dev * pdev)449 void arch_teardown_msi_irqs(struct pci_dev *pdev)
450 {
451 	struct zpci_dev *zdev = to_zpci(pdev);
452 	struct msi_desc *msi;
453 	int rc;
454 
455 	/* Disable adapter interrupts */
456 	rc = zpci_clear_airq(zdev);
457 	if (rc)
458 		return;
459 
460 	/* Release MSI interrupts */
461 	for_each_pci_msi_entry(msi, pdev) {
462 		if (!msi->irq)
463 			continue;
464 		if (msi->msi_attrib.is_msix)
465 			__pci_msix_desc_mask_irq(msi, 1);
466 		else
467 			__pci_msi_desc_mask_irq(msi, 1, 1);
468 		irq_set_msi_desc(msi->irq, NULL);
469 		irq_free_desc(msi->irq);
470 		msi->msg.address_lo = 0;
471 		msi->msg.address_hi = 0;
472 		msi->msg.data = 0;
473 		msi->irq = 0;
474 	}
475 
476 	if (zdev->aisb != -1UL) {
477 		zpci_aibv[zdev->aisb] = NULL;
478 		airq_iv_free_bit(zpci_aisb_iv, zdev->aisb);
479 		zdev->aisb = -1UL;
480 	}
481 	if (zdev->aibv) {
482 		airq_iv_release(zdev->aibv);
483 		zdev->aibv = NULL;
484 	}
485 }
486 
zpci_map_resources(struct pci_dev * pdev)487 static void zpci_map_resources(struct pci_dev *pdev)
488 {
489 	resource_size_t len;
490 	int i;
491 
492 	for (i = 0; i < PCI_BAR_COUNT; i++) {
493 		len = pci_resource_len(pdev, i);
494 		if (!len)
495 			continue;
496 		pdev->resource[i].start =
497 			(resource_size_t __force) pci_iomap(pdev, i, 0);
498 		pdev->resource[i].end = pdev->resource[i].start + len - 1;
499 	}
500 }
501 
zpci_unmap_resources(struct pci_dev * pdev)502 static void zpci_unmap_resources(struct pci_dev *pdev)
503 {
504 	resource_size_t len;
505 	int i;
506 
507 	for (i = 0; i < PCI_BAR_COUNT; i++) {
508 		len = pci_resource_len(pdev, i);
509 		if (!len)
510 			continue;
511 		pci_iounmap(pdev, (void __iomem __force *)
512 			    pdev->resource[i].start);
513 	}
514 }
515 
516 static struct airq_struct zpci_airq = {
517 	.handler = zpci_irq_handler,
518 	.isc = PCI_ISC,
519 };
520 
zpci_irq_init(void)521 static int __init zpci_irq_init(void)
522 {
523 	int rc;
524 
525 	rc = register_adapter_interrupt(&zpci_airq);
526 	if (rc)
527 		goto out;
528 	/* Set summary to 1 to be called every time for the ISC. */
529 	*zpci_airq.lsi_ptr = 1;
530 
531 	rc = -ENOMEM;
532 	zpci_aisb_iv = airq_iv_create(ZPCI_NR_DEVICES, AIRQ_IV_ALLOC);
533 	if (!zpci_aisb_iv)
534 		goto out_airq;
535 
536 	zpci_set_irq_ctrl(SIC_IRQ_MODE_SINGLE, NULL, PCI_ISC);
537 	return 0;
538 
539 out_airq:
540 	unregister_adapter_interrupt(&zpci_airq);
541 out:
542 	return rc;
543 }
544 
zpci_irq_exit(void)545 static void zpci_irq_exit(void)
546 {
547 	airq_iv_release(zpci_aisb_iv);
548 	unregister_adapter_interrupt(&zpci_airq);
549 }
550 
zpci_alloc_iomap(struct zpci_dev * zdev)551 static int zpci_alloc_iomap(struct zpci_dev *zdev)
552 {
553 	unsigned long entry;
554 
555 	spin_lock(&zpci_iomap_lock);
556 	entry = find_first_zero_bit(zpci_iomap_bitmap, ZPCI_IOMAP_ENTRIES);
557 	if (entry == ZPCI_IOMAP_ENTRIES) {
558 		spin_unlock(&zpci_iomap_lock);
559 		return -ENOSPC;
560 	}
561 	set_bit(entry, zpci_iomap_bitmap);
562 	spin_unlock(&zpci_iomap_lock);
563 	return entry;
564 }
565 
zpci_free_iomap(struct zpci_dev * zdev,int entry)566 static void zpci_free_iomap(struct zpci_dev *zdev, int entry)
567 {
568 	spin_lock(&zpci_iomap_lock);
569 	memset(&zpci_iomap_start[entry], 0, sizeof(struct zpci_iomap_entry));
570 	clear_bit(entry, zpci_iomap_bitmap);
571 	spin_unlock(&zpci_iomap_lock);
572 }
573 
__alloc_res(struct zpci_dev * zdev,unsigned long start,unsigned long size,unsigned long flags)574 static struct resource *__alloc_res(struct zpci_dev *zdev, unsigned long start,
575 				    unsigned long size, unsigned long flags)
576 {
577 	struct resource *r;
578 
579 	r = kzalloc(sizeof(*r), GFP_KERNEL);
580 	if (!r)
581 		return NULL;
582 
583 	r->start = start;
584 	r->end = r->start + size - 1;
585 	r->flags = flags;
586 	r->name = zdev->res_name;
587 
588 	if (request_resource(&iomem_resource, r)) {
589 		kfree(r);
590 		return NULL;
591 	}
592 	return r;
593 }
594 
zpci_setup_bus_resources(struct zpci_dev * zdev,struct list_head * resources)595 static int zpci_setup_bus_resources(struct zpci_dev *zdev,
596 				    struct list_head *resources)
597 {
598 	unsigned long addr, size, flags;
599 	struct resource *res;
600 	int i, entry;
601 
602 	snprintf(zdev->res_name, sizeof(zdev->res_name),
603 		 "PCI Bus %04x:%02x", zdev->domain, ZPCI_BUS_NR);
604 
605 	for (i = 0; i < PCI_BAR_COUNT; i++) {
606 		if (!zdev->bars[i].size)
607 			continue;
608 		entry = zpci_alloc_iomap(zdev);
609 		if (entry < 0)
610 			return entry;
611 		zdev->bars[i].map_idx = entry;
612 
613 		/* only MMIO is supported */
614 		flags = IORESOURCE_MEM;
615 		if (zdev->bars[i].val & 8)
616 			flags |= IORESOURCE_PREFETCH;
617 		if (zdev->bars[i].val & 4)
618 			flags |= IORESOURCE_MEM_64;
619 
620 		addr = ZPCI_ADDR(entry);
621 		size = 1UL << zdev->bars[i].size;
622 
623 		res = __alloc_res(zdev, addr, size, flags);
624 		if (!res) {
625 			zpci_free_iomap(zdev, entry);
626 			return -ENOMEM;
627 		}
628 		zdev->bars[i].res = res;
629 		pci_add_resource(resources, res);
630 	}
631 
632 	return 0;
633 }
634 
zpci_cleanup_bus_resources(struct zpci_dev * zdev)635 static void zpci_cleanup_bus_resources(struct zpci_dev *zdev)
636 {
637 	int i;
638 
639 	for (i = 0; i < PCI_BAR_COUNT; i++) {
640 		if (!zdev->bars[i].size || !zdev->bars[i].res)
641 			continue;
642 
643 		zpci_free_iomap(zdev, zdev->bars[i].map_idx);
644 		release_resource(zdev->bars[i].res);
645 		kfree(zdev->bars[i].res);
646 	}
647 }
648 
pcibios_add_device(struct pci_dev * pdev)649 int pcibios_add_device(struct pci_dev *pdev)
650 {
651 	struct resource *res;
652 	int i;
653 
654 	pdev->dev.groups = zpci_attr_groups;
655 	pdev->dev.dma_ops = &s390_pci_dma_ops;
656 	zpci_map_resources(pdev);
657 
658 	for (i = 0; i < PCI_BAR_COUNT; i++) {
659 		res = &pdev->resource[i];
660 		if (res->parent || !res->flags)
661 			continue;
662 		pci_claim_resource(pdev, i);
663 	}
664 
665 	return 0;
666 }
667 
pcibios_release_device(struct pci_dev * pdev)668 void pcibios_release_device(struct pci_dev *pdev)
669 {
670 	zpci_unmap_resources(pdev);
671 }
672 
pcibios_enable_device(struct pci_dev * pdev,int mask)673 int pcibios_enable_device(struct pci_dev *pdev, int mask)
674 {
675 	struct zpci_dev *zdev = to_zpci(pdev);
676 
677 	zpci_debug_init_device(zdev, dev_name(&pdev->dev));
678 	zpci_fmb_enable_device(zdev);
679 
680 	return pci_enable_resources(pdev, mask);
681 }
682 
pcibios_disable_device(struct pci_dev * pdev)683 void pcibios_disable_device(struct pci_dev *pdev)
684 {
685 	struct zpci_dev *zdev = to_zpci(pdev);
686 
687 	zpci_fmb_disable_device(zdev);
688 	zpci_debug_exit_device(zdev);
689 }
690 
691 #ifdef CONFIG_HIBERNATE_CALLBACKS
zpci_restore(struct device * dev)692 static int zpci_restore(struct device *dev)
693 {
694 	struct pci_dev *pdev = to_pci_dev(dev);
695 	struct zpci_dev *zdev = to_zpci(pdev);
696 	int ret = 0;
697 
698 	if (zdev->state != ZPCI_FN_STATE_ONLINE)
699 		goto out;
700 
701 	ret = clp_enable_fh(zdev, ZPCI_NR_DMA_SPACES);
702 	if (ret)
703 		goto out;
704 
705 	zpci_map_resources(pdev);
706 	zpci_register_ioat(zdev, 0, zdev->start_dma, zdev->end_dma,
707 			   (u64) zdev->dma_table);
708 
709 out:
710 	return ret;
711 }
712 
zpci_freeze(struct device * dev)713 static int zpci_freeze(struct device *dev)
714 {
715 	struct pci_dev *pdev = to_pci_dev(dev);
716 	struct zpci_dev *zdev = to_zpci(pdev);
717 
718 	if (zdev->state != ZPCI_FN_STATE_ONLINE)
719 		return 0;
720 
721 	zpci_unregister_ioat(zdev, 0);
722 	zpci_unmap_resources(pdev);
723 	return clp_disable_fh(zdev);
724 }
725 
726 struct dev_pm_ops pcibios_pm_ops = {
727 	.thaw_noirq = zpci_restore,
728 	.freeze_noirq = zpci_freeze,
729 	.restore_noirq = zpci_restore,
730 	.poweroff_noirq = zpci_freeze,
731 };
732 #endif /* CONFIG_HIBERNATE_CALLBACKS */
733 
zpci_alloc_domain(struct zpci_dev * zdev)734 static int zpci_alloc_domain(struct zpci_dev *zdev)
735 {
736 	if (zpci_unique_uid) {
737 		zdev->domain = (u16) zdev->uid;
738 		if (zdev->domain >= ZPCI_NR_DEVICES)
739 			return 0;
740 
741 		spin_lock(&zpci_domain_lock);
742 		if (test_bit(zdev->domain, zpci_domain)) {
743 			spin_unlock(&zpci_domain_lock);
744 			return -EEXIST;
745 		}
746 		set_bit(zdev->domain, zpci_domain);
747 		spin_unlock(&zpci_domain_lock);
748 		return 0;
749 	}
750 
751 	spin_lock(&zpci_domain_lock);
752 	zdev->domain = find_first_zero_bit(zpci_domain, ZPCI_NR_DEVICES);
753 	if (zdev->domain == ZPCI_NR_DEVICES) {
754 		spin_unlock(&zpci_domain_lock);
755 		return -ENOSPC;
756 	}
757 	set_bit(zdev->domain, zpci_domain);
758 	spin_unlock(&zpci_domain_lock);
759 	return 0;
760 }
761 
zpci_free_domain(struct zpci_dev * zdev)762 static void zpci_free_domain(struct zpci_dev *zdev)
763 {
764 	if (zdev->domain >= ZPCI_NR_DEVICES)
765 		return;
766 
767 	spin_lock(&zpci_domain_lock);
768 	clear_bit(zdev->domain, zpci_domain);
769 	spin_unlock(&zpci_domain_lock);
770 }
771 
pcibios_remove_bus(struct pci_bus * bus)772 void pcibios_remove_bus(struct pci_bus *bus)
773 {
774 	struct zpci_dev *zdev = get_zdev_by_bus(bus);
775 
776 	zpci_exit_slot(zdev);
777 	zpci_cleanup_bus_resources(zdev);
778 	zpci_destroy_iommu(zdev);
779 	zpci_free_domain(zdev);
780 
781 	spin_lock(&zpci_list_lock);
782 	list_del(&zdev->entry);
783 	spin_unlock(&zpci_list_lock);
784 
785 	zpci_dbg(3, "rem fid:%x\n", zdev->fid);
786 	kfree(zdev);
787 }
788 
zpci_scan_bus(struct zpci_dev * zdev)789 static int zpci_scan_bus(struct zpci_dev *zdev)
790 {
791 	LIST_HEAD(resources);
792 	int ret;
793 
794 	ret = zpci_setup_bus_resources(zdev, &resources);
795 	if (ret)
796 		goto error;
797 
798 	zdev->bus = pci_scan_root_bus(NULL, ZPCI_BUS_NR, &pci_root_ops,
799 				      zdev, &resources);
800 	if (!zdev->bus) {
801 		ret = -EIO;
802 		goto error;
803 	}
804 	zdev->bus->max_bus_speed = zdev->max_bus_speed;
805 	pci_bus_add_devices(zdev->bus);
806 	return 0;
807 
808 error:
809 	zpci_cleanup_bus_resources(zdev);
810 	pci_free_resource_list(&resources);
811 	return ret;
812 }
813 
zpci_enable_device(struct zpci_dev * zdev)814 int zpci_enable_device(struct zpci_dev *zdev)
815 {
816 	int rc;
817 
818 	rc = clp_enable_fh(zdev, ZPCI_NR_DMA_SPACES);
819 	if (rc)
820 		goto out;
821 
822 	rc = zpci_dma_init_device(zdev);
823 	if (rc)
824 		goto out_dma;
825 
826 	zdev->state = ZPCI_FN_STATE_ONLINE;
827 	return 0;
828 
829 out_dma:
830 	clp_disable_fh(zdev);
831 out:
832 	return rc;
833 }
834 EXPORT_SYMBOL_GPL(zpci_enable_device);
835 
zpci_disable_device(struct zpci_dev * zdev)836 int zpci_disable_device(struct zpci_dev *zdev)
837 {
838 	zpci_dma_exit_device(zdev);
839 	return clp_disable_fh(zdev);
840 }
841 EXPORT_SYMBOL_GPL(zpci_disable_device);
842 
zpci_create_device(struct zpci_dev * zdev)843 int zpci_create_device(struct zpci_dev *zdev)
844 {
845 	int rc;
846 
847 	rc = zpci_alloc_domain(zdev);
848 	if (rc)
849 		goto out;
850 
851 	rc = zpci_init_iommu(zdev);
852 	if (rc)
853 		goto out_free;
854 
855 	mutex_init(&zdev->lock);
856 	if (zdev->state == ZPCI_FN_STATE_CONFIGURED) {
857 		rc = zpci_enable_device(zdev);
858 		if (rc)
859 			goto out_destroy_iommu;
860 	}
861 	rc = zpci_scan_bus(zdev);
862 	if (rc)
863 		goto out_disable;
864 
865 	spin_lock(&zpci_list_lock);
866 	list_add_tail(&zdev->entry, &zpci_list);
867 	spin_unlock(&zpci_list_lock);
868 
869 	zpci_init_slot(zdev);
870 
871 	return 0;
872 
873 out_disable:
874 	if (zdev->state == ZPCI_FN_STATE_ONLINE)
875 		zpci_disable_device(zdev);
876 out_destroy_iommu:
877 	zpci_destroy_iommu(zdev);
878 out_free:
879 	zpci_free_domain(zdev);
880 out:
881 	return rc;
882 }
883 
zpci_remove_device(struct zpci_dev * zdev)884 void zpci_remove_device(struct zpci_dev *zdev)
885 {
886 	if (!zdev->bus)
887 		return;
888 
889 	pci_stop_root_bus(zdev->bus);
890 	pci_remove_root_bus(zdev->bus);
891 }
892 
zpci_report_error(struct pci_dev * pdev,struct zpci_report_error_header * report)893 int zpci_report_error(struct pci_dev *pdev,
894 		      struct zpci_report_error_header *report)
895 {
896 	struct zpci_dev *zdev = to_zpci(pdev);
897 
898 	return sclp_pci_report(report, zdev->fh, zdev->fid);
899 }
900 EXPORT_SYMBOL(zpci_report_error);
901 
zpci_mem_init(void)902 static int zpci_mem_init(void)
903 {
904 	BUILD_BUG_ON(!is_power_of_2(__alignof__(struct zpci_fmb)) ||
905 		     __alignof__(struct zpci_fmb) < sizeof(struct zpci_fmb));
906 
907 	zdev_fmb_cache = kmem_cache_create("PCI_FMB_cache", sizeof(struct zpci_fmb),
908 					   __alignof__(struct zpci_fmb), 0, NULL);
909 	if (!zdev_fmb_cache)
910 		goto error_fmb;
911 
912 	zpci_iomap_start = kcalloc(ZPCI_IOMAP_ENTRIES,
913 				   sizeof(*zpci_iomap_start), GFP_KERNEL);
914 	if (!zpci_iomap_start)
915 		goto error_iomap;
916 
917 	zpci_iomap_bitmap = kcalloc(BITS_TO_LONGS(ZPCI_IOMAP_ENTRIES),
918 				    sizeof(*zpci_iomap_bitmap), GFP_KERNEL);
919 	if (!zpci_iomap_bitmap)
920 		goto error_iomap_bitmap;
921 
922 	return 0;
923 error_iomap_bitmap:
924 	kfree(zpci_iomap_start);
925 error_iomap:
926 	kmem_cache_destroy(zdev_fmb_cache);
927 error_fmb:
928 	return -ENOMEM;
929 }
930 
zpci_mem_exit(void)931 static void zpci_mem_exit(void)
932 {
933 	kfree(zpci_iomap_bitmap);
934 	kfree(zpci_iomap_start);
935 	kmem_cache_destroy(zdev_fmb_cache);
936 }
937 
938 static unsigned int s390_pci_probe = 1;
939 static unsigned int s390_pci_initialized;
940 
pcibios_setup(char * str)941 char * __init pcibios_setup(char *str)
942 {
943 	if (!strcmp(str, "off")) {
944 		s390_pci_probe = 0;
945 		return NULL;
946 	}
947 	return str;
948 }
949 
zpci_is_enabled(void)950 bool zpci_is_enabled(void)
951 {
952 	return s390_pci_initialized;
953 }
954 
pci_base_init(void)955 static int __init pci_base_init(void)
956 {
957 	int rc;
958 
959 	if (!s390_pci_probe)
960 		return 0;
961 
962 	if (!test_facility(69) || !test_facility(71))
963 		return 0;
964 
965 	rc = zpci_debug_init();
966 	if (rc)
967 		goto out;
968 
969 	rc = zpci_mem_init();
970 	if (rc)
971 		goto out_mem;
972 
973 	rc = zpci_irq_init();
974 	if (rc)
975 		goto out_irq;
976 
977 	rc = zpci_dma_init();
978 	if (rc)
979 		goto out_dma;
980 
981 	rc = clp_scan_pci_devices();
982 	if (rc)
983 		goto out_find;
984 
985 	s390_pci_initialized = 1;
986 	return 0;
987 
988 out_find:
989 	zpci_dma_exit();
990 out_dma:
991 	zpci_irq_exit();
992 out_irq:
993 	zpci_mem_exit();
994 out_mem:
995 	zpci_debug_exit();
996 out:
997 	return rc;
998 }
999 subsys_initcall_sync(pci_base_init);
1000 
zpci_rescan(void)1001 void zpci_rescan(void)
1002 {
1003 	if (zpci_is_enabled())
1004 		clp_rescan_pci_devices_simple();
1005 }
1006