1989-02-13 18:41:17 +00:00
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/*
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(c) copyright 1988 by the Vrije Universiteit, Amsterdam, The Netherlands.
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See the copyright notice in the ACK home directory, in the file "Copyright".
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*/
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/*
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Module: SYSTEM
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Author: Ceriel J.H. Jacobs
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Version: $Header$
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*/
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/*
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An implementation of the Modula-2 NEWPROCESS and TRANSFER facilities
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using the topsize, topsave, and topload facilities.
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For each coroutine, a proc structure is built. For the main routine,
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a static space is declared to save its stack. For the other coroutines,
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the user specifies this space.
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*/
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#include <m2_traps.h>
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#define MAXMAIN 2048
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struct proc {
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1989-03-10 14:03:34 +00:00
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unsigned size; /* size of saved stackframe(s) */
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1989-02-13 18:41:17 +00:00
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int (*proc)(); /* address of coroutine procedure */
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char *brk; /* stack break of this coroutine */
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};
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1989-03-10 14:03:34 +00:00
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extern unsigned topsize();
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1989-02-13 18:41:17 +00:00
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static struct proc mainproc[MAXMAIN/sizeof(struct proc) + 1];
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static struct proc *curproc = 0;/* current coroutine */
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extern char *MainLB; /* stack break of main routine */
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_SYSTEM__NEWPROCESS(p, a, n, p1)
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int (*p)(); /* coroutine procedure */
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struct proc *a; /* pointer to area for saved stack-frame */
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unsigned n; /* size of this area */
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struct proc **p1; /* where to leave coroutine descriptor,
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in this implementation the address of
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the area for saved stack-frame(s) */
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{
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/* This procedure creates a new coroutine, but does not
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transfer control to it. The routine "topsize" will compute the
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stack break, which will be the local base of this routine.
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Notice that we can do this because we do not need the stack
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above this point for this coroutine. In Modula-2, coroutines
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must be level 0 procedures without parameters.
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*/
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char *brk = 0;
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1989-03-10 14:03:34 +00:00
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unsigned sz = topsize(&brk);
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1989-02-13 18:41:17 +00:00
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if (sz + sizeof(struct proc) > n) {
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/* not enough space */
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TRP(M2_TOOLARGE);
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}
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a->size = n;
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a->proc = p;
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a->brk = brk;
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*p1 = a;
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if (topsave(brk, a+1))
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/* stack frame saved; now just return */
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;
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else {
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/* We get here through the first transfer to the coroutine
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created above.
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This also means that curproc is now set to this coroutine.
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We cannot trust the parameters anymore.
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Just call the coroutine procedure.
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*/
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(*(curproc->proc))();
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1991-03-15 09:24:03 +00:00
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_cleanup();
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1989-02-13 18:41:17 +00:00
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_exit(0);
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}
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}
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_SYSTEM__TRANSFER(a, b)
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struct proc **a, **b;
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{
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/* transfer from one coroutine to another, saving the current
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descriptor in the space indicated by "a", and transfering to
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the coroutine in descriptor "b".
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*/
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1989-03-10 14:03:34 +00:00
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unsigned size;
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1989-02-13 18:41:17 +00:00
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if (! curproc) {
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/* the current coroutine is the main process;
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initialize a coroutine descriptor for it ...
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*/
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mainproc[0].brk = MainLB;
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mainproc[0].size = sizeof(mainproc);
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curproc = &mainproc[0];
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}
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*a = curproc; /* save current descriptor in "a" */
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if (*b == curproc) {
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/* transfer to itself is a no-op */
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return;
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}
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size = topsize(&(curproc->brk));
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if (size + sizeof(struct proc) > curproc->size) {
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TRP(M2_TOOLARGE);
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}
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if (topsave(curproc->brk, curproc+1)) {
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/* stack top saved. Now restore context of target
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coroutine
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*/
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curproc = *b;
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topload(curproc+1);
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/* we never get here ... */
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}
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/* but we do get here, when a transfer is done to the coroutine in "a".
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*/
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}
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