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author | Eric Blossom | 2010-12-21 13:31:58 -0800 |
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committer | Eric Blossom | 2010-12-21 13:31:58 -0800 |
commit | 75b650ef2506fe5c607517a3d5188b0705f60fde (patch) | |
tree | 99cb6fd6adc3e91edc832cbaee236d2fe30fa3fd /volk/lib/qa_32f_convert_64f_unaligned16.cc | |
parent | 1984aab345857296564e174395cf3af1375e1469 (diff) | |
parent | ed78ba5d9999bbe50507373a1aa2877ef0da64c6 (diff) | |
download | gnuradio-75b650ef2506fe5c607517a3d5188b0705f60fde.tar.gz gnuradio-75b650ef2506fe5c607517a3d5188b0705f60fde.tar.bz2 gnuradio-75b650ef2506fe5c607517a3d5188b0705f60fde.zip |
Merge branch 'next' into guile.
Passes distcheck.
* next: (32 commits)
volk: Fix for popcnt's 64/32-bit issues.
Using a copy of config.guess and config.sub instead of sym links.
Including time header to qa files.
Changed python env variable to more globally usable version.
gr_uhd: Quick fix for make distcheck failures if UHD is not installed.
PFB resampler: fix it this way to avoid the signed/unsigned warning.
PFB resampler: fixes bug where filter could be looking past the number of inputs.
resampler PFB: Sets relative rate when rate is changed.
Create method to set rate on pfb_arb_resamp after it has been created. Allow it to be called from GRC.
volk: fix for running 32-bit OS on 64-bit processor. System is correctly identified as 32-bit and compiles with the correct flags.
volk: changing the path variables again. This works on my various systems tested. Using abs_ path names failed on Ubuntu 8.04 32-bit.
volk: May be a hack, but it was required for my 32-bit Fedora 13 to work.
volk: Removing unnecessary shell script; last commit takes care if its functions.
volk: Fixing build system to handle making volk_mktables, volk_tables.h, and volk_config.h instead of a standalone shell script.
volk: readding 16sc_magnitude_32f_sse with fix for SSE hadd_ps error.
volk: Adding a few more generic-only test cases.
volk: adding generic QA test for 16sc_magnitude_32f.
volk: modified the configure scripts to output which architectures it will be building based on the configure tests.
uhd: update notes in grc blocks for addressing scheme
volk: Removing erroneous SSE function that actually usese an SSE3 intrin (mm_hadd_ps).
...
Diffstat (limited to 'volk/lib/qa_32f_convert_64f_unaligned16.cc')
-rw-r--r-- | volk/lib/qa_32f_convert_64f_unaligned16.cc | 61 |
1 files changed, 61 insertions, 0 deletions
diff --git a/volk/lib/qa_32f_convert_64f_unaligned16.cc b/volk/lib/qa_32f_convert_64f_unaligned16.cc new file mode 100644 index 000000000..6f7d5066d --- /dev/null +++ b/volk/lib/qa_32f_convert_64f_unaligned16.cc @@ -0,0 +1,61 @@ +#include <volk/volk.h> +#include <qa_32f_convert_64f_unaligned16.h> +#include <volk/volk_32f_convert_64f_unaligned16.h> +#include <cstdlib> +#include <ctime> + +//test for sse2 + +#ifndef LV_HAVE_SSE2 + +void qa_32f_convert_64f_unaligned16::t1() { + printf("sse2 not available... no test performed\n"); +} + +#else + +void qa_32f_convert_64f_unaligned16::t1() { + + volk_environment_init(); + clock_t start, end; + double total; + const int vlen = 3201; + const int ITERS = 100000; + float input0[vlen] __attribute__ ((aligned (16))); + + double output_generic[vlen] __attribute__ ((aligned (16))); + double output_sse2[vlen] __attribute__ ((aligned (16))); + + for(int i = 0; i < vlen; ++i) { + input0[i] = ((float) (rand() - (RAND_MAX/2))) / static_cast<float>((RAND_MAX/2)); + } + printf("32f_convert_64f_unaligned\n"); + + start = clock(); + for(int count = 0; count < ITERS; ++count) { + volk_32f_convert_64f_unaligned16_manual(output_generic, input0, vlen, "generic"); + } + end = clock(); + total = (double)(end-start)/(double)CLOCKS_PER_SEC; + printf("generic_time: %f\n", total); + + start = clock(); + for(int count = 0; count < ITERS; ++count) { + volk_32f_convert_64f_unaligned16_manual(output_sse2, input0, vlen, "sse2"); + } + end = clock(); + total = (double)(end-start)/(double)CLOCKS_PER_SEC; + printf("sse2_time: %f\n", total); + + for(int i = 0; i < 1; ++i) { + //printf("inputs: %d, %d\n", input0[i*2], input0[i*2 + 1]); + //printf("generic... %d, ssse3... %d\n", output0[i], output1[i]); + } + + for(int i = 0; i < vlen; ++i) { + //printf("%d...%d\n", output0[i], output01[i]); + CPPUNIT_ASSERT_EQUAL(output_generic[i], output_sse2[i]); + } +} + +#endif |