introduce mode commands to python client
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@ -22,6 +22,25 @@ def create_cmd_definition_tree() -> CmdTreeNode:
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root_node = CmdTreeNode.root_node()
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root_node = CmdTreeNode.root_node()
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hk_node = CmdTreeNode("hk", "Housekeeping Node", hide_children_for_print=True)
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hk_node.add_child(CmdTreeNode("one_shot_hk", "Request One Shot HK set"))
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hk_node.add_child(
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CmdTreeNode("enable", "Enable periodic housekeeping data generation")
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)
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hk_node.add_child(
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CmdTreeNode("disable", "Disable periodic housekeeping data generation")
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)
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mode_node = CmdTreeNode("mode", "Mode Node", hide_children_for_print=True)
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set_mode_node = CmdTreeNode(
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"set_mode", "Set Node", hide_children_which_are_leaves=True
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)
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set_mode_node.add_child(CmdTreeNode("off", "Set OFF Mode"))
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set_mode_node.add_child(CmdTreeNode("on", "Set ON Mode"))
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set_mode_node.add_child(CmdTreeNode("normal", "Set NORMAL Mode"))
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mode_node.add_child(set_mode_node)
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mode_node.add_child(CmdTreeNode("read_mode", "Read Mode"))
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test_node = CmdTreeNode("test", "Test Node")
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test_node = CmdTreeNode("test", "Test Node")
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test_node.add_child(CmdTreeNode("ping", "Send PUS ping TC"))
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test_node.add_child(CmdTreeNode("ping", "Send PUS ping TC"))
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test_node.add_child(CmdTreeNode("trigger_event", "Send PUS test to trigger event"))
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test_node.add_child(CmdTreeNode("trigger_event", "Send PUS test to trigger event"))
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@ -37,7 +56,9 @@ def create_cmd_definition_tree() -> CmdTreeNode:
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acs_node = CmdTreeNode("acs", "ACS Subsystem Node")
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acs_node = CmdTreeNode("acs", "ACS Subsystem Node")
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mgm_node = CmdTreeNode("mgms", "MGM devices node")
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mgm_node = CmdTreeNode("mgms", "MGM devices node")
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mgm_node.add_child(CmdTreeNode("one_shot_hk", "Request one shot HK"))
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mgm_node.add_child(mode_node)
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mgm_node.add_child(hk_node)
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acs_node.add_child(mgm_node)
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acs_node.add_child(mgm_node)
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root_node.add_child(acs_node)
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root_node.add_child(acs_node)
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@ -4,7 +4,7 @@ use satrs::queue::{GenericSendError, GenericTargetedMessagingError};
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use satrs::spacepackets::ecss::hk;
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use satrs::spacepackets::ecss::hk;
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use satrs::spacepackets::ecss::tm::{PusTmCreator, PusTmSecondaryHeader};
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use satrs::spacepackets::ecss::tm::{PusTmCreator, PusTmSecondaryHeader};
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use satrs::spacepackets::SpHeader;
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use satrs::spacepackets::SpHeader;
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use satrs_example::TimeStampHelper;
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use satrs_example::{DeviceMode, TimeStampHelper};
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use std::sync::mpsc::{self};
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use std::sync::mpsc::{self};
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use std::sync::{Arc, Mutex};
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use std::sync::{Arc, Mutex};
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@ -20,6 +20,10 @@ use crate::requests::CompositeRequest;
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use serde::{Deserialize, Serialize};
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use serde::{Deserialize, Serialize};
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const GAUSS_TO_MICROTESLA_FACTOR: f32 = 100.0;
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// This is the selected resoltion for the STM LIS3MDL device for the 4 Gauss sensitivity setting.
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const FIELD_LSB_PER_GAUSS_4_SENS: f32 = 1.0 / 6842.0;
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pub trait SpiInterface {
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pub trait SpiInterface {
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type Error;
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type Error;
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fn transfer(&mut self, tx: &[u8], rx: &mut [u8]) -> Result<(), Self::Error>;
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fn transfer(&mut self, tx: &[u8], rx: &mut [u8]) -> Result<(), Self::Error>;
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@ -27,9 +31,9 @@ pub trait SpiInterface {
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#[derive(Default)]
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#[derive(Default)]
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pub struct SpiDummyInterface {
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pub struct SpiDummyInterface {
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dummy_val_0: i16,
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pub dummy_val_0: i16,
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dummy_val_1: i16,
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pub dummy_val_1: i16,
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dummy_val_2: i16,
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pub dummy_val_2: i16,
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}
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}
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impl SpiInterface for SpiDummyInterface {
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impl SpiInterface for SpiDummyInterface {
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@ -45,6 +49,7 @@ impl SpiInterface for SpiDummyInterface {
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#[derive(Default, Debug, Copy, Clone, Serialize, Deserialize)]
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#[derive(Default, Debug, Copy, Clone, Serialize, Deserialize)]
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pub struct MgmData {
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pub struct MgmData {
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pub valid: bool,
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pub x: f32,
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pub x: f32,
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pub y: f32,
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pub y: f32,
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pub z: f32,
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pub z: f32,
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@ -56,9 +61,10 @@ pub struct MpscModeLeafInterface {
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pub reply_tx_to_parent: mpsc::Sender<GenericMessage<ModeReply>>,
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pub reply_tx_to_parent: mpsc::Sender<GenericMessage<ModeReply>>,
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}
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}
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/// Example MGM device handler strongly based on the LIS3MDL MEMS device.
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#[derive(new)]
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#[derive(new)]
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#[allow(clippy::too_many_arguments)]
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#[allow(clippy::too_many_arguments)]
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pub struct MgmHandler<ComInterface: SpiInterface, TmSender: EcssTmSenderCore> {
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pub struct MgmHandlerLis3Mdl<ComInterface: SpiInterface, TmSender: EcssTmSenderCore> {
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id: UniqueApidTargetId,
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id: UniqueApidTargetId,
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dev_str: &'static str,
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dev_str: &'static str,
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mode_interface: MpscModeLeafInterface,
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mode_interface: MpscModeLeafInterface,
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@ -68,26 +74,41 @@ pub struct MgmHandler<ComInterface: SpiInterface, TmSender: EcssTmSenderCore> {
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com_interface: ComInterface,
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com_interface: ComInterface,
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shared_mgm_set: Arc<Mutex<MgmData>>,
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shared_mgm_set: Arc<Mutex<MgmData>>,
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#[new(value = "ModeAndSubmode::new(satrs_example::DeviceMode::Off as u32, 0)")]
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#[new(value = "ModeAndSubmode::new(satrs_example::DeviceMode::Off as u32, 0)")]
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mode: ModeAndSubmode,
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mode_and_submode: ModeAndSubmode,
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#[new(default)]
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#[new(default)]
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tx_buf: [u8; 12],
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tx_buf: [u8; 12],
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#[new(default)]
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#[new(default)]
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rx_buf: [u8; 12],
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rx_buf: [u8; 12],
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#[new(default)]
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#[new(default)]
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tm_buf: [u8; 12],
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tm_buf: [u8; 16],
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#[new(default)]
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stamp_helper: TimeStampHelper,
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stamp_helper: TimeStampHelper,
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}
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}
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impl<ComInterface: SpiInterface, TmSender: EcssTmSenderCore> MgmHandler<ComInterface, TmSender> {
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impl<ComInterface: SpiInterface, TmSender: EcssTmSenderCore>
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MgmHandlerLis3Mdl<ComInterface, TmSender>
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{
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pub fn periodic_operation(&mut self) {
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pub fn periodic_operation(&mut self) {
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self.stamp_helper.update_from_now();
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self.stamp_helper.update_from_now();
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// Handle requests.
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// Handle requests.
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self.handle_composite_requests();
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self.handle_composite_requests();
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self.handle_mode_requests();
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self.handle_mode_requests();
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if self.mode() == DeviceMode::Normal as u32 {
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log::trace!("polling LIS3MDL sensor {}", self.dev_str);
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// Communicate with the device.
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// Communicate with the device.
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let result = self.com_interface.transfer(&self.tx_buf, &mut self.rx_buf);
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let result = self.com_interface.transfer(&self.tx_buf, &mut self.rx_buf);
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assert!(result.is_ok());
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assert!(result.is_ok());
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// TODO: Convert the raw data back to floats.
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// Actual data begins on the second byte, similarly to how a lot of SPI devices behave.
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let x_raw = i16::from_be_bytes(self.rx_buf[1..3].try_into().unwrap());
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let y_raw = i16::from_be_bytes(self.rx_buf[3..5].try_into().unwrap());
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let z_raw = i16::from_be_bytes(self.rx_buf[5..7].try_into().unwrap());
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// Simple scaling to retrieve the float value, assuming a sensor resolution of
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let mut mgm_guard = self.shared_mgm_set.lock().unwrap();
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mgm_guard.x = x_raw as f32 * GAUSS_TO_MICROTESLA_FACTOR * FIELD_LSB_PER_GAUSS_4_SENS;
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mgm_guard.y = y_raw as f32 * GAUSS_TO_MICROTESLA_FACTOR * FIELD_LSB_PER_GAUSS_4_SENS;
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mgm_guard.z = z_raw as f32 * GAUSS_TO_MICROTESLA_FACTOR * FIELD_LSB_PER_GAUSS_4_SENS;
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drop(mgm_guard);
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}
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}
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}
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pub fn handle_composite_requests(&mut self) {
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pub fn handle_composite_requests(&mut self) {
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@ -134,13 +155,14 @@ impl<ComInterface: SpiInterface, TmSender: EcssTmSenderCore> MgmHandler<ComInter
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0,
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0,
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Some(self.stamp_helper.stamp()),
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Some(self.stamp_helper.stamp()),
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);
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);
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// Let's serialize it as JSON for now.. This is a lot simpler than binary
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// serialization.
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let mgm_snapshot = *self.shared_mgm_set.lock().unwrap();
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let mgm_snapshot = *self.shared_mgm_set.lock().unwrap();
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self.tm_buf[0..4].copy_from_slice(&mgm_snapshot.x.to_be_bytes());
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// Use binary serialization here. We want the data to be tightly packed.
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self.tm_buf[4..8].copy_from_slice(&mgm_snapshot.y.to_be_bytes());
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self.tm_buf[0] = mgm_snapshot.valid as u8;
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self.tm_buf[8..12].copy_from_slice(&mgm_snapshot.z.to_be_bytes());
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self.tm_buf[1..5].copy_from_slice(&mgm_snapshot.x.to_be_bytes());
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let hk_tm = PusTmCreator::new(&mut sp_header, sec_header, &self.tm_buf[0..12], true);
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self.tm_buf[5..9].copy_from_slice(&mgm_snapshot.y.to_be_bytes());
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self.tm_buf[9..13].copy_from_slice(&mgm_snapshot.z.to_be_bytes());
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let hk_tm =
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PusTmCreator::new(&mut sp_header, sec_header, &self.tm_buf[0..12], true);
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self.tm_sender
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self.tm_sender
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.send_tm(self.id.id(), PusTmVariant::Direct(hk_tm))
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.send_tm(self.id.id(), PusTmVariant::Direct(hk_tm))
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.expect("failed to send HK TM");
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.expect("failed to send HK TM");
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@ -179,15 +201,15 @@ impl<ComInterface: SpiInterface, TmSender: EcssTmSenderCore> MgmHandler<ComInter
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}
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}
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impl<ComInterface: SpiInterface, TmSender: EcssTmSenderCore> ModeProvider
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impl<ComInterface: SpiInterface, TmSender: EcssTmSenderCore> ModeProvider
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for MgmHandler<ComInterface, TmSender>
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for MgmHandlerLis3Mdl<ComInterface, TmSender>
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{
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{
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fn mode_and_submode(&self) -> ModeAndSubmode {
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fn mode_and_submode(&self) -> ModeAndSubmode {
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self.mode
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self.mode_and_submode
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}
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}
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}
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}
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impl<ComInterface: SpiInterface, TmSender: EcssTmSenderCore> ModeRequestHandler
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impl<ComInterface: SpiInterface, TmSender: EcssTmSenderCore> ModeRequestHandler
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for MgmHandler<ComInterface, TmSender>
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for MgmHandlerLis3Mdl<ComInterface, TmSender>
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{
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{
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type Error = ModeError;
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type Error = ModeError;
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fn start_transition(
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fn start_transition(
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@ -195,14 +217,22 @@ impl<ComInterface: SpiInterface, TmSender: EcssTmSenderCore> ModeRequestHandler
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requestor: MessageMetadata,
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requestor: MessageMetadata,
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mode_and_submode: ModeAndSubmode,
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mode_and_submode: ModeAndSubmode,
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) -> Result<(), satrs::mode::ModeError> {
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) -> Result<(), satrs::mode::ModeError> {
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self.mode = mode_and_submode;
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log::info!(
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"{}: transitioning to mode {:?}",
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self.dev_str,
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mode_and_submode
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);
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self.mode_and_submode = mode_and_submode;
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self.handle_mode_reached(Some(requestor))?;
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self.handle_mode_reached(Some(requestor))?;
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Ok(())
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Ok(())
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}
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}
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fn announce_mode(&self, _requestor_info: Option<MessageMetadata>, _recursive: bool) {
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fn announce_mode(&self, _requestor_info: Option<MessageMetadata>, _recursive: bool) {
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log::info!("{} announcing mode: {:?}", self.dev_str, self.mode);
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log::info!(
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// TODO: Trigger event.
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"{} announcing mode: {:?}",
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self.dev_str,
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self.mode_and_submode
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);
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}
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}
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fn handle_mode_reached(
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fn handle_mode_reached(
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@ -27,7 +27,7 @@ use satrs_example::config::{OBSW_SERVER_ADDR, SERVER_PORT};
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use tmtc::PusTcSourceProviderDynamic;
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use tmtc::PusTcSourceProviderDynamic;
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use udp::DynamicUdpTmHandler;
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use udp::DynamicUdpTmHandler;
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use crate::acs::mgm::{MgmHandler, MpscModeLeafInterface, SpiDummyInterface};
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use crate::acs::mgm::{MgmHandlerLis3Mdl, MpscModeLeafInterface, SpiDummyInterface};
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use crate::ccsds::CcsdsReceiver;
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use crate::ccsds::CcsdsReceiver;
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use crate::logger::setup_logger;
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use crate::logger::setup_logger;
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use crate::pus::action::{create_action_service_dynamic, create_action_service_static};
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use crate::pus::action::{create_action_service_dynamic, create_action_service_static};
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@ -211,7 +211,7 @@ fn static_tmtc_pool_main() {
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reply_tx_to_pus: pus_mode_reply_tx,
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reply_tx_to_pus: pus_mode_reply_tx,
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reply_tx_to_parent: mgm_handler_mode_reply_to_parent_tx,
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reply_tx_to_parent: mgm_handler_mode_reply_to_parent_tx,
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};
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};
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let mut mgm_handler = MgmHandler::new(
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let mut mgm_handler = MgmHandlerLis3Mdl::new(
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MGM_HANDLER_0,
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MGM_HANDLER_0,
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"MGM_0",
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"MGM_0",
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mode_leaf_interface,
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mode_leaf_interface,
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@ -429,7 +429,7 @@ fn dyn_tmtc_pool_main() {
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reply_tx_to_pus: pus_mode_reply_tx,
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reply_tx_to_pus: pus_mode_reply_tx,
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reply_tx_to_parent: mgm_handler_mode_reply_to_parent_tx,
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reply_tx_to_parent: mgm_handler_mode_reply_to_parent_tx,
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};
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};
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let mut mgm_handler = MgmHandler::new(
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let mut mgm_handler = MgmHandlerLis3Mdl::new(
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MGM_HANDLER_0,
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MGM_HANDLER_0,
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"MGM_0",
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"MGM_0",
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mode_leaf_interface,
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mode_leaf_interface,
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@ -179,6 +179,14 @@ impl From<GenericTargetedMessagingError> for ModeError {
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pub trait ModeProvider {
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pub trait ModeProvider {
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fn mode_and_submode(&self) -> ModeAndSubmode;
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fn mode_and_submode(&self) -> ModeAndSubmode;
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fn mode(&self) -> Mode {
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self.mode_and_submode().mode()
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}
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fn submode(&self) -> Submode {
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self.mode_and_submode().submode()
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}
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}
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}
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pub trait ModeRequestHandler: ModeProvider {
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pub trait ModeRequestHandler: ModeProvider {
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