Reverts the 0x8000/0xC000 change from 162dbf7, which was WRONG and actively
broke transmission. The W5100S datasheet pseudo-code quotes 0x8000 (TX) /
0xC000 (RX) for the memory blocks, but the PARALLEL/indirect (IDM) interface
only decodes a 15-bit offset. Bench-proven with an address-aliasing probe:
writing distinct values to each candidate base and reading them back showed
0xC000 and 0x4000 are the SAME cell (0xC000 & 0x7FFF == 0x4000) while 0x6000
holds its own value.
Consequence of the bad base: every payload byte written to 0x9800+i aliased
down onto 0x0000+i, landing on SHAR (0x09-0x0E) and SIPR (0x0F-0x12) and
overwriting them with the payload. The chip then transmitted frames with a
garbage source MAC/IP, which the peer NIC drops without counting -- the
"SEND_OK but rx_packets=0" symptom, and the bogus SIPR0 readback (0x50 was
literally payload byte 15, 'P').
The NETLCKR unlock from 9c4bc7a is a genuine W5100S requirement and stays.
Also:
- w5100_udptest.py: self-contained configure+send+readback probe (and the
address-aliasing probe that found this), reports over UART.
- scripts/build-flash.sh: sweep N seeds and flash the best (capture timing is
seed-dependent, so the sweep is mandatory).
- scripts/uart-console.py: interactive UART console, plus --send/--read
one-shot modes for scripting.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Second W5100S-vs-W5100 gotcha found at bring-up: the W5100S has a Network Lock
Register (NETLCKR, 0x0071) the original W5100 lacks. It defaults to 0x00 (locked),
and while locked, ALL writes to GWR/SUBR/SHAR/SIPR are silently dropped -- so the
chip has no source IP/MAC and the UDP/MACRAW send builds nothing (chip reports
SEND_OK but transmits nothing; socket registers aren't locked, which is why an
indirect write/readback of Sn_PORT succeeded). Fix: write the unlock value 0x3A
to NETLCKR right after MR enables indirect mode, before the network-config writes.
On the bench this flipped the board from silent to actually keying frames onto
the wire (magjack activity LED now blinks).
Also:
- bba_top.py test model: RX buffer base 0x6000 -> 0xC000 to match the W5100S
buffer-base fix (the model hardcoded the old W5100 address).
- w5100_selftest.py: added an indirect-mode (IDM) write/readback probe of a
socket register + IND= field in the UART report, to isolate direct-vs-indirect
access (confirmed indirect works on the real chip).
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
An interactive UART command shell drives a UDP send/receive test on the
W5100's socket 3, running ALONGSIDE the live BBA (socket-0 MACRAW) with
EXI keeping bus priority. MACRAW+UDP coexistence is W5100S-datasheet
confirmed (S4.6 + "4 independent SOCKETs"). Now the default flash build
(--console selects the old event-log console).
New / changed gateware:
- uart_shell.py (new): rebbarb> shell over FT2232H channel B. Commands:
help; udp unicast <ip> [msg]; udp broadcast [msg]. After each send it
waits (bounded, else "timeout") for a reply and prints "rx <payload>".
Line buffer + message ROM live in block RAM with a sequential parser
(LC-efficient); 1-deep RX holding reg keeps pastes intact. 8 sim tests.
- w5100_parallel_master.py: configurable UDP socket (default 3) with UDP
send AND receive (IP-stack init, runtime dest IP, WIZnet UDP RX header
+ payload). Gated by enable_udp_test so the MACRAW path is unchanged
when off. Tests U1-U4 + MACRAW T1-T5.
- exi_capture.py: CAPTURE-DOMAIN CRITICAL-PATH FIX. The TX byte-FIFO
read-enable was gated by its own gray-coded ready
(r_en = ... | (flushing & r_rdy)), forming a consume_ptr -> gray ->
r_rdy -> flush -> r_en -> consume_ptr loop that capped capture_clk.
Replaced the r_rdy-based "drain until empty" flush with a fixed-length
drain counter (FIFO is only tx_depth deep), removing the pointer
feedback from r_en. Path 24.3 -> 19.6 ns; flush behavior preserved.
- bba_top.py: wire shell <-> W5100 UDP (send + rx); shell additive.
- synth.py: shell default build; env-var UDP network config; documents a
reverted PNR-timing-priority experiment.
Timing (--seeds 8, default shell build, 67% LC): capture closes on 4/8
seeds (best seed 4 = 58.36 MHz, +8%), clk passes on all. This is BETTER
than the pre-shell 2/8 baseline because the flush fix improved the
capture domain intrinsically. Flash build/seed4/top.bin.
Bring-up caveats (unchanged): W5100 socket register addresses / UDP
header format are datasheet-derived (confirm on hardware); UDP_SRC_IP /
subnet / gateway must match the LAN for unicast ARP.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>