mirror of
https://github.com/saymrwulf/uhd.git
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1608 lines
51 KiB
C++
1608 lines
51 KiB
C++
//
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// Copyright 2011-2012 Ettus Research LLC
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// Copyright 2018 Ettus Research, a National Instruments Company
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//
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// SPDX-License-Identifier: GPL-3.0-or-later
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//
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#include <uhd/convert.hpp>
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#include <uhd/exception.hpp>
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#include <stdint.h>
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// NOTE: <list> MUST be included before <boost/test/data/test_case.hpp> to
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// work around a bug in Boost 1.65.
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// clang-format off
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#include <list>
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// clang-format on
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#include <boost/test/data/test_case.hpp>
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#include <boost/test/unit_test.hpp>
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#include <array>
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#include <chrono>
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#include <complex>
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#include <cstdlib>
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#include <iostream>
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#include <vector>
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using namespace uhd;
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// typedefs for complex types
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typedef std::complex<int16_t> sc16_t;
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typedef std::complex<float> fc32_t;
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typedef std::complex<double> fc64_t;
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static constexpr size_t BENCHMARK_NSAMPS = 8 * 1024 * 1024;
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static constexpr size_t BENCHMARK_NITERS = 4;
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// Holds performance information about a conversion run
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struct benchmark_result
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{
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convert::id_type id;
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uhd::convert::priority_type prio;
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double elapsed_ns;
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size_t nsamps;
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};
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// List of priority types. This must be manually kept in sync with whatever is
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// defined in convert_common.hpp
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const std::array<uhd::convert::priority_type, 5> CONV_PRIO_TYPES{-1, 0, 1, 2, 3};
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// Use this to create a converter with fixed prio in a test case. If prio does
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// not exist, we simply exit the test case. That's normal.
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#define GET_CONVERTER_SAFE(conv_name, id, prio) \
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convert::converter::sptr conv_name; \
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try { \
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conv_name = convert::get_converter(id, prio)(); \
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} catch (uhd::key_error&) { \
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return; \
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}
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// There appears to be a bug with Boost <1.68 where decorators on Boost data
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// test cases are not honored. (While I could not find the bug itself, it is
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// referred to in a comment at https://github.com/boostorg/test/issues/139 on
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// Boost's GitHub bug tracker.) Unfortunately, that means that the benchmarks
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// are run by default on those versions of Boost, causing this unit test to
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// take much longer than usual and thus slowing down our entire CI pipeline.
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// The SKIP_BENCHMARK_CHECK macro implements a run-time check on older versions
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// of Boost to determine whether the benchmarks should be skipped or not. To
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// 'unskip' the benchmarks on those versions, pass `--benchmark` to the
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// invocation of `convert_test` (note that the `--benchmark` flag must be
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// specified after `--` to ensure it is passed directly to the test and not
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// interpreted by Boost.)
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#if (BOOST_VERSION < 106800)
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# define SKIP_BENCHMARK_CHECK \
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if (!(boost::unit_test::framework::master_test_suite().argc >= 2 \
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&& std::string(boost::unit_test::framework::master_test_suite().argv[1]) \
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== "--benchmark")) { \
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return; \
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}
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#else
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// For versions of Boost where this issue has been fixed, the benchmarks can
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// be enabled by invoking convert_test with `--run-test=+benchmark*` to
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// explicitly enable all the disabled benchmark tests.
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# define SKIP_BENCHMARK_CHECK
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#endif
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// Shorthand for defining a test case that tests all prios. Creates a variable
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// 'conv_prio_type'
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#define MULTI_CONVERTER_TEST_CASE(test_name) \
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BOOST_DATA_TEST_CASE(test_name, CONV_PRIO_TYPES, conv_prio_type)
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#define MY_CHECK_CLOSE(a, b, f) \
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{ \
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static bool error_encountered = false; \
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if (!error_encountered && (std::abs((a) - (b)) >= f)) { \
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BOOST_ERROR( \
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"\n\t" << #a << " (" << (a) << ") error " << #b << " (" << (b) << ")"); \
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error_encountered = true; \
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} \
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}
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// Given a converter ID describing a conversion from input type to
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// output type, return the 'reverse' converter ID from output type to
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// input type
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static convert::id_type reverse_converter(const convert::id_type& in)
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{
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convert::id_type out = in;
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std::swap(out.input_format, out.output_format);
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std::swap(out.num_inputs, out.num_outputs);
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return out;
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}
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/***********************************************************************
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* Loopback runner:
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* convert input buffer into intermediate buffer
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* convert intermediate buffer into output buffer
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* optionally collect benchmark data
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**********************************************************************/
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template <typename Range>
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static void loopback(size_t nsamps,
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convert::id_type& in_id,
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convert::id_type& out_id,
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const Range& input,
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Range& output,
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const int prio_in,
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const int prio_out,
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std::vector<benchmark_result>* benchmark_data = nullptr)
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{
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// make this buffer large enough for all test types
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std::vector<uint64_t> interm(nsamps);
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std::vector<const void*> input0{&input[0]}, input1{&interm[0]};
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std::vector<void*> output0{&interm[0]}, output1{&output[0]};
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// convert to intermediate type
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convert::converter::sptr c0 = convert::get_converter(in_id, prio_in)();
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c0->set_scalar(32767.);
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if (benchmark_data) {
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const auto start_time = std::chrono::steady_clock::now();
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c0->conv(input0, output0, nsamps);
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const auto end_time = std::chrono::steady_clock::now();
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const std::chrono::duration<double, std::nano> elapsed_in2out =
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end_time - start_time;
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benchmark_data->push_back({in_id, prio_in, elapsed_in2out.count(), nsamps});
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} else {
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c0->conv(input0, output0, nsamps);
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}
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// convert back to host type
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convert::converter::sptr c1 = convert::get_converter(out_id, prio_out)();
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c1->set_scalar(1 / 32767.);
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if (benchmark_data) {
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const auto start_time = std::chrono::steady_clock::now();
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c1->conv(input1, output1, nsamps);
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const auto end_time = std::chrono::steady_clock::now();
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const std::chrono::duration<double, std::nano> elapsed_out2in =
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end_time - start_time;
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benchmark_data->push_back({out_id, prio_out, elapsed_out2in.count(), nsamps});
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} else {
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c1->conv(input1, output1, nsamps);
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}
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}
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// Use this to call the loopback runner from a test so that missing prio won't
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// become an issue
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#define CALL_LOOPBACK_SAFE(...) \
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try { \
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loopback(__VA_ARGS__); \
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} catch (uhd::key_error&) { \
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return; \
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}
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// Iterates over a collection of individual benchmark results, collecting
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// the results from multiple runs with the same converter ID and priority
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// and prints out the results
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static void collate_benchmark_results(std::vector<benchmark_result> benchmarks)
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{
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while (!benchmarks.empty()) {
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// Get the first entry from the per-iteration runs
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struct benchmark_result result = *(benchmarks.begin());
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// Remove that entry from the list, and look for other entries in
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// the list that have the same converter and priority
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auto b_iter = benchmarks.erase(benchmarks.begin());
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while (b_iter != benchmarks.end()) {
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if (b_iter->id == result.id && b_iter->prio == result.prio) {
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// If a match is found, accumulate the elapsed time and
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// number of samples
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result.elapsed_ns += b_iter->elapsed_ns;
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result.nsamps += b_iter->nsamps;
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// And then remove it from the list
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b_iter = benchmarks.erase(b_iter);
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} else {
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// Not a match; move on
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b_iter++;
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}
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}
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double ns_per_sample = result.elapsed_ns / result.nsamps;
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std::cout << "For converter " << result.id.to_string() << " prio " << result.prio
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<< ": " << ns_per_sample << " ns/sample" << std::endl;
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}
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}
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/***********************************************************************
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* Run converter test code under a benchmark
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* This overload takes a prio, for the MULTI_CONVERTER_TEST_CASES which
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* receive it as a parameter
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**********************************************************************/
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template <typename ConverterFunction>
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static void benchmark_converter(convert::id_type id,
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uhd::convert::priority_type prio,
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ConverterFunction&& converter_fn)
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{
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std::vector<benchmark_result> benchmarks;
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for (size_t iter = 0; iter < BENCHMARK_NITERS; iter++) {
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std::vector<benchmark_result> benchmarks_iter;
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converter_fn(BENCHMARK_NSAMPS, id, prio, &benchmarks_iter);
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// Detect if the benchmark didn't run because the converter type
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// with the given priority wasn't found; if that's the case, bail
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// on the test case
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if (benchmarks_iter.empty()) {
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return;
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}
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// Save the results for this iteration
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std::copy(benchmarks_iter.begin(),
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benchmarks_iter.end(),
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std::back_inserter(benchmarks));
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}
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collate_benchmark_results(benchmarks);
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}
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/***********************************************************************
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* Run converter test code under a benchmark
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* This overload does not take a prio, for the converter functions which
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* iterate them automatically (the test_convert_types_for_floats variant)
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**********************************************************************/
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template <typename ConverterFunction>
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static void benchmark_converter(convert::id_type id, ConverterFunction&& converter_fn)
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{
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std::vector<benchmark_result> benchmarks;
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for (size_t iter = 0; iter < BENCHMARK_NITERS; iter++) {
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std::vector<benchmark_result> benchmarks_iter;
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converter_fn(BENCHMARK_NSAMPS, id, &benchmarks_iter);
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// Detect if the benchmark didn't run because the converter type
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// with the given priority wasn't found; if that's the case, bail
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// on the test case
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if (benchmarks_iter.empty()) {
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return;
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}
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// Save the results for this iteration
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std::copy(benchmarks_iter.begin(),
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benchmarks_iter.end(),
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std::back_inserter(benchmarks));
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}
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collate_benchmark_results(benchmarks);
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}
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/***********************************************************************
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* Test short conversion
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**********************************************************************/
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static void test_convert_types_sc16(size_t nsamps,
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convert::id_type& id,
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uhd::convert::priority_type prio,
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const int extra_div = 1,
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int mask = 0xffff,
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std::vector<benchmark_result>* benchmark_data = nullptr)
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{
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// fill the input samples
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std::vector<sc16_t> input(nsamps), output(nsamps);
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for (sc16_t& in : input) {
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in = sc16_t(
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short((float((std::rand()) / (double(RAND_MAX) / 2)) - 1) * 32767 / extra_div)
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& mask,
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short((float((std::rand()) / (double(RAND_MAX) / 2)) - 1) * 32767 / extra_div)
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& mask);
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}
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// run the loopback and test
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convert::id_type in_id = id;
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convert::id_type out_id = reverse_converter(id);
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CALL_LOOPBACK_SAFE(nsamps, in_id, out_id, input, output, prio, prio, benchmark_data);
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if (!benchmark_data) {
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BOOST_CHECK_EQUAL_COLLECTIONS(
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input.begin(), input.end(), output.begin(), output.end());
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}
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}
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MULTI_CONVERTER_TEST_CASE(test_convert_types_be_sc16)
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{
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convert::id_type id;
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id.input_format = "sc16";
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id.num_inputs = 1;
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id.output_format = "sc16_item32_be";
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id.num_outputs = 1;
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// try various lengths to test edge cases
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for (size_t nsamps = 1; nsamps < 16; nsamps++) {
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test_convert_types_sc16(nsamps, id, conv_prio_type);
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}
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}
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BOOST_TEST_DECORATOR(*boost::unit_test::disabled())
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MULTI_CONVERTER_TEST_CASE(benchmark_convert_types_be_sc16)
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{
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SKIP_BENCHMARK_CHECK;
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convert::id_type id;
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id.input_format = "sc16";
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id.num_inputs = 1;
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id.output_format = "sc16_item32_be";
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id.num_outputs = 1;
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benchmark_converter(id,
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conv_prio_type,
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[](size_t nsamps,
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convert::id_type id,
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uhd::convert::priority_type prio,
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std::vector<benchmark_result>* benchmarks) {
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test_convert_types_sc16(nsamps, id, prio, 1, 0xffff, benchmarks);
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});
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}
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MULTI_CONVERTER_TEST_CASE(test_convert_types_le_sc16)
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{
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convert::id_type id;
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id.input_format = "sc16";
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id.num_inputs = 1;
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id.output_format = "sc16_item32_le";
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id.num_outputs = 1;
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// try various lengths to test edge cases
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for (size_t nsamps = 1; nsamps < 16; nsamps++) {
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test_convert_types_sc16(nsamps, id, conv_prio_type);
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}
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}
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BOOST_TEST_DECORATOR(*boost::unit_test::disabled())
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MULTI_CONVERTER_TEST_CASE(benchmark_convert_types_le_sc16)
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{
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SKIP_BENCHMARK_CHECK;
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convert::id_type id;
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id.input_format = "sc16";
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id.num_inputs = 1;
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id.output_format = "sc16_item32_le";
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id.num_outputs = 1;
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benchmark_converter(id,
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conv_prio_type,
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[](size_t nsamps,
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convert::id_type id,
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uhd::convert::priority_type prio,
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std::vector<benchmark_result>* benchmarks) {
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test_convert_types_sc16(nsamps, id, prio, 1, 0xffff, benchmarks);
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});
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}
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MULTI_CONVERTER_TEST_CASE(test_convert_types_chdr_sc16)
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{
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convert::id_type id;
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id.input_format = "sc16";
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id.num_inputs = 1;
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id.output_format = "sc16_chdr";
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id.num_outputs = 1;
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// try various lengths to test edge cases
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for (size_t nsamps = 1; nsamps < 16; nsamps++) {
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test_convert_types_sc16(nsamps, id, conv_prio_type);
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}
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}
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BOOST_TEST_DECORATOR(*boost::unit_test::disabled())
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MULTI_CONVERTER_TEST_CASE(benchmark_convert_types_chdr_sc16)
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{
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SKIP_BENCHMARK_CHECK;
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convert::id_type id;
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id.input_format = "sc16";
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id.num_inputs = 1;
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id.output_format = "sc16_chdr";
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id.num_outputs = 1;
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benchmark_converter(id,
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conv_prio_type,
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[](size_t nsamps,
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convert::id_type id,
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uhd::convert::priority_type prio,
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std::vector<benchmark_result>* benchmarks) {
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test_convert_types_sc16(nsamps, id, prio, 1, 0xffff, benchmarks);
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});
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}
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/***********************************************************************
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* Test float conversion
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**********************************************************************/
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template <typename data_type>
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static void test_convert_types_for_floats(size_t nsamps,
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convert::id_type& id,
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const double extra_scale = 1.0,
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std::vector<benchmark_result>* benchmark_data = nullptr)
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{
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typedef typename data_type::value_type value_type;
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// fill the input samples
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std::vector<data_type> input(nsamps), output(nsamps);
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for (data_type& in : input) {
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in = data_type(
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((std::rand() / (value_type(RAND_MAX) / 2)) - 1) * float(extra_scale),
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((std::rand() / (value_type(RAND_MAX) / 2)) - 1) * float(extra_scale));
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}
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// run the loopback and test
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convert::id_type in_id = id;
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convert::id_type out_id = reverse_converter(id);
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// make a list of all prio: best/generic combos
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typedef std::pair<int, int> int_pair_t;
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const std::vector<int_pair_t> prios{
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int_pair_t(0, 0), int_pair_t(-1, 0), int_pair_t(0, -1), int_pair_t(-1, -1)};
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// loopback foreach prio combo (generic vs best)
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for (const auto& prio : prios) {
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CALL_LOOPBACK_SAFE(nsamps,
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in_id,
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out_id,
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input,
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output,
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prio.first,
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prio.second,
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benchmark_data);
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for (size_t i = 0; i < nsamps && (!benchmark_data); i++) {
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MY_CHECK_CLOSE(input[i].real(), output[i].real(), value_type(1. / (1 << 14)));
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MY_CHECK_CLOSE(input[i].imag(), output[i].imag(), value_type(1. / (1 << 14)));
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}
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}
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}
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template <typename data_type>
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static void test_convert_types_for_floats_with_saturation(
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size_t nsamps, convert::id_type& id, const double extra_scale = 1.0)
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{
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typedef typename data_type::value_type value_type;
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// fill the input samples
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std::vector<data_type> input(nsamps), output(nsamps), expected_output(nsamps);
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for (size_t sample_count = 0; sample_count < nsamps; sample_count++) {
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value_type real_data =
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((std::rand() / (value_type(RAND_MAX) / 2)) - 1) * float(extra_scale);
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value_type imag_data =
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((std::rand() / (value_type(RAND_MAX) / 2)) - 1) * float(extra_scale);
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value_type expected_real_data = real_data;
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value_type expected_imag_data = imag_data;
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if (sample_count & 1) {
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// To ensure that some samples are out of range and thus should be
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// saturated, every alternating sample's real and imaginary values
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// are pushed outside of the [-1..1] range.
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real_data = (real_data < 0.0) ? real_data - 1.0 : real_data + 1.0;
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imag_data = (imag_data < 0.0) ? imag_data - 1.0 : imag_data + 1.0;
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// The expected output values after loopback for these samples are
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// -1.0 or 1.0.
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expected_real_data = (real_data < 0.0) ? -1.0 : 1.0;
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expected_imag_data = (imag_data < 0.0) ? -1.0 : 1.0;
|
|
}
|
|
input[sample_count] = data_type(real_data, imag_data);
|
|
expected_output[sample_count] = data_type(expected_real_data, expected_imag_data);
|
|
}
|
|
|
|
// run the loopback and test
|
|
convert::id_type in_id = id;
|
|
convert::id_type out_id = id;
|
|
std::swap(out_id.input_format, out_id.output_format);
|
|
std::swap(out_id.num_inputs, out_id.num_outputs);
|
|
|
|
// make a list of all prio: best/generic combos
|
|
typedef std::pair<int, int> int_pair_t;
|
|
const std::vector<int_pair_t> prios{
|
|
int_pair_t(0, 0), int_pair_t(-1, 0), int_pair_t(0, -1), int_pair_t(-1, -1)};
|
|
|
|
// loopback foreach prio combo (generic vs best)
|
|
for (const auto& prio : prios) {
|
|
CALL_LOOPBACK_SAFE(nsamps, in_id, out_id, input, output, prio.first, prio.second);
|
|
for (size_t i = 0; i < nsamps; i++) {
|
|
MY_CHECK_CLOSE(
|
|
expected_output[i].real(), output[i].real(), value_type(1. / (1 << 14)));
|
|
MY_CHECK_CLOSE(
|
|
expected_output[i].imag(), output[i].imag(), value_type(1. / (1 << 14)));
|
|
}
|
|
}
|
|
}
|
|
|
|
BOOST_AUTO_TEST_CASE(test_convert_types_be_fc32)
|
|
{
|
|
convert::id_type id;
|
|
id.input_format = "fc32";
|
|
id.num_inputs = 1;
|
|
id.output_format = "sc16_item32_be";
|
|
id.num_outputs = 1;
|
|
|
|
// try various lengths to test edge cases
|
|
for (size_t nsamps = 1; nsamps < 16; nsamps++) {
|
|
test_convert_types_for_floats<fc32_t>(nsamps, id);
|
|
}
|
|
}
|
|
|
|
BOOST_AUTO_TEST_CASE(test_convert_types_be_fc32_with_saturation)
|
|
{
|
|
convert::id_type id;
|
|
id.input_format = "fc32";
|
|
id.num_inputs = 1;
|
|
id.output_format = "sc16_item32_be";
|
|
id.num_outputs = 1;
|
|
|
|
// try various lengths to test edge cases
|
|
for (size_t nsamps = 1; nsamps < 16; nsamps++) {
|
|
test_convert_types_for_floats_with_saturation<fc32_t>(nsamps, id);
|
|
}
|
|
}
|
|
|
|
BOOST_TEST_DECORATOR(*boost::unit_test::disabled())
|
|
BOOST_AUTO_TEST_CASE(benchmark_convert_types_be_fc32)
|
|
{
|
|
SKIP_BENCHMARK_CHECK;
|
|
|
|
convert::id_type id;
|
|
id.input_format = "fc32";
|
|
id.num_inputs = 1;
|
|
id.output_format = "sc16_item32_be";
|
|
id.num_outputs = 1;
|
|
|
|
benchmark_converter(id,
|
|
[](size_t nsamps,
|
|
convert::id_type id,
|
|
std::vector<benchmark_result>* benchmarks) {
|
|
test_convert_types_for_floats<fc32_t>(nsamps, id, 1.0, benchmarks);
|
|
});
|
|
}
|
|
|
|
BOOST_AUTO_TEST_CASE(test_convert_types_le_fc32)
|
|
{
|
|
convert::id_type id;
|
|
id.input_format = "fc32";
|
|
id.num_inputs = 1;
|
|
id.output_format = "sc16_item32_le";
|
|
id.num_outputs = 1;
|
|
|
|
// try various lengths to test edge cases
|
|
for (size_t nsamps = 1; nsamps < 16; nsamps++) {
|
|
test_convert_types_for_floats<fc32_t>(nsamps, id);
|
|
}
|
|
}
|
|
|
|
BOOST_AUTO_TEST_CASE(test_convert_types_le_fc32_with_saturation)
|
|
{
|
|
convert::id_type id;
|
|
id.input_format = "fc32";
|
|
id.num_inputs = 1;
|
|
id.output_format = "sc16_item32_le";
|
|
id.num_outputs = 1;
|
|
|
|
// try various lengths to test edge cases
|
|
for (size_t nsamps = 1; nsamps < 16; nsamps++) {
|
|
test_convert_types_for_floats_with_saturation<fc32_t>(nsamps, id);
|
|
}
|
|
}
|
|
|
|
BOOST_TEST_DECORATOR(*boost::unit_test::disabled())
|
|
BOOST_AUTO_TEST_CASE(benchmark_convert_types_le_fc32)
|
|
{
|
|
SKIP_BENCHMARK_CHECK;
|
|
|
|
convert::id_type id;
|
|
id.input_format = "fc32";
|
|
id.num_inputs = 1;
|
|
id.output_format = "sc16_item32_le";
|
|
id.num_outputs = 1;
|
|
|
|
benchmark_converter(id,
|
|
[](size_t nsamps,
|
|
convert::id_type id,
|
|
std::vector<benchmark_result>* benchmarks) {
|
|
test_convert_types_for_floats<fc32_t>(nsamps, id, 1.0, benchmarks);
|
|
});
|
|
}
|
|
|
|
BOOST_AUTO_TEST_CASE(test_convert_types_chdr_fc32)
|
|
{
|
|
convert::id_type id;
|
|
id.input_format = "fc32";
|
|
id.num_inputs = 1;
|
|
id.output_format = "sc16_chdr";
|
|
id.num_outputs = 1;
|
|
|
|
// try various lengths to test edge cases
|
|
for (size_t nsamps = 1; nsamps < 16; nsamps++) {
|
|
test_convert_types_for_floats<fc32_t>(nsamps, id);
|
|
}
|
|
}
|
|
|
|
BOOST_AUTO_TEST_CASE(test_convert_types_chdr_fc32_with_saturation)
|
|
{
|
|
convert::id_type id;
|
|
id.input_format = "fc32";
|
|
id.num_inputs = 1;
|
|
id.output_format = "sc16_chdr";
|
|
id.num_outputs = 1;
|
|
|
|
// try various lengths to test edge cases
|
|
for (size_t nsamps = 1; nsamps < 16; nsamps++) {
|
|
test_convert_types_for_floats_with_saturation<fc32_t>(nsamps, id);
|
|
}
|
|
}
|
|
|
|
BOOST_TEST_DECORATOR(*boost::unit_test::disabled())
|
|
BOOST_AUTO_TEST_CASE(benchmark_convert_types_chdr_fc32)
|
|
{
|
|
SKIP_BENCHMARK_CHECK;
|
|
|
|
convert::id_type id;
|
|
id.input_format = "fc32";
|
|
id.num_inputs = 1;
|
|
id.output_format = "sc16_chdr";
|
|
id.num_outputs = 1;
|
|
|
|
benchmark_converter(id,
|
|
[](size_t nsamps,
|
|
convert::id_type id,
|
|
std::vector<benchmark_result>* benchmarks) {
|
|
test_convert_types_for_floats<fc32_t>(nsamps, id, 1.0, benchmarks);
|
|
});
|
|
}
|
|
|
|
BOOST_AUTO_TEST_CASE(test_convert_types_be_fc64)
|
|
{
|
|
convert::id_type id;
|
|
id.input_format = "fc64";
|
|
id.num_inputs = 1;
|
|
id.output_format = "sc16_item32_be";
|
|
id.num_outputs = 1;
|
|
|
|
// try various lengths to test edge cases
|
|
for (size_t nsamps = 1; nsamps < 16; nsamps++) {
|
|
test_convert_types_for_floats<fc64_t>(nsamps, id);
|
|
}
|
|
}
|
|
|
|
BOOST_AUTO_TEST_CASE(test_convert_types_be_fc64_with_saturation)
|
|
{
|
|
convert::id_type id;
|
|
id.input_format = "fc64";
|
|
id.num_inputs = 1;
|
|
id.output_format = "sc16_item32_be";
|
|
id.num_outputs = 1;
|
|
|
|
// try various lengths to test edge cases
|
|
for (size_t nsamps = 1; nsamps < 16; nsamps++) {
|
|
test_convert_types_for_floats_with_saturation<fc64_t>(nsamps, id);
|
|
}
|
|
}
|
|
|
|
BOOST_TEST_DECORATOR(*boost::unit_test::disabled())
|
|
BOOST_AUTO_TEST_CASE(benchmark_convert_types_be_fc64)
|
|
{
|
|
SKIP_BENCHMARK_CHECK;
|
|
|
|
convert::id_type id;
|
|
id.input_format = "fc64";
|
|
id.num_inputs = 1;
|
|
id.output_format = "sc16_item32_be";
|
|
id.num_outputs = 1;
|
|
|
|
benchmark_converter(id,
|
|
[](size_t nsamps,
|
|
convert::id_type id,
|
|
std::vector<benchmark_result>* benchmarks) {
|
|
test_convert_types_for_floats<fc64_t>(nsamps, id, 1.0, benchmarks);
|
|
});
|
|
}
|
|
|
|
BOOST_AUTO_TEST_CASE(test_convert_types_le_fc64)
|
|
{
|
|
convert::id_type id;
|
|
id.input_format = "fc64";
|
|
id.num_inputs = 1;
|
|
id.output_format = "sc16_item32_le";
|
|
id.num_outputs = 1;
|
|
|
|
// try various lengths to test edge cases
|
|
for (size_t nsamps = 1; nsamps < 16; nsamps++) {
|
|
test_convert_types_for_floats<fc64_t>(nsamps, id);
|
|
}
|
|
}
|
|
|
|
BOOST_AUTO_TEST_CASE(test_convert_types_le_fc64_with_saturation)
|
|
{
|
|
convert::id_type id;
|
|
id.input_format = "fc64";
|
|
id.num_inputs = 1;
|
|
id.output_format = "sc16_item32_le";
|
|
id.num_outputs = 1;
|
|
|
|
// try various lengths to test edge cases
|
|
for (size_t nsamps = 1; nsamps < 16; nsamps++) {
|
|
test_convert_types_for_floats_with_saturation<fc64_t>(nsamps, id);
|
|
}
|
|
}
|
|
|
|
BOOST_TEST_DECORATOR(*boost::unit_test::disabled())
|
|
BOOST_AUTO_TEST_CASE(benchmark_convert_types_le_fc64)
|
|
{
|
|
SKIP_BENCHMARK_CHECK;
|
|
|
|
convert::id_type id;
|
|
id.input_format = "fc64";
|
|
id.num_inputs = 1;
|
|
id.output_format = "sc16_item32_le";
|
|
id.num_outputs = 1;
|
|
|
|
benchmark_converter(id,
|
|
[](size_t nsamps,
|
|
convert::id_type id,
|
|
std::vector<benchmark_result>* benchmarks) {
|
|
test_convert_types_for_floats<fc64_t>(nsamps, id, 1.0, benchmarks);
|
|
});
|
|
}
|
|
|
|
BOOST_AUTO_TEST_CASE(test_convert_types_chdr_fc64)
|
|
{
|
|
convert::id_type id;
|
|
id.input_format = "fc64";
|
|
id.num_inputs = 1;
|
|
id.output_format = "sc16_chdr";
|
|
id.num_outputs = 1;
|
|
|
|
// try various lengths to test edge cases
|
|
for (size_t nsamps = 1; nsamps < 16; nsamps++) {
|
|
test_convert_types_for_floats<fc64_t>(nsamps, id);
|
|
}
|
|
}
|
|
|
|
BOOST_AUTO_TEST_CASE(test_convert_types_chdr_fc64_with_saturation)
|
|
{
|
|
convert::id_type id;
|
|
id.input_format = "fc64";
|
|
id.num_inputs = 1;
|
|
id.output_format = "sc16_chdr";
|
|
id.num_outputs = 1;
|
|
|
|
// try various lengths to test edge cases
|
|
for (size_t nsamps = 1; nsamps < 16; nsamps++) {
|
|
test_convert_types_for_floats_with_saturation<fc64_t>(nsamps, id);
|
|
}
|
|
}
|
|
|
|
BOOST_TEST_DECORATOR(*boost::unit_test::disabled())
|
|
BOOST_AUTO_TEST_CASE(benchmark_convert_types_chdr_fc64)
|
|
{
|
|
SKIP_BENCHMARK_CHECK;
|
|
|
|
convert::id_type id;
|
|
id.input_format = "fc64";
|
|
id.num_inputs = 1;
|
|
id.output_format = "sc16_chdr";
|
|
id.num_outputs = 1;
|
|
|
|
benchmark_converter(id,
|
|
[](size_t nsamps,
|
|
convert::id_type id,
|
|
std::vector<benchmark_result>* benchmarks) {
|
|
test_convert_types_for_floats<fc64_t>(nsamps, id, 1.0, benchmarks);
|
|
});
|
|
}
|
|
|
|
/***********************************************************************
|
|
* Test float to/from sc12 conversion loopback
|
|
**********************************************************************/
|
|
|
|
BOOST_AUTO_TEST_CASE(test_convert_types_le_sc12_with_fc32)
|
|
{
|
|
convert::id_type id;
|
|
id.input_format = "fc32";
|
|
id.num_inputs = 1;
|
|
id.output_format = "sc12_item32_le";
|
|
id.num_outputs = 1;
|
|
|
|
// try various lengths to test edge cases
|
|
for (size_t nsamps = 1; nsamps < 16; nsamps++) {
|
|
test_convert_types_for_floats<fc32_t>(nsamps, id, 1. / 16);
|
|
}
|
|
}
|
|
|
|
BOOST_TEST_DECORATOR(*boost::unit_test::disabled())
|
|
BOOST_AUTO_TEST_CASE(benchmark_convert_types_le_sc12_with_fc32)
|
|
{
|
|
SKIP_BENCHMARK_CHECK;
|
|
|
|
convert::id_type id;
|
|
id.input_format = "fc32";
|
|
id.num_inputs = 1;
|
|
id.output_format = "sc12_item32_le";
|
|
id.num_outputs = 1;
|
|
|
|
benchmark_converter(id,
|
|
[](size_t nsamps,
|
|
convert::id_type id,
|
|
std::vector<benchmark_result>* benchmarks) {
|
|
test_convert_types_for_floats<fc32_t>(nsamps, id, 1. / 16, benchmarks);
|
|
});
|
|
}
|
|
|
|
BOOST_AUTO_TEST_CASE(test_convert_types_be_sc12_with_fc32)
|
|
{
|
|
convert::id_type id;
|
|
id.input_format = "fc32";
|
|
id.num_inputs = 1;
|
|
id.output_format = "sc12_item32_be";
|
|
id.num_outputs = 1;
|
|
|
|
// try various lengths to test edge cases
|
|
for (size_t nsamps = 1; nsamps < 16; nsamps++) {
|
|
test_convert_types_for_floats<fc32_t>(nsamps, id, 1. / 16);
|
|
}
|
|
}
|
|
|
|
BOOST_TEST_DECORATOR(*boost::unit_test::disabled())
|
|
BOOST_AUTO_TEST_CASE(benchmark_convert_types_be_sc12_with_fc32)
|
|
{
|
|
SKIP_BENCHMARK_CHECK;
|
|
|
|
convert::id_type id;
|
|
id.input_format = "fc32";
|
|
id.num_inputs = 1;
|
|
id.output_format = "sc12_item32_be";
|
|
id.num_outputs = 1;
|
|
|
|
benchmark_converter(id,
|
|
[](size_t nsamps,
|
|
convert::id_type id,
|
|
std::vector<benchmark_result>* benchmarks) {
|
|
test_convert_types_for_floats<fc32_t>(nsamps, id, 1. / 16, benchmarks);
|
|
});
|
|
}
|
|
|
|
MULTI_CONVERTER_TEST_CASE(test_convert_types_le_sc16_and_sc12)
|
|
{
|
|
convert::id_type id;
|
|
id.input_format = "sc16";
|
|
id.num_inputs = 1;
|
|
id.num_outputs = 1;
|
|
|
|
// try various lengths to test edge cases
|
|
id.output_format = "sc12_item32_le";
|
|
for (size_t nsamps = 1; nsamps < 16; nsamps++) {
|
|
test_convert_types_sc16(nsamps, id, conv_prio_type, 1, 0xfff0);
|
|
}
|
|
}
|
|
|
|
BOOST_TEST_DECORATOR(*boost::unit_test::disabled())
|
|
MULTI_CONVERTER_TEST_CASE(benchmark_convert_types_le_sc16_and_sc12)
|
|
{
|
|
SKIP_BENCHMARK_CHECK;
|
|
|
|
convert::id_type id;
|
|
id.input_format = "sc16";
|
|
id.num_inputs = 1;
|
|
id.num_outputs = 1;
|
|
|
|
// try various lengths to test edge cases
|
|
id.output_format = "sc12_item32_le";
|
|
benchmark_converter(id,
|
|
conv_prio_type,
|
|
[](size_t nsamps,
|
|
convert::id_type id,
|
|
uhd::convert::priority_type prio,
|
|
std::vector<benchmark_result>* benchmarks) {
|
|
test_convert_types_sc16(nsamps, id, prio, 1, 0xfff0, benchmarks);
|
|
});
|
|
}
|
|
|
|
MULTI_CONVERTER_TEST_CASE(test_convert_types_be_sc16_and_sc12)
|
|
{
|
|
convert::id_type id;
|
|
id.input_format = "sc16";
|
|
id.num_inputs = 1;
|
|
id.num_outputs = 1;
|
|
|
|
id.output_format = "sc12_item32_be";
|
|
for (size_t nsamps = 1; nsamps < 16; nsamps++) {
|
|
test_convert_types_sc16(nsamps, id, conv_prio_type, 1, 0xfff0);
|
|
}
|
|
}
|
|
|
|
BOOST_TEST_DECORATOR(*boost::unit_test::disabled())
|
|
MULTI_CONVERTER_TEST_CASE(benchmark_convert_types_be_sc16_and_sc12)
|
|
{
|
|
SKIP_BENCHMARK_CHECK;
|
|
|
|
convert::id_type id;
|
|
id.input_format = "sc16";
|
|
id.num_inputs = 1;
|
|
id.num_outputs = 1;
|
|
|
|
id.output_format = "sc12_item32_be";
|
|
benchmark_converter(id,
|
|
conv_prio_type,
|
|
[](size_t nsamps,
|
|
convert::id_type id,
|
|
uhd::convert::priority_type prio,
|
|
std::vector<benchmark_result>* benchmarks) {
|
|
test_convert_types_sc16(nsamps, id, prio, 1, 0xfff0, benchmarks);
|
|
});
|
|
}
|
|
|
|
/***********************************************************************
|
|
* Test float to/from fc32 conversion loopback
|
|
**********************************************************************/
|
|
|
|
BOOST_AUTO_TEST_CASE(test_convert_types_le_fc32_with_fc32)
|
|
{
|
|
convert::id_type id;
|
|
id.input_format = "fc32";
|
|
id.num_inputs = 1;
|
|
id.output_format = "fc32_item32_le";
|
|
id.num_outputs = 1;
|
|
|
|
// try various lengths to test edge cases
|
|
for (size_t nsamps = 1; nsamps < 16; nsamps++) {
|
|
test_convert_types_for_floats<fc32_t>(nsamps, id);
|
|
}
|
|
}
|
|
|
|
BOOST_TEST_DECORATOR(*boost::unit_test::disabled())
|
|
BOOST_AUTO_TEST_CASE(benchmark_convert_types_le_fc32_with_fc32)
|
|
{
|
|
SKIP_BENCHMARK_CHECK;
|
|
|
|
convert::id_type id;
|
|
id.input_format = "fc32";
|
|
id.num_inputs = 1;
|
|
id.output_format = "fc32_item32_le";
|
|
id.num_outputs = 1;
|
|
|
|
benchmark_converter(id,
|
|
[](size_t nsamps,
|
|
convert::id_type id,
|
|
std::vector<benchmark_result>* benchmarks) {
|
|
test_convert_types_for_floats<fc32_t>(nsamps, id, 1.0, benchmarks);
|
|
});
|
|
}
|
|
|
|
BOOST_AUTO_TEST_CASE(test_convert_types_be_fc32_with_fc32)
|
|
{
|
|
convert::id_type id;
|
|
id.input_format = "fc32";
|
|
id.num_inputs = 1;
|
|
id.output_format = "fc32_item32_be";
|
|
id.num_outputs = 1;
|
|
|
|
// try various lengths to test edge cases
|
|
for (size_t nsamps = 1; nsamps < 16; nsamps++) {
|
|
test_convert_types_for_floats<fc32_t>(nsamps, id);
|
|
}
|
|
}
|
|
|
|
BOOST_TEST_DECORATOR(*boost::unit_test::disabled())
|
|
BOOST_AUTO_TEST_CASE(benchmark_convert_types_be_fc32_with_fc32)
|
|
{
|
|
SKIP_BENCHMARK_CHECK;
|
|
|
|
convert::id_type id;
|
|
id.input_format = "fc32";
|
|
id.num_inputs = 1;
|
|
id.output_format = "fc32_item32_be";
|
|
id.num_outputs = 1;
|
|
|
|
benchmark_converter(id,
|
|
[](size_t nsamps,
|
|
convert::id_type id,
|
|
std::vector<benchmark_result>* benchmarks) {
|
|
test_convert_types_for_floats<fc32_t>(nsamps, id, 1.0, benchmarks);
|
|
});
|
|
}
|
|
|
|
BOOST_AUTO_TEST_CASE(test_convert_types_fc32_with_fc32_chdr)
|
|
{
|
|
convert::id_type id;
|
|
id.input_format = "fc32";
|
|
id.num_inputs = 1;
|
|
id.output_format = "fc32_chdr";
|
|
id.num_outputs = 1;
|
|
|
|
// try various lengths to test edge cases
|
|
for (size_t nsamps = 1; nsamps < 16; nsamps++) {
|
|
test_convert_types_for_floats<fc32_t>(nsamps, id);
|
|
}
|
|
}
|
|
|
|
BOOST_TEST_DECORATOR(*boost::unit_test::disabled())
|
|
BOOST_AUTO_TEST_CASE(benchmark_convert_types_fc32_with_fc32_chdr)
|
|
{
|
|
SKIP_BENCHMARK_CHECK;
|
|
|
|
convert::id_type id;
|
|
id.input_format = "fc32";
|
|
id.num_inputs = 1;
|
|
id.output_format = "fc32_chdr";
|
|
id.num_outputs = 1;
|
|
|
|
benchmark_converter(id,
|
|
[](size_t nsamps,
|
|
convert::id_type id,
|
|
std::vector<benchmark_result>* benchmarks) {
|
|
test_convert_types_for_floats<fc32_t>(nsamps, id, 1.0, benchmarks);
|
|
});
|
|
}
|
|
|
|
/***********************************************************************
|
|
* Test sc8 conversions
|
|
**********************************************************************/
|
|
BOOST_AUTO_TEST_CASE(test_convert_types_fc64_and_sc8)
|
|
{
|
|
convert::id_type id;
|
|
id.input_format = "fc64";
|
|
id.num_inputs = 1;
|
|
id.num_outputs = 1;
|
|
|
|
// try various lengths to test edge cases
|
|
id.output_format = "sc8_item32_le";
|
|
for (size_t nsamps = 1; nsamps < 16; nsamps++) {
|
|
test_convert_types_for_floats<fc64_t>(nsamps, id, 1. / 256);
|
|
}
|
|
|
|
// try various lengths to test edge cases
|
|
id.output_format = "sc8_item32_be";
|
|
for (size_t nsamps = 1; nsamps < 16; nsamps++) {
|
|
test_convert_types_for_floats<fc64_t>(nsamps, id, 1. / 256);
|
|
}
|
|
}
|
|
|
|
BOOST_TEST_DECORATOR(*boost::unit_test::disabled())
|
|
BOOST_AUTO_TEST_CASE(benchmark_convert_types_fc64_and_sc8)
|
|
{
|
|
SKIP_BENCHMARK_CHECK;
|
|
|
|
convert::id_type id;
|
|
id.input_format = "fc64";
|
|
id.num_inputs = 1;
|
|
id.num_outputs = 1;
|
|
|
|
id.output_format = "sc8_item32_le";
|
|
benchmark_converter(id,
|
|
[](size_t nsamps,
|
|
convert::id_type id,
|
|
std::vector<benchmark_result>* benchmarks) {
|
|
test_convert_types_for_floats<fc64_t>(nsamps, id, 1. / 256, benchmarks);
|
|
});
|
|
|
|
id.output_format = "sc8_item32_be";
|
|
benchmark_converter(id,
|
|
[](size_t nsamps,
|
|
convert::id_type id,
|
|
std::vector<benchmark_result>* benchmarks) {
|
|
test_convert_types_for_floats<fc64_t>(nsamps, id, 1. / 256, benchmarks);
|
|
});
|
|
}
|
|
|
|
BOOST_AUTO_TEST_CASE(test_convert_types_fc32_and_sc8)
|
|
{
|
|
convert::id_type id;
|
|
id.input_format = "fc32";
|
|
id.num_inputs = 1;
|
|
id.num_outputs = 1;
|
|
|
|
// try various lengths to test edge cases
|
|
id.output_format = "sc8_item32_le";
|
|
for (size_t nsamps = 1; nsamps < 16; nsamps++) {
|
|
test_convert_types_for_floats<fc32_t>(nsamps, id, 1. / 256);
|
|
}
|
|
|
|
// try various lengths to test edge cases
|
|
id.output_format = "sc8_item32_be";
|
|
for (size_t nsamps = 1; nsamps < 16; nsamps++) {
|
|
test_convert_types_for_floats<fc32_t>(nsamps, id, 1. / 256);
|
|
}
|
|
}
|
|
|
|
BOOST_TEST_DECORATOR(*boost::unit_test::disabled())
|
|
BOOST_AUTO_TEST_CASE(benchmark_convert_types_fc32_and_sc8)
|
|
{
|
|
SKIP_BENCHMARK_CHECK;
|
|
|
|
convert::id_type id;
|
|
id.input_format = "fc32";
|
|
id.num_inputs = 1;
|
|
id.num_outputs = 1;
|
|
|
|
id.output_format = "sc8_item32_le";
|
|
benchmark_converter(id,
|
|
[](size_t nsamps,
|
|
convert::id_type id,
|
|
std::vector<benchmark_result>* benchmarks) {
|
|
test_convert_types_for_floats<fc32_t>(nsamps, id, 1. / 256, benchmarks);
|
|
});
|
|
|
|
// try various lengths to test edge cases
|
|
id.output_format = "sc8_item32_be";
|
|
benchmark_converter(id,
|
|
[](size_t nsamps,
|
|
convert::id_type id,
|
|
std::vector<benchmark_result>* benchmarks) {
|
|
test_convert_types_for_floats<fc32_t>(nsamps, id, 1. / 256, benchmarks);
|
|
});
|
|
}
|
|
|
|
MULTI_CONVERTER_TEST_CASE(test_convert_types_sc16_and_sc8)
|
|
{
|
|
convert::id_type id;
|
|
id.input_format = "sc16";
|
|
id.num_inputs = 1;
|
|
id.num_outputs = 1;
|
|
|
|
// try various lengths to test edge cases
|
|
id.output_format = "sc8_item32_le";
|
|
for (size_t nsamps = 1; nsamps < 16; nsamps++) {
|
|
test_convert_types_sc16(nsamps, id, conv_prio_type, 256);
|
|
}
|
|
|
|
// try various lengths to test edge cases
|
|
id.output_format = "sc8_item32_be";
|
|
for (size_t nsamps = 1; nsamps < 16; nsamps++) {
|
|
test_convert_types_sc16(nsamps, id, conv_prio_type, 256);
|
|
}
|
|
}
|
|
|
|
BOOST_TEST_DECORATOR(*boost::unit_test::disabled())
|
|
MULTI_CONVERTER_TEST_CASE(benchmark_convert_types_sc16_and_sc8)
|
|
{
|
|
SKIP_BENCHMARK_CHECK;
|
|
|
|
convert::id_type id;
|
|
id.input_format = "sc16";
|
|
id.num_inputs = 1;
|
|
id.num_outputs = 1;
|
|
|
|
id.output_format = "sc8_item32_le";
|
|
benchmark_converter(id,
|
|
conv_prio_type,
|
|
[](size_t nsamps,
|
|
convert::id_type id,
|
|
uhd::convert::priority_type prio,
|
|
std::vector<benchmark_result>* benchmarks) {
|
|
test_convert_types_sc16(nsamps, id, prio, 256, 0xffff, benchmarks);
|
|
});
|
|
|
|
id.output_format = "sc8_item32_be";
|
|
benchmark_converter(id,
|
|
conv_prio_type,
|
|
[](size_t nsamps,
|
|
convert::id_type id,
|
|
uhd::convert::priority_type prio,
|
|
std::vector<benchmark_result>* benchmarks) {
|
|
test_convert_types_sc16(nsamps, id, prio, 256, 0xffff, benchmarks);
|
|
});
|
|
}
|
|
|
|
/***********************************************************************
|
|
* Test u8 conversion
|
|
**********************************************************************/
|
|
static void test_convert_types_u8(size_t nsamps,
|
|
convert::id_type& id,
|
|
uhd::convert::priority_type prio,
|
|
std::vector<benchmark_result>* benchmark_data = nullptr)
|
|
{
|
|
// fill the input samples
|
|
std::vector<uint8_t> input(nsamps), output(nsamps);
|
|
for (uint8_t& in : input) {
|
|
in = uint8_t(std::rand() & 0xFF);
|
|
}
|
|
// uint32_t d = 48;
|
|
// for(uint8_t &in: input) in = d++;
|
|
|
|
// run the loopback and test
|
|
convert::id_type in_id = id;
|
|
convert::id_type out_id = reverse_converter(id);
|
|
CALL_LOOPBACK_SAFE(nsamps, in_id, out_id, input, output, prio, prio, benchmark_data);
|
|
if (!benchmark_data) {
|
|
BOOST_CHECK_EQUAL_COLLECTIONS(
|
|
input.begin(), input.end(), output.begin(), output.end());
|
|
}
|
|
}
|
|
|
|
MULTI_CONVERTER_TEST_CASE(test_convert_types_u8_and_u8)
|
|
{
|
|
convert::id_type id;
|
|
id.input_format = "u8";
|
|
id.num_inputs = 1;
|
|
id.num_outputs = 1;
|
|
|
|
// try various lengths to test edge cases
|
|
id.output_format = "u8_item32_le";
|
|
for (size_t nsamps = 1; nsamps < 16; nsamps++) {
|
|
test_convert_types_u8(nsamps, id, conv_prio_type);
|
|
}
|
|
|
|
// try various lengths to test edge cases
|
|
id.output_format = "u8_item32_be";
|
|
for (size_t nsamps = 1; nsamps < 16; nsamps++) {
|
|
test_convert_types_u8(nsamps, id, conv_prio_type);
|
|
}
|
|
}
|
|
|
|
BOOST_TEST_DECORATOR(*boost::unit_test::disabled())
|
|
MULTI_CONVERTER_TEST_CASE(benchmark_convert_types_u8_and_u8)
|
|
{
|
|
SKIP_BENCHMARK_CHECK;
|
|
|
|
convert::id_type id;
|
|
id.input_format = "u8";
|
|
id.num_inputs = 1;
|
|
id.num_outputs = 1;
|
|
|
|
id.output_format = "u8_item32_le";
|
|
benchmark_converter(id,
|
|
conv_prio_type,
|
|
[](size_t nsamps,
|
|
convert::id_type id,
|
|
uhd::convert::priority_type prio,
|
|
std::vector<benchmark_result>* benchmarks) {
|
|
test_convert_types_u8(nsamps, id, prio, benchmarks);
|
|
});
|
|
|
|
// try various lengths to test edge cases
|
|
id.output_format = "u8_item32_be";
|
|
benchmark_converter(id,
|
|
conv_prio_type,
|
|
[](size_t nsamps,
|
|
convert::id_type id,
|
|
uhd::convert::priority_type prio,
|
|
std::vector<benchmark_result>* benchmarks) {
|
|
test_convert_types_u8(nsamps, id, prio, benchmarks);
|
|
});
|
|
}
|
|
|
|
MULTI_CONVERTER_TEST_CASE(test_convert_types_u8_and_u8_chdr)
|
|
{
|
|
convert::id_type id;
|
|
id.input_format = "u8";
|
|
id.output_format = "u8_chdr";
|
|
id.num_inputs = 1;
|
|
id.num_outputs = 1;
|
|
|
|
// try various lengths to test edge cases
|
|
for (size_t nsamps = 1; nsamps < 16; nsamps++) {
|
|
test_convert_types_u8(nsamps, id, conv_prio_type);
|
|
}
|
|
}
|
|
|
|
BOOST_TEST_DECORATOR(*boost::unit_test::disabled())
|
|
MULTI_CONVERTER_TEST_CASE(benchmark_convert_types_u8_and_u8_chdr)
|
|
{
|
|
SKIP_BENCHMARK_CHECK;
|
|
|
|
convert::id_type id;
|
|
id.input_format = "u8";
|
|
id.output_format = "u8_chdr";
|
|
id.num_inputs = 1;
|
|
id.num_outputs = 1;
|
|
|
|
benchmark_converter(id,
|
|
conv_prio_type,
|
|
[](size_t nsamps,
|
|
convert::id_type id,
|
|
uhd::convert::priority_type prio,
|
|
std::vector<benchmark_result>* benchmarks) {
|
|
test_convert_types_u8(nsamps, id, prio, benchmarks);
|
|
});
|
|
}
|
|
|
|
/***********************************************************************
|
|
* Test s8 conversion
|
|
**********************************************************************/
|
|
static void test_convert_types_s8(size_t nsamps,
|
|
convert::id_type& id,
|
|
uhd::convert::priority_type prio,
|
|
std::vector<benchmark_result>* benchmark_data = nullptr)
|
|
{
|
|
// fill the input samples
|
|
std::vector<int8_t> input(nsamps), output(nsamps);
|
|
for (int8_t& in : input) {
|
|
in = int8_t(std::rand() & 0xFF);
|
|
}
|
|
|
|
// run the loopback and test
|
|
convert::id_type in_id = id;
|
|
convert::id_type out_id = reverse_converter(id);
|
|
CALL_LOOPBACK_SAFE(nsamps, in_id, out_id, input, output, prio, prio, benchmark_data);
|
|
if (!benchmark_data) {
|
|
BOOST_CHECK_EQUAL_COLLECTIONS(
|
|
input.begin(), input.end(), output.begin(), output.end());
|
|
}
|
|
}
|
|
|
|
MULTI_CONVERTER_TEST_CASE(test_convert_types_s8_and_s8)
|
|
{
|
|
convert::id_type id;
|
|
id.input_format = "s8";
|
|
id.num_inputs = 1;
|
|
id.num_outputs = 1;
|
|
|
|
// try various lengths to test edge cases
|
|
id.output_format = "s8_item32_le";
|
|
for (size_t nsamps = 1; nsamps < 16; nsamps++) {
|
|
test_convert_types_s8(nsamps, id, conv_prio_type);
|
|
}
|
|
|
|
// try various lengths to test edge cases
|
|
id.output_format = "s8_item32_be";
|
|
for (size_t nsamps = 1; nsamps < 16; nsamps++) {
|
|
test_convert_types_s8(nsamps, id, conv_prio_type);
|
|
}
|
|
}
|
|
|
|
BOOST_TEST_DECORATOR(*boost::unit_test::disabled())
|
|
MULTI_CONVERTER_TEST_CASE(benchmark_convert_types_s8_and_s8)
|
|
{
|
|
SKIP_BENCHMARK_CHECK;
|
|
|
|
convert::id_type id;
|
|
id.input_format = "s8";
|
|
id.num_inputs = 1;
|
|
id.num_outputs = 1;
|
|
|
|
// try various lengths to test edge cases
|
|
id.output_format = "s8_item32_le";
|
|
benchmark_converter(id,
|
|
conv_prio_type,
|
|
[](size_t nsamps,
|
|
convert::id_type id,
|
|
uhd::convert::priority_type prio,
|
|
std::vector<benchmark_result>* benchmarks) {
|
|
test_convert_types_s8(nsamps, id, prio, benchmarks);
|
|
});
|
|
|
|
// try various lengths to test edge cases
|
|
id.output_format = "s8_item32_be";
|
|
benchmark_converter(id,
|
|
conv_prio_type,
|
|
[](size_t nsamps,
|
|
convert::id_type id,
|
|
uhd::convert::priority_type prio,
|
|
std::vector<benchmark_result>* benchmarks) {
|
|
test_convert_types_s8(nsamps, id, prio, benchmarks);
|
|
});
|
|
}
|
|
|
|
MULTI_CONVERTER_TEST_CASE(test_convert_types_s8_and_s8_chdr)
|
|
{
|
|
convert::id_type id;
|
|
id.input_format = "s8";
|
|
id.output_format = "s8_chdr";
|
|
id.num_inputs = 1;
|
|
id.num_outputs = 1;
|
|
|
|
// try various lengths to test edge cases
|
|
for (size_t nsamps = 1; nsamps < 16; nsamps++) {
|
|
test_convert_types_s8(nsamps, id, conv_prio_type);
|
|
}
|
|
}
|
|
|
|
BOOST_TEST_DECORATOR(*boost::unit_test::disabled())
|
|
MULTI_CONVERTER_TEST_CASE(benchmark_convert_types_s8_and_s8_chdr)
|
|
{
|
|
SKIP_BENCHMARK_CHECK;
|
|
|
|
convert::id_type id;
|
|
id.input_format = "s8";
|
|
id.output_format = "s8_chdr";
|
|
id.num_inputs = 1;
|
|
id.num_outputs = 1;
|
|
|
|
benchmark_converter(id,
|
|
conv_prio_type,
|
|
[](size_t nsamps,
|
|
convert::id_type id,
|
|
uhd::convert::priority_type prio,
|
|
std::vector<benchmark_result>* benchmarks) {
|
|
test_convert_types_s8(nsamps, id, prio, benchmarks);
|
|
});
|
|
}
|
|
|
|
/***********************************************************************
|
|
* Test s16 conversion
|
|
**********************************************************************/
|
|
static void test_convert_types_s16(size_t nsamps,
|
|
convert::id_type& id,
|
|
uhd::convert::priority_type prio,
|
|
std::vector<benchmark_result>* benchmark_data = nullptr)
|
|
{
|
|
// fill the input samples
|
|
std::vector<int16_t> input(nsamps), output(nsamps);
|
|
for (int16_t& in : input) {
|
|
in = int16_t(std::rand() & 0xFFFF);
|
|
}
|
|
|
|
// run the loopback and test
|
|
convert::id_type in_id = id;
|
|
convert::id_type out_id = reverse_converter(id);
|
|
CALL_LOOPBACK_SAFE(nsamps, in_id, out_id, input, output, prio, prio, benchmark_data);
|
|
if (!benchmark_data) {
|
|
BOOST_CHECK_EQUAL_COLLECTIONS(
|
|
input.begin(), input.end(), output.begin(), output.end());
|
|
}
|
|
}
|
|
|
|
MULTI_CONVERTER_TEST_CASE(test_convert_types_s16_and_s16)
|
|
{
|
|
convert::id_type id;
|
|
id.input_format = "s16";
|
|
id.num_inputs = 1;
|
|
id.num_outputs = 1;
|
|
|
|
// try various lengths to test edge cases
|
|
id.output_format = "s16_item32_le";
|
|
for (size_t nsamps = 1; nsamps < 16; nsamps++) {
|
|
test_convert_types_s16(nsamps, id, conv_prio_type);
|
|
}
|
|
|
|
// try various lengths to test edge cases
|
|
id.output_format = "s16_item32_be";
|
|
for (size_t nsamps = 1; nsamps < 16; nsamps++) {
|
|
test_convert_types_s16(nsamps, id, conv_prio_type);
|
|
}
|
|
}
|
|
|
|
BOOST_TEST_DECORATOR(*boost::unit_test::disabled())
|
|
MULTI_CONVERTER_TEST_CASE(benchmark_convert_types_s16_and_s16)
|
|
{
|
|
SKIP_BENCHMARK_CHECK;
|
|
|
|
convert::id_type id;
|
|
id.input_format = "s16";
|
|
id.num_inputs = 1;
|
|
id.num_outputs = 1;
|
|
|
|
id.output_format = "s16_item32_le";
|
|
benchmark_converter(id,
|
|
conv_prio_type,
|
|
[](size_t nsamps,
|
|
convert::id_type id,
|
|
uhd::convert::priority_type prio,
|
|
std::vector<benchmark_result>* benchmarks) {
|
|
test_convert_types_s16(nsamps, id, prio, benchmarks);
|
|
});
|
|
|
|
// try various lengths to test edge cases
|
|
id.output_format = "s16_item32_be";
|
|
benchmark_converter(id,
|
|
conv_prio_type,
|
|
[](size_t nsamps,
|
|
convert::id_type id,
|
|
uhd::convert::priority_type prio,
|
|
std::vector<benchmark_result>* benchmarks) {
|
|
test_convert_types_s16(nsamps, id, prio, benchmarks);
|
|
});
|
|
}
|
|
|
|
MULTI_CONVERTER_TEST_CASE(test_convert_types_s16_and_s16_chdr)
|
|
{
|
|
convert::id_type id;
|
|
id.input_format = "s16";
|
|
id.output_format = "s16_chdr";
|
|
id.num_inputs = 1;
|
|
id.num_outputs = 1;
|
|
|
|
// try various lengths to test edge cases
|
|
for (size_t nsamps = 1; nsamps < 16; nsamps++) {
|
|
test_convert_types_s16(nsamps, id, conv_prio_type);
|
|
}
|
|
}
|
|
|
|
BOOST_TEST_DECORATOR(*boost::unit_test::disabled())
|
|
MULTI_CONVERTER_TEST_CASE(benchmark_convert_types_s16_and_s16_chdr)
|
|
{
|
|
SKIP_BENCHMARK_CHECK;
|
|
|
|
convert::id_type id;
|
|
id.input_format = "s16";
|
|
id.output_format = "s16_chdr";
|
|
id.num_inputs = 1;
|
|
id.num_outputs = 1;
|
|
|
|
benchmark_converter(id,
|
|
conv_prio_type,
|
|
[](size_t nsamps,
|
|
convert::id_type id,
|
|
uhd::convert::priority_type prio,
|
|
std::vector<benchmark_result>* benchmarks) {
|
|
test_convert_types_s16(nsamps, id, prio, benchmarks);
|
|
});
|
|
}
|
|
|
|
/***********************************************************************
|
|
* Test fc32 -> fc32 conversion
|
|
**********************************************************************/
|
|
static void test_convert_types_fc32(size_t nsamps,
|
|
convert::id_type& id,
|
|
uhd::convert::priority_type prio,
|
|
std::vector<benchmark_result>* benchmark_data = nullptr)
|
|
{
|
|
// fill the input samples
|
|
std::vector<std::complex<float>> input(nsamps), output(nsamps);
|
|
for (fc32_t& in : input) {
|
|
in = fc32_t((std::rand() / float(RAND_MAX / 2)) - 1,
|
|
(std::rand() / float(RAND_MAX / 2)) - 1);
|
|
}
|
|
|
|
// run the loopback and test
|
|
convert::id_type in_id = id;
|
|
convert::id_type out_id = reverse_converter(id);
|
|
CALL_LOOPBACK_SAFE(nsamps, in_id, out_id, input, output, prio, prio, benchmark_data);
|
|
for (size_t i = 0; i < nsamps && (!benchmark_data); i++) {
|
|
MY_CHECK_CLOSE(input[i].real(), output[i].real(), float(1. / (1 << 16)));
|
|
MY_CHECK_CLOSE(input[i].imag(), output[i].imag(), float(1. / (1 << 16)));
|
|
}
|
|
}
|
|
|
|
MULTI_CONVERTER_TEST_CASE(test_convert_types_fc32_and_fc32)
|
|
{
|
|
convert::id_type id;
|
|
id.input_format = "fc32";
|
|
id.num_inputs = 1;
|
|
id.num_outputs = 1;
|
|
|
|
// try various lengths to test edge cases
|
|
id.output_format = "fc32_item32_le";
|
|
for (size_t nsamps = 1; nsamps < 16; nsamps++) {
|
|
test_convert_types_fc32(nsamps, id, conv_prio_type);
|
|
}
|
|
|
|
// try various lengths to test edge cases
|
|
id.output_format = "fc32_item32_be";
|
|
for (size_t nsamps = 1; nsamps < 16; nsamps++) {
|
|
test_convert_types_fc32(nsamps, id, conv_prio_type);
|
|
}
|
|
}
|
|
|
|
BOOST_TEST_DECORATOR(*boost::unit_test::disabled())
|
|
MULTI_CONVERTER_TEST_CASE(benchmark_convert_types_fc32_and_fc32)
|
|
{
|
|
SKIP_BENCHMARK_CHECK;
|
|
|
|
convert::id_type id;
|
|
id.input_format = "fc32";
|
|
id.num_inputs = 1;
|
|
id.num_outputs = 1;
|
|
|
|
id.output_format = "fc32_item32_le";
|
|
benchmark_converter(id,
|
|
conv_prio_type,
|
|
[](size_t nsamps,
|
|
convert::id_type id,
|
|
uhd::convert::priority_type prio,
|
|
std::vector<benchmark_result>* benchmarks) {
|
|
test_convert_types_fc32(nsamps, id, prio, benchmarks);
|
|
});
|
|
|
|
id.output_format = "fc32_item32_be";
|
|
benchmark_converter(id,
|
|
conv_prio_type,
|
|
[](size_t nsamps,
|
|
convert::id_type id,
|
|
uhd::convert::priority_type prio,
|
|
std::vector<benchmark_result>* benchmarks) {
|
|
test_convert_types_fc32(nsamps, id, prio, benchmarks);
|
|
});
|
|
}
|
|
|
|
MULTI_CONVERTER_TEST_CASE(test_convert_types_fc32_and_fc32_chdr)
|
|
{
|
|
convert::id_type id;
|
|
id.input_format = "fc32";
|
|
id.output_format = "fc32_chdr";
|
|
id.num_inputs = 1;
|
|
id.num_outputs = 1;
|
|
|
|
// try various lengths to test edge cases
|
|
for (size_t nsamps = 1; nsamps < 16; nsamps++) {
|
|
test_convert_types_fc32(nsamps, id, conv_prio_type);
|
|
}
|
|
}
|
|
|
|
BOOST_TEST_DECORATOR(*boost::unit_test::disabled())
|
|
MULTI_CONVERTER_TEST_CASE(benchmark_convert_types_fc32_and_fc32_chdr)
|
|
{
|
|
SKIP_BENCHMARK_CHECK;
|
|
|
|
convert::id_type id;
|
|
id.input_format = "fc32";
|
|
id.output_format = "fc32_chdr";
|
|
id.num_inputs = 1;
|
|
id.num_outputs = 1;
|
|
|
|
id.output_format = "fc32_item32_be";
|
|
benchmark_converter(id,
|
|
conv_prio_type,
|
|
[](size_t nsamps,
|
|
convert::id_type id,
|
|
uhd::convert::priority_type prio,
|
|
std::vector<benchmark_result>* benchmarks) {
|
|
test_convert_types_fc32(nsamps, id, prio, benchmarks);
|
|
});
|
|
}
|