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5 Commits
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develop
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8
.github/workflows/build_firmware.yml
vendored
8
.github/workflows/build_firmware.yml
vendored
@@ -56,16 +56,18 @@ jobs:
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ota_firmware_source: ${{ steps.ota_dir.outputs.src || '' }}
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ota_firmware_target: ${{ steps.ota_dir.outputs.tgt || '' }}
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- name: Echo manifest from release/firmware-*.mt.json to job summary
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if: ${{ always() }}
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- name: Job summary
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env:
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PIO_ENV: ${{ inputs.pio_env }}
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run: |
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echo "## Manifest: \`$PIO_ENV\`" >> $GITHUB_STEP_SUMMARY
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echo "## $PIO_ENV" >> $GITHUB_STEP_SUMMARY
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echo "<details><summary><strong>Manifest</strong></summary>" >> $GITHUB_STEP_SUMMARY
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echo '' >> $GITHUB_STEP_SUMMARY
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echo '```json' >> $GITHUB_STEP_SUMMARY
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cat release/firmware-*.mt.json >> $GITHUB_STEP_SUMMARY
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echo '' >> $GITHUB_STEP_SUMMARY
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echo '```' >> $GITHUB_STEP_SUMMARY
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echo "</details>" >> $GITHUB_STEP_SUMMARY
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- name: Store binaries as an artifact
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uses: actions/upload-artifact@v5
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17
.github/workflows/main_matrix.yml
vendored
17
.github/workflows/main_matrix.yml
vendored
@@ -77,16 +77,21 @@ jobs:
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fail-fast: false
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matrix:
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check: ${{ fromJson(needs.setup.outputs.check) }}
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runs-on: ubuntu-latest
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# Use 'arctastic' self-hosted runner pool when checking in the main repo
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runs-on: ${{ github.repository_owner == 'meshtastic' && 'arctastic' || 'ubuntu-latest' }}
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if: ${{ github.event_name != 'workflow_dispatch' && github.repository == 'meshtastic/firmware' }}
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steps:
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- uses: actions/checkout@v6
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- name: Build base
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id: base
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uses: ./.github/actions/setup-base
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with:
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submodules: recursive
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ref: ${{github.event.pull_request.head.ref}}
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repository: ${{github.event.pull_request.head.repo.full_name}}
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- name: Check ${{ matrix.check.board }}
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run: bin/check-all.sh ${{ matrix.check.board }}
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uses: meshtastic/gh-action-firmware@main
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with:
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pio_platform: ${{ matrix.check.platform }}
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pio_env: ${{ matrix.check.board }}
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pio_target: check
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build:
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needs: [setup, version]
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@@ -22,7 +22,7 @@ export APP_VERSION=$VERSION
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basename=firmware-$1-$VERSION
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pio run --environment $1 # -v
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pio run --environment $1 -t mtjson # -v
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cp $BUILDDIR/$basename.elf $OUTDIR/$basename.elf
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@@ -32,20 +32,10 @@ cp $BUILDDIR/$basename.factory.bin $OUTDIR/$basename.factory.bin
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echo "Copying ESP32 update bin file"
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cp $BUILDDIR/$basename.bin $OUTDIR/$basename.bin
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echo "Building Filesystem for ESP32 targets"
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# If you want to build the webui, uncomment the following lines
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# pio run --environment $1 -t buildfs
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# cp .pio/build/$1/littlefs.bin $OUTDIR/littlefswebui-$1-$VERSION.bin
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# # Remove webserver files from the filesystem and rebuild
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# ls -l data/static # Diagnostic list of files
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# rm -rf data/static
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pio run --environment $1 -t buildfs --disable-auto-clean
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echo "Copying Filesystem for ESP32 targets"
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cp $BUILDDIR/littlefs-$1-$VERSION.bin $OUTDIR/littlefs-$1-$VERSION.bin
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cp bin/device-install.* $OUTDIR/
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cp bin/device-update.* $OUTDIR/
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# Generate the manifest file
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echo "Generating Meshtastic manifest"
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TIMEFORMAT="Generated manifest in %E seconds"
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time pio run --environment $1 -t mtjson --silent --disable-auto-clean
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echo "Copying manifest"
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cp $BUILDDIR/$basename.mt.json $OUTDIR/$basename.mt.json
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@@ -22,7 +22,7 @@ export APP_VERSION=$VERSION
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basename=firmware-$1-$VERSION
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pio run --environment $1 # -v
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pio run --environment $1 -t mtjson # -v
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cp $BUILDDIR/$basename.elf $OUTDIR/$basename.elf
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@@ -47,8 +47,5 @@ if (echo $1 | grep -q "rak4631"); then
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cp $SRCHEX $OUTDIR/
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fi
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# Generate the manifest file
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echo "Generating Meshtastic manifest"
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TIMEFORMAT="Generated manifest in %E seconds"
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time pio run --environment $1 -t mtjson --silent --disable-auto-clean
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echo "Copying manifest"
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cp $BUILDDIR/$basename.mt.json $OUTDIR/$basename.mt.json
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@@ -22,15 +22,12 @@ export APP_VERSION=$VERSION
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basename=firmware-$1-$VERSION
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pio run --environment $1 # -v
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pio run --environment $1 -t mtjson # -v
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cp $BUILDDIR/$basename.elf $OUTDIR/$basename.elf
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echo "Copying uf2 file"
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cp $BUILDDIR/$basename.uf2 $OUTDIR/$basename.uf2
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# Generate the manifest file
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echo "Generating Meshtastic manifest"
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TIMEFORMAT="Generated manifest in %E seconds"
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time pio run --environment $1 -t mtjson --silent --disable-auto-clean
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echo "Copying manifest"
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cp $BUILDDIR/$basename.mt.json $OUTDIR/$basename.mt.json
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@@ -22,15 +22,12 @@ export APP_VERSION=$VERSION
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basename=firmware-$1-$VERSION
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pio run --environment $1 # -v
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pio run --environment $1 -t mtjson # -v
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cp $BUILDDIR/$basename.elf $OUTDIR/$basename.elf
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echo "Copying STM32 bin file"
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cp $BUILDDIR/$basename.bin $OUTDIR/$basename.bin
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# Generate the manifest file
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echo "Generating Meshtastic manifest"
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TIMEFORMAT="Generated manifest in %E seconds"
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time pio run --environment $1 -t mtjson --silent --disable-auto-clean
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echo "Copying manifest"
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cp $BUILDDIR/$basename.mt.json $OUTDIR/$basename.mt.json
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@@ -159,20 +159,22 @@ def load_boot_logo(source, target, env):
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# Load the boot logo on TFT builds
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if ("HAS_TFT", 1) in env.get("CPPDEFINES", []):
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env.AddPreAction('$BUILD_DIR/littlefs.bin', load_boot_logo)
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env.AddPreAction(f"$BUILD_DIR/{lfsbin}", load_boot_logo)
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# Rename (mv) littlefs.bin to include the PROGNAME
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# This ensures the littlefs.bin is named consistently with the firmware
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env.AddPostAction('$BUILD_DIR/littlefs.bin', env.VerboseAction(
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f'mv $BUILD_DIR/littlefs.bin $BUILD_DIR/{lfsbin}',
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f'Renaming littlefs.bin to {lfsbin}'
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))
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mtjson_deps = ["buildprog"]
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if platform.name == "espressif32":
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# Build littlefs image as part of mtjson target
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# Equivalent to `pio run -t buildfs`
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target_lfs = env.DataToBin(
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join("$BUILD_DIR", "${ESP32_FS_IMAGE_NAME}"), "$PROJECT_DATA_DIR"
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)
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mtjson_deps.append(target_lfs)
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env.AddCustomTarget(
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name="mtjson",
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dependencies=None,
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dependencies=mtjson_deps,
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actions=[manifest_gather],
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title="Meshtastic Manifest",
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description="Generating Meshtastic manifest JSON + Checksums",
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always_build=True,
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always_build=False,
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)
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@@ -11,6 +11,9 @@ else:
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prefsLoc = env["PROJECT_DIR"] + "/version.properties"
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verObj = readProps(prefsLoc)
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env.Replace(PROGNAME=f"firmware-{env.get('PIOENV')}-{verObj['long']}")
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env.Replace(ESP32_FS_IMAGE_NAME=f"littlefs-{env.get('PIOENV')}-{verObj['long']}")
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# Print the new program name for verification
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print(f"PROGNAME: {env.get('PROGNAME')}")
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if platform.name == "espressif32":
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print(f"ESP32_FS_IMAGE_NAME: {env.get('ESP32_FS_IMAGE_NAME')}")
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@@ -225,4 +225,4 @@ class MeshModule
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/** set the destination and packet parameters of packet p intended as a reply to a particular "to" packet
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* This ensures that if the request packet was sent reliably, the reply is sent that way as well.
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*/
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void setReplyTo(meshtastic_MeshPacket *p, const meshtastic_MeshPacket &to);
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void setReplyTo(meshtastic_MeshPacket *p, const meshtastic_MeshPacket &to);
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@@ -150,7 +150,9 @@ void ReliableRouter::sniffReceived(const meshtastic_MeshPacket *p, const meshtas
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PacketId nakId = (c && c->error_reason != meshtastic_Routing_Error_NONE) ? p->decoded.request_id : 0;
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// We intentionally don't check wasSeenRecently, because it is harmless to delete non existent retransmission records
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if (ackId || nakId) {
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if ((ackId || nakId) &&
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// Implicit ACKs from MQTT should not stop retransmissions
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!(isFromUs(p) && p->transport_mechanism == meshtastic_MeshPacket_TransportMechanism_TRANSPORT_MQTT)) {
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LOG_DEBUG("Received a %s for 0x%x, stopping retransmissions", ackId ? "ACK" : "NAK", ackId);
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if (ackId) {
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stopRetransmission(p->to, ackId);
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@@ -75,6 +75,12 @@ uint8_t RoutingModule::getHopLimitForResponse(uint8_t hopStart, uint8_t hopLimit
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return Default::getConfiguredOrDefaultHopLimit(config.lora.hop_limit); // Use the default hop limit
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}
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meshtastic_MeshPacket *RoutingModule::allocAckNak(meshtastic_Routing_Error err, NodeNum to, PacketId idFrom, ChannelIndex chIndex,
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uint8_t hopLimit)
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{
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return MeshModule::allocAckNak(err, to, idFrom, chIndex, hopLimit);
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}
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RoutingModule::RoutingModule() : ProtobufModule("routing", meshtastic_PortNum_ROUTING_APP, &meshtastic_Routing_msg)
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{
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isPromiscuous = true;
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@@ -16,6 +16,9 @@ class RoutingModule : public ProtobufModule<meshtastic_Routing>
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virtual void sendAckNak(meshtastic_Routing_Error err, NodeNum to, PacketId idFrom, ChannelIndex chIndex, uint8_t hopLimit = 0,
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bool ackWantsAck = false);
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meshtastic_MeshPacket *allocAckNak(meshtastic_Routing_Error err, NodeNum to, PacketId idFrom, ChannelIndex chIndex,
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uint8_t hopLimit = 0);
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// Given the hopStart and hopLimit upon reception of a request, return the hop limit to use for the response
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uint8_t getHopLimitForResponse(uint8_t hopStart, uint8_t hopLimit);
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@@ -87,10 +87,13 @@ inline void onReceiveProto(char *topic, byte *payload, size_t length)
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// Generate an implicit ACK towards ourselves (handled and processed only locally!) for this message.
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// We do this because packets are not rebroadcasted back into MQTT anymore and we assume that at least one node
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// receives it when we get our own packet back. Then we'll stop our retransmissions.
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if (isFromUs(e.packet))
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routingModule->sendAckNak(meshtastic_Routing_Error_NONE, getFrom(e.packet), e.packet->id, ch.index);
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else
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if (isFromUs(e.packet)) {
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auto pAck = routingModule->allocAckNak(meshtastic_Routing_Error_NONE, getFrom(e.packet), e.packet->id, ch.index);
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pAck->transport_mechanism = meshtastic_MeshPacket_TransportMechanism_TRANSPORT_MQTT;
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router->sendLocal(pAck);
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} else {
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LOG_INFO("Ignore downlink message we originally sent");
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}
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return;
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}
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if (isFromUs(e.packet)) {
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@@ -337,7 +337,7 @@ void cpuDeepSleep(uint32_t msecToWake)
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#endif
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#ifdef TTGO_T_ECHO
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// To power off the T-Echo, the display must be set
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// To power off the T-Echo, the display must be set
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// as an input pin; otherwise, there will be leakage current.
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pinMode(PIN_EINK_CS, INPUT);
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pinMode(PIN_EINK_DC, INPUT);
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Reference in New Issue
Block a user