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TNETX3150 数据表(PDF) 60 Page - Texas Instruments |
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TNETX3150 数据表(HTML) 60 Page - Texas Instruments |
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60 / 78 page ![]() TNETX15AE ADDRESS-LOOKUP DEVICE SPWS041A – AUGUST 1997 – REVISED OCTOBER 1997 60 POST OFFICE BOX 655303 • DALLAS, TEXAS 75265 PRINCIPLES OF OPERATION table-full aging Table-full aging is implemented for applications that do not want to use aging based on time, but still require aging. As its name implies, aging in this mode only happens when the lookup table is full and needs additional room to add a new address. The ADD logic operation initiates an aging request when it determines that it does not have enough tables to add the address it is working on. The time behaves differently in this mode. In table-full aging, the age timer does not increment every second, but rather when a new address is added. There must be a time difference between addresses to decide which is oldest, but a single count is sufficient. Since ADD time stamps every time it sees an address come through the bus, nodes that are actively transmitting between adds quickly move up to the same (new) age level. Those nodes that do not transmit remain at the lower age stamps. It is these nodes that are deleted in table-full aging when the table is full. DEL logic operation (management address deletions) BYTE 3 BYTE 2 BYTE 1 BYTE 0 DIO ADDRESS Adddelcontrol 0x2C Delnode23–Delnode16 Delnode31–Delnode24 Delnode39–Delnode32 Delnode47–Delnode40 0x48 Delnode7–Delnode0 Delnode15–Delnode8 0x4C The DEL logic operation is controlled through the delnode and the adddelcontrol register. Management delete commands are given through the DEL bit in the adddelcontrol register. The steps for deleting a particular address (multicast or unicast) are as follows: D Writing the node address in the delnode register D Asserting the DEL bit in adddelcontrol The DEL logic operation locks the delnode on all delete commands to ensure that they do not change during the deletions. Reads to these registers are still possible. The DEL bit in adddelcontrol remains in the 1 state until the deletion is complete. Much like the management adds, having a sticky bit for DEL gives the programmer the opportunity to set up or perform other register operations without having to wait for the delete completion. A polling method is used to find out if the delete is finished. This involves reading adddelcontrol to determine if the command bit used has returned to 0. interrupts The TNETX15AE implements interrupts to ease the management processor’s tasks. The interrupts are used to indicate changes to the lookup table. It indicates that a new address is added, an address changed ports, an address changed ports and is secure, and an address is deleted due to the aging process. The statistic registers are half full (and the possibility for an overflow is present) and the lookup table is full. The TNETX15AE indicates that interrupts to the CPU exist by setting to 1 its level-sensitive EINT terminal. The EINT terminal is asserted when any of the possible interrupt conditions are met and the condition(s) is(are) enabled. The interrupt register is readable at all times and contains all the current TNETX15AE interrupts. The interrupt register is byte clearable. That is, the interrupt bits in a byte are cleared when that byte is read, whether the int is masked or not. |
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