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lguest: change gpte_addr header
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1#ifndef _LGUEST_H
2#define _LGUEST_H
3
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4#ifndef __ASSEMBLY__
5#include <linux/types.h>
6#include <linux/init.h>
7#include <linux/stringify.h>
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8#include <linux/lguest.h>
9#include <linux/lguest_launcher.h>
10#include <linux/wait.h>
11#include <linux/err.h>
12#include <asm/semaphore.h>
d7e28ffe 13
625efab1 14#include <asm/lguest.h>
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15
16void free_pagetables(void);
17int init_pagetables(struct page **switcher_page, unsigned int pages);
18
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19struct pgdir
20{
ee3db0f2 21 unsigned long gpgdir;
df29f43e 22 pgd_t *pgdir;
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23};
24
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25/* We have two pages shared with guests, per cpu. */
26struct lguest_pages
27{
28 /* This is the stack page mapped rw in guest */
29 char spare[PAGE_SIZE - sizeof(struct lguest_regs)];
30 struct lguest_regs regs;
31
32 /* This is the host state & guest descriptor page, ro in guest */
33 struct lguest_ro_state state;
34} __attribute__((aligned(PAGE_SIZE)));
35
36#define CHANGED_IDT 1
37#define CHANGED_GDT 2
38#define CHANGED_GDT_TLS 4 /* Actually a subset of CHANGED_GDT */
39#define CHANGED_ALL 3
40
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41struct lguest;
42
43struct lg_cpu {
44 unsigned int id;
45 struct lguest *lg;
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46 struct task_struct *tsk;
47 struct mm_struct *mm; /* == tsk->mm, but that becomes NULL on exit */
73044f05 48
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49 u32 cr2;
50 int ts;
51 u32 esp1;
52 u8 ss1;
53
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54 /* Bitmap of what has changed: see CHANGED_* above. */
55 int changed;
56
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57 unsigned long pending_notify; /* pfn from LHCALL_NOTIFY */
58
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59 /* At end of a page shared mapped over lguest_pages in guest. */
60 unsigned long regs_page;
61 struct lguest_regs *regs;
62
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63 struct lguest_pages *last_pages;
64
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65 int cpu_pgd; /* which pgd this cpu is currently using */
66
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67 /* If a hypercall was asked for, this points to the arguments. */
68 struct hcall_args *hcall;
69 u32 next_hcall;
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70
71 /* Virtual clock device */
72 struct hrtimer hrt;
177e449d 73
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74 /* Do we need to stop what we're doing and return to userspace? */
75 int break_out;
76 wait_queue_head_t break_wq;
77 int halted;
78
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79 /* Pending virtual interrupts */
80 DECLARE_BITMAP(irqs_pending, LGUEST_IRQS);
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81
82 struct lg_cpu_arch arch;
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83};
84
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85/* The private info the thread maintains about the guest. */
86struct lguest
87{
d7e28ffe 88 struct lguest_data __user *lguest_data;
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89 struct lg_cpu cpus[NR_CPUS];
90 unsigned int nr_cpus;
91
d7e28ffe 92 u32 pfn_limit;
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93 /* This provides the offset to the base of guest-physical
94 * memory in the Launcher. */
95 void __user *mem_base;
47436aa4 96 unsigned long kernel_address;
d7e28ffe 97
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98 struct pgdir pgdirs[4];
99
d7e28ffe 100 unsigned long noirq_start, noirq_end;
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101
102 unsigned int stack_pages;
103 u32 tsc_khz;
104
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105 /* Dead? */
106 const char *dead;
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107};
108
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109extern struct mutex lguest_lock;
110
111/* core.c: */
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112int lguest_address_ok(const struct lguest *lg,
113 unsigned long addr, unsigned long len);
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114void __lgread(struct lguest *, void *, unsigned long, unsigned);
115void __lgwrite(struct lguest *, unsigned long, const void *, unsigned);
116
e1e72965 117/*H:035 Using memory-copy operations like that is usually inconvient, so we
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118 * have the following helper macros which read and write a specific type (often
119 * an unsigned long).
120 *
121 * This reads into a variable of the given type then returns that. */
122#define lgread(lg, addr, type) \
123 ({ type _v; __lgread((lg), &_v, (addr), sizeof(_v)); _v; })
124
125/* This checks that the variable is of the given type, then writes it out. */
126#define lgwrite(lg, addr, type, val) \
127 do { \
128 typecheck(type, val); \
129 __lgwrite((lg), (addr), &(val), sizeof(val)); \
130 } while(0)
131/* (end of memory access helper routines) :*/
132
d0953d42 133int run_guest(struct lg_cpu *cpu, unsigned long __user *user);
d7e28ffe 134
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135/* Helper macros to obtain the first 12 or the last 20 bits, this is only the
136 * first step in the migration to the kernel types. pte_pfn is already defined
137 * in the kernel. */
138#define pgd_flags(x) (pgd_val(x) & ~PAGE_MASK)
139#define pte_flags(x) (pte_val(x) & ~PAGE_MASK)
140#define pgd_pfn(x) (pgd_val(x) >> PAGE_SHIFT)
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141
142/* interrupts_and_traps.c: */
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143void maybe_do_interrupt(struct lg_cpu *cpu);
144int deliver_trap(struct lg_cpu *cpu, unsigned int num);
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145void load_guest_idt_entry(struct lg_cpu *cpu, unsigned int i,
146 u32 low, u32 hi);
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147void guest_set_stack(struct lg_cpu *cpu, u32 seg, u32 esp, unsigned int pages);
148void pin_stack_pages(struct lg_cpu *cpu);
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149void setup_default_idt_entries(struct lguest_ro_state *state,
150 const unsigned long *def);
fc708b3e 151void copy_traps(const struct lg_cpu *cpu, struct desc_struct *idt,
d7e28ffe 152 const unsigned long *def);
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153void guest_set_clockevent(struct lg_cpu *cpu, unsigned long delta);
154void init_clockdev(struct lg_cpu *cpu);
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155bool check_syscall_vector(struct lguest *lg);
156int init_interrupts(void);
157void free_interrupts(void);
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158
159/* segments.c: */
160void setup_default_gdt_entries(struct lguest_ro_state *state);
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161void setup_guest_gdt(struct lg_cpu *cpu);
162void load_guest_gdt(struct lg_cpu *cpu, unsigned long table, u32 num);
163void guest_load_tls(struct lg_cpu *cpu, unsigned long tls_array);
164void copy_gdt(const struct lg_cpu *cpu, struct desc_struct *gdt);
165void copy_gdt_tls(const struct lg_cpu *cpu, struct desc_struct *gdt);
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166
167/* page_tables.c: */
168int init_guest_pagetable(struct lguest *lg, unsigned long pgtable);
169void free_guest_pagetable(struct lguest *lg);
4665ac8e 170void guest_new_pagetable(struct lg_cpu *cpu, unsigned long pgtable);
ee3db0f2 171void guest_set_pmd(struct lguest *lg, unsigned long gpgdir, u32 i);
4665ac8e 172void guest_pagetable_clear_all(struct lg_cpu *cpu);
1713608f 173void guest_pagetable_flush_user(struct lg_cpu *cpu);
ee3db0f2 174void guest_set_pte(struct lguest *lg, unsigned long gpgdir,
df29f43e 175 unsigned long vaddr, pte_t val);
0c78441c 176void map_switcher_in_guest(struct lg_cpu *cpu, struct lguest_pages *pages);
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177int demand_page(struct lg_cpu *cpu, unsigned long cr2, int errcode);
178void pin_page(struct lg_cpu *cpu, unsigned long vaddr);
179unsigned long guest_pa(struct lg_cpu *cpu, unsigned long vaddr);
47436aa4 180void page_table_guest_data_init(struct lguest *lg);
d7e28ffe 181
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182/* <arch>/core.c: */
183void lguest_arch_host_init(void);
184void lguest_arch_host_fini(void);
d0953d42 185void lguest_arch_run_guest(struct lg_cpu *cpu);
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186void lguest_arch_handle_trap(struct lg_cpu *cpu);
187int lguest_arch_init_hypercalls(struct lg_cpu *cpu);
188int lguest_arch_do_hcall(struct lg_cpu *cpu, struct hcall_args *args);
a53a35a8 189void lguest_arch_setup_regs(struct lg_cpu *cpu, unsigned long start);
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190
191/* <arch>/switcher.S: */
192extern char start_switcher_text[], end_switcher_text[], switch_to_guest[];
193
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194/* lguest_user.c: */
195int lguest_device_init(void);
196void lguest_device_remove(void);
197
d7e28ffe 198/* hypercalls.c: */
73044f05 199void do_hypercalls(struct lg_cpu *cpu);
6c8dca5d 200void write_timestamp(struct lguest *lg);
d7e28ffe 201
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202/*L:035
203 * Let's step aside for the moment, to study one important routine that's used
204 * widely in the Host code.
205 *
e1e72965 206 * There are many cases where the Guest can do something invalid, like pass crap
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207 * to a hypercall. Since only the Guest kernel can make hypercalls, it's quite
208 * acceptable to simply terminate the Guest and give the Launcher a nicely
209 * formatted reason. It's also simpler for the Guest itself, which doesn't
210 * need to check most hypercalls for "success"; if you're still running, it
211 * succeeded.
212 *
213 * Once this is called, the Guest will never run again, so most Host code can
214 * call this then continue as if nothing had happened. This means many
215 * functions don't have to explicitly return an error code, which keeps the
216 * code simple.
217 *
218 * It also means that this can be called more than once: only the first one is
219 * remembered. The only trick is that we still need to kill the Guest even if
220 * we can't allocate memory to store the reason. Linux has a neat way of
221 * packing error codes into invalid pointers, so we use that here.
222 *
223 * Like any macro which uses an "if", it is safely wrapped in a run-once "do {
224 * } while(0)".
225 */
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226#define kill_guest(lg, fmt...) \
227do { \
228 if (!(lg)->dead) { \
229 (lg)->dead = kasprintf(GFP_ATOMIC, fmt); \
230 if (!(lg)->dead) \
231 (lg)->dead = ERR_PTR(-ENOMEM); \
232 } \
233} while(0)
dde79789 234/* (End of aside) :*/
d7e28ffe 235
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236#endif /* __ASSEMBLY__ */
237#endif /* _LGUEST_H */