git-svn-id: https://svn.kapsi.fi/jpa/nanopb@947 e3a754e5-d11d-0410-8d38-ebb782a927b9
This commit is contained in:
35
pb.h
35
pb.h
@@ -43,35 +43,28 @@ typedef enum {
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* Field contents types *
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************************/
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/* Standard integer types */
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PB_LTYPE_UINT32 = 0x00,
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PB_LTYPE_INT32 = 0x00,
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PB_LTYPE_SINT32 = 0x01,
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PB_LTYPE_FIXED32 = 0x02,
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PB_LTYPE_SFIXED32 = 0x02,
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PB_LTYPE_UINT64 = 0x03,
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PB_LTYPE_INT64 = 0x03,
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PB_LTYPE_SINT64 = 0x04,
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PB_LTYPE_FIXED64 = 0x05,
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PB_LTYPE_SFIXED64 = 0x05,
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PB_LTYPE_BOOL = 0x06,
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PB_LTYPE_ENUM = 0x07,
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/* Numeric types */
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PB_LTYPE_VARINT = 0x00, /* int32, uint32, int64, uint64, bool, enum */
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PB_LTYPE_SVARINT = 0x01, /* sint32, sint64 */
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PB_LTYPE_FIXED = 0x02, /* fixed32, sfixed32, fixed64, sfixed64, float, double */
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/* Standard float types */
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PB_LTYPE_FLOAT = 0x08,
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PB_LTYPE_DOUBLE = 0x09,
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/* Marker for last packable field type. */
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PB_LTYPE_LAST_PACKABLE = 0x02,
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/* Byte array with pre-allocated buffer.
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* data_size is the length of the allocated PB_BYTES_ARRAY structure. */
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PB_LTYPE_BYTES = 0x0A,
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PB_LTYPE_BYTES = 0x03,
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/* String with pre-allocated buffer.
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* data_size is the maximum length. */
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PB_LTYPE_STRING = 0x0B,
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PB_LTYPE_STRING = 0x04,
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/* Submessage
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* submsg_fields is pointer to field descriptions */
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PB_LTYPE_SUBMESSAGE = 0x0C,
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PB_LTYPE_SUBMESSAGE = 0x05,
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/* Number of declared LTYPES */
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PB_LTYPES_COUNT = 6,
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/******************
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* Modifier flags *
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@@ -108,8 +101,8 @@ typedef struct _pb_field_t pb_field_t;
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struct _pb_field_t {
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uint8_t tag;
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pb_type_t type;
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uint8_t data_offset; /* Offset of actual data or array start */
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uint8_t size_offset; /* Offset of array size or has-boolean */
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uint8_t data_offset; /* Offset of field data, relative to previous field. */
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int8_t size_offset; /* Offset of array size or has-boolean, relative to data */
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uint8_t data_size; /* Data size in bytes for a single item */
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uint8_t array_size; /* Maximum number of entries in array */
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129
pb_decode.c
129
pb_decode.c
@@ -7,18 +7,10 @@
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#include "pb_decode.h"
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#include <string.h>
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const pb_decoder_t PB_DECODERS[16] = {
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(pb_decoder_t)&pb_dec_uint32,
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(pb_decoder_t)&pb_dec_sint32,
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(pb_decoder_t)&pb_dec_fixed32,
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(pb_decoder_t)&pb_dec_uint64,
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(pb_decoder_t)&pb_dec_sint64,
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(pb_decoder_t)&pb_dec_fixed64,
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(pb_decoder_t)&pb_dec_bool,
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(pb_decoder_t)&pb_dec_enum,
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(pb_decoder_t)&pb_dec_float,
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(pb_decoder_t)&pb_dec_double,
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const pb_decoder_t PB_DECODERS[PB_LTYPES_COUNT] = {
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(pb_decoder_t)&pb_dec_varint,
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(pb_decoder_t)&pb_dec_svarint,
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(pb_decoder_t)&pb_dec_fixed,
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(pb_decoder_t)&pb_dec_bytes,
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(pb_decoder_t)&pb_dec_string,
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@@ -67,10 +59,9 @@ pb_istream_t pb_istream_from_buffer(uint8_t *buf, size_t bufsize)
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bool 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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if (!pb_decode_varint64(stream, &temp))
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return false;
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bool status = pb_decode_varint64(stream, &temp);
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*dest = temp;
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return true;
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return status;
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}
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bool pb_decode_varint64(pb_istream_t *stream, uint64_t *dest)
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@@ -197,9 +188,7 @@ bool decode_field(pb_istream_t *stream, int wire_type, const pb_field_t *field,
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case PB_HTYPE_ARRAY:
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if (wire_type == WT_STRING
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&& PB_LTYPE(field->type) != PB_LTYPE_BYTES
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&& PB_LTYPE(field->type) != PB_LTYPE_STRING
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&& PB_LTYPE(field->type) != PB_LTYPE_SUBMESSAGE)
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&& PB_LTYPE(field->type) <= PB_LTYPE_LAST_PACKABLE)
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{
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/* Packed array */
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size_t *size = (size_t*)pSize;
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@@ -242,6 +231,7 @@ bool decode_field(pb_istream_t *stream, int wire_type, const pb_field_t *field,
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if (!pCallback->funcs.decode(&substream, field, pCallback->arg))
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return false;
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}
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return true;
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}
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else
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{
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@@ -280,24 +270,17 @@ bool pb_decode(pb_istream_t *stream, const pb_field_t fields[], void *dest_struc
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if (PB_HTYPE(fields[i].type) == PB_HTYPE_OPTIONAL)
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{
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*(bool*)pSize = false;
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/* Initialize to default value */
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if (fields[i].ptr != NULL)
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memcpy(pData, fields[i].ptr, fields[i].data_size);
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else
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memset(pData, 0, fields[i].data_size);
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}
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else if (PB_HTYPE(fields[i].type) == PB_HTYPE_ARRAY)
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{
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*(size_t*)pSize = 0;
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}
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if (PB_HTYPE(fields[i].type) != PB_HTYPE_ARRAY &&
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PB_HTYPE(fields[i].type) != PB_HTYPE_CALLBACK)
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{
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if (fields[i].ptr != NULL)
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{
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memcpy(pData, fields[i].ptr, fields[i].data_size);
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}
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else
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{
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memset(pData, 0, fields[i].data_size);
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}
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}
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}
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while (stream->bytes_left)
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@@ -343,88 +326,52 @@ bool pb_decode(pb_istream_t *stream, const pb_field_t fields[], void *dest_struc
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/* Field decoders */
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bool pb_dec_uint32(pb_istream_t *stream, const pb_field_t *field, uint32_t *dest)
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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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return pb_decode_varint32(stream, dest);
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}
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bool pb_dec_sint32(pb_istream_t *stream, const pb_field_t *field, int32_t *dest)
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{
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uint32_t *x = (uint32_t*)dest;
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bool status = pb_decode_varint32(stream, x);
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*x = (*x >> 1) ^ -(int32_t)(*x & 1);
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return status;
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}
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bool pb_dec_fixed32(pb_istream_t *stream, const pb_field_t *field, uint32_t *dest)
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{
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uint8_t bytes[4] = {0};
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bool status = pb_read(stream, bytes, 4);
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#ifdef __BIG_ENDIAN__
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uint8_t lebytes[4] = {bytes[3], bytes[2], bytes[1], bytes[0]};
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memcpy(dest, lebytes, 4);
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memcpy(dest, (char*)src + (srcsize - destsize), destsize);
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#else
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memcpy(dest, bytes, 4);
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memcpy(dest, src, destsize);
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#endif
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}
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bool 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_varint64(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 pb_dec_uint64(pb_istream_t *stream, const pb_field_t *field, uint64_t *dest)
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bool pb_dec_svarint(pb_istream_t *stream, const pb_field_t *field, void *dest)
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{
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return pb_decode_varint64(stream, dest);
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}
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bool pb_dec_sint64(pb_istream_t *stream, const pb_field_t *field, int64_t *dest)
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{
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uint64_t *x = (uint64_t*)dest;
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bool status = pb_decode_varint64(stream, x);
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*x = (*x >> 1) ^ -(int64_t)(*x & 1);
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uint64_t temp;
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bool status = pb_decode_varint64(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 pb_dec_fixed64(pb_istream_t *stream, const pb_field_t *field, uint64_t *dest)
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bool pb_dec_fixed(pb_istream_t *stream, const pb_field_t *field, void *dest)
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{
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uint8_t bytes[8] = {0};
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bool status = pb_read(stream, bytes, 8);
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bool status = pb_read(stream, bytes, field->data_size);
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#ifdef __BIG_ENDIAN__
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uint8_t lebytes[8] = {bytes[7], bytes[6], bytes[5], bytes[4],
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bytes[3], bytes[2], bytes[1], bytes[0]};
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memcpy(dest, lebytes, 4);
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endian_copy(dest, lebytes, field->data_size, 8);
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#else
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memcpy(dest, bytes, 4);
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endian_copy(dest, bytes, field->data_size, 8);
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#endif
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return status;
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}
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bool pb_dec_bool(pb_istream_t *stream, const pb_field_t *field, bool *dest)
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{
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uint32_t temp = 0;
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bool status = pb_decode_varint32(stream, &temp);
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*(bool*)dest = !!temp;
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return status;
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}
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bool pb_dec_enum(pb_istream_t *stream, const pb_field_t *field, void *dest)
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{
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/* Enum sizes can vary, copy only data_size amount of bytes. */
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uint32_t temp = 0;
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bool status = pb_decode_varint32(stream, &temp);
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memcpy(dest, &temp, field->data_size);
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return status;
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}
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bool pb_dec_float(pb_istream_t *stream, const pb_field_t *field, float *dest)
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{
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return pb_read(stream, (uint8_t*)dest, sizeof(float));
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}
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bool pb_dec_double(pb_istream_t *stream, const pb_field_t *field, double *dest)
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{
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return pb_read(stream, (uint8_t*)dest, sizeof(double));
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}
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bool pb_dec_bytes(pb_istream_t *stream, const pb_field_t *field, uint8_t *dest)
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{
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pb_bytes_array_t *x = (pb_bytes_array_t*)dest;
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16
pb_decode.h
16
pb_decode.h
@@ -45,17 +45,9 @@ bool pb_skip_string(pb_istream_t *stream);
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* For arrays, these functions are called repeatedly.
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*/
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bool pb_dec_uint32(pb_istream_t *stream, const pb_field_t *field, uint32_t *dest);
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bool pb_dec_sint32(pb_istream_t *stream, const pb_field_t *field, int32_t *dest);
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bool pb_dec_fixed32(pb_istream_t *stream, const pb_field_t *field, uint32_t *dest);
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bool pb_dec_uint64(pb_istream_t *stream, const pb_field_t *field, uint64_t *dest);
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bool pb_dec_sint64(pb_istream_t *stream, const pb_field_t *field, int64_t *dest);
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bool pb_dec_fixed64(pb_istream_t *stream, const pb_field_t *field, uint64_t *dest);
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bool pb_dec_bool(pb_istream_t *stream, const pb_field_t *field, bool *dest);
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bool pb_dec_enum(pb_istream_t *stream, const pb_field_t *field, void *dest);
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bool pb_dec_float(pb_istream_t *stream, const pb_field_t *field, float *dest);
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bool pb_dec_double(pb_istream_t *stream, const pb_field_t *field, double *dest);
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bool pb_dec_varint(pb_istream_t *stream, const pb_field_t *field, void *dest);
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bool pb_dec_svarint(pb_istream_t *stream, const pb_field_t *field, void *dest);
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bool pb_dec_fixed(pb_istream_t *stream, const pb_field_t *field, void *dest);
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bool pb_dec_bytes(pb_istream_t *stream, const pb_field_t *field, uint8_t *dest);
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bool pb_dec_string(pb_istream_t *stream, const pb_field_t *field, uint8_t *dest);
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@@ -66,6 +58,6 @@ typedef bool (*pb_decoder_t)(pb_istream_t *stream, const pb_field_t *field, void
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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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const pb_decoder_t PB_DECODERS[16];
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const pb_decoder_t PB_DECODERS[PB_LTYPES_COUNT];
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#endif
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@@ -36,7 +36,7 @@ const pb_field_t Person_PhoneNumber_fields[] = {
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offsetof(Person_PhoneNumber, number), 0,
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membersize(Person_PhoneNumber, number), 0, 0},
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{2, PB_HTYPE_OPTIONAL | PB_LTYPE_ENUM,
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{2, PB_HTYPE_OPTIONAL | PB_LTYPE_VARINT,
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offsetof(Person_PhoneNumber, type),
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offsetof(Person_PhoneNumber, has_type),
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membersize(Person_PhoneNumber, type), 0,
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@@ -50,7 +50,7 @@ const pb_field_t Person_fields[] = {
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offsetof(Person, name), 0,
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membersize(Person, name), 0, 0},
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{2, PB_HTYPE_REQUIRED | PB_LTYPE_INT32,
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{2, PB_HTYPE_REQUIRED | PB_LTYPE_VARINT,
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offsetof(Person, id), 0,
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membersize(Person, id), 0, 0},
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