pub struct GLWE<D: Data> { /* private fields */ }Implementations§
Source§impl GLWE<Vec<u8>>
impl GLWE<Vec<u8>>
Source§impl<DataSelf: DataMut> GLWE<DataSelf>
impl<DataSelf: DataMut> GLWE<DataSelf>
pub fn automorphism<M, A, K, BE: Backend>(
&mut self,
module: &M,
a: &A,
key: &K,
scratch: &mut Scratch<BE>,
)where
M: GLWEAutomorphism<BE>,
A: GLWEToRef + GLWEInfos,
K: GetGaloisElement + GGLWEPreparedToRef<BE> + GGLWEInfos,
Scratch<BE>: ScratchTakeCore<BE>,
pub fn automorphism_add<M, A, K, BE: Backend>(
&mut self,
module: &M,
a: &A,
key: &K,
scratch: &mut Scratch<BE>,
)where
M: GLWEAutomorphism<BE>,
A: GLWEToRef + GLWEInfos,
K: GetGaloisElement + GGLWEPreparedToRef<BE> + GGLWEInfos,
Scratch<BE>: ScratchTakeCore<BE>,
pub fn automorphism_sub<M, A, K, BE: Backend>(
&mut self,
module: &M,
a: &A,
key: &K,
scratch: &mut Scratch<BE>,
)where
M: GLWEAutomorphism<BE>,
A: GLWEToRef + GLWEInfos,
K: GetGaloisElement + GGLWEPreparedToRef<BE> + GGLWEInfos,
Scratch<BE>: ScratchTakeCore<BE>,
pub fn automorphism_sub_negate<M, A, K, BE: Backend>(
&mut self,
module: &M,
a: &A,
key: &K,
scratch: &mut Scratch<BE>,
)where
M: GLWEAutomorphism<BE>,
A: GLWEToRef + GLWEInfos,
K: GetGaloisElement + GGLWEPreparedToRef<BE> + GGLWEInfos,
Scratch<BE>: ScratchTakeCore<BE>,
pub fn automorphism_inplace<M, K, BE: Backend>(
&mut self,
module: &M,
key: &K,
scratch: &mut Scratch<BE>,
)where
M: GLWEAutomorphism<BE>,
K: GetGaloisElement + GGLWEPreparedToRef<BE> + GGLWEInfos,
Scratch<BE>: ScratchTakeCore<BE>,
pub fn automorphism_add_inplace<M, K, BE: Backend>(
&mut self,
module: &M,
key: &K,
scratch: &mut Scratch<BE>,
)where
M: GLWEAutomorphism<BE>,
K: GetGaloisElement + GGLWEPreparedToRef<BE> + GGLWEInfos,
Scratch<BE>: ScratchTakeCore<BE>,
pub fn automorphism_sub_inplace<M, K, BE: Backend>(
&mut self,
module: &M,
key: &K,
scratch: &mut Scratch<BE>,
)where
M: GLWEAutomorphism<BE>,
K: GetGaloisElement + GGLWEPreparedToRef<BE> + GGLWEInfos,
Scratch<BE>: ScratchTakeCore<BE>,
pub fn automorphism_sub_negate_inplace<M, K, BE: Backend>(
&mut self,
module: &M,
key: &K,
scratch: &mut Scratch<BE>,
)where
M: GLWEAutomorphism<BE>,
K: GetGaloisElement + GGLWEPreparedToRef<BE> + GGLWEInfos,
Scratch<BE>: ScratchTakeCore<BE>,
Source§impl GLWE<Vec<u8>>
impl GLWE<Vec<u8>>
Source§impl<D: DataMut> GLWE<D>
impl<D: DataMut> GLWE<D>
pub fn from_lwe<A, K, M, BE: Backend>(
&mut self,
module: &M,
lwe: &A,
ksk: &K,
scratch: &mut Scratch<BE>,
)where
M: GLWEFromLWE<BE>,
A: LWEToRef,
K: GGLWEPreparedToRef<BE> + GGLWEInfos,
Scratch<BE>: ScratchTakeCore<BE>,
Source§impl GLWE<Vec<u8>>
impl GLWE<Vec<u8>>
Sourcepub fn decrypt_tmp_bytes<A, M, BE: Backend>(module: &M, a_infos: &A) -> usizewhere
A: GLWEInfos,
M: GLWEDecrypt<BE>,
pub fn decrypt_tmp_bytes<A, M, BE: Backend>(module: &M, a_infos: &A) -> usizewhere
A: GLWEInfos,
M: GLWEDecrypt<BE>,
Examples found in repository?
examples/encryption.rs (line 63)
21fn main() {
22 // Ring degree
23 let log_n: usize = 10;
24
25 let n: Degree = Degree(1 << log_n);
26
27 // Base-2-k (implicit digit decomposition)
28 let base2k: Base2K = Base2K(14);
29
30 // Ciphertext Torus precision (equivalent to ciphertext modulus)
31 let k_ct: TorusPrecision = TorusPrecision(27);
32
33 // Plaintext Torus precision (equivament to plaintext modulus)
34 let k_pt: TorusPrecision = TorusPrecision(base2k.into());
35
36 // GLWE rank
37 let rank: Rank = Rank(1);
38
39 // Instantiate Module (DFT Tables)
40 let module: Module<BackendImpl> = Module::<BackendImpl>::new(n.0 as u64);
41
42 let glwe_ct_infos: GLWELayout = GLWELayout {
43 n,
44 base2k,
45 k: k_ct,
46 rank,
47 };
48
49 let glwe_pt_infos: GLWEPlaintextLayout = GLWEPlaintextLayout { n, base2k, k: k_pt };
50
51 // Allocates ciphertext & plaintexts
52 let mut ct: GLWE<Vec<u8>> = GLWE::alloc_from_infos(&glwe_ct_infos);
53 let mut pt_want: GLWEPlaintext<Vec<u8>> = GLWEPlaintext::alloc_from_infos(&glwe_pt_infos);
54 let mut pt_have: GLWEPlaintext<Vec<u8>> = GLWEPlaintext::alloc_from_infos(&glwe_pt_infos);
55
56 // CPRNG
57 let mut source_xs: Source = Source::new([0u8; 32]);
58 let mut source_xe: Source = Source::new([1u8; 32]);
59 let mut source_xa: Source = Source::new([2u8; 32]);
60
61 // Scratch space
62 let mut scratch: ScratchOwned<BackendImpl> = ScratchOwned::alloc(
63 GLWE::encrypt_sk_tmp_bytes(&module, &glwe_ct_infos) | GLWE::decrypt_tmp_bytes(&module, &glwe_ct_infos),
64 );
65
66 // Generate secret-key
67 let mut sk: GLWESecret<Vec<u8>> = GLWESecret::alloc_from_infos(&glwe_ct_infos);
68 sk.fill_ternary_prob(0.5, &mut source_xs);
69
70 // Backend-prepared secret
71 let mut sk_prepared: GLWESecretPrepared<Vec<u8>, BackendImpl> = GLWESecretPrepared::alloc(&module, rank);
72 sk_prepared.prepare(&module, &sk);
73
74 // Uniform plaintext
75 module.vec_znx_fill_uniform(base2k.into(), &mut pt_want.data, 0, &mut source_xa);
76
77 // Encryption
78 ct.encrypt_sk(
79 &module,
80 &pt_want,
81 &sk_prepared,
82 &mut source_xa,
83 &mut source_xe,
84 scratch.borrow(),
85 );
86
87 // Decryption
88 ct.decrypt(&module, &mut pt_have, &sk_prepared, scratch.borrow());
89
90 // Diff between pt - Dec(Enc(pt))
91 module.glwe_sub_inplace(&mut pt_want, &pt_have);
92
93 // Ideal vs. actual noise
94 let noise_have: f64 = pt_want.data.stats(base2k.into(), 0).std() * (ct.k().as_u32() as f64).exp2();
95 let noise_want: f64 = SIGMA;
96
97 // Check
98 assert!(noise_have <= noise_want + 0.2);
99}Source§impl<DataSelf: DataRef> GLWE<DataSelf>
impl<DataSelf: DataRef> GLWE<DataSelf>
Sourcepub fn decrypt<P, S, M, BE: Backend>(
&self,
module: &M,
pt: &mut P,
sk: &S,
scratch: &mut Scratch<BE>,
)where
P: GLWEPlaintextToMut,
S: GLWESecretPreparedToRef<BE>,
M: GLWEDecrypt<BE>,
Scratch<BE>: ScratchTakeBasic,
pub fn decrypt<P, S, M, BE: Backend>(
&self,
module: &M,
pt: &mut P,
sk: &S,
scratch: &mut Scratch<BE>,
)where
P: GLWEPlaintextToMut,
S: GLWESecretPreparedToRef<BE>,
M: GLWEDecrypt<BE>,
Scratch<BE>: ScratchTakeBasic,
Examples found in repository?
examples/encryption.rs (line 88)
21fn main() {
22 // Ring degree
23 let log_n: usize = 10;
24
25 let n: Degree = Degree(1 << log_n);
26
27 // Base-2-k (implicit digit decomposition)
28 let base2k: Base2K = Base2K(14);
29
30 // Ciphertext Torus precision (equivalent to ciphertext modulus)
31 let k_ct: TorusPrecision = TorusPrecision(27);
32
33 // Plaintext Torus precision (equivament to plaintext modulus)
34 let k_pt: TorusPrecision = TorusPrecision(base2k.into());
35
36 // GLWE rank
37 let rank: Rank = Rank(1);
38
39 // Instantiate Module (DFT Tables)
40 let module: Module<BackendImpl> = Module::<BackendImpl>::new(n.0 as u64);
41
42 let glwe_ct_infos: GLWELayout = GLWELayout {
43 n,
44 base2k,
45 k: k_ct,
46 rank,
47 };
48
49 let glwe_pt_infos: GLWEPlaintextLayout = GLWEPlaintextLayout { n, base2k, k: k_pt };
50
51 // Allocates ciphertext & plaintexts
52 let mut ct: GLWE<Vec<u8>> = GLWE::alloc_from_infos(&glwe_ct_infos);
53 let mut pt_want: GLWEPlaintext<Vec<u8>> = GLWEPlaintext::alloc_from_infos(&glwe_pt_infos);
54 let mut pt_have: GLWEPlaintext<Vec<u8>> = GLWEPlaintext::alloc_from_infos(&glwe_pt_infos);
55
56 // CPRNG
57 let mut source_xs: Source = Source::new([0u8; 32]);
58 let mut source_xe: Source = Source::new([1u8; 32]);
59 let mut source_xa: Source = Source::new([2u8; 32]);
60
61 // Scratch space
62 let mut scratch: ScratchOwned<BackendImpl> = ScratchOwned::alloc(
63 GLWE::encrypt_sk_tmp_bytes(&module, &glwe_ct_infos) | GLWE::decrypt_tmp_bytes(&module, &glwe_ct_infos),
64 );
65
66 // Generate secret-key
67 let mut sk: GLWESecret<Vec<u8>> = GLWESecret::alloc_from_infos(&glwe_ct_infos);
68 sk.fill_ternary_prob(0.5, &mut source_xs);
69
70 // Backend-prepared secret
71 let mut sk_prepared: GLWESecretPrepared<Vec<u8>, BackendImpl> = GLWESecretPrepared::alloc(&module, rank);
72 sk_prepared.prepare(&module, &sk);
73
74 // Uniform plaintext
75 module.vec_znx_fill_uniform(base2k.into(), &mut pt_want.data, 0, &mut source_xa);
76
77 // Encryption
78 ct.encrypt_sk(
79 &module,
80 &pt_want,
81 &sk_prepared,
82 &mut source_xa,
83 &mut source_xe,
84 scratch.borrow(),
85 );
86
87 // Decryption
88 ct.decrypt(&module, &mut pt_have, &sk_prepared, scratch.borrow());
89
90 // Diff between pt - Dec(Enc(pt))
91 module.glwe_sub_inplace(&mut pt_want, &pt_have);
92
93 // Ideal vs. actual noise
94 let noise_have: f64 = pt_want.data.stats(base2k.into(), 0).std() * (ct.k().as_u32() as f64).exp2();
95 let noise_want: f64 = SIGMA;
96
97 // Check
98 assert!(noise_have <= noise_want + 0.2);
99}Source§impl GLWE<Vec<u8>>
impl GLWE<Vec<u8>>
Sourcepub fn encrypt_sk_tmp_bytes<M, A, BE: Backend>(module: &M, infos: &A) -> usizewhere
A: GLWEInfos,
M: GLWEEncryptSk<BE>,
pub fn encrypt_sk_tmp_bytes<M, A, BE: Backend>(module: &M, infos: &A) -> usizewhere
A: GLWEInfos,
M: GLWEEncryptSk<BE>,
Examples found in repository?
examples/encryption.rs (line 63)
21fn main() {
22 // Ring degree
23 let log_n: usize = 10;
24
25 let n: Degree = Degree(1 << log_n);
26
27 // Base-2-k (implicit digit decomposition)
28 let base2k: Base2K = Base2K(14);
29
30 // Ciphertext Torus precision (equivalent to ciphertext modulus)
31 let k_ct: TorusPrecision = TorusPrecision(27);
32
33 // Plaintext Torus precision (equivament to plaintext modulus)
34 let k_pt: TorusPrecision = TorusPrecision(base2k.into());
35
36 // GLWE rank
37 let rank: Rank = Rank(1);
38
39 // Instantiate Module (DFT Tables)
40 let module: Module<BackendImpl> = Module::<BackendImpl>::new(n.0 as u64);
41
42 let glwe_ct_infos: GLWELayout = GLWELayout {
43 n,
44 base2k,
45 k: k_ct,
46 rank,
47 };
48
49 let glwe_pt_infos: GLWEPlaintextLayout = GLWEPlaintextLayout { n, base2k, k: k_pt };
50
51 // Allocates ciphertext & plaintexts
52 let mut ct: GLWE<Vec<u8>> = GLWE::alloc_from_infos(&glwe_ct_infos);
53 let mut pt_want: GLWEPlaintext<Vec<u8>> = GLWEPlaintext::alloc_from_infos(&glwe_pt_infos);
54 let mut pt_have: GLWEPlaintext<Vec<u8>> = GLWEPlaintext::alloc_from_infos(&glwe_pt_infos);
55
56 // CPRNG
57 let mut source_xs: Source = Source::new([0u8; 32]);
58 let mut source_xe: Source = Source::new([1u8; 32]);
59 let mut source_xa: Source = Source::new([2u8; 32]);
60
61 // Scratch space
62 let mut scratch: ScratchOwned<BackendImpl> = ScratchOwned::alloc(
63 GLWE::encrypt_sk_tmp_bytes(&module, &glwe_ct_infos) | GLWE::decrypt_tmp_bytes(&module, &glwe_ct_infos),
64 );
65
66 // Generate secret-key
67 let mut sk: GLWESecret<Vec<u8>> = GLWESecret::alloc_from_infos(&glwe_ct_infos);
68 sk.fill_ternary_prob(0.5, &mut source_xs);
69
70 // Backend-prepared secret
71 let mut sk_prepared: GLWESecretPrepared<Vec<u8>, BackendImpl> = GLWESecretPrepared::alloc(&module, rank);
72 sk_prepared.prepare(&module, &sk);
73
74 // Uniform plaintext
75 module.vec_znx_fill_uniform(base2k.into(), &mut pt_want.data, 0, &mut source_xa);
76
77 // Encryption
78 ct.encrypt_sk(
79 &module,
80 &pt_want,
81 &sk_prepared,
82 &mut source_xa,
83 &mut source_xe,
84 scratch.borrow(),
85 );
86
87 // Decryption
88 ct.decrypt(&module, &mut pt_have, &sk_prepared, scratch.borrow());
89
90 // Diff between pt - Dec(Enc(pt))
91 module.glwe_sub_inplace(&mut pt_want, &pt_have);
92
93 // Ideal vs. actual noise
94 let noise_have: f64 = pt_want.data.stats(base2k.into(), 0).std() * (ct.k().as_u32() as f64).exp2();
95 let noise_want: f64 = SIGMA;
96
97 // Check
98 assert!(noise_have <= noise_want + 0.2);
99}pub fn encrypt_pk_tmp_bytes<M, A, BE: Backend>(module: &M, infos: &A) -> usizewhere
A: GLWEInfos,
M: GLWEEncryptPk<BE>,
Source§impl<D: DataMut> GLWE<D>
impl<D: DataMut> GLWE<D>
Sourcepub fn encrypt_sk<P, S, M, BE: Backend>(
&mut self,
module: &M,
pt: &P,
sk: &S,
source_xa: &mut Source,
source_xe: &mut Source,
scratch: &mut Scratch<BE>,
)where
P: GLWEPlaintextToRef,
S: GLWESecretPreparedToRef<BE>,
M: GLWEEncryptSk<BE>,
Scratch<BE>: ScratchTakeCore<BE>,
pub fn encrypt_sk<P, S, M, BE: Backend>(
&mut self,
module: &M,
pt: &P,
sk: &S,
source_xa: &mut Source,
source_xe: &mut Source,
scratch: &mut Scratch<BE>,
)where
P: GLWEPlaintextToRef,
S: GLWESecretPreparedToRef<BE>,
M: GLWEEncryptSk<BE>,
Scratch<BE>: ScratchTakeCore<BE>,
Examples found in repository?
examples/encryption.rs (lines 78-85)
21fn main() {
22 // Ring degree
23 let log_n: usize = 10;
24
25 let n: Degree = Degree(1 << log_n);
26
27 // Base-2-k (implicit digit decomposition)
28 let base2k: Base2K = Base2K(14);
29
30 // Ciphertext Torus precision (equivalent to ciphertext modulus)
31 let k_ct: TorusPrecision = TorusPrecision(27);
32
33 // Plaintext Torus precision (equivament to plaintext modulus)
34 let k_pt: TorusPrecision = TorusPrecision(base2k.into());
35
36 // GLWE rank
37 let rank: Rank = Rank(1);
38
39 // Instantiate Module (DFT Tables)
40 let module: Module<BackendImpl> = Module::<BackendImpl>::new(n.0 as u64);
41
42 let glwe_ct_infos: GLWELayout = GLWELayout {
43 n,
44 base2k,
45 k: k_ct,
46 rank,
47 };
48
49 let glwe_pt_infos: GLWEPlaintextLayout = GLWEPlaintextLayout { n, base2k, k: k_pt };
50
51 // Allocates ciphertext & plaintexts
52 let mut ct: GLWE<Vec<u8>> = GLWE::alloc_from_infos(&glwe_ct_infos);
53 let mut pt_want: GLWEPlaintext<Vec<u8>> = GLWEPlaintext::alloc_from_infos(&glwe_pt_infos);
54 let mut pt_have: GLWEPlaintext<Vec<u8>> = GLWEPlaintext::alloc_from_infos(&glwe_pt_infos);
55
56 // CPRNG
57 let mut source_xs: Source = Source::new([0u8; 32]);
58 let mut source_xe: Source = Source::new([1u8; 32]);
59 let mut source_xa: Source = Source::new([2u8; 32]);
60
61 // Scratch space
62 let mut scratch: ScratchOwned<BackendImpl> = ScratchOwned::alloc(
63 GLWE::encrypt_sk_tmp_bytes(&module, &glwe_ct_infos) | GLWE::decrypt_tmp_bytes(&module, &glwe_ct_infos),
64 );
65
66 // Generate secret-key
67 let mut sk: GLWESecret<Vec<u8>> = GLWESecret::alloc_from_infos(&glwe_ct_infos);
68 sk.fill_ternary_prob(0.5, &mut source_xs);
69
70 // Backend-prepared secret
71 let mut sk_prepared: GLWESecretPrepared<Vec<u8>, BackendImpl> = GLWESecretPrepared::alloc(&module, rank);
72 sk_prepared.prepare(&module, &sk);
73
74 // Uniform plaintext
75 module.vec_znx_fill_uniform(base2k.into(), &mut pt_want.data, 0, &mut source_xa);
76
77 // Encryption
78 ct.encrypt_sk(
79 &module,
80 &pt_want,
81 &sk_prepared,
82 &mut source_xa,
83 &mut source_xe,
84 scratch.borrow(),
85 );
86
87 // Decryption
88 ct.decrypt(&module, &mut pt_have, &sk_prepared, scratch.borrow());
89
90 // Diff between pt - Dec(Enc(pt))
91 module.glwe_sub_inplace(&mut pt_want, &pt_have);
92
93 // Ideal vs. actual noise
94 let noise_have: f64 = pt_want.data.stats(base2k.into(), 0).std() * (ct.k().as_u32() as f64).exp2();
95 let noise_want: f64 = SIGMA;
96
97 // Check
98 assert!(noise_have <= noise_want + 0.2);
99}pub fn encrypt_zero_sk<S, M, BE: Backend>( &mut self, module: &M, sk: &S, source_xa: &mut Source, source_xe: &mut Source, scratch: &mut Scratch<BE>, )
pub fn encrypt_pk<P, K, M, BE: Backend>(
&mut self,
module: &M,
pt: &P,
pk: &K,
source_xu: &mut Source,
source_xe: &mut Source,
scratch: &mut Scratch<BE>,
)where
P: GLWEPlaintextToRef + GLWEInfos,
K: GLWEPreparedToRef<BE> + GetDistribution + GLWEInfos,
M: GLWEEncryptPk<BE>,
pub fn encrypt_zero_pk<K, M, BE: Backend>( &mut self, module: &M, pk: &K, source_xu: &mut Source, source_xe: &mut Source, scratch: &mut Scratch<BE>, )
Source§impl<DataSelf: DataMut> GLWE<DataSelf>
impl<DataSelf: DataMut> GLWE<DataSelf>
pub fn external_product<A, B, M, BE: Backend>(
&mut self,
module: &M,
a: &A,
b: &B,
scratch: &mut Scratch<BE>,
)where
A: GLWEToRef + GLWEInfos,
B: GGSWPreparedToRef<BE> + GGSWInfos,
M: GLWEExternalProduct<BE>,
Scratch<BE>: ScratchTakeCore<BE>,
pub fn external_product_inplace<A, M, BE: Backend>(
&mut self,
module: &M,
a: &A,
scratch: &mut Scratch<BE>,
)where
A: GGSWPreparedToRef<BE> + GGSWInfos,
M: GLWEExternalProduct<BE>,
Scratch<BE>: ScratchTakeCore<BE>,
Source§impl<D: DataMut> GLWE<D>
impl<D: DataMut> GLWE<D>
pub fn trace<A, H, K, M, BE: Backend>(
&mut self,
module: &M,
skip: usize,
a: &A,
keys: &H,
scratch: &mut Scratch<BE>,
)where
A: GLWEToRef + GLWEInfos,
K: GGLWEPreparedToRef<BE> + GetGaloisElement + GGLWEInfos,
H: GLWEAutomorphismKeyHelper<K, BE>,
Scratch<BE>: ScratchTakeCore<BE>,
M: GLWETrace<BE>,
pub fn trace_inplace<H, K, M, BE: Backend>(
&mut self,
module: &M,
skip: usize,
keys: &H,
scratch: &mut Scratch<BE>,
)where
K: GGLWEPreparedToRef<BE> + GetGaloisElement + GGLWEInfos,
H: GLWEAutomorphismKeyHelper<K, BE>,
Scratch<BE>: ScratchTakeCore<BE>,
M: GLWETrace<BE>,
Source§impl GLWE<Vec<u8>>
impl GLWE<Vec<u8>>
Source§impl<D: DataMut> GLWE<D>
impl<D: DataMut> GLWE<D>
pub fn keyswitch<A, B, M, BE: Backend>(
&mut self,
module: &M,
a: &A,
b: &B,
scratch: &mut Scratch<BE>,
)where
A: GLWEToRef + GLWEInfos,
B: GGLWEPreparedToRef<BE> + GGLWEInfos,
M: GLWEKeyswitch<BE>,
Scratch<BE>: ScratchTakeCore<BE>,
pub fn keyswitch_inplace<A, M, BE: Backend>(
&mut self,
module: &M,
a: &A,
scratch: &mut Scratch<BE>,
)where
A: GGLWEPreparedToRef<BE> + GGLWEInfos,
M: GLWEKeyswitch<BE>,
Scratch<BE>: ScratchTakeCore<BE>,
Source§impl GLWE<Vec<u8>>
impl GLWE<Vec<u8>>
Sourcepub fn alloc_from_infos<A>(infos: &A) -> Selfwhere
A: GLWEInfos,
pub fn alloc_from_infos<A>(infos: &A) -> Selfwhere
A: GLWEInfos,
Examples found in repository?
examples/encryption.rs (line 52)
21fn main() {
22 // Ring degree
23 let log_n: usize = 10;
24
25 let n: Degree = Degree(1 << log_n);
26
27 // Base-2-k (implicit digit decomposition)
28 let base2k: Base2K = Base2K(14);
29
30 // Ciphertext Torus precision (equivalent to ciphertext modulus)
31 let k_ct: TorusPrecision = TorusPrecision(27);
32
33 // Plaintext Torus precision (equivament to plaintext modulus)
34 let k_pt: TorusPrecision = TorusPrecision(base2k.into());
35
36 // GLWE rank
37 let rank: Rank = Rank(1);
38
39 // Instantiate Module (DFT Tables)
40 let module: Module<BackendImpl> = Module::<BackendImpl>::new(n.0 as u64);
41
42 let glwe_ct_infos: GLWELayout = GLWELayout {
43 n,
44 base2k,
45 k: k_ct,
46 rank,
47 };
48
49 let glwe_pt_infos: GLWEPlaintextLayout = GLWEPlaintextLayout { n, base2k, k: k_pt };
50
51 // Allocates ciphertext & plaintexts
52 let mut ct: GLWE<Vec<u8>> = GLWE::alloc_from_infos(&glwe_ct_infos);
53 let mut pt_want: GLWEPlaintext<Vec<u8>> = GLWEPlaintext::alloc_from_infos(&glwe_pt_infos);
54 let mut pt_have: GLWEPlaintext<Vec<u8>> = GLWEPlaintext::alloc_from_infos(&glwe_pt_infos);
55
56 // CPRNG
57 let mut source_xs: Source = Source::new([0u8; 32]);
58 let mut source_xe: Source = Source::new([1u8; 32]);
59 let mut source_xa: Source = Source::new([2u8; 32]);
60
61 // Scratch space
62 let mut scratch: ScratchOwned<BackendImpl> = ScratchOwned::alloc(
63 GLWE::encrypt_sk_tmp_bytes(&module, &glwe_ct_infos) | GLWE::decrypt_tmp_bytes(&module, &glwe_ct_infos),
64 );
65
66 // Generate secret-key
67 let mut sk: GLWESecret<Vec<u8>> = GLWESecret::alloc_from_infos(&glwe_ct_infos);
68 sk.fill_ternary_prob(0.5, &mut source_xs);
69
70 // Backend-prepared secret
71 let mut sk_prepared: GLWESecretPrepared<Vec<u8>, BackendImpl> = GLWESecretPrepared::alloc(&module, rank);
72 sk_prepared.prepare(&module, &sk);
73
74 // Uniform plaintext
75 module.vec_znx_fill_uniform(base2k.into(), &mut pt_want.data, 0, &mut source_xa);
76
77 // Encryption
78 ct.encrypt_sk(
79 &module,
80 &pt_want,
81 &sk_prepared,
82 &mut source_xa,
83 &mut source_xe,
84 scratch.borrow(),
85 );
86
87 // Decryption
88 ct.decrypt(&module, &mut pt_have, &sk_prepared, scratch.borrow());
89
90 // Diff between pt - Dec(Enc(pt))
91 module.glwe_sub_inplace(&mut pt_want, &pt_have);
92
93 // Ideal vs. actual noise
94 let noise_have: f64 = pt_want.data.stats(base2k.into(), 0).std() * (ct.k().as_u32() as f64).exp2();
95 let noise_want: f64 = SIGMA;
96
97 // Check
98 assert!(noise_have <= noise_want + 0.2);
99}pub fn alloc(n: Degree, base2k: Base2K, k: TorusPrecision, rank: Rank) -> Self
pub fn bytes_of_from_infos<A>(infos: &A) -> usizewhere
A: GLWEInfos,
pub fn bytes_of( n: Degree, base2k: Base2K, k: TorusPrecision, rank: Rank, ) -> usize
Trait Implementations§
Source§impl<D: DataMut> FillUniform for GLWE<D>
impl<D: DataMut> FillUniform for GLWE<D>
fn fill_uniform(&mut self, log_bound: usize, source: &mut Source)
Source§impl<D: Data> GLWEInfos for GLWE<D>
impl<D: Data> GLWEInfos for GLWE<D>
fn rank(&self) -> Rank
fn glwe_layout(&self) -> GLWELayout
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impl<D: DataMut> ReaderFrom for GLWE<D>
Source§impl<D: DataMut> SetGLWEInfos for GLWE<D>
impl<D: DataMut> SetGLWEInfos for GLWE<D>
fn set_base2k(&mut self, base2k: Base2K)
fn set_k(&mut self, k: TorusPrecision)
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impl<D> Freeze for GLWE<D>where
D: Freeze,
impl<D> RefUnwindSafe for GLWE<D>where
D: RefUnwindSafe,
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