pci.c 22.5 KB
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// SPDX-License-Identifier: GPL-2.0
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/*
 * Copyright IBM Corp. 2012
 *
 * Author(s):
 *   Jan Glauber <jang@linux.vnet.ibm.com>
 *
 * The System z PCI code is a rewrite from a prototype by
 * the following people (Kudoz!):
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 *   Alexander Schmidt
 *   Christoph Raisch
 *   Hannes Hering
 *   Hoang-Nam Nguyen
 *   Jan-Bernd Themann
 *   Stefan Roscher
 *   Thomas Klein
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 */

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#define KMSG_COMPONENT "zpci"
#define pr_fmt(fmt) KMSG_COMPONENT ": " fmt
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#include <linux/kernel.h>
#include <linux/slab.h>
#include <linux/err.h>
#include <linux/export.h>
#include <linux/delay.h>
#include <linux/seq_file.h>
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#include <linux/jump_label.h>
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#include <linux/pci.h>
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#include <linux/printk.h>
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#include <asm/isc.h>
#include <asm/airq.h>
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#include <asm/facility.h>
#include <asm/pci_insn.h>
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#include <asm/pci_clp.h>
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#include <asm/pci_dma.h>
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#include "pci_bus.h"
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#include "pci_iov.h"
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/* list of all detected zpci devices */
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static LIST_HEAD(zpci_list);
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static DEFINE_SPINLOCK(zpci_list_lock);
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static DECLARE_BITMAP(zpci_domain, ZPCI_DOMAIN_BITMAP_SIZE);
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static DEFINE_SPINLOCK(zpci_domain_lock);
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#define ZPCI_IOMAP_ENTRIES						\
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	min(((unsigned long) ZPCI_NR_DEVICES * PCI_STD_NUM_BARS / 2),	\
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	    ZPCI_IOMAP_MAX_ENTRIES)

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unsigned int s390_pci_no_rid;

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static DEFINE_SPINLOCK(zpci_iomap_lock);
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static unsigned long *zpci_iomap_bitmap;
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struct zpci_iomap_entry *zpci_iomap_start;
EXPORT_SYMBOL_GPL(zpci_iomap_start);

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DEFINE_STATIC_KEY_FALSE(have_mio);

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static struct kmem_cache *zdev_fmb_cache;

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struct zpci_dev *get_zdev_by_fid(u32 fid)
{
	struct zpci_dev *tmp, *zdev = NULL;

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	spin_lock(&zpci_list_lock);
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	list_for_each_entry(tmp, &zpci_list, entry) {
		if (tmp->fid == fid) {
			zdev = tmp;
			break;
		}
	}
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	spin_unlock(&zpci_list_lock);
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	return zdev;
}

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void zpci_remove_reserved_devices(void)
{
	struct zpci_dev *tmp, *zdev;
	enum zpci_state state;
	LIST_HEAD(remove);

	spin_lock(&zpci_list_lock);
	list_for_each_entry_safe(zdev, tmp, &zpci_list, entry) {
		if (zdev->state == ZPCI_FN_STATE_STANDBY &&
		    !clp_get_state(zdev->fid, &state) &&
		    state == ZPCI_FN_STATE_RESERVED)
			list_move_tail(&zdev->entry, &remove);
	}
	spin_unlock(&zpci_list_lock);

	list_for_each_entry_safe(zdev, tmp, &remove, entry)
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		zpci_zdev_put(zdev);
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}

int pci_domain_nr(struct pci_bus *bus)
{
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	return ((struct zpci_bus *) bus->sysdata)->domain_nr;
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}
EXPORT_SYMBOL_GPL(pci_domain_nr);

int pci_proc_domain(struct pci_bus *bus)
{
	return pci_domain_nr(bus);
}
EXPORT_SYMBOL_GPL(pci_proc_domain);

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/* Modify PCI: Register I/O address translation parameters */
int zpci_register_ioat(struct zpci_dev *zdev, u8 dmaas,
		       u64 base, u64 limit, u64 iota)
{
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	u64 req = ZPCI_CREATE_REQ(zdev->fh, dmaas, ZPCI_MOD_FC_REG_IOAT);
	struct zpci_fib fib = {0};
	u8 status;
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	WARN_ON_ONCE(iota & 0x3fff);
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	fib.pba = base;
	fib.pal = limit;
	fib.iota = iota | ZPCI_IOTA_RTTO_FLAG;
	return zpci_mod_fc(req, &fib, &status) ? -EIO : 0;
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}

/* Modify PCI: Unregister I/O address translation parameters */
int zpci_unregister_ioat(struct zpci_dev *zdev, u8 dmaas)
{
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	u64 req = ZPCI_CREATE_REQ(zdev->fh, dmaas, ZPCI_MOD_FC_DEREG_IOAT);
	struct zpci_fib fib = {0};
	u8 cc, status;
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	cc = zpci_mod_fc(req, &fib, &status);
	if (cc == 3) /* Function already gone. */
		cc = 0;
	return cc ? -EIO : 0;
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}

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/* Modify PCI: Set PCI function measurement parameters */
int zpci_fmb_enable_device(struct zpci_dev *zdev)
{
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	u64 req = ZPCI_CREATE_REQ(zdev->fh, 0, ZPCI_MOD_FC_SET_MEASURE);
	struct zpci_fib fib = {0};
	u8 cc, status;
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	if (zdev->fmb || sizeof(*zdev->fmb) < zdev->fmb_length)
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		return -EINVAL;

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	zdev->fmb = kmem_cache_zalloc(zdev_fmb_cache, GFP_KERNEL);
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	if (!zdev->fmb)
		return -ENOMEM;
	WARN_ON((u64) zdev->fmb & 0xf);

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	/* reset software counters */
	atomic64_set(&zdev->allocated_pages, 0);
	atomic64_set(&zdev->mapped_pages, 0);
	atomic64_set(&zdev->unmapped_pages, 0);

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	fib.fmb_addr = virt_to_phys(zdev->fmb);
	cc = zpci_mod_fc(req, &fib, &status);
	if (cc) {
		kmem_cache_free(zdev_fmb_cache, zdev->fmb);
		zdev->fmb = NULL;
	}
	return cc ? -EIO : 0;
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}

/* Modify PCI: Disable PCI function measurement */
int zpci_fmb_disable_device(struct zpci_dev *zdev)
{
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	u64 req = ZPCI_CREATE_REQ(zdev->fh, 0, ZPCI_MOD_FC_SET_MEASURE);
	struct zpci_fib fib = {0};
	u8 cc, status;
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	if (!zdev->fmb)
		return -EINVAL;

	/* Function measurement is disabled if fmb address is zero */
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	cc = zpci_mod_fc(req, &fib, &status);
	if (cc == 3) /* Function already gone. */
		cc = 0;
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	if (!cc) {
		kmem_cache_free(zdev_fmb_cache, zdev->fmb);
		zdev->fmb = NULL;
	}
	return cc ? -EIO : 0;
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}

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static int zpci_cfg_load(struct zpci_dev *zdev, int offset, u32 *val, u8 len)
{
	u64 req = ZPCI_CREATE_REQ(zdev->fh, ZPCI_PCIAS_CFGSPC, len);
	u64 data;
	int rc;

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	rc = __zpci_load(&data, req, offset);
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	if (!rc) {
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		data = le64_to_cpu((__force __le64) data);
		data >>= (8 - len) * 8;
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		*val = (u32) data;
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	} else
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		*val = 0xffffffff;
	return rc;
}

static int zpci_cfg_store(struct zpci_dev *zdev, int offset, u32 val, u8 len)
{
	u64 req = ZPCI_CREATE_REQ(zdev->fh, ZPCI_PCIAS_CFGSPC, len);
	u64 data = val;
	int rc;

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	data <<= (8 - len) * 8;
	data = (__force u64) cpu_to_le64(data);
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	rc = __zpci_store(data, req, offset);
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	return rc;
}

resource_size_t pcibios_align_resource(void *data, const struct resource *res,
				       resource_size_t size,
				       resource_size_t align)
{
	return 0;
}

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/* combine single writes by using store-block insn */
void __iowrite64_copy(void __iomem *to, const void *from, size_t count)
{
       zpci_memcpy_toio(to, from, count);
}

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static void __iomem *__ioremap(phys_addr_t addr, size_t size, pgprot_t prot)
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{
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	unsigned long offset, vaddr;
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	struct vm_struct *area;
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	phys_addr_t last_addr;
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	last_addr = addr + size - 1;
	if (!size || last_addr < addr)
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		return NULL;

	if (!static_branch_unlikely(&have_mio))
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		return (void __iomem *) addr;
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	offset = addr & ~PAGE_MASK;
	addr &= PAGE_MASK;
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	size = PAGE_ALIGN(size + offset);
	area = get_vm_area(size, VM_IOREMAP);
	if (!area)
		return NULL;

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	vaddr = (unsigned long) area->addr;
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	if (ioremap_page_range(vaddr, vaddr + size, addr, prot)) {
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		free_vm_area(area);
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		return NULL;
	}
	return (void __iomem *) ((unsigned long) area->addr + offset);
}
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void __iomem *ioremap_prot(phys_addr_t addr, size_t size, unsigned long prot)
{
	return __ioremap(addr, size, __pgprot(prot));
}
EXPORT_SYMBOL(ioremap_prot);

void __iomem *ioremap(phys_addr_t addr, size_t size)
{
	return __ioremap(addr, size, PAGE_KERNEL);
}
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EXPORT_SYMBOL(ioremap);

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void __iomem *ioremap_wc(phys_addr_t addr, size_t size)
{
	return __ioremap(addr, size, pgprot_writecombine(PAGE_KERNEL));
}
EXPORT_SYMBOL(ioremap_wc);

void __iomem *ioremap_wt(phys_addr_t addr, size_t size)
{
	return __ioremap(addr, size, pgprot_writethrough(PAGE_KERNEL));
}
EXPORT_SYMBOL(ioremap_wt);

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void iounmap(volatile void __iomem *addr)
{
	if (static_branch_likely(&have_mio))
		vunmap((__force void *) ((unsigned long) addr & PAGE_MASK));
}
EXPORT_SYMBOL(iounmap);

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/* Create a virtual mapping cookie for a PCI BAR */
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static void __iomem *pci_iomap_range_fh(struct pci_dev *pdev, int bar,
					unsigned long offset, unsigned long max)
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{
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	struct zpci_dev *zdev =	to_zpci(pdev);
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	int idx;

	idx = zdev->bars[bar].map_idx;
	spin_lock(&zpci_iomap_lock);
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	/* Detect overrun */
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	WARN_ON(!++zpci_iomap_start[idx].count);
	zpci_iomap_start[idx].fh = zdev->fh;
	zpci_iomap_start[idx].bar = bar;
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	spin_unlock(&zpci_iomap_lock);

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	return (void __iomem *) ZPCI_ADDR(idx) + offset;
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}
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static void __iomem *pci_iomap_range_mio(struct pci_dev *pdev, int bar,
					 unsigned long offset,
					 unsigned long max)
{
	unsigned long barsize = pci_resource_len(pdev, bar);
	struct zpci_dev *zdev = to_zpci(pdev);
	void __iomem *iova;

	iova = ioremap((unsigned long) zdev->bars[bar].mio_wt, barsize);
	return iova ? iova + offset : iova;
}

void __iomem *pci_iomap_range(struct pci_dev *pdev, int bar,
			      unsigned long offset, unsigned long max)
{
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	if (bar >= PCI_STD_NUM_BARS || !pci_resource_len(pdev, bar))
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		return NULL;

	if (static_branch_likely(&have_mio))
		return pci_iomap_range_mio(pdev, bar, offset, max);
	else
		return pci_iomap_range_fh(pdev, bar, offset, max);
}
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EXPORT_SYMBOL(pci_iomap_range);
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void __iomem *pci_iomap(struct pci_dev *dev, int bar, unsigned long maxlen)
{
	return pci_iomap_range(dev, bar, 0, maxlen);
}
EXPORT_SYMBOL(pci_iomap);
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static void __iomem *pci_iomap_wc_range_mio(struct pci_dev *pdev, int bar,
					    unsigned long offset, unsigned long max)
{
	unsigned long barsize = pci_resource_len(pdev, bar);
	struct zpci_dev *zdev = to_zpci(pdev);
	void __iomem *iova;

	iova = ioremap((unsigned long) zdev->bars[bar].mio_wb, barsize);
	return iova ? iova + offset : iova;
}

void __iomem *pci_iomap_wc_range(struct pci_dev *pdev, int bar,
				 unsigned long offset, unsigned long max)
{
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	if (bar >= PCI_STD_NUM_BARS || !pci_resource_len(pdev, bar))
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		return NULL;

	if (static_branch_likely(&have_mio))
		return pci_iomap_wc_range_mio(pdev, bar, offset, max);
	else
		return pci_iomap_range_fh(pdev, bar, offset, max);
}
EXPORT_SYMBOL(pci_iomap_wc_range);

void __iomem *pci_iomap_wc(struct pci_dev *dev, int bar, unsigned long maxlen)
{
	return pci_iomap_wc_range(dev, bar, 0, maxlen);
}
EXPORT_SYMBOL(pci_iomap_wc);

static void pci_iounmap_fh(struct pci_dev *pdev, void __iomem *addr)
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{
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	unsigned int idx = ZPCI_IDX(addr);
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	spin_lock(&zpci_iomap_lock);
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	/* Detect underrun */
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	WARN_ON(!zpci_iomap_start[idx].count);
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	if (!--zpci_iomap_start[idx].count) {
		zpci_iomap_start[idx].fh = 0;
		zpci_iomap_start[idx].bar = 0;
	}
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	spin_unlock(&zpci_iomap_lock);
}
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static void pci_iounmap_mio(struct pci_dev *pdev, void __iomem *addr)
{
	iounmap(addr);
}

void pci_iounmap(struct pci_dev *pdev, void __iomem *addr)
{
	if (static_branch_likely(&have_mio))
		pci_iounmap_mio(pdev, addr);
	else
		pci_iounmap_fh(pdev, addr);
}
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EXPORT_SYMBOL(pci_iounmap);
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static int pci_read(struct pci_bus *bus, unsigned int devfn, int where,
		    int size, u32 *val)
{
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	struct zpci_dev *zdev = get_zdev_by_bus(bus, devfn);
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	return (zdev) ? zpci_cfg_load(zdev, where, val, size) : -ENODEV;
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}

static int pci_write(struct pci_bus *bus, unsigned int devfn, int where,
		     int size, u32 val)
{
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	struct zpci_dev *zdev = get_zdev_by_bus(bus, devfn);
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	return (zdev) ? zpci_cfg_store(zdev, where, val, size) : -ENODEV;
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}

static struct pci_ops pci_root_ops = {
	.read = pci_read,
	.write = pci_write,
};

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static void zpci_map_resources(struct pci_dev *pdev)
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{
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	struct zpci_dev *zdev = to_zpci(pdev);
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	resource_size_t len;
	int i;

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	for (i = 0; i < PCI_STD_NUM_BARS; i++) {
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		len = pci_resource_len(pdev, i);
		if (!len)
			continue;
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		if (zpci_use_mio(zdev))
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			pdev->resource[i].start =
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				(resource_size_t __force) zdev->bars[i].mio_wt;
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		else
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			pdev->resource[i].start = (resource_size_t __force)
				pci_iomap_range_fh(pdev, i, 0, 0);
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		pdev->resource[i].end = pdev->resource[i].start + len - 1;
	}
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	zpci_iov_map_resources(pdev);
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}

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static void zpci_unmap_resources(struct pci_dev *pdev)
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{
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	struct zpci_dev *zdev = to_zpci(pdev);
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	resource_size_t len;
	int i;

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	if (zpci_use_mio(zdev))
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		return;

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	for (i = 0; i < PCI_STD_NUM_BARS; i++) {
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		len = pci_resource_len(pdev, i);
		if (!len)
			continue;
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		pci_iounmap_fh(pdev, (void __iomem __force *)
			       pdev->resource[i].start);
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	}
}
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static int zpci_alloc_iomap(struct zpci_dev *zdev)
{
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	unsigned long entry;
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	spin_lock(&zpci_iomap_lock);
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	entry = find_first_zero_bit(zpci_iomap_bitmap, ZPCI_IOMAP_ENTRIES);
	if (entry == ZPCI_IOMAP_ENTRIES) {
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		spin_unlock(&zpci_iomap_lock);
		return -ENOSPC;
	}
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	set_bit(entry, zpci_iomap_bitmap);
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	spin_unlock(&zpci_iomap_lock);
	return entry;
}

static void zpci_free_iomap(struct zpci_dev *zdev, int entry)
{
	spin_lock(&zpci_iomap_lock);
	memset(&zpci_iomap_start[entry], 0, sizeof(struct zpci_iomap_entry));
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	clear_bit(entry, zpci_iomap_bitmap);
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	spin_unlock(&zpci_iomap_lock);
}

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static struct resource *__alloc_res(struct zpci_dev *zdev, unsigned long start,
				    unsigned long size, unsigned long flags)
{
	struct resource *r;

	r = kzalloc(sizeof(*r), GFP_KERNEL);
	if (!r)
		return NULL;

	r->start = start;
	r->end = r->start + size - 1;
	r->flags = flags;
	r->name = zdev->res_name;

	if (request_resource(&iomem_resource, r)) {
		kfree(r);
		return NULL;
	}
	return r;
}

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int zpci_setup_bus_resources(struct zpci_dev *zdev,
			     struct list_head *resources)
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{
	unsigned long addr, size, flags;
	struct resource *res;
	int i, entry;

	snprintf(zdev->res_name, sizeof(zdev->res_name),
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		 "PCI Bus %04x:%02x", zdev->uid, ZPCI_BUS_NR);
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	for (i = 0; i < PCI_STD_NUM_BARS; i++) {
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		if (!zdev->bars[i].size)
			continue;
		entry = zpci_alloc_iomap(zdev);
		if (entry < 0)
			return entry;
		zdev->bars[i].map_idx = entry;

		/* only MMIO is supported */
		flags = IORESOURCE_MEM;
		if (zdev->bars[i].val & 8)
			flags |= IORESOURCE_PREFETCH;
		if (zdev->bars[i].val & 4)
			flags |= IORESOURCE_MEM_64;

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		if (zpci_use_mio(zdev))
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			addr = (unsigned long) zdev->bars[i].mio_wt;
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		else
			addr = ZPCI_ADDR(entry);
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		size = 1UL << zdev->bars[i].size;

		res = __alloc_res(zdev, addr, size, flags);
		if (!res) {
			zpci_free_iomap(zdev, entry);
			return -ENOMEM;
		}
		zdev->bars[i].res = res;
		pci_add_resource(resources, res);
	}

	return 0;
}

static void zpci_cleanup_bus_resources(struct zpci_dev *zdev)
{
	int i;

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	for (i = 0; i < PCI_STD_NUM_BARS; i++) {
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		if (!zdev->bars[i].size || !zdev->bars[i].res)
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			continue;

		zpci_free_iomap(zdev, zdev->bars[i].map_idx);
		release_resource(zdev->bars[i].res);
		kfree(zdev->bars[i].res);
	}
}

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int pcibios_add_device(struct pci_dev *pdev)
{
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	struct resource *res;
	int i;

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	if (pdev->is_physfn)
		pdev->no_vf_scan = 1;

567
	pdev->dev.groups = zpci_attr_groups;
568
	pdev->dev.dma_ops = &s390_pci_dma_ops;
569
	zpci_map_resources(pdev);
S
Sebastian Ott 已提交
570

571
	for (i = 0; i < PCI_STD_NUM_BARS; i++) {
S
Sebastian Ott 已提交
572 573 574 575 576 577 578 579 580
		res = &pdev->resource[i];
		if (res->parent || !res->flags)
			continue;
		pci_claim_resource(pdev, i);
	}

	return 0;
}

581 582 583 584 585
void pcibios_release_device(struct pci_dev *pdev)
{
	zpci_unmap_resources(pdev);
}

S
Sebastian Ott 已提交
586 587
int pcibios_enable_device(struct pci_dev *pdev, int mask)
{
S
Sebastian Ott 已提交
588
	struct zpci_dev *zdev = to_zpci(pdev);
589

590
	zpci_debug_init_device(zdev, dev_name(&pdev->dev));
591 592
	zpci_fmb_enable_device(zdev);

593
	return pci_enable_resources(pdev, mask);
594 595
}

S
Sebastian Ott 已提交
596
void pcibios_disable_device(struct pci_dev *pdev)
597
{
S
Sebastian Ott 已提交
598
	struct zpci_dev *zdev = to_zpci(pdev);
599 600 601 602 603

	zpci_fmb_disable_device(zdev);
	zpci_debug_exit_device(zdev);
}

P
Pierre Morel 已提交
604
static int __zpci_register_domain(int domain)
J
Jan Glauber 已提交
605
{
606
	spin_lock(&zpci_domain_lock);
P
Pierre Morel 已提交
607
	if (test_bit(domain, zpci_domain)) {
608
		spin_unlock(&zpci_domain_lock);
P
Pierre Morel 已提交
609 610
		pr_err("Domain %04x is already assigned\n", domain);
		return -EEXIST;
611
	}
P
Pierre Morel 已提交
612 613 614 615
	set_bit(domain, zpci_domain);
	spin_unlock(&zpci_domain_lock);
	return domain;
}
616

P
Pierre Morel 已提交
617 618 619
static int __zpci_alloc_domain(void)
{
	int domain;
620

P
Pierre Morel 已提交
621
	spin_lock(&zpci_domain_lock);
622 623 624 625 626
	/*
	 * We can always auto allocate domains below ZPCI_NR_DEVICES.
	 * There is either a free domain or we have reached the maximum in
	 * which case we would have bailed earlier.
	 */
P
Pierre Morel 已提交
627 628
	domain = find_first_zero_bit(zpci_domain, ZPCI_NR_DEVICES);
	set_bit(domain, zpci_domain);
J
Jan Glauber 已提交
629
	spin_unlock(&zpci_domain_lock);
P
Pierre Morel 已提交
630
	return domain;
J
Jan Glauber 已提交
631 632
}

P
Pierre Morel 已提交
633
int zpci_alloc_domain(int domain)
J
Jan Glauber 已提交
634
{
P
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635 636 637 638 639 640 641
	if (zpci_unique_uid) {
		if (domain)
			return __zpci_register_domain(domain);
		pr_warn("UID checking was active but no UID is provided: switching to automatic domain allocation\n");
		update_uid_checking(false);
	}
	return __zpci_alloc_domain();
J
Jan Glauber 已提交
642 643
}

P
Pierre Morel 已提交
644
void zpci_free_domain(int domain)
645
{
P
Pierre Morel 已提交
646 647 648
	spin_lock(&zpci_domain_lock);
	clear_bit(domain, zpci_domain);
	spin_unlock(&zpci_domain_lock);
649 650 651
}


J
Jan Glauber 已提交
652 653 654 655 656 657 658
int zpci_enable_device(struct zpci_dev *zdev)
{
	int rc;

	rc = clp_enable_fh(zdev, ZPCI_NR_DMA_SPACES);
	if (rc)
		goto out;
J
Jan Glauber 已提交
659 660 661 662

	rc = zpci_dma_init_device(zdev);
	if (rc)
		goto out_dma;
S
Sebastian Ott 已提交
663

J
Jan Glauber 已提交
664
	return 0;
J
Jan Glauber 已提交
665 666 667

out_dma:
	clp_disable_fh(zdev);
J
Jan Glauber 已提交
668 669 670 671
out:
	return rc;
}

672 673 674
int zpci_disable_device(struct zpci_dev *zdev)
{
	zpci_dma_exit_device(zdev);
675 676 677 678
	/*
	 * The zPCI function may already be disabled by the platform, this is
	 * detected in clp_disable_fh() which becomes a no-op.
	 */
679 680 681
	return clp_disable_fh(zdev);
}

682 683 684 685 686 687 688 689 690 691 692 693
/**
 * zpci_create_device() - Create a new zpci_dev and add it to the zbus
 * @fid: Function ID of the device to be created
 * @fh: Current Function Handle of the device to be created
 * @state: Initial state after creation either Standby or Configured
 *
 * Creates a new zpci device and adds it to its, possibly newly created, zbus
 * as well as zpci_list.
 *
 * Returns: 0 on success, an error value otherwise
 */
int zpci_create_device(u32 fid, u32 fh, enum zpci_state state)
J
Jan Glauber 已提交
694
{
695
	struct zpci_dev *zdev;
J
Jan Glauber 已提交
696 697
	int rc;

698 699 700 701
	zpci_dbg(3, "add fid:%x, fh:%x, c:%d\n", fid, fh, state);
	zdev = kzalloc(sizeof(*zdev), GFP_KERNEL);
	if (!zdev)
		return -ENOMEM;
P
Pierre Morel 已提交
702

703 704 705
	/* FID and Function Handle are the static/dynamic identifiers */
	zdev->fid = fid;
	zdev->fh = fh;
J
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706

707 708
	/* Query function properties and update zdev */
	rc = clp_query_pci_fn(zdev);
709
	if (rc)
710 711
		goto error;
	zdev->state =  state;
712

713
	kref_init(&zdev->kref);
714
	mutex_init(&zdev->lock);
715 716 717 718 719

	rc = zpci_init_iommu(zdev);
	if (rc)
		goto error;

S
Sebastian Ott 已提交
720 721 722
	if (zdev->state == ZPCI_FN_STATE_CONFIGURED) {
		rc = zpci_enable_device(zdev);
		if (rc)
723
			goto error_destroy_iommu;
S
Sebastian Ott 已提交
724
	}
P
Pierre Morel 已提交
725 726

	rc = zpci_bus_device_register(zdev, &pci_root_ops);
J
Jan Glauber 已提交
727
	if (rc)
728 729 730 731 732
		goto error_disable;

	spin_lock(&zpci_list_lock);
	list_add_tail(&zdev->entry, &zpci_list);
	spin_unlock(&zpci_list_lock);
J
Jan Glauber 已提交
733 734 735

	return 0;

736
error_disable:
737
	if (zdev_enabled(zdev))
S
Sebastian Ott 已提交
738
		zpci_disable_device(zdev);
739
error_destroy_iommu:
740
	zpci_destroy_iommu(zdev);
741 742 743
error:
	zpci_dbg(0, "add fid:%x, rc:%d\n", fid, rc);
	kfree(zdev);
J
Jan Glauber 已提交
744 745 746
	return rc;
}

747 748 749 750 751 752 753 754 755 756 757 758 759 760 761 762 763 764 765 766 767 768 769 770 771 772 773 774 775 776 777 778 779 780 781 782 783 784 785 786 787 788 789 790 791 792 793 794 795 796 797 798 799 800 801 802 803 804 805 806 807 808 809 810 811 812 813 814 815 816
/**
 * zpci_configure_device() - Configure a zpci_dev
 * @zdev: The zpci_dev to be configured
 * @fh: The general function handle supplied by the platform
 *
 * Configuring a device includes the configuration itself, if not done by the
 * platform, enabling, scanning and adding it to the common code PCI subsystem.
 * If any failure occurs, the zpci_dev is left in Standby.
 *
 * Return: 0 on success, or an error code otherwise
 */
int zpci_configure_device(struct zpci_dev *zdev, u32 fh)
{
	struct pci_dev *pdev;
	int rc;

	zdev->fh = fh;
	if (zdev->state != ZPCI_FN_STATE_CONFIGURED) {
		rc = sclp_pci_configure(zdev->fid);
		zpci_dbg(3, "conf fid:%x, rc:%d\n", zdev->fid, rc);
		if (rc)
			return rc;
		zdev->state = ZPCI_FN_STATE_CONFIGURED;
	}

	rc = zpci_enable_device(zdev);
	if (rc)
		goto error;

	/* the PCI function will be scanned once function 0 appears */
	if (!zdev->zbus->bus)
		return 0;

	pdev = pci_scan_single_device(zdev->zbus->bus, zdev->devfn);
	if (!pdev)
		goto error_disable;

	pci_bus_add_device(pdev);
	pci_lock_rescan_remove();
	pci_bus_add_devices(zdev->zbus->bus);
	pci_unlock_rescan_remove();
	return 0;

error_disable:
	zpci_disable_device(zdev);
error:
	if (zdev->state == ZPCI_FN_STATE_CONFIGURED) {
		rc = sclp_pci_deconfigure(zdev->fid);
		zpci_dbg(3, "deconf fid:%x, rc:%d\n", zdev->fid, rc);
		if (!rc)
			zdev->state = ZPCI_FN_STATE_STANDBY;
	}
	return rc;
}

/**
 * zpci_deconfigure_device() - Deconfigure a zpci_dev
 * @zdev: The zpci_dev to configure
 *
 * Deconfigure a zPCI function that is currently configured and possibly known
 * to the common code PCI subsystem.
 * If any failure occurs the device is left as is.
 *
 * Return: 0 on success, or an error code otherwise
 */
int zpci_deconfigure_device(struct zpci_dev *zdev)
{
	int rc;

	if (zdev->zbus->bus)
817
		zpci_bus_remove_device(zdev, false);
818 819 820 821 822 823 824 825 826 827 828 829 830 831 832 833

	if (zdev_enabled(zdev)) {
		rc = zpci_disable_device(zdev);
		if (rc)
			return rc;
	}

	rc = sclp_pci_deconfigure(zdev->fid);
	zpci_dbg(3, "deconf fid:%x, rc:%d\n", zdev->fid, rc);
	if (rc)
		return rc;
	zdev->state = ZPCI_FN_STATE_STANDBY;

	return 0;
}

P
Pierre Morel 已提交
834
void zpci_release_device(struct kref *kref)
S
Sebastian Ott 已提交
835
{
P
Pierre Morel 已提交
836
	struct zpci_dev *zdev = container_of(kref, struct zpci_dev, kref);
837
	int ret;
P
Pierre Morel 已提交
838

839
	if (zdev->zbus->bus)
840
		zpci_bus_remove_device(zdev, false);
P
Pierre Morel 已提交
841

842
	if (zdev_enabled(zdev))
P
Pierre Morel 已提交
843
		zpci_disable_device(zdev);
844 845

	switch (zdev->state) {
846 847 848 849
	case ZPCI_FN_STATE_CONFIGURED:
		ret = sclp_pci_deconfigure(zdev->fid);
		zpci_dbg(3, "deconf fid:%x, rc:%d\n", zdev->fid, ret);
		fallthrough;
P
Pierre Morel 已提交
850
	case ZPCI_FN_STATE_STANDBY:
P
Pierre Morel 已提交
851
		if (zdev->has_hp_slot)
P
Pierre Morel 已提交
852
			zpci_exit_slot(zdev);
P
Pierre Morel 已提交
853 854 855
		zpci_cleanup_bus_resources(zdev);
		zpci_bus_device_unregister(zdev);
		zpci_destroy_iommu(zdev);
P
Pierre Morel 已提交
856 857 858 859
		fallthrough;
	default:
		break;
	}
S
Sebastian Ott 已提交
860

P
Pierre Morel 已提交
861 862 863 864 865
	spin_lock(&zpci_list_lock);
	list_del(&zdev->entry);
	spin_unlock(&zpci_list_lock);
	zpci_dbg(3, "rem fid:%x\n", zdev->fid);
	kfree(zdev);
S
Sebastian Ott 已提交
866 867
}

868 869 870 871 872 873 874 875 876
int zpci_report_error(struct pci_dev *pdev,
		      struct zpci_report_error_header *report)
{
	struct zpci_dev *zdev = to_zpci(pdev);

	return sclp_pci_report(report, zdev->fh, zdev->fid);
}
EXPORT_SYMBOL(zpci_report_error);

J
Jan Glauber 已提交
877 878
static int zpci_mem_init(void)
{
879 880 881
	BUILD_BUG_ON(!is_power_of_2(__alignof__(struct zpci_fmb)) ||
		     __alignof__(struct zpci_fmb) < sizeof(struct zpci_fmb));

882
	zdev_fmb_cache = kmem_cache_create("PCI_FMB_cache", sizeof(struct zpci_fmb),
883
					   __alignof__(struct zpci_fmb), 0, NULL);
884
	if (!zdev_fmb_cache)
S
Sebastian Ott 已提交
885
		goto error_fmb;
886

S
Sebastian Ott 已提交
887 888
	zpci_iomap_start = kcalloc(ZPCI_IOMAP_ENTRIES,
				   sizeof(*zpci_iomap_start), GFP_KERNEL);
J
Jan Glauber 已提交
889
	if (!zpci_iomap_start)
890
		goto error_iomap;
J
Jan Glauber 已提交
891

S
Sebastian Ott 已提交
892 893 894 895 896
	zpci_iomap_bitmap = kcalloc(BITS_TO_LONGS(ZPCI_IOMAP_ENTRIES),
				    sizeof(*zpci_iomap_bitmap), GFP_KERNEL);
	if (!zpci_iomap_bitmap)
		goto error_iomap_bitmap;

897 898 899
	if (static_branch_likely(&have_mio))
		clp_setup_writeback_mio();

S
Sebastian Ott 已提交
900 901 902
	return 0;
error_iomap_bitmap:
	kfree(zpci_iomap_start);
903
error_iomap:
904
	kmem_cache_destroy(zdev_fmb_cache);
S
Sebastian Ott 已提交
905
error_fmb:
J
Jan Glauber 已提交
906 907 908 909 910
	return -ENOMEM;
}

static void zpci_mem_exit(void)
{
S
Sebastian Ott 已提交
911
	kfree(zpci_iomap_bitmap);
J
Jan Glauber 已提交
912
	kfree(zpci_iomap_start);
913
	kmem_cache_destroy(zdev_fmb_cache);
J
Jan Glauber 已提交
914 915
}

916
static unsigned int s390_pci_probe __initdata = 1;
917
static unsigned int s390_pci_no_mio __initdata;
918
unsigned int s390_pci_force_floating __initdata;
919
static unsigned int s390_pci_initialized;
J
Jan Glauber 已提交
920 921 922

char * __init pcibios_setup(char *str)
{
S
Sebastian Ott 已提交
923 924
	if (!strcmp(str, "off")) {
		s390_pci_probe = 0;
J
Jan Glauber 已提交
925 926
		return NULL;
	}
927 928 929 930
	if (!strcmp(str, "nomio")) {
		s390_pci_no_mio = 1;
		return NULL;
	}
931 932 933 934
	if (!strcmp(str, "force_floating")) {
		s390_pci_force_floating = 1;
		return NULL;
	}
935 936 937 938
	if (!strcmp(str, "norid")) {
		s390_pci_no_rid = 1;
		return NULL;
	}
J
Jan Glauber 已提交
939 940 941
	return str;
}

942 943 944 945 946
bool zpci_is_enabled(void)
{
	return s390_pci_initialized;
}

J
Jan Glauber 已提交
947 948 949 950
static int __init pci_base_init(void)
{
	int rc;

951
	if (!s390_pci_probe)
J
Jan Glauber 已提交
952 953
		return 0;

954 955
	if (!test_facility(69) || !test_facility(71)) {
		pr_info("PCI is not supported because CPU facilities 69 or 71 are not available\n");
J
Jan Glauber 已提交
956
		return 0;
957
	}
J
Jan Glauber 已提交
958

959
	if (test_facility(153) && !s390_pci_no_mio) {
960
		static_branch_enable(&have_mio);
961 962
		ctl_set_bit(2, 5);
	}
963

964 965
	rc = zpci_debug_init();
	if (rc)
966
		goto out;
967

J
Jan Glauber 已提交
968 969 970 971
	rc = zpci_mem_init();
	if (rc)
		goto out_mem;

972 973 974 975
	rc = zpci_irq_init();
	if (rc)
		goto out_irq;

J
Jan Glauber 已提交
976 977 978 979
	rc = zpci_dma_init();
	if (rc)
		goto out_dma;

S
Sebastian Ott 已提交
980
	rc = clp_scan_pci_devices();
J
Jan Glauber 已提交
981 982 983
	if (rc)
		goto out_find;

984
	s390_pci_initialized = 1;
J
Jan Glauber 已提交
985 986
	return 0;

J
Jan Glauber 已提交
987
out_find:
J
Jan Glauber 已提交
988 989
	zpci_dma_exit();
out_dma:
990 991
	zpci_irq_exit();
out_irq:
J
Jan Glauber 已提交
992 993
	zpci_mem_exit();
out_mem:
994
	zpci_debug_exit();
995
out:
J
Jan Glauber 已提交
996 997
	return rc;
}
998
subsys_initcall_sync(pci_base_init);