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Linus Torvalds1da177e2005-04-16 15:20:36 -07001/*
2 * eeh.c
3 * Copyright (C) 2001 Dave Engebretsen & Todd Inglett IBM Corporation
Linas Vepstas69376502005-11-03 18:47:50 -06004 *
Linus Torvalds1da177e2005-04-16 15:20:36 -07005 * This program is free software; you can redistribute it and/or modify
6 * it under the terms of the GNU General Public License as published by
7 * the Free Software Foundation; either version 2 of the License, or
8 * (at your option) any later version.
Linas Vepstas69376502005-11-03 18:47:50 -06009 *
Linus Torvalds1da177e2005-04-16 15:20:36 -070010 * This program is distributed in the hope that it will be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 * GNU General Public License for more details.
Linas Vepstas69376502005-11-03 18:47:50 -060014 *
Linus Torvalds1da177e2005-04-16 15:20:36 -070015 * You should have received a copy of the GNU General Public License
16 * along with this program; if not, write to the Free Software
17 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
18 */
19
Linas Vepstas6dee3fb2005-11-03 18:50:10 -060020#include <linux/delay.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070021#include <linux/init.h>
22#include <linux/list.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070023#include <linux/pci.h>
24#include <linux/proc_fs.h>
25#include <linux/rbtree.h>
26#include <linux/seq_file.h>
27#include <linux/spinlock.h>
Linas Vepstas69376502005-11-03 18:47:50 -060028#include <asm/atomic.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070029#include <asm/eeh.h>
Linas Vepstas172ca922005-11-03 18:50:04 -060030#include <asm/eeh_event.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070031#include <asm/io.h>
32#include <asm/machdep.h>
Stephen Rothwelld3878992005-09-28 02:50:25 +100033#include <asm/ppc-pci.h>
Linas Vepstas172ca922005-11-03 18:50:04 -060034#include <asm/rtas.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070035
36#undef DEBUG
37
38/** Overview:
39 * EEH, or "Extended Error Handling" is a PCI bridge technology for
40 * dealing with PCI bus errors that can't be dealt with within the
41 * usual PCI framework, except by check-stopping the CPU. Systems
42 * that are designed for high-availability/reliability cannot afford
43 * to crash due to a "mere" PCI error, thus the need for EEH.
44 * An EEH-capable bridge operates by converting a detected error
45 * into a "slot freeze", taking the PCI adapter off-line, making
46 * the slot behave, from the OS'es point of view, as if the slot
47 * were "empty": all reads return 0xff's and all writes are silently
48 * ignored. EEH slot isolation events can be triggered by parity
49 * errors on the address or data busses (e.g. during posted writes),
Linas Vepstas69376502005-11-03 18:47:50 -060050 * which in turn might be caused by low voltage on the bus, dust,
51 * vibration, humidity, radioactivity or plain-old failed hardware.
Linus Torvalds1da177e2005-04-16 15:20:36 -070052 *
53 * Note, however, that one of the leading causes of EEH slot
54 * freeze events are buggy device drivers, buggy device microcode,
55 * or buggy device hardware. This is because any attempt by the
56 * device to bus-master data to a memory address that is not
57 * assigned to the device will trigger a slot freeze. (The idea
58 * is to prevent devices-gone-wild from corrupting system memory).
59 * Buggy hardware/drivers will have a miserable time co-existing
60 * with EEH.
61 *
62 * Ideally, a PCI device driver, when suspecting that an isolation
63 * event has occured (e.g. by reading 0xff's), will then ask EEH
64 * whether this is the case, and then take appropriate steps to
65 * reset the PCI slot, the PCI device, and then resume operations.
66 * However, until that day, the checking is done here, with the
67 * eeh_check_failure() routine embedded in the MMIO macros. If
68 * the slot is found to be isolated, an "EEH Event" is synthesized
69 * and sent out for processing.
70 */
71
Linas Vepstas5c1344e2005-11-03 18:49:31 -060072/* If a device driver keeps reading an MMIO register in an interrupt
Linus Torvalds1da177e2005-04-16 15:20:36 -070073 * handler after a slot isolation event has occurred, we assume it
74 * is broken and panic. This sets the threshold for how many read
75 * attempts we allow before panicking.
76 */
Linas Vepstas5c1344e2005-11-03 18:49:31 -060077#define EEH_MAX_FAILS 100000
Linus Torvalds1da177e2005-04-16 15:20:36 -070078
79/* RTAS tokens */
80static int ibm_set_eeh_option;
81static int ibm_set_slot_reset;
82static int ibm_read_slot_reset_state;
83static int ibm_read_slot_reset_state2;
84static int ibm_slot_error_detail;
Linas Vepstas25e591f2005-11-03 18:53:20 -060085static int ibm_get_config_addr_info;
Linas Vepstas21e464d2005-11-03 18:54:47 -060086static int ibm_configure_bridge;
Linus Torvalds1da177e2005-04-16 15:20:36 -070087
David Woodhouse1e28a7d2005-11-17 00:44:03 +000088int eeh_subsystem_enabled;
89EXPORT_SYMBOL(eeh_subsystem_enabled);
Linus Torvalds1da177e2005-04-16 15:20:36 -070090
Linas Vepstasfd761fd2005-11-03 18:49:23 -060091/* Lock to avoid races due to multiple reports of an error */
92static DEFINE_SPINLOCK(confirm_error_lock);
93
Linus Torvalds1da177e2005-04-16 15:20:36 -070094/* Buffer for reporting slot-error-detail rtas calls */
95static unsigned char slot_errbuf[RTAS_ERROR_LOG_MAX];
96static DEFINE_SPINLOCK(slot_errbuf_lock);
97static int eeh_error_buf_size;
98
99/* System monitoring statistics */
Linas Vepstas177bc932005-11-03 18:48:52 -0600100static DEFINE_PER_CPU(unsigned long, no_device);
101static DEFINE_PER_CPU(unsigned long, no_dn);
102static DEFINE_PER_CPU(unsigned long, no_cfg_addr);
103static DEFINE_PER_CPU(unsigned long, ignored_check);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700104static DEFINE_PER_CPU(unsigned long, total_mmio_ffs);
105static DEFINE_PER_CPU(unsigned long, false_positives);
106static DEFINE_PER_CPU(unsigned long, ignored_failures);
107static DEFINE_PER_CPU(unsigned long, slot_resets);
108
Linus Torvalds1da177e2005-04-16 15:20:36 -0700109/* --------------------------------------------------------------- */
Linas Vepstas5d5a0932005-11-03 18:53:07 -0600110/* Below lies the EEH event infrastructure */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700111
Linas Vepstasdf7242b2005-11-03 18:49:01 -0600112void eeh_slot_error_detail (struct pci_dn *pdn, int severity)
113{
Linas Vepstasfcb75432005-11-03 18:54:39 -0600114 int config_addr;
Linas Vepstasdf7242b2005-11-03 18:49:01 -0600115 unsigned long flags;
116 int rc;
117
118 /* Log the error with the rtas logger */
119 spin_lock_irqsave(&slot_errbuf_lock, flags);
120 memset(slot_errbuf, 0, eeh_error_buf_size);
121
Linas Vepstasfcb75432005-11-03 18:54:39 -0600122 /* Use PE configuration address, if present */
123 config_addr = pdn->eeh_config_addr;
124 if (pdn->eeh_pe_config_addr)
125 config_addr = pdn->eeh_pe_config_addr;
126
Linas Vepstasdf7242b2005-11-03 18:49:01 -0600127 rc = rtas_call(ibm_slot_error_detail,
Linas Vepstasfcb75432005-11-03 18:54:39 -0600128 8, 1, NULL, config_addr,
Linas Vepstasdf7242b2005-11-03 18:49:01 -0600129 BUID_HI(pdn->phb->buid),
130 BUID_LO(pdn->phb->buid), NULL, 0,
131 virt_to_phys(slot_errbuf),
132 eeh_error_buf_size,
133 severity);
134
135 if (rc == 0)
136 log_error(slot_errbuf, ERR_TYPE_RTAS_LOG, 0);
137 spin_unlock_irqrestore(&slot_errbuf_lock, flags);
138}
139
Linus Torvalds1da177e2005-04-16 15:20:36 -0700140/**
Linus Torvalds1da177e2005-04-16 15:20:36 -0700141 * read_slot_reset_state - Read the reset state of a device node's slot
142 * @dn: device node to read
143 * @rets: array to return results in
144 */
Linas Vepstas69376502005-11-03 18:47:50 -0600145static int read_slot_reset_state(struct pci_dn *pdn, int rets[])
Linus Torvalds1da177e2005-04-16 15:20:36 -0700146{
147 int token, outputs;
Linas Vepstasfcb75432005-11-03 18:54:39 -0600148 int config_addr;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700149
150 if (ibm_read_slot_reset_state2 != RTAS_UNKNOWN_SERVICE) {
151 token = ibm_read_slot_reset_state2;
152 outputs = 4;
153 } else {
154 token = ibm_read_slot_reset_state;
Linas Vepstas69376502005-11-03 18:47:50 -0600155 rets[2] = 0; /* fake PE Unavailable info */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700156 outputs = 3;
157 }
158
Linas Vepstasfcb75432005-11-03 18:54:39 -0600159 /* Use PE configuration address, if present */
160 config_addr = pdn->eeh_config_addr;
161 if (pdn->eeh_pe_config_addr)
162 config_addr = pdn->eeh_pe_config_addr;
163
164 return rtas_call(token, 3, outputs, rets, config_addr,
Paul Mackerras16353172005-09-06 13:17:54 +1000165 BUID_HI(pdn->phb->buid), BUID_LO(pdn->phb->buid));
Linus Torvalds1da177e2005-04-16 15:20:36 -0700166}
167
168/**
Linus Torvalds1da177e2005-04-16 15:20:36 -0700169 * eeh_token_to_phys - convert EEH address token to phys address
Linas Vepstas69376502005-11-03 18:47:50 -0600170 * @token i/o token, should be address in the form 0xA....
Linus Torvalds1da177e2005-04-16 15:20:36 -0700171 */
172static inline unsigned long eeh_token_to_phys(unsigned long token)
173{
174 pte_t *ptep;
175 unsigned long pa;
176
David Gibson20cee162005-06-21 17:15:31 -0700177 ptep = find_linux_pte(init_mm.pgd, token);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700178 if (!ptep)
179 return token;
180 pa = pte_pfn(*ptep) << PAGE_SHIFT;
181
182 return pa | (token & (PAGE_SIZE-1));
183}
184
Linas Vepstasfd761fd2005-11-03 18:49:23 -0600185/**
186 * Return the "partitionable endpoint" (pe) under which this device lies
187 */
Linas Vepstas9fb40eb2005-11-03 18:54:29 -0600188struct device_node * find_device_pe(struct device_node *dn)
Linas Vepstasfd761fd2005-11-03 18:49:23 -0600189{
190 while ((dn->parent) && PCI_DN(dn->parent) &&
191 (PCI_DN(dn->parent)->eeh_mode & EEH_MODE_SUPPORTED)) {
192 dn = dn->parent;
193 }
194 return dn;
195}
196
197/** Mark all devices that are peers of this device as failed.
198 * Mark the device driver too, so that it can see the failure
199 * immediately; this is critical, since some drivers poll
200 * status registers in interrupts ... If a driver is polling,
201 * and the slot is frozen, then the driver can deadlock in
202 * an interrupt context, which is bad.
203 */
204
Linas Vepstasd9564ad2005-11-03 18:50:48 -0600205static void __eeh_mark_slot (struct device_node *dn, int mode_flag)
Linas Vepstasfd761fd2005-11-03 18:49:23 -0600206{
207 while (dn) {
Linas Vepstasd9564ad2005-11-03 18:50:48 -0600208 if (PCI_DN(dn)) {
209 PCI_DN(dn)->eeh_mode |= mode_flag;
Linas Vepstasfd761fd2005-11-03 18:49:23 -0600210
Linas Vepstas77bd7412005-11-03 18:52:49 -0600211 /* Mark the pci device driver too */
212 struct pci_dev *dev = PCI_DN(dn)->pcidev;
213 if (dev && dev->driver)
214 dev->error_state = pci_channel_io_frozen;
215
Linas Vepstasd9564ad2005-11-03 18:50:48 -0600216 if (dn->child)
217 __eeh_mark_slot (dn->child, mode_flag);
218 }
Linas Vepstasfd761fd2005-11-03 18:49:23 -0600219 dn = dn->sibling;
220 }
221}
222
Linas Vepstasd9564ad2005-11-03 18:50:48 -0600223void eeh_mark_slot (struct device_node *dn, int mode_flag)
224{
225 dn = find_device_pe (dn);
Linas Vepstas3914ac72005-11-03 18:55:01 -0600226
227 /* Back up one, since config addrs might be shared */
228 if (PCI_DN(dn) && PCI_DN(dn)->eeh_pe_config_addr)
229 dn = dn->parent;
230
Linas Vepstasd9564ad2005-11-03 18:50:48 -0600231 PCI_DN(dn)->eeh_mode |= mode_flag;
232 __eeh_mark_slot (dn->child, mode_flag);
233}
234
235static void __eeh_clear_slot (struct device_node *dn, int mode_flag)
Linas Vepstasfd761fd2005-11-03 18:49:23 -0600236{
237 while (dn) {
Linas Vepstasd9564ad2005-11-03 18:50:48 -0600238 if (PCI_DN(dn)) {
239 PCI_DN(dn)->eeh_mode &= ~mode_flag;
240 PCI_DN(dn)->eeh_check_count = 0;
241 if (dn->child)
242 __eeh_clear_slot (dn->child, mode_flag);
243 }
Linas Vepstasfd761fd2005-11-03 18:49:23 -0600244 dn = dn->sibling;
245 }
246}
247
Linas Vepstasd9564ad2005-11-03 18:50:48 -0600248void eeh_clear_slot (struct device_node *dn, int mode_flag)
Linas Vepstasfd761fd2005-11-03 18:49:23 -0600249{
250 unsigned long flags;
251 spin_lock_irqsave(&confirm_error_lock, flags);
Linas Vepstas3914ac72005-11-03 18:55:01 -0600252
Linas Vepstasd9564ad2005-11-03 18:50:48 -0600253 dn = find_device_pe (dn);
Linas Vepstas3914ac72005-11-03 18:55:01 -0600254
255 /* Back up one, since config addrs might be shared */
256 if (PCI_DN(dn) && PCI_DN(dn)->eeh_pe_config_addr)
257 dn = dn->parent;
258
Linas Vepstasd9564ad2005-11-03 18:50:48 -0600259 PCI_DN(dn)->eeh_mode &= ~mode_flag;
260 PCI_DN(dn)->eeh_check_count = 0;
261 __eeh_clear_slot (dn->child, mode_flag);
Linas Vepstasfd761fd2005-11-03 18:49:23 -0600262 spin_unlock_irqrestore(&confirm_error_lock, flags);
263}
264
Linus Torvalds1da177e2005-04-16 15:20:36 -0700265/**
266 * eeh_dn_check_failure - check if all 1's data is due to EEH slot freeze
267 * @dn device node
268 * @dev pci device, if known
269 *
270 * Check for an EEH failure for the given device node. Call this
271 * routine if the result of a read was all 0xff's and you want to
272 * find out if this is due to an EEH slot freeze. This routine
273 * will query firmware for the EEH status.
274 *
275 * Returns 0 if there has not been an EEH error; otherwise returns
Linas Vepstas69376502005-11-03 18:47:50 -0600276 * a non-zero value and queues up a slot isolation event notification.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700277 *
278 * It is safe to call this routine in an interrupt context.
279 */
280int eeh_dn_check_failure(struct device_node *dn, struct pci_dev *dev)
281{
282 int ret;
283 int rets[3];
284 unsigned long flags;
Paul Mackerras16353172005-09-06 13:17:54 +1000285 struct pci_dn *pdn;
Linas Vepstas77bd7412005-11-03 18:52:49 -0600286 enum pci_channel_state state;
Linas Vepstasfd761fd2005-11-03 18:49:23 -0600287 int rc = 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700288
289 __get_cpu_var(total_mmio_ffs)++;
290
291 if (!eeh_subsystem_enabled)
292 return 0;
293
Linas Vepstas177bc932005-11-03 18:48:52 -0600294 if (!dn) {
295 __get_cpu_var(no_dn)++;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700296 return 0;
Linas Vepstas177bc932005-11-03 18:48:52 -0600297 }
Linas Vepstas69376502005-11-03 18:47:50 -0600298 pdn = PCI_DN(dn);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700299
300 /* Access to IO BARs might get this far and still not want checking. */
Linas Vepstasf8632c82005-11-03 18:49:45 -0600301 if (!(pdn->eeh_mode & EEH_MODE_SUPPORTED) ||
Paul Mackerras16353172005-09-06 13:17:54 +1000302 pdn->eeh_mode & EEH_MODE_NOCHECK) {
Linas Vepstas177bc932005-11-03 18:48:52 -0600303 __get_cpu_var(ignored_check)++;
304#ifdef DEBUG
Linas Vepstasf8632c82005-11-03 18:49:45 -0600305 printk ("EEH:ignored check (%x) for %s %s\n",
306 pdn->eeh_mode, pci_name (dev), dn->full_name);
Linas Vepstas177bc932005-11-03 18:48:52 -0600307#endif
Linus Torvalds1da177e2005-04-16 15:20:36 -0700308 return 0;
309 }
310
Linas Vepstasfcb75432005-11-03 18:54:39 -0600311 if (!pdn->eeh_config_addr && !pdn->eeh_pe_config_addr) {
Linas Vepstas177bc932005-11-03 18:48:52 -0600312 __get_cpu_var(no_cfg_addr)++;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700313 return 0;
314 }
315
Linas Vepstasfd761fd2005-11-03 18:49:23 -0600316 /* If we already have a pending isolation event for this
317 * slot, we know it's bad already, we don't need to check.
318 * Do this checking under a lock; as multiple PCI devices
319 * in one slot might report errors simultaneously, and we
320 * only want one error recovery routine running.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700321 */
Linas Vepstasfd761fd2005-11-03 18:49:23 -0600322 spin_lock_irqsave(&confirm_error_lock, flags);
323 rc = 1;
Paul Mackerras16353172005-09-06 13:17:54 +1000324 if (pdn->eeh_mode & EEH_MODE_ISOLATED) {
Linas Vepstas5c1344e2005-11-03 18:49:31 -0600325 pdn->eeh_check_count ++;
326 if (pdn->eeh_check_count >= EEH_MAX_FAILS) {
327 printk (KERN_ERR "EEH: Device driver ignored %d bad reads, panicing\n",
328 pdn->eeh_check_count);
329 dump_stack();
330
Linus Torvalds1da177e2005-04-16 15:20:36 -0700331 /* re-read the slot reset state */
Linas Vepstas69376502005-11-03 18:47:50 -0600332 if (read_slot_reset_state(pdn, rets) != 0)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700333 rets[0] = -1; /* reset state unknown */
Linas Vepstas5c1344e2005-11-03 18:49:31 -0600334
335 /* If we are here, then we hit an infinite loop. Stop. */
336 panic("EEH: MMIO halt (%d) on device:%s\n", rets[0], pci_name(dev));
Linus Torvalds1da177e2005-04-16 15:20:36 -0700337 }
Linas Vepstasfd761fd2005-11-03 18:49:23 -0600338 goto dn_unlock;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700339 }
340
341 /*
342 * Now test for an EEH failure. This is VERY expensive.
343 * Note that the eeh_config_addr may be a parent device
344 * in the case of a device behind a bridge, or it may be
345 * function zero of a multi-function device.
346 * In any case they must share a common PHB.
347 */
Linas Vepstas69376502005-11-03 18:47:50 -0600348 ret = read_slot_reset_state(pdn, rets);
Linas Vepstas76e6faf2005-11-03 18:49:15 -0600349
350 /* If the call to firmware failed, punt */
351 if (ret != 0) {
352 printk(KERN_WARNING "EEH: read_slot_reset_state() failed; rc=%d dn=%s\n",
353 ret, dn->full_name);
354 __get_cpu_var(false_positives)++;
Linas Vepstasfd761fd2005-11-03 18:49:23 -0600355 rc = 0;
356 goto dn_unlock;
Linas Vepstas76e6faf2005-11-03 18:49:15 -0600357 }
358
359 /* If EEH is not supported on this device, punt. */
360 if (rets[1] != 1) {
361 printk(KERN_WARNING "EEH: event on unsupported device, rc=%d dn=%s\n",
362 ret, dn->full_name);
363 __get_cpu_var(false_positives)++;
Linas Vepstasfd761fd2005-11-03 18:49:23 -0600364 rc = 0;
365 goto dn_unlock;
Linas Vepstas76e6faf2005-11-03 18:49:15 -0600366 }
367
368 /* If not the kind of error we know about, punt. */
369 if (rets[0] != 2 && rets[0] != 4 && rets[0] != 5) {
370 __get_cpu_var(false_positives)++;
Linas Vepstasfd761fd2005-11-03 18:49:23 -0600371 rc = 0;
372 goto dn_unlock;
Linas Vepstas76e6faf2005-11-03 18:49:15 -0600373 }
374
375 /* Note that config-io to empty slots may fail;
376 * we recognize empty because they don't have children. */
377 if ((rets[0] == 5) && (dn->child == NULL)) {
Linus Torvalds1da177e2005-04-16 15:20:36 -0700378 __get_cpu_var(false_positives)++;
Linas Vepstasfd761fd2005-11-03 18:49:23 -0600379 rc = 0;
380 goto dn_unlock;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700381 }
382
Linas Vepstasfd761fd2005-11-03 18:49:23 -0600383 __get_cpu_var(slot_resets)++;
384
385 /* Avoid repeated reports of this failure, including problems
386 * with other functions on this device, and functions under
387 * bridges. */
Linas Vepstasd9564ad2005-11-03 18:50:48 -0600388 eeh_mark_slot (dn, EEH_MODE_ISOLATED);
Linas Vepstasfd761fd2005-11-03 18:49:23 -0600389 spin_unlock_irqrestore(&confirm_error_lock, flags);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700390
Linas Vepstas77bd7412005-11-03 18:52:49 -0600391 state = pci_channel_io_normal;
392 if ((rets[0] == 2) || (rets[0] == 4))
393 state = pci_channel_io_frozen;
394 if (rets[0] == 5)
395 state = pci_channel_io_perm_failure;
396 eeh_send_failure_event (dn, dev, state, rets[2]);
397
Linus Torvalds1da177e2005-04-16 15:20:36 -0700398 /* Most EEH events are due to device driver bugs. Having
399 * a stack trace will help the device-driver authors figure
400 * out what happened. So print that out. */
Linas Vepstas76e6faf2005-11-03 18:49:15 -0600401 if (rets[0] != 5) dump_stack();
Linas Vepstasfd761fd2005-11-03 18:49:23 -0600402 return 1;
403
404dn_unlock:
405 spin_unlock_irqrestore(&confirm_error_lock, flags);
406 return rc;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700407}
408
Linas Vepstasfd761fd2005-11-03 18:49:23 -0600409EXPORT_SYMBOL_GPL(eeh_dn_check_failure);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700410
411/**
412 * eeh_check_failure - check if all 1's data is due to EEH slot freeze
413 * @token i/o token, should be address in the form 0xA....
414 * @val value, should be all 1's (XXX why do we need this arg??)
415 *
Linus Torvalds1da177e2005-04-16 15:20:36 -0700416 * Check for an EEH failure at the given token address. Call this
417 * routine if the result of a read was all 0xff's and you want to
418 * find out if this is due to an EEH slot freeze event. This routine
419 * will query firmware for the EEH status.
420 *
421 * Note this routine is safe to call in an interrupt context.
422 */
423unsigned long eeh_check_failure(const volatile void __iomem *token, unsigned long val)
424{
425 unsigned long addr;
426 struct pci_dev *dev;
427 struct device_node *dn;
428
429 /* Finding the phys addr + pci device; this is pretty quick. */
430 addr = eeh_token_to_phys((unsigned long __force) token);
431 dev = pci_get_device_by_addr(addr);
Linas Vepstas177bc932005-11-03 18:48:52 -0600432 if (!dev) {
433 __get_cpu_var(no_device)++;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700434 return val;
Linas Vepstas177bc932005-11-03 18:48:52 -0600435 }
Linus Torvalds1da177e2005-04-16 15:20:36 -0700436
437 dn = pci_device_to_OF_node(dev);
438 eeh_dn_check_failure (dn, dev);
439
440 pci_dev_put(dev);
441 return val;
442}
443
444EXPORT_SYMBOL(eeh_check_failure);
445
Linas Vepstas172ca922005-11-03 18:50:04 -0600446/* ------------------------------------------------------------- */
Linas Vepstas6dee3fb2005-11-03 18:50:10 -0600447/* The code below deals with error recovery */
448
449/** Return negative value if a permanent error, else return
450 * a number of milliseconds to wait until the PCI slot is
451 * ready to be used.
452 */
453static int
454eeh_slot_availability(struct pci_dn *pdn)
455{
456 int rc;
457 int rets[3];
458
459 rc = read_slot_reset_state(pdn, rets);
460
461 if (rc) return rc;
462
463 if (rets[1] == 0) return -1; /* EEH is not supported */
Linas Vepstasb6495c02005-11-03 18:54:54 -0600464 if (rets[0] == 0) return 0; /* Oll Korrect */
Linas Vepstas6dee3fb2005-11-03 18:50:10 -0600465 if (rets[0] == 5) {
466 if (rets[2] == 0) return -1; /* permanently unavailable */
467 return rets[2]; /* number of millisecs to wait */
468 }
Linas Vepstasb6495c02005-11-03 18:54:54 -0600469 if (rets[0] == 1)
470 return 250;
471
472 printk (KERN_ERR "EEH: Slot unavailable: rc=%d, rets=%d %d %d\n",
473 rc, rets[0], rets[1], rets[2]);
Linas Vepstas6dee3fb2005-11-03 18:50:10 -0600474 return -1;
475}
476
477/** rtas_pci_slot_reset raises/lowers the pci #RST line
478 * state: 1/0 to raise/lower the #RST
479 *
480 * Clear the EEH-frozen condition on a slot. This routine
481 * asserts the PCI #RST line if the 'state' argument is '1',
482 * and drops the #RST line if 'state is '0'. This routine is
483 * safe to call in an interrupt context.
484 *
485 */
486
487static void
488rtas_pci_slot_reset(struct pci_dn *pdn, int state)
489{
Linas Vepstas25e591f2005-11-03 18:53:20 -0600490 int config_addr;
Linas Vepstas6dee3fb2005-11-03 18:50:10 -0600491 int rc;
492
493 BUG_ON (pdn==NULL);
494
495 if (!pdn->phb) {
496 printk (KERN_WARNING "EEH: in slot reset, device node %s has no phb\n",
497 pdn->node->full_name);
498 return;
499 }
500
Linas Vepstas25e591f2005-11-03 18:53:20 -0600501 /* Use PE configuration address, if present */
502 config_addr = pdn->eeh_config_addr;
503 if (pdn->eeh_pe_config_addr)
504 config_addr = pdn->eeh_pe_config_addr;
505
Linas Vepstas6dee3fb2005-11-03 18:50:10 -0600506 rc = rtas_call(ibm_set_slot_reset,4,1, NULL,
Linas Vepstas25e591f2005-11-03 18:53:20 -0600507 config_addr,
Linas Vepstas6dee3fb2005-11-03 18:50:10 -0600508 BUID_HI(pdn->phb->buid),
509 BUID_LO(pdn->phb->buid),
510 state);
511 if (rc) {
512 printk (KERN_WARNING "EEH: Unable to reset the failed slot, (%d) #RST=%d dn=%s\n",
513 rc, state, pdn->node->full_name);
514 return;
515 }
Linas Vepstas6dee3fb2005-11-03 18:50:10 -0600516}
517
518/** rtas_set_slot_reset -- assert the pci #RST line for 1/4 second
519 * dn -- device node to be reset.
Linas Vepstasb6495c02005-11-03 18:54:54 -0600520 *
521 * Return 0 if success, else a non-zero value.
Linas Vepstas6dee3fb2005-11-03 18:50:10 -0600522 */
523
Linas Vepstasb6495c02005-11-03 18:54:54 -0600524int
Linas Vepstas6dee3fb2005-11-03 18:50:10 -0600525rtas_set_slot_reset(struct pci_dn *pdn)
526{
527 int i, rc;
528
529 rtas_pci_slot_reset (pdn, 1);
530
531 /* The PCI bus requires that the reset be held high for at least
532 * a 100 milliseconds. We wait a bit longer 'just in case'. */
533
534#define PCI_BUS_RST_HOLD_TIME_MSEC 250
535 msleep (PCI_BUS_RST_HOLD_TIME_MSEC);
Linas Vepstasd9564ad2005-11-03 18:50:48 -0600536
537 /* We might get hit with another EEH freeze as soon as the
538 * pci slot reset line is dropped. Make sure we don't miss
539 * these, and clear the flag now. */
540 eeh_clear_slot (pdn->node, EEH_MODE_ISOLATED);
541
Linas Vepstas6dee3fb2005-11-03 18:50:10 -0600542 rtas_pci_slot_reset (pdn, 0);
543
544 /* After a PCI slot has been reset, the PCI Express spec requires
545 * a 1.5 second idle time for the bus to stabilize, before starting
546 * up traffic. */
547#define PCI_BUS_SETTLE_TIME_MSEC 1800
548 msleep (PCI_BUS_SETTLE_TIME_MSEC);
549
550 /* Now double check with the firmware to make sure the device is
551 * ready to be used; if not, wait for recovery. */
552 for (i=0; i<10; i++) {
553 rc = eeh_slot_availability (pdn);
Linas Vepstasb6495c02005-11-03 18:54:54 -0600554 if (rc < 0)
555 printk (KERN_ERR "EEH: failed (%d) to reset slot %s\n", rc, pdn->node->full_name);
556 if (rc == 0)
557 return 0;
558 if (rc < 0)
559 return -1;
Linas Vepstas6dee3fb2005-11-03 18:50:10 -0600560
561 msleep (rc+100);
562 }
Linas Vepstasb6495c02005-11-03 18:54:54 -0600563
564 rc = eeh_slot_availability (pdn);
565 if (rc)
566 printk (KERN_ERR "EEH: timeout resetting slot %s\n", pdn->node->full_name);
567
568 return rc;
Linas Vepstas6dee3fb2005-11-03 18:50:10 -0600569}
570
Linas Vepstas8b553f32005-11-03 18:50:17 -0600571/* ------------------------------------------------------- */
572/** Save and restore of PCI BARs
573 *
574 * Although firmware will set up BARs during boot, it doesn't
575 * set up device BAR's after a device reset, although it will,
576 * if requested, set up bridge configuration. Thus, we need to
577 * configure the PCI devices ourselves.
578 */
579
580/**
581 * __restore_bars - Restore the Base Address Registers
582 * Loads the PCI configuration space base address registers,
583 * the expansion ROM base address, the latency timer, and etc.
584 * from the saved values in the device node.
585 */
586static inline void __restore_bars (struct pci_dn *pdn)
587{
588 int i;
589
590 if (NULL==pdn->phb) return;
591 for (i=4; i<10; i++) {
592 rtas_write_config(pdn, i*4, 4, pdn->config_space[i]);
593 }
594
595 /* 12 == Expansion ROM Address */
596 rtas_write_config(pdn, 12*4, 4, pdn->config_space[12]);
597
598#define BYTE_SWAP(OFF) (8*((OFF)/4)+3-(OFF))
599#define SAVED_BYTE(OFF) (((u8 *)(pdn->config_space))[BYTE_SWAP(OFF)])
600
601 rtas_write_config (pdn, PCI_CACHE_LINE_SIZE, 1,
602 SAVED_BYTE(PCI_CACHE_LINE_SIZE));
603
604 rtas_write_config (pdn, PCI_LATENCY_TIMER, 1,
605 SAVED_BYTE(PCI_LATENCY_TIMER));
606
607 /* max latency, min grant, interrupt pin and line */
608 rtas_write_config(pdn, 15*4, 4, pdn->config_space[15]);
609}
610
611/**
612 * eeh_restore_bars - restore the PCI config space info
613 *
614 * This routine performs a recursive walk to the children
615 * of this device as well.
616 */
617void eeh_restore_bars(struct pci_dn *pdn)
618{
619 struct device_node *dn;
620 if (!pdn)
621 return;
622
Linas Vepstas3914ac72005-11-03 18:55:01 -0600623 if ((pdn->eeh_mode & EEH_MODE_SUPPORTED) && (!pdn->eeh_is_bridge))
Linas Vepstas8b553f32005-11-03 18:50:17 -0600624 __restore_bars (pdn);
625
626 dn = pdn->node->child;
627 while (dn) {
628 eeh_restore_bars (PCI_DN(dn));
629 dn = dn->sibling;
630 }
631}
632
633/**
634 * eeh_save_bars - save device bars
635 *
636 * Save the values of the device bars. Unlike the restore
637 * routine, this routine is *not* recursive. This is because
638 * PCI devices are added individuallly; but, for the restore,
639 * an entire slot is reset at a time.
640 */
Linas Vepstas5d5a0932005-11-03 18:53:07 -0600641void eeh_save_bars(struct pci_dev * pdev, struct pci_dn *pdn)
Linas Vepstas8b553f32005-11-03 18:50:17 -0600642{
643 int i;
644
645 if (!pdev || !pdn )
646 return;
647
648 for (i = 0; i < 16; i++)
649 pci_read_config_dword(pdev, i * 4, &pdn->config_space[i]);
650
651 if (pdev->hdr_type == PCI_HEADER_TYPE_BRIDGE)
652 pdn->eeh_is_bridge = 1;
653}
654
655void
656rtas_configure_bridge(struct pci_dn *pdn)
657{
Linas Vepstasfcb75432005-11-03 18:54:39 -0600658 int config_addr;
Linas Vepstas8b553f32005-11-03 18:50:17 -0600659 int rc;
660
Linas Vepstasfcb75432005-11-03 18:54:39 -0600661 /* Use PE configuration address, if present */
662 config_addr = pdn->eeh_config_addr;
663 if (pdn->eeh_pe_config_addr)
664 config_addr = pdn->eeh_pe_config_addr;
665
Linas Vepstas21e464d2005-11-03 18:54:47 -0600666 rc = rtas_call(ibm_configure_bridge,3,1, NULL,
Linas Vepstasfcb75432005-11-03 18:54:39 -0600667 config_addr,
Linas Vepstas8b553f32005-11-03 18:50:17 -0600668 BUID_HI(pdn->phb->buid),
669 BUID_LO(pdn->phb->buid));
670 if (rc) {
671 printk (KERN_WARNING "EEH: Unable to configure device bridge (%d) for %s\n",
672 rc, pdn->node->full_name);
673 }
674}
675
Linas Vepstas6dee3fb2005-11-03 18:50:10 -0600676/* ------------------------------------------------------------- */
Linas Vepstas172ca922005-11-03 18:50:04 -0600677/* The code below deals with enabling EEH for devices during the
678 * early boot sequence. EEH must be enabled before any PCI probing
679 * can be done.
680 */
681
682#define EEH_ENABLE 1
683
Linus Torvalds1da177e2005-04-16 15:20:36 -0700684struct eeh_early_enable_info {
685 unsigned int buid_hi;
686 unsigned int buid_lo;
687};
688
689/* Enable eeh for the given device node. */
690static void *early_enable_eeh(struct device_node *dn, void *data)
691{
692 struct eeh_early_enable_info *info = data;
693 int ret;
694 char *status = get_property(dn, "status", NULL);
695 u32 *class_code = (u32 *)get_property(dn, "class-code", NULL);
696 u32 *vendor_id = (u32 *)get_property(dn, "vendor-id", NULL);
697 u32 *device_id = (u32 *)get_property(dn, "device-id", NULL);
698 u32 *regs;
699 int enable;
Linas Vepstas69376502005-11-03 18:47:50 -0600700 struct pci_dn *pdn = PCI_DN(dn);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700701
Paul Mackerras16353172005-09-06 13:17:54 +1000702 pdn->eeh_mode = 0;
Linas Vepstas5c1344e2005-11-03 18:49:31 -0600703 pdn->eeh_check_count = 0;
704 pdn->eeh_freeze_count = 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700705
706 if (status && strcmp(status, "ok") != 0)
707 return NULL; /* ignore devices with bad status */
708
709 /* Ignore bad nodes. */
710 if (!class_code || !vendor_id || !device_id)
711 return NULL;
712
713 /* There is nothing to check on PCI to ISA bridges */
714 if (dn->type && !strcmp(dn->type, "isa")) {
Paul Mackerras16353172005-09-06 13:17:54 +1000715 pdn->eeh_mode |= EEH_MODE_NOCHECK;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700716 return NULL;
717 }
718
719 /*
720 * Now decide if we are going to "Disable" EEH checking
721 * for this device. We still run with the EEH hardware active,
722 * but we won't be checking for ff's. This means a driver
723 * could return bad data (very bad!), an interrupt handler could
724 * hang waiting on status bits that won't change, etc.
725 * But there are a few cases like display devices that make sense.
726 */
727 enable = 1; /* i.e. we will do checking */
Linas Vepstas77bd7412005-11-03 18:52:49 -0600728#if 0
Linus Torvalds1da177e2005-04-16 15:20:36 -0700729 if ((*class_code >> 16) == PCI_BASE_CLASS_DISPLAY)
730 enable = 0;
Linas Vepstas77bd7412005-11-03 18:52:49 -0600731#endif
Linus Torvalds1da177e2005-04-16 15:20:36 -0700732
733 if (!enable)
Paul Mackerras16353172005-09-06 13:17:54 +1000734 pdn->eeh_mode |= EEH_MODE_NOCHECK;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700735
736 /* Ok... see if this device supports EEH. Some do, some don't,
737 * and the only way to find out is to check each and every one. */
738 regs = (u32 *)get_property(dn, "reg", NULL);
739 if (regs) {
740 /* First register entry is addr (00BBSS00) */
741 /* Try to enable eeh */
742 ret = rtas_call(ibm_set_eeh_option, 4, 1, NULL,
Linas Vepstas172ca922005-11-03 18:50:04 -0600743 regs[0], info->buid_hi, info->buid_lo,
744 EEH_ENABLE);
745
Linus Torvalds1da177e2005-04-16 15:20:36 -0700746 if (ret == 0) {
747 eeh_subsystem_enabled = 1;
Paul Mackerras16353172005-09-06 13:17:54 +1000748 pdn->eeh_mode |= EEH_MODE_SUPPORTED;
749 pdn->eeh_config_addr = regs[0];
Linas Vepstas25e591f2005-11-03 18:53:20 -0600750
751 /* If the newer, better, ibm,get-config-addr-info is supported,
752 * then use that instead. */
753 pdn->eeh_pe_config_addr = 0;
754 if (ibm_get_config_addr_info != RTAS_UNKNOWN_SERVICE) {
755 unsigned int rets[2];
756 ret = rtas_call (ibm_get_config_addr_info, 4, 2, rets,
757 pdn->eeh_config_addr,
758 info->buid_hi, info->buid_lo,
759 0);
760 if (ret == 0)
761 pdn->eeh_pe_config_addr = rets[0];
762 }
Linus Torvalds1da177e2005-04-16 15:20:36 -0700763#ifdef DEBUG
Linas Vepstas25e591f2005-11-03 18:53:20 -0600764 printk(KERN_DEBUG "EEH: %s: eeh enabled, config=%x pe_config=%x\n",
765 dn->full_name, pdn->eeh_config_addr, pdn->eeh_pe_config_addr);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700766#endif
767 } else {
768
769 /* This device doesn't support EEH, but it may have an
770 * EEH parent, in which case we mark it as supported. */
Linas Vepstas69376502005-11-03 18:47:50 -0600771 if (dn->parent && PCI_DN(dn->parent)
Paul Mackerras16353172005-09-06 13:17:54 +1000772 && (PCI_DN(dn->parent)->eeh_mode & EEH_MODE_SUPPORTED)) {
Linus Torvalds1da177e2005-04-16 15:20:36 -0700773 /* Parent supports EEH. */
Paul Mackerras16353172005-09-06 13:17:54 +1000774 pdn->eeh_mode |= EEH_MODE_SUPPORTED;
775 pdn->eeh_config_addr = PCI_DN(dn->parent)->eeh_config_addr;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700776 return NULL;
777 }
778 }
779 } else {
780 printk(KERN_WARNING "EEH: %s: unable to get reg property.\n",
781 dn->full_name);
782 }
783
Linas Vepstas69376502005-11-03 18:47:50 -0600784 return NULL;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700785}
786
787/*
788 * Initialize EEH by trying to enable it for all of the adapters in the system.
789 * As a side effect we can determine here if eeh is supported at all.
790 * Note that we leave EEH on so failed config cycles won't cause a machine
791 * check. If a user turns off EEH for a particular adapter they are really
792 * telling Linux to ignore errors. Some hardware (e.g. POWER5) won't
793 * grant access to a slot if EEH isn't enabled, and so we always enable
794 * EEH for all slots/all devices.
795 *
796 * The eeh-force-off option disables EEH checking globally, for all slots.
797 * Even if force-off is set, the EEH hardware is still enabled, so that
798 * newer systems can boot.
799 */
800void __init eeh_init(void)
801{
802 struct device_node *phb, *np;
803 struct eeh_early_enable_info info;
804
Linas Vepstasfd761fd2005-11-03 18:49:23 -0600805 spin_lock_init(&confirm_error_lock);
Linas Vepstasdf7242b2005-11-03 18:49:01 -0600806 spin_lock_init(&slot_errbuf_lock);
807
Linus Torvalds1da177e2005-04-16 15:20:36 -0700808 np = of_find_node_by_path("/rtas");
809 if (np == NULL)
810 return;
811
812 ibm_set_eeh_option = rtas_token("ibm,set-eeh-option");
813 ibm_set_slot_reset = rtas_token("ibm,set-slot-reset");
814 ibm_read_slot_reset_state2 = rtas_token("ibm,read-slot-reset-state2");
815 ibm_read_slot_reset_state = rtas_token("ibm,read-slot-reset-state");
816 ibm_slot_error_detail = rtas_token("ibm,slot-error-detail");
Linas Vepstas25e591f2005-11-03 18:53:20 -0600817 ibm_get_config_addr_info = rtas_token("ibm,get-config-addr-info");
Linas Vepstas21e464d2005-11-03 18:54:47 -0600818 ibm_configure_bridge = rtas_token ("ibm,configure-bridge");
Linus Torvalds1da177e2005-04-16 15:20:36 -0700819
820 if (ibm_set_eeh_option == RTAS_UNKNOWN_SERVICE)
821 return;
822
823 eeh_error_buf_size = rtas_token("rtas-error-log-max");
824 if (eeh_error_buf_size == RTAS_UNKNOWN_SERVICE) {
825 eeh_error_buf_size = 1024;
826 }
827 if (eeh_error_buf_size > RTAS_ERROR_LOG_MAX) {
828 printk(KERN_WARNING "EEH: rtas-error-log-max is bigger than allocated "
829 "buffer ! (%d vs %d)", eeh_error_buf_size, RTAS_ERROR_LOG_MAX);
830 eeh_error_buf_size = RTAS_ERROR_LOG_MAX;
831 }
832
833 /* Enable EEH for all adapters. Note that eeh requires buid's */
834 for (phb = of_find_node_by_name(NULL, "pci"); phb;
835 phb = of_find_node_by_name(phb, "pci")) {
836 unsigned long buid;
837
838 buid = get_phb_buid(phb);
Linas Vepstas69376502005-11-03 18:47:50 -0600839 if (buid == 0 || PCI_DN(phb) == NULL)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700840 continue;
841
842 info.buid_lo = BUID_LO(buid);
843 info.buid_hi = BUID_HI(buid);
844 traverse_pci_devices(phb, early_enable_eeh, &info);
845 }
846
847 if (eeh_subsystem_enabled)
848 printk(KERN_INFO "EEH: PCI Enhanced I/O Error Handling Enabled\n");
849 else
850 printk(KERN_WARNING "EEH: No capable adapters found\n");
851}
852
853/**
854 * eeh_add_device_early - enable EEH for the indicated device_node
855 * @dn: device node for which to set up EEH
856 *
857 * This routine must be used to perform EEH initialization for PCI
858 * devices that were added after system boot (e.g. hotplug, dlpar).
859 * This routine must be called before any i/o is performed to the
860 * adapter (inluding any config-space i/o).
861 * Whether this actually enables EEH or not for this device depends
862 * on the CEC architecture, type of the device, on earlier boot
863 * command-line arguments & etc.
864 */
865void eeh_add_device_early(struct device_node *dn)
866{
867 struct pci_controller *phb;
868 struct eeh_early_enable_info info;
869
Linas Vepstas69376502005-11-03 18:47:50 -0600870 if (!dn || !PCI_DN(dn))
Linus Torvalds1da177e2005-04-16 15:20:36 -0700871 return;
Paul Mackerras16353172005-09-06 13:17:54 +1000872 phb = PCI_DN(dn)->phb;
Linas Vepstasf751f842005-11-03 18:54:23 -0600873
874 /* USB Bus children of PCI devices will not have BUID's */
875 if (NULL == phb || 0 == phb->buid)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700876 return;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700877
878 info.buid_hi = BUID_HI(phb->buid);
879 info.buid_lo = BUID_LO(phb->buid);
880 early_enable_eeh(dn, &info);
881}
Linas Vepstas56b0fca2005-11-03 18:48:45 -0600882EXPORT_SYMBOL_GPL(eeh_add_device_early);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700883
Linas Vepstase2a296e2005-11-03 18:51:31 -0600884void eeh_add_device_tree_early(struct device_node *dn)
885{
886 struct device_node *sib;
887 for (sib = dn->child; sib; sib = sib->sibling)
888 eeh_add_device_tree_early(sib);
889 eeh_add_device_early(dn);
890}
891EXPORT_SYMBOL_GPL(eeh_add_device_tree_early);
892
Linus Torvalds1da177e2005-04-16 15:20:36 -0700893/**
894 * eeh_add_device_late - perform EEH initialization for the indicated pci device
895 * @dev: pci device for which to set up EEH
896 *
897 * This routine must be used to complete EEH initialization for PCI
898 * devices that were added after system boot (e.g. hotplug, dlpar).
899 */
900void eeh_add_device_late(struct pci_dev *dev)
901{
Linas Vepstas56b0fca2005-11-03 18:48:45 -0600902 struct device_node *dn;
Linas Vepstas8b553f32005-11-03 18:50:17 -0600903 struct pci_dn *pdn;
Linas Vepstas56b0fca2005-11-03 18:48:45 -0600904
Linus Torvalds1da177e2005-04-16 15:20:36 -0700905 if (!dev || !eeh_subsystem_enabled)
906 return;
907
908#ifdef DEBUG
Adrian Bunk982245f2005-07-17 04:22:20 +0200909 printk(KERN_DEBUG "EEH: adding device %s\n", pci_name(dev));
Linus Torvalds1da177e2005-04-16 15:20:36 -0700910#endif
911
Linas Vepstas56b0fca2005-11-03 18:48:45 -0600912 pci_dev_get (dev);
913 dn = pci_device_to_OF_node(dev);
Linas Vepstas8b553f32005-11-03 18:50:17 -0600914 pdn = PCI_DN(dn);
915 pdn->pcidev = dev;
Linas Vepstas56b0fca2005-11-03 18:48:45 -0600916
Linus Torvalds1da177e2005-04-16 15:20:36 -0700917 pci_addr_cache_insert_device (dev);
Linas Vepstas8b553f32005-11-03 18:50:17 -0600918 eeh_save_bars(dev, pdn);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700919}
Linas Vepstas56b0fca2005-11-03 18:48:45 -0600920EXPORT_SYMBOL_GPL(eeh_add_device_late);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700921
922/**
923 * eeh_remove_device - undo EEH setup for the indicated pci device
924 * @dev: pci device to be removed
925 *
926 * This routine should be when a device is removed from a running
927 * system (e.g. by hotplug or dlpar).
928 */
929void eeh_remove_device(struct pci_dev *dev)
930{
Linas Vepstas56b0fca2005-11-03 18:48:45 -0600931 struct device_node *dn;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700932 if (!dev || !eeh_subsystem_enabled)
933 return;
934
935 /* Unregister the device with the EEH/PCI address search system */
936#ifdef DEBUG
Adrian Bunk982245f2005-07-17 04:22:20 +0200937 printk(KERN_DEBUG "EEH: remove device %s\n", pci_name(dev));
Linus Torvalds1da177e2005-04-16 15:20:36 -0700938#endif
939 pci_addr_cache_remove_device(dev);
Linas Vepstas56b0fca2005-11-03 18:48:45 -0600940
941 dn = pci_device_to_OF_node(dev);
942 PCI_DN(dn)->pcidev = NULL;
943 pci_dev_put (dev);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700944}
Linas Vepstas56b0fca2005-11-03 18:48:45 -0600945EXPORT_SYMBOL_GPL(eeh_remove_device);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700946
Linas Vepstase2a296e2005-11-03 18:51:31 -0600947void eeh_remove_bus_device(struct pci_dev *dev)
948{
949 eeh_remove_device(dev);
950 if (dev->hdr_type == PCI_HEADER_TYPE_BRIDGE) {
951 struct pci_bus *bus = dev->subordinate;
952 struct list_head *ln;
953 if (!bus)
954 return;
955 for (ln = bus->devices.next; ln != &bus->devices; ln = ln->next) {
956 struct pci_dev *pdev = pci_dev_b(ln);
957 if (pdev)
958 eeh_remove_bus_device(pdev);
959 }
960 }
961}
962EXPORT_SYMBOL_GPL(eeh_remove_bus_device);
963
Linus Torvalds1da177e2005-04-16 15:20:36 -0700964static int proc_eeh_show(struct seq_file *m, void *v)
965{
966 unsigned int cpu;
967 unsigned long ffs = 0, positives = 0, failures = 0;
968 unsigned long resets = 0;
Linas Vepstas177bc932005-11-03 18:48:52 -0600969 unsigned long no_dev = 0, no_dn = 0, no_cfg = 0, no_check = 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700970
971 for_each_cpu(cpu) {
972 ffs += per_cpu(total_mmio_ffs, cpu);
973 positives += per_cpu(false_positives, cpu);
974 failures += per_cpu(ignored_failures, cpu);
975 resets += per_cpu(slot_resets, cpu);
Linas Vepstas177bc932005-11-03 18:48:52 -0600976 no_dev += per_cpu(no_device, cpu);
977 no_dn += per_cpu(no_dn, cpu);
978 no_cfg += per_cpu(no_cfg_addr, cpu);
979 no_check += per_cpu(ignored_check, cpu);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700980 }
981
982 if (0 == eeh_subsystem_enabled) {
983 seq_printf(m, "EEH Subsystem is globally disabled\n");
984 seq_printf(m, "eeh_total_mmio_ffs=%ld\n", ffs);
985 } else {
986 seq_printf(m, "EEH Subsystem is enabled\n");
Linas Vepstas177bc932005-11-03 18:48:52 -0600987 seq_printf(m,
988 "no device=%ld\n"
989 "no device node=%ld\n"
990 "no config address=%ld\n"
991 "check not wanted=%ld\n"
992 "eeh_total_mmio_ffs=%ld\n"
993 "eeh_false_positives=%ld\n"
994 "eeh_ignored_failures=%ld\n"
995 "eeh_slot_resets=%ld\n",
996 no_dev, no_dn, no_cfg, no_check,
997 ffs, positives, failures, resets);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700998 }
999
1000 return 0;
1001}
1002
1003static int proc_eeh_open(struct inode *inode, struct file *file)
1004{
1005 return single_open(file, proc_eeh_show, NULL);
1006}
1007
1008static struct file_operations proc_eeh_operations = {
1009 .open = proc_eeh_open,
1010 .read = seq_read,
1011 .llseek = seq_lseek,
1012 .release = single_release,
1013};
1014
1015static int __init eeh_init_proc(void)
1016{
1017 struct proc_dir_entry *e;
1018
Paul Mackerras799d6042005-11-10 13:37:51 +11001019 if (platform_is_pseries()) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07001020 e = create_proc_entry("ppc64/eeh", 0, NULL);
1021 if (e)
1022 e->proc_fops = &proc_eeh_operations;
1023 }
1024
1025 return 0;
1026}
1027__initcall(eeh_init_proc);