From 7d5c202eddde517fe5546452d83c36cf42381f8a Mon Sep 17 00:00:00 2001 From: Julia D'Zmura <78620953+judzmura@users.noreply.github.com> Date: Tue, 7 Mar 2023 11:32:48 -0800 Subject: Adding the AudioCodec ACX sample driver to Github. (#882) * Adding the AudioCodec acx sample driver to Github. * Fix to make AudioCodec driver all build in one solution file. Builds in ARM64 now. --- audio/Acx/Samples/Common/ToneGenerator.cpp | 297 +++++++++++++++++++++++++++++ 1 file changed, 297 insertions(+) create mode 100644 audio/Acx/Samples/Common/ToneGenerator.cpp (limited to 'audio/Acx/Samples/Common/ToneGenerator.cpp') diff --git a/audio/Acx/Samples/Common/ToneGenerator.cpp b/audio/Acx/Samples/Common/ToneGenerator.cpp new file mode 100644 index 00000000..fc30e3b2 --- /dev/null +++ b/audio/Acx/Samples/Common/ToneGenerator.cpp @@ -0,0 +1,297 @@ +/*++ + +Copyright (c) Microsoft Corporation. All rights reserved. + + THIS CODE AND INFORMATION IS PROVIDED "AS IS" WITHOUT WARRANTY OF ANY + KIND, EITHER EXPRESSED OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE + IMPLIED WARRANTIES OF MERCHANTABILITY AND/OR FITNESS FOR A PARTICULAR + PURPOSE. + +Module Name: + + ToneGenerator.cpp + +Abstract: + + Implementation of sine wave generator for ACX driver samples + + +--*/ +#include "private.h" +#include "public.h" +#include +#include +#include +#include +#include "ToneGenerator.h" + +#define TONEGENERATOR_POOLTAG 'rGnT' + +const double TONE_AMPLITUDE = 0.5; // Scalar value, should be between 0.0 - 1.0 +const double TWO_PI = M_PI * 2; + +DWORD g_DisableToneGenerator = 0; // default is to generate tones. + +#define IF_FAILED_JUMP(result, tag) do {if (!NT_SUCCESS(result)) {goto tag;}} while(false) +#define IF_TRUE_JUMP(result, tag) do {if (result) {goto tag;}} while(false) +#define IF_TRUE_ACTION_JUMP(result, action, tag) do {if (result) {action; goto tag;}} while(false) + +// +// Double to short conversion. +// +__drv_maxIRQL(DISPATCH_LEVEL) +short ConvertToShort(double Value) +{ + return (short)(Value * _I16_MAX); +}; + +// +// Double to char conversion. +// +__drv_maxIRQL(DISPATCH_LEVEL) +unsigned char ConvertToUChar(double Value) +{ + const double F_127_5 = 127.5; + return (unsigned char)(Value * F_127_5 + F_127_5); +}; + +// +// Ctor: basic init. +// +_Use_decl_annotations_ +PAGED_CODE_SEG +ToneGenerator::ToneGenerator() +: m_Frequency(0), + m_ChannelCount(0), + m_BitsPerSample(0), + m_SamplesPerSecond(0), + m_Mute(false), + m_PartialFrame(NULL), + m_PartialFrameBytes(0), + m_FrameSize(0) +{ + PAGED_CODE(); + + // Theta (double) and SampleIncrement (double) are init in the Init() method + // after saving the floating point state. +} + +// +// Dtor: free resources. +// +_Use_decl_annotations_ +PAGED_CODE_SEG +ToneGenerator::~ToneGenerator() +{ + PAGED_CODE(); + + if (m_PartialFrame) + { + ExFreePoolWithTag(m_PartialFrame, TONEGENERATOR_POOLTAG); + m_PartialFrame = NULL; + m_PartialFrameBytes = 0; + } +} + +// +// Init a new frame. +// Note: caller will save and restore the floatingpoint state. +// +#pragma warning(push) +// Caller wraps this routine between KeSaveFloatingPointState/KeRestoreFloatingPointState calls. +#pragma warning(disable: 28110) + +_Use_decl_annotations_ +VOID ToneGenerator::InitNewFrame +( + _Out_writes_bytes_(FrameSize) BYTE* Frame, + _In_ DWORD FrameSize +) +{ + double sinValue = TONE_AMPLITUDE * sin( m_Theta ); + + if (FrameSize != (DWORD)m_ChannelCount * m_BitsPerSample/8) + { + ASSERT(FALSE); + RtlZeroMemory(Frame, FrameSize); + return; + } + + for(ULONG i = 0; i < m_ChannelCount; ++i) + { + if (m_BitsPerSample == 8) + { + unsigned char *dataBuffer = reinterpret_cast(Frame); + dataBuffer[i] = ConvertToUChar(sinValue); + } + else // 16 bits per sample + { + short *dataBuffer = reinterpret_cast(Frame); + dataBuffer[i] = ConvertToShort(sinValue); + } + } + + m_Theta += m_SampleIncrement; + if (m_Theta >= TWO_PI) + { + m_Theta -= TWO_PI; + } +} +#pragma warning(pop) + +// +// GenerateSamples() +// +// Generate a sine wave that fits into the specified buffer. +// +// Buffer - Buffer to hold the samples +// BufferLength - Length of the buffer. +// +// Note: this function supports 16bit and 8bit samples only. +// +_Use_decl_annotations_ +void ToneGenerator::GenerateSine +( + _Out_writes_bytes_(BufferLength) BYTE *Buffer, + _In_ size_t BufferLength +) +{ + NTSTATUS status; + KFLOATING_SAVE saveData; + BYTE * buffer; + size_t length; + size_t copyBytes; + + // if muted, or tone generator disabled via registry, + // we deliver silence. + if (m_Mute || g_DisableToneGenerator) + { + goto ZeroBuffer; + } + + status = KeSaveFloatingPointState(&saveData); + if (!NT_SUCCESS(status)) + { + goto ZeroBuffer; + } + + buffer = Buffer; + length = BufferLength; + + // + // Check if we have any residual frame bytes from the last time. + // + if (m_PartialFrameBytes) + { + ASSERT(m_FrameSize > m_PartialFrameBytes); + DWORD offset = m_FrameSize - m_PartialFrameBytes; + copyBytes = MIN(m_PartialFrameBytes, length); + RtlCopyMemory(buffer, m_PartialFrame + offset, copyBytes); + RtlZeroMemory(m_PartialFrame + offset, copyBytes); + length -= copyBytes; + buffer += copyBytes; + m_PartialFrameBytes = 0; + } + + IF_TRUE_JUMP(length == 0, Done); + + // + // Copy all the aligned frames. + // + + size_t frames = length/m_FrameSize; + + for (size_t i = 0; i < frames; ++i) + { + InitNewFrame(buffer, m_FrameSize); + buffer += m_FrameSize; + length -= m_FrameSize; + } + + IF_TRUE_JUMP(length == 0, Done); + + // + // Copy any partial frame at the end. + // + ASSERT(m_FrameSize > length); + InitNewFrame(m_PartialFrame, m_FrameSize); + RtlCopyMemory(buffer, m_PartialFrame, length); + RtlZeroMemory(m_PartialFrame, length); + m_PartialFrameBytes = m_FrameSize - (DWORD)length; + +Done: + KeRestoreFloatingPointState(&saveData); + return; + +ZeroBuffer: + RtlZeroMemory(Buffer, BufferLength); + return; +} + +_Use_decl_annotations_ +PAGED_CODE_SEG +NTSTATUS ToneGenerator::Init +( + _In_ DWORD ToneFrequency, + _In_ PWAVEFORMATEXTENSIBLE WfExt +) +{ + NTSTATUS status = STATUS_SUCCESS; + KFLOATING_SAVE saveData; + + PAGED_CODE(); + + // + // This sample supports PCM 16bit formats only. + // + if ((WfExt->Format.wFormatTag != WAVE_FORMAT_PCM && + !(WfExt->Format.wFormatTag == WAVE_FORMAT_EXTENSIBLE && + IsEqualGUIDAligned(WfExt->SubFormat, KSDATAFORMAT_SUBTYPE_PCM))) || + (WfExt->Format.wBitsPerSample != 16 && + WfExt->Format.wBitsPerSample != 8)) + { + status = STATUS_NOT_SUPPORTED; + } + IF_FAILED_JUMP(status, Done); + + // + // Save floating state (just in case). + // + status = KeSaveFloatingPointState(&saveData); + IF_FAILED_JUMP(status, Done); + + // + // Basic init. + // + RtlZeroMemory(&m_Theta, sizeof(m_Theta)); + m_Frequency = ToneFrequency; + m_ChannelCount = WfExt->Format.nChannels; // # channels. + m_BitsPerSample = WfExt->Format.wBitsPerSample; // bits per sample. + m_SamplesPerSecond = WfExt->Format.nSamplesPerSec; // samples per sec. + m_Mute = false; + m_SampleIncrement = (m_Frequency * TWO_PI) / (double)m_SamplesPerSecond; + m_FrameSize = (DWORD)m_ChannelCount * m_BitsPerSample/8; + ASSERT(m_FrameSize == WfExt->Format.nBlockAlign); + + // + // Restore floating state. + // + KeRestoreFloatingPointState(&saveData); + + // + // Allocate a buffer to hold a partial frame. + // + m_PartialFrame = (BYTE*)ExAllocatePool2( + POOL_FLAG_NON_PAGED, + m_FrameSize, + TONEGENERATOR_POOLTAG); + + IF_TRUE_ACTION_JUMP(m_PartialFrame == NULL, status = STATUS_INSUFFICIENT_RESOURCES, Done); + + status = STATUS_SUCCESS; + +Done: + return status; +} + + -- cgit v1.3.1