modstruct: Refactor to support both LE and BE packed structs.
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2b9419b5bf
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80
py/binary.c
80
py/binary.c
@ -77,50 +77,48 @@ mp_obj_t mp_binary_get_val(char typecode, void *p, int index) {
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return MP_OBJ_NEW_SMALL_INT(val);
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}
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mp_obj_t mp_binary_get_val_unaligned_le(char typecode, byte **ptr) {
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machine_int_t val = 0;
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#define is_signed(typecode) (typecode > 'Z')
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mp_obj_t mp_binary_get_val_unaligned(char typecode, byte **ptr) {
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char type = '<';
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byte *p = *ptr;
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uint size = 0, align = 0;
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switch (type) {
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case '<': case '>':
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switch (typecode) {
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case 'b':
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val = (int8_t)*p++;
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break;
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case BYTEARRAY_TYPECODE:
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case 'B':
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val = *p++;
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break;
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case 'h':
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val = (int16_t)((p[1] << 8) | p[0]);
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break;
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case 'H':
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val = (p[1] << 8) | p[0];
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break;
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case 'i':
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case 'l':
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val = (p[3] << 24) | (p[2] << 16) | (p[1] << 8) | p[0];
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*ptr = p + 4;
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return mp_obj_new_int(val);
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case 'I':
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case 'L':
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val = (p[3] << 24) | (p[2] << 16) | (p[1] << 8) | p[0];
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*ptr = p + 4;
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return mp_obj_new_int_from_uint(val);
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#if 0 //TODO
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#if MICROPY_LONGINT_IMPL != MICROPY_LONGINT_IMPL_NONE
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case 'q':
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case 'Q':
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// TODO: Explode API more to cover signedness
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return mp_obj_new_int_from_ll(((long long*)p)[index]);
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#endif
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#if MICROPY_ENABLE_FLOAT
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case 'f':
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return mp_obj_new_float(((float*)p)[index]);
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case 'd':
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return mp_obj_new_float(((double*)p)[index]);
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#endif
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#endif
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case 'b': case 'B':
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size = 1; break;
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case 'h': case 'H':
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size = 2; break;
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case 'i': case 'I':
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size = 4; break;
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}
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break;
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}
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int delta;
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if (type == '<') {
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delta = -1;
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p += size - 1;
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} else {
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delta = 1;
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}
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machine_int_t val = 0;
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if (is_signed(typecode) && *p & 0x80) {
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val = -1;
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}
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for (uint i = 0; i < size; i++) {
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val <<= 8;
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val |= *p;
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p += delta;
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}
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*ptr += size + align;
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if (is_signed(typecode)) {
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return mp_obj_new_int(val);
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} else {
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return mp_obj_new_int_from_uint(val);
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}
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*ptr = p;
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return MP_OBJ_NEW_SMALL_INT(val);
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}
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void mp_binary_set_val(char typecode, void *p, int index, mp_obj_t val_in) {
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@ -4,5 +4,5 @@
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int mp_binary_get_size(char typecode);
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mp_obj_t mp_binary_get_val(char typecode, void *p, int index);
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mp_obj_t mp_binary_get_val_unaligned_le(char typecode, byte **ptr);
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mp_obj_t mp_binary_get_val_unaligned(char typecode, byte **ptr);
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void mp_binary_set_val(char typecode, void *p, int index, mp_obj_t val_in);
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@ -37,7 +37,7 @@ STATIC uint calcsize_items(const char *fmt) {
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STATIC mp_obj_t struct_calcsize(mp_obj_t fmt_in) {
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const char *fmt = mp_obj_str_get_str(fmt_in);
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char fmt_type = get_fmt_type(&fmt);
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assert(fmt_type == '<'); (void)fmt_type;
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assert(fmt_type == '<' || fmt_type == '>'); (void)fmt_type;
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machine_uint_t size;
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for (size = 0; *fmt; fmt++) {
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int sz = mp_binary_get_size(*fmt);
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@ -53,7 +53,7 @@ STATIC mp_obj_t struct_unpack(mp_obj_t fmt_in, mp_obj_t data_in) {
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// TODO: "The buffer must contain exactly the amount of data required by the format (len(bytes) must equal calcsize(fmt))."
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const char *fmt = mp_obj_str_get_str(fmt_in);
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char fmt_type = get_fmt_type(&fmt);
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assert(fmt_type == '<'); (void)fmt_type;
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assert(fmt_type == '<' || fmt_type == '>'); (void)fmt_type;
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uint size = calcsize_items(fmt);
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mp_obj_tuple_t *res = mp_obj_new_tuple(size, NULL);
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buffer_info_t bufinfo;
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@ -61,7 +61,7 @@ STATIC mp_obj_t struct_unpack(mp_obj_t fmt_in, mp_obj_t data_in) {
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byte *p = bufinfo.buf;
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for (uint i = 0; i < size; i++) {
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mp_obj_t item = mp_binary_get_val_unaligned_le(*fmt++, &p);
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mp_obj_t item = mp_binary_get_val_unaligned(*fmt++, &p);
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res->items[i] = item;
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}
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return res;
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@ -1,3 +1,5 @@
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import struct
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print(struct.calcsize("<bI"))
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print(struct.unpack("<bI", b"\x80\0\0\x01\0"))
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print(struct.calcsize(">bI"))
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print(struct.unpack(">bI", b"\x80\0\0\x01\0"))
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