Abstract:
A system and a method for stack-caching method frames are disclosed, which utilize FSO (Frame Size Overflow) flag to control the execution mode of the processor. When FSO flag is set, it indicates that the method frame of the next method is larger than the limit value of a stack cache so that the method frame is placed to a memory stack. When FSO flag is cleared, it indicates that the method frame of the next method is smaller than the limit value of the stack cache so that the method frame is placed into the cache stack.
Abstract:
An electrostatic discharge protection cover is described. The electrostatic discharge protection cover enhances the strength of an upper cover of a PC card socket and protects the socket from electrostatic discharge pulse. The electrostatic discharge protection cover has a protection plate assembled on a PC card socket upper side for guiding the pulse of electrostatic discharge to a ground, and a stair-type enhancing edge to enhance the strength of the protection plate. The stair-type enhancing edge further couples with a metal crossbeam of a computer to enhance the strength and electrostatic discharge protection capacity.
Abstract:
An electronic interaction apparatus for providing a 3D MMI is provided with a processing unit. The processing unit determines a first length between an object positioned at a first time and a surface formed by two digital camera modules, and a second length between the object positioned at a second time and the surface. Also, the processing unit determines a third length between the object positioned at a third time and the surface, and determines a depth in a virtual 3D space corresponding to the object positioned at the third time according to the first length, the second length, and the third length. Particularly, the virtual 3D space is displayed in a display screen, the third time is later than the first time and the second time, and the third length is longer than the first length and shorter than the second length.
Abstract:
A method for generating an image object, performed by a mobile electronic device, comprises the following steps. The mobile electronic device comprises multiple shutter objects, and each shutter object corresponds to an orientation type. A signal generated by one of the shutter objects is detected. A orientation type is determined according to the shutter object generating the signal. The image object with the determined orientation type is stored.
Abstract:
The invention discloses a general purpose interface controller, including a slave interface controller and a master interface controller, used to exchange data among master devices and slave devices in an electronic device. The slave interface controller receives data and a first control signal from one of the master devices, and converts the first control signal to a request signal. The master interface controller receives the data and the request signal from the slave interface controller, converts the request signal to a second control signal recognized by at least one of the slave devices, and forwards the data and the second control signal to the slave device.
Abstract:
An embodiment of a method for encoding a source image comprising multiple data units, performed by an image encoding unit, comprises the following steps. A quantized DC coefficient and multiple AC coefficients of a data unit are generated. A value at the (0,0) element of the first data unit is determined according to the quantized DC coefficient. A variable length coding (VLC) stream of the data unit is generated by encoding the determined value and the AC coefficients. An encoded bitstream comprising a restart mark followed by the VLC stream of the data unit is generated. An offset pointing to the beginning of the restart mark of the encoded bitstream is stored in a random access table. A compression image comprising the encoded bitstream and the random access table is generated.
Abstract:
A method for generating an image object, performed by a mobile electronic device, comprises the following steps. The mobile electronic device comprises multiple shutter objects, and each shutter object corresponds to an orientation type. A signal generated by one of the shutter objects is detected. A orientation type is determined according to the shutter object generating the signal. The image object with the determined orientation type is stored.
Abstract:
Methods for texture image management are provided. An embodiment of a method for texture image management comprises the following steps. A texture image is acquired from a non-writable memory device. The received texture image is directly applied to a fragment.
Abstract:
The present invention relates to a method, applied in a mobile device, for determining operational settings of the device. Country information is retrieved on the device. An operational setting of a function, such as an output signal format, is automatically determined based on the country information.
Abstract:
A method for synchronized recording of audio and video signals is disclosed. The video signals are grouped into a plurality of video frames. The method includes incrementing a counter value of an audio counter when at least an audio frame associated with the audio signals is encoded, and recording the current counter value of the audio counter when a video frame is received.