Files
openocd/tcl/target
Johan Almquist bfe1a6c892 stm32: add support for the STM32Lx 384kb dual bank flash
This update adds support for the STM32Lx 384kb dual bank flash. Previously there was a problem when writing an
image that was larger than 192Kb. That lead to openocd printing out two error messages like
"Error: access denied / write protected" and "Error: invalid program address". The reason was that the stm32lx
driver tried to write half pages which overlapped into the next flash bank.
A new configuration file stm32lx_dual_bank.cfg can be used for stm32lx chips with dual bank flash (256kb or 384kb devices).
A sanity check was added for probed flash size values to fix the issue seen on some ST samples that answered incorrectly.

Change-Id: I69e25131983d88613be8606b438f98870c5f1e52
Signed-off-by: Johan Almquist <johan.almquist@assaabloy.com>
Reviewed-on: http://openocd.zylin.com/1125
Tested-by: jenkins
Reviewed-by: Spencer Oliver <spen@spen-soft.co.uk>
2013-02-25 11:56:34 +00:00
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Prerequisites:
The users of OpenOCD as well as computer programs interacting with OpenOCD are expecting that certain commands
do the same thing across all the targets.

Rules to follow when writing scripts:

1. The configuration script should be defined such as , for example, the following sequences are working:
	reset
	flash info <bank>
and
	reset
	flash erase_address <start> <len>
and
	reset init
	load

In most cases this can be accomplished by specifying the default startup mode as reset_init (target command
in the configuration file).

2. If the target is correctly configured, flash must be writable without any other helper commands. It is
assumed that all write-protect mechanisms should be disabled.

3. The configuration scripts should be defined such as the binary that was written to flash verifies
(turn off remapping, checksums, etc...)

flash write_image [file] <parameters>
verify_image [file] <parameters>

4. adapter_khz sets the maximum speed (or alternatively RCLK). If invoked
multiple times only the last setting is used.

interface/xxx.cfg files are always executed *before* target/xxx.cfg
files, so any adapter_khz in interface/xxx.cfg will be overridden by
target/xxx.cfg. adapter_khz in interface/xxx.cfg would then, effectively,
set the default JTAG speed.

Note that a target/xxx.cfg file can invoke another target/yyy.cfg file,
so one can create target subtype configurations where e.g. only
amount of DRAM, oscillator speeds differ and having a single
config file for the default/common settings.