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> 631e89a499SCorey Minyard #include "ipmi_si.h" 640944d889SCorey Minyard #include "ipmi_dmi.h" 65b224cd3aSAndrey Panin #include <linux/dmi.h> 66b361e27bSCorey Minyard #include <linux/string.h> 67b361e27bSCorey Minyard #include <linux/ctype.h> 6811c675ceSStephen Rothwell #include <linux/of_device.h> 6911c675ceSStephen Rothwell #include <linux/of_platform.h> 70672d8eafSRob Herring #include <linux/of_address.h> 71672d8eafSRob Herring #include <linux/of_irq.h> 7258c9d61fSTony Camuso #include <linux/acpi.h> 73dba9b4f6SCorey Minyard 74fdbeb7deSThomas Bogendoerfer #ifdef CONFIG_PARISC 75fdbeb7deSThomas Bogendoerfer #include <asm/hardware.h> /* for register_parisc_driver() stuff */ 76fdbeb7deSThomas Bogendoerfer #include <asm/parisc-device.h> 77fdbeb7deSThomas Bogendoerfer #endif 78fdbeb7deSThomas Bogendoerfer 79b361e27bSCorey Minyard #define PFX "ipmi_si: " 801da177e4SLinus Torvalds 811da177e4SLinus Torvalds /* Measure times between events in the driver. */ 821da177e4SLinus Torvalds #undef DEBUG_TIMING 831da177e4SLinus Torvalds 841da177e4SLinus Torvalds /* Call every 10 ms. */ 851da177e4SLinus Torvalds #define SI_TIMEOUT_TIME_USEC 10000 861da177e4SLinus Torvalds #define SI_USEC_PER_JIFFY (1000000/HZ) 871da177e4SLinus Torvalds #define SI_TIMEOUT_JIFFIES (SI_TIMEOUT_TIME_USEC/SI_USEC_PER_JIFFY) 881da177e4SLinus Torvalds #define SI_SHORT_TIMEOUT_USEC 250 /* .25ms when the SM request a 891da177e4SLinus Torvalds short timeout */ 901da177e4SLinus Torvalds 911da177e4SLinus Torvalds enum si_intf_state { 921da177e4SLinus Torvalds SI_NORMAL, 931da177e4SLinus Torvalds SI_GETTING_FLAGS, 941da177e4SLinus Torvalds SI_GETTING_EVENTS, 951da177e4SLinus Torvalds SI_CLEARING_FLAGS, 961da177e4SLinus Torvalds SI_GETTING_MESSAGES, 97d9b7e4f7SCorey Minyard SI_CHECKING_ENABLES, 98d9b7e4f7SCorey Minyard SI_SETTING_ENABLES 991da177e4SLinus Torvalds /* FIXME - add watchdog stuff. */ 1001da177e4SLinus Torvalds }; 1011da177e4SLinus Torvalds 1029dbf68f9SCorey Minyard /* Some BT-specific defines we need here. */ 1039dbf68f9SCorey Minyard #define IPMI_BT_INTMASK_REG 2 1049dbf68f9SCorey Minyard #define IPMI_BT_INTMASK_CLEAR_IRQ_BIT 2 1059dbf68f9SCorey Minyard #define IPMI_BT_INTMASK_ENABLE_IRQ_BIT 1 1069dbf68f9SCorey Minyard 10799ee6735SLABBE Corentin static const char * const si_to_str[] = { "kcs", "smic", "bt" }; 1081da177e4SLinus Torvalds 10950c812b2SCorey Minyard #define DEVICE_NAME "ipmi_si" 1103ae0e0f9SCorey Minyard 111a1e9c9ddSRob Herring static struct platform_driver ipmi_driver; 11264959e2dSCorey Minyard 11364959e2dSCorey Minyard /* 11464959e2dSCorey Minyard * Indexes into stats[] in smi_info below. 11564959e2dSCorey Minyard */ 116ba8ff1c6SCorey Minyard enum si_stat_indexes { 117ba8ff1c6SCorey Minyard /* 118ba8ff1c6SCorey Minyard * Number of times the driver requested a timer while an operation 119ba8ff1c6SCorey Minyard * was in progress. 120ba8ff1c6SCorey Minyard */ 121ba8ff1c6SCorey Minyard SI_STAT_short_timeouts = 0, 12264959e2dSCorey Minyard 123ba8ff1c6SCorey Minyard /* 124ba8ff1c6SCorey Minyard * Number of times the driver requested a timer while nothing was in 125ba8ff1c6SCorey Minyard * progress. 126ba8ff1c6SCorey Minyard */ 127ba8ff1c6SCorey Minyard SI_STAT_long_timeouts, 12864959e2dSCorey Minyard 129ba8ff1c6SCorey Minyard /* Number of times the interface was idle while being polled. */ 130ba8ff1c6SCorey Minyard SI_STAT_idles, 131ba8ff1c6SCorey Minyard 132ba8ff1c6SCorey Minyard /* Number of interrupts the driver handled. */ 133ba8ff1c6SCorey Minyard SI_STAT_interrupts, 134ba8ff1c6SCorey Minyard 135ba8ff1c6SCorey Minyard /* Number of time the driver got an ATTN from the hardware. */ 136ba8ff1c6SCorey Minyard SI_STAT_attentions, 137ba8ff1c6SCorey Minyard 138ba8ff1c6SCorey Minyard /* Number of times the driver requested flags from the hardware. */ 139ba8ff1c6SCorey Minyard SI_STAT_flag_fetches, 140ba8ff1c6SCorey Minyard 141ba8ff1c6SCorey Minyard /* Number of times the hardware didn't follow the state machine. */ 142ba8ff1c6SCorey Minyard SI_STAT_hosed_count, 143ba8ff1c6SCorey Minyard 144ba8ff1c6SCorey Minyard /* Number of completed messages. */ 145ba8ff1c6SCorey Minyard SI_STAT_complete_transactions, 146ba8ff1c6SCorey Minyard 147ba8ff1c6SCorey Minyard /* Number of IPMI events received from the hardware. */ 148ba8ff1c6SCorey Minyard SI_STAT_events, 149ba8ff1c6SCorey Minyard 150ba8ff1c6SCorey Minyard /* Number of watchdog pretimeouts. */ 151ba8ff1c6SCorey Minyard SI_STAT_watchdog_pretimeouts, 152ba8ff1c6SCorey Minyard 153b3834be5SAdam Buchbinder /* Number of asynchronous messages received. */ 154ba8ff1c6SCorey Minyard SI_STAT_incoming_messages, 155ba8ff1c6SCorey Minyard 156ba8ff1c6SCorey Minyard 157ba8ff1c6SCorey Minyard /* This *must* remain last, add new values above this. */ 158ba8ff1c6SCorey Minyard SI_NUM_STATS 159ba8ff1c6SCorey Minyard }; 16064959e2dSCorey Minyard 161c305e3d3SCorey Minyard struct smi_info { 162a9a2c44fSCorey Minyard int intf_num; 1631da177e4SLinus Torvalds ipmi_smi_t intf; 1641da177e4SLinus Torvalds struct si_sm_data *si_sm; 16581d02b7fSCorey Minyard const struct si_sm_handlers *handlers; 1661da177e4SLinus Torvalds spinlock_t si_lock; 167b874b985SCorey Minyard struct ipmi_smi_msg *waiting_msg; 1681da177e4SLinus Torvalds struct ipmi_smi_msg *curr_msg; 1691da177e4SLinus Torvalds enum si_intf_state si_state; 1701da177e4SLinus Torvalds 171c305e3d3SCorey Minyard /* 172c305e3d3SCorey Minyard * Used to handle the various types of I/O that can occur with 173c305e3d3SCorey Minyard * IPMI 174c305e3d3SCorey Minyard */ 1751da177e4SLinus Torvalds struct si_sm_io io; 1761da177e4SLinus Torvalds int (*io_setup)(struct smi_info *info); 1771da177e4SLinus Torvalds void (*io_cleanup)(struct smi_info *info); 1781da177e4SLinus Torvalds unsigned int io_size; 1791da177e4SLinus Torvalds 180c305e3d3SCorey Minyard /* 181c305e3d3SCorey Minyard * Per-OEM handler, called from handle_flags(). Returns 1 182c305e3d3SCorey Minyard * when handle_flags() needs to be re-run or 0 indicating it 183c305e3d3SCorey Minyard * set si_state itself. 1843ae0e0f9SCorey Minyard */ 1853ae0e0f9SCorey Minyard int (*oem_data_avail_handler)(struct smi_info *smi_info); 1863ae0e0f9SCorey Minyard 187c305e3d3SCorey Minyard /* 188c305e3d3SCorey Minyard * Flags from the last GET_MSG_FLAGS command, used when an ATTN 189c305e3d3SCorey Minyard * is set to hold the flags until we are done handling everything 190c305e3d3SCorey Minyard * from the flags. 191c305e3d3SCorey Minyard */ 1921da177e4SLinus Torvalds #define RECEIVE_MSG_AVAIL 0x01 1931da177e4SLinus Torvalds #define EVENT_MSG_BUFFER_FULL 0x02 1941da177e4SLinus Torvalds #define WDT_PRE_TIMEOUT_INT 0x08 1953ae0e0f9SCorey Minyard #define OEM0_DATA_AVAIL 0x20 1963ae0e0f9SCorey Minyard #define OEM1_DATA_AVAIL 0x40 1973ae0e0f9SCorey Minyard #define OEM2_DATA_AVAIL 0x80 1983ae0e0f9SCorey Minyard #define OEM_DATA_AVAIL (OEM0_DATA_AVAIL | \ 1993ae0e0f9SCorey Minyard OEM1_DATA_AVAIL | \ 2003ae0e0f9SCorey Minyard OEM2_DATA_AVAIL) 2011da177e4SLinus Torvalds unsigned char msg_flags; 2021da177e4SLinus Torvalds 20340112ae7SCorey Minyard /* Does the BMC have an event buffer? */ 2047aefac26SCorey Minyard bool has_event_buffer; 20540112ae7SCorey Minyard 206c305e3d3SCorey Minyard /* 207c305e3d3SCorey Minyard * If set to true, this will request events the next time the 208c305e3d3SCorey Minyard * state machine is idle. 209c305e3d3SCorey Minyard */ 2101da177e4SLinus Torvalds atomic_t req_events; 2111da177e4SLinus Torvalds 212c305e3d3SCorey Minyard /* 213c305e3d3SCorey Minyard * If true, run the state machine to completion on every send 214c305e3d3SCorey Minyard * call. Generally used after a panic to make sure stuff goes 215c305e3d3SCorey Minyard * out. 216c305e3d3SCorey Minyard */ 2177aefac26SCorey Minyard bool run_to_completion; 2181da177e4SLinus Torvalds 2191da177e4SLinus Torvalds /* The I/O port of an SI interface. */ 2201da177e4SLinus Torvalds int port; 2211da177e4SLinus Torvalds 222c305e3d3SCorey Minyard /* 223c305e3d3SCorey Minyard * The space between start addresses of the two ports. For 224c305e3d3SCorey Minyard * instance, if the first port is 0xca2 and the spacing is 4, then 225c305e3d3SCorey Minyard * the second port is 0xca6. 226c305e3d3SCorey Minyard */ 2271da177e4SLinus Torvalds unsigned int spacing; 2281da177e4SLinus Torvalds 2291da177e4SLinus Torvalds /* The timer for this si. */ 2301da177e4SLinus Torvalds struct timer_list si_timer; 2311da177e4SLinus Torvalds 23248e8ac29SBodo Stroesser /* This flag is set, if the timer is running (timer_pending() isn't enough) */ 23348e8ac29SBodo Stroesser bool timer_running; 23448e8ac29SBodo Stroesser 2351da177e4SLinus Torvalds /* The time (in jiffies) the last timeout occurred at. */ 2361da177e4SLinus Torvalds unsigned long last_timeout_jiffies; 2371da177e4SLinus Torvalds 23889986496SCorey Minyard /* Are we waiting for the events, pretimeouts, received msgs? */ 23989986496SCorey Minyard atomic_t need_watch; 24089986496SCorey Minyard 241c305e3d3SCorey Minyard /* 242c305e3d3SCorey Minyard * The driver will disable interrupts when it gets into a 243c305e3d3SCorey Minyard * situation where it cannot handle messages due to lack of 244c305e3d3SCorey Minyard * memory. Once that situation clears up, it will re-enable 245c305e3d3SCorey Minyard * interrupts. 246c305e3d3SCorey Minyard */ 2477aefac26SCorey Minyard bool interrupt_disabled; 2481da177e4SLinus Torvalds 249d9b7e4f7SCorey Minyard /* 250d9b7e4f7SCorey Minyard * Does the BMC support events? 251d9b7e4f7SCorey Minyard */ 252d9b7e4f7SCorey Minyard bool supports_event_msg_buff; 253d9b7e4f7SCorey Minyard 254a8df150cSCorey Minyard /* 255d0882897SCorey Minyard * Can we disable interrupts the global enables receive irq 256d0882897SCorey Minyard * bit? There are currently two forms of brokenness, some 257d0882897SCorey Minyard * systems cannot disable the bit (which is technically within 258d0882897SCorey Minyard * the spec but a bad idea) and some systems have the bit 259d0882897SCorey Minyard * forced to zero even though interrupts work (which is 260d0882897SCorey Minyard * clearly outside the spec). The next bool tells which form 261d0882897SCorey Minyard * of brokenness is present. 2621e7d6a45SCorey Minyard */ 263d0882897SCorey Minyard bool cannot_disable_irq; 264d0882897SCorey Minyard 265d0882897SCorey Minyard /* 266d0882897SCorey Minyard * Some systems are broken and cannot set the irq enable 267d0882897SCorey Minyard * bit, even if they support interrupts. 268d0882897SCorey Minyard */ 269d0882897SCorey Minyard bool irq_enable_broken; 2701e7d6a45SCorey Minyard 2711e7d6a45SCorey Minyard /* 272a8df150cSCorey Minyard * Did we get an attention that we did not handle? 273a8df150cSCorey Minyard */ 274a8df150cSCorey Minyard bool got_attn; 275a8df150cSCorey Minyard 27650c812b2SCorey Minyard /* From the get device id response... */ 2773ae0e0f9SCorey Minyard struct ipmi_device_id device_id; 2781da177e4SLinus Torvalds 279910840f2SCorey Minyard /* Default driver model device. */ 28050c812b2SCorey Minyard struct platform_device *pdev; 28150c812b2SCorey Minyard 2821da177e4SLinus Torvalds /* Counters and things for the proc filesystem. */ 28364959e2dSCorey Minyard atomic_t stats[SI_NUM_STATS]; 284a9a2c44fSCorey Minyard 285e9a705a0SMatt Domsch struct task_struct *thread; 286b0defcdbSCorey Minyard 287b0defcdbSCorey Minyard struct list_head link; 28816f4232cSZhao Yakui union ipmi_smi_info_union addr_info; 2891da177e4SLinus Torvalds }; 2901da177e4SLinus Torvalds 29164959e2dSCorey Minyard #define smi_inc_stat(smi, stat) \ 29264959e2dSCorey Minyard atomic_inc(&(smi)->stats[SI_STAT_ ## stat]) 29364959e2dSCorey Minyard #define smi_get_stat(smi, stat) \ 29464959e2dSCorey Minyard ((unsigned int) atomic_read(&(smi)->stats[SI_STAT_ ## stat])) 29564959e2dSCorey Minyard 296a51f4a81SCorey Minyard #define SI_MAX_PARMS 4 297a51f4a81SCorey Minyard 298a51f4a81SCorey Minyard static int force_kipmid[SI_MAX_PARMS]; 299a51f4a81SCorey Minyard static int num_force_kipmid; 30056480287SMatthew Garrett #ifdef CONFIG_PCI 3017aefac26SCorey Minyard static bool pci_registered; 30256480287SMatthew Garrett #endif 303fdbeb7deSThomas Bogendoerfer #ifdef CONFIG_PARISC 3047aefac26SCorey Minyard static bool parisc_registered; 305fdbeb7deSThomas Bogendoerfer #endif 306a51f4a81SCorey Minyard 307ae74e823SMartin Wilck static unsigned int kipmid_max_busy_us[SI_MAX_PARMS]; 308ae74e823SMartin Wilck static int num_max_busy_us; 309ae74e823SMartin Wilck 3107aefac26SCorey Minyard static bool unload_when_empty = true; 311b361e27bSCorey Minyard 312b0defcdbSCorey Minyard static int try_smi_init(struct smi_info *smi); 313b361e27bSCorey Minyard static void cleanup_one_si(struct smi_info *to_clean); 314d2478521SCorey Minyard static void cleanup_ipmi_si(void); 315b0defcdbSCorey Minyard 316f93aae9fSJohn Stultz #ifdef DEBUG_TIMING 317f93aae9fSJohn Stultz void debug_timestamp(char *msg) 318f93aae9fSJohn Stultz { 31948862ea2SJohn Stultz struct timespec64 t; 320f93aae9fSJohn Stultz 32148862ea2SJohn Stultz getnstimeofday64(&t); 32248862ea2SJohn Stultz pr_debug("**%s: %lld.%9.9ld\n", msg, (long long) t.tv_sec, t.tv_nsec); 323f93aae9fSJohn Stultz } 324f93aae9fSJohn Stultz #else 325f93aae9fSJohn Stultz #define debug_timestamp(x) 326f93aae9fSJohn Stultz #endif 327f93aae9fSJohn Stultz 328e041c683SAlan Stern static ATOMIC_NOTIFIER_HEAD(xaction_notifier_list); 329ea94027bSCorey Minyard static int register_xaction_notifier(struct notifier_block *nb) 330ea94027bSCorey Minyard { 331e041c683SAlan Stern return atomic_notifier_chain_register(&xaction_notifier_list, nb); 332ea94027bSCorey Minyard } 333ea94027bSCorey Minyard 3341da177e4SLinus Torvalds static void deliver_recv_msg(struct smi_info *smi_info, 3351da177e4SLinus Torvalds struct ipmi_smi_msg *msg) 3361da177e4SLinus Torvalds { 3377adf579cSCorey Minyard /* Deliver the message to the upper layer. */ 338968bf7ccSCorey Minyard if (smi_info->intf) 339a747c5abSJiri Kosina ipmi_smi_msg_received(smi_info->intf, msg); 340968bf7ccSCorey Minyard else 341968bf7ccSCorey Minyard ipmi_free_smi_msg(msg); 342a747c5abSJiri Kosina } 3431da177e4SLinus Torvalds 3444d7cbac7SCorey Minyard static void return_hosed_msg(struct smi_info *smi_info, int cCode) 3451da177e4SLinus Torvalds { 3461da177e4SLinus Torvalds struct ipmi_smi_msg *msg = smi_info->curr_msg; 3471da177e4SLinus Torvalds 3484d7cbac7SCorey Minyard if (cCode < 0 || cCode > IPMI_ERR_UNSPECIFIED) 3494d7cbac7SCorey Minyard cCode = IPMI_ERR_UNSPECIFIED; 3504d7cbac7SCorey Minyard /* else use it as is */ 3514d7cbac7SCorey Minyard 35225985edcSLucas De Marchi /* Make it a response */ 3531da177e4SLinus Torvalds msg->rsp[0] = msg->data[0] | 4; 3541da177e4SLinus Torvalds msg->rsp[1] = msg->data[1]; 3554d7cbac7SCorey Minyard msg->rsp[2] = cCode; 3561da177e4SLinus Torvalds msg->rsp_size = 3; 3571da177e4SLinus Torvalds 3581da177e4SLinus Torvalds smi_info->curr_msg = NULL; 3591da177e4SLinus Torvalds deliver_recv_msg(smi_info, msg); 3601da177e4SLinus Torvalds } 3611da177e4SLinus Torvalds 3621da177e4SLinus Torvalds static enum si_sm_result start_next_msg(struct smi_info *smi_info) 3631da177e4SLinus Torvalds { 3641da177e4SLinus Torvalds int rv; 3651da177e4SLinus Torvalds 366b874b985SCorey Minyard if (!smi_info->waiting_msg) { 3671da177e4SLinus Torvalds smi_info->curr_msg = NULL; 3681da177e4SLinus Torvalds rv = SI_SM_IDLE; 3691da177e4SLinus Torvalds } else { 3701da177e4SLinus Torvalds int err; 3711da177e4SLinus Torvalds 372b874b985SCorey Minyard smi_info->curr_msg = smi_info->waiting_msg; 373b874b985SCorey Minyard smi_info->waiting_msg = NULL; 374f93aae9fSJohn Stultz debug_timestamp("Start2"); 375e041c683SAlan Stern err = atomic_notifier_call_chain(&xaction_notifier_list, 376e041c683SAlan Stern 0, smi_info); 377ea94027bSCorey Minyard if (err & NOTIFY_STOP_MASK) { 378ea94027bSCorey Minyard rv = SI_SM_CALL_WITHOUT_DELAY; 379ea94027bSCorey Minyard goto out; 380ea94027bSCorey Minyard } 3811da177e4SLinus Torvalds err = smi_info->handlers->start_transaction( 3821da177e4SLinus Torvalds smi_info->si_sm, 3831da177e4SLinus Torvalds smi_info->curr_msg->data, 3841da177e4SLinus Torvalds smi_info->curr_msg->data_size); 385c305e3d3SCorey Minyard if (err) 3864d7cbac7SCorey Minyard return_hosed_msg(smi_info, err); 3871da177e4SLinus Torvalds 3881da177e4SLinus Torvalds rv = SI_SM_CALL_WITHOUT_DELAY; 3891da177e4SLinus Torvalds } 390ea94027bSCorey Minyard out: 3911da177e4SLinus Torvalds return rv; 3921da177e4SLinus Torvalds } 3931da177e4SLinus Torvalds 3940cfec916SCorey Minyard static void smi_mod_timer(struct smi_info *smi_info, unsigned long new_val) 3950cfec916SCorey Minyard { 3960cfec916SCorey Minyard smi_info->last_timeout_jiffies = jiffies; 3970cfec916SCorey Minyard mod_timer(&smi_info->si_timer, new_val); 3980cfec916SCorey Minyard smi_info->timer_running = true; 3990cfec916SCorey Minyard } 4000cfec916SCorey Minyard 4010cfec916SCorey Minyard /* 4020cfec916SCorey Minyard * Start a new message and (re)start the timer and thread. 4030cfec916SCorey Minyard */ 4040cfec916SCorey Minyard static void start_new_msg(struct smi_info *smi_info, unsigned char *msg, 4050cfec916SCorey Minyard unsigned int size) 4060cfec916SCorey Minyard { 4070cfec916SCorey Minyard smi_mod_timer(smi_info, jiffies + SI_TIMEOUT_JIFFIES); 4080cfec916SCorey Minyard 4090cfec916SCorey Minyard if (smi_info->thread) 4100cfec916SCorey Minyard wake_up_process(smi_info->thread); 4110cfec916SCorey Minyard 4120cfec916SCorey Minyard smi_info->handlers->start_transaction(smi_info->si_sm, msg, size); 4130cfec916SCorey Minyard } 4140cfec916SCorey Minyard 4150cfec916SCorey Minyard static void start_check_enables(struct smi_info *smi_info, bool start_timer) 416ee6cd5f8SCorey Minyard { 417ee6cd5f8SCorey Minyard unsigned char msg[2]; 418ee6cd5f8SCorey Minyard 419ee6cd5f8SCorey Minyard msg[0] = (IPMI_NETFN_APP_REQUEST << 2); 420ee6cd5f8SCorey Minyard msg[1] = IPMI_GET_BMC_GLOBAL_ENABLES_CMD; 421ee6cd5f8SCorey Minyard 4220cfec916SCorey Minyard if (start_timer) 4230cfec916SCorey Minyard start_new_msg(smi_info, msg, 2); 4240cfec916SCorey Minyard else 425ee6cd5f8SCorey Minyard smi_info->handlers->start_transaction(smi_info->si_sm, msg, 2); 426d9b7e4f7SCorey Minyard smi_info->si_state = SI_CHECKING_ENABLES; 427ee6cd5f8SCorey Minyard } 428ee6cd5f8SCorey Minyard 4290cfec916SCorey Minyard static void start_clear_flags(struct smi_info *smi_info, bool start_timer) 4301da177e4SLinus Torvalds { 4311da177e4SLinus Torvalds unsigned char msg[3]; 4321da177e4SLinus Torvalds 4331da177e4SLinus Torvalds /* Make sure the watchdog pre-timeout flag is not set at startup. */ 4341da177e4SLinus Torvalds msg[0] = (IPMI_NETFN_APP_REQUEST << 2); 4351da177e4SLinus Torvalds msg[1] = IPMI_CLEAR_MSG_FLAGS_CMD; 4361da177e4SLinus Torvalds msg[2] = WDT_PRE_TIMEOUT_INT; 4371da177e4SLinus Torvalds 4380cfec916SCorey Minyard if (start_timer) 4390cfec916SCorey Minyard start_new_msg(smi_info, msg, 3); 4400cfec916SCorey Minyard else 4411da177e4SLinus Torvalds smi_info->handlers->start_transaction(smi_info->si_sm, msg, 3); 4421da177e4SLinus Torvalds smi_info->si_state = SI_CLEARING_FLAGS; 4431da177e4SLinus Torvalds } 4441da177e4SLinus Torvalds 445968bf7ccSCorey Minyard static void start_getting_msg_queue(struct smi_info *smi_info) 446968bf7ccSCorey Minyard { 447968bf7ccSCorey Minyard smi_info->curr_msg->data[0] = (IPMI_NETFN_APP_REQUEST << 2); 448968bf7ccSCorey Minyard smi_info->curr_msg->data[1] = IPMI_GET_MSG_CMD; 449968bf7ccSCorey Minyard smi_info->curr_msg->data_size = 2; 450968bf7ccSCorey Minyard 4510cfec916SCorey Minyard start_new_msg(smi_info, smi_info->curr_msg->data, 452968bf7ccSCorey Minyard smi_info->curr_msg->data_size); 453968bf7ccSCorey Minyard smi_info->si_state = SI_GETTING_MESSAGES; 454968bf7ccSCorey Minyard } 455968bf7ccSCorey Minyard 456968bf7ccSCorey Minyard static void start_getting_events(struct smi_info *smi_info) 457968bf7ccSCorey Minyard { 458968bf7ccSCorey Minyard smi_info->curr_msg->data[0] = (IPMI_NETFN_APP_REQUEST << 2); 459968bf7ccSCorey Minyard smi_info->curr_msg->data[1] = IPMI_READ_EVENT_MSG_BUFFER_CMD; 460968bf7ccSCorey Minyard smi_info->curr_msg->data_size = 2; 461968bf7ccSCorey Minyard 4620cfec916SCorey Minyard start_new_msg(smi_info, smi_info->curr_msg->data, 463968bf7ccSCorey Minyard smi_info->curr_msg->data_size); 464968bf7ccSCorey Minyard smi_info->si_state = SI_GETTING_EVENTS; 465968bf7ccSCorey Minyard } 466968bf7ccSCorey Minyard 467c305e3d3SCorey Minyard /* 468c305e3d3SCorey Minyard * When we have a situtaion where we run out of memory and cannot 469c305e3d3SCorey Minyard * allocate messages, we just leave them in the BMC and run the system 470c305e3d3SCorey Minyard * polled until we can allocate some memory. Once we have some 471c305e3d3SCorey Minyard * memory, we will re-enable the interrupt. 4721e7d6a45SCorey Minyard * 4731e7d6a45SCorey Minyard * Note that we cannot just use disable_irq(), since the interrupt may 4741e7d6a45SCorey Minyard * be shared. 475c305e3d3SCorey Minyard */ 4760cfec916SCorey Minyard static inline bool disable_si_irq(struct smi_info *smi_info, bool start_timer) 4771da177e4SLinus Torvalds { 478910840f2SCorey Minyard if ((smi_info->io.irq) && (!smi_info->interrupt_disabled)) { 4797aefac26SCorey Minyard smi_info->interrupt_disabled = true; 4800cfec916SCorey Minyard start_check_enables(smi_info, start_timer); 481968bf7ccSCorey Minyard return true; 4821da177e4SLinus Torvalds } 483968bf7ccSCorey Minyard return false; 4841da177e4SLinus Torvalds } 4851da177e4SLinus Torvalds 486968bf7ccSCorey Minyard static inline bool enable_si_irq(struct smi_info *smi_info) 4871da177e4SLinus Torvalds { 488910840f2SCorey Minyard if ((smi_info->io.irq) && (smi_info->interrupt_disabled)) { 4897aefac26SCorey Minyard smi_info->interrupt_disabled = false; 4900cfec916SCorey Minyard start_check_enables(smi_info, true); 491968bf7ccSCorey Minyard return true; 4921da177e4SLinus Torvalds } 493968bf7ccSCorey Minyard return false; 494968bf7ccSCorey Minyard } 495968bf7ccSCorey Minyard 496968bf7ccSCorey Minyard /* 497968bf7ccSCorey Minyard * Allocate a message. If unable to allocate, start the interrupt 498968bf7ccSCorey Minyard * disable process and return NULL. If able to allocate but 499968bf7ccSCorey Minyard * interrupts are disabled, free the message and return NULL after 500968bf7ccSCorey Minyard * starting the interrupt enable process. 501968bf7ccSCorey Minyard */ 502968bf7ccSCorey Minyard static struct ipmi_smi_msg *alloc_msg_handle_irq(struct smi_info *smi_info) 503968bf7ccSCorey Minyard { 504968bf7ccSCorey Minyard struct ipmi_smi_msg *msg; 505968bf7ccSCorey Minyard 506968bf7ccSCorey Minyard msg = ipmi_alloc_smi_msg(); 507968bf7ccSCorey Minyard if (!msg) { 5080cfec916SCorey Minyard if (!disable_si_irq(smi_info, true)) 509968bf7ccSCorey Minyard smi_info->si_state = SI_NORMAL; 510968bf7ccSCorey Minyard } else if (enable_si_irq(smi_info)) { 511968bf7ccSCorey Minyard ipmi_free_smi_msg(msg); 512968bf7ccSCorey Minyard msg = NULL; 513968bf7ccSCorey Minyard } 514968bf7ccSCorey Minyard return msg; 5151da177e4SLinus Torvalds } 5161da177e4SLinus Torvalds 5171da177e4SLinus Torvalds static void handle_flags(struct smi_info *smi_info) 5181da177e4SLinus Torvalds { 5193ae0e0f9SCorey Minyard retry: 5201da177e4SLinus Torvalds if (smi_info->msg_flags & WDT_PRE_TIMEOUT_INT) { 5211da177e4SLinus Torvalds /* Watchdog pre-timeout */ 52264959e2dSCorey Minyard smi_inc_stat(smi_info, watchdog_pretimeouts); 5231da177e4SLinus Torvalds 5240cfec916SCorey Minyard start_clear_flags(smi_info, true); 5251da177e4SLinus Torvalds smi_info->msg_flags &= ~WDT_PRE_TIMEOUT_INT; 526968bf7ccSCorey Minyard if (smi_info->intf) 5271da177e4SLinus Torvalds ipmi_smi_watchdog_pretimeout(smi_info->intf); 5281da177e4SLinus Torvalds } else if (smi_info->msg_flags & RECEIVE_MSG_AVAIL) { 5291da177e4SLinus Torvalds /* Messages available. */ 530968bf7ccSCorey Minyard smi_info->curr_msg = alloc_msg_handle_irq(smi_info); 531968bf7ccSCorey Minyard if (!smi_info->curr_msg) 5321da177e4SLinus Torvalds return; 5331da177e4SLinus Torvalds 534968bf7ccSCorey Minyard start_getting_msg_queue(smi_info); 5351da177e4SLinus Torvalds } else if (smi_info->msg_flags & EVENT_MSG_BUFFER_FULL) { 5361da177e4SLinus Torvalds /* Events available. */ 537968bf7ccSCorey Minyard smi_info->curr_msg = alloc_msg_handle_irq(smi_info); 538968bf7ccSCorey Minyard if (!smi_info->curr_msg) 5391da177e4SLinus Torvalds return; 5401da177e4SLinus Torvalds 541968bf7ccSCorey Minyard start_getting_events(smi_info); 5424064d5efSCorey Minyard } else if (smi_info->msg_flags & OEM_DATA_AVAIL && 5434064d5efSCorey Minyard smi_info->oem_data_avail_handler) { 5443ae0e0f9SCorey Minyard if (smi_info->oem_data_avail_handler(smi_info)) 5453ae0e0f9SCorey Minyard goto retry; 546c305e3d3SCorey Minyard } else 5471da177e4SLinus Torvalds smi_info->si_state = SI_NORMAL; 5481da177e4SLinus Torvalds } 5491da177e4SLinus Torvalds 550d9b7e4f7SCorey Minyard /* 551d9b7e4f7SCorey Minyard * Global enables we care about. 552d9b7e4f7SCorey Minyard */ 553d9b7e4f7SCorey Minyard #define GLOBAL_ENABLES_MASK (IPMI_BMC_EVT_MSG_BUFF | IPMI_BMC_RCV_MSG_INTR | \ 554d9b7e4f7SCorey Minyard IPMI_BMC_EVT_MSG_INTR) 555d9b7e4f7SCorey Minyard 55695c97b59SCorey Minyard static u8 current_global_enables(struct smi_info *smi_info, u8 base, 55795c97b59SCorey Minyard bool *irq_on) 558d9b7e4f7SCorey Minyard { 559d9b7e4f7SCorey Minyard u8 enables = 0; 560d9b7e4f7SCorey Minyard 561d9b7e4f7SCorey Minyard if (smi_info->supports_event_msg_buff) 562d9b7e4f7SCorey Minyard enables |= IPMI_BMC_EVT_MSG_BUFF; 563d9b7e4f7SCorey Minyard 564910840f2SCorey Minyard if (((smi_info->io.irq && !smi_info->interrupt_disabled) || 565d0882897SCorey Minyard smi_info->cannot_disable_irq) && 566d0882897SCorey Minyard !smi_info->irq_enable_broken) 567d9b7e4f7SCorey Minyard enables |= IPMI_BMC_RCV_MSG_INTR; 568d9b7e4f7SCorey Minyard 569d9b7e4f7SCorey Minyard if (smi_info->supports_event_msg_buff && 570910840f2SCorey Minyard smi_info->io.irq && !smi_info->interrupt_disabled && 571d0882897SCorey Minyard !smi_info->irq_enable_broken) 572d9b7e4f7SCorey Minyard enables |= IPMI_BMC_EVT_MSG_INTR; 573d9b7e4f7SCorey Minyard 57495c97b59SCorey Minyard *irq_on = enables & (IPMI_BMC_EVT_MSG_INTR | IPMI_BMC_RCV_MSG_INTR); 57595c97b59SCorey Minyard 576d9b7e4f7SCorey Minyard return enables; 577d9b7e4f7SCorey Minyard } 578d9b7e4f7SCorey Minyard 57995c97b59SCorey Minyard static void check_bt_irq(struct smi_info *smi_info, bool irq_on) 58095c97b59SCorey Minyard { 58195c97b59SCorey Minyard u8 irqstate = smi_info->io.inputb(&smi_info->io, IPMI_BT_INTMASK_REG); 58295c97b59SCorey Minyard 58395c97b59SCorey Minyard irqstate &= IPMI_BT_INTMASK_ENABLE_IRQ_BIT; 58495c97b59SCorey Minyard 58595c97b59SCorey Minyard if ((bool)irqstate == irq_on) 58695c97b59SCorey Minyard return; 58795c97b59SCorey Minyard 58895c97b59SCorey Minyard if (irq_on) 58995c97b59SCorey Minyard smi_info->io.outputb(&smi_info->io, IPMI_BT_INTMASK_REG, 59095c97b59SCorey Minyard IPMI_BT_INTMASK_ENABLE_IRQ_BIT); 59195c97b59SCorey Minyard else 59295c97b59SCorey Minyard smi_info->io.outputb(&smi_info->io, IPMI_BT_INTMASK_REG, 0); 59395c97b59SCorey Minyard } 59495c97b59SCorey Minyard 5951da177e4SLinus Torvalds static void handle_transaction_done(struct smi_info *smi_info) 5961da177e4SLinus Torvalds { 5971da177e4SLinus Torvalds struct ipmi_smi_msg *msg; 5981da177e4SLinus Torvalds 599f93aae9fSJohn Stultz debug_timestamp("Done"); 6001da177e4SLinus Torvalds switch (smi_info->si_state) { 6011da177e4SLinus Torvalds case SI_NORMAL: 6021da177e4SLinus Torvalds if (!smi_info->curr_msg) 6031da177e4SLinus Torvalds break; 6041da177e4SLinus Torvalds 6051da177e4SLinus Torvalds smi_info->curr_msg->rsp_size 6061da177e4SLinus Torvalds = smi_info->handlers->get_result( 6071da177e4SLinus Torvalds smi_info->si_sm, 6081da177e4SLinus Torvalds smi_info->curr_msg->rsp, 6091da177e4SLinus Torvalds IPMI_MAX_MSG_LENGTH); 6101da177e4SLinus Torvalds 611c305e3d3SCorey Minyard /* 612c305e3d3SCorey Minyard * Do this here becase deliver_recv_msg() releases the 613c305e3d3SCorey Minyard * lock, and a new message can be put in during the 614c305e3d3SCorey Minyard * time the lock is released. 615c305e3d3SCorey Minyard */ 6161da177e4SLinus Torvalds msg = smi_info->curr_msg; 6171da177e4SLinus Torvalds smi_info->curr_msg = NULL; 6181da177e4SLinus Torvalds deliver_recv_msg(smi_info, msg); 6191da177e4SLinus Torvalds break; 6201da177e4SLinus Torvalds 6211da177e4SLinus Torvalds case SI_GETTING_FLAGS: 6221da177e4SLinus Torvalds { 6231da177e4SLinus Torvalds unsigned char msg[4]; 6241da177e4SLinus Torvalds unsigned int len; 6251da177e4SLinus Torvalds 6261da177e4SLinus Torvalds /* We got the flags from the SMI, now handle them. */ 6271da177e4SLinus Torvalds len = smi_info->handlers->get_result(smi_info->si_sm, msg, 4); 6281da177e4SLinus Torvalds if (msg[2] != 0) { 629c305e3d3SCorey Minyard /* Error fetching flags, just give up for now. */ 6301da177e4SLinus Torvalds smi_info->si_state = SI_NORMAL; 6311da177e4SLinus Torvalds } else if (len < 4) { 632c305e3d3SCorey Minyard /* 633c305e3d3SCorey Minyard * Hmm, no flags. That's technically illegal, but 634c305e3d3SCorey Minyard * don't use uninitialized data. 635c305e3d3SCorey Minyard */ 6361da177e4SLinus Torvalds smi_info->si_state = SI_NORMAL; 6371da177e4SLinus Torvalds } else { 6381da177e4SLinus Torvalds smi_info->msg_flags = msg[3]; 6391da177e4SLinus Torvalds handle_flags(smi_info); 6401da177e4SLinus Torvalds } 6411da177e4SLinus Torvalds break; 6421da177e4SLinus Torvalds } 6431da177e4SLinus Torvalds 6441da177e4SLinus Torvalds case SI_CLEARING_FLAGS: 6451da177e4SLinus Torvalds { 6461da177e4SLinus Torvalds unsigned char msg[3]; 6471da177e4SLinus Torvalds 6481da177e4SLinus Torvalds /* We cleared the flags. */ 6491da177e4SLinus Torvalds smi_info->handlers->get_result(smi_info->si_sm, msg, 3); 6501da177e4SLinus Torvalds if (msg[2] != 0) { 6511da177e4SLinus Torvalds /* Error clearing flags */ 652910840f2SCorey Minyard dev_warn(smi_info->io.dev, 653279fbd0cSMyron Stowe "Error clearing flags: %2.2x\n", msg[2]); 6541da177e4SLinus Torvalds } 6551da177e4SLinus Torvalds smi_info->si_state = SI_NORMAL; 6561da177e4SLinus Torvalds break; 6571da177e4SLinus Torvalds } 6581da177e4SLinus Torvalds 6591da177e4SLinus Torvalds case SI_GETTING_EVENTS: 6601da177e4SLinus Torvalds { 6611da177e4SLinus Torvalds smi_info->curr_msg->rsp_size 6621da177e4SLinus Torvalds = smi_info->handlers->get_result( 6631da177e4SLinus Torvalds smi_info->si_sm, 6641da177e4SLinus Torvalds smi_info->curr_msg->rsp, 6651da177e4SLinus Torvalds IPMI_MAX_MSG_LENGTH); 6661da177e4SLinus Torvalds 667c305e3d3SCorey Minyard /* 668c305e3d3SCorey Minyard * Do this here becase deliver_recv_msg() releases the 669c305e3d3SCorey Minyard * lock, and a new message can be put in during the 670c305e3d3SCorey Minyard * time the lock is released. 671c305e3d3SCorey Minyard */ 6721da177e4SLinus Torvalds msg = smi_info->curr_msg; 6731da177e4SLinus Torvalds smi_info->curr_msg = NULL; 6741da177e4SLinus Torvalds if (msg->rsp[2] != 0) { 6751da177e4SLinus Torvalds /* Error getting event, probably done. */ 6761da177e4SLinus Torvalds msg->done(msg); 6771da177e4SLinus Torvalds 6781da177e4SLinus Torvalds /* Take off the event flag. */ 6791da177e4SLinus Torvalds smi_info->msg_flags &= ~EVENT_MSG_BUFFER_FULL; 6801da177e4SLinus Torvalds handle_flags(smi_info); 6811da177e4SLinus Torvalds } else { 68264959e2dSCorey Minyard smi_inc_stat(smi_info, events); 6831da177e4SLinus Torvalds 684c305e3d3SCorey Minyard /* 685c305e3d3SCorey Minyard * Do this before we deliver the message 686c305e3d3SCorey Minyard * because delivering the message releases the 687c305e3d3SCorey Minyard * lock and something else can mess with the 688c305e3d3SCorey Minyard * state. 689c305e3d3SCorey Minyard */ 6901da177e4SLinus Torvalds handle_flags(smi_info); 6911da177e4SLinus Torvalds 6921da177e4SLinus Torvalds deliver_recv_msg(smi_info, msg); 6931da177e4SLinus Torvalds } 6941da177e4SLinus Torvalds break; 6951da177e4SLinus Torvalds } 6961da177e4SLinus Torvalds 6971da177e4SLinus Torvalds case SI_GETTING_MESSAGES: 6981da177e4SLinus Torvalds { 6991da177e4SLinus Torvalds smi_info->curr_msg->rsp_size 7001da177e4SLinus Torvalds = smi_info->handlers->get_result( 7011da177e4SLinus Torvalds smi_info->si_sm, 7021da177e4SLinus Torvalds smi_info->curr_msg->rsp, 7031da177e4SLinus Torvalds IPMI_MAX_MSG_LENGTH); 7041da177e4SLinus Torvalds 705c305e3d3SCorey Minyard /* 706c305e3d3SCorey Minyard * Do this here becase deliver_recv_msg() releases the 707c305e3d3SCorey Minyard * lock, and a new message can be put in during the 708c305e3d3SCorey Minyard * time the lock is released. 709c305e3d3SCorey Minyard */ 7101da177e4SLinus Torvalds msg = smi_info->curr_msg; 7111da177e4SLinus Torvalds smi_info->curr_msg = NULL; 7121da177e4SLinus Torvalds if (msg->rsp[2] != 0) { 7131da177e4SLinus Torvalds /* Error getting event, probably done. */ 7141da177e4SLinus Torvalds msg->done(msg); 7151da177e4SLinus Torvalds 7161da177e4SLinus Torvalds /* Take off the msg flag. */ 7171da177e4SLinus Torvalds smi_info->msg_flags &= ~RECEIVE_MSG_AVAIL; 7181da177e4SLinus Torvalds handle_flags(smi_info); 7191da177e4SLinus Torvalds } else { 72064959e2dSCorey Minyard smi_inc_stat(smi_info, incoming_messages); 7211da177e4SLinus Torvalds 722c305e3d3SCorey Minyard /* 723c305e3d3SCorey Minyard * Do this before we deliver the message 724c305e3d3SCorey Minyard * because delivering the message releases the 725c305e3d3SCorey Minyard * lock and something else can mess with the 726c305e3d3SCorey Minyard * state. 727c305e3d3SCorey Minyard */ 7281da177e4SLinus Torvalds handle_flags(smi_info); 7291da177e4SLinus Torvalds 7301da177e4SLinus Torvalds deliver_recv_msg(smi_info, msg); 7311da177e4SLinus Torvalds } 7321da177e4SLinus Torvalds break; 7331da177e4SLinus Torvalds } 7341da177e4SLinus Torvalds 735d9b7e4f7SCorey Minyard case SI_CHECKING_ENABLES: 7361da177e4SLinus Torvalds { 7371da177e4SLinus Torvalds unsigned char msg[4]; 738d9b7e4f7SCorey Minyard u8 enables; 73995c97b59SCorey Minyard bool irq_on; 7401da177e4SLinus Torvalds 7411da177e4SLinus Torvalds /* We got the flags from the SMI, now handle them. */ 7421da177e4SLinus Torvalds smi_info->handlers->get_result(smi_info->si_sm, msg, 4); 7431da177e4SLinus Torvalds if (msg[2] != 0) { 744910840f2SCorey Minyard dev_warn(smi_info->io.dev, 7450849bfecSCorey Minyard "Couldn't get irq info: %x.\n", msg[2]); 746910840f2SCorey Minyard dev_warn(smi_info->io.dev, 7470849bfecSCorey Minyard "Maybe ok, but ipmi might run very slowly.\n"); 7481da177e4SLinus Torvalds smi_info->si_state = SI_NORMAL; 749d9b7e4f7SCorey Minyard break; 750d9b7e4f7SCorey Minyard } 75195c97b59SCorey Minyard enables = current_global_enables(smi_info, 0, &irq_on); 752910840f2SCorey Minyard if (smi_info->io.si_type == SI_BT) 75395c97b59SCorey Minyard /* BT has its own interrupt enable bit. */ 75495c97b59SCorey Minyard check_bt_irq(smi_info, irq_on); 755d9b7e4f7SCorey Minyard if (enables != (msg[3] & GLOBAL_ENABLES_MASK)) { 756d9b7e4f7SCorey Minyard /* Enables are not correct, fix them. */ 7571da177e4SLinus Torvalds msg[0] = (IPMI_NETFN_APP_REQUEST << 2); 7581da177e4SLinus Torvalds msg[1] = IPMI_SET_BMC_GLOBAL_ENABLES_CMD; 759d9b7e4f7SCorey Minyard msg[2] = enables | (msg[3] & ~GLOBAL_ENABLES_MASK); 7601da177e4SLinus Torvalds smi_info->handlers->start_transaction( 7611da177e4SLinus Torvalds smi_info->si_sm, msg, 3); 762d9b7e4f7SCorey Minyard smi_info->si_state = SI_SETTING_ENABLES; 763d9b7e4f7SCorey Minyard } else if (smi_info->supports_event_msg_buff) { 764d9b7e4f7SCorey Minyard smi_info->curr_msg = ipmi_alloc_smi_msg(); 765d9b7e4f7SCorey Minyard if (!smi_info->curr_msg) { 766ee6cd5f8SCorey Minyard smi_info->si_state = SI_NORMAL; 767d9b7e4f7SCorey Minyard break; 768d9b7e4f7SCorey Minyard } 7695ac7b2fcSCorey Minyard start_getting_events(smi_info); 770ee6cd5f8SCorey Minyard } else { 771d9b7e4f7SCorey Minyard smi_info->si_state = SI_NORMAL; 772ee6cd5f8SCorey Minyard } 773ee6cd5f8SCorey Minyard break; 774ee6cd5f8SCorey Minyard } 775ee6cd5f8SCorey Minyard 776d9b7e4f7SCorey Minyard case SI_SETTING_ENABLES: 777ee6cd5f8SCorey Minyard { 778ee6cd5f8SCorey Minyard unsigned char msg[4]; 779ee6cd5f8SCorey Minyard 780ee6cd5f8SCorey Minyard smi_info->handlers->get_result(smi_info->si_sm, msg, 4); 781d9b7e4f7SCorey Minyard if (msg[2] != 0) 782910840f2SCorey Minyard dev_warn(smi_info->io.dev, 783d9b7e4f7SCorey Minyard "Could not set the global enables: 0x%x.\n", 784d9b7e4f7SCorey Minyard msg[2]); 785d9b7e4f7SCorey Minyard 786d9b7e4f7SCorey Minyard if (smi_info->supports_event_msg_buff) { 787d9b7e4f7SCorey Minyard smi_info->curr_msg = ipmi_alloc_smi_msg(); 788d9b7e4f7SCorey Minyard if (!smi_info->curr_msg) { 789ee6cd5f8SCorey Minyard smi_info->si_state = SI_NORMAL; 790ee6cd5f8SCorey Minyard break; 791ee6cd5f8SCorey Minyard } 7925ac7b2fcSCorey Minyard start_getting_events(smi_info); 793d9b7e4f7SCorey Minyard } else { 794d9b7e4f7SCorey Minyard smi_info->si_state = SI_NORMAL; 795d9b7e4f7SCorey Minyard } 796d9b7e4f7SCorey Minyard break; 797d9b7e4f7SCorey Minyard } 7981da177e4SLinus Torvalds } 7991da177e4SLinus Torvalds } 8001da177e4SLinus Torvalds 801c305e3d3SCorey Minyard /* 802c305e3d3SCorey Minyard * Called on timeouts and events. Timeouts should pass the elapsed 803c305e3d3SCorey Minyard * time, interrupts should pass in zero. Must be called with 804c305e3d3SCorey Minyard * si_lock held and interrupts disabled. 805c305e3d3SCorey Minyard */ 8061da177e4SLinus Torvalds static enum si_sm_result smi_event_handler(struct smi_info *smi_info, 8071da177e4SLinus Torvalds int time) 8081da177e4SLinus Torvalds { 8091da177e4SLinus Torvalds enum si_sm_result si_sm_result; 8101da177e4SLinus Torvalds 8111da177e4SLinus Torvalds restart: 812c305e3d3SCorey Minyard /* 813c305e3d3SCorey Minyard * There used to be a loop here that waited a little while 814c305e3d3SCorey Minyard * (around 25us) before giving up. That turned out to be 815c305e3d3SCorey Minyard * pointless, the minimum delays I was seeing were in the 300us 816c305e3d3SCorey Minyard * range, which is far too long to wait in an interrupt. So 817c305e3d3SCorey Minyard * we just run until the state machine tells us something 818c305e3d3SCorey Minyard * happened or it needs a delay. 819c305e3d3SCorey Minyard */ 8201da177e4SLinus Torvalds si_sm_result = smi_info->handlers->event(smi_info->si_sm, time); 8211da177e4SLinus Torvalds time = 0; 8221da177e4SLinus Torvalds while (si_sm_result == SI_SM_CALL_WITHOUT_DELAY) 8231da177e4SLinus Torvalds si_sm_result = smi_info->handlers->event(smi_info->si_sm, 0); 8241da177e4SLinus Torvalds 825c305e3d3SCorey Minyard if (si_sm_result == SI_SM_TRANSACTION_COMPLETE) { 82664959e2dSCorey Minyard smi_inc_stat(smi_info, complete_transactions); 8271da177e4SLinus Torvalds 8281da177e4SLinus Torvalds handle_transaction_done(smi_info); 829d9dffd2aSCorey Minyard goto restart; 830c305e3d3SCorey Minyard } else if (si_sm_result == SI_SM_HOSED) { 83164959e2dSCorey Minyard smi_inc_stat(smi_info, hosed_count); 8321da177e4SLinus Torvalds 833c305e3d3SCorey Minyard /* 834c305e3d3SCorey Minyard * Do the before return_hosed_msg, because that 835c305e3d3SCorey Minyard * releases the lock. 836c305e3d3SCorey Minyard */ 8371da177e4SLinus Torvalds smi_info->si_state = SI_NORMAL; 8381da177e4SLinus Torvalds if (smi_info->curr_msg != NULL) { 839c305e3d3SCorey Minyard /* 840c305e3d3SCorey Minyard * If we were handling a user message, format 841c305e3d3SCorey Minyard * a response to send to the upper layer to 842c305e3d3SCorey Minyard * tell it about the error. 843c305e3d3SCorey Minyard */ 8444d7cbac7SCorey Minyard return_hosed_msg(smi_info, IPMI_ERR_UNSPECIFIED); 8451da177e4SLinus Torvalds } 846d9dffd2aSCorey Minyard goto restart; 8471da177e4SLinus Torvalds } 8481da177e4SLinus Torvalds 8494ea18425SCorey Minyard /* 8504ea18425SCorey Minyard * We prefer handling attn over new messages. But don't do 8514ea18425SCorey Minyard * this if there is not yet an upper layer to handle anything. 8524ea18425SCorey Minyard */ 853a8df150cSCorey Minyard if (likely(smi_info->intf) && 854a8df150cSCorey Minyard (si_sm_result == SI_SM_ATTN || smi_info->got_attn)) { 8551da177e4SLinus Torvalds unsigned char msg[2]; 8561da177e4SLinus Torvalds 857a8df150cSCorey Minyard if (smi_info->si_state != SI_NORMAL) { 858a8df150cSCorey Minyard /* 859a8df150cSCorey Minyard * We got an ATTN, but we are doing something else. 860a8df150cSCorey Minyard * Handle the ATTN later. 861a8df150cSCorey Minyard */ 862a8df150cSCorey Minyard smi_info->got_attn = true; 863a8df150cSCorey Minyard } else { 864a8df150cSCorey Minyard smi_info->got_attn = false; 86564959e2dSCorey Minyard smi_inc_stat(smi_info, attentions); 8661da177e4SLinus Torvalds 867c305e3d3SCorey Minyard /* 868c305e3d3SCorey Minyard * Got a attn, send down a get message flags to see 869c305e3d3SCorey Minyard * what's causing it. It would be better to handle 870c305e3d3SCorey Minyard * this in the upper layer, but due to the way 871c305e3d3SCorey Minyard * interrupts work with the SMI, that's not really 872c305e3d3SCorey Minyard * possible. 873c305e3d3SCorey Minyard */ 8741da177e4SLinus Torvalds msg[0] = (IPMI_NETFN_APP_REQUEST << 2); 8751da177e4SLinus Torvalds msg[1] = IPMI_GET_MSG_FLAGS_CMD; 8761da177e4SLinus Torvalds 8770cfec916SCorey Minyard start_new_msg(smi_info, msg, 2); 8781da177e4SLinus Torvalds smi_info->si_state = SI_GETTING_FLAGS; 8791da177e4SLinus Torvalds goto restart; 8801da177e4SLinus Torvalds } 881a8df150cSCorey Minyard } 8821da177e4SLinus Torvalds 8831da177e4SLinus Torvalds /* If we are currently idle, try to start the next message. */ 8841da177e4SLinus Torvalds if (si_sm_result == SI_SM_IDLE) { 88564959e2dSCorey Minyard smi_inc_stat(smi_info, idles); 8861da177e4SLinus Torvalds 8871da177e4SLinus Torvalds si_sm_result = start_next_msg(smi_info); 8881da177e4SLinus Torvalds if (si_sm_result != SI_SM_IDLE) 8891da177e4SLinus Torvalds goto restart; 8901da177e4SLinus Torvalds } 8911da177e4SLinus Torvalds 8921da177e4SLinus Torvalds if ((si_sm_result == SI_SM_IDLE) 893c305e3d3SCorey Minyard && (atomic_read(&smi_info->req_events))) { 894c305e3d3SCorey Minyard /* 895c305e3d3SCorey Minyard * We are idle and the upper layer requested that I fetch 896c305e3d3SCorey Minyard * events, so do so. 897c305e3d3SCorey Minyard */ 8981da177e4SLinus Torvalds atomic_set(&smi_info->req_events, 0); 89955162fb1SCorey Minyard 900d9b7e4f7SCorey Minyard /* 901d9b7e4f7SCorey Minyard * Take this opportunity to check the interrupt and 902d9b7e4f7SCorey Minyard * message enable state for the BMC. The BMC can be 903d9b7e4f7SCorey Minyard * asynchronously reset, and may thus get interrupts 904d9b7e4f7SCorey Minyard * disable and messages disabled. 905d9b7e4f7SCorey Minyard */ 906910840f2SCorey Minyard if (smi_info->supports_event_msg_buff || smi_info->io.irq) { 9070cfec916SCorey Minyard start_check_enables(smi_info, true); 908d9b7e4f7SCorey Minyard } else { 909d9b7e4f7SCorey Minyard smi_info->curr_msg = alloc_msg_handle_irq(smi_info); 91055162fb1SCorey Minyard if (!smi_info->curr_msg) 91155162fb1SCorey Minyard goto out; 91255162fb1SCorey Minyard 913d9b7e4f7SCorey Minyard start_getting_events(smi_info); 914d9b7e4f7SCorey Minyard } 9151da177e4SLinus Torvalds goto restart; 9161da177e4SLinus Torvalds } 917314ef52fSCorey Minyard 918314ef52fSCorey Minyard if (si_sm_result == SI_SM_IDLE && smi_info->timer_running) { 919314ef52fSCorey Minyard /* Ok it if fails, the timer will just go off. */ 920314ef52fSCorey Minyard if (del_timer(&smi_info->si_timer)) 921314ef52fSCorey Minyard smi_info->timer_running = false; 922314ef52fSCorey Minyard } 923314ef52fSCorey Minyard 92455162fb1SCorey Minyard out: 9251da177e4SLinus Torvalds return si_sm_result; 9261da177e4SLinus Torvalds } 9271da177e4SLinus Torvalds 92889986496SCorey Minyard static void check_start_timer_thread(struct smi_info *smi_info) 92989986496SCorey Minyard { 93089986496SCorey Minyard if (smi_info->si_state == SI_NORMAL && smi_info->curr_msg == NULL) { 93189986496SCorey Minyard smi_mod_timer(smi_info, jiffies + SI_TIMEOUT_JIFFIES); 93289986496SCorey Minyard 93389986496SCorey Minyard if (smi_info->thread) 93489986496SCorey Minyard wake_up_process(smi_info->thread); 93589986496SCorey Minyard 93689986496SCorey Minyard start_next_msg(smi_info); 93789986496SCorey Minyard smi_event_handler(smi_info, 0); 93889986496SCorey Minyard } 93989986496SCorey Minyard } 94089986496SCorey Minyard 94182802f96SHidehiro Kawai static void flush_messages(void *send_info) 942e45361d7SHidehiro Kawai { 94382802f96SHidehiro Kawai struct smi_info *smi_info = send_info; 944e45361d7SHidehiro Kawai enum si_sm_result result; 945e45361d7SHidehiro Kawai 946e45361d7SHidehiro Kawai /* 947e45361d7SHidehiro Kawai * Currently, this function is called only in run-to-completion 948e45361d7SHidehiro Kawai * mode. This means we are single-threaded, no need for locks. 949e45361d7SHidehiro Kawai */ 950e45361d7SHidehiro Kawai result = smi_event_handler(smi_info, 0); 951e45361d7SHidehiro Kawai while (result != SI_SM_IDLE) { 952e45361d7SHidehiro Kawai udelay(SI_SHORT_TIMEOUT_USEC); 953e45361d7SHidehiro Kawai result = smi_event_handler(smi_info, SI_SHORT_TIMEOUT_USEC); 954e45361d7SHidehiro Kawai } 955e45361d7SHidehiro Kawai } 956e45361d7SHidehiro Kawai 9571da177e4SLinus Torvalds static void sender(void *send_info, 95899ab32f3SCorey Minyard struct ipmi_smi_msg *msg) 9591da177e4SLinus Torvalds { 9601da177e4SLinus Torvalds struct smi_info *smi_info = send_info; 9611da177e4SLinus Torvalds unsigned long flags; 9621da177e4SLinus Torvalds 963f93aae9fSJohn Stultz debug_timestamp("Enqueue"); 9641da177e4SLinus Torvalds 9651da177e4SLinus Torvalds if (smi_info->run_to_completion) { 966bda4c30aSCorey Minyard /* 96782802f96SHidehiro Kawai * If we are running to completion, start it. Upper 96882802f96SHidehiro Kawai * layer will call flush_messages to clear it out. 969bda4c30aSCorey Minyard */ 9709f812704SHidehiro Kawai smi_info->waiting_msg = msg; 9711da177e4SLinus Torvalds return; 9721da177e4SLinus Torvalds } 9731da177e4SLinus Torvalds 974f60adf42SCorey Minyard spin_lock_irqsave(&smi_info->si_lock, flags); 9751d86e29bSCorey Minyard /* 9761d86e29bSCorey Minyard * The following two lines don't need to be under the lock for 9771d86e29bSCorey Minyard * the lock's sake, but they do need SMP memory barriers to 9781d86e29bSCorey Minyard * avoid getting things out of order. We are already claiming 9791d86e29bSCorey Minyard * the lock, anyway, so just do it under the lock to avoid the 9801d86e29bSCorey Minyard * ordering problem. 9811d86e29bSCorey Minyard */ 9821d86e29bSCorey Minyard BUG_ON(smi_info->waiting_msg); 9831d86e29bSCorey Minyard smi_info->waiting_msg = msg; 98489986496SCorey Minyard check_start_timer_thread(smi_info); 985bda4c30aSCorey Minyard spin_unlock_irqrestore(&smi_info->si_lock, flags); 9861da177e4SLinus Torvalds } 9871da177e4SLinus Torvalds 9887aefac26SCorey Minyard static void set_run_to_completion(void *send_info, bool i_run_to_completion) 9891da177e4SLinus Torvalds { 9901da177e4SLinus Torvalds struct smi_info *smi_info = send_info; 9911da177e4SLinus Torvalds 9921da177e4SLinus Torvalds smi_info->run_to_completion = i_run_to_completion; 993e45361d7SHidehiro Kawai if (i_run_to_completion) 994e45361d7SHidehiro Kawai flush_messages(smi_info); 9951da177e4SLinus Torvalds } 9961da177e4SLinus Torvalds 997ae74e823SMartin Wilck /* 998ae74e823SMartin Wilck * Use -1 in the nsec value of the busy waiting timespec to tell that 999ae74e823SMartin Wilck * we are spinning in kipmid looking for something and not delaying 1000ae74e823SMartin Wilck * between checks 1001ae74e823SMartin Wilck */ 100248862ea2SJohn Stultz static inline void ipmi_si_set_not_busy(struct timespec64 *ts) 1003ae74e823SMartin Wilck { 1004ae74e823SMartin Wilck ts->tv_nsec = -1; 1005ae74e823SMartin Wilck } 100648862ea2SJohn Stultz static inline int ipmi_si_is_busy(struct timespec64 *ts) 1007ae74e823SMartin Wilck { 1008ae74e823SMartin Wilck return ts->tv_nsec != -1; 1009ae74e823SMartin Wilck } 1010ae74e823SMartin Wilck 1011cc4cbe90SArnd Bergmann static inline int ipmi_thread_busy_wait(enum si_sm_result smi_result, 1012ae74e823SMartin Wilck const struct smi_info *smi_info, 101348862ea2SJohn Stultz struct timespec64 *busy_until) 1014ae74e823SMartin Wilck { 1015ae74e823SMartin Wilck unsigned int max_busy_us = 0; 1016ae74e823SMartin Wilck 1017ae74e823SMartin Wilck if (smi_info->intf_num < num_max_busy_us) 1018ae74e823SMartin Wilck max_busy_us = kipmid_max_busy_us[smi_info->intf_num]; 1019ae74e823SMartin Wilck if (max_busy_us == 0 || smi_result != SI_SM_CALL_WITH_DELAY) 1020ae74e823SMartin Wilck ipmi_si_set_not_busy(busy_until); 1021ae74e823SMartin Wilck else if (!ipmi_si_is_busy(busy_until)) { 102248862ea2SJohn Stultz getnstimeofday64(busy_until); 102348862ea2SJohn Stultz timespec64_add_ns(busy_until, max_busy_us*NSEC_PER_USEC); 1024ae74e823SMartin Wilck } else { 102548862ea2SJohn Stultz struct timespec64 now; 102648862ea2SJohn Stultz 102748862ea2SJohn Stultz getnstimeofday64(&now); 102848862ea2SJohn Stultz if (unlikely(timespec64_compare(&now, busy_until) > 0)) { 1029ae74e823SMartin Wilck ipmi_si_set_not_busy(busy_until); 1030ae74e823SMartin Wilck return 0; 1031ae74e823SMartin Wilck } 1032ae74e823SMartin Wilck } 1033ae74e823SMartin Wilck return 1; 1034ae74e823SMartin Wilck } 1035ae74e823SMartin Wilck 1036ae74e823SMartin Wilck 1037ae74e823SMartin Wilck /* 1038ae74e823SMartin Wilck * A busy-waiting loop for speeding up IPMI operation. 1039ae74e823SMartin Wilck * 1040ae74e823SMartin Wilck * Lousy hardware makes this hard. This is only enabled for systems 1041ae74e823SMartin Wilck * that are not BT and do not have interrupts. It starts spinning 1042ae74e823SMartin Wilck * when an operation is complete or until max_busy tells it to stop 1043ae74e823SMartin Wilck * (if that is enabled). See the paragraph on kimid_max_busy_us in 1044ae74e823SMartin Wilck * Documentation/IPMI.txt for details. 1045ae74e823SMartin Wilck */ 1046a9a2c44fSCorey Minyard static int ipmi_thread(void *data) 1047a9a2c44fSCorey Minyard { 1048a9a2c44fSCorey Minyard struct smi_info *smi_info = data; 1049e9a705a0SMatt Domsch unsigned long flags; 1050a9a2c44fSCorey Minyard enum si_sm_result smi_result; 105148862ea2SJohn Stultz struct timespec64 busy_until; 1052a9a2c44fSCorey Minyard 1053ae74e823SMartin Wilck ipmi_si_set_not_busy(&busy_until); 10548698a745SDongsheng Yang set_user_nice(current, MAX_NICE); 1055e9a705a0SMatt Domsch while (!kthread_should_stop()) { 1056ae74e823SMartin Wilck int busy_wait; 1057ae74e823SMartin Wilck 1058a9a2c44fSCorey Minyard spin_lock_irqsave(&(smi_info->si_lock), flags); 1059a9a2c44fSCorey Minyard smi_result = smi_event_handler(smi_info, 0); 106048e8ac29SBodo Stroesser 106148e8ac29SBodo Stroesser /* 106248e8ac29SBodo Stroesser * If the driver is doing something, there is a possible 106348e8ac29SBodo Stroesser * race with the timer. If the timer handler see idle, 106448e8ac29SBodo Stroesser * and the thread here sees something else, the timer 106548e8ac29SBodo Stroesser * handler won't restart the timer even though it is 106648e8ac29SBodo Stroesser * required. So start it here if necessary. 106748e8ac29SBodo Stroesser */ 106848e8ac29SBodo Stroesser if (smi_result != SI_SM_IDLE && !smi_info->timer_running) 106948e8ac29SBodo Stroesser smi_mod_timer(smi_info, jiffies + SI_TIMEOUT_JIFFIES); 107048e8ac29SBodo Stroesser 1071a9a2c44fSCorey Minyard spin_unlock_irqrestore(&(smi_info->si_lock), flags); 1072ae74e823SMartin Wilck busy_wait = ipmi_thread_busy_wait(smi_result, smi_info, 1073ae74e823SMartin Wilck &busy_until); 1074c305e3d3SCorey Minyard if (smi_result == SI_SM_CALL_WITHOUT_DELAY) 1075c305e3d3SCorey Minyard ; /* do nothing */ 1076ae74e823SMartin Wilck else if (smi_result == SI_SM_CALL_WITH_DELAY && busy_wait) 107733979734Sakpm@osdl.org schedule(); 107889986496SCorey Minyard else if (smi_result == SI_SM_IDLE) { 107989986496SCorey Minyard if (atomic_read(&smi_info->need_watch)) { 10803326f4f2SMatthew Garrett schedule_timeout_interruptible(100); 108189986496SCorey Minyard } else { 108289986496SCorey Minyard /* Wait to be woken up when we are needed. */ 108389986496SCorey Minyard __set_current_state(TASK_INTERRUPTIBLE); 108489986496SCorey Minyard schedule(); 108589986496SCorey Minyard } 108689986496SCorey Minyard } else 10878d1f66dcSMartin Wilck schedule_timeout_interruptible(1); 1088a9a2c44fSCorey Minyard } 1089a9a2c44fSCorey Minyard return 0; 1090a9a2c44fSCorey Minyard } 1091a9a2c44fSCorey Minyard 1092a9a2c44fSCorey Minyard 10931da177e4SLinus Torvalds static void poll(void *send_info) 10941da177e4SLinus Torvalds { 10951da177e4SLinus Torvalds struct smi_info *smi_info = send_info; 1096f60adf42SCorey Minyard unsigned long flags = 0; 10977aefac26SCorey Minyard bool run_to_completion = smi_info->run_to_completion; 10981da177e4SLinus Torvalds 109915c62e10SCorey Minyard /* 110015c62e10SCorey Minyard * Make sure there is some delay in the poll loop so we can 110115c62e10SCorey Minyard * drive time forward and timeout things. 110215c62e10SCorey Minyard */ 110315c62e10SCorey Minyard udelay(10); 1104f60adf42SCorey Minyard if (!run_to_completion) 1105fcfa4724SCorey Minyard spin_lock_irqsave(&smi_info->si_lock, flags); 110615c62e10SCorey Minyard smi_event_handler(smi_info, 10); 1107f60adf42SCorey Minyard if (!run_to_completion) 1108fcfa4724SCorey Minyard spin_unlock_irqrestore(&smi_info->si_lock, flags); 11091da177e4SLinus Torvalds } 11101da177e4SLinus Torvalds 11111da177e4SLinus Torvalds static void request_events(void *send_info) 11121da177e4SLinus Torvalds { 11131da177e4SLinus Torvalds struct smi_info *smi_info = send_info; 11141da177e4SLinus Torvalds 1115b874b985SCorey Minyard if (!smi_info->has_event_buffer) 1116b361e27bSCorey Minyard return; 1117b361e27bSCorey Minyard 11181da177e4SLinus Torvalds atomic_set(&smi_info->req_events, 1); 11191da177e4SLinus Torvalds } 11201da177e4SLinus Torvalds 11217aefac26SCorey Minyard static void set_need_watch(void *send_info, bool enable) 112289986496SCorey Minyard { 112389986496SCorey Minyard struct smi_info *smi_info = send_info; 112489986496SCorey Minyard unsigned long flags; 112589986496SCorey Minyard 112689986496SCorey Minyard atomic_set(&smi_info->need_watch, enable); 112789986496SCorey Minyard spin_lock_irqsave(&smi_info->si_lock, flags); 112889986496SCorey Minyard check_start_timer_thread(smi_info); 112989986496SCorey Minyard spin_unlock_irqrestore(&smi_info->si_lock, flags); 113089986496SCorey Minyard } 113189986496SCorey Minyard 11320c8204b3SRandy Dunlap static int initialized; 11331da177e4SLinus Torvalds 11341da177e4SLinus Torvalds static void smi_timeout(unsigned long data) 11351da177e4SLinus Torvalds { 11361da177e4SLinus Torvalds struct smi_info *smi_info = (struct smi_info *) data; 11371da177e4SLinus Torvalds enum si_sm_result smi_result; 11381da177e4SLinus Torvalds unsigned long flags; 11391da177e4SLinus Torvalds unsigned long jiffies_now; 1140c4edff1cSCorey Minyard long time_diff; 11413326f4f2SMatthew Garrett long timeout; 11421da177e4SLinus Torvalds 11431da177e4SLinus Torvalds spin_lock_irqsave(&(smi_info->si_lock), flags); 1144f93aae9fSJohn Stultz debug_timestamp("Timer"); 1145f93aae9fSJohn Stultz 11461da177e4SLinus Torvalds jiffies_now = jiffies; 1147c4edff1cSCorey Minyard time_diff = (((long)jiffies_now - (long)smi_info->last_timeout_jiffies) 11481da177e4SLinus Torvalds * SI_USEC_PER_JIFFY); 11491da177e4SLinus Torvalds smi_result = smi_event_handler(smi_info, time_diff); 11501da177e4SLinus Torvalds 1151910840f2SCorey Minyard if ((smi_info->io.irq) && (!smi_info->interrupt_disabled)) { 11521da177e4SLinus Torvalds /* Running with interrupts, only do long timeouts. */ 11533326f4f2SMatthew Garrett timeout = jiffies + SI_TIMEOUT_JIFFIES; 115464959e2dSCorey Minyard smi_inc_stat(smi_info, long_timeouts); 11553326f4f2SMatthew Garrett goto do_mod_timer; 11561da177e4SLinus Torvalds } 11571da177e4SLinus Torvalds 1158c305e3d3SCorey Minyard /* 1159c305e3d3SCorey Minyard * If the state machine asks for a short delay, then shorten 1160c305e3d3SCorey Minyard * the timer timeout. 1161c305e3d3SCorey Minyard */ 11621da177e4SLinus Torvalds if (smi_result == SI_SM_CALL_WITH_DELAY) { 116364959e2dSCorey Minyard smi_inc_stat(smi_info, short_timeouts); 11643326f4f2SMatthew Garrett timeout = jiffies + 1; 11651da177e4SLinus Torvalds } else { 116664959e2dSCorey Minyard smi_inc_stat(smi_info, long_timeouts); 11673326f4f2SMatthew Garrett timeout = jiffies + SI_TIMEOUT_JIFFIES; 11681da177e4SLinus Torvalds } 11691da177e4SLinus Torvalds 11703326f4f2SMatthew Garrett do_mod_timer: 11713326f4f2SMatthew Garrett if (smi_result != SI_SM_IDLE) 117248e8ac29SBodo Stroesser smi_mod_timer(smi_info, timeout); 117348e8ac29SBodo Stroesser else 117448e8ac29SBodo Stroesser smi_info->timer_running = false; 117548e8ac29SBodo Stroesser spin_unlock_irqrestore(&(smi_info->si_lock), flags); 11761da177e4SLinus Torvalds } 11771da177e4SLinus Torvalds 1178*4f3e8199SCorey Minyard irqreturn_t ipmi_si_irq_handler(int irq, void *data) 11791da177e4SLinus Torvalds { 11801da177e4SLinus Torvalds struct smi_info *smi_info = data; 11811da177e4SLinus Torvalds unsigned long flags; 11821da177e4SLinus Torvalds 1183*4f3e8199SCorey Minyard if (smi_info->io.si_type == SI_BT) 1184*4f3e8199SCorey Minyard /* We need to clear the IRQ flag for the BT interface. */ 1185*4f3e8199SCorey Minyard smi_info->io.outputb(&smi_info->io, IPMI_BT_INTMASK_REG, 1186*4f3e8199SCorey Minyard IPMI_BT_INTMASK_CLEAR_IRQ_BIT 1187*4f3e8199SCorey Minyard | IPMI_BT_INTMASK_ENABLE_IRQ_BIT); 1188*4f3e8199SCorey Minyard 11891da177e4SLinus Torvalds spin_lock_irqsave(&(smi_info->si_lock), flags); 11901da177e4SLinus Torvalds 119164959e2dSCorey Minyard smi_inc_stat(smi_info, interrupts); 11921da177e4SLinus Torvalds 1193f93aae9fSJohn Stultz debug_timestamp("Interrupt"); 1194f93aae9fSJohn Stultz 11951da177e4SLinus Torvalds smi_event_handler(smi_info, 0); 11961da177e4SLinus Torvalds spin_unlock_irqrestore(&(smi_info->si_lock), flags); 11971da177e4SLinus Torvalds return IRQ_HANDLED; 11981da177e4SLinus Torvalds } 11991da177e4SLinus Torvalds 1200453823baSCorey Minyard static int smi_start_processing(void *send_info, 1201453823baSCorey Minyard ipmi_smi_t intf) 1202453823baSCorey Minyard { 1203453823baSCorey Minyard struct smi_info *new_smi = send_info; 1204a51f4a81SCorey Minyard int enable = 0; 1205453823baSCorey Minyard 1206453823baSCorey Minyard new_smi->intf = intf; 1207453823baSCorey Minyard 1208453823baSCorey Minyard /* Set up the timer that drives the interface. */ 1209453823baSCorey Minyard setup_timer(&new_smi->si_timer, smi_timeout, (long)new_smi); 121048e8ac29SBodo Stroesser smi_mod_timer(new_smi, jiffies + SI_TIMEOUT_JIFFIES); 1211453823baSCorey Minyard 121227f972d3SJan Stancek /* Try to claim any interrupts. */ 1213*4f3e8199SCorey Minyard if (new_smi->io.irq_setup) { 1214*4f3e8199SCorey Minyard new_smi->io.irq_handler_data = new_smi; 1215*4f3e8199SCorey Minyard new_smi->io.irq_setup(&new_smi->io); 1216*4f3e8199SCorey Minyard } 121727f972d3SJan Stancek 1218df3fe8deSCorey Minyard /* 1219a51f4a81SCorey Minyard * Check if the user forcefully enabled the daemon. 1220a51f4a81SCorey Minyard */ 1221a51f4a81SCorey Minyard if (new_smi->intf_num < num_force_kipmid) 1222a51f4a81SCorey Minyard enable = force_kipmid[new_smi->intf_num]; 1223a51f4a81SCorey Minyard /* 1224df3fe8deSCorey Minyard * The BT interface is efficient enough to not need a thread, 1225df3fe8deSCorey Minyard * and there is no need for a thread if we have interrupts. 1226df3fe8deSCorey Minyard */ 1227910840f2SCorey Minyard else if ((new_smi->io.si_type != SI_BT) && (!new_smi->io.irq)) 1228a51f4a81SCorey Minyard enable = 1; 1229a51f4a81SCorey Minyard 1230a51f4a81SCorey Minyard if (enable) { 1231453823baSCorey Minyard new_smi->thread = kthread_run(ipmi_thread, new_smi, 1232453823baSCorey Minyard "kipmi%d", new_smi->intf_num); 1233453823baSCorey Minyard if (IS_ERR(new_smi->thread)) { 1234910840f2SCorey Minyard dev_notice(new_smi->io.dev, "Could not start" 1235453823baSCorey Minyard " kernel thread due to error %ld, only using" 1236453823baSCorey Minyard " timers to drive the interface\n", 1237453823baSCorey Minyard PTR_ERR(new_smi->thread)); 1238453823baSCorey Minyard new_smi->thread = NULL; 1239453823baSCorey Minyard } 1240453823baSCorey Minyard } 1241453823baSCorey Minyard 1242453823baSCorey Minyard return 0; 1243453823baSCorey Minyard } 12449dbf68f9SCorey Minyard 124516f4232cSZhao Yakui static int get_smi_info(void *send_info, struct ipmi_smi_info *data) 124616f4232cSZhao Yakui { 124716f4232cSZhao Yakui struct smi_info *smi = send_info; 124816f4232cSZhao Yakui 1249910840f2SCorey Minyard data->addr_src = smi->io.addr_source; 1250910840f2SCorey Minyard data->dev = smi->io.dev; 125116f4232cSZhao Yakui data->addr_info = smi->addr_info; 1252910840f2SCorey Minyard get_device(smi->io.dev); 125316f4232cSZhao Yakui 125416f4232cSZhao Yakui return 0; 125516f4232cSZhao Yakui } 125616f4232cSZhao Yakui 12577aefac26SCorey Minyard static void set_maintenance_mode(void *send_info, bool enable) 1258b9675136SCorey Minyard { 1259b9675136SCorey Minyard struct smi_info *smi_info = send_info; 1260b9675136SCorey Minyard 1261b9675136SCorey Minyard if (!enable) 1262b9675136SCorey Minyard atomic_set(&smi_info->req_events, 0); 1263b9675136SCorey Minyard } 1264b9675136SCorey Minyard 126581d02b7fSCorey Minyard static const struct ipmi_smi_handlers handlers = { 12661da177e4SLinus Torvalds .owner = THIS_MODULE, 1267453823baSCorey Minyard .start_processing = smi_start_processing, 126816f4232cSZhao Yakui .get_smi_info = get_smi_info, 12691da177e4SLinus Torvalds .sender = sender, 12701da177e4SLinus Torvalds .request_events = request_events, 127189986496SCorey Minyard .set_need_watch = set_need_watch, 1272b9675136SCorey Minyard .set_maintenance_mode = set_maintenance_mode, 12731da177e4SLinus Torvalds .set_run_to_completion = set_run_to_completion, 127482802f96SHidehiro Kawai .flush_messages = flush_messages, 12751da177e4SLinus Torvalds .poll = poll, 12761da177e4SLinus Torvalds }; 12771da177e4SLinus Torvalds 1278c305e3d3SCorey Minyard /* 1279c305e3d3SCorey Minyard * There can be 4 IO ports passed in (with or without IRQs), 4 addresses, 1280c305e3d3SCorey Minyard * a default IO port, and 1 ACPI/SPMI address. That sets SI_MAX_DRIVERS. 1281c305e3d3SCorey Minyard */ 12821da177e4SLinus Torvalds 1283b0defcdbSCorey Minyard static LIST_HEAD(smi_infos); 1284d6dfd131SCorey Minyard static DEFINE_MUTEX(smi_infos_lock); 1285b0defcdbSCorey Minyard static int smi_num; /* Used to sequence the SMIs */ 12861da177e4SLinus Torvalds 1287d941aeaeSCorey Minyard #ifdef CONFIG_ACPI 1288fedb25eaSShailendra Verma static bool si_tryacpi = true; 1289d941aeaeSCorey Minyard #endif 1290d941aeaeSCorey Minyard #ifdef CONFIG_DMI 1291fedb25eaSShailendra Verma static bool si_trydmi = true; 1292d941aeaeSCorey Minyard #endif 1293fedb25eaSShailendra Verma static bool si_tryplatform = true; 1294f2afae46SCorey Minyard #ifdef CONFIG_PCI 1295fedb25eaSShailendra Verma static bool si_trypci = true; 1296f2afae46SCorey Minyard #endif 12971da177e4SLinus Torvalds static char *si_type[SI_MAX_PARMS]; 12981da177e4SLinus Torvalds #define MAX_SI_TYPE_STR 30 12991da177e4SLinus Torvalds static char si_type_str[MAX_SI_TYPE_STR]; 13001da177e4SLinus Torvalds static unsigned long addrs[SI_MAX_PARMS]; 130164a6f950SAl Viro static unsigned int num_addrs; 13021da177e4SLinus Torvalds static unsigned int ports[SI_MAX_PARMS]; 130364a6f950SAl Viro static unsigned int num_ports; 13041da177e4SLinus Torvalds static int irqs[SI_MAX_PARMS]; 130564a6f950SAl Viro static unsigned int num_irqs; 13061da177e4SLinus Torvalds static int regspacings[SI_MAX_PARMS]; 130764a6f950SAl Viro static unsigned int num_regspacings; 13081da177e4SLinus Torvalds static int regsizes[SI_MAX_PARMS]; 130964a6f950SAl Viro static unsigned int num_regsizes; 13101da177e4SLinus Torvalds static int regshifts[SI_MAX_PARMS]; 131164a6f950SAl Viro static unsigned int num_regshifts; 13122f95d513SBela Lubkin static int slave_addrs[SI_MAX_PARMS]; /* Leaving 0 chooses the default value */ 131364a6f950SAl Viro static unsigned int num_slave_addrs; 13141da177e4SLinus Torvalds 131599ee6735SLABBE Corentin static const char * const addr_space_to_str[] = { "i/o", "mem" }; 1316b361e27bSCorey Minyard 1317b361e27bSCorey Minyard static int hotmod_handler(const char *val, struct kernel_param *kp); 1318b361e27bSCorey Minyard 1319b361e27bSCorey Minyard module_param_call(hotmod, hotmod_handler, NULL, NULL, 0200); 1320b361e27bSCorey Minyard MODULE_PARM_DESC(hotmod, "Add and remove interfaces. See" 1321b361e27bSCorey Minyard " Documentation/IPMI.txt in the kernel sources for the" 1322b361e27bSCorey Minyard " gory details."); 13231da177e4SLinus Torvalds 1324d941aeaeSCorey Minyard #ifdef CONFIG_ACPI 1325d941aeaeSCorey Minyard module_param_named(tryacpi, si_tryacpi, bool, 0); 1326d941aeaeSCorey Minyard MODULE_PARM_DESC(tryacpi, "Setting this to zero will disable the" 1327d941aeaeSCorey Minyard " default scan of the interfaces identified via ACPI"); 1328d941aeaeSCorey Minyard #endif 1329d941aeaeSCorey Minyard #ifdef CONFIG_DMI 1330d941aeaeSCorey Minyard module_param_named(trydmi, si_trydmi, bool, 0); 1331d941aeaeSCorey Minyard MODULE_PARM_DESC(trydmi, "Setting this to zero will disable the" 1332d941aeaeSCorey Minyard " default scan of the interfaces identified via DMI"); 1333d941aeaeSCorey Minyard #endif 1334f2afae46SCorey Minyard module_param_named(tryplatform, si_tryplatform, bool, 0); 1335f813655aSCorey Minyard MODULE_PARM_DESC(tryplatform, "Setting this to zero will disable the" 1336f2afae46SCorey Minyard " default scan of the interfaces identified via platform" 1337f2afae46SCorey Minyard " interfaces like openfirmware"); 1338f2afae46SCorey Minyard #ifdef CONFIG_PCI 1339f2afae46SCorey Minyard module_param_named(trypci, si_trypci, bool, 0); 1340f813655aSCorey Minyard MODULE_PARM_DESC(trypci, "Setting this to zero will disable the" 1341f2afae46SCorey Minyard " default scan of the interfaces identified via pci"); 1342f2afae46SCorey Minyard #endif 13431da177e4SLinus Torvalds module_param_string(type, si_type_str, MAX_SI_TYPE_STR, 0); 13441da177e4SLinus Torvalds MODULE_PARM_DESC(type, "Defines the type of each interface, each" 13451da177e4SLinus Torvalds " interface separated by commas. The types are 'kcs'," 13461da177e4SLinus Torvalds " 'smic', and 'bt'. For example si_type=kcs,bt will set" 13471da177e4SLinus Torvalds " the first interface to kcs and the second to bt"); 1348684497bfSDavid Howells module_param_hw_array(addrs, ulong, iomem, &num_addrs, 0); 13491da177e4SLinus Torvalds MODULE_PARM_DESC(addrs, "Sets the memory address of each interface, the" 13501da177e4SLinus Torvalds " addresses separated by commas. Only use if an interface" 13511da177e4SLinus Torvalds " is in memory. Otherwise, set it to zero or leave" 13521da177e4SLinus Torvalds " it blank."); 1353684497bfSDavid Howells module_param_hw_array(ports, uint, ioport, &num_ports, 0); 13541da177e4SLinus Torvalds MODULE_PARM_DESC(ports, "Sets the port address of each interface, the" 13551da177e4SLinus Torvalds " addresses separated by commas. Only use if an interface" 13561da177e4SLinus Torvalds " is a port. Otherwise, set it to zero or leave" 13571da177e4SLinus Torvalds " it blank."); 1358684497bfSDavid Howells module_param_hw_array(irqs, int, irq, &num_irqs, 0); 13591da177e4SLinus Torvalds MODULE_PARM_DESC(irqs, "Sets the interrupt of each interface, the" 13601da177e4SLinus Torvalds " addresses separated by commas. Only use if an interface" 13611da177e4SLinus Torvalds " has an interrupt. Otherwise, set it to zero or leave" 13621da177e4SLinus Torvalds " it blank."); 1363684497bfSDavid Howells module_param_hw_array(regspacings, int, other, &num_regspacings, 0); 13641da177e4SLinus Torvalds MODULE_PARM_DESC(regspacings, "The number of bytes between the start address" 13651da177e4SLinus Torvalds " and each successive register used by the interface. For" 13661da177e4SLinus Torvalds " instance, if the start address is 0xca2 and the spacing" 13671da177e4SLinus Torvalds " is 2, then the second address is at 0xca4. Defaults" 13681da177e4SLinus Torvalds " to 1."); 1369684497bfSDavid Howells module_param_hw_array(regsizes, int, other, &num_regsizes, 0); 13701da177e4SLinus Torvalds MODULE_PARM_DESC(regsizes, "The size of the specific IPMI register in bytes." 13711da177e4SLinus Torvalds " This should generally be 1, 2, 4, or 8 for an 8-bit," 13721da177e4SLinus Torvalds " 16-bit, 32-bit, or 64-bit register. Use this if you" 13731da177e4SLinus Torvalds " the 8-bit IPMI register has to be read from a larger" 13741da177e4SLinus Torvalds " register."); 1375684497bfSDavid Howells module_param_hw_array(regshifts, int, other, &num_regshifts, 0); 13761da177e4SLinus Torvalds MODULE_PARM_DESC(regshifts, "The amount to shift the data read from the." 13771da177e4SLinus Torvalds " IPMI register, in bits. For instance, if the data" 13781da177e4SLinus Torvalds " is read from a 32-bit word and the IPMI data is in" 13791da177e4SLinus Torvalds " bit 8-15, then the shift would be 8"); 1380684497bfSDavid Howells module_param_hw_array(slave_addrs, int, other, &num_slave_addrs, 0); 13811da177e4SLinus Torvalds MODULE_PARM_DESC(slave_addrs, "Set the default IPMB slave address for" 13821da177e4SLinus Torvalds " the controller. Normally this is 0x20, but can be" 13831da177e4SLinus Torvalds " overridden by this parm. This is an array indexed" 13841da177e4SLinus Torvalds " by interface number."); 1385a51f4a81SCorey Minyard module_param_array(force_kipmid, int, &num_force_kipmid, 0); 1386a51f4a81SCorey Minyard MODULE_PARM_DESC(force_kipmid, "Force the kipmi daemon to be enabled (1) or" 1387a51f4a81SCorey Minyard " disabled(0). Normally the IPMI driver auto-detects" 1388a51f4a81SCorey Minyard " this, but the value may be overridden by this parm."); 13897aefac26SCorey Minyard module_param(unload_when_empty, bool, 0); 1390b361e27bSCorey Minyard MODULE_PARM_DESC(unload_when_empty, "Unload the module if no interfaces are" 1391b361e27bSCorey Minyard " specified or found, default is 1. Setting to 0" 1392b361e27bSCorey Minyard " is useful for hot add of devices using hotmod."); 1393ae74e823SMartin Wilck module_param_array(kipmid_max_busy_us, uint, &num_max_busy_us, 0644); 1394ae74e823SMartin Wilck MODULE_PARM_DESC(kipmid_max_busy_us, 1395ae74e823SMartin Wilck "Max time (in microseconds) to busy-wait for IPMI data before" 1396ae74e823SMartin Wilck " sleeping. 0 (default) means to wait forever. Set to 100-500" 1397ae74e823SMartin Wilck " if kipmid is using up a lot of CPU time."); 13981da177e4SLinus Torvalds 1399*4f3e8199SCorey Minyard void ipmi_irq_finish_setup(struct si_sm_io *io) 14001da177e4SLinus Torvalds { 1401*4f3e8199SCorey Minyard if (io->si_type == SI_BT) 1402*4f3e8199SCorey Minyard /* Enable the interrupt in the BT interface. */ 1403*4f3e8199SCorey Minyard io->outputb(io, IPMI_BT_INTMASK_REG, 1404*4f3e8199SCorey Minyard IPMI_BT_INTMASK_ENABLE_IRQ_BIT); 14051da177e4SLinus Torvalds } 14061da177e4SLinus Torvalds 1407*4f3e8199SCorey Minyard void ipmi_irq_start_cleanup(struct si_sm_io *io) 1408*4f3e8199SCorey Minyard { 1409*4f3e8199SCorey Minyard if (io->si_type == SI_BT) 1410*4f3e8199SCorey Minyard /* Disable the interrupt in the BT interface. */ 1411*4f3e8199SCorey Minyard io->outputb(io, IPMI_BT_INTMASK_REG, 0); 1412*4f3e8199SCorey Minyard } 1413*4f3e8199SCorey Minyard 1414*4f3e8199SCorey Minyard static void std_irq_cleanup(struct si_sm_io *io) 1415*4f3e8199SCorey Minyard { 1416*4f3e8199SCorey Minyard ipmi_irq_start_cleanup(io); 1417*4f3e8199SCorey Minyard free_irq(io->irq, io->irq_handler_data); 1418*4f3e8199SCorey Minyard } 1419*4f3e8199SCorey Minyard 1420*4f3e8199SCorey Minyard int ipmi_std_irq_setup(struct si_sm_io *io) 14211da177e4SLinus Torvalds { 14221da177e4SLinus Torvalds int rv; 14231da177e4SLinus Torvalds 1424*4f3e8199SCorey Minyard if (!io->irq) 14251da177e4SLinus Torvalds return 0; 14261da177e4SLinus Torvalds 1427*4f3e8199SCorey Minyard rv = request_irq(io->irq, 1428*4f3e8199SCorey Minyard ipmi_si_irq_handler, 1429aa5b2babSMichael Opdenacker IRQF_SHARED, 14309dbf68f9SCorey Minyard DEVICE_NAME, 1431*4f3e8199SCorey Minyard io->irq_handler_data); 14321da177e4SLinus Torvalds if (rv) { 1433*4f3e8199SCorey Minyard dev_warn(io->dev, "%s unable to claim interrupt %d," 14341da177e4SLinus Torvalds " running polled\n", 1435*4f3e8199SCorey Minyard DEVICE_NAME, io->irq); 1436*4f3e8199SCorey Minyard io->irq = 0; 14371da177e4SLinus Torvalds } else { 1438*4f3e8199SCorey Minyard io->irq_cleanup = std_irq_cleanup; 1439*4f3e8199SCorey Minyard ipmi_irq_finish_setup(io); 1440*4f3e8199SCorey Minyard dev_info(io->dev, "Using irq %d\n", io->irq); 14411da177e4SLinus Torvalds } 14421da177e4SLinus Torvalds 14431da177e4SLinus Torvalds return rv; 14441da177e4SLinus Torvalds } 14451da177e4SLinus Torvalds 144681d02b7fSCorey Minyard static unsigned char port_inb(const struct si_sm_io *io, unsigned int offset) 14471da177e4SLinus Torvalds { 1448b0defcdbSCorey Minyard unsigned int addr = io->addr_data; 14491da177e4SLinus Torvalds 1450b0defcdbSCorey Minyard return inb(addr + (offset * io->regspacing)); 14511da177e4SLinus Torvalds } 14521da177e4SLinus Torvalds 145381d02b7fSCorey Minyard static void port_outb(const struct si_sm_io *io, unsigned int offset, 14541da177e4SLinus Torvalds unsigned char b) 14551da177e4SLinus Torvalds { 1456b0defcdbSCorey Minyard unsigned int addr = io->addr_data; 14571da177e4SLinus Torvalds 1458b0defcdbSCorey Minyard outb(b, addr + (offset * io->regspacing)); 14591da177e4SLinus Torvalds } 14601da177e4SLinus Torvalds 146181d02b7fSCorey Minyard static unsigned char port_inw(const struct si_sm_io *io, unsigned int offset) 14621da177e4SLinus Torvalds { 1463b0defcdbSCorey Minyard unsigned int addr = io->addr_data; 14641da177e4SLinus Torvalds 1465b0defcdbSCorey Minyard return (inw(addr + (offset * io->regspacing)) >> io->regshift) & 0xff; 14661da177e4SLinus Torvalds } 14671da177e4SLinus Torvalds 146881d02b7fSCorey Minyard static void port_outw(const struct si_sm_io *io, unsigned int offset, 14691da177e4SLinus Torvalds unsigned char b) 14701da177e4SLinus Torvalds { 1471b0defcdbSCorey Minyard unsigned int addr = io->addr_data; 14721da177e4SLinus Torvalds 1473b0defcdbSCorey Minyard outw(b << io->regshift, addr + (offset * io->regspacing)); 14741da177e4SLinus Torvalds } 14751da177e4SLinus Torvalds 147681d02b7fSCorey Minyard static unsigned char port_inl(const struct si_sm_io *io, unsigned int offset) 14771da177e4SLinus Torvalds { 1478b0defcdbSCorey Minyard unsigned int addr = io->addr_data; 14791da177e4SLinus Torvalds 1480b0defcdbSCorey Minyard return (inl(addr + (offset * io->regspacing)) >> io->regshift) & 0xff; 14811da177e4SLinus Torvalds } 14821da177e4SLinus Torvalds 148381d02b7fSCorey Minyard static void port_outl(const struct si_sm_io *io, unsigned int offset, 14841da177e4SLinus Torvalds unsigned char b) 14851da177e4SLinus Torvalds { 1486b0defcdbSCorey Minyard unsigned int addr = io->addr_data; 14871da177e4SLinus Torvalds 1488b0defcdbSCorey Minyard outl(b << io->regshift, addr+(offset * io->regspacing)); 14891da177e4SLinus Torvalds } 14901da177e4SLinus Torvalds 14911da177e4SLinus Torvalds static void port_cleanup(struct smi_info *info) 14921da177e4SLinus Torvalds { 1493b0defcdbSCorey Minyard unsigned int addr = info->io.addr_data; 1494d61a3eadSCorey Minyard int idx; 14951da177e4SLinus Torvalds 1496b0defcdbSCorey Minyard if (addr) { 1497c305e3d3SCorey Minyard for (idx = 0; idx < info->io_size; idx++) 1498d61a3eadSCorey Minyard release_region(addr + idx * info->io.regspacing, 1499d61a3eadSCorey Minyard info->io.regsize); 1500d61a3eadSCorey Minyard } 15011da177e4SLinus Torvalds } 15021da177e4SLinus Torvalds 15031da177e4SLinus Torvalds static int port_setup(struct smi_info *info) 15041da177e4SLinus Torvalds { 1505b0defcdbSCorey Minyard unsigned int addr = info->io.addr_data; 1506d61a3eadSCorey Minyard int idx; 15071da177e4SLinus Torvalds 1508b0defcdbSCorey Minyard if (!addr) 15091da177e4SLinus Torvalds return -ENODEV; 15101da177e4SLinus Torvalds 15111da177e4SLinus Torvalds info->io_cleanup = port_cleanup; 15121da177e4SLinus Torvalds 1513c305e3d3SCorey Minyard /* 1514c305e3d3SCorey Minyard * Figure out the actual inb/inw/inl/etc routine to use based 1515c305e3d3SCorey Minyard * upon the register size. 1516c305e3d3SCorey Minyard */ 15171da177e4SLinus Torvalds switch (info->io.regsize) { 15181da177e4SLinus Torvalds case 1: 15191da177e4SLinus Torvalds info->io.inputb = port_inb; 15201da177e4SLinus Torvalds info->io.outputb = port_outb; 15211da177e4SLinus Torvalds break; 15221da177e4SLinus Torvalds case 2: 15231da177e4SLinus Torvalds info->io.inputb = port_inw; 15241da177e4SLinus Torvalds info->io.outputb = port_outw; 15251da177e4SLinus Torvalds break; 15261da177e4SLinus Torvalds case 4: 15271da177e4SLinus Torvalds info->io.inputb = port_inl; 15281da177e4SLinus Torvalds info->io.outputb = port_outl; 15291da177e4SLinus Torvalds break; 15301da177e4SLinus Torvalds default: 1531910840f2SCorey Minyard dev_warn(info->io.dev, "Invalid register size: %d\n", 15321da177e4SLinus Torvalds info->io.regsize); 15331da177e4SLinus Torvalds return -EINVAL; 15341da177e4SLinus Torvalds } 15351da177e4SLinus Torvalds 1536c305e3d3SCorey Minyard /* 1537c305e3d3SCorey Minyard * Some BIOSes reserve disjoint I/O regions in their ACPI 1538d61a3eadSCorey Minyard * tables. This causes problems when trying to register the 1539d61a3eadSCorey Minyard * entire I/O region. Therefore we must register each I/O 1540d61a3eadSCorey Minyard * port separately. 1541d61a3eadSCorey Minyard */ 1542d61a3eadSCorey Minyard for (idx = 0; idx < info->io_size; idx++) { 1543d61a3eadSCorey Minyard if (request_region(addr + idx * info->io.regspacing, 1544d61a3eadSCorey Minyard info->io.regsize, DEVICE_NAME) == NULL) { 1545d61a3eadSCorey Minyard /* Undo allocations */ 154676824852SCorey Minyard while (idx--) 1547d61a3eadSCorey Minyard release_region(addr + idx * info->io.regspacing, 1548d61a3eadSCorey Minyard info->io.regsize); 15491da177e4SLinus Torvalds return -EIO; 1550d61a3eadSCorey Minyard } 1551d61a3eadSCorey Minyard } 15521da177e4SLinus Torvalds return 0; 15531da177e4SLinus Torvalds } 15541da177e4SLinus Torvalds 155581d02b7fSCorey Minyard static unsigned char intf_mem_inb(const struct si_sm_io *io, 155681d02b7fSCorey Minyard unsigned int offset) 15571da177e4SLinus Torvalds { 15581da177e4SLinus Torvalds return readb((io->addr)+(offset * io->regspacing)); 15591da177e4SLinus Torvalds } 15601da177e4SLinus Torvalds 156181d02b7fSCorey Minyard static void intf_mem_outb(const struct si_sm_io *io, unsigned int offset, 15621da177e4SLinus Torvalds unsigned char b) 15631da177e4SLinus Torvalds { 15641da177e4SLinus Torvalds writeb(b, (io->addr)+(offset * io->regspacing)); 15651da177e4SLinus Torvalds } 15661da177e4SLinus Torvalds 156781d02b7fSCorey Minyard static unsigned char intf_mem_inw(const struct si_sm_io *io, 156881d02b7fSCorey Minyard unsigned int offset) 15691da177e4SLinus Torvalds { 15701da177e4SLinus Torvalds return (readw((io->addr)+(offset * io->regspacing)) >> io->regshift) 157164d9fe69SAlexey Dobriyan & 0xff; 15721da177e4SLinus Torvalds } 15731da177e4SLinus Torvalds 157481d02b7fSCorey Minyard static void intf_mem_outw(const struct si_sm_io *io, unsigned int offset, 15751da177e4SLinus Torvalds unsigned char b) 15761da177e4SLinus Torvalds { 15771da177e4SLinus Torvalds writeb(b << io->regshift, (io->addr)+(offset * io->regspacing)); 15781da177e4SLinus Torvalds } 15791da177e4SLinus Torvalds 158081d02b7fSCorey Minyard static unsigned char intf_mem_inl(const struct si_sm_io *io, 158181d02b7fSCorey Minyard unsigned int offset) 15821da177e4SLinus Torvalds { 15831da177e4SLinus Torvalds return (readl((io->addr)+(offset * io->regspacing)) >> io->regshift) 158464d9fe69SAlexey Dobriyan & 0xff; 15851da177e4SLinus Torvalds } 15861da177e4SLinus Torvalds 158781d02b7fSCorey Minyard static void intf_mem_outl(const struct si_sm_io *io, unsigned int offset, 15881da177e4SLinus Torvalds unsigned char b) 15891da177e4SLinus Torvalds { 15901da177e4SLinus Torvalds writel(b << io->regshift, (io->addr)+(offset * io->regspacing)); 15911da177e4SLinus Torvalds } 15921da177e4SLinus Torvalds 15931da177e4SLinus Torvalds #ifdef readq 159481d02b7fSCorey Minyard static unsigned char mem_inq(const struct si_sm_io *io, unsigned int offset) 15951da177e4SLinus Torvalds { 15961da177e4SLinus Torvalds return (readq((io->addr)+(offset * io->regspacing)) >> io->regshift) 159764d9fe69SAlexey Dobriyan & 0xff; 15981da177e4SLinus Torvalds } 15991da177e4SLinus Torvalds 160081d02b7fSCorey Minyard static void mem_outq(const struct si_sm_io *io, unsigned int offset, 16011da177e4SLinus Torvalds unsigned char b) 16021da177e4SLinus Torvalds { 16031da177e4SLinus Torvalds writeq(b << io->regshift, (io->addr)+(offset * io->regspacing)); 16041da177e4SLinus Torvalds } 16051da177e4SLinus Torvalds #endif 16061da177e4SLinus Torvalds 160757a38f13SCorey Minyard static void mem_region_cleanup(struct smi_info *info, int num) 16081da177e4SLinus Torvalds { 1609b0defcdbSCorey Minyard unsigned long addr = info->io.addr_data; 161057a38f13SCorey Minyard int idx; 16111da177e4SLinus Torvalds 161257a38f13SCorey Minyard for (idx = 0; idx < num; idx++) 161357a38f13SCorey Minyard release_mem_region(addr + idx * info->io.regspacing, 161457a38f13SCorey Minyard info->io.regsize); 161557a38f13SCorey Minyard } 161657a38f13SCorey Minyard 161757a38f13SCorey Minyard static void mem_cleanup(struct smi_info *info) 161857a38f13SCorey Minyard { 16191da177e4SLinus Torvalds if (info->io.addr) { 16201da177e4SLinus Torvalds iounmap(info->io.addr); 162157a38f13SCorey Minyard mem_region_cleanup(info, info->io_size); 16221da177e4SLinus Torvalds } 16231da177e4SLinus Torvalds } 16241da177e4SLinus Torvalds 16251da177e4SLinus Torvalds static int mem_setup(struct smi_info *info) 16261da177e4SLinus Torvalds { 1627b0defcdbSCorey Minyard unsigned long addr = info->io.addr_data; 162857a38f13SCorey Minyard int mapsize, idx; 16291da177e4SLinus Torvalds 1630b0defcdbSCorey Minyard if (!addr) 16311da177e4SLinus Torvalds return -ENODEV; 16321da177e4SLinus Torvalds 16331da177e4SLinus Torvalds info->io_cleanup = mem_cleanup; 16341da177e4SLinus Torvalds 1635c305e3d3SCorey Minyard /* 1636c305e3d3SCorey Minyard * Figure out the actual readb/readw/readl/etc routine to use based 1637c305e3d3SCorey Minyard * upon the register size. 1638c305e3d3SCorey Minyard */ 16391da177e4SLinus Torvalds switch (info->io.regsize) { 16401da177e4SLinus Torvalds case 1: 1641546cfdf4SAlexey Dobriyan info->io.inputb = intf_mem_inb; 1642546cfdf4SAlexey Dobriyan info->io.outputb = intf_mem_outb; 16431da177e4SLinus Torvalds break; 16441da177e4SLinus Torvalds case 2: 1645546cfdf4SAlexey Dobriyan info->io.inputb = intf_mem_inw; 1646546cfdf4SAlexey Dobriyan info->io.outputb = intf_mem_outw; 16471da177e4SLinus Torvalds break; 16481da177e4SLinus Torvalds case 4: 1649546cfdf4SAlexey Dobriyan info->io.inputb = intf_mem_inl; 1650546cfdf4SAlexey Dobriyan info->io.outputb = intf_mem_outl; 16511da177e4SLinus Torvalds break; 16521da177e4SLinus Torvalds #ifdef readq 16531da177e4SLinus Torvalds case 8: 16541da177e4SLinus Torvalds info->io.inputb = mem_inq; 16551da177e4SLinus Torvalds info->io.outputb = mem_outq; 16561da177e4SLinus Torvalds break; 16571da177e4SLinus Torvalds #endif 16581da177e4SLinus Torvalds default: 1659910840f2SCorey Minyard dev_warn(info->io.dev, "Invalid register size: %d\n", 16601da177e4SLinus Torvalds info->io.regsize); 16611da177e4SLinus Torvalds return -EINVAL; 16621da177e4SLinus Torvalds } 16631da177e4SLinus Torvalds 1664c305e3d3SCorey Minyard /* 166557a38f13SCorey Minyard * Some BIOSes reserve disjoint memory regions in their ACPI 166657a38f13SCorey Minyard * tables. This causes problems when trying to request the 166757a38f13SCorey Minyard * entire region. Therefore we must request each register 166857a38f13SCorey Minyard * separately. 166957a38f13SCorey Minyard */ 167057a38f13SCorey Minyard for (idx = 0; idx < info->io_size; idx++) { 167157a38f13SCorey Minyard if (request_mem_region(addr + idx * info->io.regspacing, 167257a38f13SCorey Minyard info->io.regsize, DEVICE_NAME) == NULL) { 167357a38f13SCorey Minyard /* Undo allocations */ 167457a38f13SCorey Minyard mem_region_cleanup(info, idx); 167557a38f13SCorey Minyard return -EIO; 167657a38f13SCorey Minyard } 167757a38f13SCorey Minyard } 167857a38f13SCorey Minyard 167957a38f13SCorey Minyard /* 1680c305e3d3SCorey Minyard * Calculate the total amount of memory to claim. This is an 16811da177e4SLinus Torvalds * unusual looking calculation, but it avoids claiming any 16821da177e4SLinus Torvalds * more memory than it has to. It will claim everything 16831da177e4SLinus Torvalds * between the first address to the end of the last full 1684c305e3d3SCorey Minyard * register. 1685c305e3d3SCorey Minyard */ 16861da177e4SLinus Torvalds mapsize = ((info->io_size * info->io.regspacing) 16871da177e4SLinus Torvalds - (info->io.regspacing - info->io.regsize)); 1688b0defcdbSCorey Minyard info->io.addr = ioremap(addr, mapsize); 16891da177e4SLinus Torvalds if (info->io.addr == NULL) { 169057a38f13SCorey Minyard mem_region_cleanup(info, info->io_size); 16911da177e4SLinus Torvalds return -EIO; 16921da177e4SLinus Torvalds } 16931da177e4SLinus Torvalds return 0; 16941da177e4SLinus Torvalds } 16951da177e4SLinus Torvalds 1696b361e27bSCorey Minyard /* 1697b361e27bSCorey Minyard * Parms come in as <op1>[:op2[:op3...]]. ops are: 1698b361e27bSCorey Minyard * add|remove,kcs|bt|smic,mem|i/o,<address>[,<opt1>[,<opt2>[,...]]] 1699b361e27bSCorey Minyard * Options are: 1700b361e27bSCorey Minyard * rsp=<regspacing> 1701b361e27bSCorey Minyard * rsi=<regsize> 1702b361e27bSCorey Minyard * rsh=<regshift> 1703b361e27bSCorey Minyard * irq=<irq> 1704b361e27bSCorey Minyard * ipmb=<ipmb addr> 1705b361e27bSCorey Minyard */ 1706b361e27bSCorey Minyard enum hotmod_op { HM_ADD, HM_REMOVE }; 1707b361e27bSCorey Minyard struct hotmod_vals { 170899ee6735SLABBE Corentin const char *name; 170999ee6735SLABBE Corentin const int val; 1710b361e27bSCorey Minyard }; 171199ee6735SLABBE Corentin 171299ee6735SLABBE Corentin static const struct hotmod_vals hotmod_ops[] = { 1713b361e27bSCorey Minyard { "add", HM_ADD }, 1714b361e27bSCorey Minyard { "remove", HM_REMOVE }, 1715b361e27bSCorey Minyard { NULL } 1716b361e27bSCorey Minyard }; 171799ee6735SLABBE Corentin 171899ee6735SLABBE Corentin static const struct hotmod_vals hotmod_si[] = { 1719b361e27bSCorey Minyard { "kcs", SI_KCS }, 1720b361e27bSCorey Minyard { "smic", SI_SMIC }, 1721b361e27bSCorey Minyard { "bt", SI_BT }, 1722b361e27bSCorey Minyard { NULL } 1723b361e27bSCorey Minyard }; 172499ee6735SLABBE Corentin 172599ee6735SLABBE Corentin static const struct hotmod_vals hotmod_as[] = { 1726b361e27bSCorey Minyard { "mem", IPMI_MEM_ADDR_SPACE }, 1727b361e27bSCorey Minyard { "i/o", IPMI_IO_ADDR_SPACE }, 1728b361e27bSCorey Minyard { NULL } 1729b361e27bSCorey Minyard }; 17301d5636ccSCorey Minyard 173199ee6735SLABBE Corentin static int parse_str(const struct hotmod_vals *v, int *val, char *name, 173299ee6735SLABBE Corentin char **curr) 1733b361e27bSCorey Minyard { 1734b361e27bSCorey Minyard char *s; 1735b361e27bSCorey Minyard int i; 1736b361e27bSCorey Minyard 1737b361e27bSCorey Minyard s = strchr(*curr, ','); 1738b361e27bSCorey Minyard if (!s) { 1739bb2a08c0SCorey Minyard pr_warn(PFX "No hotmod %s given.\n", name); 1740b361e27bSCorey Minyard return -EINVAL; 1741b361e27bSCorey Minyard } 1742b361e27bSCorey Minyard *s = '\0'; 1743b361e27bSCorey Minyard s++; 1744ceb51ca8SCorey Minyard for (i = 0; v[i].name; i++) { 17451d5636ccSCorey Minyard if (strcmp(*curr, v[i].name) == 0) { 1746b361e27bSCorey Minyard *val = v[i].val; 1747b361e27bSCorey Minyard *curr = s; 1748b361e27bSCorey Minyard return 0; 1749b361e27bSCorey Minyard } 1750b361e27bSCorey Minyard } 1751b361e27bSCorey Minyard 1752bb2a08c0SCorey Minyard pr_warn(PFX "Invalid hotmod %s '%s'\n", name, *curr); 1753b361e27bSCorey Minyard return -EINVAL; 1754b361e27bSCorey Minyard } 1755b361e27bSCorey Minyard 17561d5636ccSCorey Minyard static int check_hotmod_int_op(const char *curr, const char *option, 17571d5636ccSCorey Minyard const char *name, int *val) 17581d5636ccSCorey Minyard { 17591d5636ccSCorey Minyard char *n; 17601d5636ccSCorey Minyard 17611d5636ccSCorey Minyard if (strcmp(curr, name) == 0) { 17621d5636ccSCorey Minyard if (!option) { 1763bb2a08c0SCorey Minyard pr_warn(PFX "No option given for '%s'\n", curr); 17641d5636ccSCorey Minyard return -EINVAL; 17651d5636ccSCorey Minyard } 17661d5636ccSCorey Minyard *val = simple_strtoul(option, &n, 0); 17671d5636ccSCorey Minyard if ((*n != '\0') || (*option == '\0')) { 1768bb2a08c0SCorey Minyard pr_warn(PFX "Bad option given for '%s'\n", curr); 17691d5636ccSCorey Minyard return -EINVAL; 17701d5636ccSCorey Minyard } 17711d5636ccSCorey Minyard return 1; 17721d5636ccSCorey Minyard } 17731d5636ccSCorey Minyard return 0; 17741d5636ccSCorey Minyard } 17751d5636ccSCorey Minyard 1776de5e2ddfSEric Dumazet static struct smi_info *smi_info_alloc(void) 1777de5e2ddfSEric Dumazet { 1778de5e2ddfSEric Dumazet struct smi_info *info = kzalloc(sizeof(*info), GFP_KERNEL); 1779de5e2ddfSEric Dumazet 1780f60adf42SCorey Minyard if (info) 1781de5e2ddfSEric Dumazet spin_lock_init(&info->si_lock); 1782de5e2ddfSEric Dumazet return info; 1783de5e2ddfSEric Dumazet } 1784de5e2ddfSEric Dumazet 1785b361e27bSCorey Minyard static int hotmod_handler(const char *val, struct kernel_param *kp) 1786b361e27bSCorey Minyard { 1787b361e27bSCorey Minyard char *str = kstrdup(val, GFP_KERNEL); 17881d5636ccSCorey Minyard int rv; 1789b361e27bSCorey Minyard char *next, *curr, *s, *n, *o; 1790b361e27bSCorey Minyard enum hotmod_op op; 1791b361e27bSCorey Minyard enum si_type si_type; 1792b361e27bSCorey Minyard int addr_space; 1793b361e27bSCorey Minyard unsigned long addr; 1794b361e27bSCorey Minyard int regspacing; 1795b361e27bSCorey Minyard int regsize; 1796b361e27bSCorey Minyard int regshift; 1797b361e27bSCorey Minyard int irq; 1798b361e27bSCorey Minyard int ipmb; 1799b361e27bSCorey Minyard int ival; 18001d5636ccSCorey Minyard int len; 1801b361e27bSCorey Minyard struct smi_info *info; 1802b361e27bSCorey Minyard 1803b361e27bSCorey Minyard if (!str) 1804b361e27bSCorey Minyard return -ENOMEM; 1805b361e27bSCorey Minyard 1806b361e27bSCorey Minyard /* Kill any trailing spaces, as we can get a "\n" from echo. */ 18071d5636ccSCorey Minyard len = strlen(str); 18081d5636ccSCorey Minyard ival = len - 1; 1809b361e27bSCorey Minyard while ((ival >= 0) && isspace(str[ival])) { 1810b361e27bSCorey Minyard str[ival] = '\0'; 1811b361e27bSCorey Minyard ival--; 1812b361e27bSCorey Minyard } 1813b361e27bSCorey Minyard 1814b361e27bSCorey Minyard for (curr = str; curr; curr = next) { 1815b361e27bSCorey Minyard regspacing = 1; 1816b361e27bSCorey Minyard regsize = 1; 1817b361e27bSCorey Minyard regshift = 0; 1818b361e27bSCorey Minyard irq = 0; 18192f95d513SBela Lubkin ipmb = 0; /* Choose the default if not specified */ 1820b361e27bSCorey Minyard 1821b361e27bSCorey Minyard next = strchr(curr, ':'); 1822b361e27bSCorey Minyard if (next) { 1823b361e27bSCorey Minyard *next = '\0'; 1824b361e27bSCorey Minyard next++; 1825b361e27bSCorey Minyard } 1826b361e27bSCorey Minyard 1827b361e27bSCorey Minyard rv = parse_str(hotmod_ops, &ival, "operation", &curr); 1828b361e27bSCorey Minyard if (rv) 1829b361e27bSCorey Minyard break; 1830b361e27bSCorey Minyard op = ival; 1831b361e27bSCorey Minyard 1832b361e27bSCorey Minyard rv = parse_str(hotmod_si, &ival, "interface type", &curr); 1833b361e27bSCorey Minyard if (rv) 1834b361e27bSCorey Minyard break; 1835b361e27bSCorey Minyard si_type = ival; 1836b361e27bSCorey Minyard 1837b361e27bSCorey Minyard rv = parse_str(hotmod_as, &addr_space, "address space", &curr); 1838b361e27bSCorey Minyard if (rv) 1839b361e27bSCorey Minyard break; 1840b361e27bSCorey Minyard 1841b361e27bSCorey Minyard s = strchr(curr, ','); 1842b361e27bSCorey Minyard if (s) { 1843b361e27bSCorey Minyard *s = '\0'; 1844b361e27bSCorey Minyard s++; 1845b361e27bSCorey Minyard } 1846b361e27bSCorey Minyard addr = simple_strtoul(curr, &n, 0); 1847b361e27bSCorey Minyard if ((*n != '\0') || (*curr == '\0')) { 1848bb2a08c0SCorey Minyard pr_warn(PFX "Invalid hotmod address '%s'\n", curr); 1849b361e27bSCorey Minyard break; 1850b361e27bSCorey Minyard } 1851b361e27bSCorey Minyard 1852b361e27bSCorey Minyard while (s) { 1853b361e27bSCorey Minyard curr = s; 1854b361e27bSCorey Minyard s = strchr(curr, ','); 1855b361e27bSCorey Minyard if (s) { 1856b361e27bSCorey Minyard *s = '\0'; 1857b361e27bSCorey Minyard s++; 1858b361e27bSCorey Minyard } 1859b361e27bSCorey Minyard o = strchr(curr, '='); 1860b361e27bSCorey Minyard if (o) { 1861b361e27bSCorey Minyard *o = '\0'; 1862b361e27bSCorey Minyard o++; 1863b361e27bSCorey Minyard } 18641d5636ccSCorey Minyard rv = check_hotmod_int_op(curr, o, "rsp", ®spacing); 18651d5636ccSCorey Minyard if (rv < 0) 18661d5636ccSCorey Minyard goto out; 18671d5636ccSCorey Minyard else if (rv) 18681d5636ccSCorey Minyard continue; 18691d5636ccSCorey Minyard rv = check_hotmod_int_op(curr, o, "rsi", ®size); 18701d5636ccSCorey Minyard if (rv < 0) 18711d5636ccSCorey Minyard goto out; 18721d5636ccSCorey Minyard else if (rv) 18731d5636ccSCorey Minyard continue; 18741d5636ccSCorey Minyard rv = check_hotmod_int_op(curr, o, "rsh", ®shift); 18751d5636ccSCorey Minyard if (rv < 0) 18761d5636ccSCorey Minyard goto out; 18771d5636ccSCorey Minyard else if (rv) 18781d5636ccSCorey Minyard continue; 18791d5636ccSCorey Minyard rv = check_hotmod_int_op(curr, o, "irq", &irq); 18801d5636ccSCorey Minyard if (rv < 0) 18811d5636ccSCorey Minyard goto out; 18821d5636ccSCorey Minyard else if (rv) 18831d5636ccSCorey Minyard continue; 18841d5636ccSCorey Minyard rv = check_hotmod_int_op(curr, o, "ipmb", &ipmb); 18851d5636ccSCorey Minyard if (rv < 0) 18861d5636ccSCorey Minyard goto out; 18871d5636ccSCorey Minyard else if (rv) 18881d5636ccSCorey Minyard continue; 1889b361e27bSCorey Minyard 18901d5636ccSCorey Minyard rv = -EINVAL; 1891bb2a08c0SCorey Minyard pr_warn(PFX "Invalid hotmod option '%s'\n", curr); 1892b361e27bSCorey Minyard goto out; 1893b361e27bSCorey Minyard } 1894b361e27bSCorey Minyard 1895b361e27bSCorey Minyard if (op == HM_ADD) { 1896de5e2ddfSEric Dumazet info = smi_info_alloc(); 1897b361e27bSCorey Minyard if (!info) { 1898b361e27bSCorey Minyard rv = -ENOMEM; 1899b361e27bSCorey Minyard goto out; 1900b361e27bSCorey Minyard } 1901b361e27bSCorey Minyard 1902910840f2SCorey Minyard info->io.addr_source = SI_HOTMOD; 1903910840f2SCorey Minyard info->io.si_type = si_type; 1904b361e27bSCorey Minyard info->io.addr_data = addr; 1905b361e27bSCorey Minyard info->io.addr_type = addr_space; 1906b361e27bSCorey Minyard if (addr_space == IPMI_MEM_ADDR_SPACE) 1907b361e27bSCorey Minyard info->io_setup = mem_setup; 1908b361e27bSCorey Minyard else 1909b361e27bSCorey Minyard info->io_setup = port_setup; 1910b361e27bSCorey Minyard 1911b361e27bSCorey Minyard info->io.addr = NULL; 1912b361e27bSCorey Minyard info->io.regspacing = regspacing; 1913b361e27bSCorey Minyard if (!info->io.regspacing) 1914b361e27bSCorey Minyard info->io.regspacing = DEFAULT_REGSPACING; 1915b361e27bSCorey Minyard info->io.regsize = regsize; 1916b361e27bSCorey Minyard if (!info->io.regsize) 19171adc9105SCorey Minyard info->io.regsize = DEFAULT_REGSIZE; 1918b361e27bSCorey Minyard info->io.regshift = regshift; 1919910840f2SCorey Minyard info->io.irq = irq; 1920910840f2SCorey Minyard if (info->io.irq) 1921*4f3e8199SCorey Minyard info->io.irq_setup = ipmi_std_irq_setup; 1922910840f2SCorey Minyard info->io.slave_addr = ipmb; 1923b361e27bSCorey Minyard 19241e89a499SCorey Minyard rv = ipmi_si_add_smi(info); 1925d02b3709SCorey Minyard if (rv) { 19267faefea6SYinghai Lu kfree(info); 1927d02b3709SCorey Minyard goto out; 1928d02b3709SCorey Minyard } 19293f724c40STony Camuso mutex_lock(&smi_infos_lock); 1930d02b3709SCorey Minyard rv = try_smi_init(info); 19313f724c40STony Camuso mutex_unlock(&smi_infos_lock); 1932d02b3709SCorey Minyard if (rv) { 1933d02b3709SCorey Minyard cleanup_one_si(info); 1934d02b3709SCorey Minyard goto out; 19357faefea6SYinghai Lu } 19367faefea6SYinghai Lu } else { 1937b361e27bSCorey Minyard /* remove */ 1938b361e27bSCorey Minyard struct smi_info *e, *tmp_e; 1939b361e27bSCorey Minyard 1940b361e27bSCorey Minyard mutex_lock(&smi_infos_lock); 1941b361e27bSCorey Minyard list_for_each_entry_safe(e, tmp_e, &smi_infos, link) { 1942b361e27bSCorey Minyard if (e->io.addr_type != addr_space) 1943b361e27bSCorey Minyard continue; 1944910840f2SCorey Minyard if (e->io.si_type != si_type) 1945b361e27bSCorey Minyard continue; 1946b361e27bSCorey Minyard if (e->io.addr_data == addr) 1947b361e27bSCorey Minyard cleanup_one_si(e); 1948b361e27bSCorey Minyard } 1949b361e27bSCorey Minyard mutex_unlock(&smi_infos_lock); 1950b361e27bSCorey Minyard } 1951b361e27bSCorey Minyard } 19521d5636ccSCorey Minyard rv = len; 1953b361e27bSCorey Minyard out: 1954b361e27bSCorey Minyard kfree(str); 1955b361e27bSCorey Minyard return rv; 1956b361e27bSCorey Minyard } 1957b0defcdbSCorey Minyard 19582223cbecSBill Pemberton static int hardcode_find_bmc(void) 19591da177e4SLinus Torvalds { 1960a1e9c9ddSRob Herring int ret = -ENODEV; 1961b0defcdbSCorey Minyard int i; 19621da177e4SLinus Torvalds struct smi_info *info; 19631da177e4SLinus Torvalds 1964b0defcdbSCorey Minyard for (i = 0; i < SI_MAX_PARMS; i++) { 1965b0defcdbSCorey Minyard if (!ports[i] && !addrs[i]) 1966b0defcdbSCorey Minyard continue; 19671da177e4SLinus Torvalds 1968de5e2ddfSEric Dumazet info = smi_info_alloc(); 1969b0defcdbSCorey Minyard if (!info) 1970a1e9c9ddSRob Herring return -ENOMEM; 19711da177e4SLinus Torvalds 1972910840f2SCorey Minyard info->io.addr_source = SI_HARDCODED; 1973bb2a08c0SCorey Minyard pr_info(PFX "probing via hardcoded address\n"); 1974b0defcdbSCorey Minyard 19751d5636ccSCorey Minyard if (!si_type[i] || strcmp(si_type[i], "kcs") == 0) { 1976910840f2SCorey Minyard info->io.si_type = SI_KCS; 19771d5636ccSCorey Minyard } else if (strcmp(si_type[i], "smic") == 0) { 1978910840f2SCorey Minyard info->io.si_type = SI_SMIC; 19791d5636ccSCorey Minyard } else if (strcmp(si_type[i], "bt") == 0) { 1980910840f2SCorey Minyard info->io.si_type = SI_BT; 1981b0defcdbSCorey Minyard } else { 1982bb2a08c0SCorey Minyard pr_warn(PFX "Interface type specified for interface %d, was invalid: %s\n", 1983b0defcdbSCorey Minyard i, si_type[i]); 1984b0defcdbSCorey Minyard kfree(info); 1985b0defcdbSCorey Minyard continue; 19861da177e4SLinus Torvalds } 19871da177e4SLinus Torvalds 1988b0defcdbSCorey Minyard if (ports[i]) { 1989b0defcdbSCorey Minyard /* An I/O port */ 1990b0defcdbSCorey Minyard info->io_setup = port_setup; 1991b0defcdbSCorey Minyard info->io.addr_data = ports[i]; 1992b0defcdbSCorey Minyard info->io.addr_type = IPMI_IO_ADDR_SPACE; 1993b0defcdbSCorey Minyard } else if (addrs[i]) { 1994b0defcdbSCorey Minyard /* A memory port */ 19951da177e4SLinus Torvalds info->io_setup = mem_setup; 1996b0defcdbSCorey Minyard info->io.addr_data = addrs[i]; 1997b0defcdbSCorey Minyard info->io.addr_type = IPMI_MEM_ADDR_SPACE; 1998b0defcdbSCorey Minyard } else { 1999bb2a08c0SCorey Minyard pr_warn(PFX "Interface type specified for interface %d, but port and address were not set or set to zero.\n", 2000bb2a08c0SCorey Minyard i); 2001b0defcdbSCorey Minyard kfree(info); 2002b0defcdbSCorey Minyard continue; 2003b0defcdbSCorey Minyard } 2004b0defcdbSCorey Minyard 20051da177e4SLinus Torvalds info->io.addr = NULL; 2006b0defcdbSCorey Minyard info->io.regspacing = regspacings[i]; 20071da177e4SLinus Torvalds if (!info->io.regspacing) 20081da177e4SLinus Torvalds info->io.regspacing = DEFAULT_REGSPACING; 2009b0defcdbSCorey Minyard info->io.regsize = regsizes[i]; 20101da177e4SLinus Torvalds if (!info->io.regsize) 20111adc9105SCorey Minyard info->io.regsize = DEFAULT_REGSIZE; 2012b0defcdbSCorey Minyard info->io.regshift = regshifts[i]; 2013910840f2SCorey Minyard info->io.irq = irqs[i]; 2014910840f2SCorey Minyard if (info->io.irq) 2015*4f3e8199SCorey Minyard info->io.irq_setup = ipmi_std_irq_setup; 2016910840f2SCorey Minyard info->io.slave_addr = slave_addrs[i]; 20171da177e4SLinus Torvalds 20181e89a499SCorey Minyard if (!ipmi_si_add_smi(info)) { 20193f724c40STony Camuso mutex_lock(&smi_infos_lock); 20202407d77aSMatthew Garrett if (try_smi_init(info)) 20212407d77aSMatthew Garrett cleanup_one_si(info); 20223f724c40STony Camuso mutex_unlock(&smi_infos_lock); 2023a1e9c9ddSRob Herring ret = 0; 20247faefea6SYinghai Lu } else { 20257faefea6SYinghai Lu kfree(info); 20267faefea6SYinghai Lu } 20271da177e4SLinus Torvalds } 2028a1e9c9ddSRob Herring return ret; 2029b0defcdbSCorey Minyard } 20301da177e4SLinus Torvalds 20318466361aSLen Brown #ifdef CONFIG_ACPI 20321da177e4SLinus Torvalds 2033c305e3d3SCorey Minyard /* 2034c305e3d3SCorey Minyard * Once we get an ACPI failure, we don't try any more, because we go 2035c305e3d3SCorey Minyard * through the tables sequentially. Once we don't find a table, there 2036c305e3d3SCorey Minyard * are no more. 2037c305e3d3SCorey Minyard */ 20380c8204b3SRandy Dunlap static int acpi_failure; 20391da177e4SLinus Torvalds 20401da177e4SLinus Torvalds /* For GPE-type interrupts. */ 20418b6cd8adSLin Ming static u32 ipmi_acpi_gpe(acpi_handle gpe_device, 20428b6cd8adSLin Ming u32 gpe_number, void *context) 20431da177e4SLinus Torvalds { 2044*4f3e8199SCorey Minyard struct si_sm_io *io = context; 20451da177e4SLinus Torvalds 2046*4f3e8199SCorey Minyard ipmi_si_irq_handler(io->irq, io->irq_handler_data); 20471da177e4SLinus Torvalds return ACPI_INTERRUPT_HANDLED; 20481da177e4SLinus Torvalds } 20491da177e4SLinus Torvalds 2050*4f3e8199SCorey Minyard static void acpi_gpe_irq_cleanup(struct si_sm_io *io) 2051b0defcdbSCorey Minyard { 2052*4f3e8199SCorey Minyard if (!io->irq) 2053b0defcdbSCorey Minyard return; 2054b0defcdbSCorey Minyard 2055*4f3e8199SCorey Minyard ipmi_irq_start_cleanup(io); 2056*4f3e8199SCorey Minyard acpi_remove_gpe_handler(NULL, io->irq, &ipmi_acpi_gpe); 2057b0defcdbSCorey Minyard } 2058b0defcdbSCorey Minyard 2059*4f3e8199SCorey Minyard static int acpi_gpe_irq_setup(struct si_sm_io *io) 20601da177e4SLinus Torvalds { 20611da177e4SLinus Torvalds acpi_status status; 20621da177e4SLinus Torvalds 2063*4f3e8199SCorey Minyard if (!io->irq) 20641da177e4SLinus Torvalds return 0; 20651da177e4SLinus Torvalds 20661da177e4SLinus Torvalds status = acpi_install_gpe_handler(NULL, 2067*4f3e8199SCorey Minyard io->irq, 20681da177e4SLinus Torvalds ACPI_GPE_LEVEL_TRIGGERED, 20691da177e4SLinus Torvalds &ipmi_acpi_gpe, 2070*4f3e8199SCorey Minyard io); 20711da177e4SLinus Torvalds if (status != AE_OK) { 2072*4f3e8199SCorey Minyard dev_warn(io->dev, 2073*4f3e8199SCorey Minyard "Unable to claim ACPI GPE %d, running polled\n", 2074*4f3e8199SCorey Minyard io->irq); 2075*4f3e8199SCorey Minyard io->irq = 0; 20761da177e4SLinus Torvalds return -EINVAL; 20771da177e4SLinus Torvalds } else { 2078*4f3e8199SCorey Minyard io->irq_cleanup = acpi_gpe_irq_cleanup; 2079*4f3e8199SCorey Minyard ipmi_irq_finish_setup(io); 2080*4f3e8199SCorey Minyard dev_info(io->dev, "Using ACPI GPE %d\n", io->irq); 20811da177e4SLinus Torvalds return 0; 20821da177e4SLinus Torvalds } 20831da177e4SLinus Torvalds } 20841da177e4SLinus Torvalds 20851da177e4SLinus Torvalds /* 20861da177e4SLinus Torvalds * Defined at 2087631dd1a8SJustin P. Mattock * http://h21007.www2.hp.com/portal/download/files/unprot/hpspmi.pdf 20881da177e4SLinus Torvalds */ 20891da177e4SLinus Torvalds struct SPMITable { 20901da177e4SLinus Torvalds s8 Signature[4]; 20911da177e4SLinus Torvalds u32 Length; 20921da177e4SLinus Torvalds u8 Revision; 20931da177e4SLinus Torvalds u8 Checksum; 20941da177e4SLinus Torvalds s8 OEMID[6]; 20951da177e4SLinus Torvalds s8 OEMTableID[8]; 20961da177e4SLinus Torvalds s8 OEMRevision[4]; 20971da177e4SLinus Torvalds s8 CreatorID[4]; 20981da177e4SLinus Torvalds s8 CreatorRevision[4]; 20991da177e4SLinus Torvalds u8 InterfaceType; 21001da177e4SLinus Torvalds u8 IPMIlegacy; 21011da177e4SLinus Torvalds s16 SpecificationRevision; 21021da177e4SLinus Torvalds 21031da177e4SLinus Torvalds /* 21041da177e4SLinus Torvalds * Bit 0 - SCI interrupt supported 21051da177e4SLinus Torvalds * Bit 1 - I/O APIC/SAPIC 21061da177e4SLinus Torvalds */ 21071da177e4SLinus Torvalds u8 InterruptType; 21081da177e4SLinus Torvalds 2109c305e3d3SCorey Minyard /* 2110c305e3d3SCorey Minyard * If bit 0 of InterruptType is set, then this is the SCI 2111c305e3d3SCorey Minyard * interrupt in the GPEx_STS register. 2112c305e3d3SCorey Minyard */ 21131da177e4SLinus Torvalds u8 GPE; 21141da177e4SLinus Torvalds 21151da177e4SLinus Torvalds s16 Reserved; 21161da177e4SLinus Torvalds 2117c305e3d3SCorey Minyard /* 2118c305e3d3SCorey Minyard * If bit 1 of InterruptType is set, then this is the I/O 2119c305e3d3SCorey Minyard * APIC/SAPIC interrupt. 2120c305e3d3SCorey Minyard */ 21211da177e4SLinus Torvalds u32 GlobalSystemInterrupt; 21221da177e4SLinus Torvalds 21231da177e4SLinus Torvalds /* The actual register address. */ 21241da177e4SLinus Torvalds struct acpi_generic_address addr; 21251da177e4SLinus Torvalds 21261da177e4SLinus Torvalds u8 UID[4]; 21271da177e4SLinus Torvalds 21281da177e4SLinus Torvalds s8 spmi_id[1]; /* A '\0' terminated array starts here. */ 21291da177e4SLinus Torvalds }; 21301da177e4SLinus Torvalds 21312223cbecSBill Pemberton static int try_init_spmi(struct SPMITable *spmi) 21321da177e4SLinus Torvalds { 21331da177e4SLinus Torvalds struct smi_info *info; 2134d02b3709SCorey Minyard int rv; 21351da177e4SLinus Torvalds 21361da177e4SLinus Torvalds if (spmi->IPMIlegacy != 1) { 2137bb2a08c0SCorey Minyard pr_info(PFX "Bad SPMI legacy %d\n", spmi->IPMIlegacy); 21381da177e4SLinus Torvalds return -ENODEV; 21391da177e4SLinus Torvalds } 21401da177e4SLinus Torvalds 2141de5e2ddfSEric Dumazet info = smi_info_alloc(); 2142b0defcdbSCorey Minyard if (!info) { 2143bb2a08c0SCorey Minyard pr_err(PFX "Could not allocate SI data (3)\n"); 2144b0defcdbSCorey Minyard return -ENOMEM; 2145b0defcdbSCorey Minyard } 2146b0defcdbSCorey Minyard 2147910840f2SCorey Minyard info->io.addr_source = SI_SPMI; 2148bb2a08c0SCorey Minyard pr_info(PFX "probing via SPMI\n"); 21491da177e4SLinus Torvalds 21501da177e4SLinus Torvalds /* Figure out the interface type. */ 2151c305e3d3SCorey Minyard switch (spmi->InterfaceType) { 21521da177e4SLinus Torvalds case 1: /* KCS */ 2153910840f2SCorey Minyard info->io.si_type = SI_KCS; 21541da177e4SLinus Torvalds break; 21551da177e4SLinus Torvalds case 2: /* SMIC */ 2156910840f2SCorey Minyard info->io.si_type = SI_SMIC; 21571da177e4SLinus Torvalds break; 21581da177e4SLinus Torvalds case 3: /* BT */ 2159910840f2SCorey Minyard info->io.si_type = SI_BT; 21601da177e4SLinus Torvalds break; 2161ab42bf24SCorey Minyard case 4: /* SSIF, just ignore */ 2162ab42bf24SCorey Minyard kfree(info); 2163ab42bf24SCorey Minyard return -EIO; 21641da177e4SLinus Torvalds default: 2165bb2a08c0SCorey Minyard pr_info(PFX "Unknown ACPI/SPMI SI type %d\n", 21661da177e4SLinus Torvalds spmi->InterfaceType); 2167b0defcdbSCorey Minyard kfree(info); 21681da177e4SLinus Torvalds return -EIO; 21691da177e4SLinus Torvalds } 21701da177e4SLinus Torvalds 21711da177e4SLinus Torvalds if (spmi->InterruptType & 1) { 21721da177e4SLinus Torvalds /* We've got a GPE interrupt. */ 2173910840f2SCorey Minyard info->io.irq = spmi->GPE; 2174*4f3e8199SCorey Minyard info->io.irq_setup = acpi_gpe_irq_setup; 21751da177e4SLinus Torvalds } else if (spmi->InterruptType & 2) { 21761da177e4SLinus Torvalds /* We've got an APIC/SAPIC interrupt. */ 2177910840f2SCorey Minyard info->io.irq = spmi->GlobalSystemInterrupt; 2178*4f3e8199SCorey Minyard info->io.irq_setup = ipmi_std_irq_setup; 21791da177e4SLinus Torvalds } else { 21801da177e4SLinus Torvalds /* Use the default interrupt setting. */ 2181910840f2SCorey Minyard info->io.irq = 0; 2182*4f3e8199SCorey Minyard info->io.irq_setup = NULL; 21831da177e4SLinus Torvalds } 21841da177e4SLinus Torvalds 218515a58ed1SAlexey Starikovskiy if (spmi->addr.bit_width) { 218635bc37a0SCorey Minyard /* A (hopefully) properly formed register bit width. */ 218715a58ed1SAlexey Starikovskiy info->io.regspacing = spmi->addr.bit_width / 8; 218835bc37a0SCorey Minyard } else { 218935bc37a0SCorey Minyard info->io.regspacing = DEFAULT_REGSPACING; 219035bc37a0SCorey Minyard } 2191b0defcdbSCorey Minyard info->io.regsize = info->io.regspacing; 219215a58ed1SAlexey Starikovskiy info->io.regshift = spmi->addr.bit_offset; 21931da177e4SLinus Torvalds 219415a58ed1SAlexey Starikovskiy if (spmi->addr.space_id == ACPI_ADR_SPACE_SYSTEM_MEMORY) { 21951da177e4SLinus Torvalds info->io_setup = mem_setup; 21968fe1425aSCorey Minyard info->io.addr_type = IPMI_MEM_ADDR_SPACE; 219715a58ed1SAlexey Starikovskiy } else if (spmi->addr.space_id == ACPI_ADR_SPACE_SYSTEM_IO) { 21981da177e4SLinus Torvalds info->io_setup = port_setup; 21998fe1425aSCorey Minyard info->io.addr_type = IPMI_IO_ADDR_SPACE; 22001da177e4SLinus Torvalds } else { 22011da177e4SLinus Torvalds kfree(info); 2202bb2a08c0SCorey Minyard pr_warn(PFX "Unknown ACPI I/O Address type\n"); 22031da177e4SLinus Torvalds return -EIO; 22041da177e4SLinus Torvalds } 2205b0defcdbSCorey Minyard info->io.addr_data = spmi->addr.address; 22061da177e4SLinus Torvalds 22077bb671e3SYinghai Lu pr_info("ipmi_si: SPMI: %s %#lx regsize %d spacing %d irq %d\n", 22087bb671e3SYinghai Lu (info->io.addr_type == IPMI_IO_ADDR_SPACE) ? "io" : "mem", 22097bb671e3SYinghai Lu info->io.addr_data, info->io.regsize, info->io.regspacing, 2210910840f2SCorey Minyard info->io.irq); 22117bb671e3SYinghai Lu 22121e89a499SCorey Minyard rv = ipmi_si_add_smi(info); 2213d02b3709SCorey Minyard if (rv) 22147faefea6SYinghai Lu kfree(info); 22151da177e4SLinus Torvalds 2216d02b3709SCorey Minyard return rv; 22171da177e4SLinus Torvalds } 2218b0defcdbSCorey Minyard 22192223cbecSBill Pemberton static void spmi_find_bmc(void) 2220b0defcdbSCorey Minyard { 2221b0defcdbSCorey Minyard acpi_status status; 2222b0defcdbSCorey Minyard struct SPMITable *spmi; 2223b0defcdbSCorey Minyard int i; 2224b0defcdbSCorey Minyard 2225b0defcdbSCorey Minyard if (acpi_disabled) 2226b0defcdbSCorey Minyard return; 2227b0defcdbSCorey Minyard 2228b0defcdbSCorey Minyard if (acpi_failure) 2229b0defcdbSCorey Minyard return; 2230b0defcdbSCorey Minyard 2231b0defcdbSCorey Minyard for (i = 0; ; i++) { 223215a58ed1SAlexey Starikovskiy status = acpi_get_table(ACPI_SIG_SPMI, i+1, 223315a58ed1SAlexey Starikovskiy (struct acpi_table_header **)&spmi); 2234b0defcdbSCorey Minyard if (status != AE_OK) 2235b0defcdbSCorey Minyard return; 2236b0defcdbSCorey Minyard 223718a3e0bfSBjorn Helgaas try_init_spmi(spmi); 2238b0defcdbSCorey Minyard } 2239b0defcdbSCorey Minyard } 22401da177e4SLinus Torvalds #endif 22411da177e4SLinus Torvalds 22420944d889SCorey Minyard #if defined(CONFIG_DMI) || defined(CONFIG_ACPI) 2243b72fce52SColin Ian King static struct resource * 2244b72fce52SColin Ian King ipmi_get_info_from_resources(struct platform_device *pdev, 22450944d889SCorey Minyard struct smi_info *info) 22461da177e4SLinus Torvalds { 22470944d889SCorey Minyard struct resource *res, *res_second; 22481da177e4SLinus Torvalds 22490944d889SCorey Minyard res = platform_get_resource(pdev, IORESOURCE_IO, 0); 22500944d889SCorey Minyard if (res) { 22510944d889SCorey Minyard info->io_setup = port_setup; 22520944d889SCorey Minyard info->io.addr_type = IPMI_IO_ADDR_SPACE; 22531da177e4SLinus Torvalds } else { 22540944d889SCorey Minyard res = platform_get_resource(pdev, IORESOURCE_MEM, 0); 22550944d889SCorey Minyard if (res) { 22560944d889SCorey Minyard info->io_setup = mem_setup; 22570944d889SCorey Minyard info->io.addr_type = IPMI_MEM_ADDR_SPACE; 22580944d889SCorey Minyard } 22590944d889SCorey Minyard } 22600944d889SCorey Minyard if (!res) { 22610944d889SCorey Minyard dev_err(&pdev->dev, "no I/O or memory address\n"); 22620944d889SCorey Minyard return NULL; 22630944d889SCorey Minyard } 22640944d889SCorey Minyard info->io.addr_data = res->start; 22650944d889SCorey Minyard 22660944d889SCorey Minyard info->io.regspacing = DEFAULT_REGSPACING; 22670944d889SCorey Minyard res_second = platform_get_resource(pdev, 22680944d889SCorey Minyard (info->io.addr_type == IPMI_IO_ADDR_SPACE) ? 22690944d889SCorey Minyard IORESOURCE_IO : IORESOURCE_MEM, 22700944d889SCorey Minyard 1); 22710944d889SCorey Minyard if (res_second) { 22720944d889SCorey Minyard if (res_second->start > info->io.addr_data) 22730944d889SCorey Minyard info->io.regspacing = 22740944d889SCorey Minyard res_second->start - info->io.addr_data; 22750944d889SCorey Minyard } 22760944d889SCorey Minyard info->io.regsize = DEFAULT_REGSIZE; 22770944d889SCorey Minyard info->io.regshift = 0; 22780944d889SCorey Minyard 22790944d889SCorey Minyard return res; 22801da177e4SLinus Torvalds } 22811da177e4SLinus Torvalds 22820944d889SCorey Minyard #endif 22831da177e4SLinus Torvalds 22840944d889SCorey Minyard #ifdef CONFIG_DMI 22850944d889SCorey Minyard static int dmi_ipmi_probe(struct platform_device *pdev) 22861da177e4SLinus Torvalds { 22871da177e4SLinus Torvalds struct smi_info *info; 22880944d889SCorey Minyard u8 type, slave_addr; 22890944d889SCorey Minyard int rv; 22900944d889SCorey Minyard 22910944d889SCorey Minyard if (!si_trydmi) 22920944d889SCorey Minyard return -ENODEV; 22930944d889SCorey Minyard 22940944d889SCorey Minyard rv = device_property_read_u8(&pdev->dev, "ipmi-type", &type); 22950944d889SCorey Minyard if (rv) 22960944d889SCorey Minyard return -ENODEV; 22971da177e4SLinus Torvalds 2298de5e2ddfSEric Dumazet info = smi_info_alloc(); 2299b0defcdbSCorey Minyard if (!info) { 2300bb2a08c0SCorey Minyard pr_err(PFX "Could not allocate SI data\n"); 23010944d889SCorey Minyard return -ENOMEM; 2302b0defcdbSCorey Minyard } 2303b0defcdbSCorey Minyard 2304910840f2SCorey Minyard info->io.addr_source = SI_SMBIOS; 2305bb2a08c0SCorey Minyard pr_info(PFX "probing via SMBIOS\n"); 23061da177e4SLinus Torvalds 23070944d889SCorey Minyard switch (type) { 23080944d889SCorey Minyard case IPMI_DMI_TYPE_KCS: 2309910840f2SCorey Minyard info->io.si_type = SI_KCS; 23101da177e4SLinus Torvalds break; 23110944d889SCorey Minyard case IPMI_DMI_TYPE_SMIC: 2312910840f2SCorey Minyard info->io.si_type = SI_SMIC; 23131da177e4SLinus Torvalds break; 23140944d889SCorey Minyard case IPMI_DMI_TYPE_BT: 2315910840f2SCorey Minyard info->io.si_type = SI_BT; 23161da177e4SLinus Torvalds break; 23171da177e4SLinus Torvalds default: 231880cd6920SJesper Juhl kfree(info); 23190944d889SCorey Minyard return -EINVAL; 23201da177e4SLinus Torvalds } 23211da177e4SLinus Torvalds 23220944d889SCorey Minyard if (!ipmi_get_info_from_resources(pdev, info)) { 23230944d889SCorey Minyard rv = -EINVAL; 23240944d889SCorey Minyard goto err_free; 2325b0defcdbSCorey Minyard } 2326b0defcdbSCorey Minyard 23270944d889SCorey Minyard rv = device_property_read_u8(&pdev->dev, "slave-addr", &slave_addr); 23280944d889SCorey Minyard if (rv) { 23290944d889SCorey Minyard dev_warn(&pdev->dev, "device has no slave-addr property"); 2330910840f2SCorey Minyard info->io.slave_addr = 0x20; 23310944d889SCorey Minyard } else { 2332910840f2SCorey Minyard info->io.slave_addr = slave_addr; 23330944d889SCorey Minyard } 23341da177e4SLinus Torvalds 2335910840f2SCorey Minyard info->io.irq = platform_get_irq(pdev, 0); 2336910840f2SCorey Minyard if (info->io.irq > 0) 2337*4f3e8199SCorey Minyard info->io.irq_setup = ipmi_std_irq_setup; 23380944d889SCorey Minyard else 2339910840f2SCorey Minyard info->io.irq = 0; 23400944d889SCorey Minyard 2341910840f2SCorey Minyard info->io.dev = &pdev->dev; 23421da177e4SLinus Torvalds 23437bb671e3SYinghai Lu pr_info("ipmi_si: SMBIOS: %s %#lx regsize %d spacing %d irq %d\n", 23447bb671e3SYinghai Lu (info->io.addr_type == IPMI_IO_ADDR_SPACE) ? "io" : "mem", 23457bb671e3SYinghai Lu info->io.addr_data, info->io.regsize, info->io.regspacing, 2346910840f2SCorey Minyard info->io.irq); 23477bb671e3SYinghai Lu 23481e89a499SCorey Minyard if (ipmi_si_add_smi(info)) 23497faefea6SYinghai Lu kfree(info); 23501da177e4SLinus Torvalds 23510944d889SCorey Minyard return 0; 23520944d889SCorey Minyard 23530944d889SCorey Minyard err_free: 23540944d889SCorey Minyard kfree(info); 23550944d889SCorey Minyard return rv; 23560944d889SCorey Minyard } 23570944d889SCorey Minyard #else 23580944d889SCorey Minyard static int dmi_ipmi_probe(struct platform_device *pdev) 2359b0defcdbSCorey Minyard { 23600944d889SCorey Minyard return -ENODEV; 23611da177e4SLinus Torvalds } 2362a9fad4ccSMatt Domsch #endif /* CONFIG_DMI */ 23631da177e4SLinus Torvalds 23641da177e4SLinus Torvalds #ifdef CONFIG_PCI 23651da177e4SLinus Torvalds 23661da177e4SLinus Torvalds #define PCI_ERMC_CLASSCODE 0x0C0700 2367b0defcdbSCorey Minyard #define PCI_ERMC_CLASSCODE_MASK 0xffffff00 2368b0defcdbSCorey Minyard #define PCI_ERMC_CLASSCODE_TYPE_MASK 0xff 2369b0defcdbSCorey Minyard #define PCI_ERMC_CLASSCODE_TYPE_SMIC 0x00 2370b0defcdbSCorey Minyard #define PCI_ERMC_CLASSCODE_TYPE_KCS 0x01 2371b0defcdbSCorey Minyard #define PCI_ERMC_CLASSCODE_TYPE_BT 0x02 2372b0defcdbSCorey Minyard 23731da177e4SLinus Torvalds #define PCI_HP_VENDOR_ID 0x103C 23741da177e4SLinus Torvalds #define PCI_MMC_DEVICE_ID 0x121A 23751da177e4SLinus Torvalds #define PCI_MMC_ADDR_CW 0x10 23761da177e4SLinus Torvalds 2377910840f2SCorey Minyard static void ipmi_pci_cleanup(struct si_sm_io *io) 23781da177e4SLinus Torvalds { 2379910840f2SCorey Minyard struct pci_dev *pdev = io->addr_source_data; 2380b0defcdbSCorey Minyard 2381b0defcdbSCorey Minyard pci_disable_device(pdev); 2382b0defcdbSCorey Minyard } 2383b0defcdbSCorey Minyard 23842223cbecSBill Pemberton static int ipmi_pci_probe_regspacing(struct smi_info *info) 2385a6c16c28SCorey Minyard { 2386910840f2SCorey Minyard if (info->io.si_type == SI_KCS) { 2387a6c16c28SCorey Minyard unsigned char status; 2388a6c16c28SCorey Minyard int regspacing; 2389a6c16c28SCorey Minyard 2390a6c16c28SCorey Minyard info->io.regsize = DEFAULT_REGSIZE; 2391a6c16c28SCorey Minyard info->io.regshift = 0; 2392a6c16c28SCorey Minyard info->io_size = 2; 2393a6c16c28SCorey Minyard info->handlers = &kcs_smi_handlers; 2394a6c16c28SCorey Minyard 2395a6c16c28SCorey Minyard /* detect 1, 4, 16byte spacing */ 2396a6c16c28SCorey Minyard for (regspacing = DEFAULT_REGSPACING; regspacing <= 16;) { 2397a6c16c28SCorey Minyard info->io.regspacing = regspacing; 2398a6c16c28SCorey Minyard if (info->io_setup(info)) { 2399910840f2SCorey Minyard dev_err(info->io.dev, 2400a6c16c28SCorey Minyard "Could not setup I/O space\n"); 2401a6c16c28SCorey Minyard return DEFAULT_REGSPACING; 2402a6c16c28SCorey Minyard } 2403a6c16c28SCorey Minyard /* write invalid cmd */ 2404a6c16c28SCorey Minyard info->io.outputb(&info->io, 1, 0x10); 2405a6c16c28SCorey Minyard /* read status back */ 2406a6c16c28SCorey Minyard status = info->io.inputb(&info->io, 1); 2407a6c16c28SCorey Minyard info->io_cleanup(info); 2408a6c16c28SCorey Minyard if (status) 2409a6c16c28SCorey Minyard return regspacing; 2410a6c16c28SCorey Minyard regspacing *= 4; 2411a6c16c28SCorey Minyard } 2412a6c16c28SCorey Minyard } 2413a6c16c28SCorey Minyard return DEFAULT_REGSPACING; 2414a6c16c28SCorey Minyard } 2415a6c16c28SCorey Minyard 24162223cbecSBill Pemberton static int ipmi_pci_probe(struct pci_dev *pdev, 2417b0defcdbSCorey Minyard const struct pci_device_id *ent) 2418b0defcdbSCorey Minyard { 2419b0defcdbSCorey Minyard int rv; 2420b0defcdbSCorey Minyard int class_type = pdev->class & PCI_ERMC_CLASSCODE_TYPE_MASK; 24211da177e4SLinus Torvalds struct smi_info *info; 24221da177e4SLinus Torvalds 2423de5e2ddfSEric Dumazet info = smi_info_alloc(); 2424b0defcdbSCorey Minyard if (!info) 24251cd441f9SDave Jones return -ENOMEM; 24261da177e4SLinus Torvalds 2427910840f2SCorey Minyard info->io.addr_source = SI_PCI; 2428279fbd0cSMyron Stowe dev_info(&pdev->dev, "probing via PCI"); 24291da177e4SLinus Torvalds 2430b0defcdbSCorey Minyard switch (class_type) { 2431b0defcdbSCorey Minyard case PCI_ERMC_CLASSCODE_TYPE_SMIC: 2432910840f2SCorey Minyard info->io.si_type = SI_SMIC; 2433b0defcdbSCorey Minyard break; 2434b0defcdbSCorey Minyard 2435b0defcdbSCorey Minyard case PCI_ERMC_CLASSCODE_TYPE_KCS: 2436910840f2SCorey Minyard info->io.si_type = SI_KCS; 2437b0defcdbSCorey Minyard break; 2438b0defcdbSCorey Minyard 2439b0defcdbSCorey Minyard case PCI_ERMC_CLASSCODE_TYPE_BT: 2440910840f2SCorey Minyard info->io.si_type = SI_BT; 2441b0defcdbSCorey Minyard break; 2442b0defcdbSCorey Minyard 2443b0defcdbSCorey Minyard default: 2444b0defcdbSCorey Minyard kfree(info); 2445279fbd0cSMyron Stowe dev_info(&pdev->dev, "Unknown IPMI type: %d\n", class_type); 24461cd441f9SDave Jones return -ENOMEM; 2447e8b33617SCorey Minyard } 24481da177e4SLinus Torvalds 2449b0defcdbSCorey Minyard rv = pci_enable_device(pdev); 2450b0defcdbSCorey Minyard if (rv) { 2451279fbd0cSMyron Stowe dev_err(&pdev->dev, "couldn't enable PCI device\n"); 2452b0defcdbSCorey Minyard kfree(info); 2453b0defcdbSCorey Minyard return rv; 24541da177e4SLinus Torvalds } 24551da177e4SLinus Torvalds 2456910840f2SCorey Minyard info->io.addr_source_cleanup = ipmi_pci_cleanup; 2457910840f2SCorey Minyard info->io.addr_source_data = pdev; 24581da177e4SLinus Torvalds 2459b0defcdbSCorey Minyard if (pci_resource_flags(pdev, 0) & IORESOURCE_IO) { 24601da177e4SLinus Torvalds info->io_setup = port_setup; 2461b0defcdbSCorey Minyard info->io.addr_type = IPMI_IO_ADDR_SPACE; 2462b0defcdbSCorey Minyard } else { 2463b0defcdbSCorey Minyard info->io_setup = mem_setup; 2464b0defcdbSCorey Minyard info->io.addr_type = IPMI_MEM_ADDR_SPACE; 2465b0defcdbSCorey Minyard } 2466b0defcdbSCorey Minyard info->io.addr_data = pci_resource_start(pdev, 0); 2467b0defcdbSCorey Minyard 2468a6c16c28SCorey Minyard info->io.regspacing = ipmi_pci_probe_regspacing(info); 2469a6c16c28SCorey Minyard info->io.regsize = DEFAULT_REGSIZE; 2470b0defcdbSCorey Minyard info->io.regshift = 0; 24711da177e4SLinus Torvalds 2472910840f2SCorey Minyard info->io.irq = pdev->irq; 2473910840f2SCorey Minyard if (info->io.irq) 2474*4f3e8199SCorey Minyard info->io.irq_setup = ipmi_std_irq_setup; 24751da177e4SLinus Torvalds 2476910840f2SCorey Minyard info->io.dev = &pdev->dev; 2477fca3b747SCorey Minyard pci_set_drvdata(pdev, info); 247850c812b2SCorey Minyard 2479279fbd0cSMyron Stowe dev_info(&pdev->dev, "%pR regsize %d spacing %d irq %d\n", 2480279fbd0cSMyron Stowe &pdev->resource[0], info->io.regsize, info->io.regspacing, 2481910840f2SCorey Minyard info->io.irq); 2482279fbd0cSMyron Stowe 24831e89a499SCorey Minyard rv = ipmi_si_add_smi(info); 2484d02b3709SCorey Minyard if (rv) { 24857faefea6SYinghai Lu kfree(info); 2486d02b3709SCorey Minyard pci_disable_device(pdev); 2487d02b3709SCorey Minyard } 24887faefea6SYinghai Lu 2489d02b3709SCorey Minyard return rv; 24901da177e4SLinus Torvalds } 24911da177e4SLinus Torvalds 249239af33fcSBill Pemberton static void ipmi_pci_remove(struct pci_dev *pdev) 24931da177e4SLinus Torvalds { 2494fca3b747SCorey Minyard struct smi_info *info = pci_get_drvdata(pdev); 2495fca3b747SCorey Minyard cleanup_one_si(info); 24961da177e4SLinus Torvalds } 24971da177e4SLinus Torvalds 249881d02b7fSCorey Minyard static const struct pci_device_id ipmi_pci_devices[] = { 2499b0defcdbSCorey Minyard { PCI_DEVICE(PCI_HP_VENDOR_ID, PCI_MMC_DEVICE_ID) }, 2500248bdd5eSKees Cook { PCI_DEVICE_CLASS(PCI_ERMC_CLASSCODE, PCI_ERMC_CLASSCODE_MASK) }, 2501248bdd5eSKees Cook { 0, } 2502b0defcdbSCorey Minyard }; 2503b0defcdbSCorey Minyard MODULE_DEVICE_TABLE(pci, ipmi_pci_devices); 2504b0defcdbSCorey Minyard 2505b0defcdbSCorey Minyard static struct pci_driver ipmi_pci_driver = { 2506b0defcdbSCorey Minyard .name = DEVICE_NAME, 2507b0defcdbSCorey Minyard .id_table = ipmi_pci_devices, 2508b0defcdbSCorey Minyard .probe = ipmi_pci_probe, 2509bcd2982aSGreg Kroah-Hartman .remove = ipmi_pci_remove, 2510b0defcdbSCorey Minyard }; 2511b0defcdbSCorey Minyard #endif /* CONFIG_PCI */ 2512b0defcdbSCorey Minyard 2513a1e9c9ddSRob Herring #ifdef CONFIG_OF 25140fbcf4afSCorey Minyard static const struct of_device_id of_ipmi_match[] = { 25150fbcf4afSCorey Minyard { .type = "ipmi", .compatible = "ipmi-kcs", 25160fbcf4afSCorey Minyard .data = (void *)(unsigned long) SI_KCS }, 25170fbcf4afSCorey Minyard { .type = "ipmi", .compatible = "ipmi-smic", 25180fbcf4afSCorey Minyard .data = (void *)(unsigned long) SI_SMIC }, 25190fbcf4afSCorey Minyard { .type = "ipmi", .compatible = "ipmi-bt", 25200fbcf4afSCorey Minyard .data = (void *)(unsigned long) SI_BT }, 25210fbcf4afSCorey Minyard {}, 25220fbcf4afSCorey Minyard }; 252366f44018SLuis de Bethencourt MODULE_DEVICE_TABLE(of, of_ipmi_match); 25240fbcf4afSCorey Minyard 2525910840f2SCorey Minyard static int of_ipmi_probe(struct platform_device *pdev) 25260fbcf4afSCorey Minyard { 2527b1608d69SGrant Likely const struct of_device_id *match; 2528dba9b4f6SCorey Minyard struct smi_info *info; 2529dba9b4f6SCorey Minyard struct resource resource; 2530da81c3b9SRob Herring const __be32 *regsize, *regspacing, *regshift; 2531910840f2SCorey Minyard struct device_node *np = pdev->dev.of_node; 2532dba9b4f6SCorey Minyard int ret; 2533dba9b4f6SCorey Minyard int proplen; 2534dba9b4f6SCorey Minyard 2535910840f2SCorey Minyard dev_info(&pdev->dev, "probing via device tree\n"); 2536dba9b4f6SCorey Minyard 2537910840f2SCorey Minyard match = of_match_device(of_ipmi_match, &pdev->dev); 2538b1608d69SGrant Likely if (!match) 25390fbcf4afSCorey Minyard return -ENODEV; 2540a1e9c9ddSRob Herring 254108dc4169SBenjamin Herrenschmidt if (!of_device_is_available(np)) 254208dc4169SBenjamin Herrenschmidt return -EINVAL; 254308dc4169SBenjamin Herrenschmidt 2544dba9b4f6SCorey Minyard ret = of_address_to_resource(np, 0, &resource); 2545dba9b4f6SCorey Minyard if (ret) { 2546910840f2SCorey Minyard dev_warn(&pdev->dev, PFX "invalid address from OF\n"); 2547dba9b4f6SCorey Minyard return ret; 2548dba9b4f6SCorey Minyard } 2549dba9b4f6SCorey Minyard 25509c25099dSStephen Rothwell regsize = of_get_property(np, "reg-size", &proplen); 2551dba9b4f6SCorey Minyard if (regsize && proplen != 4) { 2552910840f2SCorey Minyard dev_warn(&pdev->dev, PFX "invalid regsize from OF\n"); 2553dba9b4f6SCorey Minyard return -EINVAL; 2554dba9b4f6SCorey Minyard } 2555dba9b4f6SCorey Minyard 25569c25099dSStephen Rothwell regspacing = of_get_property(np, "reg-spacing", &proplen); 2557dba9b4f6SCorey Minyard if (regspacing && proplen != 4) { 2558910840f2SCorey Minyard dev_warn(&pdev->dev, PFX "invalid regspacing from OF\n"); 2559dba9b4f6SCorey Minyard return -EINVAL; 2560dba9b4f6SCorey Minyard } 2561dba9b4f6SCorey Minyard 25629c25099dSStephen Rothwell regshift = of_get_property(np, "reg-shift", &proplen); 2563dba9b4f6SCorey Minyard if (regshift && proplen != 4) { 2564910840f2SCorey Minyard dev_warn(&pdev->dev, PFX "invalid regshift from OF\n"); 2565dba9b4f6SCorey Minyard return -EINVAL; 2566dba9b4f6SCorey Minyard } 2567dba9b4f6SCorey Minyard 2568de5e2ddfSEric Dumazet info = smi_info_alloc(); 2569dba9b4f6SCorey Minyard 2570dba9b4f6SCorey Minyard if (!info) { 2571910840f2SCorey Minyard dev_err(&pdev->dev, 2572279fbd0cSMyron Stowe "could not allocate memory for OF probe\n"); 2573dba9b4f6SCorey Minyard return -ENOMEM; 2574dba9b4f6SCorey Minyard } 2575dba9b4f6SCorey Minyard 2576910840f2SCorey Minyard info->io.si_type = (enum si_type) match->data; 2577910840f2SCorey Minyard info->io.addr_source = SI_DEVICETREE; 2578*4f3e8199SCorey Minyard info->io.irq_setup = ipmi_std_irq_setup; 2579dba9b4f6SCorey Minyard 25803b7ec117SNate Case if (resource.flags & IORESOURCE_IO) { 25813b7ec117SNate Case info->io_setup = port_setup; 25823b7ec117SNate Case info->io.addr_type = IPMI_IO_ADDR_SPACE; 25833b7ec117SNate Case } else { 25843b7ec117SNate Case info->io_setup = mem_setup; 2585dba9b4f6SCorey Minyard info->io.addr_type = IPMI_MEM_ADDR_SPACE; 25863b7ec117SNate Case } 25873b7ec117SNate Case 2588dba9b4f6SCorey Minyard info->io.addr_data = resource.start; 2589dba9b4f6SCorey Minyard 2590da81c3b9SRob Herring info->io.regsize = regsize ? be32_to_cpup(regsize) : DEFAULT_REGSIZE; 2591da81c3b9SRob Herring info->io.regspacing = regspacing ? be32_to_cpup(regspacing) : DEFAULT_REGSPACING; 2592da81c3b9SRob Herring info->io.regshift = regshift ? be32_to_cpup(regshift) : 0; 2593dba9b4f6SCorey Minyard 2594910840f2SCorey Minyard info->io.irq = irq_of_parse_and_map(pdev->dev.of_node, 0); 2595910840f2SCorey Minyard info->io.dev = &pdev->dev; 2596dba9b4f6SCorey Minyard 2597910840f2SCorey Minyard dev_dbg(&pdev->dev, "addr 0x%lx regsize %d spacing %d irq %d\n", 2598dba9b4f6SCorey Minyard info->io.addr_data, info->io.regsize, info->io.regspacing, 2599910840f2SCorey Minyard info->io.irq); 2600dba9b4f6SCorey Minyard 2601910840f2SCorey Minyard dev_set_drvdata(&pdev->dev, info); 2602dba9b4f6SCorey Minyard 26031e89a499SCorey Minyard ret = ipmi_si_add_smi(info); 2604d02b3709SCorey Minyard if (ret) { 26057faefea6SYinghai Lu kfree(info); 2606d02b3709SCorey Minyard return ret; 26077faefea6SYinghai Lu } 26087faefea6SYinghai Lu return 0; 2609dba9b4f6SCorey Minyard } 26100fbcf4afSCorey Minyard #else 26110fbcf4afSCorey Minyard #define of_ipmi_match NULL 26120fbcf4afSCorey Minyard static int of_ipmi_probe(struct platform_device *dev) 26130fbcf4afSCorey Minyard { 26140fbcf4afSCorey Minyard return -ENODEV; 26150fbcf4afSCorey Minyard } 26160fbcf4afSCorey Minyard #endif 26170fbcf4afSCorey Minyard 26180fbcf4afSCorey Minyard #ifdef CONFIG_ACPI 26190944d889SCorey Minyard static int find_slave_address(struct smi_info *info, int slave_addr) 26200944d889SCorey Minyard { 26210944d889SCorey Minyard #ifdef CONFIG_IPMI_DMI_DECODE 26220944d889SCorey Minyard if (!slave_addr) { 26230944d889SCorey Minyard int type = -1; 26240944d889SCorey Minyard u32 flags = IORESOURCE_IO; 26250944d889SCorey Minyard 2626910840f2SCorey Minyard switch (info->io.si_type) { 26270944d889SCorey Minyard case SI_KCS: 26280944d889SCorey Minyard type = IPMI_DMI_TYPE_KCS; 26290944d889SCorey Minyard break; 26300944d889SCorey Minyard case SI_BT: 26310944d889SCorey Minyard type = IPMI_DMI_TYPE_BT; 26320944d889SCorey Minyard break; 26330944d889SCorey Minyard case SI_SMIC: 26340944d889SCorey Minyard type = IPMI_DMI_TYPE_SMIC; 26350944d889SCorey Minyard break; 26360944d889SCorey Minyard } 26370944d889SCorey Minyard 26380944d889SCorey Minyard if (info->io.addr_type == IPMI_MEM_ADDR_SPACE) 26390944d889SCorey Minyard flags = IORESOURCE_MEM; 26400944d889SCorey Minyard 26410944d889SCorey Minyard slave_addr = ipmi_dmi_get_slave_addr(type, flags, 26420944d889SCorey Minyard info->io.addr_data); 26430944d889SCorey Minyard } 26440944d889SCorey Minyard #endif 26450944d889SCorey Minyard 26460944d889SCorey Minyard return slave_addr; 26470944d889SCorey Minyard } 26480944d889SCorey Minyard 2649910840f2SCorey Minyard static int acpi_ipmi_probe(struct platform_device *pdev) 26500fbcf4afSCorey Minyard { 26510fbcf4afSCorey Minyard struct smi_info *info; 26520fbcf4afSCorey Minyard acpi_handle handle; 26530fbcf4afSCorey Minyard acpi_status status; 26540fbcf4afSCorey Minyard unsigned long long tmp; 26550944d889SCorey Minyard struct resource *res; 26560fbcf4afSCorey Minyard int rv = -EINVAL; 26570fbcf4afSCorey Minyard 26589f0257b3SJoe Lawrence if (!si_tryacpi) 26590944d889SCorey Minyard return -ENODEV; 26609f0257b3SJoe Lawrence 2661910840f2SCorey Minyard handle = ACPI_HANDLE(&pdev->dev); 26620fbcf4afSCorey Minyard if (!handle) 26630fbcf4afSCorey Minyard return -ENODEV; 26640fbcf4afSCorey Minyard 26650fbcf4afSCorey Minyard info = smi_info_alloc(); 26660fbcf4afSCorey Minyard if (!info) 26670fbcf4afSCorey Minyard return -ENOMEM; 26680fbcf4afSCorey Minyard 2669910840f2SCorey Minyard info->io.addr_source = SI_ACPI; 2670910840f2SCorey Minyard dev_info(&pdev->dev, PFX "probing via ACPI\n"); 26710fbcf4afSCorey Minyard 26720fbcf4afSCorey Minyard info->addr_info.acpi_info.acpi_handle = handle; 26730fbcf4afSCorey Minyard 26740fbcf4afSCorey Minyard /* _IFT tells us the interface type: KCS, BT, etc */ 26750fbcf4afSCorey Minyard status = acpi_evaluate_integer(handle, "_IFT", NULL, &tmp); 26760fbcf4afSCorey Minyard if (ACPI_FAILURE(status)) { 2677910840f2SCorey Minyard dev_err(&pdev->dev, 2678910840f2SCorey Minyard "Could not find ACPI IPMI interface type\n"); 26790fbcf4afSCorey Minyard goto err_free; 26800fbcf4afSCorey Minyard } 26810fbcf4afSCorey Minyard 26820fbcf4afSCorey Minyard switch (tmp) { 26830fbcf4afSCorey Minyard case 1: 2684910840f2SCorey Minyard info->io.si_type = SI_KCS; 26850fbcf4afSCorey Minyard break; 26860fbcf4afSCorey Minyard case 2: 2687910840f2SCorey Minyard info->io.si_type = SI_SMIC; 26880fbcf4afSCorey Minyard break; 26890fbcf4afSCorey Minyard case 3: 2690910840f2SCorey Minyard info->io.si_type = SI_BT; 26910fbcf4afSCorey Minyard break; 26920fbcf4afSCorey Minyard case 4: /* SSIF, just ignore */ 26930fbcf4afSCorey Minyard rv = -ENODEV; 26940fbcf4afSCorey Minyard goto err_free; 26950fbcf4afSCorey Minyard default: 2696910840f2SCorey Minyard dev_info(&pdev->dev, "unknown IPMI type %lld\n", tmp); 26970fbcf4afSCorey Minyard goto err_free; 26980fbcf4afSCorey Minyard } 26990fbcf4afSCorey Minyard 2700910840f2SCorey Minyard res = ipmi_get_info_from_resources(pdev, info); 27010fbcf4afSCorey Minyard if (!res) { 27020944d889SCorey Minyard rv = -EINVAL; 27030fbcf4afSCorey Minyard goto err_free; 27040fbcf4afSCorey Minyard } 27050fbcf4afSCorey Minyard 27060fbcf4afSCorey Minyard /* If _GPE exists, use it; otherwise use standard interrupts */ 27070fbcf4afSCorey Minyard status = acpi_evaluate_integer(handle, "_GPE", NULL, &tmp); 27080fbcf4afSCorey Minyard if (ACPI_SUCCESS(status)) { 2709910840f2SCorey Minyard info->io.irq = tmp; 2710*4f3e8199SCorey Minyard info->io.irq_setup = acpi_gpe_irq_setup; 27110fbcf4afSCorey Minyard } else { 2712910840f2SCorey Minyard int irq = platform_get_irq(pdev, 0); 27130fbcf4afSCorey Minyard 27140fbcf4afSCorey Minyard if (irq > 0) { 2715910840f2SCorey Minyard info->io.irq = irq; 2716*4f3e8199SCorey Minyard info->io.irq_setup = ipmi_std_irq_setup; 27170fbcf4afSCorey Minyard } 27180fbcf4afSCorey Minyard } 27190fbcf4afSCorey Minyard 2720910840f2SCorey Minyard info->io.slave_addr = find_slave_address(info, info->io.slave_addr); 27210944d889SCorey Minyard 2722910840f2SCorey Minyard info->io.dev = &pdev->dev; 2723910840f2SCorey Minyard platform_set_drvdata(pdev, info); 27240fbcf4afSCorey Minyard 2725910840f2SCorey Minyard dev_info(info->io.dev, "%pR regsize %d spacing %d irq %d\n", 27260fbcf4afSCorey Minyard res, info->io.regsize, info->io.regspacing, 2727910840f2SCorey Minyard info->io.irq); 27280fbcf4afSCorey Minyard 27291e89a499SCorey Minyard rv = ipmi_si_add_smi(info); 27300fbcf4afSCorey Minyard if (rv) 27310fbcf4afSCorey Minyard kfree(info); 27320fbcf4afSCorey Minyard 27330fbcf4afSCorey Minyard return rv; 27340fbcf4afSCorey Minyard 27350fbcf4afSCorey Minyard err_free: 27360fbcf4afSCorey Minyard kfree(info); 27370fbcf4afSCorey Minyard return rv; 27380fbcf4afSCorey Minyard } 27390fbcf4afSCorey Minyard 274081d02b7fSCorey Minyard static const struct acpi_device_id acpi_ipmi_match[] = { 27410fbcf4afSCorey Minyard { "IPI0001", 0 }, 27420fbcf4afSCorey Minyard { }, 27430fbcf4afSCorey Minyard }; 27440fbcf4afSCorey Minyard MODULE_DEVICE_TABLE(acpi, acpi_ipmi_match); 27450fbcf4afSCorey Minyard #else 27460fbcf4afSCorey Minyard static int acpi_ipmi_probe(struct platform_device *dev) 27470fbcf4afSCorey Minyard { 27480fbcf4afSCorey Minyard return -ENODEV; 27490fbcf4afSCorey Minyard } 27500fbcf4afSCorey Minyard #endif 27510fbcf4afSCorey Minyard 2752910840f2SCorey Minyard static int ipmi_probe(struct platform_device *pdev) 27530fbcf4afSCorey Minyard { 2754910840f2SCorey Minyard if (pdev->dev.of_node && of_ipmi_probe(pdev) == 0) 27550fbcf4afSCorey Minyard return 0; 27560fbcf4afSCorey Minyard 2757910840f2SCorey Minyard if (acpi_ipmi_probe(pdev) == 0) 27580944d889SCorey Minyard return 0; 27590944d889SCorey Minyard 2760910840f2SCorey Minyard return dmi_ipmi_probe(pdev); 27610fbcf4afSCorey Minyard } 2762dba9b4f6SCorey Minyard 2763910840f2SCorey Minyard static int ipmi_remove(struct platform_device *pdev) 2764dba9b4f6SCorey Minyard { 2765910840f2SCorey Minyard struct smi_info *info = dev_get_drvdata(&pdev->dev); 27660fbcf4afSCorey Minyard 27670fbcf4afSCorey Minyard cleanup_one_si(info); 2768dba9b4f6SCorey Minyard return 0; 2769dba9b4f6SCorey Minyard } 2770dba9b4f6SCorey Minyard 2771a1e9c9ddSRob Herring static struct platform_driver ipmi_driver = { 27724018294bSGrant Likely .driver = { 2773a1e9c9ddSRob Herring .name = DEVICE_NAME, 27740fbcf4afSCorey Minyard .of_match_table = of_ipmi_match, 27750fbcf4afSCorey Minyard .acpi_match_table = ACPI_PTR(acpi_ipmi_match), 27764018294bSGrant Likely }, 2777a1e9c9ddSRob Herring .probe = ipmi_probe, 2778bcd2982aSGreg Kroah-Hartman .remove = ipmi_remove, 2779dba9b4f6SCorey Minyard }; 2780dba9b4f6SCorey Minyard 2781fdbeb7deSThomas Bogendoerfer #ifdef CONFIG_PARISC 27820618cdfaSHelge Deller static int __init ipmi_parisc_probe(struct parisc_device *dev) 2783fdbeb7deSThomas Bogendoerfer { 2784fdbeb7deSThomas Bogendoerfer struct smi_info *info; 2785dfa19426SGeert Uytterhoeven int rv; 2786fdbeb7deSThomas Bogendoerfer 2787fdbeb7deSThomas Bogendoerfer info = smi_info_alloc(); 2788fdbeb7deSThomas Bogendoerfer 2789fdbeb7deSThomas Bogendoerfer if (!info) { 2790fdbeb7deSThomas Bogendoerfer dev_err(&dev->dev, 2791fdbeb7deSThomas Bogendoerfer "could not allocate memory for PARISC probe\n"); 2792fdbeb7deSThomas Bogendoerfer return -ENOMEM; 2793fdbeb7deSThomas Bogendoerfer } 2794fdbeb7deSThomas Bogendoerfer 2795910840f2SCorey Minyard info->io.si_type = SI_KCS; 2796910840f2SCorey Minyard info->io.addr_source = SI_DEVICETREE; 2797fdbeb7deSThomas Bogendoerfer info->io_setup = mem_setup; 2798fdbeb7deSThomas Bogendoerfer info->io.addr_type = IPMI_MEM_ADDR_SPACE; 2799fdbeb7deSThomas Bogendoerfer info->io.addr_data = dev->hpa.start; 2800fdbeb7deSThomas Bogendoerfer info->io.regsize = 1; 2801fdbeb7deSThomas Bogendoerfer info->io.regspacing = 1; 2802fdbeb7deSThomas Bogendoerfer info->io.regshift = 0; 2803910840f2SCorey Minyard info->io.irq = 0; /* no interrupt */ 2804*4f3e8199SCorey Minyard info->io.irq_setup = NULL; 2805910840f2SCorey Minyard info->io.dev = &dev->dev; 2806fdbeb7deSThomas Bogendoerfer 2807fdbeb7deSThomas Bogendoerfer dev_dbg(&dev->dev, "addr 0x%lx\n", info->io.addr_data); 2808fdbeb7deSThomas Bogendoerfer 2809fdbeb7deSThomas Bogendoerfer dev_set_drvdata(&dev->dev, info); 2810fdbeb7deSThomas Bogendoerfer 28111e89a499SCorey Minyard rv = ipmi_si_add_smi(info); 2812d02b3709SCorey Minyard if (rv) { 2813fdbeb7deSThomas Bogendoerfer kfree(info); 2814d02b3709SCorey Minyard return rv; 2815fdbeb7deSThomas Bogendoerfer } 2816fdbeb7deSThomas Bogendoerfer 2817fdbeb7deSThomas Bogendoerfer return 0; 2818fdbeb7deSThomas Bogendoerfer } 2819fdbeb7deSThomas Bogendoerfer 28200618cdfaSHelge Deller static int __exit ipmi_parisc_remove(struct parisc_device *dev) 2821fdbeb7deSThomas Bogendoerfer { 2822fdbeb7deSThomas Bogendoerfer cleanup_one_si(dev_get_drvdata(&dev->dev)); 2823fdbeb7deSThomas Bogendoerfer return 0; 2824fdbeb7deSThomas Bogendoerfer } 2825fdbeb7deSThomas Bogendoerfer 28260618cdfaSHelge Deller static const struct parisc_device_id ipmi_parisc_tbl[] __initconst = { 2827fdbeb7deSThomas Bogendoerfer { HPHW_MC, HVERSION_REV_ANY_ID, 0x004, 0xC0 }, 2828fdbeb7deSThomas Bogendoerfer { 0, } 2829fdbeb7deSThomas Bogendoerfer }; 2830fdbeb7deSThomas Bogendoerfer 28310618cdfaSHelge Deller MODULE_DEVICE_TABLE(parisc, ipmi_parisc_tbl); 28320618cdfaSHelge Deller 28330618cdfaSHelge Deller static struct parisc_driver ipmi_parisc_driver __refdata = { 2834fdbeb7deSThomas Bogendoerfer .name = "ipmi", 2835fdbeb7deSThomas Bogendoerfer .id_table = ipmi_parisc_tbl, 2836fdbeb7deSThomas Bogendoerfer .probe = ipmi_parisc_probe, 28370618cdfaSHelge Deller .remove = __exit_p(ipmi_parisc_remove), 2838fdbeb7deSThomas Bogendoerfer }; 2839fdbeb7deSThomas Bogendoerfer #endif /* CONFIG_PARISC */ 2840fdbeb7deSThomas Bogendoerfer 284140112ae7SCorey Minyard static int wait_for_msg_done(struct smi_info *smi_info) 28421da177e4SLinus Torvalds { 28431da177e4SLinus Torvalds enum si_sm_result smi_result; 28441da177e4SLinus Torvalds 28451da177e4SLinus Torvalds smi_result = smi_info->handlers->event(smi_info->si_sm, 0); 2846c305e3d3SCorey Minyard for (;;) { 2847c3e7e791SCorey Minyard if (smi_result == SI_SM_CALL_WITH_DELAY || 2848c3e7e791SCorey Minyard smi_result == SI_SM_CALL_WITH_TICK_DELAY) { 2849da4cd8dfSNishanth Aravamudan schedule_timeout_uninterruptible(1); 28501da177e4SLinus Torvalds smi_result = smi_info->handlers->event( 2851e21404dcSXie XiuQi smi_info->si_sm, jiffies_to_usecs(1)); 2852c305e3d3SCorey Minyard } else if (smi_result == SI_SM_CALL_WITHOUT_DELAY) { 28531da177e4SLinus Torvalds smi_result = smi_info->handlers->event( 28541da177e4SLinus Torvalds smi_info->si_sm, 0); 2855c305e3d3SCorey Minyard } else 28561da177e4SLinus Torvalds break; 28571da177e4SLinus Torvalds } 285840112ae7SCorey Minyard if (smi_result == SI_SM_HOSED) 2859c305e3d3SCorey Minyard /* 2860c305e3d3SCorey Minyard * We couldn't get the state machine to run, so whatever's at 2861c305e3d3SCorey Minyard * the port is probably not an IPMI SMI interface. 2862c305e3d3SCorey Minyard */ 286340112ae7SCorey Minyard return -ENODEV; 286440112ae7SCorey Minyard 286540112ae7SCorey Minyard return 0; 28661da177e4SLinus Torvalds } 28671da177e4SLinus Torvalds 286840112ae7SCorey Minyard static int try_get_dev_id(struct smi_info *smi_info) 286940112ae7SCorey Minyard { 287040112ae7SCorey Minyard unsigned char msg[2]; 287140112ae7SCorey Minyard unsigned char *resp; 287240112ae7SCorey Minyard unsigned long resp_len; 287340112ae7SCorey Minyard int rv = 0; 287440112ae7SCorey Minyard 287540112ae7SCorey Minyard resp = kmalloc(IPMI_MAX_MSG_LENGTH, GFP_KERNEL); 287640112ae7SCorey Minyard if (!resp) 287740112ae7SCorey Minyard return -ENOMEM; 287840112ae7SCorey Minyard 287940112ae7SCorey Minyard /* 288040112ae7SCorey Minyard * Do a Get Device ID command, since it comes back with some 288140112ae7SCorey Minyard * useful info. 288240112ae7SCorey Minyard */ 288340112ae7SCorey Minyard msg[0] = IPMI_NETFN_APP_REQUEST << 2; 288440112ae7SCorey Minyard msg[1] = IPMI_GET_DEVICE_ID_CMD; 288540112ae7SCorey Minyard smi_info->handlers->start_transaction(smi_info->si_sm, msg, 2); 288640112ae7SCorey Minyard 288740112ae7SCorey Minyard rv = wait_for_msg_done(smi_info); 288840112ae7SCorey Minyard if (rv) 288940112ae7SCorey Minyard goto out; 289040112ae7SCorey Minyard 28911da177e4SLinus Torvalds resp_len = smi_info->handlers->get_result(smi_info->si_sm, 28921da177e4SLinus Torvalds resp, IPMI_MAX_MSG_LENGTH); 28931da177e4SLinus Torvalds 2894d8c98618SCorey Minyard /* Check and record info from the get device id, in case we need it. */ 2895c468f911SJeremy Kerr rv = ipmi_demangle_device_id(resp[0] >> 2, resp[1], 2896c468f911SJeremy Kerr resp + 2, resp_len - 2, &smi_info->device_id); 28971da177e4SLinus Torvalds 28981da177e4SLinus Torvalds out: 28991da177e4SLinus Torvalds kfree(resp); 29001da177e4SLinus Torvalds return rv; 29011da177e4SLinus Torvalds } 29021da177e4SLinus Torvalds 2903d0882897SCorey Minyard static int get_global_enables(struct smi_info *smi_info, u8 *enables) 29041e7d6a45SCorey Minyard { 29051e7d6a45SCorey Minyard unsigned char msg[3]; 29061e7d6a45SCorey Minyard unsigned char *resp; 29071e7d6a45SCorey Minyard unsigned long resp_len; 29081e7d6a45SCorey Minyard int rv; 29091e7d6a45SCorey Minyard 29101e7d6a45SCorey Minyard resp = kmalloc(IPMI_MAX_MSG_LENGTH, GFP_KERNEL); 2911d0882897SCorey Minyard if (!resp) 2912d0882897SCorey Minyard return -ENOMEM; 29131e7d6a45SCorey Minyard 29141e7d6a45SCorey Minyard msg[0] = IPMI_NETFN_APP_REQUEST << 2; 29151e7d6a45SCorey Minyard msg[1] = IPMI_GET_BMC_GLOBAL_ENABLES_CMD; 29161e7d6a45SCorey Minyard smi_info->handlers->start_transaction(smi_info->si_sm, msg, 2); 29171e7d6a45SCorey Minyard 29181e7d6a45SCorey Minyard rv = wait_for_msg_done(smi_info); 29191e7d6a45SCorey Minyard if (rv) { 2920910840f2SCorey Minyard dev_warn(smi_info->io.dev, 2921d0882897SCorey Minyard "Error getting response from get global enables command: %d\n", 2922d0882897SCorey Minyard rv); 29231e7d6a45SCorey Minyard goto out; 29241e7d6a45SCorey Minyard } 29251e7d6a45SCorey Minyard 29261e7d6a45SCorey Minyard resp_len = smi_info->handlers->get_result(smi_info->si_sm, 29271e7d6a45SCorey Minyard resp, IPMI_MAX_MSG_LENGTH); 29281e7d6a45SCorey Minyard 29291e7d6a45SCorey Minyard if (resp_len < 4 || 29301e7d6a45SCorey Minyard resp[0] != (IPMI_NETFN_APP_REQUEST | 1) << 2 || 29311e7d6a45SCorey Minyard resp[1] != IPMI_GET_BMC_GLOBAL_ENABLES_CMD || 29321e7d6a45SCorey Minyard resp[2] != 0) { 2933910840f2SCorey Minyard dev_warn(smi_info->io.dev, 2934d0882897SCorey Minyard "Invalid return from get global enables command: %ld %x %x %x\n", 2935d0882897SCorey Minyard resp_len, resp[0], resp[1], resp[2]); 29361e7d6a45SCorey Minyard rv = -EINVAL; 29371e7d6a45SCorey Minyard goto out; 2938d0882897SCorey Minyard } else { 2939d0882897SCorey Minyard *enables = resp[3]; 29401e7d6a45SCorey Minyard } 29411e7d6a45SCorey Minyard 2942d0882897SCorey Minyard out: 2943d0882897SCorey Minyard kfree(resp); 2944d0882897SCorey Minyard return rv; 2945d0882897SCorey Minyard } 2946d0882897SCorey Minyard 2947d0882897SCorey Minyard /* 2948d0882897SCorey Minyard * Returns 1 if it gets an error from the command. 2949d0882897SCorey Minyard */ 2950d0882897SCorey Minyard static int set_global_enables(struct smi_info *smi_info, u8 enables) 2951d0882897SCorey Minyard { 2952d0882897SCorey Minyard unsigned char msg[3]; 2953d0882897SCorey Minyard unsigned char *resp; 2954d0882897SCorey Minyard unsigned long resp_len; 2955d0882897SCorey Minyard int rv; 2956d0882897SCorey Minyard 2957d0882897SCorey Minyard resp = kmalloc(IPMI_MAX_MSG_LENGTH, GFP_KERNEL); 2958d0882897SCorey Minyard if (!resp) 2959d0882897SCorey Minyard return -ENOMEM; 29601e7d6a45SCorey Minyard 29611e7d6a45SCorey Minyard msg[0] = IPMI_NETFN_APP_REQUEST << 2; 29621e7d6a45SCorey Minyard msg[1] = IPMI_SET_BMC_GLOBAL_ENABLES_CMD; 2963d0882897SCorey Minyard msg[2] = enables; 29641e7d6a45SCorey Minyard smi_info->handlers->start_transaction(smi_info->si_sm, msg, 3); 29651e7d6a45SCorey Minyard 29661e7d6a45SCorey Minyard rv = wait_for_msg_done(smi_info); 29671e7d6a45SCorey Minyard if (rv) { 2968910840f2SCorey Minyard dev_warn(smi_info->io.dev, 2969d0882897SCorey Minyard "Error getting response from set global enables command: %d\n", 2970d0882897SCorey Minyard rv); 29711e7d6a45SCorey Minyard goto out; 29721e7d6a45SCorey Minyard } 29731e7d6a45SCorey Minyard 29741e7d6a45SCorey Minyard resp_len = smi_info->handlers->get_result(smi_info->si_sm, 29751e7d6a45SCorey Minyard resp, IPMI_MAX_MSG_LENGTH); 29761e7d6a45SCorey Minyard 29771e7d6a45SCorey Minyard if (resp_len < 3 || 29781e7d6a45SCorey Minyard resp[0] != (IPMI_NETFN_APP_REQUEST | 1) << 2 || 29791e7d6a45SCorey Minyard resp[1] != IPMI_SET_BMC_GLOBAL_ENABLES_CMD) { 2980910840f2SCorey Minyard dev_warn(smi_info->io.dev, 2981d0882897SCorey Minyard "Invalid return from set global enables command: %ld %x %x\n", 2982d0882897SCorey Minyard resp_len, resp[0], resp[1]); 29831e7d6a45SCorey Minyard rv = -EINVAL; 29841e7d6a45SCorey Minyard goto out; 29851e7d6a45SCorey Minyard } 29861e7d6a45SCorey Minyard 2987d0882897SCorey Minyard if (resp[2] != 0) 2988d0882897SCorey Minyard rv = 1; 2989d0882897SCorey Minyard 2990d0882897SCorey Minyard out: 2991d0882897SCorey Minyard kfree(resp); 2992d0882897SCorey Minyard return rv; 2993d0882897SCorey Minyard } 2994d0882897SCorey Minyard 2995d0882897SCorey Minyard /* 2996d0882897SCorey Minyard * Some BMCs do not support clearing the receive irq bit in the global 2997d0882897SCorey Minyard * enables (even if they don't support interrupts on the BMC). Check 2998d0882897SCorey Minyard * for this and handle it properly. 2999d0882897SCorey Minyard */ 3000d0882897SCorey Minyard static void check_clr_rcv_irq(struct smi_info *smi_info) 3001d0882897SCorey Minyard { 3002d0882897SCorey Minyard u8 enables = 0; 3003d0882897SCorey Minyard int rv; 3004d0882897SCorey Minyard 3005d0882897SCorey Minyard rv = get_global_enables(smi_info, &enables); 3006d0882897SCorey Minyard if (!rv) { 3007d0882897SCorey Minyard if ((enables & IPMI_BMC_RCV_MSG_INTR) == 0) 3008d0882897SCorey Minyard /* Already clear, should work ok. */ 3009d0882897SCorey Minyard return; 3010d0882897SCorey Minyard 3011d0882897SCorey Minyard enables &= ~IPMI_BMC_RCV_MSG_INTR; 3012d0882897SCorey Minyard rv = set_global_enables(smi_info, enables); 3013d0882897SCorey Minyard } 3014d0882897SCorey Minyard 3015d0882897SCorey Minyard if (rv < 0) { 3016910840f2SCorey Minyard dev_err(smi_info->io.dev, 3017d0882897SCorey Minyard "Cannot check clearing the rcv irq: %d\n", rv); 3018d0882897SCorey Minyard return; 3019d0882897SCorey Minyard } 3020d0882897SCorey Minyard 3021d0882897SCorey Minyard if (rv) { 30221e7d6a45SCorey Minyard /* 30231e7d6a45SCorey Minyard * An error when setting the event buffer bit means 30241e7d6a45SCorey Minyard * clearing the bit is not supported. 30251e7d6a45SCorey Minyard */ 3026910840f2SCorey Minyard dev_warn(smi_info->io.dev, 3027d0882897SCorey Minyard "The BMC does not support clearing the recv irq bit, compensating, but the BMC needs to be fixed.\n"); 3028d0882897SCorey Minyard smi_info->cannot_disable_irq = true; 30291e7d6a45SCorey Minyard } 3030d0882897SCorey Minyard } 3031d0882897SCorey Minyard 3032d0882897SCorey Minyard /* 3033d0882897SCorey Minyard * Some BMCs do not support setting the interrupt bits in the global 3034d0882897SCorey Minyard * enables even if they support interrupts. Clearly bad, but we can 3035d0882897SCorey Minyard * compensate. 3036d0882897SCorey Minyard */ 3037d0882897SCorey Minyard static void check_set_rcv_irq(struct smi_info *smi_info) 3038d0882897SCorey Minyard { 3039d0882897SCorey Minyard u8 enables = 0; 3040d0882897SCorey Minyard int rv; 3041d0882897SCorey Minyard 3042910840f2SCorey Minyard if (!smi_info->io.irq) 3043d0882897SCorey Minyard return; 3044d0882897SCorey Minyard 3045d0882897SCorey Minyard rv = get_global_enables(smi_info, &enables); 3046d0882897SCorey Minyard if (!rv) { 3047d0882897SCorey Minyard enables |= IPMI_BMC_RCV_MSG_INTR; 3048d0882897SCorey Minyard rv = set_global_enables(smi_info, enables); 3049d0882897SCorey Minyard } 3050d0882897SCorey Minyard 3051d0882897SCorey Minyard if (rv < 0) { 3052910840f2SCorey Minyard dev_err(smi_info->io.dev, 3053d0882897SCorey Minyard "Cannot check setting the rcv irq: %d\n", rv); 3054d0882897SCorey Minyard return; 3055d0882897SCorey Minyard } 3056d0882897SCorey Minyard 3057d0882897SCorey Minyard if (rv) { 3058d0882897SCorey Minyard /* 3059d0882897SCorey Minyard * An error when setting the event buffer bit means 3060d0882897SCorey Minyard * setting the bit is not supported. 3061d0882897SCorey Minyard */ 3062910840f2SCorey Minyard dev_warn(smi_info->io.dev, 3063d0882897SCorey Minyard "The BMC does not support setting the recv irq bit, compensating, but the BMC needs to be fixed.\n"); 3064d0882897SCorey Minyard smi_info->cannot_disable_irq = true; 3065d0882897SCorey Minyard smi_info->irq_enable_broken = true; 3066d0882897SCorey Minyard } 30671e7d6a45SCorey Minyard } 30681e7d6a45SCorey Minyard 306940112ae7SCorey Minyard static int try_enable_event_buffer(struct smi_info *smi_info) 307040112ae7SCorey Minyard { 307140112ae7SCorey Minyard unsigned char msg[3]; 307240112ae7SCorey Minyard unsigned char *resp; 307340112ae7SCorey Minyard unsigned long resp_len; 307440112ae7SCorey Minyard int rv = 0; 307540112ae7SCorey Minyard 307640112ae7SCorey Minyard resp = kmalloc(IPMI_MAX_MSG_LENGTH, GFP_KERNEL); 307740112ae7SCorey Minyard if (!resp) 307840112ae7SCorey Minyard return -ENOMEM; 307940112ae7SCorey Minyard 308040112ae7SCorey Minyard msg[0] = IPMI_NETFN_APP_REQUEST << 2; 308140112ae7SCorey Minyard msg[1] = IPMI_GET_BMC_GLOBAL_ENABLES_CMD; 308240112ae7SCorey Minyard smi_info->handlers->start_transaction(smi_info->si_sm, msg, 2); 308340112ae7SCorey Minyard 308440112ae7SCorey Minyard rv = wait_for_msg_done(smi_info); 308540112ae7SCorey Minyard if (rv) { 3086bb2a08c0SCorey Minyard pr_warn(PFX "Error getting response from get global enables command, the event buffer is not enabled.\n"); 308740112ae7SCorey Minyard goto out; 308840112ae7SCorey Minyard } 308940112ae7SCorey Minyard 309040112ae7SCorey Minyard resp_len = smi_info->handlers->get_result(smi_info->si_sm, 309140112ae7SCorey Minyard resp, IPMI_MAX_MSG_LENGTH); 309240112ae7SCorey Minyard 309340112ae7SCorey Minyard if (resp_len < 4 || 309440112ae7SCorey Minyard resp[0] != (IPMI_NETFN_APP_REQUEST | 1) << 2 || 309540112ae7SCorey Minyard resp[1] != IPMI_GET_BMC_GLOBAL_ENABLES_CMD || 309640112ae7SCorey Minyard resp[2] != 0) { 3097bb2a08c0SCorey Minyard pr_warn(PFX "Invalid return from get global enables command, cannot enable the event buffer.\n"); 309840112ae7SCorey Minyard rv = -EINVAL; 309940112ae7SCorey Minyard goto out; 310040112ae7SCorey Minyard } 310140112ae7SCorey Minyard 3102d9b7e4f7SCorey Minyard if (resp[3] & IPMI_BMC_EVT_MSG_BUFF) { 310340112ae7SCorey Minyard /* buffer is already enabled, nothing to do. */ 3104d9b7e4f7SCorey Minyard smi_info->supports_event_msg_buff = true; 310540112ae7SCorey Minyard goto out; 3106d9b7e4f7SCorey Minyard } 310740112ae7SCorey Minyard 310840112ae7SCorey Minyard msg[0] = IPMI_NETFN_APP_REQUEST << 2; 310940112ae7SCorey Minyard msg[1] = IPMI_SET_BMC_GLOBAL_ENABLES_CMD; 311040112ae7SCorey Minyard msg[2] = resp[3] | IPMI_BMC_EVT_MSG_BUFF; 311140112ae7SCorey Minyard smi_info->handlers->start_transaction(smi_info->si_sm, msg, 3); 311240112ae7SCorey Minyard 311340112ae7SCorey Minyard rv = wait_for_msg_done(smi_info); 311440112ae7SCorey Minyard if (rv) { 3115bb2a08c0SCorey Minyard pr_warn(PFX "Error getting response from set global, enables command, the event buffer is not enabled.\n"); 311640112ae7SCorey Minyard goto out; 311740112ae7SCorey Minyard } 311840112ae7SCorey Minyard 311940112ae7SCorey Minyard resp_len = smi_info->handlers->get_result(smi_info->si_sm, 312040112ae7SCorey Minyard resp, IPMI_MAX_MSG_LENGTH); 312140112ae7SCorey Minyard 312240112ae7SCorey Minyard if (resp_len < 3 || 312340112ae7SCorey Minyard resp[0] != (IPMI_NETFN_APP_REQUEST | 1) << 2 || 312440112ae7SCorey Minyard resp[1] != IPMI_SET_BMC_GLOBAL_ENABLES_CMD) { 3125bb2a08c0SCorey Minyard pr_warn(PFX "Invalid return from get global, enables command, not enable the event buffer.\n"); 312640112ae7SCorey Minyard rv = -EINVAL; 312740112ae7SCorey Minyard goto out; 312840112ae7SCorey Minyard } 312940112ae7SCorey Minyard 313040112ae7SCorey Minyard if (resp[2] != 0) 313140112ae7SCorey Minyard /* 313240112ae7SCorey Minyard * An error when setting the event buffer bit means 313340112ae7SCorey Minyard * that the event buffer is not supported. 313440112ae7SCorey Minyard */ 313540112ae7SCorey Minyard rv = -ENOENT; 3136d9b7e4f7SCorey Minyard else 3137d9b7e4f7SCorey Minyard smi_info->supports_event_msg_buff = true; 3138d9b7e4f7SCorey Minyard 313940112ae7SCorey Minyard out: 314040112ae7SCorey Minyard kfree(resp); 314140112ae7SCorey Minyard return rv; 314240112ae7SCorey Minyard } 314340112ae7SCorey Minyard 314407412736SAlexey Dobriyan static int smi_type_proc_show(struct seq_file *m, void *v) 31451da177e4SLinus Torvalds { 314607412736SAlexey Dobriyan struct smi_info *smi = m->private; 31471da177e4SLinus Torvalds 3148910840f2SCorey Minyard seq_printf(m, "%s\n", si_to_str[smi->io.si_type]); 3149d6c5dc18SJoe Perches 31505e33cd0cSJoe Perches return 0; 31511da177e4SLinus Torvalds } 31521da177e4SLinus Torvalds 315307412736SAlexey Dobriyan static int smi_type_proc_open(struct inode *inode, struct file *file) 31541da177e4SLinus Torvalds { 3155d9dda78bSAl Viro return single_open(file, smi_type_proc_show, PDE_DATA(inode)); 315607412736SAlexey Dobriyan } 31571da177e4SLinus Torvalds 315807412736SAlexey Dobriyan static const struct file_operations smi_type_proc_ops = { 315907412736SAlexey Dobriyan .open = smi_type_proc_open, 316007412736SAlexey Dobriyan .read = seq_read, 316107412736SAlexey Dobriyan .llseek = seq_lseek, 316207412736SAlexey Dobriyan .release = single_release, 316307412736SAlexey Dobriyan }; 316407412736SAlexey Dobriyan 316507412736SAlexey Dobriyan static int smi_si_stats_proc_show(struct seq_file *m, void *v) 316607412736SAlexey Dobriyan { 316707412736SAlexey Dobriyan struct smi_info *smi = m->private; 316807412736SAlexey Dobriyan 316907412736SAlexey Dobriyan seq_printf(m, "interrupts_enabled: %d\n", 3170910840f2SCorey Minyard smi->io.irq && !smi->interrupt_disabled); 317107412736SAlexey Dobriyan seq_printf(m, "short_timeouts: %u\n", 317264959e2dSCorey Minyard smi_get_stat(smi, short_timeouts)); 317307412736SAlexey Dobriyan seq_printf(m, "long_timeouts: %u\n", 317464959e2dSCorey Minyard smi_get_stat(smi, long_timeouts)); 317507412736SAlexey Dobriyan seq_printf(m, "idles: %u\n", 317664959e2dSCorey Minyard smi_get_stat(smi, idles)); 317707412736SAlexey Dobriyan seq_printf(m, "interrupts: %u\n", 317864959e2dSCorey Minyard smi_get_stat(smi, interrupts)); 317907412736SAlexey Dobriyan seq_printf(m, "attentions: %u\n", 318064959e2dSCorey Minyard smi_get_stat(smi, attentions)); 318107412736SAlexey Dobriyan seq_printf(m, "flag_fetches: %u\n", 318264959e2dSCorey Minyard smi_get_stat(smi, flag_fetches)); 318307412736SAlexey Dobriyan seq_printf(m, "hosed_count: %u\n", 318464959e2dSCorey Minyard smi_get_stat(smi, hosed_count)); 318507412736SAlexey Dobriyan seq_printf(m, "complete_transactions: %u\n", 318664959e2dSCorey Minyard smi_get_stat(smi, complete_transactions)); 318707412736SAlexey Dobriyan seq_printf(m, "events: %u\n", 318864959e2dSCorey Minyard smi_get_stat(smi, events)); 318907412736SAlexey Dobriyan seq_printf(m, "watchdog_pretimeouts: %u\n", 319064959e2dSCorey Minyard smi_get_stat(smi, watchdog_pretimeouts)); 319107412736SAlexey Dobriyan seq_printf(m, "incoming_messages: %u\n", 319264959e2dSCorey Minyard smi_get_stat(smi, incoming_messages)); 319307412736SAlexey Dobriyan return 0; 3194b361e27bSCorey Minyard } 3195b361e27bSCorey Minyard 319607412736SAlexey Dobriyan static int smi_si_stats_proc_open(struct inode *inode, struct file *file) 3197b361e27bSCorey Minyard { 3198d9dda78bSAl Viro return single_open(file, smi_si_stats_proc_show, PDE_DATA(inode)); 319907412736SAlexey Dobriyan } 3200b361e27bSCorey Minyard 320107412736SAlexey Dobriyan static const struct file_operations smi_si_stats_proc_ops = { 320207412736SAlexey Dobriyan .open = smi_si_stats_proc_open, 320307412736SAlexey Dobriyan .read = seq_read, 320407412736SAlexey Dobriyan .llseek = seq_lseek, 320507412736SAlexey Dobriyan .release = single_release, 320607412736SAlexey Dobriyan }; 320707412736SAlexey Dobriyan 320807412736SAlexey Dobriyan static int smi_params_proc_show(struct seq_file *m, void *v) 320907412736SAlexey Dobriyan { 321007412736SAlexey Dobriyan struct smi_info *smi = m->private; 321107412736SAlexey Dobriyan 3212d6c5dc18SJoe Perches seq_printf(m, 3213b361e27bSCorey Minyard "%s,%s,0x%lx,rsp=%d,rsi=%d,rsh=%d,irq=%d,ipmb=%d\n", 3214910840f2SCorey Minyard si_to_str[smi->io.si_type], 3215b361e27bSCorey Minyard addr_space_to_str[smi->io.addr_type], 3216b361e27bSCorey Minyard smi->io.addr_data, 3217b361e27bSCorey Minyard smi->io.regspacing, 3218b361e27bSCorey Minyard smi->io.regsize, 3219b361e27bSCorey Minyard smi->io.regshift, 3220910840f2SCorey Minyard smi->io.irq, 3221910840f2SCorey Minyard smi->io.slave_addr); 3222d6c5dc18SJoe Perches 32235e33cd0cSJoe Perches return 0; 32241da177e4SLinus Torvalds } 32251da177e4SLinus Torvalds 322607412736SAlexey Dobriyan static int smi_params_proc_open(struct inode *inode, struct file *file) 322707412736SAlexey Dobriyan { 3228d9dda78bSAl Viro return single_open(file, smi_params_proc_show, PDE_DATA(inode)); 322907412736SAlexey Dobriyan } 323007412736SAlexey Dobriyan 323107412736SAlexey Dobriyan static const struct file_operations smi_params_proc_ops = { 323207412736SAlexey Dobriyan .open = smi_params_proc_open, 323307412736SAlexey Dobriyan .read = seq_read, 323407412736SAlexey Dobriyan .llseek = seq_lseek, 323507412736SAlexey Dobriyan .release = single_release, 323607412736SAlexey Dobriyan }; 323707412736SAlexey Dobriyan 32383ae0e0f9SCorey Minyard /* 32393ae0e0f9SCorey Minyard * oem_data_avail_to_receive_msg_avail 32403ae0e0f9SCorey Minyard * @info - smi_info structure with msg_flags set 32413ae0e0f9SCorey Minyard * 32423ae0e0f9SCorey Minyard * Converts flags from OEM_DATA_AVAIL to RECEIVE_MSG_AVAIL 32433ae0e0f9SCorey Minyard * Returns 1 indicating need to re-run handle_flags(). 32443ae0e0f9SCorey Minyard */ 32453ae0e0f9SCorey Minyard static int oem_data_avail_to_receive_msg_avail(struct smi_info *smi_info) 32463ae0e0f9SCorey Minyard { 3247e8b33617SCorey Minyard smi_info->msg_flags = ((smi_info->msg_flags & ~OEM_DATA_AVAIL) | 3248e8b33617SCorey Minyard RECEIVE_MSG_AVAIL); 32493ae0e0f9SCorey Minyard return 1; 32503ae0e0f9SCorey Minyard } 32513ae0e0f9SCorey Minyard 32523ae0e0f9SCorey Minyard /* 32533ae0e0f9SCorey Minyard * setup_dell_poweredge_oem_data_handler 32543ae0e0f9SCorey Minyard * @info - smi_info.device_id must be populated 32553ae0e0f9SCorey Minyard * 32563ae0e0f9SCorey Minyard * Systems that match, but have firmware version < 1.40 may assert 32573ae0e0f9SCorey Minyard * OEM0_DATA_AVAIL on their own, without being told via Set Flags that 32583ae0e0f9SCorey Minyard * it's safe to do so. Such systems will de-assert OEM1_DATA_AVAIL 32593ae0e0f9SCorey Minyard * upon receipt of IPMI_GET_MSG_CMD, so we should treat these flags 32603ae0e0f9SCorey Minyard * as RECEIVE_MSG_AVAIL instead. 32613ae0e0f9SCorey Minyard * 32623ae0e0f9SCorey Minyard * As Dell has no plans to release IPMI 1.5 firmware that *ever* 32633ae0e0f9SCorey Minyard * assert the OEM[012] bits, and if it did, the driver would have to 32643ae0e0f9SCorey Minyard * change to handle that properly, we don't actually check for the 32653ae0e0f9SCorey Minyard * firmware version. 32663ae0e0f9SCorey Minyard * Device ID = 0x20 BMC on PowerEdge 8G servers 32673ae0e0f9SCorey Minyard * Device Revision = 0x80 32683ae0e0f9SCorey Minyard * Firmware Revision1 = 0x01 BMC version 1.40 32693ae0e0f9SCorey Minyard * Firmware Revision2 = 0x40 BCD encoded 32703ae0e0f9SCorey Minyard * IPMI Version = 0x51 IPMI 1.5 32713ae0e0f9SCorey Minyard * Manufacturer ID = A2 02 00 Dell IANA 32723ae0e0f9SCorey Minyard * 3273d5a2b89aSCorey Minyard * Additionally, PowerEdge systems with IPMI < 1.5 may also assert 3274d5a2b89aSCorey Minyard * OEM0_DATA_AVAIL and needs to be treated as RECEIVE_MSG_AVAIL. 3275d5a2b89aSCorey Minyard * 32763ae0e0f9SCorey Minyard */ 32773ae0e0f9SCorey Minyard #define DELL_POWEREDGE_8G_BMC_DEVICE_ID 0x20 32783ae0e0f9SCorey Minyard #define DELL_POWEREDGE_8G_BMC_DEVICE_REV 0x80 32793ae0e0f9SCorey Minyard #define DELL_POWEREDGE_8G_BMC_IPMI_VERSION 0x51 328050c812b2SCorey Minyard #define DELL_IANA_MFR_ID 0x0002a2 32813ae0e0f9SCorey Minyard static void setup_dell_poweredge_oem_data_handler(struct smi_info *smi_info) 32823ae0e0f9SCorey Minyard { 32833ae0e0f9SCorey Minyard struct ipmi_device_id *id = &smi_info->device_id; 328450c812b2SCorey Minyard if (id->manufacturer_id == DELL_IANA_MFR_ID) { 3285d5a2b89aSCorey Minyard if (id->device_id == DELL_POWEREDGE_8G_BMC_DEVICE_ID && 3286d5a2b89aSCorey Minyard id->device_revision == DELL_POWEREDGE_8G_BMC_DEVICE_REV && 3287d5a2b89aSCorey Minyard id->ipmi_version == DELL_POWEREDGE_8G_BMC_IPMI_VERSION) { 32883ae0e0f9SCorey Minyard smi_info->oem_data_avail_handler = 32893ae0e0f9SCorey Minyard oem_data_avail_to_receive_msg_avail; 3290c305e3d3SCorey Minyard } else if (ipmi_version_major(id) < 1 || 3291d5a2b89aSCorey Minyard (ipmi_version_major(id) == 1 && 3292d5a2b89aSCorey Minyard ipmi_version_minor(id) < 5)) { 3293d5a2b89aSCorey Minyard smi_info->oem_data_avail_handler = 3294d5a2b89aSCorey Minyard oem_data_avail_to_receive_msg_avail; 3295d5a2b89aSCorey Minyard } 3296d5a2b89aSCorey Minyard } 32973ae0e0f9SCorey Minyard } 32983ae0e0f9SCorey Minyard 3299ea94027bSCorey Minyard #define CANNOT_RETURN_REQUESTED_LENGTH 0xCA 3300ea94027bSCorey Minyard static void return_hosed_msg_badsize(struct smi_info *smi_info) 3301ea94027bSCorey Minyard { 3302ea94027bSCorey Minyard struct ipmi_smi_msg *msg = smi_info->curr_msg; 3303ea94027bSCorey Minyard 330425985edcSLucas De Marchi /* Make it a response */ 3305ea94027bSCorey Minyard msg->rsp[0] = msg->data[0] | 4; 3306ea94027bSCorey Minyard msg->rsp[1] = msg->data[1]; 3307ea94027bSCorey Minyard msg->rsp[2] = CANNOT_RETURN_REQUESTED_LENGTH; 3308ea94027bSCorey Minyard msg->rsp_size = 3; 3309ea94027bSCorey Minyard smi_info->curr_msg = NULL; 3310ea94027bSCorey Minyard deliver_recv_msg(smi_info, msg); 3311ea94027bSCorey Minyard } 3312ea94027bSCorey Minyard 3313ea94027bSCorey Minyard /* 3314ea94027bSCorey Minyard * dell_poweredge_bt_xaction_handler 3315ea94027bSCorey Minyard * @info - smi_info.device_id must be populated 3316ea94027bSCorey Minyard * 3317ea94027bSCorey Minyard * Dell PowerEdge servers with the BT interface (x6xx and 1750) will 3318ea94027bSCorey Minyard * not respond to a Get SDR command if the length of the data 3319ea94027bSCorey Minyard * requested is exactly 0x3A, which leads to command timeouts and no 3320ea94027bSCorey Minyard * data returned. This intercepts such commands, and causes userspace 3321ea94027bSCorey Minyard * callers to try again with a different-sized buffer, which succeeds. 3322ea94027bSCorey Minyard */ 3323ea94027bSCorey Minyard 3324ea94027bSCorey Minyard #define STORAGE_NETFN 0x0A 3325ea94027bSCorey Minyard #define STORAGE_CMD_GET_SDR 0x23 3326ea94027bSCorey Minyard static int dell_poweredge_bt_xaction_handler(struct notifier_block *self, 3327ea94027bSCorey Minyard unsigned long unused, 3328ea94027bSCorey Minyard void *in) 3329ea94027bSCorey Minyard { 3330ea94027bSCorey Minyard struct smi_info *smi_info = in; 3331ea94027bSCorey Minyard unsigned char *data = smi_info->curr_msg->data; 3332ea94027bSCorey Minyard unsigned int size = smi_info->curr_msg->data_size; 3333ea94027bSCorey Minyard if (size >= 8 && 3334ea94027bSCorey Minyard (data[0]>>2) == STORAGE_NETFN && 3335ea94027bSCorey Minyard data[1] == STORAGE_CMD_GET_SDR && 3336ea94027bSCorey Minyard data[7] == 0x3A) { 3337ea94027bSCorey Minyard return_hosed_msg_badsize(smi_info); 3338ea94027bSCorey Minyard return NOTIFY_STOP; 3339ea94027bSCorey Minyard } 3340ea94027bSCorey Minyard return NOTIFY_DONE; 3341ea94027bSCorey Minyard } 3342ea94027bSCorey Minyard 3343ea94027bSCorey Minyard static struct notifier_block dell_poweredge_bt_xaction_notifier = { 3344ea94027bSCorey Minyard .notifier_call = dell_poweredge_bt_xaction_handler, 3345ea94027bSCorey Minyard }; 3346ea94027bSCorey Minyard 3347ea94027bSCorey Minyard /* 3348ea94027bSCorey Minyard * setup_dell_poweredge_bt_xaction_handler 3349ea94027bSCorey Minyard * @info - smi_info.device_id must be filled in already 3350ea94027bSCorey Minyard * 3351ea94027bSCorey Minyard * Fills in smi_info.device_id.start_transaction_pre_hook 3352ea94027bSCorey Minyard * when we know what function to use there. 3353ea94027bSCorey Minyard */ 3354ea94027bSCorey Minyard static void 3355ea94027bSCorey Minyard setup_dell_poweredge_bt_xaction_handler(struct smi_info *smi_info) 3356ea94027bSCorey Minyard { 3357ea94027bSCorey Minyard struct ipmi_device_id *id = &smi_info->device_id; 335850c812b2SCorey Minyard if (id->manufacturer_id == DELL_IANA_MFR_ID && 3359910840f2SCorey Minyard smi_info->io.si_type == SI_BT) 3360ea94027bSCorey Minyard register_xaction_notifier(&dell_poweredge_bt_xaction_notifier); 3361ea94027bSCorey Minyard } 3362ea94027bSCorey Minyard 33633ae0e0f9SCorey Minyard /* 33643ae0e0f9SCorey Minyard * setup_oem_data_handler 33653ae0e0f9SCorey Minyard * @info - smi_info.device_id must be filled in already 33663ae0e0f9SCorey Minyard * 33673ae0e0f9SCorey Minyard * Fills in smi_info.device_id.oem_data_available_handler 33683ae0e0f9SCorey Minyard * when we know what function to use there. 33693ae0e0f9SCorey Minyard */ 33703ae0e0f9SCorey Minyard 33713ae0e0f9SCorey Minyard static void setup_oem_data_handler(struct smi_info *smi_info) 33723ae0e0f9SCorey Minyard { 33733ae0e0f9SCorey Minyard setup_dell_poweredge_oem_data_handler(smi_info); 33743ae0e0f9SCorey Minyard } 33753ae0e0f9SCorey Minyard 3376ea94027bSCorey Minyard static void setup_xaction_handlers(struct smi_info *smi_info) 3377ea94027bSCorey Minyard { 3378ea94027bSCorey Minyard setup_dell_poweredge_bt_xaction_handler(smi_info); 3379ea94027bSCorey Minyard } 3380ea94027bSCorey Minyard 3381d0882897SCorey Minyard static void check_for_broken_irqs(struct smi_info *smi_info) 3382d0882897SCorey Minyard { 3383d0882897SCorey Minyard check_clr_rcv_irq(smi_info); 3384d0882897SCorey Minyard check_set_rcv_irq(smi_info); 3385d0882897SCorey Minyard } 3386d0882897SCorey Minyard 3387a9a2c44fSCorey Minyard static inline void wait_for_timer_and_thread(struct smi_info *smi_info) 3388a9a2c44fSCorey Minyard { 3389453823baSCorey Minyard if (smi_info->thread != NULL) 3390e9a705a0SMatt Domsch kthread_stop(smi_info->thread); 3391b874b985SCorey Minyard if (smi_info->timer_running) 3392a9a2c44fSCorey Minyard del_timer_sync(&smi_info->si_timer); 3393a9a2c44fSCorey Minyard } 3394a9a2c44fSCorey Minyard 33957e030d6dSCorey Minyard static struct smi_info *find_dup_si(struct smi_info *info) 3396b0defcdbSCorey Minyard { 3397b0defcdbSCorey Minyard struct smi_info *e; 3398b0defcdbSCorey Minyard 3399b0defcdbSCorey Minyard list_for_each_entry(e, &smi_infos, link) { 3400b0defcdbSCorey Minyard if (e->io.addr_type != info->io.addr_type) 3401b0defcdbSCorey Minyard continue; 340294671710SCorey Minyard if (e->io.addr_data == info->io.addr_data) { 340394671710SCorey Minyard /* 340494671710SCorey Minyard * This is a cheap hack, ACPI doesn't have a defined 340594671710SCorey Minyard * slave address but SMBIOS does. Pick it up from 340694671710SCorey Minyard * any source that has it available. 340794671710SCorey Minyard */ 3408910840f2SCorey Minyard if (info->io.slave_addr && !e->io.slave_addr) 3409910840f2SCorey Minyard e->io.slave_addr = info->io.slave_addr; 34107e030d6dSCorey Minyard return e; 3411b0defcdbSCorey Minyard } 341294671710SCorey Minyard } 3413b0defcdbSCorey Minyard 34147e030d6dSCorey Minyard return NULL; 3415b0defcdbSCorey Minyard } 3416b0defcdbSCorey Minyard 34171e89a499SCorey Minyard int ipmi_si_add_smi(struct smi_info *new_smi) 34182407d77aSMatthew Garrett { 34192407d77aSMatthew Garrett int rv = 0; 34207e030d6dSCorey Minyard struct smi_info *dup; 34212407d77aSMatthew Garrett 34222407d77aSMatthew Garrett mutex_lock(&smi_infos_lock); 34237e030d6dSCorey Minyard dup = find_dup_si(new_smi); 34247e030d6dSCorey Minyard if (dup) { 3425910840f2SCorey Minyard if (new_smi->io.addr_source == SI_ACPI && 3426910840f2SCorey Minyard dup->io.addr_source == SI_SMBIOS) { 34277e030d6dSCorey Minyard /* We prefer ACPI over SMBIOS. */ 3428910840f2SCorey Minyard dev_info(dup->io.dev, 34297e030d6dSCorey Minyard "Removing SMBIOS-specified %s state machine in favor of ACPI\n", 3430910840f2SCorey Minyard si_to_str[new_smi->io.si_type]); 34317e030d6dSCorey Minyard cleanup_one_si(dup); 34327e030d6dSCorey Minyard } else { 3433910840f2SCorey Minyard dev_info(new_smi->io.dev, 34347e030d6dSCorey Minyard "%s-specified %s state machine: duplicate\n", 3435910840f2SCorey Minyard ipmi_addr_src_to_str(new_smi->io.addr_source), 3436910840f2SCorey Minyard si_to_str[new_smi->io.si_type]); 34372407d77aSMatthew Garrett rv = -EBUSY; 34382407d77aSMatthew Garrett goto out_err; 34392407d77aSMatthew Garrett } 34407e030d6dSCorey Minyard } 34412407d77aSMatthew Garrett 3442bb2a08c0SCorey Minyard pr_info(PFX "Adding %s-specified %s state machine\n", 3443910840f2SCorey Minyard ipmi_addr_src_to_str(new_smi->io.addr_source), 3444910840f2SCorey Minyard si_to_str[new_smi->io.si_type]); 34452407d77aSMatthew Garrett 34462407d77aSMatthew Garrett /* So we know not to free it unless we have allocated one. */ 34472407d77aSMatthew Garrett new_smi->intf = NULL; 34482407d77aSMatthew Garrett new_smi->si_sm = NULL; 34492407d77aSMatthew Garrett new_smi->handlers = NULL; 34502407d77aSMatthew Garrett 34512407d77aSMatthew Garrett list_add_tail(&new_smi->link, &smi_infos); 34522407d77aSMatthew Garrett 34532407d77aSMatthew Garrett out_err: 34542407d77aSMatthew Garrett mutex_unlock(&smi_infos_lock); 34552407d77aSMatthew Garrett return rv; 34562407d77aSMatthew Garrett } 34572407d77aSMatthew Garrett 34583f724c40STony Camuso /* 34593f724c40STony Camuso * Try to start up an interface. Must be called with smi_infos_lock 34603f724c40STony Camuso * held, primarily to keep smi_num consistent, we only one to do these 34613f724c40STony Camuso * one at a time. 34623f724c40STony Camuso */ 3463b0defcdbSCorey Minyard static int try_smi_init(struct smi_info *new_smi) 34641da177e4SLinus Torvalds { 34652407d77aSMatthew Garrett int rv = 0; 346664959e2dSCorey Minyard int i; 34671abf71eeSCorey Minyard char *init_name = NULL; 34681da177e4SLinus Torvalds 3469bb2a08c0SCorey Minyard pr_info(PFX "Trying %s-specified %s state machine at %s address 0x%lx, slave address 0x%x, irq %d\n", 3470910840f2SCorey Minyard ipmi_addr_src_to_str(new_smi->io.addr_source), 3471910840f2SCorey Minyard si_to_str[new_smi->io.si_type], 3472b0defcdbSCorey Minyard addr_space_to_str[new_smi->io.addr_type], 3473b0defcdbSCorey Minyard new_smi->io.addr_data, 3474910840f2SCorey Minyard new_smi->io.slave_addr, new_smi->io.irq); 34751da177e4SLinus Torvalds 3476910840f2SCorey Minyard switch (new_smi->io.si_type) { 3477b0defcdbSCorey Minyard case SI_KCS: 34781da177e4SLinus Torvalds new_smi->handlers = &kcs_smi_handlers; 3479b0defcdbSCorey Minyard break; 3480b0defcdbSCorey Minyard 3481b0defcdbSCorey Minyard case SI_SMIC: 34821da177e4SLinus Torvalds new_smi->handlers = &smic_smi_handlers; 3483b0defcdbSCorey Minyard break; 3484b0defcdbSCorey Minyard 3485b0defcdbSCorey Minyard case SI_BT: 34861da177e4SLinus Torvalds new_smi->handlers = &bt_smi_handlers; 3487b0defcdbSCorey Minyard break; 3488b0defcdbSCorey Minyard 3489b0defcdbSCorey Minyard default: 34901da177e4SLinus Torvalds /* No support for anything else yet. */ 34911da177e4SLinus Torvalds rv = -EIO; 34921da177e4SLinus Torvalds goto out_err; 34931da177e4SLinus Torvalds } 34941da177e4SLinus Torvalds 34953f724c40STony Camuso new_smi->intf_num = smi_num; 34963f724c40STony Camuso 34971abf71eeSCorey Minyard /* Do this early so it's available for logs. */ 3498910840f2SCorey Minyard if (!new_smi->io.dev) { 34993f724c40STony Camuso init_name = kasprintf(GFP_KERNEL, "ipmi_si.%d", 35003f724c40STony Camuso new_smi->intf_num); 35011abf71eeSCorey Minyard 35021abf71eeSCorey Minyard /* 35031abf71eeSCorey Minyard * If we don't already have a device from something 35041abf71eeSCorey Minyard * else (like PCI), then register a new one. 35051abf71eeSCorey Minyard */ 35061abf71eeSCorey Minyard new_smi->pdev = platform_device_alloc("ipmi_si", 35071abf71eeSCorey Minyard new_smi->intf_num); 35081abf71eeSCorey Minyard if (!new_smi->pdev) { 35091abf71eeSCorey Minyard pr_err(PFX "Unable to allocate platform device\n"); 35101abf71eeSCorey Minyard goto out_err; 35111abf71eeSCorey Minyard } 3512910840f2SCorey Minyard new_smi->io.dev = &new_smi->pdev->dev; 3513910840f2SCorey Minyard new_smi->io.dev->driver = &ipmi_driver.driver; 35141abf71eeSCorey Minyard /* Nulled by device_add() */ 3515910840f2SCorey Minyard new_smi->io.dev->init_name = init_name; 35161abf71eeSCorey Minyard } 35171abf71eeSCorey Minyard 35181da177e4SLinus Torvalds /* Allocate the state machine's data and initialize it. */ 35191da177e4SLinus Torvalds new_smi->si_sm = kmalloc(new_smi->handlers->size(), GFP_KERNEL); 35201da177e4SLinus Torvalds if (!new_smi->si_sm) { 3521bb2a08c0SCorey Minyard pr_err(PFX "Could not allocate state machine memory\n"); 35221da177e4SLinus Torvalds rv = -ENOMEM; 35231da177e4SLinus Torvalds goto out_err; 35241da177e4SLinus Torvalds } 35251da177e4SLinus Torvalds new_smi->io_size = new_smi->handlers->init_data(new_smi->si_sm, 35261da177e4SLinus Torvalds &new_smi->io); 35271da177e4SLinus Torvalds 35281da177e4SLinus Torvalds /* Now that we know the I/O size, we can set up the I/O. */ 35291da177e4SLinus Torvalds rv = new_smi->io_setup(new_smi); 35301da177e4SLinus Torvalds if (rv) { 3531910840f2SCorey Minyard dev_err(new_smi->io.dev, "Could not set up I/O space\n"); 35321da177e4SLinus Torvalds goto out_err; 35331da177e4SLinus Torvalds } 35341da177e4SLinus Torvalds 35351da177e4SLinus Torvalds /* Do low-level detection first. */ 35361da177e4SLinus Torvalds if (new_smi->handlers->detect(new_smi->si_sm)) { 3537910840f2SCorey Minyard if (new_smi->io.addr_source) 3538910840f2SCorey Minyard dev_err(new_smi->io.dev, 3539910840f2SCorey Minyard "Interface detection failed\n"); 35401da177e4SLinus Torvalds rv = -ENODEV; 35411da177e4SLinus Torvalds goto out_err; 35421da177e4SLinus Torvalds } 35431da177e4SLinus Torvalds 3544c305e3d3SCorey Minyard /* 3545c305e3d3SCorey Minyard * Attempt a get device id command. If it fails, we probably 3546c305e3d3SCorey Minyard * don't have a BMC here. 3547c305e3d3SCorey Minyard */ 35481da177e4SLinus Torvalds rv = try_get_dev_id(new_smi); 3549b0defcdbSCorey Minyard if (rv) { 3550910840f2SCorey Minyard if (new_smi->io.addr_source) 3551910840f2SCorey Minyard dev_err(new_smi->io.dev, 3552910840f2SCorey Minyard "There appears to be no BMC at this location\n"); 35531da177e4SLinus Torvalds goto out_err; 3554b0defcdbSCorey Minyard } 35551da177e4SLinus Torvalds 35563ae0e0f9SCorey Minyard setup_oem_data_handler(new_smi); 3557ea94027bSCorey Minyard setup_xaction_handlers(new_smi); 3558d0882897SCorey Minyard check_for_broken_irqs(new_smi); 35593ae0e0f9SCorey Minyard 3560b874b985SCorey Minyard new_smi->waiting_msg = NULL; 35611da177e4SLinus Torvalds new_smi->curr_msg = NULL; 35621da177e4SLinus Torvalds atomic_set(&new_smi->req_events, 0); 35637aefac26SCorey Minyard new_smi->run_to_completion = false; 356464959e2dSCorey Minyard for (i = 0; i < SI_NUM_STATS; i++) 356564959e2dSCorey Minyard atomic_set(&new_smi->stats[i], 0); 35661da177e4SLinus Torvalds 35677aefac26SCorey Minyard new_smi->interrupt_disabled = true; 356889986496SCorey Minyard atomic_set(&new_smi->need_watch, 0); 35691da177e4SLinus Torvalds 357040112ae7SCorey Minyard rv = try_enable_event_buffer(new_smi); 357140112ae7SCorey Minyard if (rv == 0) 35727aefac26SCorey Minyard new_smi->has_event_buffer = true; 357340112ae7SCorey Minyard 3574c305e3d3SCorey Minyard /* 3575c305e3d3SCorey Minyard * Start clearing the flags before we enable interrupts or the 3576c305e3d3SCorey Minyard * timer to avoid racing with the timer. 3577c305e3d3SCorey Minyard */ 35780cfec916SCorey Minyard start_clear_flags(new_smi, false); 3579d9b7e4f7SCorey Minyard 3580d9b7e4f7SCorey Minyard /* 3581d9b7e4f7SCorey Minyard * IRQ is defined to be set when non-zero. req_events will 3582d9b7e4f7SCorey Minyard * cause a global flags check that will enable interrupts. 3583d9b7e4f7SCorey Minyard */ 3584910840f2SCorey Minyard if (new_smi->io.irq) { 3585d9b7e4f7SCorey Minyard new_smi->interrupt_disabled = false; 3586d9b7e4f7SCorey Minyard atomic_set(&new_smi->req_events, 1); 3587d9b7e4f7SCorey Minyard } 35881da177e4SLinus Torvalds 35891abf71eeSCorey Minyard if (new_smi->pdev) { 3590b48f5457SZhang, Yanmin rv = platform_device_add(new_smi->pdev); 359150c812b2SCorey Minyard if (rv) { 3592910840f2SCorey Minyard dev_err(new_smi->io.dev, 3593bb2a08c0SCorey Minyard "Unable to register system interface device: %d\n", 359450c812b2SCorey Minyard rv); 3595453823baSCorey Minyard goto out_err; 359650c812b2SCorey Minyard } 359750c812b2SCorey Minyard } 359850c812b2SCorey Minyard 35991da177e4SLinus Torvalds rv = ipmi_register_smi(&handlers, 36001da177e4SLinus Torvalds new_smi, 3601910840f2SCorey Minyard new_smi->io.dev, 3602910840f2SCorey Minyard new_smi->io.slave_addr); 36031da177e4SLinus Torvalds if (rv) { 3604910840f2SCorey Minyard dev_err(new_smi->io.dev, 3605910840f2SCorey Minyard "Unable to register device: error %d\n", 36061da177e4SLinus Torvalds rv); 36071da177e4SLinus Torvalds goto out_err_stop_timer; 36081da177e4SLinus Torvalds } 36091da177e4SLinus Torvalds 36101da177e4SLinus Torvalds rv = ipmi_smi_add_proc_entry(new_smi->intf, "type", 361107412736SAlexey Dobriyan &smi_type_proc_ops, 361299b76233SAlexey Dobriyan new_smi); 36131da177e4SLinus Torvalds if (rv) { 3614910840f2SCorey Minyard dev_err(new_smi->io.dev, 3615910840f2SCorey Minyard "Unable to create proc entry: %d\n", rv); 36161da177e4SLinus Torvalds goto out_err_stop_timer; 36171da177e4SLinus Torvalds } 36181da177e4SLinus Torvalds 36191da177e4SLinus Torvalds rv = ipmi_smi_add_proc_entry(new_smi->intf, "si_stats", 362007412736SAlexey Dobriyan &smi_si_stats_proc_ops, 362199b76233SAlexey Dobriyan new_smi); 36221da177e4SLinus Torvalds if (rv) { 3623910840f2SCorey Minyard dev_err(new_smi->io.dev, 3624910840f2SCorey Minyard "Unable to create proc entry: %d\n", rv); 36251da177e4SLinus Torvalds goto out_err_stop_timer; 36261da177e4SLinus Torvalds } 36271da177e4SLinus Torvalds 3628b361e27bSCorey Minyard rv = ipmi_smi_add_proc_entry(new_smi->intf, "params", 362907412736SAlexey Dobriyan &smi_params_proc_ops, 363099b76233SAlexey Dobriyan new_smi); 3631b361e27bSCorey Minyard if (rv) { 3632910840f2SCorey Minyard dev_err(new_smi->io.dev, 3633910840f2SCorey Minyard "Unable to create proc entry: %d\n", rv); 3634b361e27bSCorey Minyard goto out_err_stop_timer; 3635b361e27bSCorey Minyard } 3636b361e27bSCorey Minyard 36373f724c40STony Camuso /* Don't increment till we know we have succeeded. */ 36383f724c40STony Camuso smi_num++; 36393f724c40STony Camuso 3640910840f2SCorey Minyard dev_info(new_smi->io.dev, "IPMI %s interface initialized\n", 3641910840f2SCorey Minyard si_to_str[new_smi->io.si_type]); 36421da177e4SLinus Torvalds 3643910840f2SCorey Minyard WARN_ON(new_smi->io.dev->init_name != NULL); 36441abf71eeSCorey Minyard kfree(init_name); 36451abf71eeSCorey Minyard 36461da177e4SLinus Torvalds return 0; 36471da177e4SLinus Torvalds 36481da177e4SLinus Torvalds out_err_stop_timer: 3649a9a2c44fSCorey Minyard wait_for_timer_and_thread(new_smi); 36501da177e4SLinus Torvalds 36511da177e4SLinus Torvalds out_err: 36527aefac26SCorey Minyard new_smi->interrupt_disabled = true; 36531da177e4SLinus Torvalds 36542407d77aSMatthew Garrett if (new_smi->intf) { 3655b874b985SCorey Minyard ipmi_smi_t intf = new_smi->intf; 36562407d77aSMatthew Garrett new_smi->intf = NULL; 3657b874b985SCorey Minyard ipmi_unregister_smi(intf); 36582407d77aSMatthew Garrett } 36592407d77aSMatthew Garrett 3660*4f3e8199SCorey Minyard if (new_smi->io.irq_cleanup) { 3661*4f3e8199SCorey Minyard new_smi->io.irq_cleanup(&new_smi->io); 3662*4f3e8199SCorey Minyard new_smi->io.irq_cleanup = NULL; 36632407d77aSMatthew Garrett } 36641da177e4SLinus Torvalds 3665c305e3d3SCorey Minyard /* 3666c305e3d3SCorey Minyard * Wait until we know that we are out of any interrupt 3667c305e3d3SCorey Minyard * handlers might have been running before we freed the 3668c305e3d3SCorey Minyard * interrupt. 3669c305e3d3SCorey Minyard */ 3670fbd568a3SPaul E. McKenney synchronize_sched(); 36711da177e4SLinus Torvalds 36721da177e4SLinus Torvalds if (new_smi->si_sm) { 36731da177e4SLinus Torvalds if (new_smi->handlers) 36741da177e4SLinus Torvalds new_smi->handlers->cleanup(new_smi->si_sm); 36751da177e4SLinus Torvalds kfree(new_smi->si_sm); 36762407d77aSMatthew Garrett new_smi->si_sm = NULL; 36771da177e4SLinus Torvalds } 3678910840f2SCorey Minyard if (new_smi->io.addr_source_cleanup) { 3679910840f2SCorey Minyard new_smi->io.addr_source_cleanup(&new_smi->io); 3680910840f2SCorey Minyard new_smi->io.addr_source_cleanup = NULL; 36812407d77aSMatthew Garrett } 36822407d77aSMatthew Garrett if (new_smi->io_cleanup) { 36831da177e4SLinus Torvalds new_smi->io_cleanup(new_smi); 36842407d77aSMatthew Garrett new_smi->io_cleanup = NULL; 36852407d77aSMatthew Garrett } 36861da177e4SLinus Torvalds 3687910840f2SCorey Minyard if (new_smi->pdev) { 368850c812b2SCorey Minyard platform_device_unregister(new_smi->pdev); 36891abf71eeSCorey Minyard new_smi->pdev = NULL; 36901abf71eeSCorey Minyard } else if (new_smi->pdev) { 36911abf71eeSCorey Minyard platform_device_put(new_smi->pdev); 36922407d77aSMatthew Garrett } 3693b0defcdbSCorey Minyard 36941abf71eeSCorey Minyard kfree(init_name); 36951abf71eeSCorey Minyard 36961da177e4SLinus Torvalds return rv; 36971da177e4SLinus Torvalds } 36981da177e4SLinus Torvalds 36992223cbecSBill Pemberton static int init_ipmi_si(void) 37001da177e4SLinus Torvalds { 37011da177e4SLinus Torvalds int i; 37021da177e4SLinus Torvalds char *str; 370350c812b2SCorey Minyard int rv; 37042407d77aSMatthew Garrett struct smi_info *e; 370506ee4594SMatthew Garrett enum ipmi_addr_src type = SI_INVALID; 37061da177e4SLinus Torvalds 37071da177e4SLinus Torvalds if (initialized) 37081da177e4SLinus Torvalds return 0; 37091da177e4SLinus Torvalds initialized = 1; 37101da177e4SLinus Torvalds 3711f2afae46SCorey Minyard if (si_tryplatform) { 3712a1e9c9ddSRob Herring rv = platform_driver_register(&ipmi_driver); 371350c812b2SCorey Minyard if (rv) { 3714bb2a08c0SCorey Minyard pr_err(PFX "Unable to register driver: %d\n", rv); 371550c812b2SCorey Minyard return rv; 371650c812b2SCorey Minyard } 3717f2afae46SCorey Minyard } 371850c812b2SCorey Minyard 37191da177e4SLinus Torvalds /* Parse out the si_type string into its components. */ 37201da177e4SLinus Torvalds str = si_type_str; 37211da177e4SLinus Torvalds if (*str != '\0') { 37221da177e4SLinus Torvalds for (i = 0; (i < SI_MAX_PARMS) && (*str != '\0'); i++) { 37231da177e4SLinus Torvalds si_type[i] = str; 37241da177e4SLinus Torvalds str = strchr(str, ','); 37251da177e4SLinus Torvalds if (str) { 37261da177e4SLinus Torvalds *str = '\0'; 37271da177e4SLinus Torvalds str++; 37281da177e4SLinus Torvalds } else { 37291da177e4SLinus Torvalds break; 37301da177e4SLinus Torvalds } 37311da177e4SLinus Torvalds } 37321da177e4SLinus Torvalds } 37331da177e4SLinus Torvalds 3734bb2a08c0SCorey Minyard pr_info("IPMI System Interface driver.\n"); 37351da177e4SLinus Torvalds 3736d8cc5267SMatthew Garrett /* If the user gave us a device, they presumably want us to use it */ 3737a1e9c9ddSRob Herring if (!hardcode_find_bmc()) 3738d8cc5267SMatthew Garrett return 0; 3739d8cc5267SMatthew Garrett 3740b0defcdbSCorey Minyard #ifdef CONFIG_PCI 3741f2afae46SCorey Minyard if (si_trypci) { 3742168b35a7SCorey Minyard rv = pci_register_driver(&ipmi_pci_driver); 3743c305e3d3SCorey Minyard if (rv) 3744bb2a08c0SCorey Minyard pr_err(PFX "Unable to register PCI driver: %d\n", rv); 374556480287SMatthew Garrett else 37467aefac26SCorey Minyard pci_registered = true; 3747f2afae46SCorey Minyard } 3748b0defcdbSCorey Minyard #endif 3749b0defcdbSCorey Minyard 3750754d4531SMatthew Garrett #ifdef CONFIG_ACPI 3751d941aeaeSCorey Minyard if (si_tryacpi) 3752754d4531SMatthew Garrett spmi_find_bmc(); 3753754d4531SMatthew Garrett #endif 3754754d4531SMatthew Garrett 3755fdbeb7deSThomas Bogendoerfer #ifdef CONFIG_PARISC 3756fdbeb7deSThomas Bogendoerfer register_parisc_driver(&ipmi_parisc_driver); 37577aefac26SCorey Minyard parisc_registered = true; 3758fdbeb7deSThomas Bogendoerfer #endif 3759fdbeb7deSThomas Bogendoerfer 376006ee4594SMatthew Garrett /* We prefer devices with interrupts, but in the case of a machine 376106ee4594SMatthew Garrett with multiple BMCs we assume that there will be several instances 376206ee4594SMatthew Garrett of a given type so if we succeed in registering a type then also 376306ee4594SMatthew Garrett try to register everything else of the same type */ 3764d8cc5267SMatthew Garrett 37652407d77aSMatthew Garrett mutex_lock(&smi_infos_lock); 37662407d77aSMatthew Garrett list_for_each_entry(e, &smi_infos, link) { 376706ee4594SMatthew Garrett /* Try to register a device if it has an IRQ and we either 376806ee4594SMatthew Garrett haven't successfully registered a device yet or this 376906ee4594SMatthew Garrett device has the same type as one we successfully registered */ 3770910840f2SCorey Minyard if (e->io.irq && (!type || e->io.addr_source == type)) { 3771d8cc5267SMatthew Garrett if (!try_smi_init(e)) { 3772910840f2SCorey Minyard type = e->io.addr_source; 377306ee4594SMatthew Garrett } 377406ee4594SMatthew Garrett } 377506ee4594SMatthew Garrett } 377606ee4594SMatthew Garrett 377706ee4594SMatthew Garrett /* type will only have been set if we successfully registered an si */ 377806ee4594SMatthew Garrett if (type) { 3779d8cc5267SMatthew Garrett mutex_unlock(&smi_infos_lock); 3780d8cc5267SMatthew Garrett return 0; 3781d8cc5267SMatthew Garrett } 3782d8cc5267SMatthew Garrett 3783d8cc5267SMatthew Garrett /* Fall back to the preferred device */ 3784d8cc5267SMatthew Garrett 3785d8cc5267SMatthew Garrett list_for_each_entry(e, &smi_infos, link) { 3786910840f2SCorey Minyard if (!e->io.irq && (!type || e->io.addr_source == type)) { 3787d8cc5267SMatthew Garrett if (!try_smi_init(e)) { 3788910840f2SCorey Minyard type = e->io.addr_source; 378906ee4594SMatthew Garrett } 379006ee4594SMatthew Garrett } 379106ee4594SMatthew Garrett } 3792d8cc5267SMatthew Garrett mutex_unlock(&smi_infos_lock); 379306ee4594SMatthew Garrett 379406ee4594SMatthew Garrett if (type) 3795d8cc5267SMatthew Garrett return 0; 37962407d77aSMatthew Garrett 3797d6dfd131SCorey Minyard mutex_lock(&smi_infos_lock); 3798b361e27bSCorey Minyard if (unload_when_empty && list_empty(&smi_infos)) { 3799d6dfd131SCorey Minyard mutex_unlock(&smi_infos_lock); 3800d2478521SCorey Minyard cleanup_ipmi_si(); 3801bb2a08c0SCorey Minyard pr_warn(PFX "Unable to find any System Interface(s)\n"); 38021da177e4SLinus Torvalds return -ENODEV; 3803b0defcdbSCorey Minyard } else { 3804d6dfd131SCorey Minyard mutex_unlock(&smi_infos_lock); 38051da177e4SLinus Torvalds return 0; 38061da177e4SLinus Torvalds } 3807b0defcdbSCorey Minyard } 38081da177e4SLinus Torvalds module_init(init_ipmi_si); 38091da177e4SLinus Torvalds 3810b361e27bSCorey Minyard static void cleanup_one_si(struct smi_info *to_clean) 38111da177e4SLinus Torvalds { 38122407d77aSMatthew Garrett int rv = 0; 38131da177e4SLinus Torvalds 38141da177e4SLinus Torvalds if (!to_clean) 38151da177e4SLinus Torvalds return; 38161da177e4SLinus Torvalds 3817b874b985SCorey Minyard if (to_clean->intf) { 3818b874b985SCorey Minyard ipmi_smi_t intf = to_clean->intf; 3819b874b985SCorey Minyard 3820b874b985SCorey Minyard to_clean->intf = NULL; 3821b874b985SCorey Minyard rv = ipmi_unregister_smi(intf); 3822b874b985SCorey Minyard if (rv) { 3823b874b985SCorey Minyard pr_err(PFX "Unable to unregister device: errno=%d\n", 3824b874b985SCorey Minyard rv); 3825b874b985SCorey Minyard } 3826b874b985SCorey Minyard } 3827b874b985SCorey Minyard 3828910840f2SCorey Minyard if (to_clean->io.dev) 3829910840f2SCorey Minyard dev_set_drvdata(to_clean->io.dev, NULL); 3830567eded9STakao Indoh 3831b0defcdbSCorey Minyard list_del(&to_clean->link); 3832b0defcdbSCorey Minyard 3833c305e3d3SCorey Minyard /* 3834b874b985SCorey Minyard * Make sure that interrupts, the timer and the thread are 3835b874b985SCorey Minyard * stopped and will not run again. 3836c305e3d3SCorey Minyard */ 3837*4f3e8199SCorey Minyard if (to_clean->io.irq_cleanup) 3838*4f3e8199SCorey Minyard to_clean->io.irq_cleanup(&to_clean->io); 3839a9a2c44fSCorey Minyard wait_for_timer_and_thread(to_clean); 38401da177e4SLinus Torvalds 3841c305e3d3SCorey Minyard /* 3842c305e3d3SCorey Minyard * Timeouts are stopped, now make sure the interrupts are off 3843b874b985SCorey Minyard * in the BMC. Note that timers and CPU interrupts are off, 3844b874b985SCorey Minyard * so no need for locks. 3845c305e3d3SCorey Minyard */ 3846ee6cd5f8SCorey Minyard while (to_clean->curr_msg || (to_clean->si_state != SI_NORMAL)) { 3847ee6cd5f8SCorey Minyard poll(to_clean); 3848ee6cd5f8SCorey Minyard schedule_timeout_uninterruptible(1); 3849ee6cd5f8SCorey Minyard } 38507e030d6dSCorey Minyard if (to_clean->handlers) 38510cfec916SCorey Minyard disable_si_irq(to_clean, false); 3852ee6cd5f8SCorey Minyard while (to_clean->curr_msg || (to_clean->si_state != SI_NORMAL)) { 3853ee6cd5f8SCorey Minyard poll(to_clean); 3854ee6cd5f8SCorey Minyard schedule_timeout_uninterruptible(1); 3855ee6cd5f8SCorey Minyard } 3856ee6cd5f8SCorey Minyard 38572407d77aSMatthew Garrett if (to_clean->handlers) 38581da177e4SLinus Torvalds to_clean->handlers->cleanup(to_clean->si_sm); 38591da177e4SLinus Torvalds 38601da177e4SLinus Torvalds kfree(to_clean->si_sm); 38611da177e4SLinus Torvalds 3862910840f2SCorey Minyard if (to_clean->io.addr_source_cleanup) 3863910840f2SCorey Minyard to_clean->io.addr_source_cleanup(&to_clean->io); 38647767e126SPaolo Galtieri if (to_clean->io_cleanup) 38651da177e4SLinus Torvalds to_clean->io_cleanup(to_clean); 386650c812b2SCorey Minyard 3867910840f2SCorey Minyard if (to_clean->pdev) 386850c812b2SCorey Minyard platform_device_unregister(to_clean->pdev); 386950c812b2SCorey Minyard 387050c812b2SCorey Minyard kfree(to_clean); 38711da177e4SLinus Torvalds } 38721da177e4SLinus Torvalds 38730dcf334cSSergey Senozhatsky static void cleanup_ipmi_si(void) 38741da177e4SLinus Torvalds { 3875b0defcdbSCorey Minyard struct smi_info *e, *tmp_e; 38761da177e4SLinus Torvalds 38771da177e4SLinus Torvalds if (!initialized) 38781da177e4SLinus Torvalds return; 38791da177e4SLinus Torvalds 3880b0defcdbSCorey Minyard #ifdef CONFIG_PCI 388156480287SMatthew Garrett if (pci_registered) 3882b0defcdbSCorey Minyard pci_unregister_driver(&ipmi_pci_driver); 3883b0defcdbSCorey Minyard #endif 3884fdbeb7deSThomas Bogendoerfer #ifdef CONFIG_PARISC 3885fdbeb7deSThomas Bogendoerfer if (parisc_registered) 3886fdbeb7deSThomas Bogendoerfer unregister_parisc_driver(&ipmi_parisc_driver); 3887fdbeb7deSThomas Bogendoerfer #endif 3888b0defcdbSCorey Minyard 3889a1e9c9ddSRob Herring platform_driver_unregister(&ipmi_driver); 3890dba9b4f6SCorey Minyard 3891d6dfd131SCorey Minyard mutex_lock(&smi_infos_lock); 3892b0defcdbSCorey Minyard list_for_each_entry_safe(e, tmp_e, &smi_infos, link) 3893b0defcdbSCorey Minyard cleanup_one_si(e); 3894d6dfd131SCorey Minyard mutex_unlock(&smi_infos_lock); 38951da177e4SLinus Torvalds } 38961da177e4SLinus Torvalds module_exit(cleanup_ipmi_si); 38971da177e4SLinus Torvalds 38980944d889SCorey Minyard MODULE_ALIAS("platform:dmi-ipmi-si"); 38991da177e4SLinus Torvalds MODULE_LICENSE("GPL"); 39001fdd75bdSCorey Minyard MODULE_AUTHOR("Corey Minyard <minyard@mvista.com>"); 3901c305e3d3SCorey Minyard MODULE_DESCRIPTION("Interface to the IPMI driver for the KCS, SMIC, and BT" 3902c305e3d3SCorey Minyard " system interfaces."); 3903