2 * IUCV base infrastructure.
4 * Copyright IBM Corp. 2001, 2009
8 * Alan Altmark (Alan_Altmark@us.ibm.com) Sept. 2000
9 * Xenia Tkatschow (xenia@us.ibm.com)
10 * 2Gb awareness and general cleanup:
11 * Fritz Elfert (elfert@de.ibm.com, felfert@millenux.com)
12 * Rewritten for af_iucv:
13 * Martin Schwidefsky <schwidefsky@de.ibm.com>
15 * Ursula Braun (ursula.braun@de.ibm.com)
19 * CP Programming Service, IBM document # SC24-5760
21 * This program is free software; you can redistribute it and/or modify
22 * it under the terms of the GNU General Public License as published by
23 * the Free Software Foundation; either version 2, or (at your option)
26 * This program is distributed in the hope that it will be useful,
27 * but WITHOUT ANY WARRANTY; without even the implied warranty of
28 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
29 * GNU General Public License for more details.
31 * You should have received a copy of the GNU General Public License
32 * along with this program; if not, write to the Free Software
33 * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
36 #define KMSG_COMPONENT "iucv"
37 #define pr_fmt(fmt) KMSG_COMPONENT ": " fmt
39 #include <linux/kernel_stat.h>
40 #include <linux/module.h>
41 #include <linux/moduleparam.h>
42 #include <linux/spinlock.h>
43 #include <linux/kernel.h>
44 #include <linux/slab.h>
45 #include <linux/init.h>
46 #include <linux/interrupt.h>
47 #include <linux/list.h>
48 #include <linux/errno.h>
49 #include <linux/err.h>
50 #include <linux/device.h>
51 #include <linux/cpu.h>
52 #include <linux/reboot.h>
53 #include <net/iucv/iucv.h>
54 #include <linux/atomic.h>
55 #include <asm/ebcdic.h>
62 * All flags are defined in the field IPFLAGS1 of each function
63 * and can be found in CP Programming Services.
64 * IPSRCCLS - Indicates you have specified a source class.
65 * IPTRGCLS - Indicates you have specified a target class.
66 * IPFGPID - Indicates you have specified a pathid.
67 * IPFGMID - Indicates you have specified a message ID.
68 * IPNORPY - Indicates a one-way message. No reply expected.
69 * IPALL - Indicates that all paths are affected.
71 #define IUCV_IPSRCCLS 0x01
72 #define IUCV_IPTRGCLS 0x01
73 #define IUCV_IPFGPID 0x02
74 #define IUCV_IPFGMID 0x04
75 #define IUCV_IPNORPY 0x10
76 #define IUCV_IPALL 0x80
78 static int iucv_bus_match(struct device
*dev
, struct device_driver
*drv
)
87 IUCV_PM_RESTORING
= 3,
89 static enum iucv_pm_states iucv_pm_state
;
91 static int iucv_pm_prepare(struct device
*);
92 static void iucv_pm_complete(struct device
*);
93 static int iucv_pm_freeze(struct device
*);
94 static int iucv_pm_thaw(struct device
*);
95 static int iucv_pm_restore(struct device
*);
97 static const struct dev_pm_ops iucv_pm_ops
= {
98 .prepare
= iucv_pm_prepare
,
99 .complete
= iucv_pm_complete
,
100 .freeze
= iucv_pm_freeze
,
101 .thaw
= iucv_pm_thaw
,
102 .restore
= iucv_pm_restore
,
105 struct bus_type iucv_bus
= {
107 .match
= iucv_bus_match
,
110 EXPORT_SYMBOL(iucv_bus
);
112 struct device
*iucv_root
;
113 EXPORT_SYMBOL(iucv_root
);
115 static int iucv_available
;
117 /* General IUCV interrupt structure */
118 struct iucv_irq_data
{
125 struct iucv_irq_list
{
126 struct list_head list
;
127 struct iucv_irq_data data
;
130 static struct iucv_irq_data
*iucv_irq_data
[NR_CPUS
];
131 static cpumask_t iucv_buffer_cpumask
= { CPU_BITS_NONE
};
132 static cpumask_t iucv_irq_cpumask
= { CPU_BITS_NONE
};
135 * Queue of interrupt buffers lock for delivery via the tasklet
136 * (fast but can't call smp_call_function).
138 static LIST_HEAD(iucv_task_queue
);
141 * The tasklet for fast delivery of iucv interrupts.
143 static void iucv_tasklet_fn(unsigned long);
144 static DECLARE_TASKLET(iucv_tasklet
, iucv_tasklet_fn
,0);
147 * Queue of interrupt buffers for delivery via a work queue
148 * (slower but can call smp_call_function).
150 static LIST_HEAD(iucv_work_queue
);
153 * The work element to deliver path pending interrupts.
155 static void iucv_work_fn(struct work_struct
*work
);
156 static DECLARE_WORK(iucv_work
, iucv_work_fn
);
159 * Spinlock protecting task and work queue.
161 static DEFINE_SPINLOCK(iucv_queue_lock
);
163 enum iucv_command_codes
{
165 IUCV_RETRIEVE_BUFFER
= 2,
173 IUCV_DECLARE_BUFFER
= 12,
178 IUCV_SETCONTROLMASK
= 17,
182 * Error messages that are used with the iucv_sever function. They get
183 * converted to EBCDIC.
185 static char iucv_error_no_listener
[16] = "NO LISTENER";
186 static char iucv_error_no_memory
[16] = "NO MEMORY";
187 static char iucv_error_pathid
[16] = "INVALID PATHID";
190 * iucv_handler_list: List of registered handlers.
192 static LIST_HEAD(iucv_handler_list
);
195 * iucv_path_table: an array of iucv_path structures.
197 static struct iucv_path
**iucv_path_table
;
198 static unsigned long iucv_max_pathid
;
201 * iucv_lock: spinlock protecting iucv_handler_list and iucv_pathid_table
203 static DEFINE_SPINLOCK(iucv_table_lock
);
206 * iucv_active_cpu: contains the number of the cpu executing the tasklet
207 * or the work handler. Needed for iucv_path_sever called from tasklet.
209 static int iucv_active_cpu
= -1;
212 * Mutex and wait queue for iucv_register/iucv_unregister.
214 static DEFINE_MUTEX(iucv_register_mutex
);
217 * Counter for number of non-smp capable handlers.
219 static int iucv_nonsmp_handler
;
222 * IUCV control data structure. Used by iucv_path_accept, iucv_path_connect,
223 * iucv_path_quiesce and iucv_path_sever.
225 struct iucv_cmd_control
{
234 } __attribute__ ((packed
,aligned(8)));
237 * Data in parameter list iucv structure. Used by iucv_message_send,
238 * iucv_message_send2way and iucv_message_reply.
240 struct iucv_cmd_dpl
{
252 } __attribute__ ((packed
,aligned(8)));
255 * Data in buffer iucv structure. Used by iucv_message_receive,
256 * iucv_message_reject, iucv_message_send, iucv_message_send2way
257 * and iucv_declare_cpu.
272 } __attribute__ ((packed
,aligned(8)));
275 * Purge message iucv structure. Used by iucv_message_purge.
277 struct iucv_cmd_purge
{
288 } __attribute__ ((packed
,aligned(8)));
291 * Set mask iucv structure. Used by iucv_enable_cpu.
293 struct iucv_cmd_set_mask
{
298 } __attribute__ ((packed
,aligned(8)));
301 struct iucv_cmd_control ctrl
;
302 struct iucv_cmd_dpl dpl
;
303 struct iucv_cmd_db db
;
304 struct iucv_cmd_purge purge
;
305 struct iucv_cmd_set_mask set_mask
;
309 * Anchor for per-cpu IUCV command parameter block.
311 static union iucv_param
*iucv_param
[NR_CPUS
];
312 static union iucv_param
*iucv_param_irq
[NR_CPUS
];
316 * @code: identifier of IUCV call to CP.
317 * @parm: pointer to a struct iucv_parm block
319 * Calls CP to execute IUCV commands.
321 * Returns the result of the CP IUCV call.
323 static inline int __iucv_call_b2f0(int command
, union iucv_param
*parm
)
325 register unsigned long reg0
asm ("0");
326 register unsigned long reg1
asm ("1");
330 reg1
= (unsigned long)parm
;
332 " .long 0xb2f01000\n"
335 : "=d" (ccode
), "=m" (*parm
), "+d" (reg0
), "+a" (reg1
)
336 : "m" (*parm
) : "cc");
340 static inline int iucv_call_b2f0(int command
, union iucv_param
*parm
)
344 ccode
= __iucv_call_b2f0(command
, parm
);
345 return ccode
== 1 ? parm
->ctrl
.iprcode
: ccode
;
351 * Determines the maximum number of connections that may be established.
353 * Returns the maximum number of connections or -EPERM is IUCV is not
356 static int __iucv_query_maxconn(void *param
, unsigned long *max_pathid
)
358 register unsigned long reg0
asm ("0");
359 register unsigned long reg1
asm ("1");
363 reg1
= (unsigned long) param
;
365 " .long 0xb2f01000\n"
368 : "=d" (ccode
), "+d" (reg0
), "+d" (reg1
) : : "cc");
373 static int iucv_query_maxconn(void)
375 unsigned long max_pathid
;
379 param
= kzalloc(sizeof(union iucv_param
), GFP_KERNEL
| GFP_DMA
);
382 ccode
= __iucv_query_maxconn(param
, &max_pathid
);
384 iucv_max_pathid
= max_pathid
;
386 return ccode
? -EPERM
: 0;
393 * Allow iucv interrupts on this cpu.
395 static void iucv_allow_cpu(void *data
)
397 int cpu
= smp_processor_id();
398 union iucv_param
*parm
;
401 * Enable all iucv interrupts.
402 * ipmask contains bits for the different interrupts
403 * 0x80 - Flag to allow nonpriority message pending interrupts
404 * 0x40 - Flag to allow priority message pending interrupts
405 * 0x20 - Flag to allow nonpriority message completion interrupts
406 * 0x10 - Flag to allow priority message completion interrupts
407 * 0x08 - Flag to allow IUCV control interrupts
409 parm
= iucv_param_irq
[cpu
];
410 memset(parm
, 0, sizeof(union iucv_param
));
411 parm
->set_mask
.ipmask
= 0xf8;
412 iucv_call_b2f0(IUCV_SETMASK
, parm
);
415 * Enable all iucv control interrupts.
416 * ipmask contains bits for the different interrupts
417 * 0x80 - Flag to allow pending connections interrupts
418 * 0x40 - Flag to allow connection complete interrupts
419 * 0x20 - Flag to allow connection severed interrupts
420 * 0x10 - Flag to allow connection quiesced interrupts
421 * 0x08 - Flag to allow connection resumed interrupts
423 memset(parm
, 0, sizeof(union iucv_param
));
424 parm
->set_mask
.ipmask
= 0xf8;
425 iucv_call_b2f0(IUCV_SETCONTROLMASK
, parm
);
426 /* Set indication that iucv interrupts are allowed for this cpu. */
427 cpumask_set_cpu(cpu
, &iucv_irq_cpumask
);
434 * Block iucv interrupts on this cpu.
436 static void iucv_block_cpu(void *data
)
438 int cpu
= smp_processor_id();
439 union iucv_param
*parm
;
441 /* Disable all iucv interrupts. */
442 parm
= iucv_param_irq
[cpu
];
443 memset(parm
, 0, sizeof(union iucv_param
));
444 iucv_call_b2f0(IUCV_SETMASK
, parm
);
446 /* Clear indication that iucv interrupts are allowed for this cpu. */
447 cpumask_clear_cpu(cpu
, &iucv_irq_cpumask
);
451 * iucv_block_cpu_almost
454 * Allow connection-severed interrupts only on this cpu.
456 static void iucv_block_cpu_almost(void *data
)
458 int cpu
= smp_processor_id();
459 union iucv_param
*parm
;
461 /* Allow iucv control interrupts only */
462 parm
= iucv_param_irq
[cpu
];
463 memset(parm
, 0, sizeof(union iucv_param
));
464 parm
->set_mask
.ipmask
= 0x08;
465 iucv_call_b2f0(IUCV_SETMASK
, parm
);
466 /* Allow iucv-severed interrupt only */
467 memset(parm
, 0, sizeof(union iucv_param
));
468 parm
->set_mask
.ipmask
= 0x20;
469 iucv_call_b2f0(IUCV_SETCONTROLMASK
, parm
);
471 /* Clear indication that iucv interrupts are allowed for this cpu. */
472 cpumask_clear_cpu(cpu
, &iucv_irq_cpumask
);
479 * Declare a interrupt buffer on this cpu.
481 static void iucv_declare_cpu(void *data
)
483 int cpu
= smp_processor_id();
484 union iucv_param
*parm
;
487 if (cpumask_test_cpu(cpu
, &iucv_buffer_cpumask
))
490 /* Declare interrupt buffer. */
491 parm
= iucv_param_irq
[cpu
];
492 memset(parm
, 0, sizeof(union iucv_param
));
493 parm
->db
.ipbfadr1
= virt_to_phys(iucv_irq_data
[cpu
]);
494 rc
= iucv_call_b2f0(IUCV_DECLARE_BUFFER
, parm
);
496 char *err
= "Unknown";
499 err
= "Directory error";
502 err
= "Invalid length";
505 err
= "Buffer already exists";
508 err
= "Buffer overlap";
511 err
= "Paging or storage error";
514 pr_warn("Defining an interrupt buffer on CPU %i failed with 0x%02x (%s)\n",
519 /* Set indication that an iucv buffer exists for this cpu. */
520 cpumask_set_cpu(cpu
, &iucv_buffer_cpumask
);
522 if (iucv_nonsmp_handler
== 0 || cpumask_empty(&iucv_irq_cpumask
))
523 /* Enable iucv interrupts on this cpu. */
524 iucv_allow_cpu(NULL
);
526 /* Disable iucv interrupts on this cpu. */
527 iucv_block_cpu(NULL
);
534 * Retrieve interrupt buffer on this cpu.
536 static void iucv_retrieve_cpu(void *data
)
538 int cpu
= smp_processor_id();
539 union iucv_param
*parm
;
541 if (!cpumask_test_cpu(cpu
, &iucv_buffer_cpumask
))
544 /* Block iucv interrupts. */
545 iucv_block_cpu(NULL
);
547 /* Retrieve interrupt buffer. */
548 parm
= iucv_param_irq
[cpu
];
549 iucv_call_b2f0(IUCV_RETRIEVE_BUFFER
, parm
);
551 /* Clear indication that an iucv buffer exists for this cpu. */
552 cpumask_clear_cpu(cpu
, &iucv_buffer_cpumask
);
558 * Allow iucv interrupts on all cpus.
560 static void iucv_setmask_mp(void)
565 for_each_online_cpu(cpu
)
566 /* Enable all cpus with a declared buffer. */
567 if (cpumask_test_cpu(cpu
, &iucv_buffer_cpumask
) &&
568 !cpumask_test_cpu(cpu
, &iucv_irq_cpumask
))
569 smp_call_function_single(cpu
, iucv_allow_cpu
,
577 * Allow iucv interrupts on a single cpu.
579 static void iucv_setmask_up(void)
584 /* Disable all cpu but the first in cpu_irq_cpumask. */
585 cpumask_copy(&cpumask
, &iucv_irq_cpumask
);
586 cpumask_clear_cpu(cpumask_first(&iucv_irq_cpumask
), &cpumask
);
587 for_each_cpu(cpu
, &cpumask
)
588 smp_call_function_single(cpu
, iucv_block_cpu
, NULL
, 1);
594 * This function makes iucv ready for use. It allocates the pathid
595 * table, declares an iucv interrupt buffer and enables the iucv
596 * interrupts. Called when the first user has registered an iucv
599 static int iucv_enable(void)
606 alloc_size
= iucv_max_pathid
* sizeof(struct iucv_path
);
607 iucv_path_table
= kzalloc(alloc_size
, GFP_KERNEL
);
608 if (!iucv_path_table
)
610 /* Declare per cpu buffers. */
612 for_each_online_cpu(cpu
)
613 smp_call_function_single(cpu
, iucv_declare_cpu
, NULL
, 1);
614 if (cpumask_empty(&iucv_buffer_cpumask
))
615 /* No cpu could declare an iucv buffer. */
620 kfree(iucv_path_table
);
621 iucv_path_table
= NULL
;
629 * This function shuts down iucv. It disables iucv interrupts, retrieves
630 * the iucv interrupt buffer and frees the pathid table. Called after the
631 * last user unregister its iucv handler.
633 static void iucv_disable(void)
636 on_each_cpu(iucv_retrieve_cpu
, NULL
, 1);
637 kfree(iucv_path_table
);
638 iucv_path_table
= NULL
;
642 static void free_iucv_data(int cpu
)
644 kfree(iucv_param_irq
[cpu
]);
645 iucv_param_irq
[cpu
] = NULL
;
646 kfree(iucv_param
[cpu
]);
647 iucv_param
[cpu
] = NULL
;
648 kfree(iucv_irq_data
[cpu
]);
649 iucv_irq_data
[cpu
] = NULL
;
652 static int alloc_iucv_data(int cpu
)
654 /* Note: GFP_DMA used to get memory below 2G */
655 iucv_irq_data
[cpu
] = kmalloc_node(sizeof(struct iucv_irq_data
),
656 GFP_KERNEL
|GFP_DMA
, cpu_to_node(cpu
));
657 if (!iucv_irq_data
[cpu
])
660 /* Allocate parameter blocks. */
661 iucv_param
[cpu
] = kmalloc_node(sizeof(union iucv_param
),
662 GFP_KERNEL
|GFP_DMA
, cpu_to_node(cpu
));
663 if (!iucv_param
[cpu
])
666 iucv_param_irq
[cpu
] = kmalloc_node(sizeof(union iucv_param
),
667 GFP_KERNEL
|GFP_DMA
, cpu_to_node(cpu
));
668 if (!iucv_param_irq
[cpu
])
678 static int iucv_cpu_notify(struct notifier_block
*self
,
679 unsigned long action
, void *hcpu
)
682 long cpu
= (long) hcpu
;
686 case CPU_UP_PREPARE_FROZEN
:
687 if (alloc_iucv_data(cpu
))
688 return notifier_from_errno(-ENOMEM
);
690 case CPU_UP_CANCELED
:
691 case CPU_UP_CANCELED_FROZEN
:
693 case CPU_DEAD_FROZEN
:
697 case CPU_ONLINE_FROZEN
:
698 case CPU_DOWN_FAILED
:
699 case CPU_DOWN_FAILED_FROZEN
:
700 if (!iucv_path_table
)
702 smp_call_function_single(cpu
, iucv_declare_cpu
, NULL
, 1);
704 case CPU_DOWN_PREPARE
:
705 case CPU_DOWN_PREPARE_FROZEN
:
706 if (!iucv_path_table
)
708 cpumask_copy(&cpumask
, &iucv_buffer_cpumask
);
709 cpumask_clear_cpu(cpu
, &cpumask
);
710 if (cpumask_empty(&cpumask
))
711 /* Can't offline last IUCV enabled cpu. */
712 return notifier_from_errno(-EINVAL
);
713 smp_call_function_single(cpu
, iucv_retrieve_cpu
, NULL
, 1);
714 if (cpumask_empty(&iucv_irq_cpumask
))
715 smp_call_function_single(
716 cpumask_first(&iucv_buffer_cpumask
),
717 iucv_allow_cpu
, NULL
, 1);
723 static struct notifier_block __refdata iucv_cpu_notifier
= {
724 .notifier_call
= iucv_cpu_notify
,
729 * @pathid: path identification number.
730 * @userdata: 16-bytes of user data.
732 * Sever an iucv path to free up the pathid. Used internally.
734 static int iucv_sever_pathid(u16 pathid
, u8
*userdata
)
736 union iucv_param
*parm
;
738 parm
= iucv_param_irq
[smp_processor_id()];
739 memset(parm
, 0, sizeof(union iucv_param
));
741 memcpy(parm
->ctrl
.ipuser
, userdata
, sizeof(parm
->ctrl
.ipuser
));
742 parm
->ctrl
.ippathid
= pathid
;
743 return iucv_call_b2f0(IUCV_SEVER
, parm
);
747 * __iucv_cleanup_queue
748 * @dummy: unused dummy argument
750 * Nop function called via smp_call_function to force work items from
751 * pending external iucv interrupts to the work queue.
753 static void __iucv_cleanup_queue(void *dummy
)
760 * Function called after a path has been severed to find all remaining
761 * work items for the now stale pathid. The caller needs to hold the
764 static void iucv_cleanup_queue(void)
766 struct iucv_irq_list
*p
, *n
;
769 * When a path is severed, the pathid can be reused immediately
770 * on a iucv connect or a connection pending interrupt. Remove
771 * all entries from the task queue that refer to a stale pathid
772 * (iucv_path_table[ix] == NULL). Only then do the iucv connect
773 * or deliver the connection pending interrupt. To get all the
774 * pending interrupts force them to the work queue by calling
775 * an empty function on all cpus.
777 smp_call_function(__iucv_cleanup_queue
, NULL
, 1);
778 spin_lock_irq(&iucv_queue_lock
);
779 list_for_each_entry_safe(p
, n
, &iucv_task_queue
, list
) {
780 /* Remove stale work items from the task queue. */
781 if (iucv_path_table
[p
->data
.ippathid
] == NULL
) {
786 spin_unlock_irq(&iucv_queue_lock
);
791 * @handler: address of iucv handler structure
792 * @smp: != 0 indicates that the handler can deal with out of order messages
794 * Registers a driver with IUCV.
796 * Returns 0 on success, -ENOMEM if the memory allocation for the pathid
797 * table failed, or -EIO if IUCV_DECLARE_BUFFER failed on all cpus.
799 int iucv_register(struct iucv_handler
*handler
, int smp
)
805 mutex_lock(&iucv_register_mutex
);
807 iucv_nonsmp_handler
++;
808 if (list_empty(&iucv_handler_list
)) {
812 } else if (!smp
&& iucv_nonsmp_handler
== 1)
814 INIT_LIST_HEAD(&handler
->paths
);
816 spin_lock_bh(&iucv_table_lock
);
817 list_add_tail(&handler
->list
, &iucv_handler_list
);
818 spin_unlock_bh(&iucv_table_lock
);
821 mutex_unlock(&iucv_register_mutex
);
824 EXPORT_SYMBOL(iucv_register
);
828 * @handler: address of iucv handler structure
829 * @smp: != 0 indicates that the handler can deal with out of order messages
831 * Unregister driver from IUCV.
833 void iucv_unregister(struct iucv_handler
*handler
, int smp
)
835 struct iucv_path
*p
, *n
;
837 mutex_lock(&iucv_register_mutex
);
838 spin_lock_bh(&iucv_table_lock
);
839 /* Remove handler from the iucv_handler_list. */
840 list_del_init(&handler
->list
);
841 /* Sever all pathids still referring to the handler. */
842 list_for_each_entry_safe(p
, n
, &handler
->paths
, list
) {
843 iucv_sever_pathid(p
->pathid
, NULL
);
844 iucv_path_table
[p
->pathid
] = NULL
;
848 spin_unlock_bh(&iucv_table_lock
);
850 iucv_nonsmp_handler
--;
851 if (list_empty(&iucv_handler_list
))
853 else if (!smp
&& iucv_nonsmp_handler
== 0)
855 mutex_unlock(&iucv_register_mutex
);
857 EXPORT_SYMBOL(iucv_unregister
);
859 static int iucv_reboot_event(struct notifier_block
*this,
860 unsigned long event
, void *ptr
)
864 if (cpumask_empty(&iucv_irq_cpumask
))
868 on_each_cpu_mask(&iucv_irq_cpumask
, iucv_block_cpu
, NULL
, 1);
870 for (i
= 0; i
< iucv_max_pathid
; i
++) {
871 if (iucv_path_table
[i
])
872 iucv_sever_pathid(i
, NULL
);
880 static struct notifier_block iucv_reboot_notifier
= {
881 .notifier_call
= iucv_reboot_event
,
886 * @path: address of iucv path structure
887 * @handler: address of iucv handler structure
888 * @userdata: 16 bytes of data reflected to the communication partner
889 * @private: private data passed to interrupt handlers for this path
891 * This function is issued after the user received a connection pending
892 * external interrupt and now wishes to complete the IUCV communication path.
894 * Returns the result of the CP IUCV call.
896 int iucv_path_accept(struct iucv_path
*path
, struct iucv_handler
*handler
,
897 u8
*userdata
, void *private)
899 union iucv_param
*parm
;
903 if (cpumask_empty(&iucv_buffer_cpumask
)) {
907 /* Prepare parameter block. */
908 parm
= iucv_param
[smp_processor_id()];
909 memset(parm
, 0, sizeof(union iucv_param
));
910 parm
->ctrl
.ippathid
= path
->pathid
;
911 parm
->ctrl
.ipmsglim
= path
->msglim
;
913 memcpy(parm
->ctrl
.ipuser
, userdata
, sizeof(parm
->ctrl
.ipuser
));
914 parm
->ctrl
.ipflags1
= path
->flags
;
916 rc
= iucv_call_b2f0(IUCV_ACCEPT
, parm
);
918 path
->private = private;
919 path
->msglim
= parm
->ctrl
.ipmsglim
;
920 path
->flags
= parm
->ctrl
.ipflags1
;
926 EXPORT_SYMBOL(iucv_path_accept
);
930 * @path: address of iucv path structure
931 * @handler: address of iucv handler structure
932 * @userid: 8-byte user identification
933 * @system: 8-byte target system identification
934 * @userdata: 16 bytes of data reflected to the communication partner
935 * @private: private data passed to interrupt handlers for this path
937 * This function establishes an IUCV path. Although the connect may complete
938 * successfully, you are not able to use the path until you receive an IUCV
939 * Connection Complete external interrupt.
941 * Returns the result of the CP IUCV call.
943 int iucv_path_connect(struct iucv_path
*path
, struct iucv_handler
*handler
,
944 u8
*userid
, u8
*system
, u8
*userdata
,
947 union iucv_param
*parm
;
950 spin_lock_bh(&iucv_table_lock
);
951 iucv_cleanup_queue();
952 if (cpumask_empty(&iucv_buffer_cpumask
)) {
956 parm
= iucv_param
[smp_processor_id()];
957 memset(parm
, 0, sizeof(union iucv_param
));
958 parm
->ctrl
.ipmsglim
= path
->msglim
;
959 parm
->ctrl
.ipflags1
= path
->flags
;
961 memcpy(parm
->ctrl
.ipvmid
, userid
, sizeof(parm
->ctrl
.ipvmid
));
962 ASCEBC(parm
->ctrl
.ipvmid
, sizeof(parm
->ctrl
.ipvmid
));
963 EBC_TOUPPER(parm
->ctrl
.ipvmid
, sizeof(parm
->ctrl
.ipvmid
));
966 memcpy(parm
->ctrl
.iptarget
, system
,
967 sizeof(parm
->ctrl
.iptarget
));
968 ASCEBC(parm
->ctrl
.iptarget
, sizeof(parm
->ctrl
.iptarget
));
969 EBC_TOUPPER(parm
->ctrl
.iptarget
, sizeof(parm
->ctrl
.iptarget
));
972 memcpy(parm
->ctrl
.ipuser
, userdata
, sizeof(parm
->ctrl
.ipuser
));
974 rc
= iucv_call_b2f0(IUCV_CONNECT
, parm
);
976 if (parm
->ctrl
.ippathid
< iucv_max_pathid
) {
977 path
->pathid
= parm
->ctrl
.ippathid
;
978 path
->msglim
= parm
->ctrl
.ipmsglim
;
979 path
->flags
= parm
->ctrl
.ipflags1
;
980 path
->handler
= handler
;
981 path
->private = private;
982 list_add_tail(&path
->list
, &handler
->paths
);
983 iucv_path_table
[path
->pathid
] = path
;
985 iucv_sever_pathid(parm
->ctrl
.ippathid
,
991 spin_unlock_bh(&iucv_table_lock
);
994 EXPORT_SYMBOL(iucv_path_connect
);
998 * @path: address of iucv path structure
999 * @userdata: 16 bytes of data reflected to the communication partner
1001 * This function temporarily suspends incoming messages on an IUCV path.
1002 * You can later reactivate the path by invoking the iucv_resume function.
1004 * Returns the result from the CP IUCV call.
1006 int iucv_path_quiesce(struct iucv_path
*path
, u8
*userdata
)
1008 union iucv_param
*parm
;
1012 if (cpumask_empty(&iucv_buffer_cpumask
)) {
1016 parm
= iucv_param
[smp_processor_id()];
1017 memset(parm
, 0, sizeof(union iucv_param
));
1019 memcpy(parm
->ctrl
.ipuser
, userdata
, sizeof(parm
->ctrl
.ipuser
));
1020 parm
->ctrl
.ippathid
= path
->pathid
;
1021 rc
= iucv_call_b2f0(IUCV_QUIESCE
, parm
);
1026 EXPORT_SYMBOL(iucv_path_quiesce
);
1030 * @path: address of iucv path structure
1031 * @userdata: 16 bytes of data reflected to the communication partner
1033 * This function resumes incoming messages on an IUCV path that has
1034 * been stopped with iucv_path_quiesce.
1036 * Returns the result from the CP IUCV call.
1038 int iucv_path_resume(struct iucv_path
*path
, u8
*userdata
)
1040 union iucv_param
*parm
;
1044 if (cpumask_empty(&iucv_buffer_cpumask
)) {
1048 parm
= iucv_param
[smp_processor_id()];
1049 memset(parm
, 0, sizeof(union iucv_param
));
1051 memcpy(parm
->ctrl
.ipuser
, userdata
, sizeof(parm
->ctrl
.ipuser
));
1052 parm
->ctrl
.ippathid
= path
->pathid
;
1053 rc
= iucv_call_b2f0(IUCV_RESUME
, parm
);
1061 * @path: address of iucv path structure
1062 * @userdata: 16 bytes of data reflected to the communication partner
1064 * This function terminates an IUCV path.
1066 * Returns the result from the CP IUCV call.
1068 int iucv_path_sever(struct iucv_path
*path
, u8
*userdata
)
1073 if (cpumask_empty(&iucv_buffer_cpumask
)) {
1077 if (iucv_active_cpu
!= smp_processor_id())
1078 spin_lock_bh(&iucv_table_lock
);
1079 rc
= iucv_sever_pathid(path
->pathid
, userdata
);
1080 iucv_path_table
[path
->pathid
] = NULL
;
1081 list_del_init(&path
->list
);
1082 if (iucv_active_cpu
!= smp_processor_id())
1083 spin_unlock_bh(&iucv_table_lock
);
1088 EXPORT_SYMBOL(iucv_path_sever
);
1091 * iucv_message_purge
1092 * @path: address of iucv path structure
1093 * @msg: address of iucv msg structure
1094 * @srccls: source class of message
1096 * Cancels a message you have sent.
1098 * Returns the result from the CP IUCV call.
1100 int iucv_message_purge(struct iucv_path
*path
, struct iucv_message
*msg
,
1103 union iucv_param
*parm
;
1107 if (cpumask_empty(&iucv_buffer_cpumask
)) {
1111 parm
= iucv_param
[smp_processor_id()];
1112 memset(parm
, 0, sizeof(union iucv_param
));
1113 parm
->purge
.ippathid
= path
->pathid
;
1114 parm
->purge
.ipmsgid
= msg
->id
;
1115 parm
->purge
.ipsrccls
= srccls
;
1116 parm
->purge
.ipflags1
= IUCV_IPSRCCLS
| IUCV_IPFGMID
| IUCV_IPFGPID
;
1117 rc
= iucv_call_b2f0(IUCV_PURGE
, parm
);
1119 msg
->audit
= (*(u32
*) &parm
->purge
.ipaudit
) >> 8;
1120 msg
->tag
= parm
->purge
.ipmsgtag
;
1126 EXPORT_SYMBOL(iucv_message_purge
);
1129 * iucv_message_receive_iprmdata
1130 * @path: address of iucv path structure
1131 * @msg: address of iucv msg structure
1132 * @flags: how the message is received (IUCV_IPBUFLST)
1133 * @buffer: address of data buffer or address of struct iucv_array
1134 * @size: length of data buffer
1137 * Internal function used by iucv_message_receive and __iucv_message_receive
1138 * to receive RMDATA data stored in struct iucv_message.
1140 static int iucv_message_receive_iprmdata(struct iucv_path
*path
,
1141 struct iucv_message
*msg
,
1142 u8 flags
, void *buffer
,
1143 size_t size
, size_t *residual
)
1145 struct iucv_array
*array
;
1150 * Message is 8 bytes long and has been stored to the
1151 * message descriptor itself.
1154 *residual
= abs(size
- 8);
1156 if (flags
& IUCV_IPBUFLST
) {
1157 /* Copy to struct iucv_array. */
1158 size
= (size
< 8) ? size
: 8;
1159 for (array
= buffer
; size
> 0; array
++) {
1160 copy
= min_t(size_t, size
, array
->length
);
1161 memcpy((u8
*)(addr_t
) array
->address
,
1167 /* Copy to direct buffer. */
1168 memcpy(buffer
, rmmsg
, min_t(size_t, size
, 8));
1174 * __iucv_message_receive
1175 * @path: address of iucv path structure
1176 * @msg: address of iucv msg structure
1177 * @flags: how the message is received (IUCV_IPBUFLST)
1178 * @buffer: address of data buffer or address of struct iucv_array
1179 * @size: length of data buffer
1182 * This function receives messages that are being sent to you over
1183 * established paths. This function will deal with RMDATA messages
1184 * embedded in struct iucv_message as well.
1186 * Locking: no locking
1188 * Returns the result from the CP IUCV call.
1190 int __iucv_message_receive(struct iucv_path
*path
, struct iucv_message
*msg
,
1191 u8 flags
, void *buffer
, size_t size
, size_t *residual
)
1193 union iucv_param
*parm
;
1196 if (msg
->flags
& IUCV_IPRMDATA
)
1197 return iucv_message_receive_iprmdata(path
, msg
, flags
,
1198 buffer
, size
, residual
);
1199 if (cpumask_empty(&iucv_buffer_cpumask
)) {
1203 parm
= iucv_param
[smp_processor_id()];
1204 memset(parm
, 0, sizeof(union iucv_param
));
1205 parm
->db
.ipbfadr1
= (u32
)(addr_t
) buffer
;
1206 parm
->db
.ipbfln1f
= (u32
) size
;
1207 parm
->db
.ipmsgid
= msg
->id
;
1208 parm
->db
.ippathid
= path
->pathid
;
1209 parm
->db
.iptrgcls
= msg
->class;
1210 parm
->db
.ipflags1
= (flags
| IUCV_IPFGPID
|
1211 IUCV_IPFGMID
| IUCV_IPTRGCLS
);
1212 rc
= iucv_call_b2f0(IUCV_RECEIVE
, parm
);
1213 if (!rc
|| rc
== 5) {
1214 msg
->flags
= parm
->db
.ipflags1
;
1216 *residual
= parm
->db
.ipbfln1f
;
1221 EXPORT_SYMBOL(__iucv_message_receive
);
1224 * iucv_message_receive
1225 * @path: address of iucv path structure
1226 * @msg: address of iucv msg structure
1227 * @flags: how the message is received (IUCV_IPBUFLST)
1228 * @buffer: address of data buffer or address of struct iucv_array
1229 * @size: length of data buffer
1232 * This function receives messages that are being sent to you over
1233 * established paths. This function will deal with RMDATA messages
1234 * embedded in struct iucv_message as well.
1236 * Locking: local_bh_enable/local_bh_disable
1238 * Returns the result from the CP IUCV call.
1240 int iucv_message_receive(struct iucv_path
*path
, struct iucv_message
*msg
,
1241 u8 flags
, void *buffer
, size_t size
, size_t *residual
)
1245 if (msg
->flags
& IUCV_IPRMDATA
)
1246 return iucv_message_receive_iprmdata(path
, msg
, flags
,
1247 buffer
, size
, residual
);
1249 rc
= __iucv_message_receive(path
, msg
, flags
, buffer
, size
, residual
);
1253 EXPORT_SYMBOL(iucv_message_receive
);
1256 * iucv_message_reject
1257 * @path: address of iucv path structure
1258 * @msg: address of iucv msg structure
1260 * The reject function refuses a specified message. Between the time you
1261 * are notified of a message and the time that you complete the message,
1262 * the message may be rejected.
1264 * Returns the result from the CP IUCV call.
1266 int iucv_message_reject(struct iucv_path
*path
, struct iucv_message
*msg
)
1268 union iucv_param
*parm
;
1272 if (cpumask_empty(&iucv_buffer_cpumask
)) {
1276 parm
= iucv_param
[smp_processor_id()];
1277 memset(parm
, 0, sizeof(union iucv_param
));
1278 parm
->db
.ippathid
= path
->pathid
;
1279 parm
->db
.ipmsgid
= msg
->id
;
1280 parm
->db
.iptrgcls
= msg
->class;
1281 parm
->db
.ipflags1
= (IUCV_IPTRGCLS
| IUCV_IPFGMID
| IUCV_IPFGPID
);
1282 rc
= iucv_call_b2f0(IUCV_REJECT
, parm
);
1287 EXPORT_SYMBOL(iucv_message_reject
);
1290 * iucv_message_reply
1291 * @path: address of iucv path structure
1292 * @msg: address of iucv msg structure
1293 * @flags: how the reply is sent (IUCV_IPRMDATA, IUCV_IPPRTY, IUCV_IPBUFLST)
1294 * @reply: address of reply data buffer or address of struct iucv_array
1295 * @size: length of reply data buffer
1297 * This function responds to the two-way messages that you receive. You
1298 * must identify completely the message to which you wish to reply. ie,
1299 * pathid, msgid, and trgcls. Prmmsg signifies the data is moved into
1300 * the parameter list.
1302 * Returns the result from the CP IUCV call.
1304 int iucv_message_reply(struct iucv_path
*path
, struct iucv_message
*msg
,
1305 u8 flags
, void *reply
, size_t size
)
1307 union iucv_param
*parm
;
1311 if (cpumask_empty(&iucv_buffer_cpumask
)) {
1315 parm
= iucv_param
[smp_processor_id()];
1316 memset(parm
, 0, sizeof(union iucv_param
));
1317 if (flags
& IUCV_IPRMDATA
) {
1318 parm
->dpl
.ippathid
= path
->pathid
;
1319 parm
->dpl
.ipflags1
= flags
;
1320 parm
->dpl
.ipmsgid
= msg
->id
;
1321 parm
->dpl
.iptrgcls
= msg
->class;
1322 memcpy(parm
->dpl
.iprmmsg
, reply
, min_t(size_t, size
, 8));
1324 parm
->db
.ipbfadr1
= (u32
)(addr_t
) reply
;
1325 parm
->db
.ipbfln1f
= (u32
) size
;
1326 parm
->db
.ippathid
= path
->pathid
;
1327 parm
->db
.ipflags1
= flags
;
1328 parm
->db
.ipmsgid
= msg
->id
;
1329 parm
->db
.iptrgcls
= msg
->class;
1331 rc
= iucv_call_b2f0(IUCV_REPLY
, parm
);
1336 EXPORT_SYMBOL(iucv_message_reply
);
1339 * __iucv_message_send
1340 * @path: address of iucv path structure
1341 * @msg: address of iucv msg structure
1342 * @flags: how the message is sent (IUCV_IPRMDATA, IUCV_IPPRTY, IUCV_IPBUFLST)
1343 * @srccls: source class of message
1344 * @buffer: address of send buffer or address of struct iucv_array
1345 * @size: length of send buffer
1347 * This function transmits data to another application. Data to be
1348 * transmitted is in a buffer and this is a one-way message and the
1349 * receiver will not reply to the message.
1351 * Locking: no locking
1353 * Returns the result from the CP IUCV call.
1355 int __iucv_message_send(struct iucv_path
*path
, struct iucv_message
*msg
,
1356 u8 flags
, u32 srccls
, void *buffer
, size_t size
)
1358 union iucv_param
*parm
;
1361 if (cpumask_empty(&iucv_buffer_cpumask
)) {
1365 parm
= iucv_param
[smp_processor_id()];
1366 memset(parm
, 0, sizeof(union iucv_param
));
1367 if (flags
& IUCV_IPRMDATA
) {
1368 /* Message of 8 bytes can be placed into the parameter list. */
1369 parm
->dpl
.ippathid
= path
->pathid
;
1370 parm
->dpl
.ipflags1
= flags
| IUCV_IPNORPY
;
1371 parm
->dpl
.iptrgcls
= msg
->class;
1372 parm
->dpl
.ipsrccls
= srccls
;
1373 parm
->dpl
.ipmsgtag
= msg
->tag
;
1374 memcpy(parm
->dpl
.iprmmsg
, buffer
, 8);
1376 parm
->db
.ipbfadr1
= (u32
)(addr_t
) buffer
;
1377 parm
->db
.ipbfln1f
= (u32
) size
;
1378 parm
->db
.ippathid
= path
->pathid
;
1379 parm
->db
.ipflags1
= flags
| IUCV_IPNORPY
;
1380 parm
->db
.iptrgcls
= msg
->class;
1381 parm
->db
.ipsrccls
= srccls
;
1382 parm
->db
.ipmsgtag
= msg
->tag
;
1384 rc
= iucv_call_b2f0(IUCV_SEND
, parm
);
1386 msg
->id
= parm
->db
.ipmsgid
;
1390 EXPORT_SYMBOL(__iucv_message_send
);
1394 * @path: address of iucv path structure
1395 * @msg: address of iucv msg structure
1396 * @flags: how the message is sent (IUCV_IPRMDATA, IUCV_IPPRTY, IUCV_IPBUFLST)
1397 * @srccls: source class of message
1398 * @buffer: address of send buffer or address of struct iucv_array
1399 * @size: length of send buffer
1401 * This function transmits data to another application. Data to be
1402 * transmitted is in a buffer and this is a one-way message and the
1403 * receiver will not reply to the message.
1405 * Locking: local_bh_enable/local_bh_disable
1407 * Returns the result from the CP IUCV call.
1409 int iucv_message_send(struct iucv_path
*path
, struct iucv_message
*msg
,
1410 u8 flags
, u32 srccls
, void *buffer
, size_t size
)
1415 rc
= __iucv_message_send(path
, msg
, flags
, srccls
, buffer
, size
);
1419 EXPORT_SYMBOL(iucv_message_send
);
1422 * iucv_message_send2way
1423 * @path: address of iucv path structure
1424 * @msg: address of iucv msg structure
1425 * @flags: how the message is sent and the reply is received
1426 * (IUCV_IPRMDATA, IUCV_IPBUFLST, IUCV_IPPRTY, IUCV_ANSLST)
1427 * @srccls: source class of message
1428 * @buffer: address of send buffer or address of struct iucv_array
1429 * @size: length of send buffer
1430 * @ansbuf: address of answer buffer or address of struct iucv_array
1431 * @asize: size of reply buffer
1433 * This function transmits data to another application. Data to be
1434 * transmitted is in a buffer. The receiver of the send is expected to
1435 * reply to the message and a buffer is provided into which IUCV moves
1436 * the reply to this message.
1438 * Returns the result from the CP IUCV call.
1440 int iucv_message_send2way(struct iucv_path
*path
, struct iucv_message
*msg
,
1441 u8 flags
, u32 srccls
, void *buffer
, size_t size
,
1442 void *answer
, size_t asize
, size_t *residual
)
1444 union iucv_param
*parm
;
1448 if (cpumask_empty(&iucv_buffer_cpumask
)) {
1452 parm
= iucv_param
[smp_processor_id()];
1453 memset(parm
, 0, sizeof(union iucv_param
));
1454 if (flags
& IUCV_IPRMDATA
) {
1455 parm
->dpl
.ippathid
= path
->pathid
;
1456 parm
->dpl
.ipflags1
= path
->flags
; /* priority message */
1457 parm
->dpl
.iptrgcls
= msg
->class;
1458 parm
->dpl
.ipsrccls
= srccls
;
1459 parm
->dpl
.ipmsgtag
= msg
->tag
;
1460 parm
->dpl
.ipbfadr2
= (u32
)(addr_t
) answer
;
1461 parm
->dpl
.ipbfln2f
= (u32
) asize
;
1462 memcpy(parm
->dpl
.iprmmsg
, buffer
, 8);
1464 parm
->db
.ippathid
= path
->pathid
;
1465 parm
->db
.ipflags1
= path
->flags
; /* priority message */
1466 parm
->db
.iptrgcls
= msg
->class;
1467 parm
->db
.ipsrccls
= srccls
;
1468 parm
->db
.ipmsgtag
= msg
->tag
;
1469 parm
->db
.ipbfadr1
= (u32
)(addr_t
) buffer
;
1470 parm
->db
.ipbfln1f
= (u32
) size
;
1471 parm
->db
.ipbfadr2
= (u32
)(addr_t
) answer
;
1472 parm
->db
.ipbfln2f
= (u32
) asize
;
1474 rc
= iucv_call_b2f0(IUCV_SEND
, parm
);
1476 msg
->id
= parm
->db
.ipmsgid
;
1481 EXPORT_SYMBOL(iucv_message_send2way
);
1485 * @data: Pointer to external interrupt buffer
1487 * Process connection pending work item. Called from tasklet while holding
1490 struct iucv_path_pending
{
1503 static void iucv_path_pending(struct iucv_irq_data
*data
)
1505 struct iucv_path_pending
*ipp
= (void *) data
;
1506 struct iucv_handler
*handler
;
1507 struct iucv_path
*path
;
1510 BUG_ON(iucv_path_table
[ipp
->ippathid
]);
1511 /* New pathid, handler found. Create a new path struct. */
1512 error
= iucv_error_no_memory
;
1513 path
= iucv_path_alloc(ipp
->ipmsglim
, ipp
->ipflags1
, GFP_ATOMIC
);
1516 path
->pathid
= ipp
->ippathid
;
1517 iucv_path_table
[path
->pathid
] = path
;
1518 EBCASC(ipp
->ipvmid
, 8);
1520 /* Call registered handler until one is found that wants the path. */
1521 list_for_each_entry(handler
, &iucv_handler_list
, list
) {
1522 if (!handler
->path_pending
)
1525 * Add path to handler to allow a call to iucv_path_sever
1526 * inside the path_pending function. If the handler returns
1527 * an error remove the path from the handler again.
1529 list_add(&path
->list
, &handler
->paths
);
1530 path
->handler
= handler
;
1531 if (!handler
->path_pending(path
, ipp
->ipvmid
, ipp
->ipuser
))
1533 list_del(&path
->list
);
1534 path
->handler
= NULL
;
1536 /* No handler wanted the path. */
1537 iucv_path_table
[path
->pathid
] = NULL
;
1538 iucv_path_free(path
);
1539 error
= iucv_error_no_listener
;
1541 iucv_sever_pathid(ipp
->ippathid
, error
);
1545 * iucv_path_complete
1546 * @data: Pointer to external interrupt buffer
1548 * Process connection complete work item. Called from tasklet while holding
1551 struct iucv_path_complete
{
1564 static void iucv_path_complete(struct iucv_irq_data
*data
)
1566 struct iucv_path_complete
*ipc
= (void *) data
;
1567 struct iucv_path
*path
= iucv_path_table
[ipc
->ippathid
];
1570 path
->flags
= ipc
->ipflags1
;
1571 if (path
&& path
->handler
&& path
->handler
->path_complete
)
1572 path
->handler
->path_complete(path
, ipc
->ipuser
);
1577 * @data: Pointer to external interrupt buffer
1579 * Process connection severed work item. Called from tasklet while holding
1582 struct iucv_path_severed
{
1594 static void iucv_path_severed(struct iucv_irq_data
*data
)
1596 struct iucv_path_severed
*ips
= (void *) data
;
1597 struct iucv_path
*path
= iucv_path_table
[ips
->ippathid
];
1599 if (!path
|| !path
->handler
) /* Already severed */
1601 if (path
->handler
->path_severed
)
1602 path
->handler
->path_severed(path
, ips
->ipuser
);
1604 iucv_sever_pathid(path
->pathid
, NULL
);
1605 iucv_path_table
[path
->pathid
] = NULL
;
1606 list_del(&path
->list
);
1607 iucv_path_free(path
);
1612 * iucv_path_quiesced
1613 * @data: Pointer to external interrupt buffer
1615 * Process connection quiesced work item. Called from tasklet while holding
1618 struct iucv_path_quiesced
{
1630 static void iucv_path_quiesced(struct iucv_irq_data
*data
)
1632 struct iucv_path_quiesced
*ipq
= (void *) data
;
1633 struct iucv_path
*path
= iucv_path_table
[ipq
->ippathid
];
1635 if (path
&& path
->handler
&& path
->handler
->path_quiesced
)
1636 path
->handler
->path_quiesced(path
, ipq
->ipuser
);
1641 * @data: Pointer to external interrupt buffer
1643 * Process connection resumed work item. Called from tasklet while holding
1646 struct iucv_path_resumed
{
1658 static void iucv_path_resumed(struct iucv_irq_data
*data
)
1660 struct iucv_path_resumed
*ipr
= (void *) data
;
1661 struct iucv_path
*path
= iucv_path_table
[ipr
->ippathid
];
1663 if (path
&& path
->handler
&& path
->handler
->path_resumed
)
1664 path
->handler
->path_resumed(path
, ipr
->ipuser
);
1668 * iucv_message_complete
1669 * @data: Pointer to external interrupt buffer
1671 * Process message complete work item. Called from tasklet while holding
1674 struct iucv_message_complete
{
1689 static void iucv_message_complete(struct iucv_irq_data
*data
)
1691 struct iucv_message_complete
*imc
= (void *) data
;
1692 struct iucv_path
*path
= iucv_path_table
[imc
->ippathid
];
1693 struct iucv_message msg
;
1695 if (path
&& path
->handler
&& path
->handler
->message_complete
) {
1696 msg
.flags
= imc
->ipflags1
;
1697 msg
.id
= imc
->ipmsgid
;
1698 msg
.audit
= imc
->ipaudit
;
1699 memcpy(msg
.rmmsg
, imc
->iprmmsg
, 8);
1700 msg
.class = imc
->ipsrccls
;
1701 msg
.tag
= imc
->ipmsgtag
;
1702 msg
.length
= imc
->ipbfln2f
;
1703 path
->handler
->message_complete(path
, &msg
);
1708 * iucv_message_pending
1709 * @data: Pointer to external interrupt buffer
1711 * Process message pending work item. Called from tasklet while holding
1714 struct iucv_message_pending
{
1734 static void iucv_message_pending(struct iucv_irq_data
*data
)
1736 struct iucv_message_pending
*imp
= (void *) data
;
1737 struct iucv_path
*path
= iucv_path_table
[imp
->ippathid
];
1738 struct iucv_message msg
;
1740 if (path
&& path
->handler
&& path
->handler
->message_pending
) {
1741 msg
.flags
= imp
->ipflags1
;
1742 msg
.id
= imp
->ipmsgid
;
1743 msg
.class = imp
->iptrgcls
;
1744 if (imp
->ipflags1
& IUCV_IPRMDATA
) {
1745 memcpy(msg
.rmmsg
, imp
->ln1msg1
.iprmmsg1
, 8);
1748 msg
.length
= imp
->ln1msg2
.ipbfln1f
;
1749 msg
.reply_size
= imp
->ipbfln2f
;
1750 path
->handler
->message_pending(path
, &msg
);
1757 * This tasklet loops over the queue of irq buffers created by
1758 * iucv_external_interrupt, calls the appropriate action handler
1759 * and then frees the buffer.
1761 static void iucv_tasklet_fn(unsigned long ignored
)
1763 typedef void iucv_irq_fn(struct iucv_irq_data
*);
1764 static iucv_irq_fn
*irq_fn
[] = {
1765 [0x02] = iucv_path_complete
,
1766 [0x03] = iucv_path_severed
,
1767 [0x04] = iucv_path_quiesced
,
1768 [0x05] = iucv_path_resumed
,
1769 [0x06] = iucv_message_complete
,
1770 [0x07] = iucv_message_complete
,
1771 [0x08] = iucv_message_pending
,
1772 [0x09] = iucv_message_pending
,
1774 LIST_HEAD(task_queue
);
1775 struct iucv_irq_list
*p
, *n
;
1777 /* Serialize tasklet, iucv_path_sever and iucv_path_connect. */
1778 if (!spin_trylock(&iucv_table_lock
)) {
1779 tasklet_schedule(&iucv_tasklet
);
1782 iucv_active_cpu
= smp_processor_id();
1784 spin_lock_irq(&iucv_queue_lock
);
1785 list_splice_init(&iucv_task_queue
, &task_queue
);
1786 spin_unlock_irq(&iucv_queue_lock
);
1788 list_for_each_entry_safe(p
, n
, &task_queue
, list
) {
1789 list_del_init(&p
->list
);
1790 irq_fn
[p
->data
.iptype
](&p
->data
);
1794 iucv_active_cpu
= -1;
1795 spin_unlock(&iucv_table_lock
);
1801 * This work function loops over the queue of path pending irq blocks
1802 * created by iucv_external_interrupt, calls the appropriate action
1803 * handler and then frees the buffer.
1805 static void iucv_work_fn(struct work_struct
*work
)
1807 LIST_HEAD(work_queue
);
1808 struct iucv_irq_list
*p
, *n
;
1810 /* Serialize tasklet, iucv_path_sever and iucv_path_connect. */
1811 spin_lock_bh(&iucv_table_lock
);
1812 iucv_active_cpu
= smp_processor_id();
1814 spin_lock_irq(&iucv_queue_lock
);
1815 list_splice_init(&iucv_work_queue
, &work_queue
);
1816 spin_unlock_irq(&iucv_queue_lock
);
1818 iucv_cleanup_queue();
1819 list_for_each_entry_safe(p
, n
, &work_queue
, list
) {
1820 list_del_init(&p
->list
);
1821 iucv_path_pending(&p
->data
);
1825 iucv_active_cpu
= -1;
1826 spin_unlock_bh(&iucv_table_lock
);
1830 * iucv_external_interrupt
1833 * Handles external interrupts coming in from CP.
1834 * Places the interrupt buffer on a queue and schedules iucv_tasklet_fn().
1836 static void iucv_external_interrupt(struct ext_code ext_code
,
1837 unsigned int param32
, unsigned long param64
)
1839 struct iucv_irq_data
*p
;
1840 struct iucv_irq_list
*work
;
1842 inc_irq_stat(IRQEXT_IUC
);
1843 p
= iucv_irq_data
[smp_processor_id()];
1844 if (p
->ippathid
>= iucv_max_pathid
) {
1845 WARN_ON(p
->ippathid
>= iucv_max_pathid
);
1846 iucv_sever_pathid(p
->ippathid
, iucv_error_no_listener
);
1849 BUG_ON(p
->iptype
< 0x01 || p
->iptype
> 0x09);
1850 work
= kmalloc(sizeof(struct iucv_irq_list
), GFP_ATOMIC
);
1852 pr_warn("iucv_external_interrupt: out of memory\n");
1855 memcpy(&work
->data
, p
, sizeof(work
->data
));
1856 spin_lock(&iucv_queue_lock
);
1857 if (p
->iptype
== 0x01) {
1858 /* Path pending interrupt. */
1859 list_add_tail(&work
->list
, &iucv_work_queue
);
1860 schedule_work(&iucv_work
);
1862 /* The other interrupts. */
1863 list_add_tail(&work
->list
, &iucv_task_queue
);
1864 tasklet_schedule(&iucv_tasklet
);
1866 spin_unlock(&iucv_queue_lock
);
1869 static int iucv_pm_prepare(struct device
*dev
)
1873 #ifdef CONFIG_PM_DEBUG
1874 printk(KERN_INFO
"iucv_pm_prepare\n");
1876 if (dev
->driver
&& dev
->driver
->pm
&& dev
->driver
->pm
->prepare
)
1877 rc
= dev
->driver
->pm
->prepare(dev
);
1881 static void iucv_pm_complete(struct device
*dev
)
1883 #ifdef CONFIG_PM_DEBUG
1884 printk(KERN_INFO
"iucv_pm_complete\n");
1886 if (dev
->driver
&& dev
->driver
->pm
&& dev
->driver
->pm
->complete
)
1887 dev
->driver
->pm
->complete(dev
);
1891 * iucv_path_table_empty() - determine if iucv path table is empty
1893 * Returns 0 if there are still iucv pathes defined
1894 * 1 if there are no iucv pathes defined
1896 int iucv_path_table_empty(void)
1900 for (i
= 0; i
< iucv_max_pathid
; i
++) {
1901 if (iucv_path_table
[i
])
1908 * iucv_pm_freeze() - Freeze PM callback
1909 * @dev: iucv-based device
1911 * disable iucv interrupts
1912 * invoke callback function of the iucv-based driver
1913 * shut down iucv, if no iucv-pathes are established anymore
1915 static int iucv_pm_freeze(struct device
*dev
)
1918 struct iucv_irq_list
*p
, *n
;
1921 #ifdef CONFIG_PM_DEBUG
1922 printk(KERN_WARNING
"iucv_pm_freeze\n");
1924 if (iucv_pm_state
!= IUCV_PM_FREEZING
) {
1925 for_each_cpu(cpu
, &iucv_irq_cpumask
)
1926 smp_call_function_single(cpu
, iucv_block_cpu_almost
,
1928 cancel_work_sync(&iucv_work
);
1929 list_for_each_entry_safe(p
, n
, &iucv_work_queue
, list
) {
1930 list_del_init(&p
->list
);
1931 iucv_sever_pathid(p
->data
.ippathid
,
1932 iucv_error_no_listener
);
1936 iucv_pm_state
= IUCV_PM_FREEZING
;
1937 if (dev
->driver
&& dev
->driver
->pm
&& dev
->driver
->pm
->freeze
)
1938 rc
= dev
->driver
->pm
->freeze(dev
);
1939 if (iucv_path_table_empty())
1945 * iucv_pm_thaw() - Thaw PM callback
1946 * @dev: iucv-based device
1948 * make iucv ready for use again: allocate path table, declare interrupt buffers
1949 * and enable iucv interrupts
1950 * invoke callback function of the iucv-based driver
1952 static int iucv_pm_thaw(struct device
*dev
)
1956 #ifdef CONFIG_PM_DEBUG
1957 printk(KERN_WARNING
"iucv_pm_thaw\n");
1959 iucv_pm_state
= IUCV_PM_THAWING
;
1960 if (!iucv_path_table
) {
1965 if (cpumask_empty(&iucv_irq_cpumask
)) {
1966 if (iucv_nonsmp_handler
)
1967 /* enable interrupts on one cpu */
1968 iucv_allow_cpu(NULL
);
1970 /* enable interrupts on all cpus */
1973 if (dev
->driver
&& dev
->driver
->pm
&& dev
->driver
->pm
->thaw
)
1974 rc
= dev
->driver
->pm
->thaw(dev
);
1980 * iucv_pm_restore() - Restore PM callback
1981 * @dev: iucv-based device
1983 * make iucv ready for use again: allocate path table, declare interrupt buffers
1984 * and enable iucv interrupts
1985 * invoke callback function of the iucv-based driver
1987 static int iucv_pm_restore(struct device
*dev
)
1991 #ifdef CONFIG_PM_DEBUG
1992 printk(KERN_WARNING
"iucv_pm_restore %p\n", iucv_path_table
);
1994 if ((iucv_pm_state
!= IUCV_PM_RESTORING
) && iucv_path_table
)
1995 pr_warn("Suspending Linux did not completely close all IUCV connections\n");
1996 iucv_pm_state
= IUCV_PM_RESTORING
;
1997 if (cpumask_empty(&iucv_irq_cpumask
)) {
1998 rc
= iucv_query_maxconn();
2003 if (dev
->driver
&& dev
->driver
->pm
&& dev
->driver
->pm
->restore
)
2004 rc
= dev
->driver
->pm
->restore(dev
);
2009 struct iucv_interface iucv_if
= {
2010 .message_receive
= iucv_message_receive
,
2011 .__message_receive
= __iucv_message_receive
,
2012 .message_reply
= iucv_message_reply
,
2013 .message_reject
= iucv_message_reject
,
2014 .message_send
= iucv_message_send
,
2015 .__message_send
= __iucv_message_send
,
2016 .message_send2way
= iucv_message_send2way
,
2017 .message_purge
= iucv_message_purge
,
2018 .path_accept
= iucv_path_accept
,
2019 .path_connect
= iucv_path_connect
,
2020 .path_quiesce
= iucv_path_quiesce
,
2021 .path_resume
= iucv_path_resume
,
2022 .path_sever
= iucv_path_sever
,
2023 .iucv_register
= iucv_register
,
2024 .iucv_unregister
= iucv_unregister
,
2028 EXPORT_SYMBOL(iucv_if
);
2033 * Allocates and initializes various data structures.
2035 static int __init
iucv_init(void)
2040 if (!MACHINE_IS_VM
) {
2041 rc
= -EPROTONOSUPPORT
;
2045 rc
= iucv_query_maxconn();
2048 rc
= register_external_irq(EXT_IRQ_IUCV
, iucv_external_interrupt
);
2051 iucv_root
= root_device_register("iucv");
2052 if (IS_ERR(iucv_root
)) {
2053 rc
= PTR_ERR(iucv_root
);
2057 cpu_notifier_register_begin();
2059 for_each_online_cpu(cpu
) {
2060 if (alloc_iucv_data(cpu
)) {
2065 rc
= __register_hotcpu_notifier(&iucv_cpu_notifier
);
2069 cpu_notifier_register_done();
2071 rc
= register_reboot_notifier(&iucv_reboot_notifier
);
2074 ASCEBC(iucv_error_no_listener
, 16);
2075 ASCEBC(iucv_error_no_memory
, 16);
2076 ASCEBC(iucv_error_pathid
, 16);
2078 rc
= bus_register(&iucv_bus
);
2081 iucv_if
.root
= iucv_root
;
2082 iucv_if
.bus
= &iucv_bus
;
2086 unregister_reboot_notifier(&iucv_reboot_notifier
);
2088 cpu_notifier_register_begin();
2089 __unregister_hotcpu_notifier(&iucv_cpu_notifier
);
2091 for_each_possible_cpu(cpu
)
2092 free_iucv_data(cpu
);
2094 cpu_notifier_register_done();
2096 root_device_unregister(iucv_root
);
2098 unregister_external_irq(EXT_IRQ_IUCV
, iucv_external_interrupt
);
2100 ctl_clear_bit(0, 1);
2108 * Frees everything allocated from iucv_init.
2110 static void __exit
iucv_exit(void)
2112 struct iucv_irq_list
*p
, *n
;
2115 spin_lock_irq(&iucv_queue_lock
);
2116 list_for_each_entry_safe(p
, n
, &iucv_task_queue
, list
)
2118 list_for_each_entry_safe(p
, n
, &iucv_work_queue
, list
)
2120 spin_unlock_irq(&iucv_queue_lock
);
2121 unregister_reboot_notifier(&iucv_reboot_notifier
);
2122 cpu_notifier_register_begin();
2123 __unregister_hotcpu_notifier(&iucv_cpu_notifier
);
2124 for_each_possible_cpu(cpu
)
2125 free_iucv_data(cpu
);
2126 cpu_notifier_register_done();
2127 root_device_unregister(iucv_root
);
2128 bus_unregister(&iucv_bus
);
2129 unregister_external_irq(EXT_IRQ_IUCV
, iucv_external_interrupt
);
2132 subsys_initcall(iucv_init
);
2133 module_exit(iucv_exit
);
2135 MODULE_AUTHOR("(C) 2001 IBM Corp. by Fritz Elfert (felfert@millenux.com)");
2136 MODULE_DESCRIPTION("Linux for S/390 IUCV lowlevel driver");
2137 MODULE_LICENSE("GPL");