objarray.c 24 KB

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  1. /*
  2. * This file is part of the MicroPython project, http://micropython.org/
  3. *
  4. * The MIT License (MIT)
  5. *
  6. * Copyright (c) 2013, 2014 Damien P. George
  7. * Copyright (c) 2014 Paul Sokolovsky
  8. *
  9. * Permission is hereby granted, free of charge, to any person obtaining a copy
  10. * of this software and associated documentation files (the "Software"), to deal
  11. * in the Software without restriction, including without limitation the rights
  12. * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
  13. * copies of the Software, and to permit persons to whom the Software is
  14. * furnished to do so, subject to the following conditions:
  15. *
  16. * The above copyright notice and this permission notice shall be included in
  17. * all copies or substantial portions of the Software.
  18. *
  19. * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
  20. * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
  21. * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
  22. * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
  23. * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
  24. * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
  25. * THE SOFTWARE.
  26. */
  27. #include <string.h>
  28. #include <assert.h>
  29. #include <stdint.h>
  30. #include "py/runtime.h"
  31. #include "py/binary.h"
  32. #include "py/objstr.h"
  33. #include "py/objarray.h"
  34. #if MICROPY_PY_ARRAY || MICROPY_PY_BUILTINS_BYTEARRAY || MICROPY_PY_BUILTINS_MEMORYVIEW
  35. // About memoryview object: We want to reuse as much code as possible from
  36. // array, and keep the memoryview object 4 words in size so it fits in 1 GC
  37. // block. Also, memoryview must keep a pointer to the base of the buffer so
  38. // that the buffer is not GC'd if the original parent object is no longer
  39. // around (we are assuming that all memoryview'able objects return a pointer
  40. // which points to the start of a GC chunk). Given the above constraints we
  41. // do the following:
  42. // - typecode high bit is set if the buffer is read-write (else read-only)
  43. // - free is the offset in elements to the first item in the memoryview
  44. // - len is the length in elements
  45. // - items points to the start of the original buffer
  46. // Note that we don't handle the case where the original buffer might change
  47. // size due to a resize of the original parent object.
  48. #if MICROPY_PY_BUILTINS_MEMORYVIEW
  49. #define TYPECODE_MASK (0x7f)
  50. #define memview_offset free
  51. #else
  52. // make (& TYPECODE_MASK) a null operation if memorview not enabled
  53. #define TYPECODE_MASK (~(size_t)0)
  54. // memview_offset should not be accessed if memoryview is not enabled,
  55. // so not defined to catch errors
  56. #endif
  57. STATIC mp_obj_t array_iterator_new(mp_obj_t array_in, mp_obj_iter_buf_t *iter_buf);
  58. STATIC mp_obj_t array_append(mp_obj_t self_in, mp_obj_t arg);
  59. STATIC mp_obj_t array_extend(mp_obj_t self_in, mp_obj_t arg_in);
  60. STATIC mp_int_t array_get_buffer(mp_obj_t o_in, mp_buffer_info_t *bufinfo, mp_uint_t flags);
  61. /******************************************************************************/
  62. // array
  63. #if MICROPY_PY_BUILTINS_BYTEARRAY || MICROPY_PY_ARRAY
  64. STATIC void array_print(const mp_print_t *print, mp_obj_t o_in, mp_print_kind_t kind) {
  65. (void)kind;
  66. mp_obj_array_t *o = MP_OBJ_TO_PTR(o_in);
  67. if (o->typecode == BYTEARRAY_TYPECODE) {
  68. mp_print_str(print, "bytearray(b");
  69. mp_str_print_quoted(print, o->items, o->len, true);
  70. } else {
  71. mp_printf(print, "array('%c'", o->typecode);
  72. if (o->len > 0) {
  73. mp_print_str(print, ", [");
  74. for (size_t i = 0; i < o->len; i++) {
  75. if (i > 0) {
  76. mp_print_str(print, ", ");
  77. }
  78. mp_obj_print_helper(print, mp_binary_get_val_array(o->typecode, o->items, i), PRINT_REPR);
  79. }
  80. mp_print_str(print, "]");
  81. }
  82. }
  83. mp_print_str(print, ")");
  84. }
  85. #endif
  86. #if MICROPY_PY_BUILTINS_BYTEARRAY || MICROPY_PY_ARRAY
  87. STATIC mp_obj_array_t *array_new(char typecode, size_t n) {
  88. int typecode_size = mp_binary_get_size('@', typecode, NULL);
  89. mp_obj_array_t *o = m_new_obj(mp_obj_array_t);
  90. #if MICROPY_PY_BUILTINS_BYTEARRAY && MICROPY_PY_ARRAY
  91. o->base.type = (typecode == BYTEARRAY_TYPECODE) ? &mp_type_bytearray : &mp_type_array;
  92. #elif MICROPY_PY_BUILTINS_BYTEARRAY
  93. o->base.type = &mp_type_bytearray;
  94. #else
  95. o->base.type = &mp_type_array;
  96. #endif
  97. o->typecode = typecode;
  98. o->free = 0;
  99. o->len = n;
  100. o->items = m_new(byte, typecode_size * o->len);
  101. return o;
  102. }
  103. #endif
  104. #if MICROPY_PY_BUILTINS_BYTEARRAY || MICROPY_PY_ARRAY
  105. STATIC mp_obj_t array_construct(char typecode, mp_obj_t initializer) {
  106. // bytearrays can be raw-initialised from anything with the buffer protocol
  107. // other arrays can only be raw-initialised from bytes and bytearray objects
  108. mp_buffer_info_t bufinfo;
  109. if (((MICROPY_PY_BUILTINS_BYTEARRAY
  110. && typecode == BYTEARRAY_TYPECODE)
  111. || (MICROPY_PY_ARRAY
  112. && (MP_OBJ_IS_TYPE(initializer, &mp_type_bytes)
  113. || (MICROPY_PY_BUILTINS_BYTEARRAY && MP_OBJ_IS_TYPE(initializer, &mp_type_bytearray)))))
  114. && mp_get_buffer(initializer, &bufinfo, MP_BUFFER_READ)) {
  115. // construct array from raw bytes
  116. // we round-down the len to make it a multiple of sz (CPython raises error)
  117. size_t sz = mp_binary_get_size('@', typecode, NULL);
  118. size_t len = bufinfo.len / sz;
  119. mp_obj_array_t *o = array_new(typecode, len);
  120. memcpy(o->items, bufinfo.buf, len * sz);
  121. return MP_OBJ_FROM_PTR(o);
  122. }
  123. size_t len;
  124. // Try to create array of exact len if initializer len is known
  125. mp_obj_t len_in = mp_obj_len_maybe(initializer);
  126. if (len_in == MP_OBJ_NULL) {
  127. len = 0;
  128. } else {
  129. len = MP_OBJ_SMALL_INT_VALUE(len_in);
  130. }
  131. mp_obj_array_t *array = array_new(typecode, len);
  132. mp_obj_t iterable = mp_getiter(initializer, NULL);
  133. mp_obj_t item;
  134. size_t i = 0;
  135. while ((item = mp_iternext(iterable)) != MP_OBJ_STOP_ITERATION) {
  136. if (len == 0) {
  137. array_append(MP_OBJ_FROM_PTR(array), item);
  138. } else {
  139. mp_binary_set_val_array(typecode, array->items, i++, item);
  140. }
  141. }
  142. return MP_OBJ_FROM_PTR(array);
  143. }
  144. #endif
  145. #if MICROPY_PY_ARRAY
  146. STATIC mp_obj_t array_make_new(const mp_obj_type_t *type_in, size_t n_args, size_t n_kw, const mp_obj_t *args) {
  147. (void)type_in;
  148. mp_arg_check_num(n_args, n_kw, 1, 2, false);
  149. // get typecode
  150. const char *typecode = mp_obj_str_get_str(args[0]);
  151. if (n_args == 1) {
  152. // 1 arg: make an empty array
  153. return MP_OBJ_FROM_PTR(array_new(*typecode, 0));
  154. } else {
  155. // 2 args: construct the array from the given object
  156. return array_construct(*typecode, args[1]);
  157. }
  158. }
  159. #endif
  160. #if MICROPY_PY_BUILTINS_BYTEARRAY
  161. STATIC mp_obj_t bytearray_make_new(const mp_obj_type_t *type_in, size_t n_args, size_t n_kw, const mp_obj_t *args) {
  162. (void)type_in;
  163. // Can take 2nd/3rd arg if constructs from str
  164. mp_arg_check_num(n_args, n_kw, 0, 3, false);
  165. if (n_args == 0) {
  166. // no args: construct an empty bytearray
  167. return MP_OBJ_FROM_PTR(array_new(BYTEARRAY_TYPECODE, 0));
  168. } else if (MP_OBJ_IS_INT(args[0])) {
  169. // 1 arg, an integer: construct a blank bytearray of that length
  170. mp_uint_t len = mp_obj_get_int(args[0]);
  171. mp_obj_array_t *o = array_new(BYTEARRAY_TYPECODE, len);
  172. memset(o->items, 0, len);
  173. return MP_OBJ_FROM_PTR(o);
  174. } else {
  175. // 1 arg: construct the bytearray from that
  176. return array_construct(BYTEARRAY_TYPECODE, args[0]);
  177. }
  178. }
  179. #endif
  180. #if MICROPY_PY_BUILTINS_MEMORYVIEW
  181. mp_obj_t mp_obj_new_memoryview(byte typecode, size_t nitems, void *items) {
  182. mp_obj_array_t *self = m_new_obj(mp_obj_array_t);
  183. self->base.type = &mp_type_memoryview;
  184. self->typecode = typecode;
  185. self->memview_offset = 0;
  186. self->len = nitems;
  187. self->items = items;
  188. return MP_OBJ_FROM_PTR(self);
  189. }
  190. STATIC mp_obj_t memoryview_make_new(const mp_obj_type_t *type_in, size_t n_args, size_t n_kw, const mp_obj_t *args) {
  191. (void)type_in;
  192. // TODO possibly allow memoryview constructor to take start/stop so that one
  193. // can do memoryview(b, 4, 8) instead of memoryview(b)[4:8] (uses less RAM)
  194. mp_arg_check_num(n_args, n_kw, 1, 1, false);
  195. mp_buffer_info_t bufinfo;
  196. mp_get_buffer_raise(args[0], &bufinfo, MP_BUFFER_READ);
  197. mp_obj_array_t *self = MP_OBJ_TO_PTR(mp_obj_new_memoryview(bufinfo.typecode,
  198. bufinfo.len / mp_binary_get_size('@', bufinfo.typecode, NULL),
  199. bufinfo.buf));
  200. // test if the object can be written to
  201. if (mp_get_buffer(args[0], &bufinfo, MP_BUFFER_RW)) {
  202. self->typecode |= MP_OBJ_ARRAY_TYPECODE_FLAG_RW; // indicate writable buffer
  203. }
  204. return MP_OBJ_FROM_PTR(self);
  205. }
  206. #endif
  207. STATIC mp_obj_t array_unary_op(mp_unary_op_t op, mp_obj_t o_in) {
  208. mp_obj_array_t *o = MP_OBJ_TO_PTR(o_in);
  209. switch (op) {
  210. case MP_UNARY_OP_BOOL: return mp_obj_new_bool(o->len != 0);
  211. case MP_UNARY_OP_LEN: return MP_OBJ_NEW_SMALL_INT(o->len);
  212. default: return MP_OBJ_NULL; // op not supported
  213. }
  214. }
  215. STATIC mp_obj_t array_binary_op(mp_binary_op_t op, mp_obj_t lhs_in, mp_obj_t rhs_in) {
  216. mp_obj_array_t *lhs = MP_OBJ_TO_PTR(lhs_in);
  217. switch (op) {
  218. case MP_BINARY_OP_ADD: {
  219. // allow to add anything that has the buffer protocol (extension to CPython)
  220. mp_buffer_info_t lhs_bufinfo;
  221. mp_buffer_info_t rhs_bufinfo;
  222. array_get_buffer(lhs_in, &lhs_bufinfo, MP_BUFFER_READ);
  223. mp_get_buffer_raise(rhs_in, &rhs_bufinfo, MP_BUFFER_READ);
  224. size_t sz = mp_binary_get_size('@', lhs_bufinfo.typecode, NULL);
  225. // convert byte count to element count (in case rhs is not multiple of sz)
  226. size_t rhs_len = rhs_bufinfo.len / sz;
  227. // note: lhs->len is element count of lhs, lhs_bufinfo.len is byte count
  228. mp_obj_array_t *res = array_new(lhs_bufinfo.typecode, lhs->len + rhs_len);
  229. mp_seq_cat((byte*)res->items, lhs_bufinfo.buf, lhs_bufinfo.len, rhs_bufinfo.buf, rhs_len * sz, byte);
  230. return MP_OBJ_FROM_PTR(res);
  231. }
  232. case MP_BINARY_OP_INPLACE_ADD: {
  233. #if MICROPY_PY_BUILTINS_MEMORYVIEW
  234. if (lhs->base.type == &mp_type_memoryview) {
  235. return MP_OBJ_NULL; // op not supported
  236. }
  237. #endif
  238. array_extend(lhs_in, rhs_in);
  239. return lhs_in;
  240. }
  241. case MP_BINARY_OP_CONTAINS: {
  242. #if MICROPY_PY_BUILTINS_BYTEARRAY
  243. // Can search string only in bytearray
  244. mp_buffer_info_t lhs_bufinfo;
  245. mp_buffer_info_t rhs_bufinfo;
  246. if (mp_get_buffer(rhs_in, &rhs_bufinfo, MP_BUFFER_READ)) {
  247. if (!MP_OBJ_IS_TYPE(lhs_in, &mp_type_bytearray)) {
  248. return mp_const_false;
  249. }
  250. array_get_buffer(lhs_in, &lhs_bufinfo, MP_BUFFER_READ);
  251. return mp_obj_new_bool(
  252. find_subbytes(lhs_bufinfo.buf, lhs_bufinfo.len, rhs_bufinfo.buf, rhs_bufinfo.len, 1) != NULL);
  253. }
  254. #endif
  255. // Otherwise, can only look for a scalar numeric value in an array
  256. if (MP_OBJ_IS_INT(rhs_in) || mp_obj_is_float(rhs_in)) {
  257. mp_raise_NotImplementedError(NULL);
  258. }
  259. return mp_const_false;
  260. }
  261. case MP_BINARY_OP_EQUAL: {
  262. mp_buffer_info_t lhs_bufinfo;
  263. mp_buffer_info_t rhs_bufinfo;
  264. array_get_buffer(lhs_in, &lhs_bufinfo, MP_BUFFER_READ);
  265. if (!mp_get_buffer(rhs_in, &rhs_bufinfo, MP_BUFFER_READ)) {
  266. return mp_const_false;
  267. }
  268. return mp_obj_new_bool(mp_seq_cmp_bytes(op, lhs_bufinfo.buf, lhs_bufinfo.len, rhs_bufinfo.buf, rhs_bufinfo.len));
  269. }
  270. default:
  271. return MP_OBJ_NULL; // op not supported
  272. }
  273. }
  274. #if MICROPY_PY_BUILTINS_BYTEARRAY || MICROPY_PY_ARRAY
  275. STATIC mp_obj_t array_append(mp_obj_t self_in, mp_obj_t arg) {
  276. // self is not a memoryview, so we don't need to use (& TYPECODE_MASK)
  277. assert((MICROPY_PY_BUILTINS_BYTEARRAY && MP_OBJ_IS_TYPE(self_in, &mp_type_bytearray))
  278. || (MICROPY_PY_ARRAY && MP_OBJ_IS_TYPE(self_in, &mp_type_array)));
  279. mp_obj_array_t *self = MP_OBJ_TO_PTR(self_in);
  280. if (self->free == 0) {
  281. size_t item_sz = mp_binary_get_size('@', self->typecode, NULL);
  282. // TODO: alloc policy
  283. self->free = 8;
  284. self->items = m_renew(byte, self->items, item_sz * self->len, item_sz * (self->len + self->free));
  285. mp_seq_clear(self->items, self->len + 1, self->len + self->free, item_sz);
  286. }
  287. mp_binary_set_val_array(self->typecode, self->items, self->len, arg);
  288. // only update length/free if set succeeded
  289. self->len++;
  290. self->free--;
  291. return mp_const_none; // return None, as per CPython
  292. }
  293. STATIC MP_DEFINE_CONST_FUN_OBJ_2(array_append_obj, array_append);
  294. STATIC mp_obj_t array_extend(mp_obj_t self_in, mp_obj_t arg_in) {
  295. // self is not a memoryview, so we don't need to use (& TYPECODE_MASK)
  296. assert((MICROPY_PY_BUILTINS_BYTEARRAY && MP_OBJ_IS_TYPE(self_in, &mp_type_bytearray))
  297. || (MICROPY_PY_ARRAY && MP_OBJ_IS_TYPE(self_in, &mp_type_array)));
  298. mp_obj_array_t *self = MP_OBJ_TO_PTR(self_in);
  299. // allow to extend by anything that has the buffer protocol (extension to CPython)
  300. mp_buffer_info_t arg_bufinfo;
  301. mp_get_buffer_raise(arg_in, &arg_bufinfo, MP_BUFFER_READ);
  302. size_t sz = mp_binary_get_size('@', self->typecode, NULL);
  303. // convert byte count to element count
  304. size_t len = arg_bufinfo.len / sz;
  305. // make sure we have enough room to extend
  306. // TODO: alloc policy; at the moment we go conservative
  307. if (self->free < len) {
  308. self->items = m_renew(byte, self->items, (self->len + self->free) * sz, (self->len + len) * sz);
  309. self->free = 0;
  310. } else {
  311. self->free -= len;
  312. }
  313. // extend
  314. mp_seq_copy((byte*)self->items + self->len * sz, arg_bufinfo.buf, len * sz, byte);
  315. self->len += len;
  316. return mp_const_none;
  317. }
  318. STATIC MP_DEFINE_CONST_FUN_OBJ_2(array_extend_obj, array_extend);
  319. #endif
  320. STATIC mp_obj_t array_subscr(mp_obj_t self_in, mp_obj_t index_in, mp_obj_t value) {
  321. if (value == MP_OBJ_NULL) {
  322. // delete item
  323. // TODO implement
  324. // TODO: confirmed that both bytearray and array.array support
  325. // slice deletion
  326. return MP_OBJ_NULL; // op not supported
  327. } else {
  328. mp_obj_array_t *o = MP_OBJ_TO_PTR(self_in);
  329. if (0) {
  330. #if MICROPY_PY_BUILTINS_SLICE
  331. } else if (MP_OBJ_IS_TYPE(index_in, &mp_type_slice)) {
  332. mp_bound_slice_t slice;
  333. if (!mp_seq_get_fast_slice_indexes(o->len, index_in, &slice)) {
  334. mp_raise_NotImplementedError("only slices with step=1 (aka None) are supported");
  335. }
  336. if (value != MP_OBJ_SENTINEL) {
  337. #if MICROPY_PY_ARRAY_SLICE_ASSIGN
  338. // Assign
  339. size_t src_len;
  340. void *src_items;
  341. size_t item_sz = mp_binary_get_size('@', o->typecode & TYPECODE_MASK, NULL);
  342. if (MP_OBJ_IS_OBJ(value) && ((mp_obj_base_t*)MP_OBJ_TO_PTR(value))->type->subscr == array_subscr) {
  343. // value is array, bytearray or memoryview
  344. mp_obj_array_t *src_slice = MP_OBJ_TO_PTR(value);
  345. if (item_sz != mp_binary_get_size('@', src_slice->typecode & TYPECODE_MASK, NULL)) {
  346. compat_error:
  347. mp_raise_ValueError("lhs and rhs should be compatible");
  348. }
  349. src_len = src_slice->len;
  350. src_items = src_slice->items;
  351. #if MICROPY_PY_BUILTINS_MEMORYVIEW
  352. if (MP_OBJ_IS_TYPE(value, &mp_type_memoryview)) {
  353. src_items = (uint8_t*)src_items + (src_slice->memview_offset * item_sz);
  354. }
  355. #endif
  356. } else if (MP_OBJ_IS_TYPE(value, &mp_type_bytes)) {
  357. if (item_sz != 1) {
  358. goto compat_error;
  359. }
  360. mp_buffer_info_t bufinfo;
  361. mp_get_buffer_raise(value, &bufinfo, MP_BUFFER_READ);
  362. src_len = bufinfo.len;
  363. src_items = bufinfo.buf;
  364. } else {
  365. mp_raise_NotImplementedError("array/bytes required on right side");
  366. }
  367. // TODO: check src/dst compat
  368. mp_int_t len_adj = src_len - (slice.stop - slice.start);
  369. uint8_t* dest_items = o->items;
  370. #if MICROPY_PY_BUILTINS_MEMORYVIEW
  371. if (o->base.type == &mp_type_memoryview) {
  372. if (!(o->typecode & MP_OBJ_ARRAY_TYPECODE_FLAG_RW)) {
  373. // store to read-only memoryview not allowed
  374. return MP_OBJ_NULL;
  375. }
  376. if (len_adj != 0) {
  377. goto compat_error;
  378. }
  379. dest_items += o->memview_offset * item_sz;
  380. }
  381. #endif
  382. if (len_adj > 0) {
  383. if (len_adj > o->free) {
  384. // TODO: alloc policy; at the moment we go conservative
  385. o->items = m_renew(byte, o->items, (o->len + o->free) * item_sz, (o->len + len_adj) * item_sz);
  386. o->free = 0;
  387. dest_items = o->items;
  388. }
  389. mp_seq_replace_slice_grow_inplace(dest_items, o->len,
  390. slice.start, slice.stop, src_items, src_len, len_adj, item_sz);
  391. } else {
  392. mp_seq_replace_slice_no_grow(dest_items, o->len,
  393. slice.start, slice.stop, src_items, src_len, item_sz);
  394. // Clear "freed" elements at the end of list
  395. // TODO: This is actually only needed for typecode=='O'
  396. mp_seq_clear(dest_items, o->len + len_adj, o->len, item_sz);
  397. // TODO: alloc policy after shrinking
  398. }
  399. o->len += len_adj;
  400. return mp_const_none;
  401. #else
  402. return MP_OBJ_NULL; // op not supported
  403. #endif
  404. }
  405. mp_obj_array_t *res;
  406. size_t sz = mp_binary_get_size('@', o->typecode & TYPECODE_MASK, NULL);
  407. assert(sz > 0);
  408. if (0) {
  409. // dummy
  410. #if MICROPY_PY_BUILTINS_MEMORYVIEW
  411. } else if (o->base.type == &mp_type_memoryview) {
  412. res = m_new_obj(mp_obj_array_t);
  413. *res = *o;
  414. res->memview_offset += slice.start;
  415. res->len = slice.stop - slice.start;
  416. #endif
  417. } else {
  418. res = array_new(o->typecode, slice.stop - slice.start);
  419. memcpy(res->items, (uint8_t*)o->items + slice.start * sz, (slice.stop - slice.start) * sz);
  420. }
  421. return MP_OBJ_FROM_PTR(res);
  422. #endif
  423. } else {
  424. size_t index = mp_get_index(o->base.type, o->len, index_in, false);
  425. #if MICROPY_PY_BUILTINS_MEMORYVIEW
  426. if (o->base.type == &mp_type_memoryview) {
  427. index += o->memview_offset;
  428. if (value != MP_OBJ_SENTINEL && !(o->typecode & MP_OBJ_ARRAY_TYPECODE_FLAG_RW)) {
  429. // store to read-only memoryview
  430. return MP_OBJ_NULL;
  431. }
  432. }
  433. #endif
  434. if (value == MP_OBJ_SENTINEL) {
  435. // load
  436. return mp_binary_get_val_array(o->typecode & TYPECODE_MASK, o->items, index);
  437. } else {
  438. // store
  439. mp_binary_set_val_array(o->typecode & TYPECODE_MASK, o->items, index, value);
  440. return mp_const_none;
  441. }
  442. }
  443. }
  444. }
  445. STATIC mp_int_t array_get_buffer(mp_obj_t o_in, mp_buffer_info_t *bufinfo, mp_uint_t flags) {
  446. mp_obj_array_t *o = MP_OBJ_TO_PTR(o_in);
  447. size_t sz = mp_binary_get_size('@', o->typecode & TYPECODE_MASK, NULL);
  448. bufinfo->buf = o->items;
  449. bufinfo->len = o->len * sz;
  450. bufinfo->typecode = o->typecode & TYPECODE_MASK;
  451. #if MICROPY_PY_BUILTINS_MEMORYVIEW
  452. if (o->base.type == &mp_type_memoryview) {
  453. if (!(o->typecode & MP_OBJ_ARRAY_TYPECODE_FLAG_RW) && (flags & MP_BUFFER_WRITE)) {
  454. // read-only memoryview
  455. return 1;
  456. }
  457. bufinfo->buf = (uint8_t*)bufinfo->buf + (size_t)o->memview_offset * sz;
  458. }
  459. #else
  460. (void)flags;
  461. #endif
  462. return 0;
  463. }
  464. #if MICROPY_PY_BUILTINS_BYTEARRAY || MICROPY_PY_ARRAY
  465. STATIC const mp_rom_map_elem_t array_locals_dict_table[] = {
  466. { MP_ROM_QSTR(MP_QSTR_append), MP_ROM_PTR(&array_append_obj) },
  467. { MP_ROM_QSTR(MP_QSTR_extend), MP_ROM_PTR(&array_extend_obj) },
  468. };
  469. STATIC MP_DEFINE_CONST_DICT(array_locals_dict, array_locals_dict_table);
  470. #endif
  471. #if MICROPY_PY_ARRAY
  472. const mp_obj_type_t mp_type_array = {
  473. { &mp_type_type },
  474. .name = MP_QSTR_array,
  475. .print = array_print,
  476. .make_new = array_make_new,
  477. .getiter = array_iterator_new,
  478. .unary_op = array_unary_op,
  479. .binary_op = array_binary_op,
  480. .subscr = array_subscr,
  481. .buffer_p = { .get_buffer = array_get_buffer },
  482. .locals_dict = (mp_obj_dict_t*)&array_locals_dict,
  483. };
  484. #endif
  485. #if MICROPY_PY_BUILTINS_BYTEARRAY
  486. const mp_obj_type_t mp_type_bytearray = {
  487. { &mp_type_type },
  488. .name = MP_QSTR_bytearray,
  489. .print = array_print,
  490. .make_new = bytearray_make_new,
  491. .getiter = array_iterator_new,
  492. .unary_op = array_unary_op,
  493. .binary_op = array_binary_op,
  494. .subscr = array_subscr,
  495. .buffer_p = { .get_buffer = array_get_buffer },
  496. .locals_dict = (mp_obj_dict_t*)&array_locals_dict,
  497. };
  498. #endif
  499. #if MICROPY_PY_BUILTINS_MEMORYVIEW
  500. const mp_obj_type_t mp_type_memoryview = {
  501. { &mp_type_type },
  502. .name = MP_QSTR_memoryview,
  503. .make_new = memoryview_make_new,
  504. .getiter = array_iterator_new,
  505. .unary_op = array_unary_op,
  506. .binary_op = array_binary_op,
  507. .subscr = array_subscr,
  508. .buffer_p = { .get_buffer = array_get_buffer },
  509. };
  510. #endif
  511. /* unused
  512. size_t mp_obj_array_len(mp_obj_t self_in) {
  513. return ((mp_obj_array_t *)self_in)->len;
  514. }
  515. */
  516. #if MICROPY_PY_BUILTINS_BYTEARRAY
  517. mp_obj_t mp_obj_new_bytearray(size_t n, void *items) {
  518. mp_obj_array_t *o = array_new(BYTEARRAY_TYPECODE, n);
  519. memcpy(o->items, items, n);
  520. return MP_OBJ_FROM_PTR(o);
  521. }
  522. // Create bytearray which references specified memory area
  523. mp_obj_t mp_obj_new_bytearray_by_ref(size_t n, void *items) {
  524. mp_obj_array_t *o = m_new_obj(mp_obj_array_t);
  525. o->base.type = &mp_type_bytearray;
  526. o->typecode = BYTEARRAY_TYPECODE;
  527. o->free = 0;
  528. o->len = n;
  529. o->items = items;
  530. return MP_OBJ_FROM_PTR(o);
  531. }
  532. #endif
  533. /******************************************************************************/
  534. // array iterator
  535. typedef struct _mp_obj_array_it_t {
  536. mp_obj_base_t base;
  537. mp_obj_array_t *array;
  538. size_t offset;
  539. size_t cur;
  540. } mp_obj_array_it_t;
  541. STATIC mp_obj_t array_it_iternext(mp_obj_t self_in) {
  542. mp_obj_array_it_t *self = MP_OBJ_TO_PTR(self_in);
  543. if (self->cur < self->array->len) {
  544. return mp_binary_get_val_array(self->array->typecode & TYPECODE_MASK, self->array->items, self->offset + self->cur++);
  545. } else {
  546. return MP_OBJ_STOP_ITERATION;
  547. }
  548. }
  549. STATIC const mp_obj_type_t array_it_type = {
  550. { &mp_type_type },
  551. .name = MP_QSTR_iterator,
  552. .getiter = mp_identity_getiter,
  553. .iternext = array_it_iternext,
  554. };
  555. STATIC mp_obj_t array_iterator_new(mp_obj_t array_in, mp_obj_iter_buf_t *iter_buf) {
  556. assert(sizeof(mp_obj_array_t) <= sizeof(mp_obj_iter_buf_t));
  557. mp_obj_array_t *array = MP_OBJ_TO_PTR(array_in);
  558. mp_obj_array_it_t *o = (mp_obj_array_it_t*)iter_buf;
  559. o->base.type = &array_it_type;
  560. o->array = array;
  561. o->offset = 0;
  562. o->cur = 0;
  563. #if MICROPY_PY_BUILTINS_MEMORYVIEW
  564. if (array->base.type == &mp_type_memoryview) {
  565. o->offset = array->memview_offset;
  566. }
  567. #endif
  568. return MP_OBJ_FROM_PTR(o);
  569. }
  570. #endif // MICROPY_PY_ARRAY || MICROPY_PY_BUILTINS_BYTEARRAY || MICROPY_PY_BUILTINS_MEMORYVIEW