Barretenberg
The ZK-SNARK library at the core of Aztec
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mega_circuit_builder.hpp
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1// === AUDIT STATUS ===
2// internal: { status: not started, auditors: [], date: YYYY-MM-DD }
3// external_1: { status: not started, auditors: [], date: YYYY-MM-DD }
4// external_2: { status: not started, auditors: [], date: YYYY-MM-DD }
5// =====================
6
7#pragma once
8#include <sstream>
9#include <utility>
10
14#include "databus.hpp"
16
17namespace bb {
18
19template <typename FF> class MegaCircuitBuilder_ : public UltraCircuitBuilder_<MegaExecutionTraceBlocks> {
20 private:
21 DataBus databus; // Container for public calldata/returndata
22
23 public:
25
26 static constexpr size_t DEFAULT_NON_NATIVE_FIELD_LIMB_BITS =
28
29 // Stores record of ecc operations and performs corresponding native operations internally
31
32 // Indices for constant variables corresponding to ECCOpQueue op codes
33 uint32_t null_op_idx;
37
38 // Functions for adding ECC op queue "gates"
40 ecc_op_tuple queue_ecc_mul_accum(const g1::affine_element& point, const FF& scalar, bool in_finalize = false);
41 ecc_op_tuple queue_ecc_eq(bool in_finalize = true);
45
46 private:
47 ecc_op_tuple populate_ecc_op_wires(const UltraOp& ultra_op, bool in_finalize = false);
50 void apply_databus_selectors(BusId bus_idx);
51
52 public:
53 MegaCircuitBuilder_(const size_t size_hint = 0,
55 bool is_write_vk_mode = false)
57 , op_queue(std::move(op_queue_in))
58 {
59 BB_BENCH();
60 // Instantiate the subtable to be populated with goblin ecc ops from this circuit. The merge settings indicate
61 // whether the subtable should be prepended or appended to the existing subtables from prior circuits.
62 op_queue->initialize_new_subtable();
63
64 // Set indices to constants corresponding to Goblin ECC op codes
66 };
67
71
89 const std::vector<FF>& witness_values,
90 const std::vector<uint32_t>& public_inputs,
91 const bool is_write_vk_mode)
93 /*size_hint=*/0, witness_values, public_inputs, is_write_vk_mode)
94 , op_queue(std::move(op_queue_in))
95 {
96 // Instantiate the subtable to be populated with goblin ecc ops from this circuit. The merge settings indicate
97 // whether the subtable should be prepended or appended to the existing subtables from prior circuits.
98 op_queue->initialize_new_subtable();
99
100 // Set indices to constants corresponding to Goblin ECC op codes
102 };
103
110 uint32_t get_ecc_op_idx(const EccOpCode& op_code)
111 {
112 if (op_code.add) {
113 return add_accum_op_idx;
114 }
115 if (op_code.mul) {
116 return mul_accum_op_idx;
117 }
118 if (op_code.eq && op_code.reset) {
119 return equality_op_idx;
120 }
121 if (!op_code.add && !op_code.mul && !op_code.eq && !op_code.reset) {
122 return null_op_idx;
123 }
124
125 throw_or_abort("Invalid op code");
126 return 0;
127 }
128
129 void finalize_circuit(const bool ensure_nonzero);
132
133 size_t get_num_constant_gates() const override { return 0; }
134
139 void add_public_calldata(const uint32_t& in) { return append_to_bus_vector(BusId::CALLDATA, in); }
140
146 void add_public_secondary_calldata(const uint32_t& in)
147 {
149 }
150
155 void add_public_return_data(const uint32_t& in) { return append_to_bus_vector(BusId::RETURNDATA, in); }
156
157 uint32_t read_bus_vector(BusId bus_idx, const uint32_t& read_idx_witness_idx);
158
165 uint32_t read_calldata(const uint32_t& read_idx_witness_idx)
166 {
167 return read_bus_vector(BusId::CALLDATA, read_idx_witness_idx);
168 };
169
176 uint32_t read_secondary_calldata(const uint32_t& read_idx_witness_idx)
177 {
178 return read_bus_vector(BusId::SECONDARY_CALLDATA, read_idx_witness_idx);
179 };
180
187 uint32_t read_return_data(const uint32_t& read_idx_witness_idx)
188 {
189 return read_bus_vector(BusId::RETURNDATA, read_idx_witness_idx);
190 };
191
192 void append_to_bus_vector(const BusId bus_idx, const uint32_t& witness_idx)
193 {
194 databus[static_cast<size_t>(bus_idx)].append(witness_idx);
195 }
196
197 const BusVector& get_calldata() const { return databus[static_cast<size_t>(BusId::CALLDATA)]; }
198 const BusVector& get_secondary_calldata() const { return databus[static_cast<size_t>(BusId::SECONDARY_CALLDATA)]; }
199 const BusVector& get_return_data() const { return databus[static_cast<size_t>(BusId::RETURNDATA)]; }
200
207 std::string hash() const
208 {
209 using serialize::write;
210 std::vector<uint8_t> buffer;
211
212 // Hash each block's complete structure - need to const_cast to call non-const methods
213 auto& blocks_ref = const_cast<MegaExecutionTraceBlocks&>(this->blocks);
214 for (auto& block : blocks_ref.get()) {
215 // Hash all wires; implicitly contains copy constraint information
216 for (const auto& wire : block.wires) {
217 for (const auto& idx : wire) {
218 write(buffer, idx);
219 }
220 }
221
222 // Hash all selectors
223 auto selectors = block.get_selectors();
224 for (auto& selector : selectors) {
225 for (size_t i = 0; i < selector.size(); ++i) {
226 write(buffer, selector[i]);
227 }
228 }
229 }
230
231 // Compute SHA256 hash
232 auto hash_bytes = crypto::sha256(buffer);
233
234 // Convert to hex string
235 std::stringstream ss;
236 ss << hash_bytes;
237 return ss.str();
238 }
239};
240using MegaCircuitBuilder = MegaCircuitBuilder_<bb::fr>;
241} // namespace bb
#define BB_BENCH()
Definition bb_bench.hpp:223
const std::vector< uint32_t > & public_inputs() const
const BusVector & get_calldata() const
void queue_ecc_random_op()
Mechanism for populating two rows with randomness. This "operation" doesn't return a tuple representi...
ecc_op_tuple queue_ecc_add_accum(const g1::affine_element &point)
Add simple point addition operation to the op queue and add corresponding gates.
ecc_op_tuple queue_ecc_mul_accum(const g1::affine_element &point, const FF &scalar, bool in_finalize=false)
Add point mul-then-accumulate operation to the op queue and add corresponding gates.
std::shared_ptr< ECCOpQueue > op_queue
void apply_databus_selectors(BusId bus_idx)
uint32_t read_secondary_calldata(const uint32_t &read_idx_witness_idx)
Read from secondary_calldata and create a corresponding databus read gate.
void add_mega_gates_to_ensure_all_polys_are_non_zero()
Ensure all polynomials have at least one non-zero coefficient to avoid commiting to the zero-polynomi...
uint32_t get_ecc_op_idx(const EccOpCode &op_code)
Convert op code to the witness index for the corresponding op index in the builder.
void add_ultra_and_mega_gates_to_ensure_all_polys_are_non_zero()
Ensure all polynomials have at least one non-zero coefficient to avoid commiting to the zero-polynomi...
ecc_op_tuple queue_ecc_eq(bool in_finalize=true)
Add point equality operation to the op queue based on the value of the internal accumulator and add c...
void create_databus_read_gate(const databus_lookup_gate_< FF > &in, BusId bus_idx)
Create a databus lookup/read gate.
static constexpr size_t DEFAULT_NON_NATIVE_FIELD_LIMB_BITS
const BusVector & get_secondary_calldata() const
const BusVector & get_return_data() const
ecc_op_tuple queue_ecc_no_op()
Logic for a no-op operation.
MegaCircuitBuilder_(std::shared_ptr< ECCOpQueue > op_queue_in)
void queue_ecc_hiding_op(const curve::BN254::BaseField &Px, const curve::BN254::BaseField &Py)
Add a hiding op with random (possibly non-curve) Px, Py values to the op queue and circuit.
void append_to_bus_vector(const BusId bus_idx, const uint32_t &witness_idx)
size_t get_num_constant_gates() const override
void add_public_secondary_calldata(const uint32_t &in)
Add a witness variable to secondary_calldata.
void add_public_return_data(const uint32_t &in)
Add a witness variable to the public return_data.
void finalize_circuit(const bool ensure_nonzero)
MegaCircuitBuilder_(std::shared_ptr< ECCOpQueue > op_queue_in, const std::vector< FF > &witness_values, const std::vector< uint32_t > &public_inputs, const bool is_write_vk_mode)
Constructor from data generated from ACIR.
uint32_t read_bus_vector(BusId bus_idx, const uint32_t &read_idx_witness_idx)
Read from a databus column.
uint32_t read_return_data(const uint32_t &read_idx_witness_idx)
Read from return_data and create a corresponding databus read gate.
std::string hash() const
Compute a hash of the circuit.
uint32_t read_calldata(const uint32_t &read_idx_witness_idx)
Read from calldata and create a corresponding databus read gate.
ecc_op_tuple populate_ecc_op_wires(const UltraOp &ultra_op, bool in_finalize=false)
Add goblin ecc op gates for a single operation.
void add_public_calldata(const uint32_t &in)
Add a witness variable to the public calldata.
MegaCircuitBuilder_(const size_t size_hint=0, std::shared_ptr< ECCOpQueue > op_queue_in=std::make_shared< ECCOpQueue >(), bool is_write_vk_mode=false)
uint8_t buffer[RANDOM_BUFFER_SIZE]
Definition engine.cpp:34
Sha256Hash sha256(const ByteContainer &input)
SHA-256 hash function (FIPS 180-4)
Definition sha256.cpp:150
Entry point for Barretenberg command-line interface.
Definition api.hpp:5
std::array< BusVector, 3 > DataBus
The DataBus; facilitates storage of public circuit input/output.
Definition databus.hpp:76
void write(std::vector< uint8_t > &buf, Chonk::VerificationKey const &vk)
Definition chonk.hpp:366
MegaCircuitBuilder_< field< Bn254FrParams > > MegaCircuitBuilder
BusId
Definition databus.hpp:77
@ SECONDARY_CALLDATA
void write(auto &buf, const msgpack_concepts::HasMsgPack auto &obj)
Automatically derived write for any object that defines .msgpack() (implicitly defined by MSGPACK_FIE...
STL namespace.
constexpr decltype(auto) get(::tuplet::tuple< T... > &&t) noexcept
Definition tuple.hpp:13
A DataBus column.
Definition databus.hpp:24
Defines the opcodes for ECC operations used in both the Ultra and ECCVM formats. There are three opco...
void throw_or_abort(std::string const &err)