0608fbff29
Use PPA so that we don't have to rebuild uncrustify from source, speeding up the job. This also requires not running this test on arm64.
331 lines
14 KiB
YAML
331 lines
14 KiB
YAML
# global options
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dist: xenial
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language:
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- c
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compiler:
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- gcc
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cache:
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directories:
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- "${HOME}/persist"
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env:
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global:
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- MAKEOPTS="-j4"
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git:
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submodules: false
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# define the successive stages
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stages:
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- name: test
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# define the jobs for the stages
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# approx order of the jobs has longest running first to optimise total time
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jobs:
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include:
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# check code formatting
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- stage: test
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os: linux
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dist: bionic
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env: NAME="code formatting"
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before_install:
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- sudo apt-add-repository --yes --update ppa:pybricks/ppa
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install:
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- sudo apt-get install uncrustify python3-pip
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- uncrustify --version
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- pip3 install --user black
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- black --version
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script:
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- tools/codeformat.py
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- git diff --exit-code
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# stm32 port
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- stage: test
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env: NAME="stm32 port build"
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install:
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# need newer gcc version for Cortex-M7 support
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- sudo add-apt-repository -y ppa:team-gcc-arm-embedded/ppa
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- sudo apt-get update -qq || true
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- sudo apt-get install gcc-arm-embedded
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- sudo apt-get install libnewlib-arm-none-eabi
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- arm-none-eabi-gcc --version
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script:
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- make ${MAKEOPTS} -C mpy-cross
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- make ${MAKEOPTS} -C ports/stm32 submodules
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- git submodule update --init lib/btstack
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- make ${MAKEOPTS} -C ports/stm32 BOARD=NUCLEO_F091RC
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- make ${MAKEOPTS} -C ports/stm32 BOARD=PYBV11 MICROPY_PY_WIZNET5K=5200 MICROPY_PY_CC3K=1
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- make ${MAKEOPTS} -C ports/stm32 BOARD=PYBD_SF2
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- make ${MAKEOPTS} -C ports/stm32 BOARD=PYBD_SF6 NANBOX=1 MICROPY_BLUETOOTH_NIMBLE=0 MICROPY_BLUETOOTH_BTSTACK=1
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- make ${MAKEOPTS} -C ports/stm32 BOARD=NUCLEO_H743ZI CFLAGS_EXTRA='-DMICROPY_PY_THREAD=1'
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- make ${MAKEOPTS} -C ports/stm32 BOARD=B_L072Z_LRWAN1
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- make ${MAKEOPTS} -C ports/stm32 BOARD=STM32L476DISC
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- make ${MAKEOPTS} -C ports/stm32 BOARD=NUCLEO_WB55
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- make ${MAKEOPTS} -C ports/stm32/mboot BOARD=PYBD_SF6
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# qemu-arm port
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- stage: test
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dist: bionic # needed for more recent version of qemu-system-arm with mps2-an385 target
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env: NAME="qemu-arm port build and tests"
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install:
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- sudo apt-get install gcc-arm-none-eabi
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- sudo apt-get install libnewlib-arm-none-eabi
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- sudo apt-get install qemu-system
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- arm-none-eabi-gcc --version
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- qemu-system-arm --version
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script:
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- make ${MAKEOPTS} -C mpy-cross
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- make ${MAKEOPTS} -C ports/qemu-arm -f Makefile.test test
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after_failure:
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- grep "FAIL" ports/qemu-arm/build/console.out
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# unix coverage
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- stage: test
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env: NAME="unix coverage build and tests"
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install:
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- sudo apt-get install python3-pip
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- sudo pip install cpp-coveralls
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- sudo pip3 install setuptools
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- sudo pip3 install pyelftools
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- gcc --version
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- python3 --version
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script:
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- make ${MAKEOPTS} -C mpy-cross
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- make ${MAKEOPTS} -C ports/unix submodules
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- make ${MAKEOPTS} -C ports/unix deplibs
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- make ${MAKEOPTS} -C ports/unix VARIANT=coverage
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# run the main test suite
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- make -C ports/unix VARIANT=coverage test_full
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- (cd tests && MICROPY_CPYTHON3=python3 MICROPY_MICROPYTHON=../ports/unix/micropython-coverage ./run-multitests.py multi_net/*.py)
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# test building native mpy modules
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- make -C examples/natmod/features1 ARCH=x64
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- make -C examples/natmod/features2 ARCH=x64
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- make -C examples/natmod/btree ARCH=x64
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- make -C examples/natmod/framebuf ARCH=x64
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- make -C examples/natmod/uheapq ARCH=x64
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- make -C examples/natmod/urandom ARCH=x64
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- make -C examples/natmod/ure ARCH=x64
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- make -C examples/natmod/uzlib ARCH=x64
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# test importing .mpy generated by mpy_ld.py
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- MICROPYPATH=examples/natmod/features2 ./ports/unix/micropython-coverage -m features2
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- (cd tests && ./run-natmodtests.py extmod/{btree*,framebuf*,uheapq*,ure*,uzlib*}.py)
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# run coveralls coverage analysis (try to, even if some builds/tests failed)
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- (cd ports/unix && coveralls --root ../.. --build-root . --gcov $(which gcov) --gcov-options '\-o build-coverage/' --include py --include extmod)
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after_failure:
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- (cd tests && for exp in *.exp; do testbase=$(basename $exp .exp); echo -e "\nFAILURE $testbase"; diff -u $testbase.exp $testbase.out; done)
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# unix coverage 32-bit
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- stage: test
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env: NAME="unix coverage 32-bit build and tests"
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install:
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- sudo apt-get install gcc-multilib libffi-dev:i386
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- sudo apt-get install python3-pip
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- sudo pip3 install setuptools
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- sudo pip3 install pyelftools
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- gcc --version
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- python3 --version
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script:
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- make ${MAKEOPTS} -C mpy-cross
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- make ${MAKEOPTS} -C ports/unix MICROPY_FORCE_32BIT=1 submodules
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- make ${MAKEOPTS} -C ports/unix MICROPY_FORCE_32BIT=1 deplibs
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- make ${MAKEOPTS} -C ports/unix MICROPY_FORCE_32BIT=1 VARIANT=coverage
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# run the main test suite
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- make -C ports/unix MICROPY_FORCE_32BIT=1 VARIANT=coverage test_full
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# test building native mpy modules
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- make -C examples/natmod/features1 ARCH=x86
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- make -C examples/natmod/features2 ARCH=x86
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- make -C examples/natmod/btree ARCH=x86
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- make -C examples/natmod/framebuf ARCH=x86
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- make -C examples/natmod/uheapq ARCH=x86
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- make -C examples/natmod/urandom ARCH=x86
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- make -C examples/natmod/ure ARCH=x86
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- make -C examples/natmod/uzlib ARCH=x86
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# test importing .mpy generated by mpy_ld.py
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- MICROPYPATH=examples/natmod/features2 ./ports/unix/micropython-coverage -m features2
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- (cd tests && ./run-natmodtests.py --arch x86 extmod/{btree*,framebuf*,uheapq*,ure*,uzlib*}.py)
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after_failure:
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- (cd tests && for exp in *.exp; do testbase=$(basename $exp .exp); echo -e "\nFAILURE $testbase"; diff -u $testbase.exp $testbase.out; done)
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# standard unix port
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- stage: test
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env: NAME="unix port build and tests"
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script:
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- make ${MAKEOPTS} -C mpy-cross
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- make ${MAKEOPTS} -C ports/unix submodules
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- make ${MAKEOPTS} -C ports/unix deplibs
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- make ${MAKEOPTS} -C ports/unix
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- make ${MAKEOPTS} -C ports/unix test
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- (cd tests && MICROPY_CPYTHON3=python3 MICROPY_MICROPYTHON=../ports/unix/micropython ./run-perfbench.py 1000 1000)
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# unix nanbox (and using Python 2 to check it can run the build scripts)
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- stage: test
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env: NAME="unix nanbox port build and tests"
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install:
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- sudo apt-get install gcc-multilib libffi-dev:i386
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script:
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- make ${MAKEOPTS} -C mpy-cross PYTHON=python2
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- make ${MAKEOPTS} -C ports/unix submodules
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- make ${MAKEOPTS} -C ports/unix PYTHON=python2 deplibs
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- make ${MAKEOPTS} -C ports/unix PYTHON=python2 VARIANT=nanbox
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- make ${MAKEOPTS} -C ports/unix PYTHON=python2 VARIANT=nanbox test_full
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# unix stackless
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- stage: test
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env: NAME="unix stackless port build and tests with clang"
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install:
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- sudo apt-get install clang
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script:
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- make ${MAKEOPTS} -C mpy-cross CC=clang
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- make ${MAKEOPTS} -C ports/unix submodules
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- make ${MAKEOPTS} -C ports/unix CC=clang CFLAGS_EXTRA="-DMICROPY_STACKLESS=1 -DMICROPY_STACKLESS_STRICT=1"
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- make ${MAKEOPTS} -C ports/unix CC=clang test
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# unix with sys.settrace
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- stage: test
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env: NAME="unix port with sys.settrace build and tests"
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script:
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- make ${MAKEOPTS} -C mpy-cross
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- make ${MAKEOPTS} -C ports/unix MICROPY_PY_BTREE=0 MICROPY_PY_FFI=0 MICROPY_PY_USSL=0 CFLAGS_EXTRA="-DMICROPY_PY_SYS_SETTRACE=1" test
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- make ${MAKEOPTS} -C ports/unix clean
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- make ${MAKEOPTS} -C ports/unix MICROPY_PY_BTREE=0 MICROPY_PY_FFI=0 MICROPY_PY_USSL=0 CFLAGS_EXTRA="-DMICROPY_STACKLESS=1 -DMICROPY_STACKLESS_STRICT=1 -DMICROPY_PY_SYS_SETTRACE=1" test
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after_failure:
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- (cd tests && for exp in *.exp; do testbase=$(basename $exp .exp); echo -e "\nFAILURE $testbase"; diff -u $testbase.exp $testbase.out; done)
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# minimal unix port with tests
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- stage: test
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env: NAME="minimal unix port build and tests"
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script:
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- make ${MAKEOPTS} -C ports/unix VARIANT=minimal
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- (cd tests && MICROPY_CPYTHON3=python3 MICROPY_MICROPYTHON=../ports/unix/micropython-minimal ./run-tests -e exception_chain -e self_type_check -e subclass_native_init -d basics)
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# unix port on OSX
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- stage: test
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os: osx
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osx_image: xcode11.3
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env:
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- NAME="unix port build with clang on OSX"
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- PKG_CONFIG_PATH=/usr/local/opt/libffi/lib/pkgconfig
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install:
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- brew install pkgconfig
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script:
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- make ${MAKEOPTS} -C mpy-cross
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- make ${MAKEOPTS} -C ports/unix submodules
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- make ${MAKEOPTS} -C ports/unix deplibs
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- make ${MAKEOPTS} -C ports/unix
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# OSX has poor time resolution and the following tests do not have the correct output
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- (cd tests && ./run-tests --exclude 'uasyncio_(basic|heaplock|lock|wait_task)')
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after_failure:
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- (cd tests && for exp in *.exp; do testbase=$(basename $exp .exp); echo -e "\nFAILURE $testbase"; diff -u $testbase.exp $testbase.out; done)
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# windows port via mingw
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- stage: test
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env: NAME="windows port build via mingw"
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install:
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- sudo apt-get install gcc-mingw-w64
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script:
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- make ${MAKEOPTS} -C mpy-cross
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- make ${MAKEOPTS} -C ports/windows CROSS_COMPILE=i686-w64-mingw32-
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# esp32 port
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- stage: test
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env: NAME="esp32 port build"
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install:
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- sudo apt-get install python3-pip
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- sudo pip3 install 'pyparsing<2.4'
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- wget https://dl.espressif.com/dl/xtensa-esp32-elf-linux64-1.22.0-80-g6c4433a-5.2.0.tar.gz
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- zcat xtensa-esp32-elf-linux64-1.22.0-80-g6c4433a-5.2.0.tar.gz | tar x
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- export PATH=$(pwd)/xtensa-esp32-elf/bin:$PATH
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- git clone https://github.com/espressif/esp-idf.git
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- export IDF_PATH=$(pwd)/esp-idf
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script:
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- make ${MAKEOPTS} -C mpy-cross
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# IDF v3 build
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- git -C esp-idf checkout $(grep "ESPIDF_SUPHASH_V3 :=" ports/esp32/Makefile | cut -d " " -f 3)
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- git -C esp-idf submodule update --init components/json/cJSON components/esp32/lib components/esptool_py/esptool components/expat/expat components/lwip/lwip components/mbedtls/mbedtls components/micro-ecc/micro-ecc components/nghttp/nghttp2 components/nimble components/bt
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- make ${MAKEOPTS} -C ports/esp32 submodules
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- make ${MAKEOPTS} -C ports/esp32
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# clean
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- git -C esp-idf clean -f -f -d components/json/cJSON components/esp32/lib components/expat/expat components/micro-ecc/micro-ecc components/nghttp/nghttp2
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- make ${MAKEOPTS} -C ports/esp32 clean
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# IDF v4 build
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- git -C esp-idf checkout $(grep "ESPIDF_SUPHASH_V4 :=" ports/esp32/Makefile | cut -d " " -f 3)
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- git -C esp-idf submodule update --init components/bt/controller/lib components/bt/host/nimble/nimble components/esp_wifi/lib_esp32 components/esptool_py/esptool components/lwip/lwip components/mbedtls/mbedtls
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- make ${MAKEOPTS} -C ports/esp32 submodules
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- make ${MAKEOPTS} -C ports/esp32
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# esp8266 port
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- stage: test
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env: NAME="esp8266 port build"
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install:
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- wget https://github.com/jepler/esp-open-sdk/releases/download/2018-06-10/xtensa-lx106-elf-standalone.tar.gz
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- zcat xtensa-lx106-elf-standalone.tar.gz | tar x
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- export PATH=$(pwd)/xtensa-lx106-elf/bin:$PATH
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script:
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- make ${MAKEOPTS} -C mpy-cross
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- make ${MAKEOPTS} -C ports/esp8266 submodules
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- make ${MAKEOPTS} -C ports/esp8266
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- make ${MAKEOPTS} -C ports/esp8266 BOARD=GENERIC_512K
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# nrf port
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- stage: test
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env: NAME="nrf port build"
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install:
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- sudo apt-get install gcc-arm-none-eabi
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- sudo apt-get install libnewlib-arm-none-eabi
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- arm-none-eabi-gcc --version
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script:
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- make ${MAKEOPTS} -C ports/nrf submodules
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- make ${MAKEOPTS} -C ports/nrf
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# bare-arm and minimal ports
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- stage: test
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env: NAME="bare-arm and minimal ports build"
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install:
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- sudo apt-get install gcc-arm-none-eabi
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- sudo apt-get install libnewlib-arm-none-eabi
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- arm-none-eabi-gcc --version
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script:
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- make ${MAKEOPTS} -C ports/bare-arm
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- make ${MAKEOPTS} -C ports/minimal CROSS=1 build/firmware.bin
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- ls -l ports/minimal/build/firmware.bin
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- tools/check_code_size.sh
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- mkdir -p ${HOME}/persist
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# Save new firmware for reference, but only if building a main branch, not a pull request
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- 'if [ "$TRAVIS_PULL_REQUEST" = "false" ]; then cp ports/minimal/build/firmware.bin ${HOME}/persist/; fi'
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# cc3200 port
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- stage: test
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env: NAME="cc3200 port build"
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install:
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- sudo apt-get install gcc-arm-none-eabi
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- sudo apt-get install libnewlib-arm-none-eabi
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script:
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- make ${MAKEOPTS} -C ports/cc3200 BTARGET=application BTYPE=release
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- make ${MAKEOPTS} -C ports/cc3200 BTARGET=bootloader BTYPE=release
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# samd port
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- stage: test
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env: NAME="samd port build"
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install:
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- sudo apt-get install gcc-arm-none-eabi
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- sudo apt-get install libnewlib-arm-none-eabi
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script:
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- make ${MAKEOPTS} -C ports/samd submodules
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- make ${MAKEOPTS} -C ports/samd
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# teensy port
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- stage: test
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env: NAME="teensy port build"
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install:
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- sudo apt-get install gcc-arm-none-eabi
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- sudo apt-get install libnewlib-arm-none-eabi
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script:
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- make ${MAKEOPTS} -C ports/teensy
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# powerpc port
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- stage: test
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env: NAME="powerpc port build"
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install:
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- sudo apt-get install gcc-powerpc64le-linux-gnu
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- sudo apt-get install libc6-dev-ppc64el-cross
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script:
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- make ${MAKEOPTS} -C ports/powerpc CROSS_COMPILE=powerpc64le-linux-gnu-
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