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cmd/testdata/decryptObjectInfo.json.zst
erver-Side-Encryption-Seal-Algorithm":"DAREv2-HMAC-SHA256","content-type":"application/octet-stream"}},{"Bucket":"buck1","Name":"go_113/src/cmd/vendor/golang.org/x/sys/unix/syscall_linux.go","UserDef":{"X-Minio-Internal-Server-Side-Encryption-Iv":"/eX/DVXFVcLpggSkCGBniHL+3ZhbJERW5KMX5Q4e7RE=","X-Minio-Internal-Server-Side-Encryption-S3-Kms-Key-Id":"my-minio-key","X-Minio-Internal-Server-Side-Encryption-S3-Kms-Sealed-Key":"IAAfAJZL006wxCGYXnnz+zyCzSg2uL/M52eEj7cMgkmOZa+dBDXMJws1nSL9DZwW9uA==","X-...Created: Sun Apr 05 19:28:12 GMT 2026 - Last Modified: Thu Oct 29 16:34:20 GMT 2020 - 164K bytes - Click Count (0) -
lib/fips140/v1.26.0.zip
r) + e1 for i := range u { var uHat nttElement for j := range r { // Note that i and j are inverted, as we need the transposed of A. uHat = polyAdd(uHat, nttMul(ex.a[j*k1024+i], r[j])) } u[i] = polyAdd(e1[i], inverseNTT(uHat)) } μ := ringDecodeAndDecompr(m) var vNTT nttElement // t⊺ ◦ r for i := range ex.t { vNTT = polyAdd(vNTT, nttMul(ex.t[i], r[i])) } v := polyAdd(polyAdd(inverseNTT(vNTT), e2), μ) c := cc[:0] for _, f := range u { c = ringCompressAndEncod(c, f) } c = ringCompressAndEncod(c, v) return...Created: Tue Apr 07 11:13:11 GMT 2026 - Last Modified: Thu Jan 08 17:58:32 GMT 2026 - 660.3K bytes - Click Count (0) -
okhttp/src/jvmTest/resources/okhttp3/internal/publicsuffix/public_suffix_list.dat
server-on.net mydns.tw mydns.vc // Futureweb GmbH : https://www.futureweb.at // Submitted by Andreas Schnederle-Wagner <******@****.***> *.futurecms.at *.ex.futurecms.at *.in.futurecms.at futurehosting.at futuremailing.at *.ex.ortsinfo.at *.kunden.ortsinfo.at *.statics.cloud // GCom Internet : https://www.gcom.net.au // Submitted by Leo Julius <******@****.***> aliases121.com
Created: Fri Apr 03 11:42:14 GMT 2026 - Last Modified: Fri Dec 27 13:39:56 GMT 2024 - 309.7K bytes - Click Count (1) -
lib/fips140/v1.0.0-c2097c7c.zip
k1024) // NTT⁻¹(AT ◦ r) + e1 for i := range u { u[i] = e1[i] for j := range r { // Note that i and j are inverted, as we need the transposed of A. u[i] = polyAdd(u[i], inverseNTT(nttMul(ex.a[j*k1024+i], r[j]))) } } μ := ringDecodeAndDecompr(m) var vNTT nttElement // t⊺ ◦ r for i := range ex.t { vNTT = polyAdd(vNTT, nttMul(ex.t[i], r[i])) } v := polyAdd(polyAdd(inverseNTT(vNTT), e2), μ) c := cc[:0] for _, f := range u { c = ringCompressAndEncod(c, f) } c = ringCompressAndEncod(c, v) return c } // Decapsulate...Created: Tue Apr 07 11:13:11 GMT 2026 - Last Modified: Thu Sep 25 19:53:19 GMT 2025 - 642.7K bytes - Click Count (0)