ipath_driver.c 68.9 KB
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/*
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 * Copyright (c) 2006, 2007 QLogic Corporation. All rights reserved.
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 * Copyright (c) 2003, 2004, 2005, 2006 PathScale, Inc. All rights reserved.
 *
 * This software is available to you under a choice of one of two
 * licenses.  You may choose to be licensed under the terms of the GNU
 * General Public License (GPL) Version 2, available from the file
 * COPYING in the main directory of this source tree, or the
 * OpenIB.org BSD license below:
 *
 *     Redistribution and use in source and binary forms, with or
 *     without modification, are permitted provided that the following
 *     conditions are met:
 *
 *      - Redistributions of source code must retain the above
 *        copyright notice, this list of conditions and the following
 *        disclaimer.
 *
 *      - Redistributions in binary form must reproduce the above
 *        copyright notice, this list of conditions and the following
 *        disclaimer in the documentation and/or other materials
 *        provided with the distribution.
 *
 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
 * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
 * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
 * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
 * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
 * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
 * SOFTWARE.
 */

#include <linux/spinlock.h>
#include <linux/idr.h>
#include <linux/pci.h>
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#include <linux/io.h>
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#include <linux/delay.h>
#include <linux/netdevice.h>
#include <linux/vmalloc.h>

#include "ipath_kernel.h"
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#include "ipath_verbs.h"
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#include "ipath_common.h"
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static void ipath_update_pio_bufs(struct ipath_devdata *);

const char *ipath_get_unit_name(int unit)
{
	static char iname[16];
	snprintf(iname, sizeof iname, "infinipath%u", unit);
	return iname;
}

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#define DRIVER_LOAD_MSG "QLogic " IPATH_DRV_NAME " loaded: "
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#define PFX IPATH_DRV_NAME ": "

/*
 * The size has to be longer than this string, so we can append
 * board/chip information to it in the init code.
 */
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const char ib_ipath_version[] = IPATH_IDSTR "\n";
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static struct idr unit_table;
DEFINE_SPINLOCK(ipath_devs_lock);
LIST_HEAD(ipath_dev_list);

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wait_queue_head_t ipath_state_wait;
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unsigned ipath_debug = __IPATH_INFO;

module_param_named(debug, ipath_debug, uint, S_IWUSR | S_IRUGO);
MODULE_PARM_DESC(debug, "mask for debug prints");
EXPORT_SYMBOL_GPL(ipath_debug);

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unsigned ipath_mtu4096 = 1; /* max 4KB IB mtu by default, if supported */
module_param_named(mtu4096, ipath_mtu4096, uint, S_IRUGO);
MODULE_PARM_DESC(mtu4096, "enable MTU of 4096 bytes, if supported");

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static unsigned ipath_hol_timeout_ms = 13000;
module_param_named(hol_timeout_ms, ipath_hol_timeout_ms, uint, S_IRUGO);
MODULE_PARM_DESC(hol_timeout_ms,
	"duration of user app suspension after link failure");

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unsigned ipath_linkrecovery = 1;
module_param_named(linkrecovery, ipath_linkrecovery, uint, S_IWUSR | S_IRUGO);
MODULE_PARM_DESC(linkrecovery, "enable workaround for link recovery issue");

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MODULE_LICENSE("GPL");
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MODULE_AUTHOR("QLogic <support@qlogic.com>");
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MODULE_DESCRIPTION("QLogic InfiniPath driver");
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const char *ipath_ibcstatus_str[] = {
	"Disabled",
	"LinkUp",
	"PollActive",
	"PollQuiet",
	"SleepDelay",
	"SleepQuiet",
	"LState6",		/* unused */
	"LState7",		/* unused */
	"CfgDebounce",
	"CfgRcvfCfg",
	"CfgWaitRmt",
	"CfgIdle",
	"RecovRetrain",
	"LState0xD",		/* unused */
	"RecovWaitRmt",
	"RecovIdle",
};

static void __devexit ipath_remove_one(struct pci_dev *);
static int __devinit ipath_init_one(struct pci_dev *,
				    const struct pci_device_id *);

/* Only needed for registration, nothing else needs this info */
#define PCI_VENDOR_ID_PATHSCALE 0x1fc1
#define PCI_DEVICE_ID_INFINIPATH_HT 0xd
#define PCI_DEVICE_ID_INFINIPATH_PE800 0x10

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/* Number of seconds before our card status check...  */
#define STATUS_TIMEOUT 60

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static const struct pci_device_id ipath_pci_tbl[] = {
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	{ PCI_DEVICE(PCI_VENDOR_ID_PATHSCALE, PCI_DEVICE_ID_INFINIPATH_HT) },
	{ PCI_DEVICE(PCI_VENDOR_ID_PATHSCALE, PCI_DEVICE_ID_INFINIPATH_PE800) },
	{ 0, }
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};

MODULE_DEVICE_TABLE(pci, ipath_pci_tbl);

static struct pci_driver ipath_driver = {
	.name = IPATH_DRV_NAME,
	.probe = ipath_init_one,
	.remove = __devexit_p(ipath_remove_one),
	.id_table = ipath_pci_tbl,
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	.driver = {
		.groups = ipath_driver_attr_groups,
	},
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};

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static void ipath_check_status(struct work_struct *work)
{
	struct ipath_devdata *dd = container_of(work, struct ipath_devdata,
						status_work.work);

	/*
	 * If we don't have any interrupts, let the user know and
	 * don't bother checking again.
	 */
	if (dd->ipath_int_counter == 0)
		dev_err(&dd->pcidev->dev, "No interrupts detected.\n");
}
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static inline void read_bars(struct ipath_devdata *dd, struct pci_dev *dev,
			     u32 *bar0, u32 *bar1)
{
	int ret;

	ret = pci_read_config_dword(dev, PCI_BASE_ADDRESS_0, bar0);
	if (ret)
		ipath_dev_err(dd, "failed to read bar0 before enable: "
			      "error %d\n", -ret);

	ret = pci_read_config_dword(dev, PCI_BASE_ADDRESS_1, bar1);
	if (ret)
		ipath_dev_err(dd, "failed to read bar1 before enable: "
			      "error %d\n", -ret);

	ipath_dbg("Read bar0 %x bar1 %x\n", *bar0, *bar1);
}

static void ipath_free_devdata(struct pci_dev *pdev,
			       struct ipath_devdata *dd)
{
	unsigned long flags;

	pci_set_drvdata(pdev, NULL);

	if (dd->ipath_unit != -1) {
		spin_lock_irqsave(&ipath_devs_lock, flags);
		idr_remove(&unit_table, dd->ipath_unit);
		list_del(&dd->ipath_list);
		spin_unlock_irqrestore(&ipath_devs_lock, flags);
	}
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	vfree(dd);
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}

static struct ipath_devdata *ipath_alloc_devdata(struct pci_dev *pdev)
{
	unsigned long flags;
	struct ipath_devdata *dd;
	int ret;

	if (!idr_pre_get(&unit_table, GFP_KERNEL)) {
		dd = ERR_PTR(-ENOMEM);
		goto bail;
	}

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	dd = vmalloc(sizeof(*dd));
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	if (!dd) {
		dd = ERR_PTR(-ENOMEM);
		goto bail;
	}
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	memset(dd, 0, sizeof(*dd));
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	dd->ipath_unit = -1;

	spin_lock_irqsave(&ipath_devs_lock, flags);

	ret = idr_get_new(&unit_table, dd, &dd->ipath_unit);
	if (ret < 0) {
		printk(KERN_ERR IPATH_DRV_NAME
		       ": Could not allocate unit ID: error %d\n", -ret);
		ipath_free_devdata(pdev, dd);
		dd = ERR_PTR(ret);
		goto bail_unlock;
	}

	dd->pcidev = pdev;
	pci_set_drvdata(pdev, dd);

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	INIT_DELAYED_WORK(&dd->status_work, ipath_check_status);

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	list_add(&dd->ipath_list, &ipath_dev_list);

bail_unlock:
	spin_unlock_irqrestore(&ipath_devs_lock, flags);

bail:
	return dd;
}

static inline struct ipath_devdata *__ipath_lookup(int unit)
{
	return idr_find(&unit_table, unit);
}

struct ipath_devdata *ipath_lookup(int unit)
{
	struct ipath_devdata *dd;
	unsigned long flags;

	spin_lock_irqsave(&ipath_devs_lock, flags);
	dd = __ipath_lookup(unit);
	spin_unlock_irqrestore(&ipath_devs_lock, flags);

	return dd;
}

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int ipath_count_units(int *npresentp, int *nupp, int *maxportsp)
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{
	int nunits, npresent, nup;
	struct ipath_devdata *dd;
	unsigned long flags;
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	int maxports;
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	nunits = npresent = nup = maxports = 0;

	spin_lock_irqsave(&ipath_devs_lock, flags);

	list_for_each_entry(dd, &ipath_dev_list, ipath_list) {
		nunits++;
		if ((dd->ipath_flags & IPATH_PRESENT) && dd->ipath_kregbase)
			npresent++;
		if (dd->ipath_lid &&
		    !(dd->ipath_flags & (IPATH_DISABLED | IPATH_LINKDOWN
					 | IPATH_LINKUNK)))
			nup++;
		if (dd->ipath_cfgports > maxports)
			maxports = dd->ipath_cfgports;
	}

	spin_unlock_irqrestore(&ipath_devs_lock, flags);

	if (npresentp)
		*npresentp = npresent;
	if (nupp)
		*nupp = nup;
	if (maxportsp)
		*maxportsp = maxports;

	return nunits;
}

/*
 * These next two routines are placeholders in case we don't have per-arch
 * code for controlling write combining.  If explicit control of write
 * combining is not available, performance will probably be awful.
 */

int __attribute__((weak)) ipath_enable_wc(struct ipath_devdata *dd)
{
	return -EOPNOTSUPP;
}

void __attribute__((weak)) ipath_disable_wc(struct ipath_devdata *dd)
{
}

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/*
 * Perform a PIO buffer bandwidth write test, to verify proper system
 * configuration.  Even when all the setup calls work, occasionally
 * BIOS or other issues can prevent write combining from working, or
 * can cause other bandwidth problems to the chip.
 *
 * This test simply writes the same buffer over and over again, and
 * measures close to the peak bandwidth to the chip (not testing
 * data bandwidth to the wire).   On chips that use an address-based
 * trigger to send packets to the wire, this is easy.  On chips that
 * use a count to trigger, we want to make sure that the packet doesn't
 * go out on the wire, or trigger flow control checks.
 */
static void ipath_verify_pioperf(struct ipath_devdata *dd)
{
	u32 pbnum, cnt, lcnt;
	u32 __iomem *piobuf;
	u32 *addr;
	u64 msecs, emsecs;

	piobuf = ipath_getpiobuf(dd, &pbnum);
	if (!piobuf) {
		dev_info(&dd->pcidev->dev,
			"No PIObufs for checking perf, skipping\n");
		return;
	}

	/*
	 * Enough to give us a reasonable test, less than piobuf size, and
	 * likely multiple of store buffer length.
	 */
	cnt = 1024;

	addr = vmalloc(cnt);
	if (!addr) {
		dev_info(&dd->pcidev->dev,
			"Couldn't get memory for checking PIO perf,"
			" skipping\n");
		goto done;
	}

	preempt_disable();  /* we want reasonably accurate elapsed time */
	msecs = 1 + jiffies_to_msecs(jiffies);
	for (lcnt = 0; lcnt < 10000U; lcnt++) {
		/* wait until we cross msec boundary */
		if (jiffies_to_msecs(jiffies) >= msecs)
			break;
		udelay(1);
	}

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	ipath_disable_armlaunch(dd);

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	writeq(0, piobuf); /* length 0, no dwords actually sent */
	ipath_flush_wc();

	/*
	 * this is only roughly accurate, since even with preempt we
	 * still take interrupts that could take a while.   Running for
	 * >= 5 msec seems to get us "close enough" to accurate values
	 */
	msecs = jiffies_to_msecs(jiffies);
	for (emsecs = lcnt = 0; emsecs <= 5UL; lcnt++) {
		__iowrite32_copy(piobuf + 64, addr, cnt >> 2);
		emsecs = jiffies_to_msecs(jiffies) - msecs;
	}

	/* 1 GiB/sec, slightly over IB SDR line rate */
	if (lcnt < (emsecs * 1024U))
		ipath_dev_err(dd,
			"Performance problem: bandwidth to PIO buffers is "
			"only %u MiB/sec\n",
			lcnt / (u32) emsecs);
	else
		ipath_dbg("PIO buffer bandwidth %u MiB/sec is OK\n",
			lcnt / (u32) emsecs);

	preempt_enable();

	vfree(addr);

done:
	/* disarm piobuf, so it's available again */
	ipath_disarm_piobufs(dd, pbnum, 1);
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	ipath_enable_armlaunch(dd);
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}

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static int __devinit ipath_init_one(struct pci_dev *pdev,
				    const struct pci_device_id *ent)
{
	int ret, len, j;
	struct ipath_devdata *dd;
	unsigned long long addr;
	u32 bar0 = 0, bar1 = 0;

	dd = ipath_alloc_devdata(pdev);
	if (IS_ERR(dd)) {
		ret = PTR_ERR(dd);
		printk(KERN_ERR IPATH_DRV_NAME
		       ": Could not allocate devdata: error %d\n", -ret);
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		goto bail;
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	}

	ipath_cdbg(VERBOSE, "initializing unit #%u\n", dd->ipath_unit);

	ret = pci_enable_device(pdev);
	if (ret) {
		/* This can happen iff:
		 *
		 * We did a chip reset, and then failed to reprogram the
		 * BAR, or the chip reset due to an internal error.  We then
		 * unloaded the driver and reloaded it.
		 *
		 * Both reset cases set the BAR back to initial state.  For
		 * the latter case, the AER sticky error bit at offset 0x718
		 * should be set, but the Linux kernel doesn't yet know
		 * about that, it appears.  If the original BAR was retained
		 * in the kernel data structures, this may be OK.
		 */
		ipath_dev_err(dd, "enable unit %d failed: error %d\n",
			      dd->ipath_unit, -ret);
		goto bail_devdata;
	}
	addr = pci_resource_start(pdev, 0);
	len = pci_resource_len(pdev, 0);
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	ipath_cdbg(VERBOSE, "regbase (0) %llx len %d pdev->irq %d, vend %x/%x "
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		   "driver_data %lx\n", addr, len, pdev->irq, ent->vendor,
		   ent->device, ent->driver_data);

	read_bars(dd, pdev, &bar0, &bar1);

	if (!bar1 && !(bar0 & ~0xf)) {
		if (addr) {
			dev_info(&pdev->dev, "BAR is 0 (probable RESET), "
				 "rewriting as %llx\n", addr);
			ret = pci_write_config_dword(
				pdev, PCI_BASE_ADDRESS_0, addr);
			if (ret) {
				ipath_dev_err(dd, "rewrite of BAR0 "
					      "failed: err %d\n", -ret);
				goto bail_disable;
			}
			ret = pci_write_config_dword(
				pdev, PCI_BASE_ADDRESS_1, addr >> 32);
			if (ret) {
				ipath_dev_err(dd, "rewrite of BAR1 "
					      "failed: err %d\n", -ret);
				goto bail_disable;
			}
		} else {
			ipath_dev_err(dd, "BAR is 0 (probable RESET), "
				      "not usable until reboot\n");
			ret = -ENODEV;
			goto bail_disable;
		}
	}

	ret = pci_request_regions(pdev, IPATH_DRV_NAME);
	if (ret) {
		dev_info(&pdev->dev, "pci_request_regions unit %u fails: "
			 "err %d\n", dd->ipath_unit, -ret);
		goto bail_disable;
	}

	ret = pci_set_dma_mask(pdev, DMA_64BIT_MASK);
	if (ret) {
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		/*
		 * if the 64 bit setup fails, try 32 bit.  Some systems
		 * do not setup 64 bit maps on systems with 2GB or less
		 * memory installed.
		 */
		ret = pci_set_dma_mask(pdev, DMA_32BIT_MASK);
		if (ret) {
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			dev_info(&pdev->dev,
				"Unable to set DMA mask for unit %u: %d\n",
				dd->ipath_unit, ret);
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			goto bail_regions;
		}
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		else {
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			ipath_dbg("No 64bit DMA mask, used 32 bit mask\n");
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			ret = pci_set_consistent_dma_mask(pdev, DMA_32BIT_MASK);
			if (ret)
				dev_info(&pdev->dev,
					"Unable to set DMA consistent mask "
					"for unit %u: %d\n",
					dd->ipath_unit, ret);

		}
	}
	else {
		ret = pci_set_consistent_dma_mask(pdev, DMA_64BIT_MASK);
		if (ret)
			dev_info(&pdev->dev,
				"Unable to set DMA consistent mask "
				"for unit %u: %d\n",
				dd->ipath_unit, ret);
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	}

	pci_set_master(pdev);

	/*
	 * Save BARs to rewrite after device reset.  Save all 64 bits of
	 * BAR, just in case.
	 */
	dd->ipath_pcibar0 = addr;
	dd->ipath_pcibar1 = addr >> 32;
	dd->ipath_deviceid = ent->device;	/* save for later use */
	dd->ipath_vendorid = ent->vendor;

	/* setup the chip-specific functions, as early as possible. */
	switch (ent->device) {
	case PCI_DEVICE_ID_INFINIPATH_HT:
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#ifdef CONFIG_HT_IRQ
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		ipath_init_iba6110_funcs(dd);
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		break;
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#else
		ipath_dev_err(dd, "QLogic HT device 0x%x cannot work if "
			      "CONFIG_HT_IRQ is not enabled\n", ent->device);
		return -ENODEV;
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#endif
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	case PCI_DEVICE_ID_INFINIPATH_PE800:
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#ifdef CONFIG_PCI_MSI
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		ipath_init_iba6120_funcs(dd);
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		break;
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#else
		ipath_dev_err(dd, "QLogic PCIE device 0x%x cannot work if "
			      "CONFIG_PCI_MSI is not enabled\n", ent->device);
		return -ENODEV;
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#endif
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	default:
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		ipath_dev_err(dd, "Found unknown QLogic deviceid 0x%x, "
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			      "failing\n", ent->device);
		return -ENODEV;
	}

	for (j = 0; j < 6; j++) {
		if (!pdev->resource[j].start)
			continue;
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		ipath_cdbg(VERBOSE, "BAR %d start %llx, end %llx, len %llx\n",
			   j, (unsigned long long)pdev->resource[j].start,
			   (unsigned long long)pdev->resource[j].end,
			   (unsigned long long)pci_resource_len(pdev, j));
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	}

	if (!addr) {
		ipath_dev_err(dd, "No valid address in BAR 0!\n");
		ret = -ENODEV;
		goto bail_regions;
	}

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	dd->ipath_pcirev = pdev->revision;
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#if defined(__powerpc__)
	/* There isn't a generic way to specify writethrough mappings */
	dd->ipath_kregbase = __ioremap(addr, len,
		(_PAGE_NO_CACHE|_PAGE_WRITETHRU));
#else
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	dd->ipath_kregbase = ioremap_nocache(addr, len);
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#endif
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	if (!dd->ipath_kregbase) {
		ipath_dbg("Unable to map io addr %llx to kvirt, failing\n",
			  addr);
		ret = -ENOMEM;
		goto bail_iounmap;
	}
	dd->ipath_kregend = (u64 __iomem *)
		((void __iomem *)dd->ipath_kregbase + len);
	dd->ipath_physaddr = addr;	/* used for io_remap, etc. */
	/* for user mmap */
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	ipath_cdbg(VERBOSE, "mapped io addr %llx to kregbase %p\n",
		   addr, dd->ipath_kregbase);
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	/*
	 * clear ipath_flags here instead of in ipath_init_chip as it is set
	 * by ipath_setup_htconfig.
	 */
	dd->ipath_flags = 0;
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	dd->ipath_lli_counter = 0;
	dd->ipath_lli_errors = 0;
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	if (dd->ipath_f_bus(dd, pdev))
		ipath_dev_err(dd, "Failed to setup config space; "
			      "continuing anyway\n");

	/*
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	 * set up our interrupt handler; IRQF_SHARED probably not needed,
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	 * since MSI interrupts shouldn't be shared but won't  hurt for now.
	 * check 0 irq after we return from chip-specific bus setup, since
	 * that can affect this due to setup
	 */
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	if (!dd->ipath_irq)
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		ipath_dev_err(dd, "irq is 0, BIOS error?  Interrupts won't "
			      "work\n");
	else {
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		ret = request_irq(dd->ipath_irq, ipath_intr, IRQF_SHARED,
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				  IPATH_DRV_NAME, dd);
		if (ret) {
			ipath_dev_err(dd, "Couldn't setup irq handler, "
598
				      "irq=%d: %d\n", dd->ipath_irq, ret);
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			goto bail_iounmap;
		}
	}

	ret = ipath_init_chip(dd, 0);	/* do the chip-specific init */
	if (ret)
605
		goto bail_irqsetup;
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	ret = ipath_enable_wc(dd);

	if (ret) {
		ipath_dev_err(dd, "Write combining not enabled "
			      "(err %d): performance may be poor\n",
			      -ret);
		ret = 0;
	}

616 617
	ipath_verify_pioperf(dd);

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	ipath_device_create_group(&pdev->dev, dd);
	ipathfs_add_device(dd);
	ipath_user_add(dd);
621
	ipath_diag_add(dd);
622
	ipath_register_ib_device(dd);
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624 625 626
	/* Check that card status in STATUS_TIMEOUT seconds. */
	schedule_delayed_work(&dd->status_work, HZ * STATUS_TIMEOUT);

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	goto bail;

629 630 631
bail_irqsetup:
	if (pdev->irq) free_irq(pdev->irq, dd);

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bail_iounmap:
	iounmap((volatile void __iomem *) dd->ipath_kregbase);

bail_regions:
	pci_release_regions(pdev);

bail_disable:
	pci_disable_device(pdev);

bail_devdata:
	ipath_free_devdata(pdev, dd);

bail:
	return ret;
}

648
static void __devexit cleanup_device(struct ipath_devdata *dd)
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649
{
650
	int port;
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651

652 653 654 655 656 657 658 659 660 661 662 663 664 665 666 667 668
	if (*dd->ipath_statusp & IPATH_STATUS_CHIP_PRESENT) {
		/* can't do anything more with chip; needs re-init */
		*dd->ipath_statusp &= ~IPATH_STATUS_CHIP_PRESENT;
		if (dd->ipath_kregbase) {
			/*
			 * if we haven't already cleaned up before these are
			 * to ensure any register reads/writes "fail" until
			 * re-init
			 */
			dd->ipath_kregbase = NULL;
			dd->ipath_uregbase = 0;
			dd->ipath_sregbase = 0;
			dd->ipath_cregbase = 0;
			dd->ipath_kregsize = 0;
		}
		ipath_disable_wc(dd);
	}
669

670 671 672 673 674 675 676 677 678 679 680 681 682 683 684 685 686 687 688 689 690 691 692 693 694 695 696 697 698 699 700 701 702 703 704 705 706 707 708 709 710 711 712 713 714 715 716 717 718
	if (dd->ipath_pioavailregs_dma) {
		dma_free_coherent(&dd->pcidev->dev, PAGE_SIZE,
				  (void *) dd->ipath_pioavailregs_dma,
				  dd->ipath_pioavailregs_phys);
		dd->ipath_pioavailregs_dma = NULL;
	}
	if (dd->ipath_dummy_hdrq) {
		dma_free_coherent(&dd->pcidev->dev,
			dd->ipath_pd[0]->port_rcvhdrq_size,
			dd->ipath_dummy_hdrq, dd->ipath_dummy_hdrq_phys);
		dd->ipath_dummy_hdrq = NULL;
	}

	if (dd->ipath_pageshadow) {
		struct page **tmpp = dd->ipath_pageshadow;
		dma_addr_t *tmpd = dd->ipath_physshadow;
		int i, cnt = 0;

		ipath_cdbg(VERBOSE, "Unlocking any expTID pages still "
			   "locked\n");
		for (port = 0; port < dd->ipath_cfgports; port++) {
			int port_tidbase = port * dd->ipath_rcvtidcnt;
			int maxtid = port_tidbase + dd->ipath_rcvtidcnt;
			for (i = port_tidbase; i < maxtid; i++) {
				if (!tmpp[i])
					continue;
				pci_unmap_page(dd->pcidev, tmpd[i],
					PAGE_SIZE, PCI_DMA_FROMDEVICE);
				ipath_release_user_pages(&tmpp[i], 1);
				tmpp[i] = NULL;
				cnt++;
			}
		}
		if (cnt) {
			ipath_stats.sps_pageunlocks += cnt;
			ipath_cdbg(VERBOSE, "There were still %u expTID "
				   "entries locked\n", cnt);
		}
		if (ipath_stats.sps_pagelocks ||
		    ipath_stats.sps_pageunlocks)
			ipath_cdbg(VERBOSE, "%llu pages locked, %llu "
				   "unlocked via ipath_m{un}lock\n",
				   (unsigned long long)
				   ipath_stats.sps_pagelocks,
				   (unsigned long long)
				   ipath_stats.sps_pageunlocks);

		ipath_cdbg(VERBOSE, "Free shadow page tid array at %p\n",
			   dd->ipath_pageshadow);
719
		tmpp = dd->ipath_pageshadow;
720
		dd->ipath_pageshadow = NULL;
721
		vfree(tmpp);
722 723
	}

724 725 726 727 728 729 730 731 732 733 734 735 736 737 738 739 740 741 742 743 744 745 746 747
	/*
	 * free any resources still in use (usually just kernel ports)
	 * at unload; we do for portcnt, not cfgports, because cfgports
	 * could have changed while we were loaded.
	 */
	for (port = 0; port < dd->ipath_portcnt; port++) {
		struct ipath_portdata *pd = dd->ipath_pd[port];
		dd->ipath_pd[port] = NULL;
		ipath_free_pddata(dd, pd);
	}
	kfree(dd->ipath_pd);
	/*
	 * debuggability, in case some cleanup path tries to use it
	 * after this
	 */
	dd->ipath_pd = NULL;
}

static void __devexit ipath_remove_one(struct pci_dev *pdev)
{
	struct ipath_devdata *dd = pci_get_drvdata(pdev);

	ipath_cdbg(VERBOSE, "removing, pdev=%p, dd=%p\n", pdev, dd);

748 749 750 751 752 753
	/*
	 * disable the IB link early, to be sure no new packets arrive, which
	 * complicates the shutdown process
	 */
	ipath_shutdown_device(dd);

754 755 756
	cancel_delayed_work(&dd->status_work);
	flush_scheduled_work();

757 758 759
	if (dd->verbs_dev)
		ipath_unregister_ib_device(dd->verbs_dev);

760 761
	ipath_diag_remove(dd);
	ipath_user_remove(dd);
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	ipathfs_remove_device(dd);
	ipath_device_remove_group(&pdev->dev, dd);
764

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	ipath_cdbg(VERBOSE, "Releasing pci memory regions, dd %p, "
		   "unit %u\n", dd, (u32) dd->ipath_unit);
767 768 769 770 771 772 773 774 775

	cleanup_device(dd);

	/*
	 * turn off rcv, send, and interrupts for all ports, all drivers
	 * should also hard reset the chip here?
	 * free up port 0 (kernel) rcvhdr, egr bufs, and eventually tid bufs
	 * for all versions of the driver, if they were allocated
	 */
776 777 778 779
	if (dd->ipath_irq) {
		ipath_cdbg(VERBOSE, "unit %u free irq %d\n",
			   dd->ipath_unit, dd->ipath_irq);
		dd->ipath_f_free_irq(dd);
780 781 782 783 784 785 786 787 788 789 790 791 792 793 794
	} else
		ipath_dbg("irq is 0, not doing free_irq "
			  "for unit %u\n", dd->ipath_unit);
	/*
	 * we check for NULL here, because it's outside
	 * the kregbase check, and we need to call it
	 * after the free_irq.	Thus it's possible that
	 * the function pointers were never initialized.
	 */
	if (dd->ipath_f_cleanup)
		/* clean up chip-specific stuff */
		dd->ipath_f_cleanup(dd);

	ipath_cdbg(VERBOSE, "Unmapping kregbase %p\n", dd->ipath_kregbase);
	iounmap((volatile void __iomem *) dd->ipath_kregbase);
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	pci_release_regions(pdev);
	ipath_cdbg(VERBOSE, "calling pci_disable_device\n");
	pci_disable_device(pdev);

	ipath_free_devdata(pdev, dd);
}

/* general driver use */
DEFINE_MUTEX(ipath_mutex);

static DEFINE_SPINLOCK(ipath_pioavail_lock);

/**
 * ipath_disarm_piobufs - cancel a range of PIO buffers
 * @dd: the infinipath device
 * @first: the first PIO buffer to cancel
 * @cnt: the number of PIO buffers to cancel
 *
 * cancel a range of PIO buffers, used when they might be armed, but
 * not triggered.  Used at init to ensure buffer state, and also user
 * process close, in case it died while writing to a PIO buffer
 * Also after errors.
 */
void ipath_disarm_piobufs(struct ipath_devdata *dd, unsigned first,
			  unsigned cnt)
{
	unsigned i, last = first + cnt;
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	unsigned long flags;
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	ipath_cdbg(PKT, "disarm %u PIObufs first=%u\n", cnt, first);
	for (i = first; i < last; i++) {
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826 827 828 829 830 831
		spin_lock_irqsave(&dd->ipath_sendctrl_lock, flags);
		/*
		 * The disarm-related bits are write-only, so it
		 * is ok to OR them in with our copy of sendctrl
		 * while we hold the lock.
		 */
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		ipath_write_kreg(dd, dd->ipath_kregs->kr_sendctrl,
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833 834 835 836 837
			dd->ipath_sendctrl | INFINIPATH_S_DISARM |
			(i << INFINIPATH_S_DISARMPIOBUF_SHIFT));
		/* can't disarm bufs back-to-back per iba7220 spec */
		ipath_read_kreg64(dd, dd->ipath_kregs->kr_scratch);
		spin_unlock_irqrestore(&dd->ipath_sendctrl_lock, flags);
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838 839 840
	}

	/*
J
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841
	 * Disable PIOAVAILUPD, then re-enable, reading scratch in
B
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842
	 * between.  This seems to avoid a chip timing race that causes
J
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843 844
	 * pioavail updates to memory to stop.  We xor as we don't
	 * know the state of the bit when we're called.
B
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845
	 */
J
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846
	spin_lock_irqsave(&dd->ipath_sendctrl_lock, flags);
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847
	ipath_write_kreg(dd, dd->ipath_kregs->kr_sendctrl,
J
John Gregor 已提交
848 849
		dd->ipath_sendctrl ^ INFINIPATH_S_PIOBUFAVAILUPD);
	ipath_read_kreg64(dd, dd->ipath_kregs->kr_scratch);
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850 851
	ipath_write_kreg(dd, dd->ipath_kregs->kr_sendctrl,
			 dd->ipath_sendctrl);
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852
	spin_unlock_irqrestore(&dd->ipath_sendctrl_lock, flags);
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}

/**
 * ipath_wait_linkstate - wait for an IB link state change to occur
 * @dd: the infinipath device
 * @state: the state to wait for
 * @msecs: the number of milliseconds to wait
 *
 * wait up to msecs milliseconds for IB link state change to occur for
 * now, take the easy polling route.  Currently used only by
863
 * ipath_set_linkstate.  Returns 0 if state reached, otherwise
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 * -ETIMEDOUT state can have multiple states set, for any of several
 * transitions.
 */
867
int ipath_wait_linkstate(struct ipath_devdata *dd, u32 state, int msecs)
B
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{
869 870
	dd->ipath_state_wanted = state;
	wait_event_interruptible_timeout(ipath_state_wait,
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					 (dd->ipath_flags & state),
					 msecs_to_jiffies(msecs));
873
	dd->ipath_state_wanted = 0;
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Bryan O'Sullivan 已提交
874 875 876

	if (!(dd->ipath_flags & state)) {
		u64 val;
877 878
		ipath_cdbg(VERBOSE, "Didn't reach linkstate %s within %u"
			   " ms\n",
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			   /* test INIT ahead of DOWN, both can be set */
			   (state & IPATH_LINKINIT) ? "INIT" :
			   ((state & IPATH_LINKDOWN) ? "DOWN" :
			    ((state & IPATH_LINKARMED) ? "ARM" : "ACTIVE")),
			   msecs);
		val = ipath_read_kreg64(dd, dd->ipath_kregs->kr_ibcstatus);
		ipath_cdbg(VERBOSE, "ibcc=%llx ibcstatus=%llx (%s)\n",
			   (unsigned long long) ipath_read_kreg64(
				   dd, dd->ipath_kregs->kr_ibcctrl),
			   (unsigned long long) val,
			   ipath_ibcstatus_str[val & 0xf]);
	}
	return (dd->ipath_flags & state) ? 0 : -ETIMEDOUT;
}

894 895 896 897 898 899 900
/*
 * Decode the error status into strings, deciding whether to always
 * print * it or not depending on "normal packet errors" vs everything
 * else.   Return 1 if "real" errors, otherwise 0 if only packet
 * errors, so caller can decide what to print with the string.
 */
int ipath_decode_err(char *buf, size_t blen, ipath_err_t err)
B
Bryan O'Sullivan 已提交
901
{
902
	int iserr = 1;
B
Bryan O'Sullivan 已提交
903
	*buf = '\0';
904 905 906 907 908 909 910 911 912 913 914 915 916 917 918 919 920 921 922 923 924 925 926 927 928 929
	if (err & INFINIPATH_E_PKTERRS) {
		if (!(err & ~INFINIPATH_E_PKTERRS))
			iserr = 0; // if only packet errors.
		if (ipath_debug & __IPATH_ERRPKTDBG) {
			if (err & INFINIPATH_E_REBP)
				strlcat(buf, "EBP ", blen);
			if (err & INFINIPATH_E_RVCRC)
				strlcat(buf, "VCRC ", blen);
			if (err & INFINIPATH_E_RICRC) {
				strlcat(buf, "CRC ", blen);
				// clear for check below, so only once
				err &= INFINIPATH_E_RICRC;
			}
			if (err & INFINIPATH_E_RSHORTPKTLEN)
				strlcat(buf, "rshortpktlen ", blen);
			if (err & INFINIPATH_E_SDROPPEDDATAPKT)
				strlcat(buf, "sdroppeddatapkt ", blen);
			if (err & INFINIPATH_E_SPKTLEN)
				strlcat(buf, "spktlen ", blen);
		}
		if ((err & INFINIPATH_E_RICRC) &&
			!(err&(INFINIPATH_E_RVCRC|INFINIPATH_E_REBP)))
			strlcat(buf, "CRC ", blen);
		if (!iserr)
			goto done;
	}
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930 931 932 933 934 935 936 937 938 939 940 941 942 943
	if (err & INFINIPATH_E_RHDRLEN)
		strlcat(buf, "rhdrlen ", blen);
	if (err & INFINIPATH_E_RBADTID)
		strlcat(buf, "rbadtid ", blen);
	if (err & INFINIPATH_E_RBADVERSION)
		strlcat(buf, "rbadversion ", blen);
	if (err & INFINIPATH_E_RHDR)
		strlcat(buf, "rhdr ", blen);
	if (err & INFINIPATH_E_RLONGPKTLEN)
		strlcat(buf, "rlongpktlen ", blen);
	if (err & INFINIPATH_E_RMAXPKTLEN)
		strlcat(buf, "rmaxpktlen ", blen);
	if (err & INFINIPATH_E_RMINPKTLEN)
		strlcat(buf, "rminpktlen ", blen);
944 945
	if (err & INFINIPATH_E_SMINPKTLEN)
		strlcat(buf, "sminpktlen ", blen);
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Bryan O'Sullivan 已提交
946 947 948 949 950 951 952 953 954 955 956 957 958 959 960 961 962 963 964 965 966 967 968 969 970 971 972 973 974 975 976 977 978 979
	if (err & INFINIPATH_E_RFORMATERR)
		strlcat(buf, "rformaterr ", blen);
	if (err & INFINIPATH_E_RUNSUPVL)
		strlcat(buf, "runsupvl ", blen);
	if (err & INFINIPATH_E_RUNEXPCHAR)
		strlcat(buf, "runexpchar ", blen);
	if (err & INFINIPATH_E_RIBFLOW)
		strlcat(buf, "ribflow ", blen);
	if (err & INFINIPATH_E_SUNDERRUN)
		strlcat(buf, "sunderrun ", blen);
	if (err & INFINIPATH_E_SPIOARMLAUNCH)
		strlcat(buf, "spioarmlaunch ", blen);
	if (err & INFINIPATH_E_SUNEXPERRPKTNUM)
		strlcat(buf, "sunexperrpktnum ", blen);
	if (err & INFINIPATH_E_SDROPPEDSMPPKT)
		strlcat(buf, "sdroppedsmppkt ", blen);
	if (err & INFINIPATH_E_SMAXPKTLEN)
		strlcat(buf, "smaxpktlen ", blen);
	if (err & INFINIPATH_E_SUNSUPVL)
		strlcat(buf, "sunsupVL ", blen);
	if (err & INFINIPATH_E_INVALIDADDR)
		strlcat(buf, "invalidaddr ", blen);
	if (err & INFINIPATH_E_RRCVEGRFULL)
		strlcat(buf, "rcvegrfull ", blen);
	if (err & INFINIPATH_E_RRCVHDRFULL)
		strlcat(buf, "rcvhdrfull ", blen);
	if (err & INFINIPATH_E_IBSTATUSCHANGED)
		strlcat(buf, "ibcstatuschg ", blen);
	if (err & INFINIPATH_E_RIBLOSTLINK)
		strlcat(buf, "riblostlink ", blen);
	if (err & INFINIPATH_E_HARDWARE)
		strlcat(buf, "hardware ", blen);
	if (err & INFINIPATH_E_RESET)
		strlcat(buf, "reset ", blen);
980 981
done:
	return iserr;
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982 983 984 985 986 987 988 989 990 991 992 993 994 995 996 997 998 999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028 1029
}

/**
 * get_rhf_errstring - decode RHF errors
 * @err: the err number
 * @msg: the output buffer
 * @len: the length of the output buffer
 *
 * only used one place now, may want more later
 */
static void get_rhf_errstring(u32 err, char *msg, size_t len)
{
	/* if no errors, and so don't need to check what's first */
	*msg = '\0';

	if (err & INFINIPATH_RHF_H_ICRCERR)
		strlcat(msg, "icrcerr ", len);
	if (err & INFINIPATH_RHF_H_VCRCERR)
		strlcat(msg, "vcrcerr ", len);
	if (err & INFINIPATH_RHF_H_PARITYERR)
		strlcat(msg, "parityerr ", len);
	if (err & INFINIPATH_RHF_H_LENERR)
		strlcat(msg, "lenerr ", len);
	if (err & INFINIPATH_RHF_H_MTUERR)
		strlcat(msg, "mtuerr ", len);
	if (err & INFINIPATH_RHF_H_IHDRERR)
		/* infinipath hdr checksum error */
		strlcat(msg, "ipathhdrerr ", len);
	if (err & INFINIPATH_RHF_H_TIDERR)
		strlcat(msg, "tiderr ", len);
	if (err & INFINIPATH_RHF_H_MKERR)
		/* bad port, offset, etc. */
		strlcat(msg, "invalid ipathhdr ", len);
	if (err & INFINIPATH_RHF_H_IBERR)
		strlcat(msg, "iberr ", len);
	if (err & INFINIPATH_RHF_L_SWA)
		strlcat(msg, "swA ", len);
	if (err & INFINIPATH_RHF_L_SWB)
		strlcat(msg, "swB ", len);
}

/**
 * ipath_get_egrbuf - get an eager buffer
 * @dd: the infinipath device
 * @bufnum: the eager buffer to get
 *
 * must only be called if ipath_pd[port] is known to be allocated
 */
1030
static inline void *ipath_get_egrbuf(struct ipath_devdata *dd, u32 bufnum)
B
Bryan O'Sullivan 已提交
1031
{
1032 1033
	return dd->ipath_port0_skbinfo ?
		(void *) dd->ipath_port0_skbinfo[bufnum].skb->data : NULL;
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}

/**
 * ipath_alloc_skb - allocate an skb and buffer with possible constraints
 * @dd: the infinipath device
 * @gfp_mask: the sk_buff SFP mask
 */
struct sk_buff *ipath_alloc_skb(struct ipath_devdata *dd,
				gfp_t gfp_mask)
{
	struct sk_buff *skb;
	u32 len;

	/*
	 * Only fully supported way to handle this is to allocate lots
	 * extra, align as needed, and then do skb_reserve().  That wastes
	 * a lot of memory...  I'll have to hack this into infinipath_copy
	 * also.
	 */

	/*
1055 1056 1057
	 * We need 2 extra bytes for ipath_ether data sent in the
	 * key header.  In order to keep everything dword aligned,
	 * we'll reserve 4 bytes.
B
Bryan O'Sullivan 已提交
1058
	 */
1059 1060
	len = dd->ipath_ibmaxlen + 4;

B
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1061
	if (dd->ipath_flags & IPATH_4BYTE_TID) {
1062
		/* We need a 2KB multiple alignment, and there is no way
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1063 1064 1065
		 * to do it except to allocate extra and then skb_reserve
		 * enough to bring it up to the right alignment.
		 */
1066
		len += 2047;
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1067
	}
1068

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1069 1070 1071 1072 1073 1074
	skb = __dev_alloc_skb(len, gfp_mask);
	if (!skb) {
		ipath_dev_err(dd, "Failed to allocate skbuff, length %u\n",
			      len);
		goto bail;
	}
1075 1076 1077

	skb_reserve(skb, 4);

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Bryan O'Sullivan 已提交
1078
	if (dd->ipath_flags & IPATH_4BYTE_TID) {
1079
		u32 una = (unsigned long)skb->data & 2047;
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1080
		if (una)
1081 1082
			skb_reserve(skb, 2048 - una);
	}
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1083 1084 1085 1086 1087

bail:
	return skb;
}

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static void ipath_rcv_hdrerr(struct ipath_devdata *dd,
			     u32 eflags,
			     u32 l,
			     u32 etail,
			     u64 *rc)
{
	char emsg[128];
	struct ipath_message_header *hdr;

	get_rhf_errstring(eflags, emsg, sizeof emsg);
	hdr = (struct ipath_message_header *)&rc[1];
	ipath_cdbg(PKT, "RHFerrs %x hdrqtail=%x typ=%u "
		   "tlen=%x opcode=%x egridx=%x: %s\n",
		   eflags, l,
		   ipath_hdrget_rcv_type((__le32 *) rc),
		   ipath_hdrget_length_in_bytes((__le32 *) rc),
		   be32_to_cpu(hdr->bth[0]) >> 24,
		   etail, emsg);

	/* Count local link integrity errors. */
	if (eflags & (INFINIPATH_RHF_H_ICRCERR | INFINIPATH_RHF_H_VCRCERR)) {
		u8 n = (dd->ipath_ibcctrl >>
			INFINIPATH_IBCC_PHYERRTHRESHOLD_SHIFT) &
			INFINIPATH_IBCC_PHYERRTHRESHOLD_MASK;

		if (++dd->ipath_lli_counter > n) {
			dd->ipath_lli_counter = 0;
			dd->ipath_lli_errors++;
		}
	}
}

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/*
 * ipath_kreceive - receive a packet
1122
 * @pd: the infinipath port
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 *
 * called from interrupt handler for errors or receive interrupt
 */
1126
void ipath_kreceive(struct ipath_portdata *pd)
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{
	u64 *rc;
1129
	struct ipath_devdata *dd = pd->port_dd;
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	void *ebuf;
	const u32 rsize = dd->ipath_rcvhdrentsize;	/* words */
	const u32 maxcnt = dd->ipath_rcvhdrcnt * rsize;	/* words */
	u32 etail = -1, l, hdrqtail;
1134
	struct ipath_message_header *hdr;
1135
	u32 eflags, i, etype, tlen, pkttot = 0, updegr=0, reloop=0;
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	static u64 totcalls;	/* stats, may eventually remove */

	if (!dd->ipath_hdrqtailptr) {
		ipath_dev_err(dd,
			      "hdrqtailptr not set, can't do receives\n");
		goto bail;
	}

1144 1145
	l = pd->port_head;
	hdrqtail = ipath_get_rcvhdrtail(pd);
1146
	if (l == hdrqtail)
1147
		goto bail;
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1149
reloop:
1150
	for (i = 0; l != hdrqtail; i++) {
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		u32 qp;
		u8 *bthbytes;

1154
		rc = (u64 *) (pd->port_rcvhdrq + (l << 2));
1155
		hdr = (struct ipath_message_header *)&rc[1];
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		/*
		 * could make a network order version of IPATH_KD_QP, and
		 * do the obvious shift before masking to speed this up.
		 */
		qp = ntohl(hdr->bth[1]) & 0xffffff;
		bthbytes = (u8 *) hdr->bth;

1163 1164
		eflags = ipath_hdrget_err_flags((__le32 *) rc);
		etype = ipath_hdrget_rcv_type((__le32 *) rc);
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		/* total length */
1166
		tlen = ipath_hdrget_length_in_bytes((__le32 *) rc);
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		ebuf = NULL;
		if (etype != RCVHQ_RCV_TYPE_EXPECTED) {
			/*
			 * it turns out that the chips uses an eager buffer
			 * for all non-expected packets, whether it "needs"
			 * one or not.  So always get the index, but don't
			 * set ebuf (so we try to copy data) unless the
			 * length requires it.
			 */
1176
			etail = ipath_hdrget_index((__le32 *) rc);
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			if (tlen > sizeof(*hdr) ||
			    etype == RCVHQ_RCV_TYPE_NON_KD)
1179
				ebuf = ipath_get_egrbuf(dd, etail);
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		}

		/*
		 * both tiderr and ipathhdrerr are set for all plain IB
		 * packets; only ipathhdrerr should be set.
		 */

		if (etype != RCVHQ_RCV_TYPE_NON_KD && etype !=
1188
		    RCVHQ_RCV_TYPE_ERROR && ipath_hdrget_ipath_ver(
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			    hdr->iph.ver_port_tid_offset) !=
		    IPS_PROTO_VERSION) {
			ipath_cdbg(PKT, "Bad InfiniPath protocol version "
				   "%x\n", etype);
		}

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		if (unlikely(eflags))
			ipath_rcv_hdrerr(dd, eflags, l, etail, rc);
		else if (etype == RCVHQ_RCV_TYPE_NON_KD) {
1198 1199 1200 1201 1202 1203
			ipath_ib_rcv(dd->verbs_dev, rc + 1, ebuf, tlen);
			if (dd->ipath_lli_counter)
				dd->ipath_lli_counter--;
			ipath_cdbg(PKT, "typ %x, opcode %x (eager, "
				   "qp=%x), len %x; ignored\n",
				   etype, bthbytes[0], qp, tlen);
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		}
1205 1206 1207 1208
		else if (etype == RCVHQ_RCV_TYPE_EAGER)
			ipath_cdbg(PKT, "typ %x, opcode %x (eager, "
				   "qp=%x), len %x; ignored\n",
				   etype, bthbytes[0], qp, tlen);
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		else if (etype == RCVHQ_RCV_TYPE_EXPECTED)
			ipath_dbg("Bug: Expected TID, opcode %x; ignored\n",
				  be32_to_cpu(hdr->bth[0]) & 0xff);
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		else {
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			/*
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			 * error packet, type of error unknown.
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			 * Probably type 3, but we don't know, so don't
			 * even try to print the opcode, etc.
			 */
			ipath_dbg("Error Pkt, but no eflags! egrbuf %x, "
				  "len %x\nhdrq@%lx;hdrq+%x rhf: %llx; "
				  "hdr %llx %llx %llx %llx %llx\n",
				  etail, tlen, (unsigned long) rc, l,
				  (unsigned long long) rc[0],
				  (unsigned long long) rc[1],
				  (unsigned long long) rc[2],
				  (unsigned long long) rc[3],
				  (unsigned long long) rc[4],
				  (unsigned long long) rc[5]);
		}
		l += rsize;
		if (l >= maxcnt)
			l = 0;
1232 1233
		if (etype != RCVHQ_RCV_TYPE_EXPECTED)
		    updegr = 1;
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		/*
1235 1236 1237
		 * update head regs on last packet, and every 16 packets.
		 * Reduce bus traffic, while still trying to prevent
		 * rcvhdrq overflows, for when the queue is nearly full
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		 */
1239 1240
		if (l == hdrqtail || (i && !(i&0xf))) {
			u64 lval;
1241 1242
			if (l == hdrqtail)
				/* request IBA6120 interrupt only on last */
1243 1244 1245
				lval = dd->ipath_rhdrhead_intr_off | l;
			else
				lval = l;
1246
			ipath_write_ureg(dd, ur_rcvhdrhead, lval, 0);
1247
			if (updegr) {
1248 1249
				ipath_write_ureg(dd, ur_rcvegrindexhead,
						 etail, 0);
1250 1251 1252
				updegr = 0;
			}
		}
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	}

1255
	if (!dd->ipath_rhdrhead_intr_off && !reloop) {
1256
		/* IBA6110 workaround; we can have a race clearing chip
1257 1258 1259 1260 1261 1262 1263
		 * interrupt with another interrupt about to be delivered,
		 * and can clear it before it is delivered on the GPIO
		 * workaround.  By doing the extra check here for the
		 * in-memory tail register updating while we were doing
		 * earlier packets, we "almost" guarantee we have covered
		 * that case.
		 */
1264
		u32 hqtail = ipath_get_rcvhdrtail(pd);
1265 1266 1267 1268 1269 1270 1271
		if (hqtail != hdrqtail) {
			hdrqtail = hqtail;
			reloop = 1; /* loop 1 extra time at most */
			goto reloop;
		}
	}

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	pkttot += i;

1274
	pd->port_head = l;
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	if (pkttot > ipath_stats.sps_maxpkts_call)
		ipath_stats.sps_maxpkts_call = pkttot;
	ipath_stats.sps_port0pkts += pkttot;
	ipath_stats.sps_avgpkts_call =
		ipath_stats.sps_port0pkts / ++totcalls;

bail:;
}

/**
 * ipath_update_pio_bufs - update shadow copy of the PIO availability map
 * @dd: the infinipath device
 *
 * called whenever our local copy indicates we have run out of send buffers
 * NOTE: This can be called from interrupt context by some code
 * and from non-interrupt context by ipath_getpiobuf().
 */

static void ipath_update_pio_bufs(struct ipath_devdata *dd)
{
	unsigned long flags;
	int i;
	const unsigned piobregs = (unsigned)dd->ipath_pioavregs;

	/* If the generation (check) bits have changed, then we update the
	 * busy bit for the corresponding PIO buffer.  This algorithm will
	 * modify positions to the value they already have in some cases
	 * (i.e., no change), but it's faster than changing only the bits
	 * that have changed.
	 *
	 * We would like to do this atomicly, to avoid spinlocks in the
	 * critical send path, but that's not really possible, given the
	 * type of changes, and that this routine could be called on
	 * multiple cpu's simultaneously, so we lock in this routine only,
	 * to avoid conflicting updates; all we change is the shadow, and
	 * it's a single 64 bit memory location, so by definition the update
	 * is atomic in terms of what other cpu's can see in testing the
	 * bits.  The spin_lock overhead isn't too bad, since it only
	 * happens when all buffers are in use, so only cpu overhead, not
	 * latency or bandwidth is affected.
	 */
#define _IPATH_ALL_CHECKBITS 0x5555555555555555ULL
	if (!dd->ipath_pioavailregs_dma) {
		ipath_dbg("Update shadow pioavail, but regs_dma NULL!\n");
		return;
	}
	if (ipath_debug & __IPATH_VERBDBG) {
		/* only if packet debug and verbose */
		volatile __le64 *dma = dd->ipath_pioavailregs_dma;
		unsigned long *shadow = dd->ipath_pioavailshadow;

		ipath_cdbg(PKT, "Refill avail, dma0=%llx shad0=%lx, "
			   "d1=%llx s1=%lx, d2=%llx s2=%lx, d3=%llx "
			   "s3=%lx\n",
			   (unsigned long long) le64_to_cpu(dma[0]),
			   shadow[0],
			   (unsigned long long) le64_to_cpu(dma[1]),
			   shadow[1],
			   (unsigned long long) le64_to_cpu(dma[2]),
			   shadow[2],
			   (unsigned long long) le64_to_cpu(dma[3]),
			   shadow[3]);
		if (piobregs > 4)
			ipath_cdbg(
				PKT, "2nd group, dma4=%llx shad4=%lx, "
				"d5=%llx s5=%lx, d6=%llx s6=%lx, "
				"d7=%llx s7=%lx\n",
				(unsigned long long) le64_to_cpu(dma[4]),
				shadow[4],
				(unsigned long long) le64_to_cpu(dma[5]),
				shadow[5],
				(unsigned long long) le64_to_cpu(dma[6]),
				shadow[6],
				(unsigned long long) le64_to_cpu(dma[7]),
				shadow[7]);
	}
	spin_lock_irqsave(&ipath_pioavail_lock, flags);
	for (i = 0; i < piobregs; i++) {
		u64 pchbusy, pchg, piov, pnew;
		/*
		 * Chip Errata: bug 6641; even and odd qwords>3 are swapped
		 */
1358 1359 1360
		if (i > 3 && (dd->ipath_flags & IPATH_SWAP_PIOBUFS))
			piov = le64_to_cpu(dd->ipath_pioavailregs_dma[i ^ 1]);
		else
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			piov = le64_to_cpu(dd->ipath_pioavailregs_dma[i]);
		pchg = _IPATH_ALL_CHECKBITS &
			~(dd->ipath_pioavailshadow[i] ^ piov);
		pchbusy = pchg << INFINIPATH_SENDPIOAVAIL_BUSY_SHIFT;
		if (pchg && (pchbusy & dd->ipath_pioavailshadow[i])) {
			pnew = dd->ipath_pioavailshadow[i] & ~pchbusy;
			pnew |= piov & pchbusy;
			dd->ipath_pioavailshadow[i] = pnew;
		}
	}
	spin_unlock_irqrestore(&ipath_pioavail_lock, flags);
}

/**
 * ipath_setrcvhdrsize - set the receive header size
 * @dd: the infinipath device
 * @rhdrsize: the receive header size
 *
 * called from user init code, and also layered driver init
 */
int ipath_setrcvhdrsize(struct ipath_devdata *dd, unsigned rhdrsize)
{
	int ret = 0;

	if (dd->ipath_flags & IPATH_RCVHDRSZ_SET) {
		if (dd->ipath_rcvhdrsize != rhdrsize) {
			dev_info(&dd->pcidev->dev,
				 "Error: can't set protocol header "
				 "size %u, already %u\n",
				 rhdrsize, dd->ipath_rcvhdrsize);
			ret = -EAGAIN;
		} else
			ipath_cdbg(VERBOSE, "Reuse same protocol header "
				   "size %u\n", dd->ipath_rcvhdrsize);
	} else if (rhdrsize > (dd->ipath_rcvhdrentsize -
			       (sizeof(u64) / sizeof(u32)))) {
		ipath_dbg("Error: can't set protocol header size %u "
			  "(> max %u)\n", rhdrsize,
			  dd->ipath_rcvhdrentsize -
			  (u32) (sizeof(u64) / sizeof(u32)));
		ret = -EOVERFLOW;
	} else {
		dd->ipath_flags |= IPATH_RCVHDRSZ_SET;
		dd->ipath_rcvhdrsize = rhdrsize;
		ipath_write_kreg(dd, dd->ipath_kregs->kr_rcvhdrsize,
				 dd->ipath_rcvhdrsize);
		ipath_cdbg(VERBOSE, "Set protocol header size to %u\n",
			   dd->ipath_rcvhdrsize);
	}
	return ret;
}

/**
 * ipath_getpiobuf - find an available pio buffer
 * @dd: the infinipath device
 * @pbufnum: the buffer number is placed here
 *
 * do appropriate marking as busy, etc.
 * returns buffer number if one found (>=0), negative number is error.
1420
 * Used by ipath_layer_send
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 */
u32 __iomem *ipath_getpiobuf(struct ipath_devdata *dd, u32 * pbufnum)
{
	int i, j, starti, updated = 0;
	unsigned piobcnt, iter;
	unsigned long flags;
	unsigned long *shadow = dd->ipath_pioavailshadow;
	u32 __iomem *buf;

	piobcnt = (unsigned)(dd->ipath_piobcnt2k
			     + dd->ipath_piobcnt4k);
	starti = dd->ipath_lastport_piobuf;
	iter = piobcnt - starti;
	if (dd->ipath_upd_pio_shadow) {
		/*
		 * Minor optimization.  If we had no buffers on last call,
		 * start out by doing the update; continue and do scan even
		 * if no buffers were updated, to be paranoid
		 */
		ipath_update_pio_bufs(dd);
		/* we scanned here, don't do it at end of scan */
		updated = 1;
		i = starti;
	} else
		i = dd->ipath_lastpioindex;

rescan:
	/*
	 * while test_and_set_bit() is atomic, we do that and then the
	 * change_bit(), and the pair is not.  See if this is the cause
	 * of the remaining armlaunch errors.
	 */
	spin_lock_irqsave(&ipath_pioavail_lock, flags);
	for (j = 0; j < iter; j++, i++) {
		if (i >= piobcnt)
			i = starti;
		/*
		 * To avoid bus lock overhead, we first find a candidate
		 * buffer, then do the test and set, and continue if that
		 * fails.
		 */
		if (test_bit((2 * i) + 1, shadow) ||
		    test_and_set_bit((2 * i) + 1, shadow))
			continue;
		/* flip generation bit */
		change_bit(2 * i, shadow);
		break;
	}
	spin_unlock_irqrestore(&ipath_pioavail_lock, flags);

	if (j == iter) {
		volatile __le64 *dma = dd->ipath_pioavailregs_dma;

		/*
		 * first time through; shadow exhausted, but may be real
		 * buffers available, so go see; if any updated, rescan
		 * (once)
		 */
		if (!updated) {
			ipath_update_pio_bufs(dd);
			updated = 1;
			i = starti;
			goto rescan;
		}
		dd->ipath_upd_pio_shadow = 1;
		/*
		 * not atomic, but if we lose one once in a while, that's OK
		 */
		ipath_stats.sps_nopiobufs++;
		if (!(++dd->ipath_consec_nopiobuf % 100000)) {
			ipath_dbg(
				"%u pio sends with no bufavail; dmacopy: "
				"%llx %llx %llx %llx; shadow:  "
				"%lx %lx %lx %lx\n",
				dd->ipath_consec_nopiobuf,
				(unsigned long long) le64_to_cpu(dma[0]),
				(unsigned long long) le64_to_cpu(dma[1]),
				(unsigned long long) le64_to_cpu(dma[2]),
				(unsigned long long) le64_to_cpu(dma[3]),
				shadow[0], shadow[1], shadow[2],
				shadow[3]);
			/*
			 * 4 buffers per byte, 4 registers above, cover rest
			 * below
			 */
			if ((dd->ipath_piobcnt2k + dd->ipath_piobcnt4k) >
			    (sizeof(shadow[0]) * 4 * 4))
				ipath_dbg("2nd group: dmacopy: %llx %llx "
					  "%llx %llx; shadow: %lx %lx "
					  "%lx %lx\n",
					  (unsigned long long)
					  le64_to_cpu(dma[4]),
					  (unsigned long long)
					  le64_to_cpu(dma[5]),
					  (unsigned long long)
					  le64_to_cpu(dma[6]),
					  (unsigned long long)
					  le64_to_cpu(dma[7]),
					  shadow[4], shadow[5],
					  shadow[6], shadow[7]);
		}
		buf = NULL;
		goto bail;
	}

	/*
	 * set next starting place.  Since it's just an optimization,
	 * it doesn't matter who wins on this, so no locking
	 */
	dd->ipath_lastpioindex = i + 1;
	if (dd->ipath_upd_pio_shadow)
		dd->ipath_upd_pio_shadow = 0;
	if (dd->ipath_consec_nopiobuf)
		dd->ipath_consec_nopiobuf = 0;
	if (i < dd->ipath_piobcnt2k)
		buf = (u32 __iomem *) (dd->ipath_pio2kbase +
				       i * dd->ipath_palign);
	else
		buf = (u32 __iomem *)
			(dd->ipath_pio4kbase +
			 (i - dd->ipath_piobcnt2k) * dd->ipath_4kalign);
	ipath_cdbg(VERBOSE, "Return piobuf%u %uk @ %p\n",
		   i, (i < dd->ipath_piobcnt2k) ? 2 : 4, buf);
	if (pbufnum)
		*pbufnum = i;

bail:
	return buf;
}

/**
 * ipath_create_rcvhdrq - create a receive header queue
 * @dd: the infinipath device
 * @pd: the port data
 *
1556 1557 1558
 * this must be contiguous memory (from an i/o perspective), and must be
 * DMA'able (which means for some systems, it will go through an IOMMU,
 * or be forced into a low address range).
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 */
int ipath_create_rcvhdrq(struct ipath_devdata *dd,
			 struct ipath_portdata *pd)
{
1563
	int ret = 0;
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	if (!pd->port_rcvhdrq) {
1566
		dma_addr_t phys_hdrqtail;
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		gfp_t gfp_flags = GFP_USER | __GFP_COMP;
1568 1569
		int amt = ALIGN(dd->ipath_rcvhdrcnt * dd->ipath_rcvhdrentsize *
				sizeof(u32), PAGE_SIZE);
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		pd->port_rcvhdrq = dma_alloc_coherent(
			&dd->pcidev->dev, amt, &pd->port_rcvhdrq_phys,
			gfp_flags);

		if (!pd->port_rcvhdrq) {
			ipath_dev_err(dd, "attempt to allocate %d bytes "
				      "for port %u rcvhdrq failed\n",
				      amt, pd->port_port);
			ret = -ENOMEM;
			goto bail;
		}
1582 1583 1584 1585 1586 1587 1588
		pd->port_rcvhdrtail_kvaddr = dma_alloc_coherent(
			&dd->pcidev->dev, PAGE_SIZE, &phys_hdrqtail, GFP_KERNEL);
		if (!pd->port_rcvhdrtail_kvaddr) {
			ipath_dev_err(dd, "attempt to allocate 1 page "
				      "for port %u rcvhdrqtailaddr failed\n",
				      pd->port_port);
			ret = -ENOMEM;
1589 1590 1591
			dma_free_coherent(&dd->pcidev->dev, amt,
					  pd->port_rcvhdrq, pd->port_rcvhdrq_phys);
			pd->port_rcvhdrq = NULL;
1592 1593 1594
			goto bail;
		}
		pd->port_rcvhdrqtailaddr_phys = phys_hdrqtail;
B
Bryan O'Sullivan 已提交
1595 1596 1597 1598 1599 1600 1601 1602 1603

		pd->port_rcvhdrq_size = amt;

		ipath_cdbg(VERBOSE, "%d pages at %p (phys %lx) size=%lu "
			   "for port %u rcvhdr Q\n",
			   amt >> PAGE_SHIFT, pd->port_rcvhdrq,
			   (unsigned long) pd->port_rcvhdrq_phys,
			   (unsigned long) pd->port_rcvhdrq_size,
			   pd->port_port);
1604 1605 1606 1607

		ipath_cdbg(VERBOSE, "port %d hdrtailaddr, %llx physical\n",
			   pd->port_port,
			   (unsigned long long) phys_hdrqtail);
B
Bryan O'Sullivan 已提交
1608
	}
1609 1610 1611 1612
	else
		ipath_cdbg(VERBOSE, "reuse port %d rcvhdrq @%p %llx phys; "
			   "hdrtailaddr@%p %llx physical\n",
			   pd->port_port, pd->port_rcvhdrq,
1613 1614 1615
			   (unsigned long long) pd->port_rcvhdrq_phys,
			   pd->port_rcvhdrtail_kvaddr, (unsigned long long)
			   pd->port_rcvhdrqtailaddr_phys);
1616 1617 1618

	/* clear for security and sanity on each use */
	memset(pd->port_rcvhdrq, 0, pd->port_rcvhdrq_size);
1619 1620
	if (pd->port_rcvhdrtail_kvaddr)
		memset(pd->port_rcvhdrtail_kvaddr, 0, PAGE_SIZE);
B
Bryan O'Sullivan 已提交
1621 1622 1623

	/*
	 * tell chip each time we init it, even if we are re-using previous
1624
	 * memory (we zero the register at process close)
B
Bryan O'Sullivan 已提交
1625
	 */
1626 1627
	ipath_write_kreg_port(dd, dd->ipath_kregs->kr_rcvhdrtailaddr,
			      pd->port_port, pd->port_rcvhdrqtailaddr_phys);
B
Bryan O'Sullivan 已提交
1628 1629 1630 1631 1632 1633 1634 1635
	ipath_write_kreg_port(dd, dd->ipath_kregs->kr_rcvhdraddr,
			      pd->port_port, pd->port_rcvhdrq_phys);

	ret = 0;
bail:
	return ret;
}

1636 1637 1638 1639 1640 1641 1642 1643 1644 1645

/*
 * Flush all sends that might be in the ready to send state, as well as any
 * that are in the process of being sent.   Used whenever we need to be
 * sure the send side is idle.  Cleans up all buffer state by canceling
 * all pio buffers, and issuing an abort, which cleans up anything in the
 * launch fifo.  The cancel is superfluous on some chip versions, but
 * it's safer to always do it.
 * PIOAvail bits are updated by the chip as if normal send had happened.
 */
1646
void ipath_cancel_sends(struct ipath_devdata *dd, int restore_sendctrl)
1647 1648 1649 1650 1651 1652 1653 1654 1655 1656 1657 1658
{
	ipath_dbg("Cancelling all in-progress send buffers\n");
	dd->ipath_lastcancel = jiffies+HZ/2; /* skip armlaunch errs a bit */
	/*
	 * the abort bit is auto-clearing.  We read scratch to be sure
	 * that cancels and the abort have taken effect in the chip.
	 */
	ipath_write_kreg(dd, dd->ipath_kregs->kr_sendctrl,
		INFINIPATH_S_ABORT);
	ipath_read_kreg64(dd, dd->ipath_kregs->kr_scratch);
	ipath_disarm_piobufs(dd, 0,
		(unsigned)(dd->ipath_piobcnt2k + dd->ipath_piobcnt4k));
1659 1660 1661
	if (restore_sendctrl) /* else done by caller later */
		ipath_write_kreg(dd, dd->ipath_kregs->kr_sendctrl,
				 dd->ipath_sendctrl);
1662 1663 1664 1665 1666 1667

	/* and again, be sure all have hit the chip */
	ipath_read_kreg64(dd, dd->ipath_kregs->kr_scratch);
}


1668
static void ipath_set_ib_lstate(struct ipath_devdata *dd, int which)
B
Bryan O'Sullivan 已提交
1669 1670
{
	static const char *what[4] = {
1671 1672
		[0] = "NOP",
		[INFINIPATH_IBCC_LINKCMD_DOWN] = "DOWN",
B
Bryan O'Sullivan 已提交
1673 1674 1675
		[INFINIPATH_IBCC_LINKCMD_ARMED] = "ARMED",
		[INFINIPATH_IBCC_LINKCMD_ACTIVE] = "ACTIVE"
	};
1676 1677 1678
	int linkcmd = (which >> INFINIPATH_IBCC_LINKCMD_SHIFT) &
			INFINIPATH_IBCC_LINKCMD_MASK;

1679
	ipath_cdbg(VERBOSE, "Trying to move unit %u to %s, current ltstate "
B
Bryan O'Sullivan 已提交
1680
		   "is %s\n", dd->ipath_unit,
1681
		   what[linkcmd],
1682 1683
		   ipath_ibcstatus_str[ipath_ib_linktrstate(dd,
			ipath_read_kreg64(dd, dd->ipath_kregs->kr_ibcstatus))]);
1684
	/* flush all queued sends when going to DOWN to be sure that
1685
	 * they don't block MAD packets */
1686
	if (linkcmd == INFINIPATH_IBCC_LINKCMD_DOWN)
1687
		ipath_cancel_sends(dd, 1);
B
Bryan O'Sullivan 已提交
1688 1689 1690 1691 1692

	ipath_write_kreg(dd, dd->ipath_kregs->kr_ibcctrl,
			 dd->ipath_ibcctrl | which);
}

1693 1694 1695 1696 1697 1698
int ipath_set_linkstate(struct ipath_devdata *dd, u8 newstate)
{
	u32 lstate;
	int ret;

	switch (newstate) {
1699 1700 1701 1702 1703 1704 1705
	case IPATH_IB_LINKDOWN_ONLY:
		ipath_set_ib_lstate(dd, INFINIPATH_IBCC_LINKCMD_DOWN <<
				    INFINIPATH_IBCC_LINKCMD_SHIFT);
		/* don't wait */
		ret = 0;
		goto bail;

1706 1707 1708 1709 1710 1711 1712 1713 1714 1715 1716 1717 1718 1719 1720 1721 1722 1723 1724 1725 1726 1727 1728 1729 1730 1731 1732 1733 1734 1735 1736 1737 1738 1739 1740 1741 1742 1743 1744 1745 1746 1747 1748 1749 1750 1751 1752 1753 1754 1755 1756 1757 1758 1759 1760
	case IPATH_IB_LINKDOWN:
		ipath_set_ib_lstate(dd, INFINIPATH_IBCC_LINKINITCMD_POLL <<
				    INFINIPATH_IBCC_LINKINITCMD_SHIFT);
		/* don't wait */
		ret = 0;
		goto bail;

	case IPATH_IB_LINKDOWN_SLEEP:
		ipath_set_ib_lstate(dd, INFINIPATH_IBCC_LINKINITCMD_SLEEP <<
				    INFINIPATH_IBCC_LINKINITCMD_SHIFT);
		/* don't wait */
		ret = 0;
		goto bail;

	case IPATH_IB_LINKDOWN_DISABLE:
		ipath_set_ib_lstate(dd,
				    INFINIPATH_IBCC_LINKINITCMD_DISABLE <<
				    INFINIPATH_IBCC_LINKINITCMD_SHIFT);
		/* don't wait */
		ret = 0;
		goto bail;

	case IPATH_IB_LINKARM:
		if (dd->ipath_flags & IPATH_LINKARMED) {
			ret = 0;
			goto bail;
		}
		if (!(dd->ipath_flags &
		      (IPATH_LINKINIT | IPATH_LINKACTIVE))) {
			ret = -EINVAL;
			goto bail;
		}
		ipath_set_ib_lstate(dd, INFINIPATH_IBCC_LINKCMD_ARMED <<
				    INFINIPATH_IBCC_LINKCMD_SHIFT);
		/*
		 * Since the port can transition to ACTIVE by receiving
		 * a non VL 15 packet, wait for either state.
		 */
		lstate = IPATH_LINKARMED | IPATH_LINKACTIVE;
		break;

	case IPATH_IB_LINKACTIVE:
		if (dd->ipath_flags & IPATH_LINKACTIVE) {
			ret = 0;
			goto bail;
		}
		if (!(dd->ipath_flags & IPATH_LINKARMED)) {
			ret = -EINVAL;
			goto bail;
		}
		ipath_set_ib_lstate(dd, INFINIPATH_IBCC_LINKCMD_ACTIVE <<
				    INFINIPATH_IBCC_LINKCMD_SHIFT);
		lstate = IPATH_LINKACTIVE;
		break;

1761 1762 1763 1764 1765 1766 1767 1768 1769 1770 1771 1772 1773 1774 1775 1776
	case IPATH_IB_LINK_LOOPBACK:
		dev_info(&dd->pcidev->dev, "Enabling IB local loopback\n");
		dd->ipath_ibcctrl |= INFINIPATH_IBCC_LOOPBACK;
		ipath_write_kreg(dd, dd->ipath_kregs->kr_ibcctrl,
				 dd->ipath_ibcctrl);
		ret = 0;
		goto bail; // no state change to wait for

	case IPATH_IB_LINK_EXTERNAL:
		dev_info(&dd->pcidev->dev, "Disabling IB local loopback (normal)\n");
		dd->ipath_ibcctrl &= ~INFINIPATH_IBCC_LOOPBACK;
		ipath_write_kreg(dd, dd->ipath_kregs->kr_ibcctrl,
				 dd->ipath_ibcctrl);
		ret = 0;
		goto bail; // no state change to wait for

1777 1778 1779 1780 1781 1782 1783 1784 1785 1786 1787 1788 1789 1790 1791 1792 1793 1794 1795 1796 1797 1798 1799 1800 1801 1802 1803 1804 1805 1806 1807 1808 1809 1810 1811 1812
	default:
		ipath_dbg("Invalid linkstate 0x%x requested\n", newstate);
		ret = -EINVAL;
		goto bail;
	}
	ret = ipath_wait_linkstate(dd, lstate, 2000);

bail:
	return ret;
}

/**
 * ipath_set_mtu - set the MTU
 * @dd: the infinipath device
 * @arg: the new MTU
 *
 * we can handle "any" incoming size, the issue here is whether we
 * need to restrict our outgoing size.   For now, we don't do any
 * sanity checking on this, and we don't deal with what happens to
 * programs that are already running when the size changes.
 * NOTE: changing the MTU will usually cause the IBC to go back to
 * link initialize (IPATH_IBSTATE_INIT) state...
 */
int ipath_set_mtu(struct ipath_devdata *dd, u16 arg)
{
	u32 piosize;
	int changed = 0;
	int ret;

	/*
	 * mtu is IB data payload max.  It's the largest power of 2 less
	 * than piosize (or even larger, since it only really controls the
	 * largest we can receive; we can send the max of the mtu and
	 * piosize).  We check that it's one of the valid IB sizes.
	 */
	if (arg != 256 && arg != 512 && arg != 1024 && arg != 2048 &&
D
Dave Olson 已提交
1813
	    (arg != 4096 || !ipath_mtu4096)) {
1814 1815 1816 1817 1818 1819 1820 1821 1822 1823 1824 1825 1826 1827 1828
		ipath_dbg("Trying to set invalid mtu %u, failing\n", arg);
		ret = -EINVAL;
		goto bail;
	}
	if (dd->ipath_ibmtu == arg) {
		ret = 0;        /* same as current */
		goto bail;
	}

	piosize = dd->ipath_ibmaxlen;
	dd->ipath_ibmtu = arg;

	if (arg >= (piosize - IPATH_PIO_MAXIBHDR)) {
		/* Only if it's not the initial value (or reset to it) */
		if (piosize != dd->ipath_init_ibmaxlen) {
D
Dave Olson 已提交
1829 1830
			if (arg > piosize && arg <= dd->ipath_init_ibmaxlen)
				piosize = dd->ipath_init_ibmaxlen;
1831 1832 1833 1834 1835 1836 1837 1838 1839 1840 1841 1842 1843
			dd->ipath_ibmaxlen = piosize;
			changed = 1;
		}
	} else if ((arg + IPATH_PIO_MAXIBHDR) != dd->ipath_ibmaxlen) {
		piosize = arg + IPATH_PIO_MAXIBHDR;
		ipath_cdbg(VERBOSE, "ibmaxlen was 0x%x, setting to 0x%x "
			   "(mtu 0x%x)\n", dd->ipath_ibmaxlen, piosize,
			   arg);
		dd->ipath_ibmaxlen = piosize;
		changed = 1;
	}

	if (changed) {
D
Dave Olson 已提交
1844
		u64 ibc = dd->ipath_ibcctrl, ibdw;
1845
		/*
D
Dave Olson 已提交
1846 1847 1848
		 * update our housekeeping variables, and set IBC max
		 * size, same as init code; max IBC is max we allow in
		 * buffer, less the qword pbc, plus 1 for ICRC, in dwords
1849
		 */
D
Dave Olson 已提交
1850 1851
		dd->ipath_ibmaxlen = piosize - 2 * sizeof(u32);
		ibdw = (dd->ipath_ibmaxlen >> 2) + 1;
1852
		ibc &= ~(INFINIPATH_IBCC_MAXPKTLEN_MASK <<
D
Dave Olson 已提交
1853 1854
			 dd->ibcc_mpl_shift);
		ibc |= ibdw << dd->ibcc_mpl_shift;
1855 1856 1857 1858 1859 1860 1861 1862 1863 1864 1865 1866 1867 1868 1869 1870 1871 1872 1873 1874
		dd->ipath_ibcctrl = ibc;
		ipath_write_kreg(dd, dd->ipath_kregs->kr_ibcctrl,
				 dd->ipath_ibcctrl);
		dd->ipath_f_tidtemplate(dd);
	}

	ret = 0;

bail:
	return ret;
}

int ipath_set_lid(struct ipath_devdata *dd, u32 arg, u8 lmc)
{
	dd->ipath_lid = arg;
	dd->ipath_lmc = lmc;

	return 0;
}

B
Bryan O'Sullivan 已提交
1875 1876 1877 1878 1879 1880 1881 1882 1883 1884 1885 1886 1887 1888 1889 1890 1891 1892 1893 1894 1895 1896 1897 1898 1899 1900

/**
 * ipath_write_kreg_port - write a device's per-port 64-bit kernel register
 * @dd: the infinipath device
 * @regno: the register number to write
 * @port: the port containing the register
 * @value: the value to write
 *
 * Registers that vary with the chip implementation constants (port)
 * use this routine.
 */
void ipath_write_kreg_port(const struct ipath_devdata *dd, ipath_kreg regno,
			  unsigned port, u64 value)
{
	u16 where;

	if (port < dd->ipath_portcnt &&
	    (regno == dd->ipath_kregs->kr_rcvhdraddr ||
	     regno == dd->ipath_kregs->kr_rcvhdrtailaddr))
		where = regno + port;
	else
		where = -1;

	ipath_write_kreg(dd, where, value);
}

1901 1902 1903 1904 1905 1906 1907 1908 1909 1910 1911 1912
/*
 * Following deal with the "obviously simple" task of overriding the state
 * of the LEDS, which normally indicate link physical and logical status.
 * The complications arise in dealing with different hardware mappings
 * and the board-dependent routine being called from interrupts.
 * and then there's the requirement to _flash_ them.
 */
#define LED_OVER_FREQ_SHIFT 8
#define LED_OVER_FREQ_MASK (0xFF<<LED_OVER_FREQ_SHIFT)
/* Below is "non-zero" to force override, but both actual LEDs are off */
#define LED_OVER_BOTH_OFF (8)

1913
static void ipath_run_led_override(unsigned long opaque)
1914 1915 1916 1917 1918 1919 1920 1921 1922 1923 1924 1925 1926 1927 1928 1929 1930 1931 1932 1933
{
	struct ipath_devdata *dd = (struct ipath_devdata *)opaque;
	int timeoff;
	int pidx;
	u64 lstate, ltstate, val;

	if (!(dd->ipath_flags & IPATH_INITTED))
		return;

	pidx = dd->ipath_led_override_phase++ & 1;
	dd->ipath_led_override = dd->ipath_led_override_vals[pidx];
	timeoff = dd->ipath_led_override_timeoff;

	/*
	 * below potentially restores the LED values per current status,
	 * should also possibly setup the traffic-blink register,
	 * but leave that to per-chip functions.
	 */
	val = ipath_read_kreg64(dd, dd->ipath_kregs->kr_ibcstatus);
	ltstate = (val >> INFINIPATH_IBCS_LINKTRAININGSTATE_SHIFT) &
1934 1935
		  dd->ibcs_lts_mask;
	lstate = (val >> dd->ibcs_ls_shift) & INFINIPATH_IBCS_LINKSTATE_MASK;
1936 1937 1938 1939 1940 1941 1942 1943 1944 1945 1946 1947 1948 1949 1950 1951 1952 1953 1954 1955 1956 1957 1958 1959 1960 1961 1962 1963 1964 1965 1966 1967 1968 1969 1970 1971 1972 1973 1974 1975 1976 1977 1978 1979 1980

	dd->ipath_f_setextled(dd, lstate, ltstate);
	mod_timer(&dd->ipath_led_override_timer, jiffies + timeoff);
}

void ipath_set_led_override(struct ipath_devdata *dd, unsigned int val)
{
	int timeoff, freq;

	if (!(dd->ipath_flags & IPATH_INITTED))
		return;

	/* First check if we are blinking. If not, use 1HZ polling */
	timeoff = HZ;
	freq = (val & LED_OVER_FREQ_MASK) >> LED_OVER_FREQ_SHIFT;

	if (freq) {
		/* For blink, set each phase from one nybble of val */
		dd->ipath_led_override_vals[0] = val & 0xF;
		dd->ipath_led_override_vals[1] = (val >> 4) & 0xF;
		timeoff = (HZ << 4)/freq;
	} else {
		/* Non-blink set both phases the same. */
		dd->ipath_led_override_vals[0] = val & 0xF;
		dd->ipath_led_override_vals[1] = val & 0xF;
	}
	dd->ipath_led_override_timeoff = timeoff;

	/*
	 * If the timer has not already been started, do so. Use a "quick"
	 * timeout so the function will be called soon, to look at our request.
	 */
	if (atomic_inc_return(&dd->ipath_led_override_timer_active) == 1) {
		/* Need to start timer */
		init_timer(&dd->ipath_led_override_timer);
		dd->ipath_led_override_timer.function =
						 ipath_run_led_override;
		dd->ipath_led_override_timer.data = (unsigned long) dd;
		dd->ipath_led_override_timer.expires = jiffies + 1;
		add_timer(&dd->ipath_led_override_timer);
	} else {
		atomic_dec(&dd->ipath_led_override_timer_active);
	}
}

B
Bryan O'Sullivan 已提交
1981 1982 1983 1984 1985 1986 1987 1988 1989 1990 1991
/**
 * ipath_shutdown_device - shut down a device
 * @dd: the infinipath device
 *
 * This is called to make the device quiet when we are about to
 * unload the driver, and also when the device is administratively
 * disabled.   It does not free any data structures.
 * Everything it does has to be setup again by ipath_init_chip(dd,1)
 */
void ipath_shutdown_device(struct ipath_devdata *dd)
{
J
John Gregor 已提交
1992 1993
	unsigned long flags;

B
Bryan O'Sullivan 已提交
1994 1995
	ipath_dbg("Shutting down the device\n");

1996 1997
	ipath_hol_up(dd); /* make sure user processes aren't suspended */

B
Bryan O'Sullivan 已提交
1998 1999 2000 2001 2002 2003 2004 2005 2006 2007 2008 2009 2010 2011 2012 2013 2014 2015
	dd->ipath_flags |= IPATH_LINKUNK;
	dd->ipath_flags &= ~(IPATH_INITTED | IPATH_LINKDOWN |
			     IPATH_LINKINIT | IPATH_LINKARMED |
			     IPATH_LINKACTIVE);
	*dd->ipath_statusp &= ~(IPATH_STATUS_IB_CONF |
				IPATH_STATUS_IB_READY);

	/* mask interrupts, but not errors */
	ipath_write_kreg(dd, dd->ipath_kregs->kr_intmask, 0ULL);

	dd->ipath_rcvctrl = 0;
	ipath_write_kreg(dd, dd->ipath_kregs->kr_rcvctrl,
			 dd->ipath_rcvctrl);

	/*
	 * gracefully stop all sends allowing any in progress to trickle out
	 * first.
	 */
J
John Gregor 已提交
2016 2017 2018
	spin_lock_irqsave(&dd->ipath_sendctrl_lock, flags);
	dd->ipath_sendctrl = 0;
	ipath_write_kreg(dd, dd->ipath_kregs->kr_sendctrl, dd->ipath_sendctrl);
B
Bryan O'Sullivan 已提交
2019
	/* flush it */
2020
	ipath_read_kreg64(dd, dd->ipath_kregs->kr_scratch);
J
John Gregor 已提交
2021 2022
	spin_unlock_irqrestore(&dd->ipath_sendctrl_lock, flags);

B
Bryan O'Sullivan 已提交
2023 2024 2025 2026 2027 2028 2029 2030
	/*
	 * enough for anything that's going to trickle out to have actually
	 * done so.
	 */
	udelay(5);

	ipath_set_ib_lstate(dd, INFINIPATH_IBCC_LINKINITCMD_DISABLE <<
			    INFINIPATH_IBCC_LINKINITCMD_SHIFT);
2031
	ipath_cancel_sends(dd, 0);
B
Bryan O'Sullivan 已提交
2032

2033 2034
	signal_ib_event(dd, IB_EVENT_PORT_ERR);

B
Bryan O'Sullivan 已提交
2035 2036 2037
	/* disable IBC */
	dd->ipath_control &= ~INFINIPATH_C_LINKENABLE;
	ipath_write_kreg(dd, dd->ipath_kregs->kr_control,
2038
			 dd->ipath_control | INFINIPATH_C_FREEZEMODE);
B
Bryan O'Sullivan 已提交
2039 2040 2041 2042 2043 2044 2045 2046

	/*
	 * clear SerdesEnable and turn the leds off; do this here because
	 * we are unloading, so don't count on interrupts to move along
	 * Turn the LEDs off explictly for the same reason.
	 */
	dd->ipath_f_quiet_serdes(dd);

2047 2048
	/* stop all the timers that might still be running */
	del_timer_sync(&dd->ipath_hol_timer);
B
Bryan O'Sullivan 已提交
2049 2050 2051 2052 2053 2054 2055 2056 2057 2058 2059 2060 2061 2062
	if (dd->ipath_stats_timer_active) {
		del_timer_sync(&dd->ipath_stats_timer);
		dd->ipath_stats_timer_active = 0;
	}

	/*
	 * clear all interrupts and errors, so that the next time the driver
	 * is loaded or device is enabled, we know that whatever is set
	 * happened while we were unloaded
	 */
	ipath_write_kreg(dd, dd->ipath_kregs->kr_hwerrclear,
			 ~0ULL & ~INFINIPATH_HWE_MEMBISTFAILED);
	ipath_write_kreg(dd, dd->ipath_kregs->kr_errorclear, -1LL);
	ipath_write_kreg(dd, dd->ipath_kregs->kr_intclear, -1LL);
2063 2064 2065

	ipath_cdbg(VERBOSE, "Flush time and errors to EEPROM\n");
	ipath_update_eeprom_log(dd);
B
Bryan O'Sullivan 已提交
2066 2067 2068 2069 2070
}

/**
 * ipath_free_pddata - free a port's allocated data
 * @dd: the infinipath device
2071
 * @pd: the portdata structure
B
Bryan O'Sullivan 已提交
2072
 *
2073 2074 2075 2076 2077 2078
 * free up any allocated data for a port
 * This should not touch anything that would affect a simultaneous
 * re-allocation of port data, because it is called after ipath_mutex
 * is released (and can be called from reinit as well).
 * It should never change any chip state, or global driver state.
 * (The only exception to global state is freeing the port0 port0_skbs.)
B
Bryan O'Sullivan 已提交
2079
 */
2080
void ipath_free_pddata(struct ipath_devdata *dd, struct ipath_portdata *pd)
B
Bryan O'Sullivan 已提交
2081 2082 2083
{
	if (!pd)
		return;
2084 2085

	if (pd->port_rcvhdrq) {
B
Bryan O'Sullivan 已提交
2086 2087 2088 2089 2090 2091
		ipath_cdbg(VERBOSE, "free closed port %d rcvhdrq @ %p "
			   "(size=%lu)\n", pd->port_port, pd->port_rcvhdrq,
			   (unsigned long) pd->port_rcvhdrq_size);
		dma_free_coherent(&dd->pcidev->dev, pd->port_rcvhdrq_size,
				  pd->port_rcvhdrq, pd->port_rcvhdrq_phys);
		pd->port_rcvhdrq = NULL;
2092 2093
		if (pd->port_rcvhdrtail_kvaddr) {
			dma_free_coherent(&dd->pcidev->dev, PAGE_SIZE,
2094
					 pd->port_rcvhdrtail_kvaddr,
2095 2096 2097
					 pd->port_rcvhdrqtailaddr_phys);
			pd->port_rcvhdrtail_kvaddr = NULL;
		}
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	}
2099 2100 2101 2102 2103 2104 2105 2106 2107 2108 2109 2110 2111
	if (pd->port_port && pd->port_rcvegrbuf) {
		unsigned e;

		for (e = 0; e < pd->port_rcvegrbuf_chunks; e++) {
			void *base = pd->port_rcvegrbuf[e];
			size_t size = pd->port_rcvegrbuf_size;

			ipath_cdbg(VERBOSE, "egrbuf free(%p, %lu), "
				   "chunk %u/%u\n", base,
				   (unsigned long) size,
				   e, pd->port_rcvegrbuf_chunks);
			dma_free_coherent(&dd->pcidev->dev, size,
				base, pd->port_rcvegrbuf_phys[e]);
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		}
2113
		kfree(pd->port_rcvegrbuf);
2114
		pd->port_rcvegrbuf = NULL;
2115
		kfree(pd->port_rcvegrbuf_phys);
2116
		pd->port_rcvegrbuf_phys = NULL;
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		pd->port_rcvegrbuf_chunks = 0;
2118
	} else if (pd->port_port == 0 && dd->ipath_port0_skbinfo) {
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		unsigned e;
2120
		struct ipath_skbinfo *skbinfo = dd->ipath_port0_skbinfo;
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2122 2123 2124 2125
		dd->ipath_port0_skbinfo = NULL;
		ipath_cdbg(VERBOSE, "free closed port %d "
			   "ipath_port0_skbinfo @ %p\n", pd->port_port,
			   skbinfo);
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		for (e = 0; e < dd->ipath_rcvegrcnt; e++)
2127 2128 2129 2130 2131 2132 2133
		if (skbinfo[e].skb) {
			pci_unmap_single(dd->pcidev, skbinfo[e].phys,
					 dd->ipath_ibmaxlen,
					 PCI_DMA_FROMDEVICE);
			dev_kfree_skb(skbinfo[e].skb);
		}
		vfree(skbinfo);
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	}
2135
	kfree(pd->port_tid_pg_list);
2136 2137 2138
	vfree(pd->subport_uregbase);
	vfree(pd->subport_rcvegrbuf);
	vfree(pd->subport_rcvhdr_base);
2139
	kfree(pd);
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}

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static int __init infinipath_init(void)
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{
	int ret;

2146 2147
	if (ipath_debug & __IPATH_DBG)
		printk(KERN_INFO DRIVER_LOAD_MSG "%s", ib_ipath_version);
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	/*
	 * These must be called before the driver is registered with
	 * the PCI subsystem.
	 */
	idr_init(&unit_table);
	if (!idr_pre_get(&unit_table, GFP_KERNEL)) {
		ret = -ENOMEM;
		goto bail;
	}

	ret = pci_register_driver(&ipath_driver);
	if (ret < 0) {
		printk(KERN_ERR IPATH_DRV_NAME
		       ": Unable to register driver: error %d\n", -ret);
		goto bail_unit;
	}

	ret = ipath_init_ipathfs();
	if (ret < 0) {
		printk(KERN_ERR IPATH_DRV_NAME ": Unable to create "
		       "ipathfs: error %d\n", -ret);
2170
		goto bail_pci;
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	}

	goto bail;

bail_pci:
	pci_unregister_driver(&ipath_driver);

bail_unit:
	idr_destroy(&unit_table);

bail:
	return ret;
}

static void __exit infinipath_cleanup(void)
{
	ipath_exit_ipathfs();

	ipath_cdbg(VERBOSE, "Unregistering pci driver\n");
	pci_unregister_driver(&ipath_driver);

	idr_destroy(&unit_table);
}

/**
 * ipath_reset_device - reset the chip if possible
 * @unit: the device to reset
 *
 * Whether or not reset is successful, we attempt to re-initialize the chip
 * (that is, much like a driver unload/reload).  We clear the INITTED flag
 * so that the various entry points will fail until we reinitialize.  For
 * now, we only allow this if no user ports are open that use chip resources
 */
int ipath_reset_device(int unit)
{
	int ret, i;
	struct ipath_devdata *dd = ipath_lookup(unit);

	if (!dd) {
		ret = -ENODEV;
		goto bail;
	}

2214 2215 2216 2217 2218 2219 2220 2221 2222 2223
	if (atomic_read(&dd->ipath_led_override_timer_active)) {
		/* Need to stop LED timer, _then_ shut off LEDs */
		del_timer_sync(&dd->ipath_led_override_timer);
		atomic_set(&dd->ipath_led_override_timer_active, 0);
	}

	/* Shut off LEDs after we are sure timer is not running */
	dd->ipath_led_override = LED_OVER_BOTH_OFF;
	dd->ipath_f_setextled(dd, 0, 0);

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	dev_info(&dd->pcidev->dev, "Reset on unit %u requested\n", unit);

	if (!dd->ipath_kregbase || !(dd->ipath_flags & IPATH_PRESENT)) {
		dev_info(&dd->pcidev->dev, "Invalid unit number %u or "
			 "not initialized or not present\n", unit);
		ret = -ENXIO;
		goto bail;
	}

	if (dd->ipath_pd)
2234
		for (i = 1; i < dd->ipath_cfgports; i++) {
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			if (dd->ipath_pd[i] && dd->ipath_pd[i]->port_cnt) {
				ipath_dbg("unit %u port %d is in use "
					  "(PID %u cmd %s), can't reset\n",
					  unit, i,
					  dd->ipath_pd[i]->port_pid,
					  dd->ipath_pd[i]->port_comm);
				ret = -EBUSY;
				goto bail;
			}
		}

	dd->ipath_flags &= ~IPATH_INITTED;
	ret = dd->ipath_f_reset(dd);
	if (ret != 1)
		ipath_dbg("reset was not successful\n");
	ipath_dbg("Trying to reinitialize unit %u after reset attempt\n",
		  unit);
	ret = ipath_init_chip(dd, 1);
	if (ret)
		ipath_dev_err(dd, "Reinitialize unit %u after "
			      "reset failed with %d\n", unit, ret);
	else
		dev_info(&dd->pcidev->dev, "Reinitialized unit %u after "
			 "resetting\n", unit);

bail:
	return ret;
}

2264 2265 2266 2267 2268 2269 2270 2271 2272 2273 2274 2275 2276 2277 2278 2279 2280 2281 2282 2283 2284 2285 2286 2287 2288 2289 2290 2291 2292 2293 2294 2295 2296 2297 2298 2299 2300 2301 2302 2303 2304 2305 2306 2307 2308 2309 2310 2311 2312 2313 2314 2315 2316 2317 2318 2319 2320 2321 2322 2323 2324 2325 2326 2327 2328 2329 2330 2331 2332 2333 2334 2335 2336 2337 2338 2339 2340 2341 2342 2343 2344 2345 2346 2347 2348 2349 2350 2351 2352 2353 2354 2355 2356 2357 2358 2359 2360 2361 2362 2363 2364 2365 2366 2367 2368 2369 2370 2371
/*
 * send a signal to all the processes that have the driver open
 * through the normal interfaces (i.e., everything other than diags
 * interface).  Returns number of signalled processes.
 */
static int ipath_signal_procs(struct ipath_devdata *dd, int sig)
{
	int i, sub, any = 0;
	pid_t pid;

	if (!dd->ipath_pd)
		return 0;
	for (i = 1; i < dd->ipath_cfgports; i++) {
		if (!dd->ipath_pd[i] || !dd->ipath_pd[i]->port_cnt ||
		    !dd->ipath_pd[i]->port_pid)
			continue;
		pid = dd->ipath_pd[i]->port_pid;
		dev_info(&dd->pcidev->dev, "context %d in use "
			  "(PID %u), sending signal %d\n",
			  i, pid, sig);
		kill_proc(pid, sig, 1);
		any++;
		for (sub = 0; sub < INFINIPATH_MAX_SUBPORT; sub++) {
			pid = dd->ipath_pd[i]->port_subpid[sub];
			if (!pid)
				continue;
			dev_info(&dd->pcidev->dev, "sub-context "
				"%d:%d in use (PID %u), sending "
				"signal %d\n", i, sub, pid, sig);
			kill_proc(pid, sig, 1);
			any++;
		}
	}
	return any;
}

static void ipath_hol_signal_down(struct ipath_devdata *dd)
{
	if (ipath_signal_procs(dd, SIGSTOP))
		ipath_dbg("Stopped some processes\n");
	ipath_cancel_sends(dd, 1);
}


static void ipath_hol_signal_up(struct ipath_devdata *dd)
{
	if (ipath_signal_procs(dd, SIGCONT))
		ipath_dbg("Continued some processes\n");
}

/*
 * link is down, stop any users processes, and flush pending sends
 * to prevent HoL blocking, then start the HoL timer that
 * periodically continues, then stop procs, so they can detect
 * link down if they want, and do something about it.
 * Timer may already be running, so use __mod_timer, not add_timer.
 */
void ipath_hol_down(struct ipath_devdata *dd)
{
	dd->ipath_hol_state = IPATH_HOL_DOWN;
	ipath_hol_signal_down(dd);
	dd->ipath_hol_next = IPATH_HOL_DOWNCONT;
	dd->ipath_hol_timer.expires = jiffies +
		msecs_to_jiffies(ipath_hol_timeout_ms);
	__mod_timer(&dd->ipath_hol_timer, dd->ipath_hol_timer.expires);
}

/*
 * link is up, continue any user processes, and ensure timer
 * is a nop, if running.  Let timer keep running, if set; it
 * will nop when it sees the link is up
 */
void ipath_hol_up(struct ipath_devdata *dd)
{
	ipath_hol_signal_up(dd);
	dd->ipath_hol_state = IPATH_HOL_UP;
}

/*
 * toggle the running/not running state of user proceses
 * to prevent HoL blocking on chip resources, but still allow
 * user processes to do link down special case handling.
 * Should only be called via the timer
 */
void ipath_hol_event(unsigned long opaque)
{
	struct ipath_devdata *dd = (struct ipath_devdata *)opaque;

	if (dd->ipath_hol_next == IPATH_HOL_DOWNSTOP
		&& dd->ipath_hol_state != IPATH_HOL_UP) {
		dd->ipath_hol_next = IPATH_HOL_DOWNCONT;
		ipath_dbg("Stopping processes\n");
		ipath_hol_signal_down(dd);
	} else { /* may do "extra" if also in ipath_hol_up() */
		dd->ipath_hol_next = IPATH_HOL_DOWNSTOP;
		ipath_dbg("Continuing processes\n");
		ipath_hol_signal_up(dd);
	}
	if (dd->ipath_hol_state == IPATH_HOL_UP)
		ipath_dbg("link's up, don't resched timer\n");
	else {
		dd->ipath_hol_timer.expires = jiffies +
			msecs_to_jiffies(ipath_hol_timeout_ms);
		__mod_timer(&dd->ipath_hol_timer,
			dd->ipath_hol_timer.expires);
	}
}

2372 2373 2374 2375 2376 2377 2378 2379 2380 2381
int ipath_set_rx_pol_inv(struct ipath_devdata *dd, u8 new_pol_inv)
{
	u64 val;
	if ( new_pol_inv > INFINIPATH_XGXS_RX_POL_MASK ) {
		return -1;
	}
	if ( dd->ipath_rx_pol_inv != new_pol_inv ) {
		dd->ipath_rx_pol_inv = new_pol_inv;
		val = ipath_read_kreg64(dd, dd->ipath_kregs->kr_xgxsconfig);
		val &= ~(INFINIPATH_XGXS_RX_POL_MASK <<
R
Roland Dreier 已提交
2382 2383 2384
			 INFINIPATH_XGXS_RX_POL_SHIFT);
		val |= ((u64)dd->ipath_rx_pol_inv) <<
			INFINIPATH_XGXS_RX_POL_SHIFT;
2385 2386 2387 2388
		ipath_write_kreg(dd, dd->ipath_kregs->kr_xgxsconfig, val);
	}
	return 0;
}
2389 2390 2391 2392 2393 2394 2395 2396 2397 2398 2399 2400 2401 2402 2403 2404 2405 2406 2407 2408 2409 2410 2411 2412 2413 2414 2415 2416 2417

/*
 * Disable and enable the armlaunch error.  Used for PIO bandwidth testing on
 * the 7220, which is count-based, rather than trigger-based.  Safe for the
 * driver check, since it's at init.   Not completely safe when used for
 * user-mode checking, since some error checking can be lost, but not
 * particularly risky, and only has problematic side-effects in the face of
 * very buggy user code.  There is no reference counting, but that's also
 * fine, given the intended use.
 */
void ipath_enable_armlaunch(struct ipath_devdata *dd)
{
	dd->ipath_lasterror &= ~INFINIPATH_E_SPIOARMLAUNCH;
	ipath_write_kreg(dd, dd->ipath_kregs->kr_errorclear,
		INFINIPATH_E_SPIOARMLAUNCH);
	dd->ipath_errormask |= INFINIPATH_E_SPIOARMLAUNCH;
	ipath_write_kreg(dd, dd->ipath_kregs->kr_errormask,
		dd->ipath_errormask);
}

void ipath_disable_armlaunch(struct ipath_devdata *dd)
{
	/* so don't re-enable if already set */
	dd->ipath_maskederrs &= ~INFINIPATH_E_SPIOARMLAUNCH;
	dd->ipath_errormask &= ~INFINIPATH_E_SPIOARMLAUNCH;
	ipath_write_kreg(dd, dd->ipath_kregs->kr_errormask,
		dd->ipath_errormask);
}

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module_init(infinipath_init);
module_exit(infinipath_cleanup);