KVM: PPC: Use symbols for exit trace
[deliverable/linux.git] / arch / powerpc / kvm / e500.h
CommitLineData
bc8080cb 1/*
dd9ebf1f 2 * Copyright (C) 2008-2011 Freescale Semiconductor, Inc. All rights reserved.
bc8080cb 3 *
fc6cf995 4 * Author: Yu Liu <yu.liu@freescale.com>
73196cd3 5 * Scott Wood <scottwood@freescale.com>
4f802fe9 6 * Ashish Kalra <ashish.kalra@freescale.com>
73196cd3 7 * Varun Sethi <varun.sethi@freescale.com>
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8 *
9 * Description:
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10 * This file is based on arch/powerpc/kvm/44x_tlb.h and
11 * arch/powerpc/include/asm/kvm_44x.h by Hollis Blanchard <hollisb@us.ibm.com>,
12 * Copyright IBM Corp. 2007-2008
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13 *
14 * This program is free software; you can redistribute it and/or modify
15 * it under the terms of the GNU General Public License, version 2, as
16 * published by the Free Software Foundation.
17 */
18
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19#ifndef KVM_E500_H
20#define KVM_E500_H
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21
22#include <linux/kvm_host.h>
0cfb50e5 23#include <asm/mmu-book3e.h>
bc8080cb 24#include <asm/tlb.h>
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25
26#define E500_PID_NUM 3
27#define E500_TLB_NUM 2
28
29#define E500_TLB_VALID 1
30#define E500_TLB_DIRTY 2
4f802fe9 31#define E500_TLB_BITMAP 4
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32
33struct tlbe_ref {
34 pfn_t pfn;
35 unsigned int flags; /* E500_TLB_* */
36};
37
38struct tlbe_priv {
39 struct tlbe_ref ref; /* TLB0 only -- TLB1 uses tlb_refs */
40};
41
bf7ca4bd 42#ifdef CONFIG_KVM_E500V2
fc6cf995 43struct vcpu_id_table;
8fdd21a2 44#endif
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45
46struct kvmppc_e500_tlb_params {
47 int entries, ways, sets;
48};
49
50struct kvmppc_vcpu_e500 {
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51 struct kvm_vcpu vcpu;
52
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53 /* Unmodified copy of the guest's TLB -- shared with host userspace. */
54 struct kvm_book3e_206_tlb_entry *gtlb_arch;
55
56 /* Starting entry number in gtlb_arch[] */
57 int gtlb_offset[E500_TLB_NUM];
58
59 /* KVM internal information associated with each guest TLB entry */
60 struct tlbe_priv *gtlb_priv[E500_TLB_NUM];
61
62 struct kvmppc_e500_tlb_params gtlb_params[E500_TLB_NUM];
63
64 unsigned int gtlb_nv[E500_TLB_NUM];
65
66 /*
67 * information associated with each host TLB entry --
68 * TLB1 only for now. If/when guest TLB1 entries can be
69 * mapped with host TLB0, this will be used for that too.
70 *
71 * We don't want to use this for guest TLB0 because then we'd
72 * have the overhead of doing the translation again even if
73 * the entry is still in the guest TLB (e.g. we swapped out
74 * and back, and our host TLB entries got evicted).
75 */
76 struct tlbe_ref *tlb_refs[E500_TLB_NUM];
77 unsigned int host_tlb1_nv;
78
fc6cf995 79 u32 svr;
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80 u32 l1csr0;
81 u32 l1csr1;
82 u32 hid0;
83 u32 hid1;
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84 u64 mcar;
85
86 struct page **shared_tlb_pages;
87 int num_shared_tlb_pages;
8fdd21a2 88
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89 u64 *g2h_tlb1_map;
90 unsigned int *h2g_tlb1_rmap;
91
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92 /* Minimum and maximum address mapped my TLB1 */
93 unsigned long tlb1_min_eaddr;
94 unsigned long tlb1_max_eaddr;
95
bf7ca4bd 96#ifdef CONFIG_KVM_E500V2
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97 u32 pid[E500_PID_NUM];
98
99 /* vcpu id table */
100 struct vcpu_id_table *idt;
101#endif
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102};
103
104static inline struct kvmppc_vcpu_e500 *to_e500(struct kvm_vcpu *vcpu)
105{
106 return container_of(vcpu, struct kvmppc_vcpu_e500, vcpu);
107}
bc8080cb 108
73196cd3 109
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110/* This geometry is the legacy default -- can be overridden by userspace */
111#define KVM_E500_TLB0_WAY_SIZE 128
112#define KVM_E500_TLB0_WAY_NUM 2
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113
114#define KVM_E500_TLB0_SIZE (KVM_E500_TLB0_WAY_SIZE * KVM_E500_TLB0_WAY_NUM)
115#define KVM_E500_TLB1_SIZE 16
116
117#define index_of(tlbsel, esel) (((tlbsel) << 16) | ((esel) & 0xFFFF))
118#define tlbsel_of(index) ((index) >> 16)
119#define esel_of(index) ((index) & 0xFFFF)
120
121#define E500_TLB_USER_PERM_MASK (MAS3_UX|MAS3_UR|MAS3_UW)
122#define E500_TLB_SUPER_PERM_MASK (MAS3_SX|MAS3_SR|MAS3_SW)
123#define MAS2_ATTRIB_MASK \
046a48b3 124 (MAS2_X0 | MAS2_X1)
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125#define MAS3_ATTRIB_MASK \
126 (MAS3_U0 | MAS3_U1 | MAS3_U2 | MAS3_U3 \
127 | E500_TLB_USER_PERM_MASK | E500_TLB_SUPER_PERM_MASK)
128
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129int kvmppc_e500_emul_mt_mmucsr0(struct kvmppc_vcpu_e500 *vcpu_e500,
130 ulong value);
131int kvmppc_e500_emul_tlbwe(struct kvm_vcpu *vcpu);
132int kvmppc_e500_emul_tlbre(struct kvm_vcpu *vcpu);
133int kvmppc_e500_emul_tlbivax(struct kvm_vcpu *vcpu, int ra, int rb);
ab9fc405 134int kvmppc_e500_emul_tlbilx(struct kvm_vcpu *vcpu, int rt, int ra, int rb);
52e1718c 135int kvmppc_e500_emul_tlbsx(struct kvm_vcpu *vcpu, int rb);
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136int kvmppc_e500_tlb_init(struct kvmppc_vcpu_e500 *vcpu_e500);
137void kvmppc_e500_tlb_uninit(struct kvmppc_vcpu_e500 *vcpu_e500);
138
139void kvmppc_get_sregs_e500_tlb(struct kvm_vcpu *vcpu, struct kvm_sregs *sregs);
140int kvmppc_set_sregs_e500_tlb(struct kvm_vcpu *vcpu, struct kvm_sregs *sregs);
bc8080cb 141
8fdd21a2 142
bf7ca4bd 143#ifdef CONFIG_KVM_E500V2
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144unsigned int kvmppc_e500_get_sid(struct kvmppc_vcpu_e500 *vcpu_e500,
145 unsigned int as, unsigned int gid,
146 unsigned int pr, int avoid_recursion);
147#endif
148
bc8080cb 149/* TLB helper functions */
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150static inline unsigned int
151get_tlb_size(const struct kvm_book3e_206_tlb_entry *tlbe)
bc8080cb 152{
0cfb50e5 153 return (tlbe->mas1 >> 7) & 0x1f;
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154}
155
dc83b8bc 156static inline gva_t get_tlb_eaddr(const struct kvm_book3e_206_tlb_entry *tlbe)
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157{
158 return tlbe->mas2 & 0xfffff000;
159}
160
dc83b8bc 161static inline u64 get_tlb_bytes(const struct kvm_book3e_206_tlb_entry *tlbe)
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162{
163 unsigned int pgsize = get_tlb_size(tlbe);
0cfb50e5 164 return 1ULL << 10 << pgsize;
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165}
166
dc83b8bc 167static inline gva_t get_tlb_end(const struct kvm_book3e_206_tlb_entry *tlbe)
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168{
169 u64 bytes = get_tlb_bytes(tlbe);
170 return get_tlb_eaddr(tlbe) + bytes - 1;
171}
172
dc83b8bc 173static inline u64 get_tlb_raddr(const struct kvm_book3e_206_tlb_entry *tlbe)
bc8080cb 174{
dc83b8bc 175 return tlbe->mas7_3 & ~0xfffULL;
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176}
177
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178static inline unsigned int
179get_tlb_tid(const struct kvm_book3e_206_tlb_entry *tlbe)
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180{
181 return (tlbe->mas1 >> 16) & 0xff;
182}
183
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184static inline unsigned int
185get_tlb_ts(const struct kvm_book3e_206_tlb_entry *tlbe)
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186{
187 return (tlbe->mas1 >> 12) & 0x1;
188}
189
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190static inline unsigned int
191get_tlb_v(const struct kvm_book3e_206_tlb_entry *tlbe)
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192{
193 return (tlbe->mas1 >> 31) & 0x1;
194}
195
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196static inline unsigned int
197get_tlb_iprot(const struct kvm_book3e_206_tlb_entry *tlbe)
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198{
199 return (tlbe->mas1 >> 30) & 0x1;
200}
201
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202static inline unsigned int
203get_tlb_tsize(const struct kvm_book3e_206_tlb_entry *tlbe)
204{
205 return (tlbe->mas1 & MAS1_TSIZE_MASK) >> MAS1_TSIZE_SHIFT;
206}
207
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208static inline unsigned int get_cur_pid(struct kvm_vcpu *vcpu)
209{
210 return vcpu->arch.pid & 0xff;
211}
212
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213static inline unsigned int get_cur_as(struct kvm_vcpu *vcpu)
214{
215 return !!(vcpu->arch.shared->msr & (MSR_IS | MSR_DS));
216}
217
218static inline unsigned int get_cur_pr(struct kvm_vcpu *vcpu)
219{
220 return !!(vcpu->arch.shared->msr & MSR_PR);
221}
222
b5904972 223static inline unsigned int get_cur_spid(const struct kvm_vcpu *vcpu)
bc8080cb 224{
b5904972 225 return (vcpu->arch.shared->mas6 >> 16) & 0xff;
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226}
227
b5904972 228static inline unsigned int get_cur_sas(const struct kvm_vcpu *vcpu)
bc8080cb 229{
b5904972 230 return vcpu->arch.shared->mas6 & 0x1;
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231}
232
b5904972 233static inline unsigned int get_tlb_tlbsel(const struct kvm_vcpu *vcpu)
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234{
235 /*
236 * Manual says that tlbsel has 2 bits wide.
fb2838d4 237 * Since we only have two TLBs, only lower bit is used.
bc8080cb 238 */
b5904972 239 return (vcpu->arch.shared->mas0 >> 28) & 0x1;
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240}
241
b5904972 242static inline unsigned int get_tlb_nv_bit(const struct kvm_vcpu *vcpu)
bc8080cb 243{
b5904972 244 return vcpu->arch.shared->mas0 & 0xfff;
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245}
246
b5904972 247static inline unsigned int get_tlb_esel_bit(const struct kvm_vcpu *vcpu)
bc8080cb 248{
b5904972 249 return (vcpu->arch.shared->mas0 >> 16) & 0xfff;
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250}
251
bc8080cb 252static inline int tlbe_is_host_safe(const struct kvm_vcpu *vcpu,
dc83b8bc 253 const struct kvm_book3e_206_tlb_entry *tlbe)
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254{
255 gpa_t gpa;
256
257 if (!get_tlb_v(tlbe))
258 return 0;
259
73196cd3 260#ifndef CONFIG_KVM_BOOKE_HV
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261 /* Does it match current guest AS? */
262 /* XXX what about IS != DS? */
666e7252 263 if (get_tlb_ts(tlbe) != !!(vcpu->arch.shared->msr & MSR_IS))
bc8080cb 264 return 0;
73196cd3 265#endif
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266
267 gpa = get_tlb_raddr(tlbe);
268 if (!gfn_to_memslot(vcpu->kvm, gpa >> PAGE_SHIFT))
269 /* Mapping is not for RAM. */
270 return 0;
271
272 return 1;
273}
274
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275static inline struct kvm_book3e_206_tlb_entry *get_entry(
276 struct kvmppc_vcpu_e500 *vcpu_e500, int tlbsel, int entry)
277{
278 int offset = vcpu_e500->gtlb_offset[tlbsel];
279 return &vcpu_e500->gtlb_arch[offset + entry];
280}
281
282void kvmppc_e500_tlbil_one(struct kvmppc_vcpu_e500 *vcpu_e500,
283 struct kvm_book3e_206_tlb_entry *gtlbe);
284void kvmppc_e500_tlbil_all(struct kvmppc_vcpu_e500 *vcpu_e500);
285
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286#ifdef CONFIG_KVM_BOOKE_HV
287#define kvmppc_e500_get_tlb_stid(vcpu, gtlbe) get_tlb_tid(gtlbe)
288#define get_tlbmiss_tid(vcpu) get_cur_pid(vcpu)
289#define get_tlb_sts(gtlbe) (gtlbe->mas1 & MAS1_TS)
290#else
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291unsigned int kvmppc_e500_get_tlb_stid(struct kvm_vcpu *vcpu,
292 struct kvm_book3e_206_tlb_entry *gtlbe);
293
294static inline unsigned int get_tlbmiss_tid(struct kvm_vcpu *vcpu)
295{
296 struct kvmppc_vcpu_e500 *vcpu_e500 = to_e500(vcpu);
297 unsigned int tidseld = (vcpu->arch.shared->mas4 >> 16) & 0xf;
298
299 return vcpu_e500->pid[tidseld];
300}
301
302/* Force TS=1 for all guest mappings. */
303#define get_tlb_sts(gtlbe) (MAS1_TS)
73196cd3 304#endif /* !BOOKE_HV */
8fdd21a2 305
29a5a6f9 306#endif /* KVM_E500_H */
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