xref: /openbmc/linux/drivers/char/ipmi/ipmi_si_intf.c (revision 27f972d3e00b50639deb4cc1392afaeb08d3cecc)
11da177e4SLinus Torvalds /*
21da177e4SLinus Torvalds  * ipmi_si.c
31da177e4SLinus Torvalds  *
41da177e4SLinus Torvalds  * The interface to the IPMI driver for the system interfaces (KCS, SMIC,
51da177e4SLinus Torvalds  * BT).
61da177e4SLinus Torvalds  *
71da177e4SLinus Torvalds  * Author: MontaVista Software, Inc.
81da177e4SLinus Torvalds  *         Corey Minyard <minyard@mvista.com>
91da177e4SLinus Torvalds  *         source@mvista.com
101da177e4SLinus Torvalds  *
111da177e4SLinus Torvalds  * Copyright 2002 MontaVista Software Inc.
12dba9b4f6SCorey Minyard  * Copyright 2006 IBM Corp., Christian Krafft <krafft@de.ibm.com>
131da177e4SLinus Torvalds  *
141da177e4SLinus Torvalds  *  This program is free software; you can redistribute it and/or modify it
151da177e4SLinus Torvalds  *  under the terms of the GNU General Public License as published by the
161da177e4SLinus Torvalds  *  Free Software Foundation; either version 2 of the License, or (at your
171da177e4SLinus Torvalds  *  option) any later version.
181da177e4SLinus Torvalds  *
191da177e4SLinus Torvalds  *
201da177e4SLinus Torvalds  *  THIS SOFTWARE IS PROVIDED ``AS IS'' AND ANY EXPRESS OR IMPLIED
211da177e4SLinus Torvalds  *  WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
221da177e4SLinus Torvalds  *  MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
231da177e4SLinus Torvalds  *  IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
241da177e4SLinus Torvalds  *  INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
251da177e4SLinus Torvalds  *  BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS
261da177e4SLinus Torvalds  *  OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
271da177e4SLinus Torvalds  *  ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR
281da177e4SLinus Torvalds  *  TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE
291da177e4SLinus Torvalds  *  USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
301da177e4SLinus Torvalds  *
311da177e4SLinus Torvalds  *  You should have received a copy of the GNU General Public License along
321da177e4SLinus Torvalds  *  with this program; if not, write to the Free Software Foundation, Inc.,
331da177e4SLinus Torvalds  *  675 Mass Ave, Cambridge, MA 02139, USA.
341da177e4SLinus Torvalds  */
351da177e4SLinus Torvalds 
361da177e4SLinus Torvalds /*
371da177e4SLinus Torvalds  * This file holds the "policy" for the interface to the SMI state
381da177e4SLinus Torvalds  * machine.  It does the configuration, handles timers and interrupts,
391da177e4SLinus Torvalds  * and drives the real SMI state machine.
401da177e4SLinus Torvalds  */
411da177e4SLinus Torvalds 
421da177e4SLinus Torvalds #include <linux/module.h>
431da177e4SLinus Torvalds #include <linux/moduleparam.h>
441da177e4SLinus Torvalds #include <linux/sched.h>
4507412736SAlexey Dobriyan #include <linux/seq_file.h>
461da177e4SLinus Torvalds #include <linux/timer.h>
471da177e4SLinus Torvalds #include <linux/errno.h>
481da177e4SLinus Torvalds #include <linux/spinlock.h>
491da177e4SLinus Torvalds #include <linux/slab.h>
501da177e4SLinus Torvalds #include <linux/delay.h>
511da177e4SLinus Torvalds #include <linux/list.h>
521da177e4SLinus Torvalds #include <linux/pci.h>
531da177e4SLinus Torvalds #include <linux/ioport.h>
54ea94027bSCorey Minyard #include <linux/notifier.h>
55b0defcdbSCorey Minyard #include <linux/mutex.h>
56e9a705a0SMatt Domsch #include <linux/kthread.h>
571da177e4SLinus Torvalds #include <asm/irq.h>
581da177e4SLinus Torvalds #include <linux/interrupt.h>
591da177e4SLinus Torvalds #include <linux/rcupdate.h>
6016f4232cSZhao Yakui #include <linux/ipmi.h>
611da177e4SLinus Torvalds #include <linux/ipmi_smi.h>
621da177e4SLinus Torvalds #include <asm/io.h>
631da177e4SLinus Torvalds #include "ipmi_si_sm.h"
64b224cd3aSAndrey Panin #include <linux/dmi.h>
65b361e27bSCorey Minyard #include <linux/string.h>
66b361e27bSCorey Minyard #include <linux/ctype.h>
6711c675ceSStephen Rothwell #include <linux/of_device.h>
6811c675ceSStephen Rothwell #include <linux/of_platform.h>
69672d8eafSRob Herring #include <linux/of_address.h>
70672d8eafSRob Herring #include <linux/of_irq.h>
71dba9b4f6SCorey Minyard 
72fdbeb7deSThomas Bogendoerfer #ifdef CONFIG_PARISC
73fdbeb7deSThomas Bogendoerfer #include <asm/hardware.h>	/* for register_parisc_driver() stuff */
74fdbeb7deSThomas Bogendoerfer #include <asm/parisc-device.h>
75fdbeb7deSThomas Bogendoerfer #endif
76fdbeb7deSThomas Bogendoerfer 
77b361e27bSCorey Minyard #define PFX "ipmi_si: "
781da177e4SLinus Torvalds 
791da177e4SLinus Torvalds /* Measure times between events in the driver. */
801da177e4SLinus Torvalds #undef DEBUG_TIMING
811da177e4SLinus Torvalds 
821da177e4SLinus Torvalds /* Call every 10 ms. */
831da177e4SLinus Torvalds #define SI_TIMEOUT_TIME_USEC	10000
841da177e4SLinus Torvalds #define SI_USEC_PER_JIFFY	(1000000/HZ)
851da177e4SLinus Torvalds #define SI_TIMEOUT_JIFFIES	(SI_TIMEOUT_TIME_USEC/SI_USEC_PER_JIFFY)
861da177e4SLinus Torvalds #define SI_SHORT_TIMEOUT_USEC  250 /* .25ms when the SM request a
871da177e4SLinus Torvalds 				      short timeout */
881da177e4SLinus Torvalds 
891da177e4SLinus Torvalds enum si_intf_state {
901da177e4SLinus Torvalds 	SI_NORMAL,
911da177e4SLinus Torvalds 	SI_GETTING_FLAGS,
921da177e4SLinus Torvalds 	SI_GETTING_EVENTS,
931da177e4SLinus Torvalds 	SI_CLEARING_FLAGS,
941da177e4SLinus Torvalds 	SI_GETTING_MESSAGES,
95d9b7e4f7SCorey Minyard 	SI_CHECKING_ENABLES,
96d9b7e4f7SCorey Minyard 	SI_SETTING_ENABLES
971da177e4SLinus Torvalds 	/* FIXME - add watchdog stuff. */
981da177e4SLinus Torvalds };
991da177e4SLinus Torvalds 
1009dbf68f9SCorey Minyard /* Some BT-specific defines we need here. */
1019dbf68f9SCorey Minyard #define IPMI_BT_INTMASK_REG		2
1029dbf68f9SCorey Minyard #define IPMI_BT_INTMASK_CLEAR_IRQ_BIT	2
1039dbf68f9SCorey Minyard #define IPMI_BT_INTMASK_ENABLE_IRQ_BIT	1
1049dbf68f9SCorey Minyard 
1051da177e4SLinus Torvalds enum si_type {
1061da177e4SLinus Torvalds     SI_KCS, SI_SMIC, SI_BT
1071da177e4SLinus Torvalds };
108b361e27bSCorey Minyard static char *si_to_str[] = { "kcs", "smic", "bt" };
1091da177e4SLinus Torvalds 
11050c812b2SCorey Minyard #define DEVICE_NAME "ipmi_si"
1113ae0e0f9SCorey Minyard 
112a1e9c9ddSRob Herring static struct platform_driver ipmi_driver;
11364959e2dSCorey Minyard 
11464959e2dSCorey Minyard /*
11564959e2dSCorey Minyard  * Indexes into stats[] in smi_info below.
11664959e2dSCorey Minyard  */
117ba8ff1c6SCorey Minyard enum si_stat_indexes {
118ba8ff1c6SCorey Minyard 	/*
119ba8ff1c6SCorey Minyard 	 * Number of times the driver requested a timer while an operation
120ba8ff1c6SCorey Minyard 	 * was in progress.
121ba8ff1c6SCorey Minyard 	 */
122ba8ff1c6SCorey Minyard 	SI_STAT_short_timeouts = 0,
12364959e2dSCorey Minyard 
124ba8ff1c6SCorey Minyard 	/*
125ba8ff1c6SCorey Minyard 	 * Number of times the driver requested a timer while nothing was in
126ba8ff1c6SCorey Minyard 	 * progress.
127ba8ff1c6SCorey Minyard 	 */
128ba8ff1c6SCorey Minyard 	SI_STAT_long_timeouts,
12964959e2dSCorey Minyard 
130ba8ff1c6SCorey Minyard 	/* Number of times the interface was idle while being polled. */
131ba8ff1c6SCorey Minyard 	SI_STAT_idles,
132ba8ff1c6SCorey Minyard 
133ba8ff1c6SCorey Minyard 	/* Number of interrupts the driver handled. */
134ba8ff1c6SCorey Minyard 	SI_STAT_interrupts,
135ba8ff1c6SCorey Minyard 
136ba8ff1c6SCorey Minyard 	/* Number of time the driver got an ATTN from the hardware. */
137ba8ff1c6SCorey Minyard 	SI_STAT_attentions,
138ba8ff1c6SCorey Minyard 
139ba8ff1c6SCorey Minyard 	/* Number of times the driver requested flags from the hardware. */
140ba8ff1c6SCorey Minyard 	SI_STAT_flag_fetches,
141ba8ff1c6SCorey Minyard 
142ba8ff1c6SCorey Minyard 	/* Number of times the hardware didn't follow the state machine. */
143ba8ff1c6SCorey Minyard 	SI_STAT_hosed_count,
144ba8ff1c6SCorey Minyard 
145ba8ff1c6SCorey Minyard 	/* Number of completed messages. */
146ba8ff1c6SCorey Minyard 	SI_STAT_complete_transactions,
147ba8ff1c6SCorey Minyard 
148ba8ff1c6SCorey Minyard 	/* Number of IPMI events received from the hardware. */
149ba8ff1c6SCorey Minyard 	SI_STAT_events,
150ba8ff1c6SCorey Minyard 
151ba8ff1c6SCorey Minyard 	/* Number of watchdog pretimeouts. */
152ba8ff1c6SCorey Minyard 	SI_STAT_watchdog_pretimeouts,
153ba8ff1c6SCorey Minyard 
154b3834be5SAdam Buchbinder 	/* Number of asynchronous messages received. */
155ba8ff1c6SCorey Minyard 	SI_STAT_incoming_messages,
156ba8ff1c6SCorey Minyard 
157ba8ff1c6SCorey Minyard 
158ba8ff1c6SCorey Minyard 	/* This *must* remain last, add new values above this. */
159ba8ff1c6SCorey Minyard 	SI_NUM_STATS
160ba8ff1c6SCorey Minyard };
16164959e2dSCorey Minyard 
162c305e3d3SCorey Minyard struct smi_info {
163a9a2c44fSCorey Minyard 	int                    intf_num;
1641da177e4SLinus Torvalds 	ipmi_smi_t             intf;
1651da177e4SLinus Torvalds 	struct si_sm_data      *si_sm;
16681d02b7fSCorey Minyard 	const struct si_sm_handlers *handlers;
1671da177e4SLinus Torvalds 	enum si_type           si_type;
1681da177e4SLinus Torvalds 	spinlock_t             si_lock;
169b874b985SCorey Minyard 	struct ipmi_smi_msg    *waiting_msg;
1701da177e4SLinus Torvalds 	struct ipmi_smi_msg    *curr_msg;
1711da177e4SLinus Torvalds 	enum si_intf_state     si_state;
1721da177e4SLinus Torvalds 
173c305e3d3SCorey Minyard 	/*
174c305e3d3SCorey Minyard 	 * Used to handle the various types of I/O that can occur with
175c305e3d3SCorey Minyard 	 * IPMI
176c305e3d3SCorey Minyard 	 */
1771da177e4SLinus Torvalds 	struct si_sm_io io;
1781da177e4SLinus Torvalds 	int (*io_setup)(struct smi_info *info);
1791da177e4SLinus Torvalds 	void (*io_cleanup)(struct smi_info *info);
1801da177e4SLinus Torvalds 	int (*irq_setup)(struct smi_info *info);
1811da177e4SLinus Torvalds 	void (*irq_cleanup)(struct smi_info *info);
1821da177e4SLinus Torvalds 	unsigned int io_size;
1835fedc4a2SMatthew Garrett 	enum ipmi_addr_src addr_source; /* ACPI, PCI, SMBIOS, hardcode, etc. */
184b0defcdbSCorey Minyard 	void (*addr_source_cleanup)(struct smi_info *info);
185b0defcdbSCorey Minyard 	void *addr_source_data;
1861da177e4SLinus Torvalds 
187c305e3d3SCorey Minyard 	/*
188c305e3d3SCorey Minyard 	 * Per-OEM handler, called from handle_flags().  Returns 1
189c305e3d3SCorey Minyard 	 * when handle_flags() needs to be re-run or 0 indicating it
190c305e3d3SCorey Minyard 	 * set si_state itself.
1913ae0e0f9SCorey Minyard 	 */
1923ae0e0f9SCorey Minyard 	int (*oem_data_avail_handler)(struct smi_info *smi_info);
1933ae0e0f9SCorey Minyard 
194c305e3d3SCorey Minyard 	/*
195c305e3d3SCorey Minyard 	 * Flags from the last GET_MSG_FLAGS command, used when an ATTN
196c305e3d3SCorey Minyard 	 * is set to hold the flags until we are done handling everything
197c305e3d3SCorey Minyard 	 * from the flags.
198c305e3d3SCorey Minyard 	 */
1991da177e4SLinus Torvalds #define RECEIVE_MSG_AVAIL	0x01
2001da177e4SLinus Torvalds #define EVENT_MSG_BUFFER_FULL	0x02
2011da177e4SLinus Torvalds #define WDT_PRE_TIMEOUT_INT	0x08
2023ae0e0f9SCorey Minyard #define OEM0_DATA_AVAIL     0x20
2033ae0e0f9SCorey Minyard #define OEM1_DATA_AVAIL     0x40
2043ae0e0f9SCorey Minyard #define OEM2_DATA_AVAIL     0x80
2053ae0e0f9SCorey Minyard #define OEM_DATA_AVAIL      (OEM0_DATA_AVAIL | \
2063ae0e0f9SCorey Minyard 			     OEM1_DATA_AVAIL | \
2073ae0e0f9SCorey Minyard 			     OEM2_DATA_AVAIL)
2081da177e4SLinus Torvalds 	unsigned char       msg_flags;
2091da177e4SLinus Torvalds 
21040112ae7SCorey Minyard 	/* Does the BMC have an event buffer? */
2117aefac26SCorey Minyard 	bool		    has_event_buffer;
21240112ae7SCorey Minyard 
213c305e3d3SCorey Minyard 	/*
214c305e3d3SCorey Minyard 	 * If set to true, this will request events the next time the
215c305e3d3SCorey Minyard 	 * state machine is idle.
216c305e3d3SCorey Minyard 	 */
2171da177e4SLinus Torvalds 	atomic_t            req_events;
2181da177e4SLinus Torvalds 
219c305e3d3SCorey Minyard 	/*
220c305e3d3SCorey Minyard 	 * If true, run the state machine to completion on every send
221c305e3d3SCorey Minyard 	 * call.  Generally used after a panic to make sure stuff goes
222c305e3d3SCorey Minyard 	 * out.
223c305e3d3SCorey Minyard 	 */
2247aefac26SCorey Minyard 	bool                run_to_completion;
2251da177e4SLinus Torvalds 
2261da177e4SLinus Torvalds 	/* The I/O port of an SI interface. */
2271da177e4SLinus Torvalds 	int                 port;
2281da177e4SLinus Torvalds 
229c305e3d3SCorey Minyard 	/*
230c305e3d3SCorey Minyard 	 * The space between start addresses of the two ports.  For
231c305e3d3SCorey Minyard 	 * instance, if the first port is 0xca2 and the spacing is 4, then
232c305e3d3SCorey Minyard 	 * the second port is 0xca6.
233c305e3d3SCorey Minyard 	 */
2341da177e4SLinus Torvalds 	unsigned int        spacing;
2351da177e4SLinus Torvalds 
2361da177e4SLinus Torvalds 	/* zero if no irq; */
2371da177e4SLinus Torvalds 	int                 irq;
2381da177e4SLinus Torvalds 
2391da177e4SLinus Torvalds 	/* The timer for this si. */
2401da177e4SLinus Torvalds 	struct timer_list   si_timer;
2411da177e4SLinus Torvalds 
24248e8ac29SBodo Stroesser 	/* This flag is set, if the timer is running (timer_pending() isn't enough) */
24348e8ac29SBodo Stroesser 	bool		    timer_running;
24448e8ac29SBodo Stroesser 
2451da177e4SLinus Torvalds 	/* The time (in jiffies) the last timeout occurred at. */
2461da177e4SLinus Torvalds 	unsigned long       last_timeout_jiffies;
2471da177e4SLinus Torvalds 
24889986496SCorey Minyard 	/* Are we waiting for the events, pretimeouts, received msgs? */
24989986496SCorey Minyard 	atomic_t            need_watch;
25089986496SCorey Minyard 
251c305e3d3SCorey Minyard 	/*
252c305e3d3SCorey Minyard 	 * The driver will disable interrupts when it gets into a
253c305e3d3SCorey Minyard 	 * situation where it cannot handle messages due to lack of
254c305e3d3SCorey Minyard 	 * memory.  Once that situation clears up, it will re-enable
255c305e3d3SCorey Minyard 	 * interrupts.
256c305e3d3SCorey Minyard 	 */
2577aefac26SCorey Minyard 	bool interrupt_disabled;
2581da177e4SLinus Torvalds 
259d9b7e4f7SCorey Minyard 	/*
260d9b7e4f7SCorey Minyard 	 * Does the BMC support events?
261d9b7e4f7SCorey Minyard 	 */
262d9b7e4f7SCorey Minyard 	bool supports_event_msg_buff;
263d9b7e4f7SCorey Minyard 
264a8df150cSCorey Minyard 	/*
265d0882897SCorey Minyard 	 * Can we disable interrupts the global enables receive irq
266d0882897SCorey Minyard 	 * bit?  There are currently two forms of brokenness, some
267d0882897SCorey Minyard 	 * systems cannot disable the bit (which is technically within
268d0882897SCorey Minyard 	 * the spec but a bad idea) and some systems have the bit
269d0882897SCorey Minyard 	 * forced to zero even though interrupts work (which is
270d0882897SCorey Minyard 	 * clearly outside the spec).  The next bool tells which form
271d0882897SCorey Minyard 	 * of brokenness is present.
2721e7d6a45SCorey Minyard 	 */
273d0882897SCorey Minyard 	bool cannot_disable_irq;
274d0882897SCorey Minyard 
275d0882897SCorey Minyard 	/*
276d0882897SCorey Minyard 	 * Some systems are broken and cannot set the irq enable
277d0882897SCorey Minyard 	 * bit, even if they support interrupts.
278d0882897SCorey Minyard 	 */
279d0882897SCorey Minyard 	bool irq_enable_broken;
2801e7d6a45SCorey Minyard 
2811e7d6a45SCorey Minyard 	/*
282a8df150cSCorey Minyard 	 * Did we get an attention that we did not handle?
283a8df150cSCorey Minyard 	 */
284a8df150cSCorey Minyard 	bool got_attn;
285a8df150cSCorey Minyard 
28650c812b2SCorey Minyard 	/* From the get device id response... */
2873ae0e0f9SCorey Minyard 	struct ipmi_device_id device_id;
2881da177e4SLinus Torvalds 
28950c812b2SCorey Minyard 	/* Driver model stuff. */
29050c812b2SCorey Minyard 	struct device *dev;
29150c812b2SCorey Minyard 	struct platform_device *pdev;
29250c812b2SCorey Minyard 
293c305e3d3SCorey Minyard 	/*
294c305e3d3SCorey Minyard 	 * True if we allocated the device, false if it came from
295c305e3d3SCorey Minyard 	 * someplace else (like PCI).
296c305e3d3SCorey Minyard 	 */
2977aefac26SCorey Minyard 	bool dev_registered;
29850c812b2SCorey Minyard 
2991da177e4SLinus Torvalds 	/* Slave address, could be reported from DMI. */
3001da177e4SLinus Torvalds 	unsigned char slave_addr;
3011da177e4SLinus Torvalds 
3021da177e4SLinus Torvalds 	/* Counters and things for the proc filesystem. */
30364959e2dSCorey Minyard 	atomic_t stats[SI_NUM_STATS];
304a9a2c44fSCorey Minyard 
305e9a705a0SMatt Domsch 	struct task_struct *thread;
306b0defcdbSCorey Minyard 
307b0defcdbSCorey Minyard 	struct list_head link;
30816f4232cSZhao Yakui 	union ipmi_smi_info_union addr_info;
3091da177e4SLinus Torvalds };
3101da177e4SLinus Torvalds 
31164959e2dSCorey Minyard #define smi_inc_stat(smi, stat) \
31264959e2dSCorey Minyard 	atomic_inc(&(smi)->stats[SI_STAT_ ## stat])
31364959e2dSCorey Minyard #define smi_get_stat(smi, stat) \
31464959e2dSCorey Minyard 	((unsigned int) atomic_read(&(smi)->stats[SI_STAT_ ## stat]))
31564959e2dSCorey Minyard 
316a51f4a81SCorey Minyard #define SI_MAX_PARMS 4
317a51f4a81SCorey Minyard 
318a51f4a81SCorey Minyard static int force_kipmid[SI_MAX_PARMS];
319a51f4a81SCorey Minyard static int num_force_kipmid;
32056480287SMatthew Garrett #ifdef CONFIG_PCI
3217aefac26SCorey Minyard static bool pci_registered;
32256480287SMatthew Garrett #endif
323fdbeb7deSThomas Bogendoerfer #ifdef CONFIG_PARISC
3247aefac26SCorey Minyard static bool parisc_registered;
325fdbeb7deSThomas Bogendoerfer #endif
326a51f4a81SCorey Minyard 
327ae74e823SMartin Wilck static unsigned int kipmid_max_busy_us[SI_MAX_PARMS];
328ae74e823SMartin Wilck static int num_max_busy_us;
329ae74e823SMartin Wilck 
3307aefac26SCorey Minyard static bool unload_when_empty = true;
331b361e27bSCorey Minyard 
3322407d77aSMatthew Garrett static int add_smi(struct smi_info *smi);
333b0defcdbSCorey Minyard static int try_smi_init(struct smi_info *smi);
334b361e27bSCorey Minyard static void cleanup_one_si(struct smi_info *to_clean);
335d2478521SCorey Minyard static void cleanup_ipmi_si(void);
336b0defcdbSCorey Minyard 
337f93aae9fSJohn Stultz #ifdef DEBUG_TIMING
338f93aae9fSJohn Stultz void debug_timestamp(char *msg)
339f93aae9fSJohn Stultz {
34048862ea2SJohn Stultz 	struct timespec64 t;
341f93aae9fSJohn Stultz 
34248862ea2SJohn Stultz 	getnstimeofday64(&t);
34348862ea2SJohn Stultz 	pr_debug("**%s: %lld.%9.9ld\n", msg, (long long) t.tv_sec, t.tv_nsec);
344f93aae9fSJohn Stultz }
345f93aae9fSJohn Stultz #else
346f93aae9fSJohn Stultz #define debug_timestamp(x)
347f93aae9fSJohn Stultz #endif
348f93aae9fSJohn Stultz 
349e041c683SAlan Stern static ATOMIC_NOTIFIER_HEAD(xaction_notifier_list);
350ea94027bSCorey Minyard static int register_xaction_notifier(struct notifier_block *nb)
351ea94027bSCorey Minyard {
352e041c683SAlan Stern 	return atomic_notifier_chain_register(&xaction_notifier_list, nb);
353ea94027bSCorey Minyard }
354ea94027bSCorey Minyard 
3551da177e4SLinus Torvalds static void deliver_recv_msg(struct smi_info *smi_info,
3561da177e4SLinus Torvalds 			     struct ipmi_smi_msg *msg)
3571da177e4SLinus Torvalds {
3587adf579cSCorey Minyard 	/* Deliver the message to the upper layer. */
359968bf7ccSCorey Minyard 	if (smi_info->intf)
360a747c5abSJiri Kosina 		ipmi_smi_msg_received(smi_info->intf, msg);
361968bf7ccSCorey Minyard 	else
362968bf7ccSCorey Minyard 		ipmi_free_smi_msg(msg);
363a747c5abSJiri Kosina }
3641da177e4SLinus Torvalds 
3654d7cbac7SCorey Minyard static void return_hosed_msg(struct smi_info *smi_info, int cCode)
3661da177e4SLinus Torvalds {
3671da177e4SLinus Torvalds 	struct ipmi_smi_msg *msg = smi_info->curr_msg;
3681da177e4SLinus Torvalds 
3694d7cbac7SCorey Minyard 	if (cCode < 0 || cCode > IPMI_ERR_UNSPECIFIED)
3704d7cbac7SCorey Minyard 		cCode = IPMI_ERR_UNSPECIFIED;
3714d7cbac7SCorey Minyard 	/* else use it as is */
3724d7cbac7SCorey Minyard 
37325985edcSLucas De Marchi 	/* Make it a response */
3741da177e4SLinus Torvalds 	msg->rsp[0] = msg->data[0] | 4;
3751da177e4SLinus Torvalds 	msg->rsp[1] = msg->data[1];
3764d7cbac7SCorey Minyard 	msg->rsp[2] = cCode;
3771da177e4SLinus Torvalds 	msg->rsp_size = 3;
3781da177e4SLinus Torvalds 
3791da177e4SLinus Torvalds 	smi_info->curr_msg = NULL;
3801da177e4SLinus Torvalds 	deliver_recv_msg(smi_info, msg);
3811da177e4SLinus Torvalds }
3821da177e4SLinus Torvalds 
3831da177e4SLinus Torvalds static enum si_sm_result start_next_msg(struct smi_info *smi_info)
3841da177e4SLinus Torvalds {
3851da177e4SLinus Torvalds 	int              rv;
3861da177e4SLinus Torvalds 
387b874b985SCorey Minyard 	if (!smi_info->waiting_msg) {
3881da177e4SLinus Torvalds 		smi_info->curr_msg = NULL;
3891da177e4SLinus Torvalds 		rv = SI_SM_IDLE;
3901da177e4SLinus Torvalds 	} else {
3911da177e4SLinus Torvalds 		int err;
3921da177e4SLinus Torvalds 
393b874b985SCorey Minyard 		smi_info->curr_msg = smi_info->waiting_msg;
394b874b985SCorey Minyard 		smi_info->waiting_msg = NULL;
395f93aae9fSJohn Stultz 		debug_timestamp("Start2");
396e041c683SAlan Stern 		err = atomic_notifier_call_chain(&xaction_notifier_list,
397e041c683SAlan Stern 				0, smi_info);
398ea94027bSCorey Minyard 		if (err & NOTIFY_STOP_MASK) {
399ea94027bSCorey Minyard 			rv = SI_SM_CALL_WITHOUT_DELAY;
400ea94027bSCorey Minyard 			goto out;
401ea94027bSCorey Minyard 		}
4021da177e4SLinus Torvalds 		err = smi_info->handlers->start_transaction(
4031da177e4SLinus Torvalds 			smi_info->si_sm,
4041da177e4SLinus Torvalds 			smi_info->curr_msg->data,
4051da177e4SLinus Torvalds 			smi_info->curr_msg->data_size);
406c305e3d3SCorey Minyard 		if (err)
4074d7cbac7SCorey Minyard 			return_hosed_msg(smi_info, err);
4081da177e4SLinus Torvalds 
4091da177e4SLinus Torvalds 		rv = SI_SM_CALL_WITHOUT_DELAY;
4101da177e4SLinus Torvalds 	}
411ea94027bSCorey Minyard  out:
4121da177e4SLinus Torvalds 	return rv;
4131da177e4SLinus Torvalds }
4141da177e4SLinus Torvalds 
4150cfec916SCorey Minyard static void smi_mod_timer(struct smi_info *smi_info, unsigned long new_val)
4160cfec916SCorey Minyard {
4170cfec916SCorey Minyard 	smi_info->last_timeout_jiffies = jiffies;
4180cfec916SCorey Minyard 	mod_timer(&smi_info->si_timer, new_val);
4190cfec916SCorey Minyard 	smi_info->timer_running = true;
4200cfec916SCorey Minyard }
4210cfec916SCorey Minyard 
4220cfec916SCorey Minyard /*
4230cfec916SCorey Minyard  * Start a new message and (re)start the timer and thread.
4240cfec916SCorey Minyard  */
4250cfec916SCorey Minyard static void start_new_msg(struct smi_info *smi_info, unsigned char *msg,
4260cfec916SCorey Minyard 			  unsigned int size)
4270cfec916SCorey Minyard {
4280cfec916SCorey Minyard 	smi_mod_timer(smi_info, jiffies + SI_TIMEOUT_JIFFIES);
4290cfec916SCorey Minyard 
4300cfec916SCorey Minyard 	if (smi_info->thread)
4310cfec916SCorey Minyard 		wake_up_process(smi_info->thread);
4320cfec916SCorey Minyard 
4330cfec916SCorey Minyard 	smi_info->handlers->start_transaction(smi_info->si_sm, msg, size);
4340cfec916SCorey Minyard }
4350cfec916SCorey Minyard 
4360cfec916SCorey Minyard static void start_check_enables(struct smi_info *smi_info, bool start_timer)
437ee6cd5f8SCorey Minyard {
438ee6cd5f8SCorey Minyard 	unsigned char msg[2];
439ee6cd5f8SCorey Minyard 
440ee6cd5f8SCorey Minyard 	msg[0] = (IPMI_NETFN_APP_REQUEST << 2);
441ee6cd5f8SCorey Minyard 	msg[1] = IPMI_GET_BMC_GLOBAL_ENABLES_CMD;
442ee6cd5f8SCorey Minyard 
4430cfec916SCorey Minyard 	if (start_timer)
4440cfec916SCorey Minyard 		start_new_msg(smi_info, msg, 2);
4450cfec916SCorey Minyard 	else
446ee6cd5f8SCorey Minyard 		smi_info->handlers->start_transaction(smi_info->si_sm, msg, 2);
447d9b7e4f7SCorey Minyard 	smi_info->si_state = SI_CHECKING_ENABLES;
448ee6cd5f8SCorey Minyard }
449ee6cd5f8SCorey Minyard 
4500cfec916SCorey Minyard static void start_clear_flags(struct smi_info *smi_info, bool start_timer)
4511da177e4SLinus Torvalds {
4521da177e4SLinus Torvalds 	unsigned char msg[3];
4531da177e4SLinus Torvalds 
4541da177e4SLinus Torvalds 	/* Make sure the watchdog pre-timeout flag is not set at startup. */
4551da177e4SLinus Torvalds 	msg[0] = (IPMI_NETFN_APP_REQUEST << 2);
4561da177e4SLinus Torvalds 	msg[1] = IPMI_CLEAR_MSG_FLAGS_CMD;
4571da177e4SLinus Torvalds 	msg[2] = WDT_PRE_TIMEOUT_INT;
4581da177e4SLinus Torvalds 
4590cfec916SCorey Minyard 	if (start_timer)
4600cfec916SCorey Minyard 		start_new_msg(smi_info, msg, 3);
4610cfec916SCorey Minyard 	else
4621da177e4SLinus Torvalds 		smi_info->handlers->start_transaction(smi_info->si_sm, msg, 3);
4631da177e4SLinus Torvalds 	smi_info->si_state = SI_CLEARING_FLAGS;
4641da177e4SLinus Torvalds }
4651da177e4SLinus Torvalds 
466968bf7ccSCorey Minyard static void start_getting_msg_queue(struct smi_info *smi_info)
467968bf7ccSCorey Minyard {
468968bf7ccSCorey Minyard 	smi_info->curr_msg->data[0] = (IPMI_NETFN_APP_REQUEST << 2);
469968bf7ccSCorey Minyard 	smi_info->curr_msg->data[1] = IPMI_GET_MSG_CMD;
470968bf7ccSCorey Minyard 	smi_info->curr_msg->data_size = 2;
471968bf7ccSCorey Minyard 
4720cfec916SCorey Minyard 	start_new_msg(smi_info, smi_info->curr_msg->data,
473968bf7ccSCorey Minyard 		      smi_info->curr_msg->data_size);
474968bf7ccSCorey Minyard 	smi_info->si_state = SI_GETTING_MESSAGES;
475968bf7ccSCorey Minyard }
476968bf7ccSCorey Minyard 
477968bf7ccSCorey Minyard static void start_getting_events(struct smi_info *smi_info)
478968bf7ccSCorey Minyard {
479968bf7ccSCorey Minyard 	smi_info->curr_msg->data[0] = (IPMI_NETFN_APP_REQUEST << 2);
480968bf7ccSCorey Minyard 	smi_info->curr_msg->data[1] = IPMI_READ_EVENT_MSG_BUFFER_CMD;
481968bf7ccSCorey Minyard 	smi_info->curr_msg->data_size = 2;
482968bf7ccSCorey Minyard 
4830cfec916SCorey Minyard 	start_new_msg(smi_info, smi_info->curr_msg->data,
484968bf7ccSCorey Minyard 		      smi_info->curr_msg->data_size);
485968bf7ccSCorey Minyard 	smi_info->si_state = SI_GETTING_EVENTS;
486968bf7ccSCorey Minyard }
487968bf7ccSCorey Minyard 
488c305e3d3SCorey Minyard /*
489c305e3d3SCorey Minyard  * When we have a situtaion where we run out of memory and cannot
490c305e3d3SCorey Minyard  * allocate messages, we just leave them in the BMC and run the system
491c305e3d3SCorey Minyard  * polled until we can allocate some memory.  Once we have some
492c305e3d3SCorey Minyard  * memory, we will re-enable the interrupt.
4931e7d6a45SCorey Minyard  *
4941e7d6a45SCorey Minyard  * Note that we cannot just use disable_irq(), since the interrupt may
4951e7d6a45SCorey Minyard  * be shared.
496c305e3d3SCorey Minyard  */
4970cfec916SCorey Minyard static inline bool disable_si_irq(struct smi_info *smi_info, bool start_timer)
4981da177e4SLinus Torvalds {
4991da177e4SLinus Torvalds 	if ((smi_info->irq) && (!smi_info->interrupt_disabled)) {
5007aefac26SCorey Minyard 		smi_info->interrupt_disabled = true;
5010cfec916SCorey Minyard 		start_check_enables(smi_info, start_timer);
502968bf7ccSCorey Minyard 		return true;
5031da177e4SLinus Torvalds 	}
504968bf7ccSCorey Minyard 	return false;
5051da177e4SLinus Torvalds }
5061da177e4SLinus Torvalds 
507968bf7ccSCorey Minyard static inline bool enable_si_irq(struct smi_info *smi_info)
5081da177e4SLinus Torvalds {
5091da177e4SLinus Torvalds 	if ((smi_info->irq) && (smi_info->interrupt_disabled)) {
5107aefac26SCorey Minyard 		smi_info->interrupt_disabled = false;
5110cfec916SCorey Minyard 		start_check_enables(smi_info, true);
512968bf7ccSCorey Minyard 		return true;
5131da177e4SLinus Torvalds 	}
514968bf7ccSCorey Minyard 	return false;
515968bf7ccSCorey Minyard }
516968bf7ccSCorey Minyard 
517968bf7ccSCorey Minyard /*
518968bf7ccSCorey Minyard  * Allocate a message.  If unable to allocate, start the interrupt
519968bf7ccSCorey Minyard  * disable process and return NULL.  If able to allocate but
520968bf7ccSCorey Minyard  * interrupts are disabled, free the message and return NULL after
521968bf7ccSCorey Minyard  * starting the interrupt enable process.
522968bf7ccSCorey Minyard  */
523968bf7ccSCorey Minyard static struct ipmi_smi_msg *alloc_msg_handle_irq(struct smi_info *smi_info)
524968bf7ccSCorey Minyard {
525968bf7ccSCorey Minyard 	struct ipmi_smi_msg *msg;
526968bf7ccSCorey Minyard 
527968bf7ccSCorey Minyard 	msg = ipmi_alloc_smi_msg();
528968bf7ccSCorey Minyard 	if (!msg) {
5290cfec916SCorey Minyard 		if (!disable_si_irq(smi_info, true))
530968bf7ccSCorey Minyard 			smi_info->si_state = SI_NORMAL;
531968bf7ccSCorey Minyard 	} else if (enable_si_irq(smi_info)) {
532968bf7ccSCorey Minyard 		ipmi_free_smi_msg(msg);
533968bf7ccSCorey Minyard 		msg = NULL;
534968bf7ccSCorey Minyard 	}
535968bf7ccSCorey Minyard 	return msg;
5361da177e4SLinus Torvalds }
5371da177e4SLinus Torvalds 
5381da177e4SLinus Torvalds static void handle_flags(struct smi_info *smi_info)
5391da177e4SLinus Torvalds {
5403ae0e0f9SCorey Minyard  retry:
5411da177e4SLinus Torvalds 	if (smi_info->msg_flags & WDT_PRE_TIMEOUT_INT) {
5421da177e4SLinus Torvalds 		/* Watchdog pre-timeout */
54364959e2dSCorey Minyard 		smi_inc_stat(smi_info, watchdog_pretimeouts);
5441da177e4SLinus Torvalds 
5450cfec916SCorey Minyard 		start_clear_flags(smi_info, true);
5461da177e4SLinus Torvalds 		smi_info->msg_flags &= ~WDT_PRE_TIMEOUT_INT;
547968bf7ccSCorey Minyard 		if (smi_info->intf)
5481da177e4SLinus Torvalds 			ipmi_smi_watchdog_pretimeout(smi_info->intf);
5491da177e4SLinus Torvalds 	} else if (smi_info->msg_flags & RECEIVE_MSG_AVAIL) {
5501da177e4SLinus Torvalds 		/* Messages available. */
551968bf7ccSCorey Minyard 		smi_info->curr_msg = alloc_msg_handle_irq(smi_info);
552968bf7ccSCorey Minyard 		if (!smi_info->curr_msg)
5531da177e4SLinus Torvalds 			return;
5541da177e4SLinus Torvalds 
555968bf7ccSCorey Minyard 		start_getting_msg_queue(smi_info);
5561da177e4SLinus Torvalds 	} else if (smi_info->msg_flags & EVENT_MSG_BUFFER_FULL) {
5571da177e4SLinus Torvalds 		/* Events available. */
558968bf7ccSCorey Minyard 		smi_info->curr_msg = alloc_msg_handle_irq(smi_info);
559968bf7ccSCorey Minyard 		if (!smi_info->curr_msg)
5601da177e4SLinus Torvalds 			return;
5611da177e4SLinus Torvalds 
562968bf7ccSCorey Minyard 		start_getting_events(smi_info);
5634064d5efSCorey Minyard 	} else if (smi_info->msg_flags & OEM_DATA_AVAIL &&
5644064d5efSCorey Minyard 		   smi_info->oem_data_avail_handler) {
5653ae0e0f9SCorey Minyard 		if (smi_info->oem_data_avail_handler(smi_info))
5663ae0e0f9SCorey Minyard 			goto retry;
567c305e3d3SCorey Minyard 	} else
5681da177e4SLinus Torvalds 		smi_info->si_state = SI_NORMAL;
5691da177e4SLinus Torvalds }
5701da177e4SLinus Torvalds 
571d9b7e4f7SCorey Minyard /*
572d9b7e4f7SCorey Minyard  * Global enables we care about.
573d9b7e4f7SCorey Minyard  */
574d9b7e4f7SCorey Minyard #define GLOBAL_ENABLES_MASK (IPMI_BMC_EVT_MSG_BUFF | IPMI_BMC_RCV_MSG_INTR | \
575d9b7e4f7SCorey Minyard 			     IPMI_BMC_EVT_MSG_INTR)
576d9b7e4f7SCorey Minyard 
57795c97b59SCorey Minyard static u8 current_global_enables(struct smi_info *smi_info, u8 base,
57895c97b59SCorey Minyard 				 bool *irq_on)
579d9b7e4f7SCorey Minyard {
580d9b7e4f7SCorey Minyard 	u8 enables = 0;
581d9b7e4f7SCorey Minyard 
582d9b7e4f7SCorey Minyard 	if (smi_info->supports_event_msg_buff)
583d9b7e4f7SCorey Minyard 		enables |= IPMI_BMC_EVT_MSG_BUFF;
584d9b7e4f7SCorey Minyard 
585d0882897SCorey Minyard 	if (((smi_info->irq && !smi_info->interrupt_disabled) ||
586d0882897SCorey Minyard 	     smi_info->cannot_disable_irq) &&
587d0882897SCorey Minyard 	    !smi_info->irq_enable_broken)
588d9b7e4f7SCorey Minyard 		enables |= IPMI_BMC_RCV_MSG_INTR;
589d9b7e4f7SCorey Minyard 
590d9b7e4f7SCorey Minyard 	if (smi_info->supports_event_msg_buff &&
591d0882897SCorey Minyard 	    smi_info->irq && !smi_info->interrupt_disabled &&
592d0882897SCorey Minyard 	    !smi_info->irq_enable_broken)
593d9b7e4f7SCorey Minyard 		enables |= IPMI_BMC_EVT_MSG_INTR;
594d9b7e4f7SCorey Minyard 
59595c97b59SCorey Minyard 	*irq_on = enables & (IPMI_BMC_EVT_MSG_INTR | IPMI_BMC_RCV_MSG_INTR);
59695c97b59SCorey Minyard 
597d9b7e4f7SCorey Minyard 	return enables;
598d9b7e4f7SCorey Minyard }
599d9b7e4f7SCorey Minyard 
60095c97b59SCorey Minyard static void check_bt_irq(struct smi_info *smi_info, bool irq_on)
60195c97b59SCorey Minyard {
60295c97b59SCorey Minyard 	u8 irqstate = smi_info->io.inputb(&smi_info->io, IPMI_BT_INTMASK_REG);
60395c97b59SCorey Minyard 
60495c97b59SCorey Minyard 	irqstate &= IPMI_BT_INTMASK_ENABLE_IRQ_BIT;
60595c97b59SCorey Minyard 
60695c97b59SCorey Minyard 	if ((bool)irqstate == irq_on)
60795c97b59SCorey Minyard 		return;
60895c97b59SCorey Minyard 
60995c97b59SCorey Minyard 	if (irq_on)
61095c97b59SCorey Minyard 		smi_info->io.outputb(&smi_info->io, IPMI_BT_INTMASK_REG,
61195c97b59SCorey Minyard 				     IPMI_BT_INTMASK_ENABLE_IRQ_BIT);
61295c97b59SCorey Minyard 	else
61395c97b59SCorey Minyard 		smi_info->io.outputb(&smi_info->io, IPMI_BT_INTMASK_REG, 0);
61495c97b59SCorey Minyard }
61595c97b59SCorey Minyard 
6161da177e4SLinus Torvalds static void handle_transaction_done(struct smi_info *smi_info)
6171da177e4SLinus Torvalds {
6181da177e4SLinus Torvalds 	struct ipmi_smi_msg *msg;
6191da177e4SLinus Torvalds 
620f93aae9fSJohn Stultz 	debug_timestamp("Done");
6211da177e4SLinus Torvalds 	switch (smi_info->si_state) {
6221da177e4SLinus Torvalds 	case SI_NORMAL:
6231da177e4SLinus Torvalds 		if (!smi_info->curr_msg)
6241da177e4SLinus Torvalds 			break;
6251da177e4SLinus Torvalds 
6261da177e4SLinus Torvalds 		smi_info->curr_msg->rsp_size
6271da177e4SLinus Torvalds 			= smi_info->handlers->get_result(
6281da177e4SLinus Torvalds 				smi_info->si_sm,
6291da177e4SLinus Torvalds 				smi_info->curr_msg->rsp,
6301da177e4SLinus Torvalds 				IPMI_MAX_MSG_LENGTH);
6311da177e4SLinus Torvalds 
632c305e3d3SCorey Minyard 		/*
633c305e3d3SCorey Minyard 		 * Do this here becase deliver_recv_msg() releases the
634c305e3d3SCorey Minyard 		 * lock, and a new message can be put in during the
635c305e3d3SCorey Minyard 		 * time the lock is released.
636c305e3d3SCorey Minyard 		 */
6371da177e4SLinus Torvalds 		msg = smi_info->curr_msg;
6381da177e4SLinus Torvalds 		smi_info->curr_msg = NULL;
6391da177e4SLinus Torvalds 		deliver_recv_msg(smi_info, msg);
6401da177e4SLinus Torvalds 		break;
6411da177e4SLinus Torvalds 
6421da177e4SLinus Torvalds 	case SI_GETTING_FLAGS:
6431da177e4SLinus Torvalds 	{
6441da177e4SLinus Torvalds 		unsigned char msg[4];
6451da177e4SLinus Torvalds 		unsigned int  len;
6461da177e4SLinus Torvalds 
6471da177e4SLinus Torvalds 		/* We got the flags from the SMI, now handle them. */
6481da177e4SLinus Torvalds 		len = smi_info->handlers->get_result(smi_info->si_sm, msg, 4);
6491da177e4SLinus Torvalds 		if (msg[2] != 0) {
650c305e3d3SCorey Minyard 			/* Error fetching flags, just give up for now. */
6511da177e4SLinus Torvalds 			smi_info->si_state = SI_NORMAL;
6521da177e4SLinus Torvalds 		} else if (len < 4) {
653c305e3d3SCorey Minyard 			/*
654c305e3d3SCorey Minyard 			 * Hmm, no flags.  That's technically illegal, but
655c305e3d3SCorey Minyard 			 * don't use uninitialized data.
656c305e3d3SCorey Minyard 			 */
6571da177e4SLinus Torvalds 			smi_info->si_state = SI_NORMAL;
6581da177e4SLinus Torvalds 		} else {
6591da177e4SLinus Torvalds 			smi_info->msg_flags = msg[3];
6601da177e4SLinus Torvalds 			handle_flags(smi_info);
6611da177e4SLinus Torvalds 		}
6621da177e4SLinus Torvalds 		break;
6631da177e4SLinus Torvalds 	}
6641da177e4SLinus Torvalds 
6651da177e4SLinus Torvalds 	case SI_CLEARING_FLAGS:
6661da177e4SLinus Torvalds 	{
6671da177e4SLinus Torvalds 		unsigned char msg[3];
6681da177e4SLinus Torvalds 
6691da177e4SLinus Torvalds 		/* We cleared the flags. */
6701da177e4SLinus Torvalds 		smi_info->handlers->get_result(smi_info->si_sm, msg, 3);
6711da177e4SLinus Torvalds 		if (msg[2] != 0) {
6721da177e4SLinus Torvalds 			/* Error clearing flags */
673279fbd0cSMyron Stowe 			dev_warn(smi_info->dev,
674279fbd0cSMyron Stowe 				 "Error clearing flags: %2.2x\n", msg[2]);
6751da177e4SLinus Torvalds 		}
6761da177e4SLinus Torvalds 		smi_info->si_state = SI_NORMAL;
6771da177e4SLinus Torvalds 		break;
6781da177e4SLinus Torvalds 	}
6791da177e4SLinus Torvalds 
6801da177e4SLinus Torvalds 	case SI_GETTING_EVENTS:
6811da177e4SLinus Torvalds 	{
6821da177e4SLinus Torvalds 		smi_info->curr_msg->rsp_size
6831da177e4SLinus Torvalds 			= smi_info->handlers->get_result(
6841da177e4SLinus Torvalds 				smi_info->si_sm,
6851da177e4SLinus Torvalds 				smi_info->curr_msg->rsp,
6861da177e4SLinus Torvalds 				IPMI_MAX_MSG_LENGTH);
6871da177e4SLinus Torvalds 
688c305e3d3SCorey Minyard 		/*
689c305e3d3SCorey Minyard 		 * Do this here becase deliver_recv_msg() releases the
690c305e3d3SCorey Minyard 		 * lock, and a new message can be put in during the
691c305e3d3SCorey Minyard 		 * time the lock is released.
692c305e3d3SCorey Minyard 		 */
6931da177e4SLinus Torvalds 		msg = smi_info->curr_msg;
6941da177e4SLinus Torvalds 		smi_info->curr_msg = NULL;
6951da177e4SLinus Torvalds 		if (msg->rsp[2] != 0) {
6961da177e4SLinus Torvalds 			/* Error getting event, probably done. */
6971da177e4SLinus Torvalds 			msg->done(msg);
6981da177e4SLinus Torvalds 
6991da177e4SLinus Torvalds 			/* Take off the event flag. */
7001da177e4SLinus Torvalds 			smi_info->msg_flags &= ~EVENT_MSG_BUFFER_FULL;
7011da177e4SLinus Torvalds 			handle_flags(smi_info);
7021da177e4SLinus Torvalds 		} else {
70364959e2dSCorey Minyard 			smi_inc_stat(smi_info, events);
7041da177e4SLinus Torvalds 
705c305e3d3SCorey Minyard 			/*
706c305e3d3SCorey Minyard 			 * Do this before we deliver the message
707c305e3d3SCorey Minyard 			 * because delivering the message releases the
708c305e3d3SCorey Minyard 			 * lock and something else can mess with the
709c305e3d3SCorey Minyard 			 * state.
710c305e3d3SCorey Minyard 			 */
7111da177e4SLinus Torvalds 			handle_flags(smi_info);
7121da177e4SLinus Torvalds 
7131da177e4SLinus Torvalds 			deliver_recv_msg(smi_info, msg);
7141da177e4SLinus Torvalds 		}
7151da177e4SLinus Torvalds 		break;
7161da177e4SLinus Torvalds 	}
7171da177e4SLinus Torvalds 
7181da177e4SLinus Torvalds 	case SI_GETTING_MESSAGES:
7191da177e4SLinus Torvalds 	{
7201da177e4SLinus Torvalds 		smi_info->curr_msg->rsp_size
7211da177e4SLinus Torvalds 			= smi_info->handlers->get_result(
7221da177e4SLinus Torvalds 				smi_info->si_sm,
7231da177e4SLinus Torvalds 				smi_info->curr_msg->rsp,
7241da177e4SLinus Torvalds 				IPMI_MAX_MSG_LENGTH);
7251da177e4SLinus Torvalds 
726c305e3d3SCorey Minyard 		/*
727c305e3d3SCorey Minyard 		 * Do this here becase deliver_recv_msg() releases the
728c305e3d3SCorey Minyard 		 * lock, and a new message can be put in during the
729c305e3d3SCorey Minyard 		 * time the lock is released.
730c305e3d3SCorey Minyard 		 */
7311da177e4SLinus Torvalds 		msg = smi_info->curr_msg;
7321da177e4SLinus Torvalds 		smi_info->curr_msg = NULL;
7331da177e4SLinus Torvalds 		if (msg->rsp[2] != 0) {
7341da177e4SLinus Torvalds 			/* Error getting event, probably done. */
7351da177e4SLinus Torvalds 			msg->done(msg);
7361da177e4SLinus Torvalds 
7371da177e4SLinus Torvalds 			/* Take off the msg flag. */
7381da177e4SLinus Torvalds 			smi_info->msg_flags &= ~RECEIVE_MSG_AVAIL;
7391da177e4SLinus Torvalds 			handle_flags(smi_info);
7401da177e4SLinus Torvalds 		} else {
74164959e2dSCorey Minyard 			smi_inc_stat(smi_info, incoming_messages);
7421da177e4SLinus Torvalds 
743c305e3d3SCorey Minyard 			/*
744c305e3d3SCorey Minyard 			 * Do this before we deliver the message
745c305e3d3SCorey Minyard 			 * because delivering the message releases the
746c305e3d3SCorey Minyard 			 * lock and something else can mess with the
747c305e3d3SCorey Minyard 			 * state.
748c305e3d3SCorey Minyard 			 */
7491da177e4SLinus Torvalds 			handle_flags(smi_info);
7501da177e4SLinus Torvalds 
7511da177e4SLinus Torvalds 			deliver_recv_msg(smi_info, msg);
7521da177e4SLinus Torvalds 		}
7531da177e4SLinus Torvalds 		break;
7541da177e4SLinus Torvalds 	}
7551da177e4SLinus Torvalds 
756d9b7e4f7SCorey Minyard 	case SI_CHECKING_ENABLES:
7571da177e4SLinus Torvalds 	{
7581da177e4SLinus Torvalds 		unsigned char msg[4];
759d9b7e4f7SCorey Minyard 		u8 enables;
76095c97b59SCorey Minyard 		bool irq_on;
7611da177e4SLinus Torvalds 
7621da177e4SLinus Torvalds 		/* We got the flags from the SMI, now handle them. */
7631da177e4SLinus Torvalds 		smi_info->handlers->get_result(smi_info->si_sm, msg, 4);
7641da177e4SLinus Torvalds 		if (msg[2] != 0) {
7650849bfecSCorey Minyard 			dev_warn(smi_info->dev,
7660849bfecSCorey Minyard 				 "Couldn't get irq info: %x.\n", msg[2]);
7670849bfecSCorey Minyard 			dev_warn(smi_info->dev,
7680849bfecSCorey Minyard 				 "Maybe ok, but ipmi might run very slowly.\n");
7691da177e4SLinus Torvalds 			smi_info->si_state = SI_NORMAL;
770d9b7e4f7SCorey Minyard 			break;
771d9b7e4f7SCorey Minyard 		}
77295c97b59SCorey Minyard 		enables = current_global_enables(smi_info, 0, &irq_on);
77395c97b59SCorey Minyard 		if (smi_info->si_type == SI_BT)
77495c97b59SCorey Minyard 			/* BT has its own interrupt enable bit. */
77595c97b59SCorey Minyard 			check_bt_irq(smi_info, irq_on);
776d9b7e4f7SCorey Minyard 		if (enables != (msg[3] & GLOBAL_ENABLES_MASK)) {
777d9b7e4f7SCorey Minyard 			/* Enables are not correct, fix them. */
7781da177e4SLinus Torvalds 			msg[0] = (IPMI_NETFN_APP_REQUEST << 2);
7791da177e4SLinus Torvalds 			msg[1] = IPMI_SET_BMC_GLOBAL_ENABLES_CMD;
780d9b7e4f7SCorey Minyard 			msg[2] = enables | (msg[3] & ~GLOBAL_ENABLES_MASK);
7811da177e4SLinus Torvalds 			smi_info->handlers->start_transaction(
7821da177e4SLinus Torvalds 				smi_info->si_sm, msg, 3);
783d9b7e4f7SCorey Minyard 			smi_info->si_state = SI_SETTING_ENABLES;
784d9b7e4f7SCorey Minyard 		} else if (smi_info->supports_event_msg_buff) {
785d9b7e4f7SCorey Minyard 			smi_info->curr_msg = ipmi_alloc_smi_msg();
786d9b7e4f7SCorey Minyard 			if (!smi_info->curr_msg) {
787ee6cd5f8SCorey Minyard 				smi_info->si_state = SI_NORMAL;
788d9b7e4f7SCorey Minyard 				break;
789d9b7e4f7SCorey Minyard 			}
790d9b7e4f7SCorey Minyard 			start_getting_msg_queue(smi_info);
791ee6cd5f8SCorey Minyard 		} else {
792d9b7e4f7SCorey Minyard 			smi_info->si_state = SI_NORMAL;
793ee6cd5f8SCorey Minyard 		}
794ee6cd5f8SCorey Minyard 		break;
795ee6cd5f8SCorey Minyard 	}
796ee6cd5f8SCorey Minyard 
797d9b7e4f7SCorey Minyard 	case SI_SETTING_ENABLES:
798ee6cd5f8SCorey Minyard 	{
799ee6cd5f8SCorey Minyard 		unsigned char msg[4];
800ee6cd5f8SCorey Minyard 
801ee6cd5f8SCorey Minyard 		smi_info->handlers->get_result(smi_info->si_sm, msg, 4);
802d9b7e4f7SCorey Minyard 		if (msg[2] != 0)
803d9b7e4f7SCorey Minyard 			dev_warn(smi_info->dev,
804d9b7e4f7SCorey Minyard 				 "Could not set the global enables: 0x%x.\n",
805d9b7e4f7SCorey Minyard 				 msg[2]);
806d9b7e4f7SCorey Minyard 
807d9b7e4f7SCorey Minyard 		if (smi_info->supports_event_msg_buff) {
808d9b7e4f7SCorey Minyard 			smi_info->curr_msg = ipmi_alloc_smi_msg();
809d9b7e4f7SCorey Minyard 			if (!smi_info->curr_msg) {
810ee6cd5f8SCorey Minyard 				smi_info->si_state = SI_NORMAL;
811ee6cd5f8SCorey Minyard 				break;
812ee6cd5f8SCorey Minyard 			}
813d9b7e4f7SCorey Minyard 			start_getting_msg_queue(smi_info);
814d9b7e4f7SCorey Minyard 		} else {
815d9b7e4f7SCorey Minyard 			smi_info->si_state = SI_NORMAL;
816d9b7e4f7SCorey Minyard 		}
817d9b7e4f7SCorey Minyard 		break;
818d9b7e4f7SCorey Minyard 	}
8191da177e4SLinus Torvalds 	}
8201da177e4SLinus Torvalds }
8211da177e4SLinus Torvalds 
822c305e3d3SCorey Minyard /*
823c305e3d3SCorey Minyard  * Called on timeouts and events.  Timeouts should pass the elapsed
824c305e3d3SCorey Minyard  * time, interrupts should pass in zero.  Must be called with
825c305e3d3SCorey Minyard  * si_lock held and interrupts disabled.
826c305e3d3SCorey Minyard  */
8271da177e4SLinus Torvalds static enum si_sm_result smi_event_handler(struct smi_info *smi_info,
8281da177e4SLinus Torvalds 					   int time)
8291da177e4SLinus Torvalds {
8301da177e4SLinus Torvalds 	enum si_sm_result si_sm_result;
8311da177e4SLinus Torvalds 
8321da177e4SLinus Torvalds  restart:
833c305e3d3SCorey Minyard 	/*
834c305e3d3SCorey Minyard 	 * There used to be a loop here that waited a little while
835c305e3d3SCorey Minyard 	 * (around 25us) before giving up.  That turned out to be
836c305e3d3SCorey Minyard 	 * pointless, the minimum delays I was seeing were in the 300us
837c305e3d3SCorey Minyard 	 * range, which is far too long to wait in an interrupt.  So
838c305e3d3SCorey Minyard 	 * we just run until the state machine tells us something
839c305e3d3SCorey Minyard 	 * happened or it needs a delay.
840c305e3d3SCorey Minyard 	 */
8411da177e4SLinus Torvalds 	si_sm_result = smi_info->handlers->event(smi_info->si_sm, time);
8421da177e4SLinus Torvalds 	time = 0;
8431da177e4SLinus Torvalds 	while (si_sm_result == SI_SM_CALL_WITHOUT_DELAY)
8441da177e4SLinus Torvalds 		si_sm_result = smi_info->handlers->event(smi_info->si_sm, 0);
8451da177e4SLinus Torvalds 
846c305e3d3SCorey Minyard 	if (si_sm_result == SI_SM_TRANSACTION_COMPLETE) {
84764959e2dSCorey Minyard 		smi_inc_stat(smi_info, complete_transactions);
8481da177e4SLinus Torvalds 
8491da177e4SLinus Torvalds 		handle_transaction_done(smi_info);
8501da177e4SLinus Torvalds 		si_sm_result = smi_info->handlers->event(smi_info->si_sm, 0);
851c305e3d3SCorey Minyard 	} else if (si_sm_result == SI_SM_HOSED) {
85264959e2dSCorey Minyard 		smi_inc_stat(smi_info, hosed_count);
8531da177e4SLinus Torvalds 
854c305e3d3SCorey Minyard 		/*
855c305e3d3SCorey Minyard 		 * Do the before return_hosed_msg, because that
856c305e3d3SCorey Minyard 		 * releases the lock.
857c305e3d3SCorey Minyard 		 */
8581da177e4SLinus Torvalds 		smi_info->si_state = SI_NORMAL;
8591da177e4SLinus Torvalds 		if (smi_info->curr_msg != NULL) {
860c305e3d3SCorey Minyard 			/*
861c305e3d3SCorey Minyard 			 * If we were handling a user message, format
862c305e3d3SCorey Minyard 			 * a response to send to the upper layer to
863c305e3d3SCorey Minyard 			 * tell it about the error.
864c305e3d3SCorey Minyard 			 */
8654d7cbac7SCorey Minyard 			return_hosed_msg(smi_info, IPMI_ERR_UNSPECIFIED);
8661da177e4SLinus Torvalds 		}
8671da177e4SLinus Torvalds 		si_sm_result = smi_info->handlers->event(smi_info->si_sm, 0);
8681da177e4SLinus Torvalds 	}
8691da177e4SLinus Torvalds 
8704ea18425SCorey Minyard 	/*
8714ea18425SCorey Minyard 	 * We prefer handling attn over new messages.  But don't do
8724ea18425SCorey Minyard 	 * this if there is not yet an upper layer to handle anything.
8734ea18425SCorey Minyard 	 */
874a8df150cSCorey Minyard 	if (likely(smi_info->intf) &&
875a8df150cSCorey Minyard 	    (si_sm_result == SI_SM_ATTN || smi_info->got_attn)) {
8761da177e4SLinus Torvalds 		unsigned char msg[2];
8771da177e4SLinus Torvalds 
878a8df150cSCorey Minyard 		if (smi_info->si_state != SI_NORMAL) {
879a8df150cSCorey Minyard 			/*
880a8df150cSCorey Minyard 			 * We got an ATTN, but we are doing something else.
881a8df150cSCorey Minyard 			 * Handle the ATTN later.
882a8df150cSCorey Minyard 			 */
883a8df150cSCorey Minyard 			smi_info->got_attn = true;
884a8df150cSCorey Minyard 		} else {
885a8df150cSCorey Minyard 			smi_info->got_attn = false;
88664959e2dSCorey Minyard 			smi_inc_stat(smi_info, attentions);
8871da177e4SLinus Torvalds 
888c305e3d3SCorey Minyard 			/*
889c305e3d3SCorey Minyard 			 * Got a attn, send down a get message flags to see
890c305e3d3SCorey Minyard 			 * what's causing it.  It would be better to handle
891c305e3d3SCorey Minyard 			 * this in the upper layer, but due to the way
892c305e3d3SCorey Minyard 			 * interrupts work with the SMI, that's not really
893c305e3d3SCorey Minyard 			 * possible.
894c305e3d3SCorey Minyard 			 */
8951da177e4SLinus Torvalds 			msg[0] = (IPMI_NETFN_APP_REQUEST << 2);
8961da177e4SLinus Torvalds 			msg[1] = IPMI_GET_MSG_FLAGS_CMD;
8971da177e4SLinus Torvalds 
8980cfec916SCorey Minyard 			start_new_msg(smi_info, msg, 2);
8991da177e4SLinus Torvalds 			smi_info->si_state = SI_GETTING_FLAGS;
9001da177e4SLinus Torvalds 			goto restart;
9011da177e4SLinus Torvalds 		}
902a8df150cSCorey Minyard 	}
9031da177e4SLinus Torvalds 
9041da177e4SLinus Torvalds 	/* If we are currently idle, try to start the next message. */
9051da177e4SLinus Torvalds 	if (si_sm_result == SI_SM_IDLE) {
90664959e2dSCorey Minyard 		smi_inc_stat(smi_info, idles);
9071da177e4SLinus Torvalds 
9081da177e4SLinus Torvalds 		si_sm_result = start_next_msg(smi_info);
9091da177e4SLinus Torvalds 		if (si_sm_result != SI_SM_IDLE)
9101da177e4SLinus Torvalds 			goto restart;
9111da177e4SLinus Torvalds 	}
9121da177e4SLinus Torvalds 
9131da177e4SLinus Torvalds 	if ((si_sm_result == SI_SM_IDLE)
914c305e3d3SCorey Minyard 	    && (atomic_read(&smi_info->req_events))) {
915c305e3d3SCorey Minyard 		/*
916c305e3d3SCorey Minyard 		 * We are idle and the upper layer requested that I fetch
917c305e3d3SCorey Minyard 		 * events, so do so.
918c305e3d3SCorey Minyard 		 */
9191da177e4SLinus Torvalds 		atomic_set(&smi_info->req_events, 0);
92055162fb1SCorey Minyard 
921d9b7e4f7SCorey Minyard 		/*
922d9b7e4f7SCorey Minyard 		 * Take this opportunity to check the interrupt and
923d9b7e4f7SCorey Minyard 		 * message enable state for the BMC.  The BMC can be
924d9b7e4f7SCorey Minyard 		 * asynchronously reset, and may thus get interrupts
925d9b7e4f7SCorey Minyard 		 * disable and messages disabled.
926d9b7e4f7SCorey Minyard 		 */
927d9b7e4f7SCorey Minyard 		if (smi_info->supports_event_msg_buff || smi_info->irq) {
9280cfec916SCorey Minyard 			start_check_enables(smi_info, true);
929d9b7e4f7SCorey Minyard 		} else {
930d9b7e4f7SCorey Minyard 			smi_info->curr_msg = alloc_msg_handle_irq(smi_info);
93155162fb1SCorey Minyard 			if (!smi_info->curr_msg)
93255162fb1SCorey Minyard 				goto out;
93355162fb1SCorey Minyard 
934d9b7e4f7SCorey Minyard 			start_getting_events(smi_info);
935d9b7e4f7SCorey Minyard 		}
9361da177e4SLinus Torvalds 		goto restart;
9371da177e4SLinus Torvalds 	}
938314ef52fSCorey Minyard 
939314ef52fSCorey Minyard 	if (si_sm_result == SI_SM_IDLE && smi_info->timer_running) {
940314ef52fSCorey Minyard 		/* Ok it if fails, the timer will just go off. */
941314ef52fSCorey Minyard 		if (del_timer(&smi_info->si_timer))
942314ef52fSCorey Minyard 			smi_info->timer_running = false;
943314ef52fSCorey Minyard 	}
944314ef52fSCorey Minyard 
94555162fb1SCorey Minyard  out:
9461da177e4SLinus Torvalds 	return si_sm_result;
9471da177e4SLinus Torvalds }
9481da177e4SLinus Torvalds 
94989986496SCorey Minyard static void check_start_timer_thread(struct smi_info *smi_info)
95089986496SCorey Minyard {
95189986496SCorey Minyard 	if (smi_info->si_state == SI_NORMAL && smi_info->curr_msg == NULL) {
95289986496SCorey Minyard 		smi_mod_timer(smi_info, jiffies + SI_TIMEOUT_JIFFIES);
95389986496SCorey Minyard 
95489986496SCorey Minyard 		if (smi_info->thread)
95589986496SCorey Minyard 			wake_up_process(smi_info->thread);
95689986496SCorey Minyard 
95789986496SCorey Minyard 		start_next_msg(smi_info);
95889986496SCorey Minyard 		smi_event_handler(smi_info, 0);
95989986496SCorey Minyard 	}
96089986496SCorey Minyard }
96189986496SCorey Minyard 
96282802f96SHidehiro Kawai static void flush_messages(void *send_info)
963e45361d7SHidehiro Kawai {
96482802f96SHidehiro Kawai 	struct smi_info *smi_info = send_info;
965e45361d7SHidehiro Kawai 	enum si_sm_result result;
966e45361d7SHidehiro Kawai 
967e45361d7SHidehiro Kawai 	/*
968e45361d7SHidehiro Kawai 	 * Currently, this function is called only in run-to-completion
969e45361d7SHidehiro Kawai 	 * mode.  This means we are single-threaded, no need for locks.
970e45361d7SHidehiro Kawai 	 */
971e45361d7SHidehiro Kawai 	result = smi_event_handler(smi_info, 0);
972e45361d7SHidehiro Kawai 	while (result != SI_SM_IDLE) {
973e45361d7SHidehiro Kawai 		udelay(SI_SHORT_TIMEOUT_USEC);
974e45361d7SHidehiro Kawai 		result = smi_event_handler(smi_info, SI_SHORT_TIMEOUT_USEC);
975e45361d7SHidehiro Kawai 	}
976e45361d7SHidehiro Kawai }
977e45361d7SHidehiro Kawai 
9781da177e4SLinus Torvalds static void sender(void                *send_info,
97999ab32f3SCorey Minyard 		   struct ipmi_smi_msg *msg)
9801da177e4SLinus Torvalds {
9811da177e4SLinus Torvalds 	struct smi_info   *smi_info = send_info;
9821da177e4SLinus Torvalds 	unsigned long     flags;
9831da177e4SLinus Torvalds 
984f93aae9fSJohn Stultz 	debug_timestamp("Enqueue");
9851da177e4SLinus Torvalds 
9861da177e4SLinus Torvalds 	if (smi_info->run_to_completion) {
987bda4c30aSCorey Minyard 		/*
98882802f96SHidehiro Kawai 		 * If we are running to completion, start it.  Upper
98982802f96SHidehiro Kawai 		 * layer will call flush_messages to clear it out.
990bda4c30aSCorey Minyard 		 */
9919f812704SHidehiro Kawai 		smi_info->waiting_msg = msg;
9921da177e4SLinus Torvalds 		return;
9931da177e4SLinus Torvalds 	}
9941da177e4SLinus Torvalds 
995f60adf42SCorey Minyard 	spin_lock_irqsave(&smi_info->si_lock, flags);
9961d86e29bSCorey Minyard 	/*
9971d86e29bSCorey Minyard 	 * The following two lines don't need to be under the lock for
9981d86e29bSCorey Minyard 	 * the lock's sake, but they do need SMP memory barriers to
9991d86e29bSCorey Minyard 	 * avoid getting things out of order.  We are already claiming
10001d86e29bSCorey Minyard 	 * the lock, anyway, so just do it under the lock to avoid the
10011d86e29bSCorey Minyard 	 * ordering problem.
10021d86e29bSCorey Minyard 	 */
10031d86e29bSCorey Minyard 	BUG_ON(smi_info->waiting_msg);
10041d86e29bSCorey Minyard 	smi_info->waiting_msg = msg;
100589986496SCorey Minyard 	check_start_timer_thread(smi_info);
1006bda4c30aSCorey Minyard 	spin_unlock_irqrestore(&smi_info->si_lock, flags);
10071da177e4SLinus Torvalds }
10081da177e4SLinus Torvalds 
10097aefac26SCorey Minyard static void set_run_to_completion(void *send_info, bool i_run_to_completion)
10101da177e4SLinus Torvalds {
10111da177e4SLinus Torvalds 	struct smi_info   *smi_info = send_info;
10121da177e4SLinus Torvalds 
10131da177e4SLinus Torvalds 	smi_info->run_to_completion = i_run_to_completion;
1014e45361d7SHidehiro Kawai 	if (i_run_to_completion)
1015e45361d7SHidehiro Kawai 		flush_messages(smi_info);
10161da177e4SLinus Torvalds }
10171da177e4SLinus Torvalds 
1018ae74e823SMartin Wilck /*
1019ae74e823SMartin Wilck  * Use -1 in the nsec value of the busy waiting timespec to tell that
1020ae74e823SMartin Wilck  * we are spinning in kipmid looking for something and not delaying
1021ae74e823SMartin Wilck  * between checks
1022ae74e823SMartin Wilck  */
102348862ea2SJohn Stultz static inline void ipmi_si_set_not_busy(struct timespec64 *ts)
1024ae74e823SMartin Wilck {
1025ae74e823SMartin Wilck 	ts->tv_nsec = -1;
1026ae74e823SMartin Wilck }
102748862ea2SJohn Stultz static inline int ipmi_si_is_busy(struct timespec64 *ts)
1028ae74e823SMartin Wilck {
1029ae74e823SMartin Wilck 	return ts->tv_nsec != -1;
1030ae74e823SMartin Wilck }
1031ae74e823SMartin Wilck 
1032cc4cbe90SArnd Bergmann static inline int ipmi_thread_busy_wait(enum si_sm_result smi_result,
1033ae74e823SMartin Wilck 					const struct smi_info *smi_info,
103448862ea2SJohn Stultz 					struct timespec64 *busy_until)
1035ae74e823SMartin Wilck {
1036ae74e823SMartin Wilck 	unsigned int max_busy_us = 0;
1037ae74e823SMartin Wilck 
1038ae74e823SMartin Wilck 	if (smi_info->intf_num < num_max_busy_us)
1039ae74e823SMartin Wilck 		max_busy_us = kipmid_max_busy_us[smi_info->intf_num];
1040ae74e823SMartin Wilck 	if (max_busy_us == 0 || smi_result != SI_SM_CALL_WITH_DELAY)
1041ae74e823SMartin Wilck 		ipmi_si_set_not_busy(busy_until);
1042ae74e823SMartin Wilck 	else if (!ipmi_si_is_busy(busy_until)) {
104348862ea2SJohn Stultz 		getnstimeofday64(busy_until);
104448862ea2SJohn Stultz 		timespec64_add_ns(busy_until, max_busy_us*NSEC_PER_USEC);
1045ae74e823SMartin Wilck 	} else {
104648862ea2SJohn Stultz 		struct timespec64 now;
104748862ea2SJohn Stultz 
104848862ea2SJohn Stultz 		getnstimeofday64(&now);
104948862ea2SJohn Stultz 		if (unlikely(timespec64_compare(&now, busy_until) > 0)) {
1050ae74e823SMartin Wilck 			ipmi_si_set_not_busy(busy_until);
1051ae74e823SMartin Wilck 			return 0;
1052ae74e823SMartin Wilck 		}
1053ae74e823SMartin Wilck 	}
1054ae74e823SMartin Wilck 	return 1;
1055ae74e823SMartin Wilck }
1056ae74e823SMartin Wilck 
1057ae74e823SMartin Wilck 
1058ae74e823SMartin Wilck /*
1059ae74e823SMartin Wilck  * A busy-waiting loop for speeding up IPMI operation.
1060ae74e823SMartin Wilck  *
1061ae74e823SMartin Wilck  * Lousy hardware makes this hard.  This is only enabled for systems
1062ae74e823SMartin Wilck  * that are not BT and do not have interrupts.  It starts spinning
1063ae74e823SMartin Wilck  * when an operation is complete or until max_busy tells it to stop
1064ae74e823SMartin Wilck  * (if that is enabled).  See the paragraph on kimid_max_busy_us in
1065ae74e823SMartin Wilck  * Documentation/IPMI.txt for details.
1066ae74e823SMartin Wilck  */
1067a9a2c44fSCorey Minyard static int ipmi_thread(void *data)
1068a9a2c44fSCorey Minyard {
1069a9a2c44fSCorey Minyard 	struct smi_info *smi_info = data;
1070e9a705a0SMatt Domsch 	unsigned long flags;
1071a9a2c44fSCorey Minyard 	enum si_sm_result smi_result;
107248862ea2SJohn Stultz 	struct timespec64 busy_until;
1073a9a2c44fSCorey Minyard 
1074ae74e823SMartin Wilck 	ipmi_si_set_not_busy(&busy_until);
10758698a745SDongsheng Yang 	set_user_nice(current, MAX_NICE);
1076e9a705a0SMatt Domsch 	while (!kthread_should_stop()) {
1077ae74e823SMartin Wilck 		int busy_wait;
1078ae74e823SMartin Wilck 
1079a9a2c44fSCorey Minyard 		spin_lock_irqsave(&(smi_info->si_lock), flags);
1080a9a2c44fSCorey Minyard 		smi_result = smi_event_handler(smi_info, 0);
108148e8ac29SBodo Stroesser 
108248e8ac29SBodo Stroesser 		/*
108348e8ac29SBodo Stroesser 		 * If the driver is doing something, there is a possible
108448e8ac29SBodo Stroesser 		 * race with the timer.  If the timer handler see idle,
108548e8ac29SBodo Stroesser 		 * and the thread here sees something else, the timer
108648e8ac29SBodo Stroesser 		 * handler won't restart the timer even though it is
108748e8ac29SBodo Stroesser 		 * required.  So start it here if necessary.
108848e8ac29SBodo Stroesser 		 */
108948e8ac29SBodo Stroesser 		if (smi_result != SI_SM_IDLE && !smi_info->timer_running)
109048e8ac29SBodo Stroesser 			smi_mod_timer(smi_info, jiffies + SI_TIMEOUT_JIFFIES);
109148e8ac29SBodo Stroesser 
1092a9a2c44fSCorey Minyard 		spin_unlock_irqrestore(&(smi_info->si_lock), flags);
1093ae74e823SMartin Wilck 		busy_wait = ipmi_thread_busy_wait(smi_result, smi_info,
1094ae74e823SMartin Wilck 						  &busy_until);
1095c305e3d3SCorey Minyard 		if (smi_result == SI_SM_CALL_WITHOUT_DELAY)
1096c305e3d3SCorey Minyard 			; /* do nothing */
1097ae74e823SMartin Wilck 		else if (smi_result == SI_SM_CALL_WITH_DELAY && busy_wait)
109833979734Sakpm@osdl.org 			schedule();
109989986496SCorey Minyard 		else if (smi_result == SI_SM_IDLE) {
110089986496SCorey Minyard 			if (atomic_read(&smi_info->need_watch)) {
11013326f4f2SMatthew Garrett 				schedule_timeout_interruptible(100);
110289986496SCorey Minyard 			} else {
110389986496SCorey Minyard 				/* Wait to be woken up when we are needed. */
110489986496SCorey Minyard 				__set_current_state(TASK_INTERRUPTIBLE);
110589986496SCorey Minyard 				schedule();
110689986496SCorey Minyard 			}
110789986496SCorey Minyard 		} else
11088d1f66dcSMartin Wilck 			schedule_timeout_interruptible(1);
1109a9a2c44fSCorey Minyard 	}
1110a9a2c44fSCorey Minyard 	return 0;
1111a9a2c44fSCorey Minyard }
1112a9a2c44fSCorey Minyard 
1113a9a2c44fSCorey Minyard 
11141da177e4SLinus Torvalds static void poll(void *send_info)
11151da177e4SLinus Torvalds {
11161da177e4SLinus Torvalds 	struct smi_info *smi_info = send_info;
1117f60adf42SCorey Minyard 	unsigned long flags = 0;
11187aefac26SCorey Minyard 	bool run_to_completion = smi_info->run_to_completion;
11191da177e4SLinus Torvalds 
112015c62e10SCorey Minyard 	/*
112115c62e10SCorey Minyard 	 * Make sure there is some delay in the poll loop so we can
112215c62e10SCorey Minyard 	 * drive time forward and timeout things.
112315c62e10SCorey Minyard 	 */
112415c62e10SCorey Minyard 	udelay(10);
1125f60adf42SCorey Minyard 	if (!run_to_completion)
1126fcfa4724SCorey Minyard 		spin_lock_irqsave(&smi_info->si_lock, flags);
112715c62e10SCorey Minyard 	smi_event_handler(smi_info, 10);
1128f60adf42SCorey Minyard 	if (!run_to_completion)
1129fcfa4724SCorey Minyard 		spin_unlock_irqrestore(&smi_info->si_lock, flags);
11301da177e4SLinus Torvalds }
11311da177e4SLinus Torvalds 
11321da177e4SLinus Torvalds static void request_events(void *send_info)
11331da177e4SLinus Torvalds {
11341da177e4SLinus Torvalds 	struct smi_info *smi_info = send_info;
11351da177e4SLinus Torvalds 
1136b874b985SCorey Minyard 	if (!smi_info->has_event_buffer)
1137b361e27bSCorey Minyard 		return;
1138b361e27bSCorey Minyard 
11391da177e4SLinus Torvalds 	atomic_set(&smi_info->req_events, 1);
11401da177e4SLinus Torvalds }
11411da177e4SLinus Torvalds 
11427aefac26SCorey Minyard static void set_need_watch(void *send_info, bool enable)
114389986496SCorey Minyard {
114489986496SCorey Minyard 	struct smi_info *smi_info = send_info;
114589986496SCorey Minyard 	unsigned long flags;
114689986496SCorey Minyard 
114789986496SCorey Minyard 	atomic_set(&smi_info->need_watch, enable);
114889986496SCorey Minyard 	spin_lock_irqsave(&smi_info->si_lock, flags);
114989986496SCorey Minyard 	check_start_timer_thread(smi_info);
115089986496SCorey Minyard 	spin_unlock_irqrestore(&smi_info->si_lock, flags);
115189986496SCorey Minyard }
115289986496SCorey Minyard 
11530c8204b3SRandy Dunlap static int initialized;
11541da177e4SLinus Torvalds 
11551da177e4SLinus Torvalds static void smi_timeout(unsigned long data)
11561da177e4SLinus Torvalds {
11571da177e4SLinus Torvalds 	struct smi_info   *smi_info = (struct smi_info *) data;
11581da177e4SLinus Torvalds 	enum si_sm_result smi_result;
11591da177e4SLinus Torvalds 	unsigned long     flags;
11601da177e4SLinus Torvalds 	unsigned long     jiffies_now;
1161c4edff1cSCorey Minyard 	long              time_diff;
11623326f4f2SMatthew Garrett 	long		  timeout;
11631da177e4SLinus Torvalds 
11641da177e4SLinus Torvalds 	spin_lock_irqsave(&(smi_info->si_lock), flags);
1165f93aae9fSJohn Stultz 	debug_timestamp("Timer");
1166f93aae9fSJohn Stultz 
11671da177e4SLinus Torvalds 	jiffies_now = jiffies;
1168c4edff1cSCorey Minyard 	time_diff = (((long)jiffies_now - (long)smi_info->last_timeout_jiffies)
11691da177e4SLinus Torvalds 		     * SI_USEC_PER_JIFFY);
11701da177e4SLinus Torvalds 	smi_result = smi_event_handler(smi_info, time_diff);
11711da177e4SLinus Torvalds 
11721da177e4SLinus Torvalds 	if ((smi_info->irq) && (!smi_info->interrupt_disabled)) {
11731da177e4SLinus Torvalds 		/* Running with interrupts, only do long timeouts. */
11743326f4f2SMatthew Garrett 		timeout = jiffies + SI_TIMEOUT_JIFFIES;
117564959e2dSCorey Minyard 		smi_inc_stat(smi_info, long_timeouts);
11763326f4f2SMatthew Garrett 		goto do_mod_timer;
11771da177e4SLinus Torvalds 	}
11781da177e4SLinus Torvalds 
1179c305e3d3SCorey Minyard 	/*
1180c305e3d3SCorey Minyard 	 * If the state machine asks for a short delay, then shorten
1181c305e3d3SCorey Minyard 	 * the timer timeout.
1182c305e3d3SCorey Minyard 	 */
11831da177e4SLinus Torvalds 	if (smi_result == SI_SM_CALL_WITH_DELAY) {
118464959e2dSCorey Minyard 		smi_inc_stat(smi_info, short_timeouts);
11853326f4f2SMatthew Garrett 		timeout = jiffies + 1;
11861da177e4SLinus Torvalds 	} else {
118764959e2dSCorey Minyard 		smi_inc_stat(smi_info, long_timeouts);
11883326f4f2SMatthew Garrett 		timeout = jiffies + SI_TIMEOUT_JIFFIES;
11891da177e4SLinus Torvalds 	}
11901da177e4SLinus Torvalds 
11913326f4f2SMatthew Garrett  do_mod_timer:
11923326f4f2SMatthew Garrett 	if (smi_result != SI_SM_IDLE)
119348e8ac29SBodo Stroesser 		smi_mod_timer(smi_info, timeout);
119448e8ac29SBodo Stroesser 	else
119548e8ac29SBodo Stroesser 		smi_info->timer_running = false;
119648e8ac29SBodo Stroesser 	spin_unlock_irqrestore(&(smi_info->si_lock), flags);
11971da177e4SLinus Torvalds }
11981da177e4SLinus Torvalds 
11997d12e780SDavid Howells static irqreturn_t si_irq_handler(int irq, void *data)
12001da177e4SLinus Torvalds {
12011da177e4SLinus Torvalds 	struct smi_info *smi_info = data;
12021da177e4SLinus Torvalds 	unsigned long   flags;
12031da177e4SLinus Torvalds 
12041da177e4SLinus Torvalds 	spin_lock_irqsave(&(smi_info->si_lock), flags);
12051da177e4SLinus Torvalds 
120664959e2dSCorey Minyard 	smi_inc_stat(smi_info, interrupts);
12071da177e4SLinus Torvalds 
1208f93aae9fSJohn Stultz 	debug_timestamp("Interrupt");
1209f93aae9fSJohn Stultz 
12101da177e4SLinus Torvalds 	smi_event_handler(smi_info, 0);
12111da177e4SLinus Torvalds 	spin_unlock_irqrestore(&(smi_info->si_lock), flags);
12121da177e4SLinus Torvalds 	return IRQ_HANDLED;
12131da177e4SLinus Torvalds }
12141da177e4SLinus Torvalds 
12157d12e780SDavid Howells static irqreturn_t si_bt_irq_handler(int irq, void *data)
12169dbf68f9SCorey Minyard {
12179dbf68f9SCorey Minyard 	struct smi_info *smi_info = data;
12189dbf68f9SCorey Minyard 	/* We need to clear the IRQ flag for the BT interface. */
12199dbf68f9SCorey Minyard 	smi_info->io.outputb(&smi_info->io, IPMI_BT_INTMASK_REG,
12209dbf68f9SCorey Minyard 			     IPMI_BT_INTMASK_CLEAR_IRQ_BIT
12219dbf68f9SCorey Minyard 			     | IPMI_BT_INTMASK_ENABLE_IRQ_BIT);
12227d12e780SDavid Howells 	return si_irq_handler(irq, data);
12239dbf68f9SCorey Minyard }
12249dbf68f9SCorey Minyard 
1225453823baSCorey Minyard static int smi_start_processing(void       *send_info,
1226453823baSCorey Minyard 				ipmi_smi_t intf)
1227453823baSCorey Minyard {
1228453823baSCorey Minyard 	struct smi_info *new_smi = send_info;
1229a51f4a81SCorey Minyard 	int             enable = 0;
1230453823baSCorey Minyard 
1231453823baSCorey Minyard 	new_smi->intf = intf;
1232453823baSCorey Minyard 
1233453823baSCorey Minyard 	/* Set up the timer that drives the interface. */
1234453823baSCorey Minyard 	setup_timer(&new_smi->si_timer, smi_timeout, (long)new_smi);
123548e8ac29SBodo Stroesser 	smi_mod_timer(new_smi, jiffies + SI_TIMEOUT_JIFFIES);
1236453823baSCorey Minyard 
1237*27f972d3SJan Stancek 	/* Try to claim any interrupts. */
1238*27f972d3SJan Stancek 	if (new_smi->irq_setup)
1239*27f972d3SJan Stancek 		new_smi->irq_setup(new_smi);
1240*27f972d3SJan Stancek 
1241df3fe8deSCorey Minyard 	/*
1242a51f4a81SCorey Minyard 	 * Check if the user forcefully enabled the daemon.
1243a51f4a81SCorey Minyard 	 */
1244a51f4a81SCorey Minyard 	if (new_smi->intf_num < num_force_kipmid)
1245a51f4a81SCorey Minyard 		enable = force_kipmid[new_smi->intf_num];
1246a51f4a81SCorey Minyard 	/*
1247df3fe8deSCorey Minyard 	 * The BT interface is efficient enough to not need a thread,
1248df3fe8deSCorey Minyard 	 * and there is no need for a thread if we have interrupts.
1249df3fe8deSCorey Minyard 	 */
1250a51f4a81SCorey Minyard 	else if ((new_smi->si_type != SI_BT) && (!new_smi->irq))
1251a51f4a81SCorey Minyard 		enable = 1;
1252a51f4a81SCorey Minyard 
1253a51f4a81SCorey Minyard 	if (enable) {
1254453823baSCorey Minyard 		new_smi->thread = kthread_run(ipmi_thread, new_smi,
1255453823baSCorey Minyard 					      "kipmi%d", new_smi->intf_num);
1256453823baSCorey Minyard 		if (IS_ERR(new_smi->thread)) {
1257279fbd0cSMyron Stowe 			dev_notice(new_smi->dev, "Could not start"
1258453823baSCorey Minyard 				   " kernel thread due to error %ld, only using"
1259453823baSCorey Minyard 				   " timers to drive the interface\n",
1260453823baSCorey Minyard 				   PTR_ERR(new_smi->thread));
1261453823baSCorey Minyard 			new_smi->thread = NULL;
1262453823baSCorey Minyard 		}
1263453823baSCorey Minyard 	}
1264453823baSCorey Minyard 
1265453823baSCorey Minyard 	return 0;
1266453823baSCorey Minyard }
12679dbf68f9SCorey Minyard 
126816f4232cSZhao Yakui static int get_smi_info(void *send_info, struct ipmi_smi_info *data)
126916f4232cSZhao Yakui {
127016f4232cSZhao Yakui 	struct smi_info *smi = send_info;
127116f4232cSZhao Yakui 
127216f4232cSZhao Yakui 	data->addr_src = smi->addr_source;
127316f4232cSZhao Yakui 	data->dev = smi->dev;
127416f4232cSZhao Yakui 	data->addr_info = smi->addr_info;
127516f4232cSZhao Yakui 	get_device(smi->dev);
127616f4232cSZhao Yakui 
127716f4232cSZhao Yakui 	return 0;
127816f4232cSZhao Yakui }
127916f4232cSZhao Yakui 
12807aefac26SCorey Minyard static void set_maintenance_mode(void *send_info, bool enable)
1281b9675136SCorey Minyard {
1282b9675136SCorey Minyard 	struct smi_info   *smi_info = send_info;
1283b9675136SCorey Minyard 
1284b9675136SCorey Minyard 	if (!enable)
1285b9675136SCorey Minyard 		atomic_set(&smi_info->req_events, 0);
1286b9675136SCorey Minyard }
1287b9675136SCorey Minyard 
128881d02b7fSCorey Minyard static const struct ipmi_smi_handlers handlers = {
12891da177e4SLinus Torvalds 	.owner                  = THIS_MODULE,
1290453823baSCorey Minyard 	.start_processing       = smi_start_processing,
129116f4232cSZhao Yakui 	.get_smi_info		= get_smi_info,
12921da177e4SLinus Torvalds 	.sender			= sender,
12931da177e4SLinus Torvalds 	.request_events		= request_events,
129489986496SCorey Minyard 	.set_need_watch		= set_need_watch,
1295b9675136SCorey Minyard 	.set_maintenance_mode   = set_maintenance_mode,
12961da177e4SLinus Torvalds 	.set_run_to_completion  = set_run_to_completion,
129782802f96SHidehiro Kawai 	.flush_messages		= flush_messages,
12981da177e4SLinus Torvalds 	.poll			= poll,
12991da177e4SLinus Torvalds };
13001da177e4SLinus Torvalds 
1301c305e3d3SCorey Minyard /*
1302c305e3d3SCorey Minyard  * There can be 4 IO ports passed in (with or without IRQs), 4 addresses,
1303c305e3d3SCorey Minyard  * a default IO port, and 1 ACPI/SPMI address.  That sets SI_MAX_DRIVERS.
1304c305e3d3SCorey Minyard  */
13051da177e4SLinus Torvalds 
1306b0defcdbSCorey Minyard static LIST_HEAD(smi_infos);
1307d6dfd131SCorey Minyard static DEFINE_MUTEX(smi_infos_lock);
1308b0defcdbSCorey Minyard static int smi_num; /* Used to sequence the SMIs */
13091da177e4SLinus Torvalds 
13101da177e4SLinus Torvalds #define DEFAULT_REGSPACING	1
1311dba9b4f6SCorey Minyard #define DEFAULT_REGSIZE		1
13121da177e4SLinus Torvalds 
1313d941aeaeSCorey Minyard #ifdef CONFIG_ACPI
1314fedb25eaSShailendra Verma static bool          si_tryacpi = true;
1315d941aeaeSCorey Minyard #endif
1316d941aeaeSCorey Minyard #ifdef CONFIG_DMI
1317fedb25eaSShailendra Verma static bool          si_trydmi = true;
1318d941aeaeSCorey Minyard #endif
1319fedb25eaSShailendra Verma static bool          si_tryplatform = true;
1320f2afae46SCorey Minyard #ifdef CONFIG_PCI
1321fedb25eaSShailendra Verma static bool          si_trypci = true;
1322f2afae46SCorey Minyard #endif
13230dfe6e7eSCorey Minyard static bool          si_trydefaults = IS_ENABLED(CONFIG_IPMI_SI_PROBE_DEFAULTS);
13241da177e4SLinus Torvalds static char          *si_type[SI_MAX_PARMS];
13251da177e4SLinus Torvalds #define MAX_SI_TYPE_STR 30
13261da177e4SLinus Torvalds static char          si_type_str[MAX_SI_TYPE_STR];
13271da177e4SLinus Torvalds static unsigned long addrs[SI_MAX_PARMS];
132864a6f950SAl Viro static unsigned int num_addrs;
13291da177e4SLinus Torvalds static unsigned int  ports[SI_MAX_PARMS];
133064a6f950SAl Viro static unsigned int num_ports;
13311da177e4SLinus Torvalds static int           irqs[SI_MAX_PARMS];
133264a6f950SAl Viro static unsigned int num_irqs;
13331da177e4SLinus Torvalds static int           regspacings[SI_MAX_PARMS];
133464a6f950SAl Viro static unsigned int num_regspacings;
13351da177e4SLinus Torvalds static int           regsizes[SI_MAX_PARMS];
133664a6f950SAl Viro static unsigned int num_regsizes;
13371da177e4SLinus Torvalds static int           regshifts[SI_MAX_PARMS];
133864a6f950SAl Viro static unsigned int num_regshifts;
13392f95d513SBela Lubkin static int slave_addrs[SI_MAX_PARMS]; /* Leaving 0 chooses the default value */
134064a6f950SAl Viro static unsigned int num_slave_addrs;
13411da177e4SLinus Torvalds 
1342b361e27bSCorey Minyard #define IPMI_IO_ADDR_SPACE  0
1343b361e27bSCorey Minyard #define IPMI_MEM_ADDR_SPACE 1
13441d5636ccSCorey Minyard static char *addr_space_to_str[] = { "i/o", "mem" };
1345b361e27bSCorey Minyard 
1346b361e27bSCorey Minyard static int hotmod_handler(const char *val, struct kernel_param *kp);
1347b361e27bSCorey Minyard 
1348b361e27bSCorey Minyard module_param_call(hotmod, hotmod_handler, NULL, NULL, 0200);
1349b361e27bSCorey Minyard MODULE_PARM_DESC(hotmod, "Add and remove interfaces.  See"
1350b361e27bSCorey Minyard 		 " Documentation/IPMI.txt in the kernel sources for the"
1351b361e27bSCorey Minyard 		 " gory details.");
13521da177e4SLinus Torvalds 
1353d941aeaeSCorey Minyard #ifdef CONFIG_ACPI
1354d941aeaeSCorey Minyard module_param_named(tryacpi, si_tryacpi, bool, 0);
1355d941aeaeSCorey Minyard MODULE_PARM_DESC(tryacpi, "Setting this to zero will disable the"
1356d941aeaeSCorey Minyard 		 " default scan of the interfaces identified via ACPI");
1357d941aeaeSCorey Minyard #endif
1358d941aeaeSCorey Minyard #ifdef CONFIG_DMI
1359d941aeaeSCorey Minyard module_param_named(trydmi, si_trydmi, bool, 0);
1360d941aeaeSCorey Minyard MODULE_PARM_DESC(trydmi, "Setting this to zero will disable the"
1361d941aeaeSCorey Minyard 		 " default scan of the interfaces identified via DMI");
1362d941aeaeSCorey Minyard #endif
1363f2afae46SCorey Minyard module_param_named(tryplatform, si_tryplatform, bool, 0);
1364f2afae46SCorey Minyard MODULE_PARM_DESC(tryacpi, "Setting this to zero will disable the"
1365f2afae46SCorey Minyard 		 " default scan of the interfaces identified via platform"
1366f2afae46SCorey Minyard 		 " interfaces like openfirmware");
1367f2afae46SCorey Minyard #ifdef CONFIG_PCI
1368f2afae46SCorey Minyard module_param_named(trypci, si_trypci, bool, 0);
1369f2afae46SCorey Minyard MODULE_PARM_DESC(tryacpi, "Setting this to zero will disable the"
1370f2afae46SCorey Minyard 		 " default scan of the interfaces identified via pci");
1371f2afae46SCorey Minyard #endif
13721da177e4SLinus Torvalds module_param_named(trydefaults, si_trydefaults, bool, 0);
13731da177e4SLinus Torvalds MODULE_PARM_DESC(trydefaults, "Setting this to 'false' will disable the"
13741da177e4SLinus Torvalds 		 " default scan of the KCS and SMIC interface at the standard"
13751da177e4SLinus Torvalds 		 " address");
13761da177e4SLinus Torvalds module_param_string(type, si_type_str, MAX_SI_TYPE_STR, 0);
13771da177e4SLinus Torvalds MODULE_PARM_DESC(type, "Defines the type of each interface, each"
13781da177e4SLinus Torvalds 		 " interface separated by commas.  The types are 'kcs',"
13791da177e4SLinus Torvalds 		 " 'smic', and 'bt'.  For example si_type=kcs,bt will set"
13801da177e4SLinus Torvalds 		 " the first interface to kcs and the second to bt");
138164a6f950SAl Viro module_param_array(addrs, ulong, &num_addrs, 0);
13821da177e4SLinus Torvalds MODULE_PARM_DESC(addrs, "Sets the memory address of each interface, the"
13831da177e4SLinus Torvalds 		 " addresses separated by commas.  Only use if an interface"
13841da177e4SLinus Torvalds 		 " is in memory.  Otherwise, set it to zero or leave"
13851da177e4SLinus Torvalds 		 " it blank.");
138664a6f950SAl Viro module_param_array(ports, uint, &num_ports, 0);
13871da177e4SLinus Torvalds MODULE_PARM_DESC(ports, "Sets the port address of each interface, the"
13881da177e4SLinus Torvalds 		 " addresses separated by commas.  Only use if an interface"
13891da177e4SLinus Torvalds 		 " is a port.  Otherwise, set it to zero or leave"
13901da177e4SLinus Torvalds 		 " it blank.");
13911da177e4SLinus Torvalds module_param_array(irqs, int, &num_irqs, 0);
13921da177e4SLinus Torvalds MODULE_PARM_DESC(irqs, "Sets the interrupt of each interface, the"
13931da177e4SLinus Torvalds 		 " addresses separated by commas.  Only use if an interface"
13941da177e4SLinus Torvalds 		 " has an interrupt.  Otherwise, set it to zero or leave"
13951da177e4SLinus Torvalds 		 " it blank.");
13961da177e4SLinus Torvalds module_param_array(regspacings, int, &num_regspacings, 0);
13971da177e4SLinus Torvalds MODULE_PARM_DESC(regspacings, "The number of bytes between the start address"
13981da177e4SLinus Torvalds 		 " and each successive register used by the interface.  For"
13991da177e4SLinus Torvalds 		 " instance, if the start address is 0xca2 and the spacing"
14001da177e4SLinus Torvalds 		 " is 2, then the second address is at 0xca4.  Defaults"
14011da177e4SLinus Torvalds 		 " to 1.");
14021da177e4SLinus Torvalds module_param_array(regsizes, int, &num_regsizes, 0);
14031da177e4SLinus Torvalds MODULE_PARM_DESC(regsizes, "The size of the specific IPMI register in bytes."
14041da177e4SLinus Torvalds 		 " This should generally be 1, 2, 4, or 8 for an 8-bit,"
14051da177e4SLinus Torvalds 		 " 16-bit, 32-bit, or 64-bit register.  Use this if you"
14061da177e4SLinus Torvalds 		 " the 8-bit IPMI register has to be read from a larger"
14071da177e4SLinus Torvalds 		 " register.");
14081da177e4SLinus Torvalds module_param_array(regshifts, int, &num_regshifts, 0);
14091da177e4SLinus Torvalds MODULE_PARM_DESC(regshifts, "The amount to shift the data read from the."
14101da177e4SLinus Torvalds 		 " IPMI register, in bits.  For instance, if the data"
14111da177e4SLinus Torvalds 		 " is read from a 32-bit word and the IPMI data is in"
14121da177e4SLinus Torvalds 		 " bit 8-15, then the shift would be 8");
14131da177e4SLinus Torvalds module_param_array(slave_addrs, int, &num_slave_addrs, 0);
14141da177e4SLinus Torvalds MODULE_PARM_DESC(slave_addrs, "Set the default IPMB slave address for"
14151da177e4SLinus Torvalds 		 " the controller.  Normally this is 0x20, but can be"
14161da177e4SLinus Torvalds 		 " overridden by this parm.  This is an array indexed"
14171da177e4SLinus Torvalds 		 " by interface number.");
1418a51f4a81SCorey Minyard module_param_array(force_kipmid, int, &num_force_kipmid, 0);
1419a51f4a81SCorey Minyard MODULE_PARM_DESC(force_kipmid, "Force the kipmi daemon to be enabled (1) or"
1420a51f4a81SCorey Minyard 		 " disabled(0).  Normally the IPMI driver auto-detects"
1421a51f4a81SCorey Minyard 		 " this, but the value may be overridden by this parm.");
14227aefac26SCorey Minyard module_param(unload_when_empty, bool, 0);
1423b361e27bSCorey Minyard MODULE_PARM_DESC(unload_when_empty, "Unload the module if no interfaces are"
1424b361e27bSCorey Minyard 		 " specified or found, default is 1.  Setting to 0"
1425b361e27bSCorey Minyard 		 " is useful for hot add of devices using hotmod.");
1426ae74e823SMartin Wilck module_param_array(kipmid_max_busy_us, uint, &num_max_busy_us, 0644);
1427ae74e823SMartin Wilck MODULE_PARM_DESC(kipmid_max_busy_us,
1428ae74e823SMartin Wilck 		 "Max time (in microseconds) to busy-wait for IPMI data before"
1429ae74e823SMartin Wilck 		 " sleeping. 0 (default) means to wait forever. Set to 100-500"
1430ae74e823SMartin Wilck 		 " if kipmid is using up a lot of CPU time.");
14311da177e4SLinus Torvalds 
14321da177e4SLinus Torvalds 
1433b0defcdbSCorey Minyard static void std_irq_cleanup(struct smi_info *info)
14341da177e4SLinus Torvalds {
1435b0defcdbSCorey Minyard 	if (info->si_type == SI_BT)
1436b0defcdbSCorey Minyard 		/* Disable the interrupt in the BT interface. */
1437b0defcdbSCorey Minyard 		info->io.outputb(&info->io, IPMI_BT_INTMASK_REG, 0);
1438b0defcdbSCorey Minyard 	free_irq(info->irq, info);
14391da177e4SLinus Torvalds }
14401da177e4SLinus Torvalds 
14411da177e4SLinus Torvalds static int std_irq_setup(struct smi_info *info)
14421da177e4SLinus Torvalds {
14431da177e4SLinus Torvalds 	int rv;
14441da177e4SLinus Torvalds 
14451da177e4SLinus Torvalds 	if (!info->irq)
14461da177e4SLinus Torvalds 		return 0;
14471da177e4SLinus Torvalds 
14489dbf68f9SCorey Minyard 	if (info->si_type == SI_BT) {
14499dbf68f9SCorey Minyard 		rv = request_irq(info->irq,
14509dbf68f9SCorey Minyard 				 si_bt_irq_handler,
1451aa5b2babSMichael Opdenacker 				 IRQF_SHARED,
14529dbf68f9SCorey Minyard 				 DEVICE_NAME,
14539dbf68f9SCorey Minyard 				 info);
14549dbf68f9SCorey Minyard 		if (!rv)
14559dbf68f9SCorey Minyard 			/* Enable the interrupt in the BT interface. */
14569dbf68f9SCorey Minyard 			info->io.outputb(&info->io, IPMI_BT_INTMASK_REG,
14579dbf68f9SCorey Minyard 					 IPMI_BT_INTMASK_ENABLE_IRQ_BIT);
14589dbf68f9SCorey Minyard 	} else
14591da177e4SLinus Torvalds 		rv = request_irq(info->irq,
14601da177e4SLinus Torvalds 				 si_irq_handler,
1461aa5b2babSMichael Opdenacker 				 IRQF_SHARED,
14621da177e4SLinus Torvalds 				 DEVICE_NAME,
14631da177e4SLinus Torvalds 				 info);
14641da177e4SLinus Torvalds 	if (rv) {
1465279fbd0cSMyron Stowe 		dev_warn(info->dev, "%s unable to claim interrupt %d,"
14661da177e4SLinus Torvalds 			 " running polled\n",
14671da177e4SLinus Torvalds 			 DEVICE_NAME, info->irq);
14681da177e4SLinus Torvalds 		info->irq = 0;
14691da177e4SLinus Torvalds 	} else {
1470b0defcdbSCorey Minyard 		info->irq_cleanup = std_irq_cleanup;
1471279fbd0cSMyron Stowe 		dev_info(info->dev, "Using irq %d\n", info->irq);
14721da177e4SLinus Torvalds 	}
14731da177e4SLinus Torvalds 
14741da177e4SLinus Torvalds 	return rv;
14751da177e4SLinus Torvalds }
14761da177e4SLinus Torvalds 
147781d02b7fSCorey Minyard static unsigned char port_inb(const struct si_sm_io *io, unsigned int offset)
14781da177e4SLinus Torvalds {
1479b0defcdbSCorey Minyard 	unsigned int addr = io->addr_data;
14801da177e4SLinus Torvalds 
1481b0defcdbSCorey Minyard 	return inb(addr + (offset * io->regspacing));
14821da177e4SLinus Torvalds }
14831da177e4SLinus Torvalds 
148481d02b7fSCorey Minyard static void port_outb(const struct si_sm_io *io, unsigned int offset,
14851da177e4SLinus Torvalds 		      unsigned char b)
14861da177e4SLinus Torvalds {
1487b0defcdbSCorey Minyard 	unsigned int addr = io->addr_data;
14881da177e4SLinus Torvalds 
1489b0defcdbSCorey Minyard 	outb(b, addr + (offset * io->regspacing));
14901da177e4SLinus Torvalds }
14911da177e4SLinus Torvalds 
149281d02b7fSCorey Minyard static unsigned char port_inw(const struct si_sm_io *io, unsigned int offset)
14931da177e4SLinus Torvalds {
1494b0defcdbSCorey Minyard 	unsigned int addr = io->addr_data;
14951da177e4SLinus Torvalds 
1496b0defcdbSCorey Minyard 	return (inw(addr + (offset * io->regspacing)) >> io->regshift) & 0xff;
14971da177e4SLinus Torvalds }
14981da177e4SLinus Torvalds 
149981d02b7fSCorey Minyard static void port_outw(const struct si_sm_io *io, unsigned int offset,
15001da177e4SLinus Torvalds 		      unsigned char b)
15011da177e4SLinus Torvalds {
1502b0defcdbSCorey Minyard 	unsigned int addr = io->addr_data;
15031da177e4SLinus Torvalds 
1504b0defcdbSCorey Minyard 	outw(b << io->regshift, addr + (offset * io->regspacing));
15051da177e4SLinus Torvalds }
15061da177e4SLinus Torvalds 
150781d02b7fSCorey Minyard static unsigned char port_inl(const struct si_sm_io *io, unsigned int offset)
15081da177e4SLinus Torvalds {
1509b0defcdbSCorey Minyard 	unsigned int addr = io->addr_data;
15101da177e4SLinus Torvalds 
1511b0defcdbSCorey Minyard 	return (inl(addr + (offset * io->regspacing)) >> io->regshift) & 0xff;
15121da177e4SLinus Torvalds }
15131da177e4SLinus Torvalds 
151481d02b7fSCorey Minyard static void port_outl(const struct si_sm_io *io, unsigned int offset,
15151da177e4SLinus Torvalds 		      unsigned char b)
15161da177e4SLinus Torvalds {
1517b0defcdbSCorey Minyard 	unsigned int addr = io->addr_data;
15181da177e4SLinus Torvalds 
1519b0defcdbSCorey Minyard 	outl(b << io->regshift, addr+(offset * io->regspacing));
15201da177e4SLinus Torvalds }
15211da177e4SLinus Torvalds 
15221da177e4SLinus Torvalds static void port_cleanup(struct smi_info *info)
15231da177e4SLinus Torvalds {
1524b0defcdbSCorey Minyard 	unsigned int addr = info->io.addr_data;
1525d61a3eadSCorey Minyard 	int          idx;
15261da177e4SLinus Torvalds 
1527b0defcdbSCorey Minyard 	if (addr) {
1528c305e3d3SCorey Minyard 		for (idx = 0; idx < info->io_size; idx++)
1529d61a3eadSCorey Minyard 			release_region(addr + idx * info->io.regspacing,
1530d61a3eadSCorey Minyard 				       info->io.regsize);
1531d61a3eadSCorey Minyard 	}
15321da177e4SLinus Torvalds }
15331da177e4SLinus Torvalds 
15341da177e4SLinus Torvalds static int port_setup(struct smi_info *info)
15351da177e4SLinus Torvalds {
1536b0defcdbSCorey Minyard 	unsigned int addr = info->io.addr_data;
1537d61a3eadSCorey Minyard 	int          idx;
15381da177e4SLinus Torvalds 
1539b0defcdbSCorey Minyard 	if (!addr)
15401da177e4SLinus Torvalds 		return -ENODEV;
15411da177e4SLinus Torvalds 
15421da177e4SLinus Torvalds 	info->io_cleanup = port_cleanup;
15431da177e4SLinus Torvalds 
1544c305e3d3SCorey Minyard 	/*
1545c305e3d3SCorey Minyard 	 * Figure out the actual inb/inw/inl/etc routine to use based
1546c305e3d3SCorey Minyard 	 * upon the register size.
1547c305e3d3SCorey Minyard 	 */
15481da177e4SLinus Torvalds 	switch (info->io.regsize) {
15491da177e4SLinus Torvalds 	case 1:
15501da177e4SLinus Torvalds 		info->io.inputb = port_inb;
15511da177e4SLinus Torvalds 		info->io.outputb = port_outb;
15521da177e4SLinus Torvalds 		break;
15531da177e4SLinus Torvalds 	case 2:
15541da177e4SLinus Torvalds 		info->io.inputb = port_inw;
15551da177e4SLinus Torvalds 		info->io.outputb = port_outw;
15561da177e4SLinus Torvalds 		break;
15571da177e4SLinus Torvalds 	case 4:
15581da177e4SLinus Torvalds 		info->io.inputb = port_inl;
15591da177e4SLinus Torvalds 		info->io.outputb = port_outl;
15601da177e4SLinus Torvalds 		break;
15611da177e4SLinus Torvalds 	default:
1562279fbd0cSMyron Stowe 		dev_warn(info->dev, "Invalid register size: %d\n",
15631da177e4SLinus Torvalds 			 info->io.regsize);
15641da177e4SLinus Torvalds 		return -EINVAL;
15651da177e4SLinus Torvalds 	}
15661da177e4SLinus Torvalds 
1567c305e3d3SCorey Minyard 	/*
1568c305e3d3SCorey Minyard 	 * Some BIOSes reserve disjoint I/O regions in their ACPI
1569d61a3eadSCorey Minyard 	 * tables.  This causes problems when trying to register the
1570d61a3eadSCorey Minyard 	 * entire I/O region.  Therefore we must register each I/O
1571d61a3eadSCorey Minyard 	 * port separately.
1572d61a3eadSCorey Minyard 	 */
1573d61a3eadSCorey Minyard 	for (idx = 0; idx < info->io_size; idx++) {
1574d61a3eadSCorey Minyard 		if (request_region(addr + idx * info->io.regspacing,
1575d61a3eadSCorey Minyard 				   info->io.regsize, DEVICE_NAME) == NULL) {
1576d61a3eadSCorey Minyard 			/* Undo allocations */
1577d61a3eadSCorey Minyard 			while (idx--) {
1578d61a3eadSCorey Minyard 				release_region(addr + idx * info->io.regspacing,
1579d61a3eadSCorey Minyard 					       info->io.regsize);
1580d61a3eadSCorey Minyard 			}
15811da177e4SLinus Torvalds 			return -EIO;
1582d61a3eadSCorey Minyard 		}
1583d61a3eadSCorey Minyard 	}
15841da177e4SLinus Torvalds 	return 0;
15851da177e4SLinus Torvalds }
15861da177e4SLinus Torvalds 
158781d02b7fSCorey Minyard static unsigned char intf_mem_inb(const struct si_sm_io *io,
158881d02b7fSCorey Minyard 				  unsigned int offset)
15891da177e4SLinus Torvalds {
15901da177e4SLinus Torvalds 	return readb((io->addr)+(offset * io->regspacing));
15911da177e4SLinus Torvalds }
15921da177e4SLinus Torvalds 
159381d02b7fSCorey Minyard static void intf_mem_outb(const struct si_sm_io *io, unsigned int offset,
15941da177e4SLinus Torvalds 			  unsigned char b)
15951da177e4SLinus Torvalds {
15961da177e4SLinus Torvalds 	writeb(b, (io->addr)+(offset * io->regspacing));
15971da177e4SLinus Torvalds }
15981da177e4SLinus Torvalds 
159981d02b7fSCorey Minyard static unsigned char intf_mem_inw(const struct si_sm_io *io,
160081d02b7fSCorey Minyard 				  unsigned int offset)
16011da177e4SLinus Torvalds {
16021da177e4SLinus Torvalds 	return (readw((io->addr)+(offset * io->regspacing)) >> io->regshift)
160364d9fe69SAlexey Dobriyan 		& 0xff;
16041da177e4SLinus Torvalds }
16051da177e4SLinus Torvalds 
160681d02b7fSCorey Minyard static void intf_mem_outw(const struct si_sm_io *io, unsigned int offset,
16071da177e4SLinus Torvalds 			  unsigned char b)
16081da177e4SLinus Torvalds {
16091da177e4SLinus Torvalds 	writeb(b << io->regshift, (io->addr)+(offset * io->regspacing));
16101da177e4SLinus Torvalds }
16111da177e4SLinus Torvalds 
161281d02b7fSCorey Minyard static unsigned char intf_mem_inl(const struct si_sm_io *io,
161381d02b7fSCorey Minyard 				  unsigned int offset)
16141da177e4SLinus Torvalds {
16151da177e4SLinus Torvalds 	return (readl((io->addr)+(offset * io->regspacing)) >> io->regshift)
161664d9fe69SAlexey Dobriyan 		& 0xff;
16171da177e4SLinus Torvalds }
16181da177e4SLinus Torvalds 
161981d02b7fSCorey Minyard static void intf_mem_outl(const struct si_sm_io *io, unsigned int offset,
16201da177e4SLinus Torvalds 			  unsigned char b)
16211da177e4SLinus Torvalds {
16221da177e4SLinus Torvalds 	writel(b << io->regshift, (io->addr)+(offset * io->regspacing));
16231da177e4SLinus Torvalds }
16241da177e4SLinus Torvalds 
16251da177e4SLinus Torvalds #ifdef readq
162681d02b7fSCorey Minyard static unsigned char mem_inq(const struct si_sm_io *io, unsigned int offset)
16271da177e4SLinus Torvalds {
16281da177e4SLinus Torvalds 	return (readq((io->addr)+(offset * io->regspacing)) >> io->regshift)
162964d9fe69SAlexey Dobriyan 		& 0xff;
16301da177e4SLinus Torvalds }
16311da177e4SLinus Torvalds 
163281d02b7fSCorey Minyard static void mem_outq(const struct si_sm_io *io, unsigned int offset,
16331da177e4SLinus Torvalds 		     unsigned char b)
16341da177e4SLinus Torvalds {
16351da177e4SLinus Torvalds 	writeq(b << io->regshift, (io->addr)+(offset * io->regspacing));
16361da177e4SLinus Torvalds }
16371da177e4SLinus Torvalds #endif
16381da177e4SLinus Torvalds 
16391da177e4SLinus Torvalds static void mem_cleanup(struct smi_info *info)
16401da177e4SLinus Torvalds {
1641b0defcdbSCorey Minyard 	unsigned long addr = info->io.addr_data;
16421da177e4SLinus Torvalds 	int           mapsize;
16431da177e4SLinus Torvalds 
16441da177e4SLinus Torvalds 	if (info->io.addr) {
16451da177e4SLinus Torvalds 		iounmap(info->io.addr);
16461da177e4SLinus Torvalds 
16471da177e4SLinus Torvalds 		mapsize = ((info->io_size * info->io.regspacing)
16481da177e4SLinus Torvalds 			   - (info->io.regspacing - info->io.regsize));
16491da177e4SLinus Torvalds 
1650b0defcdbSCorey Minyard 		release_mem_region(addr, mapsize);
16511da177e4SLinus Torvalds 	}
16521da177e4SLinus Torvalds }
16531da177e4SLinus Torvalds 
16541da177e4SLinus Torvalds static int mem_setup(struct smi_info *info)
16551da177e4SLinus Torvalds {
1656b0defcdbSCorey Minyard 	unsigned long addr = info->io.addr_data;
16571da177e4SLinus Torvalds 	int           mapsize;
16581da177e4SLinus Torvalds 
1659b0defcdbSCorey Minyard 	if (!addr)
16601da177e4SLinus Torvalds 		return -ENODEV;
16611da177e4SLinus Torvalds 
16621da177e4SLinus Torvalds 	info->io_cleanup = mem_cleanup;
16631da177e4SLinus Torvalds 
1664c305e3d3SCorey Minyard 	/*
1665c305e3d3SCorey Minyard 	 * Figure out the actual readb/readw/readl/etc routine to use based
1666c305e3d3SCorey Minyard 	 * upon the register size.
1667c305e3d3SCorey Minyard 	 */
16681da177e4SLinus Torvalds 	switch (info->io.regsize) {
16691da177e4SLinus Torvalds 	case 1:
1670546cfdf4SAlexey Dobriyan 		info->io.inputb = intf_mem_inb;
1671546cfdf4SAlexey Dobriyan 		info->io.outputb = intf_mem_outb;
16721da177e4SLinus Torvalds 		break;
16731da177e4SLinus Torvalds 	case 2:
1674546cfdf4SAlexey Dobriyan 		info->io.inputb = intf_mem_inw;
1675546cfdf4SAlexey Dobriyan 		info->io.outputb = intf_mem_outw;
16761da177e4SLinus Torvalds 		break;
16771da177e4SLinus Torvalds 	case 4:
1678546cfdf4SAlexey Dobriyan 		info->io.inputb = intf_mem_inl;
1679546cfdf4SAlexey Dobriyan 		info->io.outputb = intf_mem_outl;
16801da177e4SLinus Torvalds 		break;
16811da177e4SLinus Torvalds #ifdef readq
16821da177e4SLinus Torvalds 	case 8:
16831da177e4SLinus Torvalds 		info->io.inputb = mem_inq;
16841da177e4SLinus Torvalds 		info->io.outputb = mem_outq;
16851da177e4SLinus Torvalds 		break;
16861da177e4SLinus Torvalds #endif
16871da177e4SLinus Torvalds 	default:
1688279fbd0cSMyron Stowe 		dev_warn(info->dev, "Invalid register size: %d\n",
16891da177e4SLinus Torvalds 			 info->io.regsize);
16901da177e4SLinus Torvalds 		return -EINVAL;
16911da177e4SLinus Torvalds 	}
16921da177e4SLinus Torvalds 
1693c305e3d3SCorey Minyard 	/*
1694c305e3d3SCorey Minyard 	 * Calculate the total amount of memory to claim.  This is an
16951da177e4SLinus Torvalds 	 * unusual looking calculation, but it avoids claiming any
16961da177e4SLinus Torvalds 	 * more memory than it has to.  It will claim everything
16971da177e4SLinus Torvalds 	 * between the first address to the end of the last full
1698c305e3d3SCorey Minyard 	 * register.
1699c305e3d3SCorey Minyard 	 */
17001da177e4SLinus Torvalds 	mapsize = ((info->io_size * info->io.regspacing)
17011da177e4SLinus Torvalds 		   - (info->io.regspacing - info->io.regsize));
17021da177e4SLinus Torvalds 
1703b0defcdbSCorey Minyard 	if (request_mem_region(addr, mapsize, DEVICE_NAME) == NULL)
17041da177e4SLinus Torvalds 		return -EIO;
17051da177e4SLinus Torvalds 
1706b0defcdbSCorey Minyard 	info->io.addr = ioremap(addr, mapsize);
17071da177e4SLinus Torvalds 	if (info->io.addr == NULL) {
1708b0defcdbSCorey Minyard 		release_mem_region(addr, mapsize);
17091da177e4SLinus Torvalds 		return -EIO;
17101da177e4SLinus Torvalds 	}
17111da177e4SLinus Torvalds 	return 0;
17121da177e4SLinus Torvalds }
17131da177e4SLinus Torvalds 
1714b361e27bSCorey Minyard /*
1715b361e27bSCorey Minyard  * Parms come in as <op1>[:op2[:op3...]].  ops are:
1716b361e27bSCorey Minyard  *   add|remove,kcs|bt|smic,mem|i/o,<address>[,<opt1>[,<opt2>[,...]]]
1717b361e27bSCorey Minyard  * Options are:
1718b361e27bSCorey Minyard  *   rsp=<regspacing>
1719b361e27bSCorey Minyard  *   rsi=<regsize>
1720b361e27bSCorey Minyard  *   rsh=<regshift>
1721b361e27bSCorey Minyard  *   irq=<irq>
1722b361e27bSCorey Minyard  *   ipmb=<ipmb addr>
1723b361e27bSCorey Minyard  */
1724b361e27bSCorey Minyard enum hotmod_op { HM_ADD, HM_REMOVE };
1725b361e27bSCorey Minyard struct hotmod_vals {
1726b361e27bSCorey Minyard 	char *name;
1727b361e27bSCorey Minyard 	int  val;
1728b361e27bSCorey Minyard };
1729b361e27bSCorey Minyard static struct hotmod_vals hotmod_ops[] = {
1730b361e27bSCorey Minyard 	{ "add",	HM_ADD },
1731b361e27bSCorey Minyard 	{ "remove",	HM_REMOVE },
1732b361e27bSCorey Minyard 	{ NULL }
1733b361e27bSCorey Minyard };
1734b361e27bSCorey Minyard static struct hotmod_vals hotmod_si[] = {
1735b361e27bSCorey Minyard 	{ "kcs",	SI_KCS },
1736b361e27bSCorey Minyard 	{ "smic",	SI_SMIC },
1737b361e27bSCorey Minyard 	{ "bt",		SI_BT },
1738b361e27bSCorey Minyard 	{ NULL }
1739b361e27bSCorey Minyard };
1740b361e27bSCorey Minyard static struct hotmod_vals hotmod_as[] = {
1741b361e27bSCorey Minyard 	{ "mem",	IPMI_MEM_ADDR_SPACE },
1742b361e27bSCorey Minyard 	{ "i/o",	IPMI_IO_ADDR_SPACE },
1743b361e27bSCorey Minyard 	{ NULL }
1744b361e27bSCorey Minyard };
17451d5636ccSCorey Minyard 
1746b361e27bSCorey Minyard static int parse_str(struct hotmod_vals *v, int *val, char *name, char **curr)
1747b361e27bSCorey Minyard {
1748b361e27bSCorey Minyard 	char *s;
1749b361e27bSCorey Minyard 	int  i;
1750b361e27bSCorey Minyard 
1751b361e27bSCorey Minyard 	s = strchr(*curr, ',');
1752b361e27bSCorey Minyard 	if (!s) {
1753b361e27bSCorey Minyard 		printk(KERN_WARNING PFX "No hotmod %s given.\n", name);
1754b361e27bSCorey Minyard 		return -EINVAL;
1755b361e27bSCorey Minyard 	}
1756b361e27bSCorey Minyard 	*s = '\0';
1757b361e27bSCorey Minyard 	s++;
1758ceb51ca8SCorey Minyard 	for (i = 0; v[i].name; i++) {
17591d5636ccSCorey Minyard 		if (strcmp(*curr, v[i].name) == 0) {
1760b361e27bSCorey Minyard 			*val = v[i].val;
1761b361e27bSCorey Minyard 			*curr = s;
1762b361e27bSCorey Minyard 			return 0;
1763b361e27bSCorey Minyard 		}
1764b361e27bSCorey Minyard 	}
1765b361e27bSCorey Minyard 
1766b361e27bSCorey Minyard 	printk(KERN_WARNING PFX "Invalid hotmod %s '%s'\n", name, *curr);
1767b361e27bSCorey Minyard 	return -EINVAL;
1768b361e27bSCorey Minyard }
1769b361e27bSCorey Minyard 
17701d5636ccSCorey Minyard static int check_hotmod_int_op(const char *curr, const char *option,
17711d5636ccSCorey Minyard 			       const char *name, int *val)
17721d5636ccSCorey Minyard {
17731d5636ccSCorey Minyard 	char *n;
17741d5636ccSCorey Minyard 
17751d5636ccSCorey Minyard 	if (strcmp(curr, name) == 0) {
17761d5636ccSCorey Minyard 		if (!option) {
17771d5636ccSCorey Minyard 			printk(KERN_WARNING PFX
17781d5636ccSCorey Minyard 			       "No option given for '%s'\n",
17791d5636ccSCorey Minyard 			       curr);
17801d5636ccSCorey Minyard 			return -EINVAL;
17811d5636ccSCorey Minyard 		}
17821d5636ccSCorey Minyard 		*val = simple_strtoul(option, &n, 0);
17831d5636ccSCorey Minyard 		if ((*n != '\0') || (*option == '\0')) {
17841d5636ccSCorey Minyard 			printk(KERN_WARNING PFX
17851d5636ccSCorey Minyard 			       "Bad option given for '%s'\n",
17861d5636ccSCorey Minyard 			       curr);
17871d5636ccSCorey Minyard 			return -EINVAL;
17881d5636ccSCorey Minyard 		}
17891d5636ccSCorey Minyard 		return 1;
17901d5636ccSCorey Minyard 	}
17911d5636ccSCorey Minyard 	return 0;
17921d5636ccSCorey Minyard }
17931d5636ccSCorey Minyard 
1794de5e2ddfSEric Dumazet static struct smi_info *smi_info_alloc(void)
1795de5e2ddfSEric Dumazet {
1796de5e2ddfSEric Dumazet 	struct smi_info *info = kzalloc(sizeof(*info), GFP_KERNEL);
1797de5e2ddfSEric Dumazet 
1798f60adf42SCorey Minyard 	if (info)
1799de5e2ddfSEric Dumazet 		spin_lock_init(&info->si_lock);
1800de5e2ddfSEric Dumazet 	return info;
1801de5e2ddfSEric Dumazet }
1802de5e2ddfSEric Dumazet 
1803b361e27bSCorey Minyard static int hotmod_handler(const char *val, struct kernel_param *kp)
1804b361e27bSCorey Minyard {
1805b361e27bSCorey Minyard 	char *str = kstrdup(val, GFP_KERNEL);
18061d5636ccSCorey Minyard 	int  rv;
1807b361e27bSCorey Minyard 	char *next, *curr, *s, *n, *o;
1808b361e27bSCorey Minyard 	enum hotmod_op op;
1809b361e27bSCorey Minyard 	enum si_type si_type;
1810b361e27bSCorey Minyard 	int  addr_space;
1811b361e27bSCorey Minyard 	unsigned long addr;
1812b361e27bSCorey Minyard 	int regspacing;
1813b361e27bSCorey Minyard 	int regsize;
1814b361e27bSCorey Minyard 	int regshift;
1815b361e27bSCorey Minyard 	int irq;
1816b361e27bSCorey Minyard 	int ipmb;
1817b361e27bSCorey Minyard 	int ival;
18181d5636ccSCorey Minyard 	int len;
1819b361e27bSCorey Minyard 	struct smi_info *info;
1820b361e27bSCorey Minyard 
1821b361e27bSCorey Minyard 	if (!str)
1822b361e27bSCorey Minyard 		return -ENOMEM;
1823b361e27bSCorey Minyard 
1824b361e27bSCorey Minyard 	/* Kill any trailing spaces, as we can get a "\n" from echo. */
18251d5636ccSCorey Minyard 	len = strlen(str);
18261d5636ccSCorey Minyard 	ival = len - 1;
1827b361e27bSCorey Minyard 	while ((ival >= 0) && isspace(str[ival])) {
1828b361e27bSCorey Minyard 		str[ival] = '\0';
1829b361e27bSCorey Minyard 		ival--;
1830b361e27bSCorey Minyard 	}
1831b361e27bSCorey Minyard 
1832b361e27bSCorey Minyard 	for (curr = str; curr; curr = next) {
1833b361e27bSCorey Minyard 		regspacing = 1;
1834b361e27bSCorey Minyard 		regsize = 1;
1835b361e27bSCorey Minyard 		regshift = 0;
1836b361e27bSCorey Minyard 		irq = 0;
18372f95d513SBela Lubkin 		ipmb = 0; /* Choose the default if not specified */
1838b361e27bSCorey Minyard 
1839b361e27bSCorey Minyard 		next = strchr(curr, ':');
1840b361e27bSCorey Minyard 		if (next) {
1841b361e27bSCorey Minyard 			*next = '\0';
1842b361e27bSCorey Minyard 			next++;
1843b361e27bSCorey Minyard 		}
1844b361e27bSCorey Minyard 
1845b361e27bSCorey Minyard 		rv = parse_str(hotmod_ops, &ival, "operation", &curr);
1846b361e27bSCorey Minyard 		if (rv)
1847b361e27bSCorey Minyard 			break;
1848b361e27bSCorey Minyard 		op = ival;
1849b361e27bSCorey Minyard 
1850b361e27bSCorey Minyard 		rv = parse_str(hotmod_si, &ival, "interface type", &curr);
1851b361e27bSCorey Minyard 		if (rv)
1852b361e27bSCorey Minyard 			break;
1853b361e27bSCorey Minyard 		si_type = ival;
1854b361e27bSCorey Minyard 
1855b361e27bSCorey Minyard 		rv = parse_str(hotmod_as, &addr_space, "address space", &curr);
1856b361e27bSCorey Minyard 		if (rv)
1857b361e27bSCorey Minyard 			break;
1858b361e27bSCorey Minyard 
1859b361e27bSCorey Minyard 		s = strchr(curr, ',');
1860b361e27bSCorey Minyard 		if (s) {
1861b361e27bSCorey Minyard 			*s = '\0';
1862b361e27bSCorey Minyard 			s++;
1863b361e27bSCorey Minyard 		}
1864b361e27bSCorey Minyard 		addr = simple_strtoul(curr, &n, 0);
1865b361e27bSCorey Minyard 		if ((*n != '\0') || (*curr == '\0')) {
1866b361e27bSCorey Minyard 			printk(KERN_WARNING PFX "Invalid hotmod address"
1867b361e27bSCorey Minyard 			       " '%s'\n", curr);
1868b361e27bSCorey Minyard 			break;
1869b361e27bSCorey Minyard 		}
1870b361e27bSCorey Minyard 
1871b361e27bSCorey Minyard 		while (s) {
1872b361e27bSCorey Minyard 			curr = s;
1873b361e27bSCorey Minyard 			s = strchr(curr, ',');
1874b361e27bSCorey Minyard 			if (s) {
1875b361e27bSCorey Minyard 				*s = '\0';
1876b361e27bSCorey Minyard 				s++;
1877b361e27bSCorey Minyard 			}
1878b361e27bSCorey Minyard 			o = strchr(curr, '=');
1879b361e27bSCorey Minyard 			if (o) {
1880b361e27bSCorey Minyard 				*o = '\0';
1881b361e27bSCorey Minyard 				o++;
1882b361e27bSCorey Minyard 			}
18831d5636ccSCorey Minyard 			rv = check_hotmod_int_op(curr, o, "rsp", &regspacing);
18841d5636ccSCorey Minyard 			if (rv < 0)
18851d5636ccSCorey Minyard 				goto out;
18861d5636ccSCorey Minyard 			else if (rv)
18871d5636ccSCorey Minyard 				continue;
18881d5636ccSCorey Minyard 			rv = check_hotmod_int_op(curr, o, "rsi", &regsize);
18891d5636ccSCorey Minyard 			if (rv < 0)
18901d5636ccSCorey Minyard 				goto out;
18911d5636ccSCorey Minyard 			else if (rv)
18921d5636ccSCorey Minyard 				continue;
18931d5636ccSCorey Minyard 			rv = check_hotmod_int_op(curr, o, "rsh", &regshift);
18941d5636ccSCorey Minyard 			if (rv < 0)
18951d5636ccSCorey Minyard 				goto out;
18961d5636ccSCorey Minyard 			else if (rv)
18971d5636ccSCorey Minyard 				continue;
18981d5636ccSCorey Minyard 			rv = check_hotmod_int_op(curr, o, "irq", &irq);
18991d5636ccSCorey Minyard 			if (rv < 0)
19001d5636ccSCorey Minyard 				goto out;
19011d5636ccSCorey Minyard 			else if (rv)
19021d5636ccSCorey Minyard 				continue;
19031d5636ccSCorey Minyard 			rv = check_hotmod_int_op(curr, o, "ipmb", &ipmb);
19041d5636ccSCorey Minyard 			if (rv < 0)
19051d5636ccSCorey Minyard 				goto out;
19061d5636ccSCorey Minyard 			else if (rv)
19071d5636ccSCorey Minyard 				continue;
1908b361e27bSCorey Minyard 
19091d5636ccSCorey Minyard 			rv = -EINVAL;
1910b361e27bSCorey Minyard 			printk(KERN_WARNING PFX
1911b361e27bSCorey Minyard 			       "Invalid hotmod option '%s'\n",
1912b361e27bSCorey Minyard 			       curr);
1913b361e27bSCorey Minyard 			goto out;
1914b361e27bSCorey Minyard 		}
1915b361e27bSCorey Minyard 
1916b361e27bSCorey Minyard 		if (op == HM_ADD) {
1917de5e2ddfSEric Dumazet 			info = smi_info_alloc();
1918b361e27bSCorey Minyard 			if (!info) {
1919b361e27bSCorey Minyard 				rv = -ENOMEM;
1920b361e27bSCorey Minyard 				goto out;
1921b361e27bSCorey Minyard 			}
1922b361e27bSCorey Minyard 
19235fedc4a2SMatthew Garrett 			info->addr_source = SI_HOTMOD;
1924b361e27bSCorey Minyard 			info->si_type = si_type;
1925b361e27bSCorey Minyard 			info->io.addr_data = addr;
1926b361e27bSCorey Minyard 			info->io.addr_type = addr_space;
1927b361e27bSCorey Minyard 			if (addr_space == IPMI_MEM_ADDR_SPACE)
1928b361e27bSCorey Minyard 				info->io_setup = mem_setup;
1929b361e27bSCorey Minyard 			else
1930b361e27bSCorey Minyard 				info->io_setup = port_setup;
1931b361e27bSCorey Minyard 
1932b361e27bSCorey Minyard 			info->io.addr = NULL;
1933b361e27bSCorey Minyard 			info->io.regspacing = regspacing;
1934b361e27bSCorey Minyard 			if (!info->io.regspacing)
1935b361e27bSCorey Minyard 				info->io.regspacing = DEFAULT_REGSPACING;
1936b361e27bSCorey Minyard 			info->io.regsize = regsize;
1937b361e27bSCorey Minyard 			if (!info->io.regsize)
1938b361e27bSCorey Minyard 				info->io.regsize = DEFAULT_REGSPACING;
1939b361e27bSCorey Minyard 			info->io.regshift = regshift;
1940b361e27bSCorey Minyard 			info->irq = irq;
1941b361e27bSCorey Minyard 			if (info->irq)
1942b361e27bSCorey Minyard 				info->irq_setup = std_irq_setup;
1943b361e27bSCorey Minyard 			info->slave_addr = ipmb;
1944b361e27bSCorey Minyard 
1945d02b3709SCorey Minyard 			rv = add_smi(info);
1946d02b3709SCorey Minyard 			if (rv) {
19477faefea6SYinghai Lu 				kfree(info);
1948d02b3709SCorey Minyard 				goto out;
1949d02b3709SCorey Minyard 			}
1950d02b3709SCorey Minyard 			rv = try_smi_init(info);
1951d02b3709SCorey Minyard 			if (rv) {
1952d02b3709SCorey Minyard 				cleanup_one_si(info);
1953d02b3709SCorey Minyard 				goto out;
19547faefea6SYinghai Lu 			}
19557faefea6SYinghai Lu 		} else {
1956b361e27bSCorey Minyard 			/* remove */
1957b361e27bSCorey Minyard 			struct smi_info *e, *tmp_e;
1958b361e27bSCorey Minyard 
1959b361e27bSCorey Minyard 			mutex_lock(&smi_infos_lock);
1960b361e27bSCorey Minyard 			list_for_each_entry_safe(e, tmp_e, &smi_infos, link) {
1961b361e27bSCorey Minyard 				if (e->io.addr_type != addr_space)
1962b361e27bSCorey Minyard 					continue;
1963b361e27bSCorey Minyard 				if (e->si_type != si_type)
1964b361e27bSCorey Minyard 					continue;
1965b361e27bSCorey Minyard 				if (e->io.addr_data == addr)
1966b361e27bSCorey Minyard 					cleanup_one_si(e);
1967b361e27bSCorey Minyard 			}
1968b361e27bSCorey Minyard 			mutex_unlock(&smi_infos_lock);
1969b361e27bSCorey Minyard 		}
1970b361e27bSCorey Minyard 	}
19711d5636ccSCorey Minyard 	rv = len;
1972b361e27bSCorey Minyard  out:
1973b361e27bSCorey Minyard 	kfree(str);
1974b361e27bSCorey Minyard 	return rv;
1975b361e27bSCorey Minyard }
1976b0defcdbSCorey Minyard 
19772223cbecSBill Pemberton static int hardcode_find_bmc(void)
19781da177e4SLinus Torvalds {
1979a1e9c9ddSRob Herring 	int ret = -ENODEV;
1980b0defcdbSCorey Minyard 	int             i;
19811da177e4SLinus Torvalds 	struct smi_info *info;
19821da177e4SLinus Torvalds 
1983b0defcdbSCorey Minyard 	for (i = 0; i < SI_MAX_PARMS; i++) {
1984b0defcdbSCorey Minyard 		if (!ports[i] && !addrs[i])
1985b0defcdbSCorey Minyard 			continue;
19861da177e4SLinus Torvalds 
1987de5e2ddfSEric Dumazet 		info = smi_info_alloc();
1988b0defcdbSCorey Minyard 		if (!info)
1989a1e9c9ddSRob Herring 			return -ENOMEM;
19901da177e4SLinus Torvalds 
19915fedc4a2SMatthew Garrett 		info->addr_source = SI_HARDCODED;
1992279fbd0cSMyron Stowe 		printk(KERN_INFO PFX "probing via hardcoded address\n");
1993b0defcdbSCorey Minyard 
19941d5636ccSCorey Minyard 		if (!si_type[i] || strcmp(si_type[i], "kcs") == 0) {
1995b0defcdbSCorey Minyard 			info->si_type = SI_KCS;
19961d5636ccSCorey Minyard 		} else if (strcmp(si_type[i], "smic") == 0) {
1997b0defcdbSCorey Minyard 			info->si_type = SI_SMIC;
19981d5636ccSCorey Minyard 		} else if (strcmp(si_type[i], "bt") == 0) {
1999b0defcdbSCorey Minyard 			info->si_type = SI_BT;
2000b0defcdbSCorey Minyard 		} else {
2001279fbd0cSMyron Stowe 			printk(KERN_WARNING PFX "Interface type specified "
2002b0defcdbSCorey Minyard 			       "for interface %d, was invalid: %s\n",
2003b0defcdbSCorey Minyard 			       i, si_type[i]);
2004b0defcdbSCorey Minyard 			kfree(info);
2005b0defcdbSCorey Minyard 			continue;
20061da177e4SLinus Torvalds 		}
20071da177e4SLinus Torvalds 
2008b0defcdbSCorey Minyard 		if (ports[i]) {
2009b0defcdbSCorey Minyard 			/* An I/O port */
2010b0defcdbSCorey Minyard 			info->io_setup = port_setup;
2011b0defcdbSCorey Minyard 			info->io.addr_data = ports[i];
2012b0defcdbSCorey Minyard 			info->io.addr_type = IPMI_IO_ADDR_SPACE;
2013b0defcdbSCorey Minyard 		} else if (addrs[i]) {
2014b0defcdbSCorey Minyard 			/* A memory port */
20151da177e4SLinus Torvalds 			info->io_setup = mem_setup;
2016b0defcdbSCorey Minyard 			info->io.addr_data = addrs[i];
2017b0defcdbSCorey Minyard 			info->io.addr_type = IPMI_MEM_ADDR_SPACE;
2018b0defcdbSCorey Minyard 		} else {
2019279fbd0cSMyron Stowe 			printk(KERN_WARNING PFX "Interface type specified "
2020279fbd0cSMyron Stowe 			       "for interface %d, but port and address were "
2021279fbd0cSMyron Stowe 			       "not set or set to zero.\n", i);
2022b0defcdbSCorey Minyard 			kfree(info);
2023b0defcdbSCorey Minyard 			continue;
2024b0defcdbSCorey Minyard 		}
2025b0defcdbSCorey Minyard 
20261da177e4SLinus Torvalds 		info->io.addr = NULL;
2027b0defcdbSCorey Minyard 		info->io.regspacing = regspacings[i];
20281da177e4SLinus Torvalds 		if (!info->io.regspacing)
20291da177e4SLinus Torvalds 			info->io.regspacing = DEFAULT_REGSPACING;
2030b0defcdbSCorey Minyard 		info->io.regsize = regsizes[i];
20311da177e4SLinus Torvalds 		if (!info->io.regsize)
20321da177e4SLinus Torvalds 			info->io.regsize = DEFAULT_REGSPACING;
2033b0defcdbSCorey Minyard 		info->io.regshift = regshifts[i];
2034b0defcdbSCorey Minyard 		info->irq = irqs[i];
2035b0defcdbSCorey Minyard 		if (info->irq)
2036b0defcdbSCorey Minyard 			info->irq_setup = std_irq_setup;
20372f95d513SBela Lubkin 		info->slave_addr = slave_addrs[i];
20381da177e4SLinus Torvalds 
20397faefea6SYinghai Lu 		if (!add_smi(info)) {
20402407d77aSMatthew Garrett 			if (try_smi_init(info))
20412407d77aSMatthew Garrett 				cleanup_one_si(info);
2042a1e9c9ddSRob Herring 			ret = 0;
20437faefea6SYinghai Lu 		} else {
20447faefea6SYinghai Lu 			kfree(info);
20457faefea6SYinghai Lu 		}
20461da177e4SLinus Torvalds 	}
2047a1e9c9ddSRob Herring 	return ret;
2048b0defcdbSCorey Minyard }
20491da177e4SLinus Torvalds 
20508466361aSLen Brown #ifdef CONFIG_ACPI
20511da177e4SLinus Torvalds 
20521da177e4SLinus Torvalds #include <linux/acpi.h>
20531da177e4SLinus Torvalds 
2054c305e3d3SCorey Minyard /*
2055c305e3d3SCorey Minyard  * Once we get an ACPI failure, we don't try any more, because we go
2056c305e3d3SCorey Minyard  * through the tables sequentially.  Once we don't find a table, there
2057c305e3d3SCorey Minyard  * are no more.
2058c305e3d3SCorey Minyard  */
20590c8204b3SRandy Dunlap static int acpi_failure;
20601da177e4SLinus Torvalds 
20611da177e4SLinus Torvalds /* For GPE-type interrupts. */
20628b6cd8adSLin Ming static u32 ipmi_acpi_gpe(acpi_handle gpe_device,
20638b6cd8adSLin Ming 	u32 gpe_number, void *context)
20641da177e4SLinus Torvalds {
20651da177e4SLinus Torvalds 	struct smi_info *smi_info = context;
20661da177e4SLinus Torvalds 	unsigned long   flags;
20671da177e4SLinus Torvalds 
20681da177e4SLinus Torvalds 	spin_lock_irqsave(&(smi_info->si_lock), flags);
20691da177e4SLinus Torvalds 
207064959e2dSCorey Minyard 	smi_inc_stat(smi_info, interrupts);
20711da177e4SLinus Torvalds 
2072f93aae9fSJohn Stultz 	debug_timestamp("ACPI_GPE");
2073f93aae9fSJohn Stultz 
20741da177e4SLinus Torvalds 	smi_event_handler(smi_info, 0);
20751da177e4SLinus Torvalds 	spin_unlock_irqrestore(&(smi_info->si_lock), flags);
20761da177e4SLinus Torvalds 
20771da177e4SLinus Torvalds 	return ACPI_INTERRUPT_HANDLED;
20781da177e4SLinus Torvalds }
20791da177e4SLinus Torvalds 
2080b0defcdbSCorey Minyard static void acpi_gpe_irq_cleanup(struct smi_info *info)
2081b0defcdbSCorey Minyard {
2082b0defcdbSCorey Minyard 	if (!info->irq)
2083b0defcdbSCorey Minyard 		return;
2084b0defcdbSCorey Minyard 
2085b0defcdbSCorey Minyard 	acpi_remove_gpe_handler(NULL, info->irq, &ipmi_acpi_gpe);
2086b0defcdbSCorey Minyard }
2087b0defcdbSCorey Minyard 
20881da177e4SLinus Torvalds static int acpi_gpe_irq_setup(struct smi_info *info)
20891da177e4SLinus Torvalds {
20901da177e4SLinus Torvalds 	acpi_status status;
20911da177e4SLinus Torvalds 
20921da177e4SLinus Torvalds 	if (!info->irq)
20931da177e4SLinus Torvalds 		return 0;
20941da177e4SLinus Torvalds 
20951da177e4SLinus Torvalds 	status = acpi_install_gpe_handler(NULL,
20961da177e4SLinus Torvalds 					  info->irq,
20971da177e4SLinus Torvalds 					  ACPI_GPE_LEVEL_TRIGGERED,
20981da177e4SLinus Torvalds 					  &ipmi_acpi_gpe,
20991da177e4SLinus Torvalds 					  info);
21001da177e4SLinus Torvalds 	if (status != AE_OK) {
2101279fbd0cSMyron Stowe 		dev_warn(info->dev, "%s unable to claim ACPI GPE %d,"
2102279fbd0cSMyron Stowe 			 " running polled\n", DEVICE_NAME, info->irq);
21031da177e4SLinus Torvalds 		info->irq = 0;
21041da177e4SLinus Torvalds 		return -EINVAL;
21051da177e4SLinus Torvalds 	} else {
2106b0defcdbSCorey Minyard 		info->irq_cleanup = acpi_gpe_irq_cleanup;
2107279fbd0cSMyron Stowe 		dev_info(info->dev, "Using ACPI GPE %d\n", info->irq);
21081da177e4SLinus Torvalds 		return 0;
21091da177e4SLinus Torvalds 	}
21101da177e4SLinus Torvalds }
21111da177e4SLinus Torvalds 
21121da177e4SLinus Torvalds /*
21131da177e4SLinus Torvalds  * Defined at
2114631dd1a8SJustin P. Mattock  * http://h21007.www2.hp.com/portal/download/files/unprot/hpspmi.pdf
21151da177e4SLinus Torvalds  */
21161da177e4SLinus Torvalds struct SPMITable {
21171da177e4SLinus Torvalds 	s8	Signature[4];
21181da177e4SLinus Torvalds 	u32	Length;
21191da177e4SLinus Torvalds 	u8	Revision;
21201da177e4SLinus Torvalds 	u8	Checksum;
21211da177e4SLinus Torvalds 	s8	OEMID[6];
21221da177e4SLinus Torvalds 	s8	OEMTableID[8];
21231da177e4SLinus Torvalds 	s8	OEMRevision[4];
21241da177e4SLinus Torvalds 	s8	CreatorID[4];
21251da177e4SLinus Torvalds 	s8	CreatorRevision[4];
21261da177e4SLinus Torvalds 	u8	InterfaceType;
21271da177e4SLinus Torvalds 	u8	IPMIlegacy;
21281da177e4SLinus Torvalds 	s16	SpecificationRevision;
21291da177e4SLinus Torvalds 
21301da177e4SLinus Torvalds 	/*
21311da177e4SLinus Torvalds 	 * Bit 0 - SCI interrupt supported
21321da177e4SLinus Torvalds 	 * Bit 1 - I/O APIC/SAPIC
21331da177e4SLinus Torvalds 	 */
21341da177e4SLinus Torvalds 	u8	InterruptType;
21351da177e4SLinus Torvalds 
2136c305e3d3SCorey Minyard 	/*
2137c305e3d3SCorey Minyard 	 * If bit 0 of InterruptType is set, then this is the SCI
2138c305e3d3SCorey Minyard 	 * interrupt in the GPEx_STS register.
2139c305e3d3SCorey Minyard 	 */
21401da177e4SLinus Torvalds 	u8	GPE;
21411da177e4SLinus Torvalds 
21421da177e4SLinus Torvalds 	s16	Reserved;
21431da177e4SLinus Torvalds 
2144c305e3d3SCorey Minyard 	/*
2145c305e3d3SCorey Minyard 	 * If bit 1 of InterruptType is set, then this is the I/O
2146c305e3d3SCorey Minyard 	 * APIC/SAPIC interrupt.
2147c305e3d3SCorey Minyard 	 */
21481da177e4SLinus Torvalds 	u32	GlobalSystemInterrupt;
21491da177e4SLinus Torvalds 
21501da177e4SLinus Torvalds 	/* The actual register address. */
21511da177e4SLinus Torvalds 	struct acpi_generic_address addr;
21521da177e4SLinus Torvalds 
21531da177e4SLinus Torvalds 	u8	UID[4];
21541da177e4SLinus Torvalds 
21551da177e4SLinus Torvalds 	s8      spmi_id[1]; /* A '\0' terminated array starts here. */
21561da177e4SLinus Torvalds };
21571da177e4SLinus Torvalds 
21582223cbecSBill Pemberton static int try_init_spmi(struct SPMITable *spmi)
21591da177e4SLinus Torvalds {
21601da177e4SLinus Torvalds 	struct smi_info  *info;
2161d02b3709SCorey Minyard 	int rv;
21621da177e4SLinus Torvalds 
21631da177e4SLinus Torvalds 	if (spmi->IPMIlegacy != 1) {
2164279fbd0cSMyron Stowe 		printk(KERN_INFO PFX "Bad SPMI legacy %d\n", spmi->IPMIlegacy);
21651da177e4SLinus Torvalds 		return -ENODEV;
21661da177e4SLinus Torvalds 	}
21671da177e4SLinus Torvalds 
2168de5e2ddfSEric Dumazet 	info = smi_info_alloc();
2169b0defcdbSCorey Minyard 	if (!info) {
2170279fbd0cSMyron Stowe 		printk(KERN_ERR PFX "Could not allocate SI data (3)\n");
2171b0defcdbSCorey Minyard 		return -ENOMEM;
2172b0defcdbSCorey Minyard 	}
2173b0defcdbSCorey Minyard 
21745fedc4a2SMatthew Garrett 	info->addr_source = SI_SPMI;
2175279fbd0cSMyron Stowe 	printk(KERN_INFO PFX "probing via SPMI\n");
21761da177e4SLinus Torvalds 
21771da177e4SLinus Torvalds 	/* Figure out the interface type. */
2178c305e3d3SCorey Minyard 	switch (spmi->InterfaceType) {
21791da177e4SLinus Torvalds 	case 1:	/* KCS */
2180b0defcdbSCorey Minyard 		info->si_type = SI_KCS;
21811da177e4SLinus Torvalds 		break;
21821da177e4SLinus Torvalds 	case 2:	/* SMIC */
2183b0defcdbSCorey Minyard 		info->si_type = SI_SMIC;
21841da177e4SLinus Torvalds 		break;
21851da177e4SLinus Torvalds 	case 3:	/* BT */
2186b0defcdbSCorey Minyard 		info->si_type = SI_BT;
21871da177e4SLinus Torvalds 		break;
2188ab42bf24SCorey Minyard 	case 4: /* SSIF, just ignore */
2189ab42bf24SCorey Minyard 		kfree(info);
2190ab42bf24SCorey Minyard 		return -EIO;
21911da177e4SLinus Torvalds 	default:
2192279fbd0cSMyron Stowe 		printk(KERN_INFO PFX "Unknown ACPI/SPMI SI type %d\n",
21931da177e4SLinus Torvalds 		       spmi->InterfaceType);
2194b0defcdbSCorey Minyard 		kfree(info);
21951da177e4SLinus Torvalds 		return -EIO;
21961da177e4SLinus Torvalds 	}
21971da177e4SLinus Torvalds 
21981da177e4SLinus Torvalds 	if (spmi->InterruptType & 1) {
21991da177e4SLinus Torvalds 		/* We've got a GPE interrupt. */
22001da177e4SLinus Torvalds 		info->irq = spmi->GPE;
22011da177e4SLinus Torvalds 		info->irq_setup = acpi_gpe_irq_setup;
22021da177e4SLinus Torvalds 	} else if (spmi->InterruptType & 2) {
22031da177e4SLinus Torvalds 		/* We've got an APIC/SAPIC interrupt. */
22041da177e4SLinus Torvalds 		info->irq = spmi->GlobalSystemInterrupt;
22051da177e4SLinus Torvalds 		info->irq_setup = std_irq_setup;
22061da177e4SLinus Torvalds 	} else {
22071da177e4SLinus Torvalds 		/* Use the default interrupt setting. */
22081da177e4SLinus Torvalds 		info->irq = 0;
22091da177e4SLinus Torvalds 		info->irq_setup = NULL;
22101da177e4SLinus Torvalds 	}
22111da177e4SLinus Torvalds 
221215a58ed1SAlexey Starikovskiy 	if (spmi->addr.bit_width) {
221335bc37a0SCorey Minyard 		/* A (hopefully) properly formed register bit width. */
221415a58ed1SAlexey Starikovskiy 		info->io.regspacing = spmi->addr.bit_width / 8;
221535bc37a0SCorey Minyard 	} else {
221635bc37a0SCorey Minyard 		info->io.regspacing = DEFAULT_REGSPACING;
221735bc37a0SCorey Minyard 	}
2218b0defcdbSCorey Minyard 	info->io.regsize = info->io.regspacing;
221915a58ed1SAlexey Starikovskiy 	info->io.regshift = spmi->addr.bit_offset;
22201da177e4SLinus Torvalds 
222115a58ed1SAlexey Starikovskiy 	if (spmi->addr.space_id == ACPI_ADR_SPACE_SYSTEM_MEMORY) {
22221da177e4SLinus Torvalds 		info->io_setup = mem_setup;
22238fe1425aSCorey Minyard 		info->io.addr_type = IPMI_MEM_ADDR_SPACE;
222415a58ed1SAlexey Starikovskiy 	} else if (spmi->addr.space_id == ACPI_ADR_SPACE_SYSTEM_IO) {
22251da177e4SLinus Torvalds 		info->io_setup = port_setup;
22268fe1425aSCorey Minyard 		info->io.addr_type = IPMI_IO_ADDR_SPACE;
22271da177e4SLinus Torvalds 	} else {
22281da177e4SLinus Torvalds 		kfree(info);
2229279fbd0cSMyron Stowe 		printk(KERN_WARNING PFX "Unknown ACPI I/O Address type\n");
22301da177e4SLinus Torvalds 		return -EIO;
22311da177e4SLinus Torvalds 	}
2232b0defcdbSCorey Minyard 	info->io.addr_data = spmi->addr.address;
22331da177e4SLinus Torvalds 
22347bb671e3SYinghai Lu 	pr_info("ipmi_si: SPMI: %s %#lx regsize %d spacing %d irq %d\n",
22357bb671e3SYinghai Lu 		 (info->io.addr_type == IPMI_IO_ADDR_SPACE) ? "io" : "mem",
22367bb671e3SYinghai Lu 		 info->io.addr_data, info->io.regsize, info->io.regspacing,
22377bb671e3SYinghai Lu 		 info->irq);
22387bb671e3SYinghai Lu 
2239d02b3709SCorey Minyard 	rv = add_smi(info);
2240d02b3709SCorey Minyard 	if (rv)
22417faefea6SYinghai Lu 		kfree(info);
22421da177e4SLinus Torvalds 
2243d02b3709SCorey Minyard 	return rv;
22441da177e4SLinus Torvalds }
2245b0defcdbSCorey Minyard 
22462223cbecSBill Pemberton static void spmi_find_bmc(void)
2247b0defcdbSCorey Minyard {
2248b0defcdbSCorey Minyard 	acpi_status      status;
2249b0defcdbSCorey Minyard 	struct SPMITable *spmi;
2250b0defcdbSCorey Minyard 	int              i;
2251b0defcdbSCorey Minyard 
2252b0defcdbSCorey Minyard 	if (acpi_disabled)
2253b0defcdbSCorey Minyard 		return;
2254b0defcdbSCorey Minyard 
2255b0defcdbSCorey Minyard 	if (acpi_failure)
2256b0defcdbSCorey Minyard 		return;
2257b0defcdbSCorey Minyard 
2258b0defcdbSCorey Minyard 	for (i = 0; ; i++) {
225915a58ed1SAlexey Starikovskiy 		status = acpi_get_table(ACPI_SIG_SPMI, i+1,
226015a58ed1SAlexey Starikovskiy 					(struct acpi_table_header **)&spmi);
2261b0defcdbSCorey Minyard 		if (status != AE_OK)
2262b0defcdbSCorey Minyard 			return;
2263b0defcdbSCorey Minyard 
226418a3e0bfSBjorn Helgaas 		try_init_spmi(spmi);
2265b0defcdbSCorey Minyard 	}
2266b0defcdbSCorey Minyard }
22671da177e4SLinus Torvalds #endif
22681da177e4SLinus Torvalds 
2269a9fad4ccSMatt Domsch #ifdef CONFIG_DMI
2270c305e3d3SCorey Minyard struct dmi_ipmi_data {
22711da177e4SLinus Torvalds 	u8   		type;
22721da177e4SLinus Torvalds 	u8   		addr_space;
22731da177e4SLinus Torvalds 	unsigned long	base_addr;
22741da177e4SLinus Torvalds 	u8   		irq;
22751da177e4SLinus Torvalds 	u8              offset;
22761da177e4SLinus Torvalds 	u8              slave_addr;
2277b0defcdbSCorey Minyard };
22781da177e4SLinus Torvalds 
22792223cbecSBill Pemberton static int decode_dmi(const struct dmi_header *dm,
2280b0defcdbSCorey Minyard 				struct dmi_ipmi_data *dmi)
22811da177e4SLinus Torvalds {
22821855256cSJeff Garzik 	const u8	*data = (const u8 *)dm;
22831da177e4SLinus Torvalds 	unsigned long  	base_addr;
22841da177e4SLinus Torvalds 	u8		reg_spacing;
2285b224cd3aSAndrey Panin 	u8              len = dm->length;
22861da177e4SLinus Torvalds 
2287b0defcdbSCorey Minyard 	dmi->type = data[4];
22881da177e4SLinus Torvalds 
22891da177e4SLinus Torvalds 	memcpy(&base_addr, data+8, sizeof(unsigned long));
22901da177e4SLinus Torvalds 	if (len >= 0x11) {
22911da177e4SLinus Torvalds 		if (base_addr & 1) {
22921da177e4SLinus Torvalds 			/* I/O */
22931da177e4SLinus Torvalds 			base_addr &= 0xFFFE;
2294b0defcdbSCorey Minyard 			dmi->addr_space = IPMI_IO_ADDR_SPACE;
2295c305e3d3SCorey Minyard 		} else
22961da177e4SLinus Torvalds 			/* Memory */
2297b0defcdbSCorey Minyard 			dmi->addr_space = IPMI_MEM_ADDR_SPACE;
2298c305e3d3SCorey Minyard 
22991da177e4SLinus Torvalds 		/* If bit 4 of byte 0x10 is set, then the lsb for the address
23001da177e4SLinus Torvalds 		   is odd. */
2301b0defcdbSCorey Minyard 		dmi->base_addr = base_addr | ((data[0x10] & 0x10) >> 4);
23021da177e4SLinus Torvalds 
2303b0defcdbSCorey Minyard 		dmi->irq = data[0x11];
23041da177e4SLinus Torvalds 
23051da177e4SLinus Torvalds 		/* The top two bits of byte 0x10 hold the register spacing. */
2306b224cd3aSAndrey Panin 		reg_spacing = (data[0x10] & 0xC0) >> 6;
23071da177e4SLinus Torvalds 		switch (reg_spacing) {
23081da177e4SLinus Torvalds 		case 0x00: /* Byte boundaries */
2309b0defcdbSCorey Minyard 		    dmi->offset = 1;
23101da177e4SLinus Torvalds 		    break;
23111da177e4SLinus Torvalds 		case 0x01: /* 32-bit boundaries */
2312b0defcdbSCorey Minyard 		    dmi->offset = 4;
23131da177e4SLinus Torvalds 		    break;
23141da177e4SLinus Torvalds 		case 0x02: /* 16-byte boundaries */
2315b0defcdbSCorey Minyard 		    dmi->offset = 16;
23161da177e4SLinus Torvalds 		    break;
23171da177e4SLinus Torvalds 		default:
23181da177e4SLinus Torvalds 		    /* Some other interface, just ignore it. */
23191da177e4SLinus Torvalds 		    return -EIO;
23201da177e4SLinus Torvalds 		}
23211da177e4SLinus Torvalds 	} else {
23221da177e4SLinus Torvalds 		/* Old DMI spec. */
2323c305e3d3SCorey Minyard 		/*
2324c305e3d3SCorey Minyard 		 * Note that technically, the lower bit of the base
232592068801SCorey Minyard 		 * address should be 1 if the address is I/O and 0 if
232692068801SCorey Minyard 		 * the address is in memory.  So many systems get that
232792068801SCorey Minyard 		 * wrong (and all that I have seen are I/O) so we just
232892068801SCorey Minyard 		 * ignore that bit and assume I/O.  Systems that use
2329c305e3d3SCorey Minyard 		 * memory should use the newer spec, anyway.
2330c305e3d3SCorey Minyard 		 */
2331b0defcdbSCorey Minyard 		dmi->base_addr = base_addr & 0xfffe;
2332b0defcdbSCorey Minyard 		dmi->addr_space = IPMI_IO_ADDR_SPACE;
2333b0defcdbSCorey Minyard 		dmi->offset = 1;
23341da177e4SLinus Torvalds 	}
23351da177e4SLinus Torvalds 
2336b0defcdbSCorey Minyard 	dmi->slave_addr = data[6];
23371da177e4SLinus Torvalds 
23381da177e4SLinus Torvalds 	return 0;
23391da177e4SLinus Torvalds }
23401da177e4SLinus Torvalds 
23412223cbecSBill Pemberton static void try_init_dmi(struct dmi_ipmi_data *ipmi_data)
23421da177e4SLinus Torvalds {
23431da177e4SLinus Torvalds 	struct smi_info *info;
23441da177e4SLinus Torvalds 
2345de5e2ddfSEric Dumazet 	info = smi_info_alloc();
2346b0defcdbSCorey Minyard 	if (!info) {
2347279fbd0cSMyron Stowe 		printk(KERN_ERR PFX "Could not allocate SI data\n");
2348b0defcdbSCorey Minyard 		return;
2349b0defcdbSCorey Minyard 	}
2350b0defcdbSCorey Minyard 
23515fedc4a2SMatthew Garrett 	info->addr_source = SI_SMBIOS;
2352279fbd0cSMyron Stowe 	printk(KERN_INFO PFX "probing via SMBIOS\n");
23531da177e4SLinus Torvalds 
23541da177e4SLinus Torvalds 	switch (ipmi_data->type) {
23551da177e4SLinus Torvalds 	case 0x01: /* KCS */
2356b0defcdbSCorey Minyard 		info->si_type = SI_KCS;
23571da177e4SLinus Torvalds 		break;
23581da177e4SLinus Torvalds 	case 0x02: /* SMIC */
2359b0defcdbSCorey Minyard 		info->si_type = SI_SMIC;
23601da177e4SLinus Torvalds 		break;
23611da177e4SLinus Torvalds 	case 0x03: /* BT */
2362b0defcdbSCorey Minyard 		info->si_type = SI_BT;
23631da177e4SLinus Torvalds 		break;
23641da177e4SLinus Torvalds 	default:
236580cd6920SJesper Juhl 		kfree(info);
2366b0defcdbSCorey Minyard 		return;
23671da177e4SLinus Torvalds 	}
23681da177e4SLinus Torvalds 
2369b0defcdbSCorey Minyard 	switch (ipmi_data->addr_space) {
2370b0defcdbSCorey Minyard 	case IPMI_MEM_ADDR_SPACE:
23711da177e4SLinus Torvalds 		info->io_setup = mem_setup;
2372b0defcdbSCorey Minyard 		info->io.addr_type = IPMI_MEM_ADDR_SPACE;
2373b0defcdbSCorey Minyard 		break;
23741da177e4SLinus Torvalds 
2375b0defcdbSCorey Minyard 	case IPMI_IO_ADDR_SPACE:
2376b0defcdbSCorey Minyard 		info->io_setup = port_setup;
2377b0defcdbSCorey Minyard 		info->io.addr_type = IPMI_IO_ADDR_SPACE;
2378b0defcdbSCorey Minyard 		break;
2379b0defcdbSCorey Minyard 
2380b0defcdbSCorey Minyard 	default:
2381b0defcdbSCorey Minyard 		kfree(info);
2382279fbd0cSMyron Stowe 		printk(KERN_WARNING PFX "Unknown SMBIOS I/O Address type: %d\n",
2383b0defcdbSCorey Minyard 		       ipmi_data->addr_space);
2384b0defcdbSCorey Minyard 		return;
2385b0defcdbSCorey Minyard 	}
2386b0defcdbSCorey Minyard 	info->io.addr_data = ipmi_data->base_addr;
2387b0defcdbSCorey Minyard 
2388b0defcdbSCorey Minyard 	info->io.regspacing = ipmi_data->offset;
23891da177e4SLinus Torvalds 	if (!info->io.regspacing)
23901da177e4SLinus Torvalds 		info->io.regspacing = DEFAULT_REGSPACING;
23911da177e4SLinus Torvalds 	info->io.regsize = DEFAULT_REGSPACING;
2392b0defcdbSCorey Minyard 	info->io.regshift = 0;
23931da177e4SLinus Torvalds 
23941da177e4SLinus Torvalds 	info->slave_addr = ipmi_data->slave_addr;
23951da177e4SLinus Torvalds 
2396b0defcdbSCorey Minyard 	info->irq = ipmi_data->irq;
2397b0defcdbSCorey Minyard 	if (info->irq)
2398b0defcdbSCorey Minyard 		info->irq_setup = std_irq_setup;
23991da177e4SLinus Torvalds 
24007bb671e3SYinghai Lu 	pr_info("ipmi_si: SMBIOS: %s %#lx regsize %d spacing %d irq %d\n",
24017bb671e3SYinghai Lu 		 (info->io.addr_type == IPMI_IO_ADDR_SPACE) ? "io" : "mem",
24027bb671e3SYinghai Lu 		 info->io.addr_data, info->io.regsize, info->io.regspacing,
24037bb671e3SYinghai Lu 		 info->irq);
24047bb671e3SYinghai Lu 
24057faefea6SYinghai Lu 	if (add_smi(info))
24067faefea6SYinghai Lu 		kfree(info);
2407b0defcdbSCorey Minyard }
24081da177e4SLinus Torvalds 
24092223cbecSBill Pemberton static void dmi_find_bmc(void)
2410b0defcdbSCorey Minyard {
24111855256cSJeff Garzik 	const struct dmi_device *dev = NULL;
2412b0defcdbSCorey Minyard 	struct dmi_ipmi_data data;
2413b0defcdbSCorey Minyard 	int                  rv;
2414b0defcdbSCorey Minyard 
2415b0defcdbSCorey Minyard 	while ((dev = dmi_find_device(DMI_DEV_TYPE_IPMI, NULL, dev))) {
2416397f4ebfSJeff Garzik 		memset(&data, 0, sizeof(data));
24171855256cSJeff Garzik 		rv = decode_dmi((const struct dmi_header *) dev->device_data,
24181855256cSJeff Garzik 				&data);
2419b0defcdbSCorey Minyard 		if (!rv)
2420b0defcdbSCorey Minyard 			try_init_dmi(&data);
2421b0defcdbSCorey Minyard 	}
24221da177e4SLinus Torvalds }
2423a9fad4ccSMatt Domsch #endif /* CONFIG_DMI */
24241da177e4SLinus Torvalds 
24251da177e4SLinus Torvalds #ifdef CONFIG_PCI
24261da177e4SLinus Torvalds 
24271da177e4SLinus Torvalds #define PCI_ERMC_CLASSCODE		0x0C0700
2428b0defcdbSCorey Minyard #define PCI_ERMC_CLASSCODE_MASK		0xffffff00
2429b0defcdbSCorey Minyard #define PCI_ERMC_CLASSCODE_TYPE_MASK	0xff
2430b0defcdbSCorey Minyard #define PCI_ERMC_CLASSCODE_TYPE_SMIC	0x00
2431b0defcdbSCorey Minyard #define PCI_ERMC_CLASSCODE_TYPE_KCS	0x01
2432b0defcdbSCorey Minyard #define PCI_ERMC_CLASSCODE_TYPE_BT	0x02
2433b0defcdbSCorey Minyard 
24341da177e4SLinus Torvalds #define PCI_HP_VENDOR_ID    0x103C
24351da177e4SLinus Torvalds #define PCI_MMC_DEVICE_ID   0x121A
24361da177e4SLinus Torvalds #define PCI_MMC_ADDR_CW     0x10
24371da177e4SLinus Torvalds 
2438b0defcdbSCorey Minyard static void ipmi_pci_cleanup(struct smi_info *info)
24391da177e4SLinus Torvalds {
2440b0defcdbSCorey Minyard 	struct pci_dev *pdev = info->addr_source_data;
2441b0defcdbSCorey Minyard 
2442b0defcdbSCorey Minyard 	pci_disable_device(pdev);
2443b0defcdbSCorey Minyard }
2444b0defcdbSCorey Minyard 
24452223cbecSBill Pemberton static int ipmi_pci_probe_regspacing(struct smi_info *info)
2446a6c16c28SCorey Minyard {
2447a6c16c28SCorey Minyard 	if (info->si_type == SI_KCS) {
2448a6c16c28SCorey Minyard 		unsigned char	status;
2449a6c16c28SCorey Minyard 		int		regspacing;
2450a6c16c28SCorey Minyard 
2451a6c16c28SCorey Minyard 		info->io.regsize = DEFAULT_REGSIZE;
2452a6c16c28SCorey Minyard 		info->io.regshift = 0;
2453a6c16c28SCorey Minyard 		info->io_size = 2;
2454a6c16c28SCorey Minyard 		info->handlers = &kcs_smi_handlers;
2455a6c16c28SCorey Minyard 
2456a6c16c28SCorey Minyard 		/* detect 1, 4, 16byte spacing */
2457a6c16c28SCorey Minyard 		for (regspacing = DEFAULT_REGSPACING; regspacing <= 16;) {
2458a6c16c28SCorey Minyard 			info->io.regspacing = regspacing;
2459a6c16c28SCorey Minyard 			if (info->io_setup(info)) {
2460a6c16c28SCorey Minyard 				dev_err(info->dev,
2461a6c16c28SCorey Minyard 					"Could not setup I/O space\n");
2462a6c16c28SCorey Minyard 				return DEFAULT_REGSPACING;
2463a6c16c28SCorey Minyard 			}
2464a6c16c28SCorey Minyard 			/* write invalid cmd */
2465a6c16c28SCorey Minyard 			info->io.outputb(&info->io, 1, 0x10);
2466a6c16c28SCorey Minyard 			/* read status back */
2467a6c16c28SCorey Minyard 			status = info->io.inputb(&info->io, 1);
2468a6c16c28SCorey Minyard 			info->io_cleanup(info);
2469a6c16c28SCorey Minyard 			if (status)
2470a6c16c28SCorey Minyard 				return regspacing;
2471a6c16c28SCorey Minyard 			regspacing *= 4;
2472a6c16c28SCorey Minyard 		}
2473a6c16c28SCorey Minyard 	}
2474a6c16c28SCorey Minyard 	return DEFAULT_REGSPACING;
2475a6c16c28SCorey Minyard }
2476a6c16c28SCorey Minyard 
24772223cbecSBill Pemberton static int ipmi_pci_probe(struct pci_dev *pdev,
2478b0defcdbSCorey Minyard 				    const struct pci_device_id *ent)
2479b0defcdbSCorey Minyard {
2480b0defcdbSCorey Minyard 	int rv;
2481b0defcdbSCorey Minyard 	int class_type = pdev->class & PCI_ERMC_CLASSCODE_TYPE_MASK;
24821da177e4SLinus Torvalds 	struct smi_info *info;
24831da177e4SLinus Torvalds 
2484de5e2ddfSEric Dumazet 	info = smi_info_alloc();
2485b0defcdbSCorey Minyard 	if (!info)
24861cd441f9SDave Jones 		return -ENOMEM;
24871da177e4SLinus Torvalds 
24885fedc4a2SMatthew Garrett 	info->addr_source = SI_PCI;
2489279fbd0cSMyron Stowe 	dev_info(&pdev->dev, "probing via PCI");
24901da177e4SLinus Torvalds 
2491b0defcdbSCorey Minyard 	switch (class_type) {
2492b0defcdbSCorey Minyard 	case PCI_ERMC_CLASSCODE_TYPE_SMIC:
2493b0defcdbSCorey Minyard 		info->si_type = SI_SMIC;
2494b0defcdbSCorey Minyard 		break;
2495b0defcdbSCorey Minyard 
2496b0defcdbSCorey Minyard 	case PCI_ERMC_CLASSCODE_TYPE_KCS:
2497b0defcdbSCorey Minyard 		info->si_type = SI_KCS;
2498b0defcdbSCorey Minyard 		break;
2499b0defcdbSCorey Minyard 
2500b0defcdbSCorey Minyard 	case PCI_ERMC_CLASSCODE_TYPE_BT:
2501b0defcdbSCorey Minyard 		info->si_type = SI_BT;
2502b0defcdbSCorey Minyard 		break;
2503b0defcdbSCorey Minyard 
2504b0defcdbSCorey Minyard 	default:
2505b0defcdbSCorey Minyard 		kfree(info);
2506279fbd0cSMyron Stowe 		dev_info(&pdev->dev, "Unknown IPMI type: %d\n", class_type);
25071cd441f9SDave Jones 		return -ENOMEM;
2508e8b33617SCorey Minyard 	}
25091da177e4SLinus Torvalds 
2510b0defcdbSCorey Minyard 	rv = pci_enable_device(pdev);
2511b0defcdbSCorey Minyard 	if (rv) {
2512279fbd0cSMyron Stowe 		dev_err(&pdev->dev, "couldn't enable PCI device\n");
2513b0defcdbSCorey Minyard 		kfree(info);
2514b0defcdbSCorey Minyard 		return rv;
25151da177e4SLinus Torvalds 	}
25161da177e4SLinus Torvalds 
2517b0defcdbSCorey Minyard 	info->addr_source_cleanup = ipmi_pci_cleanup;
2518b0defcdbSCorey Minyard 	info->addr_source_data = pdev;
25191da177e4SLinus Torvalds 
2520b0defcdbSCorey Minyard 	if (pci_resource_flags(pdev, 0) & IORESOURCE_IO) {
25211da177e4SLinus Torvalds 		info->io_setup = port_setup;
2522b0defcdbSCorey Minyard 		info->io.addr_type = IPMI_IO_ADDR_SPACE;
2523b0defcdbSCorey Minyard 	} else {
2524b0defcdbSCorey Minyard 		info->io_setup = mem_setup;
2525b0defcdbSCorey Minyard 		info->io.addr_type = IPMI_MEM_ADDR_SPACE;
2526b0defcdbSCorey Minyard 	}
2527b0defcdbSCorey Minyard 	info->io.addr_data = pci_resource_start(pdev, 0);
2528b0defcdbSCorey Minyard 
2529a6c16c28SCorey Minyard 	info->io.regspacing = ipmi_pci_probe_regspacing(info);
2530a6c16c28SCorey Minyard 	info->io.regsize = DEFAULT_REGSIZE;
2531b0defcdbSCorey Minyard 	info->io.regshift = 0;
25321da177e4SLinus Torvalds 
2533b0defcdbSCorey Minyard 	info->irq = pdev->irq;
2534b0defcdbSCorey Minyard 	if (info->irq)
2535b0defcdbSCorey Minyard 		info->irq_setup = std_irq_setup;
25361da177e4SLinus Torvalds 
253750c812b2SCorey Minyard 	info->dev = &pdev->dev;
2538fca3b747SCorey Minyard 	pci_set_drvdata(pdev, info);
253950c812b2SCorey Minyard 
2540279fbd0cSMyron Stowe 	dev_info(&pdev->dev, "%pR regsize %d spacing %d irq %d\n",
2541279fbd0cSMyron Stowe 		&pdev->resource[0], info->io.regsize, info->io.regspacing,
2542279fbd0cSMyron Stowe 		info->irq);
2543279fbd0cSMyron Stowe 
2544d02b3709SCorey Minyard 	rv = add_smi(info);
2545d02b3709SCorey Minyard 	if (rv) {
25467faefea6SYinghai Lu 		kfree(info);
2547d02b3709SCorey Minyard 		pci_disable_device(pdev);
2548d02b3709SCorey Minyard 	}
25497faefea6SYinghai Lu 
2550d02b3709SCorey Minyard 	return rv;
25511da177e4SLinus Torvalds }
25521da177e4SLinus Torvalds 
255339af33fcSBill Pemberton static void ipmi_pci_remove(struct pci_dev *pdev)
25541da177e4SLinus Torvalds {
2555fca3b747SCorey Minyard 	struct smi_info *info = pci_get_drvdata(pdev);
2556fca3b747SCorey Minyard 	cleanup_one_si(info);
2557d02b3709SCorey Minyard 	pci_disable_device(pdev);
25581da177e4SLinus Torvalds }
25591da177e4SLinus Torvalds 
256081d02b7fSCorey Minyard static const struct pci_device_id ipmi_pci_devices[] = {
2561b0defcdbSCorey Minyard 	{ PCI_DEVICE(PCI_HP_VENDOR_ID, PCI_MMC_DEVICE_ID) },
2562248bdd5eSKees Cook 	{ PCI_DEVICE_CLASS(PCI_ERMC_CLASSCODE, PCI_ERMC_CLASSCODE_MASK) },
2563248bdd5eSKees Cook 	{ 0, }
2564b0defcdbSCorey Minyard };
2565b0defcdbSCorey Minyard MODULE_DEVICE_TABLE(pci, ipmi_pci_devices);
2566b0defcdbSCorey Minyard 
2567b0defcdbSCorey Minyard static struct pci_driver ipmi_pci_driver = {
2568b0defcdbSCorey Minyard 	.name =         DEVICE_NAME,
2569b0defcdbSCorey Minyard 	.id_table =     ipmi_pci_devices,
2570b0defcdbSCorey Minyard 	.probe =        ipmi_pci_probe,
2571bcd2982aSGreg Kroah-Hartman 	.remove =       ipmi_pci_remove,
2572b0defcdbSCorey Minyard };
2573b0defcdbSCorey Minyard #endif /* CONFIG_PCI */
2574b0defcdbSCorey Minyard 
2575a1e9c9ddSRob Herring #ifdef CONFIG_OF
25760fbcf4afSCorey Minyard static const struct of_device_id of_ipmi_match[] = {
25770fbcf4afSCorey Minyard 	{ .type = "ipmi", .compatible = "ipmi-kcs",
25780fbcf4afSCorey Minyard 	  .data = (void *)(unsigned long) SI_KCS },
25790fbcf4afSCorey Minyard 	{ .type = "ipmi", .compatible = "ipmi-smic",
25800fbcf4afSCorey Minyard 	  .data = (void *)(unsigned long) SI_SMIC },
25810fbcf4afSCorey Minyard 	{ .type = "ipmi", .compatible = "ipmi-bt",
25820fbcf4afSCorey Minyard 	  .data = (void *)(unsigned long) SI_BT },
25830fbcf4afSCorey Minyard 	{},
25840fbcf4afSCorey Minyard };
258566f44018SLuis de Bethencourt MODULE_DEVICE_TABLE(of, of_ipmi_match);
25860fbcf4afSCorey Minyard 
25870fbcf4afSCorey Minyard static int of_ipmi_probe(struct platform_device *dev)
25880fbcf4afSCorey Minyard {
2589b1608d69SGrant Likely 	const struct of_device_id *match;
2590dba9b4f6SCorey Minyard 	struct smi_info *info;
2591dba9b4f6SCorey Minyard 	struct resource resource;
2592da81c3b9SRob Herring 	const __be32 *regsize, *regspacing, *regshift;
259361c7a080SGrant Likely 	struct device_node *np = dev->dev.of_node;
2594dba9b4f6SCorey Minyard 	int ret;
2595dba9b4f6SCorey Minyard 	int proplen;
2596dba9b4f6SCorey Minyard 
2597279fbd0cSMyron Stowe 	dev_info(&dev->dev, "probing via device tree\n");
2598dba9b4f6SCorey Minyard 
25990fbcf4afSCorey Minyard 	match = of_match_device(of_ipmi_match, &dev->dev);
2600b1608d69SGrant Likely 	if (!match)
26010fbcf4afSCorey Minyard 		return -ENODEV;
2602a1e9c9ddSRob Herring 
260308dc4169SBenjamin Herrenschmidt 	if (!of_device_is_available(np))
260408dc4169SBenjamin Herrenschmidt 		return -EINVAL;
260508dc4169SBenjamin Herrenschmidt 
2606dba9b4f6SCorey Minyard 	ret = of_address_to_resource(np, 0, &resource);
2607dba9b4f6SCorey Minyard 	if (ret) {
2608dba9b4f6SCorey Minyard 		dev_warn(&dev->dev, PFX "invalid address from OF\n");
2609dba9b4f6SCorey Minyard 		return ret;
2610dba9b4f6SCorey Minyard 	}
2611dba9b4f6SCorey Minyard 
26129c25099dSStephen Rothwell 	regsize = of_get_property(np, "reg-size", &proplen);
2613dba9b4f6SCorey Minyard 	if (regsize && proplen != 4) {
2614dba9b4f6SCorey Minyard 		dev_warn(&dev->dev, PFX "invalid regsize from OF\n");
2615dba9b4f6SCorey Minyard 		return -EINVAL;
2616dba9b4f6SCorey Minyard 	}
2617dba9b4f6SCorey Minyard 
26189c25099dSStephen Rothwell 	regspacing = of_get_property(np, "reg-spacing", &proplen);
2619dba9b4f6SCorey Minyard 	if (regspacing && proplen != 4) {
2620dba9b4f6SCorey Minyard 		dev_warn(&dev->dev, PFX "invalid regspacing from OF\n");
2621dba9b4f6SCorey Minyard 		return -EINVAL;
2622dba9b4f6SCorey Minyard 	}
2623dba9b4f6SCorey Minyard 
26249c25099dSStephen Rothwell 	regshift = of_get_property(np, "reg-shift", &proplen);
2625dba9b4f6SCorey Minyard 	if (regshift && proplen != 4) {
2626dba9b4f6SCorey Minyard 		dev_warn(&dev->dev, PFX "invalid regshift from OF\n");
2627dba9b4f6SCorey Minyard 		return -EINVAL;
2628dba9b4f6SCorey Minyard 	}
2629dba9b4f6SCorey Minyard 
2630de5e2ddfSEric Dumazet 	info = smi_info_alloc();
2631dba9b4f6SCorey Minyard 
2632dba9b4f6SCorey Minyard 	if (!info) {
2633dba9b4f6SCorey Minyard 		dev_err(&dev->dev,
2634279fbd0cSMyron Stowe 			"could not allocate memory for OF probe\n");
2635dba9b4f6SCorey Minyard 		return -ENOMEM;
2636dba9b4f6SCorey Minyard 	}
2637dba9b4f6SCorey Minyard 
2638b1608d69SGrant Likely 	info->si_type		= (enum si_type) match->data;
26395fedc4a2SMatthew Garrett 	info->addr_source	= SI_DEVICETREE;
2640dba9b4f6SCorey Minyard 	info->irq_setup		= std_irq_setup;
2641dba9b4f6SCorey Minyard 
26423b7ec117SNate Case 	if (resource.flags & IORESOURCE_IO) {
26433b7ec117SNate Case 		info->io_setup		= port_setup;
26443b7ec117SNate Case 		info->io.addr_type	= IPMI_IO_ADDR_SPACE;
26453b7ec117SNate Case 	} else {
26463b7ec117SNate Case 		info->io_setup		= mem_setup;
2647dba9b4f6SCorey Minyard 		info->io.addr_type	= IPMI_MEM_ADDR_SPACE;
26483b7ec117SNate Case 	}
26493b7ec117SNate Case 
2650dba9b4f6SCorey Minyard 	info->io.addr_data	= resource.start;
2651dba9b4f6SCorey Minyard 
2652da81c3b9SRob Herring 	info->io.regsize	= regsize ? be32_to_cpup(regsize) : DEFAULT_REGSIZE;
2653da81c3b9SRob Herring 	info->io.regspacing	= regspacing ? be32_to_cpup(regspacing) : DEFAULT_REGSPACING;
2654da81c3b9SRob Herring 	info->io.regshift	= regshift ? be32_to_cpup(regshift) : 0;
2655dba9b4f6SCorey Minyard 
265661c7a080SGrant Likely 	info->irq		= irq_of_parse_and_map(dev->dev.of_node, 0);
2657dba9b4f6SCorey Minyard 	info->dev		= &dev->dev;
2658dba9b4f6SCorey Minyard 
2659279fbd0cSMyron Stowe 	dev_dbg(&dev->dev, "addr 0x%lx regsize %d spacing %d irq %d\n",
2660dba9b4f6SCorey Minyard 		info->io.addr_data, info->io.regsize, info->io.regspacing,
2661dba9b4f6SCorey Minyard 		info->irq);
2662dba9b4f6SCorey Minyard 
26639de33df4SGreg Kroah-Hartman 	dev_set_drvdata(&dev->dev, info);
2664dba9b4f6SCorey Minyard 
2665d02b3709SCorey Minyard 	ret = add_smi(info);
2666d02b3709SCorey Minyard 	if (ret) {
26677faefea6SYinghai Lu 		kfree(info);
2668d02b3709SCorey Minyard 		return ret;
26697faefea6SYinghai Lu 	}
26707faefea6SYinghai Lu 	return 0;
2671dba9b4f6SCorey Minyard }
26720fbcf4afSCorey Minyard #else
26730fbcf4afSCorey Minyard #define of_ipmi_match NULL
26740fbcf4afSCorey Minyard static int of_ipmi_probe(struct platform_device *dev)
26750fbcf4afSCorey Minyard {
26760fbcf4afSCorey Minyard 	return -ENODEV;
26770fbcf4afSCorey Minyard }
26780fbcf4afSCorey Minyard #endif
26790fbcf4afSCorey Minyard 
26800fbcf4afSCorey Minyard #ifdef CONFIG_ACPI
26810fbcf4afSCorey Minyard static int acpi_ipmi_probe(struct platform_device *dev)
26820fbcf4afSCorey Minyard {
26830fbcf4afSCorey Minyard 	struct smi_info *info;
26840fbcf4afSCorey Minyard 	struct resource *res, *res_second;
26850fbcf4afSCorey Minyard 	acpi_handle handle;
26860fbcf4afSCorey Minyard 	acpi_status status;
26870fbcf4afSCorey Minyard 	unsigned long long tmp;
26880fbcf4afSCorey Minyard 	int rv = -EINVAL;
26890fbcf4afSCorey Minyard 
26900fbcf4afSCorey Minyard 	handle = ACPI_HANDLE(&dev->dev);
26910fbcf4afSCorey Minyard 	if (!handle)
26920fbcf4afSCorey Minyard 		return -ENODEV;
26930fbcf4afSCorey Minyard 
26940fbcf4afSCorey Minyard 	info = smi_info_alloc();
26950fbcf4afSCorey Minyard 	if (!info)
26960fbcf4afSCorey Minyard 		return -ENOMEM;
26970fbcf4afSCorey Minyard 
26980fbcf4afSCorey Minyard 	info->addr_source = SI_ACPI;
26990fbcf4afSCorey Minyard 	dev_info(&dev->dev, PFX "probing via ACPI\n");
27000fbcf4afSCorey Minyard 
27010fbcf4afSCorey Minyard 	info->addr_info.acpi_info.acpi_handle = handle;
27020fbcf4afSCorey Minyard 
27030fbcf4afSCorey Minyard 	/* _IFT tells us the interface type: KCS, BT, etc */
27040fbcf4afSCorey Minyard 	status = acpi_evaluate_integer(handle, "_IFT", NULL, &tmp);
27050fbcf4afSCorey Minyard 	if (ACPI_FAILURE(status)) {
27060fbcf4afSCorey Minyard 		dev_err(&dev->dev, "Could not find ACPI IPMI interface type\n");
27070fbcf4afSCorey Minyard 		goto err_free;
27080fbcf4afSCorey Minyard 	}
27090fbcf4afSCorey Minyard 
27100fbcf4afSCorey Minyard 	switch (tmp) {
27110fbcf4afSCorey Minyard 	case 1:
27120fbcf4afSCorey Minyard 		info->si_type = SI_KCS;
27130fbcf4afSCorey Minyard 		break;
27140fbcf4afSCorey Minyard 	case 2:
27150fbcf4afSCorey Minyard 		info->si_type = SI_SMIC;
27160fbcf4afSCorey Minyard 		break;
27170fbcf4afSCorey Minyard 	case 3:
27180fbcf4afSCorey Minyard 		info->si_type = SI_BT;
27190fbcf4afSCorey Minyard 		break;
27200fbcf4afSCorey Minyard 	case 4: /* SSIF, just ignore */
27210fbcf4afSCorey Minyard 		rv = -ENODEV;
27220fbcf4afSCorey Minyard 		goto err_free;
27230fbcf4afSCorey Minyard 	default:
27240fbcf4afSCorey Minyard 		dev_info(&dev->dev, "unknown IPMI type %lld\n", tmp);
27250fbcf4afSCorey Minyard 		goto err_free;
27260fbcf4afSCorey Minyard 	}
27270fbcf4afSCorey Minyard 
27280fbcf4afSCorey Minyard 	res = platform_get_resource(dev, IORESOURCE_IO, 0);
27290fbcf4afSCorey Minyard 	if (res) {
27300fbcf4afSCorey Minyard 		info->io_setup = port_setup;
27310fbcf4afSCorey Minyard 		info->io.addr_type = IPMI_IO_ADDR_SPACE;
27320fbcf4afSCorey Minyard 	} else {
27330fbcf4afSCorey Minyard 		res = platform_get_resource(dev, IORESOURCE_MEM, 0);
27340fbcf4afSCorey Minyard 		if (res) {
27350fbcf4afSCorey Minyard 			info->io_setup = mem_setup;
27360fbcf4afSCorey Minyard 			info->io.addr_type = IPMI_MEM_ADDR_SPACE;
27370fbcf4afSCorey Minyard 		}
27380fbcf4afSCorey Minyard 	}
27390fbcf4afSCorey Minyard 	if (!res) {
27400fbcf4afSCorey Minyard 		dev_err(&dev->dev, "no I/O or memory address\n");
27410fbcf4afSCorey Minyard 		goto err_free;
27420fbcf4afSCorey Minyard 	}
27430fbcf4afSCorey Minyard 	info->io.addr_data = res->start;
27440fbcf4afSCorey Minyard 
27450fbcf4afSCorey Minyard 	info->io.regspacing = DEFAULT_REGSPACING;
27460fbcf4afSCorey Minyard 	res_second = platform_get_resource(dev,
27470fbcf4afSCorey Minyard 			       (info->io.addr_type == IPMI_IO_ADDR_SPACE) ?
27480fbcf4afSCorey Minyard 					IORESOURCE_IO : IORESOURCE_MEM,
27490fbcf4afSCorey Minyard 			       1);
27500fbcf4afSCorey Minyard 	if (res_second) {
27510fbcf4afSCorey Minyard 		if (res_second->start > info->io.addr_data)
27520fbcf4afSCorey Minyard 			info->io.regspacing =
27530fbcf4afSCorey Minyard 				res_second->start - info->io.addr_data;
27540fbcf4afSCorey Minyard 	}
27550fbcf4afSCorey Minyard 	info->io.regsize = DEFAULT_REGSPACING;
27560fbcf4afSCorey Minyard 	info->io.regshift = 0;
27570fbcf4afSCorey Minyard 
27580fbcf4afSCorey Minyard 	/* If _GPE exists, use it; otherwise use standard interrupts */
27590fbcf4afSCorey Minyard 	status = acpi_evaluate_integer(handle, "_GPE", NULL, &tmp);
27600fbcf4afSCorey Minyard 	if (ACPI_SUCCESS(status)) {
27610fbcf4afSCorey Minyard 		info->irq = tmp;
27620fbcf4afSCorey Minyard 		info->irq_setup = acpi_gpe_irq_setup;
27630fbcf4afSCorey Minyard 	} else {
27640fbcf4afSCorey Minyard 		int irq = platform_get_irq(dev, 0);
27650fbcf4afSCorey Minyard 
27660fbcf4afSCorey Minyard 		if (irq > 0) {
27670fbcf4afSCorey Minyard 			info->irq = irq;
27680fbcf4afSCorey Minyard 			info->irq_setup = std_irq_setup;
27690fbcf4afSCorey Minyard 		}
27700fbcf4afSCorey Minyard 	}
27710fbcf4afSCorey Minyard 
27720fbcf4afSCorey Minyard 	info->dev = &dev->dev;
27730fbcf4afSCorey Minyard 	platform_set_drvdata(dev, info);
27740fbcf4afSCorey Minyard 
27750fbcf4afSCorey Minyard 	dev_info(info->dev, "%pR regsize %d spacing %d irq %d\n",
27760fbcf4afSCorey Minyard 		 res, info->io.regsize, info->io.regspacing,
27770fbcf4afSCorey Minyard 		 info->irq);
27780fbcf4afSCorey Minyard 
27790fbcf4afSCorey Minyard 	rv = add_smi(info);
27800fbcf4afSCorey Minyard 	if (rv)
27810fbcf4afSCorey Minyard 		kfree(info);
27820fbcf4afSCorey Minyard 
27830fbcf4afSCorey Minyard 	return rv;
27840fbcf4afSCorey Minyard 
27850fbcf4afSCorey Minyard err_free:
27860fbcf4afSCorey Minyard 	kfree(info);
27870fbcf4afSCorey Minyard 	return rv;
27880fbcf4afSCorey Minyard }
27890fbcf4afSCorey Minyard 
279081d02b7fSCorey Minyard static const struct acpi_device_id acpi_ipmi_match[] = {
27910fbcf4afSCorey Minyard 	{ "IPI0001", 0 },
27920fbcf4afSCorey Minyard 	{ },
27930fbcf4afSCorey Minyard };
27940fbcf4afSCorey Minyard MODULE_DEVICE_TABLE(acpi, acpi_ipmi_match);
27950fbcf4afSCorey Minyard #else
27960fbcf4afSCorey Minyard static int acpi_ipmi_probe(struct platform_device *dev)
27970fbcf4afSCorey Minyard {
27980fbcf4afSCorey Minyard 	return -ENODEV;
27990fbcf4afSCorey Minyard }
28000fbcf4afSCorey Minyard #endif
28010fbcf4afSCorey Minyard 
28020fbcf4afSCorey Minyard static int ipmi_probe(struct platform_device *dev)
28030fbcf4afSCorey Minyard {
28040fbcf4afSCorey Minyard 	if (of_ipmi_probe(dev) == 0)
28050fbcf4afSCorey Minyard 		return 0;
28060fbcf4afSCorey Minyard 
28070fbcf4afSCorey Minyard 	return acpi_ipmi_probe(dev);
28080fbcf4afSCorey Minyard }
2809dba9b4f6SCorey Minyard 
281039af33fcSBill Pemberton static int ipmi_remove(struct platform_device *dev)
2811dba9b4f6SCorey Minyard {
28120fbcf4afSCorey Minyard 	struct smi_info *info = dev_get_drvdata(&dev->dev);
28130fbcf4afSCorey Minyard 
28140fbcf4afSCorey Minyard 	cleanup_one_si(info);
2815dba9b4f6SCorey Minyard 	return 0;
2816dba9b4f6SCorey Minyard }
2817dba9b4f6SCorey Minyard 
2818a1e9c9ddSRob Herring static struct platform_driver ipmi_driver = {
28194018294bSGrant Likely 	.driver = {
2820a1e9c9ddSRob Herring 		.name = DEVICE_NAME,
28210fbcf4afSCorey Minyard 		.of_match_table = of_ipmi_match,
28220fbcf4afSCorey Minyard 		.acpi_match_table = ACPI_PTR(acpi_ipmi_match),
28234018294bSGrant Likely 	},
2824a1e9c9ddSRob Herring 	.probe		= ipmi_probe,
2825bcd2982aSGreg Kroah-Hartman 	.remove		= ipmi_remove,
2826dba9b4f6SCorey Minyard };
2827dba9b4f6SCorey Minyard 
2828fdbeb7deSThomas Bogendoerfer #ifdef CONFIG_PARISC
2829fdbeb7deSThomas Bogendoerfer static int ipmi_parisc_probe(struct parisc_device *dev)
2830fdbeb7deSThomas Bogendoerfer {
2831fdbeb7deSThomas Bogendoerfer 	struct smi_info *info;
2832dfa19426SGeert Uytterhoeven 	int rv;
2833fdbeb7deSThomas Bogendoerfer 
2834fdbeb7deSThomas Bogendoerfer 	info = smi_info_alloc();
2835fdbeb7deSThomas Bogendoerfer 
2836fdbeb7deSThomas Bogendoerfer 	if (!info) {
2837fdbeb7deSThomas Bogendoerfer 		dev_err(&dev->dev,
2838fdbeb7deSThomas Bogendoerfer 			"could not allocate memory for PARISC probe\n");
2839fdbeb7deSThomas Bogendoerfer 		return -ENOMEM;
2840fdbeb7deSThomas Bogendoerfer 	}
2841fdbeb7deSThomas Bogendoerfer 
2842fdbeb7deSThomas Bogendoerfer 	info->si_type		= SI_KCS;
2843fdbeb7deSThomas Bogendoerfer 	info->addr_source	= SI_DEVICETREE;
2844fdbeb7deSThomas Bogendoerfer 	info->io_setup		= mem_setup;
2845fdbeb7deSThomas Bogendoerfer 	info->io.addr_type	= IPMI_MEM_ADDR_SPACE;
2846fdbeb7deSThomas Bogendoerfer 	info->io.addr_data	= dev->hpa.start;
2847fdbeb7deSThomas Bogendoerfer 	info->io.regsize	= 1;
2848fdbeb7deSThomas Bogendoerfer 	info->io.regspacing	= 1;
2849fdbeb7deSThomas Bogendoerfer 	info->io.regshift	= 0;
2850fdbeb7deSThomas Bogendoerfer 	info->irq		= 0; /* no interrupt */
2851fdbeb7deSThomas Bogendoerfer 	info->irq_setup		= NULL;
2852fdbeb7deSThomas Bogendoerfer 	info->dev		= &dev->dev;
2853fdbeb7deSThomas Bogendoerfer 
2854fdbeb7deSThomas Bogendoerfer 	dev_dbg(&dev->dev, "addr 0x%lx\n", info->io.addr_data);
2855fdbeb7deSThomas Bogendoerfer 
2856fdbeb7deSThomas Bogendoerfer 	dev_set_drvdata(&dev->dev, info);
2857fdbeb7deSThomas Bogendoerfer 
2858d02b3709SCorey Minyard 	rv = add_smi(info);
2859d02b3709SCorey Minyard 	if (rv) {
2860fdbeb7deSThomas Bogendoerfer 		kfree(info);
2861d02b3709SCorey Minyard 		return rv;
2862fdbeb7deSThomas Bogendoerfer 	}
2863fdbeb7deSThomas Bogendoerfer 
2864fdbeb7deSThomas Bogendoerfer 	return 0;
2865fdbeb7deSThomas Bogendoerfer }
2866fdbeb7deSThomas Bogendoerfer 
2867fdbeb7deSThomas Bogendoerfer static int ipmi_parisc_remove(struct parisc_device *dev)
2868fdbeb7deSThomas Bogendoerfer {
2869fdbeb7deSThomas Bogendoerfer 	cleanup_one_si(dev_get_drvdata(&dev->dev));
2870fdbeb7deSThomas Bogendoerfer 	return 0;
2871fdbeb7deSThomas Bogendoerfer }
2872fdbeb7deSThomas Bogendoerfer 
2873fdbeb7deSThomas Bogendoerfer static struct parisc_device_id ipmi_parisc_tbl[] = {
2874fdbeb7deSThomas Bogendoerfer 	{ HPHW_MC, HVERSION_REV_ANY_ID, 0x004, 0xC0 },
2875fdbeb7deSThomas Bogendoerfer 	{ 0, }
2876fdbeb7deSThomas Bogendoerfer };
2877fdbeb7deSThomas Bogendoerfer 
2878fdbeb7deSThomas Bogendoerfer static struct parisc_driver ipmi_parisc_driver = {
2879fdbeb7deSThomas Bogendoerfer 	.name =		"ipmi",
2880fdbeb7deSThomas Bogendoerfer 	.id_table =	ipmi_parisc_tbl,
2881fdbeb7deSThomas Bogendoerfer 	.probe =	ipmi_parisc_probe,
2882fdbeb7deSThomas Bogendoerfer 	.remove =	ipmi_parisc_remove,
2883fdbeb7deSThomas Bogendoerfer };
2884fdbeb7deSThomas Bogendoerfer #endif /* CONFIG_PARISC */
2885fdbeb7deSThomas Bogendoerfer 
288640112ae7SCorey Minyard static int wait_for_msg_done(struct smi_info *smi_info)
28871da177e4SLinus Torvalds {
28881da177e4SLinus Torvalds 	enum si_sm_result     smi_result;
28891da177e4SLinus Torvalds 
28901da177e4SLinus Torvalds 	smi_result = smi_info->handlers->event(smi_info->si_sm, 0);
2891c305e3d3SCorey Minyard 	for (;;) {
2892c3e7e791SCorey Minyard 		if (smi_result == SI_SM_CALL_WITH_DELAY ||
2893c3e7e791SCorey Minyard 		    smi_result == SI_SM_CALL_WITH_TICK_DELAY) {
2894da4cd8dfSNishanth Aravamudan 			schedule_timeout_uninterruptible(1);
28951da177e4SLinus Torvalds 			smi_result = smi_info->handlers->event(
2896e21404dcSXie XiuQi 				smi_info->si_sm, jiffies_to_usecs(1));
2897c305e3d3SCorey Minyard 		} else if (smi_result == SI_SM_CALL_WITHOUT_DELAY) {
28981da177e4SLinus Torvalds 			smi_result = smi_info->handlers->event(
28991da177e4SLinus Torvalds 				smi_info->si_sm, 0);
2900c305e3d3SCorey Minyard 		} else
29011da177e4SLinus Torvalds 			break;
29021da177e4SLinus Torvalds 	}
290340112ae7SCorey Minyard 	if (smi_result == SI_SM_HOSED)
2904c305e3d3SCorey Minyard 		/*
2905c305e3d3SCorey Minyard 		 * We couldn't get the state machine to run, so whatever's at
2906c305e3d3SCorey Minyard 		 * the port is probably not an IPMI SMI interface.
2907c305e3d3SCorey Minyard 		 */
290840112ae7SCorey Minyard 		return -ENODEV;
290940112ae7SCorey Minyard 
291040112ae7SCorey Minyard 	return 0;
29111da177e4SLinus Torvalds }
29121da177e4SLinus Torvalds 
291340112ae7SCorey Minyard static int try_get_dev_id(struct smi_info *smi_info)
291440112ae7SCorey Minyard {
291540112ae7SCorey Minyard 	unsigned char         msg[2];
291640112ae7SCorey Minyard 	unsigned char         *resp;
291740112ae7SCorey Minyard 	unsigned long         resp_len;
291840112ae7SCorey Minyard 	int                   rv = 0;
291940112ae7SCorey Minyard 
292040112ae7SCorey Minyard 	resp = kmalloc(IPMI_MAX_MSG_LENGTH, GFP_KERNEL);
292140112ae7SCorey Minyard 	if (!resp)
292240112ae7SCorey Minyard 		return -ENOMEM;
292340112ae7SCorey Minyard 
292440112ae7SCorey Minyard 	/*
292540112ae7SCorey Minyard 	 * Do a Get Device ID command, since it comes back with some
292640112ae7SCorey Minyard 	 * useful info.
292740112ae7SCorey Minyard 	 */
292840112ae7SCorey Minyard 	msg[0] = IPMI_NETFN_APP_REQUEST << 2;
292940112ae7SCorey Minyard 	msg[1] = IPMI_GET_DEVICE_ID_CMD;
293040112ae7SCorey Minyard 	smi_info->handlers->start_transaction(smi_info->si_sm, msg, 2);
293140112ae7SCorey Minyard 
293240112ae7SCorey Minyard 	rv = wait_for_msg_done(smi_info);
293340112ae7SCorey Minyard 	if (rv)
293440112ae7SCorey Minyard 		goto out;
293540112ae7SCorey Minyard 
29361da177e4SLinus Torvalds 	resp_len = smi_info->handlers->get_result(smi_info->si_sm,
29371da177e4SLinus Torvalds 						  resp, IPMI_MAX_MSG_LENGTH);
29381da177e4SLinus Torvalds 
2939d8c98618SCorey Minyard 	/* Check and record info from the get device id, in case we need it. */
2940d8c98618SCorey Minyard 	rv = ipmi_demangle_device_id(resp, resp_len, &smi_info->device_id);
29411da177e4SLinus Torvalds 
29421da177e4SLinus Torvalds  out:
29431da177e4SLinus Torvalds 	kfree(resp);
29441da177e4SLinus Torvalds 	return rv;
29451da177e4SLinus Torvalds }
29461da177e4SLinus Torvalds 
2947d0882897SCorey Minyard static int get_global_enables(struct smi_info *smi_info, u8 *enables)
29481e7d6a45SCorey Minyard {
29491e7d6a45SCorey Minyard 	unsigned char         msg[3];
29501e7d6a45SCorey Minyard 	unsigned char         *resp;
29511e7d6a45SCorey Minyard 	unsigned long         resp_len;
29521e7d6a45SCorey Minyard 	int                   rv;
29531e7d6a45SCorey Minyard 
29541e7d6a45SCorey Minyard 	resp = kmalloc(IPMI_MAX_MSG_LENGTH, GFP_KERNEL);
2955d0882897SCorey Minyard 	if (!resp)
2956d0882897SCorey Minyard 		return -ENOMEM;
29571e7d6a45SCorey Minyard 
29581e7d6a45SCorey Minyard 	msg[0] = IPMI_NETFN_APP_REQUEST << 2;
29591e7d6a45SCorey Minyard 	msg[1] = IPMI_GET_BMC_GLOBAL_ENABLES_CMD;
29601e7d6a45SCorey Minyard 	smi_info->handlers->start_transaction(smi_info->si_sm, msg, 2);
29611e7d6a45SCorey Minyard 
29621e7d6a45SCorey Minyard 	rv = wait_for_msg_done(smi_info);
29631e7d6a45SCorey Minyard 	if (rv) {
2964d0882897SCorey Minyard 		dev_warn(smi_info->dev,
2965d0882897SCorey Minyard 			 "Error getting response from get global enables command: %d\n",
2966d0882897SCorey Minyard 			 rv);
29671e7d6a45SCorey Minyard 		goto out;
29681e7d6a45SCorey Minyard 	}
29691e7d6a45SCorey Minyard 
29701e7d6a45SCorey Minyard 	resp_len = smi_info->handlers->get_result(smi_info->si_sm,
29711e7d6a45SCorey Minyard 						  resp, IPMI_MAX_MSG_LENGTH);
29721e7d6a45SCorey Minyard 
29731e7d6a45SCorey Minyard 	if (resp_len < 4 ||
29741e7d6a45SCorey Minyard 			resp[0] != (IPMI_NETFN_APP_REQUEST | 1) << 2 ||
29751e7d6a45SCorey Minyard 			resp[1] != IPMI_GET_BMC_GLOBAL_ENABLES_CMD   ||
29761e7d6a45SCorey Minyard 			resp[2] != 0) {
2977d0882897SCorey Minyard 		dev_warn(smi_info->dev,
2978d0882897SCorey Minyard 			 "Invalid return from get global enables command: %ld %x %x %x\n",
2979d0882897SCorey Minyard 			 resp_len, resp[0], resp[1], resp[2]);
29801e7d6a45SCorey Minyard 		rv = -EINVAL;
29811e7d6a45SCorey Minyard 		goto out;
2982d0882897SCorey Minyard 	} else {
2983d0882897SCorey Minyard 		*enables = resp[3];
29841e7d6a45SCorey Minyard 	}
29851e7d6a45SCorey Minyard 
2986d0882897SCorey Minyard out:
2987d0882897SCorey Minyard 	kfree(resp);
2988d0882897SCorey Minyard 	return rv;
2989d0882897SCorey Minyard }
2990d0882897SCorey Minyard 
2991d0882897SCorey Minyard /*
2992d0882897SCorey Minyard  * Returns 1 if it gets an error from the command.
2993d0882897SCorey Minyard  */
2994d0882897SCorey Minyard static int set_global_enables(struct smi_info *smi_info, u8 enables)
2995d0882897SCorey Minyard {
2996d0882897SCorey Minyard 	unsigned char         msg[3];
2997d0882897SCorey Minyard 	unsigned char         *resp;
2998d0882897SCorey Minyard 	unsigned long         resp_len;
2999d0882897SCorey Minyard 	int                   rv;
3000d0882897SCorey Minyard 
3001d0882897SCorey Minyard 	resp = kmalloc(IPMI_MAX_MSG_LENGTH, GFP_KERNEL);
3002d0882897SCorey Minyard 	if (!resp)
3003d0882897SCorey Minyard 		return -ENOMEM;
30041e7d6a45SCorey Minyard 
30051e7d6a45SCorey Minyard 	msg[0] = IPMI_NETFN_APP_REQUEST << 2;
30061e7d6a45SCorey Minyard 	msg[1] = IPMI_SET_BMC_GLOBAL_ENABLES_CMD;
3007d0882897SCorey Minyard 	msg[2] = enables;
30081e7d6a45SCorey Minyard 	smi_info->handlers->start_transaction(smi_info->si_sm, msg, 3);
30091e7d6a45SCorey Minyard 
30101e7d6a45SCorey Minyard 	rv = wait_for_msg_done(smi_info);
30111e7d6a45SCorey Minyard 	if (rv) {
3012d0882897SCorey Minyard 		dev_warn(smi_info->dev,
3013d0882897SCorey Minyard 			 "Error getting response from set global enables command: %d\n",
3014d0882897SCorey Minyard 			 rv);
30151e7d6a45SCorey Minyard 		goto out;
30161e7d6a45SCorey Minyard 	}
30171e7d6a45SCorey Minyard 
30181e7d6a45SCorey Minyard 	resp_len = smi_info->handlers->get_result(smi_info->si_sm,
30191e7d6a45SCorey Minyard 						  resp, IPMI_MAX_MSG_LENGTH);
30201e7d6a45SCorey Minyard 
30211e7d6a45SCorey Minyard 	if (resp_len < 3 ||
30221e7d6a45SCorey Minyard 			resp[0] != (IPMI_NETFN_APP_REQUEST | 1) << 2 ||
30231e7d6a45SCorey Minyard 			resp[1] != IPMI_SET_BMC_GLOBAL_ENABLES_CMD) {
3024d0882897SCorey Minyard 		dev_warn(smi_info->dev,
3025d0882897SCorey Minyard 			 "Invalid return from set global enables command: %ld %x %x\n",
3026d0882897SCorey Minyard 			 resp_len, resp[0], resp[1]);
30271e7d6a45SCorey Minyard 		rv = -EINVAL;
30281e7d6a45SCorey Minyard 		goto out;
30291e7d6a45SCorey Minyard 	}
30301e7d6a45SCorey Minyard 
3031d0882897SCorey Minyard 	if (resp[2] != 0)
3032d0882897SCorey Minyard 		rv = 1;
3033d0882897SCorey Minyard 
3034d0882897SCorey Minyard out:
3035d0882897SCorey Minyard 	kfree(resp);
3036d0882897SCorey Minyard 	return rv;
3037d0882897SCorey Minyard }
3038d0882897SCorey Minyard 
3039d0882897SCorey Minyard /*
3040d0882897SCorey Minyard  * Some BMCs do not support clearing the receive irq bit in the global
3041d0882897SCorey Minyard  * enables (even if they don't support interrupts on the BMC).  Check
3042d0882897SCorey Minyard  * for this and handle it properly.
3043d0882897SCorey Minyard  */
3044d0882897SCorey Minyard static void check_clr_rcv_irq(struct smi_info *smi_info)
3045d0882897SCorey Minyard {
3046d0882897SCorey Minyard 	u8 enables = 0;
3047d0882897SCorey Minyard 	int rv;
3048d0882897SCorey Minyard 
3049d0882897SCorey Minyard 	rv = get_global_enables(smi_info, &enables);
3050d0882897SCorey Minyard 	if (!rv) {
3051d0882897SCorey Minyard 		if ((enables & IPMI_BMC_RCV_MSG_INTR) == 0)
3052d0882897SCorey Minyard 			/* Already clear, should work ok. */
3053d0882897SCorey Minyard 			return;
3054d0882897SCorey Minyard 
3055d0882897SCorey Minyard 		enables &= ~IPMI_BMC_RCV_MSG_INTR;
3056d0882897SCorey Minyard 		rv = set_global_enables(smi_info, enables);
3057d0882897SCorey Minyard 	}
3058d0882897SCorey Minyard 
3059d0882897SCorey Minyard 	if (rv < 0) {
3060d0882897SCorey Minyard 		dev_err(smi_info->dev,
3061d0882897SCorey Minyard 			"Cannot check clearing the rcv irq: %d\n", rv);
3062d0882897SCorey Minyard 		return;
3063d0882897SCorey Minyard 	}
3064d0882897SCorey Minyard 
3065d0882897SCorey Minyard 	if (rv) {
30661e7d6a45SCorey Minyard 		/*
30671e7d6a45SCorey Minyard 		 * An error when setting the event buffer bit means
30681e7d6a45SCorey Minyard 		 * clearing the bit is not supported.
30691e7d6a45SCorey Minyard 		 */
3070d0882897SCorey Minyard 		dev_warn(smi_info->dev,
3071d0882897SCorey Minyard 			 "The BMC does not support clearing the recv irq bit, compensating, but the BMC needs to be fixed.\n");
3072d0882897SCorey Minyard 		smi_info->cannot_disable_irq = true;
30731e7d6a45SCorey Minyard 	}
3074d0882897SCorey Minyard }
3075d0882897SCorey Minyard 
3076d0882897SCorey Minyard /*
3077d0882897SCorey Minyard  * Some BMCs do not support setting the interrupt bits in the global
3078d0882897SCorey Minyard  * enables even if they support interrupts.  Clearly bad, but we can
3079d0882897SCorey Minyard  * compensate.
3080d0882897SCorey Minyard  */
3081d0882897SCorey Minyard static void check_set_rcv_irq(struct smi_info *smi_info)
3082d0882897SCorey Minyard {
3083d0882897SCorey Minyard 	u8 enables = 0;
3084d0882897SCorey Minyard 	int rv;
3085d0882897SCorey Minyard 
3086d0882897SCorey Minyard 	if (!smi_info->irq)
3087d0882897SCorey Minyard 		return;
3088d0882897SCorey Minyard 
3089d0882897SCorey Minyard 	rv = get_global_enables(smi_info, &enables);
3090d0882897SCorey Minyard 	if (!rv) {
3091d0882897SCorey Minyard 		enables |= IPMI_BMC_RCV_MSG_INTR;
3092d0882897SCorey Minyard 		rv = set_global_enables(smi_info, enables);
3093d0882897SCorey Minyard 	}
3094d0882897SCorey Minyard 
3095d0882897SCorey Minyard 	if (rv < 0) {
3096d0882897SCorey Minyard 		dev_err(smi_info->dev,
3097d0882897SCorey Minyard 			"Cannot check setting the rcv irq: %d\n", rv);
3098d0882897SCorey Minyard 		return;
3099d0882897SCorey Minyard 	}
3100d0882897SCorey Minyard 
3101d0882897SCorey Minyard 	if (rv) {
3102d0882897SCorey Minyard 		/*
3103d0882897SCorey Minyard 		 * An error when setting the event buffer bit means
3104d0882897SCorey Minyard 		 * setting the bit is not supported.
3105d0882897SCorey Minyard 		 */
3106d0882897SCorey Minyard 		dev_warn(smi_info->dev,
3107d0882897SCorey Minyard 			 "The BMC does not support setting the recv irq bit, compensating, but the BMC needs to be fixed.\n");
3108d0882897SCorey Minyard 		smi_info->cannot_disable_irq = true;
3109d0882897SCorey Minyard 		smi_info->irq_enable_broken = true;
3110d0882897SCorey Minyard 	}
31111e7d6a45SCorey Minyard }
31121e7d6a45SCorey Minyard 
311340112ae7SCorey Minyard static int try_enable_event_buffer(struct smi_info *smi_info)
311440112ae7SCorey Minyard {
311540112ae7SCorey Minyard 	unsigned char         msg[3];
311640112ae7SCorey Minyard 	unsigned char         *resp;
311740112ae7SCorey Minyard 	unsigned long         resp_len;
311840112ae7SCorey Minyard 	int                   rv = 0;
311940112ae7SCorey Minyard 
312040112ae7SCorey Minyard 	resp = kmalloc(IPMI_MAX_MSG_LENGTH, GFP_KERNEL);
312140112ae7SCorey Minyard 	if (!resp)
312240112ae7SCorey Minyard 		return -ENOMEM;
312340112ae7SCorey Minyard 
312440112ae7SCorey Minyard 	msg[0] = IPMI_NETFN_APP_REQUEST << 2;
312540112ae7SCorey Minyard 	msg[1] = IPMI_GET_BMC_GLOBAL_ENABLES_CMD;
312640112ae7SCorey Minyard 	smi_info->handlers->start_transaction(smi_info->si_sm, msg, 2);
312740112ae7SCorey Minyard 
312840112ae7SCorey Minyard 	rv = wait_for_msg_done(smi_info);
312940112ae7SCorey Minyard 	if (rv) {
3130279fbd0cSMyron Stowe 		printk(KERN_WARNING PFX "Error getting response from get"
3131279fbd0cSMyron Stowe 		       " global enables command, the event buffer is not"
313240112ae7SCorey Minyard 		       " enabled.\n");
313340112ae7SCorey Minyard 		goto out;
313440112ae7SCorey Minyard 	}
313540112ae7SCorey Minyard 
313640112ae7SCorey Minyard 	resp_len = smi_info->handlers->get_result(smi_info->si_sm,
313740112ae7SCorey Minyard 						  resp, IPMI_MAX_MSG_LENGTH);
313840112ae7SCorey Minyard 
313940112ae7SCorey Minyard 	if (resp_len < 4 ||
314040112ae7SCorey Minyard 			resp[0] != (IPMI_NETFN_APP_REQUEST | 1) << 2 ||
314140112ae7SCorey Minyard 			resp[1] != IPMI_GET_BMC_GLOBAL_ENABLES_CMD   ||
314240112ae7SCorey Minyard 			resp[2] != 0) {
3143279fbd0cSMyron Stowe 		printk(KERN_WARNING PFX "Invalid return from get global"
3144279fbd0cSMyron Stowe 		       " enables command, cannot enable the event buffer.\n");
314540112ae7SCorey Minyard 		rv = -EINVAL;
314640112ae7SCorey Minyard 		goto out;
314740112ae7SCorey Minyard 	}
314840112ae7SCorey Minyard 
3149d9b7e4f7SCorey Minyard 	if (resp[3] & IPMI_BMC_EVT_MSG_BUFF) {
315040112ae7SCorey Minyard 		/* buffer is already enabled, nothing to do. */
3151d9b7e4f7SCorey Minyard 		smi_info->supports_event_msg_buff = true;
315240112ae7SCorey Minyard 		goto out;
3153d9b7e4f7SCorey Minyard 	}
315440112ae7SCorey Minyard 
315540112ae7SCorey Minyard 	msg[0] = IPMI_NETFN_APP_REQUEST << 2;
315640112ae7SCorey Minyard 	msg[1] = IPMI_SET_BMC_GLOBAL_ENABLES_CMD;
315740112ae7SCorey Minyard 	msg[2] = resp[3] | IPMI_BMC_EVT_MSG_BUFF;
315840112ae7SCorey Minyard 	smi_info->handlers->start_transaction(smi_info->si_sm, msg, 3);
315940112ae7SCorey Minyard 
316040112ae7SCorey Minyard 	rv = wait_for_msg_done(smi_info);
316140112ae7SCorey Minyard 	if (rv) {
3162279fbd0cSMyron Stowe 		printk(KERN_WARNING PFX "Error getting response from set"
3163279fbd0cSMyron Stowe 		       " global, enables command, the event buffer is not"
316440112ae7SCorey Minyard 		       " enabled.\n");
316540112ae7SCorey Minyard 		goto out;
316640112ae7SCorey Minyard 	}
316740112ae7SCorey Minyard 
316840112ae7SCorey Minyard 	resp_len = smi_info->handlers->get_result(smi_info->si_sm,
316940112ae7SCorey Minyard 						  resp, IPMI_MAX_MSG_LENGTH);
317040112ae7SCorey Minyard 
317140112ae7SCorey Minyard 	if (resp_len < 3 ||
317240112ae7SCorey Minyard 			resp[0] != (IPMI_NETFN_APP_REQUEST | 1) << 2 ||
317340112ae7SCorey Minyard 			resp[1] != IPMI_SET_BMC_GLOBAL_ENABLES_CMD) {
3174279fbd0cSMyron Stowe 		printk(KERN_WARNING PFX "Invalid return from get global,"
3175279fbd0cSMyron Stowe 		       "enables command, not enable the event buffer.\n");
317640112ae7SCorey Minyard 		rv = -EINVAL;
317740112ae7SCorey Minyard 		goto out;
317840112ae7SCorey Minyard 	}
317940112ae7SCorey Minyard 
318040112ae7SCorey Minyard 	if (resp[2] != 0)
318140112ae7SCorey Minyard 		/*
318240112ae7SCorey Minyard 		 * An error when setting the event buffer bit means
318340112ae7SCorey Minyard 		 * that the event buffer is not supported.
318440112ae7SCorey Minyard 		 */
318540112ae7SCorey Minyard 		rv = -ENOENT;
3186d9b7e4f7SCorey Minyard 	else
3187d9b7e4f7SCorey Minyard 		smi_info->supports_event_msg_buff = true;
3188d9b7e4f7SCorey Minyard 
318940112ae7SCorey Minyard  out:
319040112ae7SCorey Minyard 	kfree(resp);
319140112ae7SCorey Minyard 	return rv;
319240112ae7SCorey Minyard }
319340112ae7SCorey Minyard 
319407412736SAlexey Dobriyan static int smi_type_proc_show(struct seq_file *m, void *v)
31951da177e4SLinus Torvalds {
319607412736SAlexey Dobriyan 	struct smi_info *smi = m->private;
31971da177e4SLinus Torvalds 
3198d6c5dc18SJoe Perches 	seq_printf(m, "%s\n", si_to_str[smi->si_type]);
3199d6c5dc18SJoe Perches 
32005e33cd0cSJoe Perches 	return 0;
32011da177e4SLinus Torvalds }
32021da177e4SLinus Torvalds 
320307412736SAlexey Dobriyan static int smi_type_proc_open(struct inode *inode, struct file *file)
32041da177e4SLinus Torvalds {
3205d9dda78bSAl Viro 	return single_open(file, smi_type_proc_show, PDE_DATA(inode));
320607412736SAlexey Dobriyan }
32071da177e4SLinus Torvalds 
320807412736SAlexey Dobriyan static const struct file_operations smi_type_proc_ops = {
320907412736SAlexey Dobriyan 	.open		= smi_type_proc_open,
321007412736SAlexey Dobriyan 	.read		= seq_read,
321107412736SAlexey Dobriyan 	.llseek		= seq_lseek,
321207412736SAlexey Dobriyan 	.release	= single_release,
321307412736SAlexey Dobriyan };
321407412736SAlexey Dobriyan 
321507412736SAlexey Dobriyan static int smi_si_stats_proc_show(struct seq_file *m, void *v)
321607412736SAlexey Dobriyan {
321707412736SAlexey Dobriyan 	struct smi_info *smi = m->private;
321807412736SAlexey Dobriyan 
321907412736SAlexey Dobriyan 	seq_printf(m, "interrupts_enabled:    %d\n",
32201da177e4SLinus Torvalds 		       smi->irq && !smi->interrupt_disabled);
322107412736SAlexey Dobriyan 	seq_printf(m, "short_timeouts:        %u\n",
322264959e2dSCorey Minyard 		       smi_get_stat(smi, short_timeouts));
322307412736SAlexey Dobriyan 	seq_printf(m, "long_timeouts:         %u\n",
322464959e2dSCorey Minyard 		       smi_get_stat(smi, long_timeouts));
322507412736SAlexey Dobriyan 	seq_printf(m, "idles:                 %u\n",
322664959e2dSCorey Minyard 		       smi_get_stat(smi, idles));
322707412736SAlexey Dobriyan 	seq_printf(m, "interrupts:            %u\n",
322864959e2dSCorey Minyard 		       smi_get_stat(smi, interrupts));
322907412736SAlexey Dobriyan 	seq_printf(m, "attentions:            %u\n",
323064959e2dSCorey Minyard 		       smi_get_stat(smi, attentions));
323107412736SAlexey Dobriyan 	seq_printf(m, "flag_fetches:          %u\n",
323264959e2dSCorey Minyard 		       smi_get_stat(smi, flag_fetches));
323307412736SAlexey Dobriyan 	seq_printf(m, "hosed_count:           %u\n",
323464959e2dSCorey Minyard 		       smi_get_stat(smi, hosed_count));
323507412736SAlexey Dobriyan 	seq_printf(m, "complete_transactions: %u\n",
323664959e2dSCorey Minyard 		       smi_get_stat(smi, complete_transactions));
323707412736SAlexey Dobriyan 	seq_printf(m, "events:                %u\n",
323864959e2dSCorey Minyard 		       smi_get_stat(smi, events));
323907412736SAlexey Dobriyan 	seq_printf(m, "watchdog_pretimeouts:  %u\n",
324064959e2dSCorey Minyard 		       smi_get_stat(smi, watchdog_pretimeouts));
324107412736SAlexey Dobriyan 	seq_printf(m, "incoming_messages:     %u\n",
324264959e2dSCorey Minyard 		       smi_get_stat(smi, incoming_messages));
324307412736SAlexey Dobriyan 	return 0;
3244b361e27bSCorey Minyard }
3245b361e27bSCorey Minyard 
324607412736SAlexey Dobriyan static int smi_si_stats_proc_open(struct inode *inode, struct file *file)
3247b361e27bSCorey Minyard {
3248d9dda78bSAl Viro 	return single_open(file, smi_si_stats_proc_show, PDE_DATA(inode));
324907412736SAlexey Dobriyan }
3250b361e27bSCorey Minyard 
325107412736SAlexey Dobriyan static const struct file_operations smi_si_stats_proc_ops = {
325207412736SAlexey Dobriyan 	.open		= smi_si_stats_proc_open,
325307412736SAlexey Dobriyan 	.read		= seq_read,
325407412736SAlexey Dobriyan 	.llseek		= seq_lseek,
325507412736SAlexey Dobriyan 	.release	= single_release,
325607412736SAlexey Dobriyan };
325707412736SAlexey Dobriyan 
325807412736SAlexey Dobriyan static int smi_params_proc_show(struct seq_file *m, void *v)
325907412736SAlexey Dobriyan {
326007412736SAlexey Dobriyan 	struct smi_info *smi = m->private;
326107412736SAlexey Dobriyan 
3262d6c5dc18SJoe Perches 	seq_printf(m,
3263b361e27bSCorey Minyard 		   "%s,%s,0x%lx,rsp=%d,rsi=%d,rsh=%d,irq=%d,ipmb=%d\n",
3264b361e27bSCorey Minyard 		   si_to_str[smi->si_type],
3265b361e27bSCorey Minyard 		   addr_space_to_str[smi->io.addr_type],
3266b361e27bSCorey Minyard 		   smi->io.addr_data,
3267b361e27bSCorey Minyard 		   smi->io.regspacing,
3268b361e27bSCorey Minyard 		   smi->io.regsize,
3269b361e27bSCorey Minyard 		   smi->io.regshift,
3270b361e27bSCorey Minyard 		   smi->irq,
3271b361e27bSCorey Minyard 		   smi->slave_addr);
3272d6c5dc18SJoe Perches 
32735e33cd0cSJoe Perches 	return 0;
32741da177e4SLinus Torvalds }
32751da177e4SLinus Torvalds 
327607412736SAlexey Dobriyan static int smi_params_proc_open(struct inode *inode, struct file *file)
327707412736SAlexey Dobriyan {
3278d9dda78bSAl Viro 	return single_open(file, smi_params_proc_show, PDE_DATA(inode));
327907412736SAlexey Dobriyan }
328007412736SAlexey Dobriyan 
328107412736SAlexey Dobriyan static const struct file_operations smi_params_proc_ops = {
328207412736SAlexey Dobriyan 	.open		= smi_params_proc_open,
328307412736SAlexey Dobriyan 	.read		= seq_read,
328407412736SAlexey Dobriyan 	.llseek		= seq_lseek,
328507412736SAlexey Dobriyan 	.release	= single_release,
328607412736SAlexey Dobriyan };
328707412736SAlexey Dobriyan 
32883ae0e0f9SCorey Minyard /*
32893ae0e0f9SCorey Minyard  * oem_data_avail_to_receive_msg_avail
32903ae0e0f9SCorey Minyard  * @info - smi_info structure with msg_flags set
32913ae0e0f9SCorey Minyard  *
32923ae0e0f9SCorey Minyard  * Converts flags from OEM_DATA_AVAIL to RECEIVE_MSG_AVAIL
32933ae0e0f9SCorey Minyard  * Returns 1 indicating need to re-run handle_flags().
32943ae0e0f9SCorey Minyard  */
32953ae0e0f9SCorey Minyard static int oem_data_avail_to_receive_msg_avail(struct smi_info *smi_info)
32963ae0e0f9SCorey Minyard {
3297e8b33617SCorey Minyard 	smi_info->msg_flags = ((smi_info->msg_flags & ~OEM_DATA_AVAIL) |
3298e8b33617SCorey Minyard 			       RECEIVE_MSG_AVAIL);
32993ae0e0f9SCorey Minyard 	return 1;
33003ae0e0f9SCorey Minyard }
33013ae0e0f9SCorey Minyard 
33023ae0e0f9SCorey Minyard /*
33033ae0e0f9SCorey Minyard  * setup_dell_poweredge_oem_data_handler
33043ae0e0f9SCorey Minyard  * @info - smi_info.device_id must be populated
33053ae0e0f9SCorey Minyard  *
33063ae0e0f9SCorey Minyard  * Systems that match, but have firmware version < 1.40 may assert
33073ae0e0f9SCorey Minyard  * OEM0_DATA_AVAIL on their own, without being told via Set Flags that
33083ae0e0f9SCorey Minyard  * it's safe to do so.  Such systems will de-assert OEM1_DATA_AVAIL
33093ae0e0f9SCorey Minyard  * upon receipt of IPMI_GET_MSG_CMD, so we should treat these flags
33103ae0e0f9SCorey Minyard  * as RECEIVE_MSG_AVAIL instead.
33113ae0e0f9SCorey Minyard  *
33123ae0e0f9SCorey Minyard  * As Dell has no plans to release IPMI 1.5 firmware that *ever*
33133ae0e0f9SCorey Minyard  * assert the OEM[012] bits, and if it did, the driver would have to
33143ae0e0f9SCorey Minyard  * change to handle that properly, we don't actually check for the
33153ae0e0f9SCorey Minyard  * firmware version.
33163ae0e0f9SCorey Minyard  * Device ID = 0x20                BMC on PowerEdge 8G servers
33173ae0e0f9SCorey Minyard  * Device Revision = 0x80
33183ae0e0f9SCorey Minyard  * Firmware Revision1 = 0x01       BMC version 1.40
33193ae0e0f9SCorey Minyard  * Firmware Revision2 = 0x40       BCD encoded
33203ae0e0f9SCorey Minyard  * IPMI Version = 0x51             IPMI 1.5
33213ae0e0f9SCorey Minyard  * Manufacturer ID = A2 02 00      Dell IANA
33223ae0e0f9SCorey Minyard  *
3323d5a2b89aSCorey Minyard  * Additionally, PowerEdge systems with IPMI < 1.5 may also assert
3324d5a2b89aSCorey Minyard  * OEM0_DATA_AVAIL and needs to be treated as RECEIVE_MSG_AVAIL.
3325d5a2b89aSCorey Minyard  *
33263ae0e0f9SCorey Minyard  */
33273ae0e0f9SCorey Minyard #define DELL_POWEREDGE_8G_BMC_DEVICE_ID  0x20
33283ae0e0f9SCorey Minyard #define DELL_POWEREDGE_8G_BMC_DEVICE_REV 0x80
33293ae0e0f9SCorey Minyard #define DELL_POWEREDGE_8G_BMC_IPMI_VERSION 0x51
333050c812b2SCorey Minyard #define DELL_IANA_MFR_ID 0x0002a2
33313ae0e0f9SCorey Minyard static void setup_dell_poweredge_oem_data_handler(struct smi_info *smi_info)
33323ae0e0f9SCorey Minyard {
33333ae0e0f9SCorey Minyard 	struct ipmi_device_id *id = &smi_info->device_id;
333450c812b2SCorey Minyard 	if (id->manufacturer_id == DELL_IANA_MFR_ID) {
3335d5a2b89aSCorey Minyard 		if (id->device_id       == DELL_POWEREDGE_8G_BMC_DEVICE_ID  &&
3336d5a2b89aSCorey Minyard 		    id->device_revision == DELL_POWEREDGE_8G_BMC_DEVICE_REV &&
3337d5a2b89aSCorey Minyard 		    id->ipmi_version   == DELL_POWEREDGE_8G_BMC_IPMI_VERSION) {
33383ae0e0f9SCorey Minyard 			smi_info->oem_data_avail_handler =
33393ae0e0f9SCorey Minyard 				oem_data_avail_to_receive_msg_avail;
3340c305e3d3SCorey Minyard 		} else if (ipmi_version_major(id) < 1 ||
3341d5a2b89aSCorey Minyard 			   (ipmi_version_major(id) == 1 &&
3342d5a2b89aSCorey Minyard 			    ipmi_version_minor(id) < 5)) {
3343d5a2b89aSCorey Minyard 			smi_info->oem_data_avail_handler =
3344d5a2b89aSCorey Minyard 				oem_data_avail_to_receive_msg_avail;
3345d5a2b89aSCorey Minyard 		}
3346d5a2b89aSCorey Minyard 	}
33473ae0e0f9SCorey Minyard }
33483ae0e0f9SCorey Minyard 
3349ea94027bSCorey Minyard #define CANNOT_RETURN_REQUESTED_LENGTH 0xCA
3350ea94027bSCorey Minyard static void return_hosed_msg_badsize(struct smi_info *smi_info)
3351ea94027bSCorey Minyard {
3352ea94027bSCorey Minyard 	struct ipmi_smi_msg *msg = smi_info->curr_msg;
3353ea94027bSCorey Minyard 
335425985edcSLucas De Marchi 	/* Make it a response */
3355ea94027bSCorey Minyard 	msg->rsp[0] = msg->data[0] | 4;
3356ea94027bSCorey Minyard 	msg->rsp[1] = msg->data[1];
3357ea94027bSCorey Minyard 	msg->rsp[2] = CANNOT_RETURN_REQUESTED_LENGTH;
3358ea94027bSCorey Minyard 	msg->rsp_size = 3;
3359ea94027bSCorey Minyard 	smi_info->curr_msg = NULL;
3360ea94027bSCorey Minyard 	deliver_recv_msg(smi_info, msg);
3361ea94027bSCorey Minyard }
3362ea94027bSCorey Minyard 
3363ea94027bSCorey Minyard /*
3364ea94027bSCorey Minyard  * dell_poweredge_bt_xaction_handler
3365ea94027bSCorey Minyard  * @info - smi_info.device_id must be populated
3366ea94027bSCorey Minyard  *
3367ea94027bSCorey Minyard  * Dell PowerEdge servers with the BT interface (x6xx and 1750) will
3368ea94027bSCorey Minyard  * not respond to a Get SDR command if the length of the data
3369ea94027bSCorey Minyard  * requested is exactly 0x3A, which leads to command timeouts and no
3370ea94027bSCorey Minyard  * data returned.  This intercepts such commands, and causes userspace
3371ea94027bSCorey Minyard  * callers to try again with a different-sized buffer, which succeeds.
3372ea94027bSCorey Minyard  */
3373ea94027bSCorey Minyard 
3374ea94027bSCorey Minyard #define STORAGE_NETFN 0x0A
3375ea94027bSCorey Minyard #define STORAGE_CMD_GET_SDR 0x23
3376ea94027bSCorey Minyard static int dell_poweredge_bt_xaction_handler(struct notifier_block *self,
3377ea94027bSCorey Minyard 					     unsigned long unused,
3378ea94027bSCorey Minyard 					     void *in)
3379ea94027bSCorey Minyard {
3380ea94027bSCorey Minyard 	struct smi_info *smi_info = in;
3381ea94027bSCorey Minyard 	unsigned char *data = smi_info->curr_msg->data;
3382ea94027bSCorey Minyard 	unsigned int size   = smi_info->curr_msg->data_size;
3383ea94027bSCorey Minyard 	if (size >= 8 &&
3384ea94027bSCorey Minyard 	    (data[0]>>2) == STORAGE_NETFN &&
3385ea94027bSCorey Minyard 	    data[1] == STORAGE_CMD_GET_SDR &&
3386ea94027bSCorey Minyard 	    data[7] == 0x3A) {
3387ea94027bSCorey Minyard 		return_hosed_msg_badsize(smi_info);
3388ea94027bSCorey Minyard 		return NOTIFY_STOP;
3389ea94027bSCorey Minyard 	}
3390ea94027bSCorey Minyard 	return NOTIFY_DONE;
3391ea94027bSCorey Minyard }
3392ea94027bSCorey Minyard 
3393ea94027bSCorey Minyard static struct notifier_block dell_poweredge_bt_xaction_notifier = {
3394ea94027bSCorey Minyard 	.notifier_call	= dell_poweredge_bt_xaction_handler,
3395ea94027bSCorey Minyard };
3396ea94027bSCorey Minyard 
3397ea94027bSCorey Minyard /*
3398ea94027bSCorey Minyard  * setup_dell_poweredge_bt_xaction_handler
3399ea94027bSCorey Minyard  * @info - smi_info.device_id must be filled in already
3400ea94027bSCorey Minyard  *
3401ea94027bSCorey Minyard  * Fills in smi_info.device_id.start_transaction_pre_hook
3402ea94027bSCorey Minyard  * when we know what function to use there.
3403ea94027bSCorey Minyard  */
3404ea94027bSCorey Minyard static void
3405ea94027bSCorey Minyard setup_dell_poweredge_bt_xaction_handler(struct smi_info *smi_info)
3406ea94027bSCorey Minyard {
3407ea94027bSCorey Minyard 	struct ipmi_device_id *id = &smi_info->device_id;
340850c812b2SCorey Minyard 	if (id->manufacturer_id == DELL_IANA_MFR_ID &&
3409ea94027bSCorey Minyard 	    smi_info->si_type == SI_BT)
3410ea94027bSCorey Minyard 		register_xaction_notifier(&dell_poweredge_bt_xaction_notifier);
3411ea94027bSCorey Minyard }
3412ea94027bSCorey Minyard 
34133ae0e0f9SCorey Minyard /*
34143ae0e0f9SCorey Minyard  * setup_oem_data_handler
34153ae0e0f9SCorey Minyard  * @info - smi_info.device_id must be filled in already
34163ae0e0f9SCorey Minyard  *
34173ae0e0f9SCorey Minyard  * Fills in smi_info.device_id.oem_data_available_handler
34183ae0e0f9SCorey Minyard  * when we know what function to use there.
34193ae0e0f9SCorey Minyard  */
34203ae0e0f9SCorey Minyard 
34213ae0e0f9SCorey Minyard static void setup_oem_data_handler(struct smi_info *smi_info)
34223ae0e0f9SCorey Minyard {
34233ae0e0f9SCorey Minyard 	setup_dell_poweredge_oem_data_handler(smi_info);
34243ae0e0f9SCorey Minyard }
34253ae0e0f9SCorey Minyard 
3426ea94027bSCorey Minyard static void setup_xaction_handlers(struct smi_info *smi_info)
3427ea94027bSCorey Minyard {
3428ea94027bSCorey Minyard 	setup_dell_poweredge_bt_xaction_handler(smi_info);
3429ea94027bSCorey Minyard }
3430ea94027bSCorey Minyard 
3431d0882897SCorey Minyard static void check_for_broken_irqs(struct smi_info *smi_info)
3432d0882897SCorey Minyard {
3433d0882897SCorey Minyard 	check_clr_rcv_irq(smi_info);
3434d0882897SCorey Minyard 	check_set_rcv_irq(smi_info);
3435d0882897SCorey Minyard }
3436d0882897SCorey Minyard 
3437a9a2c44fSCorey Minyard static inline void wait_for_timer_and_thread(struct smi_info *smi_info)
3438a9a2c44fSCorey Minyard {
3439453823baSCorey Minyard 	if (smi_info->thread != NULL)
3440e9a705a0SMatt Domsch 		kthread_stop(smi_info->thread);
3441b874b985SCorey Minyard 	if (smi_info->timer_running)
3442a9a2c44fSCorey Minyard 		del_timer_sync(&smi_info->si_timer);
3443a9a2c44fSCorey Minyard }
3444a9a2c44fSCorey Minyard 
344581d02b7fSCorey Minyard static const struct ipmi_default_vals
3446b0defcdbSCorey Minyard {
3447b0defcdbSCorey Minyard 	int type;
3448b0defcdbSCorey Minyard 	int port;
34497420884cSRandy Dunlap } ipmi_defaults[] =
3450b0defcdbSCorey Minyard {
3451b0defcdbSCorey Minyard 	{ .type = SI_KCS, .port = 0xca2 },
3452b0defcdbSCorey Minyard 	{ .type = SI_SMIC, .port = 0xca9 },
3453b0defcdbSCorey Minyard 	{ .type = SI_BT, .port = 0xe4 },
3454b0defcdbSCorey Minyard 	{ .port = 0 }
3455b0defcdbSCorey Minyard };
3456b0defcdbSCorey Minyard 
34572223cbecSBill Pemberton static void default_find_bmc(void)
3458b0defcdbSCorey Minyard {
3459b0defcdbSCorey Minyard 	struct smi_info *info;
3460b0defcdbSCorey Minyard 	int             i;
3461b0defcdbSCorey Minyard 
3462b0defcdbSCorey Minyard 	for (i = 0; ; i++) {
3463b0defcdbSCorey Minyard 		if (!ipmi_defaults[i].port)
3464b0defcdbSCorey Minyard 			break;
346568e1ee62SKumar Gala #ifdef CONFIG_PPC
34664ff31d77SChristian Krafft 		if (check_legacy_ioport(ipmi_defaults[i].port))
34674ff31d77SChristian Krafft 			continue;
34684ff31d77SChristian Krafft #endif
3469de5e2ddfSEric Dumazet 		info = smi_info_alloc();
3470a09f4855SAndrew Morton 		if (!info)
3471a09f4855SAndrew Morton 			return;
34724ff31d77SChristian Krafft 
34735fedc4a2SMatthew Garrett 		info->addr_source = SI_DEFAULT;
3474b0defcdbSCorey Minyard 
3475b0defcdbSCorey Minyard 		info->si_type = ipmi_defaults[i].type;
3476b0defcdbSCorey Minyard 		info->io_setup = port_setup;
3477b0defcdbSCorey Minyard 		info->io.addr_data = ipmi_defaults[i].port;
3478b0defcdbSCorey Minyard 		info->io.addr_type = IPMI_IO_ADDR_SPACE;
3479b0defcdbSCorey Minyard 
3480b0defcdbSCorey Minyard 		info->io.addr = NULL;
3481b0defcdbSCorey Minyard 		info->io.regspacing = DEFAULT_REGSPACING;
3482b0defcdbSCorey Minyard 		info->io.regsize = DEFAULT_REGSPACING;
3483b0defcdbSCorey Minyard 		info->io.regshift = 0;
3484b0defcdbSCorey Minyard 
34852407d77aSMatthew Garrett 		if (add_smi(info) == 0) {
34862407d77aSMatthew Garrett 			if ((try_smi_init(info)) == 0) {
3487b0defcdbSCorey Minyard 				/* Found one... */
3488279fbd0cSMyron Stowe 				printk(KERN_INFO PFX "Found default %s"
34892407d77aSMatthew Garrett 				" state machine at %s address 0x%lx\n",
3490b0defcdbSCorey Minyard 				si_to_str[info->si_type],
3491b0defcdbSCorey Minyard 				addr_space_to_str[info->io.addr_type],
3492b0defcdbSCorey Minyard 				info->io.addr_data);
34932407d77aSMatthew Garrett 			} else
34942407d77aSMatthew Garrett 				cleanup_one_si(info);
34957faefea6SYinghai Lu 		} else {
34967faefea6SYinghai Lu 			kfree(info);
3497b0defcdbSCorey Minyard 		}
3498b0defcdbSCorey Minyard 	}
3499b0defcdbSCorey Minyard }
3500b0defcdbSCorey Minyard 
3501b0defcdbSCorey Minyard static int is_new_interface(struct smi_info *info)
3502b0defcdbSCorey Minyard {
3503b0defcdbSCorey Minyard 	struct smi_info *e;
3504b0defcdbSCorey Minyard 
3505b0defcdbSCorey Minyard 	list_for_each_entry(e, &smi_infos, link) {
3506b0defcdbSCorey Minyard 		if (e->io.addr_type != info->io.addr_type)
3507b0defcdbSCorey Minyard 			continue;
3508b0defcdbSCorey Minyard 		if (e->io.addr_data == info->io.addr_data)
3509b0defcdbSCorey Minyard 			return 0;
3510b0defcdbSCorey Minyard 	}
3511b0defcdbSCorey Minyard 
3512b0defcdbSCorey Minyard 	return 1;
3513b0defcdbSCorey Minyard }
3514b0defcdbSCorey Minyard 
35152407d77aSMatthew Garrett static int add_smi(struct smi_info *new_smi)
35162407d77aSMatthew Garrett {
35172407d77aSMatthew Garrett 	int rv = 0;
35182407d77aSMatthew Garrett 
3519279fbd0cSMyron Stowe 	printk(KERN_INFO PFX "Adding %s-specified %s state machine",
35207e50387bSCorey Minyard 	       ipmi_addr_src_to_str(new_smi->addr_source),
35212407d77aSMatthew Garrett 	       si_to_str[new_smi->si_type]);
35222407d77aSMatthew Garrett 	mutex_lock(&smi_infos_lock);
35232407d77aSMatthew Garrett 	if (!is_new_interface(new_smi)) {
35247bb671e3SYinghai Lu 		printk(KERN_CONT " duplicate interface\n");
35252407d77aSMatthew Garrett 		rv = -EBUSY;
35262407d77aSMatthew Garrett 		goto out_err;
35272407d77aSMatthew Garrett 	}
35282407d77aSMatthew Garrett 
35292407d77aSMatthew Garrett 	printk(KERN_CONT "\n");
35302407d77aSMatthew Garrett 
35312407d77aSMatthew Garrett 	/* So we know not to free it unless we have allocated one. */
35322407d77aSMatthew Garrett 	new_smi->intf = NULL;
35332407d77aSMatthew Garrett 	new_smi->si_sm = NULL;
35342407d77aSMatthew Garrett 	new_smi->handlers = NULL;
35352407d77aSMatthew Garrett 
35362407d77aSMatthew Garrett 	list_add_tail(&new_smi->link, &smi_infos);
35372407d77aSMatthew Garrett 
35382407d77aSMatthew Garrett out_err:
35392407d77aSMatthew Garrett 	mutex_unlock(&smi_infos_lock);
35402407d77aSMatthew Garrett 	return rv;
35412407d77aSMatthew Garrett }
35422407d77aSMatthew Garrett 
3543b0defcdbSCorey Minyard static int try_smi_init(struct smi_info *new_smi)
35441da177e4SLinus Torvalds {
35452407d77aSMatthew Garrett 	int rv = 0;
354664959e2dSCorey Minyard 	int i;
35471da177e4SLinus Torvalds 
3548279fbd0cSMyron Stowe 	printk(KERN_INFO PFX "Trying %s-specified %s state"
3549b0defcdbSCorey Minyard 	       " machine at %s address 0x%lx, slave address 0x%x,"
3550b0defcdbSCorey Minyard 	       " irq %d\n",
35517e50387bSCorey Minyard 	       ipmi_addr_src_to_str(new_smi->addr_source),
3552b0defcdbSCorey Minyard 	       si_to_str[new_smi->si_type],
3553b0defcdbSCorey Minyard 	       addr_space_to_str[new_smi->io.addr_type],
3554b0defcdbSCorey Minyard 	       new_smi->io.addr_data,
3555b0defcdbSCorey Minyard 	       new_smi->slave_addr, new_smi->irq);
35561da177e4SLinus Torvalds 
3557b0defcdbSCorey Minyard 	switch (new_smi->si_type) {
3558b0defcdbSCorey Minyard 	case SI_KCS:
35591da177e4SLinus Torvalds 		new_smi->handlers = &kcs_smi_handlers;
3560b0defcdbSCorey Minyard 		break;
3561b0defcdbSCorey Minyard 
3562b0defcdbSCorey Minyard 	case SI_SMIC:
35631da177e4SLinus Torvalds 		new_smi->handlers = &smic_smi_handlers;
3564b0defcdbSCorey Minyard 		break;
3565b0defcdbSCorey Minyard 
3566b0defcdbSCorey Minyard 	case SI_BT:
35671da177e4SLinus Torvalds 		new_smi->handlers = &bt_smi_handlers;
3568b0defcdbSCorey Minyard 		break;
3569b0defcdbSCorey Minyard 
3570b0defcdbSCorey Minyard 	default:
35711da177e4SLinus Torvalds 		/* No support for anything else yet. */
35721da177e4SLinus Torvalds 		rv = -EIO;
35731da177e4SLinus Torvalds 		goto out_err;
35741da177e4SLinus Torvalds 	}
35751da177e4SLinus Torvalds 
35761da177e4SLinus Torvalds 	/* Allocate the state machine's data and initialize it. */
35771da177e4SLinus Torvalds 	new_smi->si_sm = kmalloc(new_smi->handlers->size(), GFP_KERNEL);
35781da177e4SLinus Torvalds 	if (!new_smi->si_sm) {
3579279fbd0cSMyron Stowe 		printk(KERN_ERR PFX
3580279fbd0cSMyron Stowe 		       "Could not allocate state machine memory\n");
35811da177e4SLinus Torvalds 		rv = -ENOMEM;
35821da177e4SLinus Torvalds 		goto out_err;
35831da177e4SLinus Torvalds 	}
35841da177e4SLinus Torvalds 	new_smi->io_size = new_smi->handlers->init_data(new_smi->si_sm,
35851da177e4SLinus Torvalds 							&new_smi->io);
35861da177e4SLinus Torvalds 
35871da177e4SLinus Torvalds 	/* Now that we know the I/O size, we can set up the I/O. */
35881da177e4SLinus Torvalds 	rv = new_smi->io_setup(new_smi);
35891da177e4SLinus Torvalds 	if (rv) {
3590279fbd0cSMyron Stowe 		printk(KERN_ERR PFX "Could not set up I/O space\n");
35911da177e4SLinus Torvalds 		goto out_err;
35921da177e4SLinus Torvalds 	}
35931da177e4SLinus Torvalds 
35941da177e4SLinus Torvalds 	/* Do low-level detection first. */
35951da177e4SLinus Torvalds 	if (new_smi->handlers->detect(new_smi->si_sm)) {
3596b0defcdbSCorey Minyard 		if (new_smi->addr_source)
3597279fbd0cSMyron Stowe 			printk(KERN_INFO PFX "Interface detection failed\n");
35981da177e4SLinus Torvalds 		rv = -ENODEV;
35991da177e4SLinus Torvalds 		goto out_err;
36001da177e4SLinus Torvalds 	}
36011da177e4SLinus Torvalds 
3602c305e3d3SCorey Minyard 	/*
3603c305e3d3SCorey Minyard 	 * Attempt a get device id command.  If it fails, we probably
3604c305e3d3SCorey Minyard 	 * don't have a BMC here.
3605c305e3d3SCorey Minyard 	 */
36061da177e4SLinus Torvalds 	rv = try_get_dev_id(new_smi);
3607b0defcdbSCorey Minyard 	if (rv) {
3608b0defcdbSCorey Minyard 		if (new_smi->addr_source)
3609279fbd0cSMyron Stowe 			printk(KERN_INFO PFX "There appears to be no BMC"
3610b0defcdbSCorey Minyard 			       " at this location\n");
36111da177e4SLinus Torvalds 		goto out_err;
3612b0defcdbSCorey Minyard 	}
36131da177e4SLinus Torvalds 
36143ae0e0f9SCorey Minyard 	setup_oem_data_handler(new_smi);
3615ea94027bSCorey Minyard 	setup_xaction_handlers(new_smi);
3616d0882897SCorey Minyard 	check_for_broken_irqs(new_smi);
36173ae0e0f9SCorey Minyard 
3618b874b985SCorey Minyard 	new_smi->waiting_msg = NULL;
36191da177e4SLinus Torvalds 	new_smi->curr_msg = NULL;
36201da177e4SLinus Torvalds 	atomic_set(&new_smi->req_events, 0);
36217aefac26SCorey Minyard 	new_smi->run_to_completion = false;
362264959e2dSCorey Minyard 	for (i = 0; i < SI_NUM_STATS; i++)
362364959e2dSCorey Minyard 		atomic_set(&new_smi->stats[i], 0);
36241da177e4SLinus Torvalds 
36257aefac26SCorey Minyard 	new_smi->interrupt_disabled = true;
362689986496SCorey Minyard 	atomic_set(&new_smi->need_watch, 0);
3627b0defcdbSCorey Minyard 	new_smi->intf_num = smi_num;
3628b0defcdbSCorey Minyard 	smi_num++;
36291da177e4SLinus Torvalds 
363040112ae7SCorey Minyard 	rv = try_enable_event_buffer(new_smi);
363140112ae7SCorey Minyard 	if (rv == 0)
36327aefac26SCorey Minyard 		new_smi->has_event_buffer = true;
363340112ae7SCorey Minyard 
3634c305e3d3SCorey Minyard 	/*
3635c305e3d3SCorey Minyard 	 * Start clearing the flags before we enable interrupts or the
3636c305e3d3SCorey Minyard 	 * timer to avoid racing with the timer.
3637c305e3d3SCorey Minyard 	 */
36380cfec916SCorey Minyard 	start_clear_flags(new_smi, false);
3639d9b7e4f7SCorey Minyard 
3640d9b7e4f7SCorey Minyard 	/*
3641d9b7e4f7SCorey Minyard 	 * IRQ is defined to be set when non-zero.  req_events will
3642d9b7e4f7SCorey Minyard 	 * cause a global flags check that will enable interrupts.
3643d9b7e4f7SCorey Minyard 	 */
3644d9b7e4f7SCorey Minyard 	if (new_smi->irq) {
3645d9b7e4f7SCorey Minyard 		new_smi->interrupt_disabled = false;
3646d9b7e4f7SCorey Minyard 		atomic_set(&new_smi->req_events, 1);
3647d9b7e4f7SCorey Minyard 	}
36481da177e4SLinus Torvalds 
364950c812b2SCorey Minyard 	if (!new_smi->dev) {
3650c305e3d3SCorey Minyard 		/*
3651c305e3d3SCorey Minyard 		 * If we don't already have a device from something
3652c305e3d3SCorey Minyard 		 * else (like PCI), then register a new one.
3653c305e3d3SCorey Minyard 		 */
365450c812b2SCorey Minyard 		new_smi->pdev = platform_device_alloc("ipmi_si",
365550c812b2SCorey Minyard 						      new_smi->intf_num);
36568b32b5d0SCorey Minyard 		if (!new_smi->pdev) {
3657279fbd0cSMyron Stowe 			printk(KERN_ERR PFX
365850c812b2SCorey Minyard 			       "Unable to allocate platform device\n");
3659453823baSCorey Minyard 			goto out_err;
366050c812b2SCorey Minyard 		}
366150c812b2SCorey Minyard 		new_smi->dev = &new_smi->pdev->dev;
3662fe2d5ffcSDarrick J. Wong 		new_smi->dev->driver = &ipmi_driver.driver;
366350c812b2SCorey Minyard 
3664b48f5457SZhang, Yanmin 		rv = platform_device_add(new_smi->pdev);
366550c812b2SCorey Minyard 		if (rv) {
3666279fbd0cSMyron Stowe 			printk(KERN_ERR PFX
366750c812b2SCorey Minyard 			       "Unable to register system interface device:"
366850c812b2SCorey Minyard 			       " %d\n",
366950c812b2SCorey Minyard 			       rv);
3670453823baSCorey Minyard 			goto out_err;
367150c812b2SCorey Minyard 		}
36727aefac26SCorey Minyard 		new_smi->dev_registered = true;
367350c812b2SCorey Minyard 	}
367450c812b2SCorey Minyard 
36751da177e4SLinus Torvalds 	rv = ipmi_register_smi(&handlers,
36761da177e4SLinus Torvalds 			       new_smi,
367750c812b2SCorey Minyard 			       &new_smi->device_id,
367850c812b2SCorey Minyard 			       new_smi->dev,
3679453823baSCorey Minyard 			       new_smi->slave_addr);
36801da177e4SLinus Torvalds 	if (rv) {
3681279fbd0cSMyron Stowe 		dev_err(new_smi->dev, "Unable to register device: error %d\n",
36821da177e4SLinus Torvalds 			rv);
36831da177e4SLinus Torvalds 		goto out_err_stop_timer;
36841da177e4SLinus Torvalds 	}
36851da177e4SLinus Torvalds 
36861da177e4SLinus Torvalds 	rv = ipmi_smi_add_proc_entry(new_smi->intf, "type",
368707412736SAlexey Dobriyan 				     &smi_type_proc_ops,
368899b76233SAlexey Dobriyan 				     new_smi);
36891da177e4SLinus Torvalds 	if (rv) {
3690279fbd0cSMyron Stowe 		dev_err(new_smi->dev, "Unable to create proc entry: %d\n", rv);
36911da177e4SLinus Torvalds 		goto out_err_stop_timer;
36921da177e4SLinus Torvalds 	}
36931da177e4SLinus Torvalds 
36941da177e4SLinus Torvalds 	rv = ipmi_smi_add_proc_entry(new_smi->intf, "si_stats",
369507412736SAlexey Dobriyan 				     &smi_si_stats_proc_ops,
369699b76233SAlexey Dobriyan 				     new_smi);
36971da177e4SLinus Torvalds 	if (rv) {
3698279fbd0cSMyron Stowe 		dev_err(new_smi->dev, "Unable to create proc entry: %d\n", rv);
36991da177e4SLinus Torvalds 		goto out_err_stop_timer;
37001da177e4SLinus Torvalds 	}
37011da177e4SLinus Torvalds 
3702b361e27bSCorey Minyard 	rv = ipmi_smi_add_proc_entry(new_smi->intf, "params",
370307412736SAlexey Dobriyan 				     &smi_params_proc_ops,
370499b76233SAlexey Dobriyan 				     new_smi);
3705b361e27bSCorey Minyard 	if (rv) {
3706279fbd0cSMyron Stowe 		dev_err(new_smi->dev, "Unable to create proc entry: %d\n", rv);
3707b361e27bSCorey Minyard 		goto out_err_stop_timer;
3708b361e27bSCorey Minyard 	}
3709b361e27bSCorey Minyard 
3710279fbd0cSMyron Stowe 	dev_info(new_smi->dev, "IPMI %s interface initialized\n",
3711c305e3d3SCorey Minyard 		 si_to_str[new_smi->si_type]);
37121da177e4SLinus Torvalds 
37131da177e4SLinus Torvalds 	return 0;
37141da177e4SLinus Torvalds 
37151da177e4SLinus Torvalds  out_err_stop_timer:
3716a9a2c44fSCorey Minyard 	wait_for_timer_and_thread(new_smi);
37171da177e4SLinus Torvalds 
37181da177e4SLinus Torvalds  out_err:
37197aefac26SCorey Minyard 	new_smi->interrupt_disabled = true;
37201da177e4SLinus Torvalds 
37212407d77aSMatthew Garrett 	if (new_smi->intf) {
3722b874b985SCorey Minyard 		ipmi_smi_t intf = new_smi->intf;
37232407d77aSMatthew Garrett 		new_smi->intf = NULL;
3724b874b985SCorey Minyard 		ipmi_unregister_smi(intf);
37252407d77aSMatthew Garrett 	}
37262407d77aSMatthew Garrett 
37272407d77aSMatthew Garrett 	if (new_smi->irq_cleanup) {
37281da177e4SLinus Torvalds 		new_smi->irq_cleanup(new_smi);
37292407d77aSMatthew Garrett 		new_smi->irq_cleanup = NULL;
37302407d77aSMatthew Garrett 	}
37311da177e4SLinus Torvalds 
3732c305e3d3SCorey Minyard 	/*
3733c305e3d3SCorey Minyard 	 * Wait until we know that we are out of any interrupt
3734c305e3d3SCorey Minyard 	 * handlers might have been running before we freed the
3735c305e3d3SCorey Minyard 	 * interrupt.
3736c305e3d3SCorey Minyard 	 */
3737fbd568a3SPaul E. McKenney 	synchronize_sched();
37381da177e4SLinus Torvalds 
37391da177e4SLinus Torvalds 	if (new_smi->si_sm) {
37401da177e4SLinus Torvalds 		if (new_smi->handlers)
37411da177e4SLinus Torvalds 			new_smi->handlers->cleanup(new_smi->si_sm);
37421da177e4SLinus Torvalds 		kfree(new_smi->si_sm);
37432407d77aSMatthew Garrett 		new_smi->si_sm = NULL;
37441da177e4SLinus Torvalds 	}
37452407d77aSMatthew Garrett 	if (new_smi->addr_source_cleanup) {
3746b0defcdbSCorey Minyard 		new_smi->addr_source_cleanup(new_smi);
37472407d77aSMatthew Garrett 		new_smi->addr_source_cleanup = NULL;
37482407d77aSMatthew Garrett 	}
37492407d77aSMatthew Garrett 	if (new_smi->io_cleanup) {
37501da177e4SLinus Torvalds 		new_smi->io_cleanup(new_smi);
37512407d77aSMatthew Garrett 		new_smi->io_cleanup = NULL;
37522407d77aSMatthew Garrett 	}
37531da177e4SLinus Torvalds 
37542407d77aSMatthew Garrett 	if (new_smi->dev_registered) {
375550c812b2SCorey Minyard 		platform_device_unregister(new_smi->pdev);
37567aefac26SCorey Minyard 		new_smi->dev_registered = false;
37572407d77aSMatthew Garrett 	}
3758b0defcdbSCorey Minyard 
37591da177e4SLinus Torvalds 	return rv;
37601da177e4SLinus Torvalds }
37611da177e4SLinus Torvalds 
37622223cbecSBill Pemberton static int init_ipmi_si(void)
37631da177e4SLinus Torvalds {
37641da177e4SLinus Torvalds 	int  i;
37651da177e4SLinus Torvalds 	char *str;
376650c812b2SCorey Minyard 	int  rv;
37672407d77aSMatthew Garrett 	struct smi_info *e;
376806ee4594SMatthew Garrett 	enum ipmi_addr_src type = SI_INVALID;
37691da177e4SLinus Torvalds 
37701da177e4SLinus Torvalds 	if (initialized)
37711da177e4SLinus Torvalds 		return 0;
37721da177e4SLinus Torvalds 	initialized = 1;
37731da177e4SLinus Torvalds 
3774f2afae46SCorey Minyard 	if (si_tryplatform) {
3775a1e9c9ddSRob Herring 		rv = platform_driver_register(&ipmi_driver);
377650c812b2SCorey Minyard 		if (rv) {
3777f2afae46SCorey Minyard 			printk(KERN_ERR PFX "Unable to register "
3778f2afae46SCorey Minyard 			       "driver: %d\n", rv);
377950c812b2SCorey Minyard 			return rv;
378050c812b2SCorey Minyard 		}
3781f2afae46SCorey Minyard 	}
378250c812b2SCorey Minyard 
37831da177e4SLinus Torvalds 	/* Parse out the si_type string into its components. */
37841da177e4SLinus Torvalds 	str = si_type_str;
37851da177e4SLinus Torvalds 	if (*str != '\0') {
37861da177e4SLinus Torvalds 		for (i = 0; (i < SI_MAX_PARMS) && (*str != '\0'); i++) {
37871da177e4SLinus Torvalds 			si_type[i] = str;
37881da177e4SLinus Torvalds 			str = strchr(str, ',');
37891da177e4SLinus Torvalds 			if (str) {
37901da177e4SLinus Torvalds 				*str = '\0';
37911da177e4SLinus Torvalds 				str++;
37921da177e4SLinus Torvalds 			} else {
37931da177e4SLinus Torvalds 				break;
37941da177e4SLinus Torvalds 			}
37951da177e4SLinus Torvalds 		}
37961da177e4SLinus Torvalds 	}
37971da177e4SLinus Torvalds 
37981fdd75bdSCorey Minyard 	printk(KERN_INFO "IPMI System Interface driver.\n");
37991da177e4SLinus Torvalds 
3800d8cc5267SMatthew Garrett 	/* If the user gave us a device, they presumably want us to use it */
3801a1e9c9ddSRob Herring 	if (!hardcode_find_bmc())
3802d8cc5267SMatthew Garrett 		return 0;
3803d8cc5267SMatthew Garrett 
3804b0defcdbSCorey Minyard #ifdef CONFIG_PCI
3805f2afae46SCorey Minyard 	if (si_trypci) {
3806168b35a7SCorey Minyard 		rv = pci_register_driver(&ipmi_pci_driver);
3807c305e3d3SCorey Minyard 		if (rv)
3808f2afae46SCorey Minyard 			printk(KERN_ERR PFX "Unable to register "
3809f2afae46SCorey Minyard 			       "PCI driver: %d\n", rv);
381056480287SMatthew Garrett 		else
38117aefac26SCorey Minyard 			pci_registered = true;
3812f2afae46SCorey Minyard 	}
3813b0defcdbSCorey Minyard #endif
3814b0defcdbSCorey Minyard 
3815754d4531SMatthew Garrett #ifdef CONFIG_DMI
3816d941aeaeSCorey Minyard 	if (si_trydmi)
3817754d4531SMatthew Garrett 		dmi_find_bmc();
3818754d4531SMatthew Garrett #endif
3819754d4531SMatthew Garrett 
3820754d4531SMatthew Garrett #ifdef CONFIG_ACPI
3821d941aeaeSCorey Minyard 	if (si_tryacpi)
3822754d4531SMatthew Garrett 		spmi_find_bmc();
3823754d4531SMatthew Garrett #endif
3824754d4531SMatthew Garrett 
3825fdbeb7deSThomas Bogendoerfer #ifdef CONFIG_PARISC
3826fdbeb7deSThomas Bogendoerfer 	register_parisc_driver(&ipmi_parisc_driver);
38277aefac26SCorey Minyard 	parisc_registered = true;
3828fdbeb7deSThomas Bogendoerfer 	/* poking PC IO addresses will crash machine, don't do it */
3829fdbeb7deSThomas Bogendoerfer 	si_trydefaults = 0;
3830fdbeb7deSThomas Bogendoerfer #endif
3831fdbeb7deSThomas Bogendoerfer 
383206ee4594SMatthew Garrett 	/* We prefer devices with interrupts, but in the case of a machine
383306ee4594SMatthew Garrett 	   with multiple BMCs we assume that there will be several instances
383406ee4594SMatthew Garrett 	   of a given type so if we succeed in registering a type then also
383506ee4594SMatthew Garrett 	   try to register everything else of the same type */
3836d8cc5267SMatthew Garrett 
38372407d77aSMatthew Garrett 	mutex_lock(&smi_infos_lock);
38382407d77aSMatthew Garrett 	list_for_each_entry(e, &smi_infos, link) {
383906ee4594SMatthew Garrett 		/* Try to register a device if it has an IRQ and we either
384006ee4594SMatthew Garrett 		   haven't successfully registered a device yet or this
384106ee4594SMatthew Garrett 		   device has the same type as one we successfully registered */
384206ee4594SMatthew Garrett 		if (e->irq && (!type || e->addr_source == type)) {
3843d8cc5267SMatthew Garrett 			if (!try_smi_init(e)) {
384406ee4594SMatthew Garrett 				type = e->addr_source;
384506ee4594SMatthew Garrett 			}
384606ee4594SMatthew Garrett 		}
384706ee4594SMatthew Garrett 	}
384806ee4594SMatthew Garrett 
384906ee4594SMatthew Garrett 	/* type will only have been set if we successfully registered an si */
385006ee4594SMatthew Garrett 	if (type) {
3851d8cc5267SMatthew Garrett 		mutex_unlock(&smi_infos_lock);
3852d8cc5267SMatthew Garrett 		return 0;
3853d8cc5267SMatthew Garrett 	}
3854d8cc5267SMatthew Garrett 
3855d8cc5267SMatthew Garrett 	/* Fall back to the preferred device */
3856d8cc5267SMatthew Garrett 
3857d8cc5267SMatthew Garrett 	list_for_each_entry(e, &smi_infos, link) {
385806ee4594SMatthew Garrett 		if (!e->irq && (!type || e->addr_source == type)) {
3859d8cc5267SMatthew Garrett 			if (!try_smi_init(e)) {
386006ee4594SMatthew Garrett 				type = e->addr_source;
386106ee4594SMatthew Garrett 			}
386206ee4594SMatthew Garrett 		}
386306ee4594SMatthew Garrett 	}
3864d8cc5267SMatthew Garrett 	mutex_unlock(&smi_infos_lock);
386506ee4594SMatthew Garrett 
386606ee4594SMatthew Garrett 	if (type)
3867d8cc5267SMatthew Garrett 		return 0;
38682407d77aSMatthew Garrett 
3869b0defcdbSCorey Minyard 	if (si_trydefaults) {
3870d6dfd131SCorey Minyard 		mutex_lock(&smi_infos_lock);
3871b0defcdbSCorey Minyard 		if (list_empty(&smi_infos)) {
3872b0defcdbSCorey Minyard 			/* No BMC was found, try defaults. */
3873d6dfd131SCorey Minyard 			mutex_unlock(&smi_infos_lock);
3874b0defcdbSCorey Minyard 			default_find_bmc();
38752407d77aSMatthew Garrett 		} else
3876d6dfd131SCorey Minyard 			mutex_unlock(&smi_infos_lock);
3877b0defcdbSCorey Minyard 	}
38781da177e4SLinus Torvalds 
3879d6dfd131SCorey Minyard 	mutex_lock(&smi_infos_lock);
3880b361e27bSCorey Minyard 	if (unload_when_empty && list_empty(&smi_infos)) {
3881d6dfd131SCorey Minyard 		mutex_unlock(&smi_infos_lock);
3882d2478521SCorey Minyard 		cleanup_ipmi_si();
3883279fbd0cSMyron Stowe 		printk(KERN_WARNING PFX
3884279fbd0cSMyron Stowe 		       "Unable to find any System Interface(s)\n");
38851da177e4SLinus Torvalds 		return -ENODEV;
3886b0defcdbSCorey Minyard 	} else {
3887d6dfd131SCorey Minyard 		mutex_unlock(&smi_infos_lock);
38881da177e4SLinus Torvalds 		return 0;
38891da177e4SLinus Torvalds 	}
3890b0defcdbSCorey Minyard }
38911da177e4SLinus Torvalds module_init(init_ipmi_si);
38921da177e4SLinus Torvalds 
3893b361e27bSCorey Minyard static void cleanup_one_si(struct smi_info *to_clean)
38941da177e4SLinus Torvalds {
38952407d77aSMatthew Garrett 	int           rv = 0;
38961da177e4SLinus Torvalds 
38971da177e4SLinus Torvalds 	if (!to_clean)
38981da177e4SLinus Torvalds 		return;
38991da177e4SLinus Torvalds 
3900b874b985SCorey Minyard 	if (to_clean->intf) {
3901b874b985SCorey Minyard 		ipmi_smi_t intf = to_clean->intf;
3902b874b985SCorey Minyard 
3903b874b985SCorey Minyard 		to_clean->intf = NULL;
3904b874b985SCorey Minyard 		rv = ipmi_unregister_smi(intf);
3905b874b985SCorey Minyard 		if (rv) {
3906b874b985SCorey Minyard 			pr_err(PFX "Unable to unregister device: errno=%d\n",
3907b874b985SCorey Minyard 			       rv);
3908b874b985SCorey Minyard 		}
3909b874b985SCorey Minyard 	}
3910b874b985SCorey Minyard 
3911567eded9STakao Indoh 	if (to_clean->dev)
3912567eded9STakao Indoh 		dev_set_drvdata(to_clean->dev, NULL);
3913567eded9STakao Indoh 
3914b0defcdbSCorey Minyard 	list_del(&to_clean->link);
3915b0defcdbSCorey Minyard 
3916c305e3d3SCorey Minyard 	/*
3917b874b985SCorey Minyard 	 * Make sure that interrupts, the timer and the thread are
3918b874b985SCorey Minyard 	 * stopped and will not run again.
3919c305e3d3SCorey Minyard 	 */
3920b874b985SCorey Minyard 	if (to_clean->irq_cleanup)
3921b874b985SCorey Minyard 		to_clean->irq_cleanup(to_clean);
3922a9a2c44fSCorey Minyard 	wait_for_timer_and_thread(to_clean);
39231da177e4SLinus Torvalds 
3924c305e3d3SCorey Minyard 	/*
3925c305e3d3SCorey Minyard 	 * Timeouts are stopped, now make sure the interrupts are off
3926b874b985SCorey Minyard 	 * in the BMC.  Note that timers and CPU interrupts are off,
3927b874b985SCorey Minyard 	 * so no need for locks.
3928c305e3d3SCorey Minyard 	 */
3929ee6cd5f8SCorey Minyard 	while (to_clean->curr_msg || (to_clean->si_state != SI_NORMAL)) {
3930ee6cd5f8SCorey Minyard 		poll(to_clean);
3931ee6cd5f8SCorey Minyard 		schedule_timeout_uninterruptible(1);
3932ee6cd5f8SCorey Minyard 	}
39330cfec916SCorey Minyard 	disable_si_irq(to_clean, false);
3934ee6cd5f8SCorey Minyard 	while (to_clean->curr_msg || (to_clean->si_state != SI_NORMAL)) {
3935ee6cd5f8SCorey Minyard 		poll(to_clean);
3936ee6cd5f8SCorey Minyard 		schedule_timeout_uninterruptible(1);
3937ee6cd5f8SCorey Minyard 	}
3938ee6cd5f8SCorey Minyard 
39392407d77aSMatthew Garrett 	if (to_clean->handlers)
39401da177e4SLinus Torvalds 		to_clean->handlers->cleanup(to_clean->si_sm);
39411da177e4SLinus Torvalds 
39421da177e4SLinus Torvalds 	kfree(to_clean->si_sm);
39431da177e4SLinus Torvalds 
3944b0defcdbSCorey Minyard 	if (to_clean->addr_source_cleanup)
3945b0defcdbSCorey Minyard 		to_clean->addr_source_cleanup(to_clean);
39467767e126SPaolo Galtieri 	if (to_clean->io_cleanup)
39471da177e4SLinus Torvalds 		to_clean->io_cleanup(to_clean);
394850c812b2SCorey Minyard 
394950c812b2SCorey Minyard 	if (to_clean->dev_registered)
395050c812b2SCorey Minyard 		platform_device_unregister(to_clean->pdev);
395150c812b2SCorey Minyard 
395250c812b2SCorey Minyard 	kfree(to_clean);
39531da177e4SLinus Torvalds }
39541da177e4SLinus Torvalds 
39550dcf334cSSergey Senozhatsky static void cleanup_ipmi_si(void)
39561da177e4SLinus Torvalds {
3957b0defcdbSCorey Minyard 	struct smi_info *e, *tmp_e;
39581da177e4SLinus Torvalds 
39591da177e4SLinus Torvalds 	if (!initialized)
39601da177e4SLinus Torvalds 		return;
39611da177e4SLinus Torvalds 
3962b0defcdbSCorey Minyard #ifdef CONFIG_PCI
396356480287SMatthew Garrett 	if (pci_registered)
3964b0defcdbSCorey Minyard 		pci_unregister_driver(&ipmi_pci_driver);
3965b0defcdbSCorey Minyard #endif
3966fdbeb7deSThomas Bogendoerfer #ifdef CONFIG_PARISC
3967fdbeb7deSThomas Bogendoerfer 	if (parisc_registered)
3968fdbeb7deSThomas Bogendoerfer 		unregister_parisc_driver(&ipmi_parisc_driver);
3969fdbeb7deSThomas Bogendoerfer #endif
3970b0defcdbSCorey Minyard 
3971a1e9c9ddSRob Herring 	platform_driver_unregister(&ipmi_driver);
3972dba9b4f6SCorey Minyard 
3973d6dfd131SCorey Minyard 	mutex_lock(&smi_infos_lock);
3974b0defcdbSCorey Minyard 	list_for_each_entry_safe(e, tmp_e, &smi_infos, link)
3975b0defcdbSCorey Minyard 		cleanup_one_si(e);
3976d6dfd131SCorey Minyard 	mutex_unlock(&smi_infos_lock);
39771da177e4SLinus Torvalds }
39781da177e4SLinus Torvalds module_exit(cleanup_ipmi_si);
39791da177e4SLinus Torvalds 
39801da177e4SLinus Torvalds MODULE_LICENSE("GPL");
39811fdd75bdSCorey Minyard MODULE_AUTHOR("Corey Minyard <minyard@mvista.com>");
3982c305e3d3SCorey Minyard MODULE_DESCRIPTION("Interface to the IPMI driver for the KCS, SMIC, and BT"
3983c305e3d3SCorey Minyard 		   " system interfaces.");
3984