xref: /openbmc/qemu/hw/s390x/sclp.c (revision fe7f9b8e)
1 /*
2  * SCLP Support
3  *
4  * Copyright IBM, Corp. 2012
5  *
6  * Authors:
7  *  Christian Borntraeger <borntraeger@de.ibm.com>
8  *  Heinz Graalfs <graalfs@linux.vnet.ibm.com>
9  *
10  * This work is licensed under the terms of the GNU GPL, version 2 or (at your
11  * option) any later version.  See the COPYING file in the top-level directory.
12  *
13  */
14 
15 #include "qemu/osdep.h"
16 #include "qapi/error.h"
17 #include "cpu.h"
18 #include "sysemu/sysemu.h"
19 #include "hw/boards.h"
20 #include "hw/s390x/sclp.h"
21 #include "hw/s390x/event-facility.h"
22 #include "hw/s390x/s390-pci-bus.h"
23 #include "hw/s390x/ipl.h"
24 
25 static inline SCLPDevice *get_sclp_device(void)
26 {
27     static SCLPDevice *sclp;
28 
29     if (!sclp) {
30         sclp = SCLP(object_resolve_path_type("", TYPE_SCLP, NULL));
31     }
32     return sclp;
33 }
34 
35 static void prepare_cpu_entries(SCLPDevice *sclp, CPUEntry *entry, int *count)
36 {
37     MachineState *ms = MACHINE(qdev_get_machine());
38     uint8_t features[SCCB_CPU_FEATURE_LEN] = { 0 };
39     int i;
40 
41     s390_get_feat_block(S390_FEAT_TYPE_SCLP_CPU, features);
42     for (i = 0, *count = 0; i < ms->possible_cpus->len; i++) {
43         if (!ms->possible_cpus->cpus[i].cpu) {
44             continue;
45         }
46         entry[*count].address = ms->possible_cpus->cpus[i].arch_id;
47         entry[*count].type = 0;
48         memcpy(entry[*count].features, features, sizeof(features));
49         (*count)++;
50     }
51 }
52 
53 /* Provide information about the configuration, CPUs and storage */
54 static void read_SCP_info(SCLPDevice *sclp, SCCB *sccb)
55 {
56     ReadInfo *read_info = (ReadInfo *) sccb;
57     MachineState *machine = MACHINE(qdev_get_machine());
58     int cpu_count;
59     int rnsize, rnmax;
60     IplParameterBlock *ipib = s390_ipl_get_iplb();
61 
62     /* CPU information */
63     prepare_cpu_entries(sclp, read_info->entries, &cpu_count);
64     read_info->entries_cpu = cpu_to_be16(cpu_count);
65     read_info->offset_cpu = cpu_to_be16(offsetof(ReadInfo, entries));
66     read_info->highest_cpu = cpu_to_be16(max_cpus - 1);
67 
68     read_info->ibc_val = cpu_to_be32(s390_get_ibc_val());
69 
70     /* Configuration Characteristic (Extension) */
71     s390_get_feat_block(S390_FEAT_TYPE_SCLP_CONF_CHAR,
72                          read_info->conf_char);
73     s390_get_feat_block(S390_FEAT_TYPE_SCLP_CONF_CHAR_EXT,
74                          read_info->conf_char_ext);
75 
76     read_info->facilities = cpu_to_be64(SCLP_HAS_CPU_INFO |
77                                         SCLP_HAS_IOA_RECONFIG);
78 
79     read_info->mha_pow = s390_get_mha_pow();
80     read_info->hmfai = cpu_to_be32(s390_get_hmfai());
81 
82     rnsize = 1 << (sclp->increment_size - 20);
83     if (rnsize <= 128) {
84         read_info->rnsize = rnsize;
85     } else {
86         read_info->rnsize = 0;
87         read_info->rnsize2 = cpu_to_be32(rnsize);
88     }
89 
90     /* we don't support standby memory, maxram_size is never exposed */
91     rnmax = machine->ram_size >> sclp->increment_size;
92     if (rnmax < 0x10000) {
93         read_info->rnmax = cpu_to_be16(rnmax);
94     } else {
95         read_info->rnmax = cpu_to_be16(0);
96         read_info->rnmax2 = cpu_to_be64(rnmax);
97     }
98 
99     if (ipib && ipib->flags & DIAG308_FLAGS_LP_VALID) {
100         memcpy(&read_info->loadparm, &ipib->loadparm,
101                sizeof(read_info->loadparm));
102     } else {
103         s390_ipl_set_loadparm(read_info->loadparm);
104     }
105 
106     sccb->h.response_code = cpu_to_be16(SCLP_RC_NORMAL_READ_COMPLETION);
107 }
108 
109 /* Provide information about the CPU */
110 static void sclp_read_cpu_info(SCLPDevice *sclp, SCCB *sccb)
111 {
112     ReadCpuInfo *cpu_info = (ReadCpuInfo *) sccb;
113     int cpu_count;
114 
115     prepare_cpu_entries(sclp, cpu_info->entries, &cpu_count);
116     cpu_info->nr_configured = cpu_to_be16(cpu_count);
117     cpu_info->offset_configured = cpu_to_be16(offsetof(ReadCpuInfo, entries));
118     cpu_info->nr_standby = cpu_to_be16(0);
119 
120     /* The standby offset is 16-byte for each CPU */
121     cpu_info->offset_standby = cpu_to_be16(cpu_info->offset_configured
122         + cpu_info->nr_configured*sizeof(CPUEntry));
123 
124 
125     sccb->h.response_code = cpu_to_be16(SCLP_RC_NORMAL_READ_COMPLETION);
126 }
127 
128 static void sclp_configure_io_adapter(SCLPDevice *sclp, SCCB *sccb,
129                                       bool configure)
130 {
131     int rc;
132 
133     if (be16_to_cpu(sccb->h.length) < 16) {
134         rc = SCLP_RC_INSUFFICIENT_SCCB_LENGTH;
135         goto out_err;
136     }
137 
138     switch (((IoaCfgSccb *)sccb)->atype) {
139     case SCLP_RECONFIG_PCI_ATYPE:
140         if (s390_has_feat(S390_FEAT_ZPCI)) {
141             if (configure) {
142                 s390_pci_sclp_configure(sccb);
143             } else {
144                 s390_pci_sclp_deconfigure(sccb);
145             }
146             return;
147         }
148         /* fallthrough */
149     default:
150         rc = SCLP_RC_ADAPTER_TYPE_NOT_RECOGNIZED;
151     }
152 
153  out_err:
154     sccb->h.response_code = cpu_to_be16(rc);
155 }
156 
157 static void sclp_execute(SCLPDevice *sclp, SCCB *sccb, uint32_t code)
158 {
159     SCLPDeviceClass *sclp_c = SCLP_GET_CLASS(sclp);
160     SCLPEventFacility *ef = sclp->event_facility;
161     SCLPEventFacilityClass *efc = EVENT_FACILITY_GET_CLASS(ef);
162 
163     switch (code & SCLP_CMD_CODE_MASK) {
164     case SCLP_CMDW_READ_SCP_INFO:
165     case SCLP_CMDW_READ_SCP_INFO_FORCED:
166         sclp_c->read_SCP_info(sclp, sccb);
167         break;
168     case SCLP_CMDW_READ_CPU_INFO:
169         sclp_c->read_cpu_info(sclp, sccb);
170         break;
171     case SCLP_CMDW_CONFIGURE_IOA:
172         sclp_configure_io_adapter(sclp, sccb, true);
173         break;
174     case SCLP_CMDW_DECONFIGURE_IOA:
175         sclp_configure_io_adapter(sclp, sccb, false);
176         break;
177     default:
178         efc->command_handler(ef, sccb, code);
179         break;
180     }
181 }
182 
183 int sclp_service_call(CPUS390XState *env, uint64_t sccb, uint32_t code)
184 {
185     SCLPDevice *sclp = get_sclp_device();
186     SCLPDeviceClass *sclp_c = SCLP_GET_CLASS(sclp);
187     int r = 0;
188     SCCB work_sccb;
189 
190     hwaddr sccb_len = sizeof(SCCB);
191 
192     /* first some basic checks on program checks */
193     if (env->psw.mask & PSW_MASK_PSTATE) {
194         r = -PGM_PRIVILEGED;
195         goto out;
196     }
197     if (cpu_physical_memory_is_io(sccb)) {
198         r = -PGM_ADDRESSING;
199         goto out;
200     }
201     if ((sccb & ~0x1fffUL) == 0 || (sccb & ~0x1fffUL) == env->psa
202         || (sccb & ~0x7ffffff8UL) != 0) {
203         r = -PGM_SPECIFICATION;
204         goto out;
205     }
206 
207     /*
208      * we want to work on a private copy of the sccb, to prevent guests
209      * from playing dirty tricks by modifying the memory content after
210      * the host has checked the values
211      */
212     cpu_physical_memory_read(sccb, &work_sccb, sccb_len);
213 
214     /* Valid sccb sizes */
215     if (be16_to_cpu(work_sccb.h.length) < sizeof(SCCBHeader) ||
216         be16_to_cpu(work_sccb.h.length) > SCCB_SIZE) {
217         r = -PGM_SPECIFICATION;
218         goto out;
219     }
220 
221     sclp_c->execute(sclp, &work_sccb, code);
222 
223     cpu_physical_memory_write(sccb, &work_sccb,
224                               be16_to_cpu(work_sccb.h.length));
225 
226     sclp_c->service_interrupt(sclp, sccb);
227 
228 out:
229     return r;
230 }
231 
232 static void service_interrupt(SCLPDevice *sclp, uint32_t sccb)
233 {
234     SCLPEventFacility *ef = sclp->event_facility;
235     SCLPEventFacilityClass *efc = EVENT_FACILITY_GET_CLASS(ef);
236 
237     uint32_t param = sccb & ~3;
238 
239     /* Indicate whether an event is still pending */
240     param |= efc->event_pending(ef) ? 1 : 0;
241 
242     if (!param) {
243         /* No need to send an interrupt, there's nothing to be notified about */
244         return;
245     }
246     s390_sclp_extint(param);
247 }
248 
249 void sclp_service_interrupt(uint32_t sccb)
250 {
251     SCLPDevice *sclp = get_sclp_device();
252     SCLPDeviceClass *sclp_c = SCLP_GET_CLASS(sclp);
253 
254     sclp_c->service_interrupt(sclp, sccb);
255 }
256 
257 /* qemu object creation and initialization functions */
258 
259 void s390_sclp_init(void)
260 {
261     Object *new = object_new(TYPE_SCLP);
262 
263     object_property_add_child(qdev_get_machine(), TYPE_SCLP, new,
264                               NULL);
265     object_unref(OBJECT(new));
266     qdev_init_nofail(DEVICE(new));
267 }
268 
269 static void sclp_realize(DeviceState *dev, Error **errp)
270 {
271     MachineState *machine = MACHINE(qdev_get_machine());
272     SCLPDevice *sclp = SCLP(dev);
273     Error *err = NULL;
274     uint64_t hw_limit;
275     int ret;
276 
277     object_property_set_bool(OBJECT(sclp->event_facility), true, "realized",
278                              &err);
279     if (err) {
280         goto out;
281     }
282     /*
283      * qdev_device_add searches the sysbus for TYPE_SCLP_EVENTS_BUS. As long
284      * as we can't find a fitting bus via the qom tree, we have to add the
285      * event facility to the sysbus, so e.g. a sclp console can be created.
286      */
287     qdev_set_parent_bus(DEVICE(sclp->event_facility), sysbus_get_default());
288 
289     ret = s390_set_memory_limit(machine->maxram_size, &hw_limit);
290     if (ret == -E2BIG) {
291         error_setg(&err, "host supports a maximum of %" PRIu64 " GB",
292                    hw_limit >> 30);
293     } else if (ret) {
294         error_setg(&err, "setting the guest size failed");
295     }
296 
297 out:
298     error_propagate(errp, err);
299 }
300 
301 static void sclp_memory_init(SCLPDevice *sclp)
302 {
303     MachineState *machine = MACHINE(qdev_get_machine());
304     ram_addr_t initial_mem = machine->ram_size;
305     int increment_size = 20;
306 
307     /* The storage increment size is a multiple of 1M and is a power of 2.
308      * The number of storage increments must be MAX_STORAGE_INCREMENTS or fewer.
309      * The variable 'increment_size' is an exponent of 2 that can be
310      * used to calculate the size (in bytes) of an increment. */
311     while ((initial_mem >> increment_size) > MAX_STORAGE_INCREMENTS) {
312         increment_size++;
313     }
314     sclp->increment_size = increment_size;
315 
316     /* The core memory area needs to be aligned with the increment size.
317      * In effect, this can cause the user-specified memory size to be rounded
318      * down to align with the nearest increment boundary. */
319     initial_mem = initial_mem >> increment_size << increment_size;
320 
321     machine->ram_size = initial_mem;
322     /* let's propagate the changed ram size into the global variable. */
323     ram_size = initial_mem;
324 }
325 
326 static void sclp_init(Object *obj)
327 {
328     SCLPDevice *sclp = SCLP(obj);
329     Object *new;
330 
331     new = object_new(TYPE_SCLP_EVENT_FACILITY);
332     object_property_add_child(obj, TYPE_SCLP_EVENT_FACILITY, new, NULL);
333     object_unref(new);
334     sclp->event_facility = EVENT_FACILITY(new);
335 
336     sclp_memory_init(sclp);
337 }
338 
339 static void sclp_class_init(ObjectClass *oc, void *data)
340 {
341     SCLPDeviceClass *sc = SCLP_CLASS(oc);
342     DeviceClass *dc = DEVICE_CLASS(oc);
343 
344     dc->desc = "SCLP (Service-Call Logical Processor)";
345     dc->realize = sclp_realize;
346     dc->hotpluggable = false;
347     set_bit(DEVICE_CATEGORY_MISC, dc->categories);
348     /*
349      * Reason: Creates TYPE_SCLP_EVENT_FACILITY in sclp_init
350      * which is a non-pluggable sysbus device
351      */
352     dc->user_creatable = false;
353 
354     sc->read_SCP_info = read_SCP_info;
355     sc->read_cpu_info = sclp_read_cpu_info;
356     sc->execute = sclp_execute;
357     sc->service_interrupt = service_interrupt;
358 }
359 
360 static TypeInfo sclp_info = {
361     .name = TYPE_SCLP,
362     .parent = TYPE_DEVICE,
363     .instance_init = sclp_init,
364     .instance_size = sizeof(SCLPDevice),
365     .class_init = sclp_class_init,
366     .class_size = sizeof(SCLPDeviceClass),
367 };
368 
369 static void register_types(void)
370 {
371     type_register_static(&sclp_info);
372 }
373 type_init(register_types);
374