xen.h revision 1.25 1 1.25 bouyer /* $NetBSD: xen.h,v 1.25 2007/11/22 16:16:58 bouyer Exp $ */
2 1.1 cl
3 1.1 cl /*
4 1.1 cl *
5 1.1 cl * Copyright (c) 2003, 2004 Keir Fraser (on behalf of the Xen team)
6 1.1 cl * All rights reserved.
7 1.1 cl *
8 1.1 cl * Permission is hereby granted, free of charge, to any person obtaining a copy
9 1.1 cl * of this software and associated documentation files (the "Software"), to
10 1.1 cl * deal in the Software without restriction, including without limitation the
11 1.1 cl * rights to use, copy, modify, merge, publish, distribute, sublicense, and/or
12 1.1 cl * sell copies of the Software, and to permit persons to whom the Software is
13 1.1 cl * furnished to do so, subject to the following conditions:
14 1.1 cl *
15 1.1 cl * The above copyright notice and this permission notice shall be included in
16 1.1 cl * all copies or substantial portions of the Software.
17 1.1 cl *
18 1.1 cl * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
19 1.1 cl * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
20 1.1 cl * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
21 1.1 cl * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
22 1.1 cl * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
23 1.1 cl * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
24 1.1 cl * DEALINGS IN THE SOFTWARE.
25 1.1 cl */
26 1.1 cl
27 1.1 cl
28 1.1 cl #ifndef _XEN_H
29 1.1 cl #define _XEN_H
30 1.1 cl
31 1.19 bouyer #include "opt_xen.h"
32 1.19 bouyer
33 1.1 cl #ifndef _LOCORE
34 1.1 cl
35 1.5 cl struct xen_netinfo {
36 1.5 cl uint32_t xi_ifno;
37 1.5 cl char *xi_root;
38 1.5 cl uint32_t xi_ip[5];
39 1.5 cl };
40 1.5 cl
41 1.4 cl union xen_cmdline_parseinfo {
42 1.4 cl char xcp_bootdev[16]; /* sizeof(dv_xname) */
43 1.4 cl struct xen_netinfo xcp_netinfo;
44 1.4 cl char xcp_console[16];
45 1.4 cl };
46 1.4 cl
47 1.4 cl #define XEN_PARSE_BOOTDEV 0
48 1.4 cl #define XEN_PARSE_NETINFO 1
49 1.4 cl #define XEN_PARSE_CONSOLE 2
50 1.15 bouyer #define XEN_PARSE_BOOTFLAGS 3
51 1.4 cl
52 1.4 cl void xen_parse_cmdline(int, union xen_cmdline_parseinfo *);
53 1.4 cl
54 1.3 cl void xenconscn_attach(void);
55 1.3 cl
56 1.7 cl void xenprivcmd_init(void);
57 1.10 bouyer
58 1.10 bouyer void xbdback_init(void);
59 1.10 bouyer void xennetback_init(void);
60 1.10 bouyer void xen_shm_init(void);
61 1.10 bouyer
62 1.10 bouyer void xenevt_event(int);
63 1.12 yamt void xenevt_notify(void);
64 1.10 bouyer
65 1.10 bouyer void idle_block(void);
66 1.7 cl
67 1.14 yamt #if defined(XENDEBUG) || 1 /* XXX */
68 1.1 cl void printk(const char *, ...);
69 1.9 christos void vprintk(const char *, _BSD_VA_LIST_);
70 1.1 cl #endif
71 1.1 cl
72 1.1 cl #endif
73 1.1 cl
74 1.3 cl #endif /* _XEN_H */
75 1.1 cl
76 1.1 cl /******************************************************************************
77 1.1 cl * os.h
78 1.1 cl *
79 1.1 cl * random collection of macros and definition
80 1.1 cl */
81 1.1 cl
82 1.1 cl #ifndef _OS_H_
83 1.1 cl #define _OS_H_
84 1.1 cl
85 1.1 cl /*
86 1.1 cl * These are the segment descriptors provided for us by the hypervisor.
87 1.1 cl * For now, these are hardwired -- guest OSes cannot update the GDT
88 1.1 cl * or LDT.
89 1.1 cl *
90 1.1 cl * It shouldn't be hard to support descriptor-table frobbing -- let me
91 1.1 cl * know if the BSD or XP ports require flexibility here.
92 1.1 cl */
93 1.1 cl
94 1.1 cl
95 1.1 cl /*
96 1.10 bouyer * these are also defined in xen-public/xen.h but can't be pulled in as
97 1.1 cl * they are used in start of day assembly. Need to clean up the .h files
98 1.1 cl * a bit more...
99 1.1 cl */
100 1.1 cl
101 1.19 bouyer #ifdef XEN3
102 1.19 bouyer #ifndef FLAT_RING1_CS
103 1.19 bouyer #define FLAT_RING1_CS 0xe019 /* GDT index 259 */
104 1.19 bouyer #define FLAT_RING1_DS 0xe021 /* GDT index 260 */
105 1.19 bouyer #define FLAT_RING1_SS 0xe021 /* GDT index 260 */
106 1.19 bouyer #define FLAT_RING3_CS 0xe02b /* GDT index 261 */
107 1.19 bouyer #define FLAT_RING3_DS 0xe033 /* GDT index 262 */
108 1.19 bouyer #define FLAT_RING3_SS 0xe033 /* GDT index 262 */
109 1.19 bouyer #endif
110 1.19 bouyer #else /* XEN3 */
111 1.1 cl #ifndef FLAT_RING1_CS
112 1.1 cl #define FLAT_RING1_CS 0x0819
113 1.1 cl #define FLAT_RING1_DS 0x0821
114 1.1 cl #define FLAT_RING3_CS 0x082b
115 1.1 cl #define FLAT_RING3_DS 0x0833
116 1.1 cl #endif
117 1.19 bouyer #endif /* XEN3 */
118 1.1 cl
119 1.1 cl #define __KERNEL_CS FLAT_RING1_CS
120 1.1 cl #define __KERNEL_DS FLAT_RING1_DS
121 1.1 cl
122 1.1 cl /* Everything below this point is not included by assembler (.S) files. */
123 1.1 cl #ifndef _LOCORE
124 1.1 cl
125 1.1 cl /* some function prototypes */
126 1.1 cl void trap_init(void);
127 1.10 bouyer void xpq_flush_cache(void);
128 1.1 cl
129 1.1 cl
130 1.1 cl /*
131 1.1 cl * STI/CLI equivalents. These basically set and clear the virtual
132 1.10 bouyer * event_enable flag in the shared_info structure. Note that when
133 1.1 cl * the enable bit is set, there may be pending events to be handled.
134 1.1 cl * We may therefore call into do_hypervisor_callback() directly.
135 1.1 cl */
136 1.8 cl
137 1.8 cl #define __save_flags(x) \
138 1.8 cl do { \
139 1.22 bouyer (x) = HYPERVISOR_shared_info->vcpu_info[0].evtchn_upcall_mask; \
140 1.1 cl } while (0)
141 1.1 cl
142 1.8 cl #define __restore_flags(x) \
143 1.8 cl do { \
144 1.10 bouyer volatile shared_info_t *_shared = HYPERVISOR_shared_info; \
145 1.8 cl __insn_barrier(); \
146 1.22 bouyer if ((_shared->vcpu_info[0].evtchn_upcall_mask = (x)) == 0) { \
147 1.11 bouyer x86_lfence(); \
148 1.22 bouyer if (__predict_false(_shared->vcpu_info[0].evtchn_upcall_pending)) \
149 1.10 bouyer hypervisor_force_callback(); \
150 1.10 bouyer } \
151 1.1 cl } while (0)
152 1.1 cl
153 1.8 cl #define __cli() \
154 1.8 cl do { \
155 1.22 bouyer HYPERVISOR_shared_info->vcpu_info[0].evtchn_upcall_mask = 1; \
156 1.11 bouyer x86_lfence(); \
157 1.1 cl } while (0)
158 1.1 cl
159 1.8 cl #define __sti() \
160 1.8 cl do { \
161 1.10 bouyer volatile shared_info_t *_shared = HYPERVISOR_shared_info; \
162 1.10 bouyer __insn_barrier(); \
163 1.22 bouyer _shared->vcpu_info[0].evtchn_upcall_mask = 0; \
164 1.11 bouyer x86_lfence(); /* unmask then check (avoid races) */ \
165 1.22 bouyer if (__predict_false(_shared->vcpu_info[0].evtchn_upcall_pending)) \
166 1.10 bouyer hypervisor_force_callback(); \
167 1.1 cl } while (0)
168 1.1 cl
169 1.8 cl #define cli() __cli()
170 1.8 cl #define sti() __sti()
171 1.8 cl #define save_flags(x) __save_flags(x)
172 1.8 cl #define restore_flags(x) __restore_flags(x)
173 1.10 bouyer #define save_and_cli(x) do { \
174 1.10 bouyer __save_flags(x); \
175 1.10 bouyer __cli(); \
176 1.10 bouyer } while (/* CONSTCOND */ 0)
177 1.8 cl #define save_and_sti(x) __save_and_sti(x)
178 1.8 cl
179 1.11 bouyer /*
180 1.11 bouyer * always assume we're on multiprocessor. We don't know how many CPU the
181 1.11 bouyer * underlying hardware has.
182 1.11 bouyer */
183 1.8 cl #define __LOCK_PREFIX "lock; "
184 1.1 cl
185 1.19 bouyer #ifdef XEN3
186 1.19 bouyer #define XATOMIC_T long
187 1.19 bouyer #else
188 1.19 bouyer #define XATOMIC_T uint32_t
189 1.19 bouyer #endif
190 1.20 perry static __inline XATOMIC_T
191 1.19 bouyer xen_atomic_xchg(volatile XATOMIC_T *ptr, unsigned long val)
192 1.1 cl {
193 1.8 cl unsigned long result;
194 1.1 cl
195 1.25 bouyer __asm volatile(__LOCK_PREFIX
196 1.25 bouyer #ifdef __x86_64__
197 1.25 bouyer "xchgq %0,%1"
198 1.25 bouyer #else
199 1.11 bouyer "xchgl %0,%1"
200 1.25 bouyer #endif
201 1.8 cl :"=r" (result)
202 1.8 cl :"m" (*ptr), "0" (val)
203 1.8 cl :"memory");
204 1.1 cl
205 1.8 cl return result;
206 1.1 cl }
207 1.1 cl
208 1.21 bouyer static inline uint16_t
209 1.21 bouyer xen_atomic_cmpxchg16(volatile uint16_t *ptr, uint16_t val, uint16_t newval)
210 1.21 bouyer {
211 1.21 bouyer unsigned long result;
212 1.21 bouyer
213 1.21 bouyer __asm volatile(__LOCK_PREFIX
214 1.21 bouyer "cmpxchgw %w1,%2"
215 1.21 bouyer :"=a" (result)
216 1.21 bouyer :"q"(newval), "m" (*ptr), "0" (val)
217 1.21 bouyer :"memory");
218 1.21 bouyer
219 1.21 bouyer return result;
220 1.21 bouyer }
221 1.21 bouyer
222 1.19 bouyer static __inline void
223 1.19 bouyer xen_atomic_setbits_l (volatile XATOMIC_T *ptr, unsigned long bits) {
224 1.25 bouyer #ifdef __x86_64__
225 1.25 bouyer __asm volatile("lock ; orq %1,%0" : "=m" (*ptr) : "ir" (bits));
226 1.25 bouyer #else
227 1.19 bouyer __asm volatile("lock ; orl %1,%0" : "=m" (*ptr) : "ir" (bits));
228 1.25 bouyer #endif
229 1.19 bouyer }
230 1.19 bouyer
231 1.19 bouyer static __inline void
232 1.19 bouyer xen_atomic_clearbits_l (volatile XATOMIC_T *ptr, unsigned long bits) {
233 1.25 bouyer #ifdef __x86_64__
234 1.25 bouyer __asm volatile("lock ; andq %1,%0" : "=m" (*ptr) : "ir" (~bits));
235 1.25 bouyer #else
236 1.19 bouyer __asm volatile("lock ; andl %1,%0" : "=m" (*ptr) : "ir" (~bits));
237 1.25 bouyer #endif
238 1.19 bouyer }
239 1.19 bouyer
240 1.25 bouyer static __inline XATOMIC_T
241 1.25 bouyer xen_atomic_test_and_clear_bit(volatile void *ptr, unsigned long bitno)
242 1.1 cl {
243 1.25 bouyer int result;
244 1.1 cl
245 1.25 bouyer __asm volatile(__LOCK_PREFIX
246 1.25 bouyer #ifdef __x86_64__
247 1.25 bouyer "btrq %2,%1 ;"
248 1.25 bouyer "sbbq %0,%0"
249 1.25 bouyer #else
250 1.8 cl "btrl %2,%1 ;"
251 1.8 cl "sbbl %0,%0"
252 1.25 bouyer #endif
253 1.19 bouyer :"=r" (result), "=m" (*(volatile XATOMIC_T *)(ptr))
254 1.8 cl :"Ir" (bitno) : "memory");
255 1.25 bouyer return result;
256 1.1 cl }
257 1.1 cl
258 1.25 bouyer static __inline XATOMIC_T
259 1.25 bouyer xen_atomic_test_and_set_bit(volatile void *ptr, unsigned long bitno)
260 1.10 bouyer {
261 1.25 bouyer long result;
262 1.10 bouyer
263 1.25 bouyer __asm volatile(__LOCK_PREFIX
264 1.25 bouyer #ifdef __x86_64__
265 1.25 bouyer "btsq %2,%1 ;"
266 1.25 bouyer "sbbq %0,%0"
267 1.25 bouyer #else
268 1.10 bouyer "btsl %2,%1 ;"
269 1.10 bouyer "sbbl %0,%0"
270 1.25 bouyer #endif
271 1.19 bouyer :"=r" (result), "=m" (*(volatile XATOMIC_T *)(ptr))
272 1.10 bouyer :"Ir" (bitno) : "memory");
273 1.25 bouyer return result;
274 1.10 bouyer }
275 1.10 bouyer
276 1.20 perry static __inline int
277 1.25 bouyer xen_constant_test_bit(const volatile void *ptr, unsigned long bitno)
278 1.1 cl {
279 1.8 cl return ((1UL << (bitno & 31)) &
280 1.19 bouyer (((const volatile XATOMIC_T *) ptr)[bitno >> 5])) != 0;
281 1.1 cl }
282 1.1 cl
283 1.25 bouyer static __inline XATOMIC_T
284 1.25 bouyer xen_variable_test_bit(const volatile void *ptr, unsigned long bitno)
285 1.1 cl {
286 1.25 bouyer long result;
287 1.8 cl
288 1.17 perry __asm volatile(
289 1.25 bouyer #ifdef __x86_64__
290 1.25 bouyer "btq %2,%1 ;"
291 1.25 bouyer "sbbq %0,%0"
292 1.25 bouyer #else
293 1.8 cl "btl %2,%1 ;"
294 1.8 cl "sbbl %0,%0"
295 1.25 bouyer #endif
296 1.8 cl :"=r" (result)
297 1.19 bouyer :"m" (*(const volatile XATOMIC_T *)(ptr)), "Ir" (bitno));
298 1.8 cl return result;
299 1.8 cl }
300 1.8 cl
301 1.19 bouyer #define xen_atomic_test_bit(ptr, bitno) \
302 1.8 cl (__builtin_constant_p(bitno) ? \
303 1.19 bouyer xen_constant_test_bit((ptr),(bitno)) : \
304 1.19 bouyer xen_variable_test_bit((ptr),(bitno)))
305 1.8 cl
306 1.20 perry static __inline void
307 1.25 bouyer xen_atomic_set_bit(volatile void *ptr, unsigned long bitno)
308 1.8 cl {
309 1.25 bouyer __asm volatile(__LOCK_PREFIX
310 1.25 bouyer #ifdef __x86_64__
311 1.25 bouyer "btsq %1,%0"
312 1.25 bouyer #else
313 1.8 cl "btsl %1,%0"
314 1.25 bouyer #endif
315 1.19 bouyer :"=m" (*(volatile XATOMIC_T *)(ptr))
316 1.8 cl :"Ir" (bitno));
317 1.8 cl }
318 1.8 cl
319 1.20 perry static __inline void
320 1.25 bouyer xen_atomic_clear_bit(volatile void *ptr, unsigned long bitno)
321 1.8 cl {
322 1.25 bouyer __asm volatile(__LOCK_PREFIX
323 1.25 bouyer #ifdef __x86_64__
324 1.25 bouyer "btrq %1,%0"
325 1.25 bouyer #else
326 1.8 cl "btrl %1,%0"
327 1.25 bouyer #endif
328 1.19 bouyer :"=m" (*(volatile XATOMIC_T *)(ptr))
329 1.8 cl :"Ir" (bitno));
330 1.1 cl }
331 1.1 cl
332 1.19 bouyer #undef XATOMIC_T
333 1.19 bouyer
334 1.23 ad void wbinvd(void);
335 1.10 bouyer
336 1.1 cl #endif /* !__ASSEMBLY__ */
337 1.1 cl
338 1.1 cl #endif /* _OS_H_ */
339