/* * Written by J.T. Conklin . * Public domain. * * Adapted for `long double' by Ulrich Drepper . * Adapted for x86-64 by Andreas Jaeger . */ #include .section .rodata.cst8,"aM",@progbits,8 .p2align 3 .type one,@object one: .double 1.0 ASM_SIZE_DIRECTIVE(one) /* It is not important that this constant is precise. It is only a value which is known to be on the safe side for using the fyl2xp1 instruction. */ .type limit,@object limit: .double 0.29 ASM_SIZE_DIRECTIVE(limit) #ifdef PIC # define MO(op) op##(%rip) #else # define MO(op) op #endif .text ENTRY(__ieee754_logl) fldln2 // log(2) fldt 8(%rsp) // x : log(2) fxam fnstsw fld %st // x : x : log(2) testb $1, %ah jnz 3f // in case x is NaN or +-Inf movzwl 8+8(%rsp), %eax cmpl $0xc000, %eax jae 6f // x <= -2, avoid overflow from -LDBL_MAX - 1. 4: fsubl MO(one) // x-1 : x : log(2) 6: fld %st // x-1 : x-1 : x : log(2) fabs // |x-1| : x-1 : x : log(2) fcompl MO(limit) // x-1 : x : log(2) fnstsw // x-1 : x : log(2) andb $0x45, %ah jz 2f fxam fnstsw andb $0x45, %ah cmpb $0x40, %ah jne 5f fabs // log(1) is +0 in all rounding modes. 5: fstp %st(1) // x-1 : log(2) fyl2xp1 // log(x) ret 2: fstp %st(0) // x : log(2) fyl2x // log(x) ret 3: testb $4, %ah jnz 4b // in case x is +-Inf fstp %st(1) fstp %st(1) ret END (__ieee754_logl) ENTRY(__logl_finite) fldln2 // log(2) fldt 8(%rsp) // x : log(2) fld %st // x : x : log(2) fsubl MO(one) // x-1 : x : log(2) fld %st // x-1 : x-1 : x : log(2) fabs // |x-1| : x-1 : x : log(2) fcompl MO(limit) // x-1 : x : log(2) fnstsw // x-1 : x : log(2) andb $0x45, %ah jz 2b fxam fnstsw andb $0x45, %ah cmpb $0x40, %ah jne 7f fabs // log(1) is +0 in all rounding modes. 7: fstp %st(1) // x-1 : log(2) fyl2xp1 // log(x) ret END (__logl_finite)