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segments.h revision 1.11
      1 /*	$NetBSD: segments.h,v 1.11 2007/11/22 16:16:45 bouyer Exp $	*/
      2 
      3 /*-
      4  * Copyright (c) 1990 The Regents of the University of California.
      5  * All rights reserved.
      6  *
      7  * This code is derived from software contributed to Berkeley by
      8  * William Jolitz.
      9  *
     10  * Redistribution and use in source and binary forms, with or without
     11  * modification, are permitted provided that the following conditions
     12  * are met:
     13  * 1. Redistributions of source code must retain the above copyright
     14  *    notice, this list of conditions and the following disclaimer.
     15  * 2. Redistributions in binary form must reproduce the above copyright
     16  *    notice, this list of conditions and the following disclaimer in the
     17  *    documentation and/or other materials provided with the distribution.
     18  * 3. Neither the name of the University nor the names of its contributors
     19  *    may be used to endorse or promote products derived from this software
     20  *    without specific prior written permission.
     21  *
     22  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     23  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     24  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     25  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     26  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     27  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     28  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     29  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     30  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     31  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     32  * SUCH DAMAGE.
     33  *
     34  *	@(#)segments.h	7.1 (Berkeley) 5/9/91
     35  */
     36 
     37 /*-
     38  * Copyright (c) 1995, 1997
     39  *	Charles M. Hannum.  All rights reserved.
     40  * Copyright (c) 1989, 1990 William F. Jolitz
     41  *
     42  * This code is derived from software contributed to Berkeley by
     43  * William Jolitz.
     44  *
     45  * Redistribution and use in source and binary forms, with or without
     46  * modification, are permitted provided that the following conditions
     47  * are met:
     48  * 1. Redistributions of source code must retain the above copyright
     49  *    notice, this list of conditions and the following disclaimer.
     50  * 2. Redistributions in binary form must reproduce the above copyright
     51  *    notice, this list of conditions and the following disclaimer in the
     52  *    documentation and/or other materials provided with the distribution.
     53  * 3. All advertising materials mentioning features or use of this software
     54  *    must display the following acknowledgement:
     55  *	This product includes software developed by the University of
     56  *	California, Berkeley and its contributors.
     57  * 4. Neither the name of the University nor the names of its contributors
     58  *    may be used to endorse or promote products derived from this software
     59  *    without specific prior written permission.
     60  *
     61  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     62  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     63  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     64  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     65  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     66  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     67  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     68  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     69  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     70  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     71  * SUCH DAMAGE.
     72  *
     73  *	@(#)segments.h	7.1 (Berkeley) 5/9/91
     74  */
     75 
     76 /*
     77  * Adapted for NetBSD/amd64 by fvdl (at) wasabisystems.com.
     78  */
     79 
     80 /*
     81  * 386 Segmentation Data Structures and definitions
     82  *	William F. Jolitz (william (at) ernie.berkeley.edu) 6/20/1989
     83  */
     84 
     85 #ifndef _AMD64_SEGMENTS_H_
     86 #define _AMD64_SEGMENTS_H_
     87 #include "opt_xen.h"
     88 
     89 /*
     90  * Selectors
     91  */
     92 
     93 #define	ISPL(s)		((s) & SEL_RPL)	/* what is the priority level of a selector */
     94 #ifdef XEN
     95 #define	SEL_KPL		3		/* kernel privilege level */
     96 #define	SEL_XPL		0		/* Xen Hypervisor privilege level */
     97 #else
     98 #define	SEL_KPL		0		/* kernel privilege level */
     99 #endif
    100 #define	SEL_UPL		3		/* user privilege level */
    101 #define	SEL_RPL		3		/* requester's privilege level mask */
    102 #define	ISLDT(s)	((s) & SEL_LDT)	/* is it local or global */
    103 #define	SEL_LDT		4		/* local descriptor table */
    104 
    105 /* Dynamically allocated TSSs and LDTs start (byte offset) */
    106 #define SYSSEL_START	(NGDT_MEM << 3)
    107 #define DYNSEL_START	(SYSSEL_START + (NGDT_SYS << 4))
    108 
    109 /*
    110  * These define the index not from the start of the GDT, but from
    111  * the part of the GDT that they're allocated from.
    112  * First NGDT_MEM entries are 8-byte descriptors for CS and DS.
    113  * Next NGDT_SYS entries are 16-byte descriptors defining LDTs.
    114  *
    115  * The rest is 16-byte descriptors for TSS and LDT.
    116  */
    117 
    118 #define	IDXSEL(s)	(((s) >> 3) & 0x1fff)
    119 #define IDXDYNSEL(s)	((((s) & ~SEL_RPL) - DYNSEL_START) >> 4)
    120 
    121 #define	GSEL(s,r)	(((s) << 3) | r)
    122 #define	GSYSSEL(s,r)	((((s) << 4) + SYSSEL_START) | r)
    123 #define GDYNSEL(s,r)	((((s) << 4) + DYNSEL_START) | r | SEL_KPL)
    124 
    125 #define LSEL(s,r)	((s) | r | SEL_LDT)
    126 
    127 #define	USERMODE(c, f)		(ISPL(c) == SEL_UPL)
    128 #ifdef XEN
    129 /*
    130  * As KPL == UPL, Xen emulate interrupt in kernel context by pushing
    131  * a fake CS with XPL privilege
    132  */
    133 #define	KERNELMODE(c, f)	(ISPL(c) == SEL_XPL)
    134 #else
    135 #define	KERNELMODE(c, f)	(ISPL(c) == SEL_KPL)
    136 #endif
    137 
    138 #ifndef _LOCORE
    139 
    140 /*
    141  * Memory and System segment descriptors
    142  */
    143 
    144 /*
    145  * Below is used for TSS and LDT.
    146  */
    147 struct sys_segment_descriptor {
    148 /*BITFIELDTYPE*/ u_int64_t sd_lolimit:16;/* segment extent (lsb) */
    149 /*BITFIELDTYPE*/ u_int64_t sd_lobase:24;/* segment base address (lsb) */
    150 /*BITFIELDTYPE*/ u_int64_t sd_type:5;	/* segment type */
    151 /*BITFIELDTYPE*/ u_int64_t sd_dpl:2;	/* segment descriptor priority level */
    152 /*BITFIELDTYPE*/ u_int64_t sd_p:1;	/* segment descriptor present */
    153 /*BITFIELDTYPE*/ u_int64_t sd_hilimit:4;/* segment extent (msb) */
    154 /*BITFIELDTYPE*/ u_int64_t sd_xx1:3;	/* avl, long and def32 (not used) */
    155 /*BITFIELDTYPE*/ u_int64_t sd_gran:1;	/* limit granularity (byte/page) */
    156 /*BITFIELDTYPE*/ u_int64_t sd_hibase:40;/* segment base address (msb) */
    157 /*BITFIELDTYPE*/ u_int64_t sd_xx2:8;	/* reserved */
    158 /*BITFIELDTYPE*/ u_int64_t sd_zero:5;	/* must be zero */
    159 /*BITFIELDTYPE*/ u_int64_t sd_xx3:19;	/* reserved */
    160 } __attribute__((packed));
    161 
    162 /*
    163  * Below is used for cs, ds, etc.
    164  */
    165 struct mem_segment_descriptor {
    166 	unsigned sd_lolimit:16;         /* segment extent (lsb) */
    167 	unsigned sd_lobase:24;          /* segment base address (lsb) */
    168 	unsigned sd_type:5;             /* segment type */
    169 	unsigned sd_dpl:2;              /* segment descriptor priority level */
    170 	unsigned sd_p:1;                /* segment descriptor present */
    171 	unsigned sd_hilimit:4;          /* segment extent (msb) */
    172 	unsigned sd_avl:1;		/* available */
    173 	unsigned sd_long:1;		/* long mode */
    174 	unsigned sd_def32:1;            /* default 32 vs 16 bit size */
    175 	unsigned sd_gran:1;             /* limit granularity (byte/page) */
    176 	unsigned sd_hibase:8;           /* segment base address (msb) */
    177 } __attribute__((packed));
    178 
    179 /*
    180  * Common part of the above structures. Used to walk descriptor tables.
    181  */
    182 struct common_segment_descriptor {
    183 	unsigned sdc_lolimit:16;
    184 	unsigned sdc_lobase:24;
    185 	unsigned sdc_type:5;
    186 	unsigned sdc_other:19;
    187 } __attribute__((packed));
    188 
    189 /*
    190  * Gate descriptors (e.g. indirect descriptors)
    191  */
    192 struct gate_descriptor {
    193 /*BITFIELDTYPE*/ u_int64_t gd_looffset:16;/* gate offset (lsb) */
    194 /*BITFIELDTYPE*/ u_int64_t gd_selector:16;/* gate segment selector */
    195 /*BITFIELDTYPE*/ u_int64_t gd_ist:3;	/* IST select */
    196 /*BITFIELDTYPE*/ u_int64_t gd_xx1:5;	/* reserved */
    197 /*BITFIELDTYPE*/ u_int64_t gd_type:5;	/* segment type */
    198 /*BITFIELDTYPE*/ u_int64_t gd_dpl:2;	/* segment descriptor priority level */
    199 /*BITFIELDTYPE*/ u_int64_t gd_p:1;	/* segment descriptor present */
    200 /*BITFIELDTYPE*/ u_int64_t gd_hioffset:48;/* gate offset (msb) */
    201 /*BITFIELDTYPE*/ u_int64_t gd_xx2:8;	/* reserved */
    202 /*BITFIELDTYPE*/ u_int64_t gd_zero:5;	/* must be zero */
    203 /*BITFIELDTYPE*/ u_int64_t gd_xx3:19;	/* reserved */
    204 } __attribute__((packed));
    205 
    206 /*
    207  * region descriptors, used to load gdt/idt tables before segments yet exist.
    208  */
    209 struct region_descriptor {
    210 	u_int16_t rd_limit;		/* segment extent */
    211 	u_int64_t rd_base;		/* base address  */
    212 } __attribute__((packed));
    213 
    214 #ifdef _KERNEL
    215 #if 0
    216 extern struct sys_segment_descriptor *ldt;
    217 #endif
    218 #ifdef XEN
    219 extern struct trap_info *idt;
    220 #else
    221 extern struct gate_descriptor *idt;
    222 #endif
    223 extern char *gdtstore;
    224 extern char *ldtstore;
    225 
    226 void setgate(struct gate_descriptor *, void *, int, int, int, int);
    227 void unsetgate(struct gate_descriptor *);
    228 void setregion(struct region_descriptor *, void *, u_int16_t);
    229 void set_sys_segment(struct sys_segment_descriptor *, void *, size_t,
    230 			  int, int, int);
    231 void set_mem_segment(struct mem_segment_descriptor *, void *, size_t,
    232 			  int, int, int, int, int);
    233 int idt_vec_alloc(int, int);
    234 void idt_vec_set(int, void (*)(void));
    235 void idt_vec_free(int);
    236 void cpu_init_idt(void);
    237 
    238 struct lwp;
    239 int memseg_baseaddr(struct lwp *, uint64_t, char *, int, uint64_t *);
    240 int valid_user_selector(struct lwp *, uint64_t, char *, int);
    241 
    242 
    243 #endif /* _KERNEL */
    244 
    245 #endif /* !_LOCORE */
    246 
    247 /* system segments and gate types */
    248 #define	SDT_SYSNULL	 0	/* system null */
    249 #define	SDT_SYS286TSS	 1	/* system 286 TSS available */
    250 #define	SDT_SYSLDT	 2	/* system local descriptor table */
    251 #define	SDT_SYS286BSY	 3	/* system 286 TSS busy */
    252 #define	SDT_SYS286CGT	 4	/* system 286 call gate */
    253 #define	SDT_SYSTASKGT	 5	/* system task gate */
    254 #define	SDT_SYS286IGT	 6	/* system 286 interrupt gate */
    255 #define	SDT_SYS286TGT	 7	/* system 286 trap gate */
    256 #define	SDT_SYSNULL2	 8	/* system null again */
    257 #define	SDT_SYS386TSS	 9	/* system 386 TSS available */
    258 #define	SDT_SYSNULL3	10	/* system null again */
    259 #define	SDT_SYS386BSY	11	/* system 386 TSS busy */
    260 #define	SDT_SYS386CGT	12	/* system 386 call gate */
    261 #define	SDT_SYSNULL4	13	/* system null again */
    262 #define	SDT_SYS386IGT	14	/* system 386 interrupt gate */
    263 #define	SDT_SYS386TGT	15	/* system 386 trap gate */
    264 
    265 /* memory segment types */
    266 #define	SDT_MEMRO	16	/* memory read only */
    267 #define	SDT_MEMROA	17	/* memory read only accessed */
    268 #define	SDT_MEMRW	18	/* memory read write */
    269 #define	SDT_MEMRWA	19	/* memory read write accessed */
    270 #define	SDT_MEMROD	20	/* memory read only expand dwn limit */
    271 #define	SDT_MEMRODA	21	/* memory read only expand dwn limit accessed */
    272 #define	SDT_MEMRWD	22	/* memory read write expand dwn limit */
    273 #define	SDT_MEMRWDA	23	/* memory read write expand dwn limit acessed */
    274 #define	SDT_MEME	24	/* memory execute only */
    275 #define	SDT_MEMEA	25	/* memory execute only accessed */
    276 #define	SDT_MEMER	26	/* memory execute read */
    277 #define	SDT_MEMERA	27	/* memory execute read accessed */
    278 #define	SDT_MEMEC	28	/* memory execute only conforming */
    279 #define	SDT_MEMEAC	29	/* memory execute only accessed conforming */
    280 #define	SDT_MEMERC	30	/* memory execute read conforming */
    281 #define	SDT_MEMERAC	31	/* memory execute read accessed conforming */
    282 
    283 /* is memory segment descriptor pointer ? */
    284 #define ISMEMSDP(s)	((s->d_type) >= SDT_MEMRO && \
    285 			 (s->d_type) <= SDT_MEMERAC)
    286 
    287 /* is 286 gate descriptor pointer ? */
    288 #define IS286GDP(s)	((s->d_type) >= SDT_SYS286CGT && \
    289 			 (s->d_type) < SDT_SYS286TGT)
    290 
    291 /* is 386 gate descriptor pointer ? */
    292 #define IS386GDP(s)	((s->d_type) >= SDT_SYS386CGT && \
    293 			 (s->d_type) < SDT_SYS386TGT)
    294 
    295 /* is gate descriptor pointer ? */
    296 #define ISGDP(s)	(IS286GDP(s) || IS386GDP(s))
    297 
    298 /* is segment descriptor pointer ? */
    299 #define ISSDP(s)	(ISMEMSDP(s) || !ISGDP(s))
    300 
    301 /* is system segment descriptor pointer ? */
    302 #define ISSYSSDP(s)	(!ISMEMSDP(s) && !ISGDP(s))
    303 
    304 /*
    305  * Segment Protection Exception code bits
    306  */
    307 #define	SEGEX_EXT	0x01	/* recursive or externally induced */
    308 #define	SEGEX_IDT	0x02	/* interrupt descriptor table */
    309 #define	SEGEX_TI	0x04	/* local descriptor table */
    310 
    311 /*
    312  * Entries in the Interrupt Descriptor Table (IDT)
    313  */
    314 #define	NIDT	256
    315 #define	NRSVIDT	32		/* reserved entries for CPU exceptions */
    316 
    317 /*
    318  * Entries in the Global Descriptor Table (GDT)
    319  * The code and data descriptors must come first. There
    320  * are NGDT_MEM of them.
    321  *
    322  * Then come the predefined LDT (and possibly TSS) descriptors.
    323  * There are NGDT_SYS of them.
    324  */
    325 #define	GNULL_SEL	0	/* Null descriptor */
    326 #define	GCODE_SEL	1	/* Kernel code descriptor */
    327 #define	GDATA_SEL	2	/* Kernel data descriptor */
    328 #define	GUCODE_SEL	3	/* User code descriptor */
    329 #define	GUDATA_SEL	4	/* User data descriptor */
    330 #define	GAPM32CODE_SEL	5
    331 #define	GAPM16CODE_SEL	6
    332 #define	GAPMDATA_SEL	7
    333 #define	GBIOSCODE_SEL	8
    334 #define	GBIOSDATA_SEL	9
    335 #define GPNPBIOSCODE_SEL 10
    336 #define GPNPBIOSDATA_SEL 11
    337 #define GPNPBIOSSCRATCH_SEL 12
    338 #define GPNPBIOSTRAMP_SEL 13
    339 #define GUCODE32_SEL	14
    340 #define GUDATA32_SEL	15
    341 #define NGDT_MEM 16
    342 
    343 #define	GLDT_SEL	0	/* Default LDT descriptor */
    344 #define NGDT_SYS	1
    345 
    346 #define GDT_ADDR_MEM(s,i)	\
    347     ((struct mem_segment_descriptor *)((s) + ((i) << 3)))
    348 #define GDT_ADDR_SYS(s,i)	\
    349    ((struct sys_segment_descriptor *)((s) + (((i) << 4) + SYSSEL_START)))
    350 
    351 /*
    352  * Byte offsets in the Local Descriptor Table (LDT)
    353  * Strange order because of syscall/sysret insns
    354  */
    355 #define	LSYS5CALLS_SEL	0	/* iBCS system call gate */
    356 #define LUCODE32_SEL	8	/* 32 bit user code descriptor */
    357 #define	LUDATA_SEL	16	/* User data descriptor */
    358 #define	LUCODE_SEL	24	/* User code descriptor */
    359 #define	LSOL26CALLS_SEL	32	/* Solaris 2.6 system call gate */
    360 #define LUDATA32_SEL	56	/* 32 bit user data descriptor (needed?)*/
    361 #define	LBSDICALLS_SEL	128	/* BSDI system call gate */
    362 
    363 #define LDT_SIZE	144
    364 
    365 #define LSYSRETBASE_SEL	LUCODE32_SEL
    366 
    367 /*
    368  * Checks for valid user selectors. If USER_LDT ever gets implemented
    369  * for amd64, these must check the ldt length and SEL_UPL if a user
    370  * ldt is active.
    371  */
    372 #define VALID_USER_DSEL32(s) \
    373     (((s) & 0xffff) == GSEL(GUDATA32_SEL, SEL_UPL) || \
    374      ((s) & 0xffff) == LSEL(LUDATA32_SEL, SEL_UPL))
    375 #if 0 /* not used */
    376 #define VALID_USER_CSEL32(s) \
    377     ((s) == GSEL(GUCODE32_SEL, SEL_UPL) || (s) == LSEL(LUCODE32_SEL, SEL_UPL))
    378 #endif
    379 
    380 #define VALID_USER_CSEL(s) \
    381     ((s) == GSEL(GUCODE_SEL, SEL_UPL) || (s) == LSEL(LUCODE_SEL, SEL_UPL))
    382 #define VALID_USER_DSEL(s) \
    383     ((s) == GSEL(GUDATA_SEL, SEL_UPL) || (s) == LSEL(LUDATA_SEL, SEL_UPL))
    384 
    385 #endif /* _AMD64_SEGMENTS_H_ */
    386