xref: /openbmc/linux/arch/powerpc/kvm/e500_mmu_host.c (revision 08c9a188)
1b71c9e2fSAlexander Graf /*
2b71c9e2fSAlexander Graf  * Copyright (C) 2008-2013 Freescale Semiconductor, Inc. All rights reserved.
3b71c9e2fSAlexander Graf  *
4b71c9e2fSAlexander Graf  * Author: Yu Liu, yu.liu@freescale.com
5b71c9e2fSAlexander Graf  *         Scott Wood, scottwood@freescale.com
6b71c9e2fSAlexander Graf  *         Ashish Kalra, ashish.kalra@freescale.com
7b71c9e2fSAlexander Graf  *         Varun Sethi, varun.sethi@freescale.com
8b71c9e2fSAlexander Graf  *         Alexander Graf, agraf@suse.de
9b71c9e2fSAlexander Graf  *
10b71c9e2fSAlexander Graf  * Description:
11b71c9e2fSAlexander Graf  * This file is based on arch/powerpc/kvm/44x_tlb.c,
12b71c9e2fSAlexander Graf  * by Hollis Blanchard <hollisb@us.ibm.com>.
13b71c9e2fSAlexander Graf  *
14b71c9e2fSAlexander Graf  * This program is free software; you can redistribute it and/or modify
15b71c9e2fSAlexander Graf  * it under the terms of the GNU General Public License, version 2, as
16b71c9e2fSAlexander Graf  * published by the Free Software Foundation.
17b71c9e2fSAlexander Graf  */
18b71c9e2fSAlexander Graf 
19b71c9e2fSAlexander Graf #include <linux/kernel.h>
20b71c9e2fSAlexander Graf #include <linux/types.h>
21b71c9e2fSAlexander Graf #include <linux/slab.h>
22b71c9e2fSAlexander Graf #include <linux/string.h>
23b71c9e2fSAlexander Graf #include <linux/kvm.h>
24b71c9e2fSAlexander Graf #include <linux/kvm_host.h>
25b71c9e2fSAlexander Graf #include <linux/highmem.h>
26b71c9e2fSAlexander Graf #include <linux/log2.h>
27b71c9e2fSAlexander Graf #include <linux/uaccess.h>
28b71c9e2fSAlexander Graf #include <linux/sched.h>
29b71c9e2fSAlexander Graf #include <linux/rwsem.h>
30b71c9e2fSAlexander Graf #include <linux/vmalloc.h>
31b71c9e2fSAlexander Graf #include <linux/hugetlb.h>
32b71c9e2fSAlexander Graf #include <asm/kvm_ppc.h>
33b71c9e2fSAlexander Graf 
34b71c9e2fSAlexander Graf #include "e500.h"
35b71c9e2fSAlexander Graf #include "timing.h"
36b71c9e2fSAlexander Graf #include "e500_mmu_host.h"
37b71c9e2fSAlexander Graf 
38dba291f2SAneesh Kumar K.V #include "trace_booke.h"
39dba291f2SAneesh Kumar K.V 
40b71c9e2fSAlexander Graf #define to_htlb1_esel(esel) (host_tlb_params[1].entries - (esel) - 1)
41b71c9e2fSAlexander Graf 
42b71c9e2fSAlexander Graf static struct kvmppc_e500_tlb_params host_tlb_params[E500_TLB_NUM];
43b71c9e2fSAlexander Graf 
44b71c9e2fSAlexander Graf static inline unsigned int tlb1_max_shadow_size(void)
45b71c9e2fSAlexander Graf {
46b71c9e2fSAlexander Graf 	/* reserve one entry for magic page */
47b71c9e2fSAlexander Graf 	return host_tlb_params[1].entries - tlbcam_index - 1;
48b71c9e2fSAlexander Graf }
49b71c9e2fSAlexander Graf 
50b71c9e2fSAlexander Graf static inline u32 e500_shadow_mas3_attrib(u32 mas3, int usermode)
51b71c9e2fSAlexander Graf {
52b71c9e2fSAlexander Graf 	/* Mask off reserved bits. */
53b71c9e2fSAlexander Graf 	mas3 &= MAS3_ATTRIB_MASK;
54b71c9e2fSAlexander Graf 
55b71c9e2fSAlexander Graf #ifndef CONFIG_KVM_BOOKE_HV
56b71c9e2fSAlexander Graf 	if (!usermode) {
57b71c9e2fSAlexander Graf 		/* Guest is in supervisor mode,
58b71c9e2fSAlexander Graf 		 * so we need to translate guest
59b71c9e2fSAlexander Graf 		 * supervisor permissions into user permissions. */
60b71c9e2fSAlexander Graf 		mas3 &= ~E500_TLB_USER_PERM_MASK;
61b71c9e2fSAlexander Graf 		mas3 |= (mas3 & E500_TLB_SUPER_PERM_MASK) << 1;
62b71c9e2fSAlexander Graf 	}
63b71c9e2fSAlexander Graf 	mas3 |= E500_TLB_SUPER_PERM_MASK;
64b71c9e2fSAlexander Graf #endif
65b71c9e2fSAlexander Graf 	return mas3;
66b71c9e2fSAlexander Graf }
67b71c9e2fSAlexander Graf 
68b71c9e2fSAlexander Graf /*
69b71c9e2fSAlexander Graf  * writing shadow tlb entry to host TLB
70b71c9e2fSAlexander Graf  */
71b71c9e2fSAlexander Graf static inline void __write_host_tlbe(struct kvm_book3e_206_tlb_entry *stlbe,
72b71c9e2fSAlexander Graf 				     uint32_t mas0)
73b71c9e2fSAlexander Graf {
74b71c9e2fSAlexander Graf 	unsigned long flags;
75b71c9e2fSAlexander Graf 
76b71c9e2fSAlexander Graf 	local_irq_save(flags);
77b71c9e2fSAlexander Graf 	mtspr(SPRN_MAS0, mas0);
78b71c9e2fSAlexander Graf 	mtspr(SPRN_MAS1, stlbe->mas1);
79b71c9e2fSAlexander Graf 	mtspr(SPRN_MAS2, (unsigned long)stlbe->mas2);
80b71c9e2fSAlexander Graf 	mtspr(SPRN_MAS3, (u32)stlbe->mas7_3);
81b71c9e2fSAlexander Graf 	mtspr(SPRN_MAS7, (u32)(stlbe->mas7_3 >> 32));
82b71c9e2fSAlexander Graf #ifdef CONFIG_KVM_BOOKE_HV
83b71c9e2fSAlexander Graf 	mtspr(SPRN_MAS8, stlbe->mas8);
84b71c9e2fSAlexander Graf #endif
85b71c9e2fSAlexander Graf 	asm volatile("isync; tlbwe" : : : "memory");
86b71c9e2fSAlexander Graf 
87b71c9e2fSAlexander Graf #ifdef CONFIG_KVM_BOOKE_HV
88b71c9e2fSAlexander Graf 	/* Must clear mas8 for other host tlbwe's */
89b71c9e2fSAlexander Graf 	mtspr(SPRN_MAS8, 0);
90b71c9e2fSAlexander Graf 	isync();
91b71c9e2fSAlexander Graf #endif
92b71c9e2fSAlexander Graf 	local_irq_restore(flags);
93b71c9e2fSAlexander Graf 
94b71c9e2fSAlexander Graf 	trace_kvm_booke206_stlb_write(mas0, stlbe->mas8, stlbe->mas1,
95b71c9e2fSAlexander Graf 	                              stlbe->mas2, stlbe->mas7_3);
96b71c9e2fSAlexander Graf }
97b71c9e2fSAlexander Graf 
98b71c9e2fSAlexander Graf /*
99b71c9e2fSAlexander Graf  * Acquire a mas0 with victim hint, as if we just took a TLB miss.
100b71c9e2fSAlexander Graf  *
101b71c9e2fSAlexander Graf  * We don't care about the address we're searching for, other than that it's
102b71c9e2fSAlexander Graf  * in the right set and is not present in the TLB.  Using a zero PID and a
103b71c9e2fSAlexander Graf  * userspace address means we don't have to set and then restore MAS5, or
104b71c9e2fSAlexander Graf  * calculate a proper MAS6 value.
105b71c9e2fSAlexander Graf  */
106b71c9e2fSAlexander Graf static u32 get_host_mas0(unsigned long eaddr)
107b71c9e2fSAlexander Graf {
108b71c9e2fSAlexander Graf 	unsigned long flags;
109b71c9e2fSAlexander Graf 	u32 mas0;
110b71c9e2fSAlexander Graf 
111b71c9e2fSAlexander Graf 	local_irq_save(flags);
112b71c9e2fSAlexander Graf 	mtspr(SPRN_MAS6, 0);
113b71c9e2fSAlexander Graf 	asm volatile("tlbsx 0, %0" : : "b" (eaddr & ~CONFIG_PAGE_OFFSET));
114b71c9e2fSAlexander Graf 	mas0 = mfspr(SPRN_MAS0);
115b71c9e2fSAlexander Graf 	local_irq_restore(flags);
116b71c9e2fSAlexander Graf 
117b71c9e2fSAlexander Graf 	return mas0;
118b71c9e2fSAlexander Graf }
119b71c9e2fSAlexander Graf 
120b71c9e2fSAlexander Graf /* sesel is for tlb1 only */
121b71c9e2fSAlexander Graf static inline void write_host_tlbe(struct kvmppc_vcpu_e500 *vcpu_e500,
122b71c9e2fSAlexander Graf 		int tlbsel, int sesel, struct kvm_book3e_206_tlb_entry *stlbe)
123b71c9e2fSAlexander Graf {
124b71c9e2fSAlexander Graf 	u32 mas0;
125b71c9e2fSAlexander Graf 
126b71c9e2fSAlexander Graf 	if (tlbsel == 0) {
127b71c9e2fSAlexander Graf 		mas0 = get_host_mas0(stlbe->mas2);
128b71c9e2fSAlexander Graf 		__write_host_tlbe(stlbe, mas0);
129b71c9e2fSAlexander Graf 	} else {
130b71c9e2fSAlexander Graf 		__write_host_tlbe(stlbe,
131b71c9e2fSAlexander Graf 				  MAS0_TLBSEL(1) |
132b71c9e2fSAlexander Graf 				  MAS0_ESEL(to_htlb1_esel(sesel)));
133b71c9e2fSAlexander Graf 	}
134b71c9e2fSAlexander Graf }
135b71c9e2fSAlexander Graf 
136b71c9e2fSAlexander Graf /* sesel is for tlb1 only */
137b71c9e2fSAlexander Graf static void write_stlbe(struct kvmppc_vcpu_e500 *vcpu_e500,
138b71c9e2fSAlexander Graf 			struct kvm_book3e_206_tlb_entry *gtlbe,
139b71c9e2fSAlexander Graf 			struct kvm_book3e_206_tlb_entry *stlbe,
140b71c9e2fSAlexander Graf 			int stlbsel, int sesel)
141b71c9e2fSAlexander Graf {
142b71c9e2fSAlexander Graf 	int stid;
143b71c9e2fSAlexander Graf 
144b71c9e2fSAlexander Graf 	preempt_disable();
145b71c9e2fSAlexander Graf 	stid = kvmppc_e500_get_tlb_stid(&vcpu_e500->vcpu, gtlbe);
146b71c9e2fSAlexander Graf 
147b71c9e2fSAlexander Graf 	stlbe->mas1 |= MAS1_TID(stid);
148b71c9e2fSAlexander Graf 	write_host_tlbe(vcpu_e500, stlbsel, sesel, stlbe);
149b71c9e2fSAlexander Graf 	preempt_enable();
150b71c9e2fSAlexander Graf }
151b71c9e2fSAlexander Graf 
152b71c9e2fSAlexander Graf #ifdef CONFIG_KVM_E500V2
153b71c9e2fSAlexander Graf /* XXX should be a hook in the gva2hpa translation */
154b71c9e2fSAlexander Graf void kvmppc_map_magic(struct kvm_vcpu *vcpu)
155b71c9e2fSAlexander Graf {
156b71c9e2fSAlexander Graf 	struct kvmppc_vcpu_e500 *vcpu_e500 = to_e500(vcpu);
157b71c9e2fSAlexander Graf 	struct kvm_book3e_206_tlb_entry magic;
158b71c9e2fSAlexander Graf 	ulong shared_page = ((ulong)vcpu->arch.shared) & PAGE_MASK;
159b71c9e2fSAlexander Graf 	unsigned int stid;
160b71c9e2fSAlexander Graf 	pfn_t pfn;
161b71c9e2fSAlexander Graf 
162b71c9e2fSAlexander Graf 	pfn = (pfn_t)virt_to_phys((void *)shared_page) >> PAGE_SHIFT;
163b71c9e2fSAlexander Graf 	get_page(pfn_to_page(pfn));
164b71c9e2fSAlexander Graf 
165b71c9e2fSAlexander Graf 	preempt_disable();
166b71c9e2fSAlexander Graf 	stid = kvmppc_e500_get_sid(vcpu_e500, 0, 0, 0, 0);
167b71c9e2fSAlexander Graf 
168b71c9e2fSAlexander Graf 	magic.mas1 = MAS1_VALID | MAS1_TS | MAS1_TID(stid) |
169b71c9e2fSAlexander Graf 		     MAS1_TSIZE(BOOK3E_PAGESZ_4K);
170b71c9e2fSAlexander Graf 	magic.mas2 = vcpu->arch.magic_page_ea | MAS2_M;
171b71c9e2fSAlexander Graf 	magic.mas7_3 = ((u64)pfn << PAGE_SHIFT) |
172b71c9e2fSAlexander Graf 		       MAS3_SW | MAS3_SR | MAS3_UW | MAS3_UR;
173b71c9e2fSAlexander Graf 	magic.mas8 = 0;
174b71c9e2fSAlexander Graf 
175b71c9e2fSAlexander Graf 	__write_host_tlbe(&magic, MAS0_TLBSEL(1) | MAS0_ESEL(tlbcam_index));
176b71c9e2fSAlexander Graf 	preempt_enable();
177b71c9e2fSAlexander Graf }
178b71c9e2fSAlexander Graf #endif
179b71c9e2fSAlexander Graf 
180b71c9e2fSAlexander Graf void inval_gtlbe_on_host(struct kvmppc_vcpu_e500 *vcpu_e500, int tlbsel,
181b71c9e2fSAlexander Graf 			 int esel)
182b71c9e2fSAlexander Graf {
183b71c9e2fSAlexander Graf 	struct kvm_book3e_206_tlb_entry *gtlbe =
184b71c9e2fSAlexander Graf 		get_entry(vcpu_e500, tlbsel, esel);
185b71c9e2fSAlexander Graf 	struct tlbe_ref *ref = &vcpu_e500->gtlb_priv[tlbsel][esel].ref;
186b71c9e2fSAlexander Graf 
187b71c9e2fSAlexander Graf 	/* Don't bother with unmapped entries */
1884d2be6f7SScott Wood 	if (!(ref->flags & E500_TLB_VALID)) {
1894d2be6f7SScott Wood 		WARN(ref->flags & (E500_TLB_BITMAP | E500_TLB_TLB0),
1904d2be6f7SScott Wood 		     "%s: flags %x\n", __func__, ref->flags);
1914d2be6f7SScott Wood 		WARN_ON(tlbsel == 1 && vcpu_e500->g2h_tlb1_map[esel]);
1924d2be6f7SScott Wood 	}
193b71c9e2fSAlexander Graf 
194b71c9e2fSAlexander Graf 	if (tlbsel == 1 && ref->flags & E500_TLB_BITMAP) {
195b71c9e2fSAlexander Graf 		u64 tmp = vcpu_e500->g2h_tlb1_map[esel];
196b71c9e2fSAlexander Graf 		int hw_tlb_indx;
197b71c9e2fSAlexander Graf 		unsigned long flags;
198b71c9e2fSAlexander Graf 
199b71c9e2fSAlexander Graf 		local_irq_save(flags);
200b71c9e2fSAlexander Graf 		while (tmp) {
201b71c9e2fSAlexander Graf 			hw_tlb_indx = __ilog2_u64(tmp & -tmp);
202b71c9e2fSAlexander Graf 			mtspr(SPRN_MAS0,
203b71c9e2fSAlexander Graf 			      MAS0_TLBSEL(1) |
204b71c9e2fSAlexander Graf 			      MAS0_ESEL(to_htlb1_esel(hw_tlb_indx)));
205b71c9e2fSAlexander Graf 			mtspr(SPRN_MAS1, 0);
206b71c9e2fSAlexander Graf 			asm volatile("tlbwe");
207b71c9e2fSAlexander Graf 			vcpu_e500->h2g_tlb1_rmap[hw_tlb_indx] = 0;
208b71c9e2fSAlexander Graf 			tmp &= tmp - 1;
209b71c9e2fSAlexander Graf 		}
210b71c9e2fSAlexander Graf 		mb();
211b71c9e2fSAlexander Graf 		vcpu_e500->g2h_tlb1_map[esel] = 0;
212b71c9e2fSAlexander Graf 		ref->flags &= ~(E500_TLB_BITMAP | E500_TLB_VALID);
213b71c9e2fSAlexander Graf 		local_irq_restore(flags);
214b71c9e2fSAlexander Graf 	}
215b71c9e2fSAlexander Graf 
216c015c62bSAlexander Graf 	if (tlbsel == 1 && ref->flags & E500_TLB_TLB0) {
217c015c62bSAlexander Graf 		/*
218c015c62bSAlexander Graf 		 * TLB1 entry is backed by 4k pages. This should happen
219c015c62bSAlexander Graf 		 * rarely and is not worth optimizing. Invalidate everything.
220c015c62bSAlexander Graf 		 */
221c015c62bSAlexander Graf 		kvmppc_e500_tlbil_all(vcpu_e500);
222c015c62bSAlexander Graf 		ref->flags &= ~(E500_TLB_TLB0 | E500_TLB_VALID);
223c015c62bSAlexander Graf 	}
224c015c62bSAlexander Graf 
22530a91fe2SBharat Bhushan 	/*
22630a91fe2SBharat Bhushan 	 * If TLB entry is still valid then it's a TLB0 entry, and thus
22730a91fe2SBharat Bhushan 	 * backed by at most one host tlbe per shadow pid
22830a91fe2SBharat Bhushan 	 */
22930a91fe2SBharat Bhushan 	if (ref->flags & E500_TLB_VALID)
230b71c9e2fSAlexander Graf 		kvmppc_e500_tlbil_one(vcpu_e500, gtlbe);
231b71c9e2fSAlexander Graf 
232b71c9e2fSAlexander Graf 	/* Mark the TLB as not backed by the host anymore */
23330a91fe2SBharat Bhushan 	ref->flags = 0;
234b71c9e2fSAlexander Graf }
235b71c9e2fSAlexander Graf 
236b71c9e2fSAlexander Graf static inline int tlbe_is_writable(struct kvm_book3e_206_tlb_entry *tlbe)
237b71c9e2fSAlexander Graf {
238b71c9e2fSAlexander Graf 	return tlbe->mas7_3 & (MAS3_SW|MAS3_UW);
239b71c9e2fSAlexander Graf }
240b71c9e2fSAlexander Graf 
241b71c9e2fSAlexander Graf static inline void kvmppc_e500_ref_setup(struct tlbe_ref *ref,
242b71c9e2fSAlexander Graf 					 struct kvm_book3e_206_tlb_entry *gtlbe,
24308c9a188SBharat Bhushan 					 pfn_t pfn, unsigned int wimg)
244b71c9e2fSAlexander Graf {
245b71c9e2fSAlexander Graf 	ref->pfn = pfn;
24630a91fe2SBharat Bhushan 	ref->flags = E500_TLB_VALID;
247b71c9e2fSAlexander Graf 
24808c9a188SBharat Bhushan 	/* Use guest supplied MAS2_G and MAS2_E */
24908c9a188SBharat Bhushan 	ref->flags |= (gtlbe->mas2 & MAS2_ATTRIB_MASK) | wimg;
25008c9a188SBharat Bhushan 
25184e4d632SBharat Bhushan 	/* Mark the page accessed */
25284e4d632SBharat Bhushan 	kvm_set_pfn_accessed(pfn);
25384e4d632SBharat Bhushan 
254b71c9e2fSAlexander Graf 	if (tlbe_is_writable(gtlbe))
255b71c9e2fSAlexander Graf 		kvm_set_pfn_dirty(pfn);
256b71c9e2fSAlexander Graf }
257b71c9e2fSAlexander Graf 
258b71c9e2fSAlexander Graf static inline void kvmppc_e500_ref_release(struct tlbe_ref *ref)
259b71c9e2fSAlexander Graf {
260b71c9e2fSAlexander Graf 	if (ref->flags & E500_TLB_VALID) {
2614d2be6f7SScott Wood 		/* FIXME: don't log bogus pfn for TLB1 */
262b71c9e2fSAlexander Graf 		trace_kvm_booke206_ref_release(ref->pfn, ref->flags);
263b71c9e2fSAlexander Graf 		ref->flags = 0;
264b71c9e2fSAlexander Graf 	}
265b71c9e2fSAlexander Graf }
266b71c9e2fSAlexander Graf 
267483ba97cSAlexander Graf static void clear_tlb1_bitmap(struct kvmppc_vcpu_e500 *vcpu_e500)
268b71c9e2fSAlexander Graf {
269b71c9e2fSAlexander Graf 	if (vcpu_e500->g2h_tlb1_map)
270b71c9e2fSAlexander Graf 		memset(vcpu_e500->g2h_tlb1_map, 0,
271b71c9e2fSAlexander Graf 		       sizeof(u64) * vcpu_e500->gtlb_params[1].entries);
272b71c9e2fSAlexander Graf 	if (vcpu_e500->h2g_tlb1_rmap)
273b71c9e2fSAlexander Graf 		memset(vcpu_e500->h2g_tlb1_rmap, 0,
274b71c9e2fSAlexander Graf 		       sizeof(unsigned int) * host_tlb_params[1].entries);
275b71c9e2fSAlexander Graf }
276b71c9e2fSAlexander Graf 
277b71c9e2fSAlexander Graf static void clear_tlb_privs(struct kvmppc_vcpu_e500 *vcpu_e500)
278b71c9e2fSAlexander Graf {
2794d2be6f7SScott Wood 	int tlbsel;
280b71c9e2fSAlexander Graf 	int i;
281b71c9e2fSAlexander Graf 
2824d2be6f7SScott Wood 	for (tlbsel = 0; tlbsel <= 1; tlbsel++) {
283b71c9e2fSAlexander Graf 		for (i = 0; i < vcpu_e500->gtlb_params[tlbsel].entries; i++) {
284b71c9e2fSAlexander Graf 			struct tlbe_ref *ref =
285b71c9e2fSAlexander Graf 				&vcpu_e500->gtlb_priv[tlbsel][i].ref;
286b71c9e2fSAlexander Graf 			kvmppc_e500_ref_release(ref);
287b71c9e2fSAlexander Graf 		}
288b71c9e2fSAlexander Graf 	}
289b71c9e2fSAlexander Graf }
290b71c9e2fSAlexander Graf 
291b71c9e2fSAlexander Graf void kvmppc_core_flush_tlb(struct kvm_vcpu *vcpu)
292b71c9e2fSAlexander Graf {
293b71c9e2fSAlexander Graf 	struct kvmppc_vcpu_e500 *vcpu_e500 = to_e500(vcpu);
2944d2be6f7SScott Wood 	kvmppc_e500_tlbil_all(vcpu_e500);
2954d2be6f7SScott Wood 	clear_tlb_privs(vcpu_e500);
296b71c9e2fSAlexander Graf 	clear_tlb1_bitmap(vcpu_e500);
297b71c9e2fSAlexander Graf }
298b71c9e2fSAlexander Graf 
299b71c9e2fSAlexander Graf /* TID must be supplied by the caller */
300b71c9e2fSAlexander Graf static void kvmppc_e500_setup_stlbe(
301b71c9e2fSAlexander Graf 	struct kvm_vcpu *vcpu,
302b71c9e2fSAlexander Graf 	struct kvm_book3e_206_tlb_entry *gtlbe,
303b71c9e2fSAlexander Graf 	int tsize, struct tlbe_ref *ref, u64 gvaddr,
304b71c9e2fSAlexander Graf 	struct kvm_book3e_206_tlb_entry *stlbe)
305b71c9e2fSAlexander Graf {
306b71c9e2fSAlexander Graf 	pfn_t pfn = ref->pfn;
307b71c9e2fSAlexander Graf 	u32 pr = vcpu->arch.shared->msr & MSR_PR;
308b71c9e2fSAlexander Graf 
309b71c9e2fSAlexander Graf 	BUG_ON(!(ref->flags & E500_TLB_VALID));
310b71c9e2fSAlexander Graf 
311b71c9e2fSAlexander Graf 	/* Force IPROT=0 for all guest mappings. */
312b71c9e2fSAlexander Graf 	stlbe->mas1 = MAS1_TSIZE(tsize) | get_tlb_sts(gtlbe) | MAS1_VALID;
31308c9a188SBharat Bhushan 	stlbe->mas2 = (gvaddr & MAS2_EPN) | (ref->flags & E500_TLB_MAS2_ATTR);
314b71c9e2fSAlexander Graf 	stlbe->mas7_3 = ((u64)pfn << PAGE_SHIFT) |
315b71c9e2fSAlexander Graf 			e500_shadow_mas3_attrib(gtlbe->mas7_3, pr);
316b71c9e2fSAlexander Graf 
317b71c9e2fSAlexander Graf #ifdef CONFIG_KVM_BOOKE_HV
318b71c9e2fSAlexander Graf 	stlbe->mas8 = MAS8_TGS | vcpu->kvm->arch.lpid;
319b71c9e2fSAlexander Graf #endif
320b71c9e2fSAlexander Graf }
321b71c9e2fSAlexander Graf 
322b71c9e2fSAlexander Graf static inline int kvmppc_e500_shadow_map(struct kvmppc_vcpu_e500 *vcpu_e500,
323b71c9e2fSAlexander Graf 	u64 gvaddr, gfn_t gfn, struct kvm_book3e_206_tlb_entry *gtlbe,
324b71c9e2fSAlexander Graf 	int tlbsel, struct kvm_book3e_206_tlb_entry *stlbe,
325b71c9e2fSAlexander Graf 	struct tlbe_ref *ref)
326b71c9e2fSAlexander Graf {
327b71c9e2fSAlexander Graf 	struct kvm_memory_slot *slot;
328b71c9e2fSAlexander Graf 	unsigned long pfn = 0; /* silence GCC warning */
329b71c9e2fSAlexander Graf 	unsigned long hva;
330b71c9e2fSAlexander Graf 	int pfnmap = 0;
331b71c9e2fSAlexander Graf 	int tsize = BOOK3E_PAGESZ_4K;
33240fde70dSBharat Bhushan 	int ret = 0;
33340fde70dSBharat Bhushan 	unsigned long mmu_seq;
33440fde70dSBharat Bhushan 	struct kvm *kvm = vcpu_e500->vcpu.kvm;
33508c9a188SBharat Bhushan 	unsigned long tsize_pages = 0;
33608c9a188SBharat Bhushan 	pte_t *ptep;
33708c9a188SBharat Bhushan 	unsigned int wimg = 0;
33808c9a188SBharat Bhushan 	pgd_t *pgdir;
33940fde70dSBharat Bhushan 
34040fde70dSBharat Bhushan 	/* used to check for invalidations in progress */
34140fde70dSBharat Bhushan 	mmu_seq = kvm->mmu_notifier_seq;
34240fde70dSBharat Bhushan 	smp_rmb();
343b71c9e2fSAlexander Graf 
344b71c9e2fSAlexander Graf 	/*
345b71c9e2fSAlexander Graf 	 * Translate guest physical to true physical, acquiring
346b71c9e2fSAlexander Graf 	 * a page reference if it is normal, non-reserved memory.
347b71c9e2fSAlexander Graf 	 *
348b71c9e2fSAlexander Graf 	 * gfn_to_memslot() must succeed because otherwise we wouldn't
349b71c9e2fSAlexander Graf 	 * have gotten this far.  Eventually we should just pass the slot
350b71c9e2fSAlexander Graf 	 * pointer through from the first lookup.
351b71c9e2fSAlexander Graf 	 */
352b71c9e2fSAlexander Graf 	slot = gfn_to_memslot(vcpu_e500->vcpu.kvm, gfn);
353b71c9e2fSAlexander Graf 	hva = gfn_to_hva_memslot(slot, gfn);
354b71c9e2fSAlexander Graf 
355b71c9e2fSAlexander Graf 	if (tlbsel == 1) {
356b71c9e2fSAlexander Graf 		struct vm_area_struct *vma;
357b71c9e2fSAlexander Graf 		down_read(&current->mm->mmap_sem);
358b71c9e2fSAlexander Graf 
359b71c9e2fSAlexander Graf 		vma = find_vma(current->mm, hva);
360b71c9e2fSAlexander Graf 		if (vma && hva >= vma->vm_start &&
361b71c9e2fSAlexander Graf 		    (vma->vm_flags & VM_PFNMAP)) {
362b71c9e2fSAlexander Graf 			/*
363b71c9e2fSAlexander Graf 			 * This VMA is a physically contiguous region (e.g.
364b71c9e2fSAlexander Graf 			 * /dev/mem) that bypasses normal Linux page
365b71c9e2fSAlexander Graf 			 * management.  Find the overlap between the
366b71c9e2fSAlexander Graf 			 * vma and the memslot.
367b71c9e2fSAlexander Graf 			 */
368b71c9e2fSAlexander Graf 
369b71c9e2fSAlexander Graf 			unsigned long start, end;
370b71c9e2fSAlexander Graf 			unsigned long slot_start, slot_end;
371b71c9e2fSAlexander Graf 
372b71c9e2fSAlexander Graf 			pfnmap = 1;
373b71c9e2fSAlexander Graf 
374b71c9e2fSAlexander Graf 			start = vma->vm_pgoff;
375b71c9e2fSAlexander Graf 			end = start +
376b71c9e2fSAlexander Graf 			      ((vma->vm_end - vma->vm_start) >> PAGE_SHIFT);
377b71c9e2fSAlexander Graf 
378b71c9e2fSAlexander Graf 			pfn = start + ((hva - vma->vm_start) >> PAGE_SHIFT);
379b71c9e2fSAlexander Graf 
380b71c9e2fSAlexander Graf 			slot_start = pfn - (gfn - slot->base_gfn);
381b71c9e2fSAlexander Graf 			slot_end = slot_start + slot->npages;
382b71c9e2fSAlexander Graf 
383b71c9e2fSAlexander Graf 			if (start < slot_start)
384b71c9e2fSAlexander Graf 				start = slot_start;
385b71c9e2fSAlexander Graf 			if (end > slot_end)
386b71c9e2fSAlexander Graf 				end = slot_end;
387b71c9e2fSAlexander Graf 
388b71c9e2fSAlexander Graf 			tsize = (gtlbe->mas1 & MAS1_TSIZE_MASK) >>
389b71c9e2fSAlexander Graf 				MAS1_TSIZE_SHIFT;
390b71c9e2fSAlexander Graf 
391b71c9e2fSAlexander Graf 			/*
392b71c9e2fSAlexander Graf 			 * e500 doesn't implement the lowest tsize bit,
393b71c9e2fSAlexander Graf 			 * or 1K pages.
394b71c9e2fSAlexander Graf 			 */
395b71c9e2fSAlexander Graf 			tsize = max(BOOK3E_PAGESZ_4K, tsize & ~1);
396b71c9e2fSAlexander Graf 
397b71c9e2fSAlexander Graf 			/*
398b71c9e2fSAlexander Graf 			 * Now find the largest tsize (up to what the guest
399b71c9e2fSAlexander Graf 			 * requested) that will cover gfn, stay within the
400b71c9e2fSAlexander Graf 			 * range, and for which gfn and pfn are mutually
401b71c9e2fSAlexander Graf 			 * aligned.
402b71c9e2fSAlexander Graf 			 */
403b71c9e2fSAlexander Graf 
404b71c9e2fSAlexander Graf 			for (; tsize > BOOK3E_PAGESZ_4K; tsize -= 2) {
40508c9a188SBharat Bhushan 				unsigned long gfn_start, gfn_end;
406b71c9e2fSAlexander Graf 				tsize_pages = 1 << (tsize - 2);
407b71c9e2fSAlexander Graf 
408b71c9e2fSAlexander Graf 				gfn_start = gfn & ~(tsize_pages - 1);
409b71c9e2fSAlexander Graf 				gfn_end = gfn_start + tsize_pages;
410b71c9e2fSAlexander Graf 
411b71c9e2fSAlexander Graf 				if (gfn_start + pfn - gfn < start)
412b71c9e2fSAlexander Graf 					continue;
413b71c9e2fSAlexander Graf 				if (gfn_end + pfn - gfn > end)
414b71c9e2fSAlexander Graf 					continue;
415b71c9e2fSAlexander Graf 				if ((gfn & (tsize_pages - 1)) !=
416b71c9e2fSAlexander Graf 				    (pfn & (tsize_pages - 1)))
417b71c9e2fSAlexander Graf 					continue;
418b71c9e2fSAlexander Graf 
419b71c9e2fSAlexander Graf 				gvaddr &= ~((tsize_pages << PAGE_SHIFT) - 1);
420b71c9e2fSAlexander Graf 				pfn &= ~(tsize_pages - 1);
421b71c9e2fSAlexander Graf 				break;
422b71c9e2fSAlexander Graf 			}
423b71c9e2fSAlexander Graf 		} else if (vma && hva >= vma->vm_start &&
424b71c9e2fSAlexander Graf 			   (vma->vm_flags & VM_HUGETLB)) {
425b71c9e2fSAlexander Graf 			unsigned long psize = vma_kernel_pagesize(vma);
426b71c9e2fSAlexander Graf 
427b71c9e2fSAlexander Graf 			tsize = (gtlbe->mas1 & MAS1_TSIZE_MASK) >>
428b71c9e2fSAlexander Graf 				MAS1_TSIZE_SHIFT;
429b71c9e2fSAlexander Graf 
430b71c9e2fSAlexander Graf 			/*
431b71c9e2fSAlexander Graf 			 * Take the largest page size that satisfies both host
432b71c9e2fSAlexander Graf 			 * and guest mapping
433b71c9e2fSAlexander Graf 			 */
434b71c9e2fSAlexander Graf 			tsize = min(__ilog2(psize) - 10, tsize);
435b71c9e2fSAlexander Graf 
436b71c9e2fSAlexander Graf 			/*
437b71c9e2fSAlexander Graf 			 * e500 doesn't implement the lowest tsize bit,
438b71c9e2fSAlexander Graf 			 * or 1K pages.
439b71c9e2fSAlexander Graf 			 */
440b71c9e2fSAlexander Graf 			tsize = max(BOOK3E_PAGESZ_4K, tsize & ~1);
441b71c9e2fSAlexander Graf 		}
442b71c9e2fSAlexander Graf 
443b71c9e2fSAlexander Graf 		up_read(&current->mm->mmap_sem);
444b71c9e2fSAlexander Graf 	}
445b71c9e2fSAlexander Graf 
446b71c9e2fSAlexander Graf 	if (likely(!pfnmap)) {
44708c9a188SBharat Bhushan 		tsize_pages = 1 << (tsize + 10 - PAGE_SHIFT);
448b71c9e2fSAlexander Graf 		pfn = gfn_to_pfn_memslot(slot, gfn);
449b71c9e2fSAlexander Graf 		if (is_error_noslot_pfn(pfn)) {
45008c9a188SBharat Bhushan 			if (printk_ratelimit())
45108c9a188SBharat Bhushan 				pr_err("%s: real page not found for gfn %lx\n",
45208c9a188SBharat Bhushan 				       __func__, (long)gfn);
453b71c9e2fSAlexander Graf 			return -EINVAL;
454b71c9e2fSAlexander Graf 		}
455b71c9e2fSAlexander Graf 
456b71c9e2fSAlexander Graf 		/* Align guest and physical address to page map boundaries */
457b71c9e2fSAlexander Graf 		pfn &= ~(tsize_pages - 1);
458b71c9e2fSAlexander Graf 		gvaddr &= ~((tsize_pages << PAGE_SHIFT) - 1);
459b71c9e2fSAlexander Graf 	}
460b71c9e2fSAlexander Graf 
46140fde70dSBharat Bhushan 	spin_lock(&kvm->mmu_lock);
46240fde70dSBharat Bhushan 	if (mmu_notifier_retry(kvm, mmu_seq)) {
46340fde70dSBharat Bhushan 		ret = -EAGAIN;
46440fde70dSBharat Bhushan 		goto out;
46540fde70dSBharat Bhushan 	}
46640fde70dSBharat Bhushan 
46708c9a188SBharat Bhushan 
46808c9a188SBharat Bhushan 	pgdir = vcpu_e500->vcpu.arch.pgdir;
46908c9a188SBharat Bhushan 	ptep = lookup_linux_ptep(pgdir, hva, &tsize_pages);
47008c9a188SBharat Bhushan 	if (pte_present(*ptep))
47108c9a188SBharat Bhushan 		wimg = (*ptep >> PTE_WIMGE_SHIFT) & MAS2_WIMGE_MASK;
47208c9a188SBharat Bhushan 	else {
47308c9a188SBharat Bhushan 		if (printk_ratelimit())
47408c9a188SBharat Bhushan 			pr_err("%s: pte not present: gfn %lx, pfn %lx\n",
47508c9a188SBharat Bhushan 				__func__, (long)gfn, pfn);
47608c9a188SBharat Bhushan 		return -EINVAL;
47708c9a188SBharat Bhushan 	}
47808c9a188SBharat Bhushan 	kvmppc_e500_ref_setup(ref, gtlbe, pfn, wimg);
479b71c9e2fSAlexander Graf 
480b71c9e2fSAlexander Graf 	kvmppc_e500_setup_stlbe(&vcpu_e500->vcpu, gtlbe, tsize,
481b71c9e2fSAlexander Graf 				ref, gvaddr, stlbe);
482b71c9e2fSAlexander Graf 
483b71c9e2fSAlexander Graf 	/* Clear i-cache for new pages */
484b71c9e2fSAlexander Graf 	kvmppc_mmu_flush_icache(pfn);
485b71c9e2fSAlexander Graf 
48640fde70dSBharat Bhushan out:
48740fde70dSBharat Bhushan 	spin_unlock(&kvm->mmu_lock);
48840fde70dSBharat Bhushan 
489b71c9e2fSAlexander Graf 	/* Drop refcount on page, so that mmu notifiers can clear it */
490b71c9e2fSAlexander Graf 	kvm_release_pfn_clean(pfn);
491b71c9e2fSAlexander Graf 
49240fde70dSBharat Bhushan 	return ret;
493b71c9e2fSAlexander Graf }
494b71c9e2fSAlexander Graf 
495b71c9e2fSAlexander Graf /* XXX only map the one-one case, for now use TLB0 */
496b71c9e2fSAlexander Graf static int kvmppc_e500_tlb0_map(struct kvmppc_vcpu_e500 *vcpu_e500, int esel,
497b71c9e2fSAlexander Graf 				struct kvm_book3e_206_tlb_entry *stlbe)
498b71c9e2fSAlexander Graf {
499b71c9e2fSAlexander Graf 	struct kvm_book3e_206_tlb_entry *gtlbe;
500b71c9e2fSAlexander Graf 	struct tlbe_ref *ref;
501b71c9e2fSAlexander Graf 	int stlbsel = 0;
502b71c9e2fSAlexander Graf 	int sesel = 0;
503b71c9e2fSAlexander Graf 	int r;
504b71c9e2fSAlexander Graf 
505b71c9e2fSAlexander Graf 	gtlbe = get_entry(vcpu_e500, 0, esel);
506b71c9e2fSAlexander Graf 	ref = &vcpu_e500->gtlb_priv[0][esel].ref;
507b71c9e2fSAlexander Graf 
508b71c9e2fSAlexander Graf 	r = kvmppc_e500_shadow_map(vcpu_e500, get_tlb_eaddr(gtlbe),
509b71c9e2fSAlexander Graf 			get_tlb_raddr(gtlbe) >> PAGE_SHIFT,
510b71c9e2fSAlexander Graf 			gtlbe, 0, stlbe, ref);
511b71c9e2fSAlexander Graf 	if (r)
512b71c9e2fSAlexander Graf 		return r;
513b71c9e2fSAlexander Graf 
514b71c9e2fSAlexander Graf 	write_stlbe(vcpu_e500, gtlbe, stlbe, stlbsel, sesel);
515b71c9e2fSAlexander Graf 
516b71c9e2fSAlexander Graf 	return 0;
517b71c9e2fSAlexander Graf }
518b71c9e2fSAlexander Graf 
519c015c62bSAlexander Graf static int kvmppc_e500_tlb1_map_tlb1(struct kvmppc_vcpu_e500 *vcpu_e500,
520c015c62bSAlexander Graf 				     struct tlbe_ref *ref,
521c015c62bSAlexander Graf 				     int esel)
522b71c9e2fSAlexander Graf {
523c015c62bSAlexander Graf 	unsigned int sesel = vcpu_e500->host_tlb1_nv++;
524b71c9e2fSAlexander Graf 
525b71c9e2fSAlexander Graf 	if (unlikely(vcpu_e500->host_tlb1_nv >= tlb1_max_shadow_size()))
526b71c9e2fSAlexander Graf 		vcpu_e500->host_tlb1_nv = 0;
527b71c9e2fSAlexander Graf 
528b71c9e2fSAlexander Graf 	if (vcpu_e500->h2g_tlb1_rmap[sesel]) {
5296b2ba1a9SScott Wood 		unsigned int idx = vcpu_e500->h2g_tlb1_rmap[sesel] - 1;
530b71c9e2fSAlexander Graf 		vcpu_e500->g2h_tlb1_map[idx] &= ~(1ULL << sesel);
531b71c9e2fSAlexander Graf 	}
53266a5fecdSScott Wood 
53366a5fecdSScott Wood 	vcpu_e500->gtlb_priv[1][esel].ref.flags |= E500_TLB_BITMAP;
53466a5fecdSScott Wood 	vcpu_e500->g2h_tlb1_map[esel] |= (u64)1 << sesel;
5356b2ba1a9SScott Wood 	vcpu_e500->h2g_tlb1_rmap[sesel] = esel + 1;
5364d2be6f7SScott Wood 	WARN_ON(!(ref->flags & E500_TLB_VALID));
537b71c9e2fSAlexander Graf 
538c015c62bSAlexander Graf 	return sesel;
539c015c62bSAlexander Graf }
540c015c62bSAlexander Graf 
541c015c62bSAlexander Graf /* Caller must ensure that the specified guest TLB entry is safe to insert into
542c015c62bSAlexander Graf  * the shadow TLB. */
543c015c62bSAlexander Graf /* For both one-one and one-to-many */
544c015c62bSAlexander Graf static int kvmppc_e500_tlb1_map(struct kvmppc_vcpu_e500 *vcpu_e500,
545c015c62bSAlexander Graf 		u64 gvaddr, gfn_t gfn, struct kvm_book3e_206_tlb_entry *gtlbe,
546c015c62bSAlexander Graf 		struct kvm_book3e_206_tlb_entry *stlbe, int esel)
547c015c62bSAlexander Graf {
5484d2be6f7SScott Wood 	struct tlbe_ref *ref = &vcpu_e500->gtlb_priv[1][esel].ref;
549c015c62bSAlexander Graf 	int sesel;
550c015c62bSAlexander Graf 	int r;
551c015c62bSAlexander Graf 
552c015c62bSAlexander Graf 	r = kvmppc_e500_shadow_map(vcpu_e500, gvaddr, gfn, gtlbe, 1, stlbe,
5534d2be6f7SScott Wood 				   ref);
554c015c62bSAlexander Graf 	if (r)
555c015c62bSAlexander Graf 		return r;
556c015c62bSAlexander Graf 
557c015c62bSAlexander Graf 	/* Use TLB0 when we can only map a page with 4k */
558c015c62bSAlexander Graf 	if (get_tlb_tsize(stlbe) == BOOK3E_PAGESZ_4K) {
559c015c62bSAlexander Graf 		vcpu_e500->gtlb_priv[1][esel].ref.flags |= E500_TLB_TLB0;
560c015c62bSAlexander Graf 		write_stlbe(vcpu_e500, gtlbe, stlbe, 0, 0);
561c015c62bSAlexander Graf 		return 0;
562c015c62bSAlexander Graf 	}
563c015c62bSAlexander Graf 
564c015c62bSAlexander Graf 	/* Otherwise map into TLB1 */
5654d2be6f7SScott Wood 	sesel = kvmppc_e500_tlb1_map_tlb1(vcpu_e500, ref, esel);
566c015c62bSAlexander Graf 	write_stlbe(vcpu_e500, gtlbe, stlbe, 1, sesel);
567b71c9e2fSAlexander Graf 
568b71c9e2fSAlexander Graf 	return 0;
569b71c9e2fSAlexander Graf }
570b71c9e2fSAlexander Graf 
571b71c9e2fSAlexander Graf void kvmppc_mmu_map(struct kvm_vcpu *vcpu, u64 eaddr, gpa_t gpaddr,
572b71c9e2fSAlexander Graf 		    unsigned int index)
573b71c9e2fSAlexander Graf {
574b71c9e2fSAlexander Graf 	struct kvmppc_vcpu_e500 *vcpu_e500 = to_e500(vcpu);
575b71c9e2fSAlexander Graf 	struct tlbe_priv *priv;
576b71c9e2fSAlexander Graf 	struct kvm_book3e_206_tlb_entry *gtlbe, stlbe;
577b71c9e2fSAlexander Graf 	int tlbsel = tlbsel_of(index);
578b71c9e2fSAlexander Graf 	int esel = esel_of(index);
579b71c9e2fSAlexander Graf 
580b71c9e2fSAlexander Graf 	gtlbe = get_entry(vcpu_e500, tlbsel, esel);
581b71c9e2fSAlexander Graf 
582b71c9e2fSAlexander Graf 	switch (tlbsel) {
583b71c9e2fSAlexander Graf 	case 0:
584b71c9e2fSAlexander Graf 		priv = &vcpu_e500->gtlb_priv[tlbsel][esel];
585b71c9e2fSAlexander Graf 
5864d2be6f7SScott Wood 		/* Triggers after clear_tlb_privs or on initial mapping */
587b71c9e2fSAlexander Graf 		if (!(priv->ref.flags & E500_TLB_VALID)) {
588b71c9e2fSAlexander Graf 			kvmppc_e500_tlb0_map(vcpu_e500, esel, &stlbe);
589b71c9e2fSAlexander Graf 		} else {
590b71c9e2fSAlexander Graf 			kvmppc_e500_setup_stlbe(vcpu, gtlbe, BOOK3E_PAGESZ_4K,
591b71c9e2fSAlexander Graf 						&priv->ref, eaddr, &stlbe);
592b71c9e2fSAlexander Graf 			write_stlbe(vcpu_e500, gtlbe, &stlbe, 0, 0);
593b71c9e2fSAlexander Graf 		}
594b71c9e2fSAlexander Graf 		break;
595b71c9e2fSAlexander Graf 
596b71c9e2fSAlexander Graf 	case 1: {
597b71c9e2fSAlexander Graf 		gfn_t gfn = gpaddr >> PAGE_SHIFT;
598b71c9e2fSAlexander Graf 		kvmppc_e500_tlb1_map(vcpu_e500, eaddr, gfn, gtlbe, &stlbe,
599b71c9e2fSAlexander Graf 				     esel);
600b71c9e2fSAlexander Graf 		break;
601b71c9e2fSAlexander Graf 	}
602b71c9e2fSAlexander Graf 
603b71c9e2fSAlexander Graf 	default:
604b71c9e2fSAlexander Graf 		BUG();
605b71c9e2fSAlexander Graf 		break;
606b71c9e2fSAlexander Graf 	}
607b71c9e2fSAlexander Graf }
608b71c9e2fSAlexander Graf 
609b71c9e2fSAlexander Graf /************* MMU Notifiers *************/
610b71c9e2fSAlexander Graf 
611b71c9e2fSAlexander Graf int kvm_unmap_hva(struct kvm *kvm, unsigned long hva)
612b71c9e2fSAlexander Graf {
613b71c9e2fSAlexander Graf 	trace_kvm_unmap_hva(hva);
614b71c9e2fSAlexander Graf 
615b71c9e2fSAlexander Graf 	/*
616b71c9e2fSAlexander Graf 	 * Flush all shadow tlb entries everywhere. This is slow, but
617b71c9e2fSAlexander Graf 	 * we are 100% sure that we catch the to be unmapped page
618b71c9e2fSAlexander Graf 	 */
619b71c9e2fSAlexander Graf 	kvm_flush_remote_tlbs(kvm);
620b71c9e2fSAlexander Graf 
621b71c9e2fSAlexander Graf 	return 0;
622b71c9e2fSAlexander Graf }
623b71c9e2fSAlexander Graf 
624b71c9e2fSAlexander Graf int kvm_unmap_hva_range(struct kvm *kvm, unsigned long start, unsigned long end)
625b71c9e2fSAlexander Graf {
626b71c9e2fSAlexander Graf 	/* kvm_unmap_hva flushes everything anyways */
627b71c9e2fSAlexander Graf 	kvm_unmap_hva(kvm, start);
628b71c9e2fSAlexander Graf 
629b71c9e2fSAlexander Graf 	return 0;
630b71c9e2fSAlexander Graf }
631b71c9e2fSAlexander Graf 
632b71c9e2fSAlexander Graf int kvm_age_hva(struct kvm *kvm, unsigned long hva)
633b71c9e2fSAlexander Graf {
634b71c9e2fSAlexander Graf 	/* XXX could be more clever ;) */
635b71c9e2fSAlexander Graf 	return 0;
636b71c9e2fSAlexander Graf }
637b71c9e2fSAlexander Graf 
638b71c9e2fSAlexander Graf int kvm_test_age_hva(struct kvm *kvm, unsigned long hva)
639b71c9e2fSAlexander Graf {
640b71c9e2fSAlexander Graf 	/* XXX could be more clever ;) */
641b71c9e2fSAlexander Graf 	return 0;
642b71c9e2fSAlexander Graf }
643b71c9e2fSAlexander Graf 
644b71c9e2fSAlexander Graf void kvm_set_spte_hva(struct kvm *kvm, unsigned long hva, pte_t pte)
645b71c9e2fSAlexander Graf {
646b71c9e2fSAlexander Graf 	/* The page will get remapped properly on its next fault */
647b71c9e2fSAlexander Graf 	kvm_unmap_hva(kvm, hva);
648b71c9e2fSAlexander Graf }
649b71c9e2fSAlexander Graf 
650b71c9e2fSAlexander Graf /*****************************************/
651b71c9e2fSAlexander Graf 
652b71c9e2fSAlexander Graf int e500_mmu_host_init(struct kvmppc_vcpu_e500 *vcpu_e500)
653b71c9e2fSAlexander Graf {
654b71c9e2fSAlexander Graf 	host_tlb_params[0].entries = mfspr(SPRN_TLB0CFG) & TLBnCFG_N_ENTRY;
655b71c9e2fSAlexander Graf 	host_tlb_params[1].entries = mfspr(SPRN_TLB1CFG) & TLBnCFG_N_ENTRY;
656b71c9e2fSAlexander Graf 
657b71c9e2fSAlexander Graf 	/*
658b71c9e2fSAlexander Graf 	 * This should never happen on real e500 hardware, but is
659b71c9e2fSAlexander Graf 	 * architecturally possible -- e.g. in some weird nested
660b71c9e2fSAlexander Graf 	 * virtualization case.
661b71c9e2fSAlexander Graf 	 */
662b71c9e2fSAlexander Graf 	if (host_tlb_params[0].entries == 0 ||
663b71c9e2fSAlexander Graf 	    host_tlb_params[1].entries == 0) {
664b71c9e2fSAlexander Graf 		pr_err("%s: need to know host tlb size\n", __func__);
665b71c9e2fSAlexander Graf 		return -ENODEV;
666b71c9e2fSAlexander Graf 	}
667b71c9e2fSAlexander Graf 
668b71c9e2fSAlexander Graf 	host_tlb_params[0].ways = (mfspr(SPRN_TLB0CFG) & TLBnCFG_ASSOC) >>
669b71c9e2fSAlexander Graf 				  TLBnCFG_ASSOC_SHIFT;
670b71c9e2fSAlexander Graf 	host_tlb_params[1].ways = host_tlb_params[1].entries;
671b71c9e2fSAlexander Graf 
672b71c9e2fSAlexander Graf 	if (!is_power_of_2(host_tlb_params[0].entries) ||
673b71c9e2fSAlexander Graf 	    !is_power_of_2(host_tlb_params[0].ways) ||
674b71c9e2fSAlexander Graf 	    host_tlb_params[0].entries < host_tlb_params[0].ways ||
675b71c9e2fSAlexander Graf 	    host_tlb_params[0].ways == 0) {
676b71c9e2fSAlexander Graf 		pr_err("%s: bad tlb0 host config: %u entries %u ways\n",
677b71c9e2fSAlexander Graf 		       __func__, host_tlb_params[0].entries,
678b71c9e2fSAlexander Graf 		       host_tlb_params[0].ways);
679b71c9e2fSAlexander Graf 		return -ENODEV;
680b71c9e2fSAlexander Graf 	}
681b71c9e2fSAlexander Graf 
682b71c9e2fSAlexander Graf 	host_tlb_params[0].sets =
683b71c9e2fSAlexander Graf 		host_tlb_params[0].entries / host_tlb_params[0].ways;
684b71c9e2fSAlexander Graf 	host_tlb_params[1].sets = 1;
685b71c9e2fSAlexander Graf 
686b71c9e2fSAlexander Graf 	vcpu_e500->h2g_tlb1_rmap = kzalloc(sizeof(unsigned int) *
687b71c9e2fSAlexander Graf 					   host_tlb_params[1].entries,
688b71c9e2fSAlexander Graf 					   GFP_KERNEL);
689b71c9e2fSAlexander Graf 	if (!vcpu_e500->h2g_tlb1_rmap)
6904d2be6f7SScott Wood 		return -EINVAL;
691b71c9e2fSAlexander Graf 
692b71c9e2fSAlexander Graf 	return 0;
693b71c9e2fSAlexander Graf }
694b71c9e2fSAlexander Graf 
695b71c9e2fSAlexander Graf void e500_mmu_host_uninit(struct kvmppc_vcpu_e500 *vcpu_e500)
696b71c9e2fSAlexander Graf {
697b71c9e2fSAlexander Graf 	kfree(vcpu_e500->h2g_tlb1_rmap);
698b71c9e2fSAlexander Graf }
699