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https://github.com/DarkFlippers/unleashed-firmware.git
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9bfb641d3e
* Makefile: unit tests pack * RFID: pulse joiner and its unit test * Move pulse protocol helpers to appropriate place * Drop pulse_joiner tests * Generic protocol, protocols dictionary, unit test * Protocol dict unit test * iButton: protocols dictionary * Lib: varint * Lib: profiler * Unit test: varint * rfid: worker mockup * LFRFID: em4100 unit test * Storage: file_exist function * rfid: fsk osc * rfid: generic fsk demodulator * rfid: protocol em4100 * rfid: protocol h10301 * rfid: protocol io prox xsf * Unit test: rfid protocols * rfid: new hal * rfid: raw worker * Unit test: fix error output * rfid: worker * rfid: plain c cli * fw: migrate to scons * lfrfid: full io prox support * unit test: io prox protocol * SubGHZ: move bit defines to source * FSK oscillator: level duration compability * libs: bit manipulation library * lfrfid: ioprox protocol, use bit library and new level duration method of FSK ocillator * bit lib: unit tests * Bit lib: parity tests, remove every nth bit, copy bits * Lfrfid: awid protocol * bit lib: uint16 and uint32 getters, unit tests * lfrfid: FDX-B read, draft version * Minunit: better memeq assert * bit lib: reverse, print, print regions * Protocol dict: get protocol features, get protocol validate count * lfrfid worker: improved read * lfrfid raw worker: psk support * Cli: rfid plain C cli * protocol AWID: render * protocol em4100: render * protocol h10301: render * protocol indala26: support every indala 26 scramble * Protocol IO Prox: render * Protocol FDX-B: advanced read * lfrfid: remove unused test function * lfrfid: fix os primitives * bit lib: crc16 and unit tests * FDX-B: save data * lfrfid worker: increase stream size. Alloc raw worker only when needed. * lfrfid: indala26 emulation * lfrfid: prepare to write * lfrfid: fdx-b emulation * lfrfid: awid, ioprox write * lfrfid: write t55xx w\o validation * lfrfid: better t55xx block0 handling * lfrfid: use new t5577 functions in worker * lfrfid: improve protocol description * lfrfid: write and verify * lfrfid: delete cpp cli * lfrfid: improve worker usage * lfrfid-app: step to new worker * lfrfid: old indala (I40134) load fallback * lfrfid: indala26, recover wrong synced data * lfrfid: remove old worker * lfrfid app: dummy read screen * lfrfid app: less dummy read screen * lfrfid: generic 96-bit HID protocol (covers up to HID 37-bit) * rename * lfrfid: improve indala26 read * lfrfid: generic 192-bit HID protocol (covers all HID extended) * lfrfid: TODO about HID render * lfrfid: new protocol FDX-A * lfrfid-app: correct worker stop on exit * misc fixes * lfrfid: FDX-A and HID distinguishability has been fixed. * lfrfid: decode HID size header and render it (#1612) * lfrfid: rename HID96 and HID192 to HIDProx and HIDExt * lfrfid: extra actions scene * lfrfid: decode generic HID Proximity size lazily (#1618) * lib: stream of data buffers concept * lfrfid: raw file helper * lfrfid: changed raw worker api * lfrfid: packed varint pair * lfrfid: read stream speedup * lfrfid app: show read mode * Documentation * lfrfid app: raw read gui * lfrfid app: storage check for raw read * memleak fix * review fixes * lfrfid app: read blink color * lfrfid app: reset key name after read * review fixes * lfrfid app: fix copypasted text * review fixes * lfrfid: disable debug gpio * lfrfid: card detection events * lfrfid: change validation color from magenta to green * Update core_defines. * lfrfid: prefix fdx-b id by zeroes * lfrfid: parse up to 43-bit HID Proximity keys (#1640) * Fbt: downgrade toolchain and fix PS1 * lfrfid: fix unit tests * lfrfid app: remove printf * lfrfid: indala26, use bit 55 as data * lfrfid: indala26, better brief format * lfrfid: indala26, loading fallback * lfrfid: read timing tuning Co-authored-by: James Ide <ide@users.noreply.github.com> Co-authored-by: あく <alleteam@gmail.com>
268 lines
6.9 KiB
Plaintext
268 lines
6.9 KiB
Plaintext
Import("ENV", "fw_build_meta")
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import os
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from fbt.util import (
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should_gen_cdb_and_link_dir,
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link_elf_dir_as_latest,
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)
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# Building initial C environment for libs
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env = ENV.Clone(
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tools=[
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("compilation_db", {"COMPILATIONDB_COMSTR": "\tCDB\t${TARGET}"}),
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"fwbin",
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"fbt_apps",
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],
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COMPILATIONDB_USE_ABSPATH=False,
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BUILD_DIR=fw_build_meta["build_dir"],
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IS_BASE_FIRMWARE=fw_build_meta["type"] == "firmware",
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FW_FLAVOR=fw_build_meta["flavor"],
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PLUGIN_ELF_DIR="${BUILD_DIR}",
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LIB_DIST_DIR="${BUILD_DIR}/lib",
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LINT_SOURCES=[
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"applications",
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],
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LIBPATH=[
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"${LIB_DIST_DIR}",
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],
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CPPPATH=[
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"#/furi",
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"#/applications",
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"#/firmware/targets/f${TARGET_HW}/ble_glue",
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"#/firmware/targets/f${TARGET_HW}/fatfs",
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"#/firmware/targets/f${TARGET_HW}/furi_hal",
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"#/firmware/targets/f${TARGET_HW}/Inc",
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"#/firmware/targets/furi_hal_include",
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],
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# Specific flags for building libraries - always do optimized builds
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FW_LIB_OPTS={
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"Default": {
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"CCFLAGS": [
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"-Os",
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],
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"CPPDEFINES": [
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"NDEBUG",
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"FURI_NDEBUG",
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],
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# You can add other entries named after libraries
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# If they are present, they have precedence over Default
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},
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# for furi_check to respect build type
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"furi": {
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"CCFLAGS": [
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"-Os",
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],
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"CPPDEFINES": [
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"NDEBUG",
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"FURI_DEBUG" if ENV["DEBUG"] else "FURI_NDEBUG",
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],
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},
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},
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)
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def ApplyLibFlags(env):
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flags_to_apply = env["FW_LIB_OPTS"].get(
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env.get("FW_LIB_NAME"),
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env["FW_LIB_OPTS"]["Default"],
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)
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# print("Flags for ", env.get("FW_LIB_NAME", "Default"), flags_to_apply)
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env.MergeFlags(flags_to_apply)
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env.AddMethod(ApplyLibFlags)
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Export("env")
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if not env["VERBOSE"]:
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env.SetDefault(
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HEXCOMSTR="\tHEX\t${TARGET}",
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BINCOMSTR="\tBIN\t${TARGET}",
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DFUCOMSTR="\tDFU\t${TARGET}",
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)
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if env["IS_BASE_FIRMWARE"]:
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env.Append(
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FIRMWARE_BUILD_CFG="firmware",
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RAM_EXEC=False,
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)
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else:
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env.Append(
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FIRMWARE_BUILD_CFG="updater",
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RAM_EXEC=True,
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CPPDEFINES=[
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"FURI_RAM_EXEC",
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],
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)
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# Invoke child SConscripts to populate global `env` + build their own part of the code
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lib_targets = env.BuildModules(
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[
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"lib",
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"assets",
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"firmware",
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"furi",
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],
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)
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# Now, env is fully set up with everything to build apps
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fwenv = env.Clone()
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# Set up additional app-specific build flags
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SConscript("site_scons/firmwareopts.scons", exports={"ENV": fwenv})
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# Set up app configuration
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if env["IS_BASE_FIRMWARE"]:
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fwenv.Append(APPS=fwenv["FIRMWARE_APPS"].get(fwenv.subst("$FIRMWARE_APP_SET")))
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else:
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fwenv.Append(APPS=["updater"])
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if extra_int_apps := GetOption("extra_int_apps"):
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fwenv.Append(APPS=extra_int_apps.split(","))
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fwenv.LoadApplicationManifests()
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fwenv.PrepareApplicationsBuild()
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# Build external apps
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extapps = SConscript("applications/extapps.scons", exports={"ENV": fwenv})
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# Add preprocessor definitions for current set of apps
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fwenv.AppendUnique(
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CPPDEFINES=fwenv["APPBUILD"].get_apps_cdefs(),
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)
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# Build applications.c for selected services & apps
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# Depends on virtual value-only node, so it only gets rebuilt when set of apps changes
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apps_c = fwenv.ApplicationsC(
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"applications/applications.c",
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[Value(fwenv["APPS"]), Value(fwenv["LOADER_AUTOSTART"])],
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)
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# Adding dependency on manifest files so apps.c is rebuilt when any manifest is changed
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fwenv.Depends(apps_c, fwenv.GlobRecursive("*.fam", "#/applications"))
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sources = [apps_c]
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# Gather sources only from app folders in current configuration
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for app_folder in fwenv["APPBUILD"].get_builtin_app_folders():
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sources += fwenv.GlobRecursive("*.c*", os.path.join("applications", app_folder))
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fwenv.AppendUnique(
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LINKFLAGS=[
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"-specs=nano.specs",
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"-specs=nosys.specs",
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"-Wl,--start-group",
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"-lstdc++",
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"-lsupc++",
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"-Wl,--end-group",
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"-Wl,--gc-sections",
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"-Wl,--undefined=uxTopUsedPriority",
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"-Wl,--wrap,_malloc_r",
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"-Wl,--wrap,_free_r",
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"-Wl,--wrap,_calloc_r",
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"-Wl,--wrap,_realloc_r",
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"-n",
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"-Xlinker",
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"-Map=${TARGET}.map",
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],
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)
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# Debug
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# print(fwenv.Dump())
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# Full firmware definition
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fwelf = fwenv["FW_ELF"] = fwenv.Program(
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"${FIRMWARE_BUILD_CFG}",
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sources,
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LIBS=[
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"print",
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"flipper${TARGET_HW}",
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"furi",
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"freertos",
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"stm32cubewb",
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"hwdrivers",
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"fatfs",
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"littlefs",
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"subghz",
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"flipperformat",
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"toolbox",
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"nfc",
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"microtar",
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"usb_stm32",
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"st25rfal002",
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"infrared",
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"appframe",
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"assets",
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"misc",
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"mbedtls",
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"loclass",
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"lfrfid",
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# 2nd round
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"flipperformat",
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"toolbox",
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],
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)
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# Firmware depends on everything child builders returned
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Depends(fwelf, lib_targets)
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# Output extra details after building firmware
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AddPostAction(fwelf, fwenv["APPBUILD_DUMP"])
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AddPostAction(
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fwelf,
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Action('${PYTHON3} "${ROOT_DIR}/scripts/fwsize.py" elf ${TARGET}', "Firmware size"),
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)
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# Produce extra firmware files
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fwhex = fwenv["FW_HEX"] = fwenv.HEXBuilder("${FIRMWARE_BUILD_CFG}")
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fwbin = fwenv["FW_BIN"] = fwenv.BINBuilder("${FIRMWARE_BUILD_CFG}")
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AddPostAction(
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fwbin,
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Action('@${PYTHON3} "${ROOT_DIR}/scripts/fwsize.py" bin ${TARGET}'),
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)
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fwdfu = fwenv["FW_DFU"] = fwenv.DFUBuilder("${FIRMWARE_BUILD_CFG}")
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Alias(fwenv["FIRMWARE_BUILD_CFG"] + "_dfu", fwdfu)
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fwdump = fwenv.ObjDump("${FIRMWARE_BUILD_CFG}")
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Alias(fwenv["FIRMWARE_BUILD_CFG"] + "_list", fwdump)
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fw_artifacts = fwenv["FW_ARTIFACTS"] = [
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fwhex,
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fwbin,
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fwdfu,
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fwenv["FW_VERSION_JSON"],
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]
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# If current configuration was explicitly requested, generate compilation database
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# and link its directory as build/latest
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if should_gen_cdb_and_link_dir(fwenv, BUILD_TARGETS):
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fwcdb = fwenv.CompilationDatabase()
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# without filtering, both updater & firmware commands would be generated
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fwenv.Replace(COMPILATIONDB_PATH_FILTER=fwenv.subst("*${FW_FLAVOR}*"))
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AlwaysBuild(fwcdb)
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Precious(fwcdb)
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NoClean(fwcdb)
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Alias(fwenv["FIRMWARE_BUILD_CFG"] + "_cdb", fwcdb)
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fw_artifacts.append(fwcdb)
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# Adding as a phony target, so folder link is updated even if elf didn't change
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link_dir_command = fwenv.PhonyTarget(
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fwenv.subst("${FIRMWARE_BUILD_CFG}_latest"),
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Action(
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lambda source, target, env: link_elf_dir_as_latest(env, source[0]),
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None,
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),
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source=fwelf,
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)
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fw_artifacts.append(link_dir_command)
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Alias(fwenv["FIRMWARE_BUILD_CFG"] + "_all", fw_artifacts)
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Return("fwenv")
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