lag show has always printed the groups as 1 to 4 while lag <n> took the
number literally, so typing what you saw configured the group beside it.
Both lag and lag hash count from one now, matching how ports are numbered
everywhere else, and reject anything outside 1 to 4. Subtracting '1' makes
0 wrap well past three, so one test covers both ends.
The port argument indexed machine.phys_to_log_port, which holds nine
entries, before it was checked, and a two digit argument reaches 109. It is
bounded before the table is touched rather than after.
port_lag_members_set() and port_lag_hash_set() complained about a group out
of range and then wrote the registers anyway, past the four the groups
occupy. They return instead.
lag hash also read cmd_words_b[1] without checking a word was there, and
now shares the error path parse_lag() already had.
Wrapping REG_SET restored the guard in front of the hash default, and
that exposed three things about the line it guards.
The test was against zero. The register does not read zero: it comes out
of reset holding source port number plus both MAC fields, both IP fields
and the L4 source port, which the header now names LAG_HASH_RESET.
Measured on an SWTGW218AS, where all four groups read 0x3f after a cold
boot and a value written before a power cycle is gone afterwards. With
the guard working and the test unreachable, the default would never be
installed, where before it was installed on every call. Testing against
the reset value restores the intent, and zero is still accepted in case
another device does reset that way.
The write went to the base address while the read that decides it used
the group offset, so a group other than zero was tested and group zero
was written. Both ends use the offset now.
The range check printed a complaint and carried on. It returns, which
matters more now that the hash write also uses the group number to build
an address.
Thirty bytes of BANK1.
The member mask of an aggregation group is decoded by hand in two places,
the lag command and the JSON behind the aggregation page, and every branch
that touches trunks adds another copy.
port_lag_members_get() sits next to port_lag_members_set() and both readers
call it. It answers from the hardware, so it covers a group configured with
lag and one a protocol brought up, without either having to say so.
It reads through reg_read() rather than reg_read_m(), so sfr_data is left
alone. Neither caller looked at it afterwards; both read the hash register
next.
vlan_create() and vlan_delete() wrote the ID straight into the table index
register. vlan_get() has refused anything >= 0xfff for a while, so reads were
guarded and writes were not: "vlan 4095 1 2" built an entry that no read path
can see, and IDs above that either miss the table or alias onto another VLAN.
Both writers now enforce the range vlan_get() already did, and parse_vlan()
rejects the same values with the usage message so the CLI says why. The check
sits after the "vlan 0 mgmt" branch, which legitimately takes 0 to switch the
management VLAN off.
Costs nothing in RAM: rtl837x_port.rel stays at DSEG 0, OSEG 5, and the image
still reports 10207 bytes of XDATA in use.
Previously, renaming a VLAN or deleting and recreating it with a
different name did not update the displayed name. The vlan_names[]
array is an append-only buffer where vlan_name() returns the first
matching entry, so stale entries kept winning.
This commit adds vlan_name_remove(), which locates an entry by
VLAN ID and removes it via array compaction. The function is called
in two places:
- parse_vlan() in cmd_parser.c, before appending a new name entry,
to remove any pre-existing entry for the same VLAN ID
- vlan_delete() in rtl837x_port.c, to clean up the name when a
VLAN is removed
The implementation reuses the existing vlan_name() lookup, scans for
the trailing space of the matched entry, then shifts remaining bytes
left. Locals are declared as static __xdata to avoid the SDCC
overlay segment limit on banked functions.
Tested on KeepLiNK KP-9000-6XH-X:
- vlan 99 AAA p1u; vlan 99 BBB -> name updated to BBB
- vlan 99 d; vlan 99 CCC p1u -> name correctly CCC, not stale AAA
Note: This fix addresses the runtime XMEM state. Persistence of
renamed VLAN names across reboot requires the user to download and
re-upload /config, as is the existing pattern for all configuration
changes in this firmware.
Added new `vlan show` command to dump current VLAN settings.
Supports printing PVID & ingress filtering per port.
Added new `ingress [p]<mode>` command to setup ingress filtering.
Added wrappers for enabling/disabling vlan filtering. Currently
not configurable, but state in console is read via ASIC registers.
Full VLAN dump & web support of new commands will be added later.
I noticed that entering some vlan config, clicking "Update/Create", then
clicking "Get Configuration" resulted in Tagged/Untagged/PVID displaying
completely wrong data. It looks like the parisng in fetchVLAN() in
vlan.js was just completely disconnected from the layout of the
registers read by vlan_get() in rtl837x_port.c. Who knows how that
happened.
1. Fix fetchVLAN() member/untag parsing: the old code read bits [9:0]
as untagged and bits [10:19] as tagged, but the VLAN table register
layout is members in [9:0] and untag in [19:10]. Now correctly
derives tagged (member && !untag) and untagged (member && untag).
2. Add PVID to vlan.json response: PVID is stored per-port in separate
PVID registers (RTL837x_PVID_BASE_REG), not in the VLAN table entry.
The old code nonsensically tried to read it from bits [20:29] of the
VLAN table. Add port_pvid_get() and build a pvid bitmask in
send_vlan() so the JS can parse it correctly.
3. Remove auto-PVID logic from setC(): setC() is called by fetchVLAN()
while it's loading existing config, and so this logic mangled the
display of the existing config. Also, it doesn't make sense to
auto-set the PVID for tagged members (PVID relates to untagged
ingress.)
Currently 5 Bytes are used by the port and vlan configuration:
--------------------------------------------------------
; internal ram data
;--------------------------------------------------------
.area DSEG (DATA)
_port_ingress_filter_PARM_2:
.ds 1
_vlan_create_PARM_2:
.ds 2
_vlan_create_PARM_3:
.ds 2
They are used for passing parameters. Use __xdata to pass the
parameters instead.
RTL has up to 3 SCL pins and up to 4 SDA pins. Lets allow configuring
I2C with individual BUS numbers instead of 0/1 I2C.
This enables support for devices where SCL line is not shared between
SFP modules. MUX registry is now initialized depending on needed
pin function.
More over, some SFP pins require special MUX settings, lets initialize
those depending on SFP configuration. This adds TX Disable pin,
which right now is set to low at startup.
Caveats:
- We may still override MUX registry later
- Not sure how to handle invalid bus definitions
- Without SFP is it fine to *not* initialize anything?
- Do to RAM limitation we do inititalize output GPIO to low
This fixes handling of the SFP ports in the stat command.
The output of the command now is for physical ports, which however are
not shown in sequence.