KVM: s390: clean up interrupt injection in sigp code
[pandora-kernel.git] / arch / s390 / kvm / sigp.c
1 /*
2  * handling interprocessor communication
3  *
4  * Copyright IBM Corp. 2008, 2013
5  *
6  * This program is free software; you can redistribute it and/or modify
7  * it under the terms of the GNU General Public License (version 2 only)
8  * as published by the Free Software Foundation.
9  *
10  *    Author(s): Carsten Otte <cotte@de.ibm.com>
11  *               Christian Borntraeger <borntraeger@de.ibm.com>
12  *               Christian Ehrhardt <ehrhardt@de.ibm.com>
13  */
14
15 #include <linux/kvm.h>
16 #include <linux/kvm_host.h>
17 #include <linux/slab.h>
18 #include <asm/sigp.h>
19 #include "gaccess.h"
20 #include "kvm-s390.h"
21 #include "trace.h"
22
23 static int __sigp_sense(struct kvm_vcpu *vcpu, u16 cpu_addr,
24                         u64 *reg)
25 {
26         struct kvm_s390_local_interrupt *li;
27         struct kvm_vcpu *dst_vcpu = NULL;
28         int cpuflags;
29         int rc;
30
31         if (cpu_addr >= KVM_MAX_VCPUS)
32                 return SIGP_CC_NOT_OPERATIONAL;
33
34         dst_vcpu = kvm_get_vcpu(vcpu->kvm, cpu_addr);
35         if (!dst_vcpu)
36                 return SIGP_CC_NOT_OPERATIONAL;
37         li = &dst_vcpu->arch.local_int;
38
39         cpuflags = atomic_read(li->cpuflags);
40         if (!(cpuflags & (CPUSTAT_ECALL_PEND | CPUSTAT_STOPPED)))
41                 rc = SIGP_CC_ORDER_CODE_ACCEPTED;
42         else {
43                 *reg &= 0xffffffff00000000UL;
44                 if (cpuflags & CPUSTAT_ECALL_PEND)
45                         *reg |= SIGP_STATUS_EXT_CALL_PENDING;
46                 if (cpuflags & CPUSTAT_STOPPED)
47                         *reg |= SIGP_STATUS_STOPPED;
48                 rc = SIGP_CC_STATUS_STORED;
49         }
50
51         VCPU_EVENT(vcpu, 4, "sensed status of cpu %x rc %x", cpu_addr, rc);
52         return rc;
53 }
54
55 static int __sigp_emergency(struct kvm_vcpu *vcpu, u16 cpu_addr)
56 {
57         struct kvm_s390_interrupt s390int = {
58                 .type = KVM_S390_INT_EMERGENCY,
59                 .parm = vcpu->vcpu_id,
60         };
61         struct kvm_vcpu *dst_vcpu = NULL;
62         int rc = 0;
63
64         if (cpu_addr < KVM_MAX_VCPUS)
65                 dst_vcpu = kvm_get_vcpu(vcpu->kvm, cpu_addr);
66         if (!dst_vcpu)
67                 return SIGP_CC_NOT_OPERATIONAL;
68
69         rc = kvm_s390_inject_vcpu(dst_vcpu, &s390int);
70         if (!rc)
71                 VCPU_EVENT(vcpu, 4, "sent sigp emerg to cpu %x", cpu_addr);
72
73         return rc ? rc : SIGP_CC_ORDER_CODE_ACCEPTED;
74 }
75
76 static int __sigp_conditional_emergency(struct kvm_vcpu *vcpu, u16 cpu_addr,
77                                         u16 asn, u64 *reg)
78 {
79         struct kvm_vcpu *dst_vcpu = NULL;
80         const u64 psw_int_mask = PSW_MASK_IO | PSW_MASK_EXT;
81         u16 p_asn, s_asn;
82         psw_t *psw;
83         u32 flags;
84
85         if (cpu_addr < KVM_MAX_VCPUS)
86                 dst_vcpu = kvm_get_vcpu(vcpu->kvm, cpu_addr);
87         if (!dst_vcpu)
88                 return SIGP_CC_NOT_OPERATIONAL;
89         flags = atomic_read(&dst_vcpu->arch.sie_block->cpuflags);
90         psw = &dst_vcpu->arch.sie_block->gpsw;
91         p_asn = dst_vcpu->arch.sie_block->gcr[4] & 0xffff;  /* Primary ASN */
92         s_asn = dst_vcpu->arch.sie_block->gcr[3] & 0xffff;  /* Secondary ASN */
93
94         /* Deliver the emergency signal? */
95         if (!(flags & CPUSTAT_STOPPED)
96             || (psw->mask & psw_int_mask) != psw_int_mask
97             || ((flags & CPUSTAT_WAIT) && psw->addr != 0)
98             || (!(flags & CPUSTAT_WAIT) && (asn == p_asn || asn == s_asn))) {
99                 return __sigp_emergency(vcpu, cpu_addr);
100         } else {
101                 *reg &= 0xffffffff00000000UL;
102                 *reg |= SIGP_STATUS_INCORRECT_STATE;
103                 return SIGP_CC_STATUS_STORED;
104         }
105 }
106
107 static int __sigp_external_call(struct kvm_vcpu *vcpu, u16 cpu_addr)
108 {
109         struct kvm_s390_interrupt s390int = {
110                 .type = KVM_S390_INT_EXTERNAL_CALL,
111                 .parm = vcpu->vcpu_id,
112         };
113         struct kvm_vcpu *dst_vcpu = NULL;
114         int rc;
115
116         if (cpu_addr < KVM_MAX_VCPUS)
117                 dst_vcpu = kvm_get_vcpu(vcpu->kvm, cpu_addr);
118         if (!dst_vcpu)
119                 return SIGP_CC_NOT_OPERATIONAL;
120
121         rc = kvm_s390_inject_vcpu(dst_vcpu, &s390int);
122         if (!rc)
123                 VCPU_EVENT(vcpu, 4, "sent sigp ext call to cpu %x", cpu_addr);
124
125         return rc ? rc : SIGP_CC_ORDER_CODE_ACCEPTED;
126 }
127
128 static int __inject_sigp_stop(struct kvm_s390_local_interrupt *li, int action)
129 {
130         struct kvm_s390_interrupt_info *inti;
131         int rc = SIGP_CC_ORDER_CODE_ACCEPTED;
132
133         inti = kzalloc(sizeof(*inti), GFP_ATOMIC);
134         if (!inti)
135                 return -ENOMEM;
136         inti->type = KVM_S390_SIGP_STOP;
137
138         spin_lock_bh(&li->lock);
139         if ((atomic_read(li->cpuflags) & CPUSTAT_STOPPED)) {
140                 kfree(inti);
141                 if ((action & ACTION_STORE_ON_STOP) != 0)
142                         rc = -ESHUTDOWN;
143                 goto out;
144         }
145         list_add_tail(&inti->list, &li->list);
146         atomic_set(&li->active, 1);
147         atomic_set_mask(CPUSTAT_STOP_INT, li->cpuflags);
148         li->action_bits |= action;
149         if (waitqueue_active(li->wq))
150                 wake_up_interruptible(li->wq);
151 out:
152         spin_unlock_bh(&li->lock);
153
154         return rc;
155 }
156
157 static int __sigp_stop(struct kvm_vcpu *vcpu, u16 cpu_addr, int action)
158 {
159         struct kvm_s390_local_interrupt *li;
160         struct kvm_vcpu *dst_vcpu = NULL;
161         int rc;
162
163         if (cpu_addr >= KVM_MAX_VCPUS)
164                 return SIGP_CC_NOT_OPERATIONAL;
165
166         dst_vcpu = kvm_get_vcpu(vcpu->kvm, cpu_addr);
167         if (!dst_vcpu)
168                 return SIGP_CC_NOT_OPERATIONAL;
169         li = &dst_vcpu->arch.local_int;
170
171         rc = __inject_sigp_stop(li, action);
172
173         VCPU_EVENT(vcpu, 4, "sent sigp stop to cpu %x", cpu_addr);
174
175         if ((action & ACTION_STORE_ON_STOP) != 0 && rc == -ESHUTDOWN) {
176                 /* If the CPU has already been stopped, we still have
177                  * to save the status when doing stop-and-store. This
178                  * has to be done after unlocking all spinlocks. */
179                 rc = kvm_s390_store_status_unloaded(dst_vcpu,
180                                                 KVM_S390_STORE_STATUS_NOADDR);
181         }
182
183         return rc;
184 }
185
186 static int __sigp_set_arch(struct kvm_vcpu *vcpu, u32 parameter)
187 {
188         int rc;
189         unsigned int i;
190         struct kvm_vcpu *v;
191
192         switch (parameter & 0xff) {
193         case 0:
194                 rc = SIGP_CC_NOT_OPERATIONAL;
195                 break;
196         case 1:
197         case 2:
198                 kvm_for_each_vcpu(i, v, vcpu->kvm) {
199                         v->arch.pfault_token = KVM_S390_PFAULT_TOKEN_INVALID;
200                         kvm_clear_async_pf_completion_queue(v);
201                 }
202
203                 rc = SIGP_CC_ORDER_CODE_ACCEPTED;
204                 break;
205         default:
206                 rc = -EOPNOTSUPP;
207         }
208         return rc;
209 }
210
211 static int __sigp_set_prefix(struct kvm_vcpu *vcpu, u16 cpu_addr, u32 address,
212                              u64 *reg)
213 {
214         struct kvm_s390_local_interrupt *li;
215         struct kvm_vcpu *dst_vcpu = NULL;
216         struct kvm_s390_interrupt_info *inti;
217         int rc;
218
219         if (cpu_addr < KVM_MAX_VCPUS)
220                 dst_vcpu = kvm_get_vcpu(vcpu->kvm, cpu_addr);
221         if (!dst_vcpu)
222                 return SIGP_CC_NOT_OPERATIONAL;
223         li = &dst_vcpu->arch.local_int;
224
225         /*
226          * Make sure the new value is valid memory. We only need to check the
227          * first page, since address is 8k aligned and memory pieces are always
228          * at least 1MB aligned and have at least a size of 1MB.
229          */
230         address &= 0x7fffe000u;
231         if (kvm_is_error_gpa(vcpu->kvm, address)) {
232                 *reg &= 0xffffffff00000000UL;
233                 *reg |= SIGP_STATUS_INVALID_PARAMETER;
234                 return SIGP_CC_STATUS_STORED;
235         }
236
237         inti = kzalloc(sizeof(*inti), GFP_KERNEL);
238         if (!inti)
239                 return SIGP_CC_BUSY;
240
241         spin_lock_bh(&li->lock);
242         /* cpu must be in stopped state */
243         if (!(atomic_read(li->cpuflags) & CPUSTAT_STOPPED)) {
244                 *reg &= 0xffffffff00000000UL;
245                 *reg |= SIGP_STATUS_INCORRECT_STATE;
246                 rc = SIGP_CC_STATUS_STORED;
247                 kfree(inti);
248                 goto out_li;
249         }
250
251         inti->type = KVM_S390_SIGP_SET_PREFIX;
252         inti->prefix.address = address;
253
254         list_add_tail(&inti->list, &li->list);
255         atomic_set(&li->active, 1);
256         if (waitqueue_active(li->wq))
257                 wake_up_interruptible(li->wq);
258         rc = SIGP_CC_ORDER_CODE_ACCEPTED;
259
260         VCPU_EVENT(vcpu, 4, "set prefix of cpu %02x to %x", cpu_addr, address);
261 out_li:
262         spin_unlock_bh(&li->lock);
263         return rc;
264 }
265
266 static int __sigp_store_status_at_addr(struct kvm_vcpu *vcpu, u16 cpu_id,
267                                         u32 addr, u64 *reg)
268 {
269         struct kvm_vcpu *dst_vcpu = NULL;
270         int flags;
271         int rc;
272
273         if (cpu_id < KVM_MAX_VCPUS)
274                 dst_vcpu = kvm_get_vcpu(vcpu->kvm, cpu_id);
275         if (!dst_vcpu)
276                 return SIGP_CC_NOT_OPERATIONAL;
277
278         spin_lock_bh(&dst_vcpu->arch.local_int.lock);
279         flags = atomic_read(dst_vcpu->arch.local_int.cpuflags);
280         spin_unlock_bh(&dst_vcpu->arch.local_int.lock);
281         if (!(flags & CPUSTAT_STOPPED)) {
282                 *reg &= 0xffffffff00000000UL;
283                 *reg |= SIGP_STATUS_INCORRECT_STATE;
284                 return SIGP_CC_STATUS_STORED;
285         }
286
287         addr &= 0x7ffffe00;
288         rc = kvm_s390_store_status_unloaded(dst_vcpu, addr);
289         if (rc == -EFAULT) {
290                 *reg &= 0xffffffff00000000UL;
291                 *reg |= SIGP_STATUS_INVALID_PARAMETER;
292                 rc = SIGP_CC_STATUS_STORED;
293         }
294         return rc;
295 }
296
297 static int __sigp_sense_running(struct kvm_vcpu *vcpu, u16 cpu_addr,
298                                 u64 *reg)
299 {
300         struct kvm_s390_local_interrupt *li;
301         struct kvm_vcpu *dst_vcpu = NULL;
302         int rc;
303
304         if (cpu_addr >= KVM_MAX_VCPUS)
305                 return SIGP_CC_NOT_OPERATIONAL;
306
307         dst_vcpu = kvm_get_vcpu(vcpu->kvm, cpu_addr);
308         if (!dst_vcpu)
309                 return SIGP_CC_NOT_OPERATIONAL;
310         li = &dst_vcpu->arch.local_int;
311         if (atomic_read(li->cpuflags) & CPUSTAT_RUNNING) {
312                 /* running */
313                 rc = SIGP_CC_ORDER_CODE_ACCEPTED;
314         } else {
315                 /* not running */
316                 *reg &= 0xffffffff00000000UL;
317                 *reg |= SIGP_STATUS_NOT_RUNNING;
318                 rc = SIGP_CC_STATUS_STORED;
319         }
320
321         VCPU_EVENT(vcpu, 4, "sensed running status of cpu %x rc %x", cpu_addr,
322                    rc);
323
324         return rc;
325 }
326
327 /* Test whether the destination CPU is available and not busy */
328 static int sigp_check_callable(struct kvm_vcpu *vcpu, u16 cpu_addr)
329 {
330         struct kvm_s390_local_interrupt *li;
331         int rc = SIGP_CC_ORDER_CODE_ACCEPTED;
332         struct kvm_vcpu *dst_vcpu = NULL;
333
334         if (cpu_addr >= KVM_MAX_VCPUS)
335                 return SIGP_CC_NOT_OPERATIONAL;
336
337         dst_vcpu = kvm_get_vcpu(vcpu->kvm, cpu_addr);
338         if (!dst_vcpu)
339                 return SIGP_CC_NOT_OPERATIONAL;
340         li = &dst_vcpu->arch.local_int;
341         spin_lock_bh(&li->lock);
342         if (li->action_bits & ACTION_STOP_ON_STOP)
343                 rc = SIGP_CC_BUSY;
344         spin_unlock_bh(&li->lock);
345
346         return rc;
347 }
348
349 int kvm_s390_handle_sigp(struct kvm_vcpu *vcpu)
350 {
351         int r1 = (vcpu->arch.sie_block->ipa & 0x00f0) >> 4;
352         int r3 = vcpu->arch.sie_block->ipa & 0x000f;
353         u32 parameter;
354         u16 cpu_addr = vcpu->run->s.regs.gprs[r3];
355         u8 order_code;
356         int rc;
357
358         /* sigp in userspace can exit */
359         if (vcpu->arch.sie_block->gpsw.mask & PSW_MASK_PSTATE)
360                 return kvm_s390_inject_program_int(vcpu, PGM_PRIVILEGED_OP);
361
362         order_code = kvm_s390_get_base_disp_rs(vcpu);
363
364         if (r1 % 2)
365                 parameter = vcpu->run->s.regs.gprs[r1];
366         else
367                 parameter = vcpu->run->s.regs.gprs[r1 + 1];
368
369         trace_kvm_s390_handle_sigp(vcpu, order_code, cpu_addr, parameter);
370         switch (order_code) {
371         case SIGP_SENSE:
372                 vcpu->stat.instruction_sigp_sense++;
373                 rc = __sigp_sense(vcpu, cpu_addr,
374                                   &vcpu->run->s.regs.gprs[r1]);
375                 break;
376         case SIGP_EXTERNAL_CALL:
377                 vcpu->stat.instruction_sigp_external_call++;
378                 rc = __sigp_external_call(vcpu, cpu_addr);
379                 break;
380         case SIGP_EMERGENCY_SIGNAL:
381                 vcpu->stat.instruction_sigp_emergency++;
382                 rc = __sigp_emergency(vcpu, cpu_addr);
383                 break;
384         case SIGP_STOP:
385                 vcpu->stat.instruction_sigp_stop++;
386                 rc = __sigp_stop(vcpu, cpu_addr, ACTION_STOP_ON_STOP);
387                 break;
388         case SIGP_STOP_AND_STORE_STATUS:
389                 vcpu->stat.instruction_sigp_stop++;
390                 rc = __sigp_stop(vcpu, cpu_addr, ACTION_STORE_ON_STOP |
391                                                  ACTION_STOP_ON_STOP);
392                 break;
393         case SIGP_STORE_STATUS_AT_ADDRESS:
394                 rc = __sigp_store_status_at_addr(vcpu, cpu_addr, parameter,
395                                                  &vcpu->run->s.regs.gprs[r1]);
396                 break;
397         case SIGP_SET_ARCHITECTURE:
398                 vcpu->stat.instruction_sigp_arch++;
399                 rc = __sigp_set_arch(vcpu, parameter);
400                 break;
401         case SIGP_SET_PREFIX:
402                 vcpu->stat.instruction_sigp_prefix++;
403                 rc = __sigp_set_prefix(vcpu, cpu_addr, parameter,
404                                        &vcpu->run->s.regs.gprs[r1]);
405                 break;
406         case SIGP_COND_EMERGENCY_SIGNAL:
407                 rc = __sigp_conditional_emergency(vcpu, cpu_addr, parameter,
408                                                   &vcpu->run->s.regs.gprs[r1]);
409                 break;
410         case SIGP_SENSE_RUNNING:
411                 vcpu->stat.instruction_sigp_sense_running++;
412                 rc = __sigp_sense_running(vcpu, cpu_addr,
413                                           &vcpu->run->s.regs.gprs[r1]);
414                 break;
415         case SIGP_START:
416                 rc = sigp_check_callable(vcpu, cpu_addr);
417                 if (rc == SIGP_CC_ORDER_CODE_ACCEPTED)
418                         rc = -EOPNOTSUPP;    /* Handle START in user space */
419                 break;
420         case SIGP_RESTART:
421                 vcpu->stat.instruction_sigp_restart++;
422                 rc = sigp_check_callable(vcpu, cpu_addr);
423                 if (rc == SIGP_CC_ORDER_CODE_ACCEPTED) {
424                         VCPU_EVENT(vcpu, 4,
425                                    "sigp restart %x to handle userspace",
426                                    cpu_addr);
427                         /* user space must know about restart */
428                         rc = -EOPNOTSUPP;
429                 }
430                 break;
431         default:
432                 return -EOPNOTSUPP;
433         }
434
435         if (rc < 0)
436                 return rc;
437
438         kvm_s390_set_psw_cc(vcpu, rc);
439         return 0;
440 }
441
442 /*
443  * Handle SIGP partial execution interception.
444  *
445  * This interception will occur at the source cpu when a source cpu sends an
446  * external call to a target cpu and the target cpu has the WAIT bit set in
447  * its cpuflags. Interception will occurr after the interrupt indicator bits at
448  * the target cpu have been set. All error cases will lead to instruction
449  * interception, therefore nothing is to be checked or prepared.
450  */
451 int kvm_s390_handle_sigp_pei(struct kvm_vcpu *vcpu)
452 {
453         int r3 = vcpu->arch.sie_block->ipa & 0x000f;
454         u16 cpu_addr = vcpu->run->s.regs.gprs[r3];
455         struct kvm_vcpu *dest_vcpu;
456         u8 order_code = kvm_s390_get_base_disp_rs(vcpu);
457
458         trace_kvm_s390_handle_sigp_pei(vcpu, order_code, cpu_addr);
459
460         if (order_code == SIGP_EXTERNAL_CALL) {
461                 dest_vcpu = kvm_get_vcpu(vcpu->kvm, cpu_addr);
462                 BUG_ON(dest_vcpu == NULL);
463
464                 spin_lock_bh(&dest_vcpu->arch.local_int.lock);
465                 if (waitqueue_active(&dest_vcpu->wq))
466                         wake_up_interruptible(&dest_vcpu->wq);
467                 dest_vcpu->preempted = true;
468                 spin_unlock_bh(&dest_vcpu->arch.local_int.lock);
469
470                 kvm_s390_set_psw_cc(vcpu, SIGP_CC_ORDER_CODE_ACCEPTED);
471                 return 0;
472         }
473
474         return -EOPNOTSUPP;
475 }