349 lines
12 KiB
Markdown
349 lines
12 KiB
Markdown
# [WIP] SimpleSerialize (SSZ) Spec
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This is the **work in progress** document to describe `simpleserialize`, the
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current selected serialization method for Ethereum 2.0 using the Beacon Chain.
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This document specifies the general information for serializing and
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deserializing objects and data types.
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## ToC
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* [About](#about)
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* [Terminology](#terminology)
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* [Constants](#constants)
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* [Overview](#overview)
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+ [Serialize/Encode](#serializeencode)
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- [uint: 8/16/24/32/64/256](#uint-816243264256)
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- [Address](#address)
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- [Hash](#hash)
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* [Hash32](#hash32)
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* [Hash96](#hash96)
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* [Hash97](#hash97)
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- [Bytes](#bytes)
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- [List/Vectors](#listvectors)
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- [Container (TODO)](#container)
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+ [Deserialize/Decode](#deserializedecode)
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- [uint: 8/16/24/32/64/256](#uint-816243264256-1)
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- [Address](#address-1)
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- [Hash](#hash-1)
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* [Hash32](#hash32-1)
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* [Hash96](#hash96-1)
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* [Hash97](#hash97-1)
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- [Bytes](#bytes-1)
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- [List/Vectors](#listvectors-1)
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- [Container (TODO)](#container-1)
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* [Implementations](#implementations)
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## About
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`SimpleSerialize` was first proposed by Vitalik Buterin as the serialization
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protocol for use in the Ethereum 2.0 Beacon Chain.
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The core feature of `ssz` is the simplicity of the serialization with low
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overhead.
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## Terminology
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| Term | Definition |
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|:-------------|:-----------------------------------------------------------------------------------------------|
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| `big` | Big Endian |
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| `byte_order` | Specifies [endianness:](https://en.wikipedia.org/wiki/Endianness) Big Endian or Little Endian. |
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| `len` | Length/Number of Bytes. |
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| `to_bytes` | Convert to bytes. Should take parameters ``size`` and ``byte_order``. |
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| `from_bytes` | Convert from bytes to object. Should take ``bytes`` and ``byte_order``. |
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| `value` | The value to serialize. |
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| `rawbytes` | Raw serialized bytes. |
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## Constants
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| Constant | Value | Definition |
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|:---------------|:-----:|:--------------------------------------------------------------------------------------|
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| `LENGTH_BYTES` | 4 | Number of bytes used for the length added before a variable-length serialized object. |
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## Overview
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### Serialize/Encode
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#### uint: 8/16/24/32/64/256
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Convert directly to bytes the size of the int. (e.g. ``uint16 = 2 bytes``)
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All integers are serialized as **big endian**.
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| Check to perform | Code |
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|:-----------------------|:----------------------|
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| Size is a byte integer | ``int_size % 8 == 0`` |
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```python
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assert(int_size % 8 == 0)
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buffer_size = int_size / 8
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return value.to_bytes(buffer_size, 'big')
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```
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#### Address
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The address should already come as a hash/byte format. Ensure that length is
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**20**.
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| Check to perform | Code |
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|:-----------------------|:---------------------|
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| Length is correct (20) | ``len(value) == 20`` |
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```python
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assert( len(value) == 20 )
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return value
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```
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#### Hash
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| Hash Type | Usage |
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|:---------:|:------------------------------------------------|
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| `hash32` | Hash size of ``keccak`` or `blake2b[0.. < 32]`. |
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| `hash96` | BLS Public Key Size. |
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| `hash97` | BLS Public Key Size with recovery bit. |
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| Checks to perform | Code |
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|:-----------------------------------|:---------------------|
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| Length is correct (32) if `hash32` | ``len(value) == 32`` |
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| Length is correct (96) if `hash96` | ``len(value) == 96`` |
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| Length is correct (97) if `hash97` | ``len(value) == 97`` |
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**Example all together**
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```python
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if (type(value) == 'hash32'):
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assert(len(value) == 32)
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elif (type(value) == 'hash96'):
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assert(len(value) == 96)
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elif (type(value) == 'hash97'):
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assert(len(value) == 97)
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else:
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raise TypeError('Invalid hash type supplied')
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return value
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```
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##### Hash32
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Ensure 32 byte length and return the bytes.
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```python
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assert(len(value) == 32)
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return value
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```
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##### Hash96
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Ensure 96 byte length and return the bytes.
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```python
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assert(len(value) == 96)
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return value
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```
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##### Hash97
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Ensure 97 byte length and return the bytes.
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```python
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assert(len(value) == 97)
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return value
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```
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#### Bytes
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For general `byte` type:
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1. Get the length/number of bytes; Encode into a `4-byte` integer.
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2. Append the value to the length and return: ``[ length_bytes ] + [
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value_bytes ]``
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| Check to perform | Code |
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|:-------------------------------------|:-----------------------|
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| Length of bytes can fit into 4 bytes | ``len(value) < 2**32`` |
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```python
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assert(len(value) < 2**32)
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byte_length = (len(value)).to_bytes(LENGTH_BYTES, 'big')
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return byte_length + value
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```
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#### List/Vectors
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| Check to perform | Code |
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|:--------------------------------------------|:----------------------------|
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| Length of serialized list fits into 4 bytes | ``len(serialized) < 2**32`` |
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1. Get the number of raw bytes to serialize: it is ``len(list) * sizeof(element)``.
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* Encode that as a `4-byte` **big endian** `uint32`.
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2. Append the elements in a packed manner.
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* *Note on efficiency*: consider using a container that does not need to iterate over all elements to get its length. For example Python lists, C++ vectors or Rust Vec.
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**Example in Python**
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```python
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serialized_list_string = b''
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for item in value:
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serialized_list_string += serialize(item)
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assert(len(serialized_list_string) < 2**32)
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serialized_len = (len(serialized_list_string).to_bytes(LENGTH_BYTES, 'big'))
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return serialized_len + serialized_list_string
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```
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#### Container
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```
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########################################
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TODO
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########################################
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```
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### Deserialize/Decode
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The decoding requires knowledge of the type of the item to be decoded. When
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performing decoding on an entire serialized string, it also requires knowledge
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of the order in which the objects have been serialized.
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Note: Each return will provide ``deserialized_object, new_index`` keeping track
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of the new index.
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At each step, the following checks should be made:
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| Check to perform | Check |
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|:-------------------------|:-----------------------------------------------------------|
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| Ensure sufficient length | ``length(rawbytes) >= current_index + deserialize_length`` |
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#### uint: 8/16/24/32/64/256
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Convert directly from bytes into integer utilising the number of bytes the same
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size as the integer length. (e.g. ``uint16 == 2 bytes``)
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All integers are interpreted as **big endian**.
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```python
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assert(len(rawbytes) >= current_index + int_size)
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byte_length = int_size / 8
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new_index = current_index + int_size
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return int.from_bytes(rawbytes[current_index:current_index+int_size], 'big'), new_index
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```
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#### Address
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Return the 20 bytes.
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```python
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assert(len(rawbytes) >= current_index + 20)
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new_index = current_index + 20
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return rawbytes[current_index:current_index+20], new_index
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```
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#### Hash
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##### Hash32
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Return the 32 bytes.
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```python
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assert(len(rawbytes) >= current_index + 32)
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new_index = current_index + 32
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return rawbytes[current_index:current_index+32], new_index
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```
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##### Hash96
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Return the 96 bytes.
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```python
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assert(len(rawbytes) >= current_index + 96)
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new_index = current_index + 96
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return rawbytes[current_index:current_index+96], new_index
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```
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##### Hash97
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Return the 97 bytes.
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```python
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assert(len(rawbytes) >= current_index + 97)
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new_index = current_index + 97
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return rawbytes[current_index:current_index+97], new_index
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```
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#### Bytes
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Get the length of the bytes, return the bytes.
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| Check to perform | code |
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|:--------------------------------------------------|:-------------------------------------------------|
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| rawbytes has enough left for length | ``len(rawbytes) > current_index + LENGTH_BYTES`` |
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| bytes to return not greater than serialized bytes | ``len(rawbytes) > bytes_end `` |
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```python
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assert(len(rawbytes) > current_index + LENGTH_BYTES)
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bytes_length = int.from_bytes(rawbytes[current_index:current_index + LENGTH_BYTES], 'big')
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bytes_start = current_index + LENGTH_BYTES
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bytes_end = bytes_start + bytes_length
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new_index = bytes_end
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assert(len(rawbytes) >= bytes_end)
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return rawbytes[bytes_start:bytes_end], new_index
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```
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#### List/Vectors
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Deserialize each object in the list.
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1. Get the length of the serialized list.
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2. Loop through deserializing each item in the list until you reach the
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entire length of the list.
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| Check to perform | code |
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|:------------------------------------------|:----------------------------------------------------------------|
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| rawbytes has enough left for length | ``len(rawbytes) > current_index + LENGTH_BYTES`` |
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| list is not greater than serialized bytes | ``len(rawbytes) > current_index + LENGTH_BYTES + total_length`` |
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```python
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assert(len(rawbytes) > current_index + LENGTH_BYTES)
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total_length = int.from_bytes(rawbytes[current_index:current_index + LENGTH_BYTES], 'big')
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new_index = current_index + LENGTH_BYTES + total_length
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assert(len(rawbytes) >= new_index)
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item_index = current_index + LENGTH_BYTES
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deserialized_list = []
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while item_index < new_index:
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object, item_index = deserialize(rawbytes, item_index, item_type)
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deserialized_list.append(object)
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return deserialized_list, new_index
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```
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#### Container
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```
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########################################
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TODO
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########################################
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```
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## Implementations
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| Language | Implementation | Description |
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|:--------:|--------------------------------------------------------------------------------------------------------------------------------------------------------------------|----------------------------------------------------------|
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| Python | [ https://github.com/ethereum/beacon_chain/blob/master/ssz/ssz.py ](https://github.com/ethereum/beacon_chain/blob/master/ssz/ssz.py) | Beacon chain reference implementation written in Python. |
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| Rust | [ https://github.com/sigp/lighthouse/tree/master/ssz ](https://github.com/sigp/lighthouse/tree/master/ssz) | Lighthouse (Rust Ethereum 2.0 Node) maintained SSZ. |
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| Nim | [ https://github.com/status-im/nim-beacon-chain/blob/master/beacon_chain/ssz.nim ](https://github.com/status-im/nim-beacon-chain/blob/master/beacon_chain/ssz.nim) | Nim Implementation maintained SSZ. |
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| Rust | [ https://github.com/paritytech/shasper/tree/master/util/ssz ](https://github.com/paritytech/shasper/tree/master/util/ssz) | Shasper implementation of SSZ maintained by ParityTech. |
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