blob: a010aa4cd02670e9f237f45a7f776e277bf9f123 [file] [log] [blame]
Paul Mackerrasde56a942011-06-29 00:21:34 +00001/*
2 * Copyright 2011 Paul Mackerras, IBM Corp. <paulus@au1.ibm.com>
3 * Copyright (C) 2009. SUSE Linux Products GmbH. All rights reserved.
4 *
5 * Authors:
6 * Paul Mackerras <paulus@au1.ibm.com>
7 * Alexander Graf <agraf@suse.de>
8 * Kevin Wolf <mail@kevin-wolf.de>
9 *
10 * Description: KVM functions specific to running on Book 3S
11 * processors in hypervisor mode (specifically POWER7 and later).
12 *
13 * This file is derived from arch/powerpc/kvm/book3s.c,
14 * by Alexander Graf <agraf@suse.de>.
15 *
16 * This program is free software; you can redistribute it and/or modify
17 * it under the terms of the GNU General Public License, version 2, as
18 * published by the Free Software Foundation.
19 */
20
21#include <linux/kvm_host.h>
22#include <linux/err.h>
23#include <linux/slab.h>
24#include <linux/preempt.h>
25#include <linux/sched.h>
26#include <linux/delay.h>
Paul Gortmaker66b15db2011-05-27 10:46:24 -040027#include <linux/export.h>
Paul Mackerrasde56a942011-06-29 00:21:34 +000028#include <linux/fs.h>
29#include <linux/anon_inodes.h>
30#include <linux/cpumask.h>
Paul Mackerrasaa04b4c2011-06-29 00:25:44 +000031#include <linux/spinlock.h>
32#include <linux/page-flags.h>
Paul Mackerras2c9097e2012-09-11 13:27:01 +000033#include <linux/srcu.h>
Paul Mackerrasde56a942011-06-29 00:21:34 +000034
35#include <asm/reg.h>
36#include <asm/cputable.h>
37#include <asm/cacheflush.h>
38#include <asm/tlbflush.h>
39#include <asm/uaccess.h>
40#include <asm/io.h>
41#include <asm/kvm_ppc.h>
42#include <asm/kvm_book3s.h>
43#include <asm/mmu_context.h>
44#include <asm/lppaca.h>
45#include <asm/processor.h>
Paul Mackerras371fefd2011-06-29 00:23:08 +000046#include <asm/cputhreads.h>
Paul Mackerrasaa04b4c2011-06-29 00:25:44 +000047#include <asm/page.h>
Michael Neulingde1d9242011-11-09 20:39:49 +000048#include <asm/hvcall.h>
David Howellsae3a1972012-03-28 18:30:02 +010049#include <asm/switch_to.h>
Paul Mackerras512691d2012-10-15 01:15:41 +000050#include <asm/smp.h>
Paul Mackerrasde56a942011-06-29 00:21:34 +000051#include <linux/gfp.h>
Paul Mackerrasde56a942011-06-29 00:21:34 +000052#include <linux/vmalloc.h>
53#include <linux/highmem.h>
Paul Mackerrasc77162d2011-12-12 12:31:00 +000054#include <linux/hugetlb.h>
Paul Mackerrasde56a942011-06-29 00:21:34 +000055
56/* #define EXIT_DEBUG */
57/* #define EXIT_DEBUG_SIMPLE */
58/* #define EXIT_DEBUG_INT */
59
Paul Mackerras913d3ff9a2012-10-15 01:16:48 +000060/* Used to indicate that a guest page fault needs to be handled */
61#define RESUME_PAGE_FAULT (RESUME_GUEST | RESUME_FLAG_ARCH1)
62
Paul Mackerrasc7b67672012-10-15 01:18:07 +000063/* Used as a "null" value for timebase values */
64#define TB_NIL (~(u64)0)
65
Paul Mackerras19ccb762011-07-23 17:42:46 +100066static void kvmppc_end_cede(struct kvm_vcpu *vcpu);
Paul Mackerras32fad282012-05-04 02:32:53 +000067static int kvmppc_hv_setup_htab_rma(struct kvm_vcpu *vcpu);
Paul Mackerras19ccb762011-07-23 17:42:46 +100068
Benjamin Herrenschmidt54695c32013-04-17 20:30:50 +000069void kvmppc_fast_vcpu_kick(struct kvm_vcpu *vcpu)
70{
71 int me;
72 int cpu = vcpu->cpu;
73 wait_queue_head_t *wqp;
74
75 wqp = kvm_arch_vcpu_wq(vcpu);
76 if (waitqueue_active(wqp)) {
77 wake_up_interruptible(wqp);
78 ++vcpu->stat.halt_wakeup;
79 }
80
81 me = get_cpu();
82
83 /* CPU points to the first thread of the core */
84 if (cpu != me && cpu >= 0 && cpu < nr_cpu_ids) {
85 int real_cpu = cpu + vcpu->arch.ptid;
86 if (paca[real_cpu].kvm_hstate.xics_phys)
87 xics_wake_cpu(real_cpu);
88 else if (cpu_online(cpu))
89 smp_send_reschedule(cpu);
90 }
91 put_cpu();
92}
93
Paul Mackerrasc7b67672012-10-15 01:18:07 +000094/*
95 * We use the vcpu_load/put functions to measure stolen time.
96 * Stolen time is counted as time when either the vcpu is able to
97 * run as part of a virtual core, but the task running the vcore
98 * is preempted or sleeping, or when the vcpu needs something done
99 * in the kernel by the task running the vcpu, but that task is
100 * preempted or sleeping. Those two things have to be counted
101 * separately, since one of the vcpu tasks will take on the job
102 * of running the core, and the other vcpu tasks in the vcore will
103 * sleep waiting for it to do that, but that sleep shouldn't count
104 * as stolen time.
105 *
106 * Hence we accumulate stolen time when the vcpu can run as part of
107 * a vcore using vc->stolen_tb, and the stolen time when the vcpu
108 * needs its task to do other things in the kernel (for example,
109 * service a page fault) in busy_stolen. We don't accumulate
110 * stolen time for a vcore when it is inactive, or for a vcpu
111 * when it is in state RUNNING or NOTREADY. NOTREADY is a bit of
112 * a misnomer; it means that the vcpu task is not executing in
113 * the KVM_VCPU_RUN ioctl, i.e. it is in userspace or elsewhere in
114 * the kernel. We don't have any way of dividing up that time
115 * between time that the vcpu is genuinely stopped, time that
116 * the task is actively working on behalf of the vcpu, and time
117 * that the task is preempted, so we don't count any of it as
118 * stolen.
119 *
120 * Updates to busy_stolen are protected by arch.tbacct_lock;
121 * updates to vc->stolen_tb are protected by the arch.tbacct_lock
122 * of the vcpu that has taken responsibility for running the vcore
123 * (i.e. vc->runner). The stolen times are measured in units of
124 * timebase ticks. (Note that the != TB_NIL checks below are
125 * purely defensive; they should never fail.)
126 */
127
Paul Mackerrasde56a942011-06-29 00:21:34 +0000128void kvmppc_core_vcpu_load(struct kvm_vcpu *vcpu, int cpu)
129{
Paul Mackerras0456ec42012-02-03 00:56:21 +0000130 struct kvmppc_vcore *vc = vcpu->arch.vcore;
131
Paul Mackerrasc7b67672012-10-15 01:18:07 +0000132 spin_lock(&vcpu->arch.tbacct_lock);
133 if (vc->runner == vcpu && vc->vcore_state != VCORE_INACTIVE &&
134 vc->preempt_tb != TB_NIL) {
Paul Mackerras0456ec42012-02-03 00:56:21 +0000135 vc->stolen_tb += mftb() - vc->preempt_tb;
Paul Mackerrasc7b67672012-10-15 01:18:07 +0000136 vc->preempt_tb = TB_NIL;
137 }
138 if (vcpu->arch.state == KVMPPC_VCPU_BUSY_IN_HOST &&
139 vcpu->arch.busy_preempt != TB_NIL) {
140 vcpu->arch.busy_stolen += mftb() - vcpu->arch.busy_preempt;
141 vcpu->arch.busy_preempt = TB_NIL;
142 }
143 spin_unlock(&vcpu->arch.tbacct_lock);
Paul Mackerrasde56a942011-06-29 00:21:34 +0000144}
145
146void kvmppc_core_vcpu_put(struct kvm_vcpu *vcpu)
147{
Paul Mackerras0456ec42012-02-03 00:56:21 +0000148 struct kvmppc_vcore *vc = vcpu->arch.vcore;
149
Paul Mackerrasc7b67672012-10-15 01:18:07 +0000150 spin_lock(&vcpu->arch.tbacct_lock);
Paul Mackerras0456ec42012-02-03 00:56:21 +0000151 if (vc->runner == vcpu && vc->vcore_state != VCORE_INACTIVE)
152 vc->preempt_tb = mftb();
Paul Mackerrasc7b67672012-10-15 01:18:07 +0000153 if (vcpu->arch.state == KVMPPC_VCPU_BUSY_IN_HOST)
154 vcpu->arch.busy_preempt = mftb();
155 spin_unlock(&vcpu->arch.tbacct_lock);
Paul Mackerrasde56a942011-06-29 00:21:34 +0000156}
157
Paul Mackerrasde56a942011-06-29 00:21:34 +0000158void kvmppc_set_msr(struct kvm_vcpu *vcpu, u64 msr)
159{
160 vcpu->arch.shregs.msr = msr;
Paul Mackerras19ccb762011-07-23 17:42:46 +1000161 kvmppc_end_cede(vcpu);
Paul Mackerrasde56a942011-06-29 00:21:34 +0000162}
163
164void kvmppc_set_pvr(struct kvm_vcpu *vcpu, u32 pvr)
165{
166 vcpu->arch.pvr = pvr;
167}
168
169void kvmppc_dump_regs(struct kvm_vcpu *vcpu)
170{
171 int r;
172
173 pr_err("vcpu %p (%d):\n", vcpu, vcpu->vcpu_id);
174 pr_err("pc = %.16lx msr = %.16llx trap = %x\n",
175 vcpu->arch.pc, vcpu->arch.shregs.msr, vcpu->arch.trap);
176 for (r = 0; r < 16; ++r)
177 pr_err("r%2d = %.16lx r%d = %.16lx\n",
178 r, kvmppc_get_gpr(vcpu, r),
179 r+16, kvmppc_get_gpr(vcpu, r+16));
180 pr_err("ctr = %.16lx lr = %.16lx\n",
181 vcpu->arch.ctr, vcpu->arch.lr);
182 pr_err("srr0 = %.16llx srr1 = %.16llx\n",
183 vcpu->arch.shregs.srr0, vcpu->arch.shregs.srr1);
184 pr_err("sprg0 = %.16llx sprg1 = %.16llx\n",
185 vcpu->arch.shregs.sprg0, vcpu->arch.shregs.sprg1);
186 pr_err("sprg2 = %.16llx sprg3 = %.16llx\n",
187 vcpu->arch.shregs.sprg2, vcpu->arch.shregs.sprg3);
188 pr_err("cr = %.8x xer = %.16lx dsisr = %.8x\n",
189 vcpu->arch.cr, vcpu->arch.xer, vcpu->arch.shregs.dsisr);
190 pr_err("dar = %.16llx\n", vcpu->arch.shregs.dar);
191 pr_err("fault dar = %.16lx dsisr = %.8x\n",
192 vcpu->arch.fault_dar, vcpu->arch.fault_dsisr);
193 pr_err("SLB (%d entries):\n", vcpu->arch.slb_max);
194 for (r = 0; r < vcpu->arch.slb_max; ++r)
195 pr_err(" ESID = %.16llx VSID = %.16llx\n",
196 vcpu->arch.slb[r].orige, vcpu->arch.slb[r].origv);
197 pr_err("lpcr = %.16lx sdr1 = %.16lx last_inst = %.8x\n",
Paul Mackerrasaa04b4c2011-06-29 00:25:44 +0000198 vcpu->kvm->arch.lpcr, vcpu->kvm->arch.sdr1,
Paul Mackerrasde56a942011-06-29 00:21:34 +0000199 vcpu->arch.last_inst);
200}
201
Paul Mackerrasa8606e22011-06-29 00:22:05 +0000202struct kvm_vcpu *kvmppc_find_vcpu(struct kvm *kvm, int id)
203{
204 int r;
205 struct kvm_vcpu *v, *ret = NULL;
206
207 mutex_lock(&kvm->lock);
208 kvm_for_each_vcpu(r, v, kvm) {
209 if (v->vcpu_id == id) {
210 ret = v;
211 break;
212 }
213 }
214 mutex_unlock(&kvm->lock);
215 return ret;
216}
217
218static void init_vpa(struct kvm_vcpu *vcpu, struct lppaca *vpa)
219{
Anton Blanchardf13c13a2013-08-07 02:01:26 +1000220 vpa->__old_status |= LPPACA_OLD_SHARED_PROC;
Paul Mackerrasa8606e22011-06-29 00:22:05 +0000221 vpa->yield_count = 1;
222}
223
Paul Mackerras55b665b2012-09-25 20:33:06 +0000224static int set_vpa(struct kvm_vcpu *vcpu, struct kvmppc_vpa *v,
225 unsigned long addr, unsigned long len)
226{
227 /* check address is cacheline aligned */
228 if (addr & (L1_CACHE_BYTES - 1))
229 return -EINVAL;
230 spin_lock(&vcpu->arch.vpa_update_lock);
231 if (v->next_gpa != addr || v->len != len) {
232 v->next_gpa = addr;
233 v->len = addr ? len : 0;
234 v->update_pending = 1;
235 }
236 spin_unlock(&vcpu->arch.vpa_update_lock);
237 return 0;
238}
239
Paul Mackerras2e25aa52012-02-19 17:46:32 +0000240/* Length for a per-processor buffer is passed in at offset 4 in the buffer */
241struct reg_vpa {
242 u32 dummy;
243 union {
244 u16 hword;
245 u32 word;
246 } length;
247};
248
249static int vpa_is_registered(struct kvmppc_vpa *vpap)
250{
251 if (vpap->update_pending)
252 return vpap->next_gpa != 0;
253 return vpap->pinned_addr != NULL;
254}
255
Paul Mackerrasa8606e22011-06-29 00:22:05 +0000256static unsigned long do_h_register_vpa(struct kvm_vcpu *vcpu,
257 unsigned long flags,
258 unsigned long vcpuid, unsigned long vpa)
259{
260 struct kvm *kvm = vcpu->kvm;
Paul Mackerras93e60242011-12-12 12:28:55 +0000261 unsigned long len, nb;
Paul Mackerrasa8606e22011-06-29 00:22:05 +0000262 void *va;
263 struct kvm_vcpu *tvcpu;
Paul Mackerras2e25aa52012-02-19 17:46:32 +0000264 int err;
265 int subfunc;
266 struct kvmppc_vpa *vpap;
Paul Mackerrasa8606e22011-06-29 00:22:05 +0000267
268 tvcpu = kvmppc_find_vcpu(kvm, vcpuid);
269 if (!tvcpu)
270 return H_PARAMETER;
271
Paul Mackerras2e25aa52012-02-19 17:46:32 +0000272 subfunc = (flags >> H_VPA_FUNC_SHIFT) & H_VPA_FUNC_MASK;
273 if (subfunc == H_VPA_REG_VPA || subfunc == H_VPA_REG_DTL ||
274 subfunc == H_VPA_REG_SLB) {
275 /* Registering new area - address must be cache-line aligned */
276 if ((vpa & (L1_CACHE_BYTES - 1)) || !vpa)
Paul Mackerrasa8606e22011-06-29 00:22:05 +0000277 return H_PARAMETER;
Paul Mackerras2e25aa52012-02-19 17:46:32 +0000278
279 /* convert logical addr to kernel addr and read length */
Paul Mackerras93e60242011-12-12 12:28:55 +0000280 va = kvmppc_pin_guest_page(kvm, vpa, &nb);
281 if (va == NULL)
Paul Mackerrasb2b2f162011-12-12 12:28:21 +0000282 return H_PARAMETER;
Paul Mackerras2e25aa52012-02-19 17:46:32 +0000283 if (subfunc == H_VPA_REG_VPA)
284 len = ((struct reg_vpa *)va)->length.hword;
Paul Mackerrasa8606e22011-06-29 00:22:05 +0000285 else
Paul Mackerras2e25aa52012-02-19 17:46:32 +0000286 len = ((struct reg_vpa *)va)->length.word;
Paul Mackerrasc35635e2013-04-18 19:51:04 +0000287 kvmppc_unpin_guest_page(kvm, va, vpa, false);
Paul Mackerras2e25aa52012-02-19 17:46:32 +0000288
289 /* Check length */
290 if (len > nb || len < sizeof(struct reg_vpa))
291 return H_PARAMETER;
Paul Mackerrasa8606e22011-06-29 00:22:05 +0000292 } else {
Paul Mackerras2e25aa52012-02-19 17:46:32 +0000293 vpa = 0;
294 len = 0;
295 }
296
297 err = H_PARAMETER;
298 vpap = NULL;
299 spin_lock(&tvcpu->arch.vpa_update_lock);
300
301 switch (subfunc) {
302 case H_VPA_REG_VPA: /* register VPA */
303 if (len < sizeof(struct lppaca))
Paul Mackerrasa8606e22011-06-29 00:22:05 +0000304 break;
Paul Mackerras2e25aa52012-02-19 17:46:32 +0000305 vpap = &tvcpu->arch.vpa;
306 err = 0;
307 break;
308
309 case H_VPA_REG_DTL: /* register DTL */
310 if (len < sizeof(struct dtl_entry))
Paul Mackerrasa8606e22011-06-29 00:22:05 +0000311 break;
Paul Mackerras2e25aa52012-02-19 17:46:32 +0000312 len -= len % sizeof(struct dtl_entry);
313
314 /* Check that they have previously registered a VPA */
315 err = H_RESOURCE;
316 if (!vpa_is_registered(&tvcpu->arch.vpa))
Paul Mackerrasa8606e22011-06-29 00:22:05 +0000317 break;
Paul Mackerras2e25aa52012-02-19 17:46:32 +0000318
319 vpap = &tvcpu->arch.dtl;
320 err = 0;
321 break;
322
323 case H_VPA_REG_SLB: /* register SLB shadow buffer */
324 /* Check that they have previously registered a VPA */
325 err = H_RESOURCE;
326 if (!vpa_is_registered(&tvcpu->arch.vpa))
327 break;
328
329 vpap = &tvcpu->arch.slb_shadow;
330 err = 0;
331 break;
332
333 case H_VPA_DEREG_VPA: /* deregister VPA */
334 /* Check they don't still have a DTL or SLB buf registered */
335 err = H_RESOURCE;
336 if (vpa_is_registered(&tvcpu->arch.dtl) ||
337 vpa_is_registered(&tvcpu->arch.slb_shadow))
338 break;
339
340 vpap = &tvcpu->arch.vpa;
341 err = 0;
342 break;
343
344 case H_VPA_DEREG_DTL: /* deregister DTL */
345 vpap = &tvcpu->arch.dtl;
346 err = 0;
347 break;
348
349 case H_VPA_DEREG_SLB: /* deregister SLB shadow buffer */
350 vpap = &tvcpu->arch.slb_shadow;
351 err = 0;
352 break;
353 }
354
355 if (vpap) {
356 vpap->next_gpa = vpa;
357 vpap->len = len;
358 vpap->update_pending = 1;
359 }
360
361 spin_unlock(&tvcpu->arch.vpa_update_lock);
362
363 return err;
364}
365
Paul Mackerras081f3232012-06-01 20:20:24 +1000366static void kvmppc_update_vpa(struct kvm_vcpu *vcpu, struct kvmppc_vpa *vpap)
Paul Mackerras2e25aa52012-02-19 17:46:32 +0000367{
Paul Mackerras081f3232012-06-01 20:20:24 +1000368 struct kvm *kvm = vcpu->kvm;
Paul Mackerras2e25aa52012-02-19 17:46:32 +0000369 void *va;
370 unsigned long nb;
Paul Mackerras081f3232012-06-01 20:20:24 +1000371 unsigned long gpa;
372
373 /*
374 * We need to pin the page pointed to by vpap->next_gpa,
375 * but we can't call kvmppc_pin_guest_page under the lock
376 * as it does get_user_pages() and down_read(). So we
377 * have to drop the lock, pin the page, then get the lock
378 * again and check that a new area didn't get registered
379 * in the meantime.
380 */
381 for (;;) {
382 gpa = vpap->next_gpa;
383 spin_unlock(&vcpu->arch.vpa_update_lock);
384 va = NULL;
385 nb = 0;
386 if (gpa)
Paul Mackerrasc35635e2013-04-18 19:51:04 +0000387 va = kvmppc_pin_guest_page(kvm, gpa, &nb);
Paul Mackerras081f3232012-06-01 20:20:24 +1000388 spin_lock(&vcpu->arch.vpa_update_lock);
389 if (gpa == vpap->next_gpa)
390 break;
391 /* sigh... unpin that one and try again */
392 if (va)
Paul Mackerrasc35635e2013-04-18 19:51:04 +0000393 kvmppc_unpin_guest_page(kvm, va, gpa, false);
Paul Mackerras081f3232012-06-01 20:20:24 +1000394 }
Paul Mackerras2e25aa52012-02-19 17:46:32 +0000395
396 vpap->update_pending = 0;
Paul Mackerras081f3232012-06-01 20:20:24 +1000397 if (va && nb < vpap->len) {
398 /*
399 * If it's now too short, it must be that userspace
400 * has changed the mappings underlying guest memory,
401 * so unregister the region.
402 */
Paul Mackerrasc35635e2013-04-18 19:51:04 +0000403 kvmppc_unpin_guest_page(kvm, va, gpa, false);
Paul Mackerras081f3232012-06-01 20:20:24 +1000404 va = NULL;
Paul Mackerrasa8606e22011-06-29 00:22:05 +0000405 }
Paul Mackerras2e25aa52012-02-19 17:46:32 +0000406 if (vpap->pinned_addr)
Paul Mackerrasc35635e2013-04-18 19:51:04 +0000407 kvmppc_unpin_guest_page(kvm, vpap->pinned_addr, vpap->gpa,
408 vpap->dirty);
409 vpap->gpa = gpa;
Paul Mackerras2e25aa52012-02-19 17:46:32 +0000410 vpap->pinned_addr = va;
Paul Mackerrasc35635e2013-04-18 19:51:04 +0000411 vpap->dirty = false;
Paul Mackerras2e25aa52012-02-19 17:46:32 +0000412 if (va)
413 vpap->pinned_end = va + vpap->len;
414}
Paul Mackerras93e60242011-12-12 12:28:55 +0000415
Paul Mackerras2e25aa52012-02-19 17:46:32 +0000416static void kvmppc_update_vpas(struct kvm_vcpu *vcpu)
417{
Paul Mackerras2f12f032012-10-15 01:17:17 +0000418 if (!(vcpu->arch.vpa.update_pending ||
419 vcpu->arch.slb_shadow.update_pending ||
420 vcpu->arch.dtl.update_pending))
421 return;
422
Paul Mackerras2e25aa52012-02-19 17:46:32 +0000423 spin_lock(&vcpu->arch.vpa_update_lock);
424 if (vcpu->arch.vpa.update_pending) {
Paul Mackerras081f3232012-06-01 20:20:24 +1000425 kvmppc_update_vpa(vcpu, &vcpu->arch.vpa);
Paul Mackerras55b665b2012-09-25 20:33:06 +0000426 if (vcpu->arch.vpa.pinned_addr)
427 init_vpa(vcpu, vcpu->arch.vpa.pinned_addr);
Paul Mackerras2e25aa52012-02-19 17:46:32 +0000428 }
429 if (vcpu->arch.dtl.update_pending) {
Paul Mackerras081f3232012-06-01 20:20:24 +1000430 kvmppc_update_vpa(vcpu, &vcpu->arch.dtl);
Paul Mackerras2e25aa52012-02-19 17:46:32 +0000431 vcpu->arch.dtl_ptr = vcpu->arch.dtl.pinned_addr;
432 vcpu->arch.dtl_index = 0;
433 }
434 if (vcpu->arch.slb_shadow.update_pending)
Paul Mackerras081f3232012-06-01 20:20:24 +1000435 kvmppc_update_vpa(vcpu, &vcpu->arch.slb_shadow);
Paul Mackerras2e25aa52012-02-19 17:46:32 +0000436 spin_unlock(&vcpu->arch.vpa_update_lock);
Paul Mackerrasa8606e22011-06-29 00:22:05 +0000437}
438
Paul Mackerrasc7b67672012-10-15 01:18:07 +0000439/*
440 * Return the accumulated stolen time for the vcore up until `now'.
441 * The caller should hold the vcore lock.
442 */
443static u64 vcore_stolen_time(struct kvmppc_vcore *vc, u64 now)
444{
445 u64 p;
446
447 /*
448 * If we are the task running the vcore, then since we hold
449 * the vcore lock, we can't be preempted, so stolen_tb/preempt_tb
450 * can't be updated, so we don't need the tbacct_lock.
451 * If the vcore is inactive, it can't become active (since we
452 * hold the vcore lock), so the vcpu load/put functions won't
453 * update stolen_tb/preempt_tb, and we don't need tbacct_lock.
454 */
455 if (vc->vcore_state != VCORE_INACTIVE &&
456 vc->runner->arch.run_task != current) {
457 spin_lock(&vc->runner->arch.tbacct_lock);
458 p = vc->stolen_tb;
459 if (vc->preempt_tb != TB_NIL)
460 p += now - vc->preempt_tb;
461 spin_unlock(&vc->runner->arch.tbacct_lock);
462 } else {
463 p = vc->stolen_tb;
464 }
465 return p;
466}
467
Paul Mackerras0456ec42012-02-03 00:56:21 +0000468static void kvmppc_create_dtl_entry(struct kvm_vcpu *vcpu,
469 struct kvmppc_vcore *vc)
470{
471 struct dtl_entry *dt;
472 struct lppaca *vpa;
Paul Mackerrasc7b67672012-10-15 01:18:07 +0000473 unsigned long stolen;
474 unsigned long core_stolen;
475 u64 now;
Paul Mackerras0456ec42012-02-03 00:56:21 +0000476
477 dt = vcpu->arch.dtl_ptr;
478 vpa = vcpu->arch.vpa.pinned_addr;
Paul Mackerrasc7b67672012-10-15 01:18:07 +0000479 now = mftb();
480 core_stolen = vcore_stolen_time(vc, now);
481 stolen = core_stolen - vcpu->arch.stolen_logged;
482 vcpu->arch.stolen_logged = core_stolen;
483 spin_lock(&vcpu->arch.tbacct_lock);
484 stolen += vcpu->arch.busy_stolen;
485 vcpu->arch.busy_stolen = 0;
486 spin_unlock(&vcpu->arch.tbacct_lock);
Paul Mackerras0456ec42012-02-03 00:56:21 +0000487 if (!dt || !vpa)
488 return;
489 memset(dt, 0, sizeof(struct dtl_entry));
490 dt->dispatch_reason = 7;
491 dt->processor_id = vc->pcpu + vcpu->arch.ptid;
Paul Mackerras93b0f4d2013-09-06 13:17:46 +1000492 dt->timebase = now + vc->tb_offset;
Paul Mackerrasc7b67672012-10-15 01:18:07 +0000493 dt->enqueue_to_dispatch_time = stolen;
Paul Mackerras0456ec42012-02-03 00:56:21 +0000494 dt->srr0 = kvmppc_get_pc(vcpu);
495 dt->srr1 = vcpu->arch.shregs.msr;
496 ++dt;
497 if (dt == vcpu->arch.dtl.pinned_end)
498 dt = vcpu->arch.dtl.pinned_addr;
499 vcpu->arch.dtl_ptr = dt;
500 /* order writing *dt vs. writing vpa->dtl_idx */
501 smp_wmb();
502 vpa->dtl_idx = ++vcpu->arch.dtl_index;
Paul Mackerrasc35635e2013-04-18 19:51:04 +0000503 vcpu->arch.dtl.dirty = true;
Paul Mackerrasa8606e22011-06-29 00:22:05 +0000504}
505
506int kvmppc_pseries_do_hcall(struct kvm_vcpu *vcpu)
507{
508 unsigned long req = kvmppc_get_gpr(vcpu, 3);
509 unsigned long target, ret = H_SUCCESS;
510 struct kvm_vcpu *tvcpu;
Michael Ellerman8e591cb2013-04-17 20:30:00 +0000511 int idx, rc;
Paul Mackerrasa8606e22011-06-29 00:22:05 +0000512
513 switch (req) {
Paul Mackerrasc77162d2011-12-12 12:31:00 +0000514 case H_ENTER:
Paul Mackerras2c9097e2012-09-11 13:27:01 +0000515 idx = srcu_read_lock(&vcpu->kvm->srcu);
Paul Mackerrasc77162d2011-12-12 12:31:00 +0000516 ret = kvmppc_virtmode_h_enter(vcpu, kvmppc_get_gpr(vcpu, 4),
517 kvmppc_get_gpr(vcpu, 5),
518 kvmppc_get_gpr(vcpu, 6),
519 kvmppc_get_gpr(vcpu, 7));
Paul Mackerras2c9097e2012-09-11 13:27:01 +0000520 srcu_read_unlock(&vcpu->kvm->srcu, idx);
Paul Mackerrasc77162d2011-12-12 12:31:00 +0000521 break;
Paul Mackerrasa8606e22011-06-29 00:22:05 +0000522 case H_CEDE:
Paul Mackerrasa8606e22011-06-29 00:22:05 +0000523 break;
524 case H_PROD:
525 target = kvmppc_get_gpr(vcpu, 4);
526 tvcpu = kvmppc_find_vcpu(vcpu->kvm, target);
527 if (!tvcpu) {
528 ret = H_PARAMETER;
529 break;
530 }
531 tvcpu->arch.prodded = 1;
532 smp_mb();
533 if (vcpu->arch.ceded) {
534 if (waitqueue_active(&vcpu->wq)) {
535 wake_up_interruptible(&vcpu->wq);
536 vcpu->stat.halt_wakeup++;
537 }
538 }
539 break;
540 case H_CONFER:
Paul Mackerras42d76042013-09-06 13:23:21 +1000541 target = kvmppc_get_gpr(vcpu, 4);
542 if (target == -1)
543 break;
544 tvcpu = kvmppc_find_vcpu(vcpu->kvm, target);
545 if (!tvcpu) {
546 ret = H_PARAMETER;
547 break;
548 }
549 kvm_vcpu_yield_to(tvcpu);
Paul Mackerrasa8606e22011-06-29 00:22:05 +0000550 break;
551 case H_REGISTER_VPA:
552 ret = do_h_register_vpa(vcpu, kvmppc_get_gpr(vcpu, 4),
553 kvmppc_get_gpr(vcpu, 5),
554 kvmppc_get_gpr(vcpu, 6));
555 break;
Michael Ellerman8e591cb2013-04-17 20:30:00 +0000556 case H_RTAS:
557 if (list_empty(&vcpu->kvm->arch.rtas_tokens))
558 return RESUME_HOST;
559
560 rc = kvmppc_rtas_hcall(vcpu);
561
562 if (rc == -ENOENT)
563 return RESUME_HOST;
564 else if (rc == 0)
565 break;
566
567 /* Send the error out to userspace via KVM_RUN */
568 return rc;
Benjamin Herrenschmidtbc5ad3f2013-04-17 20:30:26 +0000569
570 case H_XIRR:
571 case H_CPPR:
572 case H_EOI:
573 case H_IPI:
Paul Mackerras8e44ddc2013-05-23 15:42:21 +0000574 case H_IPOLL:
575 case H_XIRR_X:
Benjamin Herrenschmidtbc5ad3f2013-04-17 20:30:26 +0000576 if (kvmppc_xics_enabled(vcpu)) {
577 ret = kvmppc_xics_hcall(vcpu, req);
578 break;
579 } /* fallthrough */
Paul Mackerrasa8606e22011-06-29 00:22:05 +0000580 default:
581 return RESUME_HOST;
582 }
583 kvmppc_set_gpr(vcpu, 3, ret);
584 vcpu->arch.hcall_needed = 0;
585 return RESUME_GUEST;
586}
587
Paul Mackerrasde56a942011-06-29 00:21:34 +0000588static int kvmppc_handle_exit(struct kvm_run *run, struct kvm_vcpu *vcpu,
589 struct task_struct *tsk)
590{
591 int r = RESUME_HOST;
592
593 vcpu->stat.sum_exits++;
594
595 run->exit_reason = KVM_EXIT_UNKNOWN;
596 run->ready_for_interrupt_injection = 1;
597 switch (vcpu->arch.trap) {
598 /* We're good on these - the host merely wanted to get our attention */
599 case BOOK3S_INTERRUPT_HV_DECREMENTER:
600 vcpu->stat.dec_exits++;
601 r = RESUME_GUEST;
602 break;
603 case BOOK3S_INTERRUPT_EXTERNAL:
604 vcpu->stat.ext_intr_exits++;
605 r = RESUME_GUEST;
606 break;
607 case BOOK3S_INTERRUPT_PERFMON:
608 r = RESUME_GUEST;
609 break;
Paul Mackerrasb4072df2012-11-23 22:37:50 +0000610 case BOOK3S_INTERRUPT_MACHINE_CHECK:
611 /*
612 * Deliver a machine check interrupt to the guest.
613 * We have to do this, even if the host has handled the
614 * machine check, because machine checks use SRR0/1 and
615 * the interrupt might have trashed guest state in them.
616 */
617 kvmppc_book3s_queue_irqprio(vcpu,
618 BOOK3S_INTERRUPT_MACHINE_CHECK);
619 r = RESUME_GUEST;
620 break;
Paul Mackerrasde56a942011-06-29 00:21:34 +0000621 case BOOK3S_INTERRUPT_PROGRAM:
622 {
623 ulong flags;
624 /*
625 * Normally program interrupts are delivered directly
626 * to the guest by the hardware, but we can get here
627 * as a result of a hypervisor emulation interrupt
628 * (e40) getting turned into a 700 by BML RTAS.
629 */
630 flags = vcpu->arch.shregs.msr & 0x1f0000ull;
631 kvmppc_core_queue_program(vcpu, flags);
632 r = RESUME_GUEST;
633 break;
634 }
635 case BOOK3S_INTERRUPT_SYSCALL:
636 {
637 /* hcall - punt to userspace */
638 int i;
639
640 if (vcpu->arch.shregs.msr & MSR_PR) {
641 /* sc 1 from userspace - reflect to guest syscall */
642 kvmppc_book3s_queue_irqprio(vcpu, BOOK3S_INTERRUPT_SYSCALL);
643 r = RESUME_GUEST;
644 break;
645 }
646 run->papr_hcall.nr = kvmppc_get_gpr(vcpu, 3);
647 for (i = 0; i < 9; ++i)
648 run->papr_hcall.args[i] = kvmppc_get_gpr(vcpu, 4 + i);
649 run->exit_reason = KVM_EXIT_PAPR_HCALL;
650 vcpu->arch.hcall_needed = 1;
651 r = RESUME_HOST;
652 break;
653 }
654 /*
Paul Mackerras342d3db2011-12-12 12:38:05 +0000655 * We get these next two if the guest accesses a page which it thinks
656 * it has mapped but which is not actually present, either because
657 * it is for an emulated I/O device or because the corresonding
658 * host page has been paged out. Any other HDSI/HISI interrupts
659 * have been handled already.
Paul Mackerrasde56a942011-06-29 00:21:34 +0000660 */
661 case BOOK3S_INTERRUPT_H_DATA_STORAGE:
Paul Mackerras913d3ff9a2012-10-15 01:16:48 +0000662 r = RESUME_PAGE_FAULT;
Paul Mackerrasde56a942011-06-29 00:21:34 +0000663 break;
664 case BOOK3S_INTERRUPT_H_INST_STORAGE:
Paul Mackerras913d3ff9a2012-10-15 01:16:48 +0000665 vcpu->arch.fault_dar = kvmppc_get_pc(vcpu);
666 vcpu->arch.fault_dsisr = 0;
667 r = RESUME_PAGE_FAULT;
Paul Mackerrasde56a942011-06-29 00:21:34 +0000668 break;
669 /*
670 * This occurs if the guest executes an illegal instruction.
671 * We just generate a program interrupt to the guest, since
672 * we don't emulate any guest instructions at this stage.
673 */
674 case BOOK3S_INTERRUPT_H_EMUL_ASSIST:
675 kvmppc_core_queue_program(vcpu, 0x80000);
676 r = RESUME_GUEST;
677 break;
678 default:
679 kvmppc_dump_regs(vcpu);
680 printk(KERN_EMERG "trap=0x%x | pc=0x%lx | msr=0x%llx\n",
681 vcpu->arch.trap, kvmppc_get_pc(vcpu),
682 vcpu->arch.shregs.msr);
683 r = RESUME_HOST;
684 BUG();
685 break;
686 }
687
Paul Mackerrasde56a942011-06-29 00:21:34 +0000688 return r;
689}
690
691int kvm_arch_vcpu_ioctl_get_sregs(struct kvm_vcpu *vcpu,
Aneesh Kumar K.V87916442013-08-22 17:08:39 +0530692 struct kvm_sregs *sregs)
Paul Mackerrasde56a942011-06-29 00:21:34 +0000693{
694 int i;
695
Paul Mackerrasde56a942011-06-29 00:21:34 +0000696 memset(sregs, 0, sizeof(struct kvm_sregs));
Aneesh Kumar K.V87916442013-08-22 17:08:39 +0530697 sregs->pvr = vcpu->arch.pvr;
Paul Mackerrasde56a942011-06-29 00:21:34 +0000698 for (i = 0; i < vcpu->arch.slb_max; i++) {
699 sregs->u.s.ppc64.slb[i].slbe = vcpu->arch.slb[i].orige;
700 sregs->u.s.ppc64.slb[i].slbv = vcpu->arch.slb[i].origv;
701 }
702
703 return 0;
704}
705
706int kvm_arch_vcpu_ioctl_set_sregs(struct kvm_vcpu *vcpu,
Aneesh Kumar K.V87916442013-08-22 17:08:39 +0530707 struct kvm_sregs *sregs)
Paul Mackerrasde56a942011-06-29 00:21:34 +0000708{
709 int i, j;
710
711 kvmppc_set_pvr(vcpu, sregs->pvr);
712
713 j = 0;
714 for (i = 0; i < vcpu->arch.slb_nr; i++) {
715 if (sregs->u.s.ppc64.slb[i].slbe & SLB_ESID_V) {
716 vcpu->arch.slb[j].orige = sregs->u.s.ppc64.slb[i].slbe;
717 vcpu->arch.slb[j].origv = sregs->u.s.ppc64.slb[i].slbv;
718 ++j;
719 }
720 }
721 vcpu->arch.slb_max = j;
722
723 return 0;
724}
725
Paul Mackerrasa136a8b2012-09-25 20:31:56 +0000726int kvmppc_get_one_reg(struct kvm_vcpu *vcpu, u64 id, union kvmppc_one_reg *val)
Paul Mackerras31f34382011-12-12 12:26:50 +0000727{
Paul Mackerrasa136a8b2012-09-25 20:31:56 +0000728 int r = 0;
729 long int i;
Paul Mackerras31f34382011-12-12 12:26:50 +0000730
Paul Mackerrasa136a8b2012-09-25 20:31:56 +0000731 switch (id) {
Paul Mackerras31f34382011-12-12 12:26:50 +0000732 case KVM_REG_PPC_HIOR:
Paul Mackerrasa136a8b2012-09-25 20:31:56 +0000733 *val = get_reg_val(id, 0);
734 break;
735 case KVM_REG_PPC_DABR:
736 *val = get_reg_val(id, vcpu->arch.dabr);
737 break;
738 case KVM_REG_PPC_DSCR:
739 *val = get_reg_val(id, vcpu->arch.dscr);
740 break;
741 case KVM_REG_PPC_PURR:
742 *val = get_reg_val(id, vcpu->arch.purr);
743 break;
744 case KVM_REG_PPC_SPURR:
745 *val = get_reg_val(id, vcpu->arch.spurr);
746 break;
747 case KVM_REG_PPC_AMR:
748 *val = get_reg_val(id, vcpu->arch.amr);
749 break;
750 case KVM_REG_PPC_UAMOR:
751 *val = get_reg_val(id, vcpu->arch.uamor);
752 break;
753 case KVM_REG_PPC_MMCR0 ... KVM_REG_PPC_MMCRA:
754 i = id - KVM_REG_PPC_MMCR0;
755 *val = get_reg_val(id, vcpu->arch.mmcr[i]);
756 break;
757 case KVM_REG_PPC_PMC1 ... KVM_REG_PPC_PMC8:
758 i = id - KVM_REG_PPC_PMC1;
759 *val = get_reg_val(id, vcpu->arch.pmc[i]);
Paul Mackerras31f34382011-12-12 12:26:50 +0000760 break;
Paul Mackerras14941782013-09-06 13:11:18 +1000761 case KVM_REG_PPC_SIAR:
762 *val = get_reg_val(id, vcpu->arch.siar);
763 break;
764 case KVM_REG_PPC_SDAR:
765 *val = get_reg_val(id, vcpu->arch.sdar);
766 break;
Paul Mackerrasa8bd19e2012-09-25 20:32:30 +0000767#ifdef CONFIG_VSX
768 case KVM_REG_PPC_FPR0 ... KVM_REG_PPC_FPR31:
769 if (cpu_has_feature(CPU_FTR_VSX)) {
770 /* VSX => FP reg i is stored in arch.vsr[2*i] */
771 long int i = id - KVM_REG_PPC_FPR0;
772 *val = get_reg_val(id, vcpu->arch.vsr[2 * i]);
773 } else {
774 /* let generic code handle it */
775 r = -EINVAL;
776 }
777 break;
778 case KVM_REG_PPC_VSR0 ... KVM_REG_PPC_VSR31:
779 if (cpu_has_feature(CPU_FTR_VSX)) {
780 long int i = id - KVM_REG_PPC_VSR0;
781 val->vsxval[0] = vcpu->arch.vsr[2 * i];
782 val->vsxval[1] = vcpu->arch.vsr[2 * i + 1];
783 } else {
784 r = -ENXIO;
785 }
786 break;
787#endif /* CONFIG_VSX */
Paul Mackerras55b665b2012-09-25 20:33:06 +0000788 case KVM_REG_PPC_VPA_ADDR:
789 spin_lock(&vcpu->arch.vpa_update_lock);
790 *val = get_reg_val(id, vcpu->arch.vpa.next_gpa);
791 spin_unlock(&vcpu->arch.vpa_update_lock);
792 break;
793 case KVM_REG_PPC_VPA_SLB:
794 spin_lock(&vcpu->arch.vpa_update_lock);
795 val->vpaval.addr = vcpu->arch.slb_shadow.next_gpa;
796 val->vpaval.length = vcpu->arch.slb_shadow.len;
797 spin_unlock(&vcpu->arch.vpa_update_lock);
798 break;
799 case KVM_REG_PPC_VPA_DTL:
800 spin_lock(&vcpu->arch.vpa_update_lock);
801 val->vpaval.addr = vcpu->arch.dtl.next_gpa;
802 val->vpaval.length = vcpu->arch.dtl.len;
803 spin_unlock(&vcpu->arch.vpa_update_lock);
804 break;
Paul Mackerras93b0f4d2013-09-06 13:17:46 +1000805 case KVM_REG_PPC_TB_OFFSET:
806 *val = get_reg_val(id, vcpu->arch.vcore->tb_offset);
807 break;
Paul Mackerras31f34382011-12-12 12:26:50 +0000808 default:
Paul Mackerrasa136a8b2012-09-25 20:31:56 +0000809 r = -EINVAL;
Paul Mackerras31f34382011-12-12 12:26:50 +0000810 break;
811 }
812
813 return r;
814}
815
Paul Mackerrasa136a8b2012-09-25 20:31:56 +0000816int kvmppc_set_one_reg(struct kvm_vcpu *vcpu, u64 id, union kvmppc_one_reg *val)
Paul Mackerras31f34382011-12-12 12:26:50 +0000817{
Paul Mackerrasa136a8b2012-09-25 20:31:56 +0000818 int r = 0;
819 long int i;
Paul Mackerras55b665b2012-09-25 20:33:06 +0000820 unsigned long addr, len;
Paul Mackerras31f34382011-12-12 12:26:50 +0000821
Paul Mackerrasa136a8b2012-09-25 20:31:56 +0000822 switch (id) {
Paul Mackerras31f34382011-12-12 12:26:50 +0000823 case KVM_REG_PPC_HIOR:
Paul Mackerras31f34382011-12-12 12:26:50 +0000824 /* Only allow this to be set to zero */
Paul Mackerrasa136a8b2012-09-25 20:31:56 +0000825 if (set_reg_val(id, *val))
Paul Mackerras31f34382011-12-12 12:26:50 +0000826 r = -EINVAL;
827 break;
Paul Mackerrasa136a8b2012-09-25 20:31:56 +0000828 case KVM_REG_PPC_DABR:
829 vcpu->arch.dabr = set_reg_val(id, *val);
830 break;
831 case KVM_REG_PPC_DSCR:
832 vcpu->arch.dscr = set_reg_val(id, *val);
833 break;
834 case KVM_REG_PPC_PURR:
835 vcpu->arch.purr = set_reg_val(id, *val);
836 break;
837 case KVM_REG_PPC_SPURR:
838 vcpu->arch.spurr = set_reg_val(id, *val);
839 break;
840 case KVM_REG_PPC_AMR:
841 vcpu->arch.amr = set_reg_val(id, *val);
842 break;
843 case KVM_REG_PPC_UAMOR:
844 vcpu->arch.uamor = set_reg_val(id, *val);
845 break;
846 case KVM_REG_PPC_MMCR0 ... KVM_REG_PPC_MMCRA:
847 i = id - KVM_REG_PPC_MMCR0;
848 vcpu->arch.mmcr[i] = set_reg_val(id, *val);
849 break;
850 case KVM_REG_PPC_PMC1 ... KVM_REG_PPC_PMC8:
851 i = id - KVM_REG_PPC_PMC1;
852 vcpu->arch.pmc[i] = set_reg_val(id, *val);
853 break;
Paul Mackerras14941782013-09-06 13:11:18 +1000854 case KVM_REG_PPC_SIAR:
855 vcpu->arch.siar = set_reg_val(id, *val);
856 break;
857 case KVM_REG_PPC_SDAR:
858 vcpu->arch.sdar = set_reg_val(id, *val);
859 break;
Paul Mackerrasa8bd19e2012-09-25 20:32:30 +0000860#ifdef CONFIG_VSX
861 case KVM_REG_PPC_FPR0 ... KVM_REG_PPC_FPR31:
862 if (cpu_has_feature(CPU_FTR_VSX)) {
863 /* VSX => FP reg i is stored in arch.vsr[2*i] */
864 long int i = id - KVM_REG_PPC_FPR0;
865 vcpu->arch.vsr[2 * i] = set_reg_val(id, *val);
866 } else {
867 /* let generic code handle it */
868 r = -EINVAL;
869 }
870 break;
871 case KVM_REG_PPC_VSR0 ... KVM_REG_PPC_VSR31:
872 if (cpu_has_feature(CPU_FTR_VSX)) {
873 long int i = id - KVM_REG_PPC_VSR0;
874 vcpu->arch.vsr[2 * i] = val->vsxval[0];
875 vcpu->arch.vsr[2 * i + 1] = val->vsxval[1];
876 } else {
877 r = -ENXIO;
878 }
879 break;
880#endif /* CONFIG_VSX */
Paul Mackerras55b665b2012-09-25 20:33:06 +0000881 case KVM_REG_PPC_VPA_ADDR:
882 addr = set_reg_val(id, *val);
883 r = -EINVAL;
884 if (!addr && (vcpu->arch.slb_shadow.next_gpa ||
885 vcpu->arch.dtl.next_gpa))
886 break;
887 r = set_vpa(vcpu, &vcpu->arch.vpa, addr, sizeof(struct lppaca));
888 break;
889 case KVM_REG_PPC_VPA_SLB:
890 addr = val->vpaval.addr;
891 len = val->vpaval.length;
892 r = -EINVAL;
893 if (addr && !vcpu->arch.vpa.next_gpa)
894 break;
895 r = set_vpa(vcpu, &vcpu->arch.slb_shadow, addr, len);
896 break;
897 case KVM_REG_PPC_VPA_DTL:
898 addr = val->vpaval.addr;
899 len = val->vpaval.length;
900 r = -EINVAL;
Paul Mackerras9f8c8c72012-10-15 01:18:37 +0000901 if (addr && (len < sizeof(struct dtl_entry) ||
902 !vcpu->arch.vpa.next_gpa))
Paul Mackerras55b665b2012-09-25 20:33:06 +0000903 break;
904 len -= len % sizeof(struct dtl_entry);
905 r = set_vpa(vcpu, &vcpu->arch.dtl, addr, len);
906 break;
Paul Mackerras93b0f4d2013-09-06 13:17:46 +1000907 case KVM_REG_PPC_TB_OFFSET:
908 /* round up to multiple of 2^24 */
909 vcpu->arch.vcore->tb_offset =
910 ALIGN(set_reg_val(id, *val), 1UL << 24);
911 break;
Paul Mackerras31f34382011-12-12 12:26:50 +0000912 default:
Paul Mackerrasa136a8b2012-09-25 20:31:56 +0000913 r = -EINVAL;
Paul Mackerras31f34382011-12-12 12:26:50 +0000914 break;
915 }
916
917 return r;
918}
919
Paul Mackerrasde56a942011-06-29 00:21:34 +0000920int kvmppc_core_check_processor_compat(void)
921{
Paul Mackerras9e368f22011-06-29 00:40:08 +0000922 if (cpu_has_feature(CPU_FTR_HVMODE))
Paul Mackerrasde56a942011-06-29 00:21:34 +0000923 return 0;
924 return -EIO;
925}
926
927struct kvm_vcpu *kvmppc_core_vcpu_create(struct kvm *kvm, unsigned int id)
928{
929 struct kvm_vcpu *vcpu;
Paul Mackerras371fefd2011-06-29 00:23:08 +0000930 int err = -EINVAL;
931 int core;
932 struct kvmppc_vcore *vcore;
Paul Mackerrasde56a942011-06-29 00:21:34 +0000933
Paul Mackerras371fefd2011-06-29 00:23:08 +0000934 core = id / threads_per_core;
935 if (core >= KVM_MAX_VCORES)
936 goto out;
937
938 err = -ENOMEM;
Sasha Levin6b75e6b2011-12-07 10:24:56 +0200939 vcpu = kmem_cache_zalloc(kvm_vcpu_cache, GFP_KERNEL);
Paul Mackerrasde56a942011-06-29 00:21:34 +0000940 if (!vcpu)
941 goto out;
942
943 err = kvm_vcpu_init(vcpu, kvm, id);
944 if (err)
945 goto free_vcpu;
946
947 vcpu->arch.shared = &vcpu->arch.shregs;
Paul Mackerrasde56a942011-06-29 00:21:34 +0000948 vcpu->arch.mmcr[0] = MMCR0_FC;
949 vcpu->arch.ctrl = CTRL_RUNLATCH;
950 /* default to host PVR, since we can't spoof it */
951 vcpu->arch.pvr = mfspr(SPRN_PVR);
952 kvmppc_set_pvr(vcpu, vcpu->arch.pvr);
Paul Mackerras2e25aa52012-02-19 17:46:32 +0000953 spin_lock_init(&vcpu->arch.vpa_update_lock);
Paul Mackerrasc7b67672012-10-15 01:18:07 +0000954 spin_lock_init(&vcpu->arch.tbacct_lock);
955 vcpu->arch.busy_preempt = TB_NIL;
Paul Mackerrasde56a942011-06-29 00:21:34 +0000956
Paul Mackerrasde56a942011-06-29 00:21:34 +0000957 kvmppc_mmu_book3s_hv_init(vcpu);
958
Paul Mackerras8455d792012-10-15 01:17:42 +0000959 vcpu->arch.state = KVMPPC_VCPU_NOTREADY;
Paul Mackerras371fefd2011-06-29 00:23:08 +0000960
961 init_waitqueue_head(&vcpu->arch.cpu_run);
962
963 mutex_lock(&kvm->lock);
964 vcore = kvm->arch.vcores[core];
965 if (!vcore) {
966 vcore = kzalloc(sizeof(struct kvmppc_vcore), GFP_KERNEL);
967 if (vcore) {
968 INIT_LIST_HEAD(&vcore->runnable_threads);
969 spin_lock_init(&vcore->lock);
Paul Mackerras19ccb762011-07-23 17:42:46 +1000970 init_waitqueue_head(&vcore->wq);
Paul Mackerrasc7b67672012-10-15 01:18:07 +0000971 vcore->preempt_tb = TB_NIL;
Paul Mackerras371fefd2011-06-29 00:23:08 +0000972 }
973 kvm->arch.vcores[core] = vcore;
Paul Mackerras1b400ba2012-11-21 23:28:08 +0000974 kvm->arch.online_vcores++;
Paul Mackerras371fefd2011-06-29 00:23:08 +0000975 }
976 mutex_unlock(&kvm->lock);
977
978 if (!vcore)
979 goto free_vcpu;
980
981 spin_lock(&vcore->lock);
982 ++vcore->num_threads;
Paul Mackerras371fefd2011-06-29 00:23:08 +0000983 spin_unlock(&vcore->lock);
984 vcpu->arch.vcore = vcore;
985
Alexander Grafaf8f38b2011-08-10 13:57:08 +0200986 vcpu->arch.cpu_type = KVM_CPU_3S_64;
987 kvmppc_sanity_check(vcpu);
988
Paul Mackerrasde56a942011-06-29 00:21:34 +0000989 return vcpu;
990
991free_vcpu:
Sasha Levin6b75e6b2011-12-07 10:24:56 +0200992 kmem_cache_free(kvm_vcpu_cache, vcpu);
Paul Mackerrasde56a942011-06-29 00:21:34 +0000993out:
994 return ERR_PTR(err);
995}
996
Paul Mackerrasc35635e2013-04-18 19:51:04 +0000997static void unpin_vpa(struct kvm *kvm, struct kvmppc_vpa *vpa)
998{
999 if (vpa->pinned_addr)
1000 kvmppc_unpin_guest_page(kvm, vpa->pinned_addr, vpa->gpa,
1001 vpa->dirty);
1002}
1003
Paul Mackerrasde56a942011-06-29 00:21:34 +00001004void kvmppc_core_vcpu_free(struct kvm_vcpu *vcpu)
1005{
Paul Mackerras2e25aa52012-02-19 17:46:32 +00001006 spin_lock(&vcpu->arch.vpa_update_lock);
Paul Mackerrasc35635e2013-04-18 19:51:04 +00001007 unpin_vpa(vcpu->kvm, &vcpu->arch.dtl);
1008 unpin_vpa(vcpu->kvm, &vcpu->arch.slb_shadow);
1009 unpin_vpa(vcpu->kvm, &vcpu->arch.vpa);
Paul Mackerras2e25aa52012-02-19 17:46:32 +00001010 spin_unlock(&vcpu->arch.vpa_update_lock);
Paul Mackerrasde56a942011-06-29 00:21:34 +00001011 kvm_vcpu_uninit(vcpu);
Sasha Levin6b75e6b2011-12-07 10:24:56 +02001012 kmem_cache_free(kvm_vcpu_cache, vcpu);
Paul Mackerrasde56a942011-06-29 00:21:34 +00001013}
1014
Paul Mackerras19ccb762011-07-23 17:42:46 +10001015static void kvmppc_set_timer(struct kvm_vcpu *vcpu)
Paul Mackerrasde56a942011-06-29 00:21:34 +00001016{
Paul Mackerras19ccb762011-07-23 17:42:46 +10001017 unsigned long dec_nsec, now;
Paul Mackerras371fefd2011-06-29 00:23:08 +00001018
Paul Mackerras19ccb762011-07-23 17:42:46 +10001019 now = get_tb();
1020 if (now > vcpu->arch.dec_expires) {
1021 /* decrementer has already gone negative */
1022 kvmppc_core_queue_dec(vcpu);
Scott Wood7e28e60e2011-11-08 18:23:20 -06001023 kvmppc_core_prepare_to_enter(vcpu);
Paul Mackerras19ccb762011-07-23 17:42:46 +10001024 return;
Paul Mackerras371fefd2011-06-29 00:23:08 +00001025 }
Paul Mackerras19ccb762011-07-23 17:42:46 +10001026 dec_nsec = (vcpu->arch.dec_expires - now) * NSEC_PER_SEC
1027 / tb_ticks_per_sec;
1028 hrtimer_start(&vcpu->arch.dec_timer, ktime_set(0, dec_nsec),
1029 HRTIMER_MODE_REL);
1030 vcpu->arch.timer_running = 1;
Paul Mackerras371fefd2011-06-29 00:23:08 +00001031}
1032
Paul Mackerras19ccb762011-07-23 17:42:46 +10001033static void kvmppc_end_cede(struct kvm_vcpu *vcpu)
Paul Mackerras371fefd2011-06-29 00:23:08 +00001034{
Paul Mackerras19ccb762011-07-23 17:42:46 +10001035 vcpu->arch.ceded = 0;
1036 if (vcpu->arch.timer_running) {
1037 hrtimer_try_to_cancel(&vcpu->arch.dec_timer);
1038 vcpu->arch.timer_running = 0;
1039 }
Paul Mackerras371fefd2011-06-29 00:23:08 +00001040}
1041
1042extern int __kvmppc_vcore_entry(struct kvm_run *kvm_run, struct kvm_vcpu *vcpu);
Paul Mackerras371fefd2011-06-29 00:23:08 +00001043
1044static void kvmppc_remove_runnable(struct kvmppc_vcore *vc,
1045 struct kvm_vcpu *vcpu)
1046{
Paul Mackerrasc7b67672012-10-15 01:18:07 +00001047 u64 now;
1048
Paul Mackerras371fefd2011-06-29 00:23:08 +00001049 if (vcpu->arch.state != KVMPPC_VCPU_RUNNABLE)
1050 return;
Paul Mackerrasc7b67672012-10-15 01:18:07 +00001051 spin_lock(&vcpu->arch.tbacct_lock);
1052 now = mftb();
1053 vcpu->arch.busy_stolen += vcore_stolen_time(vc, now) -
1054 vcpu->arch.stolen_logged;
1055 vcpu->arch.busy_preempt = now;
1056 vcpu->arch.state = KVMPPC_VCPU_BUSY_IN_HOST;
1057 spin_unlock(&vcpu->arch.tbacct_lock);
Paul Mackerras371fefd2011-06-29 00:23:08 +00001058 --vc->n_runnable;
Paul Mackerras371fefd2011-06-29 00:23:08 +00001059 list_del(&vcpu->arch.run_list);
1060}
1061
Paul Mackerrasf0888f72012-02-03 00:54:17 +00001062static int kvmppc_grab_hwthread(int cpu)
1063{
1064 struct paca_struct *tpaca;
1065 long timeout = 1000;
1066
1067 tpaca = &paca[cpu];
1068
1069 /* Ensure the thread won't go into the kernel if it wakes */
1070 tpaca->kvm_hstate.hwthread_req = 1;
Paul Mackerras7b444c62012-10-15 01:16:14 +00001071 tpaca->kvm_hstate.kvm_vcpu = NULL;
Paul Mackerrasf0888f72012-02-03 00:54:17 +00001072
1073 /*
1074 * If the thread is already executing in the kernel (e.g. handling
1075 * a stray interrupt), wait for it to get back to nap mode.
1076 * The smp_mb() is to ensure that our setting of hwthread_req
1077 * is visible before we look at hwthread_state, so if this
1078 * races with the code at system_reset_pSeries and the thread
1079 * misses our setting of hwthread_req, we are sure to see its
1080 * setting of hwthread_state, and vice versa.
1081 */
1082 smp_mb();
1083 while (tpaca->kvm_hstate.hwthread_state == KVM_HWTHREAD_IN_KERNEL) {
1084 if (--timeout <= 0) {
1085 pr_err("KVM: couldn't grab cpu %d\n", cpu);
1086 return -EBUSY;
1087 }
1088 udelay(1);
1089 }
1090 return 0;
1091}
1092
1093static void kvmppc_release_hwthread(int cpu)
1094{
1095 struct paca_struct *tpaca;
1096
1097 tpaca = &paca[cpu];
1098 tpaca->kvm_hstate.hwthread_req = 0;
1099 tpaca->kvm_hstate.kvm_vcpu = NULL;
1100}
1101
Paul Mackerras371fefd2011-06-29 00:23:08 +00001102static void kvmppc_start_thread(struct kvm_vcpu *vcpu)
1103{
1104 int cpu;
1105 struct paca_struct *tpaca;
1106 struct kvmppc_vcore *vc = vcpu->arch.vcore;
1107
Paul Mackerras19ccb762011-07-23 17:42:46 +10001108 if (vcpu->arch.timer_running) {
1109 hrtimer_try_to_cancel(&vcpu->arch.dec_timer);
1110 vcpu->arch.timer_running = 0;
1111 }
Paul Mackerras371fefd2011-06-29 00:23:08 +00001112 cpu = vc->pcpu + vcpu->arch.ptid;
1113 tpaca = &paca[cpu];
1114 tpaca->kvm_hstate.kvm_vcpu = vcpu;
1115 tpaca->kvm_hstate.kvm_vcore = vc;
Paul Mackerras19ccb762011-07-23 17:42:46 +10001116 tpaca->kvm_hstate.napping = 0;
1117 vcpu->cpu = vc->pcpu;
Paul Mackerras371fefd2011-06-29 00:23:08 +00001118 smp_wmb();
Michael Neuling251da032011-11-10 16:03:20 +00001119#if defined(CONFIG_PPC_ICP_NATIVE) && defined(CONFIG_SMP)
Paul Mackerras371fefd2011-06-29 00:23:08 +00001120 if (vcpu->arch.ptid) {
Paul Mackerras371fefd2011-06-29 00:23:08 +00001121 xics_wake_cpu(cpu);
1122 ++vc->n_woken;
1123 }
1124#endif
1125}
1126
1127static void kvmppc_wait_for_nap(struct kvmppc_vcore *vc)
1128{
1129 int i;
1130
1131 HMT_low();
1132 i = 0;
1133 while (vc->nap_count < vc->n_woken) {
1134 if (++i >= 1000000) {
1135 pr_err("kvmppc_wait_for_nap timeout %d %d\n",
1136 vc->nap_count, vc->n_woken);
1137 break;
1138 }
1139 cpu_relax();
1140 }
1141 HMT_medium();
1142}
1143
1144/*
1145 * Check that we are on thread 0 and that any other threads in
Paul Mackerras7b444c62012-10-15 01:16:14 +00001146 * this core are off-line. Then grab the threads so they can't
1147 * enter the kernel.
Paul Mackerras371fefd2011-06-29 00:23:08 +00001148 */
1149static int on_primary_thread(void)
1150{
1151 int cpu = smp_processor_id();
1152 int thr = cpu_thread_in_core(cpu);
1153
1154 if (thr)
1155 return 0;
1156 while (++thr < threads_per_core)
1157 if (cpu_online(cpu + thr))
1158 return 0;
Paul Mackerras7b444c62012-10-15 01:16:14 +00001159
1160 /* Grab all hw threads so they can't go into the kernel */
1161 for (thr = 1; thr < threads_per_core; ++thr) {
1162 if (kvmppc_grab_hwthread(cpu + thr)) {
1163 /* Couldn't grab one; let the others go */
1164 do {
1165 kvmppc_release_hwthread(cpu + thr);
1166 } while (--thr > 0);
1167 return 0;
1168 }
1169 }
Paul Mackerras371fefd2011-06-29 00:23:08 +00001170 return 1;
1171}
1172
1173/*
1174 * Run a set of guest threads on a physical core.
1175 * Called with vc->lock held.
1176 */
Paul Mackerras913d3ff9a2012-10-15 01:16:48 +00001177static void kvmppc_run_core(struct kvmppc_vcore *vc)
Paul Mackerras371fefd2011-06-29 00:23:08 +00001178{
Paul Mackerras19ccb762011-07-23 17:42:46 +10001179 struct kvm_vcpu *vcpu, *vcpu0, *vnext;
Paul Mackerras371fefd2011-06-29 00:23:08 +00001180 long ret;
Paul Mackerrasde56a942011-06-29 00:21:34 +00001181 u64 now;
Paul Mackerras081f3232012-06-01 20:20:24 +10001182 int ptid, i, need_vpa_update;
Paul Mackerras2c9097e2012-09-11 13:27:01 +00001183 int srcu_idx;
Paul Mackerras913d3ff9a2012-10-15 01:16:48 +00001184 struct kvm_vcpu *vcpus_to_update[threads_per_core];
Paul Mackerrasde56a942011-06-29 00:21:34 +00001185
Paul Mackerras371fefd2011-06-29 00:23:08 +00001186 /* don't start if any threads have a signal pending */
Paul Mackerras081f3232012-06-01 20:20:24 +10001187 need_vpa_update = 0;
1188 list_for_each_entry(vcpu, &vc->runnable_threads, arch.run_list) {
Paul Mackerras371fefd2011-06-29 00:23:08 +00001189 if (signal_pending(vcpu->arch.run_task))
Paul Mackerras913d3ff9a2012-10-15 01:16:48 +00001190 return;
1191 if (vcpu->arch.vpa.update_pending ||
1192 vcpu->arch.slb_shadow.update_pending ||
1193 vcpu->arch.dtl.update_pending)
1194 vcpus_to_update[need_vpa_update++] = vcpu;
Paul Mackerras081f3232012-06-01 20:20:24 +10001195 }
1196
1197 /*
1198 * Initialize *vc, in particular vc->vcore_state, so we can
1199 * drop the vcore lock if necessary.
1200 */
1201 vc->n_woken = 0;
1202 vc->nap_count = 0;
1203 vc->entry_exit_count = 0;
Paul Mackerras2f12f032012-10-15 01:17:17 +00001204 vc->vcore_state = VCORE_STARTING;
Paul Mackerras081f3232012-06-01 20:20:24 +10001205 vc->in_guest = 0;
1206 vc->napping_threads = 0;
1207
1208 /*
1209 * Updating any of the vpas requires calling kvmppc_pin_guest_page,
1210 * which can't be called with any spinlocks held.
1211 */
1212 if (need_vpa_update) {
1213 spin_unlock(&vc->lock);
Paul Mackerras913d3ff9a2012-10-15 01:16:48 +00001214 for (i = 0; i < need_vpa_update; ++i)
1215 kvmppc_update_vpas(vcpus_to_update[i]);
Paul Mackerras081f3232012-06-01 20:20:24 +10001216 spin_lock(&vc->lock);
1217 }
Paul Mackerrasde56a942011-06-29 00:21:34 +00001218
1219 /*
Paul Mackerras19ccb762011-07-23 17:42:46 +10001220 * Assign physical thread IDs, first to non-ceded vcpus
1221 * and then to ceded ones.
1222 */
1223 ptid = 0;
1224 vcpu0 = NULL;
1225 list_for_each_entry(vcpu, &vc->runnable_threads, arch.run_list) {
1226 if (!vcpu->arch.ceded) {
1227 if (!ptid)
1228 vcpu0 = vcpu;
1229 vcpu->arch.ptid = ptid++;
1230 }
1231 }
Paul Mackerrasc7b67672012-10-15 01:18:07 +00001232 if (!vcpu0)
1233 goto out; /* nothing to run; should never happen */
Paul Mackerras19ccb762011-07-23 17:42:46 +10001234 list_for_each_entry(vcpu, &vc->runnable_threads, arch.run_list)
1235 if (vcpu->arch.ceded)
1236 vcpu->arch.ptid = ptid++;
1237
Paul Mackerras7b444c62012-10-15 01:16:14 +00001238 /*
1239 * Make sure we are running on thread 0, and that
1240 * secondary threads are offline.
1241 */
1242 if (threads_per_core > 1 && !on_primary_thread()) {
1243 list_for_each_entry(vcpu, &vc->runnable_threads, arch.run_list)
1244 vcpu->arch.ret = -EBUSY;
1245 goto out;
1246 }
1247
Paul Mackerras371fefd2011-06-29 00:23:08 +00001248 vc->pcpu = smp_processor_id();
Paul Mackerras2e25aa52012-02-19 17:46:32 +00001249 list_for_each_entry(vcpu, &vc->runnable_threads, arch.run_list) {
Paul Mackerras371fefd2011-06-29 00:23:08 +00001250 kvmppc_start_thread(vcpu);
Paul Mackerras0456ec42012-02-03 00:56:21 +00001251 kvmppc_create_dtl_entry(vcpu, vc);
Paul Mackerras2e25aa52012-02-19 17:46:32 +00001252 }
Paul Mackerras371fefd2011-06-29 00:23:08 +00001253
Paul Mackerras2f12f032012-10-15 01:17:17 +00001254 vc->vcore_state = VCORE_RUNNING;
Paul Mackerras371fefd2011-06-29 00:23:08 +00001255 preempt_disable();
Paul Mackerras19ccb762011-07-23 17:42:46 +10001256 spin_unlock(&vc->lock);
Paul Mackerrasde56a942011-06-29 00:21:34 +00001257
Paul Mackerras19ccb762011-07-23 17:42:46 +10001258 kvm_guest_enter();
Paul Mackerras2c9097e2012-09-11 13:27:01 +00001259
1260 srcu_idx = srcu_read_lock(&vcpu0->kvm->srcu);
1261
Paul Mackerras19ccb762011-07-23 17:42:46 +10001262 __kvmppc_vcore_entry(NULL, vcpu0);
1263
Paul Mackerras371fefd2011-06-29 00:23:08 +00001264 spin_lock(&vc->lock);
Paul Mackerras19ccb762011-07-23 17:42:46 +10001265 /* disable sending of IPIs on virtual external irqs */
1266 list_for_each_entry(vcpu, &vc->runnable_threads, arch.run_list)
1267 vcpu->cpu = -1;
1268 /* wait for secondary threads to finish writing their state to memory */
Paul Mackerras371fefd2011-06-29 00:23:08 +00001269 if (vc->nap_count < vc->n_woken)
1270 kvmppc_wait_for_nap(vc);
Paul Mackerras2f12f032012-10-15 01:17:17 +00001271 for (i = 0; i < threads_per_core; ++i)
1272 kvmppc_release_hwthread(vc->pcpu + i);
Paul Mackerras371fefd2011-06-29 00:23:08 +00001273 /* prevent other vcpu threads from doing kvmppc_start_thread() now */
Paul Mackerras19ccb762011-07-23 17:42:46 +10001274 vc->vcore_state = VCORE_EXITING;
Paul Mackerras371fefd2011-06-29 00:23:08 +00001275 spin_unlock(&vc->lock);
1276
Paul Mackerras2c9097e2012-09-11 13:27:01 +00001277 srcu_read_unlock(&vcpu0->kvm->srcu, srcu_idx);
1278
Paul Mackerras371fefd2011-06-29 00:23:08 +00001279 /* make sure updates to secondary vcpu structs are visible now */
1280 smp_mb();
Paul Mackerrasde56a942011-06-29 00:21:34 +00001281 kvm_guest_exit();
1282
1283 preempt_enable();
1284 kvm_resched(vcpu);
1285
Paul Mackerras913d3ff9a2012-10-15 01:16:48 +00001286 spin_lock(&vc->lock);
Paul Mackerrasde56a942011-06-29 00:21:34 +00001287 now = get_tb();
Paul Mackerras371fefd2011-06-29 00:23:08 +00001288 list_for_each_entry(vcpu, &vc->runnable_threads, arch.run_list) {
1289 /* cancel pending dec exception if dec is positive */
1290 if (now < vcpu->arch.dec_expires &&
1291 kvmppc_core_pending_dec(vcpu))
1292 kvmppc_core_dequeue_dec(vcpu);
Paul Mackerras19ccb762011-07-23 17:42:46 +10001293
1294 ret = RESUME_GUEST;
1295 if (vcpu->arch.trap)
1296 ret = kvmppc_handle_exit(vcpu->arch.kvm_run, vcpu,
1297 vcpu->arch.run_task);
1298
Paul Mackerras371fefd2011-06-29 00:23:08 +00001299 vcpu->arch.ret = ret;
1300 vcpu->arch.trap = 0;
Paul Mackerras19ccb762011-07-23 17:42:46 +10001301
1302 if (vcpu->arch.ceded) {
1303 if (ret != RESUME_GUEST)
1304 kvmppc_end_cede(vcpu);
1305 else
1306 kvmppc_set_timer(vcpu);
1307 }
Paul Mackerras371fefd2011-06-29 00:23:08 +00001308 }
Paul Mackerrasde56a942011-06-29 00:21:34 +00001309
Paul Mackerrasde56a942011-06-29 00:21:34 +00001310 out:
Paul Mackerras19ccb762011-07-23 17:42:46 +10001311 vc->vcore_state = VCORE_INACTIVE;
Paul Mackerras371fefd2011-06-29 00:23:08 +00001312 list_for_each_entry_safe(vcpu, vnext, &vc->runnable_threads,
1313 arch.run_list) {
1314 if (vcpu->arch.ret != RESUME_GUEST) {
1315 kvmppc_remove_runnable(vc, vcpu);
1316 wake_up(&vcpu->arch.cpu_run);
1317 }
1318 }
Paul Mackerras371fefd2011-06-29 00:23:08 +00001319}
1320
Paul Mackerras19ccb762011-07-23 17:42:46 +10001321/*
1322 * Wait for some other vcpu thread to execute us, and
1323 * wake us up when we need to handle something in the host.
1324 */
1325static void kvmppc_wait_for_exec(struct kvm_vcpu *vcpu, int wait_state)
Paul Mackerras371fefd2011-06-29 00:23:08 +00001326{
Paul Mackerras371fefd2011-06-29 00:23:08 +00001327 DEFINE_WAIT(wait);
1328
Paul Mackerras19ccb762011-07-23 17:42:46 +10001329 prepare_to_wait(&vcpu->arch.cpu_run, &wait, wait_state);
1330 if (vcpu->arch.state == KVMPPC_VCPU_RUNNABLE)
1331 schedule();
1332 finish_wait(&vcpu->arch.cpu_run, &wait);
1333}
Paul Mackerras371fefd2011-06-29 00:23:08 +00001334
Paul Mackerras19ccb762011-07-23 17:42:46 +10001335/*
1336 * All the vcpus in this vcore are idle, so wait for a decrementer
1337 * or external interrupt to one of the vcpus. vc->lock is held.
1338 */
1339static void kvmppc_vcore_blocked(struct kvmppc_vcore *vc)
1340{
1341 DEFINE_WAIT(wait);
Paul Mackerras19ccb762011-07-23 17:42:46 +10001342
1343 prepare_to_wait(&vc->wq, &wait, TASK_INTERRUPTIBLE);
1344 vc->vcore_state = VCORE_SLEEPING;
1345 spin_unlock(&vc->lock);
Paul Mackerras913d3ff9a2012-10-15 01:16:48 +00001346 schedule();
Paul Mackerras19ccb762011-07-23 17:42:46 +10001347 finish_wait(&vc->wq, &wait);
1348 spin_lock(&vc->lock);
1349 vc->vcore_state = VCORE_INACTIVE;
1350}
1351
1352static int kvmppc_run_vcpu(struct kvm_run *kvm_run, struct kvm_vcpu *vcpu)
1353{
1354 int n_ceded;
Paul Mackerras19ccb762011-07-23 17:42:46 +10001355 struct kvmppc_vcore *vc;
1356 struct kvm_vcpu *v, *vn;
Paul Mackerras9e368f22011-06-29 00:40:08 +00001357
Paul Mackerras371fefd2011-06-29 00:23:08 +00001358 kvm_run->exit_reason = 0;
1359 vcpu->arch.ret = RESUME_GUEST;
1360 vcpu->arch.trap = 0;
Paul Mackerras2f12f032012-10-15 01:17:17 +00001361 kvmppc_update_vpas(vcpu);
Paul Mackerras371fefd2011-06-29 00:23:08 +00001362
Paul Mackerras371fefd2011-06-29 00:23:08 +00001363 /*
1364 * Synchronize with other threads in this virtual core
1365 */
1366 vc = vcpu->arch.vcore;
1367 spin_lock(&vc->lock);
Paul Mackerras19ccb762011-07-23 17:42:46 +10001368 vcpu->arch.ceded = 0;
Paul Mackerras371fefd2011-06-29 00:23:08 +00001369 vcpu->arch.run_task = current;
1370 vcpu->arch.kvm_run = kvm_run;
Paul Mackerrasc7b67672012-10-15 01:18:07 +00001371 vcpu->arch.stolen_logged = vcore_stolen_time(vc, mftb());
Paul Mackerras19ccb762011-07-23 17:42:46 +10001372 vcpu->arch.state = KVMPPC_VCPU_RUNNABLE;
Paul Mackerrasc7b67672012-10-15 01:18:07 +00001373 vcpu->arch.busy_preempt = TB_NIL;
Paul Mackerras371fefd2011-06-29 00:23:08 +00001374 list_add_tail(&vcpu->arch.run_list, &vc->runnable_threads);
1375 ++vc->n_runnable;
1376
Paul Mackerras19ccb762011-07-23 17:42:46 +10001377 /*
1378 * This happens the first time this is called for a vcpu.
1379 * If the vcore is already running, we may be able to start
1380 * this thread straight away and have it join in.
1381 */
Paul Mackerras8455d792012-10-15 01:17:42 +00001382 if (!signal_pending(current)) {
Paul Mackerras19ccb762011-07-23 17:42:46 +10001383 if (vc->vcore_state == VCORE_RUNNING &&
1384 VCORE_EXIT_COUNT(vc) == 0) {
1385 vcpu->arch.ptid = vc->n_runnable - 1;
Paul Mackerras2f12f032012-10-15 01:17:17 +00001386 kvmppc_create_dtl_entry(vcpu, vc);
Paul Mackerras371fefd2011-06-29 00:23:08 +00001387 kvmppc_start_thread(vcpu);
Paul Mackerras8455d792012-10-15 01:17:42 +00001388 } else if (vc->vcore_state == VCORE_SLEEPING) {
1389 wake_up(&vc->wq);
Paul Mackerras19ccb762011-07-23 17:42:46 +10001390 }
Paul Mackerras371fefd2011-06-29 00:23:08 +00001391
Paul Mackerras8455d792012-10-15 01:17:42 +00001392 }
Paul Mackerras19ccb762011-07-23 17:42:46 +10001393
1394 while (vcpu->arch.state == KVMPPC_VCPU_RUNNABLE &&
1395 !signal_pending(current)) {
Paul Mackerras8455d792012-10-15 01:17:42 +00001396 if (vc->vcore_state != VCORE_INACTIVE) {
Paul Mackerras19ccb762011-07-23 17:42:46 +10001397 spin_unlock(&vc->lock);
1398 kvmppc_wait_for_exec(vcpu, TASK_INTERRUPTIBLE);
1399 spin_lock(&vc->lock);
1400 continue;
1401 }
Paul Mackerras19ccb762011-07-23 17:42:46 +10001402 list_for_each_entry_safe(v, vn, &vc->runnable_threads,
1403 arch.run_list) {
Scott Wood7e28e60e2011-11-08 18:23:20 -06001404 kvmppc_core_prepare_to_enter(v);
Paul Mackerras19ccb762011-07-23 17:42:46 +10001405 if (signal_pending(v->arch.run_task)) {
1406 kvmppc_remove_runnable(vc, v);
1407 v->stat.signal_exits++;
1408 v->arch.kvm_run->exit_reason = KVM_EXIT_INTR;
1409 v->arch.ret = -EINTR;
1410 wake_up(&v->arch.cpu_run);
1411 }
1412 }
Paul Mackerras8455d792012-10-15 01:17:42 +00001413 if (!vc->n_runnable || vcpu->arch.state != KVMPPC_VCPU_RUNNABLE)
1414 break;
1415 vc->runner = vcpu;
1416 n_ceded = 0;
Paul Mackerras4619ac82013-04-17 20:31:41 +00001417 list_for_each_entry(v, &vc->runnable_threads, arch.run_list) {
Paul Mackerras8455d792012-10-15 01:17:42 +00001418 if (!v->arch.pending_exceptions)
1419 n_ceded += v->arch.ceded;
Paul Mackerras4619ac82013-04-17 20:31:41 +00001420 else
1421 v->arch.ceded = 0;
1422 }
Paul Mackerras8455d792012-10-15 01:17:42 +00001423 if (n_ceded == vc->n_runnable)
1424 kvmppc_vcore_blocked(vc);
1425 else
1426 kvmppc_run_core(vc);
Paul Mackerras0456ec42012-02-03 00:56:21 +00001427 vc->runner = NULL;
Paul Mackerras371fefd2011-06-29 00:23:08 +00001428 }
1429
Paul Mackerras8455d792012-10-15 01:17:42 +00001430 while (vcpu->arch.state == KVMPPC_VCPU_RUNNABLE &&
1431 (vc->vcore_state == VCORE_RUNNING ||
1432 vc->vcore_state == VCORE_EXITING)) {
1433 spin_unlock(&vc->lock);
1434 kvmppc_wait_for_exec(vcpu, TASK_UNINTERRUPTIBLE);
1435 spin_lock(&vc->lock);
1436 }
1437
1438 if (vcpu->arch.state == KVMPPC_VCPU_RUNNABLE) {
1439 kvmppc_remove_runnable(vc, vcpu);
1440 vcpu->stat.signal_exits++;
1441 kvm_run->exit_reason = KVM_EXIT_INTR;
1442 vcpu->arch.ret = -EINTR;
1443 }
1444
1445 if (vc->n_runnable && vc->vcore_state == VCORE_INACTIVE) {
1446 /* Wake up some vcpu to run the core */
1447 v = list_first_entry(&vc->runnable_threads,
1448 struct kvm_vcpu, arch.run_list);
1449 wake_up(&v->arch.cpu_run);
Paul Mackerras19ccb762011-07-23 17:42:46 +10001450 }
Paul Mackerras371fefd2011-06-29 00:23:08 +00001451
Paul Mackerras19ccb762011-07-23 17:42:46 +10001452 spin_unlock(&vc->lock);
Paul Mackerras371fefd2011-06-29 00:23:08 +00001453 return vcpu->arch.ret;
Paul Mackerrasde56a942011-06-29 00:21:34 +00001454}
1455
Paul Mackerrasa8606e22011-06-29 00:22:05 +00001456int kvmppc_vcpu_run(struct kvm_run *run, struct kvm_vcpu *vcpu)
1457{
1458 int r;
Paul Mackerras913d3ff9a2012-10-15 01:16:48 +00001459 int srcu_idx;
Paul Mackerrasa8606e22011-06-29 00:22:05 +00001460
Alexander Grafaf8f38b2011-08-10 13:57:08 +02001461 if (!vcpu->arch.sane) {
1462 run->exit_reason = KVM_EXIT_INTERNAL_ERROR;
1463 return -EINVAL;
1464 }
1465
Scott Wood25051b52011-11-08 18:23:23 -06001466 kvmppc_core_prepare_to_enter(vcpu);
1467
Paul Mackerras19ccb762011-07-23 17:42:46 +10001468 /* No need to go into the guest when all we'll do is come back out */
1469 if (signal_pending(current)) {
1470 run->exit_reason = KVM_EXIT_INTR;
1471 return -EINTR;
1472 }
1473
Paul Mackerras32fad282012-05-04 02:32:53 +00001474 atomic_inc(&vcpu->kvm->arch.vcpus_running);
1475 /* Order vcpus_running vs. rma_setup_done, see kvmppc_alloc_reset_hpt */
1476 smp_mb();
1477
1478 /* On the first time here, set up HTAB and VRMA or RMA */
Paul Mackerrasc77162d2011-12-12 12:31:00 +00001479 if (!vcpu->kvm->arch.rma_setup_done) {
Paul Mackerras32fad282012-05-04 02:32:53 +00001480 r = kvmppc_hv_setup_htab_rma(vcpu);
Paul Mackerrasc77162d2011-12-12 12:31:00 +00001481 if (r)
Paul Mackerras32fad282012-05-04 02:32:53 +00001482 goto out;
Paul Mackerrasc77162d2011-12-12 12:31:00 +00001483 }
Paul Mackerras19ccb762011-07-23 17:42:46 +10001484
1485 flush_fp_to_thread(current);
1486 flush_altivec_to_thread(current);
1487 flush_vsx_to_thread(current);
1488 vcpu->arch.wqp = &vcpu->arch.vcore->wq;
Paul Mackerras342d3db2011-12-12 12:38:05 +00001489 vcpu->arch.pgdir = current->mm->pgd;
Paul Mackerrasc7b67672012-10-15 01:18:07 +00001490 vcpu->arch.state = KVMPPC_VCPU_BUSY_IN_HOST;
Paul Mackerras19ccb762011-07-23 17:42:46 +10001491
Paul Mackerrasa8606e22011-06-29 00:22:05 +00001492 do {
1493 r = kvmppc_run_vcpu(run, vcpu);
1494
1495 if (run->exit_reason == KVM_EXIT_PAPR_HCALL &&
1496 !(vcpu->arch.shregs.msr & MSR_PR)) {
1497 r = kvmppc_pseries_do_hcall(vcpu);
Scott Wood7e28e60e2011-11-08 18:23:20 -06001498 kvmppc_core_prepare_to_enter(vcpu);
Paul Mackerras913d3ff9a2012-10-15 01:16:48 +00001499 } else if (r == RESUME_PAGE_FAULT) {
1500 srcu_idx = srcu_read_lock(&vcpu->kvm->srcu);
1501 r = kvmppc_book3s_hv_page_fault(run, vcpu,
1502 vcpu->arch.fault_dar, vcpu->arch.fault_dsisr);
1503 srcu_read_unlock(&vcpu->kvm->srcu, srcu_idx);
Paul Mackerrasa8606e22011-06-29 00:22:05 +00001504 }
1505 } while (r == RESUME_GUEST);
Paul Mackerras32fad282012-05-04 02:32:53 +00001506
1507 out:
Paul Mackerrasc7b67672012-10-15 01:18:07 +00001508 vcpu->arch.state = KVMPPC_VCPU_NOTREADY;
Paul Mackerras32fad282012-05-04 02:32:53 +00001509 atomic_dec(&vcpu->kvm->arch.vcpus_running);
Paul Mackerrasa8606e22011-06-29 00:22:05 +00001510 return r;
1511}
1512
David Gibson54738c02011-06-29 00:22:41 +00001513
Paul Mackerrasaa04b4c2011-06-29 00:25:44 +00001514/* Work out RMLS (real mode limit selector) field value for a given RMA size.
Paul Mackerras9e368f22011-06-29 00:40:08 +00001515 Assumes POWER7 or PPC970. */
Paul Mackerrasaa04b4c2011-06-29 00:25:44 +00001516static inline int lpcr_rmls(unsigned long rma_size)
1517{
1518 switch (rma_size) {
1519 case 32ul << 20: /* 32 MB */
Paul Mackerras9e368f22011-06-29 00:40:08 +00001520 if (cpu_has_feature(CPU_FTR_ARCH_206))
1521 return 8; /* only supported on POWER7 */
1522 return -1;
Paul Mackerrasaa04b4c2011-06-29 00:25:44 +00001523 case 64ul << 20: /* 64 MB */
1524 return 3;
1525 case 128ul << 20: /* 128 MB */
1526 return 7;
1527 case 256ul << 20: /* 256 MB */
1528 return 4;
1529 case 1ul << 30: /* 1 GB */
1530 return 2;
1531 case 16ul << 30: /* 16 GB */
1532 return 1;
1533 case 256ul << 30: /* 256 GB */
1534 return 0;
1535 default:
1536 return -1;
1537 }
1538}
1539
1540static int kvm_rma_fault(struct vm_area_struct *vma, struct vm_fault *vmf)
1541{
Paul Mackerrasaa04b4c2011-06-29 00:25:44 +00001542 struct page *page;
Aneesh Kumar K.V6c45b812013-07-02 11:15:17 +05301543 struct kvm_rma_info *ri = vma->vm_file->private_data;
Paul Mackerrasaa04b4c2011-06-29 00:25:44 +00001544
Aneesh Kumar K.V6c45b812013-07-02 11:15:17 +05301545 if (vmf->pgoff >= kvm_rma_pages)
Paul Mackerrasaa04b4c2011-06-29 00:25:44 +00001546 return VM_FAULT_SIGBUS;
1547
1548 page = pfn_to_page(ri->base_pfn + vmf->pgoff);
1549 get_page(page);
1550 vmf->page = page;
1551 return 0;
1552}
1553
1554static const struct vm_operations_struct kvm_rma_vm_ops = {
1555 .fault = kvm_rma_fault,
1556};
1557
1558static int kvm_rma_mmap(struct file *file, struct vm_area_struct *vma)
1559{
Konstantin Khlebnikov314e51b2012-10-08 16:29:02 -07001560 vma->vm_flags |= VM_DONTEXPAND | VM_DONTDUMP;
Paul Mackerrasaa04b4c2011-06-29 00:25:44 +00001561 vma->vm_ops = &kvm_rma_vm_ops;
1562 return 0;
1563}
1564
1565static int kvm_rma_release(struct inode *inode, struct file *filp)
1566{
Aneesh Kumar K.V6c45b812013-07-02 11:15:17 +05301567 struct kvm_rma_info *ri = filp->private_data;
Paul Mackerrasaa04b4c2011-06-29 00:25:44 +00001568
1569 kvm_release_rma(ri);
1570 return 0;
1571}
1572
Al Viro75ef9de2013-04-04 19:09:41 -04001573static const struct file_operations kvm_rma_fops = {
Paul Mackerrasaa04b4c2011-06-29 00:25:44 +00001574 .mmap = kvm_rma_mmap,
1575 .release = kvm_rma_release,
1576};
1577
1578long kvm_vm_ioctl_allocate_rma(struct kvm *kvm, struct kvm_allocate_rma *ret)
1579{
Paul Mackerrasaa04b4c2011-06-29 00:25:44 +00001580 long fd;
Aneesh Kumar K.V6c45b812013-07-02 11:15:17 +05301581 struct kvm_rma_info *ri;
1582 /*
1583 * Only do this on PPC970 in HV mode
1584 */
1585 if (!cpu_has_feature(CPU_FTR_HVMODE) ||
1586 !cpu_has_feature(CPU_FTR_ARCH_201))
1587 return -EINVAL;
1588
1589 if (!kvm_rma_pages)
1590 return -EINVAL;
Paul Mackerrasaa04b4c2011-06-29 00:25:44 +00001591
1592 ri = kvm_alloc_rma();
1593 if (!ri)
1594 return -ENOMEM;
1595
Yann Droneaud2f84d5e2013-08-24 22:14:08 +02001596 fd = anon_inode_getfd("kvm-rma", &kvm_rma_fops, ri, O_RDWR | O_CLOEXEC);
Paul Mackerrasaa04b4c2011-06-29 00:25:44 +00001597 if (fd < 0)
1598 kvm_release_rma(ri);
1599
Aneesh Kumar K.V6c45b812013-07-02 11:15:17 +05301600 ret->rma_size = kvm_rma_pages << PAGE_SHIFT;
Paul Mackerrasaa04b4c2011-06-29 00:25:44 +00001601 return fd;
1602}
1603
Benjamin Herrenschmidt5b747162012-04-26 19:43:42 +00001604static void kvmppc_add_seg_page_size(struct kvm_ppc_one_seg_page_size **sps,
1605 int linux_psize)
1606{
1607 struct mmu_psize_def *def = &mmu_psize_defs[linux_psize];
1608
1609 if (!def->shift)
1610 return;
1611 (*sps)->page_shift = def->shift;
1612 (*sps)->slb_enc = def->sllp;
1613 (*sps)->enc[0].page_shift = def->shift;
Aneesh Kumar K.Vb1022fb2013-04-28 09:37:35 +00001614 /*
1615 * Only return base page encoding. We don't want to return
1616 * all the supporting pte_enc, because our H_ENTER doesn't
1617 * support MPSS yet. Once they do, we can start passing all
1618 * support pte_enc here
1619 */
1620 (*sps)->enc[0].pte_enc = def->penc[linux_psize];
Benjamin Herrenschmidt5b747162012-04-26 19:43:42 +00001621 (*sps)++;
1622}
1623
1624int kvm_vm_ioctl_get_smmu_info(struct kvm *kvm, struct kvm_ppc_smmu_info *info)
1625{
1626 struct kvm_ppc_one_seg_page_size *sps;
1627
1628 info->flags = KVM_PPC_PAGE_SIZES_REAL;
1629 if (mmu_has_feature(MMU_FTR_1T_SEGMENT))
1630 info->flags |= KVM_PPC_1T_SEGMENTS;
1631 info->slb_size = mmu_slb_size;
1632
1633 /* We only support these sizes for now, and no muti-size segments */
1634 sps = &info->sps[0];
1635 kvmppc_add_seg_page_size(&sps, MMU_PAGE_4K);
1636 kvmppc_add_seg_page_size(&sps, MMU_PAGE_64K);
1637 kvmppc_add_seg_page_size(&sps, MMU_PAGE_16M);
1638
1639 return 0;
1640}
1641
Paul Mackerras82ed3612011-12-15 02:03:22 +00001642/*
1643 * Get (and clear) the dirty memory log for a memory slot.
1644 */
1645int kvm_vm_ioctl_get_dirty_log(struct kvm *kvm, struct kvm_dirty_log *log)
1646{
1647 struct kvm_memory_slot *memslot;
1648 int r;
1649 unsigned long n;
1650
1651 mutex_lock(&kvm->slots_lock);
1652
1653 r = -EINVAL;
Alex Williamsonbbacc0c2012-12-10 10:33:09 -07001654 if (log->slot >= KVM_USER_MEM_SLOTS)
Paul Mackerras82ed3612011-12-15 02:03:22 +00001655 goto out;
1656
1657 memslot = id_to_memslot(kvm->memslots, log->slot);
1658 r = -ENOENT;
1659 if (!memslot->dirty_bitmap)
1660 goto out;
1661
1662 n = kvm_dirty_bitmap_bytes(memslot);
1663 memset(memslot->dirty_bitmap, 0, n);
1664
Paul Mackerrasdfe49db2012-09-11 13:28:18 +00001665 r = kvmppc_hv_get_dirty_log(kvm, memslot, memslot->dirty_bitmap);
Paul Mackerras82ed3612011-12-15 02:03:22 +00001666 if (r)
1667 goto out;
1668
1669 r = -EFAULT;
1670 if (copy_to_user(log->dirty_bitmap, memslot->dirty_bitmap, n))
1671 goto out;
1672
1673 r = 0;
1674out:
1675 mutex_unlock(&kvm->slots_lock);
1676 return r;
1677}
1678
Paul Mackerrasa66b48c2012-09-11 13:27:46 +00001679static void unpin_slot(struct kvm_memory_slot *memslot)
Paul Mackerrasc77162d2011-12-12 12:31:00 +00001680{
1681 unsigned long *physp;
1682 unsigned long j, npages, pfn;
1683 struct page *page;
1684
Paul Mackerrasa66b48c2012-09-11 13:27:46 +00001685 physp = memslot->arch.slot_phys;
1686 npages = memslot->npages;
1687 if (!physp)
1688 return;
1689 for (j = 0; j < npages; j++) {
1690 if (!(physp[j] & KVMPPC_GOT_PAGE))
1691 continue;
1692 pfn = physp[j] >> PAGE_SHIFT;
1693 page = pfn_to_page(pfn);
1694 SetPageDirty(page);
1695 put_page(page);
Paul Mackerrasc77162d2011-12-12 12:31:00 +00001696 }
1697}
1698
Paul Mackerrasa66b48c2012-09-11 13:27:46 +00001699void kvmppc_core_free_memslot(struct kvm_memory_slot *free,
1700 struct kvm_memory_slot *dont)
1701{
1702 if (!dont || free->arch.rmap != dont->arch.rmap) {
1703 vfree(free->arch.rmap);
1704 free->arch.rmap = NULL;
1705 }
1706 if (!dont || free->arch.slot_phys != dont->arch.slot_phys) {
1707 unpin_slot(free);
1708 vfree(free->arch.slot_phys);
1709 free->arch.slot_phys = NULL;
1710 }
1711}
1712
1713int kvmppc_core_create_memslot(struct kvm_memory_slot *slot,
1714 unsigned long npages)
1715{
1716 slot->arch.rmap = vzalloc(npages * sizeof(*slot->arch.rmap));
1717 if (!slot->arch.rmap)
1718 return -ENOMEM;
1719 slot->arch.slot_phys = NULL;
1720
1721 return 0;
1722}
1723
1724int kvmppc_core_prepare_memory_region(struct kvm *kvm,
1725 struct kvm_memory_slot *memslot,
1726 struct kvm_userspace_memory_region *mem)
1727{
1728 unsigned long *phys;
1729
1730 /* Allocate a slot_phys array if needed */
1731 phys = memslot->arch.slot_phys;
1732 if (!kvm->arch.using_mmu_notifiers && !phys && memslot->npages) {
1733 phys = vzalloc(memslot->npages * sizeof(unsigned long));
1734 if (!phys)
1735 return -ENOMEM;
1736 memslot->arch.slot_phys = phys;
1737 }
1738
1739 return 0;
1740}
1741
Paul Mackerrasc77162d2011-12-12 12:31:00 +00001742void kvmppc_core_commit_memory_region(struct kvm *kvm,
Paul Mackerrasdfe49db2012-09-11 13:28:18 +00001743 struct kvm_userspace_memory_region *mem,
Takuya Yoshikawa84826442013-02-27 19:45:25 +09001744 const struct kvm_memory_slot *old)
Paul Mackerrasc77162d2011-12-12 12:31:00 +00001745{
Paul Mackerrasdfe49db2012-09-11 13:28:18 +00001746 unsigned long npages = mem->memory_size >> PAGE_SHIFT;
1747 struct kvm_memory_slot *memslot;
1748
Takuya Yoshikawa84826442013-02-27 19:45:25 +09001749 if (npages && old->npages) {
Paul Mackerrasdfe49db2012-09-11 13:28:18 +00001750 /*
1751 * If modifying a memslot, reset all the rmap dirty bits.
1752 * If this is a new memslot, we don't need to do anything
1753 * since the rmap array starts out as all zeroes,
1754 * i.e. no pages are dirty.
1755 */
1756 memslot = id_to_memslot(kvm->memslots, mem->slot);
1757 kvmppc_hv_get_dirty_log(kvm, memslot, NULL);
1758 }
Paul Mackerrasc77162d2011-12-12 12:31:00 +00001759}
1760
Paul Mackerras32fad282012-05-04 02:32:53 +00001761static int kvmppc_hv_setup_htab_rma(struct kvm_vcpu *vcpu)
Paul Mackerrasc77162d2011-12-12 12:31:00 +00001762{
1763 int err = 0;
1764 struct kvm *kvm = vcpu->kvm;
Aneesh Kumar K.V6c45b812013-07-02 11:15:17 +05301765 struct kvm_rma_info *ri = NULL;
Paul Mackerrasc77162d2011-12-12 12:31:00 +00001766 unsigned long hva;
1767 struct kvm_memory_slot *memslot;
1768 struct vm_area_struct *vma;
Paul Mackerrasda9d1d72011-12-12 12:31:41 +00001769 unsigned long lpcr, senc;
Paul Mackerrasc77162d2011-12-12 12:31:00 +00001770 unsigned long psize, porder;
1771 unsigned long rma_size;
1772 unsigned long rmls;
1773 unsigned long *physp;
Paul Mackerrasda9d1d72011-12-12 12:31:41 +00001774 unsigned long i, npages;
Paul Mackerras2c9097e2012-09-11 13:27:01 +00001775 int srcu_idx;
Paul Mackerrasc77162d2011-12-12 12:31:00 +00001776
1777 mutex_lock(&kvm->lock);
1778 if (kvm->arch.rma_setup_done)
1779 goto out; /* another vcpu beat us to it */
1780
Paul Mackerras32fad282012-05-04 02:32:53 +00001781 /* Allocate hashed page table (if not done already) and reset it */
1782 if (!kvm->arch.hpt_virt) {
1783 err = kvmppc_alloc_hpt(kvm, NULL);
1784 if (err) {
1785 pr_err("KVM: Couldn't alloc HPT\n");
1786 goto out;
1787 }
1788 }
1789
Paul Mackerrasc77162d2011-12-12 12:31:00 +00001790 /* Look up the memslot for guest physical address 0 */
Paul Mackerras2c9097e2012-09-11 13:27:01 +00001791 srcu_idx = srcu_read_lock(&kvm->srcu);
Paul Mackerrasc77162d2011-12-12 12:31:00 +00001792 memslot = gfn_to_memslot(kvm, 0);
1793
1794 /* We must have some memory at 0 by now */
1795 err = -EINVAL;
1796 if (!memslot || (memslot->flags & KVM_MEMSLOT_INVALID))
Paul Mackerras2c9097e2012-09-11 13:27:01 +00001797 goto out_srcu;
Paul Mackerrasc77162d2011-12-12 12:31:00 +00001798
1799 /* Look up the VMA for the start of this memory slot */
1800 hva = memslot->userspace_addr;
1801 down_read(&current->mm->mmap_sem);
1802 vma = find_vma(current->mm, hva);
1803 if (!vma || vma->vm_start > hva || (vma->vm_flags & VM_IO))
1804 goto up_out;
1805
1806 psize = vma_kernel_pagesize(vma);
Paul Mackerrasda9d1d72011-12-12 12:31:41 +00001807 porder = __ilog2(psize);
Paul Mackerrasaa04b4c2011-06-29 00:25:44 +00001808
Paul Mackerrasaa04b4c2011-06-29 00:25:44 +00001809 /* Is this one of our preallocated RMAs? */
Paul Mackerrasc77162d2011-12-12 12:31:00 +00001810 if (vma->vm_file && vma->vm_file->f_op == &kvm_rma_fops &&
1811 hva == vma->vm_start)
1812 ri = vma->vm_file->private_data;
Paul Mackerrasaa04b4c2011-06-29 00:25:44 +00001813
Paul Mackerrasc77162d2011-12-12 12:31:00 +00001814 up_read(&current->mm->mmap_sem);
1815
1816 if (!ri) {
1817 /* On POWER7, use VRMA; on PPC970, give up */
1818 err = -EPERM;
1819 if (cpu_has_feature(CPU_FTR_ARCH_201)) {
1820 pr_err("KVM: CPU requires an RMO\n");
Paul Mackerras2c9097e2012-09-11 13:27:01 +00001821 goto out_srcu;
Paul Mackerras9e368f22011-06-29 00:40:08 +00001822 }
Paul Mackerrasaa04b4c2011-06-29 00:25:44 +00001823
Paul Mackerrasda9d1d72011-12-12 12:31:41 +00001824 /* We can handle 4k, 64k or 16M pages in the VRMA */
1825 err = -EINVAL;
1826 if (!(psize == 0x1000 || psize == 0x10000 ||
1827 psize == 0x1000000))
Paul Mackerras2c9097e2012-09-11 13:27:01 +00001828 goto out_srcu;
Paul Mackerrasda9d1d72011-12-12 12:31:41 +00001829
Paul Mackerrasc77162d2011-12-12 12:31:00 +00001830 /* Update VRMASD field in the LPCR */
Paul Mackerrasda9d1d72011-12-12 12:31:41 +00001831 senc = slb_pgsize_encoding(psize);
Paul Mackerras697d3892011-12-12 12:36:37 +00001832 kvm->arch.vrma_slb_v = senc | SLB_VSID_B_1T |
1833 (VRMA_VSID << SLB_VSID_SHIFT_1T);
Paul Mackerrasda9d1d72011-12-12 12:31:41 +00001834 lpcr = kvm->arch.lpcr & ~LPCR_VRMASD;
1835 lpcr |= senc << (LPCR_VRMASD_SH - 4);
Paul Mackerrasc77162d2011-12-12 12:31:00 +00001836 kvm->arch.lpcr = lpcr;
Paul Mackerrasaa04b4c2011-06-29 00:25:44 +00001837
Paul Mackerrasc77162d2011-12-12 12:31:00 +00001838 /* Create HPTEs in the hash page table for the VRMA */
Paul Mackerrasda9d1d72011-12-12 12:31:41 +00001839 kvmppc_map_vrma(vcpu, memslot, porder);
Paul Mackerrasc77162d2011-12-12 12:31:00 +00001840
1841 } else {
1842 /* Set up to use an RMO region */
Aneesh Kumar K.V6c45b812013-07-02 11:15:17 +05301843 rma_size = kvm_rma_pages;
Paul Mackerrasc77162d2011-12-12 12:31:00 +00001844 if (rma_size > memslot->npages)
1845 rma_size = memslot->npages;
1846 rma_size <<= PAGE_SHIFT;
Paul Mackerrasaa04b4c2011-06-29 00:25:44 +00001847 rmls = lpcr_rmls(rma_size);
Paul Mackerrasc77162d2011-12-12 12:31:00 +00001848 err = -EINVAL;
Chen Gang5d226ae2013-07-22 14:32:35 +08001849 if ((long)rmls < 0) {
Paul Mackerrasc77162d2011-12-12 12:31:00 +00001850 pr_err("KVM: Can't use RMA of 0x%lx bytes\n", rma_size);
Paul Mackerras2c9097e2012-09-11 13:27:01 +00001851 goto out_srcu;
Paul Mackerrasaa04b4c2011-06-29 00:25:44 +00001852 }
1853 atomic_inc(&ri->use_count);
1854 kvm->arch.rma = ri;
Paul Mackerras9e368f22011-06-29 00:40:08 +00001855
1856 /* Update LPCR and RMOR */
1857 lpcr = kvm->arch.lpcr;
1858 if (cpu_has_feature(CPU_FTR_ARCH_201)) {
1859 /* PPC970; insert RMLS value (split field) in HID4 */
1860 lpcr &= ~((1ul << HID4_RMLS0_SH) |
1861 (3ul << HID4_RMLS2_SH));
1862 lpcr |= ((rmls >> 2) << HID4_RMLS0_SH) |
1863 ((rmls & 3) << HID4_RMLS2_SH);
1864 /* RMOR is also in HID4 */
1865 lpcr |= ((ri->base_pfn >> (26 - PAGE_SHIFT)) & 0xffff)
1866 << HID4_RMOR_SH;
1867 } else {
1868 /* POWER7 */
1869 lpcr &= ~(LPCR_VPM0 | LPCR_VRMA_L);
1870 lpcr |= rmls << LPCR_RMLS_SH;
Aneesh Kumar K.V6c45b812013-07-02 11:15:17 +05301871 kvm->arch.rmor = ri->base_pfn << PAGE_SHIFT;
Paul Mackerras9e368f22011-06-29 00:40:08 +00001872 }
Paul Mackerrasaa04b4c2011-06-29 00:25:44 +00001873 kvm->arch.lpcr = lpcr;
Paul Mackerrasc77162d2011-12-12 12:31:00 +00001874 pr_info("KVM: Using RMO at %lx size %lx (LPCR = %lx)\n",
Paul Mackerrasaa04b4c2011-06-29 00:25:44 +00001875 ri->base_pfn << PAGE_SHIFT, rma_size, lpcr);
Paul Mackerrasc77162d2011-12-12 12:31:00 +00001876
1877 /* Initialize phys addrs of pages in RMO */
Aneesh Kumar K.V6c45b812013-07-02 11:15:17 +05301878 npages = kvm_rma_pages;
Paul Mackerrasda9d1d72011-12-12 12:31:41 +00001879 porder = __ilog2(npages);
Paul Mackerrasa66b48c2012-09-11 13:27:46 +00001880 physp = memslot->arch.slot_phys;
1881 if (physp) {
1882 if (npages > memslot->npages)
1883 npages = memslot->npages;
1884 spin_lock(&kvm->arch.slot_phys_lock);
1885 for (i = 0; i < npages; ++i)
1886 physp[i] = ((ri->base_pfn + i) << PAGE_SHIFT) +
1887 porder;
1888 spin_unlock(&kvm->arch.slot_phys_lock);
1889 }
Paul Mackerrasaa04b4c2011-06-29 00:25:44 +00001890 }
1891
Paul Mackerrasc77162d2011-12-12 12:31:00 +00001892 /* Order updates to kvm->arch.lpcr etc. vs. rma_setup_done */
1893 smp_wmb();
1894 kvm->arch.rma_setup_done = 1;
1895 err = 0;
Paul Mackerras2c9097e2012-09-11 13:27:01 +00001896 out_srcu:
1897 srcu_read_unlock(&kvm->srcu, srcu_idx);
Paul Mackerrasc77162d2011-12-12 12:31:00 +00001898 out:
1899 mutex_unlock(&kvm->lock);
1900 return err;
Paul Mackerrasaa04b4c2011-06-29 00:25:44 +00001901
Paul Mackerrasc77162d2011-12-12 12:31:00 +00001902 up_out:
1903 up_read(&current->mm->mmap_sem);
Lai Jiangshan505d6422013-03-16 00:50:49 +08001904 goto out_srcu;
Paul Mackerrasde56a942011-06-29 00:21:34 +00001905}
1906
1907int kvmppc_core_init_vm(struct kvm *kvm)
1908{
Paul Mackerras32fad282012-05-04 02:32:53 +00001909 unsigned long lpcr, lpid;
Paul Mackerrasde56a942011-06-29 00:21:34 +00001910
Paul Mackerras32fad282012-05-04 02:32:53 +00001911 /* Allocate the guest's logical partition ID */
1912
1913 lpid = kvmppc_alloc_lpid();
Chen Gang5d226ae2013-07-22 14:32:35 +08001914 if ((long)lpid < 0)
Paul Mackerras32fad282012-05-04 02:32:53 +00001915 return -ENOMEM;
1916 kvm->arch.lpid = lpid;
Paul Mackerrasde56a942011-06-29 00:21:34 +00001917
Paul Mackerras1b400ba2012-11-21 23:28:08 +00001918 /*
1919 * Since we don't flush the TLB when tearing down a VM,
1920 * and this lpid might have previously been used,
1921 * make sure we flush on each core before running the new VM.
1922 */
1923 cpumask_setall(&kvm->arch.need_tlb_flush);
1924
David Gibson54738c02011-06-29 00:22:41 +00001925 INIT_LIST_HEAD(&kvm->arch.spapr_tce_tables);
Michael Ellerman8e591cb2013-04-17 20:30:00 +00001926 INIT_LIST_HEAD(&kvm->arch.rtas_tokens);
Paul Mackerrasaa04b4c2011-06-29 00:25:44 +00001927
Paul Mackerrasaa04b4c2011-06-29 00:25:44 +00001928 kvm->arch.rma = NULL;
Paul Mackerrasaa04b4c2011-06-29 00:25:44 +00001929
Paul Mackerras9e368f22011-06-29 00:40:08 +00001930 kvm->arch.host_sdr1 = mfspr(SPRN_SDR1);
Paul Mackerrasaa04b4c2011-06-29 00:25:44 +00001931
Paul Mackerras9e368f22011-06-29 00:40:08 +00001932 if (cpu_has_feature(CPU_FTR_ARCH_201)) {
1933 /* PPC970; HID4 is effectively the LPCR */
Paul Mackerras9e368f22011-06-29 00:40:08 +00001934 kvm->arch.host_lpid = 0;
1935 kvm->arch.host_lpcr = lpcr = mfspr(SPRN_HID4);
1936 lpcr &= ~((3 << HID4_LPID1_SH) | (0xful << HID4_LPID5_SH));
1937 lpcr |= ((lpid >> 4) << HID4_LPID1_SH) |
1938 ((lpid & 0xf) << HID4_LPID5_SH);
1939 } else {
1940 /* POWER7; init LPCR for virtual RMA mode */
1941 kvm->arch.host_lpid = mfspr(SPRN_LPID);
1942 kvm->arch.host_lpcr = lpcr = mfspr(SPRN_LPCR);
1943 lpcr &= LPCR_PECE | LPCR_LPES;
1944 lpcr |= (4UL << LPCR_DPFD_SH) | LPCR_HDICE |
Paul Mackerras697d3892011-12-12 12:36:37 +00001945 LPCR_VPM0 | LPCR_VPM1;
1946 kvm->arch.vrma_slb_v = SLB_VSID_B_1T |
1947 (VRMA_VSID << SLB_VSID_SHIFT_1T);
Paul Mackerras9e368f22011-06-29 00:40:08 +00001948 }
1949 kvm->arch.lpcr = lpcr;
Paul Mackerrasaa04b4c2011-06-29 00:25:44 +00001950
Paul Mackerras342d3db2011-12-12 12:38:05 +00001951 kvm->arch.using_mmu_notifiers = !!cpu_has_feature(CPU_FTR_ARCH_206);
Paul Mackerrasc77162d2011-12-12 12:31:00 +00001952 spin_lock_init(&kvm->arch.slot_phys_lock);
Paul Mackerras512691d2012-10-15 01:15:41 +00001953
1954 /*
1955 * Don't allow secondary CPU threads to come online
1956 * while any KVM VMs exist.
1957 */
1958 inhibit_secondary_onlining();
1959
David Gibson54738c02011-06-29 00:22:41 +00001960 return 0;
Paul Mackerrasde56a942011-06-29 00:21:34 +00001961}
1962
1963void kvmppc_core_destroy_vm(struct kvm *kvm)
1964{
Paul Mackerras512691d2012-10-15 01:15:41 +00001965 uninhibit_secondary_onlining();
1966
Paul Mackerrasaa04b4c2011-06-29 00:25:44 +00001967 if (kvm->arch.rma) {
1968 kvm_release_rma(kvm->arch.rma);
1969 kvm->arch.rma = NULL;
1970 }
1971
Michael Ellerman8e591cb2013-04-17 20:30:00 +00001972 kvmppc_rtas_tokens_free(kvm);
1973
Paul Mackerrasde56a942011-06-29 00:21:34 +00001974 kvmppc_free_hpt(kvm);
David Gibson54738c02011-06-29 00:22:41 +00001975 WARN_ON(!list_empty(&kvm->arch.spapr_tce_tables));
Paul Mackerrasde56a942011-06-29 00:21:34 +00001976}
1977
1978/* These are stubs for now */
1979void kvmppc_mmu_pte_pflush(struct kvm_vcpu *vcpu, ulong pa_start, ulong pa_end)
1980{
1981}
1982
1983/* We don't need to emulate any privileged instructions or dcbz */
1984int kvmppc_core_emulate_op(struct kvm_run *run, struct kvm_vcpu *vcpu,
1985 unsigned int inst, int *advance)
1986{
1987 return EMULATE_FAIL;
1988}
1989
Alexander Graf54771e62012-05-04 14:55:12 +02001990int kvmppc_core_emulate_mtspr(struct kvm_vcpu *vcpu, int sprn, ulong spr_val)
Paul Mackerrasde56a942011-06-29 00:21:34 +00001991{
1992 return EMULATE_FAIL;
1993}
1994
Alexander Graf54771e62012-05-04 14:55:12 +02001995int kvmppc_core_emulate_mfspr(struct kvm_vcpu *vcpu, int sprn, ulong *spr_val)
Paul Mackerrasde56a942011-06-29 00:21:34 +00001996{
1997 return EMULATE_FAIL;
1998}
1999
2000static int kvmppc_book3s_hv_init(void)
2001{
2002 int r;
2003
2004 r = kvm_init(NULL, sizeof(struct kvm_vcpu), 0, THIS_MODULE);
2005
2006 if (r)
2007 return r;
2008
2009 r = kvmppc_mmu_hv_init();
2010
2011 return r;
2012}
2013
2014static void kvmppc_book3s_hv_exit(void)
2015{
2016 kvm_exit();
2017}
2018
2019module_init(kvmppc_book3s_hv_init);
2020module_exit(kvmppc_book3s_hv_exit);