1 1.108 kalvisd /* $NetBSD: cpu.h,v 1.108 2023/12/19 00:29:48 kalvisd Exp $ */ 2 1.3 cgd 3 1.1 ragge /* 4 1.1 ragge * Copyright (c) 1994 Ludd, University of Lule}, Sweden 5 1.1 ragge * All rights reserved. 6 1.1 ragge * 7 1.1 ragge * Redistribution and use in source and binary forms, with or without 8 1.1 ragge * modification, are permitted provided that the following conditions 9 1.1 ragge * are met: 10 1.1 ragge * 1. Redistributions of source code must retain the above copyright 11 1.1 ragge * notice, this list of conditions and the following disclaimer. 12 1.1 ragge * 2. Redistributions in binary form must reproduce the above copyright 13 1.1 ragge * notice, this list of conditions and the following disclaimer in the 14 1.1 ragge * documentation and/or other materials provided with the distribution. 15 1.1 ragge * 16 1.1 ragge * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR 17 1.1 ragge * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES 18 1.1 ragge * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. 19 1.1 ragge * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, 20 1.1 ragge * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT 21 1.1 ragge * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 22 1.1 ragge * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 23 1.1 ragge * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 24 1.1 ragge * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF 25 1.1 ragge * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 26 1.1 ragge */ 27 1.3 cgd 28 1.41 ragge #ifndef _VAX_CPU_H_ 29 1.41 ragge #define _VAX_CPU_H_ 30 1.42 ragge 31 1.57 mrg #if defined(_KERNEL_OPT) 32 1.105 ryo #include "opt_gprof.h" 33 1.42 ragge #include "opt_multiprocessor.h" 34 1.45 thorpej #include "opt_lockdebug.h" 35 1.42 ragge #endif 36 1.42 ragge 37 1.66 matt #define CPU_PRINTFATALTRAPS 1 38 1.66 matt #define CPU_CONSDEV 2 39 1.66 matt #define CPU_BOOTED_DEVICE 3 40 1.66 matt #define CPU_BOOTED_KERNEL 4 41 1.66 matt 42 1.28 ragge #ifdef _KERNEL 43 1.28 ragge 44 1.14 mycroft #include <sys/cdefs.h> 45 1.69 matt #include <sys/queue.h> 46 1.91 matt #include <sys/device_if.h> 47 1.70 yamt #include <sys/cpu_data.h> 48 1.17 ragge 49 1.14 mycroft #include <machine/mtpr.h> 50 1.14 mycroft #include <machine/pcb.h> 51 1.22 ragge #include <machine/uvax.h> 52 1.29 ragge #include <machine/psl.h> 53 1.1 ragge 54 1.1 ragge #define enablertclock() 55 1.1 ragge 56 1.22 ragge /* 57 1.22 ragge * All cpu-dependent info is kept in this struct. Pointer to the 58 1.22 ragge * struct for the current cpu is set up in locore.c. 59 1.22 ragge */ 60 1.51 ragge struct cpu_info; 61 1.51 ragge 62 1.74 matt struct cpu_dep { 63 1.51 ragge void (*cpu_steal_pages)(void); /* pmap init before mm is on */ 64 1.76 christos int (*cpu_mchk)(void *); /* Machine check handling */ 65 1.51 ragge void (*cpu_memerr)(void); /* Memory subsystem errors */ 66 1.17 ragge /* Autoconfiguration */ 67 1.51 ragge void (*cpu_conf)(void); 68 1.87 tsutsui int (*cpu_gettime)(struct timeval *); /* Read cpu clock time */ 69 1.87 tsutsui void (*cpu_settime)(struct timeval *); /* Write system time to cpu */ 70 1.85 matt short cpu_vups; /* speed of cpu */ 71 1.85 matt short cpu_scbsz; /* (estimated) size of SCB */ 72 1.85 matt void (*cpu_halt)(void); /* Cpu dependent halt call */ 73 1.85 matt void (*cpu_reboot)(int); /* Cpu dependent reboot call */ 74 1.85 matt void (*cpu_clrf)(void); /* Clear cold/warm start flags */ 75 1.85 matt const char * const *cpu_devs; /* mainbus devices */ 76 1.85 matt void (*cpu_attach_cpu)(device_t); /* print CPU info */ 77 1.43 ragge int cpu_flags; 78 1.85 matt void (*cpu_badaddr)(void); /* cpu-specific badaddr() */ 79 1.58 ragge }; 80 1.58 ragge 81 1.51 ragge #if defined(MULTIPROCESSOR) 82 1.58 ragge /* 83 1.58 ragge * All cpu-dependent calls for multicpu systems goes here. 84 1.58 ragge */ 85 1.58 ragge struct cpu_mp_dep { 86 1.85 matt void (*cpu_startslave)(struct cpu_info *); 87 1.85 matt void (*cpu_send_ipi)(struct cpu_info *); 88 1.58 ragge void (*cpu_cnintr)(void); 89 1.2 ragge }; 90 1.58 ragge /* 91 1.58 ragge * NOTE: This is not bit mask, this is bit _number_. 92 1.58 ragge */ 93 1.58 ragge #define IPI_START_CNTX 1 /* Start console transmitter, proc out */ 94 1.58 ragge #define IPI_SEND_CNCHAR 2 /* Write char to console, kernel printf */ 95 1.58 ragge #define IPI_RUNNING 3 /* This CPU just started to run */ 96 1.59 ragge #define IPI_TBIA 4 /* Flush the TLB */ 97 1.60 ragge #define IPI_DDB 5 /* Jump into the DDB loop */ 98 1.88 rmind #define IPI_XCALL 6 /* Helper for xcall(9) */ 99 1.99 rmind #define IPI_GENERIC 7 /* Generic ipi(9) call */ 100 1.58 ragge 101 1.58 ragge #define IPI_DEST_MASTER -1 /* Destination is mastercpu */ 102 1.58 ragge #define IPI_DEST_ALL -2 /* Broadcast */ 103 1.58 ragge 104 1.85 matt extern const struct cpu_mp_dep *mp_dep_call; 105 1.58 ragge #endif /* defined(MULTIPROCESSOR) */ 106 1.43 ragge 107 1.43 ragge #define CPU_RAISEIPL 1 /* Must raise IPL until intr is handled */ 108 1.22 ragge 109 1.85 matt extern const struct cpu_dep *dep_call; 110 1.85 matt /* Holds pointer to current CPU struct. */ 111 1.2 ragge 112 1.1 ragge struct clockframe { 113 1.1 ragge int pc; 114 1.1 ragge int ps; 115 1.1 ragge }; 116 1.1 ragge 117 1.42 ragge struct cpu_info { 118 1.42 ragge /* 119 1.42 ragge * Public members. 120 1.42 ragge */ 121 1.70 yamt struct cpu_data ci_data; /* MI per-cpu data */ 122 1.93 matt device_t ci_dev; /* device struct for this cpu */ 123 1.75 matt int ci_mtx_oldspl; /* saved spl */ 124 1.75 matt int ci_mtx_count; /* negative count of mutexes */ 125 1.85 matt int ci_cpuid; /* h/w specific cpu id */ 126 1.85 matt int ci_want_resched; /* Should change process */ 127 1.45 thorpej 128 1.42 ragge /* 129 1.42 ragge * Private members. 130 1.42 ragge */ 131 1.82 matt #if defined(__HAVE_FAST_SOFTINTS) 132 1.82 matt lwp_t *ci_softlwps[SOFTINT_COUNT]; 133 1.82 matt #endif 134 1.85 matt vaddr_t ci_istack; /* Interrupt stack location */ 135 1.85 matt const char *ci_cpustr; 136 1.85 matt int ci_slotid; /* cpu slot */ 137 1.104 ad struct lwp *ci_onproc; /* current user LWP / kthread */ 138 1.51 ragge #if defined(MULTIPROCESSOR) 139 1.83 matt struct lwp *ci_curlwp; /* current lwp (for other cpus) */ 140 1.85 matt volatile int ci_flags; /* See below */ 141 1.58 ragge long ci_ipimsgs; /* Sent IPI bits */ 142 1.60 ragge struct trapframe *ci_ddb_regs; /* Used by DDB */ 143 1.69 matt SIMPLEQ_ENTRY(cpu_info) ci_next; /* next cpu_info */ 144 1.51 ragge #endif 145 1.90 matt uintptr_t ci_cas_addr; /* current address doing CAS in a RAS */ 146 1.105 ryo #if defined(GPROF) && defined(MULTIPROCESSOR) 147 1.105 ryo struct gmonparam *ci_gmon; /* MI per-cpu GPROF */ 148 1.105 ryo #endif 149 1.42 ragge }; 150 1.51 ragge #define CI_MASTERCPU 1 /* Set if master CPU */ 151 1.51 ragge #define CI_RUNNING 2 /* Set when a slave CPU is running */ 152 1.60 ragge #define CI_STOPPED 4 /* Stopped (in debugger) */ 153 1.66 matt 154 1.66 matt extern int cpu_printfataltraps; 155 1.42 ragge 156 1.83 matt #define curcpu() (curlwp->l_cpu + 0) 157 1.83 matt #define curlwp ((struct lwp *)mfpr(PR_SSP)) 158 1.68 matt #define cpu_number() (curcpu()->ci_cpuid) 159 1.103 ad #define cpu_need_resched(ci, l, flags) \ 160 1.106 oster do { \ 161 1.106 oster struct pcb *pcb = lwp_getpcb(curlwp); \ 162 1.106 oster __USE(flags); \ 163 1.106 oster pcb->P0LR = (pcb->P0LR & ~AST_MASK) | AST_ON; \ 164 1.106 oster mtpr(AST_OK,PR_ASTLVL); \ 165 1.68 matt } while (/*CONSTCOND*/ 0) 166 1.68 matt #define cpu_proc_fork(x, y) do { } while (/*CONSCOND*/0) 167 1.94 matt 168 1.94 matt /* 169 1.94 matt * This allows SIMH to recognize the kernel wants to sleep. 170 1.94 matt */ 171 1.94 matt static inline void 172 1.94 matt cpu_idle(void) 173 1.94 matt { 174 1.94 matt int ipl = mfpr(PR_IPL); 175 1.94 matt mtpr(1, PR_IPL); 176 1.94 matt mtpr(ipl, PR_IPL); 177 1.94 matt } 178 1.94 matt 179 1.81 matt static inline bool 180 1.81 matt cpu_intr_p(void) 181 1.81 matt { 182 1.81 matt register_t psl; 183 1.81 matt __asm("movpsl %0" : "=g"(psl)); 184 1.81 matt return (psl & PSL_IS) != 0; 185 1.81 matt } 186 1.51 ragge #if defined(MULTIPROCESSOR) 187 1.58 ragge #define CPU_IS_PRIMARY(ci) ((ci)->ci_flags & CI_MASTERCPU) 188 1.51 ragge 189 1.98 christos #define CPU_INFO_ITERATOR int __unused 190 1.98 christos #define CPU_INFO_FOREACH(cii, ci) ci = SIMPLEQ_FIRST(&cpus); \ 191 1.69 matt ci != NULL; \ 192 1.69 matt ci = SIMPLEQ_NEXT(ci, ci_next) 193 1.69 matt 194 1.69 matt extern SIMPLEQ_HEAD(cpu_info_qh, cpu_info) cpus; 195 1.71 he extern char vax_mp_tramp; 196 1.51 ragge #endif 197 1.1 ragge 198 1.1 ragge /* 199 1.1 ragge * Notify the current process (p) that it has a signal pending, 200 1.1 ragge * process as soon as possible. 201 1.1 ragge */ 202 1.1 ragge 203 1.106 oster #define cpu_signotify(l) \ 204 1.106 oster do { \ 205 1.106 oster struct pcb *pcb = lwp_getpcb(l); \ 206 1.106 oster pcb->P0LR = (pcb->P0LR & ~AST_MASK) | AST_ON; \ 207 1.106 oster mtpr(AST_OK,PR_ASTLVL); \ 208 1.106 oster } while (/*CONSTCOND*/ 0) 209 1.1 ragge 210 1.5 ragge 211 1.5 ragge /* 212 1.5 ragge * Give a profiling tick to the current process when the user profiling 213 1.5 ragge * buffer pages are invalid. On the hp300, request an ast to send us 214 1.5 ragge * through trap, marking the proc as needing a profiling tick. 215 1.5 ragge */ 216 1.106 oster #define cpu_need_proftick(l) \ 217 1.106 oster do { \ 218 1.106 oster struct pcb *pcb = lwp_getpcb(l); \ 219 1.106 oster (l)->l_pflag |= LP_OWEUPC; \ 220 1.106 oster pcb->P0LR = (pcb->P0LR & ~AST_MASK) | AST_ON; \ 221 1.106 oster mtpr(AST_OK,PR_ASTLVL); \ 222 1.106 oster } while (/*CONSTCOND*/ 0) 223 1.1 ragge 224 1.34 ragge /* 225 1.34 ragge * This defines the I/O device register space size in pages. 226 1.34 ragge */ 227 1.35 ragge #define IOSPSZ ((64*1024) / VAX_NBPG) /* 64k == 128 pages */ 228 1.34 ragge 229 1.92 matt #define LWP_PC(l) cpu_lwp_pc(l) 230 1.92 matt 231 1.65 matt struct buf; 232 1.65 matt struct pte; 233 1.20 thorpej 234 1.83 matt #include <sys/lwp.h> 235 1.83 matt 236 1.16 ragge /* Some low-level prototypes */ 237 1.51 ragge #if defined(MULTIPROCESSOR) 238 1.85 matt void cpu_slavesetup(device_t, int); 239 1.51 ragge void cpu_boot_secondary_processors(void); 240 1.58 ragge void cpu_send_ipi(int, int); 241 1.58 ragge void cpu_handle_ipi(void); 242 1.51 ragge #endif 243 1.92 matt vaddr_t cpu_lwp_pc(struct lwp *); 244 1.81 matt int badaddr(volatile void *, int); 245 1.51 ragge void dumpsys(void); 246 1.51 ragge void swapconf(void); 247 1.51 ragge void disk_printtype(int, int); 248 1.51 ragge void disk_reallymapin(struct buf *, struct pte *, int, int); 249 1.85 matt vaddr_t vax_map_physmem(paddr_t, size_t); 250 1.85 matt void vax_unmap_physmem(vaddr_t, size_t); 251 1.85 matt void ioaccess(vaddr_t, paddr_t, size_t); 252 1.85 matt void iounaccess(vaddr_t, size_t); 253 1.37 ragge void findcpu(void); 254 1.16 ragge #ifdef DDB 255 1.51 ragge int kdbrint(int); 256 1.16 ragge #endif 257 1.28 ragge #endif /* _KERNEL */ 258 1.44 matt #ifdef _STANDALONE 259 1.44 matt void findcpu(void); 260 1.44 matt #endif 261 1.41 ragge #endif /* _VAX_CPU_H_ */ 262