Files
tactility/Buildscripts/release-sdk.py
T
Shadowtrance 7a7f09be35 Tab5 camera + other stuff (#558)
* Tab5 camera + other stuff

Tab5 camera driver - SC2356
Custom SliderBox widget - slider with plus and minus buttons + value label and snapping
Rtc Time service + rtc api
Sdk release - only include drivers built for that specific target, eg: sc2356 driver is mipi / p4 only.
No more hardcoded manual sdk cmakelists
New function to find device by compatible string match. no more static cast bool wildness when trying to match a single device (like M5Stack PaperS3 for example)

* feedback + fixes

Fixed external app user data path.
fix(gui): block app teardown until onHide() completes, preventing ELF unload racing a still-running app
added camera device type and api

* drain the snake sssem

---------

Co-authored-by: Ken Van Hoeylandt <git@kenvanhoeylandt.net>
2026-07-10 08:45:03 +02:00

214 lines
9.7 KiB
Python

#!/usr/bin/env python3
import os
import shutil
import glob
import subprocess
import sys
from textwrap import dedent
def map_copy(mappings, target_base):
"""
Helper function to map input files/directories to output files/directories.
mappings: list of dicts with 'src' (glob pattern) and 'dst' (relative to target_base or absolute)
'src' can be a single file or a directory (if it ends with /).
"""
for mapping in mappings:
src_pattern = mapping['src']
dst_rel = mapping['dst']
dst_path = os.path.join(target_base, dst_rel)
# To preserve directory structure, we need to know where the wildcard starts
# or have a way to determine the "base" of the search.
# We'll split the pattern into a fixed base and a pattern part.
# Simple heuristic: find the first occurrence of '*' or '?'
wildcard_idx = -1
for i, char in enumerate(src_pattern):
if char in '*?':
wildcard_idx = i
break
if wildcard_idx != -1:
# Found a wildcard. The base is the directory containing it.
pattern_base = os.path.dirname(src_pattern[:wildcard_idx])
else:
# No wildcard. If it's a directory, we might want to preserve its name?
# For now, let's treat no-wildcard as no relative structure needed.
pattern_base = None
src_files = glob.glob(src_pattern, recursive=True)
if not src_files:
continue
for src in src_files:
if os.path.isdir(src):
continue
if pattern_base and src.startswith(pattern_base):
# Calculate relative path from the base of the glob pattern
rel_src = os.path.relpath(src, pattern_base)
# If dst_rel ends with /, it's a target directory
if dst_rel.endswith('/') or os.path.isdir(dst_path):
final_dst = os.path.join(dst_path, rel_src)
else:
# If dst_rel is a file, we can't really preserve structure
# unless we join it. But usually it's a dir if structure is preserved.
final_dst = dst_path
else:
final_dst = dst_path if not (dst_rel.endswith('/') or os.path.isdir(dst_path)) else os.path.join(dst_path, os.path.basename(src))
os.makedirs(os.path.dirname(final_dst), exist_ok=True)
shutil.copy2(src, final_dst)
def get_driver_mappings(driver_name):
return [
{'src': f'Drivers/{driver_name}/include/**', 'dst': f'Drivers/{driver_name}/include/'},
{'src': f'Drivers/{driver_name}/*.md', 'dst': f'Drivers/{driver_name}/'},
{'src': f'build/esp-idf/{driver_name}/lib{driver_name}.a', 'dst': f'Drivers/{driver_name}/binary/lib{driver_name}.a'},
]
def get_module_mappings(module_name):
return [
{'src': f'Modules/{module_name}/include/**', 'dst': f'Modules/{module_name}/include/'},
{'src': f'Modules/{module_name}/*.md', 'dst': f'Modules/{module_name}/'},
{'src': f'build/esp-idf/{module_name}/lib{module_name}.a', 'dst': f'Modules/{module_name}/binary/lib{module_name}.a'},
]
def create_module_cmakelists(module_name):
return dedent(f'''
cmake_minimum_required(VERSION 3.20)
idf_component_register(
INCLUDE_DIRS "include"
)
add_prebuilt_library({module_name} "binary/lib{module_name}.a")
'''.format(module_name=module_name))
def write_module_cmakelists(path, content):
with open(path, 'w') as f:
f.write(content)
def driver_is_available(driver_name):
"""
Some drivers only build for certain chip targets (e.g. sc2356-module is ESP32-P4 only,
since it depends on esp_video/esp_cam_sensor/PPA which are themselves chip-restricted).
Build output presence is the single source of truth for "does this driver support the
current target" - no separate manifest to keep in sync with the real CMakeLists.txt
REQUIRES/Kconfig guards.
"""
binary_pattern = f'build/esp-idf/{driver_name}/lib{driver_name}.a'
return bool(glob.glob(binary_pattern))
def add_driver(target_path, driver_name):
mappings = get_driver_mappings(driver_name)
map_copy(mappings, target_path)
cmakelists_content = create_module_cmakelists(driver_name)
write_module_cmakelists(os.path.join(target_path, f"Drivers/{driver_name}/CMakeLists.txt"), cmakelists_content)
def add_module(target_path, module_name):
mappings = get_module_mappings(module_name)
map_copy(mappings, target_path)
cmakelists_content = create_module_cmakelists(module_name)
write_module_cmakelists(os.path.join(target_path, f"Modules/{module_name}/CMakeLists.txt"), cmakelists_content)
def discover_all_drivers():
"""
Discover all *-module directories under Drivers/ (not Modules/ - those are handled
separately via add_module). Sorted for deterministic output across OS/filesystem order.
"""
pattern = os.path.join('Drivers', '*-module')
return sorted(
os.path.basename(p) for p in glob.glob(pattern) if os.path.isdir(p)
)
def generate_tactility_sdk_cmake(target_path, available_drivers):
src = os.path.join('Buildscripts', 'TactilitySDK', 'TactilitySDK.cmake')
with open(src) as f:
content = f.read()
placeholder = " # DRIVER_COMPONENTS_PLACEHOLDER"
assert placeholder in content, \
f"Placeholder '{placeholder.strip()}' not found in {src} - template drifted, generator needs updating"
components = "\n".join(f" {d}" for d in available_drivers)
new_content = content.replace(placeholder, components)
assert placeholder not in new_content, \
f"Placeholder '{placeholder.strip()}' still present after replacement in {src}"
with open(os.path.join(target_path, 'TactilitySDK.cmake'), 'w') as f:
f.write(new_content)
def generate_tactility_sdk_top_cmakelists(target_path, available_drivers):
src = os.path.join('Buildscripts', 'TactilitySDK', 'CMakeLists.txt')
with open(src) as f:
content = f.read()
placeholder = " # DRIVER_INCLUDE_DIRS_PLACEHOLDER"
assert placeholder in content, \
f"Placeholder '{placeholder.strip()}' not found in {src} - template drifted, generator needs updating"
include_dirs = "\n".join(f' "Drivers/{d}/include"' for d in available_drivers)
new_content = content.replace(placeholder, include_dirs)
assert placeholder not in new_content, \
f"Placeholder '{placeholder.strip()}' still present after replacement in {src}"
with open(os.path.join(target_path, 'CMakeLists.txt'), 'w') as f:
f.write(new_content)
def main():
if len(sys.argv) < 2:
print("Usage: release-sdk.py [target_path]")
print("Example: release-sdk.py release/TactilitySDK")
sys.exit(1)
target_path = os.path.abspath(sys.argv[1])
os.makedirs(target_path, exist_ok=True)
# Mapping logic
mappings = [
{'src': 'version.txt', 'dst': ''},
# TactilityC
{'src': 'build/esp-idf/TactilityC/libTactilityC.a', 'dst': 'Libraries/TactilityC/binary/'},
{'src': 'TactilityC/Include/*', 'dst': 'Libraries/TactilityC/include/'},
{'src': 'TactilityC/CMakeLists.txt', 'dst': 'Libraries/TactilityC/'},
{'src': 'TactilityC/LICENSE*.*', 'dst': 'Libraries/TactilityC/'},
# TactilityFreeRtos
{'src': 'TactilityFreeRtos/Include/**', 'dst': 'Libraries/TactilityFreeRtos/include/'},
{'src': 'TactilityFreeRtos/CMakeLists.txt', 'dst': 'Libraries/TactilityFreeRtos/'},
{'src': 'TactilityFreeRtos/LICENSE*.*', 'dst': 'Libraries/TactilityFreeRtos/'},
# TactilityKernel
{'src': 'build/esp-idf/TactilityKernel/libTactilityKernel.a', 'dst': 'Libraries/TactilityKernel/binary/'},
{'src': 'TactilityKernel/include/**', 'dst': 'Libraries/TactilityKernel/include/'},
{'src': 'TactilityKernel/CMakeLists.txt', 'dst': 'Libraries/TactilityKernel/'},
{'src': 'TactilityKernel/*.md', 'dst': 'Libraries/TactilityKernel/'},
# lvgl (basics)
{'src': 'build/esp-idf/lvgl__lvgl/liblvgl__lvgl.a', 'dst': 'Libraries/lvgl/binary/liblvgl.a'},
{'src': 'Libraries/lvgl/lvgl.h', 'dst': 'Libraries/lvgl/include/'},
{'src': 'Libraries/lvgl/lv_version.h', 'dst': 'Libraries/lvgl/include/'},
{'src': 'Libraries/lvgl/LICENCE*.*', 'dst': 'Libraries/lvgl/'},
{'src': 'Libraries/lvgl/src/lv_conf_kconfig.h', 'dst': 'Libraries/lvgl/include/lv_conf.h'},
{'src': 'Libraries/lvgl/src/**/*.h', 'dst': 'Libraries/lvgl/include/src/'},
# elf_loader
{'src': 'Libraries/elf_loader/elf_loader.cmake', 'dst': 'Libraries/elf_loader/'},
{'src': 'Libraries/elf_loader/license.txt', 'dst': 'Libraries/elf_loader/'},
]
map_copy(mappings, target_path)
# Modules
add_module(target_path, "lvgl-module")
add_module(target_path, "crypt-module")
# Drivers - only ones actually built for this target (chip-restricted drivers like
# sc2356-module won't have a .a outside ESP32-P4)
available_drivers = [d for d in discover_all_drivers() if driver_is_available(d)]
for driver_name in available_drivers:
add_driver(target_path, driver_name)
# Final scripts - generated (not copied verbatim) so COMPONENTS/INCLUDE_DIRS only list
# drivers actually available for this target
generate_tactility_sdk_cmake(target_path, available_drivers)
generate_tactility_sdk_top_cmakelists(target_path, available_drivers)
# Output ESP-IDF SDK version to file
esp_idf_version = os.environ.get("ESP_IDF_VERSION", "")
with open(os.path.join(target_path, "idf-version.txt"), "a") as f:
f.write(esp_idf_version)
if __name__ == "__main__":
main()