sig_machdep.c revision 1.36
11.36Srmind/* $NetBSD: sig_machdep.c,v 1.36 2009/11/27 03:23:12 rmind Exp $ */ 21.1Skleink 31.1Skleink/* 41.1Skleink * Copyright (C) 1995, 1996 Wolfgang Solfrank. 51.1Skleink * Copyright (C) 1995, 1996 TooLs GmbH. 61.1Skleink * All rights reserved. 71.1Skleink * 81.1Skleink * Redistribution and use in source and binary forms, with or without 91.1Skleink * modification, are permitted provided that the following conditions 101.1Skleink * are met: 111.1Skleink * 1. Redistributions of source code must retain the above copyright 121.1Skleink * notice, this list of conditions and the following disclaimer. 131.1Skleink * 2. Redistributions in binary form must reproduce the above copyright 141.1Skleink * notice, this list of conditions and the following disclaimer in the 151.1Skleink * documentation and/or other materials provided with the distribution. 161.1Skleink * 3. All advertising materials mentioning features or use of this software 171.1Skleink * must display the following acknowledgement: 181.1Skleink * This product includes software developed by TooLs GmbH. 191.1Skleink * 4. The name of TooLs GmbH may not be used to endorse or promote products 201.1Skleink * derived from this software without specific prior written permission. 211.1Skleink * 221.1Skleink * THIS SOFTWARE IS PROVIDED BY TOOLS GMBH ``AS IS'' AND ANY EXPRESS OR 231.1Skleink * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES 241.1Skleink * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. 251.1Skleink * IN NO EVENT SHALL TOOLS GMBH BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, 261.1Skleink * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, 271.1Skleink * PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; 281.1Skleink * OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, 291.1Skleink * WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR 301.1Skleink * OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF 311.1Skleink * ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 321.1Skleink */ 331.12Slukem 341.12Slukem#include <sys/cdefs.h> 351.36Srmind__KERNEL_RCSID(0, "$NetBSD: sig_machdep.c,v 1.36 2009/11/27 03:23:12 rmind Exp $"); 361.2Stsubai 371.8Sthorpej#include "opt_ppcarch.h" 381.22Smatt#include "opt_altivec.h" 391.1Skleink 401.1Skleink#include <sys/param.h> 411.1Skleink#include <sys/mount.h> 421.1Skleink#include <sys/proc.h> 431.1Skleink#include <sys/syscallargs.h> 441.1Skleink#include <sys/systm.h> 451.8Sthorpej#include <sys/ucontext.h> 461.1Skleink 471.36Srmind#include <uvm/uvm_extern.h> 481.36Srmind 491.22Smatt#include <powerpc/fpu.h> 501.22Smatt#include <powerpc/altivec.h> 511.8Sthorpej 521.1Skleink/* 531.1Skleink * Send a signal to process. 541.1Skleink */ 551.1Skleinkvoid 561.34Shesendsig_siginfo(const ksiginfo_t *ksi, const sigset_t *mask) 571.1Skleink{ 581.13Smatt struct lwp * const l = curlwp; 591.13Smatt struct proc * const p = l->l_proc; 601.13Smatt struct trapframe * const tf = trapframe(l); 611.27Sad struct sigaltstack *ss = &l->l_sigstk; 621.13Smatt const struct sigact_sigdesc *sd = 631.13Smatt &p->p_sigacts->sa_sigdesc[ksi->ksi_signo]; 641.13Smatt ucontext_t uc; 651.13Smatt vaddr_t sp, sip, ucp; 661.27Sad int onstack, error; 671.1Skleink 681.1Skleink /* Do we need to jump onto the signal stack? */ 691.13Smatt onstack = (ss->ss_flags & (SS_DISABLE | SS_ONSTACK)) == 0 && 701.13Smatt (sd->sd_sigact.sa_flags & SA_ONSTACK) != 0; 711.1Skleink 721.13Smatt /* Find top of stack. */ 731.13Smatt sp = (onstack ? (vaddr_t)ss->ss_sp + ss->ss_size : tf->fixreg[1]); 741.13Smatt sp &= ~(CALLFRAMELEN-1); 751.13Smatt 761.13Smatt /* Allocate space for the ucontext. */ 771.13Smatt sp -= sizeof(ucontext_t); 781.13Smatt ucp = sp; 791.13Smatt 801.13Smatt /* Allocate space for the siginfo. */ 811.13Smatt sp -= sizeof(siginfo_t); 821.13Smatt sip = sp; 831.13Smatt 841.13Smatt sp &= ~(CALLFRAMELEN-1); 851.1Skleink 861.1Skleink /* Save register context. */ 871.13Smatt uc.uc_flags = _UC_SIGMASK; 881.13Smatt uc.uc_sigmask = *mask; 891.30Spooka uc.uc_link = l->l_ctxlink; 901.13Smatt memset(&uc.uc_stack, 0, sizeof(uc.uc_stack)); 911.27Sad sendsig_reset(l, ksi->ksi_signo); 921.32Sad mutex_exit(p->p_lock); 931.13Smatt cpu_getmcontext(l, &uc.uc_mcontext, &uc.uc_flags); 941.1Skleink 951.1Skleink /* 961.13Smatt * Copy the siginfo and ucontext onto the user's stack. 971.1Skleink */ 981.29Schristos error = (copyout(&ksi->ksi_info, (void *)sip, sizeof(ksi->ksi_info)) != 0 || 991.29Schristos copyout(&uc, (void *)ucp, sizeof(uc)) != 0); 1001.32Sad mutex_enter(p->p_lock); 1011.27Sad 1021.27Sad if (error) { 1031.1Skleink /* 1041.1Skleink * Process has trashed its stack; give it an illegal 1051.14Smatt * instruction to halt it in its tracks. 1061.1Skleink */ 1071.8Sthorpej sigexit(l, SIGILL); 1081.1Skleink /* NOTREACHED */ 1091.1Skleink } 1101.1Skleink 1111.1Skleink /* 1121.7Sthorpej * Build context to run handler in. Note the trampoline version 1131.7Sthorpej * numbers are coordinated with machine-dependent code in libc. 1141.1Skleink */ 1151.13Smatt switch (sd->sd_vers) { 1161.13Smatt case 2: /* siginfo sigtramp */ 1171.14Smatt tf->fixreg[1] = (register_t)sp - CALLFRAMELEN; 1181.17Smatt tf->fixreg[3] = (register_t)ksi->ksi_signo; 1191.14Smatt tf->fixreg[4] = (register_t)sip; 1201.14Smatt tf->fixreg[5] = (register_t)ucp; 1211.14Smatt /* Preserve ucp across call to signal function */ 1221.14Smatt tf->fixreg[30] = (register_t)ucp; 1231.14Smatt tf->lr = (register_t)sd->sd_tramp; 1241.14Smatt tf->srr0 = (register_t)sd->sd_sigact.sa_handler; 1251.7Sthorpej break; 1261.7Sthorpej 1271.7Sthorpej default: 1281.14Smatt goto nosupport; 1291.7Sthorpej } 1301.1Skleink 1311.1Skleink /* Remember that we're now on the signal stack. */ 1321.1Skleink if (onstack) 1331.13Smatt ss->ss_flags |= SS_ONSTACK; 1341.14Smatt return; 1351.14Smatt 1361.14Smatt nosupport: 1371.14Smatt /* Don't know what trampoline version; kill it. */ 1381.14Smatt printf("sendsig_siginfo(sig %d): bad version %d\n", 1391.17Smatt ksi->ksi_signo, sd->sd_vers); 1401.14Smatt sigexit(l, SIGILL); 1411.14Smatt /* NOTREACHED */ 1421.8Sthorpej} 1431.8Sthorpej 1441.8Sthorpejvoid 1451.13Smattcpu_getmcontext(struct lwp *l, mcontext_t *mcp, unsigned int *flagp) 1461.8Sthorpej{ 1471.8Sthorpej const struct trapframe *tf = trapframe(l); 1481.10Smatt __greg_t *gr = mcp->__gregs; 1491.22Smatt#if defined(PPC_HAVE_FPU) || defined(ALTIVEC) 1501.35Srmind struct pcb *pcb = lwp_getpcb(l); 1511.8Sthorpej#endif 1521.8Sthorpej 1531.8Sthorpej /* Save GPR context. */ 1541.10Smatt (void)memcpy(gr, &tf->fixreg, 32 * sizeof (gr[0])); /* GR0-31 */ 1551.10Smatt gr[_REG_CR] = tf->cr; 1561.10Smatt gr[_REG_LR] = tf->lr; 1571.10Smatt gr[_REG_PC] = tf->srr0; 1581.22Smatt gr[_REG_MSR] = tf->srr1 & PSL_USERSRR1; 1591.21Smatt#ifdef PPC_HAVE_FPU 1601.21Smatt gr[_REG_MSR] |= pcb->pcb_flags & (PCB_FE0|PCB_FE1); 1611.21Smatt#endif 1621.22Smatt#ifdef ALTIVEC 1631.22Smatt gr[_REG_MSR] |= pcb->pcb_flags & PCB_ALTIVEC ? PSL_VEC : 0; 1641.22Smatt#endif 1651.10Smatt gr[_REG_CTR] = tf->ctr; 1661.10Smatt gr[_REG_XER] = tf->xer; 1671.11Smatt#ifdef PPC_OEA 1681.11Smatt gr[_REG_MQ] = tf->tf_xtra[TF_MQ]; 1691.11Smatt#else 1701.11Smatt gr[_REG_MQ] = 0; 1711.11Smatt#endif 1721.8Sthorpej *flagp |= _UC_CPU; 1731.8Sthorpej 1741.8Sthorpej#ifdef PPC_HAVE_FPU 1751.8Sthorpej /* Save FPR context, if any. */ 1761.8Sthorpej if ((pcb->pcb_flags & PCB_FPU) != 0) { 1771.8Sthorpej /* If we're the FPU owner, dump its context to the PCB first. */ 1781.8Sthorpej if (pcb->pcb_fpcpu) 1791.23Smatt save_fpu_lwp(l, FPU_SAVE); 1801.23Smatt (void)memcpy(mcp->__fpregs.__fpu_regs, pcb->pcb_fpu.fpreg, 1811.8Sthorpej sizeof (mcp->__fpregs.__fpu_regs)); 1821.8Sthorpej mcp->__fpregs.__fpu_fpscr = 1831.8Sthorpej ((int *)&pcb->pcb_fpu.fpscr)[_QUAD_LOWWORD]; 1841.8Sthorpej mcp->__fpregs.__fpu_valid = 1; 1851.8Sthorpej *flagp |= _UC_FPU; 1861.8Sthorpej } else 1871.8Sthorpej#endif 1881.13Smatt memset(&mcp->__fpregs, 0, sizeof(mcp->__fpregs)); 1891.8Sthorpej 1901.22Smatt#ifdef ALTIVEC 1911.22Smatt /* Save AltiVec context, if any. */ 1921.22Smatt if ((pcb->pcb_flags & PCB_ALTIVEC) != 0) { 1931.22Smatt /* 1941.22Smatt * If we're the AltiVec owner, dump its context 1951.22Smatt * to the PCB first. 1961.22Smatt */ 1971.22Smatt if (pcb->pcb_veccpu) 1981.23Smatt save_vec_lwp(l, ALTIVEC_SAVE); 1991.22Smatt (void)memcpy(mcp->__vrf.__vrs, pcb->pcb_vr.vreg, 2001.22Smatt sizeof (mcp->__vrf.__vrs)); 2011.22Smatt mcp->__vrf.__vscr = pcb->pcb_vr.vscr; 2021.22Smatt mcp->__vrf.__vrsave = pcb->pcb_vr.vrsave; 2031.22Smatt *flagp |= _UC_POWERPC_VEC; 2041.22Smatt } else 2051.22Smatt#endif 2061.22Smatt memset(&mcp->__vrf, 0, sizeof (mcp->__vrf)); 2071.8Sthorpej} 2081.8Sthorpej 2091.8Sthorpejint 2101.13Smattcpu_setmcontext(struct lwp *l, const mcontext_t *mcp, unsigned int flags) 2111.8Sthorpej{ 2121.8Sthorpej struct trapframe *tf = trapframe(l); 2131.26She const __greg_t *gr = mcp->__gregs; 2141.8Sthorpej#ifdef PPC_HAVE_FPU 2151.35Srmind struct pcb *pcb = lwp_getpcb(l); 2161.8Sthorpej#endif 2171.8Sthorpej 2181.8Sthorpej /* Restore GPR context, if any. */ 2191.8Sthorpej if (flags & _UC_CPU) { 2201.21Smatt#ifdef PPC_HAVE_FPU 2211.21Smatt /* 2221.21Smatt * Always save the FP exception mode in the PCB. 2231.21Smatt */ 2241.21Smatt pcb->pcb_flags &= ~(PCB_FE0|PCB_FE1); 2251.21Smatt pcb->pcb_flags |= gr[_REG_MSR] & (PCB_FE0|PCB_FE1); 2261.21Smatt#endif 2271.21Smatt 2281.10Smatt (void)memcpy(&tf->fixreg, gr, 32 * sizeof (gr[0])); 2291.10Smatt tf->cr = gr[_REG_CR]; 2301.10Smatt tf->lr = gr[_REG_LR]; 2311.10Smatt tf->srr0 = gr[_REG_PC]; 2321.26She /* 2331.26She * Accept all user-settable bits without complaint; 2341.26She * userland should not need to know the machine-specific 2351.26She * MSR value. 2361.26She */ 2371.26She tf->srr1 = (gr[_REG_MSR] & PSL_USERMOD) | PSL_USERSET; 2381.10Smatt tf->ctr = gr[_REG_CTR]; 2391.10Smatt tf->xer = gr[_REG_XER]; 2401.11Smatt#ifdef PPC_OEA 2411.11Smatt tf->tf_xtra[TF_MQ] = gr[_REG_MQ]; 2421.11Smatt#endif 2431.8Sthorpej } 2441.8Sthorpej 2451.22Smatt#ifdef PPC_HAVE_FPU /* Restore FPR context, if any. */ 2461.8Sthorpej if ((flags & _UC_FPU) && mcp->__fpregs.__fpu_valid != 0) { 2471.23Smatt /* we don't need to save the state, just drop it */ 2481.23Smatt save_fpu_lwp(l, FPU_DISCARD); 2491.23Smatt (void)memcpy(&pcb->pcb_fpu.fpreg, &mcp->__fpregs.__fpu_regs, 2501.23Smatt sizeof (pcb->pcb_fpu.fpreg)); 2511.20Smatt ((int *)&pcb->pcb_fpu.fpscr)[_QUAD_LOWWORD] = 2521.20Smatt mcp->__fpregs.__fpu_fpscr; 2531.8Sthorpej } 2541.8Sthorpej#endif 2551.8Sthorpej 2561.22Smatt#ifdef ALTIVEC 2571.22Smatt /* Restore AltiVec context, if any. */ 2581.22Smatt if (flags & _UC_POWERPC_VEC) { 2591.23Smatt /* we don't need to save the state, just drop it */ 2601.23Smatt save_vec_lwp(l, ALTIVEC_DISCARD); 2611.22Smatt (void)memcpy(pcb->pcb_vr.vreg, &mcp->__vrf.__vrs, 2621.22Smatt sizeof (pcb->pcb_vr.vreg)); 2631.22Smatt pcb->pcb_vr.vscr = mcp->__vrf.__vscr; 2641.22Smatt pcb->pcb_vr.vrsave = mcp->__vrf.__vrsave; 2651.22Smatt } 2661.22Smatt#endif 2671.22Smatt 2681.8Sthorpej return (0); 2691.1Skleink} 270