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1 /*
2 * SCLP
3 * Event Facility
4 * handles SCLP event types
5 * - Signal Quiesce - system power down
6 * - ASCII Console Data - VT220 read and write
7 *
8 * Copyright IBM, Corp. 2012
9 *
10 * Authors:
11 * Heinz Graalfs <graalfs@de.ibm.com>
12 *
13 * This work is licensed under the terms of the GNU GPL, version 2 or (at your
14 * option) any later version. See the COPYING file in the top-level directory.
15 *
16 */
17
18 #include "sysemu/sysemu.h"
19
20 #include "hw/s390x/sclp.h"
21 #include "hw/s390x/event-facility.h"
22
23 typedef struct SCLPEventsBus {
24 BusState qbus;
25 } SCLPEventsBus;
26
27 struct SCLPEventFacility {
28 SysBusDevice parent_obj;
29 SCLPEventsBus sbus;
30 /* guest' receive mask */
31 unsigned int receive_mask;
32 };
33
34 static SCLPEvent cpu_hotplug;
35
36 /* return true if any child has event pending set */
37 static bool event_pending(SCLPEventFacility *ef)
38 {
39 BusChild *kid;
40 SCLPEvent *event;
41 SCLPEventClass *event_class;
42
43 QTAILQ_FOREACH(kid, &ef->sbus.qbus.children, sibling) {
44 DeviceState *qdev = kid->child;
45 event = DO_UPCAST(SCLPEvent, qdev, qdev);
46 event_class = SCLP_EVENT_GET_CLASS(event);
47 if (event->event_pending &&
48 event_class->get_send_mask() & ef->receive_mask) {
49 return true;
50 }
51 }
52 return false;
53 }
54
55 static unsigned int get_host_send_mask(SCLPEventFacility *ef)
56 {
57 unsigned int mask;
58 BusChild *kid;
59 SCLPEventClass *child;
60
61 mask = 0;
62
63 QTAILQ_FOREACH(kid, &ef->sbus.qbus.children, sibling) {
64 DeviceState *qdev = kid->child;
65 child = SCLP_EVENT_GET_CLASS((SCLPEvent *) qdev);
66 mask |= child->get_send_mask();
67 }
68 return mask;
69 }
70
71 static unsigned int get_host_receive_mask(SCLPEventFacility *ef)
72 {
73 unsigned int mask;
74 BusChild *kid;
75 SCLPEventClass *child;
76
77 mask = 0;
78
79 QTAILQ_FOREACH(kid, &ef->sbus.qbus.children, sibling) {
80 DeviceState *qdev = kid->child;
81 child = SCLP_EVENT_GET_CLASS((SCLPEvent *) qdev);
82 mask |= child->get_receive_mask();
83 }
84 return mask;
85 }
86
87 static uint16_t write_event_length_check(SCCB *sccb)
88 {
89 int slen;
90 unsigned elen = 0;
91 EventBufferHeader *event;
92 WriteEventData *wed = (WriteEventData *) sccb;
93
94 event = (EventBufferHeader *) &wed->ebh;
95 for (slen = sccb_data_len(sccb); slen > 0; slen -= elen) {
96 elen = be16_to_cpu(event->length);
97 if (elen < sizeof(*event) || elen > slen) {
98 return SCLP_RC_EVENT_BUFFER_SYNTAX_ERROR;
99 }
100 event = (void *) event + elen;
101 }
102 if (slen) {
103 return SCLP_RC_INCONSISTENT_LENGTHS;
104 }
105 return SCLP_RC_NORMAL_COMPLETION;
106 }
107
108 static uint16_t handle_write_event_buf(SCLPEventFacility *ef,
109 EventBufferHeader *event_buf, SCCB *sccb)
110 {
111 uint16_t rc;
112 BusChild *kid;
113 SCLPEvent *event;
114 SCLPEventClass *ec;
115
116 rc = SCLP_RC_INVALID_FUNCTION;
117
118 QTAILQ_FOREACH(kid, &ef->sbus.qbus.children, sibling) {
119 DeviceState *qdev = kid->child;
120 event = (SCLPEvent *) qdev;
121 ec = SCLP_EVENT_GET_CLASS(event);
122
123 if (ec->write_event_data &&
124 ec->can_handle_event(event_buf->type)) {
125 rc = ec->write_event_data(event, event_buf);
126 break;
127 }
128 }
129 return rc;
130 }
131
132 static uint16_t handle_sccb_write_events(SCLPEventFacility *ef, SCCB *sccb)
133 {
134 uint16_t rc;
135 int slen;
136 unsigned elen = 0;
137 EventBufferHeader *event_buf;
138 WriteEventData *wed = (WriteEventData *) sccb;
139
140 event_buf = &wed->ebh;
141 rc = SCLP_RC_NORMAL_COMPLETION;
142
143 /* loop over all contained event buffers */
144 for (slen = sccb_data_len(sccb); slen > 0; slen -= elen) {
145 elen = be16_to_cpu(event_buf->length);
146
147 /* in case of a previous error mark all trailing buffers
148 * as not accepted */
149 if (rc != SCLP_RC_NORMAL_COMPLETION) {
150 event_buf->flags &= ~(SCLP_EVENT_BUFFER_ACCEPTED);
151 } else {
152 rc = handle_write_event_buf(ef, event_buf, sccb);
153 }
154 event_buf = (void *) event_buf + elen;
155 }
156 return rc;
157 }
158
159 static void write_event_data(SCLPEventFacility *ef, SCCB *sccb)
160 {
161 if (sccb->h.function_code != SCLP_FC_NORMAL_WRITE) {
162 sccb->h.response_code = cpu_to_be16(SCLP_RC_INVALID_FUNCTION);
163 goto out;
164 }
165 if (be16_to_cpu(sccb->h.length) < 8) {
166 sccb->h.response_code = cpu_to_be16(SCLP_RC_INSUFFICIENT_SCCB_LENGTH);
167 goto out;
168 }
169 /* first do a sanity check of the write events */
170 sccb->h.response_code = cpu_to_be16(write_event_length_check(sccb));
171
172 /* if no early error, then execute */
173 if (sccb->h.response_code == be16_to_cpu(SCLP_RC_NORMAL_COMPLETION)) {
174 sccb->h.response_code =
175 cpu_to_be16(handle_sccb_write_events(ef, sccb));
176 }
177
178 out:
179 return;
180 }
181
182 static uint16_t handle_sccb_read_events(SCLPEventFacility *ef, SCCB *sccb,
183 unsigned int mask)
184 {
185 uint16_t rc;
186 int slen;
187 unsigned elen;
188 BusChild *kid;
189 SCLPEvent *event;
190 SCLPEventClass *ec;
191 EventBufferHeader *event_buf;
192 ReadEventData *red = (ReadEventData *) sccb;
193
194 event_buf = &red->ebh;
195 event_buf->length = 0;
196 slen = sizeof(sccb->data);
197
198 rc = SCLP_RC_NO_EVENT_BUFFERS_STORED;
199
200 QTAILQ_FOREACH(kid, &ef->sbus.qbus.children, sibling) {
201 DeviceState *qdev = kid->child;
202 event = (SCLPEvent *) qdev;
203 ec = SCLP_EVENT_GET_CLASS(event);
204
205 if (mask & ec->get_send_mask()) {
206 if (ec->read_event_data(event, event_buf, &slen)) {
207 elen = be16_to_cpu(event_buf->length);
208 event_buf = (EventBufferHeader *) ((char *)event_buf + elen);
209 rc = SCLP_RC_NORMAL_COMPLETION;
210 }
211 }
212 }
213
214 if (sccb->h.control_mask[2] & SCLP_VARIABLE_LENGTH_RESPONSE) {
215 /* architecture suggests to reset variable-length-response bit */
216 sccb->h.control_mask[2] &= ~SCLP_VARIABLE_LENGTH_RESPONSE;
217 /* with a new length value */
218 sccb->h.length = cpu_to_be16(SCCB_SIZE - slen);
219 }
220 return rc;
221 }
222
223 static void read_event_data(SCLPEventFacility *ef, SCCB *sccb)
224 {
225 unsigned int sclp_active_selection_mask;
226 unsigned int sclp_cp_receive_mask;
227
228 ReadEventData *red = (ReadEventData *) sccb;
229
230 if (be16_to_cpu(sccb->h.length) != SCCB_SIZE) {
231 sccb->h.response_code = cpu_to_be16(SCLP_RC_INSUFFICIENT_SCCB_LENGTH);
232 goto out;
233 }
234
235 sclp_cp_receive_mask = ef->receive_mask;
236
237 /* get active selection mask */
238 switch (sccb->h.function_code) {
239 case SCLP_UNCONDITIONAL_READ:
240 sclp_active_selection_mask = sclp_cp_receive_mask;
241 break;
242 case SCLP_SELECTIVE_READ:
243 if (!(sclp_cp_receive_mask & be32_to_cpu(red->mask))) {
244 sccb->h.response_code =
245 cpu_to_be16(SCLP_RC_INVALID_SELECTION_MASK);
246 goto out;
247 }
248 sclp_active_selection_mask = be32_to_cpu(red->mask);
249 break;
250 default:
251 sccb->h.response_code = cpu_to_be16(SCLP_RC_INVALID_FUNCTION);
252 goto out;
253 }
254 sccb->h.response_code = cpu_to_be16(
255 handle_sccb_read_events(ef, sccb, sclp_active_selection_mask));
256
257 out:
258 return;
259 }
260
261 static void write_event_mask(SCLPEventFacility *ef, SCCB *sccb)
262 {
263 WriteEventMask *we_mask = (WriteEventMask *) sccb;
264
265 /* Attention: We assume that Linux uses 4-byte masks, what it actually
266 does. Architecture allows for masks of variable size, though */
267 if (be16_to_cpu(we_mask->mask_length) != 4) {
268 sccb->h.response_code = cpu_to_be16(SCLP_RC_INVALID_MASK_LENGTH);
269 goto out;
270 }
271
272 /* keep track of the guest's capability masks */
273 ef->receive_mask = be32_to_cpu(we_mask->cp_receive_mask);
274
275 /* return the SCLP's capability masks to the guest */
276 we_mask->send_mask = cpu_to_be32(get_host_send_mask(ef));
277 we_mask->receive_mask = cpu_to_be32(get_host_receive_mask(ef));
278
279 sccb->h.response_code = cpu_to_be16(SCLP_RC_NORMAL_COMPLETION);
280
281 out:
282 return;
283 }
284
285 /* qemu object creation and initialization functions */
286
287 #define TYPE_SCLP_EVENTS_BUS "s390-sclp-events-bus"
288
289 static void sclp_events_bus_class_init(ObjectClass *klass, void *data)
290 {
291 }
292
293 static const TypeInfo sclp_events_bus_info = {
294 .name = TYPE_SCLP_EVENTS_BUS,
295 .parent = TYPE_BUS,
296 .class_init = sclp_events_bus_class_init,
297 };
298
299 static void command_handler(SCLPEventFacility *ef, SCCB *sccb, uint64_t code)
300 {
301 switch (code & SCLP_CMD_CODE_MASK) {
302 case SCLP_CMD_READ_EVENT_DATA:
303 read_event_data(ef, sccb);
304 break;
305 case SCLP_CMD_WRITE_EVENT_DATA:
306 write_event_data(ef, sccb);
307 break;
308 case SCLP_CMD_WRITE_EVENT_MASK:
309 write_event_mask(ef, sccb);
310 break;
311 default:
312 sccb->h.response_code = cpu_to_be16(SCLP_RC_INVALID_SCLP_COMMAND);
313 break;
314 }
315 }
316
317 static const VMStateDescription vmstate_event_facility = {
318 .name = "vmstate-event-facility",
319 .version_id = 0,
320 .minimum_version_id = 0,
321 .fields = (VMStateField[]) {
322 VMSTATE_UINT32(receive_mask, SCLPEventFacility),
323 VMSTATE_END_OF_LIST()
324 }
325 };
326
327 static int init_event_facility(SCLPEventFacility *event_facility)
328 {
329 DeviceState *sdev = DEVICE(event_facility);
330 DeviceState *quiesce;
331
332 /* Spawn a new bus for SCLP events */
333 qbus_create_inplace(&event_facility->sbus, sizeof(event_facility->sbus),
334 TYPE_SCLP_EVENTS_BUS, sdev, NULL);
335
336 quiesce = qdev_create(&event_facility->sbus.qbus, "sclpquiesce");
337 if (!quiesce) {
338 return -1;
339 }
340 qdev_init_nofail(quiesce);
341
342 object_initialize(&cpu_hotplug, sizeof(cpu_hotplug), TYPE_SCLP_CPU_HOTPLUG);
343 qdev_set_parent_bus(DEVICE(&cpu_hotplug), BUS(&event_facility->sbus));
344 object_property_set_bool(OBJECT(&cpu_hotplug), true, "realized", NULL);
345
346 return 0;
347 }
348
349 static void reset_event_facility(DeviceState *dev)
350 {
351 SCLPEventFacility *sdev = EVENT_FACILITY(dev);
352
353 sdev->receive_mask = 0;
354 }
355
356 static void init_event_facility_class(ObjectClass *klass, void *data)
357 {
358 SysBusDeviceClass *sbdc = SYS_BUS_DEVICE_CLASS(klass);
359 DeviceClass *dc = DEVICE_CLASS(sbdc);
360 SCLPEventFacilityClass *k = EVENT_FACILITY_CLASS(dc);
361
362 dc->reset = reset_event_facility;
363 dc->vmsd = &vmstate_event_facility;
364 set_bit(DEVICE_CATEGORY_MISC, dc->categories);
365 k->init = init_event_facility;
366 k->command_handler = command_handler;
367 k->event_pending = event_pending;
368 }
369
370 static const TypeInfo sclp_event_facility_info = {
371 .name = TYPE_SCLP_EVENT_FACILITY,
372 .parent = TYPE_SYS_BUS_DEVICE,
373 .instance_size = sizeof(SCLPEventFacility),
374 .class_init = init_event_facility_class,
375 .class_size = sizeof(SCLPEventFacilityClass),
376 };
377
378 static void event_realize(DeviceState *qdev, Error **errp)
379 {
380 SCLPEvent *event = SCLP_EVENT(qdev);
381 SCLPEventClass *child = SCLP_EVENT_GET_CLASS(event);
382
383 if (child->init) {
384 int rc = child->init(event);
385 if (rc < 0) {
386 error_setg(errp, "SCLP event initialization failed.");
387 return;
388 }
389 }
390 }
391
392 static void event_unrealize(DeviceState *qdev, Error **errp)
393 {
394 SCLPEvent *event = SCLP_EVENT(qdev);
395 SCLPEventClass *child = SCLP_EVENT_GET_CLASS(event);
396 if (child->exit) {
397 int rc = child->exit(event);
398 if (rc < 0) {
399 error_setg(errp, "SCLP event exit failed.");
400 return;
401 }
402 }
403 }
404
405 static void event_class_init(ObjectClass *klass, void *data)
406 {
407 DeviceClass *dc = DEVICE_CLASS(klass);
408
409 dc->bus_type = TYPE_SCLP_EVENTS_BUS;
410 dc->realize = event_realize;
411 dc->unrealize = event_unrealize;
412 }
413
414 static const TypeInfo sclp_event_type_info = {
415 .name = TYPE_SCLP_EVENT,
416 .parent = TYPE_DEVICE,
417 .instance_size = sizeof(SCLPEvent),
418 .class_init = event_class_init,
419 .class_size = sizeof(SCLPEventClass),
420 .abstract = true,
421 };
422
423 static void register_types(void)
424 {
425 type_register_static(&sclp_events_bus_info);
426 type_register_static(&sclp_event_facility_info);
427 type_register_static(&sclp_event_type_info);
428 }
429
430 type_init(register_types)