1/* SPDX-License-Identifier: GPL-2.0-only */
2/*
3 *
4 * Copyright 2011 Paul Mackerras, IBM Corp. <paulus@au1.ibm.com>
5 *
6 * Derived from book3s_rmhandlers.S and other files, which are:
7 *
8 * Copyright SUSE Linux Products GmbH 2009
9 *
10 * Authors: Alexander Graf <agraf@suse.de>
11 */
12
13#include <asm/ppc_asm.h>
14#include <asm/code-patching-asm.h>
15#include <asm/kvm_asm.h>
16#include <asm/reg.h>
17#include <asm/mmu.h>
18#include <asm/page.h>
19#include <asm/ptrace.h>
20#include <asm/hvcall.h>
21#include <asm/asm-offsets.h>
22#include <asm/exception-64s.h>
23#include <asm/kvm_book3s_asm.h>
24#include <asm/book3s/64/mmu-hash.h>
25#include <asm/export.h>
26#include <asm/tm.h>
27#include <asm/opal.h>
28#include <asm/thread_info.h>
29#include <asm/asm-compat.h>
30#include <asm/feature-fixups.h>
31#include <asm/cpuidle.h>
32
33/* Values in HSTATE_NAPPING(r13) */
34#define NAPPING_CEDE	1
35#define NAPPING_NOVCPU	2
36#define NAPPING_UNSPLIT	3
37
38/* Stack frame offsets for kvmppc_hv_entry */
39#define SFS			160
40#define STACK_SLOT_TRAP		(SFS-4)
41#define STACK_SLOT_TID		(SFS-16)
42#define STACK_SLOT_PSSCR	(SFS-24)
43#define STACK_SLOT_PID		(SFS-32)
44#define STACK_SLOT_IAMR		(SFS-40)
45#define STACK_SLOT_CIABR	(SFS-48)
46#define STACK_SLOT_DAWR0	(SFS-56)
47#define STACK_SLOT_DAWRX0	(SFS-64)
48#define STACK_SLOT_HFSCR	(SFS-72)
49#define STACK_SLOT_AMR		(SFS-80)
50#define STACK_SLOT_UAMOR	(SFS-88)
51#define STACK_SLOT_FSCR		(SFS-96)
52
53/*
54 * Call kvmppc_hv_entry in real mode.
55 * Must be called with interrupts hard-disabled.
56 *
57 * Input Registers:
58 *
59 * LR = return address to continue at after eventually re-enabling MMU
60 */
61_GLOBAL_TOC(kvmppc_hv_entry_trampoline)
62	mflr	r0
63	std	r0, PPC_LR_STKOFF(r1)
64	stdu	r1, -112(r1)
65	mfmsr	r10
66	std	r10, HSTATE_HOST_MSR(r13)
67	LOAD_REG_ADDR(r5, kvmppc_call_hv_entry)
68	li	r0,MSR_RI
69	andc	r0,r10,r0
70	li	r6,MSR_IR | MSR_DR
71	andc	r6,r10,r6
72	mtmsrd	r0,1		/* clear RI in MSR */
73	mtsrr0	r5
74	mtsrr1	r6
75	RFI_TO_KERNEL
76
77kvmppc_call_hv_entry:
78	ld	r4, HSTATE_KVM_VCPU(r13)
79	bl	kvmppc_hv_entry
80
81	/* Back from guest - restore host state and return to caller */
82
83BEGIN_FTR_SECTION
84	/* Restore host DABR and DABRX */
85	ld	r5,HSTATE_DABR(r13)
86	li	r6,7
87	mtspr	SPRN_DABR,r5
88	mtspr	SPRN_DABRX,r6
89END_FTR_SECTION_IFCLR(CPU_FTR_ARCH_207S)
90
91	/* Restore SPRG3 */
92	ld	r3,PACA_SPRG_VDSO(r13)
93	mtspr	SPRN_SPRG_VDSO_WRITE,r3
94
95	/* Reload the host's PMU registers */
96	bl	kvmhv_load_host_pmu
97
98	/*
99	 * Reload DEC.  HDEC interrupts were disabled when
100	 * we reloaded the host's LPCR value.
101	 */
102	ld	r3, HSTATE_DECEXP(r13)
103	mftb	r4
104	subf	r4, r4, r3
105	mtspr	SPRN_DEC, r4
106
107	/* hwthread_req may have got set by cede or no vcpu, so clear it */
108	li	r0, 0
109	stb	r0, HSTATE_HWTHREAD_REQ(r13)
110
111	/*
112	 * For external interrupts we need to call the Linux
113	 * handler to process the interrupt. We do that by jumping
114	 * to absolute address 0x500 for external interrupts.
115	 * The [h]rfid at the end of the handler will return to
116	 * the book3s_hv_interrupts.S code. For other interrupts
117	 * we do the rfid to get back to the book3s_hv_interrupts.S
118	 * code here.
119	 */
120	ld	r8, 112+PPC_LR_STKOFF(r1)
121	addi	r1, r1, 112
122	ld	r7, HSTATE_HOST_MSR(r13)
123
124	/* Return the trap number on this thread as the return value */
125	mr	r3, r12
126
127	/* RFI into the highmem handler */
128	mfmsr	r6
129	li	r0, MSR_RI
130	andc	r6, r6, r0
131	mtmsrd	r6, 1			/* Clear RI in MSR */
132	mtsrr0	r8
133	mtsrr1	r7
134	RFI_TO_KERNEL
135
136kvmppc_primary_no_guest:
137	/* We handle this much like a ceded vcpu */
138	/* put the HDEC into the DEC, since HDEC interrupts don't wake us */
139	/* HDEC may be larger than DEC for arch >= v3.00, but since the */
140	/* HDEC value came from DEC in the first place, it will fit */
141	mfspr	r3, SPRN_HDEC
142	mtspr	SPRN_DEC, r3
143	/*
144	 * Make sure the primary has finished the MMU switch.
145	 * We should never get here on a secondary thread, but
146	 * check it for robustness' sake.
147	 */
148	ld	r5, HSTATE_KVM_VCORE(r13)
14965:	lbz	r0, VCORE_IN_GUEST(r5)
150	cmpwi	r0, 0
151	beq	65b
152	/* Set LPCR. */
153	ld	r8,VCORE_LPCR(r5)
154	mtspr	SPRN_LPCR,r8
155	isync
156	/* set our bit in napping_threads */
157	ld	r5, HSTATE_KVM_VCORE(r13)
158	lbz	r7, HSTATE_PTID(r13)
159	li	r0, 1
160	sld	r0, r0, r7
161	addi	r6, r5, VCORE_NAPPING_THREADS
1621:	lwarx	r3, 0, r6
163	or	r3, r3, r0
164	stwcx.	r3, 0, r6
165	bne	1b
166	/* order napping_threads update vs testing entry_exit_map */
167	isync
168	li	r12, 0
169	lwz	r7, VCORE_ENTRY_EXIT(r5)
170	cmpwi	r7, 0x100
171	bge	kvm_novcpu_exit	/* another thread already exiting */
172	li	r3, NAPPING_NOVCPU
173	stb	r3, HSTATE_NAPPING(r13)
174
175	li	r3, 0		/* Don't wake on privileged (OS) doorbell */
176	b	kvm_do_nap
177
178/*
179 * kvm_novcpu_wakeup
180 *	Entered from kvm_start_guest if kvm_hstate.napping is set
181 *	to NAPPING_NOVCPU
182 *		r2 = kernel TOC
183 *		r13 = paca
184 */
185kvm_novcpu_wakeup:
186	ld	r1, HSTATE_HOST_R1(r13)
187	ld	r5, HSTATE_KVM_VCORE(r13)
188	li	r0, 0
189	stb	r0, HSTATE_NAPPING(r13)
190
191	/* check the wake reason */
192	bl	kvmppc_check_wake_reason
193
194	/*
195	 * Restore volatile registers since we could have called
196	 * a C routine in kvmppc_check_wake_reason.
197	 *	r5 = VCORE
198	 */
199	ld	r5, HSTATE_KVM_VCORE(r13)
200
201	/* see if any other thread is already exiting */
202	lwz	r0, VCORE_ENTRY_EXIT(r5)
203	cmpwi	r0, 0x100
204	bge	kvm_novcpu_exit
205
206	/* clear our bit in napping_threads */
207	lbz	r7, HSTATE_PTID(r13)
208	li	r0, 1
209	sld	r0, r0, r7
210	addi	r6, r5, VCORE_NAPPING_THREADS
2114:	lwarx	r7, 0, r6
212	andc	r7, r7, r0
213	stwcx.	r7, 0, r6
214	bne	4b
215
216	/* See if the wake reason means we need to exit */
217	cmpdi	r3, 0
218	bge	kvm_novcpu_exit
219
220	/* See if our timeslice has expired (HDEC is negative) */
221	mfspr	r0, SPRN_HDEC
222	extsw	r0, r0
223	li	r12, BOOK3S_INTERRUPT_HV_DECREMENTER
224	cmpdi	r0, 0
225	blt	kvm_novcpu_exit
226
227	/* Got an IPI but other vcpus aren't yet exiting, must be a latecomer */
228	ld	r4, HSTATE_KVM_VCPU(r13)
229	cmpdi	r4, 0
230	beq	kvmppc_primary_no_guest
231
232#ifdef CONFIG_KVM_BOOK3S_HV_EXIT_TIMING
233	addi	r3, r4, VCPU_TB_RMENTRY
234	bl	kvmhv_start_timing
235#endif
236	b	kvmppc_got_guest
237
238kvm_novcpu_exit:
239#ifdef CONFIG_KVM_BOOK3S_HV_EXIT_TIMING
240	ld	r4, HSTATE_KVM_VCPU(r13)
241	cmpdi	r4, 0
242	beq	13f
243	addi	r3, r4, VCPU_TB_RMEXIT
244	bl	kvmhv_accumulate_time
245#endif
24613:	mr	r3, r12
247	stw	r12, STACK_SLOT_TRAP(r1)
248	bl	kvmhv_commence_exit
249	nop
250	b	kvmhv_switch_to_host
251
252/*
253 * We come in here when wakened from Linux offline idle code.
254 * Relocation is off
255 * r3 contains the SRR1 wakeup value, SRR1 is trashed.
256 */
257_GLOBAL(idle_kvm_start_guest)
258	mfcr	r5
259	mflr	r0
260	std	r5, 8(r1)	// Save CR in caller's frame
261	std	r0, 16(r1)	// Save LR in caller's frame
262	// Create frame on emergency stack
263	ld	r4, PACAEMERGSP(r13)
264	stdu	r1, -SWITCH_FRAME_SIZE(r4)
265	// Switch to new frame on emergency stack
266	mr	r1, r4
267	std	r3, 32(r1)	// Save SRR1 wakeup value
268	SAVE_NVGPRS(r1)
269
270	/*
271	 * Could avoid this and pass it through in r3. For now,
272	 * code expects it to be in SRR1.
273	 */
274	mtspr	SPRN_SRR1,r3
275
276	li	r0,0
277	stb	r0,PACA_FTRACE_ENABLED(r13)
278
279	li	r0,KVM_HWTHREAD_IN_KVM
280	stb	r0,HSTATE_HWTHREAD_STATE(r13)
281
282	/* kvm cede / napping does not come through here */
283	lbz	r0,HSTATE_NAPPING(r13)
284	twnei	r0,0
285
286	b	1f
287
288kvm_unsplit_wakeup:
289	li	r0, 0
290	stb	r0, HSTATE_NAPPING(r13)
291
2921:
293
294	/*
295	 * We weren't napping due to cede, so this must be a secondary
296	 * thread being woken up to run a guest, or being woken up due
297	 * to a stray IPI.  (Or due to some machine check or hypervisor
298	 * maintenance interrupt while the core is in KVM.)
299	 */
300
301	/* Check the wake reason in SRR1 to see why we got here */
302	bl	kvmppc_check_wake_reason
303	/*
304	 * kvmppc_check_wake_reason could invoke a C routine, but we
305	 * have no volatile registers to restore when we return.
306	 */
307
308	cmpdi	r3, 0
309	bge	kvm_no_guest
310
311	/* get vcore pointer, NULL if we have nothing to run */
312	ld	r5,HSTATE_KVM_VCORE(r13)
313	cmpdi	r5,0
314	/* if we have no vcore to run, go back to sleep */
315	beq	kvm_no_guest
316
317kvm_secondary_got_guest:
318
319	// About to go to guest, clear saved SRR1
320	li	r0, 0
321	std	r0, 32(r1)
322
323	/* Set HSTATE_DSCR(r13) to something sensible */
324	ld	r6, PACA_DSCR_DEFAULT(r13)
325	std	r6, HSTATE_DSCR(r13)
326
327	/* On thread 0 of a subcore, set HDEC to max */
328	lbz	r4, HSTATE_PTID(r13)
329	cmpwi	r4, 0
330	bne	63f
331	lis	r6,0x7fff		/* MAX_INT@h */
332	mtspr	SPRN_HDEC, r6
333	/* and set per-LPAR registers, if doing dynamic micro-threading */
334	ld	r6, HSTATE_SPLIT_MODE(r13)
335	cmpdi	r6, 0
336	beq	63f
337	ld	r0, KVM_SPLIT_RPR(r6)
338	mtspr	SPRN_RPR, r0
339	ld	r0, KVM_SPLIT_PMMAR(r6)
340	mtspr	SPRN_PMMAR, r0
341	ld	r0, KVM_SPLIT_LDBAR(r6)
342	mtspr	SPRN_LDBAR, r0
343	isync
34463:
345	/* Order load of vcpu after load of vcore */
346	lwsync
347	ld	r4, HSTATE_KVM_VCPU(r13)
348	bl	kvmppc_hv_entry
349
350	/* Back from the guest, go back to nap */
351	/* Clear our vcpu and vcore pointers so we don't come back in early */
352	li	r0, 0
353	std	r0, HSTATE_KVM_VCPU(r13)
354	/*
355	 * Once we clear HSTATE_KVM_VCORE(r13), the code in
356	 * kvmppc_run_core() is going to assume that all our vcpu
357	 * state is visible in memory.  This lwsync makes sure
358	 * that that is true.
359	 */
360	lwsync
361	std	r0, HSTATE_KVM_VCORE(r13)
362
363	/*
364	 * All secondaries exiting guest will fall through this path.
365	 * Before proceeding, just check for HMI interrupt and
366	 * invoke opal hmi handler. By now we are sure that the
367	 * primary thread on this core/subcore has already made partition
368	 * switch/TB resync and we are good to call opal hmi handler.
369	 */
370	cmpwi	r12, BOOK3S_INTERRUPT_HMI
371	bne	kvm_no_guest
372
373	li	r3,0			/* NULL argument */
374	bl	hmi_exception_realmode
375/*
376 * At this point we have finished executing in the guest.
377 * We need to wait for hwthread_req to become zero, since
378 * we may not turn on the MMU while hwthread_req is non-zero.
379 * While waiting we also need to check if we get given a vcpu to run.
380 */
381kvm_no_guest:
382	lbz	r3, HSTATE_HWTHREAD_REQ(r13)
383	cmpwi	r3, 0
384	bne	53f
385	HMT_MEDIUM
386	li	r0, KVM_HWTHREAD_IN_KERNEL
387	stb	r0, HSTATE_HWTHREAD_STATE(r13)
388	/* need to recheck hwthread_req after a barrier, to avoid race */
389	sync
390	lbz	r3, HSTATE_HWTHREAD_REQ(r13)
391	cmpwi	r3, 0
392	bne	54f
393
394	/*
395	 * Jump to idle_return_gpr_loss, which returns to the
396	 * idle_kvm_start_guest caller.
397	 */
398	li	r3, LPCR_PECE0
399	mfspr	r4, SPRN_LPCR
400	rlwimi	r4, r3, 0, LPCR_PECE0 | LPCR_PECE1
401	mtspr	SPRN_LPCR, r4
402	// Return SRR1 wakeup value, or 0 if we went into the guest
403	ld	r3, 32(r1)
404	REST_NVGPRS(r1)
405	ld	r1, 0(r1)	// Switch back to caller stack
406	ld	r0, 16(r1)	// Reload LR
407	ld	r5, 8(r1)	// Reload CR
408	mtlr	r0
409	mtcr	r5
410	blr
411
41253:
413	HMT_LOW
414	ld	r5, HSTATE_KVM_VCORE(r13)
415	cmpdi	r5, 0
416	bne	60f
417	ld	r3, HSTATE_SPLIT_MODE(r13)
418	cmpdi	r3, 0
419	beq	kvm_no_guest
420	lbz	r0, KVM_SPLIT_DO_NAP(r3)
421	cmpwi	r0, 0
422	beq	kvm_no_guest
423	HMT_MEDIUM
424	b	kvm_unsplit_nap
42560:	HMT_MEDIUM
426	b	kvm_secondary_got_guest
427
42854:	li	r0, KVM_HWTHREAD_IN_KVM
429	stb	r0, HSTATE_HWTHREAD_STATE(r13)
430	b	kvm_no_guest
431
432/*
433 * Here the primary thread is trying to return the core to
434 * whole-core mode, so we need to nap.
435 */
436kvm_unsplit_nap:
437	/*
438	 * When secondaries are napping in kvm_unsplit_nap() with
439	 * hwthread_req = 1, HMI goes ignored even though subcores are
440	 * already exited the guest. Hence HMI keeps waking up secondaries
441	 * from nap in a loop and secondaries always go back to nap since
442	 * no vcore is assigned to them. This makes impossible for primary
443	 * thread to get hold of secondary threads resulting into a soft
444	 * lockup in KVM path.
445	 *
446	 * Let us check if HMI is pending and handle it before we go to nap.
447	 */
448	cmpwi	r12, BOOK3S_INTERRUPT_HMI
449	bne	55f
450	li	r3, 0			/* NULL argument */
451	bl	hmi_exception_realmode
45255:
453	/*
454	 * Ensure that secondary doesn't nap when it has
455	 * its vcore pointer set.
456	 */
457	sync		/* matches smp_mb() before setting split_info.do_nap */
458	ld	r0, HSTATE_KVM_VCORE(r13)
459	cmpdi	r0, 0
460	bne	kvm_no_guest
461	/* clear any pending message */
462BEGIN_FTR_SECTION
463	lis	r6, (PPC_DBELL_SERVER << (63-36))@h
464	PPC_MSGCLR(6)
465END_FTR_SECTION_IFSET(CPU_FTR_ARCH_207S)
466	/* Set kvm_split_mode.napped[tid] = 1 */
467	ld	r3, HSTATE_SPLIT_MODE(r13)
468	li	r0, 1
469	lhz	r4, PACAPACAINDEX(r13)
470	clrldi	r4, r4, 61	/* micro-threading => P8 => 8 threads/core */
471	addi	r4, r4, KVM_SPLIT_NAPPED
472	stbx	r0, r3, r4
473	/* Check the do_nap flag again after setting napped[] */
474	sync
475	lbz	r0, KVM_SPLIT_DO_NAP(r3)
476	cmpwi	r0, 0
477	beq	57f
478	li	r3, NAPPING_UNSPLIT
479	stb	r3, HSTATE_NAPPING(r13)
480	li	r3, (LPCR_PECEDH | LPCR_PECE0) >> 4
481	mfspr	r5, SPRN_LPCR
482	rlwimi	r5, r3, 4, (LPCR_PECEDP | LPCR_PECEDH | LPCR_PECE0 | LPCR_PECE1)
483	b	kvm_nap_sequence
484
48557:	li	r0, 0
486	stbx	r0, r3, r4
487	b	kvm_no_guest
488
489/******************************************************************************
490 *                                                                            *
491 *                               Entry code                                   *
492 *                                                                            *
493 *****************************************************************************/
494
495.global kvmppc_hv_entry
496kvmppc_hv_entry:
497
498	/* Required state:
499	 *
500	 * R4 = vcpu pointer (or NULL)
501	 * MSR = ~IR|DR
502	 * R13 = PACA
503	 * R1 = host R1
504	 * R2 = TOC
505	 * all other volatile GPRS = free
506	 * Does not preserve non-volatile GPRs or CR fields
507	 */
508	mflr	r0
509	std	r0, PPC_LR_STKOFF(r1)
510	stdu	r1, -SFS(r1)
511
512	/* Save R1 in the PACA */
513	std	r1, HSTATE_HOST_R1(r13)
514
515	li	r6, KVM_GUEST_MODE_HOST_HV
516	stb	r6, HSTATE_IN_GUEST(r13)
517
518#ifdef CONFIG_KVM_BOOK3S_HV_EXIT_TIMING
519	/* Store initial timestamp */
520	cmpdi	r4, 0
521	beq	1f
522	addi	r3, r4, VCPU_TB_RMENTRY
523	bl	kvmhv_start_timing
5241:
525#endif
526
527	ld	r5, HSTATE_KVM_VCORE(r13)
528	ld	r9, VCORE_KVM(r5)	/* pointer to struct kvm */
529
530	/*
531	 * POWER7/POWER8 host -> guest partition switch code.
532	 * We don't have to lock against concurrent tlbies,
533	 * but we do have to coordinate across hardware threads.
534	 */
535	/* Set bit in entry map iff exit map is zero. */
536	li	r7, 1
537	lbz	r6, HSTATE_PTID(r13)
538	sld	r7, r7, r6
539	addi	r8, r5, VCORE_ENTRY_EXIT
54021:	lwarx	r3, 0, r8
541	cmpwi	r3, 0x100		/* any threads starting to exit? */
542	bge	secondary_too_late	/* if so we're too late to the party */
543	or	r3, r3, r7
544	stwcx.	r3, 0, r8
545	bne	21b
546
547	/* Primary thread switches to guest partition. */
548	cmpwi	r6,0
549	bne	10f
550
551	lwz	r7,KVM_LPID(r9)
552	ld	r6,KVM_SDR1(r9)
553	li	r0,LPID_RSVD		/* switch to reserved LPID */
554	mtspr	SPRN_LPID,r0
555	ptesync
556	mtspr	SPRN_SDR1,r6		/* switch to partition page table */
557	mtspr	SPRN_LPID,r7
558	isync
559
560	/* See if we need to flush the TLB. */
561	mr	r3, r9			/* kvm pointer */
562	lhz	r4, PACAPACAINDEX(r13)	/* physical cpu number */
563	li	r5, 0			/* nested vcpu pointer */
564	bl	kvmppc_check_need_tlb_flush
565	nop
566	ld	r5, HSTATE_KVM_VCORE(r13)
567
568	/* Add timebase offset onto timebase */
56922:	ld	r8,VCORE_TB_OFFSET(r5)
570	cmpdi	r8,0
571	beq	37f
572	std	r8, VCORE_TB_OFFSET_APPL(r5)
573	mftb	r6		/* current host timebase */
574	add	r8,r8,r6
575	mtspr	SPRN_TBU40,r8	/* update upper 40 bits */
576	mftb	r7		/* check if lower 24 bits overflowed */
577	clrldi	r6,r6,40
578	clrldi	r7,r7,40
579	cmpld	r7,r6
580	bge	37f
581	addis	r8,r8,0x100	/* if so, increment upper 40 bits */
582	mtspr	SPRN_TBU40,r8
583
584	/* Load guest PCR value to select appropriate compat mode */
58537:	ld	r7, VCORE_PCR(r5)
586	LOAD_REG_IMMEDIATE(r6, PCR_MASK)
587	cmpld	r7, r6
588	beq	38f
589	or	r7, r7, r6
590	mtspr	SPRN_PCR, r7
59138:
592
593BEGIN_FTR_SECTION
594	/* DPDES and VTB are shared between threads */
595	ld	r8, VCORE_DPDES(r5)
596	ld	r7, VCORE_VTB(r5)
597	mtspr	SPRN_DPDES, r8
598	mtspr	SPRN_VTB, r7
599END_FTR_SECTION_IFSET(CPU_FTR_ARCH_207S)
600
601	/* Mark the subcore state as inside guest */
602	bl	kvmppc_subcore_enter_guest
603	nop
604	ld	r5, HSTATE_KVM_VCORE(r13)
605	ld	r4, HSTATE_KVM_VCPU(r13)
606	li	r0,1
607	stb	r0,VCORE_IN_GUEST(r5)	/* signal secondaries to continue */
608
609	/* Do we have a guest vcpu to run? */
61010:	cmpdi	r4, 0
611	beq	kvmppc_primary_no_guest
612kvmppc_got_guest:
613	/* Increment yield count if they have a VPA */
614	ld	r3, VCPU_VPA(r4)
615	cmpdi	r3, 0
616	beq	25f
617	li	r6, LPPACA_YIELDCOUNT
618	LWZX_BE	r5, r3, r6
619	addi	r5, r5, 1
620	STWX_BE	r5, r3, r6
621	li	r6, 1
622	stb	r6, VCPU_VPA_DIRTY(r4)
62325:
624
625	/* Save purr/spurr */
626	mfspr	r5,SPRN_PURR
627	mfspr	r6,SPRN_SPURR
628	std	r5,HSTATE_PURR(r13)
629	std	r6,HSTATE_SPURR(r13)
630	ld	r7,VCPU_PURR(r4)
631	ld	r8,VCPU_SPURR(r4)
632	mtspr	SPRN_PURR,r7
633	mtspr	SPRN_SPURR,r8
634
635	/* Save host values of some registers */
636BEGIN_FTR_SECTION
637	mfspr	r5, SPRN_CIABR
638	mfspr	r6, SPRN_DAWR0
639	mfspr	r7, SPRN_DAWRX0
640	mfspr	r8, SPRN_IAMR
641	std	r5, STACK_SLOT_CIABR(r1)
642	std	r6, STACK_SLOT_DAWR0(r1)
643	std	r7, STACK_SLOT_DAWRX0(r1)
644	std	r8, STACK_SLOT_IAMR(r1)
645	mfspr	r5, SPRN_FSCR
646	std	r5, STACK_SLOT_FSCR(r1)
647END_FTR_SECTION_IFSET(CPU_FTR_ARCH_207S)
648
649	mfspr	r5, SPRN_AMR
650	std	r5, STACK_SLOT_AMR(r1)
651	mfspr	r6, SPRN_UAMOR
652	std	r6, STACK_SLOT_UAMOR(r1)
653
654BEGIN_FTR_SECTION
655	/* Set partition DABR */
656	/* Do this before re-enabling PMU to avoid P7 DABR corruption bug */
657	lwz	r5,VCPU_DABRX(r4)
658	ld	r6,VCPU_DABR(r4)
659	mtspr	SPRN_DABRX,r5
660	mtspr	SPRN_DABR,r6
661	isync
662END_FTR_SECTION_IFCLR(CPU_FTR_ARCH_207S)
663
664#ifdef CONFIG_PPC_TRANSACTIONAL_MEM
665BEGIN_FTR_SECTION
666	b	91f
667END_FTR_SECTION_IFCLR(CPU_FTR_TM)
668	/*
669	 * NOTE THAT THIS TRASHES ALL NON-VOLATILE REGISTERS (but not CR)
670	 */
671	mr      r3, r4
672	ld      r4, VCPU_MSR(r3)
673	li	r5, 0			/* don't preserve non-vol regs */
674	bl	kvmppc_restore_tm_hv
675	nop
676	ld	r4, HSTATE_KVM_VCPU(r13)
67791:
678#endif
679
680	/* Load guest PMU registers; r4 = vcpu pointer here */
681	mr	r3, r4
682	bl	kvmhv_load_guest_pmu
683
684	/* Load up FP, VMX and VSX registers */
685	ld	r4, HSTATE_KVM_VCPU(r13)
686	bl	kvmppc_load_fp
687
688	ld	r14, VCPU_GPR(R14)(r4)
689	ld	r15, VCPU_GPR(R15)(r4)
690	ld	r16, VCPU_GPR(R16)(r4)
691	ld	r17, VCPU_GPR(R17)(r4)
692	ld	r18, VCPU_GPR(R18)(r4)
693	ld	r19, VCPU_GPR(R19)(r4)
694	ld	r20, VCPU_GPR(R20)(r4)
695	ld	r21, VCPU_GPR(R21)(r4)
696	ld	r22, VCPU_GPR(R22)(r4)
697	ld	r23, VCPU_GPR(R23)(r4)
698	ld	r24, VCPU_GPR(R24)(r4)
699	ld	r25, VCPU_GPR(R25)(r4)
700	ld	r26, VCPU_GPR(R26)(r4)
701	ld	r27, VCPU_GPR(R27)(r4)
702	ld	r28, VCPU_GPR(R28)(r4)
703	ld	r29, VCPU_GPR(R29)(r4)
704	ld	r30, VCPU_GPR(R30)(r4)
705	ld	r31, VCPU_GPR(R31)(r4)
706
707	/* Switch DSCR to guest value */
708	ld	r5, VCPU_DSCR(r4)
709	mtspr	SPRN_DSCR, r5
710
711BEGIN_FTR_SECTION
712	/* Skip next section on POWER7 */
713	b	8f
714END_FTR_SECTION_IFCLR(CPU_FTR_ARCH_207S)
715	/* Load up POWER8-specific registers */
716	ld	r5, VCPU_IAMR(r4)
717	lwz	r6, VCPU_PSPB(r4)
718	ld	r7, VCPU_FSCR(r4)
719	mtspr	SPRN_IAMR, r5
720	mtspr	SPRN_PSPB, r6
721	mtspr	SPRN_FSCR, r7
722	/*
723	 * Handle broken DAWR case by not writing it. This means we
724	 * can still store the DAWR register for migration.
725	 */
726	LOAD_REG_ADDR(r5, dawr_force_enable)
727	lbz	r5, 0(r5)
728	cmpdi	r5, 0
729	beq	1f
730	ld	r5, VCPU_DAWR0(r4)
731	ld	r6, VCPU_DAWRX0(r4)
732	mtspr	SPRN_DAWR0, r5
733	mtspr	SPRN_DAWRX0, r6
7341:
735	ld	r7, VCPU_CIABR(r4)
736	ld	r8, VCPU_TAR(r4)
737	mtspr	SPRN_CIABR, r7
738	mtspr	SPRN_TAR, r8
739	ld	r5, VCPU_IC(r4)
740	ld	r8, VCPU_EBBHR(r4)
741	mtspr	SPRN_IC, r5
742	mtspr	SPRN_EBBHR, r8
743	ld	r5, VCPU_EBBRR(r4)
744	ld	r6, VCPU_BESCR(r4)
745	lwz	r7, VCPU_GUEST_PID(r4)
746	ld	r8, VCPU_WORT(r4)
747	mtspr	SPRN_EBBRR, r5
748	mtspr	SPRN_BESCR, r6
749	mtspr	SPRN_PID, r7
750	mtspr	SPRN_WORT, r8
751	/* POWER8-only registers */
752	ld	r5, VCPU_TCSCR(r4)
753	ld	r6, VCPU_ACOP(r4)
754	ld	r7, VCPU_CSIGR(r4)
755	ld	r8, VCPU_TACR(r4)
756	mtspr	SPRN_TCSCR, r5
757	mtspr	SPRN_ACOP, r6
758	mtspr	SPRN_CSIGR, r7
759	mtspr	SPRN_TACR, r8
760	nop
7618:
762
763	ld	r5, VCPU_SPRG0(r4)
764	ld	r6, VCPU_SPRG1(r4)
765	ld	r7, VCPU_SPRG2(r4)
766	ld	r8, VCPU_SPRG3(r4)
767	mtspr	SPRN_SPRG0, r5
768	mtspr	SPRN_SPRG1, r6
769	mtspr	SPRN_SPRG2, r7
770	mtspr	SPRN_SPRG3, r8
771
772	/* Load up DAR and DSISR */
773	ld	r5, VCPU_DAR(r4)
774	lwz	r6, VCPU_DSISR(r4)
775	mtspr	SPRN_DAR, r5
776	mtspr	SPRN_DSISR, r6
777
778	/* Restore AMR and UAMOR, set AMOR to all 1s */
779	ld	r5,VCPU_AMR(r4)
780	ld	r6,VCPU_UAMOR(r4)
781	li	r7,-1
782	mtspr	SPRN_AMR,r5
783	mtspr	SPRN_UAMOR,r6
784	mtspr	SPRN_AMOR,r7
785
786	/* Restore state of CTRL run bit; assume 1 on entry */
787	lwz	r5,VCPU_CTRL(r4)
788	andi.	r5,r5,1
789	bne	4f
790	mfspr	r6,SPRN_CTRLF
791	clrrdi	r6,r6,1
792	mtspr	SPRN_CTRLT,r6
7934:
794	/* Secondary threads wait for primary to have done partition switch */
795	ld	r5, HSTATE_KVM_VCORE(r13)
796	lbz	r6, HSTATE_PTID(r13)
797	cmpwi	r6, 0
798	beq	21f
799	lbz	r0, VCORE_IN_GUEST(r5)
800	cmpwi	r0, 0
801	bne	21f
802	HMT_LOW
80320:	lwz	r3, VCORE_ENTRY_EXIT(r5)
804	cmpwi	r3, 0x100
805	bge	no_switch_exit
806	lbz	r0, VCORE_IN_GUEST(r5)
807	cmpwi	r0, 0
808	beq	20b
809	HMT_MEDIUM
81021:
811	/* Set LPCR. */
812	ld	r8,VCORE_LPCR(r5)
813	mtspr	SPRN_LPCR,r8
814	isync
815
816	/*
817	 * Set the decrementer to the guest decrementer.
818	 */
819	ld	r8,VCPU_DEC_EXPIRES(r4)
820	/* r8 is a host timebase value here, convert to guest TB */
821	ld	r5,HSTATE_KVM_VCORE(r13)
822	ld	r6,VCORE_TB_OFFSET_APPL(r5)
823	add	r8,r8,r6
824	mftb	r7
825	subf	r3,r7,r8
826	mtspr	SPRN_DEC,r3
827
828	/* Check if HDEC expires soon */
829	mfspr	r3, SPRN_HDEC
830	extsw	r3, r3
831	cmpdi	r3, 512		/* 1 microsecond */
832	blt	hdec_soon
833
834	/* Clear out and reload the SLB */
835	li	r6, 0
836	slbmte	r6, r6
837	PPC_SLBIA(6)
838	ptesync
839
840	/* Load up guest SLB entries (N.B. slb_max will be 0 for radix) */
841	lwz	r5,VCPU_SLB_MAX(r4)
842	cmpwi	r5,0
843	beq	9f
844	mtctr	r5
845	addi	r6,r4,VCPU_SLB
8461:	ld	r8,VCPU_SLB_E(r6)
847	ld	r9,VCPU_SLB_V(r6)
848	slbmte	r9,r8
849	addi	r6,r6,VCPU_SLB_SIZE
850	bdnz	1b
8519:
852
853deliver_guest_interrupt:	/* r4 = vcpu, r13 = paca */
854	/* Check if we can deliver an external or decrementer interrupt now */
855	ld	r0, VCPU_PENDING_EXC(r4)
856	cmpdi	r0, 0
857	beq	71f
858	mr	r3, r4
859	bl	kvmppc_guest_entry_inject_int
860	ld	r4, HSTATE_KVM_VCPU(r13)
86171:
862	ld	r6, VCPU_SRR0(r4)
863	ld	r7, VCPU_SRR1(r4)
864	mtspr	SPRN_SRR0, r6
865	mtspr	SPRN_SRR1, r7
866
867	ld	r10, VCPU_PC(r4)
868	ld	r11, VCPU_MSR(r4)
869	/* r11 = vcpu->arch.msr & ~MSR_HV */
870	rldicl	r11, r11, 63 - MSR_HV_LG, 1
871	rotldi	r11, r11, 1 + MSR_HV_LG
872	ori	r11, r11, MSR_ME
873
874	ld	r6, VCPU_CTR(r4)
875	ld	r7, VCPU_XER(r4)
876	mtctr	r6
877	mtxer	r7
878
879/*
880 * Required state:
881 * R4 = vcpu
882 * R10: value for HSRR0
883 * R11: value for HSRR1
884 * R13 = PACA
885 */
886fast_guest_return:
887	li	r0,0
888	stb	r0,VCPU_CEDED(r4)	/* cancel cede */
889	mtspr	SPRN_HSRR0,r10
890	mtspr	SPRN_HSRR1,r11
891
892	/* Activate guest mode, so faults get handled by KVM */
893	li	r9, KVM_GUEST_MODE_GUEST_HV
894	stb	r9, HSTATE_IN_GUEST(r13)
895
896#ifdef CONFIG_KVM_BOOK3S_HV_EXIT_TIMING
897	/* Accumulate timing */
898	addi	r3, r4, VCPU_TB_GUEST
899	bl	kvmhv_accumulate_time
900#endif
901
902	/* Enter guest */
903
904BEGIN_FTR_SECTION
905	ld	r5, VCPU_CFAR(r4)
906	mtspr	SPRN_CFAR, r5
907END_FTR_SECTION_IFSET(CPU_FTR_CFAR)
908BEGIN_FTR_SECTION
909	ld	r0, VCPU_PPR(r4)
910END_FTR_SECTION_IFSET(CPU_FTR_HAS_PPR)
911
912	ld	r5, VCPU_LR(r4)
913	mtlr	r5
914
915	ld	r1, VCPU_GPR(R1)(r4)
916	ld	r5, VCPU_GPR(R5)(r4)
917	ld	r8, VCPU_GPR(R8)(r4)
918	ld	r9, VCPU_GPR(R9)(r4)
919	ld	r10, VCPU_GPR(R10)(r4)
920	ld	r11, VCPU_GPR(R11)(r4)
921	ld	r12, VCPU_GPR(R12)(r4)
922	ld	r13, VCPU_GPR(R13)(r4)
923
924BEGIN_FTR_SECTION
925	mtspr	SPRN_PPR, r0
926END_FTR_SECTION_IFSET(CPU_FTR_HAS_PPR)
927
928	ld	r6, VCPU_GPR(R6)(r4)
929	ld	r7, VCPU_GPR(R7)(r4)
930
931	ld	r0, VCPU_CR(r4)
932	mtcr	r0
933
934	ld	r0, VCPU_GPR(R0)(r4)
935	ld	r2, VCPU_GPR(R2)(r4)
936	ld	r3, VCPU_GPR(R3)(r4)
937	ld	r4, VCPU_GPR(R4)(r4)
938	HRFI_TO_GUEST
939	b	.
940
941secondary_too_late:
942	li	r12, 0
943	stw	r12, STACK_SLOT_TRAP(r1)
944	cmpdi	r4, 0
945	beq	11f
946	stw	r12, VCPU_TRAP(r4)
947#ifdef CONFIG_KVM_BOOK3S_HV_EXIT_TIMING
948	addi	r3, r4, VCPU_TB_RMEXIT
949	bl	kvmhv_accumulate_time
950#endif
95111:	b	kvmhv_switch_to_host
952
953no_switch_exit:
954	HMT_MEDIUM
955	li	r12, 0
956	b	12f
957hdec_soon:
958	li	r12, BOOK3S_INTERRUPT_HV_DECREMENTER
95912:	stw	r12, VCPU_TRAP(r4)
960	mr	r9, r4
961#ifdef CONFIG_KVM_BOOK3S_HV_EXIT_TIMING
962	addi	r3, r4, VCPU_TB_RMEXIT
963	bl	kvmhv_accumulate_time
964#endif
965	b	guest_bypass
966
967/******************************************************************************
968 *                                                                            *
969 *                               Exit code                                    *
970 *                                                                            *
971 *****************************************************************************/
972
973/*
974 * We come here from the first-level interrupt handlers.
975 */
976	.globl	kvmppc_interrupt_hv
977kvmppc_interrupt_hv:
978	/*
979	 * Register contents:
980	 * R9		= HSTATE_IN_GUEST
981	 * R12		= (guest CR << 32) | interrupt vector
982	 * R13		= PACA
983	 * guest R12 saved in shadow VCPU SCRATCH0
984	 * guest R13 saved in SPRN_SCRATCH0
985	 * guest R9 saved in HSTATE_SCRATCH2
986	 */
987	/* We're now back in the host but in guest MMU context */
988	cmpwi	r9,KVM_GUEST_MODE_HOST_HV
989	beq	kvmppc_bad_host_intr
990	li	r9, KVM_GUEST_MODE_HOST_HV
991	stb	r9, HSTATE_IN_GUEST(r13)
992
993	ld	r9, HSTATE_KVM_VCPU(r13)
994
995	/* Save registers */
996
997	std	r0, VCPU_GPR(R0)(r9)
998	std	r1, VCPU_GPR(R1)(r9)
999	std	r2, VCPU_GPR(R2)(r9)
1000	std	r3, VCPU_GPR(R3)(r9)
1001	std	r4, VCPU_GPR(R4)(r9)
1002	std	r5, VCPU_GPR(R5)(r9)
1003	std	r6, VCPU_GPR(R6)(r9)
1004	std	r7, VCPU_GPR(R7)(r9)
1005	std	r8, VCPU_GPR(R8)(r9)
1006	ld	r0, HSTATE_SCRATCH2(r13)
1007	std	r0, VCPU_GPR(R9)(r9)
1008	std	r10, VCPU_GPR(R10)(r9)
1009	std	r11, VCPU_GPR(R11)(r9)
1010	ld	r3, HSTATE_SCRATCH0(r13)
1011	std	r3, VCPU_GPR(R12)(r9)
1012	/* CR is in the high half of r12 */
1013	srdi	r4, r12, 32
1014	std	r4, VCPU_CR(r9)
1015BEGIN_FTR_SECTION
1016	ld	r3, HSTATE_CFAR(r13)
1017	std	r3, VCPU_CFAR(r9)
1018END_FTR_SECTION_IFSET(CPU_FTR_CFAR)
1019BEGIN_FTR_SECTION
1020	ld	r4, HSTATE_PPR(r13)
1021	std	r4, VCPU_PPR(r9)
1022END_FTR_SECTION_IFSET(CPU_FTR_HAS_PPR)
1023
1024	/* Restore R1/R2 so we can handle faults */
1025	ld	r1, HSTATE_HOST_R1(r13)
1026	ld	r2, PACATOC(r13)
1027
1028	mfspr	r10, SPRN_SRR0
1029	mfspr	r11, SPRN_SRR1
1030	std	r10, VCPU_SRR0(r9)
1031	std	r11, VCPU_SRR1(r9)
1032	/* trap is in the low half of r12, clear CR from the high half */
1033	clrldi	r12, r12, 32
1034	andi.	r0, r12, 2		/* need to read HSRR0/1? */
1035	beq	1f
1036	mfspr	r10, SPRN_HSRR0
1037	mfspr	r11, SPRN_HSRR1
1038	clrrdi	r12, r12, 2
10391:	std	r10, VCPU_PC(r9)
1040	std	r11, VCPU_MSR(r9)
1041
1042	GET_SCRATCH0(r3)
1043	mflr	r4
1044	std	r3, VCPU_GPR(R13)(r9)
1045	std	r4, VCPU_LR(r9)
1046
1047	stw	r12,VCPU_TRAP(r9)
1048
1049	/*
1050	 * Now that we have saved away SRR0/1 and HSRR0/1,
1051	 * interrupts are recoverable in principle, so set MSR_RI.
1052	 * This becomes important for relocation-on interrupts from
1053	 * the guest, which we can get in radix mode on POWER9.
1054	 */
1055	li	r0, MSR_RI
1056	mtmsrd	r0, 1
1057
1058#ifdef CONFIG_KVM_BOOK3S_HV_EXIT_TIMING
1059	addi	r3, r9, VCPU_TB_RMINTR
1060	mr	r4, r9
1061	bl	kvmhv_accumulate_time
1062	ld	r5, VCPU_GPR(R5)(r9)
1063	ld	r6, VCPU_GPR(R6)(r9)
1064	ld	r7, VCPU_GPR(R7)(r9)
1065	ld	r8, VCPU_GPR(R8)(r9)
1066#endif
1067
1068	/* Save HEIR (HV emulation assist reg) in emul_inst
1069	   if this is an HEI (HV emulation interrupt, e40) */
1070	li	r3,KVM_INST_FETCH_FAILED
1071	stw	r3,VCPU_LAST_INST(r9)
1072	cmpwi	r12,BOOK3S_INTERRUPT_H_EMUL_ASSIST
1073	bne	11f
1074	mfspr	r3,SPRN_HEIR
107511:	stw	r3,VCPU_HEIR(r9)
1076
1077	/* these are volatile across C function calls */
1078	mfctr	r3
1079	mfxer	r4
1080	std	r3, VCPU_CTR(r9)
1081	std	r4, VCPU_XER(r9)
1082
1083	/* Save more register state  */
1084	mfdar	r3
1085	mfdsisr	r4
1086	std	r3, VCPU_DAR(r9)
1087	stw	r4, VCPU_DSISR(r9)
1088
1089	/* If this is a page table miss then see if it's theirs or ours */
1090	cmpwi	r12, BOOK3S_INTERRUPT_H_DATA_STORAGE
1091	beq	kvmppc_hdsi
1092	std	r3, VCPU_FAULT_DAR(r9)
1093	stw	r4, VCPU_FAULT_DSISR(r9)
1094	cmpwi	r12, BOOK3S_INTERRUPT_H_INST_STORAGE
1095	beq	kvmppc_hisi
1096
1097	/* See if this is a leftover HDEC interrupt */
1098	cmpwi	r12,BOOK3S_INTERRUPT_HV_DECREMENTER
1099	bne	2f
1100	mfspr	r3,SPRN_HDEC
1101	extsw	r3, r3
1102	cmpdi	r3,0
1103	mr	r4,r9
1104	bge	fast_guest_return
11052:
1106	/* See if this is an hcall we can handle in real mode */
1107	cmpwi	r12,BOOK3S_INTERRUPT_SYSCALL
1108	beq	hcall_try_real_mode
1109
1110	/* Hypervisor doorbell - exit only if host IPI flag set */
1111	cmpwi	r12, BOOK3S_INTERRUPT_H_DOORBELL
1112	bne	3f
1113	lbz	r0, HSTATE_HOST_IPI(r13)
1114	cmpwi	r0, 0
1115	beq	maybe_reenter_guest
1116	b	guest_exit_cont
11173:
1118	/* If it's a hypervisor facility unavailable interrupt, save HFSCR */
1119	cmpwi	r12, BOOK3S_INTERRUPT_H_FAC_UNAVAIL
1120	bne	14f
1121	mfspr	r3, SPRN_HFSCR
1122	std	r3, VCPU_HFSCR(r9)
1123	b	guest_exit_cont
112414:
1125	/* External interrupt ? */
1126	cmpwi	r12, BOOK3S_INTERRUPT_EXTERNAL
1127	beq	kvmppc_guest_external
1128	/* See if it is a machine check */
1129	cmpwi	r12, BOOK3S_INTERRUPT_MACHINE_CHECK
1130	beq	machine_check_realmode
1131	/* Or a hypervisor maintenance interrupt */
1132	cmpwi	r12, BOOK3S_INTERRUPT_HMI
1133	beq	hmi_realmode
1134
1135guest_exit_cont:		/* r9 = vcpu, r12 = trap, r13 = paca */
1136
1137#ifdef CONFIG_KVM_BOOK3S_HV_EXIT_TIMING
1138	addi	r3, r9, VCPU_TB_RMEXIT
1139	mr	r4, r9
1140	bl	kvmhv_accumulate_time
1141#endif
1142
1143	/*
1144	 * Possibly flush the link stack here, before we do a blr in
1145	 * kvmhv_switch_to_host.
1146	 */
11471:	nop
1148	patch_site 1b patch__call_kvm_flush_link_stack
1149
1150	/* For hash guest, read the guest SLB and save it away */
1151	li	r5, 0
1152	lwz	r0,VCPU_SLB_NR(r9)	/* number of entries in SLB */
1153	mtctr	r0
1154	li	r6,0
1155	addi	r7,r9,VCPU_SLB
11561:	slbmfee	r8,r6
1157	andis.	r0,r8,SLB_ESID_V@h
1158	beq	2f
1159	add	r8,r8,r6		/* put index in */
1160	slbmfev	r3,r6
1161	std	r8,VCPU_SLB_E(r7)
1162	std	r3,VCPU_SLB_V(r7)
1163	addi	r7,r7,VCPU_SLB_SIZE
1164	addi	r5,r5,1
11652:	addi	r6,r6,1
1166	bdnz	1b
1167	/* Finally clear out the SLB */
1168	li	r0,0
1169	slbmte	r0,r0
1170	PPC_SLBIA(6)
1171	ptesync
1172	stw	r5,VCPU_SLB_MAX(r9)
1173
1174	/* load host SLB entries */
1175	ld	r8,PACA_SLBSHADOWPTR(r13)
1176
1177	.rept	SLB_NUM_BOLTED
1178	li	r3, SLBSHADOW_SAVEAREA
1179	LDX_BE	r5, r8, r3
1180	addi	r3, r3, 8
1181	LDX_BE	r6, r8, r3
1182	andis.	r7,r5,SLB_ESID_V@h
1183	beq	1f
1184	slbmte	r6,r5
11851:	addi	r8,r8,16
1186	.endr
1187
1188guest_bypass:
1189	stw	r12, STACK_SLOT_TRAP(r1)
1190
1191	/* Save DEC */
1192	/* Do this before kvmhv_commence_exit so we know TB is guest TB */
1193	ld	r3, HSTATE_KVM_VCORE(r13)
1194	mfspr	r5,SPRN_DEC
1195	mftb	r6
1196	extsw	r5,r5
119716:	add	r5,r5,r6
1198	/* r5 is a guest timebase value here, convert to host TB */
1199	ld	r4,VCORE_TB_OFFSET_APPL(r3)
1200	subf	r5,r4,r5
1201	std	r5,VCPU_DEC_EXPIRES(r9)
1202
1203	/* Increment exit count, poke other threads to exit */
1204	mr 	r3, r12
1205	bl	kvmhv_commence_exit
1206	nop
1207	ld	r9, HSTATE_KVM_VCPU(r13)
1208
1209	/* Stop others sending VCPU interrupts to this physical CPU */
1210	li	r0, -1
1211	stw	r0, VCPU_CPU(r9)
1212	stw	r0, VCPU_THREAD_CPU(r9)
1213
1214	/* Save guest CTRL register, set runlatch to 1 */
1215	mfspr	r6,SPRN_CTRLF
1216	stw	r6,VCPU_CTRL(r9)
1217	andi.	r0,r6,1
1218	bne	4f
1219	ori	r6,r6,1
1220	mtspr	SPRN_CTRLT,r6
12214:
1222	/*
1223	 * Save the guest PURR/SPURR
1224	 */
1225	mfspr	r5,SPRN_PURR
1226	mfspr	r6,SPRN_SPURR
1227	ld	r7,VCPU_PURR(r9)
1228	ld	r8,VCPU_SPURR(r9)
1229	std	r5,VCPU_PURR(r9)
1230	std	r6,VCPU_SPURR(r9)
1231	subf	r5,r7,r5
1232	subf	r6,r8,r6
1233
1234	/*
1235	 * Restore host PURR/SPURR and add guest times
1236	 * so that the time in the guest gets accounted.
1237	 */
1238	ld	r3,HSTATE_PURR(r13)
1239	ld	r4,HSTATE_SPURR(r13)
1240	add	r3,r3,r5
1241	add	r4,r4,r6
1242	mtspr	SPRN_PURR,r3
1243	mtspr	SPRN_SPURR,r4
1244
1245BEGIN_FTR_SECTION
1246	b	8f
1247END_FTR_SECTION_IFCLR(CPU_FTR_ARCH_207S)
1248	/* Save POWER8-specific registers */
1249	mfspr	r5, SPRN_IAMR
1250	mfspr	r6, SPRN_PSPB
1251	mfspr	r7, SPRN_FSCR
1252	std	r5, VCPU_IAMR(r9)
1253	stw	r6, VCPU_PSPB(r9)
1254	std	r7, VCPU_FSCR(r9)
1255	mfspr	r5, SPRN_IC
1256	mfspr	r7, SPRN_TAR
1257	std	r5, VCPU_IC(r9)
1258	std	r7, VCPU_TAR(r9)
1259	mfspr	r8, SPRN_EBBHR
1260	std	r8, VCPU_EBBHR(r9)
1261	mfspr	r5, SPRN_EBBRR
1262	mfspr	r6, SPRN_BESCR
1263	mfspr	r7, SPRN_PID
1264	mfspr	r8, SPRN_WORT
1265	std	r5, VCPU_EBBRR(r9)
1266	std	r6, VCPU_BESCR(r9)
1267	stw	r7, VCPU_GUEST_PID(r9)
1268	std	r8, VCPU_WORT(r9)
1269	mfspr	r5, SPRN_TCSCR
1270	mfspr	r6, SPRN_ACOP
1271	mfspr	r7, SPRN_CSIGR
1272	mfspr	r8, SPRN_TACR
1273	std	r5, VCPU_TCSCR(r9)
1274	std	r6, VCPU_ACOP(r9)
1275	std	r7, VCPU_CSIGR(r9)
1276	std	r8, VCPU_TACR(r9)
1277BEGIN_FTR_SECTION
1278	ld	r5, STACK_SLOT_FSCR(r1)
1279	mtspr	SPRN_FSCR, r5
1280END_FTR_SECTION_IFSET(CPU_FTR_ARCH_207S)
1281	/*
1282	 * Restore various registers to 0, where non-zero values
1283	 * set by the guest could disrupt the host.
1284	 */
1285	li	r0, 0
1286	mtspr	SPRN_PSPB, r0
1287	mtspr	SPRN_WORT, r0
1288	mtspr	SPRN_TCSCR, r0
1289	/* Set MMCRS to 1<<31 to freeze and disable the SPMC counters */
1290	li	r0, 1
1291	sldi	r0, r0, 31
1292	mtspr	SPRN_MMCRS, r0
1293
1294	/* Save and restore AMR, IAMR and UAMOR before turning on the MMU */
1295	ld	r8, STACK_SLOT_IAMR(r1)
1296	mtspr	SPRN_IAMR, r8
1297
12988:	/* Power7 jumps back in here */
1299	mfspr	r5,SPRN_AMR
1300	mfspr	r6,SPRN_UAMOR
1301	std	r5,VCPU_AMR(r9)
1302	std	r6,VCPU_UAMOR(r9)
1303	ld	r5,STACK_SLOT_AMR(r1)
1304	ld	r6,STACK_SLOT_UAMOR(r1)
1305	mtspr	SPRN_AMR, r5
1306	mtspr	SPRN_UAMOR, r6
1307
1308	/* Switch DSCR back to host value */
1309	mfspr	r8, SPRN_DSCR
1310	ld	r7, HSTATE_DSCR(r13)
1311	std	r8, VCPU_DSCR(r9)
1312	mtspr	SPRN_DSCR, r7
1313
1314	/* Save non-volatile GPRs */
1315	std	r14, VCPU_GPR(R14)(r9)
1316	std	r15, VCPU_GPR(R15)(r9)
1317	std	r16, VCPU_GPR(R16)(r9)
1318	std	r17, VCPU_GPR(R17)(r9)
1319	std	r18, VCPU_GPR(R18)(r9)
1320	std	r19, VCPU_GPR(R19)(r9)
1321	std	r20, VCPU_GPR(R20)(r9)
1322	std	r21, VCPU_GPR(R21)(r9)
1323	std	r22, VCPU_GPR(R22)(r9)
1324	std	r23, VCPU_GPR(R23)(r9)
1325	std	r24, VCPU_GPR(R24)(r9)
1326	std	r25, VCPU_GPR(R25)(r9)
1327	std	r26, VCPU_GPR(R26)(r9)
1328	std	r27, VCPU_GPR(R27)(r9)
1329	std	r28, VCPU_GPR(R28)(r9)
1330	std	r29, VCPU_GPR(R29)(r9)
1331	std	r30, VCPU_GPR(R30)(r9)
1332	std	r31, VCPU_GPR(R31)(r9)
1333
1334	/* Save SPRGs */
1335	mfspr	r3, SPRN_SPRG0
1336	mfspr	r4, SPRN_SPRG1
1337	mfspr	r5, SPRN_SPRG2
1338	mfspr	r6, SPRN_SPRG3
1339	std	r3, VCPU_SPRG0(r9)
1340	std	r4, VCPU_SPRG1(r9)
1341	std	r5, VCPU_SPRG2(r9)
1342	std	r6, VCPU_SPRG3(r9)
1343
1344	/* save FP state */
1345	mr	r3, r9
1346	bl	kvmppc_save_fp
1347
1348#ifdef CONFIG_PPC_TRANSACTIONAL_MEM
1349BEGIN_FTR_SECTION
1350	b	91f
1351END_FTR_SECTION_IFCLR(CPU_FTR_TM)
1352	/*
1353	 * NOTE THAT THIS TRASHES ALL NON-VOLATILE REGISTERS (but not CR)
1354	 */
1355	mr      r3, r9
1356	ld      r4, VCPU_MSR(r3)
1357	li	r5, 0			/* don't preserve non-vol regs */
1358	bl	kvmppc_save_tm_hv
1359	nop
1360	ld	r9, HSTATE_KVM_VCPU(r13)
136191:
1362#endif
1363
1364	/* Increment yield count if they have a VPA */
1365	ld	r8, VCPU_VPA(r9)	/* do they have a VPA? */
1366	cmpdi	r8, 0
1367	beq	25f
1368	li	r4, LPPACA_YIELDCOUNT
1369	LWZX_BE	r3, r8, r4
1370	addi	r3, r3, 1
1371	STWX_BE	r3, r8, r4
1372	li	r3, 1
1373	stb	r3, VCPU_VPA_DIRTY(r9)
137425:
1375	/* Save PMU registers if requested */
1376	/* r8 and cr0.eq are live here */
1377	mr	r3, r9
1378	li	r4, 1
1379	beq	21f			/* if no VPA, save PMU stuff anyway */
1380	lbz	r4, LPPACA_PMCINUSE(r8)
138121:	bl	kvmhv_save_guest_pmu
1382	ld	r9, HSTATE_KVM_VCPU(r13)
1383
1384	/* Restore host values of some registers */
1385BEGIN_FTR_SECTION
1386	ld	r5, STACK_SLOT_CIABR(r1)
1387	ld	r6, STACK_SLOT_DAWR0(r1)
1388	ld	r7, STACK_SLOT_DAWRX0(r1)
1389	mtspr	SPRN_CIABR, r5
1390	/*
1391	 * If the DAWR doesn't work, it's ok to write these here as
1392	 * this value should always be zero
1393	*/
1394	mtspr	SPRN_DAWR0, r6
1395	mtspr	SPRN_DAWRX0, r7
1396END_FTR_SECTION_IFSET(CPU_FTR_ARCH_207S)
1397
1398	/*
1399	 * POWER7/POWER8 guest -> host partition switch code.
1400	 * We don't have to lock against tlbies but we do
1401	 * have to coordinate the hardware threads.
1402	 * Here STACK_SLOT_TRAP(r1) contains the trap number.
1403	 */
1404kvmhv_switch_to_host:
1405	/* Secondary threads wait for primary to do partition switch */
1406	ld	r5,HSTATE_KVM_VCORE(r13)
1407	ld	r4,VCORE_KVM(r5)	/* pointer to struct kvm */
1408	lbz	r3,HSTATE_PTID(r13)
1409	cmpwi	r3,0
1410	beq	15f
1411	HMT_LOW
141213:	lbz	r3,VCORE_IN_GUEST(r5)
1413	cmpwi	r3,0
1414	bne	13b
1415	HMT_MEDIUM
1416	b	16f
1417
1418	/* Primary thread waits for all the secondaries to exit guest */
141915:	lwz	r3,VCORE_ENTRY_EXIT(r5)
1420	rlwinm	r0,r3,32-8,0xff
1421	clrldi	r3,r3,56
1422	cmpw	r3,r0
1423	bne	15b
1424	isync
1425
1426	/* Did we actually switch to the guest at all? */
1427	lbz	r6, VCORE_IN_GUEST(r5)
1428	cmpwi	r6, 0
1429	beq	19f
1430
1431	/* Primary thread switches back to host partition */
1432	lwz	r7,KVM_HOST_LPID(r4)
1433	ld	r6,KVM_HOST_SDR1(r4)
1434	li	r8,LPID_RSVD		/* switch to reserved LPID */
1435	mtspr	SPRN_LPID,r8
1436	ptesync
1437	mtspr	SPRN_SDR1,r6		/* switch to host page table */
1438	mtspr	SPRN_LPID,r7
1439	isync
1440
1441BEGIN_FTR_SECTION
1442	/* DPDES and VTB are shared between threads */
1443	mfspr	r7, SPRN_DPDES
1444	mfspr	r8, SPRN_VTB
1445	std	r7, VCORE_DPDES(r5)
1446	std	r8, VCORE_VTB(r5)
1447	/* clear DPDES so we don't get guest doorbells in the host */
1448	li	r8, 0
1449	mtspr	SPRN_DPDES, r8
1450END_FTR_SECTION_IFSET(CPU_FTR_ARCH_207S)
1451
1452	/* Subtract timebase offset from timebase */
1453	ld	r8, VCORE_TB_OFFSET_APPL(r5)
1454	cmpdi	r8,0
1455	beq	17f
1456	li	r0, 0
1457	std	r0, VCORE_TB_OFFSET_APPL(r5)
1458	mftb	r6			/* current guest timebase */
1459	subf	r8,r8,r6
1460	mtspr	SPRN_TBU40,r8		/* update upper 40 bits */
1461	mftb	r7			/* check if lower 24 bits overflowed */
1462	clrldi	r6,r6,40
1463	clrldi	r7,r7,40
1464	cmpld	r7,r6
1465	bge	17f
1466	addis	r8,r8,0x100		/* if so, increment upper 40 bits */
1467	mtspr	SPRN_TBU40,r8
1468
146917:
1470	/*
1471	 * If this is an HMI, we called kvmppc_realmode_hmi_handler
1472	 * above, which may or may not have already called
1473	 * kvmppc_subcore_exit_guest.  Fortunately, all that
1474	 * kvmppc_subcore_exit_guest does is clear a flag, so calling
1475	 * it again here is benign even if kvmppc_realmode_hmi_handler
1476	 * has already called it.
1477	 */
1478	bl	kvmppc_subcore_exit_guest
1479	nop
148030:	ld	r5,HSTATE_KVM_VCORE(r13)
1481	ld	r4,VCORE_KVM(r5)	/* pointer to struct kvm */
1482
1483	/* Reset PCR */
1484	ld	r0, VCORE_PCR(r5)
1485	LOAD_REG_IMMEDIATE(r6, PCR_MASK)
1486	cmpld	r0, r6
1487	beq	18f
1488	mtspr	SPRN_PCR, r6
148918:
1490	/* Signal secondary CPUs to continue */
1491	li	r0, 0
1492	stb	r0,VCORE_IN_GUEST(r5)
149319:	lis	r8,0x7fff		/* MAX_INT@h */
1494	mtspr	SPRN_HDEC,r8
1495
149616:	ld	r8,KVM_HOST_LPCR(r4)
1497	mtspr	SPRN_LPCR,r8
1498	isync
1499
1500#ifdef CONFIG_KVM_BOOK3S_HV_EXIT_TIMING
1501	/* Finish timing, if we have a vcpu */
1502	ld	r4, HSTATE_KVM_VCPU(r13)
1503	cmpdi	r4, 0
1504	li	r3, 0
1505	beq	2f
1506	bl	kvmhv_accumulate_time
15072:
1508#endif
1509	/* Unset guest mode */
1510	li	r0, KVM_GUEST_MODE_NONE
1511	stb	r0, HSTATE_IN_GUEST(r13)
1512
1513	lwz	r12, STACK_SLOT_TRAP(r1)	/* return trap # in r12 */
1514	ld	r0, SFS+PPC_LR_STKOFF(r1)
1515	addi	r1, r1, SFS
1516	mtlr	r0
1517	blr
1518
1519.balign 32
1520.global kvm_flush_link_stack
1521kvm_flush_link_stack:
1522	/* Save LR into r0 */
1523	mflr	r0
1524
1525	/* Flush the link stack. On Power8 it's up to 32 entries in size. */
1526	.rept 32
1527	bl	.+4
1528	.endr
1529
1530	/* And on Power9 it's up to 64. */
1531BEGIN_FTR_SECTION
1532	.rept 32
1533	bl	.+4
1534	.endr
1535END_FTR_SECTION_IFSET(CPU_FTR_ARCH_300)
1536
1537	/* Restore LR */
1538	mtlr	r0
1539	blr
1540
1541kvmppc_guest_external:
1542	/* External interrupt, first check for host_ipi. If this is
1543	 * set, we know the host wants us out so let's do it now
1544	 */
1545	bl	kvmppc_read_intr
1546
1547	/*
1548	 * Restore the active volatile registers after returning from
1549	 * a C function.
1550	 */
1551	ld	r9, HSTATE_KVM_VCPU(r13)
1552	li	r12, BOOK3S_INTERRUPT_EXTERNAL
1553
1554	/*
1555	 * kvmppc_read_intr return codes:
1556	 *
1557	 * Exit to host (r3 > 0)
1558	 *   1 An interrupt is pending that needs to be handled by the host
1559	 *     Exit guest and return to host by branching to guest_exit_cont
1560	 *
1561	 *   2 Passthrough that needs completion in the host
1562	 *     Exit guest and return to host by branching to guest_exit_cont
1563	 *     However, we also set r12 to BOOK3S_INTERRUPT_HV_RM_HARD
1564	 *     to indicate to the host to complete handling the interrupt
1565	 *
1566	 * Before returning to guest, we check if any CPU is heading out
1567	 * to the host and if so, we head out also. If no CPUs are heading
1568	 * check return values <= 0.
1569	 *
1570	 * Return to guest (r3 <= 0)
1571	 *  0 No external interrupt is pending
1572	 * -1 A guest wakeup IPI (which has now been cleared)
1573	 *    In either case, we return to guest to deliver any pending
1574	 *    guest interrupts.
1575	 *
1576	 * -2 A PCI passthrough external interrupt was handled
1577	 *    (interrupt was delivered directly to guest)
1578	 *    Return to guest to deliver any pending guest interrupts.
1579	 */
1580
1581	cmpdi	r3, 1
1582	ble	1f
1583
1584	/* Return code = 2 */
1585	li	r12, BOOK3S_INTERRUPT_HV_RM_HARD
1586	stw	r12, VCPU_TRAP(r9)
1587	b	guest_exit_cont
1588
15891:	/* Return code <= 1 */
1590	cmpdi	r3, 0
1591	bgt	guest_exit_cont
1592
1593	/* Return code <= 0 */
1594maybe_reenter_guest:
1595	ld	r5, HSTATE_KVM_VCORE(r13)
1596	lwz	r0, VCORE_ENTRY_EXIT(r5)
1597	cmpwi	r0, 0x100
1598	mr	r4, r9
1599	blt	deliver_guest_interrupt
1600	b	guest_exit_cont
1601
1602/*
1603 * Check whether an HDSI is an HPTE not found fault or something else.
1604 * If it is an HPTE not found fault that is due to the guest accessing
1605 * a page that they have mapped but which we have paged out, then
1606 * we continue on with the guest exit path.  In all other cases,
1607 * reflect the HDSI to the guest as a DSI.
1608 */
1609kvmppc_hdsi:
1610	mfspr	r4, SPRN_HDAR
1611	mfspr	r6, SPRN_HDSISR
1612	/* HPTE not found fault or protection fault? */
1613	andis.	r0, r6, (DSISR_NOHPTE | DSISR_PROTFAULT)@h
1614	beq	1f			/* if not, send it to the guest */
1615	andi.	r0, r11, MSR_DR		/* data relocation enabled? */
1616	beq	3f
1617	clrrdi	r0, r4, 28
1618	PPC_SLBFEE_DOT(R5, R0)		/* if so, look up SLB */
1619	li	r0, BOOK3S_INTERRUPT_DATA_SEGMENT
1620	bne	7f			/* if no SLB entry found */
16214:	std	r4, VCPU_FAULT_DAR(r9)
1622	stw	r6, VCPU_FAULT_DSISR(r9)
1623
1624	/* Search the hash table. */
1625	mr	r3, r9			/* vcpu pointer */
1626	li	r7, 1			/* data fault */
1627	bl	kvmppc_hpte_hv_fault
1628	ld	r9, HSTATE_KVM_VCPU(r13)
1629	ld	r10, VCPU_PC(r9)
1630	ld	r11, VCPU_MSR(r9)
1631	li	r12, BOOK3S_INTERRUPT_H_DATA_STORAGE
1632	cmpdi	r3, 0			/* retry the instruction */
1633	beq	6f
1634	cmpdi	r3, -1			/* handle in kernel mode */
1635	beq	guest_exit_cont
1636	cmpdi	r3, -2			/* MMIO emulation; need instr word */
1637	beq	2f
1638
1639	/* Synthesize a DSI (or DSegI) for the guest */
1640	ld	r4, VCPU_FAULT_DAR(r9)
1641	mr	r6, r3
16421:	li	r0, BOOK3S_INTERRUPT_DATA_STORAGE
1643	mtspr	SPRN_DSISR, r6
16447:	mtspr	SPRN_DAR, r4
1645	mtspr	SPRN_SRR0, r10
1646	mtspr	SPRN_SRR1, r11
1647	mr	r10, r0
1648	bl	kvmppc_msr_interrupt
1649fast_interrupt_c_return:
16506:	ld	r7, VCPU_CTR(r9)
1651	ld	r8, VCPU_XER(r9)
1652	mtctr	r7
1653	mtxer	r8
1654	mr	r4, r9
1655	b	fast_guest_return
1656
16573:	ld	r5, VCPU_KVM(r9)	/* not relocated, use VRMA */
1658	ld	r5, KVM_VRMA_SLB_V(r5)
1659	b	4b
1660
1661	/* If this is for emulated MMIO, load the instruction word */
16622:	li	r8, KVM_INST_FETCH_FAILED	/* In case lwz faults */
1663
1664	/* Set guest mode to 'jump over instruction' so if lwz faults
1665	 * we'll just continue at the next IP. */
1666	li	r0, KVM_GUEST_MODE_SKIP
1667	stb	r0, HSTATE_IN_GUEST(r13)
1668
1669	/* Do the access with MSR:DR enabled */
1670	mfmsr	r3
1671	ori	r4, r3, MSR_DR		/* Enable paging for data */
1672	mtmsrd	r4
1673	lwz	r8, 0(r10)
1674	mtmsrd	r3
1675
1676	/* Store the result */
1677	stw	r8, VCPU_LAST_INST(r9)
1678
1679	/* Unset guest mode. */
1680	li	r0, KVM_GUEST_MODE_HOST_HV
1681	stb	r0, HSTATE_IN_GUEST(r13)
1682	b	guest_exit_cont
1683
1684/*
1685 * Similarly for an HISI, reflect it to the guest as an ISI unless
1686 * it is an HPTE not found fault for a page that we have paged out.
1687 */
1688kvmppc_hisi:
1689	andis.	r0, r11, SRR1_ISI_NOPT@h
1690	beq	1f
1691	andi.	r0, r11, MSR_IR		/* instruction relocation enabled? */
1692	beq	3f
1693	clrrdi	r0, r10, 28
1694	PPC_SLBFEE_DOT(R5, R0)		/* if so, look up SLB */
1695	li	r0, BOOK3S_INTERRUPT_INST_SEGMENT
1696	bne	7f			/* if no SLB entry found */
16974:
1698	/* Search the hash table. */
1699	mr	r3, r9			/* vcpu pointer */
1700	mr	r4, r10
1701	mr	r6, r11
1702	li	r7, 0			/* instruction fault */
1703	bl	kvmppc_hpte_hv_fault
1704	ld	r9, HSTATE_KVM_VCPU(r13)
1705	ld	r10, VCPU_PC(r9)
1706	ld	r11, VCPU_MSR(r9)
1707	li	r12, BOOK3S_INTERRUPT_H_INST_STORAGE
1708	cmpdi	r3, 0			/* retry the instruction */
1709	beq	fast_interrupt_c_return
1710	cmpdi	r3, -1			/* handle in kernel mode */
1711	beq	guest_exit_cont
1712
1713	/* Synthesize an ISI (or ISegI) for the guest */
1714	mr	r11, r3
17151:	li	r0, BOOK3S_INTERRUPT_INST_STORAGE
17167:	mtspr	SPRN_SRR0, r10
1717	mtspr	SPRN_SRR1, r11
1718	mr	r10, r0
1719	bl	kvmppc_msr_interrupt
1720	b	fast_interrupt_c_return
1721
17223:	ld	r6, VCPU_KVM(r9)	/* not relocated, use VRMA */
1723	ld	r5, KVM_VRMA_SLB_V(r6)
1724	b	4b
1725
1726/*
1727 * Try to handle an hcall in real mode.
1728 * Returns to the guest if we handle it, or continues on up to
1729 * the kernel if we can't (i.e. if we don't have a handler for
1730 * it, or if the handler returns H_TOO_HARD).
1731 *
1732 * r5 - r8 contain hcall args,
1733 * r9 = vcpu, r10 = pc, r11 = msr, r12 = trap, r13 = paca
1734 */
1735hcall_try_real_mode:
1736	ld	r3,VCPU_GPR(R3)(r9)
1737	andi.	r0,r11,MSR_PR
1738	/* sc 1 from userspace - reflect to guest syscall */
1739	bne	sc_1_fast_return
1740	clrrdi	r3,r3,2
1741	cmpldi	r3,hcall_real_table_end - hcall_real_table
1742	bge	guest_exit_cont
1743	/* See if this hcall is enabled for in-kernel handling */
1744	ld	r4, VCPU_KVM(r9)
1745	srdi	r0, r3, 8	/* r0 = (r3 / 4) >> 6 */
1746	sldi	r0, r0, 3	/* index into kvm->arch.enabled_hcalls[] */
1747	add	r4, r4, r0
1748	ld	r0, KVM_ENABLED_HCALLS(r4)
1749	rlwinm	r4, r3, 32-2, 0x3f	/* r4 = (r3 / 4) & 0x3f */
1750	srd	r0, r0, r4
1751	andi.	r0, r0, 1
1752	beq	guest_exit_cont
1753	/* Get pointer to handler, if any, and call it */
1754	LOAD_REG_ADDR(r4, hcall_real_table)
1755	lwax	r3,r3,r4
1756	cmpwi	r3,0
1757	beq	guest_exit_cont
1758	add	r12,r3,r4
1759	mtctr	r12
1760	mr	r3,r9		/* get vcpu pointer */
1761	ld	r4,VCPU_GPR(R4)(r9)
1762	bctrl
1763	cmpdi	r3,H_TOO_HARD
1764	beq	hcall_real_fallback
1765	ld	r4,HSTATE_KVM_VCPU(r13)
1766	std	r3,VCPU_GPR(R3)(r4)
1767	ld	r10,VCPU_PC(r4)
1768	ld	r11,VCPU_MSR(r4)
1769	b	fast_guest_return
1770
1771sc_1_fast_return:
1772	mtspr	SPRN_SRR0,r10
1773	mtspr	SPRN_SRR1,r11
1774	li	r10, BOOK3S_INTERRUPT_SYSCALL
1775	bl	kvmppc_msr_interrupt
1776	mr	r4,r9
1777	b	fast_guest_return
1778
1779	/* We've attempted a real mode hcall, but it's punted it back
1780	 * to userspace.  We need to restore some clobbered volatiles
1781	 * before resuming the pass-it-to-qemu path */
1782hcall_real_fallback:
1783	li	r12,BOOK3S_INTERRUPT_SYSCALL
1784	ld	r9, HSTATE_KVM_VCPU(r13)
1785
1786	b	guest_exit_cont
1787
1788	.globl	hcall_real_table
1789hcall_real_table:
1790	.long	0		/* 0 - unused */
1791	.long	DOTSYM(kvmppc_h_remove) - hcall_real_table
1792	.long	DOTSYM(kvmppc_h_enter) - hcall_real_table
1793	.long	DOTSYM(kvmppc_h_read) - hcall_real_table
1794	.long	DOTSYM(kvmppc_h_clear_mod) - hcall_real_table
1795	.long	DOTSYM(kvmppc_h_clear_ref) - hcall_real_table
1796	.long	DOTSYM(kvmppc_h_protect) - hcall_real_table
1797#ifdef CONFIG_SPAPR_TCE_IOMMU
1798	.long	DOTSYM(kvmppc_h_get_tce) - hcall_real_table
1799	.long	DOTSYM(kvmppc_rm_h_put_tce) - hcall_real_table
1800#else
1801	.long	0		/* 0x1c */
1802	.long	0		/* 0x20 */
1803#endif
1804	.long	0		/* 0x24 - H_SET_SPRG0 */
1805	.long	DOTSYM(kvmppc_h_set_dabr) - hcall_real_table
1806	.long	DOTSYM(kvmppc_rm_h_page_init) - hcall_real_table
1807	.long	0		/* 0x30 */
1808	.long	0		/* 0x34 */
1809	.long	0		/* 0x38 */
1810	.long	0		/* 0x3c */
1811	.long	0		/* 0x40 */
1812	.long	0		/* 0x44 */
1813	.long	0		/* 0x48 */
1814	.long	0		/* 0x4c */
1815	.long	0		/* 0x50 */
1816	.long	0		/* 0x54 */
1817	.long	0		/* 0x58 */
1818	.long	0		/* 0x5c */
1819	.long	0		/* 0x60 */
1820#ifdef CONFIG_KVM_XICS
1821	.long	DOTSYM(kvmppc_rm_h_eoi) - hcall_real_table
1822	.long	DOTSYM(kvmppc_rm_h_cppr) - hcall_real_table
1823	.long	DOTSYM(kvmppc_rm_h_ipi) - hcall_real_table
1824	.long	DOTSYM(kvmppc_rm_h_ipoll) - hcall_real_table
1825	.long	DOTSYM(kvmppc_rm_h_xirr) - hcall_real_table
1826#else
1827	.long	0		/* 0x64 - H_EOI */
1828	.long	0		/* 0x68 - H_CPPR */
1829	.long	0		/* 0x6c - H_IPI */
1830	.long	0		/* 0x70 - H_IPOLL */
1831	.long	0		/* 0x74 - H_XIRR */
1832#endif
1833	.long	0		/* 0x78 */
1834	.long	0		/* 0x7c */
1835	.long	0		/* 0x80 */
1836	.long	0		/* 0x84 */
1837	.long	0		/* 0x88 */
1838	.long	0		/* 0x8c */
1839	.long	0		/* 0x90 */
1840	.long	0		/* 0x94 */
1841	.long	0		/* 0x98 */
1842	.long	0		/* 0x9c */
1843	.long	0		/* 0xa0 */
1844	.long	0		/* 0xa4 */
1845	.long	0		/* 0xa8 */
1846	.long	0		/* 0xac */
1847	.long	0		/* 0xb0 */
1848	.long	0		/* 0xb4 */
1849	.long	0		/* 0xb8 */
1850	.long	0		/* 0xbc */
1851	.long	0		/* 0xc0 */
1852	.long	0		/* 0xc4 */
1853	.long	0		/* 0xc8 */
1854	.long	0		/* 0xcc */
1855	.long	0		/* 0xd0 */
1856	.long	0		/* 0xd4 */
1857	.long	0		/* 0xd8 */
1858	.long	0		/* 0xdc */
1859	.long	DOTSYM(kvmppc_h_cede) - hcall_real_table
1860	.long	DOTSYM(kvmppc_rm_h_confer) - hcall_real_table
1861	.long	0		/* 0xe8 */
1862	.long	0		/* 0xec */
1863	.long	0		/* 0xf0 */
1864	.long	0		/* 0xf4 */
1865	.long	0		/* 0xf8 */
1866	.long	0		/* 0xfc */
1867	.long	0		/* 0x100 */
1868	.long	0		/* 0x104 */
1869	.long	0		/* 0x108 */
1870	.long	0		/* 0x10c */
1871	.long	0		/* 0x110 */
1872	.long	0		/* 0x114 */
1873	.long	0		/* 0x118 */
1874	.long	0		/* 0x11c */
1875	.long	0		/* 0x120 */
1876	.long	DOTSYM(kvmppc_h_bulk_remove) - hcall_real_table
1877	.long	0		/* 0x128 */
1878	.long	0		/* 0x12c */
1879	.long	0		/* 0x130 */
1880	.long	DOTSYM(kvmppc_h_set_xdabr) - hcall_real_table
1881#ifdef CONFIG_SPAPR_TCE_IOMMU
1882	.long	DOTSYM(kvmppc_rm_h_stuff_tce) - hcall_real_table
1883	.long	DOTSYM(kvmppc_rm_h_put_tce_indirect) - hcall_real_table
1884#else
1885	.long	0		/* 0x138 */
1886	.long	0		/* 0x13c */
1887#endif
1888	.long	0		/* 0x140 */
1889	.long	0		/* 0x144 */
1890	.long	0		/* 0x148 */
1891	.long	0		/* 0x14c */
1892	.long	0		/* 0x150 */
1893	.long	0		/* 0x154 */
1894	.long	0		/* 0x158 */
1895	.long	0		/* 0x15c */
1896	.long	0		/* 0x160 */
1897	.long	0		/* 0x164 */
1898	.long	0		/* 0x168 */
1899	.long	0		/* 0x16c */
1900	.long	0		/* 0x170 */
1901	.long	0		/* 0x174 */
1902	.long	0		/* 0x178 */
1903	.long	0		/* 0x17c */
1904	.long	0		/* 0x180 */
1905	.long	0		/* 0x184 */
1906	.long	0		/* 0x188 */
1907	.long	0		/* 0x18c */
1908	.long	0		/* 0x190 */
1909	.long	0		/* 0x194 */
1910	.long	0		/* 0x198 */
1911	.long	0		/* 0x19c */
1912	.long	0		/* 0x1a0 */
1913	.long	0		/* 0x1a4 */
1914	.long	0		/* 0x1a8 */
1915	.long	0		/* 0x1ac */
1916	.long	0		/* 0x1b0 */
1917	.long	0		/* 0x1b4 */
1918	.long	0		/* 0x1b8 */
1919	.long	0		/* 0x1bc */
1920	.long	0		/* 0x1c0 */
1921	.long	0		/* 0x1c4 */
1922	.long	0		/* 0x1c8 */
1923	.long	0		/* 0x1cc */
1924	.long	0		/* 0x1d0 */
1925	.long	0		/* 0x1d4 */
1926	.long	0		/* 0x1d8 */
1927	.long	0		/* 0x1dc */
1928	.long	0		/* 0x1e0 */
1929	.long	0		/* 0x1e4 */
1930	.long	0		/* 0x1e8 */
1931	.long	0		/* 0x1ec */
1932	.long	0		/* 0x1f0 */
1933	.long	0		/* 0x1f4 */
1934	.long	0		/* 0x1f8 */
1935	.long	0		/* 0x1fc */
1936	.long	0		/* 0x200 */
1937	.long	0		/* 0x204 */
1938	.long	0		/* 0x208 */
1939	.long	0		/* 0x20c */
1940	.long	0		/* 0x210 */
1941	.long	0		/* 0x214 */
1942	.long	0		/* 0x218 */
1943	.long	0		/* 0x21c */
1944	.long	0		/* 0x220 */
1945	.long	0		/* 0x224 */
1946	.long	0		/* 0x228 */
1947	.long	0		/* 0x22c */
1948	.long	0		/* 0x230 */
1949	.long	0		/* 0x234 */
1950	.long	0		/* 0x238 */
1951	.long	0		/* 0x23c */
1952	.long	0		/* 0x240 */
1953	.long	0		/* 0x244 */
1954	.long	0		/* 0x248 */
1955	.long	0		/* 0x24c */
1956	.long	0		/* 0x250 */
1957	.long	0		/* 0x254 */
1958	.long	0		/* 0x258 */
1959	.long	0		/* 0x25c */
1960	.long	0		/* 0x260 */
1961	.long	0		/* 0x264 */
1962	.long	0		/* 0x268 */
1963	.long	0		/* 0x26c */
1964	.long	0		/* 0x270 */
1965	.long	0		/* 0x274 */
1966	.long	0		/* 0x278 */
1967	.long	0		/* 0x27c */
1968	.long	0		/* 0x280 */
1969	.long	0		/* 0x284 */
1970	.long	0		/* 0x288 */
1971	.long	0		/* 0x28c */
1972	.long	0		/* 0x290 */
1973	.long	0		/* 0x294 */
1974	.long	0		/* 0x298 */
1975	.long	0		/* 0x29c */
1976	.long	0		/* 0x2a0 */
1977	.long	0		/* 0x2a4 */
1978	.long	0		/* 0x2a8 */
1979	.long	0		/* 0x2ac */
1980	.long	0		/* 0x2b0 */
1981	.long	0		/* 0x2b4 */
1982	.long	0		/* 0x2b8 */
1983	.long	0		/* 0x2bc */
1984	.long	0		/* 0x2c0 */
1985	.long	0		/* 0x2c4 */
1986	.long	0		/* 0x2c8 */
1987	.long	0		/* 0x2cc */
1988	.long	0		/* 0x2d0 */
1989	.long	0		/* 0x2d4 */
1990	.long	0		/* 0x2d8 */
1991	.long	0		/* 0x2dc */
1992	.long	0		/* 0x2e0 */
1993	.long	0		/* 0x2e4 */
1994	.long	0		/* 0x2e8 */
1995	.long	0		/* 0x2ec */
1996	.long	0		/* 0x2f0 */
1997	.long	0		/* 0x2f4 */
1998	.long	0		/* 0x2f8 */
1999#ifdef CONFIG_KVM_XICS
2000	.long	DOTSYM(kvmppc_rm_h_xirr_x) - hcall_real_table
2001#else
2002	.long	0		/* 0x2fc - H_XIRR_X*/
2003#endif
2004	.long	DOTSYM(kvmppc_rm_h_random) - hcall_real_table
2005	.globl	hcall_real_table_end
2006hcall_real_table_end:
2007
2008_GLOBAL_TOC(kvmppc_h_set_xdabr)
2009EXPORT_SYMBOL_GPL(kvmppc_h_set_xdabr)
2010	andi.	r0, r5, DABRX_USER | DABRX_KERNEL
2011	beq	6f
2012	li	r0, DABRX_USER | DABRX_KERNEL | DABRX_BTI
2013	andc.	r0, r5, r0
2014	beq	3f
20156:	li	r3, H_PARAMETER
2016	blr
2017
2018_GLOBAL_TOC(kvmppc_h_set_dabr)
2019EXPORT_SYMBOL_GPL(kvmppc_h_set_dabr)
2020	li	r5, DABRX_USER | DABRX_KERNEL
20213:
2022BEGIN_FTR_SECTION
2023	b	2f
2024END_FTR_SECTION_IFSET(CPU_FTR_ARCH_207S)
2025	std	r4,VCPU_DABR(r3)
2026	stw	r5, VCPU_DABRX(r3)
2027	mtspr	SPRN_DABRX, r5
2028	/* Work around P7 bug where DABR can get corrupted on mtspr */
20291:	mtspr	SPRN_DABR,r4
2030	mfspr	r5, SPRN_DABR
2031	cmpd	r4, r5
2032	bne	1b
2033	isync
2034	li	r3,0
2035	blr
2036
20372:
2038	LOAD_REG_ADDR(r11, dawr_force_enable)
2039	lbz	r11, 0(r11)
2040	cmpdi	r11, 0
2041	bne	3f
2042	li	r3, H_HARDWARE
2043	blr
20443:
2045	/* Emulate H_SET_DABR/X on P8 for the sake of compat mode guests */
2046	rlwimi	r5, r4, 5, DAWRX_DR | DAWRX_DW
2047	rlwimi	r5, r4, 2, DAWRX_WT
2048	clrrdi	r4, r4, 3
2049	std	r4, VCPU_DAWR0(r3)
2050	std	r5, VCPU_DAWRX0(r3)
2051	/*
2052	 * If came in through the real mode hcall handler then it is necessary
2053	 * to write the registers since the return path won't. Otherwise it is
2054	 * sufficient to store then in the vcpu struct as they will be loaded
2055	 * next time the vcpu is run.
2056	 */
2057	mfmsr	r6
2058	andi.	r6, r6, MSR_DR		/* in real mode? */
2059	bne	4f
2060	mtspr	SPRN_DAWR0, r4
2061	mtspr	SPRN_DAWRX0, r5
20624:	li	r3, 0
2063	blr
2064
2065_GLOBAL(kvmppc_h_cede)		/* r3 = vcpu pointer, r11 = msr, r13 = paca */
2066	ori	r11,r11,MSR_EE
2067	std	r11,VCPU_MSR(r3)
2068	li	r0,1
2069	stb	r0,VCPU_CEDED(r3)
2070	sync			/* order setting ceded vs. testing prodded */
2071	lbz	r5,VCPU_PRODDED(r3)
2072	cmpwi	r5,0
2073	bne	kvm_cede_prodded
2074	li	r12,0		/* set trap to 0 to say hcall is handled */
2075	stw	r12,VCPU_TRAP(r3)
2076	li	r0,H_SUCCESS
2077	std	r0,VCPU_GPR(R3)(r3)
2078
2079	/*
2080	 * Set our bit in the bitmask of napping threads unless all the
2081	 * other threads are already napping, in which case we send this
2082	 * up to the host.
2083	 */
2084	ld	r5,HSTATE_KVM_VCORE(r13)
2085	lbz	r6,HSTATE_PTID(r13)
2086	lwz	r8,VCORE_ENTRY_EXIT(r5)
2087	clrldi	r8,r8,56
2088	li	r0,1
2089	sld	r0,r0,r6
2090	addi	r6,r5,VCORE_NAPPING_THREADS
209131:	lwarx	r4,0,r6
2092	or	r4,r4,r0
2093	cmpw	r4,r8
2094	beq	kvm_cede_exit
2095	stwcx.	r4,0,r6
2096	bne	31b
2097	/* order napping_threads update vs testing entry_exit_map */
2098	isync
2099	li	r0,NAPPING_CEDE
2100	stb	r0,HSTATE_NAPPING(r13)
2101	lwz	r7,VCORE_ENTRY_EXIT(r5)
2102	cmpwi	r7,0x100
2103	bge	33f		/* another thread already exiting */
2104
2105/*
2106 * Although not specifically required by the architecture, POWER7
2107 * preserves the following registers in nap mode, even if an SMT mode
2108 * switch occurs: SLB entries, PURR, SPURR, AMOR, UAMOR, AMR, SPRG0-3,
2109 * DAR, DSISR, DABR, DABRX, DSCR, PMCx, MMCRx, SIAR, SDAR.
2110 */
2111	/* Save non-volatile GPRs */
2112	std	r14, VCPU_GPR(R14)(r3)
2113	std	r15, VCPU_GPR(R15)(r3)
2114	std	r16, VCPU_GPR(R16)(r3)
2115	std	r17, VCPU_GPR(R17)(r3)
2116	std	r18, VCPU_GPR(R18)(r3)
2117	std	r19, VCPU_GPR(R19)(r3)
2118	std	r20, VCPU_GPR(R20)(r3)
2119	std	r21, VCPU_GPR(R21)(r3)
2120	std	r22, VCPU_GPR(R22)(r3)
2121	std	r23, VCPU_GPR(R23)(r3)
2122	std	r24, VCPU_GPR(R24)(r3)
2123	std	r25, VCPU_GPR(R25)(r3)
2124	std	r26, VCPU_GPR(R26)(r3)
2125	std	r27, VCPU_GPR(R27)(r3)
2126	std	r28, VCPU_GPR(R28)(r3)
2127	std	r29, VCPU_GPR(R29)(r3)
2128	std	r30, VCPU_GPR(R30)(r3)
2129	std	r31, VCPU_GPR(R31)(r3)
2130
2131	/* save FP state */
2132	bl	kvmppc_save_fp
2133
2134#ifdef CONFIG_PPC_TRANSACTIONAL_MEM
2135BEGIN_FTR_SECTION
2136	b	91f
2137END_FTR_SECTION_IFCLR(CPU_FTR_TM)
2138	/*
2139	 * NOTE THAT THIS TRASHES ALL NON-VOLATILE REGISTERS (but not CR)
2140	 */
2141	ld	r3, HSTATE_KVM_VCPU(r13)
2142	ld      r4, VCPU_MSR(r3)
2143	li	r5, 0			/* don't preserve non-vol regs */
2144	bl	kvmppc_save_tm_hv
2145	nop
214691:
2147#endif
2148
2149	/*
2150	 * Set DEC to the smaller of DEC and HDEC, so that we wake
2151	 * no later than the end of our timeslice (HDEC interrupts
2152	 * don't wake us from nap).
2153	 */
2154	mfspr	r3, SPRN_DEC
2155	mfspr	r4, SPRN_HDEC
2156	mftb	r5
2157	extsw	r3, r3
2158	extsw	r4, r4
2159	cmpd	r3, r4
2160	ble	67f
2161	mtspr	SPRN_DEC, r4
216267:
2163	/* save expiry time of guest decrementer */
2164	add	r3, r3, r5
2165	ld	r4, HSTATE_KVM_VCPU(r13)
2166	ld	r5, HSTATE_KVM_VCORE(r13)
2167	ld	r6, VCORE_TB_OFFSET_APPL(r5)
2168	subf	r3, r6, r3	/* convert to host TB value */
2169	std	r3, VCPU_DEC_EXPIRES(r4)
2170
2171#ifdef CONFIG_KVM_BOOK3S_HV_EXIT_TIMING
2172	ld	r4, HSTATE_KVM_VCPU(r13)
2173	addi	r3, r4, VCPU_TB_CEDE
2174	bl	kvmhv_accumulate_time
2175#endif
2176
2177	lis	r3, LPCR_PECEDP@h	/* Do wake on privileged doorbell */
2178
2179	/* Go back to host stack */
2180	ld	r1, HSTATE_HOST_R1(r13)
2181
2182	/*
2183	 * Take a nap until a decrementer or external or doobell interrupt
2184	 * occurs, with PECE1 and PECE0 set in LPCR.
2185	 * On POWER8, set PECEDH, and if we are ceding, also set PECEDP.
2186	 * Also clear the runlatch bit before napping.
2187	 */
2188kvm_do_nap:
2189	mfspr	r0, SPRN_CTRLF
2190	clrrdi	r0, r0, 1
2191	mtspr	SPRN_CTRLT, r0
2192
2193	li	r0,1
2194	stb	r0,HSTATE_HWTHREAD_REQ(r13)
2195	mfspr	r5,SPRN_LPCR
2196	ori	r5,r5,LPCR_PECE0 | LPCR_PECE1
2197BEGIN_FTR_SECTION
2198	ori	r5, r5, LPCR_PECEDH
2199	rlwimi	r5, r3, 0, LPCR_PECEDP
2200END_FTR_SECTION_IFSET(CPU_FTR_ARCH_207S)
2201
2202kvm_nap_sequence:		/* desired LPCR value in r5 */
2203	li	r3, PNV_THREAD_NAP
2204	mtspr	SPRN_LPCR,r5
2205	isync
2206
2207	bl	isa206_idle_insn_mayloss
2208
2209	mfspr	r0, SPRN_CTRLF
2210	ori	r0, r0, 1
2211	mtspr	SPRN_CTRLT, r0
2212
2213	mtspr	SPRN_SRR1, r3
2214
2215	li	r0, 0
2216	stb	r0, PACA_FTRACE_ENABLED(r13)
2217
2218	li	r0, KVM_HWTHREAD_IN_KVM
2219	stb	r0, HSTATE_HWTHREAD_STATE(r13)
2220
2221	lbz	r0, HSTATE_NAPPING(r13)
2222	cmpwi	r0, NAPPING_CEDE
2223	beq	kvm_end_cede
2224	cmpwi	r0, NAPPING_NOVCPU
2225	beq	kvm_novcpu_wakeup
2226	cmpwi	r0, NAPPING_UNSPLIT
2227	beq	kvm_unsplit_wakeup
2228	twi	31,0,0 /* Nap state must not be zero */
2229
223033:	mr	r4, r3
2231	li	r3, 0
2232	li	r12, 0
2233	b	34f
2234
2235kvm_end_cede:
2236	/* Woken by external or decrementer interrupt */
2237
2238	/* get vcpu pointer */
2239	ld	r4, HSTATE_KVM_VCPU(r13)
2240
2241#ifdef CONFIG_KVM_BOOK3S_HV_EXIT_TIMING
2242	addi	r3, r4, VCPU_TB_RMINTR
2243	bl	kvmhv_accumulate_time
2244#endif
2245
2246#ifdef CONFIG_PPC_TRANSACTIONAL_MEM
2247BEGIN_FTR_SECTION
2248	b	91f
2249END_FTR_SECTION_IFCLR(CPU_FTR_TM)
2250	/*
2251	 * NOTE THAT THIS TRASHES ALL NON-VOLATILE REGISTERS (but not CR)
2252	 */
2253	mr      r3, r4
2254	ld      r4, VCPU_MSR(r3)
2255	li	r5, 0			/* don't preserve non-vol regs */
2256	bl	kvmppc_restore_tm_hv
2257	nop
2258	ld	r4, HSTATE_KVM_VCPU(r13)
225991:
2260#endif
2261
2262	/* load up FP state */
2263	bl	kvmppc_load_fp
2264
2265	/* Restore guest decrementer */
2266	ld	r3, VCPU_DEC_EXPIRES(r4)
2267	ld	r5, HSTATE_KVM_VCORE(r13)
2268	ld	r6, VCORE_TB_OFFSET_APPL(r5)
2269	add	r3, r3, r6	/* convert host TB to guest TB value */
2270	mftb	r7
2271	subf	r3, r7, r3
2272	mtspr	SPRN_DEC, r3
2273
2274	/* Load NV GPRS */
2275	ld	r14, VCPU_GPR(R14)(r4)
2276	ld	r15, VCPU_GPR(R15)(r4)
2277	ld	r16, VCPU_GPR(R16)(r4)
2278	ld	r17, VCPU_GPR(R17)(r4)
2279	ld	r18, VCPU_GPR(R18)(r4)
2280	ld	r19, VCPU_GPR(R19)(r4)
2281	ld	r20, VCPU_GPR(R20)(r4)
2282	ld	r21, VCPU_GPR(R21)(r4)
2283	ld	r22, VCPU_GPR(R22)(r4)
2284	ld	r23, VCPU_GPR(R23)(r4)
2285	ld	r24, VCPU_GPR(R24)(r4)
2286	ld	r25, VCPU_GPR(R25)(r4)
2287	ld	r26, VCPU_GPR(R26)(r4)
2288	ld	r27, VCPU_GPR(R27)(r4)
2289	ld	r28, VCPU_GPR(R28)(r4)
2290	ld	r29, VCPU_GPR(R29)(r4)
2291	ld	r30, VCPU_GPR(R30)(r4)
2292	ld	r31, VCPU_GPR(R31)(r4)
2293
2294	/* Check the wake reason in SRR1 to see why we got here */
2295	bl	kvmppc_check_wake_reason
2296
2297	/*
2298	 * Restore volatile registers since we could have called a
2299	 * C routine in kvmppc_check_wake_reason
2300	 *	r4 = VCPU
2301	 * r3 tells us whether we need to return to host or not
2302	 * WARNING: it gets checked further down:
2303	 * should not modify r3 until this check is done.
2304	 */
2305	ld	r4, HSTATE_KVM_VCPU(r13)
2306
2307	/* clear our bit in vcore->napping_threads */
230834:	ld	r5,HSTATE_KVM_VCORE(r13)
2309	lbz	r7,HSTATE_PTID(r13)
2310	li	r0,1
2311	sld	r0,r0,r7
2312	addi	r6,r5,VCORE_NAPPING_THREADS
231332:	lwarx	r7,0,r6
2314	andc	r7,r7,r0
2315	stwcx.	r7,0,r6
2316	bne	32b
2317	li	r0,0
2318	stb	r0,HSTATE_NAPPING(r13)
2319
2320	/* See if the wake reason saved in r3 means we need to exit */
2321	stw	r12, VCPU_TRAP(r4)
2322	mr	r9, r4
2323	cmpdi	r3, 0
2324	bgt	guest_exit_cont
2325	b	maybe_reenter_guest
2326
2327	/* cede when already previously prodded case */
2328kvm_cede_prodded:
2329	li	r0,0
2330	stb	r0,VCPU_PRODDED(r3)
2331	sync			/* order testing prodded vs. clearing ceded */
2332	stb	r0,VCPU_CEDED(r3)
2333	li	r3,H_SUCCESS
2334	blr
2335
2336	/* we've ceded but we want to give control to the host */
2337kvm_cede_exit:
2338	ld	r9, HSTATE_KVM_VCPU(r13)
2339	b	guest_exit_cont
2340
2341	/* Try to do machine check recovery in real mode */
2342machine_check_realmode:
2343	mr	r3, r9		/* get vcpu pointer */
2344	bl	kvmppc_realmode_machine_check
2345	nop
2346	/* all machine checks go to virtual mode for further handling */
2347	ld	r9, HSTATE_KVM_VCPU(r13)
2348	li	r12, BOOK3S_INTERRUPT_MACHINE_CHECK
2349	b	guest_exit_cont
2350
2351/*
2352 * Call C code to handle a HMI in real mode.
2353 * Only the primary thread does the call, secondary threads are handled
2354 * by calling hmi_exception_realmode() after kvmppc_hv_entry returns.
2355 * r9 points to the vcpu on entry
2356 */
2357hmi_realmode:
2358	lbz	r0, HSTATE_PTID(r13)
2359	cmpwi	r0, 0
2360	bne	guest_exit_cont
2361	bl	kvmppc_realmode_hmi_handler
2362	ld	r9, HSTATE_KVM_VCPU(r13)
2363	li	r12, BOOK3S_INTERRUPT_HMI
2364	b	guest_exit_cont
2365
2366/*
2367 * Check the reason we woke from nap, and take appropriate action.
2368 * Returns (in r3):
2369 *	0 if nothing needs to be done
2370 *	1 if something happened that needs to be handled by the host
2371 *	-1 if there was a guest wakeup (IPI or msgsnd)
2372 *	-2 if we handled a PCI passthrough interrupt (returned by
2373 *		kvmppc_read_intr only)
2374 *
2375 * Also sets r12 to the interrupt vector for any interrupt that needs
2376 * to be handled now by the host (0x500 for external interrupt), or zero.
2377 * Modifies all volatile registers (since it may call a C function).
2378 * This routine calls kvmppc_read_intr, a C function, if an external
2379 * interrupt is pending.
2380 */
2381kvmppc_check_wake_reason:
2382	mfspr	r6, SPRN_SRR1
2383BEGIN_FTR_SECTION
2384	rlwinm	r6, r6, 45-31, 0xf	/* extract wake reason field (P8) */
2385FTR_SECTION_ELSE
2386	rlwinm	r6, r6, 45-31, 0xe	/* P7 wake reason field is 3 bits */
2387ALT_FTR_SECTION_END_IFSET(CPU_FTR_ARCH_207S)
2388	cmpwi	r6, 8			/* was it an external interrupt? */
2389	beq	7f			/* if so, see what it was */
2390	li	r3, 0
2391	li	r12, 0
2392	cmpwi	r6, 6			/* was it the decrementer? */
2393	beq	0f
2394BEGIN_FTR_SECTION
2395	cmpwi	r6, 5			/* privileged doorbell? */
2396	beq	0f
2397	cmpwi	r6, 3			/* hypervisor doorbell? */
2398	beq	3f
2399END_FTR_SECTION_IFSET(CPU_FTR_ARCH_207S)
2400	cmpwi	r6, 0xa			/* Hypervisor maintenance ? */
2401	beq	4f
2402	li	r3, 1			/* anything else, return 1 */
24030:	blr
2404
2405	/* hypervisor doorbell */
24063:	li	r12, BOOK3S_INTERRUPT_H_DOORBELL
2407
2408	/*
2409	 * Clear the doorbell as we will invoke the handler
2410	 * explicitly in the guest exit path.
2411	 */
2412	lis	r6, (PPC_DBELL_SERVER << (63-36))@h
2413	PPC_MSGCLR(6)
2414	/* see if it's a host IPI */
2415	li	r3, 1
2416	lbz	r0, HSTATE_HOST_IPI(r13)
2417	cmpwi	r0, 0
2418	bnelr
2419	/* if not, return -1 */
2420	li	r3, -1
2421	blr
2422
2423	/* Woken up due to Hypervisor maintenance interrupt */
24244:	li	r12, BOOK3S_INTERRUPT_HMI
2425	li	r3, 1
2426	blr
2427
2428	/* external interrupt - create a stack frame so we can call C */
24297:	mflr	r0
2430	std	r0, PPC_LR_STKOFF(r1)
2431	stdu	r1, -PPC_MIN_STKFRM(r1)
2432	bl	kvmppc_read_intr
2433	nop
2434	li	r12, BOOK3S_INTERRUPT_EXTERNAL
2435	cmpdi	r3, 1
2436	ble	1f
2437
2438	/*
2439	 * Return code of 2 means PCI passthrough interrupt, but
2440	 * we need to return back to host to complete handling the
2441	 * interrupt. Trap reason is expected in r12 by guest
2442	 * exit code.
2443	 */
2444	li	r12, BOOK3S_INTERRUPT_HV_RM_HARD
24451:
2446	ld	r0, PPC_MIN_STKFRM+PPC_LR_STKOFF(r1)
2447	addi	r1, r1, PPC_MIN_STKFRM
2448	mtlr	r0
2449	blr
2450
2451/*
2452 * Save away FP, VMX and VSX registers.
2453 * r3 = vcpu pointer
2454 * N.B. r30 and r31 are volatile across this function,
2455 * thus it is not callable from C.
2456 */
2457kvmppc_save_fp:
2458	mflr	r30
2459	mr	r31,r3
2460	mfmsr	r5
2461	ori	r8,r5,MSR_FP
2462#ifdef CONFIG_ALTIVEC
2463BEGIN_FTR_SECTION
2464	oris	r8,r8,MSR_VEC@h
2465END_FTR_SECTION_IFSET(CPU_FTR_ALTIVEC)
2466#endif
2467#ifdef CONFIG_VSX
2468BEGIN_FTR_SECTION
2469	oris	r8,r8,MSR_VSX@h
2470END_FTR_SECTION_IFSET(CPU_FTR_VSX)
2471#endif
2472	mtmsrd	r8
2473	addi	r3,r3,VCPU_FPRS
2474	bl	store_fp_state
2475#ifdef CONFIG_ALTIVEC
2476BEGIN_FTR_SECTION
2477	addi	r3,r31,VCPU_VRS
2478	bl	store_vr_state
2479END_FTR_SECTION_IFSET(CPU_FTR_ALTIVEC)
2480#endif
2481	mfspr	r6,SPRN_VRSAVE
2482	stw	r6,VCPU_VRSAVE(r31)
2483	mtlr	r30
2484	blr
2485
2486/*
2487 * Load up FP, VMX and VSX registers
2488 * r4 = vcpu pointer
2489 * N.B. r30 and r31 are volatile across this function,
2490 * thus it is not callable from C.
2491 */
2492kvmppc_load_fp:
2493	mflr	r30
2494	mr	r31,r4
2495	mfmsr	r9
2496	ori	r8,r9,MSR_FP
2497#ifdef CONFIG_ALTIVEC
2498BEGIN_FTR_SECTION
2499	oris	r8,r8,MSR_VEC@h
2500END_FTR_SECTION_IFSET(CPU_FTR_ALTIVEC)
2501#endif
2502#ifdef CONFIG_VSX
2503BEGIN_FTR_SECTION
2504	oris	r8,r8,MSR_VSX@h
2505END_FTR_SECTION_IFSET(CPU_FTR_VSX)
2506#endif
2507	mtmsrd	r8
2508	addi	r3,r4,VCPU_FPRS
2509	bl	load_fp_state
2510#ifdef CONFIG_ALTIVEC
2511BEGIN_FTR_SECTION
2512	addi	r3,r31,VCPU_VRS
2513	bl	load_vr_state
2514END_FTR_SECTION_IFSET(CPU_FTR_ALTIVEC)
2515#endif
2516	lwz	r7,VCPU_VRSAVE(r31)
2517	mtspr	SPRN_VRSAVE,r7
2518	mtlr	r30
2519	mr	r4,r31
2520	blr
2521
2522#ifdef CONFIG_PPC_TRANSACTIONAL_MEM
2523/*
2524 * Save transactional state and TM-related registers.
2525 * Called with r3 pointing to the vcpu struct and r4 containing
2526 * the guest MSR value.
2527 * r5 is non-zero iff non-volatile register state needs to be maintained.
2528 * If r5 == 0, this can modify all checkpointed registers, but
2529 * restores r1 and r2 before exit.
2530 */
2531_GLOBAL_TOC(kvmppc_save_tm_hv)
2532EXPORT_SYMBOL_GPL(kvmppc_save_tm_hv)
2533	/* See if we need to handle fake suspend mode */
2534BEGIN_FTR_SECTION
2535	b	__kvmppc_save_tm
2536END_FTR_SECTION_IFCLR(CPU_FTR_P9_TM_HV_ASSIST)
2537
2538	lbz	r0, HSTATE_FAKE_SUSPEND(r13) /* Were we fake suspended? */
2539	cmpwi	r0, 0
2540	beq	__kvmppc_save_tm
2541
2542	/* The following code handles the fake_suspend = 1 case */
2543	mflr	r0
2544	std	r0, PPC_LR_STKOFF(r1)
2545	stdu	r1, -TM_FRAME_SIZE(r1)
2546
2547	/* Turn on TM. */
2548	mfmsr	r8
2549	li	r0, 1
2550	rldimi	r8, r0, MSR_TM_LG, 63-MSR_TM_LG
2551	mtmsrd	r8
2552
2553	rldicl. r8, r8, 64 - MSR_TS_S_LG, 62 /* Did we actually hrfid? */
2554	beq	4f
2555BEGIN_FTR_SECTION
2556	bl	pnv_power9_force_smt4_catch
2557END_FTR_SECTION_IFSET(CPU_FTR_P9_TM_XER_SO_BUG)
2558	nop
2559
2560	/*
2561	 * It's possible that treclaim. may modify registers, if we have lost
2562	 * track of fake-suspend state in the guest due to it using rfscv.
2563	 * Save and restore registers in case this occurs.
2564	 */
2565	mfspr	r3, SPRN_DSCR
2566	mfspr	r4, SPRN_XER
2567	mfspr	r5, SPRN_AMR
2568	/* SPRN_TAR would need to be saved here if the kernel ever used it */
2569	mfcr	r12
2570	SAVE_NVGPRS(r1)
2571	SAVE_GPR(2, r1)
2572	SAVE_GPR(3, r1)
2573	SAVE_GPR(4, r1)
2574	SAVE_GPR(5, r1)
2575	stw	r12, 8(r1)
2576	std	r1, HSTATE_HOST_R1(r13)
2577
2578	/* We have to treclaim here because that's the only way to do S->N */
2579	li	r3, TM_CAUSE_KVM_RESCHED
2580	TRECLAIM(R3)
2581
2582	GET_PACA(r13)
2583	ld	r1, HSTATE_HOST_R1(r13)
2584	REST_GPR(2, r1)
2585	REST_GPR(3, r1)
2586	REST_GPR(4, r1)
2587	REST_GPR(5, r1)
2588	lwz	r12, 8(r1)
2589	REST_NVGPRS(r1)
2590	mtspr	SPRN_DSCR, r3
2591	mtspr	SPRN_XER, r4
2592	mtspr	SPRN_AMR, r5
2593	mtcr	r12
2594	HMT_MEDIUM
2595
2596	/*
2597	 * We were in fake suspend, so we are not going to save the
2598	 * register state as the guest checkpointed state (since
2599	 * we already have it), therefore we can now use any volatile GPR.
2600	 * In fact treclaim in fake suspend state doesn't modify
2601	 * any registers.
2602	 */
2603
2604BEGIN_FTR_SECTION
2605	bl	pnv_power9_force_smt4_release
2606END_FTR_SECTION_IFSET(CPU_FTR_P9_TM_XER_SO_BUG)
2607	nop
2608
26094:
2610	mfspr	r3, SPRN_PSSCR
2611	/* PSSCR_FAKE_SUSPEND is a write-only bit, but clear it anyway */
2612	li	r0, PSSCR_FAKE_SUSPEND
2613	andc	r3, r3, r0
2614	mtspr	SPRN_PSSCR, r3
2615
2616	/* Don't save TEXASR, use value from last exit in real suspend state */
2617	ld	r9, HSTATE_KVM_VCPU(r13)
2618	mfspr	r5, SPRN_TFHAR
2619	mfspr	r6, SPRN_TFIAR
2620	std	r5, VCPU_TFHAR(r9)
2621	std	r6, VCPU_TFIAR(r9)
2622
2623	addi	r1, r1, TM_FRAME_SIZE
2624	ld	r0, PPC_LR_STKOFF(r1)
2625	mtlr	r0
2626	blr
2627
2628/*
2629 * Restore transactional state and TM-related registers.
2630 * Called with r3 pointing to the vcpu struct
2631 * and r4 containing the guest MSR value.
2632 * r5 is non-zero iff non-volatile register state needs to be maintained.
2633 * This potentially modifies all checkpointed registers.
2634 * It restores r1 and r2 from the PACA.
2635 */
2636_GLOBAL_TOC(kvmppc_restore_tm_hv)
2637EXPORT_SYMBOL_GPL(kvmppc_restore_tm_hv)
2638	/*
2639	 * If we are doing TM emulation for the guest on a POWER9 DD2,
2640	 * then we don't actually do a trechkpt -- we either set up
2641	 * fake-suspend mode, or emulate a TM rollback.
2642	 */
2643BEGIN_FTR_SECTION
2644	b	__kvmppc_restore_tm
2645END_FTR_SECTION_IFCLR(CPU_FTR_P9_TM_HV_ASSIST)
2646	mflr	r0
2647	std	r0, PPC_LR_STKOFF(r1)
2648
2649	li	r0, 0
2650	stb	r0, HSTATE_FAKE_SUSPEND(r13)
2651
2652	/* Turn on TM so we can restore TM SPRs */
2653	mfmsr	r5
2654	li	r0, 1
2655	rldimi	r5, r0, MSR_TM_LG, 63-MSR_TM_LG
2656	mtmsrd	r5
2657
2658	/*
2659	 * The user may change these outside of a transaction, so they must
2660	 * always be context switched.
2661	 */
2662	ld	r5, VCPU_TFHAR(r3)
2663	ld	r6, VCPU_TFIAR(r3)
2664	ld	r7, VCPU_TEXASR(r3)
2665	mtspr	SPRN_TFHAR, r5
2666	mtspr	SPRN_TFIAR, r6
2667	mtspr	SPRN_TEXASR, r7
2668
2669	rldicl. r5, r4, 64 - MSR_TS_S_LG, 62
2670	beqlr		/* TM not active in guest */
2671
2672	/* Make sure the failure summary is set */
2673	oris	r7, r7, (TEXASR_FS)@h
2674	mtspr	SPRN_TEXASR, r7
2675
2676	cmpwi	r5, 1		/* check for suspended state */
2677	bgt	10f
2678	stb	r5, HSTATE_FAKE_SUSPEND(r13)
2679	b	9f		/* and return */
268010:	stdu	r1, -PPC_MIN_STKFRM(r1)
2681	/* guest is in transactional state, so simulate rollback */
2682	bl	kvmhv_emulate_tm_rollback
2683	nop
2684	addi	r1, r1, PPC_MIN_STKFRM
26859:	ld	r0, PPC_LR_STKOFF(r1)
2686	mtlr	r0
2687	blr
2688#endif /* CONFIG_PPC_TRANSACTIONAL_MEM */
2689
2690/*
2691 * We come here if we get any exception or interrupt while we are
2692 * executing host real mode code while in guest MMU context.
2693 * r12 is (CR << 32) | vector
2694 * r13 points to our PACA
2695 * r12 is saved in HSTATE_SCRATCH0(r13)
2696 * r9 is saved in HSTATE_SCRATCH2(r13)
2697 * r13 is saved in HSPRG1
2698 * cfar is saved in HSTATE_CFAR(r13)
2699 * ppr is saved in HSTATE_PPR(r13)
2700 */
2701kvmppc_bad_host_intr:
2702	/*
2703	 * Switch to the emergency stack, but start half-way down in
2704	 * case we were already on it.
2705	 */
2706	mr	r9, r1
2707	std	r1, PACAR1(r13)
2708	ld	r1, PACAEMERGSP(r13)
2709	subi	r1, r1, THREAD_SIZE/2 + INT_FRAME_SIZE
2710	std	r9, 0(r1)
2711	std	r0, GPR0(r1)
2712	std	r9, GPR1(r1)
2713	std	r2, GPR2(r1)
2714	SAVE_4GPRS(3, r1)
2715	SAVE_2GPRS(7, r1)
2716	srdi	r0, r12, 32
2717	clrldi	r12, r12, 32
2718	std	r0, _CCR(r1)
2719	std	r12, _TRAP(r1)
2720	andi.	r0, r12, 2
2721	beq	1f
2722	mfspr	r3, SPRN_HSRR0
2723	mfspr	r4, SPRN_HSRR1
2724	mfspr	r5, SPRN_HDAR
2725	mfspr	r6, SPRN_HDSISR
2726	b	2f
27271:	mfspr	r3, SPRN_SRR0
2728	mfspr	r4, SPRN_SRR1
2729	mfspr	r5, SPRN_DAR
2730	mfspr	r6, SPRN_DSISR
27312:	std	r3, _NIP(r1)
2732	std	r4, _MSR(r1)
2733	std	r5, _DAR(r1)
2734	std	r6, _DSISR(r1)
2735	ld	r9, HSTATE_SCRATCH2(r13)
2736	ld	r12, HSTATE_SCRATCH0(r13)
2737	GET_SCRATCH0(r0)
2738	SAVE_4GPRS(9, r1)
2739	std	r0, GPR13(r1)
2740	SAVE_NVGPRS(r1)
2741	ld	r5, HSTATE_CFAR(r13)
2742	std	r5, ORIG_GPR3(r1)
2743	mflr	r3
2744	mfctr	r4
2745	mfxer	r5
2746	lbz	r6, PACAIRQSOFTMASK(r13)
2747	std	r3, _LINK(r1)
2748	std	r4, _CTR(r1)
2749	std	r5, _XER(r1)
2750	std	r6, SOFTE(r1)
2751	ld	r2, PACATOC(r13)
2752	LOAD_REG_IMMEDIATE(3, 0x7265677368657265)
2753	std	r3, STACK_FRAME_OVERHEAD-16(r1)
2754
2755	/*
2756	 * XXX On POWER7 and POWER8, we just spin here since we don't
2757	 * know what the other threads are doing (and we don't want to
2758	 * coordinate with them) - but at least we now have register state
2759	 * in memory that we might be able to look at from another CPU.
2760	 */
2761	b	.
2762
2763/*
2764 * This mimics the MSR transition on IRQ delivery.  The new guest MSR is taken
2765 * from VCPU_INTR_MSR and is modified based on the required TM state changes.
2766 *   r11 has the guest MSR value (in/out)
2767 *   r9 has a vcpu pointer (in)
2768 *   r0 is used as a scratch register
2769 */
2770kvmppc_msr_interrupt:
2771	rldicl	r0, r11, 64 - MSR_TS_S_LG, 62
2772	cmpwi	r0, 2 /* Check if we are in transactional state..  */
2773	ld	r11, VCPU_INTR_MSR(r9)
2774	bne	1f
2775	/* ... if transactional, change to suspended */
2776	li	r0, 1
27771:	rldimi	r11, r0, MSR_TS_S_LG, 63 - MSR_TS_T_LG
2778	blr
2779
2780/*
2781 * Load up guest PMU state.  R3 points to the vcpu struct.
2782 */
2783_GLOBAL(kvmhv_load_guest_pmu)
2784EXPORT_SYMBOL_GPL(kvmhv_load_guest_pmu)
2785	mr	r4, r3
2786	mflr	r0
2787	li	r3, 1
2788	sldi	r3, r3, 31		/* MMCR0_FC (freeze counters) bit */
2789	mtspr	SPRN_MMCR0, r3		/* freeze all counters, disable ints */
2790	isync
2791BEGIN_FTR_SECTION
2792	ld	r3, VCPU_MMCR(r4)
2793	andi.	r5, r3, MMCR0_PMAO_SYNC | MMCR0_PMAO
2794	cmpwi	r5, MMCR0_PMAO
2795	beql	kvmppc_fix_pmao
2796END_FTR_SECTION_IFSET(CPU_FTR_PMAO_BUG)
2797	lwz	r3, VCPU_PMC(r4)	/* always load up guest PMU registers */
2798	lwz	r5, VCPU_PMC + 4(r4)	/* to prevent information leak */
2799	lwz	r6, VCPU_PMC + 8(r4)
2800	lwz	r7, VCPU_PMC + 12(r4)
2801	lwz	r8, VCPU_PMC + 16(r4)
2802	lwz	r9, VCPU_PMC + 20(r4)
2803	mtspr	SPRN_PMC1, r3
2804	mtspr	SPRN_PMC2, r5
2805	mtspr	SPRN_PMC3, r6
2806	mtspr	SPRN_PMC4, r7
2807	mtspr	SPRN_PMC5, r8
2808	mtspr	SPRN_PMC6, r9
2809	ld	r3, VCPU_MMCR(r4)
2810	ld	r5, VCPU_MMCR + 8(r4)
2811	ld	r6, VCPU_MMCRA(r4)
2812	ld	r7, VCPU_SIAR(r4)
2813	ld	r8, VCPU_SDAR(r4)
2814	mtspr	SPRN_MMCR1, r5
2815	mtspr	SPRN_MMCRA, r6
2816	mtspr	SPRN_SIAR, r7
2817	mtspr	SPRN_SDAR, r8
2818BEGIN_FTR_SECTION
2819	ld      r5, VCPU_MMCR + 24(r4)
2820	ld      r6, VCPU_SIER + 8(r4)
2821	ld      r7, VCPU_SIER + 16(r4)
2822	mtspr   SPRN_MMCR3, r5
2823	mtspr   SPRN_SIER2, r6
2824	mtspr   SPRN_SIER3, r7
2825END_FTR_SECTION_IFSET(CPU_FTR_ARCH_31)
2826BEGIN_FTR_SECTION
2827	ld	r5, VCPU_MMCR + 16(r4)
2828	ld	r6, VCPU_SIER(r4)
2829	mtspr	SPRN_MMCR2, r5
2830	mtspr	SPRN_SIER, r6
2831BEGIN_FTR_SECTION_NESTED(96)
2832	lwz	r7, VCPU_PMC + 24(r4)
2833	lwz	r8, VCPU_PMC + 28(r4)
2834	ld	r9, VCPU_MMCRS(r4)
2835	mtspr	SPRN_SPMC1, r7
2836	mtspr	SPRN_SPMC2, r8
2837	mtspr	SPRN_MMCRS, r9
2838END_FTR_SECTION_NESTED(CPU_FTR_ARCH_300, 0, 96)
2839END_FTR_SECTION_IFSET(CPU_FTR_ARCH_207S)
2840	mtspr	SPRN_MMCR0, r3
2841	isync
2842	mtlr	r0
2843	blr
2844
2845/*
2846 * Reload host PMU state saved in the PACA by kvmhv_save_host_pmu.
2847 */
2848_GLOBAL(kvmhv_load_host_pmu)
2849EXPORT_SYMBOL_GPL(kvmhv_load_host_pmu)
2850	mflr	r0
2851	lbz	r4, PACA_PMCINUSE(r13) /* is the host using the PMU? */
2852	cmpwi	r4, 0
2853	beq	23f			/* skip if not */
2854BEGIN_FTR_SECTION
2855	ld	r3, HSTATE_MMCR0(r13)
2856	andi.	r4, r3, MMCR0_PMAO_SYNC | MMCR0_PMAO
2857	cmpwi	r4, MMCR0_PMAO
2858	beql	kvmppc_fix_pmao
2859END_FTR_SECTION_IFSET(CPU_FTR_PMAO_BUG)
2860	lwz	r3, HSTATE_PMC1(r13)
2861	lwz	r4, HSTATE_PMC2(r13)
2862	lwz	r5, HSTATE_PMC3(r13)
2863	lwz	r6, HSTATE_PMC4(r13)
2864	lwz	r8, HSTATE_PMC5(r13)
2865	lwz	r9, HSTATE_PMC6(r13)
2866	mtspr	SPRN_PMC1, r3
2867	mtspr	SPRN_PMC2, r4
2868	mtspr	SPRN_PMC3, r5
2869	mtspr	SPRN_PMC4, r6
2870	mtspr	SPRN_PMC5, r8
2871	mtspr	SPRN_PMC6, r9
2872	ld	r3, HSTATE_MMCR0(r13)
2873	ld	r4, HSTATE_MMCR1(r13)
2874	ld	r5, HSTATE_MMCRA(r13)
2875	ld	r6, HSTATE_SIAR(r13)
2876	ld	r7, HSTATE_SDAR(r13)
2877	mtspr	SPRN_MMCR1, r4
2878	mtspr	SPRN_MMCRA, r5
2879	mtspr	SPRN_SIAR, r6
2880	mtspr	SPRN_SDAR, r7
2881BEGIN_FTR_SECTION
2882	ld	r8, HSTATE_MMCR2(r13)
2883	ld	r9, HSTATE_SIER(r13)
2884	mtspr	SPRN_MMCR2, r8
2885	mtspr	SPRN_SIER, r9
2886END_FTR_SECTION_IFSET(CPU_FTR_ARCH_207S)
2887BEGIN_FTR_SECTION
2888	ld      r5, HSTATE_MMCR3(r13)
2889	ld      r6, HSTATE_SIER2(r13)
2890	ld      r7, HSTATE_SIER3(r13)
2891	mtspr   SPRN_MMCR3, r5
2892	mtspr   SPRN_SIER2, r6
2893	mtspr   SPRN_SIER3, r7
2894END_FTR_SECTION_IFSET(CPU_FTR_ARCH_31)
2895	mtspr	SPRN_MMCR0, r3
2896	isync
2897	mtlr	r0
289823:	blr
2899
2900/*
2901 * Save guest PMU state into the vcpu struct.
2902 * r3 = vcpu, r4 = full save flag (PMU in use flag set in VPA)
2903 */
2904_GLOBAL(kvmhv_save_guest_pmu)
2905EXPORT_SYMBOL_GPL(kvmhv_save_guest_pmu)
2906	mr	r9, r3
2907	mr	r8, r4
2908BEGIN_FTR_SECTION
2909	/*
2910	 * POWER8 seems to have a hardware bug where setting
2911	 * MMCR0[PMAE] along with MMCR0[PMC1CE] and/or MMCR0[PMCjCE]
2912	 * when some counters are already negative doesn't seem
2913	 * to cause a performance monitor alert (and hence interrupt).
2914	 * The effect of this is that when saving the PMU state,
2915	 * if there is no PMU alert pending when we read MMCR0
2916	 * before freezing the counters, but one becomes pending
2917	 * before we read the counters, we lose it.
2918	 * To work around this, we need a way to freeze the counters
2919	 * before reading MMCR0.  Normally, freezing the counters
2920	 * is done by writing MMCR0 (to set MMCR0[FC]) which
2921	 * unavoidably writes MMCR0[PMA0] as well.  On POWER8,
2922	 * we can also freeze the counters using MMCR2, by writing
2923	 * 1s to all the counter freeze condition bits (there are
2924	 * 9 bits each for 6 counters).
2925	 */
2926	li	r3, -1			/* set all freeze bits */
2927	clrrdi	r3, r3, 10
2928	mfspr	r10, SPRN_MMCR2
2929	mtspr	SPRN_MMCR2, r3
2930	isync
2931END_FTR_SECTION_IFSET(CPU_FTR_ARCH_207S)
2932	li	r3, 1
2933	sldi	r3, r3, 31		/* MMCR0_FC (freeze counters) bit */
2934	mfspr	r4, SPRN_MMCR0		/* save MMCR0 */
2935	mtspr	SPRN_MMCR0, r3		/* freeze all counters, disable ints */
2936	mfspr	r6, SPRN_MMCRA
2937	/* Clear MMCRA in order to disable SDAR updates */
2938	li	r7, 0
2939	mtspr	SPRN_MMCRA, r7
2940	isync
2941	cmpwi	r8, 0			/* did they ask for PMU stuff to be saved? */
2942	bne	21f
2943	std	r3, VCPU_MMCR(r9)	/* if not, set saved MMCR0 to FC */
2944	b	22f
294521:	mfspr	r5, SPRN_MMCR1
2946	mfspr	r7, SPRN_SIAR
2947	mfspr	r8, SPRN_SDAR
2948	std	r4, VCPU_MMCR(r9)
2949	std	r5, VCPU_MMCR + 8(r9)
2950	std	r6, VCPU_MMCRA(r9)
2951BEGIN_FTR_SECTION
2952	std	r10, VCPU_MMCR + 16(r9)
2953END_FTR_SECTION_IFSET(CPU_FTR_ARCH_207S)
2954BEGIN_FTR_SECTION
2955	mfspr   r5, SPRN_MMCR3
2956	mfspr   r6, SPRN_SIER2
2957	mfspr   r7, SPRN_SIER3
2958	std     r5, VCPU_MMCR + 24(r9)
2959	std     r6, VCPU_SIER + 8(r9)
2960	std     r7, VCPU_SIER + 16(r9)
2961END_FTR_SECTION_IFSET(CPU_FTR_ARCH_31)
2962	std	r7, VCPU_SIAR(r9)
2963	std	r8, VCPU_SDAR(r9)
2964	mfspr	r3, SPRN_PMC1
2965	mfspr	r4, SPRN_PMC2
2966	mfspr	r5, SPRN_PMC3
2967	mfspr	r6, SPRN_PMC4
2968	mfspr	r7, SPRN_PMC5
2969	mfspr	r8, SPRN_PMC6
2970	stw	r3, VCPU_PMC(r9)
2971	stw	r4, VCPU_PMC + 4(r9)
2972	stw	r5, VCPU_PMC + 8(r9)
2973	stw	r6, VCPU_PMC + 12(r9)
2974	stw	r7, VCPU_PMC + 16(r9)
2975	stw	r8, VCPU_PMC + 20(r9)
2976BEGIN_FTR_SECTION
2977	mfspr	r5, SPRN_SIER
2978	std	r5, VCPU_SIER(r9)
2979BEGIN_FTR_SECTION_NESTED(96)
2980	mfspr	r6, SPRN_SPMC1
2981	mfspr	r7, SPRN_SPMC2
2982	mfspr	r8, SPRN_MMCRS
2983	stw	r6, VCPU_PMC + 24(r9)
2984	stw	r7, VCPU_PMC + 28(r9)
2985	std	r8, VCPU_MMCRS(r9)
2986	lis	r4, 0x8000
2987	mtspr	SPRN_MMCRS, r4
2988END_FTR_SECTION_NESTED(CPU_FTR_ARCH_300, 0, 96)
2989END_FTR_SECTION_IFSET(CPU_FTR_ARCH_207S)
299022:	blr
2991
2992/*
2993 * This works around a hardware bug on POWER8E processors, where
2994 * writing a 1 to the MMCR0[PMAO] bit doesn't generate a
2995 * performance monitor interrupt.  Instead, when we need to have
2996 * an interrupt pending, we have to arrange for a counter to overflow.
2997 */
2998kvmppc_fix_pmao:
2999	li	r3, 0
3000	mtspr	SPRN_MMCR2, r3
3001	lis	r3, (MMCR0_PMXE | MMCR0_FCECE)@h
3002	ori	r3, r3, MMCR0_PMCjCE | MMCR0_C56RUN
3003	mtspr	SPRN_MMCR0, r3
3004	lis	r3, 0x7fff
3005	ori	r3, r3, 0xffff
3006	mtspr	SPRN_PMC6, r3
3007	isync
3008	blr
3009
3010#ifdef CONFIG_KVM_BOOK3S_HV_EXIT_TIMING
3011/*
3012 * Start timing an activity
3013 * r3 = pointer to time accumulation struct, r4 = vcpu
3014 */
3015kvmhv_start_timing:
3016	ld	r5, HSTATE_KVM_VCORE(r13)
3017	ld	r6, VCORE_TB_OFFSET_APPL(r5)
3018	mftb	r5
3019	subf	r5, r6, r5	/* subtract current timebase offset */
3020	std	r3, VCPU_CUR_ACTIVITY(r4)
3021	std	r5, VCPU_ACTIVITY_START(r4)
3022	blr
3023
3024/*
3025 * Accumulate time to one activity and start another.
3026 * r3 = pointer to new time accumulation struct, r4 = vcpu
3027 */
3028kvmhv_accumulate_time:
3029	ld	r5, HSTATE_KVM_VCORE(r13)
3030	ld	r8, VCORE_TB_OFFSET_APPL(r5)
3031	ld	r5, VCPU_CUR_ACTIVITY(r4)
3032	ld	r6, VCPU_ACTIVITY_START(r4)
3033	std	r3, VCPU_CUR_ACTIVITY(r4)
3034	mftb	r7
3035	subf	r7, r8, r7	/* subtract current timebase offset */
3036	std	r7, VCPU_ACTIVITY_START(r4)
3037	cmpdi	r5, 0
3038	beqlr
3039	subf	r3, r6, r7
3040	ld	r8, TAS_SEQCOUNT(r5)
3041	cmpdi	r8, 0
3042	addi	r8, r8, 1
3043	std	r8, TAS_SEQCOUNT(r5)
3044	lwsync
3045	ld	r7, TAS_TOTAL(r5)
3046	add	r7, r7, r3
3047	std	r7, TAS_TOTAL(r5)
3048	ld	r6, TAS_MIN(r5)
3049	ld	r7, TAS_MAX(r5)
3050	beq	3f
3051	cmpd	r3, r6
3052	bge	1f
30533:	std	r3, TAS_MIN(r5)
30541:	cmpd	r3, r7
3055	ble	2f
3056	std	r3, TAS_MAX(r5)
30572:	lwsync
3058	addi	r8, r8, 1
3059	std	r8, TAS_SEQCOUNT(r5)
3060	blr
3061#endif
3062