167 lines
5.0 KiB
C
167 lines
5.0 KiB
C
/* The kernel call that is implemented in this file:
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* m_type: SYS_SIGSEND
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*
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* The parameters for this kernel call are:
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* m_sigcalls.endpt # process to call signal handler
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* m_sigcalls.sigctx # pointer to sigcontext structure
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*
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*/
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#include "kernel/system.h"
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#include <signal.h>
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#include <string.h>
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#if USE_SIGSEND
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/*===========================================================================*
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* do_sigsend *
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*===========================================================================*/
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int do_sigsend(struct proc * caller, message * m_ptr)
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{
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/* Handle sys_sigsend, POSIX-style signal handling. */
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struct sigmsg smsg;
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register struct proc *rp;
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struct sigframe_sigcontext fr, *frp;
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int proc_nr, r;
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#if defined(__i386__)
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reg_t new_fp;
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#endif
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if (!isokendpt(m_ptr->m_sigcalls.endpt, &proc_nr)) return EINVAL;
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if (iskerneln(proc_nr)) return EPERM;
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rp = proc_addr(proc_nr);
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/* Get the sigmsg structure into our address space. */
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if ((r = data_copy_vmcheck(caller, caller->p_endpoint,
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(vir_bytes)m_ptr->m_sigcalls.sigctx, KERNEL,
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(vir_bytes)&smsg, (phys_bytes) sizeof(struct sigmsg))) != OK)
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return r;
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/* WARNING: the following code may be run more than once even for a single
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* signal delivery. Do not change registers here. See the comment below.
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*/
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/* Compute the user stack pointer where sigframe will start. */
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smsg.sm_stkptr = arch_get_sp(rp);
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frp = (struct sigframe_sigcontext *) smsg.sm_stkptr - 1;
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/* Copy the registers to the sigcontext structure. */
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memset(&fr, 0, sizeof(fr));
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fr.sf_scp = &frp->sf_sc;
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#if defined(__i386__)
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fr.sf_sc.sc_gs = rp->p_reg.gs;
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fr.sf_sc.sc_fs = rp->p_reg.fs;
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fr.sf_sc.sc_es = rp->p_reg.es;
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fr.sf_sc.sc_ds = rp->p_reg.ds;
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fr.sf_sc.sc_edi = rp->p_reg.di;
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fr.sf_sc.sc_esi = rp->p_reg.si;
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fr.sf_sc.sc_ebp = rp->p_reg.fp;
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fr.sf_sc.sc_ebx = rp->p_reg.bx;
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fr.sf_sc.sc_edx = rp->p_reg.dx;
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fr.sf_sc.sc_ecx = rp->p_reg.cx;
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fr.sf_sc.sc_eax = rp->p_reg.retreg;
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fr.sf_sc.sc_eip = rp->p_reg.pc;
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fr.sf_sc.sc_cs = rp->p_reg.cs;
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fr.sf_sc.sc_eflags = rp->p_reg.psw;
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fr.sf_sc.sc_esp = rp->p_reg.sp;
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fr.sf_sc.sc_ss = rp->p_reg.ss;
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fr.sf_fp = rp->p_reg.fp;
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fr.sf_signum = smsg.sm_signo;
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new_fp = (reg_t) &frp->sf_fp;
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fr.sf_scpcopy = fr.sf_scp;
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fr.sf_ra_sigreturn = smsg.sm_sigreturn;
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fr.sf_ra= rp->p_reg.pc;
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fr.sf_sc.trap_style = rp->p_seg.p_kern_trap_style;
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if (fr.sf_sc.trap_style == KTS_NONE) {
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printf("do_sigsend: sigsend an unsaved process\n");
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return EINVAL;
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}
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if (proc_used_fpu(rp)) {
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/* save the FPU context before saving it to the sig context */
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save_fpu(rp);
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memcpy(&fr.sf_sc.sc_fpu_state, rp->p_seg.fpu_state, FPU_XFP_SIZE);
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}
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#endif
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#if defined(__arm__)
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fr.sf_sc.sc_spsr = rp->p_reg.psr;
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fr.sf_sc.sc_r0 = rp->p_reg.retreg;
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fr.sf_sc.sc_r1 = rp->p_reg.r1;
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fr.sf_sc.sc_r2 = rp->p_reg.r2;
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fr.sf_sc.sc_r3 = rp->p_reg.r3;
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fr.sf_sc.sc_r4 = rp->p_reg.r4;
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fr.sf_sc.sc_r5 = rp->p_reg.r5;
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fr.sf_sc.sc_r6 = rp->p_reg.r6;
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fr.sf_sc.sc_r7 = rp->p_reg.r7;
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fr.sf_sc.sc_r8 = rp->p_reg.r8;
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fr.sf_sc.sc_r9 = rp->p_reg.r9;
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fr.sf_sc.sc_r10 = rp->p_reg.r10;
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fr.sf_sc.sc_r11 = rp->p_reg.fp;
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fr.sf_sc.sc_r12 = rp->p_reg.r12;
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fr.sf_sc.sc_usr_sp = rp->p_reg.sp;
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fr.sf_sc.sc_usr_lr = rp->p_reg.lr;
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fr.sf_sc.sc_svc_lr = 0; /* ? */
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fr.sf_sc.sc_pc = rp->p_reg.pc; /* R15 */
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#endif
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/* Finish the sigcontext initialization. */
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fr.sf_sc.sc_mask = smsg.sm_mask;
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fr.sf_sc.sc_flags = rp->p_misc_flags & MF_FPU_INITIALIZED;
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fr.sf_sc.sc_magic = SC_MAGIC;
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/* Initialize the sigframe structure. */
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fpu_sigcontext(rp, &fr, &fr.sf_sc);
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/* Copy the sigframe structure to the user's stack. */
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if ((r = data_copy_vmcheck(caller, KERNEL, (vir_bytes)&fr,
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m_ptr->m_sigcalls.endpt, (vir_bytes)frp,
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(vir_bytes)sizeof(struct sigframe_sigcontext))) != OK)
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return r;
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/* WARNING: up to the statement above, the code may run multiple times, since
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* copying out the frame/context may fail with VMSUSPEND the first time. For
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* that reason, changes to process registers *MUST* be deferred until after
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* this last copy -- otherwise, these changes will be made several times,
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* possibly leading to corrupted process state.
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*/
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/* Reset user registers to execute the signal handler. */
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rp->p_reg.sp = (reg_t) frp;
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rp->p_reg.pc = (reg_t) smsg.sm_sighandler;
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#if defined(__i386__)
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rp->p_reg.fp = new_fp;
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#elif defined(__arm__)
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/* use the ARM link register to set the return address from the signal
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* handler
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*/
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rp->p_reg.lr = (reg_t) smsg.sm_sigreturn;
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if(rp->p_reg.lr & 1) { printf("sigsend: LSB LR makes no sense.\n"); }
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/* pass signal handler parameters in registers */
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rp->p_reg.retreg = (reg_t) smsg.sm_signo;
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rp->p_reg.r1 = 0; /* sf_code */
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rp->p_reg.r2 = (reg_t) fr.sf_scp;
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rp->p_misc_flags |= MF_CONTEXT_SET;
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#endif
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/* Signal handler should get clean FPU. */
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rp->p_misc_flags &= ~MF_FPU_INITIALIZED;
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if(!RTS_ISSET(rp, RTS_PROC_STOP)) {
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printf("system: warning: sigsend a running process\n");
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printf("caller stack: ");
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proc_stacktrace(caller);
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}
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return OK;
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}
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#endif /* USE_SIGSEND */
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