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Loop initialization report position frame (LIRP) This is the first frame transmitted in the loop initialization process after all L_Ports have selected an AL_PA (after LISA has been around the loop). This frame is transmitted around the loop so that all L_Ports report their relative physical position on the loop. Support for this frame by an L_Port is optional. Loop initialization soft assigned frame (LISA) This is the fourth frame transmitted in the loop initialization process after a temporary loop master has been selected. L_Ports that did not select an AL_PA in any of the previous loop initialization frames (LIFA, LIPA, or LIHA) will select their AL_PAs in this frame as it makes its way around the loop. Loop initialization select master frame (LISM) This frame applies only to the arbitrated-loop topology. It is the first frame transmitted in the initialization process in which L_Ports select an AL_PA. It is used to select a temporary loop master or the L_Port that subsequently will initiate transmission of the remaining initialization frames (LIFA, LIPA, LIHA, LISA, LIRP, and LILP). Loop port bypass primitive sequence (LPB) This primitive sequence applies only to the arbitrated-loop topology. It is transmitted by an L_Port to bypass the L_Port to which it is directed. For example, if port A suspects that port B is malfunctioning, port A can send an LPB to port B so that port B will only retransmit everything it receives and will not be active on the loop. Loop port enable primitive sequence (LPE) This primitive sequence applies only to the arbitrated-loop topology. It is transmitted by an L_Port to enable an L_Port that has been bypassed with the LPB primitive sequence. Loop port (L_Port) Generic term for an NL_Port or FL_Port, that is, any Fibre Channel port that supports the arbitrated-loop topology. Loop port state machine (LPSM) This is a state machine maintained by an L_Port to track its behavior through different phases of loop operation, that is, how it behaves
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5 when it is arbitrating for loop access, how it behaves when it has control of the loop, and so on. Link reset primitive sequence (LR) This primitive sequence is used during link initialization between two N_Ports in the point-to-point topology or an N_Port and an F_Port in the fabric topology. The expected response to a port sending LR is the LRR primitive sequence. Link reset response primitive sequence (LRR) This primitive sequence is used during link initialization between two N_Ports in the point-to-point topology or an N_Port and an F_Port in the fabric topology. It is sent in response to the LR primitive sequence. The expected response to a port sending LRR is idle. Mark primitive signal (MRK) This primitive signal applies only to the arbitrated-loop topology and is transmitted by an L-PORT for synchronization purposes. It is vendor specific. Node-loop port (NL_Port) An N_Port that can operate on the arbitrated-loop topology. Nonparticipating mode An L_Port will enter the nonparticipating mode if there are more than 127 devices on a loop, and it thus cannot acquire an AL_PA. An L_Port also may enter the nonparticipating mode voluntarily if it is still physically connected to the loop but wishes not to participate. An L_Port in the nonparticipating mode is not capable of generating transmission words on the loop and may only retransmit words received on its inbound fiber. Not operational primitive sequence (NOS) This primitive sequence is used during link initialization between two N_Ports in the point-to-point topology or an N_Port and an F_Port in the fabric topology. It is sent to indicate that that transmitting port has detected a link failure or is offline. The expected response to a port sending NOS is the OLS primitive sequence.
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