/* File:SamplePCIAudioDevice.cpp Contains: Version:1.0.0 Copyright:Copyright ) 1997-2000 by Apple Computer, Inc., All Rights Reserved. Disclaimer:IMPORTANT: This Apple software is supplied to you by Apple Computer, Inc. ("Apple") in consideration of your agreement to the following terms, and your use, installation, modification or redistribution of this Apple software constitutes acceptance of these terms. If you do not agree with these terms, please do not use, install, modify or redistribute this Apple software. 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IN NO EVENT SHALL APPLE BE LIABLE FOR ANY SPECIAL, INDIRECT, INCIDENTAL OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) ARISING IN ANY WAY OUT OF THE USE, REPRODUCTION, MODIFICATION AND/OR DISTRIBUTION OF THE APPLE SOFTWARE, HOWEVER CAUSED AND WHETHER UNDER THEORY OF CONTRACT, TORT (INCLUDING NEGLIGENCE), STRICT LIABILITY OR OTHERWISE, EVEN IF APPLE HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. */ #include "SamplePCIAudioDevice.h" #include "SamplePCIAudioEngine.h" #include #include #include #include #include #include #define super IOAudioDevice OSDefineMetaClassAndStructors(SamplePCIAudioDevice, IOAudioDevice) bool SamplePCIAudioDevice::initHardware(IOService *provider) { bool result = false; IOLog("SamplePCIAudioDevice[%p]::initHardware(%p)\n", this, provider); if (!super::initHardware(provider)) { goto Done; } // Get the PCI device provider pciDevice = OSDynamicCast(IOPCIDevice, provider); if (!pciDevice) { goto Done; } // Config a map for the PCI config base registers // We need to keep this map around until we're done accessing the registers deviceMap = pciDevice->mapDeviceMemoryWithRegister(kIOPCIConfigBaseAddress0); if (!deviceMap) { goto Done; } // Get the virtual address for the registers - mapped in the kernel address space deviceRegisters = (SamplePCIAudioDeviceRegisters *)deviceMap->getVirtualAddress(); if (!deviceRegisters) { goto Done; } // Enable the PCI memory access - the kernel will panic if this isn't done before accessing the // mapped registers pciDevice->setMemoryEnable(true); // add the hardware init code here setDeviceName("Sample PCI Audio Device"); setDeviceShortName("PCIAudio"); setManufacturerName("My Company"); #error Put your own hardware initialization code here...and in other routines!! if (!createAudioEngine()) { goto Done; } result = true; Done: if (!result) { if (deviceMap) { deviceMap->release(); deviceMap = NULL; } } return result; } void SamplePCIAudioDevice::free() { IOLog("SamplePCIAudioDevice[%p]::free()\n", this); if (deviceMap) { deviceMap->release(); deviceMap = NULL; } super::free(); } bool SamplePCIAudioDevice::createAudioEngine() { bool result = false; SamplePCIAudioEngine *audioEngine = NULL; IOAudioControl *control; IOLog("SamplePCIAudioDevice[%p]::createAudioEngine()\n", this); audioEngine = new SamplePCIAudioEngine; if (!audioEngine) { goto Done; } // Init the new audio engine with the device registers so it can access them if necessary // The audio engine subclass could be defined to take any number of parameters for its // initialization - use it like a constructor if (!audioEngine->init(deviceRegisters)) { goto Done; } // Create a left & right output volume control with an int range from 0 to 65535 // and a db range from -22.5 to 0.0 // Once each control is added to the audio engine, they should be released // so that when the audio engine is done with them, they get freed properly control = IOAudioLevelControl::createVolumeControl(65535, // Initial value 0, // min value 65535, // max value (-22 << 16) + (32768), // -22.5 in IOFixed (16.16) 0, // max 0.0 in IOFixed kIOAudioControlChannelIDDefaultLeft, kIOAudioControlChannelNameLeft, 0, // control ID - driver-defined kIOAudioControlUsageOutput); if (!control) { goto Done; } control->setValueChangeHandler((IOAudioControl::IntValueChangeHandler)volumeChangeHandler, this); audioEngine->addDefaultAudioControl(control); control->release(); control = IOAudioLevelControl::createVolumeControl(65535, // Initial value 0, // min value 65535, // max value (-22 << 16) + (32768), // min -22.5 in IOFixed (16.16) 0, // max 0.0 in IOFixed kIOAudioControlChannelIDDefaultRight, // Affects right channel kIOAudioControlChannelNameRight, 0, // control ID - driver-defined kIOAudioControlUsageOutput); if (!control) { goto Done; } control->setValueChangeHandler((IOAudioControl::IntValueChangeHandler)volumeChangeHandler, this); audioEngine->addDefaultAudioControl(control); control->release(); // Create an output mute control control = IOAudioToggleControl::createMuteControl(false, // initial state - unmuted kIOAudioControlChannelIDAll, // Affects all channels kIOAudioControlChannelNameAll, 0, // control ID - driver-defined kIOAudioControlUsageOutput); if (!control) { goto Done; } control->setValueChangeHandler((IOAudioControl::IntValueChangeHandler)outputMuteChangeHandler, this); audioEngine->addDefaultAudioControl(control); control->release(); // Create a left & right input gain control with an int range from 0 to 65535 // and a db range from 0 to 22.5 control = IOAudioLevelControl::createVolumeControl(65535, // Initial value 0, // min value 65535, // max value 0, // min 0.0 in IOFixed (22 << 16) + (32768), // 22.5 in IOFixed (16.16) kIOAudioControlChannelIDDefaultLeft, kIOAudioControlChannelNameLeft, 0, // control ID - driver-defined kIOAudioControlUsageInput); if (!control) { goto Done; } control->setValueChangeHandler((IOAudioControl::IntValueChangeHandler)gainChangeHandler, this); audioEngine->addDefaultAudioControl(control); control->release(); control = IOAudioLevelControl::createVolumeControl(65535, // Initial value 0, // min value 65535, // max value 0, // min 0.0 in IOFixed (22 << 16) + (32768), // max 22.5 in IOFixed (16.16) kIOAudioControlChannelIDDefaultRight, // Affects right channel kIOAudioControlChannelNameRight, 0, // control ID - driver-defined kIOAudioControlUsageInput); if (!control) { goto Done; } control->setValueChangeHandler((IOAudioControl::IntValueChangeHandler)gainChangeHandler, this); audioEngine->addDefaultAudioControl(control); control->release(); // Create an input mute control control = IOAudioToggleControl::createMuteControl(false, // initial state - unmuted kIOAudioControlChannelIDAll, // Affects all channels kIOAudioControlChannelNameAll, 0, // control ID - driver-defined kIOAudioControlUsageInput); if (!control) { goto Done; } control->setValueChangeHandler((IOAudioControl::IntValueChangeHandler)inputMuteChangeHandler, this); audioEngine->addDefaultAudioControl(control); control->release(); // Active the audio engine - this will cause the audio engine to have start() and initHardware() called on it // After this function returns, that audio engine should be ready to begin vending audio services to the system activateAudioEngine(audioEngine); // Once the audio engine has been activated, release it so that when the driver gets terminated, // it gets freed audioEngine->release(); result = true; Done: if (!result && (audioEngine != NULL)) { audioEngine->release(); } return result; } IOReturn SamplePCIAudioDevice::volumeChangeHandler(IOService *target, IOAudioControl *volumeControl, SInt32 oldValue, SInt32 newValue) { IOReturn result = kIOReturnBadArgument; SamplePCIAudioDevice *audioDevice; audioDevice = (SamplePCIAudioDevice *)target; if (audioDevice) { result = audioDevice->volumeChanged(volumeControl, oldValue, newValue); } return result; } IOReturn SamplePCIAudioDevice::volumeChanged(IOAudioControl *volumeControl, SInt32 oldValue, SInt32 newValue) { IOLog("SamplePCIAudioDevice[%p]::volumeChanged(%p, %ld, %ld)\n", this, volumeControl, oldValue, newValue); if (volumeControl) { IOLog("\t-> Channel %ld\n", volumeControl->getChannelID()); } // Add hardware volume code change return kIOReturnSuccess; } IOReturn SamplePCIAudioDevice::outputMuteChangeHandler(IOService *target, IOAudioControl *muteControl, SInt32 oldValue, SInt32 newValue) { IOReturn result = kIOReturnBadArgument; SamplePCIAudioDevice *audioDevice; audioDevice = (SamplePCIAudioDevice *)target; if (audioDevice) { result = audioDevice->outputMuteChanged(muteControl, oldValue, newValue); } return result; } IOReturn SamplePCIAudioDevice::outputMuteChanged(IOAudioControl *muteControl, SInt32 oldValue, SInt32 newValue) { IOLog("SamplePCIAudioDevice[%p]::outputMuteChanged(%p, %ld, %ld)\n", this, muteControl, oldValue, newValue); // Add output mute code here return kIOReturnSuccess; } IOReturn SamplePCIAudioDevice::gainChangeHandler(IOService *target, IOAudioControl *gainControl, SInt32 oldValue, SInt32 newValue) { IOReturn result = kIOReturnBadArgument; SamplePCIAudioDevice *audioDevice; audioDevice = (SamplePCIAudioDevice *)target; if (audioDevice) { result = audioDevice->gainChanged(gainControl, oldValue, newValue); } return result; } IOReturn SamplePCIAudioDevice::gainChanged(IOAudioControl *gainControl, SInt32 oldValue, SInt32 newValue) { IOLog("SamplePCIAudioDevice[%p]::gainChanged(%p, %ld, %ld)\n", this, gainControl, oldValue, newValue); if (gainControl) { IOLog("\t-> Channel %ld\n", gainControl->getChannelID()); } // Add hardware gain change code here return kIOReturnSuccess; } IOReturn SamplePCIAudioDevice::inputMuteChangeHandler(IOService *target, IOAudioControl *muteControl, SInt32 oldValue, SInt32 newValue) { IOReturn result = kIOReturnBadArgument; SamplePCIAudioDevice *audioDevice; audioDevice = (SamplePCIAudioDevice *)target; if (audioDevice) { result = audioDevice->inputMuteChanged(muteControl, oldValue, newValue); } return result; } IOReturn SamplePCIAudioDevice::inputMuteChanged(IOAudioControl *muteControl, SInt32 oldValue, SInt32 newValue) { IOLog("SamplePCIAudioDevice[%p]::inputMuteChanged(%p, %ld, %ld)\n", this, muteControl, oldValue, newValue); // Add input mute change code here return kIOReturnSuccess; }