xref: /linux/arch/powerpc/kernel/eeh_event.c (revision c86085580d5f60d2d3cea9c60d50e284558d3de7)
1317f06deSGavin Shan /*
2317f06deSGavin Shan  * This program is free software; you can redistribute it and/or modify
3317f06deSGavin Shan  * it under the terms of the GNU General Public License as published by
4317f06deSGavin Shan  * the Free Software Foundation; either version 2 of the License, or
5317f06deSGavin Shan  * (at your option) any later version.
6317f06deSGavin Shan  *
7317f06deSGavin Shan  * This program is distributed in the hope that it will be useful,
8317f06deSGavin Shan  * but WITHOUT ANY WARRANTY; without even the implied warranty of
9317f06deSGavin Shan  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
10317f06deSGavin Shan  * GNU General Public License for more details.
11317f06deSGavin Shan  *
12317f06deSGavin Shan  * You should have received a copy of the GNU General Public License
13317f06deSGavin Shan  * along with this program; if not, write to the Free Software
14317f06deSGavin Shan  * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307 USA
15317f06deSGavin Shan  *
16317f06deSGavin Shan  * Copyright (c) 2005 Linas Vepstas <linas@linas.org>
17317f06deSGavin Shan  */
18317f06deSGavin Shan 
19317f06deSGavin Shan #include <linux/delay.h>
20317f06deSGavin Shan #include <linux/list.h>
21317f06deSGavin Shan #include <linux/sched.h>
22*c8608558SGavin Shan #include <linux/semaphore.h>
23317f06deSGavin Shan #include <linux/pci.h>
24317f06deSGavin Shan #include <linux/slab.h>
25317f06deSGavin Shan #include <linux/kthread.h>
26317f06deSGavin Shan #include <asm/eeh_event.h>
27317f06deSGavin Shan #include <asm/ppc-pci.h>
28317f06deSGavin Shan 
29317f06deSGavin Shan /** Overview:
30317f06deSGavin Shan  *  EEH error states may be detected within exception handlers;
31317f06deSGavin Shan  *  however, the recovery processing needs to occur asynchronously
32317f06deSGavin Shan  *  in a normal kernel context and not an interrupt context.
33317f06deSGavin Shan  *  This pair of routines creates an event and queues it onto a
34317f06deSGavin Shan  *  work-queue, where a worker thread can drive recovery.
35317f06deSGavin Shan  */
36317f06deSGavin Shan 
37317f06deSGavin Shan static DEFINE_SPINLOCK(eeh_eventlist_lock);
38*c8608558SGavin Shan static struct semaphore eeh_eventlist_sem;
39317f06deSGavin Shan LIST_HEAD(eeh_eventlist);
40317f06deSGavin Shan 
41317f06deSGavin Shan /**
42317f06deSGavin Shan  * eeh_event_handler - Dispatch EEH events.
43317f06deSGavin Shan  * @dummy - unused
44317f06deSGavin Shan  *
45317f06deSGavin Shan  * The detection of a frozen slot can occur inside an interrupt,
46317f06deSGavin Shan  * where it can be hard to do anything about it.  The goal of this
47317f06deSGavin Shan  * routine is to pull these detection events out of the context
48317f06deSGavin Shan  * of the interrupt handler, and re-dispatch them for processing
49317f06deSGavin Shan  * at a later time in a normal context.
50317f06deSGavin Shan  */
51317f06deSGavin Shan static int eeh_event_handler(void * dummy)
52317f06deSGavin Shan {
53317f06deSGavin Shan 	unsigned long flags;
54317f06deSGavin Shan 	struct eeh_event *event;
55317f06deSGavin Shan 	struct eeh_pe *pe;
56317f06deSGavin Shan 
57*c8608558SGavin Shan 	while (!kthread_should_stop()) {
58*c8608558SGavin Shan 		down(&eeh_eventlist_sem);
59*c8608558SGavin Shan 
60*c8608558SGavin Shan 		/* Fetch EEH event from the queue */
61317f06deSGavin Shan 		spin_lock_irqsave(&eeh_eventlist_lock, flags);
62317f06deSGavin Shan 		event = NULL;
63317f06deSGavin Shan 		if (!list_empty(&eeh_eventlist)) {
64*c8608558SGavin Shan 			event = list_entry(eeh_eventlist.next,
65*c8608558SGavin Shan 					   struct eeh_event, list);
66317f06deSGavin Shan 			list_del(&event->list);
67317f06deSGavin Shan 		}
68317f06deSGavin Shan 		spin_unlock_irqrestore(&eeh_eventlist_lock, flags);
69*c8608558SGavin Shan 		if (!event)
70*c8608558SGavin Shan 			continue;
71317f06deSGavin Shan 
72*c8608558SGavin Shan 		/* We might have event without binding PE */
73317f06deSGavin Shan 		pe = event->pe;
74*c8608558SGavin Shan 		if (pe) {
75317f06deSGavin Shan 			eeh_pe_state_mark(pe, EEH_PE_RECOVERING);
76317f06deSGavin Shan 			pr_info("EEH: Detected PCI bus error on PHB#%d-PE#%x\n",
77317f06deSGavin Shan 				 pe->phb->global_number, pe->addr);
78317f06deSGavin Shan 			eeh_handle_event(pe);
79317f06deSGavin Shan 			eeh_pe_state_clear(pe, EEH_PE_RECOVERING);
80*c8608558SGavin Shan 		} else {
81*c8608558SGavin Shan 			eeh_handle_event(NULL);
82*c8608558SGavin Shan 		}
83317f06deSGavin Shan 
84317f06deSGavin Shan 		kfree(event);
85317f06deSGavin Shan 	}
86317f06deSGavin Shan 
87317f06deSGavin Shan 	return 0;
88317f06deSGavin Shan }
89317f06deSGavin Shan 
90317f06deSGavin Shan /**
91*c8608558SGavin Shan  * eeh_event_init - Start kernel thread to handle EEH events
92317f06deSGavin Shan  *
93317f06deSGavin Shan  * This routine is called to start the kernel thread for processing
94317f06deSGavin Shan  * EEH event.
95317f06deSGavin Shan  */
96*c8608558SGavin Shan int eeh_event_init(void)
97317f06deSGavin Shan {
98*c8608558SGavin Shan 	struct task_struct *t;
99*c8608558SGavin Shan 	int ret = 0;
100*c8608558SGavin Shan 
101*c8608558SGavin Shan 	/* Initialize semaphore */
102*c8608558SGavin Shan 	sema_init(&eeh_eventlist_sem, 0);
103*c8608558SGavin Shan 
104*c8608558SGavin Shan 	t = kthread_run(eeh_event_handler, NULL, "eehd");
105*c8608558SGavin Shan 	if (IS_ERR(t)) {
106*c8608558SGavin Shan 		ret = PTR_ERR(t);
107*c8608558SGavin Shan 		pr_err("%s: Failed to start EEH daemon (%d)\n",
108*c8608558SGavin Shan 			__func__, ret);
109*c8608558SGavin Shan 		return ret;
110*c8608558SGavin Shan 	}
111*c8608558SGavin Shan 
112*c8608558SGavin Shan 	return 0;
113317f06deSGavin Shan }
114317f06deSGavin Shan 
115317f06deSGavin Shan /**
116317f06deSGavin Shan  * eeh_send_failure_event - Generate a PCI error event
117317f06deSGavin Shan  * @pe: EEH PE
118317f06deSGavin Shan  *
119317f06deSGavin Shan  * This routine can be called within an interrupt context;
120317f06deSGavin Shan  * the actual event will be delivered in a normal context
121317f06deSGavin Shan  * (from a workqueue).
122317f06deSGavin Shan  */
123317f06deSGavin Shan int eeh_send_failure_event(struct eeh_pe *pe)
124317f06deSGavin Shan {
125317f06deSGavin Shan 	unsigned long flags;
126317f06deSGavin Shan 	struct eeh_event *event;
127317f06deSGavin Shan 
128317f06deSGavin Shan 	event = kzalloc(sizeof(*event), GFP_ATOMIC);
129317f06deSGavin Shan 	if (!event) {
130317f06deSGavin Shan 		pr_err("EEH: out of memory, event not handled\n");
131317f06deSGavin Shan 		return -ENOMEM;
132317f06deSGavin Shan 	}
133317f06deSGavin Shan 	event->pe = pe;
134317f06deSGavin Shan 
135317f06deSGavin Shan 	/* We may or may not be called in an interrupt context */
136317f06deSGavin Shan 	spin_lock_irqsave(&eeh_eventlist_lock, flags);
137317f06deSGavin Shan 	list_add(&event->list, &eeh_eventlist);
138317f06deSGavin Shan 	spin_unlock_irqrestore(&eeh_eventlist_lock, flags);
139317f06deSGavin Shan 
140*c8608558SGavin Shan 	/* For EEH deamon to knick in */
141*c8608558SGavin Shan 	up(&eeh_eventlist_sem);
142317f06deSGavin Shan 
143317f06deSGavin Shan 	return 0;
144317f06deSGavin Shan }
145