164 lines
4.6 KiB
C
164 lines
4.6 KiB
C
/* stringlib: bytes joining implementation */
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#if STRINGLIB_IS_UNICODE
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#error join.h only compatible with byte-wise strings
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#endif
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Py_LOCAL_INLINE(PyObject *)
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STRINGLIB(bytes_join)(PyObject *sep, PyObject *iterable)
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{
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const char *sepstr = STRINGLIB_STR(sep);
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Py_ssize_t seplen = STRINGLIB_LEN(sep);
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PyObject *res = NULL;
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char *p;
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Py_ssize_t seqlen = 0;
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Py_ssize_t sz = 0;
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Py_ssize_t i, nbufs;
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PyObject *seq, *item;
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Py_buffer *buffers = NULL;
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#define NB_STATIC_BUFFERS 10
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Py_buffer static_buffers[NB_STATIC_BUFFERS];
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#define GIL_THRESHOLD 1048576
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int drop_gil = 1;
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PyThreadState *save = NULL;
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seq = PySequence_Fast(iterable, "can only join an iterable");
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if (seq == NULL) {
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return NULL;
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}
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seqlen = PySequence_Fast_GET_SIZE(seq);
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if (seqlen == 0) {
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Py_DECREF(seq);
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return STRINGLIB_NEW(NULL, 0);
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}
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#ifndef STRINGLIB_MUTABLE
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if (seqlen == 1) {
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item = PySequence_Fast_GET_ITEM(seq, 0);
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if (STRINGLIB_CHECK_EXACT(item)) {
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Py_INCREF(item);
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Py_DECREF(seq);
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return item;
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}
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}
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#endif
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if (seqlen > NB_STATIC_BUFFERS) {
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buffers = PyMem_NEW(Py_buffer, seqlen);
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if (buffers == NULL) {
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Py_DECREF(seq);
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PyErr_NoMemory();
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return NULL;
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}
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}
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else {
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buffers = static_buffers;
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}
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/* Here is the general case. Do a pre-pass to figure out the total
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* amount of space we'll need (sz), and see whether all arguments are
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* bytes-like.
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*/
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for (i = 0, nbufs = 0; i < seqlen; i++) {
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Py_ssize_t itemlen;
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item = PySequence_Fast_GET_ITEM(seq, i);
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if (PyBytes_CheckExact(item)) {
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/* Fast path. */
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Py_INCREF(item);
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buffers[i].obj = item;
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buffers[i].buf = PyBytes_AS_STRING(item);
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buffers[i].len = PyBytes_GET_SIZE(item);
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}
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else {
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if (PyObject_GetBuffer(item, &buffers[i], PyBUF_SIMPLE) != 0) {
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PyErr_Format(PyExc_TypeError,
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"sequence item %zd: expected a bytes-like object, "
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"%.80s found",
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i, Py_TYPE(item)->tp_name);
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goto error;
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}
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/* If the backing objects are mutable, then dropping the GIL
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* opens up race conditions where another thread tries to modify
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* the object which we hold a buffer on it. Such code has data
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* races anyway, but this is a conservative approach that avoids
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* changing the behaviour of that data race.
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*/
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drop_gil = 0;
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}
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nbufs = i + 1; /* for error cleanup */
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itemlen = buffers[i].len;
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if (itemlen > PY_SSIZE_T_MAX - sz) {
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PyErr_SetString(PyExc_OverflowError,
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"join() result is too long");
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goto error;
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}
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sz += itemlen;
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if (i != 0) {
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if (seplen > PY_SSIZE_T_MAX - sz) {
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PyErr_SetString(PyExc_OverflowError,
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"join() result is too long");
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goto error;
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}
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sz += seplen;
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}
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if (seqlen != PySequence_Fast_GET_SIZE(seq)) {
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PyErr_SetString(PyExc_RuntimeError,
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"sequence changed size during iteration");
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goto error;
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}
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}
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/* Allocate result space. */
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res = STRINGLIB_NEW(NULL, sz);
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if (res == NULL)
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goto error;
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/* Catenate everything. */
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p = STRINGLIB_STR(res);
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if (sz < GIL_THRESHOLD) {
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drop_gil = 0; /* Benefits are likely outweighed by the overheads */
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}
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if (drop_gil) {
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save = PyEval_SaveThread();
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}
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if (!seplen) {
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/* fast path */
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for (i = 0; i < nbufs; i++) {
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Py_ssize_t n = buffers[i].len;
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char *q = buffers[i].buf;
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memcpy(p, q, n);
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p += n;
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}
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}
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else {
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for (i = 0; i < nbufs; i++) {
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Py_ssize_t n;
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char *q;
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if (i) {
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memcpy(p, sepstr, seplen);
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p += seplen;
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}
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n = buffers[i].len;
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q = buffers[i].buf;
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memcpy(p, q, n);
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p += n;
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}
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}
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if (drop_gil) {
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PyEval_RestoreThread(save);
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}
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goto done;
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error:
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res = NULL;
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done:
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Py_DECREF(seq);
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for (i = 0; i < nbufs; i++)
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PyBuffer_Release(&buffers[i]);
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if (buffers != static_buffers)
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PyMem_Free(buffers);
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return res;
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}
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#undef NB_STATIC_BUFFERS
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#undef GIL_THRESHOLD
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