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77 Commits

Author SHA1 Message Date
ed1d9a81ed Merge branch 'master' into develop 2021-07-27 09:39:44 +02:00
132d9d2456 Merge pull request 'v1.7.1' (#9) from v1.7.1 into develop
Reviewed-on: #9
2021-07-26 18:17:33 +02:00
6f8d63ba87 Merge pull request 'v1.7.0' (#8) from develop into master
Reviewed-on: #8
Reviewed-by: Jakob.Meier <meierj@irs.uni-stuttgart.de>
2021-07-26 18:17:08 +02:00
1f990e9647 v1.7.1 2021-07-26 17:57:19 +02:00
2a6c0a6cab tmtccmd update 2021-07-26 17:53:38 +02:00
9aaf3cfa7a tmtccmd update 2021-07-26 17:29:49 +02:00
a81b8b608d assigned packet ID for tcp com if 2021-07-26 17:24:53 +02:00
6758ecef0d service 200 handler (but test task missing) 2021-07-26 14:13:58 +02:00
2e942ec21e printing own and tmtccmd version now
tmtccmd updated to v1.7.2
2021-07-24 14:58:47 +02:00
3436172026 Merge branch 'develop' of https://egit.irs.uni-stuttgart.de/eive/eive_tmtc into develop 2021-07-24 14:41:35 +02:00
7302b10e06 bumped version number 2021-07-24 14:41:23 +02:00
193060ea65 Merge pull request 'meier/plocSupervisor' (#7) from meier/plocSupervisor into develop
Reviewed-on: #7
2021-07-24 14:40:57 +02:00
e552a92db4 all object ids are of bytes type now 2021-07-24 13:39:15 +02:00
b0e78beaff Merge branch 'develop' into meier/plocSupervisor 2021-07-24 12:12:20 +02:00
6d3be2af33 removed unused code in ploc_supervisor.py 2021-07-24 12:08:12 +02:00
b0ef4446d5 ploc supervisor tests 2021-07-23 13:40:27 +02:00
d55a12a100 ploc supervisor get hk test 2021-07-11 14:29:11 +02:00
ec0ef1a4f7 renamed ploc mpsoc object id 2021-07-09 12:57:39 +02:00
3b073a7eef corrected object ids of reaction wheels 2021-07-08 11:23:16 +02:00
941f46401e deleted tmtc_core 2021-07-01 14:52:22 +02:00
2a38b1b16f Merge pull request 'meier/reactionwheels' (#6) from meier/reactionwheels into develop
Reviewed-on: #6
2021-07-01 14:50:41 +02:00
fe1bed900a added mode commanding for radiation sensor 2021-07-01 11:52:25 +02:00
7a15062efe fixed merge conflict in object ids 2021-06-30 15:12:10 +02:00
953f02e895 tmtccmd udpate 2021-06-30 15:10:57 +02:00
c226491b6c Merge remote-tracking branch 'origin' into meier/reactionwheels 2021-06-30 15:09:17 +02:00
da2968a512 reaction wheel get telemetry 2021-06-30 15:08:43 +02:00
96e9f26fd0 added linter 2021-06-30 11:18:57 +02:00
011fea37a0 tmtccmd update 2021-06-30 11:17:57 +02:00
78b6830782 rw4 increased timout 2021-06-29 17:28:04 +02:00
09cab1941f modified run configs 2021-06-29 16:10:03 +02:00
a8ea01bb2f added run configs for reaction wheels 2021-06-29 09:51:54 +02:00
9d98eb6b60 renaming logging functions 2021-06-28 19:06:09 +02:00
8048c50c22 tmtccmd update 2021-06-28 18:55:14 +02:00
98deb8444f updated gitignore 2021-06-28 17:49:13 +02:00
10ea97ff0b add init command 2021-06-28 14:08:04 +02:00
19b76d961c rw test fixes 2021-06-25 15:25:22 +02:00
899cd942ce reaction wheel commands 2021-06-25 12:16:35 +02:00
3d26373726 reaction wheel set speed command 2021-06-25 12:07:16 +02:00
36582621f2 merge 2021-06-24 17:39:23 +02:00
2a9862489d updated object ids again 2021-06-24 16:49:19 +02:00
8a66b2a721 updated TMTC IDs 2021-06-24 16:42:58 +02:00
f4e5bc1956 updated object IDS 2021-06-24 16:34:51 +02:00
5be05c2a92 tmtccmd update 2021-06-21 18:40:05 +02:00
0eb6736692 Merge pull request 'Update to v1.6.1' (#5) from develop into master
Reviewed-on: eive/eive_tmtc#5
2021-06-21 17:41:58 +02:00
20a44b4b67 Merge branch 'master' into develop 2021-06-21 17:41:46 +02:00
3927377e94 bumped revision 2021-06-21 17:36:37 +02:00
aaba7d5857 small fix 2021-06-21 17:33:22 +02:00
d241101d88 updated tmtc 2021-06-21 17:30:37 +02:00
0b9bbf6212 tmtccmd update 2021-06-21 17:21:18 +02:00
01b5ae8252 Merge branch 'mueller/master' into develop 2021-06-21 17:18:27 +02:00
8fc67c2665 tmtccmd update 2021-06-21 16:46:31 +02:00
4daddf7255 deleted tmtc_core folder 2021-06-15 17:12:05 +02:00
805470df6d commit tmtccmd 2021-06-15 15:39:14 +02:00
0e317a435a Merge branch 'develop' of https://egit.irs.uni-stuttgart.de/eive/eive_tmtc into develop 2021-06-15 15:23:57 +02:00
e4eed4602d imtq tests 2021-06-15 15:23:27 +02:00
6debacd946 tmtccmd update 2021-06-12 15:08:41 +02:00
24fbb26ac0 bumped version 2021-06-12 13:55:12 +02:00
208724f0a9 updated README 2021-06-12 13:54:08 +02:00
fe1e6a2877 Merge branch 'mueller/master' into meier/imtq 2021-06-12 13:50:26 +02:00
d413ec6d08 added imtq x axis self test 2021-06-12 13:49:25 +02:00
fc87e36c2e this should fix srv3 issues 2021-06-12 13:48:31 +02:00
58c20e31cc fixed merge conflicts 2021-06-11 13:51:56 +02:00
06750809cb ploc tests 2021-04-27 17:38:52 +02:00
e23bc11608 fixed merge conflicts 2021-04-26 15:01:22 +02:00
bc77e6ae76 Merge branch 'develop' into meier/imtq 2021-04-26 14:57:59 +02:00
fa58c8e2c3 Merge branch 'develop' into meier/plocHandler 2021-04-26 14:57:41 +02:00
e3342cf474 imtq service 8 reply, read command dipole 2021-04-26 14:56:51 +02:00
4d2b7a6150 get commanded dipole service 8 hook wip 2021-04-25 17:46:53 +02:00
79e897b035 ploc tc mem write and tc mem read test 2021-04-24 13:27:57 +02:00
3e466f06ef turning on imqt channel 2021-04-18 18:52:47 +02:00
934b79a2f1 Merge branch 'develop' into meier/imtq 2021-04-18 16:36:53 +02:00
5fe23be649 Merge branch 'develop' of https://egit.irs.uni-stuttgart.de/eive/eive_tmtc into develop 2021-04-18 16:35:49 +02:00
85f5bf2e6e pdu channel definitions 2021-04-18 16:35:18 +02:00
7310513805 Merge branch 'develop' into meier/plocHandler 2021-04-11 11:09:22 +02:00
aa52ed79ea plocHandler test wip 2021-04-11 11:08:52 +02:00
f40b70f66e imqt handler test 2021-03-26 13:56:02 +01:00
80ee42089e imtq wip 2021-03-25 17:53:05 +01:00
54 changed files with 1501 additions and 168 deletions

12
.gitignore vendored
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<option name="ADD_SOURCE_ROOTS" value="true" />
<EXTENSION ID="PythonCoverageRunConfigurationExtension" runner="coverage.py" />
<option name="SCRIPT_NAME" value="$PROJECT_DIR$/tmtc_client_cli.py" />
<option name="PARAMETERS" value="-c udp -s imtq -o 3 -l -t 4 --hk" />
<option name="SHOW_COMMAND_LINE" value="false" />
<option name="EMULATE_TERMINAL" value="true" />
<option name="MODULE_MODE" value="false" />
<option name="REDIRECT_INPUT" value="false" />
<option name="INPUT_FILE" value="" />
<method v="2" />
</configuration>
</component>

View File

@ -0,0 +1,24 @@
<component name="ProjectRunConfigurationManager">
<configuration default="false" name="tmtcclient IMTQ Pos Z Test" type="PythonConfigurationType" factoryName="Python" folderName="UDP">
<module name="tmtc" />
<option name="INTERPRETER_OPTIONS" value="" />
<option name="PARENT_ENVS" value="true" />
<envs>
<env name="PYTHONUNBUFFERED" value="1" />
</envs>
<option name="SDK_HOME" value="" />
<option name="WORKING_DIRECTORY" value="$PROJECT_DIR$" />
<option name="IS_MODULE_SDK" value="true" />
<option name="ADD_CONTENT_ROOTS" value="true" />
<option name="ADD_SOURCE_ROOTS" value="true" />
<EXTENSION ID="PythonCoverageRunConfigurationExtension" runner="coverage.py" />
<option name="SCRIPT_NAME" value="$PROJECT_DIR$/tmtc_client_cli.py" />
<option name="PARAMETERS" value="-c udp -s imtq -o 5 -l -t 4 --hk" />
<option name="SHOW_COMMAND_LINE" value="false" />
<option name="EMULATE_TERMINAL" value="true" />
<option name="MODULE_MODE" value="false" />
<option name="REDIRECT_INPUT" value="false" />
<option name="INPUT_FILE" value="" />
<method v="2" />
</configuration>
</component>

View File

@ -0,0 +1,24 @@
<component name="ProjectRunConfigurationManager">
<configuration default="false" name="tmtcclient IMTQ Test UDP" type="PythonConfigurationType" factoryName="Python" folderName="UDP">
<module name="tmtc" />
<option name="INTERPRETER_OPTIONS" value="" />
<option name="PARENT_ENVS" value="true" />
<envs>
<env name="PYTHONUNBUFFERED" value="1" />
</envs>
<option name="SDK_HOME" value="" />
<option name="WORKING_DIRECTORY" value="$PROJECT_DIR$" />
<option name="IS_MODULE_SDK" value="true" />
<option name="ADD_CONTENT_ROOTS" value="true" />
<option name="ADD_SOURCE_ROOTS" value="true" />
<EXTENSION ID="PythonCoverageRunConfigurationExtension" runner="coverage.py" />
<option name="SCRIPT_NAME" value="$PROJECT_DIR$/tmtc_client_cli.py" />
<option name="PARAMETERS" value="-m seqcmd -c udp -s imtq -l -t 4" />
<option name="SHOW_COMMAND_LINE" value="false" />
<option name="EMULATE_TERMINAL" value="true" />
<option name="MODULE_MODE" value="false" />
<option name="REDIRECT_INPUT" value="false" />
<option name="INPUT_FILE" value="" />
<method v="2" />
</configuration>
</component>

View File

@ -0,0 +1,24 @@
<component name="ProjectRunConfigurationManager">
<configuration default="false" name="tmtcclient PLOC Test UDP Flatsat" type="PythonConfigurationType" factoryName="Python" folderName="UDP">
<module name="tmtc" />
<option name="INTERPRETER_OPTIONS" value="" />
<option name="PARENT_ENVS" value="true" />
<envs>
<env name="PYTHONUNBUFFERED" value="1" />
</envs>
<option name="SDK_HOME" value="" />
<option name="WORKING_DIRECTORY" value="$PROJECT_DIR$" />
<option name="IS_MODULE_SDK" value="true" />
<option name="ADD_CONTENT_ROOTS" value="true" />
<option name="ADD_SOURCE_ROOTS" value="true" />
<EXTENSION ID="PythonCoverageRunConfigurationExtension" runner="coverage.py" />
<option name="SCRIPT_NAME" value="$PROJECT_DIR$/tmtc_client_cli.py" />
<option name="PARAMETERS" value="-m 1 -c 2 -s PLOC -l" />
<option name="SHOW_COMMAND_LINE" value="false" />
<option name="EMULATE_TERMINAL" value="true" />
<option name="MODULE_MODE" value="false" />
<option name="REDIRECT_INPUT" value="false" />
<option name="INPUT_FILE" value="" />
<method v="2" />
</configuration>
</component>

View File

@ -0,0 +1,24 @@
<component name="ProjectRunConfigurationManager">
<configuration default="false" name="tmtcclient PLOC Test UDP Local" type="PythonConfigurationType" factoryName="Python" folderName="UDP">
<module name="tmtc" />
<option name="INTERPRETER_OPTIONS" value="" />
<option name="PARENT_ENVS" value="true" />
<envs>
<env name="PYTHONUNBUFFERED" value="1" />
</envs>
<option name="SDK_HOME" value="C:\Users\jakob\AppData\Local\Programs\Python\Python39\python.exe" />
<option name="WORKING_DIRECTORY" value="$PROJECT_DIR$" />
<option name="IS_MODULE_SDK" value="false" />
<option name="ADD_CONTENT_ROOTS" value="true" />
<option name="ADD_SOURCE_ROOTS" value="true" />
<EXTENSION ID="PythonCoverageRunConfigurationExtension" runner="coverage.py" />
<option name="SCRIPT_NAME" value="$PROJECT_DIR$/tmtc_client_cli.py" />
<option name="PARAMETERS" value="-m 1 -c 2 -s PLOC -l" />
<option name="SHOW_COMMAND_LINE" value="false" />
<option name="EMULATE_TERMINAL" value="true" />
<option name="MODULE_MODE" value="false" />
<option name="REDIRECT_INPUT" value="false" />
<option name="INPUT_FILE" value="" />
<method v="2" />
</configuration>
</component>

View File

@ -0,0 +1,24 @@
<component name="ProjectRunConfigurationManager">
<configuration default="false" name="tmtcclient S/A Deployment Test UDP" type="PythonConfigurationType" factoryName="Python" folderName="UDP">
<module name="tmtc" />
<option name="INTERPRETER_OPTIONS" value="" />
<option name="PARENT_ENVS" value="true" />
<envs>
<env name="PYTHONUNBUFFERED" value="1" />
</envs>
<option name="SDK_HOME" value="" />
<option name="WORKING_DIRECTORY" value="$PROJECT_DIR$" />
<option name="IS_MODULE_SDK" value="true" />
<option name="ADD_CONTENT_ROOTS" value="true" />
<option name="ADD_SOURCE_ROOTS" value="true" />
<EXTENSION ID="PythonCoverageRunConfigurationExtension" runner="coverage.py" />
<option name="SCRIPT_NAME" value="$PROJECT_DIR$/tmtc_client_cli.py" />
<option name="PARAMETERS" value="-m 3 -c 2 -s SA_DEPL -l" />
<option name="SHOW_COMMAND_LINE" value="false" />
<option name="EMULATE_TERMINAL" value="true" />
<option name="MODULE_MODE" value="false" />
<option name="REDIRECT_INPUT" value="false" />
<option name="INPUT_FILE" value="" />
<method v="2" />
</configuration>
</component>

View File

@ -0,0 +1,24 @@
<component name="ProjectRunConfigurationManager">
<configuration default="false" name="tmtcclient Syrlinks Test UDP" type="PythonConfigurationType" factoryName="Python" folderName="UDP">
<module name="tmtc" />
<option name="INTERPRETER_OPTIONS" value="" />
<option name="PARENT_ENVS" value="true" />
<envs>
<env name="PYTHONUNBUFFERED" value="1" />
</envs>
<option name="SDK_HOME" value="" />
<option name="WORKING_DIRECTORY" value="$PROJECT_DIR$" />
<option name="IS_MODULE_SDK" value="true" />
<option name="ADD_CONTENT_ROOTS" value="true" />
<option name="ADD_SOURCE_ROOTS" value="true" />
<EXTENSION ID="PythonCoverageRunConfigurationExtension" runner="coverage.py" />
<option name="SCRIPT_NAME" value="$PROJECT_DIR$/tmtc_client_cli.py" />
<option name="PARAMETERS" value="-m 3 -c 2 -s SYRLINKS -l --hk" />
<option name="SHOW_COMMAND_LINE" value="false" />
<option name="EMULATE_TERMINAL" value="true" />
<option name="MODULE_MODE" value="false" />
<option name="REDIRECT_INPUT" value="false" />
<option name="INPUT_FILE" value="" />
<method v="2" />
</configuration>
</component>

View File

@ -0,0 +1,24 @@
<component name="ProjectRunConfigurationManager">
<configuration default="false" name="tmtcclient TMP1075_1 Dock Test UDP" type="PythonConfigurationType" factoryName="Python" folderName="UDP">
<module name="tmtc" />
<option name="INTERPRETER_OPTIONS" value="" />
<option name="PARENT_ENVS" value="true" />
<envs>
<env name="PYTHONUNBUFFERED" value="1" />
</envs>
<option name="SDK_HOME" value="" />
<option name="WORKING_DIRECTORY" value="$PROJECT_DIR$" />
<option name="IS_MODULE_SDK" value="true" />
<option name="ADD_CONTENT_ROOTS" value="true" />
<option name="ADD_SOURCE_ROOTS" value="true" />
<EXTENSION ID="PythonCoverageRunConfigurationExtension" runner="coverage.py" />
<option name="SCRIPT_NAME" value="$PROJECT_DIR$/tmtc_client_cli.py" />
<option name="PARAMETERS" value="-m 3 -c 2 -s TMP1075_1 -l" />
<option name="SHOW_COMMAND_LINE" value="false" />
<option name="EMULATE_TERMINAL" value="true" />
<option name="MODULE_MODE" value="false" />
<option name="REDIRECT_INPUT" value="false" />
<option name="INPUT_FILE" value="" />
<method v="2" />
</configuration>
</component>

View File

@ -0,0 +1,24 @@
<component name="ProjectRunConfigurationManager">
<configuration default="false" name="tmtcclient TMP1075_2 Dock Test UDP" type="PythonConfigurationType" factoryName="Python" folderName="UDP">
<module name="tmtc" />
<option name="INTERPRETER_OPTIONS" value="" />
<option name="PARENT_ENVS" value="true" />
<envs>
<env name="PYTHONUNBUFFERED" value="1" />
</envs>
<option name="SDK_HOME" value="" />
<option name="WORKING_DIRECTORY" value="$PROJECT_DIR$" />
<option name="IS_MODULE_SDK" value="true" />
<option name="ADD_CONTENT_ROOTS" value="true" />
<option name="ADD_SOURCE_ROOTS" value="true" />
<EXTENSION ID="PythonCoverageRunConfigurationExtension" runner="coverage.py" />
<option name="SCRIPT_NAME" value="$PROJECT_DIR$/tmtc_client_cli.py" />
<option name="PARAMETERS" value="-m 1 -c 2 -s TMP1075_2 -l" />
<option name="SHOW_COMMAND_LINE" value="false" />
<option name="EMULATE_TERMINAL" value="true" />
<option name="MODULE_MODE" value="false" />
<option name="REDIRECT_INPUT" value="false" />
<option name="INPUT_FILE" value="" />
<method v="2" />
</configuration>
</component>

View File

@ -1,8 +1,46 @@
### How to use this folder
# TMTC Commander EIVE
This folder contains template files to set up the TMTC commander
for a new mission or project. These files are the adaption
point to customize the TMTC commander.
# Set up virtual environment
## Linux
1. Create virtual environment
```sh
python3 -m venv .
```
2. Activate virtual environment
```sh
./Scripts/activate
```
3. Install `tmtccmd` for virtual environment. `-e` for interactive installation.
```sh
cd tmtccmd
python3 -m pip install -e .[gui]
```
## Windows
1. Create virtual environment
```sh
py -m venv .
```
2. Activate virtual environment
```sh
Scripts\activate.bat
```
3. Install `tmtccmd` for virtual environment. `-e` for interactive installation.
```sh
cd tmtccmd
py -m pip install -e .[gui]
```
To do so, simply copy all folder inside the TMTC commander root. This
step is also required because the TMTC commander core will load some modules.

View File

@ -6,9 +6,9 @@
import enum
from tmtccmd.core.backend import TmTcHandler
from tmtccmd.utility.logger import get_logger
from tmtccmd.utility.logger import get_console_logger
LOGGER = get_logger()
LOGGER = get_console_logger()
class CustomModeList(enum.IntEnum):

View File

@ -7,6 +7,9 @@
import enum
PUS_APID = 0x65
class CustomServiceList(enum.Enum):
TEST_DEVICE = "test",
P60DOCK = "p60dock"
@ -15,6 +18,14 @@ class CustomServiceList(enum.Enum):
ACU = "acu"
TMP1075_1 = "tmp1075_1"
TMP1075_2 = "tmp1075_2"
HEATER = "heater",
HEATER = "heater"
IMTQ = "imtq"
PLOC = "ploc"
PCDU = "pcdu",
SA_DEPLYOMENT = "sa_depl"
REACTION_WHEEL_1 = "reaction_wheel_1"
REACTION_WHEEL_2 = "reaction_wheel_2"
REACTION_WHEEL_3 = "reaction_wheel_3"
REACTION_WHEEL_4 = "reaction_wheel_4"
RAD_SENSOR = "rad_sensor"
PLOC_SUPV = "ploc_supv"

View File

@ -9,14 +9,14 @@ import argparse
# All globals can be added here and will be part of a globals dictionary.
from config.definitions import CustomServiceList
from config.definitions import CustomServiceList, PUS_APID
from config.custom_mode_op import CustomModeList
from tmtccmd.config.definitions import CoreComInterfaces
from tmtccmd.config.globals import set_default_globals_pre_args_parsing, \
set_default_globals_post_args_parsing
from tmtccmd.utility.logger import get_logger
from tmtccmd.utility.logger import get_console_logger
LOGGER = get_logger()
LOGGER = get_console_logger()
class CustomGlobalIds(enum.Enum):
@ -25,7 +25,8 @@ class CustomGlobalIds(enum.Enum):
def set_globals_pre_args_parsing(gui: bool = False):
set_default_globals_pre_args_parsing(gui=gui, apid=0x65, com_if_id=CoreComInterfaces.TCPIP_UDP.value)
set_default_globals_pre_args_parsing(
gui=gui, apid=PUS_APID, com_if_id=CoreComInterfaces.TCPIP_UDP.value)
def add_globals_post_args_parsing(args: argparse.Namespace, json_cfg_path: str):

View File

@ -2,14 +2,15 @@ import argparse
from typing import Union, Dict, Tuple
from tmtccmd.config.definitions import ServiceOpCodeDictT
from tmtccmd.pus_tm.service_3_base import Service3Base
from tmtccmd.tm.service_3_base import Service3Base
from tmtccmd.ecss.tm import PusTelemetry
from tmtccmd.pus_tc.definitions import TcQueueT
from tmtccmd.tc.definitions import TcQueueT
from tmtccmd.com_if.com_interface_base import CommunicationInterface
from tmtccmd.core.backend import TmTcHandler
from tmtccmd.config.hook import TmTcHookBase
from tmtccmd.utility.tmtc_printer import TmTcPrinter
from tmtccmd.config.globals import OpCodeDictKeys
from config.object_ids import RW1_ID
from config.definitions import CustomServiceList
@ -50,14 +51,67 @@ class EiveHookObject(TmTcHookBase):
}
service_heater_tuple = ("Heater Device", op_code_dict_srv_heater)
op_code_dict_srv_imtq = {
"0": ("IMTQ Tests All", {OpCodeDictKeys.TIMEOUT: 2.0}),
"1": ("IMTQ perform pos X self test", {OpCodeDictKeys.TIMEOUT: 2.0}),
"2": ("IMTQ perform neg X self test", {OpCodeDictKeys.TIMEOUT: 2.0}),
"3": ("IMTQ perform pos Y self test", {OpCodeDictKeys.TIMEOUT: 2.0}),
"4": ("IMTQ perform neg Y self test", {OpCodeDictKeys.TIMEOUT: 2.0}),
"5": ("IMTQ perform pos Z self test", {OpCodeDictKeys.TIMEOUT: 2.0}),
"6": ("IMTQ perform neg Z self test", {OpCodeDictKeys.TIMEOUT: 2.0}),
"7": ("IMTQ command dipole", {OpCodeDictKeys.TIMEOUT: 2.0}),
"8": ("IMTQ get commanded dipole", {OpCodeDictKeys.TIMEOUT: 2.0}),
}
service_imtq_tuple = ("IMTQ Device", op_code_dict_srv_imtq)
op_code_dict_srv_rw = {
"0": ("Reaction Wheel: Run all commands", {OpCodeDictKeys.TIMEOUT: 2.0}),
"1": ("Reaction Wheel: Set speed", {OpCodeDictKeys.TIMEOUT: 2.0}),
"2": ("Reaction Wheel: Set mode on", {OpCodeDictKeys.TIMEOUT: 2.0}),
"3": ("Reaction Wheel: Set mode normal", {OpCodeDictKeys.TIMEOUT: 2.0}),
"4": ("Reaction Wheel: Set mode off", {OpCodeDictKeys.TIMEOUT: 2.0}),
"5": ("Reaction Wheel: Send get-telemetry-command", {OpCodeDictKeys.TIMEOUT: 2.0}),
}
service_rw_tuple = ("Reaction Wheel", op_code_dict_srv_rw)
op_code_dict_srv_rad_sensor = {
"0": ("Radiation Sensor: Set mode on", {OpCodeDictKeys.TIMEOUT: 2.0}),
"1": ("Radiation Sensor: Set mode normal", {OpCodeDictKeys.TIMEOUT: 2.0}),
"2": ("Radiation Sensor: Set mode off", {OpCodeDictKeys.TIMEOUT: 2.0}),
}
service_rad_sensor_tuple = ("Radiation Sensor", op_code_dict_srv_rad_sensor)
op_code_dict_srv_ploc_supv = {
"0": ("PLOC Supervisor: Set mode on", {OpCodeDictKeys.TIMEOUT: 2.0}),
"1": ("PLOC Supervisor: Set mode normal", {OpCodeDictKeys.TIMEOUT: 2.0}),
"2": ("PLOC Supervisor: Set mode off", {OpCodeDictKeys.TIMEOUT: 2.0}),
"3": ("PLOC Supervisor: Get HK Report", {OpCodeDictKeys.TIMEOUT: 2.0}),
"4": ("PLOC Supervisor: Restart MPSoC", {OpCodeDictKeys.TIMEOUT: 2.0}),
"5": ("PLOC Supervisor: Start MPSoC", {OpCodeDictKeys.TIMEOUT: 2.0}),
"6": ("PLOC Supervisor: Shutdown MPSoC", {OpCodeDictKeys.TIMEOUT: 2.0}),
"7": ("PLOC Supervisor: Select MPSoC boot image", {OpCodeDictKeys.TIMEOUT: 2.0}),
"8": ("PLOC Supervisor: Set max restart tries", {OpCodeDictKeys.TIMEOUT: 2.0}),
"9": ("PLOC Supervisor: Reset MPSoC", {OpCodeDictKeys.TIMEOUT: 2.0}),
"10": ("PLOC Supervisor: Set time reference", {OpCodeDictKeys.TIMEOUT: 2.0}),
"11": ("PLOC Supervisor: Set boot timeout", {OpCodeDictKeys.TIMEOUT: 2.0}),
"12": ("PLOC Supervisor: Disable Hk", {OpCodeDictKeys.TIMEOUT: 2.0}),
}
service_ploc_supv_tuple = ("PLOC Supervisor", op_code_dict_srv_ploc_supv)
service_op_code_dict[CustomServiceList.ACU.value] = service_acu_tuple
service_op_code_dict[CustomServiceList.TMP1075_1.value] = service_tmp1075_1_tuple
service_op_code_dict[CustomServiceList.TMP1075_2.value] = service_tmp1075_2_tuple
service_op_code_dict[CustomServiceList.P60DOCK.value] = service_p60_tuple
service_op_code_dict[CustomServiceList.PDU1.value] = service_pdu1_tuple
service_op_code_dict[CustomServiceList.PDU1.value] = service_pdu2_tuple
service_op_code_dict[CustomServiceList.PDU1.value] = service_pdu2_tuple
service_op_code_dict[CustomServiceList.HEATER.value] = service_heater_tuple
service_op_code_dict[CustomServiceList.IMTQ.value] = service_imtq_tuple
service_op_code_dict[CustomServiceList.REACTION_WHEEL_1.value] = service_rw_tuple
service_op_code_dict[CustomServiceList.REACTION_WHEEL_2.value] = service_rw_tuple
service_op_code_dict[CustomServiceList.REACTION_WHEEL_3.value] = service_rw_tuple
service_op_code_dict[CustomServiceList.REACTION_WHEEL_4.value] = service_rw_tuple
service_op_code_dict[CustomServiceList.RAD_SENSOR.value] = service_rad_sensor_tuple
service_op_code_dict[CustomServiceList.PLOC_SUPV.value] = service_ploc_supv_tuple
return service_op_code_dict
def get_json_config_file_path(self) -> str:
@ -83,7 +137,8 @@ class EiveHookObject(TmTcHookBase):
Union[CommunicationInterface, None]:
from tmtccmd.config.com_if import create_communication_interface_default
return create_communication_interface_default(
com_if_key=com_if_key, tmtc_printer=tmtc_printer, json_cfg_path=self.get_json_config_file_path()
com_if_key=com_if_key, tmtc_printer=tmtc_printer,
json_cfg_path=self.get_json_config_file_path(), space_packet_id=0x0865
)
def perform_mode_operation(self, tmtc_backend: TmTcHandler, mode: int):
@ -113,9 +168,18 @@ class EiveHookObject(TmTcHookBase):
@staticmethod
def handle_service_3_housekeeping(
object_id: int, set_id: int, hk_data: bytearray, service3_packet: Service3Base
object_id: bytes, set_id: int, hk_data: bytearray, service3_packet: Service3Base
) -> Tuple[list, list, bytearray, int]:
from pus_tm.hk_handling import handle_user_hk_packet
return handle_user_hk_packet(
object_id=object_id, set_id=set_id, hk_data=hk_data, service3_packet=service3_packet
)
@staticmethod
def handle_service_5_event(
object_id: bytes, event_id: int, param_1: int, param_2: int
) -> str:
if object_id == RW1_ID:
if event_id == 1:
return ""
return ""

View File

@ -6,17 +6,26 @@
from typing import Dict
PUS_SERVICE_17_ID = bytes([0x53, 0x00, 0x00, 0x17])
TEST_DEVICE_ID = bytes([0x44, 0x00, 0xAF, 0xFE])
P60_DOCK_HANDLER = bytes([0x44, 0x00, 0x00, 0x1])
PDU_1_HANDLER_ID = bytes([0x44, 0x00, 0x00, 0x2])
PDU_2_HANDLER_ID = bytes([0x44, 0x00, 0x00, 0x3])
ACU_HANDLER_ID = bytes([0x44, 0x00, 0x00, 0x4])
TMP_1075_1_HANDLER_ID = bytes([0x44, 0x00, 0x00, 0x5])
TMP_1075_2_HANDLER_ID = bytes([0x44, 0x00, 0x00, 0x6])
HEATER_ID = bytes([0x54, 0x00, 0x00, 0x1])
PCDU_HANDLER_ID = bytes([0x44, 0x00, 0x10, 0x00])
SOLAR_ARRAY_DEPLOYMENT_ID = bytes([0x44, 0x00, 0x10, 0x01])
SYRLINKS_HANDLER = bytes([0x44, 0x00, 0x10, 0x02])
TEST_DEVICE_ID = bytes([0x54, 0x00, 0xAF, 0xFE])
P60_DOCK_HANDLER = bytes([0x44, 0x25, 0x00, 0x00])
PDU_1_HANDLER_ID = bytes([0x44, 0x25, 0x00, 0x01])
PDU_2_HANDLER_ID = bytes([0x44, 0x25, 0x00, 0x02])
ACU_HANDLER_ID = bytes([0x44, 0x25, 0x00, 0x03])
TMP_1075_1_HANDLER_ID = bytes([0x44, 0x42, 0x00, 0x04])
TMP_1075_2_HANDLER_ID = bytes([0x44, 0x42, 0x00, 0x05])
HEATER_ID = bytes([0x44, 0x41, 0x00, 0xA4])
PCDU_HANDLER_ID = bytes([0x44, 0x20, 0x00, 0xA1])
SOLAR_ARRAY_DEPLOYMENT_ID = bytes([0x44, 0x41, 0x10, 0xA2])
SYRLINKS_HANDLER = bytes([0x44, 0x53, 0x00, 0xA3])
IMTQ_HANDLER_ID = bytes([0x44, 0x14, 0x00, 0x14])
PLOC_MPSOC_ID = bytes([0x44, 0x33, 0x00, 0x15])
RW1_ID = bytes([0x44, 0x12, 0x00, 0x1])
RW2_ID = bytes([0x44, 0x12, 0x00, 0x2])
RW3_ID = bytes([0x44, 0x12, 0x00, 0x3])
RW4_ID = bytes([0x44, 0x12, 0x00, 0x4])
START_TRACKER_ID = bytes([0x44, 0x13, 0x00, 0x1])
RAD_SENSOR_ID = bytes([0x44, 0x32, 0x00, 0xA5])
PLOC_SUPV_ID = bytes([0x44, 0x33, 0x00, 0x16])
def get_object_ids() -> Dict[bytes, list]:
@ -32,5 +41,11 @@ def get_object_ids() -> Dict[bytes, list]:
HEATER_ID: "Heater",
PCDU_HANDLER_ID: "PCDU",
SOLAR_ARRAY_DEPLOYMENT_ID: "Solar Array Deployment",
RW1_ID: "Reaction Wheel 1",
RW2_ID: "Reaction Wheel 2",
RW3_ID: "Reaction Wheel 3",
RW4_ID: "Reaction Wheel 4",
RAD_SENSOR_ID: "Radiation Sensor",
PLOC_SUPV_ID: "PLOC Supervisor",
})
return object_id_dict

View File

@ -1,4 +1,6 @@
SW_NAME = "eive"
VERSION_MAJOR = 1
VERSION_MINOR = 5
VERSION_SUBMINOR = 0
VERSION_MINOR = 7
VERSION_SUBMINOR = 1
__version__ = "1.7.1"

View File

@ -6,6 +6,11 @@ class PDUConfigTable:
out_en_1 = TableEntry(bytearray([0x00, 0x49]), TableEntry.uint8_size)
out_en_2 = TableEntry(bytearray([0x00, 0x4A]), TableEntry.uint8_size)
out_en_3 = TableEntry(bytearray([0x00, 0x4B]), TableEntry.uint8_size)
out_en_4 = TableEntry(bytearray([0x00, 0x4C]), TableEntry.uint8_size)
out_en_5 = TableEntry(bytearray([0x00, 0x4D]), TableEntry.uint8_size)
out_en_6 = TableEntry(bytearray([0x00, 0x4E]), TableEntry.uint8_size)
out_en_7 = TableEntry(bytearray([0x00, 0x4F]), TableEntry.uint8_size)
out_en_8 = TableEntry(bytearray([0x00, 0x50]), TableEntry.uint8_size)
# When channel consumes more than cur_lu_lim, channel is turned of immediately
cur_lu_lim_0 = TableEntry(bytearray([0x00, 0xB8]), TableEntry.uint16_size)

15
lint.py Executable file
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@ -0,0 +1,15 @@
#!/usr/bin/env python3
import os
import sys
def main():
status = os.system("flake8 . --count --select=E9,F63,F7,F82 --show-source --statistics")
if os.WEXITSTATUS(status) != 0:
print("Flake8 linter errors")
sys.exit(0)
os.system("flake8 . --count --exit-zero --max-complexity=10 --max-line-length=127 --statistics")
if __name__ == "__main__":
main()

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@ -6,7 +6,7 @@
@date 21.12.2020
"""
from tmtccmd.pus_tc.packer import TcQueueT
from tmtccmd.tc.packer import TcQueueT
from tmtccmd.ecss.tc import PusTelecommand
from tmtccmd.config.definitions import QueueCommands
from gomspace.gomspace_common import *

View File

@ -6,7 +6,7 @@
@date 30.01.2021
"""
from tmtccmd.config.definitions import QueueCommands
from tmtccmd.pus_tc.packer import TcQueueT
from tmtccmd.tc.packer import TcQueueT
from tmtccmd.ecss.tc import PusTelecommand

179
pus_tc/imtq.py Normal file
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@ -0,0 +1,179 @@
# -*- coding: utf-8 -*-
"""
@file imtq.py
@brief Tests for the ISIS IMTQ (Magnettorquer) device handler
@author J. Meier
@date 25.03.2021
"""
from tmtccmd.config.definitions import QueueCommands
from tmtccmd.tc.packer import TcQueueT
from tmtccmd.ecss.tc import PusTelecommand
from tmtccmd.tc.service_3_housekeeping import make_sid, generate_one_hk_command
class ImtqSetIds:
ENG_HK_SET = 1
CAL_MTM_SET = 2
RAW_MTM_SET = 3
POSITIVE_X_TEST = 4
NEGATIVE_X_TEST = 5
POSITIVE_Y_TEST = 6
NEGATIVE_Y_TEST = 7
POSITIVE_Z_TEST = 8
NEGATIVE_Z_TEST = 9
class ImtqActionIds:
start_actuation_dipole = bytearray([0x0, 0x0, 0x0, 0x02])
get_commanded_dipole = bytearray([0x0, 0x0, 0x0, 0x03])
perform_positive_x_test = bytearray([0x0, 0x0, 0x0, 0x07])
perform_negative_x_test = bytearray([0x0, 0x0, 0x0, 0x08])
perform_positive_y_test = bytearray([0x0, 0x0, 0x0, 0x09])
perform_negative_y_test = bytearray([0x0, 0x0, 0x0, 0x0A])
perform_positive_z_test = bytearray([0x0, 0x0, 0x0, 0x0B])
perform_negative_z_test = bytearray([0x0, 0x0, 0x0, 0x0C])
# Initiates the reading of the last performed self test. After sending this command the results can be downlinked
# via the housekeeping service by using the appropriate set ids listed above.
read_self_test_results = bytearray([0x0, 0x0, 0x0, 0x0D])
def pack_imtq_test_into(object_id: bytearray, tc_queue: TcQueueT, op_code: str) -> TcQueueT:
tc_queue.appendleft(
(QueueCommands.PRINT,
"Testing ISIS IMTQ handler with object id: 0x" + object_id.hex())
)
if op_code == "0" or op_code == "1":
tc_queue.appendleft((QueueCommands.PRINT, "IMTQ: Perform positive x self test"))
command = object_id + ImtqActionIds.perform_positive_x_test
command = PusTelecommand(service=8, subservice=128, ssc=22, app_data=command)
tc_queue.appendleft(command.pack_command_tuple())
tc_queue.appendleft((QueueCommands.PRINT, "IMTQ: Initiate reading of positive x self test results"))
command = object_id + ImtqActionIds.read_self_test_results
command = PusTelecommand(service=8, subservice=128, ssc=23, app_data=command)
tc_queue.appendleft(command.pack_command_tuple())
tc_queue.appendleft((QueueCommands.PRINT, "IMTQ: Request dataset with positive x self test results"))
sid = make_sid(object_id, ImtqSetIds.POSITIVE_X_TEST)
command = generate_one_hk_command(sid, 24)
tc_queue.appendleft(command.pack_command_tuple())
if op_code == "0" or op_code == "2":
tc_queue.appendleft((QueueCommands.PRINT, "IMTQ: Perform negative x self test"))
command = object_id + ImtqActionIds.perform_negative_x_test
command = PusTelecommand(service=8, subservice=128, ssc=25, app_data=command)
tc_queue.appendleft(command.pack_command_tuple())
tc_queue.appendleft((QueueCommands.PRINT, "IMTQ: Initiate reading of negative x self test results"))
command = object_id + ImtqActionIds.read_self_test_results
command = PusTelecommand(service=8, subservice=128, ssc=26, app_data=command)
tc_queue.appendleft(command.pack_command_tuple())
tc_queue.appendleft((QueueCommands.PRINT, "IMTQ: Request dataset with negative x self test results"))
sid = make_sid(object_id, ImtqSetIds.NEGATIVE_X_TEST)
command = generate_one_hk_command(sid, 27)
tc_queue.appendleft(command.pack_command_tuple())
if op_code == "0" or op_code == "3":
tc_queue.appendleft((QueueCommands.PRINT, "IMTQ: Perform positive y self test"))
command = object_id + ImtqActionIds.perform_positive_y_test
command = PusTelecommand(service=8, subservice=128, ssc=28, app_data=command)
tc_queue.appendleft(command.pack_command_tuple())
tc_queue.appendleft((QueueCommands.PRINT, "IMTQ: Initiate reading of positive y self test results"))
command = object_id + ImtqActionIds.read_self_test_results
command = PusTelecommand(service=8, subservice=128, ssc=29, app_data=command)
tc_queue.appendleft(command.pack_command_tuple())
tc_queue.appendleft((QueueCommands.PRINT, "IMTQ: Request dataset with positive y self test results"))
sid = make_sid(object_id, ImtqSetIds.POSITIVE_Y_TEST)
command = generate_one_hk_command(sid, 30)
tc_queue.appendleft(command.pack_command_tuple())
if op_code == "0" or op_code == "4":
tc_queue.appendleft((QueueCommands.PRINT, "IMTQ: Perform negative y self test"))
command = object_id + ImtqActionIds.perform_negative_y_test
command = PusTelecommand(service=8, subservice=128, ssc=31, app_data=command)
tc_queue.appendleft(command.pack_command_tuple())
tc_queue.appendleft((QueueCommands.PRINT, "IMTQ: Initiate reading of negative y self test results"))
command = object_id + ImtqActionIds.read_self_test_results
command = PusTelecommand(service=8, subservice=128, ssc=32, app_data=command)
tc_queue.appendleft(command.pack_command_tuple())
tc_queue.appendleft((QueueCommands.PRINT, "IMTQ: Request dataset with negative y self test results"))
sid = make_sid(object_id, ImtqSetIds.NEGATIVE_Y_TEST)
command = generate_one_hk_command(sid, 33)
tc_queue.appendleft(command.pack_command_tuple())
if op_code == "0" or op_code == "5":
tc_queue.appendleft((QueueCommands.PRINT, "IMTQ: Perform positive z self test"))
command = object_id + ImtqActionIds.perform_positive_z_test
command = PusTelecommand(service=8, subservice=128, ssc=34, app_data=command)
tc_queue.appendleft(command.pack_command_tuple())
tc_queue.appendleft((QueueCommands.PRINT, "IMTQ: Initiate reading of positive z self test results"))
command = object_id + ImtqActionIds.read_self_test_results
command = PusTelecommand(service=8, subservice=128, ssc=35, app_data=command)
tc_queue.appendleft(command.pack_command_tuple())
tc_queue.appendleft((QueueCommands.PRINT, "IMTQ: Request dataset with positive z self test results"))
sid = make_sid(object_id, ImtqSetIds.POSITIVE_Y_TEST)
command = generate_one_hk_command(sid, 36)
tc_queue.appendleft(command.pack_command_tuple())
if op_code == "0" or op_code == "6":
tc_queue.appendleft((QueueCommands.PRINT, "IMTQ: Perform negative z self test"))
command = object_id + ImtqActionIds.perform_negative_z_test
command = PusTelecommand(service=8, subservice=128, ssc=35, app_data=command)
tc_queue.appendleft(command.pack_command_tuple())
tc_queue.appendleft((QueueCommands.PRINT, "IMTQ: Initiate reading of negative z self test results"))
command = object_id + ImtqActionIds.read_self_test_results
command = PusTelecommand(service=8, subservice=128, ssc=36, app_data=command)
tc_queue.appendleft(command.pack_command_tuple())
tc_queue.appendleft((QueueCommands.PRINT, "IMTQ: Request dataset with negative z self test results"))
sid = make_sid(object_id, ImtqSetIds.NEGATIVE_Z_TEST)
command = generate_one_hk_command(sid, 37)
tc_queue.appendleft(command.pack_command_tuple())
if op_code == "0" or op_code == "7":
tc_queue.appendleft((QueueCommands.PRINT, "IMTQ: Commanding dipole"))
x_dipole = 0
y_dipole = 0
z_dipole = 0
duration = 0 # ms
command = pack_dipole_command(object_id, x_dipole, y_dipole, z_dipole, duration)
command = PusTelecommand(service=8, subservice=128, ssc=20, app_data=command)
tc_queue.appendleft(command.pack_command_tuple())
if op_code == "0" or op_code == "8":
tc_queue.appendleft((QueueCommands.PRINT, "IMTQ: Get commanded dipole"))
command = object_id + ImtqActionIds.get_commanded_dipole
command = PusTelecommand(service=8, subservice=128, ssc=21, app_data=command)
tc_queue.appendleft(command.pack_command_tuple())
return tc_queue
def pack_dipole_command(object_id: bytearray, x_dipole: int, y_dipole: int, z_dipole: int, duration: int) -> bytearray:
""" This function packs the command causing the ISIS IMTQ to generate a dipole.
@param object_id The object id of the IMTQ handler.
@param x_dipole The dipole of the x coil in 10^-4*Am^2 (max. 2000)
@param y_dipole The dipole of the y coil in 10^-4*Am^2 (max. 2000)
@param z_dipole The dipole of the z coil in 10^-4*Am^2 (max. 2000)
@param duration The duration in milliseconds the dipole will be generated by the coils.
When set to 0, the dipole will be generated until a new dipole actuation
command is sent.
"""
action_id = ImtqActionIds.start_actuation_dipole
command = bytearray()
command = object_id + action_id
command.extend(x_dipole.to_bytes(length=2, byteorder='big'))
command.extend(y_dipole.to_bytes(length=2, byteorder='big'))
command.extend(z_dipole.to_bytes(length=2, byteorder='big'))
command.extend(duration.to_bytes(length=2, byteorder='big'))
return command

View File

@ -6,7 +6,7 @@
@date 13.12.2020
"""
from tmtccmd.config.definitions import QueueCommands
from tmtccmd.pus_tc.packer import TcQueueT
from tmtccmd.tc.packer import TcQueueT
from tmtccmd.ecss.tc import PusTelecommand
from gomspace.gomspace_common import *

View File

@ -7,7 +7,7 @@
"""
from tmtccmd.config.definitions import QueueCommands
from tmtccmd.pus_tc.packer import TcQueueT
from tmtccmd.tc.packer import TcQueueT
from tmtccmd.ecss.tc import PusTelecommand
from gomspace.gomspace_common import *
from pus_tc.p60dock import P60DockConfigTable
@ -24,6 +24,10 @@ class PDU1TestProcedure:
reboot = False
ping = False
read_temperature = False
turn_channel_2_on = False # Star Tracker connected to this channel (5V)
turn_channel_2_off = False
turn_channel_3_on = False # MTQ connected to this channel (5V)
turn_channel_3_off = True
def pack_pdu1_test_into(
@ -31,14 +35,6 @@ def pack_pdu1_test_into(
):
tc_queue.appendleft((QueueCommands.PRINT, "Testing PDU1"))
tc_queue.appendleft((QueueCommands.PRINT, "P60 Dock: Enabling PDU1"))
command = pack_set_param_command(
p60dock_object_id, P60DockConfigTable.out_en_1.parameter_address,
P60DockConfigTable.out_en_1.parameter_size, Channel.on
)
command = PusTelecommand(service=8, subservice=128, ssc=23, app_data=command)
tc_queue.appendleft(command.pack_command_tuple())
if PDU1TestProcedure.all or PDU1TestProcedure.ping:
tc_queue.appendleft((QueueCommands.PRINT, "PDU1: Ping Test"))
ping_data = bytearray([0, 1, 2, 3, 4, 5, 6, 7, 8, 9])
@ -53,3 +49,27 @@ def pack_pdu1_test_into(
)
command = PusTelecommand(service=8, subservice=128, ssc=24, app_data=command)
tc_queue.appendleft(command.pack_command_tuple())
if PDU1TestProcedure.all or PDU1TestProcedure.turn_channel_2_on:
tc_queue.appendleft((QueueCommands.PRINT, "PDU1: Turn channel 2 on (Star Tracker)"))
command = pack_set_param_command(pdu1_object_id, PDUConfigTable.out_en_2.parameter_address,
PDUConfigTable.out_en_2.parameter_size, Channel.on)
command = PusTelecommand(service=8, subservice=128, ssc=30, app_data=command)
tc_queue.appendleft(command.pack_command_tuple())
if PDU1TestProcedure.all or PDU1TestProcedure.turn_channel_2_off:
tc_queue.appendleft((QueueCommands.PRINT, "PDU1: Turn channel 2 off (Star Tracker)"))
command = pack_set_param_command(pdu1_object_id, PDUConfigTable.out_en_2.parameter_address,
PDUConfigTable.out_en_2.parameter_size, Channel.off)
command = PusTelecommand(service=8, subservice=128, ssc=31, app_data=command)
tc_queue.appendleft(command.pack_command_tuple())
if PDU1TestProcedure.all or PDU1TestProcedure.turn_channel_3_on:
tc_queue.appendleft((QueueCommands.PRINT, "PDU1: Turn channel 3 on (MTQ)"))
command = pack_set_param_command(pdu1_object_id, PDUConfigTable.out_en_3.parameter_address,
PDUConfigTable.out_en_3.parameter_size, Channel.on)
command = PusTelecommand(service=8, subservice=128, ssc=32, app_data=command)
tc_queue.appendleft(command.pack_command_tuple())
if PDU1TestProcedure.all or PDU1TestProcedure.turn_channel_3_off:
tc_queue.appendleft((QueueCommands.PRINT, "PDU1: Turn channel 3 off (MTQ)"))
command = pack_set_param_command(pdu1_object_id, PDUConfigTable.out_en_3.parameter_address,
PDUConfigTable.out_en_3.parameter_size, Channel.off)
command = PusTelecommand(service=8, subservice=128, ssc=33, app_data=command)
tc_queue.appendleft(command.pack_command_tuple())

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@ -6,7 +6,7 @@
@date 17.12.2020
"""
from tmtccmd.config.definitions import QueueCommands
from tmtccmd.pus_tc.packer import TcQueueT
from tmtccmd.tc.packer import TcQueueT
from tmtccmd.ecss.tc import PusTelecommand
from gomspace.gomspace_common import *
from gomspace.gomspace_pdu_definitions import *
@ -101,4 +101,5 @@ def pack_pdu2_test_into(pdu2_object_id: bytearray, p60dock_object_id: bytearray,
command = pack_request_full_hk_table_command(pdu2_object_id)
command = PusTelecommand(service=8, subservice=128, ssc=28, app_data=command)
tc_queue.appendleft(command.pack_command_tuple())
return tc_queue

68
pus_tc/ploc_mpsoc.py Normal file
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@ -0,0 +1,68 @@
# -*- coding: utf-8 -*-
"""
@file ploc_mpsoc.py
@brief Tests for commanding the MPSoC of the PLOC.
The MPSoC is programmed by the ILH.
@author J. Meier
@date 06.03.2021
"""
import struct
from tmtccmd.config.definitions import QueueCommands
from tmtccmd.tc.packer import TcQueueT
from tmtccmd.ecss.tc import PusTelecommand
class PlocTestProcedure:
"""
@brief Use this class to define the tests to perform for the PLOC.
@details Setting all to True will run all tests.
Setting all to False will only run the tests set to True.
"""
all = False
test_tc_mem_write = False
test_tc_mem_read = True
class PlocActionIds:
tc_mem_write = bytearray([0x0, 0x0, 0x0, 0x1])
tc_mem_read = bytearray([0x0, 0x0, 0x0, 0x2])
class PlocReplyIds:
tm_mem_read_report = 6
def pack_ploc_mpsoc_test_into(object_id: bytearray, tc_queue: TcQueueT) -> TcQueueT:
tc_queue.appendleft(
(QueueCommands.PRINT,
"Testing PLOC MPSoC with object id: 0x" + object_id.hex())
)
if PlocTestProcedure.all or PlocTestProcedure.test_tc_mem_write:
tc_queue.appendleft((QueueCommands.PRINT, "PLOC: TC Mem Write Test"))
memory_address = int(input("PLOC Tc Mem Write: Type memory address: 0x"), 16)
memory_data = int(input("PLOC Tc Mem Write: Type memory data: 0x"), 16)
command = generate_write_mem_command(object_id, struct.pack('!I', memory_address), memory_data)
command = PusTelecommand(service=8, subservice=128, ssc=23, app_data=command)
tc_queue.appendleft(command.pack_command_tuple())
if PlocTestProcedure.all or PlocTestProcedure.test_tc_mem_read:
tc_queue.appendleft((QueueCommands.PRINT, "PLOC: TC Mem Read Test"))
memory_address = int(input("PLOC Tc Mem Read: Type memory address: 0x"), 16)
command = object_id + PlocActionIds.tc_mem_read + struct.pack('!I', memory_address)
command = PusTelecommand(service=8, subservice=128, ssc=24, app_data=command)
tc_queue.appendleft(command.pack_command_tuple())
return tc_queue
def generate_write_mem_command(object_id: bytearray, memory_address: bytearray, memory_data: int) -> bytearray:
""" This function generates the command to write to a memory address within the PLOC
@param object_id The object id of the PlocHandler
@param memory_address The PLOC memory address where to write to.
@param memory_data The data to write to the memory address specified by the bytearray memory_address.
"""
command = object_id + PlocActionIds.tc_mem_write + memory_address + struct.pack('!I', memory_data)
return command

114
pus_tc/ploc_supervisor.py Normal file
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@ -0,0 +1,114 @@
# -*- coding: utf-8 -*-
"""
@file ploc_supervisor.py
@brief Tests for commanding the supervisor of the PLOC.
The supervisor is programmed by Thales.
@author J. Meier
@date 10.07.2021
"""
import struct
from tmtccmd.config.definitions import QueueCommands
from tmtccmd.tc.packer import TcQueueT
from tmtccmd.ecss.tc import PusTelecommand
class SupvActionIds:
HK_REPORT = 1
RESTART_MPSOC = 2
START_MPSOC = 3
SHUTWOWN_MPSOC = 4
SEL_MPSOC_BOOT_IMAGE = 5
SET_BOOT_TIMEOUT = 6
SET_MAX_RESTART_TRIES = 7
RESET_MPSOC = 8
SET_TIME_REF = 9
DISABLE_HK = 10
class SupvHkIds:
HK_REPORT = 52
def pack_ploc_supv_test_into(object_id: bytearray, tc_queue: TcQueueT, op_code: str) -> TcQueueT:
tc_queue.appendleft(
(QueueCommands.PRINT,
"Testing PLOC Supervisor with object id: 0x" + object_id.hex())
)
if op_code == "3":
tc_queue.appendleft((QueueCommands.PRINT, "PLOC Supervisor: TC Get Hk Report"))
command = object_id + struct.pack('!I', SupvActionIds.HK_REPORT)
command = PusTelecommand(service=8, subservice=128, ssc=20, app_data=command)
tc_queue.appendleft(command.pack_command_tuple())
elif op_code == "4":
tc_queue.appendleft((QueueCommands.PRINT, "PLOC Supervisor: Restart MPSoC"))
command = object_id + struct.pack('!I', SupvActionIds.RESTART_MPSOC)
command = PusTelecommand(service=8, subservice=128, ssc=21, app_data=command)
tc_queue.appendleft(command.pack_command_tuple())
elif op_code == "5":
tc_queue.appendleft((QueueCommands.PRINT, "PLOC Supervisor: Start MPSoC"))
command = object_id + struct.pack('!I', SupvActionIds.START_MPSOC)
command = PusTelecommand(service=8, subservice=128, ssc=22, app_data=command)
tc_queue.appendleft(command.pack_command_tuple())
elif op_code == "6":
tc_queue.appendleft((QueueCommands.PRINT, "PLOC Supervisor: Shutdown MPSoC"))
command = object_id + struct.pack('!I', SupvActionIds.SHUTWOWN_MPSOC)
command = PusTelecommand(service=8, subservice=128, ssc=23, app_data=command)
tc_queue.appendleft(command.pack_command_tuple())
elif op_code == "7":
tc_queue.appendleft((QueueCommands.PRINT, "PLOC Supervisor: Select MPSoC boot image"))
mem = int(input("MEM (NVM0 - 0 or NVM1 - 1):"))
bp0 = int(input("BP0 (0 or 1):"))
bp1 = int(input("BP1 (0 or 1):"))
bp2 = int(input("BP2 (0 or 1):"))
command = pack_sel_boot_image_cmd(object_id, mem, bp0, bp1, bp2)
command = PusTelecommand(service=8, subservice=128, ssc=24, app_data=command)
tc_queue.appendleft(command.pack_command_tuple())
elif op_code == "8":
tc_queue.appendleft((QueueCommands.PRINT, "PLOC Supervisor: Set max restart tries"))
restart_tries = int(input("Set maximum restart tries:"))
command = object_id + struct.pack('!I', SupvActionIds.SET_MAX_RESTART_TRIES) + struct.pack('!B', restart_tries)
command = PusTelecommand(service=8, subservice=128, ssc=25, app_data=command)
tc_queue.appendleft(command.pack_command_tuple())
elif op_code == "9":
tc_queue.appendleft((QueueCommands.PRINT, "PLOC Supervisor: Reset MPSoC"))
command = object_id + struct.pack('!I', SupvActionIds.RESET_MPSOC)
command = PusTelecommand(service=8, subservice=128, ssc=26, app_data=command)
tc_queue.appendleft(command.pack_command_tuple())
elif op_code == "10":
tc_queue.appendleft((QueueCommands.PRINT, "PLOC Supervisor: Set time reference"))
command = object_id + struct.pack('!I', SupvActionIds.SET_TIME_REF)
command = PusTelecommand(service=8, subservice=128, ssc=27, app_data=command)
tc_queue.appendleft(command.pack_command_tuple())
elif op_code == "11":
tc_queue.appendleft((QueueCommands.PRINT, "PLOC Supervisor: Set boot timeout"))
boot_timeout = int(input("Specify boot timeout [ms]:"))
command = object_id + struct.pack('!I', SupvActionIds.SET_BOOT_TIMEOUT) + struct.pack('!I', boot_timeout)
command = PusTelecommand(service=8, subservice=128, ssc=28, app_data=command)
tc_queue.appendleft(command.pack_command_tuple())
elif op_code == "12":
tc_queue.appendleft((QueueCommands.PRINT, "PLOC Supervisor: Disable HK"))
command = object_id + struct.pack('!I', SupvActionIds.DISABLE_HK)
command = PusTelecommand(service=8, subservice=128, ssc=28, app_data=command)
tc_queue.appendleft(command.pack_command_tuple())
return tc_queue
def pack_sel_boot_image_cmd(object_id: bytearray, mem: int, bp0: int, bp1: int, bp2: int) -> bytearray:
""" This function can be used to generate the command to select the image from which the MPSoC will boot
@param object_id The object id of the PLOC supervisor handler.
@param mem The memory from which the MPSoC shall boot (NVM0 - 0, NVM1 - 1)
@param bp0 Partition pin 0
@param bp1 Partition pin 1
@param bp2 Partition pin 2
"""
command = bytearray()
command = object_id + struct.pack('!I', SupvActionIds.SEL_MPSOC_BOOT_IMAGE)
command = command + struct.pack('!B', mem)
command = command + struct.pack('!B', bp0)
command = command + struct.pack('!B', bp1)
command = command + struct.pack('!B', bp2)
return command

38
pus_tc/rad_sensor.py Normal file
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@ -0,0 +1,38 @@
# -*- coding: utf-8 -*-
"""
@file rad_sensor.py
@brief Tests for the radiation sensor handler
@author J. Meier
@date 01.07.2021
"""
import struct
from tmtccmd.config.definitions import QueueCommands
from tmtccmd.tc.packer import TcQueueT
from tmtccmd.ecss.tc import PusTelecommand
from pus_tc.service_200_mode import pack_mode_data
def pack_rad_sensor_test_into(object_id: bytearray, tc_queue: TcQueueT, op_code: str) -> TcQueueT:
tc_queue.appendleft(
(QueueCommands.PRINT,
"Testing radiation sensor handler with object id: 0x" + object_id.hex())
)
if op_code == "0":
tc_queue.appendleft((QueueCommands.PRINT, "Rad sensor: Switch to mode on"))
mode_data = pack_mode_data(object_id, 1, 0)
command = PusTelecommand(service=200, subservice=1, ssc=41, app_data=mode_data)
tc_queue.appendleft(command.pack_command_tuple())
if op_code == "1":
tc_queue.appendleft((QueueCommands.PRINT, "Rad sensor: Switch to mode normal"))
mode_data = pack_mode_data(object_id, 2, 0)
command = PusTelecommand(service=200, subservice=1, ssc=42, app_data=mode_data)
tc_queue.appendleft(command.pack_command_tuple())
if op_code == "2":
tc_queue.appendleft((QueueCommands.PRINT, "Rad sensor: Switch to mode off"))
mode_data = pack_mode_data(object_id, 0, 0)
command = PusTelecommand(service=200, subservice=1, ssc=42, app_data=mode_data)
tc_queue.appendleft(command.pack_command_tuple())

93
pus_tc/reaction_wheels.py Normal file
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@ -0,0 +1,93 @@
# -*- coding: utf-8 -*-
"""
@file reaction_wheels.py
@brief Tests for the reaction wheel handler
@author J. Meier
@date 20.06.2021
"""
import struct
from tmtccmd.config.definitions import QueueCommands
from tmtccmd.tc.packer import TcQueueT
from tmtccmd.ecss.tc import PusTelecommand
from pus_tc.service_200_mode import pack_mode_data
class RwSetIds:
STATUS_SET_ID = 4
TEMPERATURE_SET_ID = 8
class RwCommandIds:
RESET_MCU = bytearray([0x0, 0x0, 0x0, 0x01])
# Reads status information from reaction wheel into dataset with id 4
GET_RW_STATUS = bytearray([0x0, 0x0, 0x0, 0x04])
INIT_RW_CONTROLLER = bytearray([0x0, 0x0, 0x0, 0x05])
SET_SPEED = bytearray([0x0, 0x0, 0x0, 0x06])
# Reads temperature from reaction wheel into dataset with id 8
GET_TEMPERATURE = bytearray([0x0, 0x0, 0x0, 0x08])
GET_TM = bytearray([0x0, 0x0, 0x0, 0x09])
class SpeedDefinitions:
RPM_100 = 1000
RPM_5000 = 5000
class RampTime:
MS_1000 = 1000
def pack_single_rw_test_into(object_id: bytearray, tc_queue: TcQueueT, op_code: str) -> TcQueueT:
tc_queue.appendleft(
(QueueCommands.PRINT,
"Testing reaction wheel handler with object id: 0x" + object_id.hex())
)
if op_code == "0" or op_code == "1":
speed = int(input("Specify speed [0.1 RPM]: "))
ramp_time = int(input("Specify ramp time [ms]: "))
tc_queue.appendleft((QueueCommands.PRINT, "Reaction Wheel: Set speed"))
command = pack_set_speed_command(object_id, speed, ramp_time)
command = PusTelecommand(service=8, subservice=128, ssc=40, app_data=command)
tc_queue.appendleft(command.pack_command_tuple())
if op_code == "2":
tc_queue.appendleft((QueueCommands.PRINT, "Reaction Wheel: Switch to mode on"))
mode_data = pack_mode_data(object_id, 1, 0)
command = PusTelecommand(service=200, subservice=1, ssc=41, app_data=mode_data)
tc_queue.appendleft(command.pack_command_tuple())
if op_code == "3":
tc_queue.appendleft((QueueCommands.PRINT, "Reaction Wheel: Switch to mode normal"))
mode_data = pack_mode_data(object_id, 2, 0)
command = PusTelecommand(service=200, subservice=1, ssc=42, app_data=mode_data)
tc_queue.appendleft(command.pack_command_tuple())
if op_code == "4":
tc_queue.appendleft((QueueCommands.PRINT, "Reaction Wheel: Switch to mode off"))
mode_data = pack_mode_data(object_id, 0, 0)
command = PusTelecommand(service=200, subservice=1, ssc=43, app_data=mode_data)
tc_queue.appendleft(command.pack_command_tuple())
if op_code == "5":
tc_queue.appendleft((QueueCommands.PRINT, "Reaction Wheel: Send get-telemetry-command"))
command = object_id + RwCommandIds.GET_TM
command = PusTelecommand(service=8, subservice=128, ssc=44, app_data=command)
tc_queue.appendleft(command.pack_command_tuple())
return tc_queue
def pack_set_speed_command(object_id: bytearray, speed: int, ramp_time: int) -> bytearray:
""" With this function a command is packed to set the speed of a reaction wheel
@param object_id The object id of the reaction wheel handler.
@param speed Valid speeds are [-65000, -1000] and [1000, 65000]. Values are specified in 0.1 * RPM
@param ramp_time The time after which the reaction wheel will reached the commanded speed. Valid times are
10 - 10000 ms
"""
command_id = RwCommandIds.SET_SPEED
command = bytearray()
command = object_id + command_id
command = command + struct.pack('!i', speed)
command = command + ramp_time.to_bytes(length=2, byteorder='big')
return command

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@ -7,8 +7,8 @@
"""
from tmtccmd.config.definitions import QueueCommands
from tmtccmd.ecss.tc import PusTelecommand
from tmtccmd.pus_tc.packer import TcQueueT
from tmtccmd.pus_tc.service_200_mode import pack_mode_data
from tmtccmd.tc.packer import TcQueueT
from tmtccmd.tc.service_200_mode import pack_mode_data
from config.object_ids import TEST_DEVICE_ID
TEST_DEVICE_OBJ_ID = TEST_DEVICE_ID

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@ -6,8 +6,8 @@
@date 15.02.2021
"""
from tmtccmd.config.definitions import QueueCommands
from tmtccmd.pus_tc.definitions import TcQueueT
from tmtccmd.pus_tc.packer import PusTelecommand
from tmtccmd.tc.definitions import TcQueueT
from tmtccmd.tc.packer import PusTelecommand
class ActionIds:

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@ -7,8 +7,8 @@
"""
from tmtccmd.config.definitions import QueueCommands
from tmtccmd.pus_tc.definitions import TcQueueT
from tmtccmd.pus_tc.service_3_housekeeping import make_sid, generate_one_hk_command
from tmtccmd.tc.definitions import TcQueueT
from tmtccmd.tc.service_3_housekeeping import make_sid, generate_one_hk_command
class SetIds:

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@ -9,23 +9,30 @@ from collections import deque
from typing import Union
from tmtccmd.config.definitions import CoreServiceList
from tmtccmd.utility.logger import get_logger
from tmtccmd.pus_tc.definitions import TcQueueT
from tmtccmd.pus_tc.service_5_event import pack_generic_service5_test_into
from tmtccmd.pus_tc.service_17_test import pack_service17_ping_command
from tmtccmd.utility.logger import get_console_logger
from tmtccmd.tc.definitions import TcQueueT
from tmtccmd.tc.service_5_event import pack_generic_service5_test_into
from tmtccmd.tc.service_17_test import pack_service17_ping_command
from pus_tc.service_200_mode import pack_service200_test_into
from pus_tc.p60dock import pack_p60dock_test_into
from pus_tc.pdu2 import pack_pdu2_test_into
from pus_tc.pdu1 import pack_pdu1_test_into
from pus_tc.acu import pack_acu_test_into
from pus_tc.imtq import pack_imtq_test_into
from pus_tc.tmp1075 import pack_tmp1075_test_into
from pus_tc.ploc_mpsoc import pack_ploc_mpsoc_test_into
from pus_tc.ploc_supervisor import pack_ploc_supv_test_into
from pus_tc.heater import pack_heater_test_into
from pus_tc.reaction_wheels import pack_single_rw_test_into
from pus_tc.rad_sensor import pack_rad_sensor_test_into
from config.definitions import CustomServiceList
from config.object_ids import P60_DOCK_HANDLER, PDU_1_HANDLER_ID, PDU_2_HANDLER_ID, ACU_HANDLER_ID, \
TMP_1075_1_HANDLER_ID, TMP_1075_2_HANDLER_ID, HEATER_ID
TMP_1075_1_HANDLER_ID, TMP_1075_2_HANDLER_ID, HEATER_ID, IMTQ_HANDLER_ID, PLOC_MPSOC_ID, RW1_ID, RW2_ID, RW3_ID, RW4_ID, \
RAD_SENSOR_ID, PLOC_SUPV_ID
LOGGER = get_logger()
LOGGER = get_console_logger()
def pack_service_queue_user(service: Union[str, int], op_code: str, service_queue: TcQueueT):
@ -33,6 +40,8 @@ def pack_service_queue_user(service: Union[str, int], op_code: str, service_queu
return pack_generic_service5_test_into(tc_queue=service_queue)
if service == CoreServiceList.SERVICE_17.value:
return service_queue.appendleft(pack_service17_ping_command(ssc=1700).pack_command_tuple())
if service == CoreServiceList.SERVICE_200.value:
return pack_service200_test_into(tc_queue=service_queue)
if service == CustomServiceList.P60DOCK.value:
object_id = P60_DOCK_HANDLER
return pack_p60dock_test_into(object_id=object_id, tc_queue=service_queue)
@ -60,6 +69,31 @@ def pack_service_queue_user(service: Union[str, int], op_code: str, service_queu
if service == CustomServiceList.HEATER.value:
object_id = HEATER_ID
return pack_heater_test_into(object_id=object_id, tc_queue=service_queue)
if service == CustomServiceList.IMTQ.value:
object_id = IMTQ_HANDLER_ID
return pack_imtq_test_into(object_id=object_id, tc_queue=service_queue, op_code=op_code)
if service == CustomServiceList.PLOC.value:
object_id = PLOC_MPSOC_ID
return pack_ploc_mpsoc_test_into(object_id=object_id, tc_queue=service_queue)
if service == CustomServiceList.REACTION_WHEEL_1.value:
object_id = RW1_ID
return pack_single_rw_test_into(object_id=object_id, tc_queue=service_queue, op_code=op_code)
if service == CustomServiceList.REACTION_WHEEL_2.value:
object_id = RW2_ID
return pack_single_rw_test_into(object_id=object_id, tc_queue=service_queue, op_code=op_code)
if service == CustomServiceList.REACTION_WHEEL_3.value:
object_id = RW3_ID
return pack_single_rw_test_into(object_id=object_id, tc_queue=service_queue, op_code=op_code)
if service == CustomServiceList.REACTION_WHEEL_4.value:
object_id = RW4_ID
return pack_single_rw_test_into(object_id=object_id, tc_queue=service_queue, op_code=op_code)
if service == CustomServiceList.RAD_SENSOR.value:
object_id = RAD_SENSOR_ID
return pack_rad_sensor_test_into(object_id=object_id, tc_queue=service_queue, op_code=op_code)
if service == CustomServiceList.PLOC_SUPV.value:
object_id = PLOC_SUPV_ID
return pack_ploc_supv_test_into(object_id=object_id, tc_queue=service_queue, op_code=op_code)
LOGGER.warning("Invalid Service !")

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@ -1,13 +1,13 @@
# -*- coding: utf-8 -*-
"""
@file tmtcc_tc_tmp1075.py
@file tmp1075.py
@brief TMP1075 tests
@author J. Meier
@date 06.01.2021
"""
from tmtccmd.config.definitions import QueueCommands
from tmtccmd.pus_tc.packer import TcQueueT
from tmtccmd.tc.packer import TcQueueT
from tmtccmd.ecss.tc import PusTelecommand
from pus_tc.service_200_mode import pack_mode_data

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@ -3,30 +3,40 @@
@details Template configuration file. Copy this folder to the TMTC commander root and adapt
it to your needs.
"""
from tmtccmd.pus_tm.service_8_functional_cmd import Service8TM
from tmtccmd.tm.service_8_functional_cmd import Service8TM
from tmtccmd.ecss.tm import PusTelemetry
from tmtccmd.utility.logger import get_logger
from tmtccmd.utility.logger import get_console_logger
from tmtccmd.pus_tm.service_1_verification import Service1TM
from tmtccmd.pus_tm.service_3_base import Service3Base
from tmtccmd.pus_tm.service_5_event import Service5TM
from tmtccmd.pus_tm.service_17_test import Service17TM
from tmtccmd.tm.service_1_verification import Service1TM
from tmtccmd.tm.service_3_housekeeping import Service3TM
from tmtccmd.tm.service_5_event import Service5TM
from tmtccmd.tm.service_17_test import Service17TM
from tmtccmd.utility.tmtc_printer import TmTcPrinter
LOGGER = get_logger()
from config.definitions import PUS_APID
LOGGER = get_console_logger()
def tm_user_factory_hook(raw_tm_packet: bytearray) -> PusTelemetry:
def ccsds_tm_handler(apid: int, raw_tm_packet: bytearray, tmtc_printer: TmTcPrinter) -> None:
if apid == PUS_APID:
pus_factory_hook(raw_tm_packet=raw_tm_packet, tmtc_printer=tmtc_printer)
def pus_factory_hook(raw_tm_packet: bytearray, tmtc_printer: TmTcPrinter):
service_type = raw_tm_packet[7]
tm_packet = None
if service_type == 1:
return Service1TM(raw_tm_packet)
tm_packet = Service1TM(raw_tm_packet)
if service_type == 3:
return Service3Base(raw_tm_packet)
tm_packet = Service3TM(raw_tm_packet)
if service_type == 5:
return Service5TM(raw_tm_packet)
tm_packet = Service5TM(raw_tm_packet)
if service_type == 8:
service_8_tm = Service8TM(raw_tm_packet)
return Service8TM(raw_tm_packet)
tm_packet = Service8TM(raw_tm_packet)
if service_type == 17:
return Service17TM(raw_tm_packet)
LOGGER.info("The service " + str(service_type) + " is not implemented in Telemetry Factory")
return PusTelemetry(raw_tm_packet)
tm_packet = Service17TM(raw_tm_packet)
if tm_packet is None:
LOGGER.info(f'The service {service_type} is not implemented in Telemetry Factory')
tm_packet = PusTelemetry(raw_tm_packet)
tmtc_printer.print_telemetry(packet=tm_packet)

View File

@ -4,19 +4,29 @@
@details Template configuration file. Copy this folder to the TMTC commander root and adapt
it to your needs.
"""
import struct
from typing import Tuple
from tmtccmd.pus_tm.service_3_base import Service3Base
from tmtccmd.utility.logger import get_logger
LOGGER = get_logger()
from tmtccmd.tm.service_3_housekeeping import Service3Base
from tmtccmd.utility.logger import get_console_logger
from pus_tc.syrlinks_hk_handler import SetIds
from pus_tc.imtq import ImtqSetIds
from config.object_ids import SYRLINKS_HANDLER, IMTQ_HANDLER_ID
LOGGER = get_console_logger()
def handle_user_hk_packet(object_id: int, set_id: int, hk_data: bytearray,
def handle_user_hk_packet(object_id: bytes, set_id: int, hk_data: bytearray,
service3_packet: Service3Base) -> Tuple[list, list, bytearray, int]:
"""
This function is called when a Service 3 Housekeeping packet is received.
Please note that the object IDs should be compared by value because direct comparison of
enumerations does not work in Python. For example use:
if object_id.value == ObjectIds.TEST_OBJECT.value
to test equality based on the object ID list.
@param object_id:
@param set_id:
@param hk_data:
@ -26,5 +36,122 @@ def handle_user_hk_packet(object_id: int, set_id: int, hk_data: bytearray,
the corresponding values. The bytearray is the validity buffer, which is usually appended
at the end of the housekeeping packet. The last value is the number of parameters.
"""
LOGGER.info("Service3TM: Parsing for this SID has not been implemented.")
return [], [], bytearray(), 0
if object_id == SYRLINKS_HANDLER:
if set_id == SetIds.RX_REGISTERS_DATASET:
return handle_syrlinks_rx_registers_dataset(hk_data)
elif set_id == SetIds.TX_REGISTERS_DATASET:
return handle_syrlinks_tx_registers_dataset(hk_data)
else:
LOGGER.info("Serive 3 TM: Syrlinks handler reply with unknown set id")
return [], [], bytearray(), 0
elif object_id == IMTQ_HANDLER_ID:
if (set_id >= ImtqSetIds.POSITIVE_X_TEST) and (set_id <= ImtqSetIds.NEGATIVE_Z_TEST):
return handle_self_test_data(hk_data)
else:
LOGGER.info("Serive 3 TM: Syrlinks handler reply with unknown set id")
return [], [], bytearray(), 0
else:
LOGGER.info("Service 3 TM: Parsing for this SID has not been implemented.")
return [], [], bytearray(), 0
def handle_syrlinks_rx_registers_dataset(hk_data: bytearray) -> Tuple[list, list, bytearray, int]:
hk_header = []
hk_content = []
validity_buffer = bytearray()
hk_header = ["RX Status", "RX Sensitivity", "RX Frequency Shift", "RX IQ Power", "RX AGC Value", "RX Demod Eb",
"RX Demod N0", "RX Datarate"]
rx_status = hk_data[0]
rx_sensitivity = struct.unpack('!I', hk_data[1:5])
rx_frequency_shift = struct.unpack('!I', hk_data[5:9])
rx_iq_power = struct.unpack('!H', hk_data[9:11])
rx_agc_value = struct.unpack('!H', hk_data[11:13])
rx_demod_eb = struct.unpack('!I', hk_data[13:17])
rx_demod_n0 = struct.unpack('!I', hk_data[17:21])
rx_data_rate = hk_data[21]
hk_content = [rx_status, rx_sensitivity, rx_frequency_shift, rx_iq_power, rx_agc_value, rx_demod_eb, rx_demod_n0,
rx_data_rate]
return hk_header, hk_content, validity_buffer, 8
def handle_syrlinks_tx_registers_dataset(hk_data: bytearray) -> Tuple[list, list, bytearray, int]:
hk_header = []
hk_content = []
validity_buffer = bytearray()
hk_header = ["TX Status", "TX Waveform", "TX AGC value"]
tx_status = hk_data[0]
tx_waveform = hk_data[1]
tx_agc_value = struct.unpack('!H', hk_data[2:4])
hk_content = [tx_status, tx_waveform, tx_agc_value]
return hk_header, hk_content, validity_buffer, 3
def handle_self_test_data(hk_data: bytearray) -> Tuple[list, list, bytearray, int]:
hk_header = []
hk_content = []
validity_buffer = bytearray()
hk_header = ["Init Err", "Init Raw Mag X [nT]", "Init Raw Mag Y [nT]", "Init Raw Mag Z [nT]", "Init Cal Mag X [nT]",
"Init Cal Mag Y [nT]", "Init Cal Mag Z [nT]", "Init Coil X Current [mA]", "Init Coil Y Current [mA]",
"Init Coil Z Current [mA]", "Init Coil X Temperature [°C]", "Init Coil Y Temperature [°C]",
"Init Coil Z Temperature [°C]", "Err", "Raw Mag X [nT]", "Raw Mag Y [nT]", "Raw Mag Z [nT]",
"Cal Mag X [nT]", "Cal Mag Y [nT]", "Cal Mag Z [nT]", "Coil X Current [mA]", "Coil Y Current [mA]",
"Coil Z Current [mA]", "Coil X Temperature [°C]", "Coil Y Temperature [°C]", "Coil Z Temperature [°C]",
"Fina Err", "Fina Raw Mag X [nT]", "Fina Raw Mag Y [nT]", "Fina Raw Mag Z [nT]", "Fina Cal Mag X [nT]",
"Fina Cal Mag Y [nT]", "Fina Cal Mag Z [nT]", "Fina Coil X Current [mA]", "Fina Coil Y Current [mA]",
"Fina Coil Z Current [mA]", "Fina Coil X Temperature [°C]", "Fina Coil Y Temperature [°C]",
"Fina Coil Z Temperature [°C]"]
# INIT step (no coil actuation)
init_err = hk_data[0]
init_raw_mag_x = struct.unpack('!f', hk_data[1:5])[0]
init_raw_mag_y = struct.unpack('!f', hk_data[5:9])[0]
init_raw_mag_z = struct.unpack('!f', hk_data[9:13])[0]
init_cal_mag_x = struct.unpack('!f', hk_data[13:17])[0]
init_cal_mag_y = struct.unpack('!f', hk_data[17:21])[0]
init_cal_mag_z = struct.unpack('!f', hk_data[21:25])[0]
init_coil_x_current = struct.unpack('!f', hk_data[25:29])[0]
init_coil_y_current = struct.unpack('!f', hk_data[29:33])[0]
init_coil_z_current = struct.unpack('!f', hk_data[33:37])[0]
init_coil_x_temperature = struct.unpack('!H', hk_data[37:39])[0]
init_coil_y_temperature = struct.unpack('!H', hk_data[39:41])[0]
init_coil_z_temperature = struct.unpack('!H', hk_data[41:43])[0]
# Actuation step
err = hk_data[43]
raw_mag_x = struct.unpack('!f', hk_data[44:48])[0]
raw_mag_y = struct.unpack('!f', hk_data[48:52])[0]
raw_mag_z = struct.unpack('!f', hk_data[52:56])[0]
cal_mag_x = struct.unpack('!f', hk_data[56:60])[0]
cal_mag_y = struct.unpack('!f', hk_data[60:64])[0]
cal_mag_z = struct.unpack('!f', hk_data[64:68])[0]
coil_x_current = struct.unpack('!f', hk_data[68:72])[0]
coil_y_current = struct.unpack('!f', hk_data[72:76])[0]
coil_z_current = struct.unpack('!f', hk_data[76:80])[0]
coil_x_temperature = struct.unpack('!H', hk_data[80:82])[0]
coil_y_temperature = struct.unpack('!H', hk_data[82:84])[0]
coil_z_temperature = struct.unpack('!H', hk_data[84:86])[0]
# FINA step (no coil actuation)
fina_err = hk_data[86]
fina_raw_mag_x = struct.unpack('!f', hk_data[87:91])[0]
fina_raw_mag_y = struct.unpack('!f', hk_data[91:95])[0]
fina_raw_mag_z = struct.unpack('!f', hk_data[95:99])[0]
fina_cal_mag_x = struct.unpack('!f', hk_data[99:103])[0]
fina_cal_mag_y = struct.unpack('!f', hk_data[103:107])[0]
fina_cal_mag_z = struct.unpack('!f', hk_data[107:111])[0]
fina_coil_x_current = struct.unpack('!f', hk_data[111:115])[0]
fina_coil_y_current = struct.unpack('!f', hk_data[115:119])[0]
fina_coil_z_current = struct.unpack('!f', hk_data[119:123])[0]
fina_coil_x_temperature = struct.unpack('!H', hk_data[123:125])[0]
fina_coil_y_temperature = struct.unpack('!H', hk_data[125:127])[0]
fina_coil_z_temperature = struct.unpack('!H', hk_data[127:129])[0]
hk_content = [init_err, init_raw_mag_x, init_raw_mag_y, init_raw_mag_z, init_cal_mag_x, init_cal_mag_y,
init_cal_mag_z, init_coil_x_current, init_coil_y_current, init_coil_z_current,
init_coil_x_temperature, init_coil_y_temperature, init_coil_z_temperature, err, raw_mag_x,
init_raw_mag_y, raw_mag_z, cal_mag_x, cal_mag_y, cal_mag_z, coil_x_current, coil_y_current,
coil_z_current, coil_x_temperature, coil_y_temperature, coil_z_temperature, fina_err, fina_raw_mag_x,
fina_raw_mag_y, fina_raw_mag_z, fina_cal_mag_x, fina_cal_mag_y, fina_cal_mag_z, fina_coil_x_current,
fina_coil_y_current, fina_coil_z_current, fina_coil_x_temperature, fina_coil_y_temperature,
fina_coil_z_temperature]
return hk_header, hk_content, validity_buffer, len(hk_header)

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@ -1,79 +0,0 @@
"""
@brief This file transfers control of housekeeping handling (PUS service 3) to the
developer
@details Template configuration file. Copy this folder to the TMTC commander root and adapt
it to your needs.
"""
import struct
from typing import Tuple
from tmtccmd.pus_tm.service_3_housekeeping import Service3Base
from tmtccmd.utility.logger import get_logger
from pus_tc.syrlinks_hk_handler import SetIds
from config.object_ids import SYRLINKS_HANDLER
LOGGER = get_logger()
def handle_user_hk_packet(object_id: bytes, set_id: int, hk_data: bytearray,
service3_packet: Service3Base) -> Tuple[list, list, bytearray, int]:
"""
This function is called when a Service 3 Housekeeping packet is received.
Please note that the object IDs should be compared by value because direct comparison of
enumerations does not work in Python. For example use:
if object_id.value == ObjectIds.TEST_OBJECT.value
to test equality based on the object ID list.
@param object_id:
@param set_id:
@param hk_data:
@param service3_packet:
@return: Expects a tuple, consisting of two lists, a bytearray and an integer
The first list contains the header columns, the second list the list with
the corresponding values. The bytearray is the validity buffer, which is usually appended
at the end of the housekeeping packet. The last value is the number of parameters.
"""
if object_id == SYRLINKS_HANDLER:
if set_id == SetIds.RX_REGISTERS_DATASET:
return handle_syrlinks_rx_registers_dataset(hk_data)
elif set_id == SetIds.TX_REGISTERS_DATASET:
return handle_syrlinks_tx_registers_dataset(hk_data)
else:
LOGGER.info("Serive 3 TM: Syrlinks handler reply with unknown set id")
return [], [], bytearray(), 0
else:
LOGGER.info("Service 3 TM: Parsing for this SID has not been implemented.")
return [], [], bytearray(), 0
def handle_syrlinks_rx_registers_dataset(hk_data: bytearray) -> Tuple[list, list, bytearray, int]:
hk_header = []
hk_content = []
validity_buffer = bytearray()
hk_header = ["RX Status", "RX Sensitivity", "RX Frequency Shift", "RX IQ Power", "RX AGC Value", "RX Demod Eb",
"RX Demod N0", "RX Datarate"]
rx_status = hk_data[0]
rx_sensitivity = struct.unpack('!I', hk_data[1:5])
rx_frequency_shift = struct.unpack('!I', hk_data[5:9])
rx_iq_power = struct.unpack('!H', hk_data[9:11])
rx_agc_value = struct.unpack('!H', hk_data[11:13])
rx_demod_eb = struct.unpack('!I', hk_data[13:17])
rx_demod_n0 = struct.unpack('!I', hk_data[17:21])
rx_data_rate = hk_data[21]
hk_content = [rx_status, rx_sensitivity, rx_frequency_shift, rx_iq_power, rx_agc_value, rx_demod_eb, rx_demod_n0,
rx_data_rate]
return hk_header, hk_content, validity_buffer, 8
def handle_syrlinks_tx_registers_dataset(hk_data: bytearray) -> Tuple[list, list, bytearray, int]:
hk_header = []
hk_content = []
validity_buffer = bytearray()
hk_header = ["TX Status", "TX Waveform", "TX AGC value"]
tx_status = hk_data[0]
tx_waveform = hk_data[1]
tx_agc_value = struct.unpack('!H', hk_data[2:4])
hk_content = [tx_status, tx_waveform, tx_agc_value]
return hk_header, hk_content, validity_buffer, 3

View File

@ -1,5 +1,8 @@
import struct
from typing import Tuple
from config.object_ids import PDU_2_HANDLER_ID
from config.object_ids import *
from pus_tc.imtq import ImtqActionIds
from pus_tc.ploc_mpsoc import PlocReplyIds
def user_analyze_service_8_data(
@ -25,7 +28,31 @@ def user_analyze_service_8_data(
data_string = data_string.rstrip(',')
data_string = data_string.rstrip()
content_list = [data_string]
elif object_id == IMTQ_HANDLER_ID:
return handle_imtq_replies(action_id, custom_data)
elif object_id == PLOC_MPSOC_ID:
return handle_ploc_replies(action_id, custom_data)
else:
header_list = []
content_list = []
return header_list, content_list
def handle_imtq_replies(action_id: int, custom_data: bytearray) -> Tuple[list, list]:
header_list = []
content_list = []
if action_id == struct.unpack('!I', ImtqActionIds.get_commanded_dipole)[0]:
header_list = ['Commanded X-Dipole', 'Commanded Y-Dipole', 'Commanded Z-Dipole']
x_dipole = struct.unpack('!H', custom_data[:2])
y_dipole = struct.unpack('!H', custom_data[2:4])
z_dipole = struct.unpack('!H', custom_data[4:6])
content_list = [x_dipole[0], y_dipole[0], z_dipole[0]]
def handle_ploc_replies(action_id: int, custom_data: bytearray) -> Tuple[list, list]:
header_list = []
content_list = []
if action_id == PlocReplyIds.tm_mem_read_report:
header_list = ['PLOC Memory Address', 'PLOC Mem Len', 'PLOC Read Memory Data']
content_list = [custom_data[:4], custom_data[4:6], custom_data[6:10]]
return header_list, content_list

View File

@ -26,13 +26,31 @@ limitations under the License.
@author R. Mueller
"""
from tmtccmd.runner import initialize_tmtc_commander, run_tmtc_commander
import sys
from config.hook_implementations import EiveHookObject
from config.version import __version__
from config.definitions import PUS_APID
from pus_tm.factory_hook import ccsds_tm_handler
try:
from tmtccmd.runner import initialize_tmtc_commander, run_tmtc_commander, add_ccsds_handler
from tmtccmd.ccsds.handler import CcsdsTmHandler
except ImportError as error:
run_tmtc_commander = None
initialize_tmtc_commander = None
print(error)
print("Python tmtccmd submodule could not be imported")
print("Install with \"cd tmtccmd && python3 -m pip install -e .\" for interactive installation")
sys.exit(0)
def main():
hook_obj = EiveHookObject()
print(f"-- eive tmtc version {__version__}")
initialize_tmtc_commander(hook_object=hook_obj)
ccsds_handler = CcsdsTmHandler()
ccsds_handler.add_tm_handler(apid=PUS_APID, pus_tm_handler=ccsds_tm_handler, max_queue_len=50)
add_ccsds_handler(ccsds_handler)
run_tmtc_commander(False)

View File

@ -1,6 +1,6 @@
#!/usr/bin/python3
"""
@brief TMTC Commander entry point for GUI mode.
@brief TMTC Commander entry point for command line mode.
@details
This client was developed by KSat for the SOURCE project to test the on-board software but
has evolved into a more generic tool for satellite developers to perform TMTC (Telemetry and Telecommand)
@ -26,14 +26,32 @@ limitations under the License.
@author R. Mueller
"""
import sys
from config.hook_implementations import EiveHookObject
from tmtccmd.runner import initialize_tmtc_commander, run_tmtc_commander
from config.version import __version__
from config.definitions import PUS_APID
from pus_tm.factory_hook import ccsds_tm_handler
try:
from tmtccmd.runner import initialize_tmtc_commander, run_tmtc_commander, add_ccsds_handler
from tmtccmd.ccsds.handler import CcsdsTmHandler
except ImportError as error:
run_tmtc_commander = None
initialize_tmtc_commander = None
print(error)
print("Python tmtccmd submodule could not be imported")
print("Install with \"cd tmtccmd && python3 -m pip install -e .\" for interactive installation")
sys.exit(0)
def main():
hook_obj = EiveHookObject()
print(f"-- eive tmtc version {__version__}")
initialize_tmtc_commander(hook_object=hook_obj)
run_tmtc_commander(True)
ccsds_handler = CcsdsTmHandler()
ccsds_handler.add_tm_handler(apid=PUS_APID, pus_tm_handler=ccsds_tm_handler, max_queue_len=50)
add_ccsds_handler(ccsds_handler)
run_tmtc_commander(use_gui=True)
if __name__ == "__main__":

Submodule tmtccmd updated: 3f39a1ffa1...1e234851ec