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Merge pull request #419 from Brumi-2021/Final_correction_GCC_10_Compile_error_#199_with_sharebrained_feedback
Final correction gcc 10 compile error #199 with sharebrained feedback
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@ -27,8 +27,6 @@
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#include "event_m4.hpp"
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#include "portapack_shared_memory.hpp"
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#include "event_m4.hpp"
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#include <algorithm>
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void SpectrumCollector::on_message(const Message* const message) {
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@ -105,24 +103,38 @@ void SpectrumCollector::post_message(const buffer_c16_t& data) {
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}
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}
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template<typename T>
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/* 3 types of Windowing time domain shapes declaration , but only used Hamming , shapes for FFT
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GCC10 compile sintax error c/m (1/2),
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The primary diff. between const and constexpr variables is that
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the initialization of a const var can be deferred until run time.
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A constexpr var. must be initialized at compile time. ...
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A var. can be declared with constexpr , when it has a literal type and is initialized.
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GCC compile sintax error c/m (2/2)
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Static assert --> Tests a software assertion at compile time for debugging.
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we keep the same safety compile protection , just changing slightly the sintax checking that the size of the called array is power of 2.
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if the bool "constant expression" is TRUE (normal case) , the declaration has no effect.
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if the bool "constant expression" is FALSE (abnormal array size) , it is aborted the compile with a msg error.
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*/
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template<typename T> // Although currently we are not using that Windowing shape, we apply the same GCC10 compile error c/m
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static typename T::value_type spectrum_window_none(const T& s, const size_t i) {
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static_assert(power_of_two(s.size()), "Array size must be power of 2");
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static_assert(power_of_two(ARRAY_ELEMENTS(s)), "Array number of elements must be power of 2"); // c/m compile error GCC10 , OK for all GCC versions.
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return s[i];
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};
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template<typename T>
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template<typename T> // Currently we are calling and using that Window shape.
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static typename T::value_type spectrum_window_hamming_3(const T& s, const size_t i) {
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static_assert(power_of_two(s.size()), "Array size must be power of 2");
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constexpr size_t mask = s.size() - 1;
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static_assert(power_of_two(ARRAY_ELEMENTS(s)), "Array number of elements must be power of 2"); // c/m compile error GCC10 , OK for all GCC versions.
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const size_t mask = s.size() - 1; // c/m compile error GCC10 , constexpr->const
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// Three point Hamming window.
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return s[i] * 0.54f + (s[(i-1) & mask] + s[(i+1) & mask]) * -0.23f;
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};
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template<typename T>
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template<typename T> // Although currently we are not using that Windowing shape, we apply the same GCC10 compile error c/m
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static typename T::value_type spectrum_window_blackman_3(const T& s, const size_t i) {
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static_assert(power_of_two(s.size()), "Array size must be power of 2");
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constexpr size_t mask = s.size() - 1;
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static_assert(power_of_two(ARRAY_ELEMENTS(s)), "Array number of elements must be power of 2"); // c/m compile error GCC10 , OK for all GCC versions.
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const size_t mask = s.size() - 1; // c/m compile error GCC10 , constexpr->const
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// Three term Blackman window.
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constexpr float alpha = 0.42f;
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constexpr float beta = 0.5f * 0.5f;
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@ -22,6 +22,9 @@
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#ifndef __SPECTRUM_COLLECTOR_H__
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#define __SPECTRUM_COLLECTOR_H__
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#define ARRAY_ELEMENTS(x) (sizeof(x) / sizeof(x[0]))
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/* sizeof() compile-time operator that returns #bytes of (data type). We used it to get #elements_array */
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#include "dsp_types.hpp"
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#include "complex.hpp"
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