Files
OrcaSlicer/build_linux.sh
ExPikaPaka 5ed56eb876 Cache system presets to eliminate startup and wizard load times (#14217)
* Add caching system for presets

* Removing user\bundle serialization and keeping it only for system presets

* Integrate caching into WebGuideDialog which speeds up time of SetupWizzard and PrinterSelection dialog

* Add CI\CD step to prepare cache file in ahead of time so user does not need to wait

* Add partial cache generation when only one of the vendros is changed to speed up recalculation time

* Handle corrupted files

* Add cache to GuideDialog as previos version didn't work as expected

* Add inspecting tool and fix CI cache generation

* Generate cache per vendor

* Simplify code by mergin it in PresetBundle

* Simplify code a bit more

* Add cereal serialize() to VendorProfile, PrinterModel, Preset, and Semver

* Remove CachedPrinterModel/VendorProfile/Preset mirror structs from VendorCache

* Fix use-after-free in CallAfter lambda; replace raw thread pointer with unique_ptr

* Use get_vendor_cache_key() to match cache keys written by the app

* Remove BOM added by VSC

* Skip invalid vendors

* Remove leftover cache file

* Fix build for windows arm64

* Revert json cache back

* Update check for stale cache

* Serealize all value fields for Preset class to minimize regression later

* Minimize field duplication by moving Cache thing into PresetBundle

* Add tests for Cache system

* Add a bit more tests

* Merge branch 'main' into feature/cache_profiles_and_optimize_loading_speed

* Rvert from per-verndor to single cache file

Replace N per-vendor .cache files with a single system_presets.cache
that holds all vendors and presets in one serialized blob.

Cache load is now all-or-nothing: on hit all vendors are applied from
the bundle (sub-second); on miss all vendors are parsed from JSON and
a fresh bundle is written to the user cache dir.

Invalidation is driven by bundle_key - a sorted concatenation of all
vendor JSON version strings. Any vendor update invalidates the whole
cache and triggers re-parse on next launch.

Guide wizard (WebGuideDialog) loads the bundled cache into a plain
PresetBundle instead of a separate VendorGuideData struct, removing
the duplicate data model.

generate_system_cache simplified from a per-vendor loop to a single
save_system_presets_cache() call producing one output file.

* Transfer all Preset fields from cache via move assignmet

apply_vendor_preset_group was copying fields manually and missed
bundle_id, user_id, base_id, sync_info, updated_time, key_values,
ini_str. Replace field-by-field copy with move assignment of the
fully-deserialized Preset, then restore the vendor pointer which
is excluded from serialization.

* Ignore cache for future

* Remove not used files

* Ship one preset cache per vendor in place of the profile JSONs

Each vendor's system presets serialize into a single <vendor>.opc built at
package time, and a shipped build carries that file alone — the profile JSON
and its sub-file tree are pruned. The vendor loader, the setup wizard's profile
list and the resource installer all read a vendor through its cache, falling
back to parsing whenever one is absent, stale or unreadable, so the cache stays
an optimization and never a source of truth. Caches hold presets in source form
and resolve inheritance at load, through the same code the JSON path uses.

* Make the preset cache self-describing and load each vendor from the system folder alone

The cached DynamicPrintConfig is keyed by name, through a per-file dictionary of the
distinct opt_keys, the type each was written as, and the distinct enum value names,
instead of by serialization_key_ordinal — a position assigned by declaration order at
static init, where inserting one option shifts every later ordinal and the lookup then
succeeds on the wrong option. Because a name-keyed payload drops the options this build
cannot place rather than being rejected wholesale, the schema fingerprint goes, and with
it the two fallbacks that existed only because an installed cache died on every app
upgrade: the second lookup tier into resources/profiles and the parse fallback to the
same place. A vendor is loaded from <data_dir>/system/ and nowhere else, as on main —
which is what makes the app write its .opc files there again.

* Simplify the preset cache internals after review

* Use the shared temp-dir helper in the preset bundle loading test

* Bound stamp string reads in the preset cache

* Speed up the setup wizard with a profile-data cache

The wizard's per-vendor fast path threw on vendors present only in
resources, falling back to a ~29 s raw JSON scan on every open. Each
vendor now loads from the directory it was found in, and the derived
model/machine/filament/process catalog is cached whole in
<data_dir>/cache/wizard_profile_data.json, stamped by each vendor's
name and version - a fresh cache makes an open one file read, with no
bundle built and no presets installed (~0.2 s vs ~2 s).

* Remove debug SVG dump from a geometry test

* Move the per-vendor cache file format into PresetCacheFormat

* Move the vendor install helpers from PresetBundle into Utils

* rename

* fix flatpak

* change cache version to 1

---------

Co-authored-by: SoftFever <softfeverever@gmail.com>
2026-08-21 16:56:52 +08:00

600 lines
19 KiB
Bash
Executable File

#!/usr/bin/env bash
set -e # Exit immediately if a command exits with a non-zero status.
SECONDS=0
SCRIPT_NAME=$(basename "$0")
SCRIPT_PATH=$(dirname "$(readlink -f "${0}")")
pushd "${SCRIPT_PATH}" > /dev/null
function usage() {
echo "Usage: ./${SCRIPT_NAME} [-1][-b][-c][-d][-D][-e][-F][-g][-h][-i][-j N][-p][-r][-s][-t][-u][-l][-L]"
echo " -1: limit builds to one core (where possible)"
echo " -j N: limit builds to N cores (where possible)"
echo " -b: build in Debug mode"
echo " -c: force a clean build"
echo " -C: enable ANSI-colored compile output (GNU/Clang only)"
echo " -d: download and build dependencies in ./deps/ (build prerequisite)"
echo " -D: dry run"
echo " -e: build in RelWithDebInfo mode"
echo " -F: rebuild the cached Docker/Podman runner image from scratch when used with -g"
echo " -g: run the requested build steps inside a Docker/Podman Ubuntu 24.04 container similar to the GitHub Actions Linux runner"
echo " -h: prints this help text"
echo " -i: build the Orca Slicer AppImage (optional)"
echo " -p: boost ccache hit rate by disabling precompiled headers (default: ON)"
echo " -r: skip RAM and disk checks (low RAM compiling)"
echo " -s: build the Orca Slicer (optional)"
echo " -t: build tests (optional), requires -s flag"
echo " -u: install system dependencies (asks for sudo password; build prerequisite)"
echo " -l: use Clang instead of GCC (default: GCC)"
echo " -L: use ld.lld as linker (if available)"
echo "For a first use, you want to './${SCRIPT_NAME} -u'"
echo " and then './${SCRIPT_NAME} -dsi'"
echo "For a GitHub Actions-like Linux build locally, use './${SCRIPT_NAME} -g -istrlL'"
echo "Use './${SCRIPT_NAME} -gF -istrlL' to rebuild the cached runner image first."
echo "Set ORCA_CONTAINER_CLI, ORCA_DOCKER_IMAGE, ORCA_DOCKER_BASE_IMAGE, or ORCA_DOCKER_CMAKE_VERSION to override the container runtime, cached image tag, base image, or CMake version."
}
SLIC3R_PRECOMPILED_HEADERS="ON"
unset name
BUILD_DIR=build
BUILD_CONFIG=Release
FORWARDED_ARGS=()
while getopts ":1j:bcCdDeFghiprstulL" opt ; do
case ${opt} in
1 )
export CMAKE_BUILD_PARALLEL_LEVEL=1
FORWARDED_ARGS+=("-1")
;;
j )
export CMAKE_BUILD_PARALLEL_LEVEL=$OPTARG
FORWARDED_ARGS+=("-j" "$OPTARG")
;;
b )
BUILD_DIR=build-dbg
BUILD_CONFIG=Debug
FORWARDED_ARGS+=("-b")
;;
c )
CLEAN_BUILD=1
FORWARDED_ARGS+=("-c")
;;
C )
COLORED_OUTPUT="-DCOLORED_OUTPUT=ON"
FORWARDED_ARGS+=("-C")
;;
d )
BUILD_DEPS="1"
FORWARDED_ARGS+=("-d")
;;
D )
DRY_RUN="1"
FORWARDED_ARGS+=("-D")
;;
e )
BUILD_DIR=build-dbginfo
BUILD_CONFIG=RelWithDebInfo
FORWARDED_ARGS+=("-e")
;;
F )
CLEAN_DOCKER_IMAGE="1"
;;
g )
USE_DOCKER="1"
;;
h ) usage
exit 1
;;
i )
BUILD_IMAGE="1"
FORWARDED_ARGS+=("-i")
;;
p )
SLIC3R_PRECOMPILED_HEADERS="OFF"
FORWARDED_ARGS+=("-p")
;;
r )
SKIP_RAM_CHECK="1"
FORWARDED_ARGS+=("-r")
;;
s )
BUILD_ORCA="1"
FORWARDED_ARGS+=("-s")
;;
t )
BUILD_TESTS="1"
FORWARDED_ARGS+=("-t")
;;
u )
export UPDATE_LIB="1"
FORWARDED_ARGS+=("-u")
;;
l )
USE_CLANG="1"
FORWARDED_ARGS+=("-l")
;;
L )
USE_LLD="1"
FORWARDED_ARGS+=("-L")
;;
* )
echo "Unknown argument '${opt}', aborting."
exit 1
;;
esac
done
if [ ${OPTIND} -eq 1 ] ; then
usage
exit 1
fi
if [[ -n "${CLEAN_DOCKER_IMAGE}" ]] && [[ -z "${USE_DOCKER}" ]] ; then
echo "Error: -F requires -g."
exit 1
fi
function check_available_memory_and_disk() {
FREE_MEM_GB=$(free --gibi --total | grep 'Mem' | rev | cut --delimiter=" " --fields=1 | rev)
MIN_MEM_GB=10
FREE_DISK_KB=$(df --block-size=1K . | tail -1 | awk '{print $4}')
MIN_DISK_KB=$((10 * 1024 * 1024))
if [[ ${FREE_MEM_GB} -le ${MIN_MEM_GB} ]] ; then
echo -e "\nERROR: Orca Slicer Builder requires at least ${MIN_MEM_GB}G of 'available' mem (system has only ${FREE_MEM_GB}G available)"
echo && free --human && echo
echo "Invoke with -r to skip RAM and disk checks."
exit 2
fi
if [[ ${FREE_DISK_KB} -le ${MIN_DISK_KB} ]] ; then
echo -e "\nERROR: Orca Slicer Builder requires at least $(echo "${MIN_DISK_KB}" |awk '{ printf "%.1fG\n", $1/1024/1024; }') (system has only $(echo "${FREE_DISK_KB}" | awk '{ printf "%.1fG\n", $1/1024/1024; }') disk free)"
echo && df --human-readable . && echo
echo "Invoke with -r to skip ram and disk checks."
exit 1
fi
}
function print_and_run() {
cmd=()
# Remove empty arguments, leading and trailing spaces
for item in "$@" ; do
if [[ -n $item ]]; then
cmd+=( "$(echo "${item}" | xargs)" )
fi
done
echo "${cmd[@]}"
if [[ -z "${DRY_RUN}" ]] ; then
"${cmd[@]}"
fi
}
function resolve_container_cli() {
if [[ -n "${ORCA_CONTAINER_CLI}" ]] ; then
if ! command -v "${ORCA_CONTAINER_CLI}" >/dev/null 2>&1 ; then
echo "Error: container runtime '${ORCA_CONTAINER_CLI}' was not found." >&2
exit 1
fi
echo "${ORCA_CONTAINER_CLI}"
return
fi
if command -v docker >/dev/null 2>&1 ; then
echo "docker"
return
fi
if command -v podman >/dev/null 2>&1 ; then
echo "podman"
return
fi
echo "Error: neither docker nor podman is available. Install one of them or set ORCA_CONTAINER_CLI." >&2
exit 1
}
function get_docker_runner_image() {
local base_image
local docker_cmake_version
local recipe_hash
local sanitized_base_image
local sanitized_cmake_version
if [[ -n "${ORCA_DOCKER_IMAGE}" ]] ; then
echo "${ORCA_DOCKER_IMAGE}"
return
fi
base_image="${ORCA_DOCKER_BASE_IMAGE:-ubuntu:24.04}"
docker_cmake_version="${ORCA_DOCKER_CMAKE_VERSION-4.3.0}"
recipe_hash=$(find "${SCRIPT_PATH}/build_linux.sh" "${SCRIPT_PATH}/scripts/linux.d" -type f -print0 | sort -z | xargs -0 cat | sha256sum | cut -c1-12)
sanitized_base_image=$(echo "${base_image}" | tr '/:@' '---' | tr -cs 'A-Za-z0-9_.-' '-')
sanitized_cmake_version=$(echo "${docker_cmake_version:-system}" | tr -cs 'A-Za-z0-9_.-' '-')
echo "orcaslicer-linux-builder:${sanitized_base_image}-cmake-${sanitized_cmake_version}-${recipe_hash}"
}
function docker_runner_dockerfile() {
cat <<'EOF'
ARG BASE_IMAGE=ubuntu:24.04
FROM ${BASE_IMAGE}
ARG CMAKE_VERSION=4.3.0
ENV DEBIAN_FRONTEND=noninteractive
SHELL ["/bin/bash", "-c"]
RUN apt-get update && apt-get install -y sudo ca-certificates curl tar
COPY build_linux.sh /tmp/orcaslicer/build_linux.sh
COPY scripts/linux.d /tmp/orcaslicer/scripts/linux.d
WORKDIR /tmp/orcaslicer
RUN chmod +x ./build_linux.sh
RUN ./build_linux.sh -ur
RUN if [[ -n "${CMAKE_VERSION}" ]] ; then \
case "$(uname -m)" in \
x86_64|amd64) cmake_arch="x86_64" ;; \
aarch64|arm64) cmake_arch="aarch64" ;; \
*) cmake_arch="" ;; \
esac ; \
if [[ -n "${cmake_arch}" ]] ; then \
cmake_root="/opt/cmake-${CMAKE_VERSION}-linux-${cmake_arch}" ; \
if ! curl -fsSL "https://github.com/Kitware/CMake/releases/download/v${CMAKE_VERSION}/cmake-${CMAKE_VERSION}-linux-${cmake_arch}.tar.gz" | tar -xz -C /opt ; then \
echo "Warning: failed to install CMake ${CMAKE_VERSION}; falling back to the distro cmake package." ; \
elif [[ -d "${cmake_root}" ]] ; then \
ln -sf "${cmake_root}/bin/"* /usr/local/bin/ ; \
fi ; \
else \
echo "Skipping GitHub Actions CMake install for unsupported architecture $(uname -m)." ; \
fi ; \
fi
RUN rm -rf /var/lib/apt/lists/* /tmp/orcaslicer
EOF
}
function ensure_docker_runner_image() {
local container_cli
local base_image
local runner_image
local docker_cmake_version
local image_exists="0"
local force_rebuild="0"
local -a build_cmd
container_cli="$1"
runner_image="$2"
base_image="${ORCA_DOCKER_BASE_IMAGE:-ubuntu:24.04}"
docker_cmake_version="${ORCA_DOCKER_CMAKE_VERSION-4.3.0}"
if "${container_cli}" image inspect "${runner_image}" >/dev/null 2>&1 ; then
image_exists="1"
fi
if [[ -n "${CLEAN_DOCKER_IMAGE}" ]] ; then
force_rebuild="1"
if [[ "${image_exists}" == "1" ]] ; then
echo "Removing cached container image ${runner_image} ..."
if [[ -z "${DRY_RUN}" ]] ; then
"${container_cli}" image rm -f "${runner_image}" >/dev/null
else
printf '%q ' "${container_cli}" image rm -f "${runner_image}"
echo
fi
image_exists="0"
fi
fi
if [[ "${image_exists}" == "1" ]] ; then
echo "Using cached container image ${runner_image}"
return
fi
build_cmd=(
"${container_cli}" build --pull
-t "${runner_image}"
--build-arg "BASE_IMAGE=${base_image}"
--build-arg "CMAKE_VERSION=${docker_cmake_version}"
)
if [[ "${force_rebuild}" == "1" ]] ; then
build_cmd+=(--no-cache)
fi
build_cmd+=(-f - "${SCRIPT_PATH}")
printf '%q ' "${build_cmd[@]}"
echo
if [[ -n "${DRY_RUN}" ]] ; then
return
fi
docker_runner_dockerfile | "${build_cmd[@]}"
}
function run_in_docker() {
local container_cli
local runner_image
local container_workspace
local host_uid
local host_gid
local host_user
local -a build_args
local -a container_env
container_cli=$(resolve_container_cli)
runner_image=$(get_docker_runner_image)
host_uid=$(id -u)
host_gid=$(id -g)
host_user="${USER:-orca}"
container_workspace="/__w/OrcaSlicer/OrcaSlicer"
build_args=()
for item in "${FORWARDED_ARGS[@]}" ; do
if [[ "${item}" == "-u" ]] || [[ "${item}" == "-D" ]] ; then
continue
fi
build_args+=("${item}")
done
container_env=(
-e "CI=true"
-e "GITHUB_ACTIONS=true"
-e "GITHUB_WORKSPACE=${container_workspace}"
-e "RUNNER_OS=Linux"
-e "RUNNER_TEMP=/tmp"
-e "HOST_UID=${host_uid}"
-e "HOST_GID=${host_gid}"
-e "HOST_USER=${host_user}"
)
if [[ -n "${CMAKE_BUILD_PARALLEL_LEVEL}" ]] ; then
container_env+=( -e "CMAKE_BUILD_PARALLEL_LEVEL=${CMAKE_BUILD_PARALLEL_LEVEL}" )
fi
if [[ -n "${ORCA_UPDATER_SIG_KEY}" ]] ; then
container_env+=( -e "ORCA_UPDATER_SIG_KEY=${ORCA_UPDATER_SIG_KEY}" )
fi
ensure_docker_runner_image "${container_cli}" "${runner_image}"
printf '%q ' "${container_cli}" run --rm -i \
-v "${SCRIPT_PATH}:${container_workspace}" \
-w "${container_workspace}" \
"${container_env[@]}" \
"${runner_image}" \
bash -s -- "${build_args[@]}"
echo
if [[ -n "${DRY_RUN}" ]] ; then
return
fi
"${container_cli}" run --rm -i \
-v "${SCRIPT_PATH}:${container_workspace}" \
-w "${container_workspace}" \
"${container_env[@]}" \
"${runner_image}" \
bash -s -- "${build_args[@]}" <<'EOF'
set -e
function create_builder_user() {
if [[ "${HOST_UID}" == "0" ]] ; then
HOST_USER=root
return
fi
if getent group "${HOST_GID}" >/dev/null 2>&1 ; then
HOST_GROUP=$(getent group "${HOST_GID}" | cut -d: -f1)
else
HOST_GROUP="orca-builder"
if getent group "${HOST_GROUP}" >/dev/null 2>&1 ; then
HOST_GROUP="orca-builder-${HOST_GID}"
fi
groupadd -g "${HOST_GID}" "${HOST_GROUP}"
fi
if getent passwd "${HOST_UID}" >/dev/null 2>&1 ; then
HOST_USER=$(getent passwd "${HOST_UID}" | cut -d: -f1)
usermod -g "${HOST_GROUP}" "${HOST_USER}"
elif id -u "${HOST_USER}" >/dev/null 2>&1 ; then
usermod -u "${HOST_UID}" -g "${HOST_GROUP}" "${HOST_USER}"
else
useradd -m -u "${HOST_UID}" -g "${HOST_GROUP}" -s /bin/bash "${HOST_USER}"
fi
echo "${HOST_USER} ALL=(ALL) NOPASSWD:ALL" >/etc/sudoers.d/orcaslicer-builder
chmod 0440 /etc/sudoers.d/orcaslicer-builder
}
create_builder_user
mkdir -p "${GITHUB_WORKSPACE}/deps/build/destdir"
chown -R "${HOST_UID}:${HOST_GID}" "${GITHUB_WORKSPACE}/deps/build"
if [[ -d "${GITHUB_WORKSPACE}/build" ]] ; then
chown -R "${HOST_UID}:${HOST_GID}" "${GITHUB_WORKSPACE}/build"
fi
if [[ -d "${GITHUB_WORKSPACE}/build-dbg" ]] ; then
chown -R "${HOST_UID}:${HOST_GID}" "${GITHUB_WORKSPACE}/build-dbg"
fi
if [[ -d "${GITHUB_WORKSPACE}/build-dbginfo" ]] ; then
chown -R "${HOST_UID}:${HOST_GID}" "${GITHUB_WORKSPACE}/build-dbginfo"
fi
sudo -H -u "${HOST_USER}" env \
CMAKE_BUILD_PARALLEL_LEVEL="${CMAKE_BUILD_PARALLEL_LEVEL-}" \
GITHUB_WORKSPACE="${GITHUB_WORKSPACE}" \
ORCA_UPDATER_SIG_KEY="${ORCA_UPDATER_SIG_KEY-}" \
bash -c '
set -e
cd "${GITHUB_WORKSPACE}"
if [[ "$#" -gt 0 ]] ; then
./build_linux.sh "$@"
else
echo "No build steps were requested after container setup."
fi
' bash "$@"
EOF
}
if [[ -n "${USE_DOCKER}" ]] ; then
run_in_docker
popd > /dev/null # ${SCRIPT_PATH}
exit 0
fi
# cmake 4.x compatibility workaround
export CMAKE_POLICY_VERSION_MINIMUM=3.5
DISTRIBUTION=$(awk -F= '/^ID=/ {print $2}' /etc/os-release | tr -d '"')
DISTRIBUTION_LIKE=$(awk -F= '/^ID_LIKE=/ {print $2}' /etc/os-release | tr -d '"')
# Check for direct distribution match to Ubuntu/Debian
if [ "${DISTRIBUTION}" == "ubuntu" ] || [ "${DISTRIBUTION}" == "linuxmint" ] ; then
DISTRIBUTION="debian"
# Check if distribution is Debian/Ubuntu-like based on ID_LIKE
elif [[ "${DISTRIBUTION_LIKE}" == *"debian"* ]] || [[ "${DISTRIBUTION_LIKE}" == *"ubuntu"* ]] ; then
DISTRIBUTION="debian"
elif [[ "${DISTRIBUTION_LIKE}" == *"arch"* ]] ; then
DISTRIBUTION="arch"
elif [[ "${DISTRIBUTION_LIKE}" == *"suse"* ]] ; then
DISTRIBUTION="suse"
fi
if [ ! -f "./scripts/linux.d/${DISTRIBUTION}" ] ; then
echo "Your distribution \"${DISTRIBUTION}\" is not supported by system-dependency scripts in ./scripts/linux.d/"
echo "Please resolve dependencies manually and contribute a script for your distribution to upstream."
exit 1
else
echo "resolving system dependencies for distribution \"${DISTRIBUTION}\" ..."
# shellcheck source=/dev/null
source "./scripts/linux.d/${DISTRIBUTION}"
fi
echo "FOUND_GTK3_DEV=${FOUND_GTK3_DEV}"
if [[ -z "${FOUND_GTK3_DEV}" ]] ; then
echo "Error, you must install the dependencies before."
echo "Use option -u with sudo"
exit 1
fi
echo "Changing date in version..."
{
# change date in version
sed --in-place "s/+UNKNOWN/_$(date '+%F')/" version.inc
}
echo "done"
if [[ -z "${SKIP_RAM_CHECK}" ]] ; then
check_available_memory_and_disk
fi
export CMAKE_C_CXX_COMPILER_CLANG=()
if [[ -n "${USE_CLANG}" ]] ; then
export CMAKE_C_CXX_COMPILER_CLANG=(-DCMAKE_C_COMPILER=/usr/bin/clang -DCMAKE_CXX_COMPILER=/usr/bin/clang++)
fi
# Configure use of ld.lld as the linker when requested
export CMAKE_LLD_LINKER_ARGS=()
if [[ -n "${USE_LLD}" ]] ; then
if command -v ld.lld >/dev/null 2>&1 ; then
LLD_BIN=$(command -v ld.lld)
export CMAKE_LLD_LINKER_ARGS=(-DCMAKE_LINKER="${LLD_BIN}" -DCMAKE_EXE_LINKER_FLAGS=-fuse-ld=lld -DCMAKE_SHARED_LINKER_FLAGS=-fuse-ld=lld -DCMAKE_MODULE_LINKER_FLAGS=-fuse-ld=lld)
else
echo "Error: ld.lld not found. Please install the 'lld' package (e.g., sudo apt install lld) or omit -L."
exit 1
fi
fi
export CMAKE_CCACHE_ARGS=()
CMAKE_CCACHE=${CMAKE_CCACHE:-}
if [ -n "$CMAKE_CCACHE" ]; then
echo "Checking ${CMAKE_CCACHE} environment variable for compiler cache program..."
CMAKE_CCACHE=$(command -v "${CMAKE_CCACHE}") || {
echo "CMAKE_CCACHE environment variable is set to '${CMAKE_CCACHE}' but it was not found in PATH."
CMAKE_CCACHE=""
}
elif command -v sccache >/dev/null 2>&1 ; then
CMAKE_CCACHE=$(command -v sccache)
elif command -v ccache >/dev/null 2>&1 ; then
CMAKE_CCACHE=$(command -v ccache)
fi
if [ -n "${CMAKE_CCACHE}" ] ; then
echo "${CMAKE_CCACHE} found, enabling compiler caching..."
export CMAKE_CCACHE_ARGS=(-DCMAKE_C_COMPILER_LAUNCHER="${CMAKE_CCACHE}" -DCMAKE_CXX_COMPILER_LAUNCHER="${CMAKE_CCACHE}")
else
echo "Note: ccache or sccache are not found. Install either of them for faster rebuilds."
fi
if [[ -n "${BUILD_DEPS}" ]] ; then
echo "Configuring dependencies..."
read -r -a BUILD_ARGS <<< "${DEPS_EXTRA_BUILD_ARGS}"
if [[ -n "${CLEAN_BUILD}" ]]
then
print_and_run rm -fr deps/$BUILD_DIR
fi
mkdir -p deps/$BUILD_DIR
if [[ $BUILD_CONFIG != Release ]] ; then
BUILD_ARGS+=(-DCMAKE_BUILD_TYPE="${BUILD_CONFIG}")
fi
print_and_run cmake -S deps -B deps/$BUILD_DIR "${CMAKE_C_CXX_COMPILER_CLANG[@]}" "${CMAKE_LLD_LINKER_ARGS[@]}" "${CMAKE_CCACHE_ARGS[@]}" -G Ninja "${COLORED_OUTPUT}" "${BUILD_ARGS[@]}"
print_and_run cmake --build deps/$BUILD_DIR -j1
fi
if [[ -n "${BUILD_ORCA}" ]] || [[ -n "${BUILD_TESTS}" ]] ; then
echo "Configuring OrcaSlicer..."
if [[ -n "${CLEAN_BUILD}" ]] ; then
print_and_run rm -fr $BUILD_DIR
fi
read -r -a BUILD_ARGS <<< "${ORCA_EXTRA_BUILD_ARGS}"
if [[ $BUILD_CONFIG != Release ]] ; then
BUILD_ARGS+=(-DCMAKE_BUILD_TYPE="${BUILD_CONFIG}")
fi
if [[ -n "${BUILD_TESTS}" ]] ; then
BUILD_ARGS+=(-DBUILD_TESTS=ON)
fi
if [[ -n "${ORCA_UPDATER_SIG_KEY}" ]] ; then
BUILD_ARGS+=(-DORCA_UPDATER_SIG_KEY="${ORCA_UPDATER_SIG_KEY}")
fi
print_and_run cmake -S . -B $BUILD_DIR "${CMAKE_C_CXX_COMPILER_CLANG[@]}" "${CMAKE_LLD_LINKER_ARGS[@]}" "${CMAKE_CCACHE_ARGS[@]}" -G "Ninja Multi-Config" \
-DSLIC3R_PCH=${SLIC3R_PRECOMPILED_HEADERS} \
-DORCA_TOOLS=ON \
"${COLORED_OUTPUT}" \
"${BUILD_ARGS[@]}"
echo "done"
if [[ -n "${BUILD_ORCA}" ]]; then
echo "Building OrcaSlicer ..."
print_and_run cmake --build $BUILD_DIR --config "${BUILD_CONFIG}" --target OrcaSlicer
echo "Building OrcaSlicer_profile_validator .."
print_and_run cmake --build $BUILD_DIR --config "${BUILD_CONFIG}" --target OrcaSlicer_profile_validator
echo "Building generate_system_cache ..."
print_and_run cmake --build $BUILD_DIR --config "${BUILD_CONFIG}" --target generate_system_cache
./scripts/run_gettext.sh
fi
if [[ -n "${BUILD_TESTS}" ]] ; then
echo "Building tests ..."
print_and_run cmake --build ${BUILD_DIR} --config "${BUILD_CONFIG}" --target tests/all
fi
echo "done"
fi
if [[ -n "${BUILD_IMAGE}" || -n "${BUILD_ORCA}" ]] ; then
pushd $BUILD_DIR > /dev/null
build_linux_image="./src/build_linux_image.sh"
if [[ -e ${build_linux_image} ]] ; then
extra_script_args=""
if [[ -n "${BUILD_IMAGE}" ]] ; then
extra_script_args="-i"
fi
print_and_run ${build_linux_image} ${extra_script_args} -R "${BUILD_CONFIG}"
echo "done"
fi
popd > /dev/null # build
fi
elapsed=$SECONDS
printf "\nBuild completed in %dh %dm %ds\n" $((elapsed/3600)) $((elapsed%3600/60)) $((elapsed%60))
popd > /dev/null # ${SCRIPT_PATH}