x86: Force relocation against local absolute symbol
[deliverable/binutils-gdb.git] / gas / testsuite / gas / bfin / parallel2.s
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1 .section .text;
2 A0 = A1 || P0 = [sp+20];
3 a1 = a0 || P0 = [p5+24];
4 a0 = R0 || P0 = [P4+28];
5 A1 = r1 || P0 = [P3+32];
6
7 R4 = A0 (fu) || P0 = [p3+36];
8 r5 = A1 (ISS2) || P0 = [P3+40];
9 R6 = a0 || P0 = [P4+44];
10 R7 = A1 || P0 = [P4+48];
11 R6 = A0, R7 = a1 || P0 = [P4+52];
12 r1 = a1, r0 = a0 (fu) || P0 = [P4+56];
13
14 A0.X = r5.l || p0 = [p4+60];
15 a1.X = r2.L || r0 = [i0 ++ m0];
16 r0.l = a0.x || r1 = [i0 ++ m1];
17 R7.l = A1.X || r0 = [i0 ++ m2];
18 A0.L = r3.l || r0 = [i0 ++ m3];
19 a1.l = r4.l || r0 = [i1 ++ m3];
20 A0.h = r6.H || r0 = [i1 ++ m2];
21 A1.H = r5.h || r0 = [i1 ++ m1];
22 r0.l = A0 (iu) || r4 = [i1 ++ m0];
23 R1.H = A1 (s2rnd) || r0 = [i2 ++ m0];
24 r1.h = a1 || r0 = [i2 ++ m1];
25 R2.l = A0, r2.H = A1 (IH) || r0 = [i2 ++ m2];
26 R2.l = A0, r2.H = A1 || r0 = [i2 ++ m3];
27 r0.H = A1, R0.L = a0 (t) || r5 = [i3 ++ m0];
28 r0.H = A1, R0.L = a0 (fu) || r5 = [i3 ++ m1];
29 r0.H = A1, R0.L = a0 (is) || r5 = [i3 ++ m2];
30 r0.H = A1, R0.L = a0 || r5 = [i3 ++ m3];
31
32 A0 = A0 >> 31 || r0 = [fp - 32];
33 a0 = a0 << 31 || r0 = [fp - 28];
34 a1 = a1 >> 0 || r0 = [fp - 24];
35 A1 = A1 << 0 || r0 = [fp - 20];
36 r7 = r5 << 31 (s) || r0 = [fp - 16];
37 R3 = r2 >>> 22 || r0 = [fp - 12];
38 r1.L = R2.H << 15 (S) || r0 = [fp - 8];
39 r5.h = r2.l >>> 2 || r0 = [fp - 4];
40
41 r3.l = Ashift r4.h by r2.l || r0 = [fp - 100];
42 R7.H = ASHIFT R7.L by R0.L (S) || r0 = [fp - 104];
43 r7.h = ashift r7.l by r0.l (s) || r0 = [fp - 108];
44 r6 = AShiFT R5 by R2.L || r0 = [fp - 112];
45 R0 = Ashift R4 by r1.l (s) || r3 = [fp - 116];
46 r2 = ashift r6 BY r3.L (S) || r0 = [fp - 120];
47 A0 = Ashift a0 by r1.l || r0 = [fp - 124];
48 a1 = ASHIFT a1 by r0.L || r0 = [fp - 128];
49
50 r1.H = r2.l >> 15 || R5 = W [P1--] (z);
51 r7.l = r0.L << 0 || R5 = W [P2] (z);
52 r5 = r5 >> 31 || R7 = W [P2++] (z);
53 r0 = r0 << 12 || R5 = W [P2--] (z);
54 A0 = A0 >> 1 || R5 = W [P2+0] (z);
55 A0 = A0 << 0 || R5 = W [P2+2] (z);
56 a1 = A1 << 31 || R5 = W [P2+4] (z);
57 a1 = a1 >> 16 || R5 = W [P2+30] (z);
58
59 R1.H = LShift r2.h by r0.l || R5 = W [P2+24] (z);
60 r0.l = LSHIFT r0.h by r1.l || R5 = W [P2+22] (z);
61 r7.L = lshift r6.L BY r2.l || R5 = W [P2+20] (z);
62 r5 = LShIft R4 bY r3.L || R4 = W [P2+18] (z);
63 A0 = Lshift a0 By R6.L || R5 = W [P2+16] (z);
64 A1 = LsHIFt a1 by r5.l || R5 = W [P2+14] (z);
65
66 r7 = ROT r7 by -32 || R5 = W [P2+12] (z);
67 R6 = Rot r7 by -31 || R5 = W [P2+10] (z);
68 R5 = RoT R7 by 31 || R6 = W [P2+8] (z);
69 R4 = Rot r7 by 30 || R5 = W [P2+6] (z);
70 a0 = rot A0 by 0 || R5 = W [P3] (z);
71 A0 = ROT a0 BY 10 || R5 = W [P3++] (z);
72 A1 = ROT A1 by -20 || R5 = W [P3--] (z);
73 A1 = ROT a1 By -32 || R5 = W [P4] (z);
74
75 r0 = rot r1 by r2.L || R5 = W [P4++] (z);
76 R0 = Rot R4 BY R3.L || R5 = W [P4--] (z);
77 A0 = ROT A0 by r7.l || R5 = W [P5] (z);
78 A1 = rot a1 bY r6.l || R5 = W [P5++] (z);
79
80 NOp || R5 = W [P5--] (z);
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