588 lines
16 KiB
C
588 lines
16 KiB
C
/* pb_decode.c -- decode a protobuf using minimal resources
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*
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* 2011 Petteri Aimonen <jpa@kapsi.fi>
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*/
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#ifdef __GNUC__
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/* Verify that we remember to check all return values for proper error propagation */
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#define checkreturn __attribute__((warn_unused_result))
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#else
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#define checkreturn
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#endif
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#include "pb.h"
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#include "pb_decode.h"
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#include <string.h>
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typedef bool (*pb_decoder_t)(pb_istream_t *stream, const pb_field_t *field, void *dest) checkreturn;
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/* --- Function pointers to field decoders ---
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* Order in the array must match pb_action_t LTYPE numbering.
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*/
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static const pb_decoder_t PB_DECODERS[PB_LTYPES_COUNT] = {
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&pb_dec_varint,
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&pb_dec_svarint,
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&pb_dec_fixed32,
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&pb_dec_fixed64,
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&pb_dec_bytes,
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&pb_dec_string,
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&pb_dec_submessage
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};
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/**************
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* pb_istream *
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**************/
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bool checkreturn pb_read(pb_istream_t *stream, uint8_t *buf, size_t count)
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{
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if (stream->bytes_left < count)
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return false;
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if (!stream->callback(stream, buf, count))
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return false;
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stream->bytes_left -= count;
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return true;
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}
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static bool checkreturn buf_read(pb_istream_t *stream, uint8_t *buf, size_t count)
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{
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uint8_t *source = (uint8_t*)stream->state;
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if (buf != NULL)
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memcpy(buf, source, count);
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stream->state = source + count;
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return true;
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}
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pb_istream_t pb_istream_from_buffer(uint8_t *buf, size_t bufsize)
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{
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pb_istream_t stream;
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stream.callback = &buf_read;
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stream.state = buf;
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stream.bytes_left = bufsize;
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return stream;
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}
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/********************
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* Helper functions *
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********************/
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static bool checkreturn pb_decode_varint32(pb_istream_t *stream, uint32_t *dest)
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{
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uint64_t temp;
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bool status = pb_decode_varint(stream, &temp);
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*dest = (uint32_t)temp;
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return status;
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}
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bool checkreturn pb_decode_varint(pb_istream_t *stream, uint64_t *dest)
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{
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uint8_t byte;
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uint8_t bitpos = 0;
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*dest = 0;
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while (bitpos < 64 && pb_read(stream, &byte, 1))
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{
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*dest |= (uint64_t)(byte & 0x7F) << bitpos;
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bitpos += 7;
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if (!(byte & 0x80))
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return true;
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}
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return false;
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}
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bool checkreturn pb_skip_varint(pb_istream_t *stream)
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{
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uint8_t byte;
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do
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{
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if (!pb_read(stream, &byte, 1))
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return false;
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} while (byte & 0x80);
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return true;
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}
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bool checkreturn pb_skip_string(pb_istream_t *stream)
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{
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uint32_t length;
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if (!pb_decode_varint32(stream, &length))
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return false;
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return pb_read(stream, NULL, length);
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}
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bool checkreturn pb_decode_tag(pb_istream_t *stream, pb_wire_type_t *wire_type, uint32_t *tag, bool *eof)
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{
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uint32_t temp;
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*eof = false;
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*wire_type = 0;
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*tag = 0;
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if (!pb_decode_varint32(stream, &temp))
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{
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if (stream->bytes_left == 0)
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*eof = true;
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return false;
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}
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if (temp == 0)
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{
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*eof = true; /* Special feature: allow 0-terminated messages. */
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return false;
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}
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*tag = temp >> 3;
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*wire_type = (pb_wire_type_t)(temp & 7);
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return true;
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}
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bool checkreturn pb_skip_field(pb_istream_t *stream, pb_wire_type_t wire_type)
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{
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switch (wire_type)
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{
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case PB_WT_VARINT: return pb_skip_varint(stream);
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case PB_WT_64BIT: return pb_read(stream, NULL, 8);
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case PB_WT_STRING: return pb_skip_string(stream);
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case PB_WT_32BIT: return pb_read(stream, NULL, 4);
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default: return false;
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}
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}
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/* Read a raw value to buffer, for the purpose of passing it to callback as
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* a substream. Size is maximum size on call, and actual size on return.
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*/
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static bool checkreturn read_raw_value(pb_istream_t *stream, pb_wire_type_t wire_type, uint8_t *buf, size_t *size)
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{
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size_t max_size = *size;
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switch (wire_type)
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{
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case PB_WT_VARINT:
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*size = 0;
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do
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{
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(*size)++;
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if (*size > max_size) return false;
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if (!pb_read(stream, buf, 1)) return false;
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} while (*buf++ & 0x80);
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return true;
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case PB_WT_64BIT:
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*size = 8;
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return pb_read(stream, buf, 8);
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case PB_WT_32BIT:
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*size = 4;
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return pb_read(stream, buf, 4);
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default: return false;
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}
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}
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/* Decode string length from stream and return a substream with limited length.
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* Before disposing the substream, remember to copy the substream->state back
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* to stream->state.
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*/
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static bool checkreturn make_string_substream(pb_istream_t *stream, pb_istream_t *substream)
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{
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uint32_t size;
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if (!pb_decode_varint32(stream, &size))
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return false;
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*substream = *stream;
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if (substream->bytes_left < size)
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return false;
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substream->bytes_left = size;
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stream->bytes_left -= size;
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return true;
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}
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/* Iterator for pb_field_t list */
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typedef struct {
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const pb_field_t *start; /* Start of the pb_field_t array */
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const pb_field_t *current; /* Current position of the iterator */
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int field_index; /* Zero-based index of the field. */
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int required_field_index; /* Zero-based index that counts only the required fields */
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void *dest_struct; /* Pointer to the destination structure to decode to */
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void *pData; /* Pointer where to store current field value */
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void *pSize; /* Pointer where to store the size of current array field */
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} pb_field_iterator_t;
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static void pb_field_init(pb_field_iterator_t *iter, const pb_field_t *fields, void *dest_struct)
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{
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iter->start = iter->current = fields;
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iter->field_index = 0;
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iter->required_field_index = 0;
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iter->pData = (char*)dest_struct + iter->current->data_offset;
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iter->pSize = (char*)iter->pData + iter->current->size_offset;
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iter->dest_struct = dest_struct;
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}
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static bool pb_field_next(pb_field_iterator_t *iter)
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{
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bool notwrapped = true;
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size_t prev_size = iter->current->data_size;
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if (PB_HTYPE(iter->current->type) == PB_HTYPE_ARRAY)
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prev_size *= iter->current->array_size;
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if (PB_HTYPE(iter->current->type) == PB_HTYPE_REQUIRED)
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iter->required_field_index++;
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iter->current++;
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iter->field_index++;
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if (iter->current->tag == 0)
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{
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iter->current = iter->start;
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iter->field_index = 0;
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iter->required_field_index = 0;
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iter->pData = iter->dest_struct;
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prev_size = 0;
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notwrapped = false;
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}
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iter->pData = (char*)iter->pData + prev_size + iter->current->data_offset;
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iter->pSize = (char*)iter->pData + iter->current->size_offset;
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return notwrapped;
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}
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static bool checkreturn pb_field_find(pb_field_iterator_t *iter, int tag)
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{
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int start = iter->field_index;
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do {
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if (iter->current->tag == tag)
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return true;
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pb_field_next(iter);
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} while (iter->field_index != start);
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return false;
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}
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/*************************
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* Decode a single field *
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*************************/
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static bool checkreturn decode_field(pb_istream_t *stream, pb_wire_type_t wire_type, pb_field_iterator_t *iter)
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{
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pb_decoder_t func = PB_DECODERS[PB_LTYPE(iter->current->type)];
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switch (PB_HTYPE(iter->current->type))
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{
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case PB_HTYPE_REQUIRED:
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return func(stream, iter->current, iter->pData);
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case PB_HTYPE_OPTIONAL:
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*(bool*)iter->pSize = true;
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return func(stream, iter->current, iter->pData);
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case PB_HTYPE_ARRAY:
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if (wire_type == PB_WT_STRING
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&& PB_LTYPE(iter->current->type) <= PB_LTYPE_LAST_PACKABLE)
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{
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/* Packed array */
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size_t *size = (size_t*)iter->pSize;
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pb_istream_t substream;
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if (!make_string_substream(stream, &substream))
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return false;
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while (substream.bytes_left && *size < iter->current->array_size)
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{
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void *pItem = (uint8_t*)iter->pData + iter->current->data_size * (*size);
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if (!func(&substream, iter->current, pItem))
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return false;
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(*size)++;
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}
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return (substream.bytes_left == 0);
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}
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else
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{
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/* Repeated field */
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size_t *size = (size_t*)iter->pSize;
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void *pItem = (uint8_t*)iter->pData + iter->current->data_size * (*size);
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if (*size >= iter->current->array_size)
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return false;
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(*size)++;
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return func(stream, iter->current, pItem);
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}
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case PB_HTYPE_CALLBACK:
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{
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pb_callback_t *pCallback = (pb_callback_t*)iter->pData;
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if (pCallback->funcs.decode == NULL)
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return pb_skip_field(stream, wire_type);
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if (wire_type == PB_WT_STRING)
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{
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pb_istream_t substream;
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if (!make_string_substream(stream, &substream))
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return false;
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while (substream.bytes_left)
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{
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if (!pCallback->funcs.decode(&substream, iter->current, pCallback->arg))
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return false;
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}
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stream->state = substream.state;
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return true;
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}
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else
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{
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/* Copy the single scalar value to stack.
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* This is required so that we can limit the stream length,
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* which in turn allows to use same callback for packed and
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* not-packed fields. */
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pb_istream_t substream;
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uint8_t buffer[10];
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size_t size = sizeof(buffer);
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if (!read_raw_value(stream, wire_type, buffer, &size))
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return false;
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substream = pb_istream_from_buffer(buffer, size);
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return pCallback->funcs.decode(&substream, iter->current, pCallback->arg);
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}
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}
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default:
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return false;
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}
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}
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/* Initialize message fields to default values, recursively */
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static void pb_message_set_to_defaults(const pb_field_t fields[], void *dest_struct)
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{
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pb_field_iterator_t iter;
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pb_field_init(&iter, fields, dest_struct);
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/* Initialize size/has fields and apply default values */
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do
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{
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if (iter.current->tag == 0)
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continue;
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/* Initialize the size field for optional/repeated fields to 0. */
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if (PB_HTYPE(iter.current->type) == PB_HTYPE_OPTIONAL)
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{
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*(bool*)iter.pSize = false;
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}
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else if (PB_HTYPE(iter.current->type) == PB_HTYPE_ARRAY)
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{
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*(size_t*)iter.pSize = 0;
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continue; /* Array is empty, no need to initialize contents */
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}
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/* Initialize field contents to default value */
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if (PB_HTYPE(iter.current->type) == PB_HTYPE_CALLBACK)
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{
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continue; /* Don't overwrite callback */
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}
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else if (PB_LTYPE(iter.current->type) == PB_LTYPE_SUBMESSAGE)
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{
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pb_message_set_to_defaults(iter.current->ptr, iter.pData);
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}
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else if (iter.current->ptr != NULL)
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{
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memcpy(iter.pData, iter.current->ptr, iter.current->data_size);
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}
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else
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{
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memset(iter.pData, 0, iter.current->data_size);
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}
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} while (pb_field_next(&iter));
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}
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/*********************
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* Decode all fields *
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*********************/
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bool checkreturn pb_decode(pb_istream_t *stream, const pb_field_t fields[], void *dest_struct)
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{
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uint8_t fields_seen[(PB_MAX_REQUIRED_FIELDS + 7) / 8] = {0}; /* Used to check for required fields */
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pb_field_iterator_t iter;
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pb_message_set_to_defaults(fields, dest_struct);
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pb_field_init(&iter, fields, dest_struct);
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while (stream->bytes_left)
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{
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uint32_t tag;
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pb_wire_type_t wire_type;
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bool eof;
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if (!pb_decode_tag(stream, &wire_type, &tag, &eof))
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{
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if (eof)
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break;
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else
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return false;
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}
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if (!pb_field_find(&iter, tag))
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{
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/* No match found, skip data */
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if (!pb_skip_field(stream, wire_type))
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return false;
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continue;
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}
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if (PB_HTYPE(iter.current->type) == PB_HTYPE_REQUIRED
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&& iter.required_field_index < PB_MAX_REQUIRED_FIELDS)
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{
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fields_seen[iter.required_field_index >> 3] |= 1 << (iter.required_field_index & 7);
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}
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if (!decode_field(stream, wire_type, &iter))
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return false;
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}
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/* Check that all required fields were present. */
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pb_field_init(&iter, fields, dest_struct);
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do {
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if (PB_HTYPE(iter.current->type) == PB_HTYPE_REQUIRED &&
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iter.required_field_index < PB_MAX_REQUIRED_FIELDS &&
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!(fields_seen[iter.required_field_index >> 3] & (1 << (iter.required_field_index & 7))))
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{
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return false;
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}
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} while (pb_field_next(&iter));
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return true;
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}
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/* Field decoders */
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/* Copy destsize bytes from src so that values are casted properly.
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* On little endian machine, copy first n bytes of src
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* On big endian machine, copy last n bytes of src
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* srcsize must always be larger than destsize
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*/
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static void endian_copy(void *dest, void *src, size_t destsize, size_t srcsize)
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{
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#ifdef __BIG_ENDIAN__
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memcpy(dest, (char*)src + (srcsize - destsize), destsize);
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#else
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UNUSED(srcsize);
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memcpy(dest, src, destsize);
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#endif
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}
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bool checkreturn pb_dec_varint(pb_istream_t *stream, const pb_field_t *field, void *dest)
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{
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uint64_t temp;
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bool status = pb_decode_varint(stream, &temp);
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endian_copy(dest, &temp, field->data_size, sizeof(temp));
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return status;
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}
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bool checkreturn pb_dec_svarint(pb_istream_t *stream, const pb_field_t *field, void *dest)
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{
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uint64_t temp;
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bool status = pb_decode_varint(stream, &temp);
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temp = (temp >> 1) ^ -(int64_t)(temp & 1);
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endian_copy(dest, &temp, field->data_size, sizeof(temp));
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return status;
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}
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bool checkreturn pb_dec_fixed32(pb_istream_t *stream, const pb_field_t *field, void *dest)
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{
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#ifdef __BIG_ENDIAN__
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uint8_t bytes[4] = {0};
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bool status = pb_read(stream, bytes, 4);
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if (status) {
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uint8_t *d = (uint8_t*)dest;
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d[0] = bytes[3];
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d[1] = bytes[2];
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d[2] = bytes[1];
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d[3] = bytes[0];
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}
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return status;
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#else
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UNUSED(field);
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return pb_read(stream, (uint8_t*)dest, 4);
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#endif
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}
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bool checkreturn pb_dec_fixed64(pb_istream_t *stream, const pb_field_t *field, void *dest)
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{
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#ifdef __BIG_ENDIAN__
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uint8_t bytes[8] = {0};
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bool status = pb_read(stream, bytes, 8);
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if (status) {
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uint8_t *d = (uint8_t*)dest;
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d[0] = bytes[7];
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d[1] = bytes[6];
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d[2] = bytes[5];
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d[3] = bytes[4];
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d[4] = bytes[3];
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d[5] = bytes[2];
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d[6] = bytes[1];
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d[7] = bytes[0];
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}
|
|
return status;
|
|
#else
|
|
UNUSED(field);
|
|
return pb_read(stream, (uint8_t*)dest, 8);
|
|
#endif
|
|
}
|
|
|
|
bool checkreturn pb_dec_bytes(pb_istream_t *stream, const pb_field_t *field, void *dest)
|
|
{
|
|
pb_bytes_array_t *x = (pb_bytes_array_t*)dest;
|
|
|
|
uint32_t temp;
|
|
if (!pb_decode_varint32(stream, &temp))
|
|
return false;
|
|
x->size = temp;
|
|
|
|
/* Check length, noting the space taken by the size_t header. */
|
|
if (x->size > field->data_size - offsetof(pb_bytes_array_t, bytes))
|
|
return false;
|
|
|
|
return pb_read(stream, x->bytes, x->size);
|
|
}
|
|
|
|
bool checkreturn pb_dec_string(pb_istream_t *stream, const pb_field_t *field, void *dest)
|
|
{
|
|
uint32_t size;
|
|
bool status;
|
|
if (!pb_decode_varint32(stream, &size))
|
|
return false;
|
|
|
|
/* Check length, noting the null terminator */
|
|
if (size + 1 > field->data_size)
|
|
return false;
|
|
|
|
status = pb_read(stream, (uint8_t*)dest, size);
|
|
*((uint8_t*)dest + size) = 0;
|
|
return status;
|
|
}
|
|
|
|
bool checkreturn pb_dec_submessage(pb_istream_t *stream, const pb_field_t *field, void *dest)
|
|
{
|
|
bool status;
|
|
pb_istream_t substream;
|
|
|
|
if (!make_string_substream(stream, &substream))
|
|
return false;
|
|
|
|
if (field->ptr == NULL)
|
|
return false;
|
|
|
|
status = pb_decode(&substream, (pb_field_t*)field->ptr, dest);
|
|
stream->state = substream.state;
|
|
return status;
|
|
}
|