simtrace2/firmware
Kevin Redon f48aac560c sniffing: decrease USB IRQ prioprity to prevent USART overrun
Change-Id: I870a0aa8e251bbb53249c54bfcaa45de5b5a9486

Handling the USB message queue is done in an ISR and take quite some time.
This can cause a USART/SIM sniffing buffer overrun, resulting in data loss.
By setting the USB IRQ lower than the USART IRQ, the USB ISR can be
interrupted (for short) and no data gets lost.
2018-07-03 16:18:00 +02:00
..
apps Merge branch 'kredon/simtrace' of ssh://gerrit.osmocom.org:29418/simtrace2 into kredon/simtrace 2018-07-01 19:02:40 +02:00
atmel_softpack_libraries USB: add central file to define USB IDs, classes, and endpoints 2018-07-01 18:33:28 +02:00
libboard console: drop data to be send when buffer is already full 2018-07-03 15:59:57 +02:00
libcommon sniffing: decrease USB IRQ prioprity to prevent USART overrun 2018-07-03 16:18:00 +02:00
libosmocore Use system include <foo.h> notation for libosmocore headers 2018-06-29 22:26:57 +02:00
openocd Renamed main folder to firmware 2015-04-07 18:24:06 +02:00
test firmware/test: Add more include paths 2018-07-01 08:47:39 +02:00
usbstring add missing usbstring.c 2017-03-07 15:51:49 +01:00
Makefile Makefile: fix automatic creation of obj directory 2018-06-29 21:44:12 +02:00
README.txt README: rewrite to better explain environment variables and point to the wiki for flashing 2018-06-29 20:07:31 +02:00
TODO.txt Add firmware/TODO.txt that was not committed so far 2018-05-11 15:49:31 +02:00

README.txt

This is the source code for SIMtrace 2 firmwares.

= Hardware

== Micro-Controller

The firmware is for Microchip (formerly Atmel) ATSAM3S4B micro-controllers (MCU).
Product page:  https://www.microchip.com/wwwproducts/en/ATSAM3S4B
Datasheet: http://ww1.microchip.com/downloads/en/DeviceDoc/Atmel-6500-32-bit-Cortex-M3-Microcontroller-SAM3S4-SAM3S2-SAM3S1_Datasheet.pdf

Note: The SAM3S is now not recommended for new designs.
It can be replaced by the pin-compatible SAM4S.
The MCU can be specified using the environment variable `CHIP` (set to `sam3s4` per default) for future MCU support.

== Boards

The SIMtrace 2 firmware supports multiple boards.
A board defines a given circuit board.
While compiling the firmware, set the target board using the `BOARD` environment variable (set to `qmod` per default).
The supported boards correspond to sub-folders under `libboard`.

Current boards supported are:

* `simtrace`: The good old Osmocom SIMtrace PCB with SAM3 instead of SAM7, open hardware.
* `qmod`: A sysmocom-proprietary quad mPCIe carrier board, publicly available
* `owhw`: An undisclosed sysmocom-internal board, not publicly available

= Firmware

== Library

The firmware uses the manufacturer provided Software Package (SoftPack) micro-controller library.
The original library is available at https://www.microchip.com/design-centers/32-bit/softpacks/legacy-softpacks .
Version 2.1 from 2001 is used: http://ww1.microchip.com/downloads/en/DeviceDoc/SAM3S_softpack_2.1_for_CodeSourcery_2010q1.zip
The SIMtrace 2 project uses the `libboard_sam3s-ek`, `libchip_sam3s`, and `usb` sub-libraries, saved in `atmel_softpack_libraries` (with local modifications).

Note: SoftPack is the legacy micro-controller library.
This library is now replaced by the Advanced Software Framework (ASF): https://www.microchip.com/avr-support/advanced-software-framework-(asf) .
The SAM3S ASF documentation is available at http://asf.atmel.com/docs/latest/sam3s/html/index.html .

== Applications

An application is a specific piece of software with given functionality.
While compiling the firmware, set the target application using the `APP` environment variable (set to `dfu` per default).
The supported applications correspond to sub-folder under `apps`.

Current applications supported are:

* `dfu`: The USB DFU bootloader to flash further main appliction firmwares.
* `ccid`: To use SIMtrace 2 as USB CCID smartcard reader.
* `cardem`: To provide remote SIM operation capabilities.
* `trace`:  To monitor the communication between a SIM card and a phone (corresponds to the functionality provide by the first SIMtrace)
* `triple_play`: To support the three previous functionalities, using USB configurations.

== Memories

Firmwares can be run from several memory locations:

* flash: Run natively from start of flash memory
* dfu: Run after a DFU bootloader from an offset after the first 16k of flash (the first 16k are reserved for the bootloader)
* ram: Run from within the RAM of the chip, downloaded via JTAG/SWD

== Building

A given firmware build is made for a specific combination of an application `APP` running in a certain memory `MEM` on a given board `BOARD`.
When building using `make`, set the target application using the `APP` environment variable and target board using the `BOARD`  environment variable, e.g.:

* make APP=cardem BOARD=qmod
* make APP=dfu BOARD=qmod

The Makefile will create output files in the format: `bin/$(BOARD)-$(APP)-$(MEM).{elf,bin}`

The level of debug messages can be altered at compile time:
```
$ make TRACE_LEVEL=4
```
Accepted values: 0 (NO_TRACE) to 5 (DEBUG)

= Flashing

To flash a firmware image follow the instructions provided in the [wiki](https://projects.osmocom.org/projects/simtrace2/wiki/).