trap.c revision 1.55.2.2 1 1.55.2.2 wrstuden /* $NetBSD: trap.c,v 1.55.2.2 2008/06/22 18:12:02 wrstuden Exp $ */
2 1.1 fredette
3 1.1 fredette /*-
4 1.1 fredette * Copyright (c) 2001, 2002 The NetBSD Foundation, Inc.
5 1.1 fredette * All rights reserved.
6 1.1 fredette *
7 1.1 fredette * This code is derived from software contributed to The NetBSD Foundation
8 1.1 fredette * by Matthew Fredette.
9 1.1 fredette *
10 1.1 fredette * Redistribution and use in source and binary forms, with or without
11 1.1 fredette * modification, are permitted provided that the following conditions
12 1.1 fredette * are met:
13 1.1 fredette * 1. Redistributions of source code must retain the above copyright
14 1.1 fredette * notice, this list of conditions and the following disclaimer.
15 1.1 fredette * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 fredette * notice, this list of conditions and the following disclaimer in the
17 1.1 fredette * documentation and/or other materials provided with the distribution.
18 1.1 fredette *
19 1.1 fredette * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.1 fredette * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.1 fredette * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.1 fredette * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.1 fredette * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.1 fredette * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.1 fredette * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.1 fredette * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.1 fredette * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.1 fredette * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.1 fredette * POSSIBILITY OF SUCH DAMAGE.
30 1.1 fredette */
31 1.1 fredette
32 1.1 fredette /* $OpenBSD: trap.c,v 1.30 2001/09/19 20:50:56 mickey Exp $ */
33 1.1 fredette
34 1.1 fredette /*
35 1.1 fredette * Copyright (c) 1998-2000 Michael Shalayeff
36 1.1 fredette * All rights reserved.
37 1.1 fredette *
38 1.1 fredette * Redistribution and use in source and binary forms, with or without
39 1.1 fredette * modification, are permitted provided that the following conditions
40 1.1 fredette * are met:
41 1.1 fredette * 1. Redistributions of source code must retain the above copyright
42 1.1 fredette * notice, this list of conditions and the following disclaimer.
43 1.1 fredette * 2. Redistributions in binary form must reproduce the above copyright
44 1.1 fredette * notice, this list of conditions and the following disclaimer in the
45 1.1 fredette * documentation and/or other materials provided with the distribution.
46 1.1 fredette * 3. All advertising materials mentioning features or use of this software
47 1.1 fredette * must display the following acknowledgement:
48 1.1 fredette * This product includes software developed by Michael Shalayeff.
49 1.1 fredette * 4. The name of the author may not be used to endorse or promote products
50 1.1 fredette * derived from this software without specific prior written permission.
51 1.1 fredette *
52 1.1 fredette * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
53 1.1 fredette * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
54 1.1 fredette * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
55 1.1 fredette * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
56 1.1 fredette * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
57 1.1 fredette * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
58 1.1 fredette * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
59 1.1 fredette * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
60 1.1 fredette * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
61 1.1 fredette * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
62 1.1 fredette */
63 1.8 lukem
64 1.8 lukem #include <sys/cdefs.h>
65 1.55.2.2 wrstuden __KERNEL_RCSID(0, "$NetBSD: trap.c,v 1.55.2.2 2008/06/22 18:12:02 wrstuden Exp $");
66 1.1 fredette
67 1.1 fredette /* #define INTRDEBUG */
68 1.1 fredette /* #define TRAPDEBUG */
69 1.1 fredette /* #define USERTRACE */
70 1.1 fredette
71 1.1 fredette #include "opt_kgdb.h"
72 1.51 skrll #include "opt_ptrace.h"
73 1.1 fredette
74 1.1 fredette #include <sys/param.h>
75 1.1 fredette #include <sys/systm.h>
76 1.1 fredette #include <sys/kernel.h>
77 1.1 fredette #include <sys/syscall.h>
78 1.55.2.1 wrstuden #include <sys/sa.h>
79 1.55.2.1 wrstuden #include <sys/savar.h>
80 1.40 ad #include <sys/mutex.h>
81 1.1 fredette #include <sys/ktrace.h>
82 1.1 fredette #include <sys/proc.h>
83 1.1 fredette #include <sys/signalvar.h>
84 1.1 fredette #include <sys/user.h>
85 1.1 fredette #include <sys/acct.h>
86 1.1 fredette #include <sys/signal.h>
87 1.1 fredette #include <sys/device.h>
88 1.9 chs #include <sys/pool.h>
89 1.20 chs #include <sys/userret.h>
90 1.1 fredette
91 1.1 fredette #include <net/netisr.h>
92 1.1 fredette
93 1.1 fredette #ifdef KGDB
94 1.1 fredette #include <sys/kgdb.h>
95 1.1 fredette #endif
96 1.1 fredette
97 1.1 fredette #include <uvm/uvm.h>
98 1.1 fredette
99 1.1 fredette #include <machine/iomod.h>
100 1.1 fredette #include <machine/cpufunc.h>
101 1.1 fredette #include <machine/reg.h>
102 1.1 fredette #include <machine/autoconf.h>
103 1.1 fredette
104 1.1 fredette #include <machine/db_machdep.h>
105 1.1 fredette
106 1.1 fredette #include <hppa/hppa/machdep.h>
107 1.1 fredette
108 1.1 fredette #include <ddb/db_output.h>
109 1.19 chs #include <ddb/db_interface.h>
110 1.1 fredette
111 1.51 skrll #ifdef PTRACE
112 1.51 skrll void ss_clear_breakpoints(struct lwp *l);
113 1.51 skrll int ss_put_value(struct lwp *, vaddr_t, u_int);
114 1.51 skrll int ss_get_value(struct lwp *, vaddr_t, u_int *);
115 1.51 skrll #endif
116 1.51 skrll
117 1.51 skrll /* single-step breakpoint */
118 1.51 skrll #define SSBREAKPOINT (HPPA_BREAK_KERNEL | (HPPA_BREAK_SS << 13))
119 1.51 skrll
120 1.1 fredette #if defined(DEBUG) || defined(DIAGNOSTIC)
121 1.1 fredette /*
122 1.1 fredette * 0x6fc1000 is a stwm r1, d(sr0, sp), which is the last
123 1.1 fredette * instruction in the function prologue that gcc -O0 uses.
124 1.1 fredette * When we have this instruction we know the relationship
125 1.1 fredette * between the stack pointer and the gcc -O0 frame pointer
126 1.1 fredette * (in r3, loaded with the initial sp) for the body of a
127 1.1 fredette * function.
128 1.1 fredette *
129 1.1 fredette * If the given instruction is a stwm r1, d(sr0, sp) where
130 1.1 fredette * d > 0, we evaluate to d, else we evaluate to zero.
131 1.1 fredette */
132 1.1 fredette #define STWM_R1_D_SR0_SP(inst) \
133 1.1 fredette (((inst) & 0xffffc001) == 0x6fc10000 ? (((inst) & 0x00003ff) >> 1) : 0)
134 1.1 fredette #endif /* DEBUG || DIAGNOSTIC */
135 1.1 fredette
136 1.1 fredette const char *trap_type[] = {
137 1.1 fredette "invalid",
138 1.1 fredette "HPMC",
139 1.1 fredette "power failure",
140 1.1 fredette "recovery counter",
141 1.1 fredette "external interrupt",
142 1.1 fredette "LPMC",
143 1.1 fredette "ITLB miss fault",
144 1.1 fredette "instruction protection",
145 1.1 fredette "Illegal instruction",
146 1.1 fredette "break instruction",
147 1.1 fredette "privileged operation",
148 1.1 fredette "privileged register",
149 1.1 fredette "overflow",
150 1.1 fredette "conditional",
151 1.1 fredette "assist exception",
152 1.1 fredette "DTLB miss",
153 1.1 fredette "ITLB non-access miss",
154 1.1 fredette "DTLB non-access miss",
155 1.1 fredette "data protection/rights/alignment",
156 1.1 fredette "data break",
157 1.1 fredette "TLB dirty",
158 1.1 fredette "page reference",
159 1.1 fredette "assist emulation",
160 1.1 fredette "higher-priv transfer",
161 1.1 fredette "lower-priv transfer",
162 1.1 fredette "taken branch",
163 1.1 fredette "data access rights",
164 1.1 fredette "data protection",
165 1.1 fredette "unaligned data ref",
166 1.1 fredette };
167 1.1 fredette int trap_types = sizeof(trap_type)/sizeof(trap_type[0]);
168 1.1 fredette
169 1.23 chs uint8_t fpopmap[] = {
170 1.23 chs 0x00, 0x00, 0x00, 0x06, 0x00, 0x00, 0x00, 0x00,
171 1.23 chs 0x00, 0x0c, 0x00, 0x0e, 0x00, 0x00, 0x00, 0x00,
172 1.23 chs 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
173 1.23 chs 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
174 1.23 chs 0x00, 0x00, 0x00, 0x26, 0x00, 0x00, 0x00, 0x00,
175 1.23 chs 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
176 1.23 chs 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
177 1.23 chs 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
178 1.23 chs };
179 1.23 chs
180 1.1 fredette volatile int astpending;
181 1.1 fredette
182 1.14 chs void pmap_hptdump(void);
183 1.14 chs void syscall(struct trapframe *, int *);
184 1.1 fredette
185 1.53 skrll #if defined(DEBUG)
186 1.53 skrll struct trapframe *sanity_frame;
187 1.53 skrll struct lwp *sanity_lwp;
188 1.53 skrll int sanity_checked = 0;
189 1.53 skrll void frame_sanity_check(int, int, struct trapframe *, struct lwp *);
190 1.53 skrll #endif
191 1.53 skrll
192 1.53 skrll
193 1.1 fredette #ifdef USERTRACE
194 1.1 fredette /*
195 1.1 fredette * USERTRACE is a crude facility that traces the PC of
196 1.1 fredette * a single user process. This tracing is normally
197 1.1 fredette * activated by the dispatching of a certain syscall
198 1.1 fredette * with certain arguments - see the activation code in
199 1.1 fredette * syscall().
200 1.1 fredette */
201 1.53 skrll static void user_backtrace(struct trapframe *, struct lwp *, int);
202 1.53 skrll static void user_backtrace_raw(u_int, u_int);
203 1.53 skrll
204 1.1 fredette u_int rctr_next_iioq;
205 1.1 fredette #endif
206 1.1 fredette
207 1.30 perry static inline void
208 1.20 chs userret(struct lwp *l, register_t pc, u_quad_t oticks)
209 1.1 fredette {
210 1.9 chs struct proc *p = l->l_proc;
211 1.1 fredette
212 1.47 skrll if (curcpu()->ci_want_resched) {
213 1.40 ad preempt();
214 1.1 fredette }
215 1.1 fredette
216 1.20 chs mi_userret(l);
217 1.20 chs
218 1.1 fredette /*
219 1.1 fredette * If profiling, charge recent system time to the trapped pc.
220 1.1 fredette */
221 1.40 ad if (p->p_stflag & PST_PROFIL) {
222 1.1 fredette extern int psratio;
223 1.1 fredette
224 1.40 ad addupc_task(l, pc, (int)(p->p_sticks - oticks) * psratio);
225 1.1 fredette }
226 1.1 fredette }
227 1.1 fredette
228 1.1 fredette /*
229 1.1 fredette * This handles some messy kernel debugger details.
230 1.1 fredette * It dispatches into either kgdb or DDB, and knows
231 1.1 fredette * about some special things to do, like skipping over
232 1.1 fredette * break instructions and how to really set up for
233 1.1 fredette * a single-step.
234 1.1 fredette */
235 1.1 fredette #if defined(KGDB) || defined(DDB)
236 1.1 fredette static int
237 1.1 fredette trap_kdebug(int type, int code, struct trapframe *frame)
238 1.1 fredette {
239 1.1 fredette int handled;
240 1.1 fredette u_int tf_iioq_head_old;
241 1.1 fredette u_int tf_iioq_tail_old;
242 1.1 fredette
243 1.1 fredette for(;;) {
244 1.1 fredette
245 1.1 fredette /* This trap has not been handled. */
246 1.1 fredette handled = 0;
247 1.1 fredette
248 1.1 fredette /* Remember the instruction offset queue. */
249 1.1 fredette tf_iioq_head_old = frame->tf_iioq_head;
250 1.1 fredette tf_iioq_tail_old = frame->tf_iioq_tail;
251 1.1 fredette
252 1.1 fredette #ifdef KGDB
253 1.1 fredette /* Let KGDB handle it (if connected) */
254 1.1 fredette if (!handled)
255 1.1 fredette handled = kgdb_trap(type, frame);
256 1.1 fredette #endif
257 1.1 fredette #ifdef DDB
258 1.1 fredette /* Let DDB handle it. */
259 1.1 fredette if (!handled)
260 1.1 fredette handled = kdb_trap(type, code, frame);
261 1.1 fredette #endif
262 1.1 fredette
263 1.1 fredette /* If this trap wasn't handled, return now. */
264 1.1 fredette if (!handled)
265 1.1 fredette return(0);
266 1.1 fredette
267 1.1 fredette /*
268 1.1 fredette * If the instruction offset queue head changed,
269 1.1 fredette * but the offset queue tail didn't, assume that
270 1.1 fredette * the user wants to jump to the head offset, and
271 1.1 fredette * adjust the tail accordingly. This should fix
272 1.1 fredette * the kgdb `jump' command, and can help DDB users
273 1.1 fredette * who `set' the offset head but forget the tail.
274 1.1 fredette */
275 1.1 fredette if (frame->tf_iioq_head != tf_iioq_head_old &&
276 1.1 fredette frame->tf_iioq_tail == tf_iioq_tail_old)
277 1.1 fredette frame->tf_iioq_tail = frame->tf_iioq_head + 4;
278 1.1 fredette
279 1.1 fredette /*
280 1.1 fredette * This is some single-stepping support.
281 1.1 fredette * If we're trying to step through a nullified
282 1.1 fredette * instruction, just advance by hand and trap
283 1.1 fredette * again. Otherwise, load the recovery counter
284 1.1 fredette * with zero.
285 1.1 fredette */
286 1.1 fredette if (frame->tf_ipsw & PSW_R) {
287 1.1 fredette #ifdef TRAPDEBUG
288 1.44 skrll printf("(single stepping at head 0x%x tail 0x%x)\n",
289 1.44 skrll frame->tf_iioq_head, frame->tf_iioq_tail);
290 1.1 fredette #endif
291 1.1 fredette if (frame->tf_ipsw & PSW_N) {
292 1.1 fredette #ifdef TRAPDEBUG
293 1.1 fredette printf("(single stepping past nullified)\n");
294 1.1 fredette #endif
295 1.1 fredette
296 1.1 fredette /* Advance the program counter. */
297 1.1 fredette frame->tf_iioq_head = frame->tf_iioq_tail;
298 1.1 fredette frame->tf_iioq_tail = frame->tf_iioq_head + 4;
299 1.1 fredette
300 1.1 fredette /* Clear flags. */
301 1.1 fredette frame->tf_ipsw &= ~(PSW_N|PSW_X|PSW_Y|PSW_Z|PSW_B|PSW_T|PSW_H|PSW_L);
302 1.1 fredette
303 1.1 fredette /* Simulate another trap. */
304 1.1 fredette type = T_RECOVERY;
305 1.1 fredette continue;
306 1.1 fredette }
307 1.1 fredette frame->tf_rctr = 0;
308 1.1 fredette }
309 1.1 fredette
310 1.1 fredette /* We handled this trap. */
311 1.1 fredette return (1);
312 1.1 fredette }
313 1.1 fredette /* NOTREACHED */
314 1.1 fredette }
315 1.1 fredette #else /* !KGDB && !DDB */
316 1.1 fredette #define trap_kdebug(t, c, f) (0)
317 1.1 fredette #endif /* !KGDB && !DDB */
318 1.1 fredette
319 1.24 tsutsui #if defined(DEBUG) || defined(USERTRACE)
320 1.1 fredette /*
321 1.1 fredette * These functions give a crude usermode backtrace. They
322 1.1 fredette * really only work when code has been compiled without
323 1.1 fredette * optimization, as they assume a certain function prologue
324 1.1 fredette * sets up a frame pointer and stores the return pointer
325 1.1 fredette * and arguments in it.
326 1.1 fredette */
327 1.1 fredette static void
328 1.1 fredette user_backtrace_raw(u_int pc, u_int fp)
329 1.1 fredette {
330 1.1 fredette int frame_number;
331 1.1 fredette int arg_number;
332 1.1 fredette
333 1.3 fredette for (frame_number = 0;
334 1.3 fredette frame_number < 100 && pc > HPPA_PC_PRIV_MASK && fp;
335 1.3 fredette frame_number++) {
336 1.3 fredette
337 1.1 fredette printf("%3d: pc=%08x%s fp=0x%08x", frame_number,
338 1.44 skrll pc & ~HPPA_PC_PRIV_MASK, USERMODE(pc) ? " " : "**", fp);
339 1.1 fredette for(arg_number = 0; arg_number < 4; arg_number++)
340 1.1 fredette printf(" arg%d=0x%08x", arg_number,
341 1.1 fredette (int) fuword(HPPA_FRAME_CARG(arg_number, fp)));
342 1.1 fredette printf("\n");
343 1.1 fredette pc = fuword(((register_t *) fp) - 5); /* fetch rp */
344 1.1 fredette if (pc == -1) {
345 1.1 fredette printf(" fuword for pc failed\n");
346 1.1 fredette break;
347 1.1 fredette }
348 1.1 fredette fp = fuword(((register_t *) fp) + 0); /* fetch previous fp */
349 1.1 fredette if (fp == -1) {
350 1.1 fredette printf(" fuword for fp failed\n");
351 1.1 fredette break;
352 1.1 fredette }
353 1.1 fredette }
354 1.1 fredette printf(" backtrace stopped with pc %08x fp 0x%08x\n", pc, fp);
355 1.1 fredette }
356 1.1 fredette
357 1.1 fredette static void
358 1.9 chs user_backtrace(struct trapframe *tf, struct lwp *l, int type)
359 1.1 fredette {
360 1.9 chs struct proc *p = l->l_proc;
361 1.1 fredette u_int pc, fp, inst;
362 1.1 fredette
363 1.1 fredette /*
364 1.3 fredette * Display any trap type that we have.
365 1.3 fredette */
366 1.3 fredette if (type >= 0)
367 1.3 fredette printf("pid %d (%s) trap #%d\n",
368 1.3 fredette p->p_pid, p->p_comm, type & ~T_USER);
369 1.3 fredette
370 1.3 fredette /*
371 1.1 fredette * Assuming that the frame pointer in r3 is valid,
372 1.1 fredette * dump out a stack trace.
373 1.1 fredette */
374 1.1 fredette fp = tf->tf_r3;
375 1.1 fredette printf("pid %d (%s) backtrace, starting with fp 0x%08x\n",
376 1.1 fredette p->p_pid, p->p_comm, fp);
377 1.1 fredette user_backtrace_raw(tf->tf_iioq_head, fp);
378 1.1 fredette
379 1.1 fredette /*
380 1.1 fredette * In case the frame pointer in r3 is not valid,
381 1.1 fredette * assuming the stack pointer is valid and the
382 1.1 fredette * faulting function is a non-leaf, if we can
383 1.1 fredette * find its prologue we can recover its frame
384 1.1 fredette * pointer.
385 1.1 fredette */
386 1.1 fredette pc = tf->tf_iioq_head;
387 1.1 fredette fp = tf->tf_sp - HPPA_FRAME_SIZE;
388 1.1 fredette printf("pid %d (%s) backtrace, starting with sp 0x%08x pc 0x%08x\n",
389 1.1 fredette p->p_pid, p->p_comm, tf->tf_sp, pc);
390 1.44 skrll for (pc &= ~HPPA_PC_PRIV_MASK; pc > 0; pc -= sizeof(inst)) {
391 1.1 fredette inst = fuword((register_t *) pc);
392 1.1 fredette if (inst == -1) {
393 1.1 fredette printf(" fuword for inst at pc %08x failed\n", pc);
394 1.1 fredette break;
395 1.1 fredette }
396 1.1 fredette /* Check for the prologue instruction that sets sp. */
397 1.1 fredette if (STWM_R1_D_SR0_SP(inst)) {
398 1.1 fredette fp = tf->tf_sp - STWM_R1_D_SR0_SP(inst);
399 1.1 fredette printf(" sp from fp at pc %08x: %08x\n", pc, inst);
400 1.1 fredette break;
401 1.1 fredette }
402 1.1 fredette }
403 1.1 fredette user_backtrace_raw(tf->tf_iioq_head, fp);
404 1.1 fredette }
405 1.24 tsutsui #endif /* DEBUG || USERTRACE */
406 1.1 fredette
407 1.1 fredette #ifdef DEBUG
408 1.1 fredette /*
409 1.1 fredette * This sanity-checks a trapframe. It is full of various
410 1.1 fredette * assumptions about what a healthy CPU state should be,
411 1.1 fredette * with some documented elsewhere, some not.
412 1.1 fredette */
413 1.1 fredette void
414 1.26 chs frame_sanity_check(int where, int type, struct trapframe *tf, struct lwp *l)
415 1.1 fredette {
416 1.1 fredette extern int kernel_text;
417 1.1 fredette extern int etext;
418 1.1 fredette extern register_t kpsw;
419 1.1 fredette extern vaddr_t hpt_base;
420 1.1 fredette extern vsize_t hpt_mask;
421 1.1 fredette #define SANITY(e) \
422 1.1 fredette do { \
423 1.1 fredette if (sanity_frame == NULL && !(e)) { \
424 1.1 fredette sanity_frame = tf; \
425 1.9 chs sanity_lwp = l; \
426 1.1 fredette sanity_checked = __LINE__; \
427 1.1 fredette } \
428 1.1 fredette } while (/* CONSTCOND */ 0)
429 1.1 fredette
430 1.1 fredette SANITY((tf->tf_ipsw & kpsw) == kpsw);
431 1.1 fredette SANITY(tf->tf_hptm == hpt_mask && tf->tf_vtop == hpt_base);
432 1.1 fredette SANITY((kpsw & PSW_I) == 0 || tf->tf_eiem != 0);
433 1.1 fredette if (tf->tf_iisq_head == HPPA_SID_KERNEL) {
434 1.45 skrll vaddr_t minsp, maxsp;
435 1.45 skrll
436 1.1 fredette /*
437 1.1 fredette * If the trap happened in the gateway
438 1.1 fredette * page, we take the easy way out and
439 1.1 fredette * assume that the trapframe is okay.
440 1.1 fredette */
441 1.45 skrll if ((tf->tf_iioq_head & ~PAGE_MASK) == SYSCALLGATE)
442 1.45 skrll goto out;
443 1.45 skrll
444 1.45 skrll SANITY(!USERMODE(tf->tf_iioq_head));
445 1.45 skrll SANITY(!USERMODE(tf->tf_iioq_tail));
446 1.45 skrll
447 1.45 skrll /*
448 1.45 skrll * Don't check the instruction queues or stack on interrupts
449 1.45 skrll * as we could be be in the sti code (outside normal kernel
450 1.45 skrll * text) or switching LWPs (curlwp and sp are not in sync)
451 1.45 skrll */
452 1.45 skrll if ((type & ~T_USER) == T_INTERRUPT)
453 1.45 skrll goto out;
454 1.45 skrll
455 1.45 skrll SANITY(tf->tf_iioq_head >= (u_int) &kernel_text);
456 1.45 skrll SANITY(tf->tf_iioq_head < (u_int) &etext);
457 1.45 skrll SANITY(tf->tf_iioq_tail >= (u_int) &kernel_text);
458 1.45 skrll SANITY(tf->tf_iioq_tail < (u_int) &etext);
459 1.43 yamt
460 1.1 fredette #ifdef HPPA_REDZONE
461 1.45 skrll maxsp = (u_int)(l->l_addr) + HPPA_REDZONE;
462 1.1 fredette #else
463 1.45 skrll maxsp = (u_int)(l->l_addr) + USPACE;
464 1.1 fredette #endif
465 1.45 skrll minsp = (u_int)(l->l_addr) + PAGE_SIZE;
466 1.43 yamt
467 1.45 skrll SANITY(l != NULL || (tf->tf_sp >= minsp && tf->tf_sp < maxsp));
468 1.1 fredette } else {
469 1.1 fredette SANITY(USERMODE(tf->tf_iioq_head));
470 1.1 fredette SANITY(USERMODE(tf->tf_iioq_tail));
471 1.42 christos SANITY(l != NULL && tf->tf_cr30 == kvtop((void *)l->l_addr));
472 1.1 fredette }
473 1.1 fredette #undef SANITY
474 1.45 skrll out:
475 1.1 fredette if (sanity_frame == tf) {
476 1.26 chs printf("insanity: where 0x%x type 0x%x tf %p lwp %p line %d "
477 1.26 chs "sp 0x%x pc 0x%x\n",
478 1.26 chs where, type, sanity_frame, sanity_lwp, sanity_checked,
479 1.22 chs tf->tf_sp, tf->tf_iioq_head);
480 1.4 fredette (void) trap_kdebug(T_IBREAK, 0, tf);
481 1.1 fredette sanity_frame = NULL;
482 1.9 chs sanity_lwp = NULL;
483 1.1 fredette sanity_checked = 0;
484 1.1 fredette }
485 1.1 fredette }
486 1.1 fredette #endif /* DEBUG */
487 1.1 fredette
488 1.1 fredette void
489 1.14 chs trap(int type, struct trapframe *frame)
490 1.1 fredette {
491 1.13 tsutsui struct lwp *l;
492 1.13 tsutsui struct proc *p;
493 1.1 fredette struct pcb *pcbp;
494 1.9 chs vaddr_t va;
495 1.9 chs struct vm_map *map;
496 1.1 fredette struct vmspace *vm;
497 1.9 chs vm_prot_t vftype;
498 1.9 chs pa_space_t space;
499 1.22 chs ksiginfo_t ksi;
500 1.19 chs u_int opcode, onfault;
501 1.1 fredette int ret;
502 1.1 fredette const char *tts;
503 1.1 fredette int type_raw;
504 1.1 fredette #ifdef DIAGNOSTIC
505 1.1 fredette extern int emergency_stack_start, emergency_stack_end;
506 1.1 fredette #endif
507 1.1 fredette
508 1.1 fredette type_raw = type & ~T_USER;
509 1.1 fredette opcode = frame->tf_iir;
510 1.51 skrll if (type_raw == T_ITLBMISS || type_raw == T_ITLBMISSNA ||
511 1.51 skrll type_raw == T_IBREAK || type_raw == T_TAKENBR) {
512 1.1 fredette va = frame->tf_iioq_head;
513 1.1 fredette space = frame->tf_iisq_head;
514 1.17 chs vftype = VM_PROT_EXECUTE;
515 1.1 fredette } else {
516 1.1 fredette va = frame->tf_ior;
517 1.1 fredette space = frame->tf_isr;
518 1.1 fredette vftype = inst_store(opcode) ? VM_PROT_WRITE : VM_PROT_READ;
519 1.1 fredette }
520 1.13 tsutsui
521 1.18 chs l = curlwp;
522 1.18 chs p = l ? l->l_proc : NULL;
523 1.36 ad if ((type & T_USER) != 0)
524 1.36 ad LWP_CACHE_CREDS(l, p);
525 1.1 fredette
526 1.23 chs tts = (type & ~T_USER) > trap_types ? "reserved" :
527 1.23 chs trap_type[type & ~T_USER];
528 1.23 chs
529 1.1 fredette #ifdef DIAGNOSTIC
530 1.1 fredette /*
531 1.1 fredette * If we are on the emergency stack, then we either got
532 1.1 fredette * a fault on the kernel stack, or we're just handling
533 1.1 fredette * a trap for the machine check handler (which also
534 1.1 fredette * runs on the emergency stack).
535 1.1 fredette *
536 1.1 fredette * We *very crudely* differentiate between the two cases
537 1.1 fredette * by checking the faulting instruction: if it is the
538 1.1 fredette * function prologue instruction that stores the old
539 1.1 fredette * frame pointer and updates the stack pointer, we assume
540 1.1 fredette * that we faulted on the kernel stack.
541 1.1 fredette *
542 1.1 fredette * In this case, not completing that instruction will
543 1.1 fredette * probably confuse backtraces in kgdb/ddb. Completing
544 1.1 fredette * it would be difficult, because we already faulted on
545 1.1 fredette * that part of the stack, so instead we fix up the
546 1.1 fredette * frame as if the function called has just returned.
547 1.1 fredette * This has peculiar knowledge about what values are in
548 1.1 fredette * what registers during the "normal gcc -g" prologue.
549 1.1 fredette */
550 1.1 fredette if (&type >= &emergency_stack_start &&
551 1.1 fredette &type < &emergency_stack_end &&
552 1.1 fredette type != T_IBREAK && STWM_R1_D_SR0_SP(opcode)) {
553 1.1 fredette /* Restore the caller's frame pointer. */
554 1.1 fredette frame->tf_r3 = frame->tf_r1;
555 1.1 fredette /* Restore the caller's instruction offsets. */
556 1.1 fredette frame->tf_iioq_head = frame->tf_rp;
557 1.1 fredette frame->tf_iioq_tail = frame->tf_iioq_head + 4;
558 1.1 fredette goto dead_end;
559 1.1 fredette }
560 1.1 fredette #endif /* DIAGNOSTIC */
561 1.1 fredette
562 1.1 fredette #ifdef DEBUG
563 1.26 chs frame_sanity_check(0xdead01, type, frame, l);
564 1.1 fredette #endif /* DEBUG */
565 1.1 fredette
566 1.1 fredette /* If this is a trap, not an interrupt, reenable interrupts. */
567 1.1 fredette if (type_raw != T_INTERRUPT)
568 1.1 fredette mtctl(frame->tf_eiem, CR_EIEM);
569 1.1 fredette
570 1.1 fredette if (frame->tf_flags & TFF_LAST)
571 1.9 chs l->l_md.md_regs = frame;
572 1.1 fredette
573 1.1 fredette #ifdef TRAPDEBUG
574 1.1 fredette if (type_raw != T_INTERRUPT && type_raw != T_IBREAK)
575 1.1 fredette printf("trap: %d, %s for %x:%x at %x:%x, fp=%p, rp=%x\n",
576 1.1 fredette type, tts, space, (u_int)va, frame->tf_iisq_head,
577 1.1 fredette frame->tf_iioq_head, frame, frame->tf_rp);
578 1.1 fredette else if (type_raw == T_IBREAK)
579 1.1 fredette printf("trap: break instruction %x:%x at %x:%x, fp=%p\n",
580 1.1 fredette break5(opcode), break13(opcode),
581 1.1 fredette frame->tf_iisq_head, frame->tf_iioq_head, frame);
582 1.1 fredette
583 1.1 fredette {
584 1.1 fredette extern int etext;
585 1.1 fredette if (frame < (struct trapframe *)&etext) {
586 1.1 fredette printf("trap: bogus frame ptr %p\n", frame);
587 1.1 fredette goto dead_end;
588 1.1 fredette }
589 1.1 fredette }
590 1.1 fredette #endif
591 1.1 fredette switch (type) {
592 1.1 fredette case T_NONEXIST:
593 1.1 fredette case T_NONEXIST|T_USER:
594 1.1 fredette #if !defined(DDB) && !defined(KGDB)
595 1.1 fredette /* we've got screwed up by the central scrutinizer */
596 1.1 fredette panic ("trap: elvis has just left the building!");
597 1.1 fredette break;
598 1.1 fredette #else
599 1.1 fredette goto dead_end;
600 1.1 fredette #endif
601 1.1 fredette case T_RECOVERY|T_USER:
602 1.1 fredette #ifdef USERTRACE
603 1.1 fredette for(;;) {
604 1.1 fredette if (frame->tf_iioq_head != rctr_next_iioq)
605 1.1 fredette printf("-%08x\nr %08x",
606 1.1 fredette rctr_next_iioq - 4,
607 1.1 fredette frame->tf_iioq_head);
608 1.1 fredette rctr_next_iioq = frame->tf_iioq_head + 4;
609 1.1 fredette if (frame->tf_ipsw & PSW_N) {
610 1.1 fredette /* Advance the program counter. */
611 1.1 fredette frame->tf_iioq_head = frame->tf_iioq_tail;
612 1.1 fredette frame->tf_iioq_tail = frame->tf_iioq_head + 4;
613 1.1 fredette /* Clear flags. */
614 1.1 fredette frame->tf_ipsw &= ~(PSW_N|PSW_X|PSW_Y|PSW_Z|PSW_B|PSW_T|PSW_H|PSW_L);
615 1.1 fredette /* Simulate another trap. */
616 1.1 fredette continue;
617 1.1 fredette }
618 1.1 fredette break;
619 1.1 fredette }
620 1.1 fredette frame->tf_rctr = 0;
621 1.1 fredette break;
622 1.1 fredette #endif /* USERTRACE */
623 1.1 fredette case T_RECOVERY:
624 1.1 fredette #if !defined(DDB) && !defined(KGDB)
625 1.1 fredette /* XXX will implement later */
626 1.1 fredette printf ("trap: handicapped");
627 1.1 fredette break;
628 1.1 fredette #else
629 1.1 fredette goto dead_end;
630 1.1 fredette #endif
631 1.1 fredette
632 1.1 fredette case T_EMULATION | T_USER:
633 1.1 fredette #ifdef FPEMUL
634 1.21 chs hppa_fpu_emulate(frame, l, opcode);
635 1.1 fredette #else /* !FPEMUL */
636 1.1 fredette /*
637 1.1 fredette * We don't have FPU emulation, so signal the
638 1.1 fredette * process with a SIGFPE.
639 1.1 fredette */
640 1.22 chs
641 1.22 chs KSI_INIT_TRAP(&ksi);
642 1.22 chs ksi.ksi_signo = SIGFPE;
643 1.22 chs ksi.ksi_code = SI_NOINFO;
644 1.22 chs ksi.ksi_trap = type;
645 1.22 chs ksi.ksi_addr = (void *)frame->tf_iioq_head;
646 1.22 chs trapsignal(l, &ksi);
647 1.1 fredette #endif /* !FPEMUL */
648 1.1 fredette break;
649 1.1 fredette
650 1.25 chs case T_DATALIGN:
651 1.25 chs if (l->l_addr->u_pcb.pcb_onfault) {
652 1.25 chs do_onfault:
653 1.25 chs pcbp = &l->l_addr->u_pcb;
654 1.25 chs frame->tf_iioq_tail = 4 +
655 1.25 chs (frame->tf_iioq_head =
656 1.25 chs pcbp->pcb_onfault);
657 1.25 chs pcbp->pcb_onfault = 0;
658 1.25 chs break;
659 1.25 chs }
660 1.25 chs /*FALLTHROUGH*/
661 1.25 chs
662 1.1 fredette #ifdef DIAGNOSTIC
663 1.1 fredette /* these just can't happen ever */
664 1.1 fredette case T_PRIV_OP:
665 1.1 fredette case T_PRIV_REG:
666 1.1 fredette /* these just can't make it to the trap() ever */
667 1.25 chs case T_HPMC:
668 1.25 chs case T_HPMC | T_USER:
669 1.1 fredette case T_EMULATION:
670 1.25 chs case T_EXCEPTION:
671 1.1 fredette #endif
672 1.1 fredette case T_IBREAK:
673 1.1 fredette case T_DBREAK:
674 1.1 fredette dead_end:
675 1.3 fredette if (type & T_USER) {
676 1.3 fredette #ifdef DEBUG
677 1.9 chs user_backtrace(frame, l, type);
678 1.3 fredette #endif
679 1.22 chs KSI_INIT_TRAP(&ksi);
680 1.22 chs ksi.ksi_signo = SIGILL;
681 1.22 chs ksi.ksi_code = ILL_ILLTRP;
682 1.22 chs ksi.ksi_trap = type;
683 1.22 chs ksi.ksi_addr = (void *)frame->tf_iioq_head;
684 1.22 chs trapsignal(l, &ksi);
685 1.3 fredette break;
686 1.3 fredette }
687 1.1 fredette if (trap_kdebug(type, va, frame))
688 1.1 fredette return;
689 1.1 fredette else if (type == T_DATALIGN)
690 1.1 fredette panic ("trap: %s at 0x%x", tts, (u_int) va);
691 1.1 fredette else
692 1.1 fredette panic ("trap: no debugger for \"%s\" (%d)", tts, type);
693 1.1 fredette break;
694 1.1 fredette
695 1.1 fredette case T_IBREAK | T_USER:
696 1.1 fredette case T_DBREAK | T_USER:
697 1.51 skrll KSI_INIT_TRAP(&ksi);
698 1.51 skrll ksi.ksi_signo = SIGTRAP;
699 1.51 skrll ksi.ksi_code = TRAP_TRACE;
700 1.51 skrll ksi.ksi_trap = type_raw;
701 1.51 skrll ksi.ksi_addr = (void *)frame->tf_iioq_head;
702 1.51 skrll #ifdef PTRACE
703 1.51 skrll ss_clear_breakpoints(l);
704 1.51 skrll if (opcode == SSBREAKPOINT)
705 1.51 skrll ksi.ksi_code = TRAP_BRKPT;
706 1.51 skrll #endif
707 1.1 fredette /* pass to user debugger */
708 1.51 skrll trapsignal(l, &ksi);
709 1.51 skrll
710 1.51 skrll break;
711 1.51 skrll
712 1.51 skrll #ifdef PTRACE
713 1.51 skrll case T_TAKENBR | T_USER:
714 1.51 skrll ss_clear_breakpoints(l);
715 1.51 skrll
716 1.51 skrll KSI_INIT_TRAP(&ksi);
717 1.51 skrll ksi.ksi_signo = SIGTRAP;
718 1.51 skrll ksi.ksi_code = TRAP_TRACE;
719 1.51 skrll ksi.ksi_trap = type_raw;
720 1.51 skrll ksi.ksi_addr = (void *)frame->tf_iioq_head;
721 1.51 skrll
722 1.51 skrll /* pass to user debugger */
723 1.51 skrll trapsignal(l, &ksi);
724 1.1 fredette break;
725 1.51 skrll #endif
726 1.1 fredette
727 1.21 chs case T_EXCEPTION | T_USER: { /* co-proc assist trap */
728 1.21 chs uint64_t *fpp;
729 1.23 chs uint32_t *pex, ex, inst;
730 1.23 chs int i;
731 1.21 chs
732 1.21 chs hppa_fpu_flush(l);
733 1.21 chs fpp = l->l_addr->u_pcb.pcb_fpregs;
734 1.23 chs pex = (uint32_t *)&fpp[1];
735 1.23 chs for (i = 1; i < 8 && !*pex; i++, pex++)
736 1.21 chs ;
737 1.23 chs KASSERT(i < 8);
738 1.23 chs ex = *pex;
739 1.23 chs *pex = 0;
740 1.23 chs
741 1.21 chs /* reset the trap flag, as if there was none */
742 1.21 chs fpp[0] &= ~(((uint64_t)HPPA_FPU_T) << 32);
743 1.21 chs
744 1.23 chs /* emulate the instruction */
745 1.23 chs inst = ((uint32_t)fpopmap[ex >> 26] << 26) | (ex & 0x03ffffff);
746 1.21 chs hppa_fpu_emulate(frame, l, inst);
747 1.21 chs }
748 1.1 fredette break;
749 1.1 fredette
750 1.1 fredette case T_OVERFLOW | T_USER:
751 1.22 chs KSI_INIT_TRAP(&ksi);
752 1.22 chs ksi.ksi_signo = SIGFPE;
753 1.22 chs ksi.ksi_code = SI_NOINFO;
754 1.22 chs ksi.ksi_trap = type;
755 1.22 chs ksi.ksi_addr = (void *)va;
756 1.22 chs trapsignal(l, &ksi);
757 1.1 fredette break;
758 1.1 fredette
759 1.1 fredette case T_CONDITION | T_USER:
760 1.23 chs KSI_INIT_TRAP(&ksi);
761 1.23 chs ksi.ksi_signo = SIGFPE;
762 1.23 chs ksi.ksi_code = FPE_INTDIV;
763 1.23 chs ksi.ksi_trap = type;
764 1.23 chs ksi.ksi_addr = (void *)va;
765 1.23 chs trapsignal(l, &ksi);
766 1.1 fredette break;
767 1.1 fredette
768 1.1 fredette case T_ILLEGAL | T_USER:
769 1.3 fredette #ifdef DEBUG
770 1.9 chs user_backtrace(frame, l, type);
771 1.3 fredette #endif
772 1.22 chs KSI_INIT_TRAP(&ksi);
773 1.22 chs ksi.ksi_signo = SIGILL;
774 1.22 chs ksi.ksi_code = ILL_ILLOPC;
775 1.22 chs ksi.ksi_trap = type;
776 1.22 chs ksi.ksi_addr = (void *)va;
777 1.22 chs trapsignal(l, &ksi);
778 1.1 fredette break;
779 1.1 fredette
780 1.1 fredette case T_PRIV_OP | T_USER:
781 1.3 fredette #ifdef DEBUG
782 1.9 chs user_backtrace(frame, l, type);
783 1.3 fredette #endif
784 1.22 chs KSI_INIT_TRAP(&ksi);
785 1.22 chs ksi.ksi_signo = SIGILL;
786 1.22 chs ksi.ksi_code = ILL_PRVOPC;
787 1.22 chs ksi.ksi_trap = type;
788 1.22 chs ksi.ksi_addr = (void *)va;
789 1.22 chs trapsignal(l, &ksi);
790 1.1 fredette break;
791 1.1 fredette
792 1.1 fredette case T_PRIV_REG | T_USER:
793 1.3 fredette #ifdef DEBUG
794 1.9 chs user_backtrace(frame, l, type);
795 1.3 fredette #endif
796 1.22 chs KSI_INIT_TRAP(&ksi);
797 1.22 chs ksi.ksi_signo = SIGILL;
798 1.22 chs ksi.ksi_code = ILL_PRVREG;
799 1.22 chs ksi.ksi_trap = type;
800 1.22 chs ksi.ksi_addr = (void *)va;
801 1.22 chs trapsignal(l, &ksi);
802 1.1 fredette break;
803 1.1 fredette
804 1.1 fredette /* these should never got here */
805 1.1 fredette case T_HIGHERPL | T_USER:
806 1.1 fredette case T_LOWERPL | T_USER:
807 1.22 chs KSI_INIT_TRAP(&ksi);
808 1.22 chs ksi.ksi_signo = SIGSEGV;
809 1.22 chs ksi.ksi_code = SEGV_ACCERR;
810 1.22 chs ksi.ksi_trap = type;
811 1.22 chs ksi.ksi_addr = (void *)va;
812 1.22 chs trapsignal(l, &ksi);
813 1.1 fredette break;
814 1.1 fredette
815 1.1 fredette case T_IPROT | T_USER:
816 1.1 fredette case T_DPROT | T_USER:
817 1.22 chs KSI_INIT_TRAP(&ksi);
818 1.22 chs ksi.ksi_signo = SIGSEGV;
819 1.22 chs ksi.ksi_code = SEGV_ACCERR;
820 1.22 chs ksi.ksi_trap = type;
821 1.22 chs ksi.ksi_addr = (void *)va;
822 1.22 chs trapsignal(l, &ksi);
823 1.1 fredette break;
824 1.1 fredette
825 1.1 fredette case T_DATACC: case T_USER | T_DATACC:
826 1.1 fredette case T_ITLBMISS: case T_USER | T_ITLBMISS:
827 1.1 fredette case T_DTLBMISS: case T_USER | T_DTLBMISS:
828 1.1 fredette case T_ITLBMISSNA: case T_USER | T_ITLBMISSNA:
829 1.1 fredette case T_DTLBMISSNA: case T_USER | T_DTLBMISSNA:
830 1.1 fredette case T_TLB_DIRTY: case T_USER | T_TLB_DIRTY:
831 1.1 fredette vm = p->p_vmspace;
832 1.1 fredette
833 1.1 fredette if (!vm) {
834 1.1 fredette #ifdef TRAPDEBUG
835 1.1 fredette printf("trap: no vm, p=%p\n", p);
836 1.1 fredette #endif
837 1.1 fredette goto dead_end;
838 1.1 fredette }
839 1.1 fredette
840 1.1 fredette /*
841 1.1 fredette * it could be a kernel map for exec_map faults
842 1.1 fredette */
843 1.1 fredette if (!(type & T_USER) && space == HPPA_SID_KERNEL)
844 1.1 fredette map = kernel_map;
845 1.55.2.2 wrstuden else {
846 1.1 fredette map = &vm->vm_map;
847 1.55.2.2 wrstuden if (l->l_flag & LW_SA) {
848 1.55.2.2 wrstuden l->l_savp->savp_faultaddr = va;
849 1.55.2.2 wrstuden l->l_pflag |= LP_SA_PAGEFAULT;
850 1.55.2.2 wrstuden }
851 1.55.2.2 wrstuden }
852 1.10 cl
853 1.41 skrll va = trunc_page(va);
854 1.1 fredette
855 1.1 fredette if (map->pmap->pmap_space != space) {
856 1.1 fredette #ifdef TRAPDEBUG
857 1.37 skrll printf("trap: space mismatch %d != %d\n",
858 1.1 fredette space, map->pmap->pmap_space);
859 1.1 fredette #endif
860 1.1 fredette /* actually dump the user, crap the kernel */
861 1.1 fredette goto dead_end;
862 1.1 fredette }
863 1.1 fredette
864 1.1 fredette /* Never call uvm_fault in interrupt context. */
865 1.1 fredette KASSERT(hppa_intr_depth == 0);
866 1.1 fredette
867 1.19 chs onfault = l->l_addr->u_pcb.pcb_onfault;
868 1.19 chs l->l_addr->u_pcb.pcb_onfault = 0;
869 1.33 drochner ret = uvm_fault(map, va, vftype);
870 1.19 chs l->l_addr->u_pcb.pcb_onfault = onfault;
871 1.1 fredette
872 1.1 fredette #ifdef TRAPDEBUG
873 1.33 drochner printf("uvm_fault(%p, %x, %d)=%d\n",
874 1.33 drochner map, (u_int)va, vftype, ret);
875 1.1 fredette #endif
876 1.1 fredette
877 1.55.2.2 wrstuden if (map != kernel_map)
878 1.55.2.2 wrstuden l->l_pflag &= ~LP_SA_PAGEFAULT;
879 1.55.2.2 wrstuden
880 1.1 fredette /*
881 1.1 fredette * If this was a stack access we keep track of the maximum
882 1.1 fredette * accessed stack size. Also, if uvm_fault gets a protection
883 1.1 fredette * failure it is due to accessing the stack region outside
884 1.1 fredette * the current limit and we need to reflect that as an access
885 1.1 fredette * error.
886 1.1 fredette */
887 1.39 skrll if (map != kernel_map && va >= (vaddr_t)vm->vm_minsaddr) {
888 1.39 skrll if (ret == 0)
889 1.39 skrll uvm_grow(l->l_proc, va);
890 1.39 skrll else if (ret == EACCES)
891 1.1 fredette ret = EFAULT;
892 1.1 fredette }
893 1.1 fredette
894 1.1 fredette if (ret != 0) {
895 1.1 fredette if (type & T_USER) {
896 1.1 fredette #ifdef DEBUG
897 1.9 chs user_backtrace(frame, l, type);
898 1.1 fredette #endif
899 1.22 chs KSI_INIT_TRAP(&ksi);
900 1.22 chs ksi.ksi_signo = SIGSEGV;
901 1.22 chs ksi.ksi_code = (ret == EACCES ?
902 1.22 chs SEGV_ACCERR : SEGV_MAPERR);
903 1.22 chs ksi.ksi_trap = type;
904 1.22 chs ksi.ksi_addr = (void *)va;
905 1.22 chs trapsignal(l, &ksi);
906 1.1 fredette } else {
907 1.19 chs if (l->l_addr->u_pcb.pcb_onfault) {
908 1.25 chs goto do_onfault;
909 1.1 fredette }
910 1.33 drochner panic("trap: uvm_fault(%p, %lx, %d): %d",
911 1.33 drochner map, va, vftype, ret);
912 1.1 fredette }
913 1.1 fredette }
914 1.1 fredette break;
915 1.1 fredette
916 1.1 fredette case T_DATALIGN | T_USER:
917 1.3 fredette #ifdef DEBUG
918 1.9 chs user_backtrace(frame, l, type);
919 1.3 fredette #endif
920 1.22 chs KSI_INIT_TRAP(&ksi);
921 1.22 chs ksi.ksi_signo = SIGBUS;
922 1.22 chs ksi.ksi_code = BUS_ADRALN;
923 1.22 chs ksi.ksi_trap = type;
924 1.22 chs ksi.ksi_addr = (void *)va;
925 1.22 chs trapsignal(l, &ksi);
926 1.1 fredette break;
927 1.1 fredette
928 1.1 fredette case T_INTERRUPT:
929 1.1 fredette case T_INTERRUPT|T_USER:
930 1.1 fredette hppa_intr(frame);
931 1.1 fredette mtctl(frame->tf_eiem, CR_EIEM);
932 1.1 fredette break;
933 1.22 chs
934 1.1 fredette case T_LOWERPL:
935 1.1 fredette case T_DPROT:
936 1.1 fredette case T_IPROT:
937 1.1 fredette case T_OVERFLOW:
938 1.1 fredette case T_CONDITION:
939 1.1 fredette case T_ILLEGAL:
940 1.1 fredette case T_HIGHERPL:
941 1.1 fredette case T_TAKENBR:
942 1.1 fredette case T_POWERFAIL:
943 1.1 fredette case T_LPMC:
944 1.1 fredette case T_PAGEREF:
945 1.1 fredette case T_DATAPID: case T_DATAPID | T_USER:
946 1.1 fredette if (0 /* T-chip */) {
947 1.1 fredette break;
948 1.1 fredette }
949 1.1 fredette /* FALLTHROUGH to unimplemented */
950 1.1 fredette default:
951 1.1 fredette panic ("trap: unimplemented \'%s\' (%d)", tts, type);
952 1.1 fredette }
953 1.1 fredette
954 1.1 fredette if (type & T_USER)
955 1.9 chs userret(l, l->l_md.md_regs->tf_iioq_head, 0);
956 1.1 fredette
957 1.1 fredette #ifdef DEBUG
958 1.26 chs frame_sanity_check(0xdead02, type, frame, l);
959 1.43 yamt if (frame->tf_flags & TFF_LAST && (curlwp->l_flag & LW_IDLE) == 0)
960 1.26 chs frame_sanity_check(0xdead03, type, curlwp->l_md.md_regs,
961 1.26 chs curlwp);
962 1.1 fredette #endif /* DEBUG */
963 1.1 fredette }
964 1.1 fredette
965 1.1 fredette void
966 1.14 chs child_return(void *arg)
967 1.1 fredette {
968 1.9 chs struct lwp *l = arg;
969 1.1 fredette
970 1.9 chs userret(l, l->l_md.md_regs->tf_iioq_head, 0);
971 1.46 ad ktrsysret(SYS_fork, 0, 0);
972 1.1 fredette #ifdef DEBUG
973 1.26 chs frame_sanity_check(0xdead04, 0, l->l_md.md_regs, l);
974 1.1 fredette #endif /* DEBUG */
975 1.1 fredette }
976 1.1 fredette
977 1.51 skrll #ifdef PTRACE
978 1.51 skrll
979 1.51 skrll #include <sys/ptrace.h>
980 1.51 skrll
981 1.51 skrll int
982 1.51 skrll ss_get_value(struct lwp *l, vaddr_t addr, u_int *value)
983 1.51 skrll {
984 1.51 skrll struct uio uio;
985 1.51 skrll struct iovec iov;
986 1.51 skrll
987 1.51 skrll iov.iov_base = (void *)value;
988 1.51 skrll iov.iov_len = sizeof(u_int);
989 1.51 skrll uio.uio_iov = &iov;
990 1.51 skrll uio.uio_iovcnt = 1;
991 1.51 skrll uio.uio_offset = (off_t)addr;
992 1.51 skrll uio.uio_resid = sizeof(u_int);
993 1.51 skrll uio.uio_rw = UIO_READ;
994 1.51 skrll UIO_SETUP_SYSSPACE(&uio);
995 1.51 skrll
996 1.51 skrll return (process_domem(curlwp, l, &uio));
997 1.51 skrll }
998 1.51 skrll
999 1.51 skrll int
1000 1.51 skrll ss_put_value(struct lwp *l, vaddr_t addr, u_int value)
1001 1.51 skrll {
1002 1.51 skrll struct uio uio;
1003 1.51 skrll struct iovec iov;
1004 1.51 skrll
1005 1.51 skrll iov.iov_base = (void *)&value;
1006 1.51 skrll iov.iov_len = sizeof(u_int);
1007 1.51 skrll uio.uio_iov = &iov;
1008 1.51 skrll uio.uio_iovcnt = 1;
1009 1.51 skrll uio.uio_offset = (off_t)addr;
1010 1.51 skrll uio.uio_resid = sizeof(u_int);
1011 1.51 skrll uio.uio_rw = UIO_WRITE;
1012 1.51 skrll UIO_SETUP_SYSSPACE(&uio);
1013 1.51 skrll
1014 1.51 skrll return (process_domem(curlwp, l, &uio));
1015 1.51 skrll }
1016 1.51 skrll
1017 1.51 skrll void
1018 1.51 skrll ss_clear_breakpoints(struct lwp *l)
1019 1.51 skrll {
1020 1.51 skrll /* Restore origional instructions. */
1021 1.51 skrll if (l->l_md.md_bpva != 0) {
1022 1.51 skrll ss_put_value(l, l->l_md.md_bpva, l->l_md.md_bpsave[0]);
1023 1.51 skrll ss_put_value(l, l->l_md.md_bpva + 4, l->l_md.md_bpsave[1]);
1024 1.51 skrll l->l_md.md_bpva = 0;
1025 1.51 skrll }
1026 1.51 skrll }
1027 1.51 skrll
1028 1.51 skrll
1029 1.51 skrll int
1030 1.51 skrll process_sstep(struct lwp *l, int sstep)
1031 1.51 skrll {
1032 1.51 skrll struct trapframe *tf = l->l_md.md_regs;
1033 1.51 skrll int error;
1034 1.51 skrll
1035 1.51 skrll ss_clear_breakpoints(l);
1036 1.51 skrll
1037 1.51 skrll /* We're continuing... */
1038 1.51 skrll /* Don't touch the syscall gateway page. */
1039 1.51 skrll /* XXX head */
1040 1.51 skrll if (sstep == 0 ||
1041 1.51 skrll (tf->tf_iioq_tail & ~PAGE_MASK) == SYSCALLGATE) {
1042 1.51 skrll tf->tf_ipsw &= ~PSW_T;
1043 1.51 skrll return 0;
1044 1.51 skrll }
1045 1.51 skrll
1046 1.51 skrll l->l_md.md_bpva = tf->tf_iioq_tail & ~HPPA_PC_PRIV_MASK;
1047 1.51 skrll
1048 1.51 skrll /*
1049 1.51 skrll * Insert two breakpoint instructions; the first one might be
1050 1.51 skrll * nullified. Of course we need to save two instruction
1051 1.51 skrll * first.
1052 1.51 skrll */
1053 1.51 skrll
1054 1.51 skrll error = ss_get_value(l, l->l_md.md_bpva, &l->l_md.md_bpsave[0]);
1055 1.51 skrll if (error)
1056 1.51 skrll return (error);
1057 1.51 skrll error = ss_get_value(l, l->l_md.md_bpva + 4, &l->l_md.md_bpsave[1]);
1058 1.51 skrll if (error)
1059 1.51 skrll return (error);
1060 1.51 skrll
1061 1.51 skrll error = ss_put_value(l, l->l_md.md_bpva, SSBREAKPOINT);
1062 1.51 skrll if (error)
1063 1.51 skrll return error;
1064 1.51 skrll error = ss_put_value(l, l->l_md.md_bpva + 4, SSBREAKPOINT);
1065 1.51 skrll if (error)
1066 1.51 skrll return error;
1067 1.51 skrll
1068 1.51 skrll tf->tf_ipsw |= PSW_T;
1069 1.51 skrll
1070 1.51 skrll return 0;
1071 1.51 skrll }
1072 1.51 skrll #endif
1073 1.51 skrll
1074 1.51 skrll
1075 1.1 fredette /*
1076 1.1 fredette * call actual syscall routine
1077 1.1 fredette * from the low-level syscall handler:
1078 1.1 fredette * - all HPPA_FRAME_NARGS syscall's arguments supposed to be copied onto
1079 1.1 fredette * our stack, this wins compared to copyin just needed amount anyway
1080 1.1 fredette * - register args are copied onto stack too
1081 1.1 fredette */
1082 1.1 fredette void
1083 1.14 chs syscall(struct trapframe *frame, int *args)
1084 1.1 fredette {
1085 1.9 chs struct lwp *l;
1086 1.9 chs struct proc *p;
1087 1.9 chs const struct sysent *callp;
1088 1.54 dsl int nsys, code, error;
1089 1.1 fredette int tmp;
1090 1.1 fredette int rval[2];
1091 1.1 fredette
1092 1.1 fredette uvmexp.syscalls++;
1093 1.1 fredette
1094 1.1 fredette #ifdef DEBUG
1095 1.26 chs frame_sanity_check(0xdead04, 0, frame, curlwp);
1096 1.1 fredette #endif /* DEBUG */
1097 1.1 fredette
1098 1.1 fredette if (!USERMODE(frame->tf_iioq_head))
1099 1.1 fredette panic("syscall");
1100 1.1 fredette
1101 1.9 chs l = curlwp;
1102 1.9 chs p = l->l_proc;
1103 1.9 chs l->l_md.md_regs = frame;
1104 1.1 fredette nsys = p->p_emul->e_nsysent;
1105 1.1 fredette callp = p->p_emul->e_sysent;
1106 1.1 fredette code = frame->tf_t1;
1107 1.36 ad LWP_CACHE_CREDS(l, p);
1108 1.1 fredette
1109 1.1 fredette /*
1110 1.1 fredette * Restarting a system call is touchy on the HPPA,
1111 1.1 fredette * because syscall arguments are passed in registers
1112 1.1 fredette * and the program counter of the syscall "point"
1113 1.1 fredette * isn't easily divined.
1114 1.1 fredette *
1115 1.1 fredette * We handle the first problem by assuming that we
1116 1.1 fredette * will have to restart this system call, so we
1117 1.1 fredette * stuff the first four words of the original arguments
1118 1.1 fredette * back into the frame as arg0...arg3, which is where
1119 1.1 fredette * we found them in the first place. Any further
1120 1.1 fredette * arguments are (still) on the user's stack and the
1121 1.1 fredette * syscall code will fetch them from there (again).
1122 1.1 fredette *
1123 1.1 fredette * The program counter problem is addressed below.
1124 1.1 fredette */
1125 1.1 fredette frame->tf_arg0 = args[0];
1126 1.1 fredette frame->tf_arg1 = args[1];
1127 1.1 fredette frame->tf_arg2 = args[2];
1128 1.1 fredette frame->tf_arg3 = args[3];
1129 1.1 fredette
1130 1.1 fredette /*
1131 1.1 fredette * Some special handling for the syscall(2) and
1132 1.1 fredette * __syscall(2) system calls.
1133 1.1 fredette */
1134 1.1 fredette switch (code) {
1135 1.1 fredette case SYS_syscall:
1136 1.1 fredette code = *args;
1137 1.1 fredette args += 1;
1138 1.1 fredette break;
1139 1.1 fredette case SYS___syscall:
1140 1.1 fredette if (callp != sysent)
1141 1.1 fredette break;
1142 1.1 fredette /*
1143 1.1 fredette * NB: even though __syscall(2) takes a quad_t
1144 1.1 fredette * containing the system call number, because
1145 1.1 fredette * our argument copying word-swaps 64-bit arguments,
1146 1.1 fredette * the least significant word of that quad_t
1147 1.1 fredette * is the first word in the argument array.
1148 1.1 fredette */
1149 1.1 fredette code = *args;
1150 1.1 fredette args += 2;
1151 1.1 fredette }
1152 1.1 fredette
1153 1.1 fredette /*
1154 1.1 fredette * Stacks growing from lower addresses to higher
1155 1.1 fredette * addresses are not really such a good idea, because
1156 1.1 fredette * it makes it impossible to overlay a struct on top
1157 1.1 fredette * of C stack arguments (the arguments appear in
1158 1.1 fredette * reversed order).
1159 1.1 fredette *
1160 1.1 fredette * You can do the obvious thing (as locore.S does) and
1161 1.1 fredette * copy argument words one by one, laying them out in
1162 1.1 fredette * the "right" order in the destination buffer, but this
1163 1.1 fredette * ends up word-swapping multi-word arguments (like off_t).
1164 1.1 fredette *
1165 1.1 fredette * To compensate, we have some automatically-generated
1166 1.1 fredette * code that word-swaps these multi-word arguments.
1167 1.1 fredette * Right now the script that generates this code is
1168 1.1 fredette * in Perl, because I don't know awk.
1169 1.1 fredette *
1170 1.1 fredette * FIXME - this works only on native binaries and
1171 1.1 fredette * will probably screw up any and all emulation.
1172 1.1 fredette */
1173 1.1 fredette switch (code) {
1174 1.1 fredette /*
1175 1.1 fredette * BEGIN automatically generated
1176 1.1 fredette * by /home/fredette/project/hppa/makescargfix.pl
1177 1.1 fredette * do not edit!
1178 1.1 fredette */
1179 1.1 fredette case SYS_pread:
1180 1.1 fredette /*
1181 1.1 fredette * syscallarg(int) fd;
1182 1.1 fredette * syscallarg(void *) buf;
1183 1.1 fredette * syscallarg(size_t) nbyte;
1184 1.1 fredette * syscallarg(int) pad;
1185 1.1 fredette * syscallarg(off_t) offset;
1186 1.1 fredette */
1187 1.1 fredette tmp = args[4];
1188 1.1 fredette args[4] = args[4 + 1];
1189 1.1 fredette args[4 + 1] = tmp;
1190 1.1 fredette break;
1191 1.1 fredette case SYS_pwrite:
1192 1.1 fredette /*
1193 1.1 fredette * syscallarg(int) fd;
1194 1.1 fredette * syscallarg(const void *) buf;
1195 1.1 fredette * syscallarg(size_t) nbyte;
1196 1.1 fredette * syscallarg(int) pad;
1197 1.1 fredette * syscallarg(off_t) offset;
1198 1.1 fredette */
1199 1.1 fredette tmp = args[4];
1200 1.1 fredette args[4] = args[4 + 1];
1201 1.1 fredette args[4 + 1] = tmp;
1202 1.1 fredette break;
1203 1.1 fredette case SYS_mmap:
1204 1.1 fredette /*
1205 1.1 fredette * syscallarg(void *) addr;
1206 1.1 fredette * syscallarg(size_t) len;
1207 1.1 fredette * syscallarg(int) prot;
1208 1.1 fredette * syscallarg(int) flags;
1209 1.1 fredette * syscallarg(int) fd;
1210 1.1 fredette * syscallarg(long) pad;
1211 1.1 fredette * syscallarg(off_t) pos;
1212 1.1 fredette */
1213 1.1 fredette tmp = args[6];
1214 1.1 fredette args[6] = args[6 + 1];
1215 1.1 fredette args[6 + 1] = tmp;
1216 1.1 fredette break;
1217 1.1 fredette case SYS_lseek:
1218 1.1 fredette /*
1219 1.1 fredette * syscallarg(int) fd;
1220 1.1 fredette * syscallarg(int) pad;
1221 1.1 fredette * syscallarg(off_t) offset;
1222 1.1 fredette */
1223 1.1 fredette tmp = args[2];
1224 1.1 fredette args[2] = args[2 + 1];
1225 1.1 fredette args[2 + 1] = tmp;
1226 1.1 fredette break;
1227 1.1 fredette case SYS_truncate:
1228 1.1 fredette /*
1229 1.1 fredette * syscallarg(const char *) path;
1230 1.1 fredette * syscallarg(int) pad;
1231 1.1 fredette * syscallarg(off_t) length;
1232 1.1 fredette */
1233 1.1 fredette tmp = args[2];
1234 1.1 fredette args[2] = args[2 + 1];
1235 1.1 fredette args[2 + 1] = tmp;
1236 1.1 fredette break;
1237 1.1 fredette case SYS_ftruncate:
1238 1.1 fredette /*
1239 1.1 fredette * syscallarg(int) fd;
1240 1.1 fredette * syscallarg(int) pad;
1241 1.1 fredette * syscallarg(off_t) length;
1242 1.1 fredette */
1243 1.1 fredette tmp = args[2];
1244 1.1 fredette args[2] = args[2 + 1];
1245 1.1 fredette args[2 + 1] = tmp;
1246 1.1 fredette break;
1247 1.1 fredette case SYS_preadv:
1248 1.1 fredette /*
1249 1.1 fredette * syscallarg(int) fd;
1250 1.1 fredette * syscallarg(const struct iovec *) iovp;
1251 1.1 fredette * syscallarg(int) iovcnt;
1252 1.1 fredette * syscallarg(int) pad;
1253 1.1 fredette * syscallarg(off_t) offset;
1254 1.1 fredette */
1255 1.1 fredette tmp = args[4];
1256 1.1 fredette args[4] = args[4 + 1];
1257 1.1 fredette args[4 + 1] = tmp;
1258 1.1 fredette break;
1259 1.1 fredette case SYS_pwritev:
1260 1.1 fredette /*
1261 1.1 fredette * syscallarg(int) fd;
1262 1.1 fredette * syscallarg(const struct iovec *) iovp;
1263 1.1 fredette * syscallarg(int) iovcnt;
1264 1.1 fredette * syscallarg(int) pad;
1265 1.1 fredette * syscallarg(off_t) offset;
1266 1.1 fredette */
1267 1.1 fredette tmp = args[4];
1268 1.1 fredette args[4] = args[4 + 1];
1269 1.1 fredette args[4 + 1] = tmp;
1270 1.1 fredette break;
1271 1.1 fredette default:
1272 1.1 fredette break;
1273 1.1 fredette /*
1274 1.1 fredette * END automatically generated
1275 1.1 fredette * by /home/fredette/project/hppa/makescargfix.pl
1276 1.1 fredette * do not edit!
1277 1.1 fredette */
1278 1.1 fredette }
1279 1.1 fredette
1280 1.1 fredette #ifdef USERTRACE
1281 1.1 fredette if (0) {
1282 1.35 skrll user_backtrace(frame, l, -1);
1283 1.1 fredette frame->tf_ipsw |= PSW_R;
1284 1.1 fredette frame->tf_rctr = 0;
1285 1.1 fredette printf("r %08x", frame->tf_iioq_head);
1286 1.1 fredette rctr_next_iioq = frame->tf_iioq_head + 4;
1287 1.1 fredette }
1288 1.1 fredette #endif
1289 1.1 fredette
1290 1.1 fredette if (code < 0 || code >= nsys)
1291 1.1 fredette callp += p->p_emul->e_nosys; /* bad syscall # */
1292 1.1 fredette else
1293 1.1 fredette callp += code;
1294 1.1 fredette
1295 1.54 dsl if ((error = trace_enter(code, args, callp->sy_narg)) != 0)
1296 1.27 christos goto out;
1297 1.1 fredette
1298 1.1 fredette rval[0] = 0;
1299 1.1 fredette rval[1] = 0;
1300 1.27 christos error = (*callp->sy_call)(l, args, rval);
1301 1.27 christos out:
1302 1.27 christos switch (error) {
1303 1.1 fredette case 0:
1304 1.9 chs l = curlwp; /* changes on exec() */
1305 1.9 chs frame = l->l_md.md_regs;
1306 1.1 fredette frame->tf_ret0 = rval[0];
1307 1.1 fredette frame->tf_ret1 = rval[1];
1308 1.1 fredette frame->tf_t1 = 0;
1309 1.1 fredette break;
1310 1.1 fredette case ERESTART:
1311 1.1 fredette /*
1312 1.1 fredette * Now we have to wind back the instruction
1313 1.1 fredette * offset queue to the point where the system
1314 1.1 fredette * call will be made again. This is inherently
1315 1.1 fredette * tied to the SYSCALL macro.
1316 1.1 fredette *
1317 1.1 fredette * Currently, the part of the SYSCALL macro
1318 1.1 fredette * that we want to rerun reads as:
1319 1.1 fredette *
1320 1.1 fredette * ldil L%SYSCALLGATE, r1
1321 1.1 fredette * ble 4(sr7, r1)
1322 1.1 fredette * ldi __CONCAT(SYS_,x), t1
1323 1.52 skrll * comb,<> %r0, %t1, __cerror
1324 1.1 fredette *
1325 1.1 fredette * And our offset queue head points to the
1326 1.52 skrll * comb instruction. So we need to
1327 1.1 fredette * subtract twelve to reach the ldil.
1328 1.1 fredette */
1329 1.1 fredette frame->tf_iioq_head -= 12;
1330 1.1 fredette frame->tf_iioq_tail = frame->tf_iioq_head + 4;
1331 1.1 fredette break;
1332 1.1 fredette case EJUSTRETURN:
1333 1.1 fredette p = curproc;
1334 1.1 fredette break;
1335 1.1 fredette default:
1336 1.1 fredette if (p->p_emul->e_errno)
1337 1.1 fredette error = p->p_emul->e_errno[error];
1338 1.1 fredette frame->tf_t1 = error;
1339 1.1 fredette break;
1340 1.1 fredette }
1341 1.2 christos
1342 1.54 dsl trace_exit(code, rval, error);
1343 1.2 christos
1344 1.9 chs userret(l, frame->tf_iioq_head, 0);
1345 1.1 fredette #ifdef DEBUG
1346 1.26 chs frame_sanity_check(0xdead05, 0, frame, l);
1347 1.1 fredette #endif /* DEBUG */
1348 1.9 chs }
1349 1.9 chs
1350 1.9 chs /*
1351 1.9 chs * Start a new LWP
1352 1.9 chs */
1353 1.9 chs void
1354 1.14 chs startlwp(void *arg)
1355 1.9 chs {
1356 1.9 chs int err;
1357 1.9 chs ucontext_t *uc = arg;
1358 1.9 chs struct lwp *l = curlwp;
1359 1.9 chs
1360 1.9 chs err = cpu_setmcontext(l, &uc->uc_mcontext, uc->uc_flags);
1361 1.9 chs #if DIAGNOSTIC
1362 1.9 chs if (err) {
1363 1.9 chs printf("Error %d from cpu_setmcontext.", err);
1364 1.9 chs }
1365 1.9 chs #endif
1366 1.9 chs pool_put(&lwp_uc_pool, uc);
1367 1.9 chs
1368 1.9 chs userret(l, l->l_md.md_regs->tf_iioq_head, 0);
1369 1.9 chs }
1370 1.55.2.2 wrstuden
1371 1.55.2.2 wrstuden /*
1372 1.55.2.2 wrstuden * XXX This is a terrible name.
1373 1.55.2.2 wrstuden */
1374 1.55.2.2 wrstuden void
1375 1.55.2.2 wrstuden upcallret(struct lwp *l)
1376 1.55.2.2 wrstuden {
1377 1.55.2.2 wrstuden userret(l, l->l_md.md_regs->tf_iioq_head, 0);
1378 1.55.2.2 wrstuden }
1379