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* Remove proprietary Bosch BSEC blob; open in-tree IAQ estimator for BME680 BSEC2 cost ~37-39 KB flash and ~4-5 KB static RAM on ~190 of ~240 build targets, linked whether or not a BME680 was attached, and was a no-source proprietary archive inside GPLv3 release binaries. The firmware consumed exactly one BSEC-exclusive output: the IAQ value. - New BME680IaqEstimator: clean-room log-domain baseline tracker (humidity-compensated gas resistance vs a rise-fast/decay-slow ceiling, 0-500 scale matching the existing UI bands), pure math, unit-tested on native (test_bme680_iaq, 15 tests incl. a deep-sleep reboot simulation). Warm-up/burn-in progress persists to /prefs/bme680.dat via SafeFile so one-sample-per-wake SENSOR nodes converge across reboots; stale /prefs/bsec.dat is removed once. - BME680Sensor: single-path rewrite on Adafruit_BME680 with async once-per-minute sampling (~20x lower heater duty than BSEC LP mode), a hard 2-minute publish-freshness bound (a dead sensor stops reporting instead of freezing its last reading on the wire), and suppression of bogus gas_resistance=0 points from heater-unstable cycles. - platformio.ini: environmental_extra_common/_extra/_no_bsec collapsed into one section; Bosch BSEC2 + BME68x deps deleted; per-variant BSEC link-path hacks and the TEMPORARY promicro lib_ignore removed. nrf52_promicro_diy_tcxo regains BME680 support at 36 KB clear of the warm-store cap; rak4631 lands at 75 KB clear. - EnvironmentTelemetry: iaq rendering gates on has_iaq (a genuine IAQ of 0 now displays); stale BSEC comments rewritten. - rak4631 size budgets tightened (113000->108000 RAM, 786000->746000 flash) to lock in the reclaimed headroom. - bin/bme680_iaq_replay.cpp: host-side replay harness for tuning the estimator against captured BSEC traces (mean abs error + band agreement), no reflashing needed. Measured (develop -> this branch): rak4631 -38.8 KB flash / -4.9 KB RAM; heltec-v3 -36.4 KB / -4.0 KB; tlora-v2-1-1_6 +1.3 KB (its IAQ approximation had been dead code since #9663 due to an inverted isfinite check and now actually runs). Note: gas_resistance stays kOhm on the wire for fleet compatibility; the proto comment claiming MOhm gets a separate meshtastic/protobufs docs PR. * Address CodeRabbit review feedback - Use Throttle::isWithinTimespanMs for all elapsed-time predicates in BME680Sensor per coding guidelines (deadline math for the async reading completion stays raw, as it targets an absolute timestamp) - Make the state file name members static constexpr - Replay tool: cast uint16_t before %u (default argument promotion), report malformed input lines instead of silently skipping, and fail non-zero on stream read errors * Address CodeRabbit nitpicks - Replace the local clampf helper with std::clamp (meshUtils.h's clamp drags in Arduino.h, which would break the estimator's standalone host build that the replay harness depends on) - Trim the replay tool's file header to a two-line summary; the full build, capture, and tuning workflow moves to docs/bme680_iaq_replay.md
28 lines
987 B
INI
28 lines
987 B
INI
[env:thinknode_m3]
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custom_meshtastic_support_level = 1
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custom_meshtastic_images = thinknode_m3.svg
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custom_meshtastic_tags = Elecrow
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extends = nrf52840_base
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board_level = release
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board = ThinkNode-M3
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debug_tool = jlink
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custom_meshtastic_hw_model = 115
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custom_meshtastic_hw_model_slug = THINKNODE_M3
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custom_meshtastic_architecture = nrf52840
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custom_meshtastic_display_name = Elecrow ThinkNode M3
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custom_meshtastic_actively_supported = true
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build_flags =
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${nrf52840_base.build_flags}
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-Ivariants/nrf52840/ELECROW-ThinkNode-M3
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-DELECROW_ThinkNode_M3
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-DGPS_POWER_TOGGLE
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-D CONFIG_NFCT_PINS_AS_GPIOS=1
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build_src_filter = ${nrf52_base.build_src_filter} +<../variants/nrf52840/ELECROW-ThinkNode-M3>
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lib_deps =
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${nrf52840_base.lib_deps}
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# renovate: datasource=custom.pio depName=nRF52_PWM packageName=khoih-prog/library/nRF52_PWM
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khoih-prog/nRF52_PWM@1.0.1
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# renovate: datasource=custom.pio depName=SensorLib packageName=lewisxhe/library/SensorLib
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lewisxhe/SensorLib@0.3.4
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