Extract and inline translation matrix reordering procedure.
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@ -100,6 +100,13 @@ qpms_dbgmsg_flags qpms_dbgmsg_enable(qpms_dbgmsg_flags types);
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qpms_pr_error_at_flf(__FILE__,__LINE__,__func__,"Unexpected error (%d)", errorcode); \
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qpms_pr_error_at_flf(__FILE__,__LINE__,__func__,"Unexpected error (%d)", errorcode); \
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}
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}
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// Same as previous, but with message.
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#define QPMS_ENSURE_SUCCESS_M(x, msg, ...) { \
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int errorcode = (x); \
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if(QPMS_UNLIKELY(errorcode)) \
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qpms_pr_error_at_flf(__FILE__,__LINE__,__func__,msg, ##__VA_ARGS__); \
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}
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#define QPMS_ENSURE(x, msg, ...) {if(QPMS_UNLIKELY(!(x))) qpms_pr_error_at_flf(__FILE__,__LINE__,__func__,msg, ##__VA_ARGS__); }
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#define QPMS_ENSURE(x, msg, ...) {if(QPMS_UNLIKELY(!(x))) qpms_pr_error_at_flf(__FILE__,__LINE__,__func__,msg, ##__VA_ARGS__); }
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@ -109,6 +116,16 @@ qpms_dbgmsg_flags qpms_dbgmsg_enable(qpms_dbgmsg_flags types);
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"Unexpected error. This is most certainly a bug.");\
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"Unexpected error. This is most certainly a bug.");\
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}
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}
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#ifdef QPMS_EVALUATE_PARANOID_ASSERTS
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#define QPMS_PARANOID_ASSERT(x) {\
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if(QPMS_UNLIKELY(!(x)))\
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qpms_pr_error_at_flf(__FILE__,__LINE__,__func__,\
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"Unexpected error. This is most certainly a bug.");\
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}
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#else
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#define QPMS_PARANOID_ASSERT(x) {;}
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#endif
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#define QPMS_NOT_IMPLEMENTED(msg, ...) qpms_pr_error_at_flf(__FILE__,__LINE__,__func__, \
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#define QPMS_NOT_IMPLEMENTED(msg, ...) qpms_pr_error_at_flf(__FILE__,__LINE__,__func__, \
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"Not implemented:" msg, ##__VA_ARGS__)
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"Not implemented:" msg, ##__VA_ARGS__)
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@ -13,6 +13,7 @@
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#include <gsl/gsl_sf_coupling.h>
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#include <gsl/gsl_sf_coupling.h>
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#include "qpms_error.h"
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#include "qpms_error.h"
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#include "normalisation.h"
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#include "normalisation.h"
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#include "translations_inlines.h"
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/*
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/*
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* Define macros with additional factors that "should not be there" according
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* Define macros with additional factors that "should not be there" according
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@ -717,20 +718,8 @@ qpms_errno_t qpms_trans_calculator_get_trans_array(const qpms_trans_calculator *
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qpms_errno_t retval = qpms_trans_calculator_get_AB_arrays(c,
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qpms_errno_t retval = qpms_trans_calculator_get_AB_arrays(c,
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A[0], B[0], c->nelem, 1,
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A[0], B[0], c->nelem, 1,
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kdlj, r_ge_d, J);
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kdlj, r_ge_d, J);
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for (size_t desti = 0; desti < destspec->n; ++desti) {
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qpms_trans_array_from_AB(target, destspec, deststride, srcspec, srcstride,
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qpms_y_t desty; qpms_vswf_type_t destt;
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A[0], B[0], c->lMax);
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if(QPMS_SUCCESS != qpms_uvswfi2ty(destspec->ilist[desti], &destt, &desty))
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qpms_pr_error_at_flf(__FILE__,__LINE__,__func__,
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"Invalid u. vswf index %llx.", destspec->ilist[desti]);
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for (size_t srci = 0; srci < srcspec->n; ++srci){
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qpms_y_t srcy; qpms_vswf_type_t srct;
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if(QPMS_SUCCESS != qpms_uvswfi2ty(srcspec->ilist[srci], &srct, &srcy))
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qpms_pr_error_at_flf(__FILE__,__LINE__,__func__,
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"Invalid u. vswf index %llx.", srcspec->ilist[srci]);
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target[srci * srcstride + desti * deststride]
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= (srct == destt) ? A[desty][srcy] : B[desty][srcy];
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}
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}
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return retval;
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return retval;
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}
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}
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@ -766,7 +755,8 @@ qpms_errno_t qpms_trans_calculator_get_trans_array_e32_e(const qpms_trans_calcul
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qpms_errno_t retval = qpms_trans_calculator_get_AB_arrays_e32_e(c,
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qpms_errno_t retval = qpms_trans_calculator_get_AB_arrays_e32_e(c,
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A, Aerr, B, Berr, ldAB, 1,
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A, Aerr, B, Berr, ldAB, 1,
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eta, k, b1, b2, beta, particle_shift, maxR, maxK, parts);
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eta, k, b1, b2, beta, particle_shift, maxR, maxK, parts);
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for (size_t desti = 0; desti < destspec->n; ++desti) {
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for (size_t desti = 0; desti < destspec->n; ++desti) {
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// TODO replace with (modified) qpms_trans_array_from_AB()
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qpms_y_t desty; qpms_vswf_type_t destt;
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qpms_y_t desty; qpms_vswf_type_t destt;
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if(QPMS_SUCCESS != qpms_uvswfi2ty(destspec->ilist[desti], &destt, &desty))
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if(QPMS_SUCCESS != qpms_uvswfi2ty(destspec->ilist[desti], &destt, &desty))
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qpms_pr_error_at_flf(__FILE__,__LINE__,__func__,
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qpms_pr_error_at_flf(__FILE__,__LINE__,__func__,
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@ -0,0 +1,38 @@
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#ifndef TRANSLATIONS_INLINES_H
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#define TRANSLATIONS_INLINES_H
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#include "translations.h"
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#include "indexing.h"
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/// Rearranges the default-ordered "A,B" array elements into "bspec"-defined matrix.
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// TODO DOC
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static inline void qpms_trans_array_from_AB(
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complex double *t,
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const qpms_vswf_set_spec_t *const t_destspec,
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const size_t t_deststride,
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const qpms_vswf_set_spec_t *const t_srcspec,
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const size_t t_srcstride,
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const complex double *const A, const complex double *const B,
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/// A and B matrices' lMax.
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/** This also determines their size and stride: they are assumed to
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* be square matrices of size `nelem * nelem` where
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* `nelem = qpms_lMax2nelem(lMax_AB)`
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*/
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const qpms_l_t lMax_AB
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) {
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QPMS_PARANOID_ASSERT(lMax_AB >= t_srcspec->lMax && lMax_AB >= t_destspec->lMax);
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const qpms_y_t nelem_AB = qpms_lMax2nelem(lMax_AB);
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for (size_t desti = 0; desti < t_destspec->n; ++desti) {
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qpms_y_t desty; qpms_vswf_type_t destt;
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QPMS_ENSURE_SUCCESS_M(qpms_uvswfi2ty(t_destspec->ilist[desti], &destt, &desty),
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"Invalid u. vswf index %llx.", t_destspec->ilist[desti]);
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for (size_t srci = 0; srci < t_srcspec->n; ++srci){
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qpms_y_t srcy; qpms_vswf_type_t srct;
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QPMS_ENSURE_SUCCESS_M(qpms_uvswfi2ty(t_srcspec->ilist[srci], &srct, &srcy),
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"Invalid u. vswf index %llx.", t_srcspec->ilist[srci]); t[srci * t_srcstride + desti * t_deststride]
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= (srct == destt) ? A[desty*nelem_AB + srcy] : B[desty*nelem_AB + srcy];
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}
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}
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}
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#endif
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