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- DDDDLLLLAAAARRRRFFFFGGGG((((3333FFFF)))) DDDDLLLLAAAARRRRFFFFGGGG((((3333FFFF))))
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- NNNNAAAAMMMMEEEE
- DLARFG - generate a real elementary reflector H of order n, such that H
- * ( alpha ) = ( beta ), H' * H = I
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- SSSSYYYYNNNNOOOOPPPPSSSSIIIISSSS
- SUBROUTINE DLARFG( N, ALPHA, X, INCX, TAU )
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- INTEGER INCX, N
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- DOUBLE PRECISION ALPHA, TAU
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- DOUBLE PRECISION X( * )
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- PPPPUUUURRRRPPPPOOOOSSSSEEEE
- DLARFG generates a real elementary reflector H of order n, such that
- ( x ) ( 0 )
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- where alpha and beta are scalars, and x is an (n-1)-element real vector.
- H is represented in the form
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- H = I - tau * ( 1 ) * ( 1 v' ) ,
- ( v )
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- where tau is a real scalar and v is a real (n-1)-element
- vector.
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- If the elements of x are all zero, then tau = 0 and H is taken to be the
- unit matrix.
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- Otherwise 1 <= tau <= 2.
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- AAAARRRRGGGGUUUUMMMMEEEENNNNTTTTSSSS
- N (input) INTEGER
- The order of the elementary reflector.
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- ALPHA (input/output) DOUBLE PRECISION
- On entry, the value alpha. On exit, it is overwritten with the
- value beta.
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- X (input/output) DOUBLE PRECISION array, dimension
- (1+(N-2)*abs(INCX)) On entry, the vector x. On exit, it is
- overwritten with the vector v.
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- INCX (input) INTEGER
- The increment between elements of X. INCX > 0.
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- TAU (output) DOUBLE PRECISION
- The value tau.
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- PPPPaaaaggggeeee 1111
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