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297 |
jeremybenn |
#define type double
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type glob0, glob1;
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#define E0 ((type *)10000000)
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#define reg0 r0
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#define indreg0 (*p0)
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#define imm0 22
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#define limm0 ((type)((int)&glob0))
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#define adr0 (*E0)
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#define adrreg0 (p0[10000000])
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#define adrx0 (E0[x0])
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#define regx0 (p0[x0])
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#define E1 ((type *)11111111)
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#define reg1 r1
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#define indreg1 (*p1)
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#define imm1 33
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#define limm1 ((type)((int)&glob1))
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#define adr1 (*E1)
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#define adrreg1 (p1[1111111/4])
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#define adrx1 (E1[x1])
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#define regx1 (p1[x1])
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reg0reg1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (reg0 <= reg1) return 1; else return 0;}
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reg0indreg1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (reg0 <= indreg1) return 1; else return 0;}
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reg0imm1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (reg0 <= imm1) return 1; else return 0;}
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reg0limm1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (reg0 <= limm1) return 1; else return 0;}
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reg0adr1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (reg0 <= adr1) return 1; else return 0;}
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reg0adrreg1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (reg0 <= adrreg1) return 1; else return 0;}
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reg0adrx1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (reg0 <= adrx1) return 1; else return 0;}
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reg0regx1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (reg0 <= regx1) return 1; else return 0;}
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indreg0reg1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (indreg0 <= reg1) return 1; else return 0;}
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indreg0indreg1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (indreg0 <= indreg1) return 1; else return 0;}
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indreg0imm1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (indreg0 <= imm1) return 1; else return 0;}
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indreg0limm1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (indreg0 <= limm1) return 1; else return 0;}
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indreg0adr1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (indreg0 <= adr1) return 1; else return 0;}
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indreg0adrreg1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (indreg0 <= adrreg1) return 1; else return 0;}
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indreg0adrx1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (indreg0 <= adrx1) return 1; else return 0;}
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indreg0regx1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (indreg0 <= regx1) return 1; else return 0;}
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imm0reg1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (imm0 <= reg1) return 1; else return 0;}
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imm0indreg1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (imm0 <= indreg1) return 1; else return 0;}
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imm0imm1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (imm0 <= imm1) return 1; else return 0;}
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imm0limm1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (imm0 <= limm1) return 1; else return 0;}
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imm0adr1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (imm0 <= adr1) return 1; else return 0;}
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imm0adrreg1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (imm0 <= adrreg1) return 1; else return 0;}
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imm0adrx1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (imm0 <= adrx1) return 1; else return 0;}
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imm0regx1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (imm0 <= regx1) return 1; else return 0;}
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limm0reg1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (limm0 <= reg1) return 1; else return 0;}
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limm0indreg1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (limm0 <= indreg1) return 1; else return 0;}
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limm0imm1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (limm0 <= imm1) return 1; else return 0;}
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limm0limm1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (limm0 <= limm1) return 1; else return 0;}
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limm0adr1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (limm0 <= adr1) return 1; else return 0;}
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limm0adrreg1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (limm0 <= adrreg1) return 1; else return 0;}
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limm0adrx1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (limm0 <= adrx1) return 1; else return 0;}
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limm0regx1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (limm0 <= regx1) return 1; else return 0;}
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adr0reg1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (adr0 <= reg1) return 1; else return 0;}
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adr0indreg1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (adr0 <= indreg1) return 1; else return 0;}
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adr0imm1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (adr0 <= imm1) return 1; else return 0;}
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adr0limm1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (adr0 <= limm1) return 1; else return 0;}
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adr0adr1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (adr0 <= adr1) return 1; else return 0;}
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adr0adrreg1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (adr0 <= adrreg1) return 1; else return 0;}
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adr0adrx1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (adr0 <= adrx1) return 1; else return 0;}
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adr0regx1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (adr0 <= regx1) return 1; else return 0;}
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adrreg0reg1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (adrreg0 <= reg1) return 1; else return 0;}
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adrreg0indreg1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (adrreg0 <= indreg1) return 1; else return 0;}
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adrreg0imm1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (adrreg0 <= imm1) return 1; else return 0;}
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adrreg0limm1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (adrreg0 <= limm1) return 1; else return 0;}
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adrreg0adr1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (adrreg0 <= adr1) return 1; else return 0;}
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adrreg0adrreg1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (adrreg0 <= adrreg1) return 1; else return 0;}
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adrreg0adrx1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (adrreg0 <= adrx1) return 1; else return 0;}
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adrreg0regx1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (adrreg0 <= regx1) return 1; else return 0;}
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adrx0reg1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (adrx0 <= reg1) return 1; else return 0;}
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adrx0indreg1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (adrx0 <= indreg1) return 1; else return 0;}
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adrx0imm1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (adrx0 <= imm1) return 1; else return 0;}
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adrx0limm1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (adrx0 <= limm1) return 1; else return 0;}
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adrx0adr1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (adrx0 <= adr1) return 1; else return 0;}
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adrx0adrreg1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (adrx0 <= adrreg1) return 1; else return 0;}
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adrx0adrx1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (adrx0 <= adrx1) return 1; else return 0;}
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adrx0regx1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (adrx0 <= regx1) return 1; else return 0;}
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regx0reg1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (regx0 <= reg1) return 1; else return 0;}
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regx0indreg1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (regx0 <= indreg1) return 1; else return 0;}
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regx0imm1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (regx0 <= imm1) return 1; else return 0;}
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regx0limm1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (regx0 <= limm1) return 1; else return 0;}
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regx0adr1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (regx0 <= adr1) return 1; else return 0;}
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regx0adrreg1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (regx0 <= adrreg1) return 1; else return 0;}
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regx0adrx1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (regx0 <= adrx1) return 1; else return 0;}
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regx0regx1 (r0, r1, x0, x1, p0, p1)
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type r0, r1; type *p0, *p1;
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{if (regx0 <= regx1) return 1; else return 0;}
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