common/cbor.c (view raw)
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#include "cbor.h"
#include <stdint.h>
#include <stdbool.h>
#define CIRCE_CBOR_ASSERT(x) \
do \
{ \
if (!(x)) \
{ \
return false; \
} \
} \
while (false)
/* DECODING FUNCTIONS */
bool
circe_cbor_get_argument (struct circe_cbor_decoder *dc, uint64_t *out, bool *is_definite)
{
CIRCE_CBOR_ASSERT (dc->cursor - dc->buf_start + 1 <= dc->buf_len);
*out = *(dc->cursor) & 0b11111;
++dc->cursor;
switch (*out)
{
case 24:
CIRCE_CBOR_ASSERT (dc->cursor - dc->buf_start + 1 <= dc->buf_len);
*out = *dc->cursor;
++dc->cursor;
break;
case 25:
CIRCE_CBOR_ASSERT (dc->cursor - dc->buf_start + 2 <= dc->buf_len);
*out = 0;
for (unsigned int i = 0; i < 2; ++i)
{
*out <<= 8;
*out |= dc->cursor[i];
}
dc->cursor += 2;
break;
case 26:
CIRCE_CBOR_ASSERT (dc->cursor - dc->buf_start + 4 <= dc->buf_len);
*out = 0;
for (unsigned int i = 0; i < 4; ++i)
{
*out <<= 8;
*out |= dc->cursor[i];
}
dc->cursor += 4;
break;
case 27:
CIRCE_CBOR_ASSERT (dc->cursor - dc->buf_start + 8 <= dc->buf_len);
*out = 0;
for (unsigned int i = 0; i < 8; ++i)
{
*out <<= 8;
*out |= dc->cursor[i];
}
dc->cursor += 8;
break;
case 28:
case 29:
case 30:
CIRCE_CBOR_ASSERT (false);
}
*is_definite = !(*out == 31);
return true;
}
bool
circe_cbor_get_major_type (struct circe_cbor_decoder *dc, enum circe_cbor_major_type *out)
{
CIRCE_CBOR_ASSERT (dc->cursor - dc->buf_start < dc->buf_len);
*out = (enum circe_cbor_major_type) (*dc->cursor >> 5);
return true;
}
bool
circe_cbor_get_simple_type (struct circe_cbor_decoder *dc, enum circe_cbor_simple_type *out)
{
CIRCE_CBOR_ASSERT (dc->cursor - dc->buf_start < dc->buf_len);
CIRCE_CBOR_ASSERT ((*dc->cursor & 0b11111) != 24);
*out = (enum circe_cbor_simple_type) (*dc->cursor & 0b11111);
return true;
}
bool
circe_cbor_extract_length (struct circe_cbor_decoder *dc, uint64_t *out, bool *is_definite)
{
CIRCE_CBOR_ASSERT (circe_cbor_get_argument (dc, out, is_definite));
return true;
}
bool
circe_cbor_skip (struct circe_cbor_decoder *dc, uint64_t max_depth)
{
if (max_depth == 0)
{
return false;
}
enum circe_cbor_major_type type;
CIRCE_CBOR_ASSERT (circe_cbor_get_major_type (dc, &type));
uint64_t num_throwaway;
struct circe_cbor_buffer buf_throwaway;
uint64_t len;
bool is_definite;
enum circe_cbor_simple_type st;
switch (type)
{
case CIRCE_CBOR_MAJOR_UNSIGNED:
CIRCE_CBOR_ASSERT (circe_cbor_extract_unsigned (dc, &num_throwaway));
break;
case CIRCE_CBOR_MAJOR_NEGATIVE:
CIRCE_CBOR_ASSERT (circe_cbor_extract_negative (dc, &num_throwaway));
break;
case CIRCE_CBOR_MAJOR_BYTESTR:
CIRCE_CBOR_ASSERT (circe_cbor_extract_bytestr (dc, &buf_throwaway));
break;
case CIRCE_CBOR_MAJOR_TEXTSTR:
CIRCE_CBOR_ASSERT (circe_cbor_extract_bytestr (dc, &buf_throwaway));
break;
case CIRCE_CBOR_MAJOR_ARRAY:
CIRCE_CBOR_ASSERT (circe_cbor_extract_length (dc, &len, &is_definite));
if (!is_definite)
{
while (true)
{
CIRCE_CBOR_ASSERT (circe_cbor_get_major_type (dc, &type));
if (type == CIRCE_CBOR_MAJOR_SIMPLE)
{
enum circe_cbor_simple_type st;
CIRCE_CBOR_ASSERT (circe_cbor_get_simple_type (dc, &st));
if (st == CIRCE_CBOR_SIMPLE_BREAK)
{
break;
}
}
circe_cbor_skip (dc, max_depth - 1);
}
}
else
{
for (uint64_t i = 0; i < len; ++i)
{
circe_cbor_skip (dc, max_depth - 1);
}
}
break;
case CIRCE_CBOR_MAJOR_MAPPING:
CIRCE_CBOR_ASSERT (circe_cbor_extract_length (dc, &len, &is_definite));
if (!is_definite)
{
while (true)
{
CIRCE_CBOR_ASSERT (circe_cbor_get_major_type (dc, &type));
if (type == CIRCE_CBOR_MAJOR_SIMPLE)
{
CIRCE_CBOR_ASSERT (circe_cbor_get_simple_type (dc, &st));
if (st == CIRCE_CBOR_SIMPLE_BREAK)
{
break;
}
}
circe_cbor_skip (dc, max_depth - 1);
circe_cbor_skip (dc, max_depth - 1);
}
}
else
{
for (uint64_t i = 0; i < len; ++i)
{
circe_cbor_skip (dc, max_depth - 1);
circe_cbor_skip (dc, max_depth - 1);
}
}
break;
case CIRCE_CBOR_MAJOR_TAG:
CIRCE_CBOR_ASSERT (circe_cbor_extract_tag (dc, &num_throwaway));
circe_cbor_skip (dc, max_depth - 1);
break;
case CIRCE_CBOR_MAJOR_SIMPLE:
CIRCE_CBOR_ASSERT (circe_cbor_get_simple_type (dc, &st));
CIRCE_CBOR_ASSERT (dc->cursor - dc->buf_start + 1 <= dc->buf_len);
++dc->cursor;
if (st == CIRCE_CBOR_SIMPLE_SINGLE)
{
CIRCE_CBOR_ASSERT (dc->cursor - dc->buf_start + 4 <= dc->buf_len);
dc->cursor += 4;
}
else if (st == CIRCE_CBOR_SIMPLE_DOUBLE)
{
CIRCE_CBOR_ASSERT (dc->cursor - dc->buf_start + 8 <= dc->buf_len);
dc->cursor += 8;
}
}
return true;
}
bool
circe_cbor_extract_unsigned (struct circe_cbor_decoder *dc, uint64_t *out)
{
bool _;
CIRCE_CBOR_ASSERT (circe_cbor_get_argument (dc, out, &_));
return true;
}
bool
circe_cbor_extract_negative (struct circe_cbor_decoder *dc, uint64_t *magnitude_out)
{
bool _;
CIRCE_CBOR_ASSERT (circe_cbor_get_argument (dc, magnitude_out, &_));
return true;
}
bool
circe_cbor_extract_bytestr (struct circe_cbor_decoder *dc, struct circe_cbor_buffer *out)
{
bool is_definite;
uint64_t len;
CIRCE_CBOR_ASSERT (circe_cbor_get_argument (dc, &len, &is_definite));
if (is_definite)
{
CIRCE_CBOR_ASSERT (dc->cursor - dc->buf_start + len <= dc->buf_len);
*out = (struct circe_cbor_buffer){
.buf_start = dc->cursor,
.buf_len = len,
};
dc->cursor += len;
}
else
{
uint8_t *start = dc->cursor;
while (dc->cursor - dc->buf_start < dc->buf_len && *dc->cursor != 0xFF)
{
++dc->cursor;
}
CIRCE_CBOR_ASSERT (*dc->cursor == 0xFF);
++dc->cursor;
*out = (struct circe_cbor_buffer){
.buf_start = start,
.buf_len = dc->cursor - start,
};
}
return true;
}
bool
circe_cbor_extract_textstr (struct circe_cbor_decoder *dc, struct circe_cbor_buffer *out)
{
return circe_cbor_extract_bytestr (dc, out);
}
bool
circe_cbor_extract_float (struct circe_cbor_decoder *dc, float *out)
{
uint32_t raw = 0;
CIRCE_CBOR_ASSERT (dc->cursor - dc->buf_start + 4 <= dc->buf_len);
for (unsigned int i = 4; i > 0; --i)
{
// TODO: adapt for non-little-endian
raw <<= 8;
raw |= *(dc->cursor + i - 1);
}
*out = *((float *)&raw);
return true;
}
bool
circe_cbor_extract_double (struct circe_cbor_decoder *dc, double *out)
{
uint64_t raw = 0;
CIRCE_CBOR_ASSERT (dc->cursor - dc->buf_start + 4 <= dc->buf_len);
for (unsigned int i = 8; i > 0; --i)
{
// TODO: adapt for non-little-endian
raw <<= 8;
raw |= *(dc->cursor + i - 1);
}
*out = *((double *)&raw);
return true;
}
bool
circe_cbor_extract_tag (struct circe_cbor_decoder *dc, uint64_t *out)
{
bool _;
CIRCE_CBOR_ASSERT (circe_cbor_get_argument (dc, out, &_));
return true;
}
/* ENCODING FUNCTIONS */
bool
circe_cbor_emit_with_arg (struct circe_cbor_encoder *ec, enum circe_cbor_major_type t, uint64_t arg)
{
unsigned int needed = 1;
if (arg >= 24)
{
++needed;
}
if (arg >= UINT8_MAX)
{
++needed;
}
if (arg >= UINT16_MAX)
{
needed += 2;
}
if (arg >= UINT32_MAX)
{
needed += 4;
}
CIRCE_CBOR_ASSERT (ec->cursor - ec->buf_start + needed <= ec->buf_len);
*ec->cursor = (uint8_t)t << 5;
switch (needed)
{
case 1:
*ec->cursor |= (uint8_t)arg;
break;
case 2:
*ec->cursor |= 24;
*(ec->cursor + 1) = (uint8_t)arg;
break;
case 3:
*ec->cursor |= 25;
for (unsigned int i = 0; i < 2; ++i)
{
*(ec->cursor + 1 + i) = (uint8_t)(arg & 0xff);
arg >>= 8;
}
break;
case 5:
*ec->cursor |= 26;
for (unsigned int i = 0; i < 4; ++i)
{
*(ec->cursor + 1 + i) = (uint8_t)(arg & 0xff);
arg >>= 8;
}
break;
case 9:
*ec->cursor |= 27;
for (unsigned int i = 0; i < 8; ++i)
{
*(ec->cursor + 1 + i) = (uint8_t)(arg & 0xff);
arg >>= 8;
}
break;
}
ec->cursor += needed;
return true;
}
bool
circe_cbor_emit_unsigned (struct circe_cbor_encoder *ec, uint64_t n)
{
CIRCE_CBOR_ASSERT (circe_cbor_emit_with_arg (ec, CIRCE_CBOR_MAJOR_UNSIGNED, n));
return true;
}
bool
circe_cbor_emit_negative (struct circe_cbor_encoder *ec, uint64_t magnitude)
{
CIRCE_CBOR_ASSERT (circe_cbor_emit_with_arg (ec, CIRCE_CBOR_MAJOR_NEGATIVE, magnitude));
return true;
}
bool
circe_cbor_emit_bytestr (struct circe_cbor_encoder *ec, struct circe_cbor_buffer contents)
{
CIRCE_CBOR_ASSERT (circe_cbor_emit_with_arg (ec, CIRCE_CBOR_MAJOR_BYTESTR, contents.buf_len));
CIRCE_CBOR_ASSERT (ec->cursor - ec->buf_start + contents.buf_len <= ec->buf_len);
for (uint64_t i = 0; i < contents.buf_len; ++i)
{
ec->cursor[i] = contents.buf_start[i];
}
ec->cursor += contents.buf_len;
return true;
}
bool
circe_cbor_emit_textstr (struct circe_cbor_encoder *ec, struct circe_cbor_buffer contents)
{
CIRCE_CBOR_ASSERT (circe_cbor_emit_with_arg (ec, CIRCE_CBOR_MAJOR_TEXTSTR, contents.buf_len));
CIRCE_CBOR_ASSERT (ec->cursor - ec->buf_start + contents.buf_len <= ec->buf_len);
for (uint64_t i = 0; i < contents.buf_len; ++i)
{
ec->cursor[i] = contents.buf_start[i];
}
ec->cursor += contents.buf_len;
return true;
}
bool
circe_cbor_emit_simple (struct circe_cbor_encoder *ec, enum circe_cbor_simple_type t)
{
CIRCE_CBOR_ASSERT (ec->cursor - ec->buf_start + 1 <= ec->buf_len);
*ec->cursor = ((uint8_t)CIRCE_CBOR_MAJOR_SIMPLE << 5) | (uint8_t)t;
++ec->cursor;
return true;
}
bool
circe_cbor_emit_float (struct circe_cbor_encoder *ec, float x)
{
CIRCE_CBOR_ASSERT (ec->cursor - ec->buf_start + 4 <= ec->buf_len);
uint32_t raw = *((uint32_t *)&x);
for (unsigned int i = 0; i < 4; ++i)
{
ec->cursor[i] = (uint8_t)(raw & 0xff);
raw >>= 8;
}
ec->cursor += 4;
return true;
}
bool
circe_cbor_emit_double (struct circe_cbor_encoder *ec, double x)
{
CIRCE_CBOR_ASSERT (ec->cursor - ec->buf_start + 4 <= ec->buf_len);
uint64_t raw = *((uint64_t *)&x);
for (unsigned int i = 0; i < 8; ++i)
{
ec->cursor[i] = (uint8_t)(raw & 0xff);
raw >>= 8;
}
ec->cursor += 4;
return true;
}
bool
circe_cbor_emit_tag (struct circe_cbor_encoder *ec, uint64_t tagnum)
{
CIRCE_CBOR_ASSERT (circe_cbor_emit_with_arg (ec, CIRCE_CBOR_MAJOR_TAG, tagnum));
return true;
}
bool
circe_cbor_emit_mapping_header (struct circe_cbor_encoder *ec, uint64_t len)
{
CIRCE_CBOR_ASSERT (circe_cbor_emit_with_arg (ec, CIRCE_CBOR_MAJOR_MAPPING, len));
return true;
}
bool
circe_cbor_emit_array_header (struct circe_cbor_encoder *ec, uint64_t len)
{
CIRCE_CBOR_ASSERT (circe_cbor_emit_with_arg (ec, CIRCE_CBOR_MAJOR_ARRAY, len));
return true;
}
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