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author | Samir Ibradžić <sibradzic@gmail.com> | 2011-10-20 23:14:10 +0000 |
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committer | Uwe Hermann <uwe@hermann-uwe.de> | 2011-10-20 23:14:10 +0000 |
commit | 7189a5ff8cb8cfc33ef2c0be3268204064a2771b (patch) | |
tree | 8b58adf2bf2f4fb2c54fb563a56558671ba722ba /rayer_spi.c | |
parent | d0c5dc23e25f33439dd6166a5798ffbcaabf67f8 (diff) | |
download | flashrom-7189a5ff8cb8cfc33ef2c0be3268204064a2771b.tar.gz flashrom-7189a5ff8cb8cfc33ef2c0be3268204064a2771b.tar.bz2 flashrom-7189a5ff8cb8cfc33ef2c0be3268204064a2771b.zip |
Add support for the GOEPEL PicoTAP programmer
http://www.goepel.com/en/jtagboundary-scan/hardware/picotap.html
This device is actually a JTAG adapter, but since it uses standard
FT2232 A interface pins, it can be easily used as SPI programmer
(tested it here successfully). PicoTAP supports only 5V output, so one
needs to reduce this to 3.3V in a same manner as DLP Design DLP-USB1232H, see
http://flashrom.org/FT2232SPI_Programmer#DLP_Design_DLP-USB1232H
for details.
The PicoTAP pin-out is as follows:
PicoTAP | SPI
---------+-------
TCK | SCLK
TMS | CS#
TDI | SO
TDO | SI
/TRST | -
GND | GND
+5V | VCC, HOLD# & WP# after 3.3V regulator
I managed to run PicoTAP in 10MHz, 15MHz and 30MHz modes (by forcing
DIVIDE_BY), against SST25VF016B SPI flash, read/write/erase all worked
fine (write seems somewhat slow).
Corresponding to flashrom svn r1453.
Signed-off-by: Samir Ibradžić <sibradzic@gmail.com>
Acked-by: Uwe Hermann <uwe@hermann-uwe.de>
Diffstat (limited to 'rayer_spi.c')
0 files changed, 0 insertions, 0 deletions