1
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6
7 package main
8
9 import (
10 big "."
11 "fmt"
12 "runtime"
13 )
14
15 var (
16 tmp1 = big.NewInt(0)
17 tmp2 = big.NewInt(0)
18 numer = big.NewInt(1)
19 accum = big.NewInt(0)
20 denom = big.NewInt(1)
21 ten = big.NewInt(10)
22 )
23
24 func extractDigit() int64 {
25 if big.CmpInt(numer, accum) > 0 {
26 return -1
27 }
28 tmp1.Lsh(numer, 1).Add(tmp1, numer).Add(tmp1, accum)
29 big.DivModInt(tmp1, tmp2, tmp1, denom)
30 tmp2.Add(tmp2, numer)
31 if big.CmpInt(tmp2, denom) >= 0 {
32 return -1
33 }
34 return tmp1.Int64()
35 }
36
37 func nextTerm(k int64) {
38 y2 := k*2 + 1
39 accum.Add(accum, tmp1.Lsh(numer, 1))
40 accum.Mul(accum, tmp1.SetInt64(y2))
41 numer.Mul(numer, tmp1.SetInt64(k))
42 denom.Mul(denom, tmp1.SetInt64(y2))
43 }
44
45 func eliminateDigit(d int64) {
46 accum.Sub(accum, tmp1.Mul(denom, tmp1.SetInt64(d)))
47 accum.Mul(accum, ten)
48 numer.Mul(numer, ten)
49 }
50
51 func main() {
52 i := 0
53 k := int64(0)
54 for {
55 d := int64(-1)
56 for d < 0 {
57 k++
58 nextTerm(k)
59 d = extractDigit()
60 }
61 eliminateDigit(d)
62 fmt.Printf("%c", d+'0')
63
64 if i++; i%50 == 0 {
65 fmt.Printf("\n")
66 if i >= 1000 {
67 break
68 }
69 }
70 }
71
72 fmt.Printf("\n%d calls; bit sizes: %d %d %d\n", runtime.NumCgoCall(), numer.Len(), accum.Len(), denom.Len())
73 }
74
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