1;
2; Copyright (C) 2000, 2001, 2002 Free Software Foundation, Inc.
3; Contributed by Red Hat, Inc and Ubicom, Inc.
4;
5; This file is part of GNU CC.
6;
7; GNU CC is free software; you can redistribute it and/or modify
8; it under the terms of the GNU General Public License as published by
9; the Free Software Foundation; either version 2, or (at your option)
10; any later version.
11;
12; In addition to the permissions in the GNU General Public License, the
13; Free Software Foundation gives you unlimited permission to link the
14; compiled version of this file with other programs, and to distribute
15; those programs without any restriction coming from the use of this
16; file.  (The General Public License restrictions do apply in other
17; respects; for example, they cover modification of the file, and
18; distribution when not linked into another program.)
19;
20; GNU CC is distributed in the hope that it will be useful,
21; but WITHOUT ANY WARRANTY; without even the implied warranty of
22; MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
23; GNU General Public License for more details.
24;
25; You should have received a copy of the GNU General Public License
26; along with GNU CC; see the file COPYING.  If not, write to
27; the Free Software Foundation, 59 Temple Place - Suite 330,
28; Boston, MA 02111-1307, USA.  */
29
30/*******************************************************
31	load byte from arbitrary memory
32	address passed in first bank register, result in W
33
34*******************************************************/
35	.macro	movb	to, from
36	mov	w, \from
37	mov	\to, w
38	.endm
39
40
41#if defined (L_indcall)
42/* __indcall - given register containing an address, call the function
43 *	at that address.
44 */
45
46	.sect	.pram.libgcc,"ax"
47	.global	__indcall
48	.func	_indcall,__indcall
49
50__indcall:
51	page	1f
52	call	1f
531:	pop	callh			; Get the call target
54	pop	calll
55	ret				; Transfer to new function
56
57	.endfunc
58#endif
59
60
61#if defined (L_mulhi3)
62	.sect	.pram.libgcc,"ax"
63	.global	__mulhi3
64	.func	_mulhi3, __mulhi3
65
66__mulhi3:
67	mov	w, 2(SP)		; First upper half partial product
68	mulu	w, 3(SP)
69	mov	3(SP), w
70	mov	w, 1(SP)		; Second upper half partial product
71	mulu	w, 4(SP)
72	add	3(SP), w
73	mov	w, 2(SP)		; Lower half partial product
74	mulu	w, 4(SP)
75	mov	4(SP), w
76	mov	w, MULH
77	add	3(SP), w
78
79	mov	w, #2			; Adjust the stack leaving the result to
80	add	spl, w			; be popped off later.
81	ret
82
83	.endfunc
84
85#endif /* defined (L_mulhi3) */
86
87#if defined (L_mulsi3)
88/*******************************************************
89               Multiplication  32 x 32
90*******************************************************/
91
92	.sect	.text.libgcc,"ax"
93	.global	__mulsi3
94	.func	_mulsi3, __mulsi3
95
96__mulsi3:
97	clr	$80			; Assume zero result
98	clr	$81
99	clr	$82
100	clr	$83
101
1022:	mov	w, 1(sp)
103	or	w, 2(sp)
104	or	w, 3(sp)
105	or	w, 4(sp)
106	snz				; Any more significant bits to multiply?
107	page	3f
108	jmp	3f
109
110	sb	4(sp), 0		; Check LSB of multiplier
111	page	1f			; zero => scale multiplicand & multiplier
112	jmp	1f
113
114	mov	w, 8(sp)		; Accumulate product
115	add	$83, w
116	mov	w, 7(sp)
117	addc	$82, w
118	mov	w, 6(sp)
119	addc	$81, w
120	mov	w, 5(sp)
121	addc	$80, w
1221:	clrb	status, 0		; scale multiplier down
123	rr	1(sp)
124	rr	2(sp)
125	rr	3(sp)
126	rr	4(sp)
127	clrb	status, 0
128	rl	8(sp)
129	rl	7(sp)
130	rl	6(sp)
131	rl	5(sp)
132	page	2b
133	jmp	2b
134
1353:	mov	w, #8
136	add	spl ,w
137	ret
138
139	.endfunc
140
141#endif /* defined (L_mulsi3) */
142
143#if defined (L_muldi3)
144/*******************************************************
145               Multiplication  64 x 64
146*******************************************************/
147
148	.sect	.text.libgcc,"ax"
149	.global	__muldi3
150	.func	_muldi3, __muldi3
151
152__muldi3:
153	clr	$80			; Assume zero result
154	clr	$81
155	clr	$82
156	clr	$83
157	clr	$84
158	clr	$85
159	clr	$86
160	clr	$87
161
1622:	mov	w, 1(sp)
163	or	w, 2(sp)
164	or	w, 3(sp)
165	or	w, 4(sp)
166	or	w, 5(sp)
167	or	w, 6(sp)
168	or	w, 7(sp)
169	or	w, 8(sp)
170	snz				; Any more significant bits to multiply?
171	page	3f
172	jmp	3f
173
174	sb	8(sp), 0		; Check LSB of multiplier
175	page	1f			; zero => scale multiplicand & multiplier
176	jmp	1f
177
178	mov	w, 16(sp)		; Accumulate product
179	add	$87, w
180	mov	w, 15(sp)
181	addc	$86, w
182	mov	w, 14(sp)
183	addc	$85, w
184	mov	w, 13(sp)
185	addc	$84, w
186	mov	w, 12(sp)
187	addc	$83, w
188	mov	w, 11(sp)
189	addc	$82, w
190	mov	w, 10(sp)
191	addc	$81, w
192	mov	w, 9(sp)
193	addc	$80, w
194
1951:	clrb	status, 0		; scale multiplier down
196	rr	1(sp)
197	rr	2(sp)
198	rr	3(sp)
199	rr	4(sp)
200	rr	5(sp)
201	rr	6(sp)
202	rr	7(sp)
203	rr	8(sp)
204	clrb	status, 0
205	rl	16(sp)
206	rl	15(sp)
207	rl	14(sp)
208	rl	13(sp)
209	rl	12(sp)
210	rl	11(sp)
211	rl	10(sp)
212	rl	9(sp)
213	page	2b
214	jmp	2b
215
2163:	mov	w, #16
217	add	spl, w
218	ret
219
220	.endfunc
221
222#endif /* defined (L_muldi3) */
223
224#if defined (L_divmodhi4)
225#define	arg1h 1(SP)
226#define arg1l 2(SP)
227#define arg2h 3(SP)
228#define arg2l 4(SP)
229#define resl $81
230#define resh $80
231#define reml $83
232#define remh $82
233#define tmp_var	$84
234#define cnt $85
235#define arg1_sign $86
236#define res_sign $87
237
238	.sect	.text.libgcc,"ax"
239	.global	__divmodhi4
240	.func	_divmodhi4, __divmodhi4
241
242__divmodhi4:
243	mov	w,arg2h
244	mov	res_sign,w
245	mov	w,arg1h
246	mov	arg1_sign,w
247	xor	res_sign,w
248
249	sb	arg1h,7
250	page	1f
251	jmp	1f
252
253	not	arg1h
254	not	arg1l
255	incsnz	arg1l
256	inc	arg1h
257
2581:	sb	arg2h, 7
259	page	1f
260	jmp	1f
261
262	not	arg2h
263	not	arg2l
264	incsnz	arg2l
265	inc	arg2h
266
2671:	page	__udivmodhi4		; Do the unsigned div/mod
268	call	__udivmodhi4
269
270	sb	arg1_sign, 7
271	page	1f
272	jmp	1f
273
274	not	reml
275	not	remh
276	incsnz	reml
277	inc	remh
278
2791:	sb	res_sign, 7
280	ret
281
282	not	resl
283	not	resh
284	incsnz	resl
285	inc	resh
286	ret
287
288	.endfunc
289
290#undef arg1h
291#undef arg1l
292#undef arg2h
293#undef arg2l
294#undef resl
295#undef resh
296#undef reml
297#undef remh
298#undef tmp_var
299#undef cnt
300#undef arg1_sign
301#undef res_sign
302
303#endif /* defined (L_divmodhi4) */
304
305#if defined (L_udivmodhi4)
306
307#define	arg1h 1(SP)
308#define arg1l 2(SP)
309#define arg2h 3(SP)
310#define arg2l 4(SP)
311#define resl $81
312#define resh $80
313#define reml $83
314#define remh $82
315#define tmp_var	$84
316#define cnt $85
317
318	.sect	.text.libgcc,"ax"
319	.global	__udivmodhi4
320	.func	_udivmodhi4, __udivmodhi4
321
322__udivmodhi4:
323	clr	reml
324	clr	remh
325	mov	w, #17
326	mov	cnt,w
327	clrb	status, 0
328	page	1f
329	jmp	1f
330
3312:	rl	reml
332	rl	remh
333	mov	w, arg2l
334	sub	w, reml
335	mov	tmp_var, w
336	mov	w, arg2h
337	subc	w, remh
338	sc
339	page	1f
340	jmp	1f
341	mov	remh, w
342	mov	w, tmp_var
343	mov	reml, w
344
3451:	rl	arg1l
346	rl	arg1h
347	decsz	cnt
348	page	2b
349	jmp	2b
350
351	pop	resh
352	pop	resl
353	mov	w, #2
354	add	spl, w
355	ret
356
357	.endfunc
358
359#undef arg1h
360#undef arg1l
361#undef arg2h
362#undef arg2l
363#undef resl
364#undef resh
365#undef reml
366#undef remh
367#undef tmp_var
368#undef cnt
369
370#endif	/* defined (L_udivmodhi4) */
371
372#if defined (L_divmodsi4)
373
374#define	arg1a 1(SP)
375#define arg1b 2(SP)
376#define arg1c 3(SP)
377#define arg1d 4(SP)
378
379#define arg2a 5(SP)
380#define arg2b 6(SP)
381#define arg2c 7(SP)
382#define arg2d 8(SP)
383
384#define resa $80
385#define resb $81
386#define resc $82
387#define resd $83
388
389#define rema $84
390#define remb $85
391#define remc $86
392#define remd $87
393
394#define tmp_var	$88
395#define tmp_var1 $89
396#define tmp_var2 $8a
397#define cnt $8b
398#define arg1_sign $8c
399#define res_sign $8d
400
401	.sect	.text.libgcc,"ax"
402	.global	__divmodsi4
403	.func	_divmodsi4, __divmodsi4
404
405__divmodsi4:
406	mov	w, arg2a
407	mov	res_sign, w
408	mov	w, arg1a
409	mov	arg1_sign, w
410	xor	res_sign, w
411
412	sb	arg1a, 7
413	page	1f
414	jmp	1f
415
416	not	arg1d
417	not	arg1c
418	not	arg1b
419	not	arg1a
420	incsnz	arg1d
421	incsz	arg1c
422	page	1f
423	jmp	1f
424	incsnz	arg1b
425	inc	arg1a
426
4271:	sb	arg2a, 7
428	page	1f
429	jmp	1f
430
431	not	arg2d
432	not	arg2c
433	not	arg2b
434	not	arg2a
435	incsnz	arg2d
436	incsz	arg2c
437	page	1f
438	jmp	1f
439	incsnz	arg2b
440	inc	arg2a
441
4421:	page	__udivmodsi4		; Do the unsigned div/mod.
443	call	__udivmodsi4
444
445	sb	arg1_sign, 7
446	page	1f
447	jmp	1f
448
449	not	remd
450	not	remc
451	not	remb
452	not	rema
453	incsnz	remd
454	incsz	remc
455	page	1f
456	jmp	1f
457	incsnz	remb
458	inc	rema
459
4601:	sb	res_sign, 7
461	ret
462
463	not	resd
464	not	resc
465	not	resb
466	not	resa
467	incsnz	resd
468	incsz	resc
469	ret
470	incsnz	resb
471	inc	resa
472	ret
473
474	.endfunc
475
476#undef arg1a
477#undef arg1b
478#undef arg1c
479#undef arg1d
480
481#undef arg2a
482#undef arg2b
483#undef arg2c
484#undef arg2d
485
486#undef resa
487#undef resb
488#undef resc
489#undef resd
490
491#undef rema
492#undef remb
493#undef remc
494#undef remd
495
496#undef tmp_var
497#undef tmp_var1
498#undef tmp_var2
499#undef cnt
500#undef arg1_sign
501#undef res_sign
502
503#endif /* defined (L_divmodsi4) */
504
505#if defined (L_udivmodsi4)
506#define	arg1a 1(SP)
507#define arg1b 2(SP)
508#define arg1c 3(SP)
509#define arg1d 4(SP)
510
511#define arg2a 5(SP)
512#define arg2b 6(SP)
513#define arg2c 7(SP)
514#define arg2d 8(SP)
515
516#define resa $80
517#define resb $81
518#define resc $82
519#define resd $83
520
521#define rema $84
522#define remb $85
523#define remc $86
524#define remd $87
525
526#define tmp_var	$88
527#define tmp_var1 $89
528#define tmp_var2 $8a
529#define cnt $8b
530
531	.sect	.text.libgcc,"ax"
532	.global	__udivmodsi4
533	.func	_udivmodsi4, __udivmodsi4
534
535__udivmodsi4:
536	clr	remd
537	clr	remc
538	clr	remb
539	clr	rema
540	mov	w, #33
541	mov	cnt, w
542	clrb	status, 0
543	page	1f
544	jmp	1f
545
5462:	rl	remd
547	rl	remc
548	rl	remb
549	rl	rema
550	mov	w, arg2d
551	sub	w, remd
552	mov	tmp_var, w
553	mov	w, arg2c
554	subc	w, remc
555	mov	tmp_var1, w
556	mov	w, arg2b
557	subc	w, remb
558	mov	tmp_var2, w
559	mov	w, arg2a
560	subc	w, rema
561	sc
562	page	1f
563	jmp	1f
564
565	mov	rema, w
566	mov	w, tmp_var2
567	mov	remb, w
568	mov	w, tmp_var1
569	mov	remc, w
570	mov	w, tmp_var
571	mov	remd, w
572
5731:	rl	arg1d
574	rl	arg1c
575	rl	arg1b
576	rl	arg1a
577	decsz	cnt
578	page	2b
579	jmp	2b
580
581	pop	resa
582	pop	resb
583	pop	resc
584	pop	resd
585	mov	w, #4
586	add	spl, w
587	ret
588
589	.endfunc
590
591#undef arg1a
592#undef arg1b
593#undef arg1c
594#undef arg1d
595
596#undef arg2a
597#undef arg2b
598#undef arg2c
599#undef arg2d
600
601#undef resa
602#undef resb
603#undef resc
604#undef resd
605
606#undef rema
607#undef remb
608#undef remc
609#undef remd
610
611#undef tmp_var
612#undef tmp_var1
613#undef tmp_var2
614#undef cnt
615
616#endif /* defined (L_udivmodsi4) */
617
618#if defined (L_divmoddi4)
619
620#define	arg1s 1(SP)
621#define arg1t 2(SP)
622#define arg1u 3(SP)
623#define arg1v 4(SP)
624#define arg1w 5(SP)
625#define arg1x 6(SP)
626#define arg1y 7(SP)
627#define arg1z 8(SP)
628
629#define arg2s 9(SP)
630#define arg2t 10(SP)
631#define arg2u 11(SP)
632#define arg2v 12(SP)
633#define arg2w 13(SP)
634#define arg2x 14(SP)
635#define arg2y 15(SP)
636#define arg2z 16(SP)
637
638#define ress $80
639#define rest $81
640#define resu $82
641#define resv $83
642#define resw $84
643#define resx $85
644#define resy $86
645#define resz $87
646
647#define rems $88
648#define remt $89
649#define remu $8a
650#define remv $8b
651#define remw $8c
652#define remx $8d
653#define remy $8e
654#define remz $8f
655
656#define tmp_var	$90
657#define tmp_var1 $91
658#define tmp_var2 $92
659#define tmp_var3 $93
660#define tmp_var4 $94
661#define tmp_var5 $95
662#define tmp_var6 $96
663#define cnt $97
664
665	.sect	.text.libgcc,"ax"
666	.global	__divmoddi4
667	.func	_divmoddi4, __divmoddi4
668
669__divmoddi4:
670	rl	w, arg2s		; Use MULH to track sign bits.
671	rl	MULH
672	rl	w, arg1s
673	rl	WREG
674	xor	MULH, w
675	rl	w, arg1s
676	rl	MULH
677
678	sb	arg1s, 7
679	page	1f
680	jmp	1f
681
682	not	arg1s
683	not	arg1t
684	not	arg1u
685	not	arg1v
686	not	arg1w
687	not	arg1x
688	not	arg1y
689	not	arg1z
690	incsnz	arg1z
691	incsz	arg1y
692	page	1f
693	jmp	1f
694	incsnz	arg1x
695	incsz	arg1w
696	page	1f
697	jmp	1f
698	incsnz	arg1v
699	incsz	arg1u
700	page	1f
701	jmp	1f
702	incsnz	arg1t
703	inc	arg1s
704
7051:	sb	arg2s, 7
706	page	1f
707	jmp	1f
708
709	not	arg2s
710	not	arg2t
711	not	arg2u
712	not	arg2v
713	not	arg2w
714	not	arg2x
715	not	arg2y
716	not	arg2z
717	incsnz	arg2z
718	incsz	arg2y
719	page	1f
720	jmp	1f
721	incsnz	arg2x
722	incsz	arg2w
723	page	1f
724	jmp	1f
725	incsnz	arg2v
726	incsz	arg2u
727	page	1f
728	jmp	1f
729	incsnz	arg2t
730	inc	arg2s
731
7321:	page	__udivmoddi4		; Do the unsigned div/mod.
733	call	__udivmoddi4
734
735	sb	MULH, 0			; Look at the save sign bit for arg 1.
736	page	1f
737	jmp	1f
738
739	not	rems
740	not	remt
741	not	remu
742	not	remv
743	not	remw
744	not	remx
745	not	remy
746	not	remz
747	incsnz	remz
748	incsz	remy
749	page	1f
750	jmp	1f
751	incsnz	remx
752	incsz	remw
753	page	1f
754	jmp	1f
755	incsnz	remv
756	incsz	remu
757	page	1f
758	jmp	1f
759	incsnz	remt
760	inc	rems
761
7621:	sb	MULH, 1
763	ret
764
765	not	ress
766	not	rest
767	not	resu
768	not	resv
769	not	resw
770	not	resx
771	not	resy
772	not	resz
773	incsnz	resz
774	incsz	resy
775	ret
776	incsnz	resx
777	incsz	resw
778	ret
779	incsnz	resv
780	incsz	resu
781	ret
782	incsnz	rest
783	inc	ress
784	ret
785
786	.endfunc
787
788#undef arg1s
789#undef arg1t
790#undef arg1u
791#undef arg1v
792#undef arg1w
793#undef arg1x
794#undef arg1y
795#undef arg1z
796
797#undef arg2s
798#undef arg2t
799#undef arg2u
800#undef arg2v
801#undef arg2w
802#undef arg2x
803#undef arg2y
804#undef arg2z
805
806#undef ress
807#undef rest
808#undef resu
809#undef resv
810#undef resw
811#undef resx
812#undef resy
813#undef resz
814
815#undef rems
816#undef remt
817#undef remu
818#undef remv
819#undef remw
820#undef remx
821#undef remy
822#undef remz
823
824#undef tmp_var
825#undef tmp_var1
826#undef tmp_var2
827#undef tmp_var3
828#undef tmp_var4
829#undef tmp_var5
830#undef tmp_var6
831#undef cnt
832
833#endif /* defined (L_divmoddi4) */
834
835#if defined (L_udivmoddi4)
836#define	arg1s 1(SP)
837#define arg1t 2(SP)
838#define arg1u 3(SP)
839#define arg1v 4(SP)
840#define arg1w 5(SP)
841#define arg1x 6(SP)
842#define arg1y 7(SP)
843#define arg1z 8(SP)
844
845#define arg2s 9(SP)
846#define arg2t 10(SP)
847#define arg2u 11(SP)
848#define arg2v 12(SP)
849#define arg2w 13(SP)
850#define arg2x 14(SP)
851#define arg2y 15(SP)
852#define arg2z 16(SP)
853
854#define ress $80
855#define rest $81
856#define resu $82
857#define resv $83
858#define resw $84
859#define resx $85
860#define resy $86
861#define resz $87
862
863#define rems $88
864#define remt $89
865#define remu $8a
866#define remv $8b
867#define remw $8c
868#define remx $8d
869#define remy $8e
870#define remz $8f
871
872#define tmp_var	$90
873#define tmp_var1 $91
874#define tmp_var2 $92
875#define tmp_var3 $93
876#define tmp_var4 $94
877#define tmp_var5 $95
878#define tmp_var6 $96
879#define cnt $97
880
881	.sect	.text.libgcc,"ax"
882	.global	__udivmoddi4
883	.func	_udivmoddi4, __udivmoddi4
884
885__udivmoddi4:
886	clr	rems
887	clr	remt
888	clr	remu
889	clr	remv
890	clr	remw
891	clr	remx
892	clr	remy
893	clr	remz
894	mov	w, #65
895	mov	cnt, w
896	clrb	status, 0
897	page	1f
898	jmp	1f
899
9002:	rl	remz
901	rl	remy
902	rl	remx
903	rl	remw
904	rl	remv
905	rl	remu
906	rl	remt
907	rl	rems
908	mov	w, arg2z
909	sub	w, remz
910	mov	tmp_var, w
911	mov	w, arg2y
912	subc	w, remy
913	mov	tmp_var1, w
914	mov	w, arg2x
915	subc	w, remx
916	mov	tmp_var2, w
917	mov	w, arg2w
918	subc	w, remw
919	mov	tmp_var3, w
920	mov	w, arg2v
921	subc	w, remv
922	mov	tmp_var4, w
923	mov	w, arg2u
924	subc	w, remu
925	mov	tmp_var5, w
926	mov	w, arg2t
927	subc	w, remt
928	mov	tmp_var6, w
929	mov	w, arg2s
930	subc	w, rems
931	sc
932	page	1f
933	jmp	1f
934
935	mov	rems, w
936	mov	w, tmp_var6
937	mov	remt, w
938	mov	w, tmp_var5
939	mov	remu, w
940	mov	w, tmp_var4
941	mov	remv, w
942	mov	w, tmp_var3
943	mov	remw, w
944	mov	w, tmp_var2
945	mov	remx, w
946	mov	w, tmp_var1
947	mov	remy, w
948	mov	w, tmp_var
949	mov	remz, w
950
9511:	rl	arg1z
952	rl	arg1y
953	rl	arg1x
954	rl	arg1w
955	rl	arg1v
956	rl	arg1u
957	rl	arg1t
958	rl	arg1s
959	decsz	cnt
960	page	2b
961	jmp	2b
962
963	pop	ress
964	pop	rest
965	pop	resu
966	pop	resv
967	pop	resw
968	pop	resx
969	pop	resy
970	pop	resz
971	mov	w, #8
972	add	spl, w
973	ret
974
975	.endfunc
976
977#undef arg1s
978#undef arg1t
979#undef arg1u
980#undef arg1v
981#undef arg1w
982#undef arg1x
983#undef arg1y
984#undef arg1z
985
986#undef arg2s
987#undef arg2t
988#undef arg2u
989#undef arg2v
990#undef arg2w
991#undef arg2x
992#undef arg2y
993#undef arg2z
994
995#undef ress
996#undef rest
997#undef resu
998#undef resv
999#undef resw
1000#undef resx
1001#undef resy
1002#undef resz
1003
1004#undef rems
1005#undef remt
1006#undef remu
1007#undef remv
1008#undef remw
1009#undef remx
1010#undef remy
1011#undef remz
1012
1013#undef tmp_var
1014#undef tmp_var1
1015#undef tmp_var2
1016#undef tmp_var3
1017#undef tmp_var4
1018#undef tmp_var5
1019#undef tmp_var6
1020#undef cnt
1021
1022#endif /* defined (L_udivmoddi4) */
1023
1024#define LT	#0
1025#define EQ	#1
1026#define GT	#2
1027
1028#if defined(L_cmphi2)
1029#define arg1l 2(sp)
1030#define arg1h 1(sp)
1031#define arg2l 4(sp)
1032#define arg2h 3(sp)
1033
1034	.sect	.text.libgcc,"ax"
1035	.global	__cmphi2
1036	.global	__cmp_ret
1037	.global	__cmpqi_ret
1038	.func	_cmphi2, __cmphi2
1039
1040__cmphi2:
1041	mov	w,arg1l
1042	sub	w,arg2l
1043	snz
1044	page	2f
1045	jmp	2f
1046	mov	w,arg1h
10471:
1048	subc	w,arg2h
1049	clr	arg2l
1050	rl	arg2l
1051	snb	arg1h,7
1052	setb	arg2l,2
1053	snb	arg2h,7
1054	setb	arg2l,1
1055	mov	w,#3
1056
1057__cmp_ret:
1058	add	spl,w			;  sign1
1059	pop	wreg			;   sign2
1060
1061__cmpqi_ret:
1062	add	pcl,w			;    carry of arg1 - arg2
1063	retw	GT			; [000] arg1 > arg2
1064	retw	LT			; [001] arg1 < arg2
1065	retw	GT			; [010] arg1 > arg2
1066	retw	GT			; [011] arg1 > arg2
1067	retw	LT			; [100] arg1 < arg2
1068	retw	LT			; [101] arg1 < arg2
1069	retw	GT			; [110] arg1 > arg2
1070	retw	LT			; [111] arg1 < arg2
10712:
1072	mov	w,arg1h
1073	cse	w,arg2h
1074	page	1b
1075	jmp	1b
1076	mov	w,#4
1077	add	spl,w
1078	retw	EQ
1079
1080	.endfunc
1081#undef arg1l
1082#undef arg1h
1083#undef arg2l
1084#undef arg2h
1085#endif  /* L_cmphi2 */
1086
1087#if defined(L_cmpqi2)
1088#define arg1 1(sp)
1089#define arg2 2(sp)
1090
1091	.sect	.text.libgcc,"ax"
1092	.global	__cmpqi2
1093	.func	_cmpqi2, __cmpqi2
1094
1095__cmpqi2:
1096	mov	w, arg1
1097	sub	w, arg2
1098	snz
1099	page	2f
1100	jmp	2f
1101
1102	clr	wreg
1103	rl	wreg
1104	snb	arg1, 7
1105	setb	wreg, 2
1106	snb	arg2, 7
1107	setb	wreg, 1
1108	inc	spl
1109	inc	spl
1110	page	__cmpqi_ret
1111	jmp	__cmpqi_ret
1112
11132:	mov	w, #2
1114	add	spl, w
1115	retw	EQ
1116
1117	.endfunc
1118#undef arg1l
1119#undef arg2l
1120#endif  /* L_cmpqi2 */
1121
1122#if defined(L_cmpsi2)
1123#define arg1d 4(sp)
1124#define arg1c 3(sp)
1125#define arg1b 2(sp)
1126#define arg1a 1(sp)
1127#define arg2d 8(sp)
1128#define arg2c 7(sp)
1129#define arg2b 6(sp)
1130#define arg2a 5(sp)
1131
1132	.sect	.text.libgcc,"ax"
1133	.global	__cmpsi2
1134	.func	_cmpsi2, __cmpsi2
1135
1136__cmpsi2:
1137	mov	w, arg1d
1138	sub	w, arg2d
1139	snz
1140	page	2f
1141	jmp	2f
1142
11431:	mov	w, arg1c
1144	subc	w, arg2c
1145	mov	w, arg1b
1146	subc	w, arg2b
1147	mov	w, arg1a
1148	subc	w, arg2a
1149
1150	clr	arg2d
1151	rl	arg2d
1152	snb	arg1a, 7
1153	setb	arg2d, 2
1154	snb	arg2a, 7
1155	setb	arg2d, 1
1156	mov	w, #7
1157	page	__cmp_ret
1158	jmp	__cmp_ret
1159
11602:	mov	w, arg1c
1161	cse	w, arg2c
1162	page	1b
1163	jmp	1b
1164
1165	mov	w, arg1b
1166	cse	w, arg2b
1167	page	1b
1168	jmp	1b
1169
1170	mov	w, arg1a
1171	cse	w, arg2a
1172	page	1b
1173	jmp	1b
1174
1175	mov	w, #8
1176	add	spl, w
1177	retw	EQ
1178
1179	.endfunc
1180
1181#undef arg1d
1182#undef arg1c
1183#undef arg1b
1184#undef arg1a
1185#undef arg2d
1186#undef arg2c
1187#undef arg2b
1188#undef arg2a
1189#endif  /* L_cmpsi2 */
1190
1191#if defined(L_cmpdi2)
1192#define arg1z 8(sp)
1193#define arg1y 7(sp)
1194#define arg1x 6(sp)
1195#define arg1w 5(sp)
1196#define arg1v 4(sp)
1197#define arg1u 3(sp)
1198#define arg1t 2(sp)
1199#define arg1s 1(sp)
1200
1201#define arg2z 16(sp)
1202#define arg2y 15(sp)
1203#define arg2x 14(sp)
1204#define arg2w 13(sp)
1205#define arg2v 12(sp)
1206#define arg2u 11(sp)
1207#define arg2t 10(sp)
1208#define arg2s 9(sp)
1209
1210	.sect	.text.libgcc,"ax"
1211	.global	__cmpdi2
1212	.func	_cmpdi2, __cmpdi2
1213
1214__cmpdi2:
1215	mov	w, arg1z
1216	sub	w, arg2z
1217	snz
1218	page	2f
1219	jmp	2f
1220
12211:	mov	w, arg1y
1222	subc	w, arg2y
1223	mov	w, arg1x
1224	subc	w, arg2x
1225	mov	w, arg1w
1226	subc	w, arg2w
1227	mov	w, arg1v
1228	subc	w, arg2v
1229	mov	w, arg1u
1230	subc	w, arg2u
1231	mov	w, arg1t
1232	subc	w, arg2t
1233	mov	w, arg1s
1234	subc	w, arg2s
1235	clr	arg2z
1236	rl	arg2z
1237	snb	arg1s, 7
1238	setb	arg2z, 2
1239	snb	arg2s, 7
1240	setb	arg2z, 1
1241	mov	w, #15
1242	page	__cmp_ret
1243	jmp	__cmp_ret
1244
12452:	mov	w, arg1y
1246	cse	w, arg2y
1247	page	1b
1248	jmp	1b
1249
1250	mov	w, arg1x
1251	cse	w, arg2x
1252	page	1b
1253	jmp	1b
1254
1255	mov	w, arg1w
1256	cse	w, arg2w
1257	page	1b
1258	jmp	1b
1259
1260	mov	w, arg1v
1261	cse	w, arg2v
1262	page	1b
1263	jmp	1b
1264
1265	mov	w, arg1u
1266	cse	w, arg2u
1267	page	1b
1268	jmp	1b
1269
1270	mov	w, arg1t
1271	cse	w, arg2t
1272	page	1b
1273	jmp	1b
1274
1275	mov	w, arg1s
1276	cse	w, arg2s
1277	page	1b
1278	jmp	1b
1279
1280	mov	w, #16
1281	add	spl, w
1282	retw	EQ
1283
1284	.endfunc
1285
1286#undef arg1z
1287#undef arg1y
1288#undef arg1x
1289#undef arg1w
1290#undef arg1v
1291#undef arg1u
1292#undef arg1t
1293#undef arg1s
1294#undef arg2z
1295#undef arg2y
1296#undef arg2x
1297#undef arg2w
1298#undef arg2v
1299#undef arg2u
1300#undef arg2t
1301#undef arg2s
1302
1303#endif  /* L_cmpdi2 */
1304
1305#if defined(L_cmpdi2_dp)
1306	.sect	.text.libgcc,"ax"
1307	.global	__cmpdi2_dp
1308	.func	_cmpdi2_dp, __cmpdi2_dp
1309
1310__cmpdi2_dp:
1311	push	7(dp)
1312	push	6(dp)
1313	push	5(dp)
1314	push	4(dp)
1315	push	3(dp)
1316	push	2(dp)
1317	push	1(dp)
1318	push	(dp)
1319	page	__cmpdi2
1320	jmp	__cmpdi2
1321
1322	.endfunc
1323#endif  /* L_cmpdi2_dp */
1324
1325#if defined(L_fp_pop_args_ret)
1326	.sect	.pram.libgcc,"ax"
1327	.global	__fp_pop_args_ret
1328	.global	__pop_args_ret
1329	.global	__pop2_args_ret
1330	.func	__fp_pop2_args_ret, __fp_pop2_args_ret
1331
1332__fp_pop2_args_ret:
1333	mov	w, #2
1334__fp_pop_args_ret:
1335	pop	0xfd
1336	pop	0xfe
1337__pop_args_ret:
1338	pop	callh
1339	pop	calll
1340	add	spl, w
1341	ret
1342
1343	.endfunc
1344#endif /* L_fp_pop_args_ret */
1345
1346#if defined(L__pop2_args_ret)
1347	.sect	.pram.libgcc,"ax"
1348	.global	__pop2_args_ret
1349	.func	__pop2_args_ret, __pop2_args_ret
1350
1351__pop2_args_ret:
1352	mov	w, #2
1353	pop	callh
1354	pop	calll
1355	add	spl, w
1356	ret
1357
1358	.endfunc
1359#endif /* L__pop2_args_ret */
1360
1361#if defined(L_leaf_fp_pop_args_ret)
1362	.sect	.pram.libgcc,"ax"
1363	.global	__leaf_fp_pop_args_ret, __leaf_fp_pop2_args_ret
1364	.func	__leaf_fp2_pop_args_ret, __leaf_fp_pop2_args_ret
1365
1366__leaf_fp_pop2_args_ret:
1367	mov	w, #2
1368__leaf_fp_pop_args_ret:
1369	pop	0xfd
1370	pop	0xfe
1371	add	spl, w
1372	ret
1373
1374	.endfunc
1375#endif /* L_leaf_fp_pop_args_ret */
1376
1377#if defined(L_movstrhi_countqi)
1378	.sect	.pram.libgcc,"ax"
1379	.global	__movstrhi_countqi
1380	.func	_movstrhi_countqi, __movstrhi_countqi
1381
1382__movstrhi_countqi:
1383	push	dph			; Save our pointer regs
1384	push	dpl
1385	push	iph
1386	push	ipl
1387
1388	mov	w, 5(SP)		; Get our dest pointer
1389	mov	dph, w
1390	mov	w, 6(SP)
1391	mov	dpl, w
1392	mov	w, 7(SP)		; And our source pointer
1393	mov	iph, w
1394	mov	w, 8(SP)
1395	mov	ipl, w
1396
13971:	push	(IP)			; *dest++ = *src++
1398	pop	0(DP)
1399	inc	ipl
1400	inc	dpl
1401	decsz	9(SP)			; Loop until completed
1402	page	1b
1403	jmp	1b
1404
1405	pop	ipl			; Restore our pointer regs
1406	pop	iph
1407	pop	dpl
1408	pop	dph
1409
1410	mov	w, #5			; Tidy up our stack args
1411	add	spl, w
1412	ret
1413
1414	.endfunc
1415#endif
1416
1417#if defined(L_movstrhi_counthi)
1418	.sect	.text.libgcc,"ax"
1419	.global	__movstrhi_counthi
1420	.func	_movstrhi_counthi, __movstrhi_counthi
1421
1422__movstrhi_counthi:
1423	push	dph			; Save our pointer regs
1424	push	dpl
1425	push	iph
1426	push	ipl
1427
1428	mov	w, 5(SP)		; Get our dest pointer
1429	mov	dph, w
1430	mov	w, 6(SP)
1431	mov	dpl, w
1432	mov	w, 7(SP)		; And our source pointer
1433	mov	iph, w
1434	mov	w, 8(SP)
1435	mov	ipl, w
1436
1437	test	10(SP)			; If we have a nonzero LSB then adjust the
1438	sz				; MSB of the loop count to allow us to use
1439	inc	9(SP)			; skip tricks!
1440
14411:	push	(IP)			; *dest++ = *src++
1442	pop	0(DP)
1443	inc	ipl
1444	inc	dpl
1445	decsnz	10(SP)			; Loop until completed - note the skip trick
1446	decsz	9(SP)			; on the MSB!
1447	page	1b
1448	jmp	1b
1449
1450	pop	ipl			; Restore our pointer regs
1451	pop	iph
1452	pop	dpl
1453	pop	dph
1454
1455	mov	w, #6			; Tidy up our stacked args.
1456	add	spl, w
1457	ret
1458
1459	.endfunc
1460#endif
1461
1462#if defined(L_exit)
1463	.sect	.text.libgcc,"ax"
1464	.global	__exit
1465	.global	_exit
1466	.func	_exit, __exit
1467	.weak	__exit
1468	.weak	_exit
1469
1470_exit:
1471__exit:
1472	pop	$88
1473	pop	wreg
1474	or	w, $88
1475	push    wreg
1476	push	#0
1477	push	#1
1478	system				; Exit wreg
1479	page	__exit			; Never return
1480	jmp	__exit
1481
1482	.endfunc
1483#endif
1484
1485#if defined(Labort)
1486	.sect	.text.libgcc,"ax"
1487	.global	_abort
1488	.func	abort, _abort
1489
1490_abort:
1491	push	#1
1492	push	#0
1493	push	#1
1494	system				; Exit 1
1495	ret
1496
1497	.endfunc
1498#endif
1499
1500#if defined(Lwrite)
1501	/* Dummy entrypoint to suppress problems with glue code. */
1502	.sect	.text.libgcc,"ax"
1503	.global	_write
1504	.func	write, _write
1505;;
1506;; write (fil,buf,len) - say that write succeeds....
1507;;
1508_write:
1509	movb	$80, 5(SP)
1510	movb	$81, 6(SP)		; Return length written
1511	mov	w, #6
1512	add	spl, w
1513	ret
1514
1515	.endfunc
1516#endif
1517