## Problem Windows builds break with a current local toolchain (Scoop LLVM 22.1.8, CMake 4.4.0, VS 2026), in two independent ways: 1. The build stops at curl's deliberate guard: `#error "no non-blocking method was found/used/set"` in `third-party/curl/lib/nonblock.c`. 2. From the second configure onward, `cmake --build` re-runs CMake in an endless loop (observed 42 consecutive reconfigure cycles in a single build). Likely the same mechanism behind the "endlessly building" VS 2026 note in `docs/setup/dev/vs.md`. ## Root cause 1. `third-party/curl/CMake/CurlTests.c` passes `int *` to `ioctlsocket()`, whose third parameter is `u_long *`. Clang 22 promotes `-Wincompatible-pointer-types` to a hard error in C, so the `HAVE_IOCTLSOCKET_FIONBIO` try_compile silently fails and `curl_config.h` never defines it. Upstream CI does not see this because the windows-2022 runner image ships an older LLVM. GCC 14 promotes the same warning to a hard error, which is very likely the `CurlTests.c.obj` failure reported from MSYS2 in open-goal/jak-project#3551. Upstream curl hit the identical problem with GCC 14 and fixed the probe in curl 8.8.0 (curl/curl#13578). 2. The root CMakeLists copies the build tree's `compile_commands.json` into `<src>/build/` for clangd using `configure_file()`, which registers its input as a configure dependency. CMake rewrites `compile_commands.json` late in every generation, after `CTestTestfile.cmake` and `cmake_install.cmake` (outputs of the same Ninja regen rule), so once the dependency is registered the rule is deterministically dirty and every `ninja` invocation re-runs CMake. A pristine first configure is safe (the file does not exist yet, so the `if(EXISTS ...)` guard skips the copy), which is why the loop looks machine- or IDE-specific. ## Fix 1. Per review, re-vendor `third-party/curl` at the `curl-8_21_0` tag (previously `curl-8_3_0`), which carries the upstream probe fix plus two years of upstream development; `vendor.yaml` updated to match. Adjustments the version jump forced: - curl 8.15 removed the native macOS Secure Transport backend (`CURL_USE_SECTRANSP`), so macOS now builds curl against OpenSSL like Linux. The two macOS workflows install Homebrew `openssl@3` and export `OPENSSL_ROOT_DIR` (keg-only), and the macOS setup docs gained the same two lines. - `CURL_BROTLI` / `CURL_ZSTD` switched to AUTO-detection in curl 8.10; pinned OFF to keep the previous no-compression behavior and avoid silently linking whatever the CI images happen to have. - curl's new top-level `BUILD_EXAMPLES` cache option (default ON) leaked into discord-rpc's identically named option and broke configure at a nonexistent `examples/send-presence` directory; pinned OFF ahead of the third-party subdirectories. The diff is dominated by the mechanical tag-tree swap under `third-party/curl` (linguist-vendored, collapsed in review). The hand-written changes are `CMakeLists.txt`, the two macOS workflows, `docs/setup/system/macos.md`, and `vendor.yaml`. 2. Swap `configure_file()` for `file(COPY ...)`: the same clangd copy with no configure dependency registered. (`file(COPY_FILE ... ONLY_IF_DIFFERENT)` would be cleaner still but requires CMake 3.21, above the declared `cmake_minimum_required(VERSION 3.10)`.) ## Test plan - [x] Fresh `cmake --preset Release-windows-clang` (LLVM 22, no cache seeding) completes and logs `Enabled SSL backends: Schannel`; the FIONBIO probe passes without the previous `#error` - [x] Full Windows Release build from scratch in the branch worktree (all 1422 targets) - [x] goalc-test suite: 1509 passed, 0 failed - [x] Second consecutive configure with `compile_commands.json` present: the regen rule in `build.ninja` has no `compile_commands.json` input; `<src>/build/compile_commands.json` is still refreshed for clangd - [x] Repeated `ninja` invocations after a full build no longer re-run CMake - [x] macOS Intel and ARM CI green (first exercise of the OpenSSL backend switch) --- I work off a self-hosted forge, so this GitHub account is quiet; the configure logs and ninja dirty-node traces from the investigation are available if anyone wants the raw data. (AI-assisted)
3.9 KiB
Vendored
Generated
c, SPDX-License-Identifier, Title, Section, Source, See-also, Protocol, Added-in
| c | SPDX-License-Identifier | Title | Section | Source | See-also | Protocol | Added-in | |||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| Copyright (C) Daniel Stenberg, <daniel@haxx.se>, et al. | curl | curl_global_init | 3 | libcurl |
|
|
7.8 |
NAME
curl_global_init - global libcurl initialization
SYNOPSIS
#include <curl/curl.h>
CURLcode curl_global_init(long flags);
DESCRIPTION
This function sets up the program environment that libcurl needs. Think of it as an extension of the library loader.
This function must be called at least once within a program (a program is all the code that shares a memory space) before the program calls any other function in libcurl. The environment it sets up is constant for the life of the program and is the same for every program, so multiple calls have the same effect as one call.
The flags option is a bit pattern that tells libcurl exactly what features to init, as described below. Set the desired bits by ORing the values together. In normal operation, you must specify CURL_GLOBAL_ALL. Do not use any other value unless you are familiar with it and mean to control internal operations of libcurl.
This function is thread-safe on most platforms. Then curl_version_info(3) has
the threadsafe feature set (added in 7.84.0).
If this is not thread-safe (the bit mentioned above is not set), you must not call this function when any other thread in the program (i.e. a thread sharing the same memory) is running. This does not only mean other threads that use libcurl. Because curl_global_init(3) calls functions of other libraries that are similarly thread-unsafe, it could conflict with any other thread that uses these other libraries.
If you are initializing libcurl from a Windows DLL you should not initialize it from DllMain or a static initializer because Windows holds the loader lock during that time and it could cause a deadlock.
See the description in libcurl(3) of global environment requirements for details of how to use this function.
FLAGS
CURL_GLOBAL_ALL
Initialize everything possible. This sets all known bits except CURL_GLOBAL_ACK_EINTR.
CURL_GLOBAL_SSL
(This flag's presence or absence serves no meaning since 7.57.0. The description below is for older libcurl versions.)
Initialize SSL.
The implication here is that if this bit is not set, the initialization of the SSL layer needs to be done by the application or at least outside of libcurl. The exact procedure how to do SSL initialization depends on the TLS backend libcurl uses.
Doing TLS based transfers without having the TLS layer initialized may lead to unexpected behaviors.
CURL_GLOBAL_WIN32
Initialize the Win32 socket libraries.
The implication here is that if this bit is not set, the initialization of Winsock has to be done by the application or you risk getting undefined behaviors. This option exists for when the initialization is handled outside of libcurl so there is no need for libcurl to do it again.
CURL_GLOBAL_NOTHING
Initialize nothing extra. This sets no bit.
CURL_GLOBAL_DEFAULT
A sensible default. It initializes both SSL and Win32. Right now, this equals the functionality of the CURL_GLOBAL_ALL mask.
CURL_GLOBAL_ACK_EINTR
This bit has no point since 7.69.0 but its behavior is instead the default.
Before 7.69.0: when this flag is set, curl acknowledges EINTR condition when connecting or when waiting for data. Otherwise, curl waits until full timeout elapses.
%PROTOCOLS%
EXAMPLE
int main(void)
{
CURLcode result;
result = curl_global_init(CURL_GLOBAL_DEFAULT);
if(result == CURLE_OK) {
/* use libcurl, then before exiting... */
curl_global_cleanup();
}
}
%AVAILABILITY%
RETURN VALUE
If this function returns non-zero, something went wrong and you cannot use the other curl functions.