blob: 9023eccdf215026b5f240ae721dec9176db1986a [file] [log] [blame]
#include <hardware/hardware.h>
#include <hardware/nfc.h>
#include "Nfc.h"
namespace android {
namespace hardware {
namespace nfc {
namespace V1_0 {
namespace implementation {
sp<INfcClientCallback> Nfc::mCallback = NULL;
Nfc::Nfc(nfc_nci_device_t* device) : mDevice(device) {
}
// Methods from ::android::hardware::nfc::V1_0::INfc follow.
::android::hardware::Return<int32_t> Nfc::open(const sp<INfcClientCallback>& clientCallback) {
mCallback = clientCallback;
return mDevice->open(mDevice, event_callback, data_callback);
}
::android::hardware::Return<int32_t> Nfc::write(const nfc_data_t& data) {
return mDevice->write(mDevice, data.data.size(), &data.data[0]);
}
::android::hardware::Return<int32_t> Nfc::core_initialized(const hidl_vec<uint8_t>& data) {
hidl_vec<uint8_t> copy = data;
return mDevice->core_initialized(mDevice, &copy[0]);
}
::android::hardware::Return<int32_t> Nfc::pre_discover() {
return mDevice->pre_discover(mDevice);
}
::android::hardware::Return<int32_t> Nfc::close() {
return mDevice->close(mDevice);
}
::android::hardware::Return<int32_t> Nfc::control_granted() {
return mDevice->control_granted(mDevice);
}
::android::hardware::Return<int32_t> Nfc::power_cycle() {
return mDevice->power_cycle(mDevice);
}
INfc* HIDL_FETCH_INfc(const char *hal) {
nfc_nci_device_t* nfc_device;
int ret = 0;
const hw_module_t* hw_module = NULL;
ret = hw_get_module (hal, &hw_module);
if (ret == 0)
{
ret = nfc_nci_open (hw_module, &nfc_device);
if (ret != 0) {
ALOGE ("nfc_nci_open %s failed: %d", hal, ret);
}
}
else
ALOGE ("hw_get_module %s failed: %d", hal, ret);
if (ret == 0) {
return new Nfc(nfc_device);
} else {
ALOGE("Passthrough failed to load legacy HAL.");
return nullptr;
}
}
} // namespace implementation
} // namespace V1_0
} // namespace nfc
} // namespace hardware
} // namespace android