Method and apparatus for versatile MAC multiplexing in evolved HSPA
Methods and apparatus for versatile medium access control (MAC) multiplexing in evolved HSPA are disclosed. More particularly, methods for downlink optimization of the enhanced high speed MAC (MAC-ehs) entity and uplink optimization of the MAC-i/is entity are disclosed. Apparatuses for using the optimized downlink and uplink MAC entities are also disclosed.
1. A method for processing a segmentation indication (SI) field in a header of a medium access control (MAC) protocol data unit (PDU) at a wireless transmit/receive unit (WTRU), the method comprising:
receiving, at a receiver of the WTRU, a value of the SI field in the header of the MAC PDU, the SI field corresponding to a reordering PDU that includes at least one segment of a MAC enhanced high speed (MAC-ehs) SDU; and
performing reassembly of one or more MAC PDUs at a reassembly unit by delivering the one or more MAC PDUs to a demultiplexing unit based on the value of the SI field, wherein, on a condition that the SI field has the value of “01” or “11” which indicates that a first reordering SDU of the reordering PDU is a last MAC-ehs SDU segment, the one or more MAC PDUs are delivered based on whether a received MAC-ehs SDU segment and a stored MAC-ehs SDU segment are consecutive, and wherein, on a condition that the SI field has the value of “10” or “11” which indicates that a last reordering SDU of the reordering PDU is a first MAC-ehs SDU segment, the one or more MAC PDUs correspond to each reordering SDU in the reordering PDU except the last reordering SDU.
2. The method of claim 1 , further comprising, on the condition that the SI field has the value of “01” or “11” which indicates that the first reordering SDU of the reordering PDU is the last MAC-ehs SDU segment and on a condition that the received MAC-ehs SDU segment and the stored MAC-ehs SDU segment are consecutive:
combining the received MAC-ehs SDU segment and the stored MAC-ehs SDU segment; and
delivering the combined segments to the demultiplexing unit.
3. The method of claim 1 , further comprising, on the condition that the SI field has the value of “01” or “11” which indicates that the first reordering SDU of the reordering PDU is the last MAC-ehs SDU segment, discarding the received MAC-ehs SDU segment and the stored MAC-ehs SDU when the received MAC-ehs SDU segment and the stored MAC-ehs SDU segment are not consecutive.
4. The method of claim 1 , wherein, on the condition that the SI field has the value of “01” or “11” which indicates that the first reordering SDU of the reordering PDU is the last MAC-ehs SDU segment, and when the received MAC-ehs SDU segment and the stored MAC-ehs SDU segment are not consecutive, the one or more MAC PDUs include a MAC PDU received subsequent to the received MAC-ehs SDU segment and the stored MAC-ehs SDU segment.
5. The method of claim 1 , further comprising, on the condition that the SI field has the value of “10” or “11” which indicates that the last reordering SDU of the reordering PDU is the first MAC-ehs SDU segment:
discarding any stored MAC-ehs PDUs; and
storing the last reordering SDU.
6. A wireless transmit/receive unit (WTRU) for processing a segmentation indication (SI) field in a header of a medium access control (MAC) protocol data unit (PDU), the WTRU comprising:
a receiver; and
a processor in communication with the receiver, the processor configured to:
receive, via the receiver, a value of the SI field in the header of the MAC PDU, the SI field corresponding to a reordering PDU that includes at least one segment of a MAC enhanced high speed (MAC-ehs) SDU; and
perform reassembly of one or more MAC PDUs by delivering the one or more MAC PDUs to a demultiplexing unit based on the value of the SI field, wherein, on a condition that the SI field has the value of “01” or “11” which indicates that a first reordering SDU of the reordering PDU is a last MAC-ehs SDU segment, the one or more MAC PDUs are delivered based on whether a received MAC-ehs SDU segment and a stored MAC-ehs SDU segment are consecutive, and wherein, on a condition that the SI field has the value of “10” or “11” which indicates that a last reordering SDU of the reordering PDU is a first MAC-ehs SDU segment, the one or more MAC PDUs correspond to each reordering SDU in the reordering PDU except the last reordering SDU.
7. The WTRU of claim 6 , wherein the processor is further configured to, on the condition that the SI field has the value of “01” or “11” which indicates that the first reordering SDU of the reordering PDU is the last MAC-ehs SDU segment and on a condition that the received MAC-ehs SDU segment and the stored MAC-ehs SDU segment are consecutive:
combine the received MAC-ehs SDU segment and the stored MAC-ehs SDU segment; and
deliver the combined segments to the demultiplexing unit.
8. The WTRU of claim 6 , wherein the processor is further configured to, on the condition that the SI field has the value of “01” or “11” which indicates that the first reordering SDU of the reordering PDU is the last MAC-ehs SDU segment, discard the received MAC-ehs SDU segment and the stored MAC-ehs SDU segment when the received MAC-ehs SDU segment and the stored MAC-ehs SDU segment are not consecutive.
9. The WTRU of claim 6 , wherein, when the SI field has the value of “01” or “11” which indicates that the first reordering SDU of the reordering PDU is the last MAC-ehs SDU segment, and when the received MAC-ehs SDU segment and the stored MAC-ehs SDU segment are not consecutive, the one or more MAC PDUs include a MAC PDU received subsequent to the received MAC-ehs SDU segment and the stored MAC-ehs SDU segment.
10. The WTRU of claim 6 , wherein the processor is further configured to, when the SI field has the value of “10” or “11” which indicates that the last reordering SDU of the reordering PDU is the first MAC-ehs SDU segment:
discard any stored MAC-ehs PDUs; and
store the last reordering SDU.