Process.spawn/poll/kill/free - non-blocking child processes with no shell: posix_spawn on macOS (process.ll), CreateProcessW with MSVC-quoted arguments and no console window on Windows (process_win.ll), linked only when a program uses Process.*. Http.save_to streams a response body into a file (NSURLSession with a run-time delegate class on macOS, the WinHTTP read loop on Windows); Http.received / Http.expected report progress while it is pending. Freeing a pending request cancels it and parks the slot until the worker has finished. App.window_hide / App.window_show take the game's window off the screen and back without closing it; the run goes on while hidden. Docs, examples, tests and a changeset. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
356 lines
12 KiB
Text
356 lines
12 KiB
Text
# ============================================================================
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# http.ludic — the Http.* standard library (#6).
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#
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# A poll-based HTTP/HTTPS client. A request is opened, optionally given headers
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# and a body, then sent; each frame the game polls it, and when the reply lands
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# it reads the status, body and headers — the frame never blocks (the request
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# runs on a background thread in the platform backend, http.ll). TLS is the
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# system's, on by default, so an https:// URL just works.
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#
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# HTTP is explicitly OUT-OF-BAND: it depends on the network and wall clock and
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# must never feed the deterministic lockstep/replay simulation — it is for
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# scores, config, telemetry and downloads, exactly like Net.* and Time.now. The
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# JSON companion the proposal called for already shipped as Json.* (#44); pair
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# them: Json.parse(Http.text(h)).
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#
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# The transport (the http_* intrinsics) is macOS-only for now; the response
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# PARSER below (Http.parse and the header lookup) is pure Ludic, so it works on
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# any target and is what the test suite exercises without touching the network.
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# ============================================================================
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# Streaming downloads (Http.save_to): the body goes to a file as it arrives, and
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# Http.received / Http.expected report progress while the request is pending. These
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# natives live beside the hs_* transport in http.ll / http_win.ll.
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extern function hs_save_to(slot: int, path: pointer) -> void = "hs_save_to"
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extern function hs_received(slot: int) -> int = "hs_received"
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extern function hs_expected(slot: int) -> int = "hs_expected"
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extern function hs_cancel(slot: int) -> void = "hs_cancel"
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const HTTP_SLOTS: int = 8
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var h_ready: bool = false
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var h_used: words = null # slot in use
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var h_native: words = null # 1 = backed by the platform fetch, 0 = parsed offline
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var h_sent: words = null # 1 = dispatched (native)
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var h_res: words = null # 1 = a native fetch has been resolved into the fields below
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var h_status: words = null # cached HTTP status (0 = network error / unset)
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var h_blen: words = null # body length
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var h_req: pointers = null # the pending NSURLRequest (native, before send)
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var h_body: pointers = null # body bytes (NUL-terminated); owned by the slot
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var h_hdr: pointers = null # raw header block (parsed handles only); owned by the slot
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var h_save: words = null # 1 = the body streams to a file (Http.save_to)
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function http_init() -> void {
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if h_ready { return }
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h_used = words(HTTP_SLOTS)
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h_native = words(HTTP_SLOTS)
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h_sent = words(HTTP_SLOTS)
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h_res = words(HTTP_SLOTS)
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h_status = words(HTTP_SLOTS)
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h_blen = words(HTTP_SLOTS)
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h_req = bytes(HTTP_SLOTS * 8)
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h_body = bytes(HTTP_SLOTS * 8)
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h_hdr = bytes(HTTP_SLOTS * 8)
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h_save = words(HTTP_SLOTS)
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var i = 0
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while i < HTTP_SLOTS {
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h_used[i] = 0; h_native[i] = 0; h_sent[i] = 0; h_res[i] = 0
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h_status[i] = 0; h_blen[i] = 0
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h_req[i] = null; h_body[i] = null; h_hdr[i] = null
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h_save[i] = 0
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i += 1
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}
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h_ready = true
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}
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function http_slot_alloc() -> int {
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http_init()
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var i = 0
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while i < HTTP_SLOTS {
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if h_used[i] == 0 {
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h_used[i] = 1; h_native[i] = 0; h_sent[i] = 0; h_res[i] = 0
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h_status[i] = 0; h_blen[i] = 0
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h_req[i] = null; h_body[i] = null; h_hdr[i] = null
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h_save[i] = 0
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return i
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}
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i += 1
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}
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return -1
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}
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function http_valid(h: int) -> bool {
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http_init()
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if (h < 1) or (h > HTTP_SLOTS) { return false }
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return h_used[h - 1] == 1
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}
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# A native request freed while its worker was still running is parked (h_used 2) rather
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# than released, so the worker never writes into a slot a new request has taken. Once the
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# worker has finished, the slot's native resources are freed and it is free again.
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function http_reap() -> void {
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http_init()
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var i = 0
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while i < HTTP_SLOTS {
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if (h_used[i] == 2) and (hs_done(i) != 0) {
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hs_free(i)
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h_used[i] = 0
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}
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i += 1
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}
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}
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# ---- length of a NUL-terminated C string -----------------------------------
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function http_cstr_len(p: pointer) -> int {
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if p == null { return 0 }
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var n = 0
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while p[n] != 0 { n += 1 }
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return n
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}
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# ---- request construction (native) -----------------------------------------
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# Open a request without sending it, so headers / a body can be added first.
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function http_open(method: pointer, url: pointer) -> int {
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http_reap()
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let req = hs_req_new(method, url)
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if req == null { return 0 }
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let s = http_slot_alloc()
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if s < 0 { return 0 }
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h_req[s] = req
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h_native[s] = 1
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return s + 1
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}
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function http_set_header(h: int, name: pointer, value: pointer) -> void {
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if not http_valid(h) { return }
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let s = h - 1
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if (h_sent[s] == 0) and (h_req[s] != null) { hs_req_header(h_req[s], name, value) }
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}
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# Attach a body of `len` bytes (use http_body for a NUL-terminated string body).
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function http_body_n(h: int, bytes_ptr: pointer, len: int) -> void {
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if not http_valid(h) { return }
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let s = h - 1
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if (h_sent[s] == 0) and (h_req[s] != null) { hs_req_body(h_req[s], bytes_ptr, len) }
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}
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function http_body(h: int, body: pointer) -> void {
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http_body_n(h, body, http_cstr_len(body))
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}
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# Stream the response body to the file at `path` instead of keeping it in memory. Must be
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# called before Http.send. The file is created (or truncated) when the request is sent,
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# and written directly - no temporary name - so a failed or cancelled download leaves
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# whatever arrived there; the caller picks the name and renames it once the status is
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# good. Http.text of such a request is empty (null) and Http.body_len is the bytes written.
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function http_save_to(h: int, path: pointer) -> void {
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if not http_valid(h) { return }
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let s = h - 1
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if (h_native[s] == 1) and (h_sent[s] == 0) and (path != null) {
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hs_save_to(s, path)
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h_save[s] = 1
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}
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}
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# Body bytes received so far. Live while a Http.save_to request is pending; for an
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# in-memory request it is 0 until the reply lands, then the body length.
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function http_received(h: int) -> int {
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if not http_valid(h) { return 0 }
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let s = h - 1
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if h_native[s] == 0 { return h_blen[s] }
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if h_sent[s] == 0 { return 0 }
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if h_save[s] == 1 { return hs_received(s) }
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if h_res[s] == 1 { return h_blen[s] }
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return 0
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}
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# The body's announced length (Content-Length), or -1 while it is not known. For a
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# Http.save_to request it is known as soon as the headers arrive; for an in-memory request
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# it is -1 until the reply lands, then the body length.
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function http_expected(h: int) -> int {
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if not http_valid(h) { return -1 }
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let s = h - 1
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if h_native[s] == 0 { return h_blen[s] }
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if h_sent[s] == 0 { return -1 }
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if h_save[s] == 1 { return hs_expected(s) }
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if h_res[s] == 1 { return h_blen[s] }
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return -1
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}
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# Dispatch the request onto the background worker.
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function http_send_req(h: int) -> void {
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if not http_valid(h) { return }
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let s = h - 1
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if (h_sent[s] == 0) and (h_req[s] != null) {
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hs_send(s, h_req[s])
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h_sent[s] = 1
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}
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}
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# ---- convenience one-shots -------------------------------------------------
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function http_get(url: pointer) -> int {
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let h = http_open("GET", url)
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if h != 0 { http_send_req(h) }
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return h
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}
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function http_post(url: pointer, body: pointer) -> int {
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let h = http_open("POST", url)
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if h != 0 { http_body(h, body); http_send_req(h) }
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return h
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}
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function http_request(method: pointer, url: pointer, body: pointer) -> int {
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let h = http_open(method, url)
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if h == 0 { return 0 }
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if http_cstr_len(body) > 0 { http_body(h, body) }
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http_send_req(h)
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return h
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}
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# ---- polling + response ----------------------------------------------------
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# -1 while pending, 0 on a transport error, else the HTTP status code.
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function http_poll(h: int) -> int {
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if not http_valid(h) { return 0 }
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let s = h - 1
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if h_native[s] == 0 { return h_status[s] } # a parsed handle is ready immediately
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if h_sent[s] == 0 { return -1 }
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if h_res[s] == 1 { return h_status[s] }
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if hs_done(s) == 0 { return -1 }
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# first time we see it finished: cache the fields off the worker.
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h_status[s] = hs_status(s)
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h_body[s] = hs_body(s)
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h_blen[s] = hs_blen(s)
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h_res[s] = 1
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return h_status[s]
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}
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function http_status_of(h: int) -> int {
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if not http_valid(h) { return 0 }
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return h_status[h - 1]
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}
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function http_ok(h: int) -> bool {
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let st = http_status_of(h)
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return (st >= 200) and (st < 300)
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}
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function http_text(h: int) -> pointer {
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if not http_valid(h) { return null }
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return h_body[h - 1]
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}
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function http_body_len(h: int) -> int {
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if not http_valid(h) { return 0 }
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return h_blen[h - 1]
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}
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function http_header_of(h: int, name: pointer) -> pointer {
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if not http_valid(h) { return null }
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let s = h - 1
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if h_native[s] == 1 { return hs_header(s, name) }
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return http_find_header(h_hdr[s], name)
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}
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function http_close(h: int) -> void {
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if not http_valid(h) { return }
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let s = h - 1
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if h_native[s] == 1 {
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if (h_sent[s] == 1) and (h_res[s] == 0) and (hs_done(s) == 0) {
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# still running: stop it, and park the slot until the worker has let go
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hs_cancel(s)
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h_used[s] = 2
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h_req[s] = null; h_body[s] = null; h_hdr[s] = null
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return
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}
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hs_free(s)
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}
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else {
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if h_body[s] != null { free(h_body[s]) }
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if h_hdr[s] != null { free(h_hdr[s]) }
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}
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h_used[s] = 0
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h_req[s] = null; h_body[s] = null; h_hdr[s] = null
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}
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# ---- the pure-Ludic response parser (transport-independent) -----------------
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# Copy [a, b) of src into a fresh NUL-terminated buffer.
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function http_slice_dup(src: pointer, a: int, b: int) -> pointer {
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var n = b - a
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if n < 0 { n = 0 }
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let out = bytes(n + 1)
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var i = 0
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while i < n { out[i] = src[a + i]; i += 1 }
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out[n] = 0
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return out
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}
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function http_is_digit(c: int) -> bool { return (c >= '0') and (c <= '9') }
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function http_lower(c: int) -> int { if (c >= 'A') and (c <= 'Z') { return c + 32 }; return c }
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# Parse a raw HTTP/1.1 response (status line + headers + blank line + body) into
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# a ready handle. Useful for cached/custom transports and offline tests.
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function http_parse(resp: pointer, len: int) -> int {
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let s = http_slot_alloc()
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if s < 0 { return 0 }
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h_native[s] = 0
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# status: the token after the first space on the status line.
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var i = 0
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while (i < len) and (resp[i] != ' ') { i += 1 } # skip "HTTP/1.1"
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while (i < len) and (resp[i] == ' ') { i += 1 } # skip the space(s)
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var st = 0
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while (i < len) and http_is_digit(resp[i]) { st = (st * 10) + (resp[i] - 48); i += 1 }
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h_status[s] = st
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# header/body split at the first CRLFCRLF.
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var split = -1
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var j = 0
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while (j + 3) < len {
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if (resp[j] == '\r') and (resp[j + 1] == '\n') and (resp[j + 2] == '\r') and (resp[j + 3] == '\n') {
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split = j
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j = len
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} else { j += 1 }
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}
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var hdr_end = split
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var body_start = split + 4
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if split < 0 { hdr_end = len; body_start = len } # headers only, no body
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# header block starts after the status line's CRLF.
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var hs = 0
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while (hs + 1) < len {
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if (resp[hs] == '\r') and (resp[hs + 1] == '\n') { hs += 2; break }
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hs += 1
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}
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if hs > hdr_end { hs = hdr_end }
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h_hdr[s] = http_slice_dup(resp, hs, hdr_end)
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h_body[s] = http_slice_dup(resp, body_start, len)
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h_blen[s] = len - body_start
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if h_blen[s] < 0 { h_blen[s] = 0 }
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return s + 1
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}
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# Look up a header value in a raw header block (case-insensitive), returning a
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# fresh NUL-terminated copy, or null if absent. Lines are "Name: value\r\n".
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function http_find_header(hdr: pointer, name: pointer) -> pointer {
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if hdr == null { return null }
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let nlen = http_cstr_len(name)
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let hlen = http_cstr_len(hdr)
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var i = 0
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while i < hlen {
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# match name at the start of a line, followed by ':'.
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var k = 0
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while (k < nlen) and ((i + k) < hlen) and (http_lower(hdr[i + k]) == http_lower(name[k])) { k += 1 }
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if (k == nlen) and ((i + k) < hlen) and (hdr[i + k] == ':') {
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var v = i + k + 1
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while (v < hlen) and (hdr[v] == ' ') { v += 1 } # skip spaces after ':'
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var e = v
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while (e < hlen) and (hdr[e] != '\r') and (hdr[e] != '\n') { e += 1 }
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return http_slice_dup(hdr, v, e)
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}
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# advance to the next line.
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while (i < hlen) and (hdr[i] != '\n') { i += 1 }
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i += 1
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}
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return null
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}
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