Legacy ulp_embed_binary() call-site sources were attached directly to the CMake v2 child executable. However, the ULP runtime is linked with WHOLE_ARCHIVE through target_link_options(), which CMake emits before executable objects. This reversed the CMake v1 order, changed ULP code placement, and allowed runtime weak definitions to take precedence over legacy strong handlers.
Build the call-site sources as a dedicated static archive and place its whole-archive option before the runtime archive. Preserve the parent sdkconfig and include view, including FSM-specific include behavior, without generating a synthetic component tree.
Factor linker-specific whole-archive handling into a shared CMake v2 helper for GNU, Darwin, and ULP FSM linkers. Link the archive target normally as well so CMake tracks build and relink dependencies when a legacy ULP source changes.
Add test apps for binary size tracking:
- esp_timer size_metrics app with minimal/full sdkconfig variants
- minimal_baseline app to establish the platform binary size floor
Rename the internal ULP child-build marker to __ULP_BUILDV2 so component CMake files make the build-system scope explicit.
Document that the marker is currently set only by the IDF_BUILD_V2 ULP child path.
Route ulp_embed_binary() through a built-in CMake v2 default ULP project instead of generating a compatibility project with a synthetic main component.
Attach legacy ULP sources directly to the ULP executable, pass the parent component include view through the existing ULP_S_SOURCES/COMPONENT_* channel, and remove the generated legacy project templates plus the component path ownership validation bypass they required.
Update the build-system coverage to assert that the builtin child project builds and rebuilds when parent-owned ULP sources change.
Allow the reconfigure test to assert the buildv2 activation message when pytest runs with --buildv2.
Make the ULP API probe use CMake-friendly forward-slash paths and an explicit ULP toolchain/custom-toolchain setting so the direct cmake configure works on Windows as well as Linux.
Preserve all linker scripts passed to target_linker_script() so LP-core child builds keep the full esp32p4 LP ROM script set instead of only the first script.
Link the ULP runtime component as WHOLE_ARCHIVE for ULP child builds, matching the legacy helper behavior where runtime sources were added directly to the executable. This keeps strong runtime handlers such as ulp_lp_core_panic_handler from being skipped in favor of weak defaults from already-extracted archive objects.
Validated with the esp32p4 lp_core_hp_uart panic and LP-ROM pytest cases, plus the focused local/CI build_all shape for the app.
Move 7 trace-related examples (app_trace_basic, app_trace_to_plot,
esp_trace_custom_library, function_tracing, gcov, sysview_tracing,
sysview_tracing_heap_log) from examples/system/ into a dedicated
examples/system/tracing/ subdirectory for better organization.
Update all path references across documentation (en + zh_CN),
build-test-rules, CI configs, Kconfig, and component READMEs.
Validate linked RISC-V executables when
CONFIG_COMPILER_ENABLE_RISCV_ZCMP is enabled on affected chips.
Disassemble each function and reject mstatus.MIE clears that lack an
earlier mintthresh write of 0xff.
Handle csrrci, csrrw, and register-mask csrrc patterns while ignoring
csrrs. Add build-only coverage for valid and invalid sequences with
CMake v1 and v2.
Stop the hardware stack guard before switching stacks during restart,
and keep ZCMP disabled for TEE test apps that still require the
workaround.
Allow specifying extra compiler flags (warning flags, preprocessor
definitions, etc.) via a new 'compile_options' entry in the
idf-build-file frontmatter. The options are applied to the source
file via target_compile_options in the generated main component
CMakeLists, with CMake quoting so that flags like -DMSG="hello world"
reach the compiler exactly as written.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
Add a new idf.py extension that allows building standalone C files
without requiring full project boilerplate. Source files can include
optional YAML frontmatter in block comments to specify sdkconfig
options, component dependencies, and target configuration.
When the frontmatter configuration changes, the stale sdkconfig is
removed so the new defaults are applied, and a target change also
clears the build directory since IDF_TARGET is pinned in the CMake
cache.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
Move the following modules from the hal component into a new dedicated
esp_hal_debug_assist component, following the esp_hal_timg pattern:
- assist_debug (hal + target-specific LL headers)
- debug_probe (types + target-specific LL headers)
- riscv_trace (hal + types + source + target-specific LL headers)
- trace_ll (esp32/esp32s2/esp32s3 target-specific LL headers)
Update the following components to depend on esp_hal_debug_assist:
esp_system, riscv, bootloader_support, esp_hw_support, esp_riscv_trace
Remove riscv_trace_hal.c from the hal component.
Migrate idf.py and its actions to the shared esp-pylib library:
- add esp-pylib (and esp-pylib[ide]) to the core/ide requirements
- base FatalError on esp_pylib.errors.FatalError, keeping the idf.py ctx cleanup
- replace the local raw-ANSI helpers (red_print/yellow_print/print_warning/
color_print) with esp_pylib.logger.log (warn/err/note/hint) across the
idf.py actions
- install esp_pylib exception reporting at the idf.py entry point and silence
the logger during shell completion
- update affected tests for the new prefixes/line wrapping
- add normalize_output() helper and unify terminal env in conftest to handle
Rich line-wrapping in CI assertions
Co-authored-by: Cursor <cursoragent@cursor.com>
Keep legacy ULP apps on the CMake v1 build path while buildv2 coverage
is limited to full_subproject ULP apps.
Also add the missing esp_driver_gpio dependency to the esp_pm test app
so buildv2 dependency checks see driver/rtc_io.h explicitly.
Build ULP full subprojects through a dedicated entry file,
components/ulp/cmake/ulp_project.cmake, that wraps tools/cmakev2/idf.cmake
and layers a small ULP API on top, mirroring the cmakev2 layering:
ulp_project_init like idf_project_init (init, detect the ULP type,
reset the compile/link options inherited from the app)
ulp_build_executable like idf_build_executable, plus the embeddable
.bin/.h/.ld artifacts
ulp_project_default like idf_project_default (single-executable case)
A child project now includes this one file instead of idf.cmake and calls
these helpers directly, so idf_build_executable is used as-is for the
multi-binary case and the module-path indirection (include(IDFULPProject)
resolved via -DCMAKE_MODULE_PATH) is gone.
As a result:
- IDFULPProjectv2.cmake is removed; its setup moves into the wrapper.
- IDFULPProject.cmake becomes the CMake v1-only entry point.
- The ULP component no longer registers a POST_ELF callback; the binary
artifacts are produced by ulp_build_executable.
- The v2 full-subproject examples (lp_core, riscv, fsm, multi_binary,
combined) are updated to the new API.
- The ULP subproject API is documented in build-system-v2.rst.
Also fix a latent bug this exercises: idf_build_library emitted linker
scripts as "-T <name>" relying on a following "-L" search directory. GNU
ld only searches -L directories that precede -T, so the direct
esp32ulp-elf-ld link used for ULP FSM failed to open the script. Emit the
absolute path instead, matching what the CMake v1 ULP build already does.
Finally, replace the parent-argument bypass loop that used to live in
IDFULPProjectv2.cmake with --no-warn-unused-cli on the child configure,
and stop passing the unused IDF_PARENT_BUILD_DIR.
Signed-off-by: Frantisek Hrbata <frantisek.hrbata@espressif.com>
Register ULP memory linker scripts with target_linker_script so CMake v2 handles preprocessing and attachment through the component graph.
Keep the generated legacy outputs named .ld by stripping only the .in suffix, and pass full linker script paths to support direct ld invocation.
Resolve #include lines in linker script templates against the linked
component graph: idf_build_library appends every linked component's
INCLUDE_DIRS to the C preprocessor invocation for each .in linker
script, so a template can include any component header (e.g. a ULP
memory-layout template including soc/soc.h) without the owning
component having to know about it.
Also:
- Always pass -I<config_dir> so templates can include sdkconfig.h.
- Add a FLAGS option to target_linker_script for explicit preprocessor
flags (e.g. -D__ASSEMBLER__ or ld-snippet include dirs); when given,
FLAGS replaces the parent-dir==target include heuristic for that
script.
- Add a MEMORY option to target_linker_script that emits the marked
linker script as -T before all others, so section-placement scripts
in one component can reference MEMORY regions and REGION_ALIASes
declared by a memory-layout script in another component.
- Make C-preprocessor comment keeping (-C) part of the default flag set
rather than hardcoded, so FLAGS can drop it. linker_script_preprocessor
no longer forces -C; both the cmakev1 and cmakev2 preprocessors add it
to their default CFLAGS (output unchanged for existing scripts). A ULP
template that includes soc/soc.h omits -C so ld does not choke on the
header's // comments.
- Store per-script metadata (generated output, flags) in MD5-keyed
component properties instead of parallel lists.
Signed-off-by: Frantisek Hrbata <frantisek.hrbata@espressif.com>
Add an opt_os_lto configuration to the startup test app that enables size
optimization together with link-time and compile-time LTO, and run it across
the supported targets so the LTO build is exercised on real hardware in CI.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Mirror the link-time optimization support into the cmakev2 build system so
that both build systems behave identically.
- project.cmake (__init_project_configuration): emit -flto=auto as a link
option when CONFIG_COMPILER_LTO_LINKTIME is set, except for bootloader and
ESP-TEE builds, otherwise keep -fno-lto.
- build.cmake (idf_build_library): when CONFIG_COMPILER_LTO_COMPILETIME is set,
compile each linked component with -flto=auto unless it has linker fragments,
is placed by another component's fragment (see tools/cmake/lto.cmake), has
opted out via NO_LTO, or is not a static library.
- project.cmake: when CONFIG_APP_REPRODUCIBLE_BUILD is also enabled, apply
the same three flags as the legacy build system to keep LTO output
reproducible: pass the prefix-map options to the linker (so link-time code
generation remaps DW_AT_comp_dir), add -save-temps (stable LTRANS object
names instead of random $TMPDIR paths in the .map), and pin -frandom-seed
(byte-identical LTO GIMPLE bytecode). See the commit message of
"feat(build): add options to enable link-time optimization (LTO)" for the
full analysis.
The gcc-ar / gcc-ranlib selection and the NO_LTO component property are shared
with the legacy build system through tools/cmake/toolchain.cmake and the common
component registration code, so no cmakev2-specific changes are needed there.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>