mirror of
https://github.com/open-goal/jak-project
synced 2026-09-12 20:56:09 -04:00
5d5e35fb9b
## 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)
136 lines
4.6 KiB
C
Vendored
Generated
136 lines
4.6 KiB
C
Vendored
Generated
/***************************************************************************
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* _ _ ____ _
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* Project ___| | | | _ \| |
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* / __| | | | |_) | |
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* | (__| |_| | _ <| |___
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* \___|\___/|_| \_\_____|
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*
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* Copyright (C) Daniel Stenberg, <daniel@haxx.se>, et al.
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*
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* This software is licensed as described in the file COPYING, which
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* you should have received as part of this distribution. The terms
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* are also available at https://curl.se/docs/copyright.html.
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*
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* You may opt to use, copy, modify, merge, publish, distribute and/or sell
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* copies of the Software, and permit persons to whom the Software is
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* furnished to do so, under the terms of the COPYING file.
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*
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* This software is distributed on an "AS IS" basis, WITHOUT WARRANTY OF ANY
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* KIND, either express or implied.
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*
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* SPDX-License-Identifier: curl
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*
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***************************************************************************/
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#include "unitcheck.h"
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#include "urldata.h"
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#include "progress.h"
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static CURLcode t1399_setup(struct Curl_easy **easy)
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{
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CURLcode result = CURLE_OK;
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global_init(CURL_GLOBAL_ALL);
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*easy = curl_easy_init();
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if(!*easy) {
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curl_global_cleanup();
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return CURLE_OUT_OF_MEMORY;
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}
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return result;
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}
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static void t1399_stop(struct Curl_easy *easy)
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{
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curl_easy_cleanup(easy);
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curl_global_cleanup();
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}
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/*
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* Invoke Curl_pgrsTime for TIMER_STARTSINGLE to trigger the behavior that
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* manages is_t_startransfer_set, but fake the t_startsingle time for purposes
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* of the test.
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*/
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static void fake_t_startsingle_time(struct Curl_easy *data,
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struct curltime fake_now,
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int seconds_offset)
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{
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Curl_pgrsTime(data, TIMER_STARTSINGLE);
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data->progress.t_startsingle.tv_sec = fake_now.tv_sec + seconds_offset;
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data->progress.t_startsingle.tv_usec = fake_now.tv_usec;
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}
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static bool usec_matches_seconds(timediff_t time_usec, int expected_seconds)
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{
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static int usec_magnitude = 1000000;
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int time_sec = (int)(time_usec / usec_magnitude);
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bool same = (time_sec == expected_seconds);
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curl_mfprintf(stderr, "is %d us same as %d seconds? %s\n",
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(int)time_usec, expected_seconds,
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same ? "Yes" : "No");
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return same;
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}
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static void expect_timer_seconds(struct Curl_easy *data, int seconds)
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{
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char msg[64];
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curl_msnprintf(msg, sizeof(msg), "about %d seconds should have passed",
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seconds);
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fail_unless(usec_matches_seconds(data->progress.t_nslookup, seconds), msg);
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fail_unless(usec_matches_seconds(data->progress.t_connect, seconds), msg);
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fail_unless(usec_matches_seconds(data->progress.t_appconnect, seconds), msg);
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fail_unless(usec_matches_seconds(data->progress.t_pretransfer, seconds),
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msg);
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fail_unless(usec_matches_seconds(data->progress.t_starttransfer, seconds),
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msg);
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}
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/* Scenario: simulate a redirect. When a redirect occurs, t_nslookup,
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* t_connect, t_appconnect, t_pretransfer, and t_starttransfer are additive.
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* E.g., if t_starttransfer took 2 seconds initially and took another 1
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* second for the redirect request, then the resulting t_starttransfer should
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* be 3 seconds. */
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static CURLcode test_unit1399(const char *arg)
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{
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struct Curl_easy *data;
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struct curltime now = curlx_now();
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UNITTEST_BEGIN(t1399_setup(&data))
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data->multi = NULL;
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data->progress.now = now;
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data->progress.t_nslookup = 0;
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data->progress.t_connect = 0;
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data->progress.t_appconnect = 0;
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data->progress.t_pretransfer = 0;
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data->progress.t_starttransfer = 0;
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data->progress.t_redirect = 0;
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data->progress.start.tv_sec = now.tv_sec - 2;
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data->progress.start.tv_usec = now.tv_usec;
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fake_t_startsingle_time(data, now, -2);
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Curl_pgrsTime(data, TIMER_NAMELOOKUP);
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Curl_pgrsTime(data, TIMER_CONNECT);
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Curl_pgrsTime(data, TIMER_APPCONNECT);
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Curl_pgrsTime(data, TIMER_PRETRANSFER);
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Curl_pgrsTime(data, TIMER_STARTTRANSFER);
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expect_timer_seconds(data, 2);
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/* now simulate the redirect */
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data->progress.t_redirect = data->progress.t_starttransfer + 1;
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fake_t_startsingle_time(data, now, -1);
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Curl_pgrsTime(data, TIMER_NAMELOOKUP);
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Curl_pgrsTime(data, TIMER_CONNECT);
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Curl_pgrsTime(data, TIMER_APPCONNECT);
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Curl_pgrsTime(data, TIMER_PRETRANSFER);
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/* ensure t_starttransfer is only set on the first invocation by attempting
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* to set it twice */
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Curl_pgrsTime(data, TIMER_STARTTRANSFER);
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Curl_pgrsTime(data, TIMER_STARTTRANSFER);
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expect_timer_seconds(data, 3);
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UNITTEST_END(t1399_stop(data))
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}
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