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		12d2f373b9
		
			
		
	
	
	
	
		
			
			If there is an error, we have to return `-errno` not positive errno. Included in backport of GH-136931: #136988
		
			
				
	
	
		
			323 lines
		
	
	
	
		
			12 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			323 lines
		
	
	
	
		
			12 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
| #include "emscripten.h"
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| #include "stdio.h"
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| 
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| // All system calls: return nonnegative number on success, return -errno on
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| // failure. Negative results get stored back into errno here:
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| // https://github.com/emscripten-core/emscripten/blob/main/system/lib/libc/musl/src/internal/syscall_ret.c#L7
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| 
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| // If we're running in node, report the UID of the user in the native system as
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| // the UID of the user. Since the nodefs will report the uid correctly, if we
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| // don't make getuid report it correctly too we'll see some permission errors.
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| // Normally __syscall_getuid32 is a stub that always returns 0 but it is
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| // defined with weak linkage so we can override it.
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| EM_JS(int, __syscall_getuid32_js, (void), {
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|     // If we're in node and we can, report the native uid
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|     if (ENVIRONMENT_IS_NODE) {
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|         return process.getuid();
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|     }
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|     // Fall back to the stub case of returning 0.
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|     return 0;
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| })
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| 
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| int __syscall_getuid32(void) {
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|     return __syscall_getuid32_js();
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| }
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| 
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| EM_JS(int, __syscall_umask_js, (int mask), {
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|     // If we're in node and we can, call native process.umask()
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|     if (ENVIRONMENT_IS_NODE) {
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|         try {
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|             return process.umask(mask);
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|         } catch(e) {
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|             // oops...
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|             // NodeJS docs: "In Worker threads, process.umask(mask) will throw an exception."
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|             // umask docs: "This system call always succeeds"
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|             return 0;
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|         }
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|     }
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|     // Fall back to the stub case of returning 0.
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|     return 0;
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| })
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| 
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| int __syscall_umask(int mask) {
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|     return __syscall_umask_js(mask);
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| }
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| 
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| #include <wasi/api.h>
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| #include <errno.h>
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| #include <fcntl.h>
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| 
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| // Variant of EM_JS that does C preprocessor substitution on the body
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| #define EM_JS_MACROS(ret, func_name, args, body...)                            \
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|   EM_JS(ret, func_name, args, body)
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| 
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| EM_JS_MACROS(void, _emscripten_promising_main_js, (void), {
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|     // Define FS.createAsyncInputDevice(), This is quite similar to
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|     // FS.createDevice() defined here:
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|     // https://github.com/emscripten-core/emscripten/blob/4.0.11/src/lib/libfs.js?plain=1#L1642
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|     // but instead of returning one byte at a time, the input() function should
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|     // return a Uint8Array. This makes the handler code simpler, the
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|     // `createAsyncInputDevice` simpler, and everything faster.
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|     FS.createAsyncInputDevice = function(parent, name, input) {
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|         parent = typeof parent == 'string' ? parent : FS.getPath(parent);
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|         var path = PATH.join2(parent, name);
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|         var mode = FS_getMode(true, false);
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|         FS.createDevice.major ||= 64;
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|         var dev = FS.makedev(FS.createDevice.major++, 0);
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|         async function getDataBuf() {
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|             var buf;
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|             try {
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|                 buf = await input();
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|             } catch (e) {
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|                 throw new FS.ErrnoError(EIO);
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|             }
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|             if (!buf?.byteLength) {
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|                 throw new FS.ErrnoError(EAGAIN);
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|             }
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|             ops._dataBuf = buf;
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|         }
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| 
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|         var ops = {
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|             _dataBuf: new Uint8Array(0),
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|             open(stream) {
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|                 stream.seekable = false;
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|             },
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|             async readAsync(stream, buffer, offset, length, pos /* ignored */) {
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|                 buffer = buffer.subarray(offset, offset + length);
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|                 if (!ops._dataBuf.byteLength) {
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|                     await getDataBuf();
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|                 }
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|                 var toRead = Math.min(ops._dataBuf.byteLength, buffer.byteLength);
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|                 buffer.subarray(0, toRead).set(ops._dataBuf);
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|                 buffer = buffer.subarray(toRead);
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|                 ops._dataBuf = ops._dataBuf.subarray(toRead);
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|                 if (toRead) {
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|                     stream.node.atime = Date.now();
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|                 }
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|                 return toRead;
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|             },
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|         };
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|         FS.registerDevice(dev, ops);
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|         return FS.mkdev(path, mode, dev);
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|     };
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|     if (!WebAssembly.promising) {
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|         // No stack switching support =(
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|         return;
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|     }
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|     const origResolveGlobalSymbol = resolveGlobalSymbol;
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|     if (ENVIRONMENT_IS_NODE && !Module.onExit) {
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|         Module.onExit = (code) => process.exit(code);
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|     }
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|     // * wrap the main symbol with WebAssembly.promising,
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|     // * call exit_with_live_runtime() to prevent emscripten from shutting down
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|     //   the runtime before the promise resolves,
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|     // * call onExit / process.exit ourselves, since exit_with_live_runtime()
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|     //   prevented Emscripten from calling it normally.
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|     resolveGlobalSymbol = function (name, direct = false) {
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|         const orig = origResolveGlobalSymbol(name, direct);
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|         if (name === "main") {
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|             const main = WebAssembly.promising(orig.sym);
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|             orig.sym = (...args) => {
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|                 (async () => {
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|                     const ret = await main(...args);
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|                     Module.onExit?.(ret);
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|                 })();
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|                 _emscripten_exit_with_live_runtime();
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|             };
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|         }
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|         return orig;
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|     };
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| })
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| 
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| __attribute__((constructor)) void _emscripten_promising_main(void) {
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|     _emscripten_promising_main_js();
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| }
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| 
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| 
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| #define IOVEC_T_BUF_OFFSET 0
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| #define IOVEC_T_BUF_LEN_OFFSET 4
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| #define IOVEC_T_SIZE 8
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| _Static_assert(offsetof(__wasi_iovec_t, buf) == IOVEC_T_BUF_OFFSET,
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|                "Unexpected __wasi_iovec_t layout");
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| _Static_assert(offsetof(__wasi_iovec_t, buf_len) == IOVEC_T_BUF_LEN_OFFSET,
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|                "Unexpected __wasi_iovec_t layout");
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| _Static_assert(sizeof(__wasi_iovec_t) == IOVEC_T_SIZE,
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|                "Unexpected __wasi_iovec_t layout");
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| 
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| // If the stream has a readAsync handler, read to buffer defined in iovs, write
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| // number of bytes read to *nread, and return a promise that resolves to the
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| // errno. Otherwise, return null.
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| EM_JS_MACROS(__externref_t, __maybe_fd_read_async, (
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|     __wasi_fd_t fd,
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|     const __wasi_iovec_t *iovs,
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|     size_t iovcnt,
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|     __wasi_size_t *nread
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| ), {
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|     if (!WebAssembly.promising) {
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|         return null;
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|     }
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|     var stream;
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|     try {
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|         stream = SYSCALLS.getStreamFromFD(fd);
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|     } catch (e) {
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|         // If the fd was already closed or never existed, getStreamFromFD()
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|         // raises. We'll let fd_read_orig() handle setting errno.
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|         return null;
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|     }
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|     if (!stream.stream_ops.readAsync) {
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|         // Not an async device. Fall back to __wasi_fd_read_orig().
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|         return null;
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|     }
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|     return (async () => {
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|         // This is the same as libwasi.js fd_read() and doReadv() except we use
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|         // readAsync and we await it.
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|         // https://github.com/emscripten-core/emscripten/blob/4.0.11/src/lib/libwasi.js?plain=1#L331
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|         // https://github.com/emscripten-core/emscripten/blob/4.0.11/src/lib/libwasi.js?plain=1#L197
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|         try {
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|             var ret = 0;
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|             for (var i = 0; i < iovcnt; i++) {
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|                 var ptr = HEAP32[(iovs + IOVEC_T_BUF_OFFSET)/4];
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|                 var len = HEAP32[(iovs + IOVEC_T_BUF_LEN_OFFSET)/4];
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|                 iovs += IOVEC_T_SIZE;
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|                 var curr = await stream.stream_ops.readAsync(stream, HEAP8, ptr, len);
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|                 if (curr < 0) return -1;
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|                 ret += curr;
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|                 if (curr < len) break; // nothing more to read
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|             }
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|             HEAP32[nread/4] = ret;
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|             return 0;
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|         } catch (e) {
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|             if (e.name !== 'ErrnoError') {
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|                 throw e;
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|             }
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|             return e["errno"];
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|         }
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|     })();
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| };
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| );
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| 
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| // Bind original fd_read syscall to __wasi_fd_read_orig().
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| __wasi_errno_t __wasi_fd_read_orig(__wasi_fd_t fd, const __wasi_iovec_t *iovs,
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|                                    size_t iovs_len, __wasi_size_t *nread)
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|     __attribute__((__import_module__("wasi_snapshot_preview1"),
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|                    __import_name__("fd_read"), __warn_unused_result__));
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| 
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| // Take a promise that resolves to __wasi_errno_t and suspend until it resolves,
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| // get the output.
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| EM_JS(int, __block_for_int, (__externref_t p), {
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|     return p;
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| }
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| if (WebAssembly.Suspending) {
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|     __block_for_int = new WebAssembly.Suspending(__block_for_int);
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| }
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| )
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| 
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| // Replacement for fd_read syscall. Call __maybe_fd_read_async. If it returned
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| // null, delegate back to __wasi_fd_read_orig. Otherwise, use __block_for_int
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| // to get the result.
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| __wasi_errno_t __wasi_fd_read(__wasi_fd_t fd, const __wasi_iovec_t *iovs,
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|                               size_t iovs_len, __wasi_size_t *nread) {
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|   __externref_t p = __maybe_fd_read_async(fd, iovs, iovs_len, nread);
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|   if (__builtin_wasm_ref_is_null_extern(p)) {
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|     return __wasi_fd_read_orig(fd, iovs, iovs_len, nread);
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|   }
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|   return __block_for_int(p);
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| }
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| 
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| #include <poll.h>
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| #define POLLFD_FD 0
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| #define POLLFD_EVENTS 4
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| #define POLLFD_REVENTS 6
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| #define POLLFD_SIZE 8
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| _Static_assert(offsetof(struct pollfd, fd) == 0, "Unepxected pollfd struct layout");
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| _Static_assert(offsetof(struct pollfd, events) == 4, "Unepxected pollfd struct layout");
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| _Static_assert(offsetof(struct pollfd, revents) == 6, "Unepxected pollfd struct layout");
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| _Static_assert(sizeof(struct pollfd) == 8, "Unepxected pollfd struct layout");
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| 
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| EM_JS_MACROS(__externref_t, __maybe_poll_async, (intptr_t fds, int nfds, int timeout), {
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|     if (!WebAssembly.promising) {
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|         return null;
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|     }
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|     return (async function() {
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|         try {
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|             var nonzero = 0;
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|             var promises = [];
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|             for (var i = 0; i < nfds; i++) {
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|                 var pollfd = fds + POLLFD_SIZE * i;
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|                 var fd = HEAP32[(pollfd + POLLFD_FD)/4];
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|                 var events = HEAP16[(pollfd + POLLFD_EVENTS)/2];
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|                 var mask = POLLNVAL;
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|                 var stream = FS.getStream(fd);
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|                 if (stream) {
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|                     mask = POLLIN | POLLOUT;
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|                     if (stream.stream_ops.pollAsync) {
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|                         promises.push(stream.stream_ops.pollAsync(stream, timeout).then((mask) => {
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|                             mask &= events | POLLERR | POLLHUP;
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|                             HEAP16[(pollfd + POLLFD_REVENTS)/2] = mask;
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|                             if (mask) {
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|                                 nonzero ++;
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|                             }
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|                         }));
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|                     } else if (stream.stream_ops.poll) {
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|                         var mask = stream.stream_ops.poll(stream, timeout);
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|                         mask &= events | POLLERR | POLLHUP;
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|                         HEAP16[(pollfd + POLLFD_REVENTS)/2] = mask;
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|                         if (mask) {
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|                             nonzero ++;
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|                         }
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|                     }
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|                 }
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|             }
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|             await Promise.all(promises);
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|             return nonzero;
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|         } catch(e) {
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|             if (e?.name !== "ErrnoError") throw e;
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|             return -e["errno"];
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|         }
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|     })();
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| });
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| 
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| // Bind original poll syscall to syscall_poll_orig().
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| int syscall_poll_orig(intptr_t fds, int nfds, int timeout)
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|     __attribute__((__import_module__("env"),
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|                    __import_name__("__syscall_poll"), __warn_unused_result__));
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| 
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| int __syscall_poll(intptr_t fds, int nfds, int timeout) {
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|     __externref_t p = __maybe_poll_async(fds, nfds, timeout);
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|     if (__builtin_wasm_ref_is_null_extern(p)) {
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|         return syscall_poll_orig(fds, nfds, timeout);
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|     }
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|     return __block_for_int(p);
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| }
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| 
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| #include <sys/ioctl.h>
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| 
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| int syscall_ioctl_orig(int fd, int request, void* varargs)
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|     __attribute__((__import_module__("env"),
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|                    __import_name__("__syscall_ioctl"), __warn_unused_result__));
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| 
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| int __syscall_ioctl(int fd, int request, void* varargs) {
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|     if (request == FIOCLEX || request == FIONCLEX) {
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|         return 0;
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|     }
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|     if (request == FIONBIO) {
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|         // Implement FIONBIO via fcntl.
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|         // TODO: Upstream this.
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|         int flags = fcntl(fd, F_GETFL, 0);
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|         int nonblock = **((int**)varargs);
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|         if (flags < 0) {
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|             return -errno;
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|         }
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|         if (nonblock) {
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|             flags |= O_NONBLOCK;
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|         } else {
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|             flags &= (~O_NONBLOCK);
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|         }
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|         int res = fcntl(fd, F_SETFL, flags);
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|         if (res < 0) {
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|             return -errno;
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|         }
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|         return res;
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|     }
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|     return syscall_ioctl_orig(fd, request, varargs);
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| }
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