/src/lib/libm/complex/ |
casinh.c | 1 /* $NetBSD: casinh.c,v 1.1 2007/08/20 16:01:31 drochner Exp $ */ 36 casinh(double complex z) function in typeref:typename:double complex
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casinh.c | 1 /* $NetBSD: casinh.c,v 1.1 2007/08/20 16:01:31 drochner Exp $ */ 36 casinh(double complex z) function in typeref:typename:double complex
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catrig.c | 93 * The code for casinh, casin, cacos, and cacosh comes first. The code is 103 * | casinh, casin, cacos, cacosh | 116 * casinh(z) = sign(x)*log(A+sqrt(A*A-1)) + I*asin(B) 122 * (a) for Re(casinh(z)) when z is close to the line segment [-I, I] (that 123 * is, Re(casinh(z)) is close to 0); 124 * (b) for Im(casinh(z)) when z is close to either of the intervals 125 * [I, I*infinity) or (-I*infinity, -I] (that is, |Im(casinh(z))| is 169 * rx = Re(casinh(z)) = -Im(cacos(y + I*x)). 233 * Avoid a possible underflow caused by y/A. For casinh this 290 * casinh(z) = z + O(z^3) as z -> 298 casinh(double complex z) function in typeref:typename:double complex [all...] |
catrig.c | 93 * The code for casinh, casin, cacos, and cacosh comes first. The code is 103 * | casinh, casin, cacos, cacosh | 116 * casinh(z) = sign(x)*log(A+sqrt(A*A-1)) + I*asin(B) 122 * (a) for Re(casinh(z)) when z is close to the line segment [-I, I] (that 123 * is, Re(casinh(z)) is close to 0); 124 * (b) for Im(casinh(z)) when z is close to either of the intervals 125 * [I, I*infinity) or (-I*infinity, -I] (that is, |Im(casinh(z))| is 169 * rx = Re(casinh(z)) = -Im(cacos(y + I*x)). 233 * Avoid a possible underflow caused by y/A. For casinh this 290 * casinh(z) = z + O(z^3) as z -> 298 casinh(double complex z) function in typeref:typename:double complex [all...] |