blob: e397ec0d388fc694e57ade53f7b537d4a79071e6 [file] [log] [blame]
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001/*
John Gregor87427da2007-06-11 10:21:14 -07002 * Copyright (c) 2006, 2007 QLogic Corporation. All rights reserved.
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08003 * Copyright (c) 2003, 2004, 2005, 2006 PathScale, Inc. All rights reserved.
4 *
5 * This software is available to you under a choice of one of two
6 * licenses. You may choose to be licensed under the terms of the GNU
7 * General Public License (GPL) Version 2, available from the file
8 * COPYING in the main directory of this source tree, or the
9 * OpenIB.org BSD license below:
10 *
11 * Redistribution and use in source and binary forms, with or
12 * without modification, are permitted provided that the following
13 * conditions are met:
14 *
15 * - Redistributions of source code must retain the above
16 * copyright notice, this list of conditions and the following
17 * disclaimer.
18 *
19 * - Redistributions in binary form must reproduce the above
20 * copyright notice, this list of conditions and the following
21 * disclaimer in the documentation and/or other materials
22 * provided with the distribution.
23 *
24 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
25 * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
26 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
27 * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
28 * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
29 * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
30 * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
31 * SOFTWARE.
32 */
33
34#include <linux/spinlock.h>
35#include <linux/idr.h>
36#include <linux/pci.h>
37#include <linux/delay.h>
38#include <linux/netdevice.h>
39#include <linux/vmalloc.h>
40
41#include "ipath_kernel.h"
Bryan O'Sullivanb1c1b6a2006-08-25 11:24:31 -070042#include "ipath_verbs.h"
Bryan O'Sullivan27b678d2006-07-01 04:36:17 -070043#include "ipath_common.h"
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -080044
45static void ipath_update_pio_bufs(struct ipath_devdata *);
46
47const char *ipath_get_unit_name(int unit)
48{
49 static char iname[16];
50 snprintf(iname, sizeof iname, "infinipath%u", unit);
51 return iname;
52}
53
Bryan O'Sullivan759d5762006-07-01 04:35:49 -070054#define DRIVER_LOAD_MSG "QLogic " IPATH_DRV_NAME " loaded: "
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -080055#define PFX IPATH_DRV_NAME ": "
56
57/*
58 * The size has to be longer than this string, so we can append
59 * board/chip information to it in the init code.
60 */
Bryan O'Sullivanb55f4f02006-08-25 11:24:33 -070061const char ib_ipath_version[] = IPATH_IDSTR "\n";
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -080062
63static struct idr unit_table;
64DEFINE_SPINLOCK(ipath_devs_lock);
65LIST_HEAD(ipath_dev_list);
66
Bryan O'Sullivan0fd41362006-08-25 11:24:34 -070067wait_queue_head_t ipath_state_wait;
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -080068
69unsigned ipath_debug = __IPATH_INFO;
70
71module_param_named(debug, ipath_debug, uint, S_IWUSR | S_IRUGO);
72MODULE_PARM_DESC(debug, "mask for debug prints");
73EXPORT_SYMBOL_GPL(ipath_debug);
74
75MODULE_LICENSE("GPL");
Bryan O'Sullivan759d5762006-07-01 04:35:49 -070076MODULE_AUTHOR("QLogic <support@pathscale.com>");
77MODULE_DESCRIPTION("QLogic InfiniPath driver");
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -080078
79const char *ipath_ibcstatus_str[] = {
80 "Disabled",
81 "LinkUp",
82 "PollActive",
83 "PollQuiet",
84 "SleepDelay",
85 "SleepQuiet",
86 "LState6", /* unused */
87 "LState7", /* unused */
88 "CfgDebounce",
89 "CfgRcvfCfg",
90 "CfgWaitRmt",
91 "CfgIdle",
92 "RecovRetrain",
93 "LState0xD", /* unused */
94 "RecovWaitRmt",
95 "RecovIdle",
96};
97
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -080098static void __devexit ipath_remove_one(struct pci_dev *);
99static int __devinit ipath_init_one(struct pci_dev *,
100 const struct pci_device_id *);
101
102/* Only needed for registration, nothing else needs this info */
103#define PCI_VENDOR_ID_PATHSCALE 0x1fc1
104#define PCI_DEVICE_ID_INFINIPATH_HT 0xd
105#define PCI_DEVICE_ID_INFINIPATH_PE800 0x10
106
Arthur Jones35884232007-07-06 12:48:53 -0700107/* Number of seconds before our card status check... */
108#define STATUS_TIMEOUT 60
109
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800110static const struct pci_device_id ipath_pci_tbl[] = {
Roland Dreier6f4bb3d2006-05-12 14:57:52 -0700111 { PCI_DEVICE(PCI_VENDOR_ID_PATHSCALE, PCI_DEVICE_ID_INFINIPATH_HT) },
112 { PCI_DEVICE(PCI_VENDOR_ID_PATHSCALE, PCI_DEVICE_ID_INFINIPATH_PE800) },
113 { 0, }
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800114};
115
116MODULE_DEVICE_TABLE(pci, ipath_pci_tbl);
117
118static struct pci_driver ipath_driver = {
119 .name = IPATH_DRV_NAME,
120 .probe = ipath_init_one,
121 .remove = __devexit_p(ipath_remove_one),
122 .id_table = ipath_pci_tbl,
123};
124
Arthur Jones35884232007-07-06 12:48:53 -0700125static void ipath_check_status(struct work_struct *work)
126{
127 struct ipath_devdata *dd = container_of(work, struct ipath_devdata,
128 status_work.work);
129
130 /*
131 * If we don't have any interrupts, let the user know and
132 * don't bother checking again.
133 */
134 if (dd->ipath_int_counter == 0)
135 dev_err(&dd->pcidev->dev, "No interrupts detected.\n");
136}
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800137
138static inline void read_bars(struct ipath_devdata *dd, struct pci_dev *dev,
139 u32 *bar0, u32 *bar1)
140{
141 int ret;
142
143 ret = pci_read_config_dword(dev, PCI_BASE_ADDRESS_0, bar0);
144 if (ret)
145 ipath_dev_err(dd, "failed to read bar0 before enable: "
146 "error %d\n", -ret);
147
148 ret = pci_read_config_dword(dev, PCI_BASE_ADDRESS_1, bar1);
149 if (ret)
150 ipath_dev_err(dd, "failed to read bar1 before enable: "
151 "error %d\n", -ret);
152
153 ipath_dbg("Read bar0 %x bar1 %x\n", *bar0, *bar1);
154}
155
156static void ipath_free_devdata(struct pci_dev *pdev,
157 struct ipath_devdata *dd)
158{
159 unsigned long flags;
160
161 pci_set_drvdata(pdev, NULL);
162
163 if (dd->ipath_unit != -1) {
164 spin_lock_irqsave(&ipath_devs_lock, flags);
165 idr_remove(&unit_table, dd->ipath_unit);
166 list_del(&dd->ipath_list);
167 spin_unlock_irqrestore(&ipath_devs_lock, flags);
168 }
Bryan O'Sullivan06993ca2006-07-01 04:36:02 -0700169 vfree(dd);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800170}
171
172static struct ipath_devdata *ipath_alloc_devdata(struct pci_dev *pdev)
173{
174 unsigned long flags;
175 struct ipath_devdata *dd;
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800176 int ret;
177
178 if (!idr_pre_get(&unit_table, GFP_KERNEL)) {
179 dd = ERR_PTR(-ENOMEM);
180 goto bail;
181 }
182
Bryan O'Sullivan06993ca2006-07-01 04:36:02 -0700183 dd = vmalloc(sizeof(*dd));
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800184 if (!dd) {
185 dd = ERR_PTR(-ENOMEM);
186 goto bail;
187 }
Bryan O'Sullivan06993ca2006-07-01 04:36:02 -0700188 memset(dd, 0, sizeof(*dd));
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800189 dd->ipath_unit = -1;
190
191 spin_lock_irqsave(&ipath_devs_lock, flags);
192
193 ret = idr_get_new(&unit_table, dd, &dd->ipath_unit);
194 if (ret < 0) {
195 printk(KERN_ERR IPATH_DRV_NAME
196 ": Could not allocate unit ID: error %d\n", -ret);
197 ipath_free_devdata(pdev, dd);
198 dd = ERR_PTR(ret);
199 goto bail_unlock;
200 }
201
202 dd->pcidev = pdev;
203 pci_set_drvdata(pdev, dd);
204
Arthur Jones35884232007-07-06 12:48:53 -0700205 INIT_DELAYED_WORK(&dd->status_work, ipath_check_status);
206
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800207 list_add(&dd->ipath_list, &ipath_dev_list);
208
209bail_unlock:
210 spin_unlock_irqrestore(&ipath_devs_lock, flags);
211
212bail:
213 return dd;
214}
215
216static inline struct ipath_devdata *__ipath_lookup(int unit)
217{
218 return idr_find(&unit_table, unit);
219}
220
221struct ipath_devdata *ipath_lookup(int unit)
222{
223 struct ipath_devdata *dd;
224 unsigned long flags;
225
226 spin_lock_irqsave(&ipath_devs_lock, flags);
227 dd = __ipath_lookup(unit);
228 spin_unlock_irqrestore(&ipath_devs_lock, flags);
229
230 return dd;
231}
232
233int ipath_count_units(int *npresentp, int *nupp, u32 *maxportsp)
234{
235 int nunits, npresent, nup;
236 struct ipath_devdata *dd;
237 unsigned long flags;
238 u32 maxports;
239
240 nunits = npresent = nup = maxports = 0;
241
242 spin_lock_irqsave(&ipath_devs_lock, flags);
243
244 list_for_each_entry(dd, &ipath_dev_list, ipath_list) {
245 nunits++;
246 if ((dd->ipath_flags & IPATH_PRESENT) && dd->ipath_kregbase)
247 npresent++;
248 if (dd->ipath_lid &&
249 !(dd->ipath_flags & (IPATH_DISABLED | IPATH_LINKDOWN
250 | IPATH_LINKUNK)))
251 nup++;
252 if (dd->ipath_cfgports > maxports)
253 maxports = dd->ipath_cfgports;
254 }
255
256 spin_unlock_irqrestore(&ipath_devs_lock, flags);
257
258 if (npresentp)
259 *npresentp = npresent;
260 if (nupp)
261 *nupp = nup;
262 if (maxportsp)
263 *maxportsp = maxports;
264
265 return nunits;
266}
267
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800268/*
269 * These next two routines are placeholders in case we don't have per-arch
270 * code for controlling write combining. If explicit control of write
271 * combining is not available, performance will probably be awful.
272 */
273
274int __attribute__((weak)) ipath_enable_wc(struct ipath_devdata *dd)
275{
276 return -EOPNOTSUPP;
277}
278
279void __attribute__((weak)) ipath_disable_wc(struct ipath_devdata *dd)
280{
281}
282
283static int __devinit ipath_init_one(struct pci_dev *pdev,
284 const struct pci_device_id *ent)
285{
286 int ret, len, j;
287 struct ipath_devdata *dd;
288 unsigned long long addr;
289 u32 bar0 = 0, bar1 = 0;
290 u8 rev;
291
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800292 dd = ipath_alloc_devdata(pdev);
293 if (IS_ERR(dd)) {
294 ret = PTR_ERR(dd);
295 printk(KERN_ERR IPATH_DRV_NAME
296 ": Could not allocate devdata: error %d\n", -ret);
Bryan O'Sullivanf37bda92006-07-01 04:36:03 -0700297 goto bail;
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800298 }
299
300 ipath_cdbg(VERBOSE, "initializing unit #%u\n", dd->ipath_unit);
301
302 read_bars(dd, pdev, &bar0, &bar1);
303
304 ret = pci_enable_device(pdev);
305 if (ret) {
306 /* This can happen iff:
307 *
308 * We did a chip reset, and then failed to reprogram the
309 * BAR, or the chip reset due to an internal error. We then
310 * unloaded the driver and reloaded it.
311 *
312 * Both reset cases set the BAR back to initial state. For
313 * the latter case, the AER sticky error bit at offset 0x718
314 * should be set, but the Linux kernel doesn't yet know
315 * about that, it appears. If the original BAR was retained
316 * in the kernel data structures, this may be OK.
317 */
318 ipath_dev_err(dd, "enable unit %d failed: error %d\n",
319 dd->ipath_unit, -ret);
320 goto bail_devdata;
321 }
322 addr = pci_resource_start(pdev, 0);
323 len = pci_resource_len(pdev, 0);
Bryan O'Sullivan51f65eb2006-11-08 17:44:58 -0800324 ipath_cdbg(VERBOSE, "regbase (0) %llx len %d pdev->irq %d, vend %x/%x "
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800325 "driver_data %lx\n", addr, len, pdev->irq, ent->vendor,
326 ent->device, ent->driver_data);
327
328 read_bars(dd, pdev, &bar0, &bar1);
329
330 if (!bar1 && !(bar0 & ~0xf)) {
331 if (addr) {
332 dev_info(&pdev->dev, "BAR is 0 (probable RESET), "
333 "rewriting as %llx\n", addr);
334 ret = pci_write_config_dword(
335 pdev, PCI_BASE_ADDRESS_0, addr);
336 if (ret) {
337 ipath_dev_err(dd, "rewrite of BAR0 "
338 "failed: err %d\n", -ret);
339 goto bail_disable;
340 }
341 ret = pci_write_config_dword(
342 pdev, PCI_BASE_ADDRESS_1, addr >> 32);
343 if (ret) {
344 ipath_dev_err(dd, "rewrite of BAR1 "
345 "failed: err %d\n", -ret);
346 goto bail_disable;
347 }
348 } else {
349 ipath_dev_err(dd, "BAR is 0 (probable RESET), "
350 "not usable until reboot\n");
351 ret = -ENODEV;
352 goto bail_disable;
353 }
354 }
355
356 ret = pci_request_regions(pdev, IPATH_DRV_NAME);
357 if (ret) {
358 dev_info(&pdev->dev, "pci_request_regions unit %u fails: "
359 "err %d\n", dd->ipath_unit, -ret);
360 goto bail_disable;
361 }
362
363 ret = pci_set_dma_mask(pdev, DMA_64BIT_MASK);
364 if (ret) {
Bryan O'Sullivan68dd43a2006-04-24 14:22:58 -0700365 /*
366 * if the 64 bit setup fails, try 32 bit. Some systems
367 * do not setup 64 bit maps on systems with 2GB or less
368 * memory installed.
369 */
370 ret = pci_set_dma_mask(pdev, DMA_32BIT_MASK);
371 if (ret) {
Bryan O'Sullivanb1d88652006-07-01 04:35:59 -0700372 dev_info(&pdev->dev,
373 "Unable to set DMA mask for unit %u: %d\n",
374 dd->ipath_unit, ret);
Bryan O'Sullivan68dd43a2006-04-24 14:22:58 -0700375 goto bail_regions;
376 }
Bryan O'Sullivanb1d88652006-07-01 04:35:59 -0700377 else {
Bryan O'Sullivan68dd43a2006-04-24 14:22:58 -0700378 ipath_dbg("No 64bit DMA mask, used 32 bit mask\n");
Bryan O'Sullivanb1d88652006-07-01 04:35:59 -0700379 ret = pci_set_consistent_dma_mask(pdev, DMA_32BIT_MASK);
380 if (ret)
381 dev_info(&pdev->dev,
382 "Unable to set DMA consistent mask "
383 "for unit %u: %d\n",
384 dd->ipath_unit, ret);
385
386 }
387 }
388 else {
389 ret = pci_set_consistent_dma_mask(pdev, DMA_64BIT_MASK);
390 if (ret)
391 dev_info(&pdev->dev,
392 "Unable to set DMA consistent mask "
393 "for unit %u: %d\n",
394 dd->ipath_unit, ret);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800395 }
396
397 pci_set_master(pdev);
398
399 /*
400 * Save BARs to rewrite after device reset. Save all 64 bits of
401 * BAR, just in case.
402 */
403 dd->ipath_pcibar0 = addr;
404 dd->ipath_pcibar1 = addr >> 32;
405 dd->ipath_deviceid = ent->device; /* save for later use */
406 dd->ipath_vendorid = ent->vendor;
407
408 /* setup the chip-specific functions, as early as possible. */
409 switch (ent->device) {
410 case PCI_DEVICE_ID_INFINIPATH_HT:
Bryan O'Sullivan820054b2007-03-15 14:45:06 -0700411#ifdef CONFIG_HT_IRQ
Bryan O'Sullivan525d0ca2006-08-25 11:24:39 -0700412 ipath_init_iba6110_funcs(dd);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800413 break;
Bryan O'Sullivan820054b2007-03-15 14:45:06 -0700414#else
415 ipath_dev_err(dd, "QLogic HT device 0x%x cannot work if "
416 "CONFIG_HT_IRQ is not enabled\n", ent->device);
417 return -ENODEV;
Bryan O'Sullivane757bef2006-11-16 01:19:19 -0800418#endif
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800419 case PCI_DEVICE_ID_INFINIPATH_PE800:
Bryan O'Sullivan820054b2007-03-15 14:45:06 -0700420#ifdef CONFIG_PCI_MSI
Bryan O'Sullivan525d0ca2006-08-25 11:24:39 -0700421 ipath_init_iba6120_funcs(dd);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800422 break;
Bryan O'Sullivan820054b2007-03-15 14:45:06 -0700423#else
424 ipath_dev_err(dd, "QLogic PCIE device 0x%x cannot work if "
425 "CONFIG_PCI_MSI is not enabled\n", ent->device);
426 return -ENODEV;
Bryan O'Sullivane757bef2006-11-16 01:19:19 -0800427#endif
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800428 default:
Bryan O'Sullivan759d5762006-07-01 04:35:49 -0700429 ipath_dev_err(dd, "Found unknown QLogic deviceid 0x%x, "
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800430 "failing\n", ent->device);
431 return -ENODEV;
432 }
433
434 for (j = 0; j < 6; j++) {
435 if (!pdev->resource[j].start)
436 continue;
Greg Kroah-Hartmane29419f2006-06-12 15:20:16 -0700437 ipath_cdbg(VERBOSE, "BAR %d start %llx, end %llx, len %llx\n",
438 j, (unsigned long long)pdev->resource[j].start,
439 (unsigned long long)pdev->resource[j].end,
440 (unsigned long long)pci_resource_len(pdev, j));
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800441 }
442
443 if (!addr) {
444 ipath_dev_err(dd, "No valid address in BAR 0!\n");
445 ret = -ENODEV;
446 goto bail_regions;
447 }
448
449 dd->ipath_deviceid = ent->device; /* save for later use */
450 dd->ipath_vendorid = ent->vendor;
451
452 ret = pci_read_config_byte(pdev, PCI_REVISION_ID, &rev);
453 if (ret) {
454 ipath_dev_err(dd, "Failed to read PCI revision ID unit "
455 "%u: err %d\n", dd->ipath_unit, -ret);
456 goto bail_regions; /* shouldn't ever happen */
457 }
458 dd->ipath_pcirev = rev;
459
Bryan O'Sullivaneb9dc6f2006-08-25 11:24:26 -0700460#if defined(__powerpc__)
461 /* There isn't a generic way to specify writethrough mappings */
462 dd->ipath_kregbase = __ioremap(addr, len,
463 (_PAGE_NO_CACHE|_PAGE_WRITETHRU));
464#else
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800465 dd->ipath_kregbase = ioremap_nocache(addr, len);
Bryan O'Sullivaneb9dc6f2006-08-25 11:24:26 -0700466#endif
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800467
468 if (!dd->ipath_kregbase) {
469 ipath_dbg("Unable to map io addr %llx to kvirt, failing\n",
470 addr);
471 ret = -ENOMEM;
472 goto bail_iounmap;
473 }
474 dd->ipath_kregend = (u64 __iomem *)
475 ((void __iomem *)dd->ipath_kregbase + len);
476 dd->ipath_physaddr = addr; /* used for io_remap, etc. */
477 /* for user mmap */
Bryan O'Sullivanb35f0042006-07-01 04:35:59 -0700478 ipath_cdbg(VERBOSE, "mapped io addr %llx to kregbase %p\n",
479 addr, dd->ipath_kregbase);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800480
481 /*
482 * clear ipath_flags here instead of in ipath_init_chip as it is set
483 * by ipath_setup_htconfig.
484 */
485 dd->ipath_flags = 0;
Bryan O'Sullivanfba75202006-07-01 04:36:09 -0700486 dd->ipath_lli_counter = 0;
487 dd->ipath_lli_errors = 0;
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800488
489 if (dd->ipath_f_bus(dd, pdev))
490 ipath_dev_err(dd, "Failed to setup config space; "
491 "continuing anyway\n");
492
493 /*
Thomas Gleixnerdace1452006-07-01 19:29:38 -0700494 * set up our interrupt handler; IRQF_SHARED probably not needed,
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800495 * since MSI interrupts shouldn't be shared but won't hurt for now.
496 * check 0 irq after we return from chip-specific bus setup, since
497 * that can affect this due to setup
498 */
Bryan O'Sullivan51f65eb2006-11-08 17:44:58 -0800499 if (!dd->ipath_irq)
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800500 ipath_dev_err(dd, "irq is 0, BIOS error? Interrupts won't "
501 "work\n");
502 else {
Bryan O'Sullivan51f65eb2006-11-08 17:44:58 -0800503 ret = request_irq(dd->ipath_irq, ipath_intr, IRQF_SHARED,
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800504 IPATH_DRV_NAME, dd);
505 if (ret) {
506 ipath_dev_err(dd, "Couldn't setup irq handler, "
Bryan O'Sullivan51f65eb2006-11-08 17:44:58 -0800507 "irq=%d: %d\n", dd->ipath_irq, ret);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800508 goto bail_iounmap;
509 }
510 }
511
512 ret = ipath_init_chip(dd, 0); /* do the chip-specific init */
513 if (ret)
Arthur Jones7b196e22007-03-15 14:45:04 -0700514 goto bail_irqsetup;
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800515
516 ret = ipath_enable_wc(dd);
517
518 if (ret) {
519 ipath_dev_err(dd, "Write combining not enabled "
520 "(err %d): performance may be poor\n",
521 -ret);
522 ret = 0;
523 }
524
525 ipath_device_create_group(&pdev->dev, dd);
526 ipathfs_add_device(dd);
527 ipath_user_add(dd);
Bryan O'Sullivana2acb2f2006-07-01 04:35:52 -0700528 ipath_diag_add(dd);
Bryan O'Sullivanb1c1b6a2006-08-25 11:24:31 -0700529 ipath_register_ib_device(dd);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800530
Arthur Jones35884232007-07-06 12:48:53 -0700531 /* Check that card status in STATUS_TIMEOUT seconds. */
532 schedule_delayed_work(&dd->status_work, HZ * STATUS_TIMEOUT);
533
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800534 goto bail;
535
Arthur Jones7b196e22007-03-15 14:45:04 -0700536bail_irqsetup:
537 if (pdev->irq) free_irq(pdev->irq, dd);
538
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800539bail_iounmap:
540 iounmap((volatile void __iomem *) dd->ipath_kregbase);
541
542bail_regions:
543 pci_release_regions(pdev);
544
545bail_disable:
546 pci_disable_device(pdev);
547
548bail_devdata:
549 ipath_free_devdata(pdev, dd);
550
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800551bail:
552 return ret;
553}
554
Bryan O'Sullivan7227aac2006-09-28 09:00:16 -0700555static void __devexit cleanup_device(struct ipath_devdata *dd)
556{
557 int port;
558
Bryan O'Sullivan7227aac2006-09-28 09:00:16 -0700559 if (*dd->ipath_statusp & IPATH_STATUS_CHIP_PRESENT) {
560 /* can't do anything more with chip; needs re-init */
561 *dd->ipath_statusp &= ~IPATH_STATUS_CHIP_PRESENT;
562 if (dd->ipath_kregbase) {
563 /*
564 * if we haven't already cleaned up before these are
565 * to ensure any register reads/writes "fail" until
566 * re-init
567 */
568 dd->ipath_kregbase = NULL;
569 dd->ipath_uregbase = 0;
570 dd->ipath_sregbase = 0;
571 dd->ipath_cregbase = 0;
572 dd->ipath_kregsize = 0;
573 }
574 ipath_disable_wc(dd);
575 }
576
577 if (dd->ipath_pioavailregs_dma) {
578 dma_free_coherent(&dd->pcidev->dev, PAGE_SIZE,
579 (void *) dd->ipath_pioavailregs_dma,
580 dd->ipath_pioavailregs_phys);
581 dd->ipath_pioavailregs_dma = NULL;
582 }
583 if (dd->ipath_dummy_hdrq) {
584 dma_free_coherent(&dd->pcidev->dev,
585 dd->ipath_pd[0]->port_rcvhdrq_size,
586 dd->ipath_dummy_hdrq, dd->ipath_dummy_hdrq_phys);
587 dd->ipath_dummy_hdrq = NULL;
588 }
589
590 if (dd->ipath_pageshadow) {
591 struct page **tmpp = dd->ipath_pageshadow;
592 dma_addr_t *tmpd = dd->ipath_physshadow;
593 int i, cnt = 0;
594
595 ipath_cdbg(VERBOSE, "Unlocking any expTID pages still "
596 "locked\n");
597 for (port = 0; port < dd->ipath_cfgports; port++) {
598 int port_tidbase = port * dd->ipath_rcvtidcnt;
599 int maxtid = port_tidbase + dd->ipath_rcvtidcnt;
600 for (i = port_tidbase; i < maxtid; i++) {
601 if (!tmpp[i])
602 continue;
603 pci_unmap_page(dd->pcidev, tmpd[i],
604 PAGE_SIZE, PCI_DMA_FROMDEVICE);
605 ipath_release_user_pages(&tmpp[i], 1);
606 tmpp[i] = NULL;
607 cnt++;
608 }
609 }
610 if (cnt) {
611 ipath_stats.sps_pageunlocks += cnt;
612 ipath_cdbg(VERBOSE, "There were still %u expTID "
613 "entries locked\n", cnt);
614 }
615 if (ipath_stats.sps_pagelocks ||
616 ipath_stats.sps_pageunlocks)
617 ipath_cdbg(VERBOSE, "%llu pages locked, %llu "
618 "unlocked via ipath_m{un}lock\n",
619 (unsigned long long)
620 ipath_stats.sps_pagelocks,
621 (unsigned long long)
622 ipath_stats.sps_pageunlocks);
623
624 ipath_cdbg(VERBOSE, "Free shadow page tid array at %p\n",
625 dd->ipath_pageshadow);
Bryan O'Sullivan9783ab42007-03-15 14:45:07 -0700626 tmpp = dd->ipath_pageshadow;
Bryan O'Sullivan7227aac2006-09-28 09:00:16 -0700627 dd->ipath_pageshadow = NULL;
Bryan O'Sullivan9783ab42007-03-15 14:45:07 -0700628 vfree(tmpp);
Bryan O'Sullivan7227aac2006-09-28 09:00:16 -0700629 }
630
631 /*
632 * free any resources still in use (usually just kernel ports)
633 * at unload; we do for portcnt, not cfgports, because cfgports
634 * could have changed while we were loaded.
635 */
636 for (port = 0; port < dd->ipath_portcnt; port++) {
637 struct ipath_portdata *pd = dd->ipath_pd[port];
638 dd->ipath_pd[port] = NULL;
639 ipath_free_pddata(dd, pd);
640 }
641 kfree(dd->ipath_pd);
642 /*
643 * debuggability, in case some cleanup path tries to use it
644 * after this
645 */
646 dd->ipath_pd = NULL;
647}
648
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800649static void __devexit ipath_remove_one(struct pci_dev *pdev)
650{
Bryan O'Sullivan7227aac2006-09-28 09:00:16 -0700651 struct ipath_devdata *dd = pci_get_drvdata(pdev);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800652
Bryan O'Sullivan7227aac2006-09-28 09:00:16 -0700653 ipath_cdbg(VERBOSE, "removing, pdev=%p, dd=%p\n", pdev, dd);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800654
Bryan O'Sullivan53c1d2c2007-03-15 14:45:11 -0700655 /*
656 * disable the IB link early, to be sure no new packets arrive, which
657 * complicates the shutdown process
658 */
659 ipath_shutdown_device(dd);
660
Arthur Jones35884232007-07-06 12:48:53 -0700661 cancel_delayed_work(&dd->status_work);
662 flush_scheduled_work();
663
Bryan O'Sullivan7227aac2006-09-28 09:00:16 -0700664 if (dd->verbs_dev)
Bryan O'Sullivanc78f6412006-09-28 09:00:01 -0700665 ipath_unregister_ib_device(dd->verbs_dev);
Bryan O'Sullivanc78f6412006-09-28 09:00:01 -0700666
Bryan O'Sullivana2acb2f2006-07-01 04:35:52 -0700667 ipath_diag_remove(dd);
668 ipath_user_remove(dd);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800669 ipathfs_remove_device(dd);
670 ipath_device_remove_group(&pdev->dev, dd);
Bryan O'Sullivan7227aac2006-09-28 09:00:16 -0700671
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800672 ipath_cdbg(VERBOSE, "Releasing pci memory regions, dd %p, "
673 "unit %u\n", dd, (u32) dd->ipath_unit);
Bryan O'Sullivan7227aac2006-09-28 09:00:16 -0700674
675 cleanup_device(dd);
676
677 /*
678 * turn off rcv, send, and interrupts for all ports, all drivers
679 * should also hard reset the chip here?
680 * free up port 0 (kernel) rcvhdr, egr bufs, and eventually tid bufs
681 * for all versions of the driver, if they were allocated
682 */
Bryan O'Sullivan51f65eb2006-11-08 17:44:58 -0800683 if (dd->ipath_irq) {
684 ipath_cdbg(VERBOSE, "unit %u free irq %d\n",
685 dd->ipath_unit, dd->ipath_irq);
686 dd->ipath_f_free_irq(dd);
Bryan O'Sullivan7227aac2006-09-28 09:00:16 -0700687 } else
688 ipath_dbg("irq is 0, not doing free_irq "
689 "for unit %u\n", dd->ipath_unit);
690 /*
691 * we check for NULL here, because it's outside
692 * the kregbase check, and we need to call it
693 * after the free_irq. Thus it's possible that
694 * the function pointers were never initialized.
695 */
696 if (dd->ipath_f_cleanup)
697 /* clean up chip-specific stuff */
698 dd->ipath_f_cleanup(dd);
699
700 ipath_cdbg(VERBOSE, "Unmapping kregbase %p\n", dd->ipath_kregbase);
701 iounmap((volatile void __iomem *) dd->ipath_kregbase);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800702 pci_release_regions(pdev);
703 ipath_cdbg(VERBOSE, "calling pci_disable_device\n");
704 pci_disable_device(pdev);
705
706 ipath_free_devdata(pdev, dd);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800707}
708
709/* general driver use */
710DEFINE_MUTEX(ipath_mutex);
711
712static DEFINE_SPINLOCK(ipath_pioavail_lock);
713
714/**
715 * ipath_disarm_piobufs - cancel a range of PIO buffers
716 * @dd: the infinipath device
717 * @first: the first PIO buffer to cancel
718 * @cnt: the number of PIO buffers to cancel
719 *
720 * cancel a range of PIO buffers, used when they might be armed, but
721 * not triggered. Used at init to ensure buffer state, and also user
722 * process close, in case it died while writing to a PIO buffer
723 * Also after errors.
724 */
725void ipath_disarm_piobufs(struct ipath_devdata *dd, unsigned first,
726 unsigned cnt)
727{
728 unsigned i, last = first + cnt;
729 u64 sendctrl, sendorig;
730
731 ipath_cdbg(PKT, "disarm %u PIObufs first=%u\n", cnt, first);
Dave Olson93800682007-06-18 14:24:41 -0700732 sendorig = dd->ipath_sendctrl;
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800733 for (i = first; i < last; i++) {
Dave Olson93800682007-06-18 14:24:41 -0700734 sendctrl = sendorig | INFINIPATH_S_DISARM |
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800735 (i << INFINIPATH_S_DISARMPIOBUF_SHIFT);
736 ipath_write_kreg(dd, dd->ipath_kregs->kr_sendctrl,
737 sendctrl);
738 }
739
740 /*
741 * Write it again with current value, in case ipath_sendctrl changed
742 * while we were looping; no critical bits that would require
743 * locking.
744 *
Dave Olson93800682007-06-18 14:24:41 -0700745 * disable PIOAVAILUPD, then re-enable, reading scratch in
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800746 * between. This seems to avoid a chip timing race that causes
747 * pioavail updates to memory to stop.
748 */
749 ipath_write_kreg(dd, dd->ipath_kregs->kr_sendctrl,
Dave Olson93800682007-06-18 14:24:41 -0700750 sendorig & ~IPATH_S_PIOBUFAVAILUPD);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800751 sendorig = ipath_read_kreg64(dd, dd->ipath_kregs->kr_scratch);
752 ipath_write_kreg(dd, dd->ipath_kregs->kr_sendctrl,
753 dd->ipath_sendctrl);
754}
755
756/**
757 * ipath_wait_linkstate - wait for an IB link state change to occur
758 * @dd: the infinipath device
759 * @state: the state to wait for
760 * @msecs: the number of milliseconds to wait
761 *
762 * wait up to msecs milliseconds for IB link state change to occur for
763 * now, take the easy polling route. Currently used only by
Bryan O'Sullivan34b2aaf2006-08-25 11:24:32 -0700764 * ipath_set_linkstate. Returns 0 if state reached, otherwise
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800765 * -ETIMEDOUT state can have multiple states set, for any of several
766 * transitions.
767 */
Bryan O'Sullivan34b2aaf2006-08-25 11:24:32 -0700768static int ipath_wait_linkstate(struct ipath_devdata *dd, u32 state,
769 int msecs)
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800770{
Bryan O'Sullivan0fd41362006-08-25 11:24:34 -0700771 dd->ipath_state_wanted = state;
772 wait_event_interruptible_timeout(ipath_state_wait,
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800773 (dd->ipath_flags & state),
774 msecs_to_jiffies(msecs));
Bryan O'Sullivan0fd41362006-08-25 11:24:34 -0700775 dd->ipath_state_wanted = 0;
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800776
777 if (!(dd->ipath_flags & state)) {
778 u64 val;
Bryan O'Sullivan0fd41362006-08-25 11:24:34 -0700779 ipath_cdbg(VERBOSE, "Didn't reach linkstate %s within %u"
780 " ms\n",
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800781 /* test INIT ahead of DOWN, both can be set */
782 (state & IPATH_LINKINIT) ? "INIT" :
783 ((state & IPATH_LINKDOWN) ? "DOWN" :
784 ((state & IPATH_LINKARMED) ? "ARM" : "ACTIVE")),
785 msecs);
786 val = ipath_read_kreg64(dd, dd->ipath_kregs->kr_ibcstatus);
787 ipath_cdbg(VERBOSE, "ibcc=%llx ibcstatus=%llx (%s)\n",
788 (unsigned long long) ipath_read_kreg64(
789 dd, dd->ipath_kregs->kr_ibcctrl),
790 (unsigned long long) val,
791 ipath_ibcstatus_str[val & 0xf]);
792 }
793 return (dd->ipath_flags & state) ? 0 : -ETIMEDOUT;
794}
795
Bryan O'Sullivan8ec10772007-03-15 14:44:55 -0700796/*
797 * Decode the error status into strings, deciding whether to always
798 * print * it or not depending on "normal packet errors" vs everything
799 * else. Return 1 if "real" errors, otherwise 0 if only packet
800 * errors, so caller can decide what to print with the string.
801 */
802int ipath_decode_err(char *buf, size_t blen, ipath_err_t err)
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800803{
Bryan O'Sullivan8ec10772007-03-15 14:44:55 -0700804 int iserr = 1;
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800805 *buf = '\0';
Bryan O'Sullivan8ec10772007-03-15 14:44:55 -0700806 if (err & INFINIPATH_E_PKTERRS) {
807 if (!(err & ~INFINIPATH_E_PKTERRS))
808 iserr = 0; // if only packet errors.
809 if (ipath_debug & __IPATH_ERRPKTDBG) {
810 if (err & INFINIPATH_E_REBP)
811 strlcat(buf, "EBP ", blen);
812 if (err & INFINIPATH_E_RVCRC)
813 strlcat(buf, "VCRC ", blen);
814 if (err & INFINIPATH_E_RICRC) {
815 strlcat(buf, "CRC ", blen);
816 // clear for check below, so only once
817 err &= INFINIPATH_E_RICRC;
818 }
819 if (err & INFINIPATH_E_RSHORTPKTLEN)
820 strlcat(buf, "rshortpktlen ", blen);
821 if (err & INFINIPATH_E_SDROPPEDDATAPKT)
822 strlcat(buf, "sdroppeddatapkt ", blen);
823 if (err & INFINIPATH_E_SPKTLEN)
824 strlcat(buf, "spktlen ", blen);
825 }
826 if ((err & INFINIPATH_E_RICRC) &&
827 !(err&(INFINIPATH_E_RVCRC|INFINIPATH_E_REBP)))
828 strlcat(buf, "CRC ", blen);
829 if (!iserr)
830 goto done;
831 }
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800832 if (err & INFINIPATH_E_RHDRLEN)
833 strlcat(buf, "rhdrlen ", blen);
834 if (err & INFINIPATH_E_RBADTID)
835 strlcat(buf, "rbadtid ", blen);
836 if (err & INFINIPATH_E_RBADVERSION)
837 strlcat(buf, "rbadversion ", blen);
838 if (err & INFINIPATH_E_RHDR)
839 strlcat(buf, "rhdr ", blen);
840 if (err & INFINIPATH_E_RLONGPKTLEN)
841 strlcat(buf, "rlongpktlen ", blen);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800842 if (err & INFINIPATH_E_RMAXPKTLEN)
843 strlcat(buf, "rmaxpktlen ", blen);
844 if (err & INFINIPATH_E_RMINPKTLEN)
845 strlcat(buf, "rminpktlen ", blen);
Bryan O'Sullivan8ec10772007-03-15 14:44:55 -0700846 if (err & INFINIPATH_E_SMINPKTLEN)
847 strlcat(buf, "sminpktlen ", blen);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800848 if (err & INFINIPATH_E_RFORMATERR)
849 strlcat(buf, "rformaterr ", blen);
850 if (err & INFINIPATH_E_RUNSUPVL)
851 strlcat(buf, "runsupvl ", blen);
852 if (err & INFINIPATH_E_RUNEXPCHAR)
853 strlcat(buf, "runexpchar ", blen);
854 if (err & INFINIPATH_E_RIBFLOW)
855 strlcat(buf, "ribflow ", blen);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800856 if (err & INFINIPATH_E_SUNDERRUN)
857 strlcat(buf, "sunderrun ", blen);
858 if (err & INFINIPATH_E_SPIOARMLAUNCH)
859 strlcat(buf, "spioarmlaunch ", blen);
860 if (err & INFINIPATH_E_SUNEXPERRPKTNUM)
861 strlcat(buf, "sunexperrpktnum ", blen);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800862 if (err & INFINIPATH_E_SDROPPEDSMPPKT)
863 strlcat(buf, "sdroppedsmppkt ", blen);
864 if (err & INFINIPATH_E_SMAXPKTLEN)
865 strlcat(buf, "smaxpktlen ", blen);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800866 if (err & INFINIPATH_E_SUNSUPVL)
867 strlcat(buf, "sunsupVL ", blen);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800868 if (err & INFINIPATH_E_INVALIDADDR)
869 strlcat(buf, "invalidaddr ", blen);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800870 if (err & INFINIPATH_E_RRCVEGRFULL)
871 strlcat(buf, "rcvegrfull ", blen);
872 if (err & INFINIPATH_E_RRCVHDRFULL)
873 strlcat(buf, "rcvhdrfull ", blen);
874 if (err & INFINIPATH_E_IBSTATUSCHANGED)
875 strlcat(buf, "ibcstatuschg ", blen);
876 if (err & INFINIPATH_E_RIBLOSTLINK)
877 strlcat(buf, "riblostlink ", blen);
878 if (err & INFINIPATH_E_HARDWARE)
879 strlcat(buf, "hardware ", blen);
880 if (err & INFINIPATH_E_RESET)
881 strlcat(buf, "reset ", blen);
Bryan O'Sullivan8ec10772007-03-15 14:44:55 -0700882done:
883 return iserr;
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800884}
885
886/**
887 * get_rhf_errstring - decode RHF errors
888 * @err: the err number
889 * @msg: the output buffer
890 * @len: the length of the output buffer
891 *
892 * only used one place now, may want more later
893 */
894static void get_rhf_errstring(u32 err, char *msg, size_t len)
895{
896 /* if no errors, and so don't need to check what's first */
897 *msg = '\0';
898
899 if (err & INFINIPATH_RHF_H_ICRCERR)
900 strlcat(msg, "icrcerr ", len);
901 if (err & INFINIPATH_RHF_H_VCRCERR)
902 strlcat(msg, "vcrcerr ", len);
903 if (err & INFINIPATH_RHF_H_PARITYERR)
904 strlcat(msg, "parityerr ", len);
905 if (err & INFINIPATH_RHF_H_LENERR)
906 strlcat(msg, "lenerr ", len);
907 if (err & INFINIPATH_RHF_H_MTUERR)
908 strlcat(msg, "mtuerr ", len);
909 if (err & INFINIPATH_RHF_H_IHDRERR)
910 /* infinipath hdr checksum error */
911 strlcat(msg, "ipathhdrerr ", len);
912 if (err & INFINIPATH_RHF_H_TIDERR)
913 strlcat(msg, "tiderr ", len);
914 if (err & INFINIPATH_RHF_H_MKERR)
915 /* bad port, offset, etc. */
916 strlcat(msg, "invalid ipathhdr ", len);
917 if (err & INFINIPATH_RHF_H_IBERR)
918 strlcat(msg, "iberr ", len);
919 if (err & INFINIPATH_RHF_L_SWA)
920 strlcat(msg, "swA ", len);
921 if (err & INFINIPATH_RHF_L_SWB)
922 strlcat(msg, "swB ", len);
923}
924
925/**
926 * ipath_get_egrbuf - get an eager buffer
927 * @dd: the infinipath device
928 * @bufnum: the eager buffer to get
929 * @err: unused
930 *
931 * must only be called if ipath_pd[port] is known to be allocated
932 */
933static inline void *ipath_get_egrbuf(struct ipath_devdata *dd, u32 bufnum,
934 int err)
935{
Bryan O'Sullivan1fd3b402006-09-28 09:00:13 -0700936 return dd->ipath_port0_skbinfo ?
937 (void *) dd->ipath_port0_skbinfo[bufnum].skb->data : NULL;
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800938}
939
940/**
941 * ipath_alloc_skb - allocate an skb and buffer with possible constraints
942 * @dd: the infinipath device
943 * @gfp_mask: the sk_buff SFP mask
944 */
945struct sk_buff *ipath_alloc_skb(struct ipath_devdata *dd,
946 gfp_t gfp_mask)
947{
948 struct sk_buff *skb;
949 u32 len;
950
951 /*
952 * Only fully supported way to handle this is to allocate lots
953 * extra, align as needed, and then do skb_reserve(). That wastes
954 * a lot of memory... I'll have to hack this into infinipath_copy
955 * also.
956 */
957
958 /*
Bryan O'Sullivan1fd3b402006-09-28 09:00:13 -0700959 * We need 2 extra bytes for ipath_ether data sent in the
960 * key header. In order to keep everything dword aligned,
961 * we'll reserve 4 bytes.
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800962 */
Bryan O'Sullivan1fd3b402006-09-28 09:00:13 -0700963 len = dd->ipath_ibmaxlen + 4;
964
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800965 if (dd->ipath_flags & IPATH_4BYTE_TID) {
Bryan O'Sullivan1fd3b402006-09-28 09:00:13 -0700966 /* We need a 2KB multiple alignment, and there is no way
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800967 * to do it except to allocate extra and then skb_reserve
968 * enough to bring it up to the right alignment.
969 */
Bryan O'Sullivan1fd3b402006-09-28 09:00:13 -0700970 len += 2047;
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800971 }
Bryan O'Sullivan1fd3b402006-09-28 09:00:13 -0700972
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800973 skb = __dev_alloc_skb(len, gfp_mask);
974 if (!skb) {
975 ipath_dev_err(dd, "Failed to allocate skbuff, length %u\n",
976 len);
977 goto bail;
978 }
Bryan O'Sullivan1fd3b402006-09-28 09:00:13 -0700979
980 skb_reserve(skb, 4);
981
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800982 if (dd->ipath_flags & IPATH_4BYTE_TID) {
Bryan O'Sullivan1fd3b402006-09-28 09:00:13 -0700983 u32 una = (unsigned long)skb->data & 2047;
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800984 if (una)
Bryan O'Sullivan1fd3b402006-09-28 09:00:13 -0700985 skb_reserve(skb, 2048 - una);
986 }
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -0800987
988bail:
989 return skb;
990}
991
Ralph Campbell3d37b9e2006-07-17 18:18:36 -0700992static void ipath_rcv_hdrerr(struct ipath_devdata *dd,
993 u32 eflags,
994 u32 l,
995 u32 etail,
996 u64 *rc)
997{
998 char emsg[128];
999 struct ipath_message_header *hdr;
1000
1001 get_rhf_errstring(eflags, emsg, sizeof emsg);
1002 hdr = (struct ipath_message_header *)&rc[1];
1003 ipath_cdbg(PKT, "RHFerrs %x hdrqtail=%x typ=%u "
1004 "tlen=%x opcode=%x egridx=%x: %s\n",
1005 eflags, l,
1006 ipath_hdrget_rcv_type((__le32 *) rc),
1007 ipath_hdrget_length_in_bytes((__le32 *) rc),
1008 be32_to_cpu(hdr->bth[0]) >> 24,
1009 etail, emsg);
1010
1011 /* Count local link integrity errors. */
1012 if (eflags & (INFINIPATH_RHF_H_ICRCERR | INFINIPATH_RHF_H_VCRCERR)) {
1013 u8 n = (dd->ipath_ibcctrl >>
1014 INFINIPATH_IBCC_PHYERRTHRESHOLD_SHIFT) &
1015 INFINIPATH_IBCC_PHYERRTHRESHOLD_MASK;
1016
1017 if (++dd->ipath_lli_counter > n) {
1018 dd->ipath_lli_counter = 0;
1019 dd->ipath_lli_errors++;
1020 }
1021 }
1022}
1023
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001024/*
1025 * ipath_kreceive - receive a packet
1026 * @dd: the infinipath device
1027 *
1028 * called from interrupt handler for errors or receive interrupt
1029 */
1030void ipath_kreceive(struct ipath_devdata *dd)
1031{
1032 u64 *rc;
1033 void *ebuf;
1034 const u32 rsize = dd->ipath_rcvhdrentsize; /* words */
1035 const u32 maxcnt = dd->ipath_rcvhdrcnt * rsize; /* words */
1036 u32 etail = -1, l, hdrqtail;
Bryan O'Sullivan27b678d2006-07-01 04:36:17 -07001037 struct ipath_message_header *hdr;
Bryan O'Sullivan57abad22006-07-01 04:36:05 -07001038 u32 eflags, i, etype, tlen, pkttot = 0, updegr=0, reloop=0;
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001039 static u64 totcalls; /* stats, may eventually remove */
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001040
1041 if (!dd->ipath_hdrqtailptr) {
1042 ipath_dev_err(dd,
1043 "hdrqtailptr not set, can't do receives\n");
1044 goto bail;
1045 }
1046
Bryan O'Sullivanf5f99922006-07-01 04:36:05 -07001047 l = dd->ipath_port0head;
Bryan O'Sullivan57abad22006-07-01 04:36:05 -07001048 hdrqtail = (u32) le64_to_cpu(*dd->ipath_hdrqtailptr);
1049 if (l == hdrqtail)
Ralph Campbell9ca48652007-07-06 12:48:48 -07001050 goto bail;
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001051
Bryan O'Sullivan57abad22006-07-01 04:36:05 -07001052reloop:
Bryan O'Sullivanf5f99922006-07-01 04:36:05 -07001053 for (i = 0; l != hdrqtail; i++) {
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001054 u32 qp;
1055 u8 *bthbytes;
1056
1057 rc = (u64 *) (dd->ipath_pd[0]->port_rcvhdrq + (l << 2));
Bryan O'Sullivan27b678d2006-07-01 04:36:17 -07001058 hdr = (struct ipath_message_header *)&rc[1];
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001059 /*
1060 * could make a network order version of IPATH_KD_QP, and
1061 * do the obvious shift before masking to speed this up.
1062 */
1063 qp = ntohl(hdr->bth[1]) & 0xffffff;
1064 bthbytes = (u8 *) hdr->bth;
1065
Bryan O'Sullivan27b678d2006-07-01 04:36:17 -07001066 eflags = ipath_hdrget_err_flags((__le32 *) rc);
1067 etype = ipath_hdrget_rcv_type((__le32 *) rc);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001068 /* total length */
Bryan O'Sullivan27b678d2006-07-01 04:36:17 -07001069 tlen = ipath_hdrget_length_in_bytes((__le32 *) rc);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001070 ebuf = NULL;
1071 if (etype != RCVHQ_RCV_TYPE_EXPECTED) {
1072 /*
1073 * it turns out that the chips uses an eager buffer
1074 * for all non-expected packets, whether it "needs"
1075 * one or not. So always get the index, but don't
1076 * set ebuf (so we try to copy data) unless the
1077 * length requires it.
1078 */
Bryan O'Sullivan27b678d2006-07-01 04:36:17 -07001079 etail = ipath_hdrget_index((__le32 *) rc);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001080 if (tlen > sizeof(*hdr) ||
1081 etype == RCVHQ_RCV_TYPE_NON_KD)
1082 ebuf = ipath_get_egrbuf(dd, etail, 0);
1083 }
1084
1085 /*
1086 * both tiderr and ipathhdrerr are set for all plain IB
1087 * packets; only ipathhdrerr should be set.
1088 */
1089
1090 if (etype != RCVHQ_RCV_TYPE_NON_KD && etype !=
Bryan O'Sullivan27b678d2006-07-01 04:36:17 -07001091 RCVHQ_RCV_TYPE_ERROR && ipath_hdrget_ipath_ver(
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001092 hdr->iph.ver_port_tid_offset) !=
1093 IPS_PROTO_VERSION) {
1094 ipath_cdbg(PKT, "Bad InfiniPath protocol version "
1095 "%x\n", etype);
1096 }
1097
Ralph Campbell3d37b9e2006-07-17 18:18:36 -07001098 if (unlikely(eflags))
1099 ipath_rcv_hdrerr(dd, eflags, l, etail, rc);
1100 else if (etype == RCVHQ_RCV_TYPE_NON_KD) {
Bryan O'Sullivan34b2aaf2006-08-25 11:24:32 -07001101 ipath_ib_rcv(dd->verbs_dev, rc + 1, ebuf, tlen);
1102 if (dd->ipath_lli_counter)
1103 dd->ipath_lli_counter--;
1104 ipath_cdbg(PKT, "typ %x, opcode %x (eager, "
1105 "qp=%x), len %x; ignored\n",
1106 etype, bthbytes[0], qp, tlen);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001107 }
Bryan O'Sullivan34b2aaf2006-08-25 11:24:32 -07001108 else if (etype == RCVHQ_RCV_TYPE_EAGER)
1109 ipath_cdbg(PKT, "typ %x, opcode %x (eager, "
1110 "qp=%x), len %x; ignored\n",
1111 etype, bthbytes[0], qp, tlen);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001112 else if (etype == RCVHQ_RCV_TYPE_EXPECTED)
1113 ipath_dbg("Bug: Expected TID, opcode %x; ignored\n",
1114 be32_to_cpu(hdr->bth[0]) & 0xff);
Ralph Campbell3d37b9e2006-07-17 18:18:36 -07001115 else {
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001116 /*
1117 * error packet, type of error unknown.
1118 * Probably type 3, but we don't know, so don't
1119 * even try to print the opcode, etc.
1120 */
1121 ipath_dbg("Error Pkt, but no eflags! egrbuf %x, "
1122 "len %x\nhdrq@%lx;hdrq+%x rhf: %llx; "
1123 "hdr %llx %llx %llx %llx %llx\n",
1124 etail, tlen, (unsigned long) rc, l,
1125 (unsigned long long) rc[0],
1126 (unsigned long long) rc[1],
1127 (unsigned long long) rc[2],
1128 (unsigned long long) rc[3],
1129 (unsigned long long) rc[4],
1130 (unsigned long long) rc[5]);
1131 }
1132 l += rsize;
1133 if (l >= maxcnt)
1134 l = 0;
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001135 if (etype != RCVHQ_RCV_TYPE_EXPECTED)
Bryan O'Sullivanf5f99922006-07-01 04:36:05 -07001136 updegr = 1;
1137 /*
1138 * update head regs on last packet, and every 16 packets.
1139 * Reduce bus traffic, while still trying to prevent
1140 * rcvhdrq overflows, for when the queue is nearly full
1141 */
1142 if (l == hdrqtail || (i && !(i&0xf))) {
1143 u64 lval;
Bryan O'Sullivan525d0ca2006-08-25 11:24:39 -07001144 if (l == hdrqtail)
1145 /* request IBA6120 interrupt only on last */
Bryan O'Sullivanf5f99922006-07-01 04:36:05 -07001146 lval = dd->ipath_rhdrhead_intr_off | l;
1147 else
1148 lval = l;
1149 (void)ipath_write_ureg(dd, ur_rcvhdrhead, lval, 0);
1150 if (updegr) {
1151 (void)ipath_write_ureg(dd, ur_rcvegrindexhead,
1152 etail, 0);
1153 updegr = 0;
1154 }
1155 }
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001156 }
1157
Bryan O'Sullivan57abad22006-07-01 04:36:05 -07001158 if (!dd->ipath_rhdrhead_intr_off && !reloop) {
Bryan O'Sullivan525d0ca2006-08-25 11:24:39 -07001159 /* IBA6110 workaround; we can have a race clearing chip
Bryan O'Sullivan57abad22006-07-01 04:36:05 -07001160 * interrupt with another interrupt about to be delivered,
1161 * and can clear it before it is delivered on the GPIO
1162 * workaround. By doing the extra check here for the
1163 * in-memory tail register updating while we were doing
1164 * earlier packets, we "almost" guarantee we have covered
1165 * that case.
1166 */
1167 u32 hqtail = (u32)le64_to_cpu(*dd->ipath_hdrqtailptr);
1168 if (hqtail != hdrqtail) {
1169 hdrqtail = hqtail;
1170 reloop = 1; /* loop 1 extra time at most */
1171 goto reloop;
1172 }
1173 }
1174
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001175 pkttot += i;
1176
1177 dd->ipath_port0head = l;
1178
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001179 if (pkttot > ipath_stats.sps_maxpkts_call)
1180 ipath_stats.sps_maxpkts_call = pkttot;
1181 ipath_stats.sps_port0pkts += pkttot;
1182 ipath_stats.sps_avgpkts_call =
1183 ipath_stats.sps_port0pkts / ++totcalls;
1184
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001185bail:;
1186}
1187
1188/**
1189 * ipath_update_pio_bufs - update shadow copy of the PIO availability map
1190 * @dd: the infinipath device
1191 *
1192 * called whenever our local copy indicates we have run out of send buffers
1193 * NOTE: This can be called from interrupt context by some code
1194 * and from non-interrupt context by ipath_getpiobuf().
1195 */
1196
1197static void ipath_update_pio_bufs(struct ipath_devdata *dd)
1198{
1199 unsigned long flags;
1200 int i;
1201 const unsigned piobregs = (unsigned)dd->ipath_pioavregs;
1202
1203 /* If the generation (check) bits have changed, then we update the
1204 * busy bit for the corresponding PIO buffer. This algorithm will
1205 * modify positions to the value they already have in some cases
1206 * (i.e., no change), but it's faster than changing only the bits
1207 * that have changed.
1208 *
1209 * We would like to do this atomicly, to avoid spinlocks in the
1210 * critical send path, but that's not really possible, given the
1211 * type of changes, and that this routine could be called on
1212 * multiple cpu's simultaneously, so we lock in this routine only,
1213 * to avoid conflicting updates; all we change is the shadow, and
1214 * it's a single 64 bit memory location, so by definition the update
1215 * is atomic in terms of what other cpu's can see in testing the
1216 * bits. The spin_lock overhead isn't too bad, since it only
1217 * happens when all buffers are in use, so only cpu overhead, not
1218 * latency or bandwidth is affected.
1219 */
1220#define _IPATH_ALL_CHECKBITS 0x5555555555555555ULL
1221 if (!dd->ipath_pioavailregs_dma) {
1222 ipath_dbg("Update shadow pioavail, but regs_dma NULL!\n");
1223 return;
1224 }
1225 if (ipath_debug & __IPATH_VERBDBG) {
1226 /* only if packet debug and verbose */
1227 volatile __le64 *dma = dd->ipath_pioavailregs_dma;
1228 unsigned long *shadow = dd->ipath_pioavailshadow;
1229
1230 ipath_cdbg(PKT, "Refill avail, dma0=%llx shad0=%lx, "
1231 "d1=%llx s1=%lx, d2=%llx s2=%lx, d3=%llx "
1232 "s3=%lx\n",
1233 (unsigned long long) le64_to_cpu(dma[0]),
1234 shadow[0],
1235 (unsigned long long) le64_to_cpu(dma[1]),
1236 shadow[1],
1237 (unsigned long long) le64_to_cpu(dma[2]),
1238 shadow[2],
1239 (unsigned long long) le64_to_cpu(dma[3]),
1240 shadow[3]);
1241 if (piobregs > 4)
1242 ipath_cdbg(
1243 PKT, "2nd group, dma4=%llx shad4=%lx, "
1244 "d5=%llx s5=%lx, d6=%llx s6=%lx, "
1245 "d7=%llx s7=%lx\n",
1246 (unsigned long long) le64_to_cpu(dma[4]),
1247 shadow[4],
1248 (unsigned long long) le64_to_cpu(dma[5]),
1249 shadow[5],
1250 (unsigned long long) le64_to_cpu(dma[6]),
1251 shadow[6],
1252 (unsigned long long) le64_to_cpu(dma[7]),
1253 shadow[7]);
1254 }
1255 spin_lock_irqsave(&ipath_pioavail_lock, flags);
1256 for (i = 0; i < piobregs; i++) {
1257 u64 pchbusy, pchg, piov, pnew;
1258 /*
1259 * Chip Errata: bug 6641; even and odd qwords>3 are swapped
1260 */
1261 if (i > 3) {
1262 if (i & 1)
1263 piov = le64_to_cpu(
1264 dd->ipath_pioavailregs_dma[i - 1]);
1265 else
1266 piov = le64_to_cpu(
1267 dd->ipath_pioavailregs_dma[i + 1]);
1268 } else
1269 piov = le64_to_cpu(dd->ipath_pioavailregs_dma[i]);
1270 pchg = _IPATH_ALL_CHECKBITS &
1271 ~(dd->ipath_pioavailshadow[i] ^ piov);
1272 pchbusy = pchg << INFINIPATH_SENDPIOAVAIL_BUSY_SHIFT;
1273 if (pchg && (pchbusy & dd->ipath_pioavailshadow[i])) {
1274 pnew = dd->ipath_pioavailshadow[i] & ~pchbusy;
1275 pnew |= piov & pchbusy;
1276 dd->ipath_pioavailshadow[i] = pnew;
1277 }
1278 }
1279 spin_unlock_irqrestore(&ipath_pioavail_lock, flags);
1280}
1281
1282/**
1283 * ipath_setrcvhdrsize - set the receive header size
1284 * @dd: the infinipath device
1285 * @rhdrsize: the receive header size
1286 *
1287 * called from user init code, and also layered driver init
1288 */
1289int ipath_setrcvhdrsize(struct ipath_devdata *dd, unsigned rhdrsize)
1290{
1291 int ret = 0;
1292
1293 if (dd->ipath_flags & IPATH_RCVHDRSZ_SET) {
1294 if (dd->ipath_rcvhdrsize != rhdrsize) {
1295 dev_info(&dd->pcidev->dev,
1296 "Error: can't set protocol header "
1297 "size %u, already %u\n",
1298 rhdrsize, dd->ipath_rcvhdrsize);
1299 ret = -EAGAIN;
1300 } else
1301 ipath_cdbg(VERBOSE, "Reuse same protocol header "
1302 "size %u\n", dd->ipath_rcvhdrsize);
1303 } else if (rhdrsize > (dd->ipath_rcvhdrentsize -
1304 (sizeof(u64) / sizeof(u32)))) {
1305 ipath_dbg("Error: can't set protocol header size %u "
1306 "(> max %u)\n", rhdrsize,
1307 dd->ipath_rcvhdrentsize -
1308 (u32) (sizeof(u64) / sizeof(u32)));
1309 ret = -EOVERFLOW;
1310 } else {
1311 dd->ipath_flags |= IPATH_RCVHDRSZ_SET;
1312 dd->ipath_rcvhdrsize = rhdrsize;
1313 ipath_write_kreg(dd, dd->ipath_kregs->kr_rcvhdrsize,
1314 dd->ipath_rcvhdrsize);
1315 ipath_cdbg(VERBOSE, "Set protocol header size to %u\n",
1316 dd->ipath_rcvhdrsize);
1317 }
1318 return ret;
1319}
1320
1321/**
1322 * ipath_getpiobuf - find an available pio buffer
1323 * @dd: the infinipath device
1324 * @pbufnum: the buffer number is placed here
1325 *
1326 * do appropriate marking as busy, etc.
1327 * returns buffer number if one found (>=0), negative number is error.
Bryan O'Sullivan0fd41362006-08-25 11:24:34 -07001328 * Used by ipath_layer_send
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001329 */
1330u32 __iomem *ipath_getpiobuf(struct ipath_devdata *dd, u32 * pbufnum)
1331{
1332 int i, j, starti, updated = 0;
1333 unsigned piobcnt, iter;
1334 unsigned long flags;
1335 unsigned long *shadow = dd->ipath_pioavailshadow;
1336 u32 __iomem *buf;
1337
1338 piobcnt = (unsigned)(dd->ipath_piobcnt2k
1339 + dd->ipath_piobcnt4k);
1340 starti = dd->ipath_lastport_piobuf;
1341 iter = piobcnt - starti;
1342 if (dd->ipath_upd_pio_shadow) {
1343 /*
1344 * Minor optimization. If we had no buffers on last call,
1345 * start out by doing the update; continue and do scan even
1346 * if no buffers were updated, to be paranoid
1347 */
1348 ipath_update_pio_bufs(dd);
1349 /* we scanned here, don't do it at end of scan */
1350 updated = 1;
1351 i = starti;
1352 } else
1353 i = dd->ipath_lastpioindex;
1354
1355rescan:
1356 /*
1357 * while test_and_set_bit() is atomic, we do that and then the
1358 * change_bit(), and the pair is not. See if this is the cause
1359 * of the remaining armlaunch errors.
1360 */
1361 spin_lock_irqsave(&ipath_pioavail_lock, flags);
1362 for (j = 0; j < iter; j++, i++) {
1363 if (i >= piobcnt)
1364 i = starti;
1365 /*
1366 * To avoid bus lock overhead, we first find a candidate
1367 * buffer, then do the test and set, and continue if that
1368 * fails.
1369 */
1370 if (test_bit((2 * i) + 1, shadow) ||
1371 test_and_set_bit((2 * i) + 1, shadow))
1372 continue;
1373 /* flip generation bit */
1374 change_bit(2 * i, shadow);
1375 break;
1376 }
1377 spin_unlock_irqrestore(&ipath_pioavail_lock, flags);
1378
1379 if (j == iter) {
1380 volatile __le64 *dma = dd->ipath_pioavailregs_dma;
1381
1382 /*
1383 * first time through; shadow exhausted, but may be real
1384 * buffers available, so go see; if any updated, rescan
1385 * (once)
1386 */
1387 if (!updated) {
1388 ipath_update_pio_bufs(dd);
1389 updated = 1;
1390 i = starti;
1391 goto rescan;
1392 }
1393 dd->ipath_upd_pio_shadow = 1;
1394 /*
1395 * not atomic, but if we lose one once in a while, that's OK
1396 */
1397 ipath_stats.sps_nopiobufs++;
1398 if (!(++dd->ipath_consec_nopiobuf % 100000)) {
1399 ipath_dbg(
1400 "%u pio sends with no bufavail; dmacopy: "
1401 "%llx %llx %llx %llx; shadow: "
1402 "%lx %lx %lx %lx\n",
1403 dd->ipath_consec_nopiobuf,
1404 (unsigned long long) le64_to_cpu(dma[0]),
1405 (unsigned long long) le64_to_cpu(dma[1]),
1406 (unsigned long long) le64_to_cpu(dma[2]),
1407 (unsigned long long) le64_to_cpu(dma[3]),
1408 shadow[0], shadow[1], shadow[2],
1409 shadow[3]);
1410 /*
1411 * 4 buffers per byte, 4 registers above, cover rest
1412 * below
1413 */
1414 if ((dd->ipath_piobcnt2k + dd->ipath_piobcnt4k) >
1415 (sizeof(shadow[0]) * 4 * 4))
1416 ipath_dbg("2nd group: dmacopy: %llx %llx "
1417 "%llx %llx; shadow: %lx %lx "
1418 "%lx %lx\n",
1419 (unsigned long long)
1420 le64_to_cpu(dma[4]),
1421 (unsigned long long)
1422 le64_to_cpu(dma[5]),
1423 (unsigned long long)
1424 le64_to_cpu(dma[6]),
1425 (unsigned long long)
1426 le64_to_cpu(dma[7]),
1427 shadow[4], shadow[5],
1428 shadow[6], shadow[7]);
1429 }
1430 buf = NULL;
1431 goto bail;
1432 }
1433
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001434 /*
1435 * set next starting place. Since it's just an optimization,
1436 * it doesn't matter who wins on this, so no locking
1437 */
1438 dd->ipath_lastpioindex = i + 1;
1439 if (dd->ipath_upd_pio_shadow)
1440 dd->ipath_upd_pio_shadow = 0;
1441 if (dd->ipath_consec_nopiobuf)
1442 dd->ipath_consec_nopiobuf = 0;
1443 if (i < dd->ipath_piobcnt2k)
1444 buf = (u32 __iomem *) (dd->ipath_pio2kbase +
1445 i * dd->ipath_palign);
1446 else
1447 buf = (u32 __iomem *)
1448 (dd->ipath_pio4kbase +
1449 (i - dd->ipath_piobcnt2k) * dd->ipath_4kalign);
1450 ipath_cdbg(VERBOSE, "Return piobuf%u %uk @ %p\n",
1451 i, (i < dd->ipath_piobcnt2k) ? 2 : 4, buf);
1452 if (pbufnum)
1453 *pbufnum = i;
1454
1455bail:
1456 return buf;
1457}
1458
1459/**
1460 * ipath_create_rcvhdrq - create a receive header queue
1461 * @dd: the infinipath device
1462 * @pd: the port data
1463 *
Bryan O'Sullivanf37bda92006-07-01 04:36:03 -07001464 * this must be contiguous memory (from an i/o perspective), and must be
1465 * DMA'able (which means for some systems, it will go through an IOMMU,
1466 * or be forced into a low address range).
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001467 */
1468int ipath_create_rcvhdrq(struct ipath_devdata *dd,
1469 struct ipath_portdata *pd)
1470{
Bryan O'Sullivanf37bda92006-07-01 04:36:03 -07001471 int ret = 0;
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001472
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001473 if (!pd->port_rcvhdrq) {
Bryan O'Sullivanf37bda92006-07-01 04:36:03 -07001474 dma_addr_t phys_hdrqtail;
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001475 gfp_t gfp_flags = GFP_USER | __GFP_COMP;
Bryan O'Sullivanf37bda92006-07-01 04:36:03 -07001476 int amt = ALIGN(dd->ipath_rcvhdrcnt * dd->ipath_rcvhdrentsize *
1477 sizeof(u32), PAGE_SIZE);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001478
1479 pd->port_rcvhdrq = dma_alloc_coherent(
1480 &dd->pcidev->dev, amt, &pd->port_rcvhdrq_phys,
1481 gfp_flags);
1482
1483 if (!pd->port_rcvhdrq) {
1484 ipath_dev_err(dd, "attempt to allocate %d bytes "
1485 "for port %u rcvhdrq failed\n",
1486 amt, pd->port_port);
1487 ret = -ENOMEM;
1488 goto bail;
1489 }
Bryan O'Sullivanf37bda92006-07-01 04:36:03 -07001490 pd->port_rcvhdrtail_kvaddr = dma_alloc_coherent(
1491 &dd->pcidev->dev, PAGE_SIZE, &phys_hdrqtail, GFP_KERNEL);
1492 if (!pd->port_rcvhdrtail_kvaddr) {
1493 ipath_dev_err(dd, "attempt to allocate 1 page "
1494 "for port %u rcvhdrqtailaddr failed\n",
1495 pd->port_port);
1496 ret = -ENOMEM;
Bryan O'Sullivan221e3192006-09-28 08:59:58 -07001497 dma_free_coherent(&dd->pcidev->dev, amt,
1498 pd->port_rcvhdrq, pd->port_rcvhdrq_phys);
1499 pd->port_rcvhdrq = NULL;
Bryan O'Sullivanf37bda92006-07-01 04:36:03 -07001500 goto bail;
1501 }
1502 pd->port_rcvhdrqtailaddr_phys = phys_hdrqtail;
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001503
1504 pd->port_rcvhdrq_size = amt;
1505
1506 ipath_cdbg(VERBOSE, "%d pages at %p (phys %lx) size=%lu "
1507 "for port %u rcvhdr Q\n",
1508 amt >> PAGE_SHIFT, pd->port_rcvhdrq,
1509 (unsigned long) pd->port_rcvhdrq_phys,
1510 (unsigned long) pd->port_rcvhdrq_size,
1511 pd->port_port);
Bryan O'Sullivanf37bda92006-07-01 04:36:03 -07001512
1513 ipath_cdbg(VERBOSE, "port %d hdrtailaddr, %llx physical\n",
1514 pd->port_port,
1515 (unsigned long long) phys_hdrqtail);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001516 }
Bryan O'Sullivanf37bda92006-07-01 04:36:03 -07001517 else
1518 ipath_cdbg(VERBOSE, "reuse port %d rcvhdrq @%p %llx phys; "
1519 "hdrtailaddr@%p %llx physical\n",
1520 pd->port_port, pd->port_rcvhdrq,
Bryan O'Sullivan1fd3b402006-09-28 09:00:13 -07001521 (unsigned long long) pd->port_rcvhdrq_phys,
1522 pd->port_rcvhdrtail_kvaddr, (unsigned long long)
1523 pd->port_rcvhdrqtailaddr_phys);
Bryan O'Sullivanf37bda92006-07-01 04:36:03 -07001524
1525 /* clear for security and sanity on each use */
1526 memset(pd->port_rcvhdrq, 0, pd->port_rcvhdrq_size);
Bryan O'Sullivan076fafc2006-09-28 09:00:12 -07001527 memset(pd->port_rcvhdrtail_kvaddr, 0, PAGE_SIZE);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001528
1529 /*
1530 * tell chip each time we init it, even if we are re-using previous
Bryan O'Sullivanf37bda92006-07-01 04:36:03 -07001531 * memory (we zero the register at process close)
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001532 */
Bryan O'Sullivanf37bda92006-07-01 04:36:03 -07001533 ipath_write_kreg_port(dd, dd->ipath_kregs->kr_rcvhdrtailaddr,
1534 pd->port_port, pd->port_rcvhdrqtailaddr_phys);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001535 ipath_write_kreg_port(dd, dd->ipath_kregs->kr_rcvhdraddr,
1536 pd->port_port, pd->port_rcvhdrq_phys);
1537
1538 ret = 0;
1539bail:
1540 return ret;
1541}
1542
1543int ipath_waitfor_complete(struct ipath_devdata *dd, ipath_kreg reg_id,
1544 u64 bits_to_wait_for, u64 * valp)
1545{
1546 unsigned long timeout;
1547 u64 lastval, val;
1548 int ret;
1549
1550 lastval = ipath_read_kreg64(dd, reg_id);
1551 /* wait a ridiculously long time */
1552 timeout = jiffies + msecs_to_jiffies(5);
1553 do {
1554 val = ipath_read_kreg64(dd, reg_id);
1555 /* set so they have something, even on failures. */
1556 *valp = val;
1557 if ((val & bits_to_wait_for) == bits_to_wait_for) {
1558 ret = 0;
1559 break;
1560 }
1561 if (val != lastval)
1562 ipath_cdbg(VERBOSE, "Changed from %llx to %llx, "
1563 "waiting for %llx bits\n",
1564 (unsigned long long) lastval,
1565 (unsigned long long) val,
1566 (unsigned long long) bits_to_wait_for);
1567 cond_resched();
1568 if (time_after(jiffies, timeout)) {
1569 ipath_dbg("Didn't get bits %llx in register 0x%x, "
1570 "got %llx\n",
1571 (unsigned long long) bits_to_wait_for,
1572 reg_id, (unsigned long long) *valp);
1573 ret = -ENODEV;
1574 break;
1575 }
1576 } while (1);
1577
1578 return ret;
1579}
1580
1581/**
1582 * ipath_waitfor_mdio_cmdready - wait for last command to complete
1583 * @dd: the infinipath device
1584 *
1585 * Like ipath_waitfor_complete(), but we wait for the CMDVALID bit to go
1586 * away indicating the last command has completed. It doesn't return data
1587 */
1588int ipath_waitfor_mdio_cmdready(struct ipath_devdata *dd)
1589{
1590 unsigned long timeout;
1591 u64 val;
1592 int ret;
1593
1594 /* wait a ridiculously long time */
1595 timeout = jiffies + msecs_to_jiffies(5);
1596 do {
1597 val = ipath_read_kreg64(dd, dd->ipath_kregs->kr_mdio);
1598 if (!(val & IPATH_MDIO_CMDVALID)) {
1599 ret = 0;
1600 break;
1601 }
1602 cond_resched();
1603 if (time_after(jiffies, timeout)) {
1604 ipath_dbg("CMDVALID stuck in mdio reg? (%llx)\n",
1605 (unsigned long long) val);
1606 ret = -ENODEV;
1607 break;
1608 }
1609 } while (1);
1610
1611 return ret;
1612}
1613
Dave Olson93800682007-06-18 14:24:41 -07001614
1615/*
1616 * Flush all sends that might be in the ready to send state, as well as any
1617 * that are in the process of being sent. Used whenever we need to be
1618 * sure the send side is idle. Cleans up all buffer state by canceling
1619 * all pio buffers, and issuing an abort, which cleans up anything in the
1620 * launch fifo. The cancel is superfluous on some chip versions, but
1621 * it's safer to always do it.
1622 * PIOAvail bits are updated by the chip as if normal send had happened.
1623 */
1624void ipath_cancel_sends(struct ipath_devdata *dd)
1625{
1626 ipath_dbg("Cancelling all in-progress send buffers\n");
1627 dd->ipath_lastcancel = jiffies+HZ/2; /* skip armlaunch errs a bit */
1628 /*
1629 * the abort bit is auto-clearing. We read scratch to be sure
1630 * that cancels and the abort have taken effect in the chip.
1631 */
1632 ipath_write_kreg(dd, dd->ipath_kregs->kr_sendctrl,
1633 INFINIPATH_S_ABORT);
1634 ipath_read_kreg64(dd, dd->ipath_kregs->kr_scratch);
1635 ipath_disarm_piobufs(dd, 0,
1636 (unsigned)(dd->ipath_piobcnt2k + dd->ipath_piobcnt4k));
1637
1638 /* and again, be sure all have hit the chip */
1639 ipath_read_kreg64(dd, dd->ipath_kregs->kr_scratch);
1640}
1641
1642
Bryan O'Sullivan34b2aaf2006-08-25 11:24:32 -07001643static void ipath_set_ib_lstate(struct ipath_devdata *dd, int which)
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001644{
1645 static const char *what[4] = {
1646 [0] = "DOWN",
1647 [INFINIPATH_IBCC_LINKCMD_INIT] = "INIT",
1648 [INFINIPATH_IBCC_LINKCMD_ARMED] = "ARMED",
1649 [INFINIPATH_IBCC_LINKCMD_ACTIVE] = "ACTIVE"
1650 };
Bryan O'Sullivanf37bda92006-07-01 04:36:03 -07001651 int linkcmd = (which >> INFINIPATH_IBCC_LINKCMD_SHIFT) &
1652 INFINIPATH_IBCC_LINKCMD_MASK;
1653
Bryan O'Sullivan0fd41362006-08-25 11:24:34 -07001654 ipath_cdbg(VERBOSE, "Trying to move unit %u to %s, current ltstate "
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001655 "is %s\n", dd->ipath_unit,
Bryan O'Sullivanf37bda92006-07-01 04:36:03 -07001656 what[linkcmd],
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001657 ipath_ibcstatus_str[
1658 (ipath_read_kreg64
1659 (dd, dd->ipath_kregs->kr_ibcstatus) >>
1660 INFINIPATH_IBCS_LINKTRAININGSTATE_SHIFT) &
1661 INFINIPATH_IBCS_LINKTRAININGSTATE_MASK]);
Bryan O'Sullivanf37bda92006-07-01 04:36:03 -07001662 /* flush all queued sends when going to DOWN or INIT, to be sure that
Bryan O'Sullivan0fd41362006-08-25 11:24:34 -07001663 * they don't block MAD packets */
Dave Olson93800682007-06-18 14:24:41 -07001664 if (!linkcmd || linkcmd == INFINIPATH_IBCC_LINKCMD_INIT)
1665 ipath_cancel_sends(dd);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001666
1667 ipath_write_kreg(dd, dd->ipath_kregs->kr_ibcctrl,
1668 dd->ipath_ibcctrl | which);
1669}
1670
Bryan O'Sullivan34b2aaf2006-08-25 11:24:32 -07001671int ipath_set_linkstate(struct ipath_devdata *dd, u8 newstate)
1672{
1673 u32 lstate;
1674 int ret;
1675
1676 switch (newstate) {
1677 case IPATH_IB_LINKDOWN:
1678 ipath_set_ib_lstate(dd, INFINIPATH_IBCC_LINKINITCMD_POLL <<
1679 INFINIPATH_IBCC_LINKINITCMD_SHIFT);
1680 /* don't wait */
1681 ret = 0;
1682 goto bail;
1683
1684 case IPATH_IB_LINKDOWN_SLEEP:
1685 ipath_set_ib_lstate(dd, INFINIPATH_IBCC_LINKINITCMD_SLEEP <<
1686 INFINIPATH_IBCC_LINKINITCMD_SHIFT);
1687 /* don't wait */
1688 ret = 0;
1689 goto bail;
1690
1691 case IPATH_IB_LINKDOWN_DISABLE:
1692 ipath_set_ib_lstate(dd,
1693 INFINIPATH_IBCC_LINKINITCMD_DISABLE <<
1694 INFINIPATH_IBCC_LINKINITCMD_SHIFT);
1695 /* don't wait */
1696 ret = 0;
1697 goto bail;
1698
1699 case IPATH_IB_LINKINIT:
1700 if (dd->ipath_flags & IPATH_LINKINIT) {
1701 ret = 0;
1702 goto bail;
1703 }
1704 ipath_set_ib_lstate(dd, INFINIPATH_IBCC_LINKCMD_INIT <<
1705 INFINIPATH_IBCC_LINKCMD_SHIFT);
1706 lstate = IPATH_LINKINIT;
1707 break;
1708
1709 case IPATH_IB_LINKARM:
1710 if (dd->ipath_flags & IPATH_LINKARMED) {
1711 ret = 0;
1712 goto bail;
1713 }
1714 if (!(dd->ipath_flags &
1715 (IPATH_LINKINIT | IPATH_LINKACTIVE))) {
1716 ret = -EINVAL;
1717 goto bail;
1718 }
1719 ipath_set_ib_lstate(dd, INFINIPATH_IBCC_LINKCMD_ARMED <<
1720 INFINIPATH_IBCC_LINKCMD_SHIFT);
1721 /*
1722 * Since the port can transition to ACTIVE by receiving
1723 * a non VL 15 packet, wait for either state.
1724 */
1725 lstate = IPATH_LINKARMED | IPATH_LINKACTIVE;
1726 break;
1727
1728 case IPATH_IB_LINKACTIVE:
1729 if (dd->ipath_flags & IPATH_LINKACTIVE) {
1730 ret = 0;
1731 goto bail;
1732 }
1733 if (!(dd->ipath_flags & IPATH_LINKARMED)) {
1734 ret = -EINVAL;
1735 goto bail;
1736 }
1737 ipath_set_ib_lstate(dd, INFINIPATH_IBCC_LINKCMD_ACTIVE <<
1738 INFINIPATH_IBCC_LINKCMD_SHIFT);
1739 lstate = IPATH_LINKACTIVE;
1740 break;
1741
Bryan O'Sullivan946db672007-03-15 14:44:45 -07001742 case IPATH_IB_LINK_LOOPBACK:
1743 dev_info(&dd->pcidev->dev, "Enabling IB local loopback\n");
1744 dd->ipath_ibcctrl |= INFINIPATH_IBCC_LOOPBACK;
1745 ipath_write_kreg(dd, dd->ipath_kregs->kr_ibcctrl,
1746 dd->ipath_ibcctrl);
1747 ret = 0;
1748 goto bail; // no state change to wait for
1749
1750 case IPATH_IB_LINK_EXTERNAL:
1751 dev_info(&dd->pcidev->dev, "Disabling IB local loopback (normal)\n");
1752 dd->ipath_ibcctrl &= ~INFINIPATH_IBCC_LOOPBACK;
1753 ipath_write_kreg(dd, dd->ipath_kregs->kr_ibcctrl,
1754 dd->ipath_ibcctrl);
1755 ret = 0;
1756 goto bail; // no state change to wait for
1757
Bryan O'Sullivan34b2aaf2006-08-25 11:24:32 -07001758 default:
1759 ipath_dbg("Invalid linkstate 0x%x requested\n", newstate);
1760 ret = -EINVAL;
1761 goto bail;
1762 }
1763 ret = ipath_wait_linkstate(dd, lstate, 2000);
1764
1765bail:
1766 return ret;
1767}
1768
1769/**
1770 * ipath_set_mtu - set the MTU
1771 * @dd: the infinipath device
1772 * @arg: the new MTU
1773 *
1774 * we can handle "any" incoming size, the issue here is whether we
1775 * need to restrict our outgoing size. For now, we don't do any
1776 * sanity checking on this, and we don't deal with what happens to
1777 * programs that are already running when the size changes.
1778 * NOTE: changing the MTU will usually cause the IBC to go back to
1779 * link initialize (IPATH_IBSTATE_INIT) state...
1780 */
1781int ipath_set_mtu(struct ipath_devdata *dd, u16 arg)
1782{
1783 u32 piosize;
1784 int changed = 0;
1785 int ret;
1786
1787 /*
1788 * mtu is IB data payload max. It's the largest power of 2 less
1789 * than piosize (or even larger, since it only really controls the
1790 * largest we can receive; we can send the max of the mtu and
1791 * piosize). We check that it's one of the valid IB sizes.
1792 */
1793 if (arg != 256 && arg != 512 && arg != 1024 && arg != 2048 &&
1794 arg != 4096) {
1795 ipath_dbg("Trying to set invalid mtu %u, failing\n", arg);
1796 ret = -EINVAL;
1797 goto bail;
1798 }
1799 if (dd->ipath_ibmtu == arg) {
1800 ret = 0; /* same as current */
1801 goto bail;
1802 }
1803
1804 piosize = dd->ipath_ibmaxlen;
1805 dd->ipath_ibmtu = arg;
1806
1807 if (arg >= (piosize - IPATH_PIO_MAXIBHDR)) {
1808 /* Only if it's not the initial value (or reset to it) */
1809 if (piosize != dd->ipath_init_ibmaxlen) {
1810 dd->ipath_ibmaxlen = piosize;
1811 changed = 1;
1812 }
1813 } else if ((arg + IPATH_PIO_MAXIBHDR) != dd->ipath_ibmaxlen) {
1814 piosize = arg + IPATH_PIO_MAXIBHDR;
1815 ipath_cdbg(VERBOSE, "ibmaxlen was 0x%x, setting to 0x%x "
1816 "(mtu 0x%x)\n", dd->ipath_ibmaxlen, piosize,
1817 arg);
1818 dd->ipath_ibmaxlen = piosize;
1819 changed = 1;
1820 }
1821
1822 if (changed) {
1823 /*
1824 * set the IBC maxpktlength to the size of our pio
1825 * buffers in words
1826 */
1827 u64 ibc = dd->ipath_ibcctrl;
1828 ibc &= ~(INFINIPATH_IBCC_MAXPKTLEN_MASK <<
1829 INFINIPATH_IBCC_MAXPKTLEN_SHIFT);
1830
1831 piosize = piosize - 2 * sizeof(u32); /* ignore pbc */
1832 dd->ipath_ibmaxlen = piosize;
1833 piosize /= sizeof(u32); /* in words */
1834 /*
1835 * for ICRC, which we only send in diag test pkt mode, and
1836 * we don't need to worry about that for mtu
1837 */
1838 piosize += 1;
1839
1840 ibc |= piosize << INFINIPATH_IBCC_MAXPKTLEN_SHIFT;
1841 dd->ipath_ibcctrl = ibc;
1842 ipath_write_kreg(dd, dd->ipath_kregs->kr_ibcctrl,
1843 dd->ipath_ibcctrl);
1844 dd->ipath_f_tidtemplate(dd);
1845 }
1846
1847 ret = 0;
1848
1849bail:
1850 return ret;
1851}
1852
1853int ipath_set_lid(struct ipath_devdata *dd, u32 arg, u8 lmc)
1854{
1855 dd->ipath_lid = arg;
1856 dd->ipath_lmc = lmc;
1857
1858 return 0;
1859}
1860
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001861
1862/**
1863 * ipath_write_kreg_port - write a device's per-port 64-bit kernel register
1864 * @dd: the infinipath device
1865 * @regno: the register number to write
1866 * @port: the port containing the register
1867 * @value: the value to write
1868 *
1869 * Registers that vary with the chip implementation constants (port)
1870 * use this routine.
1871 */
1872void ipath_write_kreg_port(const struct ipath_devdata *dd, ipath_kreg regno,
1873 unsigned port, u64 value)
1874{
1875 u16 where;
1876
1877 if (port < dd->ipath_portcnt &&
1878 (regno == dd->ipath_kregs->kr_rcvhdraddr ||
1879 regno == dd->ipath_kregs->kr_rcvhdrtailaddr))
1880 where = regno + port;
1881 else
1882 where = -1;
1883
1884 ipath_write_kreg(dd, where, value);
1885}
1886
Michael Albaugh82466f02007-05-16 15:45:09 -07001887/*
1888 * Following deal with the "obviously simple" task of overriding the state
1889 * of the LEDS, which normally indicate link physical and logical status.
1890 * The complications arise in dealing with different hardware mappings
1891 * and the board-dependent routine being called from interrupts.
1892 * and then there's the requirement to _flash_ them.
1893 */
1894#define LED_OVER_FREQ_SHIFT 8
1895#define LED_OVER_FREQ_MASK (0xFF<<LED_OVER_FREQ_SHIFT)
1896/* Below is "non-zero" to force override, but both actual LEDs are off */
1897#define LED_OVER_BOTH_OFF (8)
1898
1899void ipath_run_led_override(unsigned long opaque)
1900{
1901 struct ipath_devdata *dd = (struct ipath_devdata *)opaque;
1902 int timeoff;
1903 int pidx;
1904 u64 lstate, ltstate, val;
1905
1906 if (!(dd->ipath_flags & IPATH_INITTED))
1907 return;
1908
1909 pidx = dd->ipath_led_override_phase++ & 1;
1910 dd->ipath_led_override = dd->ipath_led_override_vals[pidx];
1911 timeoff = dd->ipath_led_override_timeoff;
1912
1913 /*
1914 * below potentially restores the LED values per current status,
1915 * should also possibly setup the traffic-blink register,
1916 * but leave that to per-chip functions.
1917 */
1918 val = ipath_read_kreg64(dd, dd->ipath_kregs->kr_ibcstatus);
1919 ltstate = (val >> INFINIPATH_IBCS_LINKTRAININGSTATE_SHIFT) &
1920 INFINIPATH_IBCS_LINKTRAININGSTATE_MASK;
1921 lstate = (val >> INFINIPATH_IBCS_LINKSTATE_SHIFT) &
1922 INFINIPATH_IBCS_LINKSTATE_MASK;
1923
1924 dd->ipath_f_setextled(dd, lstate, ltstate);
1925 mod_timer(&dd->ipath_led_override_timer, jiffies + timeoff);
1926}
1927
1928void ipath_set_led_override(struct ipath_devdata *dd, unsigned int val)
1929{
1930 int timeoff, freq;
1931
1932 if (!(dd->ipath_flags & IPATH_INITTED))
1933 return;
1934
1935 /* First check if we are blinking. If not, use 1HZ polling */
1936 timeoff = HZ;
1937 freq = (val & LED_OVER_FREQ_MASK) >> LED_OVER_FREQ_SHIFT;
1938
1939 if (freq) {
1940 /* For blink, set each phase from one nybble of val */
1941 dd->ipath_led_override_vals[0] = val & 0xF;
1942 dd->ipath_led_override_vals[1] = (val >> 4) & 0xF;
1943 timeoff = (HZ << 4)/freq;
1944 } else {
1945 /* Non-blink set both phases the same. */
1946 dd->ipath_led_override_vals[0] = val & 0xF;
1947 dd->ipath_led_override_vals[1] = val & 0xF;
1948 }
1949 dd->ipath_led_override_timeoff = timeoff;
1950
1951 /*
1952 * If the timer has not already been started, do so. Use a "quick"
1953 * timeout so the function will be called soon, to look at our request.
1954 */
1955 if (atomic_inc_return(&dd->ipath_led_override_timer_active) == 1) {
1956 /* Need to start timer */
1957 init_timer(&dd->ipath_led_override_timer);
1958 dd->ipath_led_override_timer.function =
1959 ipath_run_led_override;
1960 dd->ipath_led_override_timer.data = (unsigned long) dd;
1961 dd->ipath_led_override_timer.expires = jiffies + 1;
1962 add_timer(&dd->ipath_led_override_timer);
1963 } else {
1964 atomic_dec(&dd->ipath_led_override_timer_active);
1965 }
1966}
1967
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001968/**
1969 * ipath_shutdown_device - shut down a device
1970 * @dd: the infinipath device
1971 *
1972 * This is called to make the device quiet when we are about to
1973 * unload the driver, and also when the device is administratively
1974 * disabled. It does not free any data structures.
1975 * Everything it does has to be setup again by ipath_init_chip(dd,1)
1976 */
1977void ipath_shutdown_device(struct ipath_devdata *dd)
1978{
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08001979 ipath_dbg("Shutting down the device\n");
1980
1981 dd->ipath_flags |= IPATH_LINKUNK;
1982 dd->ipath_flags &= ~(IPATH_INITTED | IPATH_LINKDOWN |
1983 IPATH_LINKINIT | IPATH_LINKARMED |
1984 IPATH_LINKACTIVE);
1985 *dd->ipath_statusp &= ~(IPATH_STATUS_IB_CONF |
1986 IPATH_STATUS_IB_READY);
1987
1988 /* mask interrupts, but not errors */
1989 ipath_write_kreg(dd, dd->ipath_kregs->kr_intmask, 0ULL);
1990
1991 dd->ipath_rcvctrl = 0;
1992 ipath_write_kreg(dd, dd->ipath_kregs->kr_rcvctrl,
1993 dd->ipath_rcvctrl);
1994
1995 /*
1996 * gracefully stop all sends allowing any in progress to trickle out
1997 * first.
1998 */
1999 ipath_write_kreg(dd, dd->ipath_kregs->kr_sendctrl, 0ULL);
2000 /* flush it */
Roland Dreier44f8e3f2006-12-12 11:50:20 -08002001 ipath_read_kreg64(dd, dd->ipath_kregs->kr_scratch);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08002002 /*
2003 * enough for anything that's going to trickle out to have actually
2004 * done so.
2005 */
2006 udelay(5);
2007
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08002008 ipath_set_ib_lstate(dd, INFINIPATH_IBCC_LINKINITCMD_DISABLE <<
2009 INFINIPATH_IBCC_LINKINITCMD_SHIFT);
Dave Olson93800682007-06-18 14:24:41 -07002010 ipath_cancel_sends(dd);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08002011
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08002012 /* disable IBC */
2013 dd->ipath_control &= ~INFINIPATH_C_LINKENABLE;
2014 ipath_write_kreg(dd, dd->ipath_kregs->kr_control,
Bryan O'Sullivana40f55f2006-07-01 04:36:00 -07002015 dd->ipath_control | INFINIPATH_C_FREEZEMODE);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08002016
2017 /*
2018 * clear SerdesEnable and turn the leds off; do this here because
2019 * we are unloading, so don't count on interrupts to move along
2020 * Turn the LEDs off explictly for the same reason.
2021 */
2022 dd->ipath_f_quiet_serdes(dd);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08002023
2024 if (dd->ipath_stats_timer_active) {
2025 del_timer_sync(&dd->ipath_stats_timer);
2026 dd->ipath_stats_timer_active = 0;
2027 }
2028
2029 /*
2030 * clear all interrupts and errors, so that the next time the driver
2031 * is loaded or device is enabled, we know that whatever is set
2032 * happened while we were unloaded
2033 */
2034 ipath_write_kreg(dd, dd->ipath_kregs->kr_hwerrclear,
2035 ~0ULL & ~INFINIPATH_HWE_MEMBISTFAILED);
2036 ipath_write_kreg(dd, dd->ipath_kregs->kr_errorclear, -1LL);
2037 ipath_write_kreg(dd, dd->ipath_kregs->kr_intclear, -1LL);
Michael Albaughaecd3b52007-05-17 07:26:28 -07002038
2039 ipath_cdbg(VERBOSE, "Flush time and errors to EEPROM\n");
2040 ipath_update_eeprom_log(dd);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08002041}
2042
2043/**
2044 * ipath_free_pddata - free a port's allocated data
2045 * @dd: the infinipath device
Bryan O'Sullivanf37bda92006-07-01 04:36:03 -07002046 * @pd: the portdata structure
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08002047 *
Bryan O'Sullivanf37bda92006-07-01 04:36:03 -07002048 * free up any allocated data for a port
2049 * This should not touch anything that would affect a simultaneous
2050 * re-allocation of port data, because it is called after ipath_mutex
2051 * is released (and can be called from reinit as well).
2052 * It should never change any chip state, or global driver state.
2053 * (The only exception to global state is freeing the port0 port0_skbs.)
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08002054 */
Bryan O'Sullivanf37bda92006-07-01 04:36:03 -07002055void ipath_free_pddata(struct ipath_devdata *dd, struct ipath_portdata *pd)
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08002056{
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08002057 if (!pd)
2058 return;
Bryan O'Sullivanf37bda92006-07-01 04:36:03 -07002059
2060 if (pd->port_rcvhdrq) {
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08002061 ipath_cdbg(VERBOSE, "free closed port %d rcvhdrq @ %p "
2062 "(size=%lu)\n", pd->port_port, pd->port_rcvhdrq,
2063 (unsigned long) pd->port_rcvhdrq_size);
2064 dma_free_coherent(&dd->pcidev->dev, pd->port_rcvhdrq_size,
2065 pd->port_rcvhdrq, pd->port_rcvhdrq_phys);
2066 pd->port_rcvhdrq = NULL;
Bryan O'Sullivanf37bda92006-07-01 04:36:03 -07002067 if (pd->port_rcvhdrtail_kvaddr) {
2068 dma_free_coherent(&dd->pcidev->dev, PAGE_SIZE,
Bryan O'Sullivan076fafc2006-09-28 09:00:12 -07002069 pd->port_rcvhdrtail_kvaddr,
Bryan O'Sullivanf37bda92006-07-01 04:36:03 -07002070 pd->port_rcvhdrqtailaddr_phys);
2071 pd->port_rcvhdrtail_kvaddr = NULL;
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08002072 }
Bryan O'Sullivanf37bda92006-07-01 04:36:03 -07002073 }
2074 if (pd->port_port && pd->port_rcvegrbuf) {
2075 unsigned e;
2076
2077 for (e = 0; e < pd->port_rcvegrbuf_chunks; e++) {
2078 void *base = pd->port_rcvegrbuf[e];
2079 size_t size = pd->port_rcvegrbuf_size;
2080
2081 ipath_cdbg(VERBOSE, "egrbuf free(%p, %lu), "
2082 "chunk %u/%u\n", base,
2083 (unsigned long) size,
2084 e, pd->port_rcvegrbuf_chunks);
2085 dma_free_coherent(&dd->pcidev->dev, size,
2086 base, pd->port_rcvegrbuf_phys[e]);
2087 }
Bryan O'Sullivan9929b0f2006-09-28 08:59:59 -07002088 kfree(pd->port_rcvegrbuf);
Bryan O'Sullivanf37bda92006-07-01 04:36:03 -07002089 pd->port_rcvegrbuf = NULL;
Bryan O'Sullivan9929b0f2006-09-28 08:59:59 -07002090 kfree(pd->port_rcvegrbuf_phys);
Bryan O'Sullivanf37bda92006-07-01 04:36:03 -07002091 pd->port_rcvegrbuf_phys = NULL;
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08002092 pd->port_rcvegrbuf_chunks = 0;
Bryan O'Sullivan1fd3b402006-09-28 09:00:13 -07002093 } else if (pd->port_port == 0 && dd->ipath_port0_skbinfo) {
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08002094 unsigned e;
Bryan O'Sullivan1fd3b402006-09-28 09:00:13 -07002095 struct ipath_skbinfo *skbinfo = dd->ipath_port0_skbinfo;
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08002096
Bryan O'Sullivan1fd3b402006-09-28 09:00:13 -07002097 dd->ipath_port0_skbinfo = NULL;
2098 ipath_cdbg(VERBOSE, "free closed port %d "
2099 "ipath_port0_skbinfo @ %p\n", pd->port_port,
2100 skbinfo);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08002101 for (e = 0; e < dd->ipath_rcvegrcnt; e++)
Bryan O'Sullivan1fd3b402006-09-28 09:00:13 -07002102 if (skbinfo[e].skb) {
2103 pci_unmap_single(dd->pcidev, skbinfo[e].phys,
2104 dd->ipath_ibmaxlen,
2105 PCI_DMA_FROMDEVICE);
2106 dev_kfree_skb(skbinfo[e].skb);
2107 }
2108 vfree(skbinfo);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08002109 }
Bryan O'Sullivanf37bda92006-07-01 04:36:03 -07002110 kfree(pd->port_tid_pg_list);
Bryan O'Sullivan9929b0f2006-09-28 08:59:59 -07002111 vfree(pd->subport_uregbase);
2112 vfree(pd->subport_rcvegrbuf);
2113 vfree(pd->subport_rcvhdr_base);
Bryan O'Sullivanf37bda92006-07-01 04:36:03 -07002114 kfree(pd);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08002115}
2116
Roland Dreierac2ae4c2006-04-19 11:40:12 -07002117static int __init infinipath_init(void)
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08002118{
2119 int ret;
2120
Bryan O'Sullivan39c0d0b2007-03-15 14:44:52 -07002121 if (ipath_debug & __IPATH_DBG)
2122 printk(KERN_INFO DRIVER_LOAD_MSG "%s", ib_ipath_version);
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08002123
2124 /*
2125 * These must be called before the driver is registered with
2126 * the PCI subsystem.
2127 */
2128 idr_init(&unit_table);
2129 if (!idr_pre_get(&unit_table, GFP_KERNEL)) {
2130 ret = -ENOMEM;
2131 goto bail;
2132 }
2133
2134 ret = pci_register_driver(&ipath_driver);
2135 if (ret < 0) {
2136 printk(KERN_ERR IPATH_DRV_NAME
2137 ": Unable to register driver: error %d\n", -ret);
2138 goto bail_unit;
2139 }
2140
2141 ret = ipath_driver_create_group(&ipath_driver.driver);
2142 if (ret < 0) {
2143 printk(KERN_ERR IPATH_DRV_NAME ": Unable to create driver "
2144 "sysfs entries: error %d\n", -ret);
2145 goto bail_pci;
2146 }
2147
2148 ret = ipath_init_ipathfs();
2149 if (ret < 0) {
2150 printk(KERN_ERR IPATH_DRV_NAME ": Unable to create "
2151 "ipathfs: error %d\n", -ret);
2152 goto bail_group;
2153 }
2154
2155 goto bail;
2156
2157bail_group:
2158 ipath_driver_remove_group(&ipath_driver.driver);
2159
2160bail_pci:
2161 pci_unregister_driver(&ipath_driver);
2162
2163bail_unit:
2164 idr_destroy(&unit_table);
2165
2166bail:
2167 return ret;
2168}
2169
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08002170static void __exit infinipath_cleanup(void)
2171{
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08002172 ipath_exit_ipathfs();
2173
2174 ipath_driver_remove_group(&ipath_driver.driver);
2175
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08002176 ipath_cdbg(VERBOSE, "Unregistering pci driver\n");
2177 pci_unregister_driver(&ipath_driver);
2178
2179 idr_destroy(&unit_table);
2180}
2181
2182/**
2183 * ipath_reset_device - reset the chip if possible
2184 * @unit: the device to reset
2185 *
2186 * Whether or not reset is successful, we attempt to re-initialize the chip
2187 * (that is, much like a driver unload/reload). We clear the INITTED flag
2188 * so that the various entry points will fail until we reinitialize. For
2189 * now, we only allow this if no user ports are open that use chip resources
2190 */
2191int ipath_reset_device(int unit)
2192{
2193 int ret, i;
2194 struct ipath_devdata *dd = ipath_lookup(unit);
2195
2196 if (!dd) {
2197 ret = -ENODEV;
2198 goto bail;
2199 }
2200
Michael Albaugh82466f02007-05-16 15:45:09 -07002201 if (atomic_read(&dd->ipath_led_override_timer_active)) {
2202 /* Need to stop LED timer, _then_ shut off LEDs */
2203 del_timer_sync(&dd->ipath_led_override_timer);
2204 atomic_set(&dd->ipath_led_override_timer_active, 0);
2205 }
2206
2207 /* Shut off LEDs after we are sure timer is not running */
2208 dd->ipath_led_override = LED_OVER_BOTH_OFF;
2209 dd->ipath_f_setextled(dd, 0, 0);
2210
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08002211 dev_info(&dd->pcidev->dev, "Reset on unit %u requested\n", unit);
2212
2213 if (!dd->ipath_kregbase || !(dd->ipath_flags & IPATH_PRESENT)) {
2214 dev_info(&dd->pcidev->dev, "Invalid unit number %u or "
2215 "not initialized or not present\n", unit);
2216 ret = -ENXIO;
2217 goto bail;
2218 }
2219
2220 if (dd->ipath_pd)
Bryan O'Sullivan23e86a42006-04-24 14:22:59 -07002221 for (i = 1; i < dd->ipath_cfgports; i++) {
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08002222 if (dd->ipath_pd[i] && dd->ipath_pd[i]->port_cnt) {
2223 ipath_dbg("unit %u port %d is in use "
2224 "(PID %u cmd %s), can't reset\n",
2225 unit, i,
2226 dd->ipath_pd[i]->port_pid,
2227 dd->ipath_pd[i]->port_comm);
2228 ret = -EBUSY;
2229 goto bail;
2230 }
2231 }
2232
2233 dd->ipath_flags &= ~IPATH_INITTED;
2234 ret = dd->ipath_f_reset(dd);
2235 if (ret != 1)
2236 ipath_dbg("reset was not successful\n");
2237 ipath_dbg("Trying to reinitialize unit %u after reset attempt\n",
2238 unit);
2239 ret = ipath_init_chip(dd, 1);
2240 if (ret)
2241 ipath_dev_err(dd, "Reinitialize unit %u after "
2242 "reset failed with %d\n", unit, ret);
2243 else
2244 dev_info(&dd->pcidev->dev, "Reinitialized unit %u after "
2245 "resetting\n", unit);
2246
2247bail:
2248 return ret;
2249}
2250
Bryan O'Sullivan30fc5c32006-08-25 11:24:48 -07002251int ipath_set_rx_pol_inv(struct ipath_devdata *dd, u8 new_pol_inv)
2252{
2253 u64 val;
2254 if ( new_pol_inv > INFINIPATH_XGXS_RX_POL_MASK ) {
2255 return -1;
2256 }
2257 if ( dd->ipath_rx_pol_inv != new_pol_inv ) {
2258 dd->ipath_rx_pol_inv = new_pol_inv;
2259 val = ipath_read_kreg64(dd, dd->ipath_kregs->kr_xgxsconfig);
2260 val &= ~(INFINIPATH_XGXS_RX_POL_MASK <<
Roland Dreier3cd96562006-09-22 15:22:46 -07002261 INFINIPATH_XGXS_RX_POL_SHIFT);
2262 val |= ((u64)dd->ipath_rx_pol_inv) <<
2263 INFINIPATH_XGXS_RX_POL_SHIFT;
Bryan O'Sullivan30fc5c32006-08-25 11:24:48 -07002264 ipath_write_kreg(dd, dd->ipath_kregs->kr_xgxsconfig, val);
2265 }
2266 return 0;
2267}
Bryan O'Sullivan7bb206e2006-03-29 15:23:24 -08002268module_init(infinipath_init);
2269module_exit(infinipath_cleanup);