585 lines
		
	
	
		
			16 KiB
		
	
	
	
		
			Makefile
		
	
	
	
			
		
		
	
	
			585 lines
		
	
	
		
			16 KiB
		
	
	
	
		
			Makefile
		
	
	
	
| #######################################################################
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| #  This makefile runs the test programs for the linear equation routines
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| #  and the eigenvalue routines in LAPACK.  The test output files
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| #  are grouped as follows:
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| #
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| #       SLINTST,SEIGTST  -- Single precision real test routines
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| #       CLINTST,CEIGTST  -- Single precision complex test routines
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| #       DLINTST,DEIGTST  -- Double precision real test routines
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| #       ZLINTST,ZEIGTST  -- Double precision complex test routines
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| #
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| #  Test programs can be executed for all or some of the four different
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| #  precisions.  Enter 'make' followed by one or more of the data types
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| #  desired.
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| #  Some examples:
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| #       make single
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| #       make single complex
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| #       make single double complex complex16
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| #  Alternatively, the command
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| #       make
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| #  without any arguments runs all eight test programs.
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| #  The executable files are called:
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| #       xlintsts, xlintstd, xlintstc, and xlintstz for LIN
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| #       xeigtsts, xeigtstd, xeigtstc, and xeigtstz for EIG
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| #  and exist in the current directory level.
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| #
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| #  To remove the output files after the tests have been run, enter
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| #       make clean
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| #
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| #  To re-run specific tests after a make, enter (for example):
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| #       'rm ssvd.out; make'  or:
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| #       'make ssvd.out' or:
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| #       'touch svd.in; make' (to re-run the single precision SVD tests.)
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| #
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| #       'rm *svd.out; make'  (to re-run all the SVD tests.)
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| #
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| #######################################################################
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| 
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| include ../make.inc
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| 
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| ifneq ($(strip $(VARLIB)),)
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|     LAPACKLIB :=  $(VARLIB) ../$(LAPACKLIB)
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| endif
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| 
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| 
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| all:     single complex double complex16 singleproto doubleproto complexproto complex16proto
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| 
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| SEIGTST= snep.out \
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|          ssep.out \
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|          ssvd.out \
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|          sec.out \
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|          sed.out \
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|          sgg.out \
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|          sgd.out \
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|          ssb.out \
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| 	 ssg.out \
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|          sbal.out \
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|          sbak.out \
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|          sgbal.out \
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|          sgbak.out \
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|          sbb.out \
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|          sglm.out \
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|          sgqr.out \
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|          sgsv.out \
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|          scsd.out \
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|          slse.out
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| 
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| CEIGTST= cnep.out \
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|          csep.out \
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|          csvd.out \
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|          cec.out \
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|          ced.out \
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|          cgg.out \
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|          cgd.out \
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|          csb.out \
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| 	 csg.out \
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|          cbal.out \
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|          cbak.out \
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|          cgbal.out \
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|          cgbak.out \
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|          cbb.out \
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|          cglm.out \
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|          cgqr.out \
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|          cgsv.out \
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|          ccsd.out \
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|          clse.out
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| 
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| DEIGTST= dnep.out \
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|          dsep.out \
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|          dsvd.out \
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|          dec.out \
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|          ded.out \
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|          dgg.out \
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|          dgd.out \
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|          dsb.out \
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| 	 dsg.out \
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|          dbal.out \
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|          dbak.out \
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|          dgbal.out \
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|          dgbak.out \
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|          dbb.out \
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|          dglm.out \
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|          dgqr.out \
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|          dgsv.out \
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|          dcsd.out \
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|          dlse.out
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| 
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| ZEIGTST= znep.out \
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|          zsep.out \
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|          zsvd.out \
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|          zec.out \
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|          zed.out \
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|          zgg.out \
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|          zgd.out \
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|          zsb.out \
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| 	 zsg.out \
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|          zbal.out \
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|          zbak.out \
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|          zgbal.out \
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|          zgbak.out \
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|          zbb.out \
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|          zglm.out \
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|          zgqr.out \
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|          zgsv.out \
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|          zcsd.out \
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|          zlse.out
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| 
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| 
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| SLINTST= stest.out
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| 
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| SLINTSTPROTO= stest_rfp.out
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| 
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| CLINTST= ctest.out
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| 
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| CLINTSTPROTO= ctest_rfp.out
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| 
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| DLINTST= dtest.out
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| 
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| DLINTSTPROTO= dstest.out dtest_rfp.out
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| 
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| ZLINTST= ztest.out
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| 
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| ZLINTSTPROTO= zctest.out ztest_rfp.out
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| 
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| single:         $(SLINTST) $(SEIGTST)
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| complex:        $(CLINTST) $(CEIGTST)
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| double:         $(DLINTST) $(DEIGTST)
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| complex16:      $(ZLINTST) $(ZEIGTST)
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| singleproto:    $(SLINTSTPROTO)
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| complexproto:   $(CLINTSTPROTO)
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| doubleproto:    $(DLINTSTPROTO)
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| complex16proto: $(ZLINTSTPROTO)
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| 
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| #
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| # ======== SINGLE LIN TESTS ===========================
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| 
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| stest.out: stest.in xlintsts
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| 	@echo Testing REAL LAPACK linear equation routines
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| 	./xlintsts < stest.in > $@ 2>&1
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| #
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| # ======== COMPLEX LIN TESTS ==========================
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| 
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| ctest.out: ctest.in xlintstc
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| 	@echo Testing COMPLEX LAPACK linear equation routines
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| 	./xlintstc < ctest.in > $@ 2>&1
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| #
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| # ======== DOUBLE LIN TESTS ===========================
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| 
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| dtest.out: dtest.in xlintstd
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| 	@echo Testing DOUBLE PRECISION LAPACK linear equation routines
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| 	./xlintstd < dtest.in > $@ 2>&1
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| #
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| # ======== COMPLEX16 LIN TESTS ========================
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| 
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| ztest.out: ztest.in xlintstz
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| 	@echo Testing COMPLEX16 LAPACK linear equation routines
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| 	./xlintstz < ztest.in > $@ 2>&1
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| #
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| # ======== SINGLE-DOUBLE PROTO LIN TESTS ==============
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| 
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| dstest.out: dstest.in xlintstds
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| 	@echo Testing SINGLE-DOUBLE PRECISION LAPACK prototype linear equation routines
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| 	./xlintstds < dstest.in > $@ 2>&1
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| #
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| # ======== COMPLEX-COMPLEX16 LIN TESTS ========================
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| 
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| zctest.out: zctest.in xlintstzc
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| 	@echo Testing COMPLEX-COMPLEX16 LAPACK protoype linear equation routines
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| 	./xlintstzc < zctest.in > $@ 2>&1
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| #
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| # ======== SINGLE RFP LIN TESTS ========================
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| 
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| stest_rfp.out: stest_rfp.in xlintstrfs
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| 	@echo Testing REAL LAPACK RFP protoype linear equation routines
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| 	./xlintstrfs < stest_rfp.in > $@ 2>&1
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| #
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| # ======== COMPLEX16 RFP LIN TESTS ========================
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| 
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| dtest_rfp.out: dtest_rfp.in xlintstrfd
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| 	@echo Testing DOUBLE PRECISION LAPACK RFP protoype linear equation routines
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| 	./xlintstrfd < dtest_rfp.in > $@ 2>&1
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| #
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| # ======== COMPLEX16 RFP LIN TESTS ========================
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| 
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| ctest_rfp.out: ctest_rfp.in xlintstrfc
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| 	@echo Testing COMPLEX LAPACK RFP protoype linear equation routines
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| 	./xlintstrfc < ctest_rfp.in > $@ 2>&1
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| #
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| # ======== COMPLEX16 RFP LIN TESTS ========================
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| 
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| ztest_rfp.out: ztest_rfp.in xlintstrfz
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| 	@echo Testing COMPLEX16 LAPACK RFP protoype linear equation routines
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| 	./xlintstrfz < ztest_rfp.in > $@ 2>&1
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| #
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| #
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| # ======== SINGLE EIG TESTS ===========================
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| #
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| 
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| snep.out: nep.in xeigtsts
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| 	@echo NEP: Testing Nonsymmetric Eigenvalue Problem routines
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| 	./xeigtsts < nep.in > $@ 2>&1
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| 
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| ssep.out: sep.in xeigtsts
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| 	@echo SEP: Testing Symmetric Eigenvalue Problem routines
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| 	./xeigtsts < sep.in > $@ 2>&1
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| 
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| ssvd.out: svd.in xeigtsts
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| 	@echo SVD: Testing Singular Value Decomposition routines
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| 	./xeigtsts < svd.in > $@ 2>&1
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| 
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| sec.out: sec.in xeigtsts
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| 	@echo SEC: Testing REAL Eigen Condition Routines
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| 	./xeigtsts < sec.in > $@ 2>&1
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| 
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| sed.out: sed.in xeigtsts
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| 	@echo SEV: Testing REAL Nonsymmetric Eigenvalue Driver
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| 	./xeigtsts < sed.in > $@ 2>&1
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| 
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| sgg.out: sgg.in xeigtsts
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| 	@echo SGG: Testing REAL Nonsymmetric Generalized Eigenvalue Problem routines
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| 	./xeigtsts < sgg.in > $@ 2>&1
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| 
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| sgd.out: sgd.in xeigtsts
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| 	@echo SGD: Testing REAL Nonsymmetric Generalized Eigenvalue Problem driver routines
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| 	./xeigtsts < sgd.in > $@ 2>&1
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| 
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| ssb.out: ssb.in xeigtsts
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| 	@echo SSB: Testing REAL Symmetric Eigenvalue Problem routines
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| 	./xeigtsts < ssb.in > $@ 2>&1
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| 
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| ssg.out: ssg.in xeigtsts
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| 	@echo SSG: Testing REAL Symmetric Generalized Eigenvalue Problem routines
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| 	./xeigtsts < ssg.in > $@ 2>&1
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| 
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| sbal.out: sbal.in xeigtsts
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| 	@echo SGEBAL: Testing the balancing of a REAL general matrix
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| 	./xeigtsts < sbal.in > $@ 2>&1
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| 
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| sbak.out: sbak.in xeigtsts
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| 	@echo SGEBAK: Testing the back transformation of a REAL balanced matrix
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| 	./xeigtsts < sbak.in > $@ 2>&1
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| 
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| sgbal.out: sgbal.in xeigtsts
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| 	@echo SGGBAL: Testing the balancing of a pair of REAL general matrices
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| 	./xeigtsts < sgbal.in > $@ 2>&1
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| 
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| sgbak.out: sgbak.in xeigtsts
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| 	@echo SGGBAK: Testing the back transformation of a pair of REAL balanced matrices
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| 	./xeigtsts < sgbak.in > $@ 2>&1
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| 
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| sbb.out: sbb.in xeigtsts
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| 	@echo SBB:  Testing banded Singular Value Decomposition routines
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| 	./xeigtsts < sbb.in > $@ 2>&1
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| 
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| sglm.out: glm.in xeigtsts
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| 	@echo GLM: Testing Generalized Linear Regression Model routines
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| 	./xeigtsts < glm.in > $@ 2>&1
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| 
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| sgqr.out: gqr.in xeigtsts
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| 	@echo GQR: Testing Generalized QR and RQ factorization routines
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| 	./xeigtsts < gqr.in > $@ 2>&1
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| 
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| sgsv.out: gsv.in xeigtsts
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| 	@echo GSV: Testing Generalized Singular Value Decomposition routines
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| 	./xeigtsts < gsv.in > $@ 2>&1
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| 
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| scsd.out: csd.in xeigtsts
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| 	@echo CSD: Testing CS Decomposition routines
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| 	./xeigtsts < csd.in > $@ 2>&1
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| 
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| slse.out: lse.in xeigtsts
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| 	@echo LSE: Testing Constrained Linear Least Squares routines
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| 	./xeigtsts < lse.in > $@ 2>&1
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| #
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| # ======== COMPLEX EIG TESTS ===========================
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| 
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| cnep.out: nep.in xeigtstc
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| 	@echo NEP: Testing Nonsymmetric Eigenvalue Problem routines
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| 	./xeigtstc < nep.in > $@ 2>&1
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| 
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| csep.out: sep.in xeigtstc
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| 	@echo SEP: Testing Symmetric Eigenvalue Problem routines
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| 	./xeigtstc < sep.in > $@ 2>&1
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| 
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| csvd.out: svd.in xeigtstc
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| 	@echo SVD: Testing Singular Value Decomposition routines
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| 	./xeigtstc < svd.in > $@ 2>&1
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| 
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| cec.out: cec.in xeigtstc
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| 	@echo CEC: Testing COMPLEX Eigen Condition Routines
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| 	./xeigtstc < cec.in > $@ 2>&1
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| 
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| ced.out: ced.in xeigtstc
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| 	@echo CES: Testing COMPLEX Nonsymmetric Schur Form Driver
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| 	./xeigtstc < ced.in > $@ 2>&1
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| 
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| cgg.out: cgg.in xeigtstc
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| 	@echo CGG: Testing COMPLEX Nonsymmetric Generalized Eigenvalue Problem routines
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| 	./xeigtstc < cgg.in > $@ 2>&1
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| 
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| cgd.out: cgd.in xeigtstc
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| 	@echo CGD: Testing COMPLEX Nonsymmetric Generalized Eigenvalue Problem driver routines
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| 	./xeigtstc < cgd.in > $@ 2>&1
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| 
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| csb.out: csb.in xeigtstc
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| 	@echo CHB: Testing Hermitian Eigenvalue Problem routines
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| 	./xeigtstc < csb.in > $@ 2>&1
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| 
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| csg.out: csg.in xeigtstc
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| 	@echo CSG: Testing Symmetric Generalized Eigenvalue Problem routines
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| 	./xeigtstc < csg.in > $@ 2>&1
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| 
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| cbal.out: cbal.in xeigtstc
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| 	@echo CGEBAL: Testing the balancing of a COMPLEX general matrix
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| 	./xeigtstc < cbal.in > $@ 2>&1
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| 
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| cbak.out: cbak.in xeigtstc
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| 	@echo CGEBAK: Testing the back transformation of a COMPLEX balanced matrix
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| 	./xeigtstc < cbak.in > $@ 2>&1
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| 
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| cgbal.out: cgbal.in xeigtstc
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| 	@echo CGGBAL: Testing the balancing of a pair of COMPLEX general matrices
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| 	./xeigtstc < cgbal.in > $@ 2>&1
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| 
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| cgbak.out: cgbak.in xeigtstc
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| 	@echo CGGBAK: Testing the back transformation of a pair of COMPLEX balanced matrices
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| 	./xeigtstc < cgbak.in > $@ 2>&1
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| 
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| cbb.out: cbb.in xeigtstc
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| 	@echo CBB:  Testing banded Singular Value Decomposition routines
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| 	./xeigtstc < cbb.in > $@ 2>&1
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| 
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| cglm.out: glm.in xeigtstc
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| 	@echo GLM: Testing Generalized Linear Regression Model routines
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| 	./xeigtstc < glm.in > $@ 2>&1
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| 
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| cgqr.out: gqr.in xeigtstc
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| 	@echo GQR: Testing Generalized QR and RQ factorization routines
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| 	./xeigtstc < gqr.in > $@ 2>&1
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| 
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| cgsv.out: gsv.in xeigtstc
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| 	@echo GSV: Testing Generalized Singular Value Decomposition routines
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| 	./xeigtstc < gsv.in > $@ 2>&1
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| 
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| ccsd.out: csd.in xeigtstc
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| 	@echo CSD: Testing CS Decomposition routines
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| 	./xeigtstc < csd.in > $@ 2>&1
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| 
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| clse.out: lse.in xeigtstc
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| 	@echo LSE: Testing Constrained Linear Least Squares routines
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| 	./xeigtstc < lse.in > $@ 2>&1
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| #
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| # ======== DOUBLE EIG TESTS ===========================
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| 
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| dnep.out: nep.in xeigtstd
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| 	@echo NEP: Testing Nonsymmetric Eigenvalue Problem routines
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| 	./xeigtstd < nep.in > $@ 2>&1
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| 
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| dsep.out: sep.in xeigtstd
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| 	@echo SEP: Testing Symmetric Eigenvalue Problem routines
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| 	./xeigtstd < sep.in > $@ 2>&1
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| 
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| dsvd.out: svd.in xeigtstd
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| 	@echo SVD: Testing Singular Value Decomposition routines
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| 	./xeigtstd < svd.in > $@ 2>&1
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| 
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| dec.out: dec.in xeigtstd
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| 	@echo DEC: Testing DOUBLE PRECISION Eigen Condition Routines
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| 	./xeigtstd < dec.in > $@ 2>&1
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| 
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| ded.out: ded.in xeigtstd
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| 	@echo DEV: Testing DOUBLE PRECISION Nonsymmetric Eigenvalue Driver
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| 	./xeigtstd < ded.in > $@ 2>&1
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| 
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| dgg.out: dgg.in xeigtstd
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| 	@echo DGG: Testing DOUBLE PRECISION Nonsymmetric Generalized Eigenvalue Problem routines
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| 	./xeigtstd < dgg.in > $@ 2>&1
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| 
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| dgd.out: dgd.in xeigtstd
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| 	@echo DGD: Testing DOUBLE PRECISION Nonsymmetric Generalized Eigenvalue Problem driver routines
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| 	./xeigtstd < dgd.in > $@ 2>&1
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| 
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| dsb.out: dsb.in xeigtstd
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| 	@echo DSB: Testing DOUBLE PRECISION Symmetric Eigenvalue Problem routines
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| 	./xeigtstd < dsb.in > $@ 2>&1
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| 
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| dsg.out: dsg.in xeigtstd
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| 	@echo DSG: Testing DOUBLE PRECISION Symmetric Generalized Eigenvalue Problem routines
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| 	./xeigtstd < dsg.in > $@ 2>&1
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| 
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| dbal.out: dbal.in xeigtstd
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| 	@echo DGEBAL: Testing the balancing of a DOUBLE PRECISION general matrix
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| 	./xeigtstd < dbal.in > $@ 2>&1
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| 
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| dbak.out: dbak.in xeigtstd
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| 	@echo DGEBAK:  Testing the back transformation of a DOUBLE PRECISION balanced matrix
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| 	./xeigtstd < dbak.in > $@ 2>&1
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| 
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| dgbal.out: dgbal.in xeigtstd
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| 	@echo DGGBAL: Testing the balancing of a pair of DOUBLE PRECISION general matrices
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| 	./xeigtstd < dgbal.in > $@ 2>&1
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| 
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| dgbak.out: dgbak.in xeigtstd
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| 	@echo DGGBAK: Testing the back transformation of a pair of DOUBLE PRECISION balanced matrices
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| 	./xeigtstd < dgbak.in > $@ 2>&1
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| 
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| dbb.out: dbb.in xeigtstd
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| 	@echo DBB:  Testing banded Singular Value Decomposition routines
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| 	./xeigtstd < dbb.in > $@ 2>&1
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| 
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| dglm.out: glm.in xeigtstd
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| 	@echo GLM: Testing Generalized Linear Regression Model routines
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| 	./xeigtstd < glm.in > $@ 2>&1
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| 
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| dgqr.out: gqr.in xeigtstd
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| 	@echo GQR: Testing Generalized QR and RQ factorization routines
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| 	./xeigtstd < gqr.in > $@ 2>&1
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| 
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| dgsv.out: gsv.in xeigtstd
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| 	@echo GSV: Testing Generalized Singular Value Decomposition routines
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| 	./xeigtstd < gsv.in > $@ 2>&1
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| 
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| dcsd.out: csd.in xeigtstd
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| 	@echo CSD: Testing CS Decomposition routines
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| 	./xeigtstd < csd.in > $@ 2>&1
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| 
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| dlse.out: lse.in xeigtstd
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| 	@echo LSE: Testing Constrained Linear Least Squares routines
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| 	./xeigtstd < lse.in > $@ 2>&1
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| #
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| # ======== COMPLEX16 EIG TESTS ===========================
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| 
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| znep.out: nep.in xeigtstz
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| 	@echo NEP: Testing Nonsymmetric Eigenvalue Problem routines
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| 	./xeigtstz < nep.in > $@ 2>&1
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| 
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| zsep.out: sep.in xeigtstz
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| 	@echo SEP: Testing Symmetric Eigenvalue Problem routines
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| 	./xeigtstz < sep.in > $@ 2>&1
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| 
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| zsvd.out: svd.in xeigtstz
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| 	@echo SVD: Testing Singular Value Decomposition routines
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| 	./xeigtstz < svd.in > $@ 2>&1
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| 
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| zec.out: zec.in xeigtstz
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| 	@echo ZEC: Testing COMPLEX16 Eigen Condition Routines
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| 	./xeigtstz < zec.in > $@ 2>&1
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| 
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| zed.out: zed.in xeigtstz
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| 	@echo ZES: Testing COMPLEX16 Nonsymmetric Schur Form Driver
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| 	./xeigtstz < zed.in > $@ 2>&1
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| 
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| zgg.out: zgg.in xeigtstz
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| 	@echo ZGG: Testing COMPLEX16 Nonsymmetric Generalized Eigenvalue Problem routines
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| 	./xeigtstz < zgg.in > $@ 2>&1
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| 
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| zgd.out: zgd.in xeigtstz
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| 	@echo ZGD: Testing COMPLEX16 Nonsymmetric Generalized Eigenvalue Problem driver routines
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| 	./xeigtstz < zgd.in > $@ 2>&1
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| 
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| zsb.out: zsb.in xeigtstz
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| 	@echo ZHB: Testing Hermitian Eigenvalue Problem routines
 | |
| 	./xeigtstz < zsb.in > $@ 2>&1
 | |
| 
 | |
| zsg.out: zsg.in xeigtstz
 | |
| 	@echo ZSG: Testing Symmetric Generalized Eigenvalue Problem routines
 | |
| 	./xeigtstz < zsg.in > $@ 2>&1
 | |
| 
 | |
| zbal.out: zbal.in xeigtstz
 | |
| 	@echo ZGEBAL: Testing the balancing of a COMPLEX16 general matrix
 | |
| 	./xeigtstz < zbal.in > $@ 2>&1
 | |
| 
 | |
| zbak.out: zbak.in xeigtstz
 | |
| 	@echo ZGEBAK: Testing the back transformation of a COMPLEX16 balanced matrix
 | |
| 	./xeigtstz < zbak.in > $@ 2>&1
 | |
| 
 | |
| zgbal.out: zgbal.in xeigtstz
 | |
| 	@echo ZGGBAL: Testing the balancing of a pair of COMPLEX general matrices
 | |
| 	./xeigtstz < zgbal.in > $@ 2>&1
 | |
| 
 | |
| zgbak.out: zgbak.in xeigtstz
 | |
| 	@echo ZGGBAK: Testing the back transformation of a pair of COMPLEX16 balanced matrices
 | |
| 	./xeigtstz < zgbak.in > $@ 2>&1
 | |
| 
 | |
| zbb.out: zbb.in xeigtstz
 | |
| 	@echo ZBB: Testing banded Singular Value Decomposition routines
 | |
| 	./xeigtstz < zbb.in > $@ 2>&1
 | |
| 
 | |
| zglm.out: glm.in xeigtstz
 | |
| 	@echo GLM: Testing Generalized Linear Regression Model routines
 | |
| 	./xeigtstz < glm.in > $@ 2>&1
 | |
| 
 | |
| zgqr.out: gqr.in xeigtstz
 | |
| 	@echo GQR: Testing Generalized QR and RQ factorization routines
 | |
| 	./xeigtstz < gqr.in > $@ 2>&1
 | |
| 
 | |
| zgsv.out: gsv.in xeigtstz
 | |
| 	@echo GSV: Testing Generalized Singular Value Decomposition routines
 | |
| 	./xeigtstz < gsv.in > $@ 2>&1
 | |
| 
 | |
| zcsd.out: csd.in xeigtstz
 | |
| 	@echo CSD: Testing CS Decomposition routines
 | |
| 	./xeigtstz < csd.in > $@ 2>&1
 | |
| 
 | |
| zlse.out: lse.in xeigtstz
 | |
| 	@echo LSE: Testing Constrained Linear Least Squares routines
 | |
| 	./xeigtstz < lse.in > $@ 2>&1
 | |
| # ==============================================================================
 | |
| 
 | |
| xlintsts:	../$(LAPACKLIB) ../$(TMGLIB) $(FRCLIN) $(FRC)
 | |
| 	cd LIN ; $(MAKE) single
 | |
| 
 | |
| xlintstc:	../$(LAPACKLIB) ../$(TMGLIB) $(FRCLIN) $(FRC)
 | |
| 	cd LIN ; $(MAKE) complex
 | |
| 
 | |
| xlintstd:	../$(LAPACKLIB) ../$(TMGLIB) $(FRCLIN) $(FRC)
 | |
| 	cd LIN ; $(MAKE) double
 | |
| 
 | |
| xlintstz:	../$(LAPACKLIB) ../$(TMGLIB) $(FRCLIN) $(FRC)
 | |
| 	cd LIN ; $(MAKE) complex16
 | |
| 
 | |
| xlintstrfs:	../$(LAPACKLIB) ../$(TMGLIB) $(FRCLIN) $(FRC)
 | |
| 	cd LIN ; $(MAKE) proto-single
 | |
| 
 | |
| xlintstrfc:	../$(LAPACKLIB) ../$(TMGLIB) $(FRCLIN) $(FRC)
 | |
| 	cd LIN ; $(MAKE) proto-complex
 | |
| 
 | |
| xlintstrfd:	../$(LAPACKLIB) ../$(TMGLIB) $(FRCLIN) $(FRC)
 | |
| 	cd LIN ; $(MAKE) proto-double
 | |
| 
 | |
| xlintstrfz:	../$(LAPACKLIB) ../$(TMGLIB) $(FRCLIN) $(FRC)
 | |
| 	cd LIN ; $(MAKE) proto-complex16
 | |
| 
 | |
| xlintstds:	../$(LAPACKLIB) ../$(TMGLIB) $(FRCLIN) $(FRC)
 | |
| 	cd LIN ; $(MAKE) proto-double
 | |
| 
 | |
| xlintstzc:	../$(LAPACKLIB) ../$(TMGLIB) $(FRCLIN) $(FRC)
 | |
| 	cd LIN ; $(MAKE) proto-complex16
 | |
| 
 | |
| xeigtsts:	../$(LAPACKLIB) ../$(TMGLIB) $(FRCEIG) $(FRC)
 | |
| 	cd EIG ; $(MAKE) single
 | |
| 
 | |
| xeigtstc:	../$(LAPACKLIB) ../$(TMGLIB) $(FRCEIG) $(FRC)
 | |
| 	cd EIG ; $(MAKE) complex
 | |
| 
 | |
| xeigtstd:	../$(LAPACKLIB) ../$(TMGLIB) $(FRCEIG) $(FRC)
 | |
| 	cd EIG ; $(MAKE) double
 | |
| 
 | |
| xeigtstz:	../$(LAPACKLIB) ../$(TMGLIB) $(FRCEIG) $(FRC)
 | |
| 	cd EIG ; $(MAKE) complex16
 | |
| 
 | |
| clean:
 | |
| 	rm -f *.out core
 | |
| 
 | |
| cleanup:
 | |
| 	rm -f x* *.out core
 | |
| 
 | |
| FRCLIN:
 | |
| 	@FRCLIN=$(FRCLIN)
 | |
| 
 | |
| FRCEIG:
 | |
| 	@FRCEIG=$(FRCEIG)
 | |
| 
 | |
| FRC:
 | |
| 	@FRC=$(FRC)
 |