420 lines
10 KiB
C
420 lines
10 KiB
C
/*
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* Empire - A multi-player, client/server Internet based war game.
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* Copyright (C) 1986-2004, Dave Pare, Jeff Bailey, Thomas Ruschak,
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* Ken Stevens, Steve McClure
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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*
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* ---
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*
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* See the "LEGAL", "LICENSE", "CREDITS" and "README" files for all the
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* related information and legal notices. It is expected that any future
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* projects/authors will amend these files as needed.
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*
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* ---
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*
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* arch.c: architecture-dependant process context code
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*
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* Known contributors to this file:
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* Dave Pare, 1994
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* Steve McClure, 1994-2000
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*/
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#include "prototypes.h"
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#if defined(_EMPTH_LWP)
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#if (!defined(AIX32))
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#include "lwp.h"
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#include "lwpint.h"
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#if defined(hpc)
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static struct lwpProc *tempcontext;
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struct lwpProc *initcontext = NULL;
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int startpoint;
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static void
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startcontext(void)
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{
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int space[10000];
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int x;
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startpoint = (void *)&x;
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if (!setjmp(initcontext->context))
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longjmp(tempcontext->context, 1);
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if (!setjmp(tempcontext->context))
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longjmp(LwpCurrent->context, 1);
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lwpEntryPoint();
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}
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void
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lwpInitContext(struct lwpProc *newp, void *sp)
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{
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struct lwpProc holder;
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int endpoint;
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if (initcontext == NULL) {
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initcontext = (struct lwpProc *)malloc(sizeof(struct lwpProc));
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tempcontext = &holder;
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if (!setjmp(tempcontext->context))
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startcontext();
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}
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tempcontext = newp;
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endpoint = &endpoint;
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if (endpoint < startpoint) {
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if (!setjmp(LwpCurrent->context))
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longjmp(initcontext->context, 1);
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} else {
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LwpCurrent->size = endpoint - startpoint;
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LwpCurrent->sbtm = realloc(LwpCurrent->sbtm, LwpCurrent->size);
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memcpy(LwpCurrent->sbtm, startpoint, LwpCurrent->size);
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if (!setjmp(LwpCurrent->context))
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longjmp(initcontext->context, 1);
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memcpy(startpoint, LwpCurrent->sbtm, LwpCurrent->size);
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}
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}
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#elif defined(hpux)
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void
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lwpInitContext(volatile struct lwpProc *volatile newp, void *sp)
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{
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static jmp_buf *cpp;
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if (!lwpSave(LwpCurrent->context)) {
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cpp = (jmp_buf *) & newp->context;
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asm volatile ("ldw %0, %%sp"::"o" (sp));
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if (!lwpSave(*cpp))
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lwpRestore(LwpCurrent->context);
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lwpEntryPoint();
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}
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}
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int
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lwpSave(jmp_buf jb)
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{
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/* save stack pointer and return program counter */
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asm("stw %sp, 4(%arg0)");
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asm("stw %rp, 8(%arg0)");
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/* save "callee save" registers */
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asm("stw %r3, 12(%arg0)");
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asm("stw %r4, 16(%arg0)");
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asm("stw %r5, 20(%arg0)");
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asm("stw %r6, 24(%arg0)");
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asm("stw %r7, 28(%arg0)");
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asm("stw %r8, 32(%arg0)");
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asm("stw %r9, 36(%arg0)");
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asm("stw %r10, 40(%arg0)");
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asm("stw %r11, 44(%arg0)");
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asm("stw %r12, 48(%arg0)");
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asm("stw %r13, 52(%arg0)");
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asm("stw %r14, 56(%arg0)");
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asm("stw %r15, 60(%arg0)");
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asm("stw %r16, 64(%arg0)");
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asm("stw %r17, 68(%arg0)");
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asm("stw %r18, 72(%arg0)");
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/* save "callee save" space register */
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asm volatile ("mfsp %sr3, %r1");
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asm("stw %r1, 0(%arg0)");
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/* indicate "true return" from saved() */
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asm("ldi 0, %ret0");
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asm(".LABEL _comefrom_");
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}
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void
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lwpRestore(jmp_buf jb)
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{
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/* restore stack pointer and program counter */
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asm volatile ("ldw 4(%arg0), %sp");
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asm volatile ("ldw 8(%arg0), %rp");
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/* restore "callee save" space register */
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asm volatile ("ldw 0(%arg0), %r1");
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asm volatile ("mtsp %r1, %sr3");
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/* restore "callee save" registers */
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asm volatile ("ldw 12(%arg0), %r3");
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asm volatile ("ldw 16(%arg0), %r4");
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asm volatile ("ldw 20(%arg0), %r5");
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asm volatile ("ldw 24(%arg0), %r6");
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asm volatile ("ldw 28(%arg0), %r7");
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asm volatile ("ldw 32(%arg0), %r8");
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asm volatile ("ldw 36(%arg0), %r9");
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asm volatile ("ldw 40(%arg0), %r10");
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asm volatile ("ldw 44(%arg0), %r11");
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asm volatile ("ldw 48(%arg0), %r12");
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asm volatile ("ldw 52(%arg0), %r13");
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asm volatile ("ldw 56(%arg0), %r14");
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asm volatile ("ldw 60(%arg0), %r15");
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asm volatile ("ldw 64(%arg0), %r16");
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asm volatile ("ldw 68(%arg0), %r17");
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asm volatile ("ldw 72(%arg0), %r18");
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/* warp to saved() to unwind the frame correctly */
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asm volatile ("bl _comefrom_, %r0");
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asm volatile ("ldi 1, %ret0");
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}
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#elif defined(BSD386)
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void
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lwpInitContext(struct lwpProc *newp, void *sp)
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{
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newp->context[2] = (int)sp;
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newp->context[0] = (int)lwpEntryPoint;
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}
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#elif defined(FBSD)
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void
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lwpInitContext(struct lwpProc *newp, void *sp)
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{
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setjmp(newp->context);
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newp->context->_jb[2] = (int)sp;
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newp->context->_jb[3] = (int)sp;
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newp->context->_jb[0] = (int)lwpEntryPoint;
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}
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#elif defined(__linux__)
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void
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lwpInitContext(struct lwpProc *newp, void *sp)
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{
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#if defined(__GLIBC__) && (__GLIBC__ >= 2)
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#if defined(__PPC__)
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newp->context->__jmpbuf[JB_GPR1] = (int)sp;
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newp->context->__jmpbuf[JB_LR] = (int)lwpEntryPoint;
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#else
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newp->context->__jmpbuf[JB_SP] = (int)sp;
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newp->context->__jmpbuf[JB_BP] = (int)sp;
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newp->context->__jmpbuf[JB_PC] = (int)lwpEntryPoint;
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#endif
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#else
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newp->context->__sp = sp;
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newp->context->__bp = sp;
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newp->context->__pc = (void *)lwpEntryPoint;
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#endif
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}
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#elif defined(SUN3)
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void
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lwpInitContext(struct lwpProc *newp, void *sp)
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{
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newp->context[2] = (int)sp;
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newp->context[3] = (int)lwpEntryPoint;
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}
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#elif defined(__vax)
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#include <stdio.h>
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void
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lwpInitContext(struct lwpProc *newp, void *stack)
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{
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int *sp = (int *)stack;
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int *fp = 0;
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/* Build root frame on new stack for lwpEntryPoint */
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*--sp = 0; /* pc */
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*--sp = (int)fp; /* fp */
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*--sp = 0; /* ap */
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*--sp = 0; /* psw */
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*--sp = 0; /* condition handler */
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fp = sp;
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/* Build stack frame to return from. */
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*--sp = (int)lwpEntryPoint + 2; /* pc */
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*--sp = (int)fp; /* fp */
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*--sp = 0; /* ap */
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*--sp = 0; /* psw */
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*--sp = 0; /* condition handler */
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fp = sp;
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/* Fill in the context */
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/* Note: This is *not* how libc fills out jump buffers. */
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newp->context[0] = 0; /* r6 */
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newp->context[1] = 0;
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newp->context[2] = 0;
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newp->context[3] = 0;
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newp->context[4] = 0;
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newp->context[5] = 0; /* r11 */
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newp->context[6] = 0; /* ap */
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newp->context[7] = (int)fp; /* fp */
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return;
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}
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int
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lwpSave(jmp_buf jb)
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{
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asm("movl 4(ap), r0"); /* r0 = &jb */
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asm("movl r6, (r0)"); /* jb[0] = r6 */
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asm("movl r7, 4(r0)");
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asm("movl r8, 8(r0)");
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asm("movl r9, 12(r0)");
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asm("movl r10, 16(r0)");
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asm("movl r11, 20(r0)");
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asm("movl ap, 24(r0)");
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asm("movl fp, 28(r0)"); /* jb[7] = fp */
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return 0;
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}
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void
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lwpRestore(jmp_buf jb)
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{
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asm("movl 4(ap), r0"); /* r0 = &jb */
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asm("movl (r0), r6"); /* r6 = jb[0] */
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asm("movl 4(r0), r7");
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asm("movl 8(r0), r8");
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asm("movl 12(r0), r9");
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asm("movl 16(r0), r10");
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asm("movl 20(r0), r11");
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asm("movl 24(r0), ap");
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asm("movl 28(r0), fp"); /* fp = jb[7] */
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asm("movl $1, r0"); /* faked return 1 from lwpSave() */
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asm("ret");
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return;
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}
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#elif defined(SUN4)
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void
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lwpInitContext(struct lwpProc *newp, void *sp)
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{
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static jmp_buf *cpp;
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memset(newp->context, 0, sizeof(newp->context));
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newp->context[0] = (int)sp;
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/* preserve cpp for new context */
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cpp = (jmp_buf *) & newp->context;
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if (!_setjmp(LwpCurrent->context)) {
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/* create new context */
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/* flush registers */
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asm("ta 0x03");
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/* %o0 <- newp */
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asm("ld [%fp+0x44], %o0");
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/* %o1 <- newp->context[0] */
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asm("ld [%o0], %o1");
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/* create min frame on new stack */
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asm("save %o1,-96, %sp");
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if (!_setjmp(*cpp))
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_longjmp(LwpCurrent->context, 1);
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lwpEntryPoint();
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}
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}
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#elif defined(__USLC__) && defined(i386)
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/* USL/Unixware on an Intel 386/486/... processor.
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* Tested on Unixware v1.1.2, based on SYSV R4.2
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*/
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/* As per normal empire documentation, there is none.
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*
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* But, what we are attempting to do here is set up a longjump
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* context buffer so that the lwpEntryPoint is called when
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* the thread starts.
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*
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* I.E., what a setjmp/longjmp call set would do.
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*
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* How to figure this out? Well, without the setjmp code, you
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* need to reverse engineer it by printing out the context buffer
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* and the processor registers, and mapping which ones need
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* to be set.
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*
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* Alternatively, you can single instruction step through the longjmp
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* function, and figure out the offsets that it uses.
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*
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* Using offsets in bytes,
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* context + 0x04 [1] -> esi (general purpose reg)
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* context + 0x08 [2] -> edi (general purpose reg)
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* context + 0x0C [3] -> ebp (general purpose or parameter passing)
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* context + 0x10 [4] -> esp (stack)
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* context + 0x14 [5] -> jump location for return
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*/
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void
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lwpInitContext(struct lwpProc *newp, void *sp)
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{
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newp->context[4] = (int)sp;
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newp->context[5] = (int)lwpEntryPoint;
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}
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#elif defined UCONTEXT
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/*
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* Alternate aproach using setcontext en getcontext in stead of setjmp and
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* longjump. This should work on any SVr4 machine independant of
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* architecture. Unfortunaltely some changes are still nessesary in lwp.c.
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* Tested on IRIX 5.3
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*/
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void
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lwpInitContext(struct lwpProc *newp, stack_t *spp)
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{
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getcontext(&(newp->context));
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newp->context.uc_stack.ss_sp = spp->ss_sp;
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newp->context.uc_stack.ss_size = spp->ss_size;
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makecontext(&(newp->context), lwpEntryPoint, 0);
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}
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#elif defined(ALPHA)
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#include <c_asm.h>
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void
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lwpInitContext(struct lwpProc *newp, void *sp)
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{
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extern long *_gp;
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/* register values obtained from setjmp.h */
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_setjmp(newp->context);
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newp->context[2] = (long)lwpEntryPoint; /* program counter */
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newp->context[30] = (long)lwpEntryPoint; /* return address */
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newp->context[31] = (long)lwpEntryPoint; /* fake program value (!) */
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newp->context[34] = (long)sp; /* stack pointer */
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}
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int
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lwpSave(jmp_buf jb)
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{
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return _setjmp(jb);
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}
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void
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lwpRestore(jmp_buf jb)
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{
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/* resume, but get the pv from the jmp_buf */
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asm("ldq %pv, 248(%a0)");
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asm("stq %a0, 16(%sp)");
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/* generates a warning, but functions just fine */
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asm("bsr %ra, __longjump_resume");
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}
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#endif
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#endif
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#endif
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