2  *  drivers/s390/char/sclp.c
 
   3  *     core function to access sclp interface
 
   6  *    Copyright (C) 1999 IBM Deutschland Entwicklung GmbH, IBM Corporation
 
   7  *    Author(s): Martin Peschke <mpeschke@de.ibm.com>
 
   8  *               Martin Schwidefsky <schwidefsky@de.ibm.com>
 
  11 #include <linux/module.h>
 
  12 #include <linux/err.h>
 
  13 #include <linux/spinlock.h>
 
  14 #include <linux/interrupt.h>
 
  15 #include <linux/timer.h>
 
  16 #include <linux/reboot.h>
 
  17 #include <linux/jiffies.h>
 
  18 #include <linux/init.h>
 
  19 #include <asm/types.h>
 
  20 #include <asm/s390_ext.h>
 
  24 #define SCLP_HEADER             "sclp: "
 
  26 /* Structure for register_early_external_interrupt. */
 
  27 static ext_int_info_t ext_int_info_hwc;
 
  29 /* Lock to protect internal data consistency. */
 
  30 static DEFINE_SPINLOCK(sclp_lock);
 
  32 /* Mask of events that we can send to the sclp interface. */
 
  33 static sccb_mask_t sclp_receive_mask;
 
  35 /* Mask of events that we can receive from the sclp interface. */
 
  36 static sccb_mask_t sclp_send_mask;
 
  38 /* List of registered event listeners and senders. */
 
  39 static struct list_head sclp_reg_list;
 
  41 /* List of queued requests. */
 
  42 static struct list_head sclp_req_queue;
 
  44 /* Data for read and and init requests. */
 
  45 static struct sclp_req sclp_read_req;
 
  46 static struct sclp_req sclp_init_req;
 
  47 static char sclp_read_sccb[PAGE_SIZE] __attribute__((__aligned__(PAGE_SIZE)));
 
  48 static char sclp_init_sccb[PAGE_SIZE] __attribute__((__aligned__(PAGE_SIZE)));
 
  50 /* Timer for request retries. */
 
  51 static struct timer_list sclp_request_timer;
 
  53 /* Internal state: is the driver initialized? */
 
  54 static volatile enum sclp_init_state_t {
 
  55         sclp_init_state_uninitialized,
 
  56         sclp_init_state_initializing,
 
  57         sclp_init_state_initialized
 
  58 } sclp_init_state = sclp_init_state_uninitialized;
 
  60 /* Internal state: is a request active at the sclp? */
 
  61 static volatile enum sclp_running_state_t {
 
  62         sclp_running_state_idle,
 
  63         sclp_running_state_running,
 
  64         sclp_running_state_reset_pending
 
  65 } sclp_running_state = sclp_running_state_idle;
 
  67 /* Internal state: is a read request pending? */
 
  68 static volatile enum sclp_reading_state_t {
 
  69         sclp_reading_state_idle,
 
  70         sclp_reading_state_reading
 
  71 } sclp_reading_state = sclp_reading_state_idle;
 
  73 /* Internal state: is the driver currently serving requests? */
 
  74 static volatile enum sclp_activation_state_t {
 
  75         sclp_activation_state_active,
 
  76         sclp_activation_state_deactivating,
 
  77         sclp_activation_state_inactive,
 
  78         sclp_activation_state_activating
 
  79 } sclp_activation_state = sclp_activation_state_active;
 
  81 /* Internal state: is an init mask request pending? */
 
  82 static volatile enum sclp_mask_state_t {
 
  84         sclp_mask_state_initializing
 
  85 } sclp_mask_state = sclp_mask_state_idle;
 
  87 /* Maximum retry counts */
 
  88 #define SCLP_INIT_RETRY         3
 
  89 #define SCLP_MASK_RETRY         3
 
  91 /* Timeout intervals in seconds.*/
 
  92 #define SCLP_BUSY_INTERVAL      10
 
  93 #define SCLP_RETRY_INTERVAL     30
 
  95 static void sclp_process_queue(void);
 
  96 static void __sclp_make_read_req(void);
 
  97 static int sclp_init_mask(int calculate);
 
  98 static int sclp_init(void);
 
 100 /* Perform service call. Return 0 on success, non-zero otherwise. */
 
 102 sclp_service_call(sclp_cmdw_t command, void *sccb)
 
 107                 "       .insn   rre,0xb2200000,%1,%2\n"  /* servc %1,%2 */
 
 110                 : "=&d" (cc) : "d" (command), "a" (__pa(sccb))
 
 121 __sclp_queue_read_req(void)
 
 123         if (sclp_reading_state == sclp_reading_state_idle) {
 
 124                 sclp_reading_state = sclp_reading_state_reading;
 
 125                 __sclp_make_read_req();
 
 126                 /* Add request to head of queue */
 
 127                 list_add(&sclp_read_req.list, &sclp_req_queue);
 
 131 /* Set up request retry timer. Called while sclp_lock is locked. */
 
 133 __sclp_set_request_timer(unsigned long time, void (*function)(unsigned long),
 
 136         del_timer(&sclp_request_timer);
 
 137         sclp_request_timer.function = function;
 
 138         sclp_request_timer.data = data;
 
 139         sclp_request_timer.expires = jiffies + time;
 
 140         add_timer(&sclp_request_timer);
 
 143 /* Request timeout handler. Restart the request queue. If DATA is non-zero,
 
 144  * force restart of running request. */
 
 146 sclp_request_timeout(unsigned long data)
 
 150         spin_lock_irqsave(&sclp_lock, flags);
 
 152                 if (sclp_running_state == sclp_running_state_running) {
 
 153                         /* Break running state and queue NOP read event request
 
 154                          * to get a defined interface state. */
 
 155                         __sclp_queue_read_req();
 
 156                         sclp_running_state = sclp_running_state_idle;
 
 159                 __sclp_set_request_timer(SCLP_BUSY_INTERVAL * HZ,
 
 160                                          sclp_request_timeout, 0);
 
 162         spin_unlock_irqrestore(&sclp_lock, flags);
 
 163         sclp_process_queue();
 
 166 /* Try to start a request. Return zero if the request was successfully
 
 167  * started or if it will be started at a later time. Return non-zero otherwise.
 
 168  * Called while sclp_lock is locked. */
 
 170 __sclp_start_request(struct sclp_req *req)
 
 174         if (sclp_running_state != sclp_running_state_idle)
 
 176         del_timer(&sclp_request_timer);
 
 177         rc = sclp_service_call(req->command, req->sccb);
 
 181                 /* Sucessfully started request */
 
 182                 req->status = SCLP_REQ_RUNNING;
 
 183                 sclp_running_state = sclp_running_state_running;
 
 184                 __sclp_set_request_timer(SCLP_RETRY_INTERVAL * HZ,
 
 185                                          sclp_request_timeout, 1);
 
 187         } else if (rc == -EBUSY) {
 
 188                 /* Try again later */
 
 189                 __sclp_set_request_timer(SCLP_BUSY_INTERVAL * HZ,
 
 190                                          sclp_request_timeout, 0);
 
 194         req->status = SCLP_REQ_FAILED;
 
 198 /* Try to start queued requests. */
 
 200 sclp_process_queue(void)
 
 202         struct sclp_req *req;
 
 206         spin_lock_irqsave(&sclp_lock, flags);
 
 207         if (sclp_running_state != sclp_running_state_idle) {
 
 208                 spin_unlock_irqrestore(&sclp_lock, flags);
 
 211         del_timer(&sclp_request_timer);
 
 212         while (!list_empty(&sclp_req_queue)) {
 
 213                 req = list_entry(sclp_req_queue.next, struct sclp_req, list);
 
 214                 rc = __sclp_start_request(req);
 
 218                 if (req->start_count > 1) {
 
 219                         /* Cannot abort already submitted request - could still
 
 220                          * be active at the SCLP */
 
 221                         __sclp_set_request_timer(SCLP_BUSY_INTERVAL * HZ,
 
 222                                                  sclp_request_timeout, 0);
 
 225                 /* Post-processing for aborted request */
 
 226                 list_del(&req->list);
 
 228                         spin_unlock_irqrestore(&sclp_lock, flags);
 
 229                         req->callback(req, req->callback_data);
 
 230                         spin_lock_irqsave(&sclp_lock, flags);
 
 233         spin_unlock_irqrestore(&sclp_lock, flags);
 
 236 /* Queue a new request. Return zero on success, non-zero otherwise. */
 
 238 sclp_add_request(struct sclp_req *req)
 
 243         spin_lock_irqsave(&sclp_lock, flags);
 
 244         if ((sclp_init_state != sclp_init_state_initialized ||
 
 245              sclp_activation_state != sclp_activation_state_active) &&
 
 246             req != &sclp_init_req) {
 
 247                 spin_unlock_irqrestore(&sclp_lock, flags);
 
 250         req->status = SCLP_REQ_QUEUED;
 
 251         req->start_count = 0;
 
 252         list_add_tail(&req->list, &sclp_req_queue);
 
 254         /* Start if request is first in list */
 
 255         if (sclp_running_state == sclp_running_state_idle &&
 
 256             req->list.prev == &sclp_req_queue) {
 
 257                 rc = __sclp_start_request(req);
 
 259                         list_del(&req->list);
 
 261         spin_unlock_irqrestore(&sclp_lock, flags);
 
 265 EXPORT_SYMBOL(sclp_add_request);
 
 267 /* Dispatch events found in request buffer to registered listeners. Return 0
 
 268  * if all events were dispatched, non-zero otherwise. */
 
 270 sclp_dispatch_evbufs(struct sccb_header *sccb)
 
 273         struct evbuf_header *evbuf;
 
 275         struct sclp_register *reg;
 
 279         spin_lock_irqsave(&sclp_lock, flags);
 
 281         for (offset = sizeof(struct sccb_header); offset < sccb->length;
 
 282              offset += evbuf->length) {
 
 283                 /* Search for event handler */
 
 284                 evbuf = (struct evbuf_header *) ((addr_t) sccb + offset);
 
 286                 list_for_each(l, &sclp_reg_list) {
 
 287                         reg = list_entry(l, struct sclp_register, list);
 
 288                         if (reg->receive_mask & (1 << (32 - evbuf->type)))
 
 293                 if (reg && reg->receiver_fn) {
 
 294                         spin_unlock_irqrestore(&sclp_lock, flags);
 
 295                         reg->receiver_fn(evbuf);
 
 296                         spin_lock_irqsave(&sclp_lock, flags);
 
 297                 } else if (reg == NULL)
 
 300         spin_unlock_irqrestore(&sclp_lock, flags);
 
 304 /* Read event data request callback. */
 
 306 sclp_read_cb(struct sclp_req *req, void *data)
 
 309         struct sccb_header *sccb;
 
 311         sccb = (struct sccb_header *) req->sccb;
 
 312         if (req->status == SCLP_REQ_DONE && (sccb->response_code == 0x20 ||
 
 313             sccb->response_code == 0x220))
 
 314                 sclp_dispatch_evbufs(sccb);
 
 315         spin_lock_irqsave(&sclp_lock, flags);
 
 316         sclp_reading_state = sclp_reading_state_idle;
 
 317         spin_unlock_irqrestore(&sclp_lock, flags);
 
 320 /* Prepare read event data request. Called while sclp_lock is locked. */
 
 321 static void __sclp_make_read_req(void)
 
 323         struct sccb_header *sccb;
 
 325         sccb = (struct sccb_header *) sclp_read_sccb;
 
 327         memset(&sclp_read_req, 0, sizeof(struct sclp_req));
 
 328         sclp_read_req.command = SCLP_CMDW_READ_EVENT_DATA;
 
 329         sclp_read_req.status = SCLP_REQ_QUEUED;
 
 330         sclp_read_req.start_count = 0;
 
 331         sclp_read_req.callback = sclp_read_cb;
 
 332         sclp_read_req.sccb = sccb;
 
 333         sccb->length = PAGE_SIZE;
 
 334         sccb->function_code = 0;
 
 335         sccb->control_mask[2] = 0x80;
 
 338 /* Search request list for request with matching sccb. Return request if found,
 
 339  * NULL otherwise. Called while sclp_lock is locked. */
 
 340 static inline struct sclp_req *
 
 341 __sclp_find_req(u32 sccb)
 
 344         struct sclp_req *req;
 
 346         list_for_each(l, &sclp_req_queue) {
 
 347                 req = list_entry(l, struct sclp_req, list);
 
 348                 if (sccb == (u32) (addr_t) req->sccb)
 
 354 /* Handler for external interruption. Perform request post-processing.
 
 355  * Prepare read event data request if necessary. Start processing of next
 
 356  * request on queue. */
 
 358 sclp_interrupt_handler(__u16 code)
 
 360         struct sclp_req *req;
 
 364         spin_lock(&sclp_lock);
 
 365         finished_sccb = S390_lowcore.ext_params & 0xfffffff8;
 
 366         evbuf_pending = S390_lowcore.ext_params & 0x3;
 
 368                 del_timer(&sclp_request_timer);
 
 369                 sclp_running_state = sclp_running_state_reset_pending;
 
 370                 req = __sclp_find_req(finished_sccb);
 
 372                         /* Request post-processing */
 
 373                         list_del(&req->list);
 
 374                         req->status = SCLP_REQ_DONE;
 
 376                                 spin_unlock(&sclp_lock);
 
 377                                 req->callback(req, req->callback_data);
 
 378                                 spin_lock(&sclp_lock);
 
 381                 sclp_running_state = sclp_running_state_idle;
 
 384             sclp_activation_state == sclp_activation_state_active)
 
 385                 __sclp_queue_read_req();
 
 386         spin_unlock(&sclp_lock);
 
 387         sclp_process_queue();
 
 390 /* Convert interval in jiffies to TOD ticks. */
 
 392 sclp_tod_from_jiffies(unsigned long jiffies)
 
 394         return (u64) (jiffies / HZ) << 32;
 
 397 /* Wait until a currently running request finished. Note: while this function
 
 398  * is running, no timers are served on the calling CPU. */
 
 402         unsigned long long old_tick;
 
 404         unsigned long cr0, cr0_sync;
 
 408         /* We'll be disabling timer interrupts, so we need a custom timeout
 
 411         if (timer_pending(&sclp_request_timer)) {
 
 412                 /* Get timeout TOD value */
 
 413                 timeout = get_clock() +
 
 414                           sclp_tod_from_jiffies(sclp_request_timer.expires -
 
 417         local_irq_save(flags);
 
 418         /* Prevent bottom half from executing once we force interrupts open */
 
 419         irq_context = in_interrupt();
 
 422         /* Enable service-signal interruption, disable timer interrupts */
 
 423         old_tick = local_tick_disable();
 
 425         __ctl_store(cr0, 0, 0);
 
 427         cr0_sync &= 0xffff00a0;
 
 428         cr0_sync |= 0x00000200;
 
 429         __ctl_load(cr0_sync, 0, 0);
 
 430         __raw_local_irq_stosm(0x01);
 
 431         /* Loop until driver state indicates finished request */
 
 432         while (sclp_running_state != sclp_running_state_idle) {
 
 433                 /* Check for expired request timer */
 
 434                 if (timer_pending(&sclp_request_timer) &&
 
 435                     get_clock() > timeout &&
 
 436                     del_timer(&sclp_request_timer))
 
 437                         sclp_request_timer.function(sclp_request_timer.data);
 
 441         __ctl_load(cr0, 0, 0);
 
 444         local_tick_enable(old_tick);
 
 445         local_irq_restore(flags);
 
 447 EXPORT_SYMBOL(sclp_sync_wait);
 
 449 /* Dispatch changes in send and receive mask to registered listeners. */
 
 451 sclp_dispatch_state_change(void)
 
 454         struct sclp_register *reg;
 
 456         sccb_mask_t receive_mask;
 
 457         sccb_mask_t send_mask;
 
 460                 spin_lock_irqsave(&sclp_lock, flags);
 
 462                 list_for_each(l, &sclp_reg_list) {
 
 463                         reg = list_entry(l, struct sclp_register, list);
 
 464                         receive_mask = reg->send_mask & sclp_receive_mask;
 
 465                         send_mask = reg->receive_mask & sclp_send_mask;
 
 466                         if (reg->sclp_receive_mask != receive_mask ||
 
 467                             reg->sclp_send_mask != send_mask) {
 
 468                                 reg->sclp_receive_mask = receive_mask;
 
 469                                 reg->sclp_send_mask = send_mask;
 
 474                 spin_unlock_irqrestore(&sclp_lock, flags);
 
 475                 if (reg && reg->state_change_fn)
 
 476                         reg->state_change_fn(reg);
 
 480 struct sclp_statechangebuf {
 
 481         struct evbuf_header     header;
 
 482         u8              validity_sclp_active_facility_mask : 1;
 
 483         u8              validity_sclp_receive_mask : 1;
 
 484         u8              validity_sclp_send_mask : 1;
 
 485         u8              validity_read_data_function_mask : 1;
 
 488         u64             sclp_active_facility_mask;
 
 489         sccb_mask_t     sclp_receive_mask;
 
 490         sccb_mask_t     sclp_send_mask;
 
 491         u32             read_data_function_mask;
 
 492 } __attribute__((packed));
 
 495 /* State change event callback. Inform listeners of changes. */
 
 497 sclp_state_change_cb(struct evbuf_header *evbuf)
 
 500         struct sclp_statechangebuf *scbuf;
 
 502         scbuf = (struct sclp_statechangebuf *) evbuf;
 
 503         if (scbuf->mask_length != sizeof(sccb_mask_t))
 
 505         spin_lock_irqsave(&sclp_lock, flags);
 
 506         if (scbuf->validity_sclp_receive_mask)
 
 507                 sclp_receive_mask = scbuf->sclp_receive_mask;
 
 508         if (scbuf->validity_sclp_send_mask)
 
 509                 sclp_send_mask = scbuf->sclp_send_mask;
 
 510         spin_unlock_irqrestore(&sclp_lock, flags);
 
 511         if (scbuf->validity_sclp_active_facility_mask)
 
 512                 sclp_facilities = scbuf->sclp_active_facility_mask;
 
 513         sclp_dispatch_state_change();
 
 516 static struct sclp_register sclp_state_change_event = {
 
 517         .receive_mask = EVTYP_STATECHANGE_MASK,
 
 518         .receiver_fn = sclp_state_change_cb
 
 521 /* Calculate receive and send mask of currently registered listeners.
 
 522  * Called while sclp_lock is locked. */
 
 524 __sclp_get_mask(sccb_mask_t *receive_mask, sccb_mask_t *send_mask)
 
 527         struct sclp_register *t;
 
 531         list_for_each(l, &sclp_reg_list) {
 
 532                 t = list_entry(l, struct sclp_register, list);
 
 533                 *receive_mask |= t->receive_mask;
 
 534                 *send_mask |= t->send_mask;
 
 538 /* Register event listener. Return 0 on success, non-zero otherwise. */
 
 540 sclp_register(struct sclp_register *reg)
 
 543         sccb_mask_t receive_mask;
 
 544         sccb_mask_t send_mask;
 
 550         spin_lock_irqsave(&sclp_lock, flags);
 
 551         /* Check event mask for collisions */
 
 552         __sclp_get_mask(&receive_mask, &send_mask);
 
 553         if (reg->receive_mask & receive_mask || reg->send_mask & send_mask) {
 
 554                 spin_unlock_irqrestore(&sclp_lock, flags);
 
 557         /* Trigger initial state change callback */
 
 558         reg->sclp_receive_mask = 0;
 
 559         reg->sclp_send_mask = 0;
 
 560         list_add(®->list, &sclp_reg_list);
 
 561         spin_unlock_irqrestore(&sclp_lock, flags);
 
 562         rc = sclp_init_mask(1);
 
 564                 spin_lock_irqsave(&sclp_lock, flags);
 
 565                 list_del(®->list);
 
 566                 spin_unlock_irqrestore(&sclp_lock, flags);
 
 571 EXPORT_SYMBOL(sclp_register);
 
 573 /* Unregister event listener. */
 
 575 sclp_unregister(struct sclp_register *reg)
 
 579         spin_lock_irqsave(&sclp_lock, flags);
 
 580         list_del(®->list);
 
 581         spin_unlock_irqrestore(&sclp_lock, flags);
 
 585 EXPORT_SYMBOL(sclp_unregister);
 
 587 /* Remove event buffers which are marked processed. Return the number of
 
 588  * remaining event buffers. */
 
 590 sclp_remove_processed(struct sccb_header *sccb)
 
 592         struct evbuf_header *evbuf;
 
 596         evbuf = (struct evbuf_header *) (sccb + 1);
 
 598         remaining = sccb->length - sizeof(struct sccb_header);
 
 599         while (remaining > 0) {
 
 600                 remaining -= evbuf->length;
 
 601                 if (evbuf->flags & 0x80) {
 
 602                         sccb->length -= evbuf->length;
 
 603                         memcpy(evbuf, (void *) ((addr_t) evbuf + evbuf->length),
 
 607                         evbuf = (struct evbuf_header *)
 
 608                                         ((addr_t) evbuf + evbuf->length);
 
 614 EXPORT_SYMBOL(sclp_remove_processed);
 
 617         struct sccb_header header;
 
 620         sccb_mask_t receive_mask;
 
 621         sccb_mask_t send_mask;
 
 622         sccb_mask_t sclp_receive_mask;
 
 623         sccb_mask_t sclp_send_mask;
 
 624 } __attribute__((packed));
 
 626 /* Prepare init mask request. Called while sclp_lock is locked. */
 
 628 __sclp_make_init_req(u32 receive_mask, u32 send_mask)
 
 630         struct init_sccb *sccb;
 
 632         sccb = (struct init_sccb *) sclp_init_sccb;
 
 634         memset(&sclp_init_req, 0, sizeof(struct sclp_req));
 
 635         sclp_init_req.command = SCLP_CMDW_WRITE_EVENT_MASK;
 
 636         sclp_init_req.status = SCLP_REQ_FILLED;
 
 637         sclp_init_req.start_count = 0;
 
 638         sclp_init_req.callback = NULL;
 
 639         sclp_init_req.callback_data = NULL;
 
 640         sclp_init_req.sccb = sccb;
 
 641         sccb->header.length = sizeof(struct init_sccb);
 
 642         sccb->mask_length = sizeof(sccb_mask_t);
 
 643         sccb->receive_mask = receive_mask;
 
 644         sccb->send_mask = send_mask;
 
 645         sccb->sclp_receive_mask = 0;
 
 646         sccb->sclp_send_mask = 0;
 
 649 /* Start init mask request. If calculate is non-zero, calculate the mask as
 
 650  * requested by registered listeners. Use zero mask otherwise. Return 0 on
 
 651  * success, non-zero otherwise. */
 
 653 sclp_init_mask(int calculate)
 
 656         struct init_sccb *sccb = (struct init_sccb *) sclp_init_sccb;
 
 657         sccb_mask_t receive_mask;
 
 658         sccb_mask_t send_mask;
 
 663         spin_lock_irqsave(&sclp_lock, flags);
 
 664         /* Check if interface is in appropriate state */
 
 665         if (sclp_mask_state != sclp_mask_state_idle) {
 
 666                 spin_unlock_irqrestore(&sclp_lock, flags);
 
 669         if (sclp_activation_state == sclp_activation_state_inactive) {
 
 670                 spin_unlock_irqrestore(&sclp_lock, flags);
 
 673         sclp_mask_state = sclp_mask_state_initializing;
 
 676                 __sclp_get_mask(&receive_mask, &send_mask);
 
 682         for (retry = 0; retry <= SCLP_MASK_RETRY; retry++) {
 
 683                 /* Prepare request */
 
 684                 __sclp_make_init_req(receive_mask, send_mask);
 
 685                 spin_unlock_irqrestore(&sclp_lock, flags);
 
 686                 if (sclp_add_request(&sclp_init_req)) {
 
 687                         /* Try again later */
 
 688                         wait = jiffies + SCLP_BUSY_INTERVAL * HZ;
 
 689                         while (time_before(jiffies, wait))
 
 691                         spin_lock_irqsave(&sclp_lock, flags);
 
 694                 while (sclp_init_req.status != SCLP_REQ_DONE &&
 
 695                        sclp_init_req.status != SCLP_REQ_FAILED)
 
 697                 spin_lock_irqsave(&sclp_lock, flags);
 
 698                 if (sclp_init_req.status == SCLP_REQ_DONE &&
 
 699                     sccb->header.response_code == 0x20) {
 
 700                         /* Successful request */
 
 702                                 sclp_receive_mask = sccb->sclp_receive_mask;
 
 703                                 sclp_send_mask = sccb->sclp_send_mask;
 
 705                                 sclp_receive_mask = 0;
 
 708                         spin_unlock_irqrestore(&sclp_lock, flags);
 
 709                         sclp_dispatch_state_change();
 
 710                         spin_lock_irqsave(&sclp_lock, flags);
 
 715         sclp_mask_state = sclp_mask_state_idle;
 
 716         spin_unlock_irqrestore(&sclp_lock, flags);
 
 720 /* Deactivate SCLP interface. On success, new requests will be rejected,
 
 721  * events will no longer be dispatched. Return 0 on success, non-zero
 
 724 sclp_deactivate(void)
 
 729         spin_lock_irqsave(&sclp_lock, flags);
 
 730         /* Deactivate can only be called when active */
 
 731         if (sclp_activation_state != sclp_activation_state_active) {
 
 732                 spin_unlock_irqrestore(&sclp_lock, flags);
 
 735         sclp_activation_state = sclp_activation_state_deactivating;
 
 736         spin_unlock_irqrestore(&sclp_lock, flags);
 
 737         rc = sclp_init_mask(0);
 
 738         spin_lock_irqsave(&sclp_lock, flags);
 
 740                 sclp_activation_state = sclp_activation_state_inactive;
 
 742                 sclp_activation_state = sclp_activation_state_active;
 
 743         spin_unlock_irqrestore(&sclp_lock, flags);
 
 747 EXPORT_SYMBOL(sclp_deactivate);
 
 749 /* Reactivate SCLP interface after sclp_deactivate. On success, new
 
 750  * requests will be accepted, events will be dispatched again. Return 0 on
 
 751  * success, non-zero otherwise. */
 
 753 sclp_reactivate(void)
 
 758         spin_lock_irqsave(&sclp_lock, flags);
 
 759         /* Reactivate can only be called when inactive */
 
 760         if (sclp_activation_state != sclp_activation_state_inactive) {
 
 761                 spin_unlock_irqrestore(&sclp_lock, flags);
 
 764         sclp_activation_state = sclp_activation_state_activating;
 
 765         spin_unlock_irqrestore(&sclp_lock, flags);
 
 766         rc = sclp_init_mask(1);
 
 767         spin_lock_irqsave(&sclp_lock, flags);
 
 769                 sclp_activation_state = sclp_activation_state_active;
 
 771                 sclp_activation_state = sclp_activation_state_inactive;
 
 772         spin_unlock_irqrestore(&sclp_lock, flags);
 
 776 EXPORT_SYMBOL(sclp_reactivate);
 
 778 /* Handler for external interruption used during initialization. Modify
 
 779  * request state to done. */
 
 781 sclp_check_handler(__u16 code)
 
 785         finished_sccb = S390_lowcore.ext_params & 0xfffffff8;
 
 786         /* Is this the interrupt we are waiting for? */
 
 787         if (finished_sccb == 0)
 
 789         if (finished_sccb != (u32) (addr_t) sclp_init_sccb)
 
 790                 panic("sclp: unsolicited interrupt for buffer at 0x%x\n",
 
 792         spin_lock(&sclp_lock);
 
 793         if (sclp_running_state == sclp_running_state_running) {
 
 794                 sclp_init_req.status = SCLP_REQ_DONE;
 
 795                 sclp_running_state = sclp_running_state_idle;
 
 797         spin_unlock(&sclp_lock);
 
 800 /* Initial init mask request timed out. Modify request state to failed. */
 
 802 sclp_check_timeout(unsigned long data)
 
 806         spin_lock_irqsave(&sclp_lock, flags);
 
 807         if (sclp_running_state == sclp_running_state_running) {
 
 808                 sclp_init_req.status = SCLP_REQ_FAILED;
 
 809                 sclp_running_state = sclp_running_state_idle;
 
 811         spin_unlock_irqrestore(&sclp_lock, flags);
 
 814 /* Perform a check of the SCLP interface. Return zero if the interface is
 
 815  * available and there are no pending requests from a previous instance.
 
 816  * Return non-zero otherwise. */
 
 818 sclp_check_interface(void)
 
 820         struct init_sccb *sccb;
 
 825         spin_lock_irqsave(&sclp_lock, flags);
 
 826         /* Prepare init mask command */
 
 827         rc = register_early_external_interrupt(0x2401, sclp_check_handler,
 
 830                 spin_unlock_irqrestore(&sclp_lock, flags);
 
 833         for (retry = 0; retry <= SCLP_INIT_RETRY; retry++) {
 
 834                 __sclp_make_init_req(0, 0);
 
 835                 sccb = (struct init_sccb *) sclp_init_req.sccb;
 
 836                 rc = sclp_service_call(sclp_init_req.command, sccb);
 
 839                 sclp_init_req.status = SCLP_REQ_RUNNING;
 
 840                 sclp_running_state = sclp_running_state_running;
 
 841                 __sclp_set_request_timer(SCLP_RETRY_INTERVAL * HZ,
 
 842                                          sclp_check_timeout, 0);
 
 843                 spin_unlock_irqrestore(&sclp_lock, flags);
 
 844                 /* Enable service-signal interruption - needs to happen
 
 845                  * with IRQs enabled. */
 
 847                 /* Wait for signal from interrupt or timeout */
 
 849                 /* Disable service-signal interruption - needs to happen
 
 850                  * with IRQs enabled. */
 
 852                 spin_lock_irqsave(&sclp_lock, flags);
 
 853                 del_timer(&sclp_request_timer);
 
 854                 if (sclp_init_req.status == SCLP_REQ_DONE &&
 
 855                     sccb->header.response_code == 0x20) {
 
 861         unregister_early_external_interrupt(0x2401, sclp_check_handler,
 
 863         spin_unlock_irqrestore(&sclp_lock, flags);
 
 867 /* Reboot event handler. Reset send and receive mask to prevent pending SCLP
 
 868  * events from interfering with rebooted system. */
 
 870 sclp_reboot_event(struct notifier_block *this, unsigned long event, void *ptr)
 
 876 static struct notifier_block sclp_reboot_notifier = {
 
 877         .notifier_call = sclp_reboot_event
 
 880 /* Initialize SCLP driver. Return zero if driver is operational, non-zero
 
 888         spin_lock_irqsave(&sclp_lock, flags);
 
 889         /* Check for previous or running initialization */
 
 890         if (sclp_init_state != sclp_init_state_uninitialized) {
 
 891                 spin_unlock_irqrestore(&sclp_lock, flags);
 
 894         sclp_init_state = sclp_init_state_initializing;
 
 895         /* Set up variables */
 
 896         INIT_LIST_HEAD(&sclp_req_queue);
 
 897         INIT_LIST_HEAD(&sclp_reg_list);
 
 898         list_add(&sclp_state_change_event.list, &sclp_reg_list);
 
 899         init_timer(&sclp_request_timer);
 
 900         /* Check interface */
 
 901         spin_unlock_irqrestore(&sclp_lock, flags);
 
 902         rc = sclp_check_interface();
 
 903         spin_lock_irqsave(&sclp_lock, flags);
 
 905                 sclp_init_state = sclp_init_state_uninitialized;
 
 906                 spin_unlock_irqrestore(&sclp_lock, flags);
 
 909         /* Register reboot handler */
 
 910         rc = register_reboot_notifier(&sclp_reboot_notifier);
 
 912                 sclp_init_state = sclp_init_state_uninitialized;
 
 913                 spin_unlock_irqrestore(&sclp_lock, flags);
 
 916         /* Register interrupt handler */
 
 917         rc = register_early_external_interrupt(0x2401, sclp_interrupt_handler,
 
 920                 unregister_reboot_notifier(&sclp_reboot_notifier);
 
 921                 sclp_init_state = sclp_init_state_uninitialized;
 
 922                 spin_unlock_irqrestore(&sclp_lock, flags);
 
 925         sclp_init_state = sclp_init_state_initialized;
 
 926         spin_unlock_irqrestore(&sclp_lock, flags);
 
 927         /* Enable service-signal external interruption - needs to happen with
 
 934 static __init int sclp_initcall(void)
 
 939 arch_initcall(sclp_initcall);