arm32_machdep.c revision 1.71 1 1.71 rmind /* $NetBSD: arm32_machdep.c,v 1.71 2009/11/29 04:15:42 rmind Exp $ */
2 1.1 chris
3 1.1 chris /*
4 1.1 chris * Copyright (c) 1994-1998 Mark Brinicombe.
5 1.1 chris * Copyright (c) 1994 Brini.
6 1.1 chris * All rights reserved.
7 1.1 chris *
8 1.1 chris * This code is derived from software written for Brini by Mark Brinicombe
9 1.1 chris *
10 1.1 chris * Redistribution and use in source and binary forms, with or without
11 1.1 chris * modification, are permitted provided that the following conditions
12 1.1 chris * are met:
13 1.1 chris * 1. Redistributions of source code must retain the above copyright
14 1.1 chris * notice, this list of conditions and the following disclaimer.
15 1.1 chris * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 chris * notice, this list of conditions and the following disclaimer in the
17 1.1 chris * documentation and/or other materials provided with the distribution.
18 1.1 chris * 3. All advertising materials mentioning features or use of this software
19 1.1 chris * must display the following acknowledgement:
20 1.1 chris * This product includes software developed by Mark Brinicombe
21 1.1 chris * for the NetBSD Project.
22 1.1 chris * 4. The name of the company nor the name of the author may be used to
23 1.1 chris * endorse or promote products derived from this software without specific
24 1.1 chris * prior written permission.
25 1.1 chris *
26 1.1 chris * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR IMPLIED
27 1.1 chris * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
28 1.1 chris * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
29 1.1 chris * IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT,
30 1.1 chris * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
31 1.1 chris * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
32 1.1 chris * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
33 1.1 chris * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
34 1.1 chris * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
35 1.1 chris * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
36 1.1 chris * SUCH DAMAGE.
37 1.1 chris *
38 1.1 chris * Machine dependant functions for kernel setup
39 1.1 chris *
40 1.1 chris * Created : 17/09/94
41 1.1 chris * Updated : 18/04/01 updated for new wscons
42 1.1 chris */
43 1.37 lukem
44 1.37 lukem #include <sys/cdefs.h>
45 1.71 rmind __KERNEL_RCSID(0, "$NetBSD: arm32_machdep.c,v 1.71 2009/11/29 04:15:42 rmind Exp $");
46 1.1 chris
47 1.1 chris #include "opt_md.h"
48 1.1 chris #include "opt_pmap_debug.h"
49 1.1 chris
50 1.1 chris #include <sys/param.h>
51 1.1 chris #include <sys/systm.h>
52 1.1 chris #include <sys/reboot.h>
53 1.1 chris #include <sys/proc.h>
54 1.1 chris #include <sys/kernel.h>
55 1.1 chris #include <sys/mbuf.h>
56 1.1 chris #include <sys/mount.h>
57 1.1 chris #include <sys/buf.h>
58 1.1 chris #include <sys/msgbuf.h>
59 1.1 chris #include <sys/device.h>
60 1.1 chris #include <uvm/uvm_extern.h>
61 1.1 chris #include <sys/sysctl.h>
62 1.49 yamt #include <sys/cpu.h>
63 1.1 chris
64 1.1 chris #include <dev/cons.h>
65 1.1 chris
66 1.7 thorpej #include <arm/arm32/katelib.h>
67 1.9 chris #include <arm/arm32/machdep.h>
68 1.1 chris #include <machine/bootconfig.h>
69 1.1 chris
70 1.1 chris #include "md.h"
71 1.1 chris
72 1.1 chris struct vm_map *mb_map = NULL;
73 1.1 chris struct vm_map *phys_map = NULL;
74 1.1 chris
75 1.21 lukem #if NMD > 0 && defined(MEMORY_DISK_HOOKS) && !defined(MEMORY_DISK_ROOT_SIZE)
76 1.24 jdolecek extern size_t md_root_size; /* Memory disc size */
77 1.21 lukem #endif /* NMD && MEMORY_DISK_HOOKS && !MEMORY_DISK_ROOT_SIZE */
78 1.1 chris
79 1.1 chris pv_addr_t kernelstack;
80 1.1 chris
81 1.48 christos void * msgbufaddr;
82 1.1 chris extern paddr_t msgbufphys;
83 1.1 chris
84 1.1 chris int kernel_debug = 0;
85 1.1 chris
86 1.12 reinoud /* exported variable to be filled in by the bootloaders */
87 1.1 chris char *booted_kernel;
88 1.1 chris
89 1.1 chris
90 1.1 chris /* Prototypes */
91 1.1 chris
92 1.63 dsl void data_abort_handler(trapframe_t *frame);
93 1.63 dsl void prefetch_abort_handler(trapframe_t *frame);
94 1.63 dsl extern void configure(void);
95 1.1 chris
96 1.1 chris /*
97 1.22 thorpej * arm32_vector_init:
98 1.22 thorpej *
99 1.22 thorpej * Initialize the vector page, and select whether or not to
100 1.22 thorpej * relocate the vectors.
101 1.22 thorpej *
102 1.22 thorpej * NOTE: We expect the vector page to be mapped at its expected
103 1.22 thorpej * destination.
104 1.22 thorpej */
105 1.22 thorpej void
106 1.22 thorpej arm32_vector_init(vaddr_t va, int which)
107 1.22 thorpej {
108 1.22 thorpej extern unsigned int page0[], page0_data[];
109 1.22 thorpej unsigned int *vectors = (int *) va;
110 1.22 thorpej unsigned int *vectors_data = vectors + (page0_data - page0);
111 1.22 thorpej int vec;
112 1.22 thorpej
113 1.22 thorpej /*
114 1.22 thorpej * Loop through the vectors we're taking over, and copy the
115 1.22 thorpej * vector's insn and data word.
116 1.22 thorpej */
117 1.22 thorpej for (vec = 0; vec < ARM_NVEC; vec++) {
118 1.22 thorpej if ((which & (1 << vec)) == 0) {
119 1.22 thorpej /* Don't want to take over this vector. */
120 1.22 thorpej continue;
121 1.22 thorpej }
122 1.22 thorpej vectors[vec] = page0[vec];
123 1.22 thorpej vectors_data[vec] = page0_data[vec];
124 1.22 thorpej }
125 1.22 thorpej
126 1.22 thorpej /* Now sync the vectors. */
127 1.22 thorpej cpu_icache_sync_range(va, (ARM_NVEC * 2) * sizeof(u_int));
128 1.22 thorpej
129 1.22 thorpej vector_page = va;
130 1.30 scw
131 1.30 scw if (va == ARM_VECTORS_HIGH) {
132 1.30 scw /*
133 1.30 scw * Assume the MD caller knows what it's doing here, and
134 1.30 scw * really does want the vector page relocated.
135 1.30 scw *
136 1.30 scw * Note: This has to be done here (and not just in
137 1.30 scw * cpu_setup()) because the vector page needs to be
138 1.30 scw * accessible *before* cpu_startup() is called.
139 1.30 scw * Think ddb(9) ...
140 1.32 thorpej *
141 1.32 thorpej * NOTE: If the CPU control register is not readable,
142 1.32 thorpej * this will totally fail! We'll just assume that
143 1.32 thorpej * any system that has high vector support has a
144 1.32 thorpej * readable CPU control register, for now. If we
145 1.32 thorpej * ever encounter one that does not, we'll have to
146 1.32 thorpej * rethink this.
147 1.30 scw */
148 1.30 scw cpu_control(CPU_CONTROL_VECRELOC, CPU_CONTROL_VECRELOC);
149 1.30 scw }
150 1.22 thorpej }
151 1.22 thorpej
152 1.22 thorpej /*
153 1.1 chris * Debug function just to park the CPU
154 1.1 chris */
155 1.1 chris
156 1.1 chris void
157 1.65 cegger halt(void)
158 1.1 chris {
159 1.1 chris while (1)
160 1.1 chris cpu_sleep(0);
161 1.1 chris }
162 1.1 chris
163 1.1 chris
164 1.1 chris /* Sync the discs and unmount the filesystems */
165 1.1 chris
166 1.1 chris void
167 1.1 chris bootsync(void)
168 1.1 chris {
169 1.58 matt static bool bootsyncdone = false;
170 1.1 chris
171 1.1 chris if (bootsyncdone) return;
172 1.1 chris
173 1.58 matt bootsyncdone = true;
174 1.1 chris
175 1.1 chris /* Make sure we can still manage to do things */
176 1.1 chris if (GetCPSR() & I32_bit) {
177 1.1 chris /*
178 1.1 chris * If we get here then boot has been called without RB_NOSYNC
179 1.1 chris * and interrupts were disabled. This means the boot() call
180 1.1 chris * did not come from a user process e.g. shutdown, but must
181 1.1 chris * have come from somewhere in the kernel.
182 1.1 chris */
183 1.1 chris IRQenable;
184 1.1 chris printf("Warning IRQ's disabled during boot()\n");
185 1.1 chris }
186 1.1 chris
187 1.1 chris vfs_shutdown();
188 1.1 chris }
189 1.1 chris
190 1.1 chris /*
191 1.1 chris * void cpu_startup(void)
192 1.1 chris *
193 1.1 chris * Machine dependant startup code.
194 1.1 chris *
195 1.1 chris */
196 1.1 chris void
197 1.58 matt cpu_startup(void)
198 1.1 chris {
199 1.42 pk vaddr_t minaddr;
200 1.42 pk vaddr_t maxaddr;
201 1.42 pk u_int loop;
202 1.1 chris char pbuf[9];
203 1.1 chris
204 1.43 wiz /* Set the CPU control register */
205 1.1 chris cpu_setup(boot_args);
206 1.1 chris
207 1.1 chris /* Lock down zero page */
208 1.22 thorpej vector_page_setprot(VM_PROT_READ);
209 1.1 chris
210 1.1 chris /*
211 1.1 chris * Give pmap a chance to set up a few more things now the vm
212 1.1 chris * is initialised
213 1.1 chris */
214 1.1 chris pmap_postinit();
215 1.1 chris
216 1.1 chris /*
217 1.1 chris * Initialize error message buffer (at end of core).
218 1.1 chris */
219 1.1 chris
220 1.1 chris /* msgbufphys was setup during the secondary boot strap */
221 1.1 chris for (loop = 0; loop < btoc(MSGBUFSIZE); ++loop)
222 1.29 thorpej pmap_kenter_pa((vaddr_t)msgbufaddr + loop * PAGE_SIZE,
223 1.67 cegger msgbufphys + loop * PAGE_SIZE,
224 1.67 cegger VM_PROT_READ|VM_PROT_WRITE, 0);
225 1.5 chris pmap_update(pmap_kernel());
226 1.1 chris initmsgbuf(msgbufaddr, round_page(MSGBUFSIZE));
227 1.1 chris
228 1.1 chris /*
229 1.1 chris * Identify ourselves for the msgbuf (everything printed earlier will
230 1.1 chris * not be buffered).
231 1.1 chris */
232 1.45 lukem printf("%s%s", copyright, version);
233 1.1 chris
234 1.20 thorpej format_bytes(pbuf, sizeof(pbuf), arm_ptob(physmem));
235 1.1 chris printf("total memory = %s\n", pbuf);
236 1.1 chris
237 1.42 pk minaddr = 0;
238 1.1 chris
239 1.1 chris /*
240 1.1 chris * Allocate a submap for physio
241 1.1 chris */
242 1.1 chris phys_map = uvm_km_suballoc(kernel_map, &minaddr, &maxaddr,
243 1.47 thorpej VM_PHYS_SIZE, 0, false, NULL);
244 1.1 chris
245 1.1 chris /*
246 1.1 chris * Finally, allocate mbuf cluster submap.
247 1.1 chris */
248 1.1 chris mb_map = uvm_km_suballoc(kernel_map, &minaddr, &maxaddr,
249 1.1 chris nmbclusters * mclbytes, VM_MAP_INTRSAFE,
250 1.47 thorpej false, NULL);
251 1.1 chris
252 1.1 chris format_bytes(pbuf, sizeof(pbuf), ptoa(uvmexp.free));
253 1.1 chris printf("avail memory = %s\n", pbuf);
254 1.1 chris
255 1.68 rmind curpcb = lwp_getpcb(&lwp0);
256 1.1 chris curpcb->pcb_flags = 0;
257 1.71 rmind curpcb->pcb_un.un_32.pcb32_sp =
258 1.71 rmind uvm_lwp_getuarea(&lwp0) + USPACE_SVC_STACK_TOP;
259 1.71 rmind curpcb->pcb_tf = (struct trapframe *)curpcb->pcb_un.un_32.pcb32_sp - 1;
260 1.1 chris }
261 1.1 chris
262 1.1 chris /*
263 1.1 chris * machine dependent system variables.
264 1.1 chris */
265 1.39 atatat static int
266 1.39 atatat sysctl_machdep_booted_device(SYSCTLFN_ARGS)
267 1.39 atatat {
268 1.39 atatat struct sysctlnode node;
269 1.39 atatat
270 1.39 atatat if (booted_device == NULL)
271 1.39 atatat return (EOPNOTSUPP);
272 1.39 atatat
273 1.39 atatat node = *rnode;
274 1.39 atatat node.sysctl_data = booted_device->dv_xname;
275 1.39 atatat node.sysctl_size = strlen(booted_device->dv_xname) + 1;
276 1.39 atatat return (sysctl_lookup(SYSCTLFN_CALL(&node)));
277 1.39 atatat }
278 1.1 chris
279 1.39 atatat static int
280 1.39 atatat sysctl_machdep_booted_kernel(SYSCTLFN_ARGS)
281 1.1 chris {
282 1.39 atatat struct sysctlnode node;
283 1.39 atatat
284 1.39 atatat if (booted_kernel == NULL || booted_kernel[0] == '\0')
285 1.1 chris return (EOPNOTSUPP);
286 1.1 chris
287 1.39 atatat node = *rnode;
288 1.39 atatat node.sysctl_data = booted_kernel;
289 1.39 atatat node.sysctl_size = strlen(booted_kernel) + 1;
290 1.39 atatat return (sysctl_lookup(SYSCTLFN_CALL(&node)));
291 1.39 atatat }
292 1.25 thorpej
293 1.39 atatat static int
294 1.39 atatat sysctl_machdep_powersave(SYSCTLFN_ARGS)
295 1.39 atatat {
296 1.39 atatat struct sysctlnode node = *rnode;
297 1.39 atatat int error, newval;
298 1.25 thorpej
299 1.39 atatat newval = cpu_do_powersave;
300 1.39 atatat node.sysctl_data = &newval;
301 1.39 atatat if (cpufuncs.cf_sleep == (void *) cpufunc_nullop)
302 1.44 atatat node.sysctl_flags &= ~CTLFLAG_READWRITE;
303 1.39 atatat error = sysctl_lookup(SYSCTLFN_CALL(&node));
304 1.39 atatat if (error || newp == NULL || newval == cpu_do_powersave)
305 1.39 atatat return (error);
306 1.39 atatat
307 1.39 atatat if (newval < 0 || newval > 1)
308 1.39 atatat return (EINVAL);
309 1.39 atatat cpu_do_powersave = newval;
310 1.25 thorpej
311 1.39 atatat return (0);
312 1.39 atatat }
313 1.25 thorpej
314 1.39 atatat SYSCTL_SETUP(sysctl_machdep_setup, "sysctl machdep subtree setup")
315 1.39 atatat {
316 1.1 chris
317 1.44 atatat sysctl_createv(clog, 0, NULL, NULL,
318 1.44 atatat CTLFLAG_PERMANENT,
319 1.39 atatat CTLTYPE_NODE, "machdep", NULL,
320 1.39 atatat NULL, 0, NULL, 0,
321 1.39 atatat CTL_MACHDEP, CTL_EOL);
322 1.39 atatat
323 1.44 atatat sysctl_createv(clog, 0, NULL, NULL,
324 1.44 atatat CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
325 1.40 atatat CTLTYPE_INT, "debug", NULL,
326 1.39 atatat NULL, 0, &kernel_debug, 0,
327 1.41 rearnsha CTL_MACHDEP, CPU_DEBUG, CTL_EOL);
328 1.44 atatat sysctl_createv(clog, 0, NULL, NULL,
329 1.44 atatat CTLFLAG_PERMANENT,
330 1.39 atatat CTLTYPE_STRING, "booted_device", NULL,
331 1.39 atatat sysctl_machdep_booted_device, 0, NULL, 0,
332 1.39 atatat CTL_MACHDEP, CPU_BOOTED_DEVICE, CTL_EOL);
333 1.44 atatat sysctl_createv(clog, 0, NULL, NULL,
334 1.44 atatat CTLFLAG_PERMANENT,
335 1.39 atatat CTLTYPE_STRING, "booted_kernel", NULL,
336 1.39 atatat sysctl_machdep_booted_kernel, 0, NULL, 0,
337 1.39 atatat CTL_MACHDEP, CPU_BOOTED_KERNEL, CTL_EOL);
338 1.44 atatat sysctl_createv(clog, 0, NULL, NULL,
339 1.44 atatat CTLFLAG_PERMANENT,
340 1.39 atatat CTLTYPE_STRUCT, "console_device", NULL,
341 1.39 atatat sysctl_consdev, 0, NULL, sizeof(dev_t),
342 1.39 atatat CTL_MACHDEP, CPU_CONSDEV, CTL_EOL);
343 1.44 atatat sysctl_createv(clog, 0, NULL, NULL,
344 1.44 atatat CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
345 1.39 atatat CTLTYPE_INT, "powersave", NULL,
346 1.39 atatat sysctl_machdep_powersave, 0, &cpu_do_powersave, 0,
347 1.39 atatat CTL_MACHDEP, CPU_POWERSAVE, CTL_EOL);
348 1.1 chris }
349 1.1 chris
350 1.1 chris void
351 1.64 dsl parse_mi_bootargs(char *args)
352 1.1 chris {
353 1.1 chris int integer;
354 1.1 chris
355 1.1 chris if (get_bootconf_option(args, "single", BOOTOPT_TYPE_BOOLEAN, &integer)
356 1.1 chris || get_bootconf_option(args, "-s", BOOTOPT_TYPE_BOOLEAN, &integer))
357 1.1 chris if (integer)
358 1.1 chris boothowto |= RB_SINGLE;
359 1.1 chris if (get_bootconf_option(args, "kdb", BOOTOPT_TYPE_BOOLEAN, &integer)
360 1.1 chris || get_bootconf_option(args, "-k", BOOTOPT_TYPE_BOOLEAN, &integer))
361 1.1 chris if (integer)
362 1.1 chris boothowto |= RB_KDB;
363 1.1 chris if (get_bootconf_option(args, "ask", BOOTOPT_TYPE_BOOLEAN, &integer)
364 1.1 chris || get_bootconf_option(args, "-a", BOOTOPT_TYPE_BOOLEAN, &integer))
365 1.1 chris if (integer)
366 1.1 chris boothowto |= RB_ASKNAME;
367 1.1 chris
368 1.1 chris #ifdef PMAP_DEBUG
369 1.1 chris if (get_bootconf_option(args, "pmapdebug", BOOTOPT_TYPE_INT, &integer)) {
370 1.1 chris pmap_debug_level = integer;
371 1.1 chris pmap_debug(pmap_debug_level);
372 1.1 chris }
373 1.1 chris #endif /* PMAP_DEBUG */
374 1.1 chris
375 1.1 chris /* if (get_bootconf_option(args, "nbuf", BOOTOPT_TYPE_INT, &integer))
376 1.1 chris bufpages = integer;*/
377 1.1 chris
378 1.21 lukem #if NMD > 0 && defined(MEMORY_DISK_HOOKS) && !defined(MEMORY_DISK_ROOT_SIZE)
379 1.1 chris if (get_bootconf_option(args, "memorydisc", BOOTOPT_TYPE_INT, &integer)
380 1.1 chris || get_bootconf_option(args, "memorydisk", BOOTOPT_TYPE_INT, &integer)) {
381 1.24 jdolecek md_root_size = integer;
382 1.24 jdolecek md_root_size *= 1024;
383 1.24 jdolecek if (md_root_size < 32*1024)
384 1.24 jdolecek md_root_size = 32*1024;
385 1.24 jdolecek if (md_root_size > 2048*1024)
386 1.24 jdolecek md_root_size = 2048*1024;
387 1.1 chris }
388 1.21 lukem #endif /* NMD && MEMORY_DISK_HOOKS && !MEMORY_DISK_ROOT_SIZE */
389 1.1 chris
390 1.1 chris if (get_bootconf_option(args, "quiet", BOOTOPT_TYPE_BOOLEAN, &integer)
391 1.1 chris || get_bootconf_option(args, "-q", BOOTOPT_TYPE_BOOLEAN, &integer))
392 1.1 chris if (integer)
393 1.1 chris boothowto |= AB_QUIET;
394 1.1 chris if (get_bootconf_option(args, "verbose", BOOTOPT_TYPE_BOOLEAN, &integer)
395 1.1 chris || get_bootconf_option(args, "-v", BOOTOPT_TYPE_BOOLEAN, &integer))
396 1.1 chris if (integer)
397 1.1 chris boothowto |= AB_VERBOSE;
398 1.1 chris }
399 1.49 yamt
400 1.56 matt #ifdef __HAVE_FAST_SOFTINTS
401 1.56 matt #if IPL_SOFTSERIAL != IPL_SOFTNET + 1
402 1.56 matt #error IPLs are screwed up
403 1.58 matt #elif IPL_SOFTNET != IPL_SOFTBIO + 1
404 1.58 matt #error IPLs are screwed up
405 1.58 matt #elif IPL_SOFTBIO != IPL_SOFTCLOCK + 1
406 1.56 matt #error IPLs are screwed up
407 1.58 matt #elif !(IPL_SOFTCLOCK > IPL_NONE)
408 1.56 matt #error IPLs are screwed up
409 1.58 matt #elif (IPL_NONE != 0)
410 1.56 matt #error IPLs are screwed up
411 1.56 matt #endif
412 1.58 matt
413 1.56 matt #define SOFTINT2IPLMAP \
414 1.58 matt (((IPL_SOFTSERIAL - IPL_SOFTCLOCK) << (SOFTINT_SERIAL * 4)) | \
415 1.58 matt ((IPL_SOFTNET - IPL_SOFTCLOCK) << (SOFTINT_NET * 4)) | \
416 1.58 matt ((IPL_SOFTBIO - IPL_SOFTCLOCK) << (SOFTINT_BIO * 4)) | \
417 1.58 matt ((IPL_SOFTCLOCK - IPL_SOFTCLOCK) << (SOFTINT_CLOCK * 4)))
418 1.56 matt #define SOFTINT2IPL(l) ((SOFTINT2IPLMAP >> ((l) * 4)) & 0x0f)
419 1.56 matt
420 1.56 matt /*
421 1.56 matt * This returns a mask of softint IPLs that be dispatch at <ipl>
422 1.59 matt * SOFTIPLMASK(IPL_NONE) = 0x0000000f
423 1.59 matt * SOFTIPLMASK(IPL_SOFTCLOCK) = 0x0000000e
424 1.59 matt * SOFTIPLMASK(IPL_SOFTBIO) = 0x0000000c
425 1.59 matt * SOFTIPLMASK(IPL_SOFTNET) = 0x00000008
426 1.59 matt * SOFTIPLMASK(IPL_SOFTSERIAL) = 0x00000000
427 1.56 matt */
428 1.59 matt #define SOFTIPLMASK(ipl) (0x0f << (ipl))
429 1.56 matt
430 1.56 matt void softint_switch(lwp_t *, int);
431 1.56 matt
432 1.56 matt void
433 1.56 matt softint_trigger(uintptr_t mask)
434 1.56 matt {
435 1.56 matt curcpu()->ci_softints |= mask;
436 1.56 matt }
437 1.56 matt
438 1.56 matt void
439 1.56 matt softint_init_md(lwp_t *l, u_int level, uintptr_t *machdep)
440 1.56 matt {
441 1.56 matt lwp_t ** lp = &curcpu()->ci_softlwps[level];
442 1.56 matt KASSERT(*lp == NULL || *lp == l);
443 1.56 matt *lp = l;
444 1.56 matt *machdep = 1 << SOFTINT2IPL(level);
445 1.59 matt KASSERT(level != SOFTINT_CLOCK || *machdep == (1 << (IPL_SOFTCLOCK - IPL_SOFTCLOCK)));
446 1.59 matt KASSERT(level != SOFTINT_BIO || *machdep == (1 << (IPL_SOFTBIO - IPL_SOFTCLOCK)));
447 1.59 matt KASSERT(level != SOFTINT_NET || *machdep == (1 << (IPL_SOFTNET - IPL_SOFTCLOCK)));
448 1.59 matt KASSERT(level != SOFTINT_SERIAL || *machdep == (1 << (IPL_SOFTSERIAL - IPL_SOFTCLOCK)));
449 1.56 matt }
450 1.53 mrg
451 1.56 matt void
452 1.56 matt dosoftints(void)
453 1.56 matt {
454 1.56 matt struct cpu_info * const ci = curcpu();
455 1.56 matt const int opl = ci->ci_cpl;
456 1.56 matt const uint32_t softiplmask = SOFTIPLMASK(opl);
457 1.56 matt
458 1.56 matt for (;;) {
459 1.56 matt u_int softints = ci->ci_softints & softiplmask;
460 1.59 matt KASSERT((softints != 0) == ((ci->ci_softints >> opl) != 0));
461 1.56 matt if (softints == 0)
462 1.56 matt return;
463 1.56 matt ci->ci_cpl = IPL_HIGH;
464 1.56 matt #define DOSOFTINT(n) \
465 1.58 matt if (softints & (1 << (IPL_SOFT ## n - IPL_SOFTCLOCK))) { \
466 1.58 matt ci->ci_softints &= \
467 1.58 matt ~(1 << (IPL_SOFT ## n - IPL_SOFTCLOCK)); \
468 1.56 matt softint_switch(ci->ci_softlwps[SOFTINT_ ## n], \
469 1.56 matt IPL_SOFT ## n); \
470 1.56 matt ci->ci_cpl = opl; \
471 1.56 matt continue; \
472 1.56 matt }
473 1.56 matt DOSOFTINT(SERIAL);
474 1.56 matt DOSOFTINT(NET);
475 1.56 matt DOSOFTINT(BIO);
476 1.56 matt DOSOFTINT(CLOCK);
477 1.56 matt panic("dosoftints wtf (softints=%u?, ipl=%d)", softints, opl);
478 1.56 matt }
479 1.53 mrg }
480 1.56 matt #endif /* __HAVE_FAST_SOFTINTS */
481