8 Commits

Author SHA1 Message Date
bal
67376bedb9 Bug fixed in pattern sti $1 > 4 (ADDREG -> ADDSCR)
Definition of EM_BSIZE removed.
1985-04-17 14:51:31 +00:00
keie
53860e3c69 A stray version. 1985-03-04 15:35:39 +00:00
keie
3bb7b24703 Default distibuted name is pdp. 1985-02-15 15:12:40 +00:00
cvs2hg
bdf79f511d fixup commit for branch 'unlabeled-2.1.1' 1985-02-07 22:06:33 +00:00
keie
a189655b8b Made a mix of a new cgg(with TEM_WSIZE) and the obsolete
variable (T)EM_BSIZE feature.
1985-02-05 15:26:47 +00:00
cvs2hg
9d84b2cff8 fixup commit for branch 'unlabeled-2.1.1' 1984-08-23 13:27:15 +00:00
keie
d3db3b78c5 A special Makefile for the Philips PMDS 1984-07-02 15:44:09 +00:00
cvs2hg
9f9f4c7ce1 fixup commit for branch 'unlabeled-2.1.1' 1984-07-02 15:42:38 +00:00
7 changed files with 3053 additions and 3267 deletions

7
first/local.h.src Normal file
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/* collection of options, selected by including or excluding 'defines' */
/* Version number of the EM object code */
# define VERSION 3 /* 16 bits number */
/* The default machine used by ack, acc, apc */
# define ACKM "pdp"

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274
mach/m68k2/cg/mach.c Normal file
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#ifndef NORCSID
static char rcsid[] = "$Header$";
#endif
/*
* (c) copyright 1983 by the Vrije Universiteit, Amsterdam, The Netherlands.
*
* This product is part of the Amsterdam Compiler Kit.
*
* Permission to use, sell, duplicate or disclose this software must be
* obtained in writing. Requests for such permissions may be sent to
*
* Dr. Andrew S. Tanenbaum
* Wiskundig Seminarium
* Vrije Universiteit
* Postbox 7161
* 1007 MC Amsterdam
* The Netherlands
*
*/
/*
* machine dependent back end routines for the Motorola 68000
*/
con_part(sz,w) register sz; word w; {
while (part_size % sz)
part_size++;
if (part_size == TEM_WSIZE)
part_flush();
if (sz == 1) {
w &= 0xFF;
if (part_size == 0)
w <<= 8;
part_word |= w;
} else {
assert(sz == 2);
part_word = w;
}
part_size += sz;
}
con_mult(sz) word sz; {
if (sz != 4)
fatal("bad icon/ucon size");
fprintf(codefile,".long %s\n",str);
}
con_float() {
static int been_here;
if (argval != 4 && argval != 8)
fatal("bad fcon size");
fprintf(codefile,".long\t");
if (argval == 8)
fprintf(codefile,"F_DUM,");
fprintf(codefile,"F_DUM\n");
if ( !been_here++)
{
fprintf(stderr,"Warning : dummy float-constant(s)\n");
}
}
#ifdef REGVARS
regscore(off,size,typ,score,totyp)
long off;
{
if (score == 0) return -1;
switch(typ) {
case reg_float:
return -1;
case reg_pointer:
if (size != 4 || totyp != reg_pointer) return -1;
score *= 2;
break;
case reg_loop:
score += 5;
/* fall through .. */
case reg_any:
if (size != 2 || totyp == reg_pointer) return -1;
break;
}
if (off >= 0) {
/* parameters must be initialised with an instruction
* like "move.w 4(a6),d0", which costs 2 words.
*/
score -= 2;
}
score -= 1; /* take save/restore into account */
return score;
}
struct regsav_t {
char *rs_reg; /* e.g. "a3" or "d5" */
long rs_off; /* offset of variable */
int rs_size; /* 2 or 4 bytes */
} regsav[9];
int regnr;
int nr_a_regs,nr_d_regs;
int TEM_BSIZE;
static long nlocals;
prolog(n)
{ nlocals = n; }
i_regsave()
{
regnr = 0;
nr_a_regs = 0;
nr_d_regs = 0;
TEM_BSIZE = 0;
}
#define MOVEM_LIMIT 2
/* If #registers to be saved exceeds MOVEM_LIMIT, we
* use the movem instruction to save registers; else
* we simply use several move.l's.
*/
save()
{
register struct regsav_t *p;
int i;
if (regnr > MOVEM_LIMIT) {
fprintf(codefile,"movem.l ");
for (p = regsav; ;) {
fprintf(codefile,"%s",p->rs_reg);
if (++p == &regsav[regnr]) break;
putc('/',codefile);
}
fprintf(codefile,",-(sp)\n");
} else {
/* Note that the order in which the registers are saved
* is important; it is used by gto.s.
*/
for (i = 0; i < nr_a_regs; i++) {
fprintf(codefile,"move.l a%d,-(sp)\n",5-i);
}
for (i = 0; i < nr_d_regs; i++) {
fprintf(codefile,"move.l d%d,-(sp)\n",7-i);
}
}
/* Push a mask that indicates which registers were saved */
assert(nr_d_regs < 8 && nr_a_regs < 8);
if (nr_d_regs == 0 && nr_a_regs == 0) {
fprintf(codefile,"clr.w -(sp)\n");
} else {
fprintf(codefile,"move.w #%d,-(sp)\n",
nr_d_regs + (nr_a_regs<<3));
}
/* Compute AB - LB */
TEM_BSIZE = 4 * (nr_d_regs + nr_a_regs) + 10;
/* allocate space for local variables */
fprintf(codefile,"tst.b -%D(sp)\nlink\ta6,#-%D\n",nlocals+40,nlocals);
/* initialise register-parameters */
for (p = regsav; p < &regsav[regnr]; p++) {
if (p->rs_off >= 0) {
fprintf(codefile,"move.%c %ld(a6),%s\n",
(p->rs_size == 4 ? 'l' : 'w'),
p->rs_off + TEM_BSIZE,
p->rs_reg);
}
}
}
restr()
{
register struct regsav_t *p;
int i;
fprintf(codefile,"unlk a6\n");
fprintf(codefile,"add.l #2,sp\n"); /* pop mask */
if (regnr > MOVEM_LIMIT) {
fprintf(codefile,"movem.l (sp)+,");
for (p = regsav; ;) {
fprintf(codefile,"%s",p->rs_reg);
if (++p == &regsav[regnr]) break;
putc('/',codefile);
}
putc('\n',codefile);
} else {
for (i = nr_d_regs - 1; i >= 0; i--) {
fprintf(codefile,"move.l (sp)+,d%d\n",7-i);
}
for (i = nr_a_regs - 1; i >= 0; i--) {
fprintf(codefile,"move.l (sp)+,a%d\n",5-i);
}
}
fprintf(codefile,"rts\n");
}
f_regsave()
{
save();
}
regsave(str,off,size)
char *str;
long off;
{
assert (regnr < 9);
regsav[regnr].rs_reg = str;
if (str[0] == 'a') {
nr_a_regs++;
} else {
assert(str[0] == 'd');
nr_d_regs++;
}
regsav[regnr].rs_off = off;
regsav[regnr++].rs_size = size;
fprintf(codefile, "!Local %ld into %s\n",off,str);
}
regreturn()
{
restr();
}
#endif
#ifndef REGVARS
prolog(nlocals) full nlocals; {
fprintf(codefile,"tst.b -%D(sp)\nlink\ta6,#-%D\n",nlocals+40,nlocals);
}
#endif
mes(type) word type ; {
int argt ;
switch ( (int)type ) {
case ms_ext :
for (;;) {
switch ( argt=getarg(
ptyp(sp_cend)|ptyp(sp_pnam)|sym_ptyp) ) {
case sp_cend :
return ;
default:
strarg(argt) ;
fprintf(codefile,".define %s\n",argstr) ;
break ;
}
}
default :
while ( getarg(any_ptyp) != sp_cend ) ;
break ;
}
}
char *segname[] = {
".text", /* SEGTXT */
".data", /* SEGCON */
".data", /* SEGROM */
".bss" /* SEGBSS */
};

2652
mach/m68k2/cg/table Normal file

File diff suppressed because it is too large Load Diff

42
mach/m68k4/libem/dvi.s Normal file
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.define .dvi
! signed long divide
.text
.dvi:
movem.l d0/d2,.savdvi
move.l (sp)+,.retdvi
move.l (sp)+,d0
move.l (sp)+,d1
clr.l d4
tst.l d0 ! divisor
bpl 1f
neg.l d0
not d4
1:
tst.l d1 ! dividend
bpl 2f
neg.l d1
not d4
swap d4
not d4
swap d4
2:
move.l d1,-(sp)
move.l d0,-(sp)
jsr .dvu
tst d4
beq 5f
neg.l d1 ! quotient
5:
tst.l d4
bpl 6f
neg.l d3 ! remainder
6:
movem.l .savdvi,d0/d2
move.l .retdvi,-(sp)
rts
.data
.savdvi: .space 8
.retdvi: .long 0
.text
.align 2

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@@ -1,46 +0,0 @@
/* $Header$ */
/* The next define switches between codegeneration for an ACK assembler
* or for the standard UNIX V7 assembler.
* If on code is generated for the ACK assembler.
*/
/* #define ACK_ASS /* code for ACK assembler */
#ifdef ACK_ASS
#define COMMENTCHAR '!'
#define ex_ap(y) fprintf(codefile,".extern %s\n",y)
#else
#define COMMENTCHAR '/'
#define ex_ap(y) fprintf(codefile,".globl %s\n",y)
#endif
#define in_ap(y) /* nothing */
#define newplb(x) doplb(x)
#define newilb(x) fprintf(codefile,"%s:\n",x)
#define newdlb(x) fprintf(codefile,"%s:\n",x)
#ifdef ACK_ASS
#define newlbss(l,x) fprintf(codefile,"%s:.space 0%o\n",l,x);
#else
#define newlbss(l,x) fprintf(codefile,"%s:.=.+0%o\n",l,x);
#endif
#define cst_fmt "$0%o"
#define off_fmt "0%o"
#define ilb_fmt "I%03x%x"
#define dlb_fmt "_%d"
#define hol_fmt "hol%d"
#define hol_off "0%o+hol%d"
#ifdef ACK_ASS
#define con_cst(x) fprintf(codefile,".short 0%o\n",x)
#define con_ilb(x) fprintf(codefile,".short %s\n",x)
#define con_dlb(x) fprintf(codefile,".short %s\n",x)
#else
#define con_cst(x) fprintf(codefile,"0%o\n",x)
#define con_ilb(x) fprintf(codefile,"%s\n",x)
#define con_dlb(x) fprintf(codefile,"%s\n",x)
#endif
#define id_first '_'
#define BSS_INIT 0

78
util/ass/Makefile Normal file
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d=../..
l=$d/mach/m68k2/lib
h=$d/h
ASS_PATH=$l/em_ass
CC=pmds
SEP_OPT=-n
CFLAGS=-O -.c
all: ass$(SEP_OPT)
clean:
-rm -f ass-i ass-n *.o maktab *.old asstb.c
install : all
cp ass$(SEP_OPT) $(ASS_PATH)
cmp : all
cmp ass$(SEP_OPT) $(ASS_PATH)
lint: ass00.c ass30.c ass40.c ass50.c ass60.c ass70.c \
ass80.c assci.c assda.c assrl.c asstb.c asscm.c
lint -hpvbx \
ass00.c ass30.c ass40.c ass50.c ass60.c ass70.c \
ass80.c assci.c assda.c assrl.c asstb.c asscm.c
ass-n: ass00.o ass30.o ass40.o ass50.o ass60.o ass70.o \
ass80.o assci.o assda.o assrl.o asstb.o asscm.o \
$l/em_data.a
$(CC) $(CFLAGS) -s -o ass-n \
ass00.o ass30.o ass40.o ass50.o ass60.o ass70.o \
ass80.o assci.o assda.o assrl.o asstb.o asscm.o \
$l/em_data.a >ass.symb
ass-i: ass00.o ass30.o ass40.o ass50.o ass60.o ass70.o \
ass80.o assci.o assda.o assrl.o asstb.o asscm.o \
$l/em_data.a
$(CC) -i $(CFLAGS) -o ass-i \
ass00.o ass30.o ass40.o ass50.o ass60.o ass70.o \
ass80.o assci.o assda.o assrl.o asstb.o asscm.o \
$l/em_data.a
ass00.o ass40.o ass60.o ass70.o ass80.o assrl.o: \
$h/local.h $h/em_spec.h $h/as_spec.h \
$h/em_flag.h $h/arch.h ass00.h assex.h
assci.o: $h/local.h $h/em_spec.h $h/as_spec.h \
$h/em_flag.h $h/em_mes.h $h/em_pseu.h \
$h/em_ptyp.h $h/arch.h ass00.h assex.h
ass30.o ass50.o : \
$h/local.h $h/em_spec.h $h/as_spec.h \
$h/em_flag.h ip_spec.h ass00.h assex.h
ass80.o: $h/em_path.h
assda.o: $h/local.h $h/em_spec.h $h/as_spec.h \
$h/em_flag.h $h/arch.h ass00.h
asscm.o: ass00.h
asstb.o: asstb.c
asstb.c: maktab ip_spec.t
maktab ip_spec.t asstb.c
maktab: maktab.c $h/em_spec.h ip_spec.h $h/em_flag.h \
$l/em_data.a
$(CC) -O -o maktab maktab.c $l/em_data.a
opr:
make pr ^ opr
pr:
@(pr ass00.h assex.h ip_spec.h ass?0.c ass[rcd]?.c \
maktab.c ; pr -3 ip_spec.t)