9c74798bdd
adapted from OpenBSD. Tested on a few machines: http://bigbird.dohd.org:3021/NetBSD/dmesg http://www.bsd.org.il/netbsd/acpi/dmesg Thanks to cube, elad and others for testing and fixes. Enabled by default on GENERIC.
360 lines
9.7 KiB
C
360 lines
9.7 KiB
C
/* $NetBSD: cpu.h,v 1.12 2006/08/06 15:37:21 xtraeme Exp $ */
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/*-
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* Copyright (c) 1990 The Regents of the University of California.
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* All rights reserved.
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*
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* This code is derived from software contributed to Berkeley by
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* William Jolitz.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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* 1. Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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* 2. Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution.
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* 3. Neither the name of the University nor the names of its contributors
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* may be used to endorse or promote products derived from this software
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* without specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
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* ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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* ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
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* FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
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* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
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* OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
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* HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
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* LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
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* OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
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* SUCH DAMAGE.
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*
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* @(#)cpu.h 5.4 (Berkeley) 5/9/91
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*/
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#ifndef _AMD64_CPU_H_
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#define _AMD64_CPU_H_
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#if defined(_KERNEL)
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#if defined(_KERNEL_OPT)
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#include "opt_multiprocessor.h"
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#include "opt_lockdebug.h"
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#endif
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/*
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* Definitions unique to x86-64 cpu support.
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*/
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#include <machine/frame.h>
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#include <machine/segments.h>
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#include <machine/tss.h>
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#include <machine/intrdefs.h>
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#include <x86/cacheinfo.h>
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#include <sys/device.h>
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#include <sys/lock.h>
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#include <sys/cpu_data.h>
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#include <sys/cc_microtime.h>
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struct cpu_info {
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struct device *ci_dev;
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struct cpu_info *ci_self;
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struct cpu_data ci_data; /* MI per-cpu data */
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struct cc_microtime_state ci_cc;/* cc_microtime state */
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struct cpu_info *ci_next;
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struct lwp *ci_curlwp;
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struct simplelock ci_slock;
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u_int ci_cpuid;
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u_int ci_apicid;
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u_int64_t ci_scratch;
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struct lwp *ci_fpcurlwp;
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int ci_fpsaving;
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volatile u_int32_t ci_tlb_ipi_mask;
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struct pcb *ci_curpcb;
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struct pcb *ci_idle_pcb;
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int ci_idle_tss_sel;
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struct intrsource *ci_isources[MAX_INTR_SOURCES];
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u_int32_t ci_ipending;
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int ci_ilevel;
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int ci_idepth;
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u_int32_t ci_imask[NIPL];
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u_int32_t ci_iunmask[NIPL];
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paddr_t ci_idle_pcb_paddr;
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u_int ci_flags;
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u_int32_t ci_ipis;
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u_int32_t ci_feature_flags;
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u_int32_t ci_signature;
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u_int64_t ci_tsc_freq;
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struct cpu_functions *ci_func;
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void (*cpu_setup) __P((struct cpu_info *));
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void (*ci_info) __P((struct cpu_info *));
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int ci_want_resched;
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int ci_astpending;
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struct trapframe *ci_ddb_regs;
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struct x86_cache_info ci_cinfo[CAI_COUNT];
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char *ci_gdt;
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struct x86_64_tss ci_doubleflt_tss;
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struct x86_64_tss ci_ddbipi_tss;
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char *ci_doubleflt_stack;
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char *ci_ddbipi_stack;
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struct evcnt ci_ipi_events[X86_NIPI];
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};
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#define CPUF_BSP 0x0001 /* CPU is the original BSP */
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#define CPUF_AP 0x0002 /* CPU is an AP */
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#define CPUF_SP 0x0004 /* CPU is only processor */
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#define CPUF_PRIMARY 0x0008 /* CPU is active primary processor */
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#define CPUF_PRESENT 0x1000 /* CPU is present */
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#define CPUF_RUNNING 0x2000 /* CPU is running */
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#define CPUF_PAUSE 0x4000 /* CPU is paused in DDB */
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#define CPUF_GO 0x8000 /* CPU should start running */
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extern struct cpu_info cpu_info_primary;
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extern struct cpu_info *cpu_info_list;
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#define CPU_INFO_ITERATOR int
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#define CPU_INFO_FOREACH(cii, ci) cii = 0, ci = cpu_info_list; \
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ci != NULL; ci = ci->ci_next
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#if defined(MULTIPROCESSOR)
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#define X86_MAXPROCS 32 /* bitmask; can be bumped to 64 */
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#define CPU_STARTUP(_ci) ((_ci)->ci_func->start(_ci))
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#define CPU_STOP(_ci) ((_ci)->ci_func->stop(_ci))
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#define CPU_START_CLEANUP(_ci) ((_ci)->ci_func->cleanup(_ci))
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#define curcpu() ({struct cpu_info *__ci; \
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__asm volatile("movq %%gs:8,%0" : "=r" (__ci)); \
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__ci;})
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#define cpu_number() (curcpu()->ci_cpuid)
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#define CPU_IS_PRIMARY(ci) ((ci)->ci_flags & CPUF_PRIMARY)
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extern struct cpu_info *cpu_info[X86_MAXPROCS];
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void cpu_boot_secondary_processors __P((void));
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void cpu_init_idle_pcbs __P((void));
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/*
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* Preempt the current process if in interrupt from user mode,
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* or after the current trap/syscall if in system mode.
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*/
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extern void need_resched __P((struct cpu_info *));
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#else /* !MULTIPROCESSOR */
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#define X86_MAXPROCS 1
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extern struct cpu_info cpu_info_primary;
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#define curcpu() (&cpu_info_primary)
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/*
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* definitions of cpu-dependent requirements
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* referenced in generic code
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*/
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#define cpu_number() 0
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#define CPU_IS_PRIMARY(ci) 1
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/*
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* Preempt the current process if in interrupt from user mode,
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* or after the current trap/syscall if in system mode.
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*/
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#define need_resched(ci) \
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do { \
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struct cpu_info *__ci = (ci); \
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__ci->ci_want_resched = 1; \
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if (__ci->ci_curlwp != NULL) \
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aston(__ci->ci_curlwp->l_proc); \
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} while (/*CONSTCOND*/0)
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#endif
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#define aston(p) ((p)->p_md.md_astpending = 1)
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extern u_int32_t cpus_attached;
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#define curpcb curcpu()->ci_curpcb
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#define curlwp curcpu()->ci_curlwp
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/*
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* Arguments to hardclock, softclock and statclock
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* encapsulate the previous machine state in an opaque
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* clockframe; for now, use generic intrframe.
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*/
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struct clockframe {
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struct intrframe cf_if;
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};
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#define CLKF_USERMODE(frame) USERMODE((frame)->cf_if.if_cs, (frame)->cf_if.if_rflags)
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#define CLKF_BASEPRI(frame) (0)
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#define CLKF_PC(frame) ((frame)->cf_if.if_rip)
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#define CLKF_INTR(frame) (curcpu()->ci_idepth > 1)
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/*
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* This is used during profiling to integrate system time. It can safely
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* assume that the process is resident.
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*/
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#define LWP_PC(l) ((l)->l_md.md_regs->tf_rip)
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/*
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* Give a profiling tick to the current process when the user profiling
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* buffer pages are invalid. On the i386, request an ast to send us
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* through trap(), marking the proc as needing a profiling tick.
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*/
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#define need_proftick(p) ((p)->p_flag |= P_OWEUPC, aston(p))
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/*
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* Notify the current process (p) that it has a signal pending,
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* process as soon as possible.
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*/
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#define signotify(p) aston(p)
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/*
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* We need a machine-independent name for this.
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*/
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extern void (*delay_func) __P((int));
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#define DELAY(x) (*delay_func)(x)
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#define delay(x) (*delay_func)(x)
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/*
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* pull in #defines for kinds of processors
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*/
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extern int biosbasemem;
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extern int biosextmem;
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extern int cpu;
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extern int cpu_feature;
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extern int cpu_id;
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extern char cpu_vendor[];
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extern int cpuid_level;
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/* identcpu.c */
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void identifycpu __P((struct cpu_info *));
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void cpu_probe_features __P((struct cpu_info *));
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/* machdep.c */
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void dumpconf __P((void));
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int cpu_maxproc __P((void));
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void cpu_reset __P((void));
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void x86_64_proc0_tss_ldt_init __P((void));
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void x86_64_init_pcb_tss_ldt __P((struct cpu_info *));
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void cpu_proc_fork __P((struct proc *, struct proc *));
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struct region_descriptor;
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void lgdt __P((struct region_descriptor *));
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void fillw __P((short, void *, size_t));
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struct pcb;
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void savectx __P((struct pcb *));
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void switch_exit __P((struct lwp *, void (*)(struct lwp *)));
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void proc_trampoline __P((void));
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void child_trampoline __P((void));
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/* clock.c */
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void initrtclock __P((u_long));
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void startrtclock __P((void));
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void i8254_delay __P((int));
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void i8254_microtime __P((struct timeval *));
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void i8254_initclocks __P((void));
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void cpu_init_msrs __P((struct cpu_info *));
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/* vm_machdep.c */
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int kvtop __P((caddr_t));
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/* trap.c */
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void child_return __P((void *));
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/* consinit.c */
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void kgdb_port_init __P((void));
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/* bus_machdep.c */
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void x86_bus_space_init __P((void));
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void x86_bus_space_mallocok __P((void));
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/* powernow_k8.c */
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void k8_powernow_init(void);
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#endif /* _KERNEL */
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#include <machine/psl.h>
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/*
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* CTL_MACHDEP definitions.
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*/
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#define CPU_CONSDEV 1 /* dev_t: console terminal device */
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#define CPU_BIOSBASEMEM 2 /* int: bios-reported base mem (K) */
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#define CPU_BIOSEXTMEM 3 /* int: bios-reported ext. mem (K) */
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#define CPU_NKPDE 4 /* int: number of kernel PDEs */
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#define CPU_BOOTED_KERNEL 5 /* string: booted kernel name */
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#define CPU_DISKINFO 6 /* disk geometry information */
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#define CPU_FPU_PRESENT 7 /* FPU is present */
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#define CPU_MAXID 8 /* number of valid machdep ids */
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#define CTL_MACHDEP_NAMES { \
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{ 0, 0 }, \
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{ "console_device", CTLTYPE_STRUCT }, \
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{ "biosbasemem", CTLTYPE_INT }, \
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{ "biosextmem", CTLTYPE_INT }, \
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{ "nkpde", CTLTYPE_INT }, \
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{ "booted_kernel", CTLTYPE_STRING }, \
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{ "diskinfo", CTLTYPE_STRUCT }, \
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{ "fpu_present", CTLTYPE_INT }, \
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}
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/*
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* Structure for CPU_DISKINFO sysctl call.
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* XXX this should be somewhere else.
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*/
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#define MAX_BIOSDISKS 16
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struct disklist {
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int dl_nbiosdisks; /* number of bios disks */
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struct biosdisk_info {
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int bi_dev; /* BIOS device # (0x80 ..) */
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int bi_cyl; /* cylinders on disk */
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int bi_head; /* heads per track */
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int bi_sec; /* sectors per track */
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u_int64_t bi_lbasecs; /* total sec. (iff ext13) */
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#define BIFLAG_INVALID 0x01
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#define BIFLAG_EXTINT13 0x02
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int bi_flags;
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} dl_biosdisks[MAX_BIOSDISKS];
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int dl_nnativedisks; /* number of native disks */
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struct nativedisk_info {
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char ni_devname[16]; /* native device name */
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int ni_nmatches; /* # of matches w/ BIOS */
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int ni_biosmatches[MAX_BIOSDISKS]; /* indices in dl_biosdisks */
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} dl_nativedisks[1]; /* actually longer */
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};
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#endif /* !_AMD64_CPU_H_ */
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