1; libgcc1 routines for Synopsys DesignWare ARC cpu.
2
3/* Copyright (C) 1995-2021 Free Software Foundation, Inc.
4   Contributor: Joern Rennecke <joern.rennecke@embecosm.com>
5		on behalf of Synopsys Inc.
6
7This file is part of GCC.
8
9GCC is free software; you can redistribute it and/or modify it under
10the terms of the GNU General Public License as published by the Free
11Software Foundation; either version 3, or (at your option) any later
12version.
13
14GCC is distributed in the hope that it will be useful, but WITHOUT ANY
15WARRANTY; without even the implied warranty of MERCHANTABILITY or
16FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
17for more details.
18
19Under Section 7 of GPL version 3, you are granted additional
20permissions described in the GCC Runtime Library Exception, version
213.1, as published by the Free Software Foundation.
22
23You should have received a copy of the GNU General Public License and
24a copy of the GCC Runtime Library Exception along with this program;
25see the files COPYING3 and COPYING.RUNTIME respectively.  If not, see
26<http://www.gnu.org/licenses/>.  */
27
28/* As a special exception, if you link this library with other files,
29   some of which are compiled with GCC, to produce an executable,
30   this library does not by itself cause the resulting executable
31   to be covered by the GNU General Public License.
32   This exception does not however invalidate any other reasons why
33   the executable file might be covered by the GNU General Public License.  */
34
35
36 /* ANSI concatenation macros.  */
37
38 #define CONCAT1(a, b) CONCAT2(a, b)
39 #define CONCAT2(a, b) a ## b
40
41 /* Use the right prefix for global labels.  */
42
43 #define SYM(x) CONCAT1 (__USER_LABEL_PREFIX__, x)
44
45#ifndef WORKING_ASSEMBLER
46#define abs_l abs
47#define asl_l asl
48#define mov_l mov
49#endif
50
51#define FUNC(X)         .type SYM(X),@function
52#define HIDDEN_FUNC(X)	FUNC(X)` .hidden X
53#define ENDFUNC0(X)     .Lfe_##X: .size X,.Lfe_##X-X
54#define ENDFUNC(X)      ENDFUNC0(X)
55
56#ifdef __ARC_RF16__
57	/* Use object attributes to inform other tools this file is
58	safe for RF16 configuration.  */
59	.arc_attribute Tag_ARC_ABI_rf16, 1
60#endif
61
62#ifdef  L_mulsi3
63	.section .text
64	.align 4
65
66	.global SYM(__mulsi3)
67SYM(__mulsi3):
68
69/* This the simple version.
70
71  while (a)
72    {
73      if (a & 1)
74	r += b;
75      a >>= 1;
76      b <<= 1;
77    }
78*/
79
80#if defined (__ARC_MUL64__)
81	FUNC(__mulsi3)
82	mulu64 r0,r1
83	j_s.d [blink]
84	mov_s r0,mlo
85	ENDFUNC(__mulsi3)
86#elif defined (__ARC_MPY__)
87	HIDDEN_FUNC(__mulsi3)
88	mpyu	r0,r0,r1
89	nop_s
90	j_s	[blink]
91	ENDFUNC(__mulsi3)
92#elif defined (__ARC_NORM__)
93	FUNC(__mulsi3)
94	norm.f	r2,r0
95	rsub	lp_count,r2,31
96	mov.mi	lp_count,32
97	mov_s	r2,r0
98	mov_s	r0,0
99	lpnz	@.Lend		; loop is aligned
100	lsr.f	r2,r2
101	add.cs	r0,r0,r1
102	add_s	r1,r1,r1
103.Lend:	j_s [blink]
104	ENDFUNC(__mulsi3)
105#elif !defined (__OPTIMIZE_SIZE__) && defined (__ARC_BARREL_SHIFTER__)
106	/* Up to 3.5 times faster than the simpler code below, but larger.  */
107	FUNC(__mulsi3)
108	ror.f	r2,r0,4
109	mov_s	r0,0
110	add3.mi	r0,r0,r1
111	asl.f	r2,r2,2
112	add2.cs	r0,r0,r1
113	jeq_s	[blink]
114.Loop:
115	add1.mi	r0,r0,r1
116	asl.f	r2,r2,2
117	add.cs	r0,r0,r1
118	asl_s	r1,r1,4
119	ror.f	r2,r2,8
120	add3.mi	r0,r0,r1
121	asl.f	r2,r2,2
122	bne.d	.Loop
123	add2.cs	r0,r0,r1
124	j_s	[blink]
125	ENDFUNC(__mulsi3)
126#elif !defined (__OPTIMIZE_SIZE__) /* __ARC601__ */
127	FUNC(__mulsi3)
128	lsr.f r2,r0
129	mov_s r0,0
130	mov_s r3,0
131	add.cs r0,r0,r1
132.Loop:
133	lsr.f r2,r2
134	add1.cs r0,r0,r1
135	lsr.f r2,r2
136	add2.cs r0,r0,r1
137	lsr.f r2,r2
138	add3.cs r0,r0,r1
139	bne.d .Loop
140	add3 r1,r3,r1
141	j_s	[blink]
142	ENDFUNC(__mulsi3)
143#else
144/********************************************************/
145	FUNC(__mulsi3)
146	mov_s r2,0		; Accumulate result here.
147.Lloop:
148	bbit0 r0,0,@.Ly
149	add_s r2,r2,r1		; r += b
150.Ly:
151	lsr_s r0,r0		; a >>= 1
152	asl_s r1,r1		; b <<= 1
153	brne_s r0,0,@.Lloop
154.Ldone:
155	j_s.d [blink]
156	mov_s r0,r2
157	ENDFUNC(__mulsi3)
158/********************************************************/
159#endif
160
161#endif /* L_mulsi3 */
162
163#ifdef  L_umulsidi3
164	.section .text
165	.align 4
166
167	.global SYM(__umulsidi3)
168SYM(__umulsidi3):
169	HIDDEN_FUNC(__umulsidi3)
170/* We need ARC700 /ARC_MUL64 definitions of __umulsidi3 / __umulsi3_highpart
171   in case some code has been compiled without multiply support enabled,
172   but linked with the multiply-support enabled libraries.
173   For ARC601 (i.e. without a barrel shifter), we also use umuldisi3 as our
174   umulsi3_highpart implementation; the use of the latter label doesn't
175   actually benefit ARC601 platforms, but is useful when ARC601 code is linked
176   against other libraries.  */
177#if defined (__ARC_MPY__) || defined (__ARC_MUL64__) \
178	|| !defined (__ARC_BARREL_SHIFTER__)
179	.global SYM(__umulsi3_highpart)
180SYM(__umulsi3_highpart):
181	HIDDEN_FUNC(__umulsi3_highpart)
182#endif
183
184/* This the simple version.
185
186  while (a)
187    {
188      if (a & 1)
189	r += b;
190      a >>= 1;
191      b <<= 1;
192    }
193*/
194#include "ieee-754/arc-ieee-754.h"
195
196#ifdef __ARC_MPY__
197	mov_s	r12,DBL0L
198	mpyu	DBL0L,r12,DBL0H
199	j_s.d	[blink]
200	MPYHU	DBL0H,r12,DBL0H
201#elif defined (__ARC_MUL64__)
202/* Likewise for __ARC_MUL64__ */
203	mulu64 r0,r1
204	mov_s DBL0L,mlo
205	j_s.d [blink]
206	mov_s DBL0H,mhi
207#else /* !__ARC_MPY__ && !__ARC_MUL64__ */
208/* Although it might look tempting to extend this to handle muldi3,
209   using mulsi3 twice with 2.25 cycles per 32 bit add is faster
210   than one loop with 3 or four cycles per 32 bit add.  */
211	asl.f r12,0		; Top part of b.
212	mov_s r2,0		; Accumulate result here.
213	bbit1.d r0,0,@.Ladd
214	mov_s r3,0
215.Llooptst:
216	rlc r12,r12
217	breq r0,0,@.Ldone	; while (a)
218.Lloop:
219	asl.f r1,r1		; b <<= 1
220	bbit0.d r0,1,@.Llooptst
221	lsr r0,r0		; a >>= 1
222	rlc r12,r12
223.Ladd:
224	add.f r3,r3,r1	; r += b
225	brne.d r0,0,@.Lloop	; while (a);
226	adc   r2,r2,r12
227.Ldone:
228	mov_s DBL0L,r3
229	j_s.d [blink]
230	mov DBL0H,r2
231#endif /* !__ARC_MPY__*/
232	ENDFUNC(__umulsidi3)
233#if defined (__ARC_MPY__) || defined (__ARC_MUL64__) \
234	|| !defined (__ARC_BARREL_SHIFTER__)
235	ENDFUNC(__umulsi3_highpart)
236#endif
237#endif /* L_umulsidi3 */
238
239#ifndef __ARC_RF16__
240#ifdef L_muldi3
241	.section .text
242	.align 4
243	.global SYM(__muldi3)
244SYM(__muldi3):
245#ifdef __LITTLE_ENDIAN__
246        push_s blink
247        mov_s r4,r3     ;4
248        mov_s r5,r2     ;4
249        mov_s r9,r0     ;4
250        mov_s r8,r1     ;4
251        bl.d @__umulsidi3
252        mov_s r1,r2     ;4
253        mov_s r6,r0     ;4
254        mov_s r7,r1     ;4
255        mov_s r0,r9     ;4
256        bl.d @__mulsi3
257        mov_s r1,r4     ;4
258        mov_s r4,r0     ;4
259        mov_s r1,r8     ;4
260        bl.d @__mulsi3
261        mov_s r0,r5     ;4
262        pop_s blink
263        add_s r0,r0,r4 ;2
264        add r1,r0,r7
265        j_s.d [blink]
266        mov_s r0,r6     ;4
267#else
268	push_s  blink
269	mov_s   r5,r3
270	mov_s   r9,r2
271	mov_s   r4,r1
272	mov_s   r8,r0
273	mov_s   r0,r1
274	bl.d 	@__umulsidi3
275	mov_s   r1,r3
276	mov_s   r7,r0
277	mov_s   r6,r1
278	mov_s   r0,r4
279	bl.d    @__mulsi3
280	mov_s   r1,r9
281	mov_s   r4,r0
282	mov_s   r1,r8
283	bl.d    @__mulsi3
284	mov_s   r0,r5
285	pop_s   blink
286	add_s   r0,r0,r4
287	add_s   r0,r0,r7
288	j_s.d   [blink]
289	mov_s   r1,r6
290#endif /* __LITTLE_ENDIAN__ */
291ENDFUNC(__muldi3)
292#endif /* L_muldi3 */
293#endif /* !__ARC_RF16__ */
294
295#ifdef  L_umulsi3_highpart
296#include "ieee-754/arc-ieee-754.h"
297/* For use without a barrel shifter, and for ARC700 / ARC_MUL64, the
298   mulsidi3 algorithms above look better, so for these, there is an
299   extra label up there.  */
300#if !defined (__ARC_MPY__) && !defined (__ARC_MUL64__) \
301	&& defined (__ARC_BARREL_SHIFTER__)
302	.global SYM(__umulsi3_highpart)
303SYM(__umulsi3_highpart):
304	HIDDEN_FUNC(__umulsi3_highpart)
305	mov_s r2,0
306	mov_s r3,32
307.Loop:
308	lsr.f r0,r0
309	add.cs.f r2,r2,r1
310	sub_s r3,r3,1
311	brne.d r0,0,.Loop
312	rrc r2,r2
313	j_s.d	[blink]
314/* Make the result register peephole-compatible with mulsidi3.  */
315	lsr DBL0H,r2,r3
316	ENDFUNC(__umulsi3_highpart)
317#endif /* !__ARC_MPY__  && __ARC_BARREL_SHIFTER__ */
318#endif /* L_umulsi3_highpart */
319
320#ifdef L_divmod_tools
321
322; Utilities used by all routines.
323
324	.section .text
325
326/*
327unsigned long
328udivmodsi4(int modwanted, unsigned long num, unsigned long den)
329{
330  unsigned long bit = 1;
331  unsigned long res = 0;
332
333  while (den < num && bit && !(den & (1L<<31)))
334    {
335      den <<=1;
336      bit <<=1;
337    }
338  while (bit)
339    {
340      if (num >= den)
341	{
342	  num -= den;
343	  res |= bit;
344	}
345      bit >>=1;
346      den >>=1;
347    }
348  if (modwanted) return num;
349  return res;
350}
351*/
352
353; inputs: r0 = numerator, r1 = denominator
354; outputs: r0 = quotient, r1 = remainder, r2/r3 trashed
355
356	.balign 4
357	.global SYM(__udivmodsi4)
358	FUNC(__udivmodsi4)
359SYM(__udivmodsi4):
360
361#if defined (__ARC_EA__)
362/* Normalize divisor and divident, and then use the appropriate number of
363   divaw (the number of result bits, or one more) to produce the result.
364   There are some special conditions that need to be tested:
365   - We can only directly normalize unsigned numbers that fit in 31 bit.  For
366     the divisor, we test early on that it is not 'negative'.
367   - divaw can't corrrectly process a divident that is larger than the divisor.
368     We handle this be checking that the divident prior to normalization is
369     not larger than the normalized divisor.  As we then already know then
370     that the divisor fits 31 bit, this check also makes sure that the
371     divident fits.
372   - ordinary normalization of the divident could make it larger than the
373     normalized divisor, which again would be unsuitable for divaw.
374     Thus, we want to shift left the divident by one less, except that we
375     want to leave it alone if it is already 31 bit.  To this end, we
376     double the input to norm with adds.
377   - If the divident has less bits than the divisor, that would leave us
378     with a negative number of divaw to execute.  Although we could use a
379     conditional loop to avoid excess divaw, and then the quotient could
380     be extracted correctly as there'd be more than enough zero bits, the
381     remainder would be shifted left too far, requiring a conditional shift
382     right.  The cost of that shift and the possible mispredict on the
383     conditional loop cost as much as putting in an early check for a zero
384     result.  */
385	bmsk	r3,r0,29
386	brne.d	r3,r0,.Large_dividend
387	norm.f	r2,r1
388	brlo	r0,r1,.Lret0
389	norm	r3,r0
390	asl_s	r1,r1,r2
391	sub_s	r3,r3,1
392	asl_l	r0,r0,r3	; not short to keep loop aligned
393	sub	lp_count,r2,r3
394	lp	.Ldiv_end
395	divaw	r0,r0,r1
396.Ldiv_end:sub_s	r3,r2,1
397	lsr	r1,r0,r2
398	j_s.d	[blink]
399	bmsk	r0,r0,r3
400
401	.balign 4
402.Large_dividend:
403	bmi	.Ltrivial
404	asl_s	r1,r1,r2
405	mov_s	r3,0
406	sub1.f	r4,r0,r1
407	mov.lo	r4,r0
408	mov.hs	r3,2
409	cmp	r4,r1
410	sub.hs	r4,r4,r1
411	add.hs	r3,r3,1
412	mov.f	lp_count,r2
413	lpne	.Ldiv_end2
414	divaw	r4,r4,r1
415.Ldiv_end2:asl	r0,r3,r2
416	lsr	r1,r4,r2
417	sub_s	r2,r2,1
418	bmsk	r4,r4,r2
419	j_s.d	[blink]
420	or.ne	r0,r0,r4
421
422.Lret0:
423	mov_s	r1,r0
424	j_s.d	[blink]
425	mov_l	r0,0
426	.balign	4
427.Ltrivial:
428	sub.f	r1,r0,r1
429	mov.c	r1,r0
430	mov_s	r0,1
431	j_s.d	[blink]
432	mov.c	r0,0
433#elif !defined (__OPTIMIZE_SIZE__) && !defined (__ARC_RF16__)
434#if defined (__ARC_NORM__) && defined (__ARC_BARREL_SHIFTER__)
435	lsr_s r2,r0
436	brhs.d r1,r2,.Lret0_3
437	norm r2,r2
438	norm r3,r1
439	sub_s r3,r3,r2
440	asl_s r1,r1,r3
441	sub1.f 0,r0,r1
442	lsr.cs r1,r1,1
443	sbc r2,r3,0
444	sub1 r0,r0,r1
445	cmp_s r0,r1
446	mov.f lp_count,r2
447#else /* ! __ARC_NORM__ */
448	lsr_s r2,r0
449	brhs.d r1,r2,.Lret0_3
450	mov lp_count,32
451.Lloop1:
452	asl_s r1,r1		; den <<= 1
453	brls.d r1,r2,@.Lloop1
454	sub lp_count,lp_count,1
455	sub_s r0,r0,r1
456	lsr_s r1,r1
457	cmp_s r0,r1
458	xor.f r2,lp_count,31
459#if !defined (__ARCEM__) && !defined (__ARCHS__)
460	mov_s lp_count,r2
461#else
462	mov lp_count,r2
463	nop_s
464#endif /* !__ARCEM__ && !__ARCHS__ */
465#endif /* !__ARC_NORM__ */
466	sub.cc r0,r0,r1
467	mov_s r3,3
468	sbc r3,r3,0
469#if defined (__ARC_BARREL_SHIFTER__)
470	asl_s r3,r3,r2
471	rsub r1,r1,1
472	lpne @.Lloop2_end
473	add1.f r0,r1,r0
474	sub.cc r0,r0,r1
475.Lloop2_end:
476	lsr r1,r0,r2
477#else
478	rsub r1,r1,1
479	lpne @.Lloop2_end
480	asl_s r3,r3
481	add1.f r0,r1,r0
482	sub.cc r0,r0,r1
483.Lloop2_end:
484	lsr_s r1,r0
485	lsr.f lp_count,r2
486	mov.cc r1,r0
487	lpnz 1f
488	lsr_s r1,r1
489	lsr_s r1,r1
4901:
491#endif
492	bmsk r0,r0,r2
493	bclr r0,r0,r2
494	j_s.d [blink]
495	or_s r0,r0,r3
496.Lret0_3:
497#if 0 /* Slightly shorter, but slower.  */
498	lp .Loop3_end
499	brhi.d r1,r0,.Loop3_end
500	sub_s r0,r0,r1
501.Loop3_end
502	add_s r1,r1,r0
503	j_s.d [blink]
504	rsub r0,lp_count,32-1
505#else
506	mov_s r4,r1
507	sub.f r1,r0,r1
508	sbc r0,r0,r0
509	sub.cc.f r1,r1,r4
510	sbc r0,r0,0
511	sub.cc.f r1,r1,r4
512	sbc r0,r0,-3
513	j_s.d [blink]
514	add.cs r1,r1,r4
515#endif
516#else /* Arctangent-A5 */
517	breq_s r1,0,@.Ldivmodend
518	mov_s r2,1		; bit = 1
519	mov_s r3,0		; res = 0
520.Lloop1:
521	brhs r1,r0,@.Lloop2
522	bbit1 r1,31,@.Lloop2
523	asl_s r1,r1		; den <<= 1
524	b.d @.Lloop1
525	asl_s r2,r2		; bit <<= 1
526.Lloop2:
527	brlo r0,r1,@.Lshiftdown
528	sub_s r0,r0,r1		; num -= den
529	or_s r3,r3,r2		; res |= bit
530.Lshiftdown:
531	lsr_s r2,r2		; bit >>= 1
532	lsr_s r1,r1		; den >>= 1
533	brne_s r2,0,@.Lloop2
534.Ldivmodend:
535	mov_s r1,r0		; r1 = mod
536	j.d [blink]
537	mov_s r0,r3		; r0 = res
538/******************************************************/
539#endif
540	ENDFUNC(__udivmodsi4)
541
542#endif
543
544#ifdef  L_udivsi3
545	.section .text
546	.align 4
547
548	.global SYM(__udivsi3)
549	FUNC(__udivsi3)
550SYM(__udivsi3):
551	b @SYM(__udivmodsi4)
552	ENDFUNC(__udivsi3)
553
554#endif /* L_udivsi3 */
555
556#ifdef  L_divsi3
557	.section .text
558	.align 4
559
560	.global SYM(__divsi3)
561	FUNC(__divsi3)
562
563#ifndef __ARC_EA__
564SYM(__divsi3):
565	/* A5 / ARC60? */
566	mov r12,blink
567	xor r11,r0,r1
568	abs_s r0,r0
569	bl.d @SYM(__udivmodsi4)
570	abs_s r1,r1
571	tst r11,r11
572	j.d [r12]
573	neg.mi r0,r0
574#else 	/* !ifndef __ARC_EA__ */
575	;; We can use the abs, norm, divaw and mpy instructions for ARC700
576#define MULDIV
577#ifdef MULDIV
578/* This table has been generated by divtab-arc700.c.  */
579/* 1/512 .. 1/256, normalized.  There is a leading 1 in bit 31.
580   For powers of two, we list unnormalized numbers instead.  The values
581   for powers of 2 are loaded, but not used.  The value for 1 is actually
582   the first instruction after .Lmuldiv.  */
583	.balign 4
584.Ldivtab:
585
586	.long	0x1000000
587	.long	0x80808081
588	.long	0x81020409
589	.long	0x81848DA9
590	.long	0x82082083
591	.long	0x828CBFBF
592	.long	0x83126E98
593	.long	0x83993053
594	.long	0x84210843
595	.long	0x84A9F9C9
596	.long	0x85340854
597	.long	0x85BF3762
598	.long	0x864B8A7E
599	.long	0x86D90545
600	.long	0x8767AB60
601	.long	0x87F78088
602	.long	0x88888889
603	.long	0x891AC73B
604	.long	0x89AE408A
605	.long	0x8A42F871
606	.long	0x8AD8F2FC
607	.long	0x8B70344B
608	.long	0x8C08C08D
609	.long	0x8CA29C05
610	.long	0x8D3DCB09
611	.long	0x8DDA5203
612	.long	0x8E78356E
613	.long	0x8F1779DA
614	.long	0x8FB823EF
615	.long	0x905A3864
616	.long	0x90FDBC0A
617	.long	0x91A2B3C5
618	.long	0x92492493
619	.long	0x92F11385
620	.long	0x939A85C5
621	.long	0x94458095
622	.long	0x94F20950
623	.long	0x95A02569
624	.long	0x964FDA6D
625	.long	0x97012E03
626	.long	0x97B425EE
627	.long	0x9868C80A
628	.long	0x991F1A52
629	.long	0x99D722DB
630	.long	0x9A90E7DA
631	.long	0x9B4C6F9F
632	.long	0x9C09C09D
633	.long	0x9CC8E161
634	.long	0x9D89D89E
635	.long	0x9E4CAD24
636	.long	0x9F1165E8
637	.long	0x9FD809FE
638	.long	0xA0A0A0A1
639	.long	0xA16B312F
640	.long	0xA237C32C
641	.long	0xA3065E40
642	.long	0xA3D70A3E
643	.long	0xA4A9CF1E
644	.long	0xA57EB503
645	.long	0xA655C43A
646	.long	0xA72F053A
647	.long	0xA80A80A9
648	.long	0xA8E83F58
649	.long	0xA9C84A48
650	.long	0xAAAAAAAB
651	.long	0xAB8F69E3
652	.long	0xAC769185
653	.long	0xAD602B59
654	.long	0xAE4C415D
655	.long	0xAF3ADDC7
656	.long	0xB02C0B03
657	.long	0xB11FD3B9
658	.long	0xB21642C9
659	.long	0xB30F6353
660	.long	0xB40B40B5
661	.long	0xB509E68B
662	.long	0xB60B60B7
663	.long	0xB70FBB5B
664	.long	0xB81702E1
665	.long	0xB92143FB
666	.long	0xBA2E8BA3
667	.long	0xBB3EE722
668	.long	0xBC52640C
669	.long	0xBD691048
670	.long	0xBE82FA0C
671	.long	0xBFA02FE9
672	.long	0xC0C0C0C1
673	.long	0xC1E4BBD6
674	.long	0xC30C30C4
675	.long	0xC4372F86
676	.long	0xC565C87C
677	.long	0xC6980C6A
678	.long	0xC7CE0C7D
679	.long	0xC907DA4F
680	.long	0xCA4587E7
681	.long	0xCB8727C1
682	.long	0xCCCCCCCD
683	.long	0xCE168A78
684	.long	0xCF6474A9
685	.long	0xD0B69FCC
686	.long	0xD20D20D3
687	.long	0xD3680D37
688	.long	0xD4C77B04
689	.long	0xD62B80D7
690	.long	0xD79435E6
691	.long	0xD901B204
692	.long	0xDA740DA8
693	.long	0xDBEB61EF
694	.long	0xDD67C8A7
695	.long	0xDEE95C4D
696	.long	0xE070381D
697	.long	0xE1FC780F
698	.long	0xE38E38E4
699	.long	0xE525982B
700	.long	0xE6C2B449
701	.long	0xE865AC7C
702	.long	0xEA0EA0EB
703	.long	0xEBBDB2A6
704	.long	0xED7303B6
705	.long	0xEF2EB720
706	.long	0xF0F0F0F1
707	.long	0xF2B9D649
708	.long	0xF4898D60
709	.long	0xF6603D99
710	.long	0xF83E0F84
711	.long	0xFA232CF3
712	.long	0xFC0FC0FD
713	.long	0xFE03F810
714	.long	0x2000000
715	.long	0x81020409
716	.long	0x82082083
717	.long	0x83126E98
718	.long	0x84210843
719	.long	0x85340854
720	.long	0x864B8A7E
721	.long	0x8767AB60
722	.long	0x88888889
723	.long	0x89AE408A
724	.long	0x8AD8F2FC
725	.long	0x8C08C08D
726	.long	0x8D3DCB09
727	.long	0x8E78356E
728	.long	0x8FB823EF
729	.long	0x90FDBC0A
730	.long	0x92492493
731	.long	0x939A85C5
732	.long	0x94F20950
733	.long	0x964FDA6D
734	.long	0x97B425EE
735	.long	0x991F1A52
736	.long	0x9A90E7DA
737	.long	0x9C09C09D
738	.long	0x9D89D89E
739	.long	0x9F1165E8
740	.long	0xA0A0A0A1
741	.long	0xA237C32C
742	.long	0xA3D70A3E
743	.long	0xA57EB503
744	.long	0xA72F053A
745	.long	0xA8E83F58
746	.long	0xAAAAAAAB
747	.long	0xAC769185
748	.long	0xAE4C415D
749	.long	0xB02C0B03
750	.long	0xB21642C9
751	.long	0xB40B40B5
752	.long	0xB60B60B7
753	.long	0xB81702E1
754	.long	0xBA2E8BA3
755	.long	0xBC52640C
756	.long	0xBE82FA0C
757	.long	0xC0C0C0C1
758	.long	0xC30C30C4
759	.long	0xC565C87C
760	.long	0xC7CE0C7D
761	.long	0xCA4587E7
762	.long	0xCCCCCCCD
763	.long	0xCF6474A9
764	.long	0xD20D20D3
765	.long	0xD4C77B04
766	.long	0xD79435E6
767	.long	0xDA740DA8
768	.long	0xDD67C8A7
769	.long	0xE070381D
770	.long	0xE38E38E4
771	.long	0xE6C2B449
772	.long	0xEA0EA0EB
773	.long	0xED7303B6
774	.long	0xF0F0F0F1
775	.long	0xF4898D60
776	.long	0xF83E0F84
777	.long	0xFC0FC0FD
778	.long	0x4000000
779	.long	0x82082083
780	.long	0x84210843
781	.long	0x864B8A7E
782	.long	0x88888889
783	.long	0x8AD8F2FC
784	.long	0x8D3DCB09
785	.long	0x8FB823EF
786	.long	0x92492493
787	.long	0x94F20950
788	.long	0x97B425EE
789	.long	0x9A90E7DA
790	.long	0x9D89D89E
791	.long	0xA0A0A0A1
792	.long	0xA3D70A3E
793	.long	0xA72F053A
794	.long	0xAAAAAAAB
795	.long	0xAE4C415D
796	.long	0xB21642C9
797	.long	0xB60B60B7
798	.long	0xBA2E8BA3
799	.long	0xBE82FA0C
800	.long	0xC30C30C4
801	.long	0xC7CE0C7D
802	.long	0xCCCCCCCD
803	.long	0xD20D20D3
804	.long	0xD79435E6
805	.long	0xDD67C8A7
806	.long	0xE38E38E4
807	.long	0xEA0EA0EB
808	.long	0xF0F0F0F1
809	.long	0xF83E0F84
810	.long	0x8000000
811	.long	0x84210843
812	.long	0x88888889
813	.long	0x8D3DCB09
814	.long	0x92492493
815	.long	0x97B425EE
816	.long	0x9D89D89E
817	.long	0xA3D70A3E
818	.long	0xAAAAAAAB
819	.long	0xB21642C9
820	.long	0xBA2E8BA3
821	.long	0xC30C30C4
822	.long	0xCCCCCCCD
823	.long	0xD79435E6
824	.long	0xE38E38E4
825	.long	0xF0F0F0F1
826	.long	0x10000000
827	.long	0x88888889
828	.long	0x92492493
829	.long	0x9D89D89E
830	.long	0xAAAAAAAB
831	.long	0xBA2E8BA3
832	.long	0xCCCCCCCD
833	.long	0xE38E38E4
834	.long	0x20000000
835	.long	0x92492493
836	.long	0xAAAAAAAB
837	.long	0xCCCCCCCD
838	.long	0x40000000
839	.long	0xAAAAAAAB
840	.long	0x80000000
841__muldiv:
842	neg	r4,r2
843	ld.as	r5,[pcl,r4]
844	abs_s	r12,r0
845	bic.f	0,r2,r4
846	mpyhu.ne r12,r12,r5
847	norm	r3,r2
848	xor.f	0,r0,r1
849	; write port allocation stall
850	rsub	r3,r3,30
851	lsr	r0,r12,r3
852	j_s.d	[blink]
853	neg.mi	r0,r0
854
855	.balign	4
856SYM(__divsi3):
857	norm	r3,r1
858	abs_s	r2,r1
859	brhs	r3,23,__muldiv
860	norm	r4,r0
861	abs_l	r12,r0
862	brhs	r4,r3,.Lonebit
863	asl_s	r2,r2,r3
864	asl	r12,r12,r4
865	sub	lp_count,r3,r4
866	sub.f	r12,r12,r2
867	brge.d	r12,r2,.Lsbit
868	sub	r4,r3,r4
869	add.lo	r12,r12,r2
870	lp	.Ldivend
871.Ldivstart:divaw r12,r12,r2
872.Ldivend:xor_s	r1,r1,r0
873	sub	r0,r4,1
874	bmsk	r0,r12,r0
875	bset.hs	r0,r0,r4
876	tst_s	r1,r1
877	j_s.d	[blink]
878	neg.mi	r0,r0
879.Lonebit:
880	xor_s	r1,r1,r0
881	asr_s	r1,r1,31
882	sub1.f	0,r12,r2	; special case:	-2**(n+1) / 2**n
883	or	r0,r1,1
884	add.eq	r0,r0,r0
885	cmp_s	r12,r2
886	j_s.d	[blink]
887	mov.lo	r0,0
888.Lsbit:
889	; Need to handle special cases involving negative powers of two:
890	; r12,r2 are normalized dividend / divisor;
891	; divide anything by 0x80000000, or divide 0x80000000 by 0x40000000
892	add_s	r12,r12,r2
893	xor_s	r1,r1,r0
894	rsub	r4,r4,-1
895	ror	r0,r12,r4
896	tst_s	r2,r2
897	bmsk	r0,r0,r3
898	add.pl	r0,r0,r0
899	tst_s	r1,r1
900	j_s.d	[blink]
901	neg.mi	r0,r0
902#else /* !MULDIV */
903/* This version requires that divaw works with a divisor of 0x80000000U  */
904	abs_s	r2,r1
905	norm	r4,r0
906	neg_s	r3,r2
907	norm	r3,r3
908	abs_s	r12,r0
909	brhs	r4,r3,.Lonebit
910	asl_s	r2,r2,r3
911	asl	r12,r12,r4
912	sub	lp_count,r3,r4
913	cmp_s	r12,r2
914	sub.hs	r12,r12,r2
915	lp	.Ldivend
916.Ldivstart:divaw r12,r12,r2
917.Ldivend:xor_s	r1,r1,r0
918	sub_s	r0,r3,1
919	bmsk	r0,r12,r0
920	bset.hs	r0,r0,r3
921	tst_s	r1,r1
922	j_s.d	[blink]
923	negmi	r0,r0
924.Lonebit:
925	xor_s	r1,r1,r0
926	asr_s	r1,r1,31
927	cmp_s	r12,r2
928	mov_s	r0,0
929	j_s.d	[blink]
930	orhs	r0,r1,1
931#endif /* MULDIV */
932
933#endif	/* ifndef __ARC700__ */
934	ENDFUNC(__divsi3)
935
936
937#endif /* L_divsi3 */
938
939#ifdef  L_umodsi3
940	.section .text
941	.align 4
942
943	.global SYM(__umodsi3)
944	FUNC(__umodsi3)
945SYM(__umodsi3):
946	mov r7,blink
947	bl.nd @SYM(__udivmodsi4)
948	j.d [r7]
949	mov r0,r1
950	ENDFUNC(__umodsi3)
951
952#endif /* L_umodsi3 */
953
954#ifdef  L_modsi3
955	.section .text
956	.align 4
957
958	.global SYM (__modsi3)
959	FUNC(__modsi3)
960SYM(__modsi3):
961#ifndef __ARC_EA__
962	/* A5 / ARC60? */
963	mov_s r12,blink
964	mov_s r11,r0
965	abs_s r0,r0
966	bl.d @SYM(__udivmodsi4)
967	abs_s r1,r1
968	tst r11,r11
969	neg_s r0,r1
970	j_s.d [r12]
971	mov.pl r0,r1
972#else /* __ARC_EA__ */
973	abs_s	r2,r1
974	norm.f	r4,r0
975	neg	r5,r2
976	norm	r3,r5
977	abs_l	r12,r0
978	brhs	r4,r3,.Lonebit
979	asl_s	r2,r2,r3
980	asl	r12,r12,r4
981	sub	lp_count,r3,r4
982	cmp_s	r12,r2
983	sub.hs	r12,r12,r2
984	tst_s	r0,r0
985	lp	.Ldivend
986.Ldivstart:divaw r12,r12,r2
987.Ldivend:
988	lsr	r0,r12,r3
989	j_s.d	[blink]
990	neg.mi	r0,r0
991	.balign	4
992.Lonebit:neg.pl	r5,r5
993	cmp_s	r12,r2
994	j_s.d	[blink]
995	sub.hs	r0,r0,r5
996#endif /* !__ARC_EA__ */
997	ENDFUNC(__modsi3)
998
999#endif /* L_modsi3 */
1000
1001#ifdef L_clzsi2
1002       .section .text
1003       .align 4
1004       .global SYM (__clzsi2)
1005SYM(__clzsi2):
1006#ifdef __ARC_NORM__
1007	HIDDEN_FUNC(__clzsi2)
1008	norm.f	r0,r0
1009	mov.n	r0,0
1010	j_s.d	[blink]
1011	add.pl	r0,r0,1
1012	ENDFUNC(__clzsi2)
1013#elif !defined (__ARC_BARREL_SHIFTER__)
1014	FUNC(__clzsi2)
1015	mov lp_count,10
1016	mov_l r1,0
1017	bset r2,r1,29
1018	lp .Loop_end
1019	brhs r0,r2,.Loop_end
1020	add3 r0,r1,r0
1021.Loop_end:
1022	asl.f 0,r0
1023	sub2 r0,lp_count,lp_count
1024	sub.cs.f r0,r0,1
1025	add r0,r0,31
1026	j_s.d [blink]
1027	add.pl r0,r0,1
1028	ENDFUNC(__clzsi2)
1029#else
1030	FUNC(__clzsi2)
1031	asl.f 0,r0,2
1032	mov r1,-1
1033.Lcheck:
1034	bbit1.d r0,31,.Ldone
1035	asl.pl r0,r0,3
1036	bcs.d .Ldone_1
1037	add_s r1,r1,3
1038	bpnz.d .Lcheck
1039	asl.f 0,r0,2
1040	mov_s r0,32
1041	j_s.d [blink]
1042	mov.ne r0,r1
1043.Ldone:
1044	j_s.d [blink]
1045	add_s r0,r1,1
1046.Ldone_1:
1047	j_s.d [blink]
1048	sub_s r0,r1,1
1049	ENDFUNC(__clzsi2)
1050#endif
1051#endif /* L_clzsi2 */
1052       .section .text
1053
1054
1055;;; MILLICODE THUNK LIB ;***************
1056
1057;;; 	.macro push_regs from, to, offset
1058;;; 		st_s "\from", [sp, \offset]
1059;;; 		.if \to-\from
1060;;; 			push_regs "(\from+1)", \to, "(\offset+4)"
1061;;; 		.endif
1062;;; 	.endm
1063;;; 	push_regs 13, 18, 0
1064;;;
1065
1066;;;;   	.macro sum from, to, three
1067;;;;   		.long \from
1068;;;;   		.long \three
1069;;;;   		.local regno
1070;;;;   		.set regno, \from+1
1071;;;;   		.set shift, 32
1072;;;;   		.set shift, shift - 1
1073;;;;   #		st_s %shift @3 lsl #shift
1074;;;;   		.if \to-\from
1075;;;;   		sum "(\from+1)", \to, "(\three)"
1076;;;;   		.endif
1077;;;;   	.endm
1078;;;;
1079;;;;   	SUM 0,5, 9
1080;;;;
1081;	.altmacro
1082;;  	.macro push_regs from=0, to=3, offset
1083;;  		st_s r\from, [sp, \offset]
1084;;  		.if \to-\from
1085;;  			push_regs "\from+1 ",\to,"(\offset+4)"
1086;;  		.endif
1087;;  	.endm
1088;;
1089;;  	.macro expand_to_push from=13, to
1090;;  ;		.section .text
1091;;  ;		.align 4
1092;;  ;		.global st_
1093;;  ;		.type foo,
1094;;  	st_13_to_25:
1095;;  ;		push_regs \from, \to, 0
1096;;  	push_regs 0,3		;
1097;;  	.endm
1098;;
1099;;  	expand_to_push 13,18
1100;;
1101;#endif
1102
1103#ifndef __ARC_RF16__
1104#ifdef L_millicodethunk_st
1105	.section .text
1106	.align 4
1107	.global SYM(__st_r13_to_r15)
1108	.global SYM(__st_r13_to_r16)
1109	.global SYM(__st_r13_to_r17)
1110	.global SYM(__st_r13_to_r18)
1111	.global SYM(__st_r13_to_r19)
1112	.global SYM(__st_r13_to_r20)
1113	.global SYM(__st_r13_to_r21)
1114	.global SYM(__st_r13_to_r22)
1115	.global SYM(__st_r13_to_r23)
1116	.global SYM(__st_r13_to_r24)
1117	.global SYM(__st_r13_to_r25)
1118	HIDDEN_FUNC(__st_r13_to_r15)
1119	HIDDEN_FUNC(__st_r13_to_r16)
1120	HIDDEN_FUNC(__st_r13_to_r17)
1121	HIDDEN_FUNC(__st_r13_to_r18)
1122	HIDDEN_FUNC(__st_r13_to_r19)
1123	HIDDEN_FUNC(__st_r13_to_r20)
1124	HIDDEN_FUNC(__st_r13_to_r21)
1125	HIDDEN_FUNC(__st_r13_to_r22)
1126	HIDDEN_FUNC(__st_r13_to_r23)
1127	HIDDEN_FUNC(__st_r13_to_r24)
1128	HIDDEN_FUNC(__st_r13_to_r25)
1129	.align 4
1130SYM(__st_r13_to_r25):
1131	st r25, [sp,48]
1132SYM(__st_r13_to_r24):
1133	st r24, [sp,44]
1134SYM(__st_r13_to_r23):
1135	st r23, [sp,40]
1136SYM(__st_r13_to_r22):
1137	st r22, [sp,36]
1138SYM(__st_r13_to_r21):
1139	st r21, [sp,32]
1140SYM(__st_r13_to_r20):
1141	st r20, [sp,28]
1142SYM(__st_r13_to_r19):
1143	st r19, [sp,24]
1144SYM(__st_r13_to_r18):
1145	st r18, [sp,20]
1146SYM(__st_r13_to_r17):
1147	st r17, [sp,16]
1148SYM(__st_r13_to_r16):
1149	st r16, [sp,12]
1150SYM(__st_r13_to_r15):
1151#ifdef __ARC700__
1152	st r15, [sp,8] ; minimum function size to avoid stall: 6 bytes.
1153#else
1154	st_s r15, [sp,8]
1155#endif
1156	st_s r14, [sp,4]
1157	j_s.d [%blink]
1158	st_s r13, [sp,0]
1159	ENDFUNC(__st_r13_to_r15)
1160	ENDFUNC(__st_r13_to_r16)
1161	ENDFUNC(__st_r13_to_r17)
1162	ENDFUNC(__st_r13_to_r18)
1163	ENDFUNC(__st_r13_to_r19)
1164	ENDFUNC(__st_r13_to_r20)
1165	ENDFUNC(__st_r13_to_r21)
1166	ENDFUNC(__st_r13_to_r22)
1167	ENDFUNC(__st_r13_to_r23)
1168	ENDFUNC(__st_r13_to_r24)
1169	ENDFUNC(__st_r13_to_r25)
1170#endif  /* L_millicodethunk_st */
1171
1172
1173#ifdef L_millicodethunk_ld
1174	.section .text
1175	.align 4
1176;	==================================
1177;	the loads
1178
1179	.global SYM(__ld_r13_to_r15)
1180	.global SYM(__ld_r13_to_r16)
1181	.global SYM(__ld_r13_to_r17)
1182	.global SYM(__ld_r13_to_r18)
1183	.global SYM(__ld_r13_to_r19)
1184	.global SYM(__ld_r13_to_r20)
1185	.global SYM(__ld_r13_to_r21)
1186	.global SYM(__ld_r13_to_r22)
1187	.global SYM(__ld_r13_to_r23)
1188	.global SYM(__ld_r13_to_r24)
1189	.global SYM(__ld_r13_to_r25)
1190	HIDDEN_FUNC(__ld_r13_to_r15)
1191	HIDDEN_FUNC(__ld_r13_to_r16)
1192	HIDDEN_FUNC(__ld_r13_to_r17)
1193	HIDDEN_FUNC(__ld_r13_to_r18)
1194	HIDDEN_FUNC(__ld_r13_to_r19)
1195	HIDDEN_FUNC(__ld_r13_to_r20)
1196	HIDDEN_FUNC(__ld_r13_to_r21)
1197	HIDDEN_FUNC(__ld_r13_to_r22)
1198	HIDDEN_FUNC(__ld_r13_to_r23)
1199	HIDDEN_FUNC(__ld_r13_to_r24)
1200	HIDDEN_FUNC(__ld_r13_to_r25)
1201SYM(__ld_r13_to_r25):
1202	ld r25, [sp,48]
1203SYM(__ld_r13_to_r24):
1204	ld r24, [sp,44]
1205SYM(__ld_r13_to_r23):
1206	ld r23, [sp,40]
1207SYM(__ld_r13_to_r22):
1208	ld r22, [sp,36]
1209SYM(__ld_r13_to_r21):
1210	ld r21, [sp,32]
1211SYM(__ld_r13_to_r20):
1212	ld r20, [sp,28]
1213SYM(__ld_r13_to_r19):
1214	ld r19, [sp,24]
1215SYM(__ld_r13_to_r18):
1216	ld r18, [sp,20]
1217SYM(__ld_r13_to_r17):
1218	ld r17, [sp,16]
1219SYM(__ld_r13_to_r16):
1220	ld r16, [sp,12]
1221SYM(__ld_r13_to_r15):
1222#ifdef __ARC700__
1223	ld r15, [sp,8] ; minimum function size to avoid stall: 6 bytes.
1224#else
1225	ld_s r15, [sp,8]
1226#endif
1227	ld_s r14, [sp,4]
1228	j_s.d [%blink]
1229	ld_s r13, [sp,0]
1230	ENDFUNC(__ld_r13_to_r15)
1231	ENDFUNC(__ld_r13_to_r16)
1232	ENDFUNC(__ld_r13_to_r17)
1233	ENDFUNC(__ld_r13_to_r18)
1234	ENDFUNC(__ld_r13_to_r19)
1235	ENDFUNC(__ld_r13_to_r20)
1236	ENDFUNC(__ld_r13_to_r21)
1237	ENDFUNC(__ld_r13_to_r22)
1238	ENDFUNC(__ld_r13_to_r23)
1239	ENDFUNC(__ld_r13_to_r24)
1240	ENDFUNC(__ld_r13_to_r25)
1241
1242#endif /* L_millicodethunk_ld */
1243#ifdef L_millicodethunk_ret
1244	.global SYM(__ld_r13_to_r14_ret)
1245	.global SYM(__ld_r13_to_r15_ret)
1246	.global SYM(__ld_r13_to_r16_ret)
1247	.global SYM(__ld_r13_to_r17_ret)
1248	.global SYM(__ld_r13_to_r18_ret)
1249	.global SYM(__ld_r13_to_r19_ret)
1250	.global SYM(__ld_r13_to_r20_ret)
1251	.global SYM(__ld_r13_to_r21_ret)
1252	.global SYM(__ld_r13_to_r22_ret)
1253	.global SYM(__ld_r13_to_r23_ret)
1254	.global SYM(__ld_r13_to_r24_ret)
1255	.global SYM(__ld_r13_to_r25_ret)
1256	HIDDEN_FUNC(__ld_r13_to_r14_ret)
1257	HIDDEN_FUNC(__ld_r13_to_r15_ret)
1258	HIDDEN_FUNC(__ld_r13_to_r16_ret)
1259	HIDDEN_FUNC(__ld_r13_to_r17_ret)
1260	HIDDEN_FUNC(__ld_r13_to_r18_ret)
1261	HIDDEN_FUNC(__ld_r13_to_r19_ret)
1262	HIDDEN_FUNC(__ld_r13_to_r20_ret)
1263	HIDDEN_FUNC(__ld_r13_to_r21_ret)
1264	HIDDEN_FUNC(__ld_r13_to_r22_ret)
1265	HIDDEN_FUNC(__ld_r13_to_r23_ret)
1266	HIDDEN_FUNC(__ld_r13_to_r24_ret)
1267	HIDDEN_FUNC(__ld_r13_to_r25_ret)
1268	.section .text
1269	.align 4
1270SYM(__ld_r13_to_r25_ret):
1271	ld r25, [sp,48]
1272SYM(__ld_r13_to_r24_ret):
1273	ld r24, [sp,44]
1274SYM(__ld_r13_to_r23_ret):
1275	ld r23, [sp,40]
1276SYM(__ld_r13_to_r22_ret):
1277	ld r22, [sp,36]
1278SYM(__ld_r13_to_r21_ret):
1279	ld r21, [sp,32]
1280SYM(__ld_r13_to_r20_ret):
1281	ld r20, [sp,28]
1282SYM(__ld_r13_to_r19_ret):
1283	ld r19, [sp,24]
1284SYM(__ld_r13_to_r18_ret):
1285	ld r18, [sp,20]
1286SYM(__ld_r13_to_r17_ret):
1287	ld r17, [sp,16]
1288SYM(__ld_r13_to_r16_ret):
1289	ld r16, [sp,12]
1290SYM(__ld_r13_to_r15_ret):
1291	ld r15, [sp,8]
1292SYM(__ld_r13_to_r14_ret):
1293	ld blink,[sp,r12]
1294	ld_s r14, [sp,4]
1295	ld.ab r13, [sp,r12]
1296	j_s.d [%blink]
1297	add_s sp,sp,4
1298	ENDFUNC(__ld_r13_to_r14_ret)
1299	ENDFUNC(__ld_r13_to_r15_ret)
1300	ENDFUNC(__ld_r13_to_r16_ret)
1301	ENDFUNC(__ld_r13_to_r17_ret)
1302	ENDFUNC(__ld_r13_to_r18_ret)
1303	ENDFUNC(__ld_r13_to_r19_ret)
1304	ENDFUNC(__ld_r13_to_r20_ret)
1305	ENDFUNC(__ld_r13_to_r21_ret)
1306	ENDFUNC(__ld_r13_to_r22_ret)
1307	ENDFUNC(__ld_r13_to_r23_ret)
1308	ENDFUNC(__ld_r13_to_r24_ret)
1309	ENDFUNC(__ld_r13_to_r25_ret)
1310
1311#endif /* L_millicodethunk_ret */
1312
1313#if defined (__ARC700__) || defined (__ARC_FPX_QUARK__)
1314#ifdef  L_adddf3
1315#ifdef __ARC_NORM__
1316#include "ieee-754/adddf3.S"
1317#endif
1318#endif
1319
1320#ifdef  L_muldf3
1321#ifdef __ARC_MPY__
1322#include "ieee-754/muldf3.S"
1323#elif defined (__ARC_NORM__) && defined(__ARC_MUL64__)
1324#include "ieee-754/arc600-mul64/muldf3.S"
1325#elif defined (__ARC_NORM__) && defined(__ARC_MUL32BY16__)
1326#include "ieee-754/arc600-dsp/muldf3.S"
1327#endif
1328#endif
1329
1330#ifdef  L_addsf3
1331#ifdef __ARC_NORM__
1332#include "ieee-754/addsf3.S"
1333#endif
1334#endif
1335
1336#ifdef  L_mulsf3
1337#ifdef  __ARC_MPY__
1338#include "ieee-754/mulsf3.S"
1339#elif defined (__ARC_NORM__) && defined(__ARC_MUL64__)
1340#include "ieee-754/arc600-mul64/mulsf3.S"
1341#elif defined (__ARC_NORM__) && defined(__ARC_MUL32BY16__)
1342#include "ieee-754/arc600-dsp/mulsf3.S"
1343#elif defined (__ARC_NORM__)
1344#include "ieee-754/arc600/mulsf3.S"
1345#endif
1346#endif
1347
1348#ifdef  L_divdf3
1349#ifdef  __ARC_MPY__
1350#include "ieee-754/divdf3.S"
1351#elif defined (__ARC_NORM__) && defined(__ARC_MUL64__)
1352#include "ieee-754/arc600-mul64/divdf3.S"
1353#elif defined (__ARC_NORM__) && defined(__ARC_MUL32BY16__)
1354#include "ieee-754/arc600-dsp/divdf3.S"
1355#endif
1356#endif
1357
1358#ifdef  L_divsf3
1359#ifdef  __ARC_MPY__
1360#include "ieee-754/divsf3-stdmul.S"
1361#elif defined (__ARC_NORM__) && defined(__ARC_MUL64__)
1362#include "ieee-754/arc600-mul64/divsf3.S"
1363#elif defined (__ARC_NORM__) && defined(__ARC_MUL32BY16__)
1364#include "ieee-754/arc600-dsp/divsf3.S"
1365#elif defined (__ARC_NORM__)
1366#include "ieee-754/arc600/divsf3.S"
1367#endif
1368#endif
1369
1370#ifdef L_extendsfdf2
1371#ifdef __ARC_NORM__
1372#include "ieee-754/extendsfdf2.S"
1373#endif
1374#endif
1375
1376#ifdef L_truncdfsf2
1377#ifdef __ARC_NORM__
1378#include "ieee-754/truncdfsf2.S"
1379#endif
1380#endif
1381
1382#ifdef L_floatsidf
1383#ifdef __ARC_NORM__
1384#include "ieee-754/floatsidf.S"
1385#endif
1386#endif
1387
1388#ifdef L_floatsisf
1389#ifdef __ARC_NORM__
1390#include "ieee-754/floatsisf.S"
1391#endif
1392#endif
1393
1394#ifdef L_floatunsidf
1395#ifdef __ARC_NORM__
1396#include "ieee-754/floatunsidf.S"
1397#endif
1398#endif
1399
1400#ifdef L_fixdfsi
1401#ifdef __ARC_NORM__
1402#include "ieee-754/fixdfsi.S"
1403#endif
1404#endif
1405
1406#ifdef L_fixsfsi
1407#ifdef __ARC_NORM__
1408#include "ieee-754/fixsfsi.S"
1409#endif
1410#endif
1411
1412#ifdef L_fixunsdfsi
1413#ifdef __ARC_NORM__
1414#include "ieee-754/fixunsdfsi.S"
1415#endif
1416#endif
1417
1418#ifdef L_eqdf2
1419#ifdef __ARC_NORM__
1420#include "ieee-754/eqdf2.S"
1421#endif
1422#endif
1423
1424#ifdef L_eqsf2
1425#ifdef __ARC_NORM__
1426#include "ieee-754/eqsf2.S"
1427#endif
1428#endif
1429
1430#ifdef L_gtdf2
1431#ifdef __ARC_NORM__
1432#include "ieee-754/gtdf2.S"
1433#endif
1434#endif
1435
1436#ifdef L_gtsf2
1437#ifdef __ARC_NORM__
1438#include "ieee-754/gtsf2.S"
1439#endif
1440#endif
1441
1442#ifdef L_gedf2
1443#ifdef __ARC_NORM__
1444#include "ieee-754/gedf2.S"
1445#endif
1446#endif
1447
1448#ifdef L_gesf2
1449#ifdef __ARC_NORM__
1450#include "ieee-754/gesf2.S"
1451#endif
1452#endif
1453
1454#ifdef L_uneqdf2
1455#ifdef __ARC_NORM__
1456#include "ieee-754/uneqdf2.S"
1457#endif
1458#endif
1459
1460#ifdef L_uneqsf2
1461#ifdef __ARC_NORM__
1462#include "ieee-754/uneqsf2.S"
1463#endif
1464#endif
1465
1466#ifdef L_orddf2
1467#ifdef __ARC_NORM__
1468#include "ieee-754/orddf2.S"
1469#endif
1470#endif
1471
1472#ifdef L_ordsf2
1473#ifdef __ARC_NORM__
1474#include "ieee-754/ordsf2.S"
1475#endif
1476#endif
1477#endif /* ARC_OPTFPE */
1478
1479#endif /* !__ARC_RF16__ */
1480