H A D | mul-fft.cc | 452 void Start_Default(Digits X, int chunk_size, int theta, int omega); 453 void Start(Digits X, int chunk_size, int theta, int omega); 455 void NormalizeAndRecombine(int omega, int m, RWDigits Z, int chunk_size); 458 void FFT_ReturnShuffledThreadsafe(int start, int len, int omega, 460 void FFT_Recurse(int start, int half, int omega, digit_t* temp); 462 void BackwardFFT(int start, int len, int omega); 463 void BackwardFFT_Threadsafe(int start, int len, int omega, digit_t* temp); 491 int omega) { in Start_Default() 524 FFT_ReturnShuffledThreadsafe(0, n_, omega, temp_); in Start_Default() 529 void FFTContainer::Start(Digits X, int chunk_size, int theta, int omega) { in Start() argument 490 Start_Default(Digits X, int chunk_size, int theta, int omega) Start_Default() argument 563 FFT_ReturnShuffledThreadsafe(int start, int len, int omega, digit_t* temp) FFT_ReturnShuffledThreadsafe() argument 579 FFT_Recurse(int start, int half, int omega, digit_t* temp) FFT_Recurse() argument 589 BackwardFFT(int start, int len, int omega) BackwardFFT() argument 593 BackwardFFT_Threadsafe(int start, int len, int omega, digit_t* temp) BackwardFFT_Threadsafe() argument 614 NormalizeAndRecombine(int omega, int m, RWDigits Z, int chunk_size) NormalizeAndRecombine() argument 706 int omega = 2 * params.r; // really: 2^(2r) MultiplyFFT_Inner() local 771 int omega = params.r; // really: 2^r MultiplyFFT() local [all...] |