Removed confusing non-error message, updated start scripts to match wiki and most recent SW revs

This commit is contained in:
Lorenz Meier
2013-02-17 18:11:33 +01:00
parent 2d1009a897
commit 3d3a68a7fb
4 changed files with 136 additions and 87 deletions
+55 -28
View File
@@ -1,40 +1,67 @@
#!nsh
#
# Flight startup script for PX4FMU with PWM outputs.
#
# Disable the USB interface
set USB no
# Disable autostarting other apps
set MODE custom
echo "[init] doing PX4FMU Quad startup..."
#
# Start the ORB
# #
# Startup for X-quad on FMU1.5/1.6
#
echo "[init] uORB"
uorb start uorb start
echo "[init] eeprom" #
eeprom start # Load microSD params
if [ -f /eeprom/parameters ] #
echo "[init] loading microSD params"
param select /fs/microsd/parameters
if [ -f /fs/microsd/parameters ]
then then
param load param load /fs/microsd/parameters
fi fi
echo "[init] sensors" #
#bma180 start # Force some key parameters to sane values
#l3gd20 start # MAV_TYPE 1 = fixed wing, 2 = quadrotor, 13 = hexarotor
mpu6000 start # see https://pixhawk.ethz.ch/mavlink/
hmc5883 start #
ms5611 start param set MAV_TYPE 2
sensors start #
# Start MAVLink
echo "[init] mavlink" #
mavlink start -d /dev/ttyS0 -b 57600 mavlink start -d /dev/ttyS0 -b 57600
usleep 5000 usleep 5000
echo "[init] commander" #
# Start the sensors and test them.
#
sh /etc/init.d/rc.sensors
#
# Start the commander.
#
commander start commander start
echo "[init] attitude control" #
# Start the attitude estimator
#
attitude_estimator_ekf start attitude_estimator_ekf start
multirotor_att_control start
echo "[init] starting PWM output" echo "[init] starting PWM output"
fmu mode_pwm fmu mode_pwm
mixer load /dev/pwm_output /etc/mixers/FMU_quad_x.mix mixer load /dev/pwm_output /etc/mixers/FMU_quad_x.mix
#
# Start attitude control
#
multirotor_att_control start
echo "[init] startup done, exiting" echo "[init] startup done, exiting"
exit exit
+52 -45
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@@ -1,73 +1,80 @@
#!nsh #!nsh
# Disable USB and autostart
set USB no set USB no
set MODE camflyer
# #
# Start the object request broker # Start the ORB
# #
uorb start uorb start
# #
# Init the EEPROM # Load microSD params
# #
echo "[init] eeprom" echo "[init] loading microSD params"
eeprom start param select /fs/microsd/parameters
if [ -f /eeprom/parameters ] if [ -f /fs/microsd/parameters ]
then then
param load param load /fs/microsd/parameters
fi fi
# #
# Enable / connect to PX4IO # Force some key parameters to sane values
# MAV_TYPE 1 = fixed wing, 2 = quadrotor, 13 = hexarotor
# see https://pixhawk.ethz.ch/mavlink/
# #
px4io start param set MAV_TYPE 1
#
# Load an appropriate mixer. FMU_pass.mix is a passthru mixer
# which is good for testing. See ROMFS/mixers for a full list of mixers.
#
mixer load /dev/pwm_output /etc/mixers/FMU_pass.mix
# #
# Start the sensors. # Start the sensors.
# #
sh /etc/init.d/rc.sensors sh /etc/init.d/rc.sensors
# #
# Start MAVLink on UART1 (dev/ttyS0) at 57600 baud (CLI is now unusable) # Start MAVLink
# #
mavlink start -d /dev/ttyS0 -b 57600 mavlink start -d /dev/ttyS1 -b 57600
usleep 5000 usleep 5000
# #
# Start the commander. # Start the commander.
# #
commander start commander start
#
# Start GPS interface
#
gps start
# #
# Start the attitude estimator # Start the attitude estimator
# #
attitude_estimator_ekf start kalman_demo start
#
# Start PX4IO interface
#
px4io start
#
# Load mixer and start controllers
#
mixer load /dev/pwm_output /etc/mixers/FMU_Q.mix
control_demo start
#
# Start logging
#
sdlog start -s 10
# #
# Start the attitude and position controller # Start system state
# #
fixedwing_att_control start if blinkm start
fixedwing_pos_control start then
echo "using BlinkM for state indication"
# blinkm systemstate
# Start GPS capture. Comment this out if you do not have a GPS. else
# echo "no BlinkM found, OK."
gps start fi
#
# Start logging to microSD if we can
#
sh /etc/init.d/rc.logging
#
# startup is done; we don't want the shell because we
# use the same UART for telemetry
#
echo "[init] startup done"
exit
+29 -11
View File
@@ -17,7 +17,7 @@ echo "[init] doing PX4IOAR startup..."
uorb start uorb start
# #
# Load microSD params # Init the parameter storage
# #
echo "[init] loading microSD params" echo "[init] loading microSD params"
param select /fs/microsd/parameters param select /fs/microsd/parameters
@@ -26,17 +26,24 @@ then
param load /fs/microsd/parameters param load /fs/microsd/parameters
fi fi
#
# Force some key parameters to sane values
# MAV_TYPE 1 = fixed wing, 2 = quadrotor, 13 = hexarotor
# see https://pixhawk.ethz.ch/mavlink/
#
param set MAV_TYPE 2
#
# Start the sensors.
#
sh /etc/init.d/rc.sensors
# #
# Start MAVLink # Start MAVLink
# #
mavlink start -d /dev/ttyS0 -b 57600 mavlink start -d /dev/ttyS0 -b 57600
usleep 5000 usleep 5000
#
# Start the sensors and test them.
#
sh /etc/init.d/rc.sensors
# #
# Start the commander. # Start the commander.
# #
@@ -62,15 +69,26 @@ multirotor_att_control start
# #
ardrone_interface start -d /dev/ttyS1 ardrone_interface start -d /dev/ttyS1
#
# Start logging
#
#sdlog start
# #
# Start GPS capture # Start GPS capture
# #
gps start gps start
#
# Start logging
#
sdlog start -s 10
#
# Start system state
#
if blinkm start
then
echo "using BlinkM for state indication"
blinkm systemstate
else
echo "no BlinkM found, OK."
fi
# #
# startup is done; we don't want the shell because we # startup is done; we don't want the shell because we
-3
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@@ -1459,9 +1459,6 @@ int commander_thread_main(int argc, char *argv[])
} else { } else {
current_status.flag_external_manual_override_ok = true; current_status.flag_external_manual_override_ok = true;
} }
} else {
warnx("ARMED, rejecting sys type change\n");
} }
} }