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xen.h revision 1.22
      1  1.22    bouyer /*	$NetBSD: xen.h,v 1.22 2007/09/23 16:54:08 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  1.17     perry         __asm volatile(__LOCK_PREFIX
    196  1.11    bouyer 	    "xchgl %0,%1"
    197   1.8        cl 	    :"=r" (result)
    198   1.8        cl 	    :"m" (*ptr), "0" (val)
    199   1.8        cl 	    :"memory");
    200   1.1        cl 
    201   1.8        cl 	return result;
    202   1.1        cl }
    203   1.1        cl 
    204  1.21    bouyer static inline uint16_t
    205  1.21    bouyer xen_atomic_cmpxchg16(volatile uint16_t *ptr, uint16_t  val, uint16_t newval)
    206  1.21    bouyer {
    207  1.21    bouyer 	unsigned long result;
    208  1.21    bouyer 
    209  1.21    bouyer         __asm volatile(__LOCK_PREFIX
    210  1.21    bouyer 	    "cmpxchgw %w1,%2"
    211  1.21    bouyer 	    :"=a" (result)
    212  1.21    bouyer 	    :"q"(newval), "m" (*ptr), "0" (val)
    213  1.21    bouyer 	    :"memory");
    214  1.21    bouyer 
    215  1.21    bouyer 	return result;
    216  1.21    bouyer }
    217  1.21    bouyer 
    218  1.19    bouyer static __inline void
    219  1.19    bouyer xen_atomic_setbits_l (volatile XATOMIC_T *ptr, unsigned long bits) {
    220  1.19    bouyer 	__asm volatile("lock ; orl %1,%0" :  "=m" (*ptr) : "ir" (bits));
    221  1.19    bouyer }
    222  1.19    bouyer 
    223  1.19    bouyer static __inline void
    224  1.19    bouyer xen_atomic_clearbits_l (volatile XATOMIC_T *ptr, unsigned long bits) {
    225  1.19    bouyer 	__asm volatile("lock ; andl %1,%0" :  "=m" (*ptr) : "ir" (~bits));
    226  1.19    bouyer }
    227  1.19    bouyer 
    228  1.20     perry static __inline int
    229  1.19    bouyer xen_atomic_test_and_clear_bit(volatile void *ptr, int bitno)
    230   1.1        cl {
    231   1.8        cl         int result;
    232   1.1        cl 
    233  1.17     perry         __asm volatile(__LOCK_PREFIX
    234   1.8        cl 	    "btrl %2,%1 ;"
    235   1.8        cl 	    "sbbl %0,%0"
    236  1.19    bouyer 	    :"=r" (result), "=m" (*(volatile XATOMIC_T *)(ptr))
    237   1.8        cl 	    :"Ir" (bitno) : "memory");
    238   1.8        cl         return result;
    239   1.1        cl }
    240   1.1        cl 
    241  1.20     perry static __inline int
    242  1.19    bouyer xen_atomic_test_and_set_bit(volatile void *ptr, int bitno)
    243  1.10    bouyer {
    244  1.10    bouyer         int result;
    245  1.10    bouyer 
    246  1.17     perry         __asm volatile(__LOCK_PREFIX
    247  1.10    bouyer 	    "btsl %2,%1 ;"
    248  1.10    bouyer 	    "sbbl %0,%0"
    249  1.19    bouyer 	    :"=r" (result), "=m" (*(volatile XATOMIC_T *)(ptr))
    250  1.10    bouyer 	    :"Ir" (bitno) : "memory");
    251  1.10    bouyer         return result;
    252  1.10    bouyer }
    253  1.10    bouyer 
    254  1.20     perry static __inline int
    255  1.19    bouyer xen_constant_test_bit(const volatile void *ptr, int bitno)
    256   1.1        cl {
    257   1.8        cl 	return ((1UL << (bitno & 31)) &
    258  1.19    bouyer 	    (((const volatile XATOMIC_T *) ptr)[bitno >> 5])) != 0;
    259   1.1        cl }
    260   1.1        cl 
    261  1.20     perry static __inline int
    262  1.19    bouyer xen_variable_test_bit(const volatile void *ptr, int bitno)
    263   1.1        cl {
    264   1.8        cl 	int result;
    265   1.8        cl 
    266  1.17     perry 	__asm volatile(
    267   1.8        cl 		"btl %2,%1 ;"
    268   1.8        cl 		"sbbl %0,%0"
    269   1.8        cl 		:"=r" (result)
    270  1.19    bouyer 		:"m" (*(const volatile XATOMIC_T *)(ptr)), "Ir" (bitno));
    271   1.8        cl 	return result;
    272   1.8        cl }
    273   1.8        cl 
    274  1.19    bouyer #define xen_atomic_test_bit(ptr, bitno) \
    275   1.8        cl 	(__builtin_constant_p(bitno) ? \
    276  1.19    bouyer 	 xen_constant_test_bit((ptr),(bitno)) : \
    277  1.19    bouyer 	 xen_variable_test_bit((ptr),(bitno)))
    278   1.8        cl 
    279  1.20     perry static __inline void
    280  1.19    bouyer xen_atomic_set_bit(volatile void *ptr, int bitno)
    281   1.8        cl {
    282  1.17     perry         __asm volatile(__LOCK_PREFIX
    283   1.8        cl 	    "btsl %1,%0"
    284  1.19    bouyer 	    :"=m" (*(volatile XATOMIC_T *)(ptr))
    285   1.8        cl 	    :"Ir" (bitno));
    286   1.8        cl }
    287   1.8        cl 
    288  1.20     perry static __inline void
    289  1.19    bouyer xen_atomic_clear_bit(volatile void *ptr, int bitno)
    290   1.8        cl {
    291  1.17     perry         __asm volatile(__LOCK_PREFIX
    292   1.8        cl 	    "btrl %1,%0"
    293  1.19    bouyer 	    :"=m" (*(volatile XATOMIC_T *)(ptr))
    294   1.8        cl 	    :"Ir" (bitno));
    295   1.1        cl }
    296   1.1        cl 
    297  1.19    bouyer #undef XATOMIC_T
    298  1.19    bouyer 
    299  1.20     perry static __inline void
    300  1.10    bouyer wbinvd(void)
    301  1.10    bouyer {
    302  1.10    bouyer 	xpq_flush_cache();
    303  1.10    bouyer }
    304  1.10    bouyer 
    305   1.1        cl #endif /* !__ASSEMBLY__ */
    306   1.1        cl 
    307   1.1        cl #endif /* _OS_H_ */
    308