13c4dd356SDavid Greenman /*- 23c4dd356SDavid Greenman * Copyright (c) 1993 The Regents of the University of California. 33c4dd356SDavid Greenman * All rights reserved. 43c4dd356SDavid Greenman * 53c4dd356SDavid Greenman * Redistribution and use in source and binary forms, with or without 63c4dd356SDavid Greenman * modification, are permitted provided that the following conditions 73c4dd356SDavid Greenman * are met: 83c4dd356SDavid Greenman * 1. Redistributions of source code must retain the above copyright 93c4dd356SDavid Greenman * notice, this list of conditions and the following disclaimer. 103c4dd356SDavid Greenman * 2. Redistributions in binary form must reproduce the above copyright 113c4dd356SDavid Greenman * notice, this list of conditions and the following disclaimer in the 123c4dd356SDavid Greenman * documentation and/or other materials provided with the distribution. 133c4dd356SDavid Greenman * 3. All advertising materials mentioning features or use of this software 143c4dd356SDavid Greenman * must display the following acknowledgement: 153c4dd356SDavid Greenman * This product includes software developed by the University of 163c4dd356SDavid Greenman * California, Berkeley and its contributors. 173c4dd356SDavid Greenman * 4. Neither the name of the University nor the names of its contributors 183c4dd356SDavid Greenman * may be used to endorse or promote products derived from this software 193c4dd356SDavid Greenman * without specific prior written permission. 203c4dd356SDavid Greenman * 213c4dd356SDavid Greenman * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND 223c4dd356SDavid Greenman * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 233c4dd356SDavid Greenman * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 243c4dd356SDavid Greenman * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE 253c4dd356SDavid Greenman * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 263c4dd356SDavid Greenman * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 273c4dd356SDavid Greenman * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 283c4dd356SDavid Greenman * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 293c4dd356SDavid Greenman * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 303c4dd356SDavid Greenman * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 313c4dd356SDavid Greenman * SUCH DAMAGE. 323c4dd356SDavid Greenman * 330264a0ebSPeter Wemm * $Id: cpufunc.h,v 1.86 1999/04/28 01:03:58 luoqi Exp $ 343c4dd356SDavid Greenman */ 353c4dd356SDavid Greenman 365b81b6b3SRodney W. Grimes /* 375b81b6b3SRodney W. Grimes * Functions to provide access to special i386 instructions. 385b81b6b3SRodney W. Grimes */ 395b81b6b3SRodney W. Grimes 406e393973SGarrett Wollman #ifndef _MACHINE_CPUFUNC_H_ 41004bedebSBruce Evans #define _MACHINE_CPUFUNC_H_ 426e393973SGarrett Wollman 43e31fa854SDoug Rabson #define readb(va) (*(volatile u_int8_t *) (va)) 44e31fa854SDoug Rabson #define readw(va) (*(volatile u_int16_t *) (va)) 45e31fa854SDoug Rabson #define readl(va) (*(volatile u_int32_t *) (va)) 46e31fa854SDoug Rabson 47e31fa854SDoug Rabson #define writeb(va, d) (*(volatile u_int8_t *) (va) = (d)) 48e31fa854SDoug Rabson #define writew(va, d) (*(volatile u_int16_t *) (va) = (d)) 49e31fa854SDoug Rabson #define writel(va, d) (*(volatile u_int32_t *) (va) = (d)) 50e31fa854SDoug Rabson 515b81b6b3SRodney W. Grimes #ifdef __GNUC__ 525b81b6b3SRodney W. Grimes 532a32c15fSBruce Evans #ifdef SMP 542a32c15fSBruce Evans #include <machine/lock.h> /* XXX */ 552a32c15fSBruce Evans #endif 562a32c15fSBruce Evans 572a32c15fSBruce Evans #ifdef SWTCH_OPTIM_STATS 582a32c15fSBruce Evans extern int tlb_flush_count; /* XXX */ 592a32c15fSBruce Evans #endif 602a32c15fSBruce Evans 615dbd168eSBruce Evans static __inline void 625dbd168eSBruce Evans breakpoint(void) 63004bedebSBruce Evans { 64004bedebSBruce Evans __asm __volatile("int $3"); 655b81b6b3SRodney W. Grimes } 665b81b6b3SRodney W. Grimes 67004bedebSBruce Evans static __inline void 685b81b6b3SRodney W. Grimes disable_intr(void) 695b81b6b3SRodney W. Grimes { 708966b85cSJohn Dyson __asm __volatile("cli" : : : "memory"); 712a32c15fSBruce Evans #ifdef SMP 7220233f27SSteve Passe MPINTR_LOCK(); 732a32c15fSBruce Evans #endif 745b81b6b3SRodney W. Grimes } 755b81b6b3SRodney W. Grimes 76004bedebSBruce Evans static __inline void 775b81b6b3SRodney W. Grimes enable_intr(void) 785b81b6b3SRodney W. Grimes { 792a32c15fSBruce Evans #ifdef SMP 8020233f27SSteve Passe MPINTR_UNLOCK(); 812a32c15fSBruce Evans #endif 82fadc51bdSBruce Evans __asm __volatile("sti"); 835b81b6b3SRodney W. Grimes } 845b81b6b3SRodney W. Grimes 85004bedebSBruce Evans #define HAVE_INLINE_FFS 86004bedebSBruce Evans 87004bedebSBruce Evans static __inline int 88004bedebSBruce Evans ffs(int mask) 89004bedebSBruce Evans { 90004bedebSBruce Evans int result; 91004bedebSBruce Evans /* 92004bedebSBruce Evans * bsfl turns out to be not all that slow on 486's. It can beaten 93004bedebSBruce Evans * using a binary search to reduce to 4 bits and then a table lookup, 94004bedebSBruce Evans * but only if the code is inlined and in the cache, and the code 95004bedebSBruce Evans * is quite large so inlining it probably busts the cache. 96004bedebSBruce Evans * 97004bedebSBruce Evans * Note that gcc-2's builtin ffs would be used if we didn't declare 98004bedebSBruce Evans * this inline or turn off the builtin. The builtin is faster but 99004bedebSBruce Evans * broken in gcc-2.4.5 and slower but working in gcc-2.5 and 2.6. 100004bedebSBruce Evans */ 101004bedebSBruce Evans __asm __volatile("testl %0,%0; je 1f; bsfl %0,%0; incl %0; 1:" 102004bedebSBruce Evans : "=r" (result) : "0" (mask)); 103004bedebSBruce Evans return (result); 104004bedebSBruce Evans } 105004bedebSBruce Evans 10613f588f8SGarrett Wollman #define HAVE_INLINE_FLS 10713f588f8SGarrett Wollman 10813f588f8SGarrett Wollman static __inline int 10913f588f8SGarrett Wollman fls(int mask) 11013f588f8SGarrett Wollman { 11113f588f8SGarrett Wollman int result; 11213f588f8SGarrett Wollman __asm __volatile("testl %0,%0; je 1f; bsrl %0,%0; incl %0; 1:" 11313f588f8SGarrett Wollman : "=r" (result) : "0" (mask)); 11413f588f8SGarrett Wollman return (result); 11513f588f8SGarrett Wollman } 11613f588f8SGarrett Wollman 117004bedebSBruce Evans #if __GNUC__ < 2 118004bedebSBruce Evans 119004bedebSBruce Evans #define inb(port) inbv(port) 120004bedebSBruce Evans #define outb(port, data) outbv(port, data) 121004bedebSBruce Evans 122004bedebSBruce Evans #else /* __GNUC >= 2 */ 123004bedebSBruce Evans 124004bedebSBruce Evans /* 1258089a043SBruce Evans * The following complications are to get around gcc not having a 1268089a043SBruce Evans * constraint letter for the range 0..255. We still put "d" in the 1278089a043SBruce Evans * constraint because "i" isn't a valid constraint when the port 1288089a043SBruce Evans * isn't constant. This only matters for -O0 because otherwise 1298089a043SBruce Evans * the non-working version gets optimized away. 1308089a043SBruce Evans * 131004bedebSBruce Evans * Use an expression-statement instead of a conditional expression 132004bedebSBruce Evans * because gcc-2.6.0 would promote the operands of the conditional 133004bedebSBruce Evans * and produce poor code for "if ((inb(var) & const1) == const2)". 134388dfa71SBruce Evans * 135388dfa71SBruce Evans * The unnecessary test `(port) < 0x10000' is to generate a warning if 136388dfa71SBruce Evans * the `port' has type u_short or smaller. Such types are pessimal. 137388dfa71SBruce Evans * This actually only works for signed types. The range check is 138388dfa71SBruce Evans * careful to avoid generating warnings. 139004bedebSBruce Evans */ 140388dfa71SBruce Evans #define inb(port) __extension__ ({ \ 141004bedebSBruce Evans u_char _data; \ 142388dfa71SBruce Evans if (__builtin_constant_p(port) && ((port) & 0xffff) < 0x100 \ 143388dfa71SBruce Evans && (port) < 0x10000) \ 144004bedebSBruce Evans _data = inbc(port); \ 145004bedebSBruce Evans else \ 146004bedebSBruce Evans _data = inbv(port); \ 147004bedebSBruce Evans _data; }) 148004bedebSBruce Evans 149388dfa71SBruce Evans #define outb(port, data) ( \ 150388dfa71SBruce Evans __builtin_constant_p(port) && ((port) & 0xffff) < 0x100 \ 151388dfa71SBruce Evans && (port) < 0x10000 \ 152004bedebSBruce Evans ? outbc(port, data) : outbv(port, data)) 153004bedebSBruce Evans 154004bedebSBruce Evans static __inline u_char 155004bedebSBruce Evans inbc(u_int port) 156004bedebSBruce Evans { 157004bedebSBruce Evans u_char data; 158004bedebSBruce Evans 1598089a043SBruce Evans __asm __volatile("inb %1,%0" : "=a" (data) : "id" ((u_short)(port))); 160004bedebSBruce Evans return (data); 161004bedebSBruce Evans } 162004bedebSBruce Evans 163004bedebSBruce Evans static __inline void 164004bedebSBruce Evans outbc(u_int port, u_char data) 165004bedebSBruce Evans { 1668089a043SBruce Evans __asm __volatile("outb %0,%1" : : "a" (data), "id" ((u_short)(port))); 167004bedebSBruce Evans } 168004bedebSBruce Evans 169004bedebSBruce Evans #endif /* __GNUC <= 2 */ 170004bedebSBruce Evans 171004bedebSBruce Evans static __inline u_char 172004bedebSBruce Evans inbv(u_int port) 173004bedebSBruce Evans { 174004bedebSBruce Evans u_char data; 175004bedebSBruce Evans /* 176004bedebSBruce Evans * We use %%dx and not %1 here because i/o is done at %dx and not at 177004bedebSBruce Evans * %edx, while gcc generates inferior code (movw instead of movl) 178004bedebSBruce Evans * if we tell it to load (u_short) port. 179004bedebSBruce Evans */ 180004bedebSBruce Evans __asm __volatile("inb %%dx,%0" : "=a" (data) : "d" (port)); 181004bedebSBruce Evans return (data); 182004bedebSBruce Evans } 183004bedebSBruce Evans 18400be8601SBruce Evans static __inline u_int 185004bedebSBruce Evans inl(u_int port) 186004bedebSBruce Evans { 18700be8601SBruce Evans u_int data; 188004bedebSBruce Evans 189004bedebSBruce Evans __asm __volatile("inl %%dx,%0" : "=a" (data) : "d" (port)); 190004bedebSBruce Evans return (data); 191004bedebSBruce Evans } 192004bedebSBruce Evans 193004bedebSBruce Evans static __inline void 194004bedebSBruce Evans insb(u_int port, void *addr, size_t cnt) 195004bedebSBruce Evans { 196004bedebSBruce Evans __asm __volatile("cld; rep; insb" 197896763faSBruce Evans : "=D" (addr), "=c" (cnt) 198896763faSBruce Evans : "0" (addr), "1" (cnt), "d" (port) 199896763faSBruce Evans : "memory"); 200004bedebSBruce Evans } 201004bedebSBruce Evans 202004bedebSBruce Evans static __inline void 203004bedebSBruce Evans insw(u_int port, void *addr, size_t cnt) 204004bedebSBruce Evans { 205004bedebSBruce Evans __asm __volatile("cld; rep; insw" 206896763faSBruce Evans : "=D" (addr), "=c" (cnt) 207896763faSBruce Evans : "0" (addr), "1" (cnt), "d" (port) 208896763faSBruce Evans : "memory"); 209004bedebSBruce Evans } 210004bedebSBruce Evans 211004bedebSBruce Evans static __inline void 212004bedebSBruce Evans insl(u_int port, void *addr, size_t cnt) 213004bedebSBruce Evans { 214004bedebSBruce Evans __asm __volatile("cld; rep; insl" 215896763faSBruce Evans : "=D" (addr), "=c" (cnt) 216896763faSBruce Evans : "0" (addr), "1" (cnt), "d" (port) 217896763faSBruce Evans : "memory"); 218004bedebSBruce Evans } 219004bedebSBruce Evans 220ece15d78SBruce Evans static __inline void 2214c024bbdSKATO Takenori invd(void) 2224c024bbdSKATO Takenori { 2234c024bbdSKATO Takenori __asm __volatile("invd"); 2244c024bbdSKATO Takenori } 2254c024bbdSKATO Takenori 226f48bbd5fSBruce Evans #if defined(SMP) && defined(KERNEL) 227477a642cSPeter Wemm 228477a642cSPeter Wemm /* 229f48bbd5fSBruce Evans * When using APIC IPI's, invlpg() is not simply the invlpg instruction 230f48bbd5fSBruce Evans * (this is a bug) and the inlining cost is prohibitive since the call 231f40e6078SPeter Wemm * executes into the IPI transmission system. 232477a642cSPeter Wemm */ 233477a642cSPeter Wemm void invlpg __P((u_int addr)); 234477a642cSPeter Wemm void invltlb __P((void)); 235477a642cSPeter Wemm 2365498a452SJohn Dyson static __inline void 2375498a452SJohn Dyson cpu_invlpg(void *addr) 2385498a452SJohn Dyson { 2395498a452SJohn Dyson __asm __volatile("invlpg %0" : : "m" (*(char *)addr) : "memory"); 2405498a452SJohn Dyson } 2415498a452SJohn Dyson 2425931a9c2STor Egge static __inline void 2435931a9c2STor Egge cpu_invltlb(void) 2445931a9c2STor Egge { 24500be8601SBruce Evans u_int temp; 2465931a9c2STor Egge /* 2475931a9c2STor Egge * This should be implemented as load_cr3(rcr3()) when load_cr3() 2485931a9c2STor Egge * is inlined. 2495931a9c2STor Egge */ 2505931a9c2STor Egge __asm __volatile("movl %%cr3, %0; movl %0, %%cr3" : "=r" (temp) 2515931a9c2STor Egge : : "memory"); 2525931a9c2STor Egge #if defined(SWTCH_OPTIM_STATS) 2535931a9c2STor Egge ++tlb_flush_count; 2545931a9c2STor Egge #endif 2555931a9c2STor Egge } 256f48bbd5fSBruce Evans 257f48bbd5fSBruce Evans #else /* !(SMP && KERNEL) */ 258477a642cSPeter Wemm 2594c024bbdSKATO Takenori static __inline void 260471176aaSJohn Dyson invlpg(u_int addr) 261ece15d78SBruce Evans { 2625498a452SJohn Dyson __asm __volatile("invlpg %0" : : "m" (*(char *)addr) : "memory"); 263ece15d78SBruce Evans } 264ece15d78SBruce Evans 265ece15d78SBruce Evans static __inline void 266ece15d78SBruce Evans invltlb(void) 267ece15d78SBruce Evans { 26800be8601SBruce Evans u_int temp; 269ece15d78SBruce Evans /* 270ece15d78SBruce Evans * This should be implemented as load_cr3(rcr3()) when load_cr3() 271ece15d78SBruce Evans * is inlined. 272ece15d78SBruce Evans */ 273ece15d78SBruce Evans __asm __volatile("movl %%cr3, %0; movl %0, %%cr3" : "=r" (temp) 274ece15d78SBruce Evans : : "memory"); 275f48bbd5fSBruce Evans #ifdef SWTCH_OPTIM_STATS 27682566551SJohn Dyson ++tlb_flush_count; 27782566551SJohn Dyson #endif 278ece15d78SBruce Evans } 2792c5d02ffSSteve Passe 280f48bbd5fSBruce Evans #endif /* SMP && KERNEL */ 281ece15d78SBruce Evans 282004bedebSBruce Evans static __inline u_short 283004bedebSBruce Evans inw(u_int port) 284004bedebSBruce Evans { 285004bedebSBruce Evans u_short data; 286004bedebSBruce Evans 287004bedebSBruce Evans __asm __volatile("inw %%dx,%0" : "=a" (data) : "d" (port)); 288004bedebSBruce Evans return (data); 289004bedebSBruce Evans } 290004bedebSBruce Evans 2915dbd168eSBruce Evans static __inline u_int 2920264a0ebSPeter Wemm loadandclear(volatile u_int *addr) 2930ee893ebSBruce Evans { 2940ee893ebSBruce Evans u_int result; 2950ee893ebSBruce Evans 2960ee893ebSBruce Evans __asm __volatile("xorl %0,%0; xchgl %1,%0" 29730fd0561SDavid Greenman : "=&r" (result) : "m" (*addr)); 2980ee893ebSBruce Evans return (result); 2990ee893ebSBruce Evans } 3000ee893ebSBruce Evans 301004bedebSBruce Evans static __inline void 302004bedebSBruce Evans outbv(u_int port, u_char data) 303004bedebSBruce Evans { 304004bedebSBruce Evans u_char al; 305004bedebSBruce Evans /* 306004bedebSBruce Evans * Use an unnecessary assignment to help gcc's register allocator. 307004bedebSBruce Evans * This make a large difference for gcc-1.40 and a tiny difference 308004bedebSBruce Evans * for gcc-2.6.0. For gcc-1.40, al had to be ``asm("ax")'' for 309004bedebSBruce Evans * best results. gcc-2.6.0 can't handle this. 310004bedebSBruce Evans */ 311004bedebSBruce Evans al = data; 312004bedebSBruce Evans __asm __volatile("outb %0,%%dx" : : "a" (al), "d" (port)); 313004bedebSBruce Evans } 314004bedebSBruce Evans 315004bedebSBruce Evans static __inline void 31600be8601SBruce Evans outl(u_int port, u_int data) 317004bedebSBruce Evans { 318004bedebSBruce Evans /* 319004bedebSBruce Evans * outl() and outw() aren't used much so we haven't looked at 320004bedebSBruce Evans * possible micro-optimizations such as the unnecessary 321004bedebSBruce Evans * assignment for them. 322004bedebSBruce Evans */ 323004bedebSBruce Evans __asm __volatile("outl %0,%%dx" : : "a" (data), "d" (port)); 324004bedebSBruce Evans } 325004bedebSBruce Evans 326004bedebSBruce Evans static __inline void 327e1a1bba4SJustin T. Gibbs outsb(u_int port, const void *addr, size_t cnt) 328004bedebSBruce Evans { 329004bedebSBruce Evans __asm __volatile("cld; rep; outsb" 330896763faSBruce Evans : "=S" (addr), "=c" (cnt) 331896763faSBruce Evans : "0" (addr), "1" (cnt), "d" (port)); 332004bedebSBruce Evans } 333004bedebSBruce Evans 334004bedebSBruce Evans static __inline void 335e1a1bba4SJustin T. Gibbs outsw(u_int port, const void *addr, size_t cnt) 336004bedebSBruce Evans { 337004bedebSBruce Evans __asm __volatile("cld; rep; outsw" 338896763faSBruce Evans : "=S" (addr), "=c" (cnt) 339896763faSBruce Evans : "0" (addr), "1" (cnt), "d" (port)); 340004bedebSBruce Evans } 341004bedebSBruce Evans 342004bedebSBruce Evans static __inline void 343e1a1bba4SJustin T. Gibbs outsl(u_int port, const void *addr, size_t cnt) 344004bedebSBruce Evans { 345004bedebSBruce Evans __asm __volatile("cld; rep; outsl" 346896763faSBruce Evans : "=S" (addr), "=c" (cnt) 347896763faSBruce Evans : "0" (addr), "1" (cnt), "d" (port)); 348004bedebSBruce Evans } 349004bedebSBruce Evans 350004bedebSBruce Evans static __inline void 351004bedebSBruce Evans outw(u_int port, u_short data) 352004bedebSBruce Evans { 353004bedebSBruce Evans __asm __volatile("outw %0,%%dx" : : "a" (data), "d" (port)); 354004bedebSBruce Evans } 355004bedebSBruce Evans 35600be8601SBruce Evans static __inline u_int 357004bedebSBruce Evans rcr2(void) 358004bedebSBruce Evans { 35900be8601SBruce Evans u_int data; 360004bedebSBruce Evans 361004bedebSBruce Evans __asm __volatile("movl %%cr2,%0" : "=r" (data)); 362004bedebSBruce Evans return (data); 363004bedebSBruce Evans } 364004bedebSBruce Evans 36500be8601SBruce Evans static __inline u_int 366004bedebSBruce Evans read_eflags(void) 3675b81b6b3SRodney W. Grimes { 36800be8601SBruce Evans u_int ef; 369004bedebSBruce Evans 370004bedebSBruce Evans __asm __volatile("pushfl; popl %0" : "=r" (ef)); 3718db02de8SPaul Richards return (ef); 3725b81b6b3SRodney W. Grimes } 3735b81b6b3SRodney W. Grimes 37400be8601SBruce Evans static __inline u_int64_t 3755dbd168eSBruce Evans rdmsr(u_int msr) 3765dbd168eSBruce Evans { 37700be8601SBruce Evans u_int64_t rv; 3785dbd168eSBruce Evans 3795dbd168eSBruce Evans __asm __volatile(".byte 0x0f, 0x32" : "=A" (rv) : "c" (msr)); 3805dbd168eSBruce Evans return (rv); 3815dbd168eSBruce Evans } 3825dbd168eSBruce Evans 38300be8601SBruce Evans static __inline u_int64_t 3845dbd168eSBruce Evans rdpmc(u_int pmc) 3855dbd168eSBruce Evans { 38600be8601SBruce Evans u_int64_t rv; 3875dbd168eSBruce Evans 3885dbd168eSBruce Evans __asm __volatile(".byte 0x0f, 0x33" : "=A" (rv) : "c" (pmc)); 3895dbd168eSBruce Evans return (rv); 3905dbd168eSBruce Evans } 3915dbd168eSBruce Evans 39200be8601SBruce Evans static __inline u_int64_t 3935dbd168eSBruce Evans rdtsc(void) 3945dbd168eSBruce Evans { 39500be8601SBruce Evans u_int64_t rv; 3965dbd168eSBruce Evans 3975dbd168eSBruce Evans __asm __volatile(".byte 0x0f, 0x31" : "=A" (rv)); 3985dbd168eSBruce Evans return (rv); 3995dbd168eSBruce Evans } 4005dbd168eSBruce Evans 401004bedebSBruce Evans static __inline void 402f48bbd5fSBruce Evans setbits(volatile u_int *addr, u_int bits) 4037baccf64SBruce Evans { 404713da3edSJohn Polstra __asm __volatile( 405713da3edSJohn Polstra #ifdef SMP 406713da3edSJohn Polstra "lock; " 407713da3edSJohn Polstra #endif 408713da3edSJohn Polstra "orl %1,%0" : "=m" (*addr) : "ir" (bits)); 4097baccf64SBruce Evans } 4107baccf64SBruce Evans 4117baccf64SBruce Evans static __inline void 4124c024bbdSKATO Takenori wbinvd(void) 4134c024bbdSKATO Takenori { 4144c024bbdSKATO Takenori __asm __volatile("wbinvd"); 4154c024bbdSKATO Takenori } 4164c024bbdSKATO Takenori 4174c024bbdSKATO Takenori static __inline void 41800be8601SBruce Evans write_eflags(u_int ef) 4195b81b6b3SRodney W. Grimes { 420004bedebSBruce Evans __asm __volatile("pushl %0; popfl" : : "r" (ef)); 4215b81b6b3SRodney W. Grimes } 4225b81b6b3SRodney W. Grimes 423d69e8502SGarrett Wollman static __inline void 42400be8601SBruce Evans wrmsr(u_int msr, u_int64_t newval) 425d69e8502SGarrett Wollman { 42628dc3d27SGarrett Wollman __asm __volatile(".byte 0x0f, 0x30" : : "A" (newval), "c" (msr)); 427d69e8502SGarrett Wollman } 428d69e8502SGarrett Wollman 4295206bca1SLuoqi Chen static __inline u_int 4305206bca1SLuoqi Chen rfs(void) 4315206bca1SLuoqi Chen { 4325206bca1SLuoqi Chen u_int sel; 4335206bca1SLuoqi Chen __asm __volatile("movl %%fs,%0" : "=r" (sel)); 4345206bca1SLuoqi Chen return (sel); 4355206bca1SLuoqi Chen } 4365206bca1SLuoqi Chen 4375206bca1SLuoqi Chen static __inline u_int 4385206bca1SLuoqi Chen rgs(void) 4395206bca1SLuoqi Chen { 4405206bca1SLuoqi Chen u_int sel; 4415206bca1SLuoqi Chen __asm __volatile("movl %%gs,%0" : "=r" (sel)); 4425206bca1SLuoqi Chen return (sel); 4435206bca1SLuoqi Chen } 4445206bca1SLuoqi Chen 4455206bca1SLuoqi Chen static __inline void 4465206bca1SLuoqi Chen load_fs(u_int sel) 4475206bca1SLuoqi Chen { 4485206bca1SLuoqi Chen __asm __volatile("movl %0,%%fs" : : "r" (sel)); 4495206bca1SLuoqi Chen } 4505206bca1SLuoqi Chen 4515206bca1SLuoqi Chen static __inline void 4525206bca1SLuoqi Chen load_gs(u_int sel) 4535206bca1SLuoqi Chen { 4545206bca1SLuoqi Chen __asm __volatile("movl %0,%%gs" : : "r" (sel)); 4555206bca1SLuoqi Chen } 4565206bca1SLuoqi Chen 457004bedebSBruce Evans #else /* !__GNUC__ */ 4585b81b6b3SRodney W. Grimes 4595dbd168eSBruce Evans int breakpoint __P((void)); 4605b81b6b3SRodney W. Grimes void disable_intr __P((void)); 4615b81b6b3SRodney W. Grimes void enable_intr __P((void)); 4625b81b6b3SRodney W. Grimes u_char inb __P((u_int port)); 46300be8601SBruce Evans u_int inl __P((u_int port)); 464004bedebSBruce Evans void insb __P((u_int port, void *addr, size_t cnt)); 465004bedebSBruce Evans void insl __P((u_int port, void *addr, size_t cnt)); 466004bedebSBruce Evans void insw __P((u_int port, void *addr, size_t cnt)); 4674c024bbdSKATO Takenori void invd __P((void)); 468ece15d78SBruce Evans void invlpg __P((u_int addr)); 469ece15d78SBruce Evans void invltlb __P((void)); 470004bedebSBruce Evans u_short inw __P((u_int port)); 4710ee893ebSBruce Evans u_int loadandclear __P((u_int *addr)); 472004bedebSBruce Evans void outb __P((u_int port, u_char data)); 47300be8601SBruce Evans void outl __P((u_int port, u_int data)); 474004bedebSBruce Evans void outsb __P((u_int port, void *addr, size_t cnt)); 475004bedebSBruce Evans void outsl __P((u_int port, void *addr, size_t cnt)); 476004bedebSBruce Evans void outsw __P((u_int port, void *addr, size_t cnt)); 477004bedebSBruce Evans void outw __P((u_int port, u_short data)); 47800be8601SBruce Evans u_int rcr2 __P((void)); 47900be8601SBruce Evans u_int64_t rdmsr __P((u_int msr)); 48000be8601SBruce Evans u_int64_t rdpmc __P((u_int pmc)); 48100be8601SBruce Evans u_int64_t rdtsc __P((void)); 48200be8601SBruce Evans u_int read_eflags __P((void)); 483f48bbd5fSBruce Evans void setbits __P((volatile u_int *addr, u_int bits)); 4844c024bbdSKATO Takenori void wbinvd __P((void)); 48500be8601SBruce Evans void write_eflags __P((u_int ef)); 48600be8601SBruce Evans void wrmsr __P((u_int msr, u_int64_t newval)); 4875206bca1SLuoqi Chen u_int rfs __P((void)); 4885206bca1SLuoqi Chen u_int rgs __P((void)); 4895206bca1SLuoqi Chen void load_fs __P((u_int sel)); 4905206bca1SLuoqi Chen void load_gs __P((u_int sel)); 491004bedebSBruce Evans 4925b81b6b3SRodney W. Grimes #endif /* __GNUC__ */ 4935b81b6b3SRodney W. Grimes 49400be8601SBruce Evans void load_cr0 __P((u_int cr0)); 49500be8601SBruce Evans void load_cr3 __P((u_int cr3)); 49600be8601SBruce Evans void load_cr4 __P((u_int cr4)); 497004bedebSBruce Evans void ltr __P((u_short sel)); 498aaf08d94SGarrett Wollman u_int rcr0 __P((void)); 49900be8601SBruce Evans u_int rcr3 __P((void)); 50000be8601SBruce Evans u_int rcr4 __P((void)); 5015b81b6b3SRodney W. Grimes 502004bedebSBruce Evans #endif /* !_MACHINE_CPUFUNC_H_ */ 503