candor_classify/lib.rs
1//! candor-classify — the curated effect classifier (crate+path -> effect), extracted to a STABLE
2//! crate so both the nightly `rustc_private` lint AND a stable backend share ONE source of truth
3//! (no drift). Pure string logic; no rustc internals. The effect vocabulary lives in candor-report.
4
5use candor_report::EFFECTS;
6
7/// The canonical CANDOR_POLICY DSL parser (SPEC §6.2), shared by the nightly gate and candor-query.
8pub mod policy;
9
10/// Project-supplied rules, consulted only when the built-in `classify` returns None.
11pub fn classify_extra(
12 crate_name: &str,
13 path: &str,
14 extra: &[(&'static str, bool, String)],
15) -> Option<&'static str> {
16 for (eff, is_crate, prefix) in extra {
17 let hit = if *is_crate { crate_name.starts_with(prefix.as_str()) } else { path.starts_with(prefix.as_str()) };
18 if hit {
19 return Some(eff);
20 }
21 }
22 None
23}
24
25/// The exact third-party crates `classify` has effect rules for, and the crate-name
26/// PREFIXES it recognizes. This is the single source of truth for "what candor knows":
27/// it is emitted beside the JSON report (`<prefix>.calibrated.json`) so the Claude Code
28/// receipt's coverage check reads candor's real coverage instead of a hand-copied list.
29/// Keep in lockstep with `classify` below — the `db_crates_are_calibrated` and
30/// `calibrated_crates_are_live` tests (in this crate's `tests` module) enforce both directions.
31pub const CALIBRATED_CRATES: [&str; 59] = [
32 // network (aws_config resolves credentials over the network on `.load()`;
33 // git2 remote ops — fetch/push/connect — contact the network; async_net is smol's net layer;
34 // pnet is raw L2/L3 packet capture)
35 "reqwest", "isahc", "ureq", "curl", "aws_config", "git2", "tokio_tcp", "tokio_udp", "async_net",
36 "async_nats", "lapin", "lettre", "tungstenite", "elasticsearch", "tonic", "rdkafka", "pnet",
37 // directory traversal (ignore = gitignore-aware walker, powers ripgrep/fd; its walk executors are Fs)
38 // + filesystem watching (notify = inotify/FSEvents/kqueue wrapper; powers watchexec/cargo-watch)
39 "ignore", "notify",
40 // database (see DB_CRATES in classify)
41 "sqlx", "rusqlite", "postgres", "tokio_postgres", "diesel", "redis", "mongodb",
42 "mysql", "mysql_async", "sea_orm", "deadpool_postgres",
43 // filesystem (async_fs = smol; fs_err = std::fs wrapper; tempfile; glob) / entropy /
44 // subprocess (async_process = smol; duct) / env (dotenvy/dotenv) / clock (time) / log / clipboard
45 "memmap2", "fs_err", "async_fs", "tempfile", "glob",
46 "rand", "getrandom", "fastrand",
47 // entropy: the password-hashing tier (salt mints + bcrypt's internal salt) + the OsRng source
48 "argon2", "bcrypt", "scrypt", "pbkdf2", "password_hash", "rand_core",
49 "portable_pty", "async_process", "duct",
50 "dotenvy", "dotenv",
51 "chrono", "time", "tracing", "log", "arboard",
52 // compiler diagnostic emission (a dylint lint's output) — see the Log rules in classify
53 "rustc_lint", "rustc_errors",
54 // raw syscalls via FFI — the syscall-name table that lights up the FFI-thin tier (nix is routed
55 // through the same table by leaf name, so a consumer of nix is covered without nix's own source)
56 "libc", "nix", "rustix",
57];
58
59pub const CALIBRATED_PREFIXES: [&str; 3] = ["aws_sdk_", "aws_smithy", "cap_"];
60
61/// Crates `classify` matches by PATH prefix rather than crate-name equality (their effectful modules
62/// are recognised, e.g. `tokio::net::`/`async_std::fs::`/`mio::net::`), so they're absent from
63/// `CALIBRATED_CRATES` (which the liveness test probes by crate name). The coverage check must still
64/// treat them as *covered* — otherwise it would mislabel the most common async crates as blind spots.
65pub const PATH_CALIBRATED_CRATES: [&str; 3] = ["tokio", "async_std", "mio"];
66
67/// Representative path tails (each appended to a crate name) that the `calibrated_crates_are_live`
68/// liveness test probes: at least one must match for every `CALIBRATED_CRATES` entry, else the entry is
69/// dead. Exported as ONE source of truth because the nightly lint crate (`src/lib.rs`) runs the SAME
70/// liveness test — when the two probe lists were duplicated they drifted, and a rule keyed on a
71/// distinctive tail (pnet `::datalink::channel`, ignore `::WalkBuilder::build_parallel`, notify
72/// `::RecommendedWatcher::new`) added to only one list silently broke the other crate's `cargo test`.
73pub const CALIBRATION_PROBE_TAILS: &[&str] = &[
74 "::X::send", "::X::execute", "::X::call", "::X::query", "::X::fetch_one", "::Remote::fetch",
75 "::datalink::channel", "::WalkBuilder::build_parallel", "::RecommendedWatcher::new",
76 "::X::connect", "::Utc::now", "::X::load", "::__private_api::log", "::tempfile", "::glob",
77 "::X::run", "::dotenv", "::random", "::emit", "::X::emit_span_lint", "::X::anything",
78 "::SaltString::generate", "::hash", "::OsRng::fill_bytes",
79 // verb-precise crates whose whole-crate rules were narrowed to the effectful surface (the pure
80 // accessors/ctors/data-types now return None), so the liveness probe must name an EFFECTFUL path:
81 "::Mmap::map", "::event", "::u32", "::Clipboard::get_text", "::spawn_command",
82];
83
84/// Database client crates whose execution verbs are I/O (see the DB branch in `classify`).
85/// Module-level so `db_crates_are_calibrated` can enforce `DB_CRATES ⊆ CALIBRATED_CRATES`.
86pub const DB_CRATES: [&str; 11] = [
87 "sqlx", "rusqlite", "postgres", "tokio_postgres", "diesel", "redis", "mongodb",
88 "mysql", "mysql_async", "sea_orm", "deadpool_postgres",
89];
90
91/// Pure file-descriptor *ownership-transfer* leaves. These ADOPT an already-open descriptor
92/// (`from_raw_fd`/`from_raw_socket`/`from_raw_handle`), EXTRACT/BORROW one
93/// (`into_raw_fd`/`into_raw_socket`/`into_raw_handle`, `as_raw_fd`/`as_raw_socket`/`as_raw_handle`),
94/// or UNWRAP an async wrapper back to its std type (`into_std`) — none of them issue a syscall or
95/// perform I/O. candor's cardinal sin is calling a PURE function effectful, and these collide with the
96/// coarse std-type PREFIX rules (`std::net::TcpStream`/`std::fs::File`/`std::os::unix::net` → Net/Fs/Ipc)
97/// even though the descriptor was opened ELSEWHERE. The portable_pty/async_process Exec rule already
98/// exempts `from_raw_fd`; this generalises the same carve-out across the net/fs/ipc prefix rules.
99/// (Found by a real-world sweep of tokio: `TcpStream::into_std`, `*::from_raw_fd`, `*::as_raw_fd` all
100/// fabricated Net/Fs/Ipc.)
101const PURE_FD_TRANSFER: &[&str] = &[
102 "from_raw_fd", "from_raw_socket", "from_raw_handle",
103 "into_raw_fd", "into_raw_socket", "into_raw_handle",
104 "as_raw_fd", "as_raw_socket", "as_raw_handle",
105 "into_std",
106 // `SocketAddr::from_pathname` (std/async-std unix net) builds an address STRUCT from a path —
107 // it opens no socket. The `std::os::unix::net` prefix rule below would otherwise fabricate Ipc
108 // on it. (Found sweeping socket2: `SockAddr::as_unix` → `from_pathname` reported Ipc.)
109 "from_pathname",
110];
111
112/// Classify a resolved callee by the crate it belongs to and its full path.
113pub fn classify(crate_name: &str, path: &str) -> Option<&'static str> {
114 // Pure fd ownership-transfer/extraction leaves are never an effect, regardless of which std I/O
115 // type they hang off — exempt them BEFORE the coarse prefix rules can fabricate Net/Fs/Ipc.
116 if PURE_FD_TRANSFER.contains(&path.rsplit("::").next().unwrap_or(path)) {
117 return None;
118 }
119 if crate_name.starts_with("aws_sdk_") || crate_name.starts_with("aws_smithy") {
120 // Only request dispatch is network I/O; builder setters/accessors are pure.
121 if path.ends_with("::send") || path.ends_with("::send_with") {
122 return Some("Net");
123 }
124 return None;
125 }
126 // aws-config resolves credentials/region on `.load()` — it reaches the IMDS metadata
127 // endpoint / STS over the network (and reads ~/.aws + env). Builders (`defaults()`,
128 // `SdkConfig::builder()`, `BehaviorVersion::latest()`) are pure; the `load` is the I/O.
129 // (Found hardening on a real app, ebman: `builder.load().await` was classified pure.)
130 if crate_name == "aws_config" {
131 if path.ends_with("::load") || path.ends_with("::load_defaults") {
132 return Some("Net");
133 }
134 return None;
135 }
136 // git2 (libgit2 FFI): remote operations contact the network; everything else is local
137 // to the .git directory. Match the remote verbs precisely — NOT bare `::clone`, which is
138 // the `Clone`-trait dup of a `Remote` handle (pure), not `Repository::clone`. (Found
139 // hardening on gitui: `remote.fetch`/`remote.push` were classified network-free — a git
140 // client reporting it makes no network calls.)
141 if crate_name == "git2" {
142 if path.ends_with("::fetch")
143 || path.ends_with("::push")
144 || path.ends_with("::download")
145 || path.ends_with("::connect")
146 || path.ends_with("::connect_auth")
147 || path.ends_with("::ls")
148 || path.ends_with("::upload")
149 {
150 return Some("Net");
151 }
152 return None;
153 }
154 // libc — raw syscalls via FFI. The FFI-thin tier (nix, and the syscall layer beneath rusqlite/git2)
155 // is invisible to a name classifier unless we model libc directly: a 35-crate calibration
156 // (eval/calibration) showed nix reporting ZERO library effects because every wrapper bottoms out in
157 // an unrecognised `libc::*` call. Classify by syscall name, but ONLY the UNAMBIGUOUS ones — the
158 // socket family is Net, path/dir syscalls are Fs, spawn/exec/wait is Exec, SysV/pipe IPC is Ipc,
159 // env/clock/entropy each their own. We deliberately SKIP the generic file-descriptor ops
160 // (read/write/close/lseek/dup/fcntl/ioctl/poll/select/epoll*/mmap): they operate on ANY fd — file,
161 // socket, or pipe — so a fixed label would mis-categorise as often as it helps. An honest
162 // no-classify (under-report) beats emitting the WRONG effect. Pure conversions (htons/inet_pton/
163 // gmtime) are also skipped.
164 //
165 // `nix` (the idiomatic SAFE libc wrapper, in ~every Rust systems/CLI crate) is routed through the
166 // SAME table: its functions keep the syscall leaf name (`nix::fcntl::open`, `nix::sys::socket::connect`,
167 // `nix::unistd::execvp`). Without this, a CONSUMER of nix analysed without nix's own source (the
168 // stable scanner, single-crate) sees `nix::*` cross-crate and under-reports — serialport-rs opens its
169 // device via `nix::fcntl::open` and reported ZERO Fs. The nightly lint reaches `libc::*` THROUGH nix's
170 // body; this gives the scanner the same coverage directly. (Found sweeping serialport-rs.)
171 // `rustix` is the same shape as nix but does RAW syscalls (no libc underneath), so its functions MUST
172 // be classified directly. Its leaf names are the syscall names too (`rustix::time::clock_settime`,
173 // `rustix::fs::mkfifoat`/`symlink`/`stat`, `rustix::net::connect`) — route it through the same table.
174 // The rustix-specific `*at`/variant leaves it doesn't share with libc just under-report (the safe
175 // direction). VALIDATED, not speculative: coreutils' `date` reads/sets the clock via
176 // `rustix::time::clock_getres`/`clock_settime` and reported Clock=0; the file I/O that goes through
177 // std::fs was already correct, which is why only the rustix-only effects (Clock/Ipc) were missing.
178 if crate_name == "libc" || crate_name == "nix" || crate_name == "rustix" {
179 let f = path.rsplit("::").next().unwrap_or(path);
180 // path / directory / metadata syscalls (incl. *64 and *at variants)
181 const FS: &[&str] = &[
182 "open", "open64", "openat", "openat2", "creat", "creat64", "stat", "stat64", "lstat",
183 "lstat64", "fstatat", "fstatat64", "newfstatat", "statx", "access", "faccessat",
184 "faccessat2", "mkdir", "mkdirat", "rmdir", "unlink", "unlinkat", "rename", "renameat",
185 "renameat2", "link", "linkat", "symlink", "symlinkat", "readlink", "readlinkat", "chmod",
186 "fchmodat", "chown", "lchown", "fchownat", "truncate", "truncate64", "ftruncate",
187 "ftruncate64", "opendir", "fdopendir", "readdir", "readdir64", "readdir_r", "closedir",
188 "rewinddir", "seekdir", "telldir", "scandir", "mkstemp", "mkstemps", "mkostemp", "mkdtemp",
189 "mknod", "mknodat", "chdir", "fchdir", "getcwd", "get_current_dir_name", "chroot",
190 "pivot_root", "statfs", "statfs64", "fstatfs", "fstatfs64", "statvfs", "fstatvfs", "mount",
191 "umount", "umount2", "fsync", "fdatasync", "sync", "syncfs", "sync_file_range", "fallocate",
192 "posix_fallocate", "posix_fadvise", "sendfile", "sendfile64", "copy_file_range", "flock",
193 "getdents", "getdents64", "utime", "utimes", "lutimes", "futimens", "utimensat", "futimesat",
194 "realpath",
195 ];
196 // socket family — these operate only on sockets, so Net is unambiguous (AF_UNIX domain isn't
197 // visible at the call, so a Unix socket reads as Net rather than Ipc; acceptable over-general).
198 const NET: &[&str] = &[
199 "socket", "setsockopt", "getsockopt", "bind", "listen", "accept", "accept4", "connect",
200 "shutdown", "send", "sendto", "sendmsg", "sendmmsg", "recv", "recvfrom", "recvmsg",
201 "recvmmsg", "getpeername", "getsockname", "getaddrinfo", "freeaddrinfo", "getnameinfo",
202 ];
203 // process creation / replacement / reaping
204 const EXEC: &[&str] = &[
205 "fork", "vfork", "clone", "clone3", "execl", "execlp", "execle", "execv", "execvp",
206 "execvpe", "execve", "execveat", "fexecve", "posix_spawn", "posix_spawnp", "system",
207 "popen", "pclose", "wait", "waitpid", "wait3", "wait4", "waitid",
208 ];
209 // pipes / FIFOs / SysV + POSIX message queues, semaphores, shared memory; socketpair (AF_UNIX)
210 const IPC: &[&str] = &[
211 "pipe", "pipe2", "mkfifo", "mkfifoat", "socketpair", "msgget", "msgsnd", "msgrcv", "msgctl",
212 "semget", "semop", "semtimedop", "semctl", "shmget", "shmat", "shmdt", "shmctl", "mq_open",
213 "mq_send", "mq_receive", "mq_timedsend", "mq_timedreceive", "mq_close", "mq_unlink",
214 ];
215 const ENV: &[&str] = &["getenv", "secure_getenv", "setenv", "putenv", "unsetenv", "clearenv"];
216 const CLOCK: &[&str] = &[
217 "time", "gettimeofday", "clock_gettime", "clock_getres", "nanosleep", "clock_nanosleep",
218 // SETTING the system clock is a clock effect too (was unclassified — found on coreutils `date`,
219 // which sets it via `clock_settime`).
220 "clock_settime", "settimeofday", "stime", "adjtime", "adjtimex", "clock_adjtime",
221 ];
222 const RAND: &[&str] = &["getrandom", "getentropy", "arc4random", "arc4random_buf", "arc4random_uniform"];
223 if FS.contains(&f) {
224 return Some("Fs");
225 }
226 if NET.contains(&f) {
227 return Some("Net");
228 }
229 if EXEC.contains(&f) {
230 return Some("Exec");
231 }
232 if IPC.contains(&f) {
233 return Some("Ipc");
234 }
235 if ENV.contains(&f) {
236 return Some("Env");
237 }
238 if CLOCK.contains(&f) {
239 return Some("Clock");
240 }
241 if RAND.contains(&f) {
242 return Some("Rand");
243 }
244 return None;
245 }
246 // C-library FFI bindings: libsqlite3 (under rusqlite) and libgit2 (under git2). Like the libc tier,
247 // these crates are thin Rust over a C library, so their real I/O is invisible until the C entry
248 // points are named. Match by the DISTINCTIVE C function name (`sqlite3_*` / `git_*`) via the call's
249 // LEAF — independent of the binding crate's alias: rusqlite calls `ffi::sqlite3_step`, git2 calls
250 // `raw::git_remote_fetch`, and the nightly lint resolves the same to `libsqlite3_sys`/`libgit2_sys`;
251 // all spellings share the leaf. Only the I/O-performing entry points are listed — the in-memory
252 // accessors (`sqlite3_bind_*`/`sqlite3_column_*`, `git_*_oid`/strarray/options builders) stay pure,
253 // so a non-listed `sqlite3_`/`git_` leaf returns None (under-report, never a wrong effect). Calibrated
254 // + validated against rusqlite 0.39 / git2 0.20 source (eval/calibration).
255 {
256 let leaf = path.rsplit("::").next().unwrap_or(path);
257 if let Some(rest) = leaf.strip_prefix("sqlite3_") {
258 let _ = rest;
259 // SQLite C API operations that touch the database (open/exec/step/prepare/backup/blob/wal).
260 const DB: &[&str] = &[
261 "sqlite3_open", "sqlite3_open_v2", "sqlite3_open16", "sqlite3_close", "sqlite3_close_v2",
262 "sqlite3_exec", "sqlite3_step", "sqlite3_prepare", "sqlite3_prepare_v2",
263 "sqlite3_prepare_v3", "sqlite3_prepare16", "sqlite3_prepare16_v2", "sqlite3_prepare16_v3",
264 "sqlite3_get_table", "sqlite3_backup_init", "sqlite3_backup_step", "sqlite3_backup_finish",
265 "sqlite3_blob_open", "sqlite3_blob_read", "sqlite3_blob_write", "sqlite3_blob_reopen",
266 "sqlite3_load_extension", "sqlite3_wal_checkpoint", "sqlite3_wal_checkpoint_v2",
267 ];
268 return DB.contains(&leaf).then_some("Db");
269 }
270 if leaf.starts_with("git_") {
271 // libgit2: remote/transport operations contact the network … (incl. submodule clone/update,
272 // which `git_clone`/fetch the subrepo over its remote — `allow_fetch` defaults on; an A/B on
273 // git2 0.20 caught `Submodule::update`/`clone` reporting no `Net`).
274 const NET: &[&str] = &[
275 "git_clone", "git_remote_connect", "git_remote_connect_ext", "git_remote_fetch",
276 "git_remote_download", "git_remote_upload", "git_remote_push", "git_remote_ls",
277 "git_submodule_clone", "git_submodule_update",
278 ];
279 // … and repository/index/odb/checkout/ref/config operations touch the on-disk .git store.
280 const FS: &[&str] = &[
281 "git_repository_open", "git_repository_open_ext", "git_repository_open_bare",
282 "git_repository_init", "git_repository_init_ext", "git_repository_discover",
283 "git_checkout_tree", "git_checkout_head", "git_checkout_index", "git_index_read",
284 "git_index_write", "git_index_write_tree", "git_index_write_tree_to",
285 "git_index_add_bypath", "git_index_add_all", "git_odb_open", "git_odb_read",
286 "git_odb_write", "git_odb_open_wstream", "git_odb_open_rstream",
287 "git_blob_create_fromdisk", "git_blob_create_fromworkdir", "git_blob_create_from_disk",
288 "git_blob_create_from_workdir", "git_blob_create_from_stream", "git_commit_create",
289 "git_commit_create_v", "git_reference_create", "git_reference_set_target",
290 "git_reference_delete", "git_config_open_default", "git_config_open_ondisk",
291 "git_config_add_file_ondisk", "git_tag_create", "git_treebuilder_write",
292 "git_packbuilder_write",
293 ];
294 if NET.contains(&leaf) {
295 return Some("Net");
296 }
297 if FS.contains(&leaf) {
298 return Some("Fs");
299 }
300 return None;
301 }
302 if leaf.starts_with("curl_") {
303 // libcurl (under the `curl` crate, called `curl_sys::curl_*`). Only the entry points that
304 // PERFORM network I/O: the blocking transfer (`curl_easy_perform`), raw socket send/recv,
305 // the HTTP/2 keepalive PING (`upkeep`), and the multi-interface transfer pumps. The large
306 // pure surface (setopt/init/cleanup/reset/getinfo/escape/multi_add_handle/fdset/info_read)
307 // stays unclassified, as do `curl_multi_wait`/`poll` (readiness WAIT on sockets, no payload —
308 // the loop's `perform` is the tagged boundary, per the I/O-boundary principle). An A/B on
309 // curl 0.4 caught the whole crate reporting ZERO Net (`Easy::perform` read as pure).
310 const NET: &[&str] = &[
311 "curl_easy_perform", "curl_easy_send", "curl_easy_recv", "curl_easy_upkeep",
312 "curl_multi_perform", "curl_multi_socket_action",
313 ];
314 return NET.contains(&leaf).then_some("Net");
315 }
316 if let Some(op) = leaf.strip_prefix("SSL_") {
317 // OpenSSL (libssl, under the `openssl`/`native-tls` crates, called `ffi::SSL_*`). The TLS
318 // handshake and record I/O run over the peer socket -> Net. Unlike libc read/write, an SSL_*
319 // op is ~always over a network BIO (the rare memory-BIO/sans-IO case is the honest exception
320 // we accept). The crypto surface (EVP_*/SHA*/AES*) and pure setup (SSL_CTX_new/SSL_set_fd) are
321 // NOT here; `BIO_*` is skipped (a BIO may be memory or socket). Validated vs openssl 0.9 source.
322 const SSL_NET: &[&str] = &[
323 "connect", "accept", "do_handshake", "read", "read_ex", "write", "write_ex", "peek",
324 "peek_ex", "shutdown",
325 ];
326 return SSL_NET.contains(&op).then_some("Net");
327 }
328 }
329 // HTTP clients use the same builder pattern as the AWS SDK: only the dispatch is
330 // I/O. (Found by the eval: ebman's reqwest calls to the Anthropic API + webhooks
331 // were silently classified network-free because reqwest wasn't recognized.)
332 if crate_name == "reqwest" || crate_name == "isahc" {
333 // The builder chain is pure; the dispatch (`::send`/`::execute`) is the I/O. PLUS the one-shot
334 // CONVENIENCE functions `reqwest::get` / `reqwest::blocking::get` / `isahc::get`, which send
335 // immediately — they're not the `Client::get` builder (a different path, `reqwest::Client::get`),
336 // so an exact match avoids false-positiving the builder. (Found running on `xh`: a one-shot
337 // `reqwest::get(url)` was classified network-free.)
338 if path.ends_with("::send")
339 || path.ends_with("::execute")
340 || path == "reqwest::get"
341 || path == "reqwest::blocking::get"
342 || path == "isahc::get"
343 {
344 return Some("Net");
345 }
346 return None;
347 }
348 if crate_name == "ureq" && path.ends_with("::call") {
349 return Some("Net");
350 }
351 // The `curl` crate (libcurl's safe binding — cargo's own HTTP client): the dispatch verbs are
352 // `perform` (Easy/Easy2/Transfer/Multi), raw-socket `send`/`recv`, the keepalive `upkeep`, and the
353 // multi-interface `action` (socket_action). The big setopt-style builder surface stays pure.
354 // `Multi::timeout` is deliberately NOT matched: `Easy::timeout` is a pure CURLOPT_TIMEOUT setter
355 // sharing the leaf — an under-report on the rare event-loop kick beats mis-tagging every consumer
356 // that sets a timeout. (Consumer-side companion to the curl_* FFI tier, same A/B finding.)
357 if crate_name == "curl"
358 && (path.ends_with("::perform")
359 || path.ends_with("::send")
360 || path.ends_with("::recv")
361 || path.ends_with("::upkeep")
362 || path.ends_with("::action"))
363 {
364 return Some("Net");
365 }
366 // Message-queue clients fully encapsulate the socket (the underlying tokio::net lives
367 // inside the crate, unseen), so a user's connect/publish/consume calls ARE the I/O
368 // boundary — to a remote broker, hence Net. Match the broker round-trip verbs (snake_case
369 // methods); the CamelCase option/property builders stay pure. (Found hardening on consumer
370 // apps: lapin `basic_publish`/`queue_declare` and async-nats `publish`/`subscribe` were
371 // classified pure — a message-queue client reporting no I/O.)
372 if crate_name == "async_nats" {
373 if path.ends_with("::connect")
374 || path.contains("::publish")
375 || path.ends_with("::subscribe")
376 || path.ends_with("::queue_subscribe")
377 || path.contains("::request")
378 || path.ends_with("::flush")
379 {
380 return Some("Net");
381 }
382 return None;
383 }
384 if crate_name == "lapin" {
385 if path.ends_with("::connect")
386 || path.ends_with("::create_channel")
387 || path.contains("::basic_")
388 || path.contains("::queue_")
389 || path.contains("::exchange_")
390 || path.contains("::tx_")
391 || path.ends_with("::confirm_select")
392 || path.ends_with("::close")
393 {
394 return Some("Net");
395 }
396 return None;
397 }
398 // SMTP email — lettre's `Transport::send` is the network dispatch; Message building is
399 // pure. (Found hardening on a lettre consumer: `mailer.send(&email)` classified pure.)
400 if crate_name == "lettre" {
401 if path.ends_with("::send") || path.ends_with("::send_raw") {
402 return Some("Net");
403 }
404 return None;
405 }
406 // WebSockets — tungstenite (the modern successor to the old `websocket` crate). connect
407 // and the socket read/write/send are network; Message constructors are pure. (Found on a
408 // tungstenite consumer: connect + send + read classified pure.)
409 if crate_name == "tungstenite" {
410 if path.ends_with("::connect")
411 || path.ends_with("::read")
412 || path.ends_with("::write")
413 || path.ends_with("::send")
414 || path.ends_with("::close")
415 || path.ends_with("::flush")
416 || path.ends_with("::read_message")
417 || path.ends_with("::write_message")
418 {
419 return Some("Net");
420 }
421 return None;
422 }
423 // elasticsearch: request builders are pure; only the `.send()` dispatch is HTTP I/O
424 // (same shape as reqwest / the AWS SDK). (Found on an elasticsearch consumer.)
425 if crate_name == "elasticsearch" && path.ends_with("::send") {
426 return Some("Net");
427 }
428 // gRPC — tonic. The transport connect and the Grpc client RPC dispatch are network;
429 // codecs and request/response wrappers are pure. (connect repro-confirmed on a consumer;
430 // the unary/streaming RPC verbs are from the tonic::client::Grpc API.)
431 if crate_name == "tonic" {
432 if path.ends_with("::connect")
433 || path.ends_with("::unary")
434 || path.ends_with("::server_streaming")
435 || path.ends_with("::client_streaming")
436 || path.ends_with("::streaming")
437 {
438 return Some("Net");
439 }
440 return None;
441 }
442 // Kafka — rdkafka (FFI to librdkafka). Producer send + consumer poll/recv/subscribe/
443 // commit are network round-trips to the brokers. (API-calibrated + unit-tested; a real
444 // repro needs librdkafka/cmake, deferred.)
445 if crate_name == "rdkafka" {
446 if path.ends_with("::send")
447 || path.ends_with("::send_result")
448 || path.ends_with("::recv")
449 || path.ends_with("::poll")
450 || path.ends_with("::subscribe")
451 || path.ends_with("::commit")
452 || path.ends_with("::commit_message")
453 || path.ends_with("::commit_consumer_state")
454 || path.ends_with("::store_offset")
455 || path.ends_with("::seek")
456 || path.ends_with("::fetch_metadata")
457 || path.ends_with("::fetch_watermarks")
458 || path.ends_with("::flush")
459 {
460 return Some("Net");
461 }
462 return None;
463 }
464 // cap-std: capability-oriented std. I/O goes *through* a held capability handle
465 // (Dir/Pool/Clock/...), so these calls ARE the effect. Recognising them means a
466 // cap-std project's real I/O is detected and matches the capability it declared
467 // (via `declared_caps`/`capstd_cap`) — conformance against unforgeable capabilities.
468 if crate_name.starts_with("cap_") {
469 if path.contains("::net::Unix") || path.contains("::os::") {
470 return Some("Ipc");
471 }
472 if path.contains("::net") {
473 return Some("Net");
474 }
475 if path.contains("::time") {
476 return Some("Clock");
477 }
478 if path.contains("::fs") || crate_name == "cap_tempfile" || crate_name == "cap_directories" {
479 return Some("Fs");
480 }
481 return None;
482 }
483 // Local IPC (Unix-domain sockets) is I/O but not *network* — keep it distinct so
484 // CANDOR_NO_AMBIENT and audits don't conflate it with internet access. async-std puts its
485 // Unix sockets under `os::unix::net` (mirroring std); async-net (smol's net layer) under
486 // `unix`.
487 if path.starts_with("tokio::net::Unix")
488 || path.starts_with("std::os::unix::net")
489 || path.starts_with("async_std::os::unix::net")
490 || path.starts_with("async_net::unix")
491 {
492 return Some("Ipc");
493 }
494 // Raw packet capture / raw sockets — libpnet (the dominant low-level networking crate; powers
495 // bandwhich, sniffers, custom-protocol tools). `datalink::channel` opens an L2 socket and
496 // `transport::transport_channel` an L3/L4 raw socket — both ARE network I/O. Packet construction
497 // (pnet_packet / pnet_base, MacAddr, Ethernet frames…) is pure and stays unclassified. The actual
498 // frame read/write happens via methods on the returned Sender/Receiver (trait-object dispatch the
499 // syntactic backend can't resolve), so the channel-open call is the precise Net boundary. (Found
500 // scanning bandwhich — a packet sniffer — which reported Net 0.)
501 if crate_name == "pnet" || crate_name == "pnet_datalink" || crate_name == "pnet_transport" {
502 if path.ends_with("::channel") || path.ends_with("::transport_channel") {
503 return Some("Net");
504 }
505 return None;
506 }
507 // Directory traversal — `ignore` (BurntSushi's gitignore-aware walker; powers ripgrep, fd). The walk
508 // EXECUTORS read the directory tree from disk = Fs. Type-precise on purpose: the configuration builders
509 // (`OverrideBuilder::build`, `GitignoreBuilder::build`, the `WalkBuilder` setters) and `DirEntry`
510 // accessors are PURE — only `WalkBuilder::build`/`build_parallel` (which kick off the walk) and
511 // `WalkParallel::run` (which drives it) touch the filesystem. A bare `build` would wrongly flag the
512 // config builders. (Found scanning fd — a file finder — which reported Fs 2: its own `fs::read_dir`
513 // was caught, but the `ignore`-based traversal that IS fd was invisible cross-crate.)
514 if crate_name == "ignore" {
515 if path == "ignore::WalkBuilder::build"
516 || path == "ignore::WalkBuilder::build_parallel"
517 || path.ends_with("::WalkParallel::run")
518 // `add_ignore(path)` LOOKS like a config setter but reads that ignore file from disk at call
519 // time (it returns the read error) — unlike the pure `add_custom_ignore_filename(name)` which
520 // only stores a filename string. The lone Fs-touching builder method in the otherwise-pure setter
521 // surface, so it was silently pure under the covered-crate floor.
522 || path == "ignore::WalkBuilder::add_ignore"
523 {
524 return Some("Fs");
525 }
526 return None;
527 }
528 // Filesystem watching — `notify` (the de-facto fs-watch crate: watchexec, cargo-watch, mdbook). A
529 // watcher opens an OS notification handle (inotify / FSEvents / kqueue / ReadDirectoryChanges) and
530 // registers paths — observing filesystem state changes = Fs. The lifecycle boundary: any
531 // `*Watcher::new` constructor (RecommendedWatcher/PollWatcher/INotifyWatcher/FsEventWatcher/…), the
532 // `recommended_watcher` convenience fn, and the `watch`/`unwatch` registration verbs. `Config`/`Event`/
533 // `EventKind` data types stay pure. (Found scanning watchexec: its watcher-`create` read Fs 0.)
534 if crate_name == "notify" {
535 if path.ends_with("Watcher::new")
536 || path.ends_with("::recommended_watcher")
537 || path.ends_with("::watch")
538 || path.ends_with("::unwatch")
539 {
540 return Some("Fs");
541 }
542 return None;
543 }
544 // std DNS resolution — `("host", 80).to_socket_addrs()` / `std::net::lookup_host("host")` perform a
545 // real getaddrinfo query (Net), but the classify table covered only the socket I/O *types*, so they
546 // floored silently (sweep [37]; the syntactic engine modelled DNS only at the libc layer).
547 if path.ends_with("::to_socket_addrs")
548 || path == "std::net::lookup_host"
549 || path.ends_with("ToSocketAddrs::to_socket_addrs")
550 {
551 return Some("Net");
552 }
553 // Raw sockets. Match the I/O *types* only — `std::net` also holds pure data types
554 // (SocketAddr, IpAddr, …) whose construction must NOT be flagged.
555 if path.starts_with("std::net::TcpStream")
556 || path.starts_with("std::net::TcpListener")
557 || path.starts_with("std::net::UdpSocket")
558 || path.starts_with("tokio::net::")
559 {
560 // …but the PURE accessors read back local/option state — no network I/O — so the whole-type Net
561 // rule fabricated Net on them (sweep [24], the cardinal sin; mirrors the arboard/memmap2 accessor
562 // carve-outs). local_addr/peer_addr return bound/connected addresses; nodelay/ttl/take_error read
563 // socket options/state. Every genuine verb (connect/read/write/send/recv/accept) stays Net.
564 if path.ends_with("::local_addr")
565 || path.ends_with("::peer_addr")
566 || path.ends_with("::nodelay")
567 || path.ends_with("::ttl")
568 || path.ends_with("::take_error")
569 {
570 return None;
571 }
572 return Some("Net");
573 }
574 // Legacy tokio 0.1 socket crates — `tokio_tcp`/`tokio_udp` are *entirely* networking
575 // (no pure types to over-flag), so the whole crate is Net. (Found hardening on websocat,
576 // which is still on tokio 0.1: its `tokio_tcp::TcpStream::connect` was classified
577 // network-free — a network tool confidently reporting 0 Net.)
578 if matches!(crate_name, "tokio_tcp" | "tokio_udp") {
579 return Some("Net");
580 }
581 // The other async runtimes mirror tokio's module layout, and their `net` modules hold only
582 // socket I/O types (the pure `SocketAddr`/`IpAddr` are re-exports that resolve to `std::net`,
583 // so they're excluded by def-path). `mio` is the low-level non-blocking-socket layer under
584 // tokio/others; `async_net` is smol's net crate. Closes the async-std/smol/mio gap the
585 // tokio_tcp note flagged. (Calibrated by module structure — these crates ARE networking — not
586 // a live repro; the TCP/UDP types are defined in-crate so the def-path prefix is exact.)
587 if path.starts_with("async_std::net::")
588 || path.starts_with("mio::net::")
589 || crate_name == "async_net"
590 {
591 return Some("Net");
592 }
593 // Database clients. Like the AWS/HTTP builders, only the execution verbs are I/O;
594 // query *construction* is pure. Best-effort across crates (tune via CANDOR_CONFIG).
595 // Note: bare `::query` is deliberately omitted — it executes in postgres/rusqlite but
596 // only *builds* in sqlx, so including it would false-positive sqlx's `query()` builder.
597 if DB_CRATES.contains(&crate_name) {
598 // Postgres / SQLite-family clients: `query`/`batch_execute`/`prepare`/etc. ARE the
599 // execution (round-trips to the server). sqlx is the outlier where bare `query()`
600 // only BUILDS — it keeps the narrow set below. (Found by running on a real
601 // tokio-postgres app, pgman: candor had reported only 4 of ~20 DB call sites.)
602 if matches!(crate_name, "postgres" | "tokio_postgres" | "deadpool_postgres" | "rusqlite") {
603 const PG: [&str; 19] = [
604 "::query", "::query_one", "::query_opt", "::query_raw", "::execute",
605 "::batch_execute", "::simple_query", "::prepare", "::prepare_typed",
606 "::copy_in", "::copy_out", "::transaction", "::connect",
607 // rusqlite's dialect of the same verbs (a verb-probe found the CANONICAL rusqlite
608 // consumer API classifying pure): `query_row` is the one-row read, `query_map`/
609 // `query_and_then` the many-row reads, `execute_batch` is rusqlite's name for
610 // batch_execute, `prepare_cached` round-trips like prepare. `query_typed` is
611 // tokio_postgres 0.7.10+.
612 "::query_row", "::query_map", "::query_and_then", "::execute_batch",
613 "::prepare_cached", "::query_typed",
614 ];
615 if PG.iter().any(|v| path.ends_with(v)) {
616 return Some("Db");
617 }
618 // rusqlite only: opening the database IS the connection establishment (`Connection::
619 // open`/`open_in_memory`/`open_with_flags` — the embedded analog of `::connect`).
620 if crate_name == "rusqlite"
621 && (path.ends_with("::open")
622 || path.ends_with("::open_in_memory")
623 || path.ends_with("::open_with_flags"))
624 {
625 return Some("Db");
626 }
627 return None;
628 }
629 // redis: the way redis is ACTUALLY used is the high-level `Commands`/`AsyncCommands`
630 // traits (`con.get`/`set`/`hset`/`lpush`/…) — every method is a round-trip — plus
631 // connection establishment. The shared VERBS below only catch the low-level
632 // `cmd("GET").query(con)`, so without this a normal redis user's calls classify as
633 // PURE. (Found hardening on redis-rs: a fn doing `con.get`/`set` reported no effects.)
634 if crate_name == "redis"
635 && (path.contains("Commands::")
636 || path.contains("::get_connection")
637 || path.contains("::get_async_connection")
638 || path.contains("::get_multiplexed_async_connection")
639 // a live `ConnectionManager` round-trips (Db), but `ConnectionManagerConfig` is a pure
640 // in-memory builder (set_number_of_retries/set_max_delay) — exclude it (adversarial review).
641 // `ConnectionManager::clone` is an Arc refcount bump — no Db round-trip (sweep [27]).
642 || (path.contains("ConnectionManager") && !path.contains("ConnectionManagerConfig")
643 && !path.ends_with("::clone"))
644 || path.ends_with("::query")
645 || path.ends_with("::query_async")
646 || path.ends_with("::req_command")
647 || path.ends_with("::req_packed_command")
648 || path.ends_with("::req_packed_commands"))
649 {
650 return Some("Db");
651 }
652 // mongodb: a document-store API with none of the SQL verbs — the user calls
653 // `coll.find_one`/`insert_one`/`aggregate`/… and `Client::with_uri_str`. Without
654 // these a mongodb user's calls classify PURE. (Found hardening: a fn doing
655 // `find_one`+`insert_one` reported no effects.) Handle accessors (name/namespace)
656 // and option/doc builders don't match these verbs, so they stay pure.
657 if crate_name == "mongodb" {
658 const MONGO: [&str; 27] = [
659 "::with_uri_str", "::connect", "::find", "::find_one", "::insert_one",
660 "::insert_many", "::update_one", "::update_many", "::delete_one",
661 "::delete_many", "::replace_one", "::aggregate", "::count_documents",
662 "::estimated_document_count", "::count", "::distinct", "::run_command",
663 "::find_one_and_update", "::find_one_and_delete", "::find_one_and_replace",
664 "::list_collections", "::list_collection_names", "::list_databases",
665 "::list_database_names", "::create_collection", "::create_index", "::watch",
666 ];
667 if MONGO.iter().any(|v| path.ends_with(v)) {
668 return Some("Db");
669 }
670 return None;
671 }
672 // mysql / mysql_async: the `query`/`exec` families + `get_conn`/`ping` execute
673 // immediately — no build-then-execute split like sqlx, so matching `::query` is safe
674 // here. Same DB-verb-dialect gap class as redis/mongodb; calibrated from the Queryable
675 // API (unit-tested; a real-app repro is the remaining confirmation).
676 if matches!(crate_name, "mysql" | "mysql_async") {
677 const MY: [&str; 16] = [
678 "::query", "::query_first", "::query_iter", "::query_map", "::query_fold",
679 "::query_drop", "::exec", "::exec_first", "::exec_iter", "::exec_map",
680 "::exec_fold", "::exec_drop", "::exec_batch", "::prep", "::ping", "::get_conn",
681 ];
682 if MY.iter().any(|v| path.ends_with(v)) {
683 return Some("Db");
684 }
685 return None;
686 }
687 // sea_orm: an ORM whose execution is split from building (like sqlx). The query
688 // BUILDERS (`Entity::find`, `Entity::insert`) are pure; execution happens at `.all`/
689 // `.one`/`.count`/`.stream` and `Insert/Update/Delete::exec`. The write path via an
690 // ActiveModel (`model.insert(db)`) executes too — distinguished from the `EntityTrait`
691 // builder by the trait in the path (`ActiveModelTrait::`). (Found hardening on a
692 // sea_orm consumer app: `.all(db)` reads and `ActiveModel::insert` writes were pure.)
693 if crate_name == "sea_orm" {
694 // sea_orm RE-EXPORTS sea_query (`sea_orm::sea_query::…`), whose builder algebra collides with
695 // the execution verbs: `Func::count(col)` builds a COUNT() expr, `Condition::all()` AND-groups
696 // filters, `Expr::count(…)` — all PURE, none touch a db. The `::all`/`::count`/`::one` execution
697 // rule fabricated Db on them (sweep [5]). sea_query is pure query construction end-to-end, so
698 // exclude the whole re-exported namespace first.
699 if path.contains("sea_query") {
700 return None;
701 }
702 if path.ends_with("::all")
703 || path.ends_with("::one")
704 || path.ends_with("::count")
705 || path.ends_with("::stream")
706 || path.ends_with("::exec")
707 || path.ends_with("::exec_with_returning")
708 || path.ends_with("::exec_without_returning")
709 || path.ends_with("::connect")
710 || path.ends_with("::execute")
711 || path.ends_with("::execute_unprepared")
712 || path.ends_with("::query_one")
713 || path.ends_with("::query_all")
714 || path.ends_with("::fetch_page")
715 || path.ends_with("::num_items")
716 || path.contains("ActiveModelTrait::")
717 {
718 return Some("Db");
719 }
720 return None;
721 }
722 // (Reached by sqlx + diesel — the build-vs-execute-split crates.) `first` is diesel's
723 // LIMIT-1 round trip and `load_iter` its 2.x streaming execution; `fetch_many` is sqlx's
724 // multi-result stream. All crate-gated, so a std `Vec::first` never resolves here.
725 const VERBS: [&str; 19] = [
726 "::execute", "::query_row", "::query_map", "::query_one", "::fetch_one",
727 "::fetch_all", "::fetch_optional", "::fetch", "::fetch_many", "::connect",
728 "::acquire", "::begin", "::commit", "::rollback", "::load", "::load_iter",
729 "::first", "::get_result", "::get_results",
730 ];
731 if VERBS.iter().any(|v| path.ends_with(v)) {
732 return Some("Db");
733 }
734 return None;
735 }
736 // std::path::Path / PathBuf STAT-family methods hit the filesystem (each is a stat/readlink/
737 // readdir syscall) — unlike the rest of the std::path surface, which is pure string manipulation
738 // (join/file_name/extension/parent/…). Verb-precise so the scanner's receiver inference can safely
739 // route a `path.symlink_metadata()` method call here. (A blackout screen caught gix-dir — an entire
740 // directory WALKER — reporting ZERO Fs because all its I/O is Path-method calls; same class as
741 // fd's residual `Path::symlink_metadata` under-report.)
742 if let Some(m) = path
743 .strip_prefix("std::path::Path::")
744 .or_else(|| path.strip_prefix("std::path::PathBuf::"))
745 {
746 const STAT: &[&str] = &[
747 "metadata", "symlink_metadata", "canonicalize", "read_link", "read_dir", "exists",
748 "try_exists", "is_file", "is_dir", "is_symlink",
749 ];
750 return STAT.contains(&m).then_some("Fs");
751 }
752 // Filesystem. `tokio::fs`/`async_std::fs` are the async mirrors of `std::fs`; `async_fs` is
753 // smol's fs crate; `fs_err` is a drop-in `std::fs` wrapper (its whole surface is fs I/O).
754 if path.starts_with("std::fs::")
755 || path.starts_with("tokio::fs::")
756 || path.starts_with("async_std::fs::")
757 || crate_name == "async_fs"
758 || crate_name == "fs_err"
759 {
760 return Some("Fs");
761 }
762 // memmap2: only `MmapOptions::map*` (and the in-place `Mmap::flush`/`make_*` protection
763 // changes / `remap`) actually issue the mmap/msync/mprotect/mremap syscall = Fs. The rest of the
764 // crate is PURE: `MmapOptions::new`/setters BUILD the request, and once a region is mapped, reads
765 // over it (`Mmap::len`/`is_empty`/`as_ptr`/`as_mut_ptr`/`deref` into the byte slice) are plain
766 // memory access with no syscall. Whole-crate Fs fabricated Fs on those reads (a `m.len()` the
767 // scanner's receiver inference routes to `memmap2::Mmap::len`). Match the syscall-issuing verbs;
768 // everything else returns None (pure). `map*` covers `map`/`map_mut`/`map_exec`/`map_copy`/
769 // `map_copy_read_only`/`map_raw`/`map_raw_read_only`/`map_anon`.
770 if crate_name == "memmap2" {
771 let m = path.rsplit("::").next().unwrap_or(path);
772 if m.starts_with("map")
773 || m == "flush"
774 || m == "flush_async"
775 || m == "flush_range"
776 || m == "flush_async_range"
777 || m == "remap"
778 || m.starts_with("make_")
779 || m == "advise"
780 || m == "advise_range"
781 || m == "lock"
782 || m == "unlock"
783 {
784 return Some("Fs");
785 }
786 return None;
787 }
788 // tempfile: creating a temp file/dir touches the disk. Match the create/persist verbs (the
789 // `Builder` setters — prefix/suffix/rand_bytes — stay pure). `persist`/`keep` rename/retain
790 // the file on disk; `close` removes it.
791 if crate_name == "tempfile"
792 && (path.ends_with("::tempfile")
793 || path.ends_with("::tempfile_in")
794 || path.ends_with("::tempdir")
795 || path.ends_with("::tempdir_in")
796 || path.ends_with("NamedTempFile::new")
797 || path.ends_with("NamedTempFile::new_in")
798 || path.ends_with("TempDir::new")
799 || path.ends_with("TempDir::new_in")
800 || path.ends_with("::persist")
801 || path.ends_with("::persist_noclobber")
802 || path.ends_with("::keep"))
803 {
804 return Some("Fs");
805 }
806 // glob: walks the filesystem to expand a pattern (the returned iterator reads directories).
807 // `Pattern::matches` is pure string matching — match only the directory-walking entry points.
808 if crate_name == "glob" && (path.ends_with("::glob") || path.ends_with("::glob_with")) {
809 return Some("Fs");
810 }
811 // Password-hashing / KDF crates — the entropy tier (the TS engine's CTA lesson: an invisible
812 // argon2 landed on exactly the call a security review cares about). In this engine's
813 // verb-precise style the ENTROPY is the salt mint: `SaltString::generate(OsRng)` in the
814 // password-hash API family, and bcrypt's `hash`/`hash_with_result` (salt minted internally).
815 // Verification and explicit-salt hashing are deterministic recomputation — pure. `rand_core`
816 // carries the OsRng source itself (otherwise the most common salt mint is invisible).
817 if matches!(crate_name, "argon2" | "scrypt" | "pbkdf2" | "password_hash") {
818 if path.contains("SaltString::generate") {
819 return Some("Rand");
820 }
821 return None;
822 }
823 if crate_name == "bcrypt" {
824 if path.ends_with("::hash") || path.ends_with("::hash_with_result") {
825 return Some("Rand");
826 }
827 return None;
828 }
829 if crate_name == "rand_core" {
830 if path.contains("OsRng")
831 || path.ends_with("::next_u32")
832 || path.ends_with("::next_u64")
833 || path.ends_with("::fill_bytes")
834 {
835 return Some("Rand");
836 }
837 return None;
838 }
839 // Randomness / entropy. `getrandom`/`fastrand` are effectful end-to-end. `rand` is NOT — it
840 // mixes entropy/generation (effectful) with *pure* distribution constructors (`Uniform::new`,
841 // `Normal::new`) and deterministic-seed constructors (`seed_from_u64`). Flagging the whole crate
842 // over-reported those as `Rand`; match only the calls that actually consume randomness — the
843 // entropy sources (`OsRng`, `thread_rng`/`rng`, `from_entropy`/`from_os_rng`) and the generation
844 // verbs (`gen*`/`random*`/`fill*`/`sample*`/`next_u*`). A `Uniform::new` is now correctly pure.
845 if crate_name == "getrandom" {
846 return Some("Rand");
847 }
848 // fastrand: like `rand`, it mixes entropy-consuming generation (effectful) with PURE deterministic
849 // pieces. `Rng::with_seed(42)` is a DETERMINISTIC seeded constructor (consumes no entropy — the same
850 // seed gives the same stream), and `Rng::fork`/`Rng::clone` just split/copy existing state. Those are
851 // PURE; whole-crate Rand fabricated Rand on them. The effect is the value-drawing methods (`u32`/
852 // `usize`/`bool`/`f64`/`char`/`alphanumeric`/`choice`/`choose_multiple`/`shuffle`/`fill`/the range
853 // forms) AND the entropy-seeded entry points: bare `Rng::new()` (seeds from the global entropy-backed
854 // generator), `fastrand::seed`, and the top-level `fastrand::u32(..)` free functions (which draw from
855 // the thread-local generator). `with_seed` is exempted explicitly; any other method on an `Rng`
856 // (i.e. a value draw) is Rand.
857 if crate_name == "fastrand" {
858 let m = path.rsplit("::").next().unwrap_or(path);
859 // Provably pure: deterministic seeded ctor + state split/copy.
860 if m == "with_seed" || m == "fork" || m == "clone" {
861 return None;
862 }
863 // Everything else fastrand exposes either draws a value or seeds from entropy → Rand. (The crate
864 // has no pure data types beyond the `Rng` handle itself, so a non-draw stray would have to be a
865 // method we don't recognise — keep the effect, the safe direction.)
866 return Some("Rand");
867 }
868 if crate_name == "rand" {
869 let rng_verb = path.ends_with("::gen")
870 || path.ends_with("::gen_range")
871 || path.ends_with("::gen_bool")
872 || path.ends_with("::gen_ratio")
873 || path.ends_with("::random")
874 || path.ends_with("::random_range")
875 || path.ends_with("::random_bool")
876 || path.ends_with("::random_ratio")
877 || path.ends_with("::random_iter") // rand 0.9 iterator generator
878 || path.ends_with("::gen_iter")
879 || path.ends_with("::fill")
880 || path.ends_with("::fill_bytes")
881 || path.ends_with("::try_fill")
882 || path.ends_with("::try_fill_bytes")
883 || path.ends_with("::sample")
884 || path.ends_with("::sample_iter")
885 || path.ends_with("::next_u32")
886 || path.ends_with("::next_u64")
887 || path.ends_with("::thread_rng")
888 || path.ends_with("::rng")
889 || path.ends_with("::from_entropy")
890 || path.ends_with("::from_os_rng");
891 // `OsRng` is the OS entropy SOURCE, but `clone`/`fork`/`default` just copy or construct the
892 // (zero-sized) handle and draw no entropy — pure, exactly like the `fastrand` arm's clone/fork
893 // exemption above. The actual draws (`fill_bytes`/`next_u*`/…) are caught by `rng_verb`. Without
894 // this exemption the blanket `contains("OsRng")` fabricated `Rand` on `OsRng::clone` (adversarial
895 // review: OsRng is a unit struct, cloning consumes nothing).
896 let m = path.rsplit("::").next().unwrap_or(path);
897 let os_rng = path.contains("OsRng") && !matches!(m, "clone" | "fork" | "default");
898 if rng_verb || os_rng {
899 return Some("Rand");
900 }
901 return None;
902 }
903 // Subprocess spawning. `tokio::process` is the async mirror of `std::process` — it exists
904 // only to spawn/control subprocesses (`Command`/`Child`, no pure data types like std's
905 // `Stdio`/`ExitStatus`/`exit`), so spawning through it is Exec just the same. Without this an
906 // async app's `tokio::process::Command::new(..).spawn()` classified pure — a silent under-report
907 // of subprocess execution, the dangerous direction (mirrors the tokio::fs/tokio::net coverage).
908 if path.starts_with("std::process::Command")
909 || path.starts_with("std::process::Child")
910 || path.starts_with("tokio::process::Command")
911 || path.starts_with("tokio::process::Child")
912 || path.starts_with("async_std::process::Command")
913 || path.starts_with("async_std::process::Child")
914 {
915 // PURE read-backs of the builder's stored fields / the cached pid — no spawn, no syscall — so the
916 // whole-type Exec rule fabricated Exec on them (sweep [23]; mirrors the portable_pty getter carve-
917 // out just below). get_program/get_args/get_envs/get_current_dir read the Command; Child::id reads
918 // the cached pid. Every genuine verb (new/spawn/output/status/wait/kill) stays Exec.
919 if path.ends_with("::get_program")
920 || path.ends_with("::get_args")
921 || path.ends_with("::get_envs")
922 || path.ends_with("::get_current_dir")
923 || path.ends_with("Child::id")
924 {
925 return None;
926 }
927 return Some("Exec");
928 }
929 // portable_pty / async_process are whole-crate Exec EXCEPT for the proven-pure surface they expose:
930 // the `CommandBuilder` GETTERS (`get_argv`/`get_cwd`/`get_env`/`as_unix_command_line`…) read back
931 // configuration, and the PURE DATA types (`PtySize::default`, `ExitStatus`/`Stdio`/`CommandBuilder`
932 // construction/setters). The earlier `is_cmd_naming_method` fix stopped the head-refinement LEAK, but
933 // the BASE Exec still fabricated on these accessors (a `cmd.get_cwd()` the scanner routes to
934 // `portable_pty::CommandBuilder::get_cwd`). Subtract the read-back getters and the obvious pure
935 // ctors/setters; the spawn/wait/exec surface (`spawn_command`/`openpty`/`wait`/`kill`/`exec`…) keeps
936 // Exec. SUBTRACT only what is provably pure — when unrecognised, KEEP Exec (the safe direction).
937 if crate_name == "async_process" || crate_name == "portable_pty" {
938 let m = path.rsplit("::").next().unwrap_or(path);
939 // configuration read-back getters — pure (no spawn).
940 if m.starts_with("get_") || m == "as_unix_command_line" {
941 return None;
942 }
943 // pure data-type ctors/setters/derives that NAME no program and spawn nothing.
944 if matches!(
945 m,
946 "default" | "new" | "piped" | "null" | "inherit" | "from_raw_fd"
947 | "arg" | "args" | "arg0" | "env" | "envs" | "env_clear" | "env_remove"
948 | "cwd" | "current_dir" | "rows" | "cols"
949 | "clone" | "fmt" | "eq" | "ne" | "hash"
950 ) {
951 return None;
952 }
953 return Some("Exec");
954 }
955 // duct: a subprocess-orchestration crate. `cmd()`/`cmd!` only *build* an Expression; the
956 // spawn/wait happens at `run`/`read`/`start`. Match the execution verbs, not the builder.
957 if crate_name == "duct"
958 && (path.ends_with("::run")
959 || path.ends_with("::read")
960 || path.ends_with("::start")
961 || path.ends_with("::read_chars"))
962 {
963 return Some("Exec");
964 }
965 if path.starts_with("std::env::") {
966 return Some("Env");
967 }
968 // dotenvy / dotenv: load environment variables (reading a `.env` file and mutating the process
969 // environment). Match the load/read entry points; `Error`/builder types stay pure.
970 if matches!(crate_name, "dotenvy" | "dotenv")
971 && (path.ends_with("::dotenv")
972 || path.ends_with("::dotenv_override")
973 || path.ends_with("::from_path")
974 || path.ends_with("::from_path_override")
975 || path.ends_with("::from_filename")
976 || path.ends_with("::from_filename_override")
977 || path.ends_with("::from_read")
978 || path.ends_with("::from_read_override")
979 || path.ends_with("::load")
980 || path.ends_with("::var")
981 || path.ends_with("::vars"))
982 {
983 return Some("Env");
984 }
985 // Wall-clock reads. Match the `now` accessor precisely (ends_with), not any path
986 // containing the substring "now". The `time` crate (distinct from `std::time`/`chrono`)
987 // reads the clock via `now_utc`/`now_local` (and the deprecated `Instant::now`).
988 if (crate_name == "chrono" || path.starts_with("std::time::")) && path.ends_with("::now") {
989 return Some("Clock");
990 }
991 if crate_name == "time"
992 && (path.ends_with("::now_utc") || path.ends_with("::now_local") || path.ends_with("::now"))
993 {
994 return Some("Clock");
995 }
996 // `tracing`: same principle as the `log` facade below — the crate's TYPES are pure data, so match
997 // the emit, not the whole crate. The actual program output is the macro-expanded
998 // `Subscriber::event`/`event!`/`Span::*enter*` dispatch and the `Span::new*`/`Span::record`
999 // recording path that drives the subscriber. The data-type accessors — `Level::as_str`,
1000 // `Span::is_disabled`/`metadata`/`id`, and constructing/reading `Level`/`LevelFilter`/`Span`/
1001 // `Event`/`Metadata`/`Field`/`FieldSet`/`Id` — are PURE (no output is produced), so whole-crate Log
1002 // fabricated Log on them. Match the emit verbs; everything else returns None.
1003 if crate_name == "tracing" {
1004 let m = path.rsplit("::").next().unwrap_or(path);
1005 // The user-facing emit MACROS (`tracing::info!`/`warn!`/…) — candor-scan is pre-expansion, so it
1006 // sees the raw macro path `tracing::info`, not the expanded `__tracing`/`Subscriber::event` the
1007 // deep (post-expansion) engine sees. Only the macro names; the pure DATA types (Level/Span/Event)
1008 // have other tails and stay None.
1009 if m == "trace" || m == "debug" || m == "info" || m == "warn" || m == "error"
1010 || m == "trace_span" || m == "debug_span" || m == "info_span" || m == "warn_span"
1011 || m == "error_span" || m == "span"
1012 || m == "event"
1013 || m == "new_span"
1014 || m == "record"
1015 || m == "record_follows_from"
1016 || m == "enter"
1017 || m == "exit"
1018 || m == "in_scope"
1019 || m == "entered"
1020 || path.contains("::__macro_support")
1021 || path.contains("::__tracing")
1022 || path.contains("Subscriber::event")
1023 || path.contains("Subscriber::new_span")
1024 || path.contains("Subscriber::enter")
1025 || path.contains("Subscriber::exit")
1026 {
1027 return Some("Log");
1028 }
1029 return None;
1030 }
1031 // The `log` facade: its macros route through `log::__private_api`; the crate's types
1032 // (`Level`, `LevelFilter`) are pure, so match the logging entry, not the whole crate.
1033 if crate_name == "log" {
1034 // Expanded macro form (deep engine) OR the raw user-facing macro names (candor-scan, pre-expansion).
1035 // `log::Level`/`LevelFilter`/`Record`/`Metadata` have other tails, so the type surface stays pure.
1036 let m = path.rsplit("::").next().unwrap_or(path);
1037 if path.contains("::__private_api")
1038 || m == "error" || m == "warn" || m == "info" || m == "debug" || m == "trace" || m == "log"
1039 {
1040 return Some("Log");
1041 }
1042 }
1043 // Compiler diagnostic emission — the ONE genuinely effectful operation in the otherwise-pure
1044 // rustc_* surface (a dylint lint's actual OUTPUT: it writes warnings/errors to the compiler's
1045 // diagnostic sink). Classified `Log` (same family as `tracing`/`log` — program output). Match the
1046 // emission verbs precisely; rustc_lint/rustc_errors are mostly pure types (Lint, LintId, the Diag
1047 // BUILDERS), and only the terminal `emit`/`emit_span_lint` actually produces output.
1048 if crate_name == "rustc_lint"
1049 && (path.ends_with("::emit_span_lint")
1050 || path.ends_with("::span_lint")
1051 || path.ends_with("::span_lint_hir"))
1052 {
1053 return Some("Log");
1054 }
1055 if crate_name == "rustc_errors"
1056 && (path.ends_with("::emit")
1057 || path.ends_with("::emit_diagnostic")
1058 || path.ends_with("::emit_now"))
1059 {
1060 return Some("Log");
1061 }
1062 // arboard: the effectful surface is the `Clipboard` handle's read/write verbs (each talks to the
1063 // OS clipboard / X11/Wayland/Win32/NSPasteboard server). The data types — chiefly `arboard::Error`
1064 // (whose `Display`/`to_string` formatting is pure) and the `ImageData`/`GetExtLinux`/`SetExtLinux`
1065 // option types — are PURE, so whole-crate Clipboard fabricated Clipboard on e.g. an error
1066 // `to_string()`. Match the handle verbs; everything else returns None. `Clipboard::new` opens the
1067 // connection to the clipboard server, so it's an effect too; `get`/`set` return the
1068 // builder-then-read `Get`/`Set` cursors whose `text`/`image`/`html` terminals do the I/O.
1069 if crate_name == "arboard" {
1070 let m = path.rsplit("::").next().unwrap_or(path);
1071 if m == "new"
1072 || m == "get"
1073 || m == "set"
1074 || m == "clear"
1075 || m == "get_text"
1076 || m == "set_text"
1077 || m == "set_html"
1078 || m == "get_image"
1079 || m == "set_image"
1080 || m == "text"
1081 || m == "image"
1082 || m == "html"
1083 {
1084 return Some("Clipboard");
1085 }
1086 return None;
1087 }
1088 None
1089}
1090
1091pub fn cap_from_name(name: &str) -> Option<&'static str> {
1092 EFFECTS.iter().copied().find(|e| *e == name)
1093}
1094
1095/// Refine the `Exec` cliff (spec §4 ⟨0.5⟩): the effects a *literal, statically-known* subprocess
1096/// head implies, matched by basename (`/usr/bin/curl` → `curl`). The head's effects are ADDED to a
1097/// caller that already carries `Exec` (a subprocess is still spawned — `Exec` is never dropped); an
1098/// unrecognised or dynamically-built head returns `&[]` and keeps the bare cliff (never guess). A
1099/// **candor engine** reads `Fs`/`Env` only — spec §7 item 12 (the analyzer self-boundary) guarantees
1100/// that, so that case is spec-supplied, not curation. The rest is a small curated table under the
1101/// same under-report rule as the crate classifier. INVARIANT: every head here is an external tool
1102/// that does NOT run the analysed project's own code (so `make`/`npm`/`cargo` are deliberately
1103/// absent — they stay the cliff). The reference engines share this table so the `Exec` boundary —
1104/// the one boundary every engine hits — refines identically (the §4-consistency argument).
1105pub fn classify_command_head(cmd: &str) -> &'static [&'static str] {
1106 // Only UNAMBIGUOUS single-effect tools belong here. A multi-modal head (`git status` is local,
1107 // `git push` is Net; `rsync` local-vs-remote) would FABRICATE the effect for its common case —
1108 // the under-report rule forbids it, so such heads keep the bare cliff.
1109 match cmd.rsplit(['/', '\\']).next().unwrap_or(cmd) {
1110 "curl" | "wget" | "http" | "ssh" | "scp" | "sftp" | "ftp" | "telnet" => &["Net"],
1111 "psql" | "mysql" | "sqlite3" | "mongosh" | "mongo" | "redis-cli" | "cqlsh" | "influx" => &["Db"],
1112 // candor engines — Fs/Env only, guaranteed by spec §7 item 12 (the analyzer self-boundary)
1113 "candor" | "candor-run.sh" | "candor-scan" | "candor-query" | "candor-java"
1114 | "candor-classify" | "candor-report" | "cargo-candor" => &["Env", "Fs"],
1115 _ => &[],
1116 }
1117}
1118
1119/// Whether a subprocess-builder method only MODIFIES the command (`.arg`, `.env`, `.current_dir`)
1120/// rather than NAMING the program (`Command::new`, `duct::cmd`). A WHOLE-CRATE-Exec crate
1121/// (`portable_pty`, `duct`, `async_process`) classifies *every* method as `Exec`, so the
1122/// head-refinement must skip these: an arg or env-var-name literal that happened to match a head
1123/// (`.env("psql", …)`, `.arg("curl")`) would FABRICATE that effect — the §1 under-report rule. The
1124/// method is the call path's last segment.
1125pub fn is_cmd_builder_method(method: &str) -> bool {
1126 matches!(
1127 method,
1128 "arg" | "args" | "arg0" | "env" | "envs" | "env_clear" | "env_remove" | "current_dir"
1129 | "cwd" | "stdin" | "stdout" | "stderr" | "pre_exec" | "creation_flags" | "uid" | "gid"
1130 | "groups" | "process_group"
1131 )
1132}
1133
1134/// Whether a subprocess method NAMES the program (so its first string literal IS the command head to
1135/// refine): `Command::new("curl")`, `duct::cmd("curl", …)`. The head-refinement must fire ONLY here —
1136/// an ALLOWLIST, not "any method except known modifiers". A whole-crate-Exec crate classifies EVERY
1137/// method as `Exec`, so a denylist leaked NON-naming methods that aren't modifiers — a getter like
1138/// `CommandBuilder::get_env("psql")` (reading back an env-var KEY, not a program) fed `"psql"` to the
1139/// head classifier and FABRICATED `Db` (review find). Only `new`/`cmd` name a program; everything else
1140/// (modifiers, getters `get_*`, custom builder methods) keeps the bare `Exec` cliff — under-refine
1141/// (safe) rather than fabricate. `std::process::Command` is verb-precise so getters never fire `Exec`
1142/// there anyway; the allowlist makes the whole-crate-Exec crates safe too.
1143pub fn is_cmd_naming_method(method: &str) -> bool {
1144 matches!(method, "new" | "cmd")
1145}
1146
1147/// The masking guard (AS-EFF-008): a Net call whose method takes the HOST/URL as an argument is
1148/// "establishing" — a classified Net call here with no captured host literal leaves the endpoint
1149/// structurally INVISIBLE (a runtime-built host), so the surface is incomplete and the gate must fail
1150/// closed (else a benign sibling literal masks the runtime endpoint). An ALLOWLIST of connection-
1151/// establishing verbs — the SAFE direction: a USE-verb on an already-connected socket
1152/// (`stream.write`/`read`/`flush`, `socket.send`/`recv`) is NOT here, so a missing literal there (the
1153/// host was fixed at `connect`) never false-positives. Under-catching an unusual establishing verb is a
1154/// missed mask (sound-with-disclosure), never a broken gate. The arg is the method (path's last segment).
1155pub fn is_net_establishing(method: &str) -> bool {
1156 matches!(
1157 method,
1158 "connect"
1159 | "connect_timeout"
1160 | "get"
1161 | "post"
1162 | "put"
1163 | "patch"
1164 | "delete"
1165 | "head"
1166 | "request"
1167 | "send_to"
1168 | "lookup_host"
1169 | "to_socket_addrs"
1170 )
1171}
1172
1173/// Map a cap-std capability *type* to the effect it authorises. Holding one of these
1174/// (e.g. `&Dir`) is the real, unforgeable right to perform that effect — so candor
1175/// treats it as a declared capability, exactly like its own `&Fs` token.
1176pub fn capstd_cap(crate_name: &str, type_name: &str) -> Option<&'static str> {
1177 if !crate_name.starts_with("cap_") {
1178 return None;
1179 }
1180 Some(match type_name {
1181 "Dir" => "Fs",
1182 "TcpListener" | "TcpStream" | "UdpSocket" | "Pool" => "Net",
1183 "UnixListener" | "UnixStream" | "UnixDatagram" => "Ipc",
1184 "SystemClock" | "MonotonicClock" => "Clock",
1185 _ => return None,
1186 })
1187}
1188
1189/// Table names a SQL string literal STATICALLY reaches — the `Db` analog of the `Net` host /
1190/// `Exec` command / `Fs` path literal surface (feeds `allow Db in <scope> <table>…`, AS-EFF-008).
1191/// Conservative by construction, because a wrong capture here would FABRICATE: the string must
1192/// open with a SQL statement keyword, and only identifiers in table position are taken —
1193/// `FROM`/`JOIN` anywhere, `INTO` anywhere, statement-leading `UPDATE`/`TRUNCATE`, and
1194/// `TABLE` (create/drop/alter), skipping `ONLY`/`IF NOT EXISTS`. `UPDATE` mid-statement is
1195/// deliberately ignored (`FOR UPDATE SKIP LOCKED` must not yield a table "skip"). A
1196/// dynamically-built query yields nothing — the gate's opaque case — never a guess.
1197/// Output is lower-cased, quote/backtick-stripped, `schema.table` kept qualified, deduped.
1198/// SPEC §2 pins this algorithm token-for-token across engines; the cross-impl vector battery
1199/// (candor-spec conformance/tables/vectors.json, run.sh Part 4b) enforces the JVM/TS mirrors.
1200pub fn tables_in_sql(sql: &str) -> Vec<String> {
1201 const STMT: &[&str] =
1202 &["select", "insert", "update", "delete", "create", "drop", "alter", "truncate", "merge", "replace", "with"];
1203 // Tokens that can FOLLOW a table-introducing keyword without being a table.
1204 const SKIP: &[&str] = &["only", "if", "not", "exists", "table"];
1205 // Identifier-position tokens that are grammar, not a table (subqueries, locking clauses…).
1206 const STOP: &[&str] = &[
1207 "select", "set", "where", "values", "on", "using", "group", "order", "by", "limit",
1208 "returning", "as", "inner", "outer", "left", "right", "cross", "lateral", "natural",
1209 "union", "all", "distinct", "case", "when", "null", "default", "skip", "nowait", "of",
1210 "from", "join", "into", "update", "delete", "insert",
1211 ];
1212 // `,` survives as its OWN token (not a space): it's what lets `FROM t1, t2` continue the table
1213 // list without fabricating from other comma-ridden positions (column lists, ON clauses).
1214 let cleaned: String = sql
1215 .to_lowercase()
1216 .chars()
1217 .flat_map(|c| match c {
1218 '(' | ')' | ';' => vec![' '],
1219 ',' => vec![' ', ',', ' '],
1220 _ => vec![c],
1221 })
1222 .collect();
1223 let toks: Vec<&str> = cleaned.split_whitespace().collect();
1224 let Some(first) = toks.first() else { return Vec::new() };
1225 if !STMT.contains(first) {
1226 return Vec::new(); // not SQL — nothing to certify, nothing fabricated
1227 }
1228 let ident = |t: &str| -> Option<String> {
1229 let t = t.trim_matches(|c| matches!(c, '"' | '`' | '\''));
1230 let mut chars = t.chars();
1231 let ok_first = chars.next().is_some_and(|c| c.is_ascii_alphabetic() || c == '_');
1232 let ok_rest = t.chars().all(|c| c.is_ascii_alphanumeric() || matches!(c, '_' | '.' | '$' | '"' | '`'));
1233 (ok_first && ok_rest && !STOP.contains(&t)).then(|| t.replace(['"', '`'], ""))
1234 };
1235 let mut out: Vec<String> = Vec::new();
1236 let mut push = |t: Option<String>| {
1237 if let Some(t) = t {
1238 if !out.contains(&t) {
1239 out.push(t);
1240 }
1241 }
1242 };
1243 for (i, tok) in toks.iter().enumerate() {
1244 let table_pos = match *tok {
1245 "from" | "join" | "into" | "table" => true,
1246 // statement-leading only (see doc comment): `update t set …`, `truncate [table] t`.
1247 "update" | "truncate" => i == 0,
1248 _ => false,
1249 };
1250 if !table_pos {
1251 continue;
1252 }
1253 let mut j = i + 1;
1254 while j < toks.len() && SKIP.contains(&toks[j]) {
1255 j += 1;
1256 }
1257 let Some(next) = toks.get(j) else { continue };
1258 let Some(first) = ident(next) else { continue };
1259 push(Some(first));
1260 // Comma-ADJACENT continuation only: `FROM t1, t2, t3` takes all three, while an alias breaks
1261 // the chain (`FROM t1 a, t2` keeps just t1 — an under-report, never a guess: skipping an
1262 // alias to chase the comma would fabricate tables out of `INSERT INTO t (a, b)`'s column
1263 // list, whose parens are spaces by the time we tokenize).
1264 while j + 2 < toks.len() && toks[j + 1] == "," {
1265 let Some(more) = ident(toks[j + 2]) else { break };
1266 push(Some(more));
1267 j += 2;
1268 }
1269 }
1270 out
1271}
1272
1273#[cfg(test)]
1274mod tests {
1275 #[test]
1276 fn sql_table_extraction_is_conservative() {
1277 use super::tables_in_sql as t;
1278 assert_eq!(t("SELECT id FROM users WHERE x = 1"), vec!["users"]);
1279 assert_eq!(t("select * from ledger.entries e join customers c on c.id = e.cid"),
1280 vec!["ledger.entries", "customers"]);
1281 assert_eq!(t("INSERT INTO audit_log (a) VALUES (?1)"), vec!["audit_log"]);
1282 assert_eq!(t("UPDATE accounts SET v = ?"), vec!["accounts"]);
1283 assert_eq!(t("DELETE FROM sessions WHERE id = ?"), vec!["sessions"]);
1284 assert_eq!(t("CREATE TABLE IF NOT EXISTS cache (k TEXT)"), vec!["cache"]);
1285 assert_eq!(t("TRUNCATE TABLE staging"), vec!["staging"]);
1286 // FOR UPDATE locking clause must not yield a phantom table (mid-statement update ignored)
1287 assert_eq!(t("SELECT * FROM jobs FOR UPDATE SKIP LOCKED"), vec!["jobs"]);
1288 // a subquery in FROM position yields nothing for that position
1289 assert_eq!(t("SELECT * FROM (SELECT 1) q"), Vec::<String>::new());
1290 // not SQL -> nothing (never fabricate)
1291 assert_eq!(t("/tmp/some/path"), Vec::<String>::new());
1292 assert_eq!(t("hello world from nowhere"), Vec::<String>::new());
1293 // comma-ADJACENT continuation: a FROM list takes every table in the chain…
1294 assert_eq!(t("SELECT a FROM t1, t2, s.t3 WHERE x = 1"), vec!["t1", "t2", "s.t3"]);
1295 // …but an alias breaks it (under-report, never a guess)…
1296 assert_eq!(t("SELECT a FROM t1 a1, t2 WHERE x = 1"), vec!["t1"]);
1297 // …which is exactly what keeps a column list from fabricating (parens are spaces by now).
1298 assert_eq!(t("INSERT INTO t (a, b) VALUES (1, 2)"), vec!["t"]);
1299 // a subquery after the comma stops the chain too
1300 assert_eq!(t("SELECT a FROM t1, (SELECT 1) q"), vec!["t1"]);
1301 }
1302
1303 use super::*;
1304
1305 #[test]
1306 fn db_crates_are_calibrated() {
1307 // The calibrated set must cover every DB client the classifier knows, or the receipt's coverage
1308 // check would flag a recognized crate as a blind spot. (Was nightly-lint-only; now runs on stable.)
1309 for c in DB_CRATES {
1310 assert!(
1311 CALIBRATED_CRATES.contains(&c),
1312 "DB crate `{c}` is matched by classify() but missing from CALIBRATED_CRATES"
1313 );
1314 }
1315 }
1316
1317 #[test]
1318 fn calibrated_crates_are_live() {
1319 // Conversely, every crate advertised as calibrated must actually be matched by classify() for
1320 // some representative path — a dead entry would silently suppress a real coverage warning.
1321 for c in CALIBRATED_CRATES {
1322 assert!(
1323 CALIBRATION_PROBE_TAILS.iter().any(|t| classify(c, &format!("{c}{t}")).is_some()),
1324 "calibrated crate `{c}` is matched by no path in classify() — dead list entry"
1325 );
1326 }
1327 }
1328
1329 #[test]
1330 fn log_tracing_emit_macros_classify_pre_expansion() {
1331 // candor-scan is pre-expansion: it sees the raw macro path (`log::info`, `tracing::warn`), not the
1332 // expanded dispatch the deep engine sees. Both the user-facing macro names AND the type surface:
1333 assert_eq!(classify("log", "log::info"), Some("Log"));
1334 assert_eq!(classify("log", "log::error"), Some("Log"));
1335 assert_eq!(classify("tracing", "tracing::warn"), Some("Log"));
1336 assert_eq!(classify("tracing", "tracing::info_span"), Some("Log"));
1337 // pure data-type surface stays None (no fabricated Log)
1338 assert_eq!(classify("log", "log::Level::as_str"), None);
1339 assert_eq!(classify("tracing", "tracing::Level::INFO"), None);
1340 }
1341
1342 #[test]
1343 fn classify_core_effects() {
1344 // A representative smoke test of the classifier's main families, so the published crate is not
1345 // shipped untested (these used to live only in the nightly-only src/lib.rs).
1346 assert_eq!(classify("std", "std::fs::read_to_string"), Some("Fs"));
1347 // std::path stat-family methods are Fs (each is a stat/readdir syscall); the pure
1348 // string-manipulation surface stays unclassified (the blackout screen's gix-dir find).
1349 assert_eq!(classify("std", "std::path::Path::symlink_metadata"), Some("Fs"));
1350 assert_eq!(classify("std", "std::path::PathBuf::read_dir"), Some("Fs"));
1351 assert_eq!(classify("std", "std::path::Path::exists"), Some("Fs"));
1352 assert_eq!(classify("std", "std::path::Path::join"), None); // pure string manipulation
1353 assert_eq!(classify("std", "std::path::PathBuf::file_name"), None);
1354 assert_eq!(classify("std", "std::path::Path::parent"), None);
1355 assert_eq!(classify("std", "std::process::Command::new"), Some("Exec"));
1356 assert_eq!(classify("std", "std::env::var"), Some("Env"));
1357 assert_eq!(classify("reqwest", "reqwest::Client::execute"), Some("Net"));
1358 // one-shot convenience fns send immediately → Net; the `Client::get` builder stays pure.
1359 assert_eq!(classify("reqwest", "reqwest::get"), Some("Net"));
1360 assert_eq!(classify("reqwest", "reqwest::blocking::get"), Some("Net"));
1361 assert_eq!(classify("reqwest", "reqwest::Client::get"), None);
1362 assert_eq!(classify("reqwest", "reqwest::RequestBuilder::header"), None);
1363 // nix routes through the libc syscall table (same leaves): I/O classified, generic fd ops skipped.
1364 assert_eq!(classify("nix", "nix::fcntl::open"), Some("Fs"));
1365 assert_eq!(classify("nix", "nix::sys::socket::connect"), Some("Net"));
1366 assert_eq!(classify("nix", "nix::unistd::execvp"), Some("Exec"));
1367 assert_eq!(classify("nix", "nix::unistd::write"), None); // generic fd op — deliberately unclassified
1368 assert_eq!(classify("nix", "nix::unistd::getpid"), None); // not I/O
1369 // rustix does raw syscalls (no libc underneath) → classified directly by leaf, same table.
1370 assert_eq!(classify("rustix", "rustix::time::clock_settime"), Some("Clock"));
1371 assert_eq!(classify("rustix", "rustix::fs::symlink"), Some("Fs"));
1372 assert_eq!(classify("rustix", "rustix::net::connect"), Some("Net"));
1373 assert_eq!(classify("rustix", "rustix::io::read"), None); // generic fd op
1374 // pnet raw packet capture: channel openers are Net, packet construction stays pure.
1375 assert_eq!(classify("pnet", "pnet::datalink::channel"), Some("Net"));
1376 assert_eq!(classify("pnet", "pnet::transport::transport_channel"), Some("Net"));
1377 assert_eq!(classify("pnet_datalink", "pnet_datalink::channel"), Some("Net"));
1378 assert_eq!(classify("pnet", "pnet::packet::ethernet::EthernetPacket::new"), None);
1379 assert_eq!(classify("pnet_base", "pnet_base::MacAddr::new"), None);
1380 // ignore (gitignore-aware walker): walk executors are Fs, config builders stay pure.
1381 assert_eq!(classify("ignore", "ignore::WalkBuilder::build_parallel"), Some("Fs"));
1382 assert_eq!(classify("ignore", "ignore::WalkBuilder::build"), Some("Fs"));
1383 assert_eq!(classify("ignore", "ignore::WalkParallel::run"), Some("Fs"));
1384 assert_eq!(classify("ignore", "ignore::WalkBuilder::add_ignore"), Some("Fs")); // reads the ignore file
1385 assert_eq!(classify("ignore", "ignore::overrides::OverrideBuilder::build"), None); // pure config
1386 assert_eq!(classify("ignore", "ignore::gitignore::GitignoreBuilder::build"), None); // pure config
1387 assert_eq!(classify("ignore", "ignore::DirEntry::path"), None); // pure accessor
1388 // notify fs-watching: watcher constructors + watch/unwatch are Fs, data types stay pure.
1389 assert_eq!(classify("notify", "notify::RecommendedWatcher::new"), Some("Fs"));
1390 assert_eq!(classify("notify", "notify::PollWatcher::new"), Some("Fs"));
1391 assert_eq!(classify("notify", "notify::recommended_watcher"), Some("Fs"));
1392 assert_eq!(classify("notify", "notify::INotifyWatcher::watch"), Some("Fs"));
1393 assert_eq!(classify("notify", "notify::Config::default"), None); // pure config
1394 assert_eq!(classify("notify", "notify::Event::new"), None); // pure data type
1395 assert_eq!(classify("rusqlite", "rusqlite::Connection::execute"), Some("Db"));
1396 // the rusqlite verb DIALECT (a verb probe found the canonical consumer API classifying pure):
1397 assert_eq!(classify("rusqlite", "rusqlite::Connection::query_row"), Some("Db"));
1398 assert_eq!(classify("rusqlite", "rusqlite::Statement::query_map"), Some("Db"));
1399 assert_eq!(classify("rusqlite", "rusqlite::Connection::execute_batch"), Some("Db"));
1400 assert_eq!(classify("rusqlite", "rusqlite::Connection::prepare_cached"), Some("Db"));
1401 assert_eq!(classify("rusqlite", "rusqlite::Connection::open"), Some("Db"));
1402 assert_eq!(classify("rusqlite", "rusqlite::Connection::open_in_memory"), Some("Db"));
1403 // …but `open` stays rusqlite-only (postgres has no open; nothing else may borrow it):
1404 assert_eq!(classify("postgres", "postgres::Client::open"), None);
1405 assert_eq!(classify("tokio_postgres", "tokio_postgres::Client::query_typed"), Some("Db"));
1406 // diesel's LIMIT-1 + streaming executions; sqlx's multi-result stream:
1407 assert_eq!(classify("diesel", "diesel::RunQueryDsl::first"), Some("Db"));
1408 assert_eq!(classify("diesel", "diesel::RunQueryDsl::load_iter"), Some("Db"));
1409 assert_eq!(classify("sqlx", "sqlx::query::Query::fetch_many"), Some("Db"));
1410 // sqlx's bare `query()` builder must STAY pure (the original sqlx lesson):
1411 assert_eq!(classify("sqlx", "sqlx::query"), None);
1412 // tracing: the emit/span-lifecycle dispatch is Log; the pure DATA-type accessors are not
1413 // (whole-crate Log fabricated Log on `Level::as_str` / `Span::is_disabled` — the data types are
1414 // pure, same principle as the `log` facade).
1415 assert_eq!(classify("tracing", "tracing::event"), Some("Log"));
1416 assert_eq!(classify("tracing", "tracing::Span::new_span"), Some("Log"));
1417 assert_eq!(classify("tracing", "tracing::Span::record"), Some("Log"));
1418 assert_eq!(classify("tracing", "tracing::Span::enter"), Some("Log"));
1419 assert_eq!(classify("tracing", "tracing::Level::as_str"), None); // pure accessor
1420 assert_eq!(classify("tracing", "tracing::Span::is_disabled"), None); // pure state read
1421 assert_eq!(classify("tracing", "tracing::Span::metadata"), None); // pure accessor
1422 assert_eq!(classify("tracing", "tracing::metadata::Level::TRACE"), None); // pure data type
1423 assert_eq!(classify("tracing", "tracing::field::Field::name"), None); // pure data type
1424 // memmap2: only the syscall-issuing map/flush/protect verbs are Fs; reads over an already-mapped
1425 // region (len/as_ptr/is_empty) and the request builder are PURE (whole-crate Fs fabricated Fs).
1426 assert_eq!(classify("memmap2", "memmap2::MmapOptions::map"), Some("Fs"));
1427 assert_eq!(classify("memmap2", "memmap2::MmapOptions::map_mut"), Some("Fs"));
1428 assert_eq!(classify("memmap2", "memmap2::Mmap::flush"), Some("Fs"));
1429 assert_eq!(classify("memmap2", "memmap2::MmapMut::make_read_only"), Some("Fs"));
1430 assert_eq!(classify("memmap2", "memmap2::Mmap::len"), None); // length read — pure
1431 assert_eq!(classify("memmap2", "memmap2::Mmap::is_empty"), None); // pure
1432 assert_eq!(classify("memmap2", "memmap2::Mmap::as_ptr"), None); // pointer — pure
1433 assert_eq!(classify("memmap2", "memmap2::MmapOptions::new"), None); // request builder — pure
1434 // arboard: the Clipboard handle's read/write verbs are Clipboard; `arboard::Error` formatting
1435 // and option data types are PURE (whole-crate Clipboard fabricated Clipboard on `Error::to_string`).
1436 assert_eq!(classify("arboard", "arboard::Clipboard::new"), Some("Clipboard"));
1437 assert_eq!(classify("arboard", "arboard::Clipboard::get_text"), Some("Clipboard"));
1438 assert_eq!(classify("arboard", "arboard::Clipboard::set_text"), Some("Clipboard"));
1439 assert_eq!(classify("arboard", "arboard::Clipboard::clear"), Some("Clipboard"));
1440 assert_eq!(classify("arboard", "arboard::Error::to_string"), None); // error formatting — pure
1441 assert_eq!(classify("arboard", "arboard::Error::fmt"), None); // Display impl — pure
1442 assert_eq!(classify("arboard", "arboard::ImageData::to_owned_img"), None); // pure data type
1443 // fastrand: value draws + entropy-seeded entry points are Rand; the DETERMINISTIC seeded ctor
1444 // `with_seed` and state split/copy (`fork`/`clone`) are PURE (whole-crate Rand fabricated Rand).
1445 assert_eq!(classify("fastrand", "fastrand::u32"), Some("Rand")); // top-level draw
1446 assert_eq!(classify("fastrand", "fastrand::Rng::usize"), Some("Rand"));
1447 assert_eq!(classify("fastrand", "fastrand::Rng::shuffle"), Some("Rand"));
1448 assert_eq!(classify("fastrand", "fastrand::Rng::new"), Some("Rand")); // entropy-seeded
1449 assert_eq!(classify("fastrand", "fastrand::Rng::with_seed"), None); // deterministic ctor — pure
1450 assert_eq!(classify("fastrand", "fastrand::Rng::fork"), None); // state split — pure
1451 assert_eq!(classify("fastrand", "fastrand::Rng::clone"), None); // state copy — pure
1452 // portable_pty / async_process: spawn/wait keep Exec; config GETTERS and pure data ctors/setters
1453 // do NOT (base Exec fabricated on `CommandBuilder::get_cwd` / `PtySize::default` / `Stdio::piped`).
1454 assert_eq!(classify("portable_pty", "portable_pty::PtySystem::openpty"), Some("Exec"));
1455 assert_eq!(classify("portable_pty", "portable_pty::SlavePty::spawn_command"), Some("Exec"));
1456 assert_eq!(classify("portable_pty", "portable_pty::CommandBuilder::get_argv"), None); // getter
1457 assert_eq!(classify("portable_pty", "portable_pty::CommandBuilder::get_cwd"), None); // getter
1458 assert_eq!(classify("portable_pty", "portable_pty::PtySize::default"), None); // pure data type
1459 assert_eq!(classify("portable_pty", "portable_pty::CommandBuilder::new"), None); // builder ctor
1460 assert_eq!(classify("async_process", "async_process::Command::spawn"), Some("Exec"));
1461 assert_eq!(classify("async_process", "async_process::Command::output"), Some("Exec"));
1462 assert_eq!(classify("async_process", "async_process::Stdio::piped"), None); // pure data type
1463 assert_eq!(classify("async_process", "async_process::Stdio::null"), None); // pure data type
1464 // FFI tiers (matched by distinctive leaf, alias-independent)
1465 assert_eq!(classify("libc", "libc::open"), Some("Fs"));
1466 assert_eq!(classify("libc", "libc::connect"), Some("Net"));
1467 assert_eq!(classify("libc", "libc::read"), None); // generic fd op — deliberately unclassified
1468 assert_eq!(classify("ffi", "ffi::sqlite3_step"), Some("Db"));
1469 assert_eq!(classify("raw", "raw::git_remote_fetch"), Some("Net"));
1470 // libgit2 clone + submodule clone/update fetch over the network (an A/B on git2 0.20 caught
1471 // `Submodule::update`/`clone` and `Repository::clone` reporting no Net — the latter because the
1472 // `src/build.rs` module was being dropped as if it were the Cargo build script).
1473 assert_eq!(classify("raw", "raw::git_clone"), Some("Net"));
1474 assert_eq!(classify("raw", "raw::git_submodule_clone"), Some("Net"));
1475 assert_eq!(classify("raw", "raw::git_submodule_update"), Some("Net"));
1476 assert_eq!(classify("raw", "raw::git_submodule_open"), None); // local subrepo open — not Net
1477 // libcurl: the transfer/raw-socket entry points are Net (an A/B on curl 0.4 caught the whole
1478 // crate reporting ZERO Net); the big setopt/init/getinfo surface — and the readiness-wait
1479 // multi_wait/poll — stay unclassified (the loop's perform is the boundary).
1480 assert_eq!(classify("curl_sys", "curl_sys::curl_easy_perform"), Some("Net"));
1481 assert_eq!(classify("curl_sys", "curl_sys::curl_easy_send"), Some("Net"));
1482 assert_eq!(classify("curl_sys", "curl_sys::curl_multi_perform"), Some("Net"));
1483 assert_eq!(classify("curl_sys", "curl_sys::curl_multi_socket_action"), Some("Net"));
1484 assert_eq!(classify("curl_sys", "curl_sys::curl_easy_setopt"), None); // in-memory option write
1485 assert_eq!(classify("curl_sys", "curl_sys::curl_easy_init"), None); // handle alloc
1486 assert_eq!(classify("curl_sys", "curl_sys::curl_multi_wait"), None); // readiness wait, no payload
1487 // consumer-side `curl` crate rule: the dispatch verbs are Net, the setopt builders pure.
1488 assert_eq!(classify("curl", "curl::easy::Easy::perform"), Some("Net"));
1489 assert_eq!(classify("curl", "curl::multi::Multi::perform"), Some("Net"));
1490 assert_eq!(classify("curl", "curl::easy::Easy::send"), Some("Net"));
1491 assert_eq!(classify("curl", "curl::easy::Easy::url"), None); // CURLOPT setter — pure
1492 assert_eq!(classify("curl", "curl::easy::Easy::timeout"), None); // pure setter; Multi::timeout under-reported by design
1493 assert_eq!(classify("ffi", "ffi::SSL_connect"), Some("Net"));
1494 // pure crates stay pure
1495 assert_eq!(classify("serde", "serde::Serialize::serialize"), None);
1496 assert_eq!(classify("std", "std::vec::Vec::push"), None);
1497
1498 // ── sweep 2026-06-17: fabrication carve-outs + DNS coverage (each fails pre-fix) ──
1499 // [24] std::net socket accessors are pure; the I/O verbs stay Net.
1500 assert_eq!(classify("std", "std::net::TcpStream::connect"), Some("Net"));
1501 assert_eq!(classify("std", "std::net::TcpStream::local_addr"), None);
1502 assert_eq!(classify("std", "std::net::TcpStream::nodelay"), None);
1503 assert_eq!(classify("std", "std::net::TcpStream::ttl"), None);
1504 assert_eq!(classify("std", "std::net::UdpSocket::peer_addr"), None);
1505 // [37] std DNS resolution is Net (was floored).
1506 assert_eq!(classify("std", "std::net::lookup_host"), Some("Net"));
1507 assert_eq!(classify("std", "core::net::ToSocketAddrs::to_socket_addrs"), Some("Net"));
1508 // [23] std::process getters are pure; spawn/new stay Exec.
1509 assert_eq!(classify("std", "std::process::Command::get_program"), None);
1510 assert_eq!(classify("std", "std::process::Command::get_args"), None);
1511 assert_eq!(classify("std", "std::process::Child::id"), None);
1512 assert_eq!(classify("std", "std::process::Command::spawn"), Some("Exec"));
1513 // [27] redis ConnectionManager::clone is an Arc bump (pure); a query round-trips.
1514 assert_eq!(classify("redis", "redis::aio::ConnectionManager::clone"), None);
1515 assert_eq!(classify("redis", "redis::aio::ConnectionManager::send_packed_command"), Some("Db"));
1516 // [5] sea_orm re-exported sea_query builder algebra is pure; execution verbs stay Db.
1517 assert_eq!(classify("sea_orm", "sea_orm::sea_query::Func::count"), None);
1518 assert_eq!(classify("sea_orm", "sea_orm::sea_query::Condition::all"), None);
1519 assert_eq!(classify("sea_orm", "sea_orm::Select::all"), Some("Db"));
1520 }
1521
1522 #[test]
1523 fn rand_osrng_handle_ops_are_pure_but_draws_are_rand() {
1524 // Adversarial-review fabrication: the blanket `contains("OsRng")` tagged `OsRng::clone` Rand,
1525 // but OsRng is a unit struct — clone/fork/default draw no entropy. The real draws still fire.
1526 assert_eq!(classify("rand", "rand::rngs::OsRng::clone"), None);
1527 assert_eq!(classify("rand", "rand::rngs::OsRng::default"), None);
1528 assert_eq!(classify("rand", "rand::rngs::OsRng::fill_bytes"), Some("Rand")); // a real draw
1529 assert_eq!(classify("rand", "rand::rngs::OsRng::next_u32"), Some("Rand"));
1530 assert_eq!(classify("rand", "rand::Rng::gen"), Some("Rand")); // verb path unaffected
1531 assert_eq!(classify("rand", "rand::distributions::Uniform::new"), None); // pure ctor still pure
1532 }
1533
1534 #[test]
1535 fn redis_connection_manager_config_builder_is_pure() {
1536 // Adversarial-review fabrication: `contains("ConnectionManager")` hit the pure *Config* builder.
1537 assert_eq!(classify("redis", "redis::aio::ConnectionManagerConfig::new"), None);
1538 assert_eq!(classify("redis", "redis::aio::ConnectionManagerConfig::set_max_delay"), None);
1539 // the LIVE manager still round-trips (Db).
1540 assert_eq!(classify("redis", "redis::aio::ConnectionManager::new"), Some("Db"));
1541 assert_eq!(classify("redis", "redis::Commands::get"), Some("Db"));
1542 }
1543
1544 #[test]
1545 fn pure_fd_transfer_is_not_an_effect() {
1546 // ADOPTING / EXTRACTING / BORROWING an already-open descriptor (or unwrapping an async type back
1547 // to its std type) issues NO syscall — it must be PURE even though it hangs off a std I/O type
1548 // whose prefix rule would otherwise fire Net/Fs/Ipc. (Real tokio sweep: `into_std`, `from_raw_fd`,
1549 // `as_raw_fd` all fabricated effects.)
1550 assert_eq!(classify("std", "std::net::TcpStream::from_raw_fd"), None);
1551 assert_eq!(classify("std", "std::net::TcpStream::into_raw_fd"), None);
1552 assert_eq!(classify("std", "std::net::TcpStream::as_raw_fd"), None);
1553 assert_eq!(classify("std", "std::net::TcpListener::from_raw_fd"), None);
1554 assert_eq!(classify("std", "std::net::UdpSocket::from_raw_socket"), None);
1555 assert_eq!(classify("std", "std::fs::File::from_raw_fd"), None);
1556 assert_eq!(classify("std", "std::fs::File::into_raw_fd"), None);
1557 assert_eq!(classify("std", "std::fs::File::as_raw_handle"), None);
1558 assert_eq!(classify("std", "std::os::unix::net::UnixStream::from_raw_fd"), None);
1559 // `SocketAddr::from_pathname` builds an address struct, opens no socket — pure. (socket2 sweep.)
1560 assert_eq!(classify("std", "std::os::unix::net::SocketAddr::from_pathname"), None);
1561 assert_eq!(classify("tokio", "tokio::net::TcpStream::from_raw_fd"), None);
1562 assert_eq!(classify("tokio", "tokio::net::TcpStream::into_std"), None); // unwrap → std type, pure
1563 assert_eq!(classify("tokio", "tokio::fs::File::into_std"), None);
1564 // …but a REAL open/connect on the SAME types still fires the effect — the carve-out is leaf-precise.
1565 assert_eq!(classify("std", "std::net::TcpStream::connect"), Some("Net"));
1566 assert_eq!(classify("std", "std::fs::File::open"), Some("Fs"));
1567 assert_eq!(classify("std", "std::fs::read"), Some("Fs"));
1568 assert_eq!(classify("std", "std::os::unix::net::UnixStream::connect"), Some("Ipc"));
1569 assert_eq!(classify("tokio", "tokio::net::TcpStream::connect"), Some("Net"));
1570 }
1571
1572 #[test]
1573 fn command_head_refines_the_exec_cliff() {
1574 use super::classify_command_head as h;
1575 // unambiguous external tools classify by basename (spec §4 ⟨0.5⟩)
1576 assert_eq!(h("curl"), &["Net"]);
1577 assert_eq!(h("telnet"), &["Net"]);
1578 assert_eq!(h("sftp"), &["Net"]);
1579 assert_eq!(h("/usr/local/bin/psql"), &["Db"]); // basename match strips the path
1580 assert_eq!(h("mongo"), &["Db"]);
1581 assert_eq!(h("cqlsh"), &["Db"]);
1582 // a candor engine is Fs/Env — spec-SUPPLIED by §7 item 12, not curation
1583 assert_eq!(h("candor-scan"), &["Env", "Fs"]);
1584 assert_eq!(h("candor-run.sh"), &["Env", "Fs"]);
1585 // an unrecognised head adds nothing — the bare Exec cliff stands (never guess). `make`/`npm`
1586 // run the project's own code; `git`/`rsync` are multi-modal (local vs remote) — all keep the
1587 // cliff rather than fabricate an effect for the common case.
1588 assert_eq!(h("some-unknown-tool"), &[] as &[&str]);
1589 assert_eq!(h("make"), &[] as &[&str]);
1590 assert_eq!(h("npm"), &[] as &[&str]);
1591 assert_eq!(h("git"), &[] as &[&str]);
1592 assert_eq!(h("rsync"), &[] as &[&str]);
1593 // a builder MODIFIER (`.arg`/`.env`) names no program — its literal must NOT refine (a
1594 // whole-crate-Exec crate classifies every method; `.env("psql",..)` must not fabricate Db).
1595 assert!(is_cmd_builder_method("env") && is_cmd_builder_method("arg") && is_cmd_builder_method("current_dir"));
1596 assert!(!is_cmd_builder_method("new")); // Command::new NAMES the program
1597 assert!(!is_cmd_builder_method("cmd")); // duct::cmd NAMES the program
1598 // The gate that ADMITS a literal to classify_command_head is an ALLOWLIST of program-NAMING
1599 // methods, not the builder denylist. Inversion matters: a whole-crate-Exec crate (portable_pty)
1600 // classifies EVERY method as Exec, so a getter like `cmd.get_env("psql")` — absent from the
1601 // builder denylist — would have leaked "psql" to the head and FABRICATED Db. Only `new`/`cmd`
1602 // name a program, so only they may refine.
1603 assert!(is_cmd_naming_method("new") && is_cmd_naming_method("cmd"));
1604 assert!(!is_cmd_naming_method("get_env")); // a GETTER, not a namer — the leak this closes
1605 assert!(!is_cmd_naming_method("arg") && !is_cmd_naming_method("env") && !is_cmd_naming_method("current_dir"));
1606 }
1607
1608 #[test]
1609 fn net_establishing_allowlist() {
1610 // sweep [3]/[7]: the masking guard's establishing-verb allowlist — host-bearing connect/request
1611 // verbs establish (a runtime host there is invisible); USE-verbs on a connected socket do NOT.
1612 assert!(is_net_establishing("connect") && is_net_establishing("connect_timeout"));
1613 assert!(is_net_establishing("get") && is_net_establishing("post") && is_net_establishing("request"));
1614 assert!(is_net_establishing("send_to") && is_net_establishing("to_socket_addrs"));
1615 // use-verbs (host fixed at connect) must NOT be establishing — else `connect("h").write()` flags.
1616 assert!(!is_net_establishing("write") && !is_net_establishing("read") && !is_net_establishing("send"));
1617 assert!(!is_net_establishing("flush") && !is_net_establishing("recv") && !is_net_establishing("peek"));
1618 }
1619}