Abstract:
A system and method for enhancing a lazy loading operation is disclosed. The system and method, in general, retrieves a plurality of subsets of a dataset via the lazy loading operation and increments a counter for each of the plurality of subsets retrieved by the processor. Then, the system and method detects a first event that navigates away from the retrieving of the plurality of subsets and also detects a second event that navigates back to the retrieving of the plurality of subsets. Next, the system and method returns to the retrieving of the plurality of subsets in accordance with the counter in response to the detecting of the second event.
Abstract:
A system and method for enhancing a lazy loading operation is disclosed. The system and method, in general, retrieves a plurality of subsets of a dataset via the lazy loading operation and increments a counter for each of the plurality of subsets retrieved by the processor. Then, the system and method detects a first event that navigates away from the retrieving of the plurality of subsets and also detects a second event that navigates back to the retrieving of the plurality of subsets. Next, the system and method returns to the retrieving of the plurality of subsets in accordance with the counter in response to the detecting of the second event.
Abstract:
Aspects optimize an alarm time as a function of biometric sleep data. Biometric sleep data is generated from monitoring a sleeping person. A readiness period of time is determined as required for a selected caregiver to complete a task prior to tending to the sleeping person. A probability that the sleeping person will wake within the readiness time period from a current time is determined from the biometric sleep data of the sleeping person. Accordingly, an alarm is initialized (given, broadcast, etc.) to the selected caregiver in response to determining that the wake probability meets a threshold certainty value.
Abstract:
A method and system for positioning based device control. The method includes receiving device control instructions associated with function control of a device based on a positioning of a wearable hardware device of a user. Communications between the device and the wearable hardware device are synchronized and a position signal indicating a current position of the wearable hardware device with respect to a body of the user is received. In response, a command associated with controlling a specified function of the device is received and a command is executed resulting in the specified function of the device being modified.
Abstract:
A message delivery system includes a plurality of smart devices associated with a person. Each smart device includes the person's contact information and a wireless transceiver for communicating with each of the other smart devices and communicating messages directed to the person. A message handling module having stored codes executable by a processor is embedded within one of the smart devices to receive current device status of each of the smart devices and to determine a chosen smart device to receive a current message directed to the person based on criteria including the current device status.
Abstract:
A system and method for enhancing a lazy loading operation is disclosed. The system and method, in general, retrieves a plurality of subsets of a dataset via the lazy loading operation and increments a counter for each of the plurality of subsets retrieved by the processor. Then, the system and method detects a first event that navigates away from the retrieving of the plurality of subsets and also detects a second event that navigates back to the retrieving of the plurality of subsets. Next, the system and method returns to the retrieving of the plurality of subsets in accordance with the counter in response to the detecting of the second event.
Abstract:
A method and system for indicating voice input state for a call on a communications device being used by a user to communicate with a party during the call. A processor unit identifies the state of voice input for the call. In response to the state of the voice input state being a mute state, the processor unit identifies a first setting for the mute state. The first setting for the mute state specifies: (i) first conditions which must be satisfied during the call in order for the voice input state to be the mute state and (ii) a first type of audio to be played on the communications device during the call while the voice input state is the mute state, wherein the first conditions comprise a first type of the call and an identity of a first party to whom the user is communicating with during the call.
Abstract:
A method for indicating voice input state for a call on a communications device. A processor unit identifies the state of voice input for the call. In response to the state of the voice input being a mute state, the processor unit identifies a mute setting for the mute state based on a user profile. Thereafter, first audio data specified by the mute setting is played with audio data from the call on the communications device. In response to the state of the voice input being an unmute state, the processor unit identifies an unmute setting for the unmute state based on the user profile. Thereafter, second audio data specified by the unmute setting is played with the audio data from the call on the communications device.
Abstract:
A method, device, and program product are provided for no-look entry of digits in a multi-touch device. A multi-touch screen of the multi-touch device senses an initializing combination of at least one touch. A no-look digit entry application assigns a binary value to each touched location. The multi-touch screen detects at least one combination of at least one touch of the touch screen. The no-look digit entry application determines the locations touched and enters digit inputs corresponding to the sum of the binary values assigned to the locations for each detected combination of touches.