authorgravatar for 124872+jedisct1@users.noreply.github.comFrank Denis <124872+jedisct1@users.noreply.github.com> 2021-05-01 08:14:32+02:00
committergravatar for noreply@github.comGitHub <noreply@github.com> 2021-05-01 08:14:32+02:00
logfe8781357afc0fa763f6a60eb8959acd05f4dfa3
tree0347292a0a6372e063a09b3b511061b224d54365
parent557eb414eee96201d1ae01b15ebf8955eca1da6d
signaturebadge-question-mark Signed by PGP key 4AEE18F83AFDEB23

std.crypto: add support for the NIST P-256 curve (#8627)

Uses verified code generated by fiat-crypto for field arithmetic, and complete formulas to avoid side channels. There's still plenty of room for optimizations, especially with a fixed base. But this gives us a framework to easily add other similar curves.

6 files changed, 2770 insertions(+), 0 deletions(-)

lib/std/crypto.zig+1
......@@ -67,6 +67,7 @@ pub const dh = struct {
6767pub const ecc = struct {
6868 pub const Curve25519 = @import("crypto/25519/curve25519.zig").Curve25519;
6969 pub const Edwards25519 = @import("crypto/25519/edwards25519.zig").Edwards25519;
70 pub const P256 = @import("crypto/pcurves/p256.zig").P256;
7071 pub const Ristretto255 = @import("crypto/25519/ristretto255.zig").Ristretto255;
7172};
7273
lib/std/crypto/pcurves/p256.zig created+412
......@@ -0,0 +1,412 @@
1// SPDX-License-Identifier: MIT
2// Copyright (c) 2015-2021 Zig Contributors
3// This file is part of [zig](https://ziglang.org/), which is MIT licensed.
4// The MIT license requires this copyright notice to be included in all copies
5// and substantial portions of the software.
6
7const std = @import("std");
8const builtin = std.builtin;
9const crypto = std.crypto;
10const mem = std.mem;
11const meta = std.meta;
12
13const EncodingError = crypto.errors.EncodingError;
14const IdentityElementError = crypto.errors.IdentityElementError;
15const NonCanonicalError = crypto.errors.NonCanonicalError;
16const NotSquareError = crypto.errors.NotSquareError;
17
18/// Group operations over P256.
19pub const P256 = struct {
20 /// The underlying prime field.
21 pub const Fe = @import("p256/field.zig").Fe;
22 /// Field arithmetic mod the order of the main subgroup.
23 pub const scalar = @import("p256/scalar.zig");
24
25 x: Fe,
26 y: Fe,
27 z: Fe = Fe.one,
28
29 is_base: bool = false,
30
31 /// The P256 base point.
32 pub const basePoint = P256{
33 .x = try Fe.fromInt(48439561293906451759052585252797914202762949526041747995844080717082404635286),
34 .y = try Fe.fromInt(36134250956749795798585127919587881956611106672985015071877198253568414405109),
35 .z = Fe.one,
36 .is_base = true,
37 };
38
39 /// The P256 neutral element.
40 pub const identityElement = P256{ .x = Fe.zero, .y = Fe.one, .z = Fe.zero };
41
42 pub const B = try Fe.fromInt(41058363725152142129326129780047268409114441015993725554835256314039467401291);
43
44 /// Reject the neutral element.
45 pub fn rejectIdentity(p: P256) IdentityElementError!void {
46 if (p.x.isZero()) {
47 return error.IdentityElement;
48 }
49 }
50
51 /// Create a point from affine coordinates after checking that they match the curve equation.
52 pub fn fromAffineCoordinates(x: Fe, y: Fe) EncodingError!P256 {
53 const x3AxB = x.sq().mul(x).sub(x).sub(x).sub(x).add(B);
54 const yy = y.sq();
55 if (!x3AxB.equivalent(yy)) {
56 return error.InvalidEncoding;
57 }
58 const p: P256 = .{ .x = x, .y = y, .z = Fe.one };
59 return p;
60 }
61
62 /// Create a point from serialized affine coordinates.
63 pub fn fromSerializedAffineCoordinates(xs: [32]u8, ys: [32]u8, endian: builtin.Endian) (NonCanonicalError || EncodingError)!P256 {
64 const x = try Fe.fromBytes(xs, endian);
65 const y = try Fe.fromBytes(ys, endian);
66 return fromAffineCoordinates(x, y);
67 }
68
69 /// Recover the Y coordinate from the X coordinate.
70 pub fn recoverY(x: Fe, is_odd: bool) NotSquareError!Fe {
71 const x3AxB = x.sq().mul(x).sub(x).sub(x).sub(x).add(B);
72 var y = try x3AxB.sqrt();
73 const yn = y.neg();
74 y.cMov(yn, @boolToInt(is_odd) ^ @boolToInt(y.isOdd()));
75 return y;
76 }
77
78 /// Deserialize a SEC1-encoded point.
79 pub fn fromSec1(s: []const u8) (EncodingError || NotSquareError || NonCanonicalError)!P256 {
80 if (s.len < 1) return error.InvalidEncoding;
81 const encoding_type = s[0];
82 const encoded = s[1..];
83 switch (encoding_type) {
84 0 => {
85 if (encoded.len != 0) return error.InvalidEncoding;
86 return P256.identityElement;
87 },
88 2, 3 => {
89 if (encoded.len != 32) return error.InvalidEncoding;
90 const x = try Fe.fromBytes(encoded[0..32].*, .Big);
91 const y_is_odd = (encoding_type == 3);
92 const y = try recoverY(x, y_is_odd);
93 return P256{ .x = x, .y = y };
94 },
95 4 => {
96 if (encoded.len != 64) return error.InvalidEncoding;
97 const x = try Fe.fromBytes(encoded[0..32].*, .Big);
98 const y = try Fe.fromBytes(encoded[32..64].*, .Big);
99 return P256.fromAffineCoordinates(x, y);
100 },
101 else => return error.InvalidEncoding,
102 }
103 }
104
105 /// Serialize a point using the compressed SEC-1 format.
106 pub fn toCompressedSec1(p: P256) [33]u8 {
107 var out: [33]u8 = undefined;
108 const xy = p.affineCoordinates();
109 out[0] = if (xy.y.isOdd()) 3 else 2;
110 mem.copy(u8, out[1..], &xy.x.toBytes(.Big));
111 return out;
112 }
113
114 /// Serialize a point using the uncompressed SEC-1 format.
115 pub fn toUncompressedSec1(p: P256) [65]u8 {
116 var out: [65]u8 = undefined;
117 out[0] = 4;
118 const xy = p.affineCoordinates();
119 mem.copy(u8, out[1..33], &xy.x.toBytes(.Big));
120 mem.copy(u8, out[33..65], &xy.y.toBytes(.Big));
121 return out;
122 }
123
124 /// Return a random point.
125 pub fn random() P256 {
126 const n = scalar.random(.Little);
127 return basePoint.mul(n, .Little) catch unreachable;
128 }
129
130 /// Flip the sign of the X coordinate.
131 pub fn neg(p: P256) P256 {
132 return .{ .x = p.x, .y = p.y.neg(), .z = p.z };
133 }
134
135 /// Double a P256 point.
136 // Algorithm 6 from https://eprint.iacr.org/2015/1060.pdf
137 pub fn dbl(p: P256) P256 {
138 var t0 = p.x.sq();
139 var t1 = p.y.sq();
140 var t2 = p.z.sq();
141 var t3 = p.x.mul(p.y);
142 t3 = t3.dbl();
143 var Z3 = p.x.mul(p.z);
144 Z3 = Z3.add(Z3);
145 var Y3 = B.mul(t2);
146 Y3 = Y3.sub(Z3);
147 var X3 = Y3.dbl();
148 Y3 = X3.add(Y3);
149 X3 = t1.sub(Y3);
150 Y3 = t1.add(Y3);
151 Y3 = X3.mul(Y3);
152 X3 = X3.mul(t3);
153 t3 = t2.dbl();
154 t2 = t2.add(t3);
155 Z3 = B.mul(Z3);
156 Z3 = Z3.sub(t2);
157 Z3 = Z3.sub(t0);
158 t3 = Z3.dbl();
159 Z3 = Z3.add(t3);
160 t3 = t0.dbl();
161 t0 = t3.add(t0);
162 t0 = t0.sub(t2);
163 t0 = t0.mul(Z3);
164 Y3 = Y3.add(t0);
165 t0 = p.y.mul(p.z);
166 t0 = t0.dbl();
167 Z3 = t0.mul(Z3);
168 X3 = X3.sub(Z3);
169 Z3 = t0.mul(t1);
170 Z3 = Z3.dbl().dbl();
171 return .{
172 .x = X3,
173 .y = Y3,
174 .z = Z3,
175 };
176 }
177
178 /// Add P256 points, the second being specified using affine coordinates.
179 // Algorithm 5 from https://eprint.iacr.org/2015/1060.pdf
180 pub fn addMixed(p: P256, q: struct { x: Fe, y: Fe }) P256 {
181 var t0 = p.x.mul(q.x);
182 var t1 = p.y.mul(q.y);
183 var t3 = q.x.add(q.y);
184 var t4 = p.x.add(p.y);
185 t3 = t3.mul(t4);
186 t4 = t0.add(t1);
187 t3 = t3.sub(t4);
188 t4 = q.y.mul(p.z);
189 t4 = t4.add(p.y);
190 var Y3 = q.x.mul(p.z);
191 Y3 = Y3.add(p.x);
192 var Z3 = B.mul(p.z);
193 var X3 = Y3.sub(Z3);
194 Z3 = X3.dbl();
195 X3 = X3.add(Z3);
196 Z3 = t1.sub(X3);
197 X3 = t1.dbl();
198 Y3 = B.mul(Y3);
199 t1 = p.z.add(p.z);
200 var t2 = t1.add(p.z);
201 Y3 = Y3.sub(t2);
202 Y3 = Y3.sub(t0);
203 t1 = Y3.dbl();
204 Y3 = t1.add(Y3);
205 t1 = t0.dbl();
206 t0 = t1.add(t0);
207 t0 = t0.sub(t2);
208 t1 = t4.mul(Y3);
209 t2 = t0.mul(Y3);
210 Y3 = X3.mul(Z3);
211 Y3 = Y3.add(t2);
212 X3 = t3.mul(X3);
213 X3 = X3.sub(t1);
214 Z3 = t4.mul(Z3);
215 t1 = t3.mul(t0);
216 Z3 = Z3.add(t1);
217 return .{
218 .x = X3,
219 .y = Y3,
220 .z = Z3,
221 };
222 }
223
224 // Add P256 points.
225 // Algorithm 4 from https://eprint.iacr.org/2015/1060.pdf
226 pub fn add(p: P256, q: P256) P256 {
227 var t0 = p.x.mul(q.x);
228 var t1 = p.y.mul(q.y);
229 var t2 = p.z.mul(q.z);
230 var t3 = p.x.add(p.y);
231 var t4 = q.x.add(q.y);
232 t3 = t3.mul(t4);
233 t4 = t0.add(t1);
234 t3 = t3.sub(t4);
235 t4 = p.y.add(p.z);
236 var X3 = q.y.add(q.z);
237 t4 = t4.mul(X3);
238 X3 = t1.add(t2);
239 t4 = t4.sub(X3);
240 X3 = p.x.add(p.z);
241 var Y3 = q.x.add(q.z);
242 X3 = X3.mul(Y3);
243 Y3 = t0.add(t2);
244 Y3 = X3.sub(Y3);
245 var Z3 = B.mul(t2);
246 X3 = Y3.sub(Z3);
247 Z3 = X3.dbl();
248 X3 = X3.add(Z3);
249 Z3 = t1.sub(X3);
250 X3 = t1.add(X3);
251 Y3 = B.mul(Y3);
252 t1 = t2.dbl();
253 t2 = t1.add(t2);
254 Y3 = Y3.sub(t2);
255 Y3 = Y3.sub(t0);
256 t1 = Y3.dbl();
257 Y3 = t1.add(Y3);
258 t1 = t0.dbl();
259 t0 = t1.add(t0);
260 t0 = t0.sub(t2);
261 t1 = t4.mul(Y3);
262 t2 = t0.mul(Y3);
263 Y3 = X3.mul(Z3);
264 Y3 = Y3.add(t2);
265 X3 = t3.mul(X3);
266 X3 = X3.sub(t1);
267 Z3 = t4.mul(Z3);
268 t1 = t3.mul(t0);
269 Z3 = Z3.add(t1);
270 return .{
271 .x = X3,
272 .y = Y3,
273 .z = Z3,
274 };
275 }
276
277 // Subtract P256 points.
278 pub fn sub(p: P256, q: P256) P256 {
279 return p.add(q.neg());
280 }
281
282 /// Return affine coordinates.
283 pub fn affineCoordinates(p: P256) struct { x: Fe, y: Fe } {
284 const zinv = p.z.invert();
285 const ret = .{
286 .x = p.x.mul(zinv),
287 .y = p.y.mul(zinv),
288 };
289 return ret;
290 }
291
292 /// Return true if both coordinate sets represent the same point.
293 pub fn equivalent(a: P256, b: P256) bool {
294 if (a.sub(b).rejectIdentity()) {
295 return false;
296 } else |_| {
297 return true;
298 }
299 }
300
301 fn cMov(p: *P256, a: P256, c: u1) void {
302 p.x.cMov(a.x, c);
303 p.y.cMov(a.y, c);
304 p.z.cMov(a.z, c);
305 }
306
307 fn pcSelect(comptime n: usize, pc: [n]P256, b: u8) P256 {
308 var t = P256.identityElement;
309 comptime var i: u8 = 1;
310 inline while (i < pc.len) : (i += 1) {
311 t.cMov(pc[i], @truncate(u1, (@as(usize, b ^ i) -% 1) >> 8));
312 }
313 return t;
314 }
315
316 fn slide(s: [32]u8) [2 * 32 + 1]i8 {
317 var e: [2 * 32 + 1]i8 = undefined;
318 for (s) |x, i| {
319 e[i * 2 + 0] = @as(i8, @truncate(u4, x));
320 e[i * 2 + 1] = @as(i8, @truncate(u4, x >> 4));
321 }
322 // Now, e[0..63] is between 0 and 15, e[63] is between 0 and 7
323 var carry: i8 = 0;
324 for (e[0..64]) |*x| {
325 x.* += carry;
326 carry = (x.* + 8) >> 4;
327 x.* -= carry * 16;
328 std.debug.assert(x.* >= -8 and x.* <= 8);
329 }
330 e[64] = carry;
331 // Now, e[*] is between -8 and 8, including e[64]
332 std.debug.assert(carry >= -8 and carry <= 8);
333 return e;
334 }
335
336 fn pcMul(pc: [9]P256, s: [32]u8, comptime vartime: bool) IdentityElementError!P256 {
337 std.debug.assert(vartime);
338 const e = slide(s);
339 var q = P256.identityElement;
340 var pos = e.len - 1;
341 while (true) : (pos -= 1) {
342 const slot = e[pos];
343 if (slot > 0) {
344 q = q.add(pc[@intCast(usize, slot)]);
345 } else if (slot < 0) {
346 q = q.sub(pc[@intCast(usize, -slot)]);
347 }
348 if (pos == 0) break;
349 q = q.dbl().dbl().dbl().dbl();
350 }
351 try q.rejectIdentity();
352 return q;
353 }
354
355 fn pcMul16(pc: [16]P256, s: [32]u8, comptime vartime: bool) IdentityElementError!P256 {
356 var q = P256.identityElement;
357 var pos: usize = 252;
358 while (true) : (pos -= 4) {
359 const slot = @truncate(u4, (s[pos >> 3] >> @truncate(u3, pos)));
360 if (vartime) {
361 if (slot != 0) {
362 q = q.add(pc[slot]);
363 }
364 } else {
365 q = q.add(pcSelect(16, pc, slot));
366 }
367 if (pos == 0) break;
368 q = q.dbl().dbl().dbl().dbl();
369 }
370 try q.rejectIdentity();
371 return q;
372 }
373
374 fn precompute(p: P256, comptime count: usize) [1 + count]P256 {
375 var pc: [1 + count]P256 = undefined;
376 pc[0] = P256.identityElement;
377 pc[1] = p;
378 var i: usize = 2;
379 while (i <= count) : (i += 1) {
380 pc[i] = if (i % 2 == 0) pc[i / 2].dbl() else pc[i - 1].add(p);
381 }
382 return pc;
383 }
384
385 /// Multiply an elliptic curve point by a scalar.
386 /// Return error.IdentityElement if the result is the identity element.
387 pub fn mul(p: P256, s_: [32]u8, endian: builtin.Endian) IdentityElementError!P256 {
388 const s = if (endian == .Little) s_ else Fe.orderSwap(s_);
389 const pc = if (p.is_base) precompute(P256.basePoint, 15) else pc: {
390 try p.rejectIdentity();
391 const xpc = precompute(p, 15);
392 break :pc xpc;
393 };
394 return pcMul16(pc, s, false);
395 }
396
397 /// Multiply an elliptic curve point by a *PUBLIC* scalar *IN VARIABLE TIME*
398 /// This can be used for signature verification.
399 pub fn mulPublic(p: P256, s_: [32]u8, endian: builtin.Endian) IdentityElementError!P256 {
400 const s = if (endian == .Little) s_ else Fe.orderSwap(s_);
401 const pc = if (p.is_base) precompute(P256.basePoint, 8) else pc: {
402 try p.rejectIdentity();
403 const xpc = precompute(p, 8);
404 break :pc xpc;
405 };
406 return pcMul(pc, s, true);
407 }
408};
409
410test "p256" {
411 _ = @import("tests.zig");
412}
lib/std/crypto/pcurves/p256/field.zig created+261
......@@ -0,0 +1,261 @@
1// SPDX-License-Identifier: MIT
2// Copyright (c) 2015-2021 Zig Contributors
3// This file is part of [zig](https://ziglang.org/), which is MIT licensed.
4// The MIT license requires this copyright notice to be included in all copies
5// and substantial portions of the software.
6
7const std = @import("std");
8const builtin = std.builtin;
9const crypto = std.crypto;
10const debug = std.debug;
11const mem = std.mem;
12const meta = std.meta;
13
14const fiat = @import("p256_64.zig");
15
16const NonCanonicalError = crypto.errors.NonCanonicalError;
17const NotSquareError = crypto.errors.NotSquareError;
18
19const Limbs = fiat.Limbs;
20
21/// A field element, internally stored in Montgomery domain.
22pub const Fe = struct {
23 limbs: Limbs,
24
25 /// Field size.
26 pub const field_order = 115792089210356248762697446949407573530086143415290314195533631308867097853951;
27
28 /// Numer of bits that can be saturated without overflowing.
29 pub const saturated_bits = 255;
30
31 /// Zero.
32 pub const zero: Fe = Fe{ .limbs = mem.zeroes(Limbs) };
33
34 /// One.
35 pub const one = comptime one: {
36 var fe: Fe = undefined;
37 fiat.p256SetOne(&fe.limbs);
38 break :one fe;
39 };
40
41 /// Reject non-canonical encodings of an element.
42 pub fn rejectNonCanonical(s_: [32]u8, endian: builtin.Endian) NonCanonicalError!void {
43 var s = if (endian == .Little) s_ else orderSwap(s_);
44 const field_order_s = comptime fos: {
45 var fos: [32]u8 = undefined;
46 mem.writeIntLittle(u256, &fos, field_order);
47 break :fos fos;
48 };
49 if (crypto.utils.timingSafeCompare(u8, &s, &field_order_s, .Little) != .lt) {
50 return error.NonCanonical;
51 }
52 }
53
54 /// Swap the endianness of an encoded element.
55 pub fn orderSwap(s: [32]u8) [32]u8 {
56 var t = s;
57 for (s) |x, i| t[t.len - 1 - i] = x;
58 return t;
59 }
60
61 /// Unpack a field element.
62 pub fn fromBytes(s_: [32]u8, endian: builtin.Endian) NonCanonicalError!Fe {
63 var s = if (endian == .Little) s_ else orderSwap(s_);
64 try rejectNonCanonical(s, .Little);
65 var limbs_z: Limbs = undefined;
66 fiat.p256FromBytes(&limbs_z, s);
67 var limbs: Limbs = undefined;
68 fiat.p256ToMontgomery(&limbs, limbs_z);
69 return Fe{ .limbs = limbs };
70 }
71
72 /// Pack a field element.
73 pub fn toBytes(fe: Fe, endian: builtin.Endian) [32]u8 {
74 var limbs_z: Limbs = undefined;
75 fiat.p256FromMontgomery(&limbs_z, fe.limbs);
76 var s: [32]u8 = undefined;
77 fiat.p256ToBytes(&s, limbs_z);
78 return if (endian == .Little) s else orderSwap(s);
79 }
80
81 /// Create a field element from an integer.
82 pub fn fromInt(comptime x: u256) NonCanonicalError!Fe {
83 var s: [32]u8 = undefined;
84 mem.writeIntLittle(u256, &s, x);
85 return fromBytes(s, .Little);
86 }
87
88 /// Return the field element as an integer.
89 pub fn toInt(fe: Fe) u256 {
90 const s = fe.toBytes(.Little);
91 return mem.readIntLittle(u256, &s);
92 }
93
94 /// Return true if the field element is zero.
95 pub fn isZero(fe: Fe) bool {
96 var z: @TypeOf(fe.limbs[0]) = undefined;
97 fiat.p256Nonzero(&z, fe.limbs);
98 return z == 0;
99 }
100
101 /// Return true if both field elements are equivalent.
102 pub fn equivalent(a: Fe, b: Fe) bool {
103 return a.sub(b).isZero();
104 }
105
106 /// Return true if the element is odd.
107 pub fn isOdd(fe: Fe) bool {
108 const s = fe.toBytes(.Little);
109 return @truncate(u1, s[0]) != 0;
110 }
111
112 /// Conditonally replace a field element with `a` if `c` is positive.
113 pub fn cMov(fe: *Fe, a: Fe, c: u1) void {
114 fiat.p256Selectznz(&fe.limbs, c, fe.limbs, a.limbs);
115 }
116
117 /// Add field elements.
118 pub fn add(a: Fe, b: Fe) Fe {
119 var fe: Fe = undefined;
120 fiat.p256Add(&fe.limbs, a.limbs, b.limbs);
121 return fe;
122 }
123
124 /// Subtract field elements.
125 pub fn sub(a: Fe, b: Fe) Fe {
126 var fe: Fe = undefined;
127 fiat.p256Sub(&fe.limbs, a.limbs, b.limbs);
128 return fe;
129 }
130
131 /// Double a field element.
132 pub fn dbl(a: Fe) Fe {
133 var fe: Fe = undefined;
134 fiat.p256Add(&fe.limbs, a.limbs, a.limbs);
135 return fe;
136 }
137
138 /// Multiply field elements.
139 pub fn mul(a: Fe, b: Fe) Fe {
140 var fe: Fe = undefined;
141 fiat.p256Mul(&fe.limbs, a.limbs, b.limbs);
142 return fe;
143 }
144
145 /// Square a field element.
146 pub fn sq(a: Fe) Fe {
147 var fe: Fe = undefined;
148 fiat.p256Square(&fe.limbs, a.limbs);
149 return fe;
150 }
151
152 /// Square a field element n times.
153 fn sqn(a: Fe, comptime n: comptime_int) Fe {
154 var i: usize = 0;
155 var fe = a;
156 while (i < n) : (i += 1) {
157 fe = fe.sq();
158 }
159 return fe;
160 }
161
162 /// Compute a^n.
163 pub fn pow(a: Fe, comptime T: type, comptime n: T) Fe {
164 var fe = one;
165 var x: T = n;
166 var t = a;
167 while (true) {
168 if (@truncate(u1, x) != 0) fe = fe.mul(t);
169 x >>= 1;
170 if (x == 0) break;
171 t = t.sq();
172 }
173 return fe;
174 }
175
176 /// Negate a field element.
177 pub fn neg(a: Fe) Fe {
178 var fe: Fe = undefined;
179 fiat.p256Opp(&fe.limbs, a.limbs);
180 return fe;
181 }
182
183 /// Return the inverse of a field element, or 0 if a=0.
184 // Field inversion from https://eprint.iacr.org/2021/549.pdf
185 pub fn invert(a: Fe) Fe {
186 const len_prime = 256;
187 const iterations = (49 * len_prime + 57) / 17;
188 const Word = @TypeOf(a.limbs[0]);
189 const XLimbs = [a.limbs.len + 1]Word;
190
191 var d: Word = 1;
192 var f: XLimbs = undefined;
193 fiat.p256Msat(&f);
194
195 var g: XLimbs = undefined;
196 fiat.p256FromMontgomery(g[0..a.limbs.len], a.limbs);
197 g[g.len - 1] = 0;
198
199 var r: Limbs = undefined;
200 fiat.p256SetOne(&r);
201 var v = mem.zeroes(Limbs);
202
203 var precomp: Limbs = undefined;
204 fiat.p256DivstepPrecomp(&precomp);
205
206 var out1: Word = undefined;
207 var out2: XLimbs = undefined;
208 var out3: XLimbs = undefined;
209 var out4: Limbs = undefined;
210 var out5: Limbs = undefined;
211
212 var i: usize = 0;
213 while (i < iterations - iterations % 2) : (i += 2) {
214 fiat.p256Divstep(&out1, &out2, &out3, &out4, &out5, d, f, g, v, r);
215 fiat.p256Divstep(&d, &f, &g, &v, &r, out1, out2, out3, out4, out5);
216 }
217 if (iterations % 2 != 0) {
218 fiat.p256Divstep(&out1, &out2, &out3, &out4, &out5, d, f, g, v, r);
219 mem.copy(Word, &v, &out4);
220 mem.copy(Word, &f, &out2);
221 }
222 var v_opp: Limbs = undefined;
223 fiat.p256Opp(&v_opp, v);
224 fiat.p256Selectznz(&v, @truncate(u1, f[f.len - 1] >> (meta.bitCount(Word) - 1)), v, v_opp);
225 var fe: Fe = undefined;
226 fiat.p256Mul(&fe.limbs, v, precomp);
227 return fe;
228 }
229
230 /// Return true if the field element is a square.
231 pub fn isSquare(x2: Fe) bool {
232 const t110 = x2.mul(x2.sq()).sq();
233 const t111 = x2.mul(t110);
234 const t111111 = t111.mul(x2.mul(t110).sqn(3));
235 const x15 = t111111.sqn(6).mul(t111111).sqn(3).mul(t111);
236 const x16 = x15.sq().mul(x2);
237 const x53 = x16.sqn(16).mul(x16).sqn(15);
238 const x47 = x15.mul(x53);
239 const ls = x47.mul(((x53.sqn(17).mul(x2)).sqn(143).mul(x47)).sqn(47)).sq().mul(x2); // Legendre symbol, (p-1)/2
240 return ls.equivalent(Fe.one);
241 }
242
243 // x=x2^((field_order+1)/4) w/ field order=3 (mod 4).
244 fn uncheckedSqrt(x2: Fe) Fe {
245 comptime debug.assert(field_order % 4 == 3);
246 const t11 = x2.mul(x2.sq());
247 const t1111 = t11.mul(t11.sqn(2));
248 const t11111111 = t1111.mul(t1111.sqn(4));
249 const x16 = t11111111.sqn(8).mul(t11111111);
250 return x16.sqn(16).mul(x16).sqn(32).mul(x2).sqn(96).mul(x2).sqn(94);
251 }
252
253 /// Compute the square root of `x2`, returning `error.NotSquare` if `x2` was not a square.
254 pub fn sqrt(x2: Fe) NotSquareError!Fe {
255 const x = x2.uncheckedSqrt();
256 if (x.sq().equivalent(x2)) {
257 return x;
258 }
259 return error.NotSquare;
260 }
261};
lib/std/crypto/pcurves/p256/p256_64.zig created+1774
......@@ -0,0 +1,1774 @@
1// SPDX-License-Identifier: MIT
2// Copyright (c) 2015-2021 Zig Contributors
3// This file is part of [zig](https://ziglang.org/), which is MIT licensed.
4// The MIT license requires this copyright notice to be included in all copies
5// and substantial portions of the software.
6
7// Autogenerated: 'src/ExtractionOCaml/word_by_word_montgomery' --lang Zig --internal-static --public-function-case camelCase --private-function-case camelCase p256 64 '2^256 - 2^224 + 2^192 + 2^96 - 1' mul square add sub opp from_montgomery to_montgomery nonzero selectznz to_bytes from_bytes one msat divstep divstep_precomp
8// curve description: p256
9// machine_wordsize = 64 (from "64")
10// requested operations: mul, square, add, sub, opp, from_montgomery, to_montgomery, nonzero, selectznz, to_bytes, from_bytes, one, msat, divstep, divstep_precomp
11// m = 0xffffffff00000001000000000000000000000000ffffffffffffffffffffffff (from "2^256 - 2^224 + 2^192 + 2^96 - 1")
12//
13// NOTE: In addition to the bounds specified above each function, all
14// functions synthesized for this Montgomery arithmetic require the
15// input to be strictly less than the prime modulus (m), and also
16// require the input to be in the unique saturated representation.
17// All functions also ensure that these two properties are true of
18// return values.
19//
20// Computed values:
21// eval z = z[0] + (z[1] << 64) + (z[2] << 128) + (z[3] << 192)
22// bytes_eval z = z[0] + (z[1] << 8) + (z[2] << 16) + (z[3] << 24) + (z[4] << 32) + (z[5] << 40) + (z[6] << 48) + (z[7] << 56) + (z[8] << 64) + (z[9] << 72) + (z[10] << 80) + (z[11] << 88) + (z[12] << 96) + (z[13] << 104) + (z[14] << 112) + (z[15] << 120) + (z[16] << 128) + (z[17] << 136) + (z[18] << 144) + (z[19] << 152) + (z[20] << 160) + (z[21] << 168) + (z[22] << 176) + (z[23] << 184) + (z[24] << 192) + (z[25] << 200) + (z[26] << 208) + (z[27] << 216) + (z[28] << 224) + (z[29] << 232) + (z[30] << 240) + (z[31] << 248)
23
24pub const Limbs = [4]u64;
25
26/// The function p256AddcarryxU64 is an addition with carry.
27/// Postconditions:
28/// out1 = (arg1 + arg2 + arg3) mod 2^64
29/// out2 = ⌊(arg1 + arg2 + arg3) / 2^64⌋
30///
31/// Input Bounds:
32/// arg1: [0x0 ~> 0x1]
33/// arg2: [0x0 ~> 0xffffffffffffffff]
34/// arg3: [0x0 ~> 0xffffffffffffffff]
35/// Output Bounds:
36/// out1: [0x0 ~> 0xffffffffffffffff]
37/// out2: [0x0 ~> 0x1]
38fn p256AddcarryxU64(out1: *u64, out2: *u1, arg1: u1, arg2: u64, arg3: u64) callconv(.Inline) void {
39 var t: u64 = undefined;
40 const carry1 = @addWithOverflow(u64, arg2, arg3, &t);
41 const carry2 = @addWithOverflow(u64, t, arg1, out1);
42 out2.* = @boolToInt(carry1) | @boolToInt(carry2);
43}
44
45/// The function p256SubborrowxU64 is a subtraction with borrow.
46/// Postconditions:
47/// out1 = (-arg1 + arg2 + -arg3) mod 2^64
48/// out2 = -⌊(-arg1 + arg2 + -arg3) / 2^64⌋
49///
50/// Input Bounds:
51/// arg1: [0x0 ~> 0x1]
52/// arg2: [0x0 ~> 0xffffffffffffffff]
53/// arg3: [0x0 ~> 0xffffffffffffffff]
54/// Output Bounds:
55/// out1: [0x0 ~> 0xffffffffffffffff]
56/// out2: [0x0 ~> 0x1]
57fn p256SubborrowxU64(out1: *u64, out2: *u1, arg1: u1, arg2: u64, arg3: u64) callconv(.Inline) void {
58 var t: u64 = undefined;
59 const carry1 = @subWithOverflow(u64, arg2, arg3, &t);
60 const carry2 = @subWithOverflow(u64, t, arg1, out1);
61 out2.* = @boolToInt(carry1) | @boolToInt(carry2);
62}
63
64/// The function p256MulxU64 is a multiplication, returning the full double-width result.
65/// Postconditions:
66/// out1 = (arg1 * arg2) mod 2^64
67/// out2 = ⌊arg1 * arg2 / 2^64⌋
68///
69/// Input Bounds:
70/// arg1: [0x0 ~> 0xffffffffffffffff]
71/// arg2: [0x0 ~> 0xffffffffffffffff]
72/// Output Bounds:
73/// out1: [0x0 ~> 0xffffffffffffffff]
74/// out2: [0x0 ~> 0xffffffffffffffff]
75fn p256MulxU64(out1: *u64, out2: *u64, arg1: u64, arg2: u64) callconv(.Inline) void {
76 const x = @as(u128, arg1) * @as(u128, arg2);
77 out1.* = @truncate(u64, x);
78 out2.* = @truncate(u64, x >> 64);
79}
80
81/// The function p256CmovznzU64 is a single-word conditional move.
82/// Postconditions:
83/// out1 = (if arg1 = 0 then arg2 else arg3)
84///
85/// Input Bounds:
86/// arg1: [0x0 ~> 0x1]
87/// arg2: [0x0 ~> 0xffffffffffffffff]
88/// arg3: [0x0 ~> 0xffffffffffffffff]
89/// Output Bounds:
90/// out1: [0x0 ~> 0xffffffffffffffff]
91fn p256CmovznzU64(out1: *u64, arg1: u1, arg2: u64, arg3: u64) callconv(.Inline) void {
92 const mask = 0 -% @as(u64, arg1);
93 out1.* = (mask & arg3) | ((~mask) & arg2);
94}
95
96/// The function p256Mul multiplies two field elements in the Montgomery domain.
97/// Preconditions:
98/// 0 ≤ eval arg1 < m
99/// 0 ≤ eval arg2 < m
100/// Postconditions:
101/// eval (from_montgomery out1) mod m = (eval (from_montgomery arg1) * eval (from_montgomery arg2)) mod m
102/// 0 ≤ eval out1 < m
103///
104/// Input Bounds:
105/// arg1: [[0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff]]
106/// arg2: [[0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff]]
107/// Output Bounds:
108/// out1: [[0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff]]
109pub fn p256Mul(out1: *Limbs, arg1: Limbs, arg2: Limbs) void {
110 const x1: u64 = (arg1[1]);
111 const x2: u64 = (arg1[2]);
112 const x3: u64 = (arg1[3]);
113 const x4: u64 = (arg1[0]);
114 var x5: u64 = undefined;
115 var x6: u64 = undefined;
116 p256MulxU64(&x5, &x6, x4, (arg2[3]));
117 var x7: u64 = undefined;
118 var x8: u64 = undefined;
119 p256MulxU64(&x7, &x8, x4, (arg2[2]));
120 var x9: u64 = undefined;
121 var x10: u64 = undefined;
122 p256MulxU64(&x9, &x10, x4, (arg2[1]));
123 var x11: u64 = undefined;
124 var x12: u64 = undefined;
125 p256MulxU64(&x11, &x12, x4, (arg2[0]));
126 var x13: u64 = undefined;
127 var x14: u1 = undefined;
128 p256AddcarryxU64(&x13, &x14, 0x0, x12, x9);
129 var x15: u64 = undefined;
130 var x16: u1 = undefined;
131 p256AddcarryxU64(&x15, &x16, x14, x10, x7);
132 var x17: u64 = undefined;
133 var x18: u1 = undefined;
134 p256AddcarryxU64(&x17, &x18, x16, x8, x5);
135 const x19: u64 = (@intCast(u64, x18) + x6);
136 var x20: u64 = undefined;
137 var x21: u64 = undefined;
138 p256MulxU64(&x20, &x21, x11, 0xffffffff00000001);
139 var x22: u64 = undefined;
140 var x23: u64 = undefined;
141 p256MulxU64(&x22, &x23, x11, 0xffffffff);
142 var x24: u64 = undefined;
143 var x25: u64 = undefined;
144 p256MulxU64(&x24, &x25, x11, 0xffffffffffffffff);
145 var x26: u64 = undefined;
146 var x27: u1 = undefined;
147 p256AddcarryxU64(&x26, &x27, 0x0, x25, x22);
148 const x28: u64 = (@intCast(u64, x27) + x23);
149 var x29: u64 = undefined;
150 var x30: u1 = undefined;
151 p256AddcarryxU64(&x29, &x30, 0x0, x11, x24);
152 var x31: u64 = undefined;
153 var x32: u1 = undefined;
154 p256AddcarryxU64(&x31, &x32, x30, x13, x26);
155 var x33: u64 = undefined;
156 var x34: u1 = undefined;
157 p256AddcarryxU64(&x33, &x34, x32, x15, x28);
158 var x35: u64 = undefined;
159 var x36: u1 = undefined;
160 p256AddcarryxU64(&x35, &x36, x34, x17, x20);
161 var x37: u64 = undefined;
162 var x38: u1 = undefined;
163 p256AddcarryxU64(&x37, &x38, x36, x19, x21);
164 var x39: u64 = undefined;
165 var x40: u64 = undefined;
166 p256MulxU64(&x39, &x40, x1, (arg2[3]));
167 var x41: u64 = undefined;
168 var x42: u64 = undefined;
169 p256MulxU64(&x41, &x42, x1, (arg2[2]));
170 var x43: u64 = undefined;
171 var x44: u64 = undefined;
172 p256MulxU64(&x43, &x44, x1, (arg2[1]));
173 var x45: u64 = undefined;
174 var x46: u64 = undefined;
175 p256MulxU64(&x45, &x46, x1, (arg2[0]));
176 var x47: u64 = undefined;
177 var x48: u1 = undefined;
178 p256AddcarryxU64(&x47, &x48, 0x0, x46, x43);
179 var x49: u64 = undefined;
180 var x50: u1 = undefined;
181 p256AddcarryxU64(&x49, &x50, x48, x44, x41);
182 var x51: u64 = undefined;
183 var x52: u1 = undefined;
184 p256AddcarryxU64(&x51, &x52, x50, x42, x39);
185 const x53: u64 = (@intCast(u64, x52) + x40);
186 var x54: u64 = undefined;
187 var x55: u1 = undefined;
188 p256AddcarryxU64(&x54, &x55, 0x0, x31, x45);
189 var x56: u64 = undefined;
190 var x57: u1 = undefined;
191 p256AddcarryxU64(&x56, &x57, x55, x33, x47);
192 var x58: u64 = undefined;
193 var x59: u1 = undefined;
194 p256AddcarryxU64(&x58, &x59, x57, x35, x49);
195 var x60: u64 = undefined;
196 var x61: u1 = undefined;
197 p256AddcarryxU64(&x60, &x61, x59, x37, x51);
198 var x62: u64 = undefined;
199 var x63: u1 = undefined;
200 p256AddcarryxU64(&x62, &x63, x61, @intCast(u64, x38), x53);
201 var x64: u64 = undefined;
202 var x65: u64 = undefined;
203 p256MulxU64(&x64, &x65, x54, 0xffffffff00000001);
204 var x66: u64 = undefined;
205 var x67: u64 = undefined;
206 p256MulxU64(&x66, &x67, x54, 0xffffffff);
207 var x68: u64 = undefined;
208 var x69: u64 = undefined;
209 p256MulxU64(&x68, &x69, x54, 0xffffffffffffffff);
210 var x70: u64 = undefined;
211 var x71: u1 = undefined;
212 p256AddcarryxU64(&x70, &x71, 0x0, x69, x66);
213 const x72: u64 = (@intCast(u64, x71) + x67);
214 var x73: u64 = undefined;
215 var x74: u1 = undefined;
216 p256AddcarryxU64(&x73, &x74, 0x0, x54, x68);
217 var x75: u64 = undefined;
218 var x76: u1 = undefined;
219 p256AddcarryxU64(&x75, &x76, x74, x56, x70);
220 var x77: u64 = undefined;
221 var x78: u1 = undefined;
222 p256AddcarryxU64(&x77, &x78, x76, x58, x72);
223 var x79: u64 = undefined;
224 var x80: u1 = undefined;
225 p256AddcarryxU64(&x79, &x80, x78, x60, x64);
226 var x81: u64 = undefined;
227 var x82: u1 = undefined;
228 p256AddcarryxU64(&x81, &x82, x80, x62, x65);
229 const x83: u64 = (@intCast(u64, x82) + @intCast(u64, x63));
230 var x84: u64 = undefined;
231 var x85: u64 = undefined;
232 p256MulxU64(&x84, &x85, x2, (arg2[3]));
233 var x86: u64 = undefined;
234 var x87: u64 = undefined;
235 p256MulxU64(&x86, &x87, x2, (arg2[2]));
236 var x88: u64 = undefined;
237 var x89: u64 = undefined;
238 p256MulxU64(&x88, &x89, x2, (arg2[1]));
239 var x90: u64 = undefined;
240 var x91: u64 = undefined;
241 p256MulxU64(&x90, &x91, x2, (arg2[0]));
242 var x92: u64 = undefined;
243 var x93: u1 = undefined;
244 p256AddcarryxU64(&x92, &x93, 0x0, x91, x88);
245 var x94: u64 = undefined;
246 var x95: u1 = undefined;
247 p256AddcarryxU64(&x94, &x95, x93, x89, x86);
248 var x96: u64 = undefined;
249 var x97: u1 = undefined;
250 p256AddcarryxU64(&x96, &x97, x95, x87, x84);
251 const x98: u64 = (@intCast(u64, x97) + x85);
252 var x99: u64 = undefined;
253 var x100: u1 = undefined;
254 p256AddcarryxU64(&x99, &x100, 0x0, x75, x90);
255 var x101: u64 = undefined;
256 var x102: u1 = undefined;
257 p256AddcarryxU64(&x101, &x102, x100, x77, x92);
258 var x103: u64 = undefined;
259 var x104: u1 = undefined;
260 p256AddcarryxU64(&x103, &x104, x102, x79, x94);
261 var x105: u64 = undefined;
262 var x106: u1 = undefined;
263 p256AddcarryxU64(&x105, &x106, x104, x81, x96);
264 var x107: u64 = undefined;
265 var x108: u1 = undefined;
266 p256AddcarryxU64(&x107, &x108, x106, x83, x98);
267 var x109: u64 = undefined;
268 var x110: u64 = undefined;
269 p256MulxU64(&x109, &x110, x99, 0xffffffff00000001);
270 var x111: u64 = undefined;
271 var x112: u64 = undefined;
272 p256MulxU64(&x111, &x112, x99, 0xffffffff);
273 var x113: u64 = undefined;
274 var x114: u64 = undefined;
275 p256MulxU64(&x113, &x114, x99, 0xffffffffffffffff);
276 var x115: u64 = undefined;
277 var x116: u1 = undefined;
278 p256AddcarryxU64(&x115, &x116, 0x0, x114, x111);
279 const x117: u64 = (@intCast(u64, x116) + x112);
280 var x118: u64 = undefined;
281 var x119: u1 = undefined;
282 p256AddcarryxU64(&x118, &x119, 0x0, x99, x113);
283 var x120: u64 = undefined;
284 var x121: u1 = undefined;
285 p256AddcarryxU64(&x120, &x121, x119, x101, x115);
286 var x122: u64 = undefined;
287 var x123: u1 = undefined;
288 p256AddcarryxU64(&x122, &x123, x121, x103, x117);
289 var x124: u64 = undefined;
290 var x125: u1 = undefined;
291 p256AddcarryxU64(&x124, &x125, x123, x105, x109);
292 var x126: u64 = undefined;
293 var x127: u1 = undefined;
294 p256AddcarryxU64(&x126, &x127, x125, x107, x110);
295 const x128: u64 = (@intCast(u64, x127) + @intCast(u64, x108));
296 var x129: u64 = undefined;
297 var x130: u64 = undefined;
298 p256MulxU64(&x129, &x130, x3, (arg2[3]));
299 var x131: u64 = undefined;
300 var x132: u64 = undefined;
301 p256MulxU64(&x131, &x132, x3, (arg2[2]));
302 var x133: u64 = undefined;
303 var x134: u64 = undefined;
304 p256MulxU64(&x133, &x134, x3, (arg2[1]));
305 var x135: u64 = undefined;
306 var x136: u64 = undefined;
307 p256MulxU64(&x135, &x136, x3, (arg2[0]));
308 var x137: u64 = undefined;
309 var x138: u1 = undefined;
310 p256AddcarryxU64(&x137, &x138, 0x0, x136, x133);
311 var x139: u64 = undefined;
312 var x140: u1 = undefined;
313 p256AddcarryxU64(&x139, &x140, x138, x134, x131);
314 var x141: u64 = undefined;
315 var x142: u1 = undefined;
316 p256AddcarryxU64(&x141, &x142, x140, x132, x129);
317 const x143: u64 = (@intCast(u64, x142) + x130);
318 var x144: u64 = undefined;
319 var x145: u1 = undefined;
320 p256AddcarryxU64(&x144, &x145, 0x0, x120, x135);
321 var x146: u64 = undefined;
322 var x147: u1 = undefined;
323 p256AddcarryxU64(&x146, &x147, x145, x122, x137);
324 var x148: u64 = undefined;
325 var x149: u1 = undefined;
326 p256AddcarryxU64(&x148, &x149, x147, x124, x139);
327 var x150: u64 = undefined;
328 var x151: u1 = undefined;
329 p256AddcarryxU64(&x150, &x151, x149, x126, x141);
330 var x152: u64 = undefined;
331 var x153: u1 = undefined;
332 p256AddcarryxU64(&x152, &x153, x151, x128, x143);
333 var x154: u64 = undefined;
334 var x155: u64 = undefined;
335 p256MulxU64(&x154, &x155, x144, 0xffffffff00000001);
336 var x156: u64 = undefined;
337 var x157: u64 = undefined;
338 p256MulxU64(&x156, &x157, x144, 0xffffffff);
339 var x158: u64 = undefined;
340 var x159: u64 = undefined;
341 p256MulxU64(&x158, &x159, x144, 0xffffffffffffffff);
342 var x160: u64 = undefined;
343 var x161: u1 = undefined;
344 p256AddcarryxU64(&x160, &x161, 0x0, x159, x156);
345 const x162: u64 = (@intCast(u64, x161) + x157);
346 var x163: u64 = undefined;
347 var x164: u1 = undefined;
348 p256AddcarryxU64(&x163, &x164, 0x0, x144, x158);
349 var x165: u64 = undefined;
350 var x166: u1 = undefined;
351 p256AddcarryxU64(&x165, &x166, x164, x146, x160);
352 var x167: u64 = undefined;
353 var x168: u1 = undefined;
354 p256AddcarryxU64(&x167, &x168, x166, x148, x162);
355 var x169: u64 = undefined;
356 var x170: u1 = undefined;
357 p256AddcarryxU64(&x169, &x170, x168, x150, x154);
358 var x171: u64 = undefined;
359 var x172: u1 = undefined;
360 p256AddcarryxU64(&x171, &x172, x170, x152, x155);
361 const x173: u64 = (@intCast(u64, x172) + @intCast(u64, x153));
362 var x174: u64 = undefined;
363 var x175: u1 = undefined;
364 p256SubborrowxU64(&x174, &x175, 0x0, x165, 0xffffffffffffffff);
365 var x176: u64 = undefined;
366 var x177: u1 = undefined;
367 p256SubborrowxU64(&x176, &x177, x175, x167, 0xffffffff);
368 var x178: u64 = undefined;
369 var x179: u1 = undefined;
370 p256SubborrowxU64(&x178, &x179, x177, x169, @intCast(u64, 0x0));
371 var x180: u64 = undefined;
372 var x181: u1 = undefined;
373 p256SubborrowxU64(&x180, &x181, x179, x171, 0xffffffff00000001);
374 var x182: u64 = undefined;
375 var x183: u1 = undefined;
376 p256SubborrowxU64(&x182, &x183, x181, x173, @intCast(u64, 0x0));
377 var x184: u64 = undefined;
378 p256CmovznzU64(&x184, x183, x174, x165);
379 var x185: u64 = undefined;
380 p256CmovznzU64(&x185, x183, x176, x167);
381 var x186: u64 = undefined;
382 p256CmovznzU64(&x186, x183, x178, x169);
383 var x187: u64 = undefined;
384 p256CmovznzU64(&x187, x183, x180, x171);
385 out1[0] = x184;
386 out1[1] = x185;
387 out1[2] = x186;
388 out1[3] = x187;
389}
390
391/// The function p256Square squares a field element in the Montgomery domain.
392/// Preconditions:
393/// 0 ≤ eval arg1 < m
394/// Postconditions:
395/// eval (from_montgomery out1) mod m = (eval (from_montgomery arg1) * eval (from_montgomery arg1)) mod m
396/// 0 ≤ eval out1 < m
397///
398/// Input Bounds:
399/// arg1: [[0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff]]
400/// Output Bounds:
401/// out1: [[0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff]]
402pub fn p256Square(out1: *Limbs, arg1: Limbs) void {
403 const x1: u64 = (arg1[1]);
404 const x2: u64 = (arg1[2]);
405 const x3: u64 = (arg1[3]);
406 const x4: u64 = (arg1[0]);
407 var x5: u64 = undefined;
408 var x6: u64 = undefined;
409 p256MulxU64(&x5, &x6, x4, (arg1[3]));
410 var x7: u64 = undefined;
411 var x8: u64 = undefined;
412 p256MulxU64(&x7, &x8, x4, (arg1[2]));
413 var x9: u64 = undefined;
414 var x10: u64 = undefined;
415 p256MulxU64(&x9, &x10, x4, (arg1[1]));
416 var x11: u64 = undefined;
417 var x12: u64 = undefined;
418 p256MulxU64(&x11, &x12, x4, (arg1[0]));
419 var x13: u64 = undefined;
420 var x14: u1 = undefined;
421 p256AddcarryxU64(&x13, &x14, 0x0, x12, x9);
422 var x15: u64 = undefined;
423 var x16: u1 = undefined;
424 p256AddcarryxU64(&x15, &x16, x14, x10, x7);
425 var x17: u64 = undefined;
426 var x18: u1 = undefined;
427 p256AddcarryxU64(&x17, &x18, x16, x8, x5);
428 const x19: u64 = (@intCast(u64, x18) + x6);
429 var x20: u64 = undefined;
430 var x21: u64 = undefined;
431 p256MulxU64(&x20, &x21, x11, 0xffffffff00000001);
432 var x22: u64 = undefined;
433 var x23: u64 = undefined;
434 p256MulxU64(&x22, &x23, x11, 0xffffffff);
435 var x24: u64 = undefined;
436 var x25: u64 = undefined;
437 p256MulxU64(&x24, &x25, x11, 0xffffffffffffffff);
438 var x26: u64 = undefined;
439 var x27: u1 = undefined;
440 p256AddcarryxU64(&x26, &x27, 0x0, x25, x22);
441 const x28: u64 = (@intCast(u64, x27) + x23);
442 var x29: u64 = undefined;
443 var x30: u1 = undefined;
444 p256AddcarryxU64(&x29, &x30, 0x0, x11, x24);
445 var x31: u64 = undefined;
446 var x32: u1 = undefined;
447 p256AddcarryxU64(&x31, &x32, x30, x13, x26);
448 var x33: u64 = undefined;
449 var x34: u1 = undefined;
450 p256AddcarryxU64(&x33, &x34, x32, x15, x28);
451 var x35: u64 = undefined;
452 var x36: u1 = undefined;
453 p256AddcarryxU64(&x35, &x36, x34, x17, x20);
454 var x37: u64 = undefined;
455 var x38: u1 = undefined;
456 p256AddcarryxU64(&x37, &x38, x36, x19, x21);
457 var x39: u64 = undefined;
458 var x40: u64 = undefined;
459 p256MulxU64(&x39, &x40, x1, (arg1[3]));
460 var x41: u64 = undefined;
461 var x42: u64 = undefined;
462 p256MulxU64(&x41, &x42, x1, (arg1[2]));
463 var x43: u64 = undefined;
464 var x44: u64 = undefined;
465 p256MulxU64(&x43, &x44, x1, (arg1[1]));
466 var x45: u64 = undefined;
467 var x46: u64 = undefined;
468 p256MulxU64(&x45, &x46, x1, (arg1[0]));
469 var x47: u64 = undefined;
470 var x48: u1 = undefined;
471 p256AddcarryxU64(&x47, &x48, 0x0, x46, x43);
472 var x49: u64 = undefined;
473 var x50: u1 = undefined;
474 p256AddcarryxU64(&x49, &x50, x48, x44, x41);
475 var x51: u64 = undefined;
476 var x52: u1 = undefined;
477 p256AddcarryxU64(&x51, &x52, x50, x42, x39);
478 const x53: u64 = (@intCast(u64, x52) + x40);
479 var x54: u64 = undefined;
480 var x55: u1 = undefined;
481 p256AddcarryxU64(&x54, &x55, 0x0, x31, x45);
482 var x56: u64 = undefined;
483 var x57: u1 = undefined;
484 p256AddcarryxU64(&x56, &x57, x55, x33, x47);
485 var x58: u64 = undefined;
486 var x59: u1 = undefined;
487 p256AddcarryxU64(&x58, &x59, x57, x35, x49);
488 var x60: u64 = undefined;
489 var x61: u1 = undefined;
490 p256AddcarryxU64(&x60, &x61, x59, x37, x51);
491 var x62: u64 = undefined;
492 var x63: u1 = undefined;
493 p256AddcarryxU64(&x62, &x63, x61, @intCast(u64, x38), x53);
494 var x64: u64 = undefined;
495 var x65: u64 = undefined;
496 p256MulxU64(&x64, &x65, x54, 0xffffffff00000001);
497 var x66: u64 = undefined;
498 var x67: u64 = undefined;
499 p256MulxU64(&x66, &x67, x54, 0xffffffff);
500 var x68: u64 = undefined;
501 var x69: u64 = undefined;
502 p256MulxU64(&x68, &x69, x54, 0xffffffffffffffff);
503 var x70: u64 = undefined;
504 var x71: u1 = undefined;
505 p256AddcarryxU64(&x70, &x71, 0x0, x69, x66);
506 const x72: u64 = (@intCast(u64, x71) + x67);
507 var x73: u64 = undefined;
508 var x74: u1 = undefined;
509 p256AddcarryxU64(&x73, &x74, 0x0, x54, x68);
510 var x75: u64 = undefined;
511 var x76: u1 = undefined;
512 p256AddcarryxU64(&x75, &x76, x74, x56, x70);
513 var x77: u64 = undefined;
514 var x78: u1 = undefined;
515 p256AddcarryxU64(&x77, &x78, x76, x58, x72);
516 var x79: u64 = undefined;
517 var x80: u1 = undefined;
518 p256AddcarryxU64(&x79, &x80, x78, x60, x64);
519 var x81: u64 = undefined;
520 var x82: u1 = undefined;
521 p256AddcarryxU64(&x81, &x82, x80, x62, x65);
522 const x83: u64 = (@intCast(u64, x82) + @intCast(u64, x63));
523 var x84: u64 = undefined;
524 var x85: u64 = undefined;
525 p256MulxU64(&x84, &x85, x2, (arg1[3]));
526 var x86: u64 = undefined;
527 var x87: u64 = undefined;
528 p256MulxU64(&x86, &x87, x2, (arg1[2]));
529 var x88: u64 = undefined;
530 var x89: u64 = undefined;
531 p256MulxU64(&x88, &x89, x2, (arg1[1]));
532 var x90: u64 = undefined;
533 var x91: u64 = undefined;
534 p256MulxU64(&x90, &x91, x2, (arg1[0]));
535 var x92: u64 = undefined;
536 var x93: u1 = undefined;
537 p256AddcarryxU64(&x92, &x93, 0x0, x91, x88);
538 var x94: u64 = undefined;
539 var x95: u1 = undefined;
540 p256AddcarryxU64(&x94, &x95, x93, x89, x86);
541 var x96: u64 = undefined;
542 var x97: u1 = undefined;
543 p256AddcarryxU64(&x96, &x97, x95, x87, x84);
544 const x98: u64 = (@intCast(u64, x97) + x85);
545 var x99: u64 = undefined;
546 var x100: u1 = undefined;
547 p256AddcarryxU64(&x99, &x100, 0x0, x75, x90);
548 var x101: u64 = undefined;
549 var x102: u1 = undefined;
550 p256AddcarryxU64(&x101, &x102, x100, x77, x92);
551 var x103: u64 = undefined;
552 var x104: u1 = undefined;
553 p256AddcarryxU64(&x103, &x104, x102, x79, x94);
554 var x105: u64 = undefined;
555 var x106: u1 = undefined;
556 p256AddcarryxU64(&x105, &x106, x104, x81, x96);
557 var x107: u64 = undefined;
558 var x108: u1 = undefined;
559 p256AddcarryxU64(&x107, &x108, x106, x83, x98);
560 var x109: u64 = undefined;
561 var x110: u64 = undefined;
562 p256MulxU64(&x109, &x110, x99, 0xffffffff00000001);
563 var x111: u64 = undefined;
564 var x112: u64 = undefined;
565 p256MulxU64(&x111, &x112, x99, 0xffffffff);
566 var x113: u64 = undefined;
567 var x114: u64 = undefined;
568 p256MulxU64(&x113, &x114, x99, 0xffffffffffffffff);
569 var x115: u64 = undefined;
570 var x116: u1 = undefined;
571 p256AddcarryxU64(&x115, &x116, 0x0, x114, x111);
572 const x117: u64 = (@intCast(u64, x116) + x112);
573 var x118: u64 = undefined;
574 var x119: u1 = undefined;
575 p256AddcarryxU64(&x118, &x119, 0x0, x99, x113);
576 var x120: u64 = undefined;
577 var x121: u1 = undefined;
578 p256AddcarryxU64(&x120, &x121, x119, x101, x115);
579 var x122: u64 = undefined;
580 var x123: u1 = undefined;
581 p256AddcarryxU64(&x122, &x123, x121, x103, x117);
582 var x124: u64 = undefined;
583 var x125: u1 = undefined;
584 p256AddcarryxU64(&x124, &x125, x123, x105, x109);
585 var x126: u64 = undefined;
586 var x127: u1 = undefined;
587 p256AddcarryxU64(&x126, &x127, x125, x107, x110);
588 const x128: u64 = (@intCast(u64, x127) + @intCast(u64, x108));
589 var x129: u64 = undefined;
590 var x130: u64 = undefined;
591 p256MulxU64(&x129, &x130, x3, (arg1[3]));
592 var x131: u64 = undefined;
593 var x132: u64 = undefined;
594 p256MulxU64(&x131, &x132, x3, (arg1[2]));
595 var x133: u64 = undefined;
596 var x134: u64 = undefined;
597 p256MulxU64(&x133, &x134, x3, (arg1[1]));
598 var x135: u64 = undefined;
599 var x136: u64 = undefined;
600 p256MulxU64(&x135, &x136, x3, (arg1[0]));
601 var x137: u64 = undefined;
602 var x138: u1 = undefined;
603 p256AddcarryxU64(&x137, &x138, 0x0, x136, x133);
604 var x139: u64 = undefined;
605 var x140: u1 = undefined;
606 p256AddcarryxU64(&x139, &x140, x138, x134, x131);
607 var x141: u64 = undefined;
608 var x142: u1 = undefined;
609 p256AddcarryxU64(&x141, &x142, x140, x132, x129);
610 const x143: u64 = (@intCast(u64, x142) + x130);
611 var x144: u64 = undefined;
612 var x145: u1 = undefined;
613 p256AddcarryxU64(&x144, &x145, 0x0, x120, x135);
614 var x146: u64 = undefined;
615 var x147: u1 = undefined;
616 p256AddcarryxU64(&x146, &x147, x145, x122, x137);
617 var x148: u64 = undefined;
618 var x149: u1 = undefined;
619 p256AddcarryxU64(&x148, &x149, x147, x124, x139);
620 var x150: u64 = undefined;
621 var x151: u1 = undefined;
622 p256AddcarryxU64(&x150, &x151, x149, x126, x141);
623 var x152: u64 = undefined;
624 var x153: u1 = undefined;
625 p256AddcarryxU64(&x152, &x153, x151, x128, x143);
626 var x154: u64 = undefined;
627 var x155: u64 = undefined;
628 p256MulxU64(&x154, &x155, x144, 0xffffffff00000001);
629 var x156: u64 = undefined;
630 var x157: u64 = undefined;
631 p256MulxU64(&x156, &x157, x144, 0xffffffff);
632 var x158: u64 = undefined;
633 var x159: u64 = undefined;
634 p256MulxU64(&x158, &x159, x144, 0xffffffffffffffff);
635 var x160: u64 = undefined;
636 var x161: u1 = undefined;
637 p256AddcarryxU64(&x160, &x161, 0x0, x159, x156);
638 const x162: u64 = (@intCast(u64, x161) + x157);
639 var x163: u64 = undefined;
640 var x164: u1 = undefined;
641 p256AddcarryxU64(&x163, &x164, 0x0, x144, x158);
642 var x165: u64 = undefined;
643 var x166: u1 = undefined;
644 p256AddcarryxU64(&x165, &x166, x164, x146, x160);
645 var x167: u64 = undefined;
646 var x168: u1 = undefined;
647 p256AddcarryxU64(&x167, &x168, x166, x148, x162);
648 var x169: u64 = undefined;
649 var x170: u1 = undefined;
650 p256AddcarryxU64(&x169, &x170, x168, x150, x154);
651 var x171: u64 = undefined;
652 var x172: u1 = undefined;
653 p256AddcarryxU64(&x171, &x172, x170, x152, x155);
654 const x173: u64 = (@intCast(u64, x172) + @intCast(u64, x153));
655 var x174: u64 = undefined;
656 var x175: u1 = undefined;
657 p256SubborrowxU64(&x174, &x175, 0x0, x165, 0xffffffffffffffff);
658 var x176: u64 = undefined;
659 var x177: u1 = undefined;
660 p256SubborrowxU64(&x176, &x177, x175, x167, 0xffffffff);
661 var x178: u64 = undefined;
662 var x179: u1 = undefined;
663 p256SubborrowxU64(&x178, &x179, x177, x169, @intCast(u64, 0x0));
664 var x180: u64 = undefined;
665 var x181: u1 = undefined;
666 p256SubborrowxU64(&x180, &x181, x179, x171, 0xffffffff00000001);
667 var x182: u64 = undefined;
668 var x183: u1 = undefined;
669 p256SubborrowxU64(&x182, &x183, x181, x173, @intCast(u64, 0x0));
670 var x184: u64 = undefined;
671 p256CmovznzU64(&x184, x183, x174, x165);
672 var x185: u64 = undefined;
673 p256CmovznzU64(&x185, x183, x176, x167);
674 var x186: u64 = undefined;
675 p256CmovznzU64(&x186, x183, x178, x169);
676 var x187: u64 = undefined;
677 p256CmovznzU64(&x187, x183, x180, x171);
678 out1[0] = x184;
679 out1[1] = x185;
680 out1[2] = x186;
681 out1[3] = x187;
682}
683
684/// The function p256Add adds two field elements in the Montgomery domain.
685/// Preconditions:
686/// 0 ≤ eval arg1 < m
687/// 0 ≤ eval arg2 < m
688/// Postconditions:
689/// eval (from_montgomery out1) mod m = (eval (from_montgomery arg1) + eval (from_montgomery arg2)) mod m
690/// 0 ≤ eval out1 < m
691///
692/// Input Bounds:
693/// arg1: [[0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff]]
694/// arg2: [[0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff]]
695/// Output Bounds:
696/// out1: [[0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff]]
697pub fn p256Add(out1: *Limbs, arg1: Limbs, arg2: Limbs) void {
698 var x1: u64 = undefined;
699 var x2: u1 = undefined;
700 p256AddcarryxU64(&x1, &x2, 0x0, (arg1[0]), (arg2[0]));
701 var x3: u64 = undefined;
702 var x4: u1 = undefined;
703 p256AddcarryxU64(&x3, &x4, x2, (arg1[1]), (arg2[1]));
704 var x5: u64 = undefined;
705 var x6: u1 = undefined;
706 p256AddcarryxU64(&x5, &x6, x4, (arg1[2]), (arg2[2]));
707 var x7: u64 = undefined;
708 var x8: u1 = undefined;
709 p256AddcarryxU64(&x7, &x8, x6, (arg1[3]), (arg2[3]));
710 var x9: u64 = undefined;
711 var x10: u1 = undefined;
712 p256SubborrowxU64(&x9, &x10, 0x0, x1, 0xffffffffffffffff);
713 var x11: u64 = undefined;
714 var x12: u1 = undefined;
715 p256SubborrowxU64(&x11, &x12, x10, x3, 0xffffffff);
716 var x13: u64 = undefined;
717 var x14: u1 = undefined;
718 p256SubborrowxU64(&x13, &x14, x12, x5, @intCast(u64, 0x0));
719 var x15: u64 = undefined;
720 var x16: u1 = undefined;
721 p256SubborrowxU64(&x15, &x16, x14, x7, 0xffffffff00000001);
722 var x17: u64 = undefined;
723 var x18: u1 = undefined;
724 p256SubborrowxU64(&x17, &x18, x16, @intCast(u64, x8), @intCast(u64, 0x0));
725 var x19: u64 = undefined;
726 p256CmovznzU64(&x19, x18, x9, x1);
727 var x20: u64 = undefined;
728 p256CmovznzU64(&x20, x18, x11, x3);
729 var x21: u64 = undefined;
730 p256CmovznzU64(&x21, x18, x13, x5);
731 var x22: u64 = undefined;
732 p256CmovznzU64(&x22, x18, x15, x7);
733 out1[0] = x19;
734 out1[1] = x20;
735 out1[2] = x21;
736 out1[3] = x22;
737}
738
739/// The function p256Sub subtracts two field elements in the Montgomery domain.
740/// Preconditions:
741/// 0 ≤ eval arg1 < m
742/// 0 ≤ eval arg2 < m
743/// Postconditions:
744/// eval (from_montgomery out1) mod m = (eval (from_montgomery arg1) - eval (from_montgomery arg2)) mod m
745/// 0 ≤ eval out1 < m
746///
747/// Input Bounds:
748/// arg1: [[0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff]]
749/// arg2: [[0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff]]
750/// Output Bounds:
751/// out1: [[0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff]]
752pub fn p256Sub(out1: *Limbs, arg1: Limbs, arg2: Limbs) void {
753 var x1: u64 = undefined;
754 var x2: u1 = undefined;
755 p256SubborrowxU64(&x1, &x2, 0x0, (arg1[0]), (arg2[0]));
756 var x3: u64 = undefined;
757 var x4: u1 = undefined;
758 p256SubborrowxU64(&x3, &x4, x2, (arg1[1]), (arg2[1]));
759 var x5: u64 = undefined;
760 var x6: u1 = undefined;
761 p256SubborrowxU64(&x5, &x6, x4, (arg1[2]), (arg2[2]));
762 var x7: u64 = undefined;
763 var x8: u1 = undefined;
764 p256SubborrowxU64(&x7, &x8, x6, (arg1[3]), (arg2[3]));
765 var x9: u64 = undefined;
766 p256CmovznzU64(&x9, x8, @intCast(u64, 0x0), 0xffffffffffffffff);
767 var x10: u64 = undefined;
768 var x11: u1 = undefined;
769 p256AddcarryxU64(&x10, &x11, 0x0, x1, x9);
770 var x12: u64 = undefined;
771 var x13: u1 = undefined;
772 p256AddcarryxU64(&x12, &x13, x11, x3, (x9 & 0xffffffff));
773 var x14: u64 = undefined;
774 var x15: u1 = undefined;
775 p256AddcarryxU64(&x14, &x15, x13, x5, @intCast(u64, 0x0));
776 var x16: u64 = undefined;
777 var x17: u1 = undefined;
778 p256AddcarryxU64(&x16, &x17, x15, x7, (x9 & 0xffffffff00000001));
779 out1[0] = x10;
780 out1[1] = x12;
781 out1[2] = x14;
782 out1[3] = x16;
783}
784
785/// The function p256Opp negates a field element in the Montgomery domain.
786/// Preconditions:
787/// 0 ≤ eval arg1 < m
788/// Postconditions:
789/// eval (from_montgomery out1) mod m = -eval (from_montgomery arg1) mod m
790/// 0 ≤ eval out1 < m
791///
792/// Input Bounds:
793/// arg1: [[0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff]]
794/// Output Bounds:
795/// out1: [[0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff]]
796pub fn p256Opp(out1: *Limbs, arg1: Limbs) void {
797 var x1: u64 = undefined;
798 var x2: u1 = undefined;
799 p256SubborrowxU64(&x1, &x2, 0x0, @intCast(u64, 0x0), (arg1[0]));
800 var x3: u64 = undefined;
801 var x4: u1 = undefined;
802 p256SubborrowxU64(&x3, &x4, x2, @intCast(u64, 0x0), (arg1[1]));
803 var x5: u64 = undefined;
804 var x6: u1 = undefined;
805 p256SubborrowxU64(&x5, &x6, x4, @intCast(u64, 0x0), (arg1[2]));
806 var x7: u64 = undefined;
807 var x8: u1 = undefined;
808 p256SubborrowxU64(&x7, &x8, x6, @intCast(u64, 0x0), (arg1[3]));
809 var x9: u64 = undefined;
810 p256CmovznzU64(&x9, x8, @intCast(u64, 0x0), 0xffffffffffffffff);
811 var x10: u64 = undefined;
812 var x11: u1 = undefined;
813 p256AddcarryxU64(&x10, &x11, 0x0, x1, x9);
814 var x12: u64 = undefined;
815 var x13: u1 = undefined;
816 p256AddcarryxU64(&x12, &x13, x11, x3, (x9 & 0xffffffff));
817 var x14: u64 = undefined;
818 var x15: u1 = undefined;
819 p256AddcarryxU64(&x14, &x15, x13, x5, @intCast(u64, 0x0));
820 var x16: u64 = undefined;
821 var x17: u1 = undefined;
822 p256AddcarryxU64(&x16, &x17, x15, x7, (x9 & 0xffffffff00000001));
823 out1[0] = x10;
824 out1[1] = x12;
825 out1[2] = x14;
826 out1[3] = x16;
827}
828
829/// The function p256FromMontgomery translates a field element out of the Montgomery domain.
830/// Preconditions:
831/// 0 ≤ eval arg1 < m
832/// Postconditions:
833/// eval out1 mod m = (eval arg1 * ((2^64)⁻¹ mod m)^4) mod m
834/// 0 ≤ eval out1 < m
835///
836/// Input Bounds:
837/// arg1: [[0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff]]
838/// Output Bounds:
839/// out1: [[0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff]]
840pub fn p256FromMontgomery(out1: *Limbs, arg1: Limbs) void {
841 const x1: u64 = (arg1[0]);
842 var x2: u64 = undefined;
843 var x3: u64 = undefined;
844 p256MulxU64(&x2, &x3, x1, 0xffffffff00000001);
845 var x4: u64 = undefined;
846 var x5: u64 = undefined;
847 p256MulxU64(&x4, &x5, x1, 0xffffffff);
848 var x6: u64 = undefined;
849 var x7: u64 = undefined;
850 p256MulxU64(&x6, &x7, x1, 0xffffffffffffffff);
851 var x8: u64 = undefined;
852 var x9: u1 = undefined;
853 p256AddcarryxU64(&x8, &x9, 0x0, x7, x4);
854 var x10: u64 = undefined;
855 var x11: u1 = undefined;
856 p256AddcarryxU64(&x10, &x11, 0x0, x1, x6);
857 var x12: u64 = undefined;
858 var x13: u1 = undefined;
859 p256AddcarryxU64(&x12, &x13, x11, @intCast(u64, 0x0), x8);
860 var x14: u64 = undefined;
861 var x15: u1 = undefined;
862 p256AddcarryxU64(&x14, &x15, 0x0, x12, (arg1[1]));
863 var x16: u64 = undefined;
864 var x17: u64 = undefined;
865 p256MulxU64(&x16, &x17, x14, 0xffffffff00000001);
866 var x18: u64 = undefined;
867 var x19: u64 = undefined;
868 p256MulxU64(&x18, &x19, x14, 0xffffffff);
869 var x20: u64 = undefined;
870 var x21: u64 = undefined;
871 p256MulxU64(&x20, &x21, x14, 0xffffffffffffffff);
872 var x22: u64 = undefined;
873 var x23: u1 = undefined;
874 p256AddcarryxU64(&x22, &x23, 0x0, x21, x18);
875 var x24: u64 = undefined;
876 var x25: u1 = undefined;
877 p256AddcarryxU64(&x24, &x25, 0x0, x14, x20);
878 var x26: u64 = undefined;
879 var x27: u1 = undefined;
880 p256AddcarryxU64(&x26, &x27, x25, (@intCast(u64, x15) + (@intCast(u64, x13) + (@intCast(u64, x9) + x5))), x22);
881 var x28: u64 = undefined;
882 var x29: u1 = undefined;
883 p256AddcarryxU64(&x28, &x29, x27, x2, (@intCast(u64, x23) + x19));
884 var x30: u64 = undefined;
885 var x31: u1 = undefined;
886 p256AddcarryxU64(&x30, &x31, x29, x3, x16);
887 var x32: u64 = undefined;
888 var x33: u1 = undefined;
889 p256AddcarryxU64(&x32, &x33, 0x0, x26, (arg1[2]));
890 var x34: u64 = undefined;
891 var x35: u1 = undefined;
892 p256AddcarryxU64(&x34, &x35, x33, x28, @intCast(u64, 0x0));
893 var x36: u64 = undefined;
894 var x37: u1 = undefined;
895 p256AddcarryxU64(&x36, &x37, x35, x30, @intCast(u64, 0x0));
896 var x38: u64 = undefined;
897 var x39: u64 = undefined;
898 p256MulxU64(&x38, &x39, x32, 0xffffffff00000001);
899 var x40: u64 = undefined;
900 var x41: u64 = undefined;
901 p256MulxU64(&x40, &x41, x32, 0xffffffff);
902 var x42: u64 = undefined;
903 var x43: u64 = undefined;
904 p256MulxU64(&x42, &x43, x32, 0xffffffffffffffff);
905 var x44: u64 = undefined;
906 var x45: u1 = undefined;
907 p256AddcarryxU64(&x44, &x45, 0x0, x43, x40);
908 var x46: u64 = undefined;
909 var x47: u1 = undefined;
910 p256AddcarryxU64(&x46, &x47, 0x0, x32, x42);
911 var x48: u64 = undefined;
912 var x49: u1 = undefined;
913 p256AddcarryxU64(&x48, &x49, x47, x34, x44);
914 var x50: u64 = undefined;
915 var x51: u1 = undefined;
916 p256AddcarryxU64(&x50, &x51, x49, x36, (@intCast(u64, x45) + x41));
917 var x52: u64 = undefined;
918 var x53: u1 = undefined;
919 p256AddcarryxU64(&x52, &x53, x51, (@intCast(u64, x37) + (@intCast(u64, x31) + x17)), x38);
920 var x54: u64 = undefined;
921 var x55: u1 = undefined;
922 p256AddcarryxU64(&x54, &x55, 0x0, x48, (arg1[3]));
923 var x56: u64 = undefined;
924 var x57: u1 = undefined;
925 p256AddcarryxU64(&x56, &x57, x55, x50, @intCast(u64, 0x0));
926 var x58: u64 = undefined;
927 var x59: u1 = undefined;
928 p256AddcarryxU64(&x58, &x59, x57, x52, @intCast(u64, 0x0));
929 var x60: u64 = undefined;
930 var x61: u64 = undefined;
931 p256MulxU64(&x60, &x61, x54, 0xffffffff00000001);
932 var x62: u64 = undefined;
933 var x63: u64 = undefined;
934 p256MulxU64(&x62, &x63, x54, 0xffffffff);
935 var x64: u64 = undefined;
936 var x65: u64 = undefined;
937 p256MulxU64(&x64, &x65, x54, 0xffffffffffffffff);
938 var x66: u64 = undefined;
939 var x67: u1 = undefined;
940 p256AddcarryxU64(&x66, &x67, 0x0, x65, x62);
941 var x68: u64 = undefined;
942 var x69: u1 = undefined;
943 p256AddcarryxU64(&x68, &x69, 0x0, x54, x64);
944 var x70: u64 = undefined;
945 var x71: u1 = undefined;
946 p256AddcarryxU64(&x70, &x71, x69, x56, x66);
947 var x72: u64 = undefined;
948 var x73: u1 = undefined;
949 p256AddcarryxU64(&x72, &x73, x71, x58, (@intCast(u64, x67) + x63));
950 var x74: u64 = undefined;
951 var x75: u1 = undefined;
952 p256AddcarryxU64(&x74, &x75, x73, (@intCast(u64, x59) + (@intCast(u64, x53) + x39)), x60);
953 const x76: u64 = (@intCast(u64, x75) + x61);
954 var x77: u64 = undefined;
955 var x78: u1 = undefined;
956 p256SubborrowxU64(&x77, &x78, 0x0, x70, 0xffffffffffffffff);
957 var x79: u64 = undefined;
958 var x80: u1 = undefined;
959 p256SubborrowxU64(&x79, &x80, x78, x72, 0xffffffff);
960 var x81: u64 = undefined;
961 var x82: u1 = undefined;
962 p256SubborrowxU64(&x81, &x82, x80, x74, @intCast(u64, 0x0));
963 var x83: u64 = undefined;
964 var x84: u1 = undefined;
965 p256SubborrowxU64(&x83, &x84, x82, x76, 0xffffffff00000001);
966 var x85: u64 = undefined;
967 var x86: u1 = undefined;
968 p256SubborrowxU64(&x85, &x86, x84, @intCast(u64, 0x0), @intCast(u64, 0x0));
969 var x87: u64 = undefined;
970 p256CmovznzU64(&x87, x86, x77, x70);
971 var x88: u64 = undefined;
972 p256CmovznzU64(&x88, x86, x79, x72);
973 var x89: u64 = undefined;
974 p256CmovznzU64(&x89, x86, x81, x74);
975 var x90: u64 = undefined;
976 p256CmovznzU64(&x90, x86, x83, x76);
977 out1[0] = x87;
978 out1[1] = x88;
979 out1[2] = x89;
980 out1[3] = x90;
981}
982
983/// The function p256ToMontgomery translates a field element into the Montgomery domain.
984/// Preconditions:
985/// 0 ≤ eval arg1 < m
986/// Postconditions:
987/// eval (from_montgomery out1) mod m = eval arg1 mod m
988/// 0 ≤ eval out1 < m
989///
990/// Input Bounds:
991/// arg1: [[0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff]]
992/// Output Bounds:
993/// out1: [[0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff]]
994pub fn p256ToMontgomery(out1: *Limbs, arg1: Limbs) void {
995 const x1: u64 = (arg1[1]);
996 const x2: u64 = (arg1[2]);
997 const x3: u64 = (arg1[3]);
998 const x4: u64 = (arg1[0]);
999 var x5: u64 = undefined;
1000 var x6: u64 = undefined;
1001 p256MulxU64(&x5, &x6, x4, 0x4fffffffd);
1002 var x7: u64 = undefined;
1003 var x8: u64 = undefined;
1004 p256MulxU64(&x7, &x8, x4, 0xfffffffffffffffe);
1005 var x9: u64 = undefined;
1006 var x10: u64 = undefined;
1007 p256MulxU64(&x9, &x10, x4, 0xfffffffbffffffff);
1008 var x11: u64 = undefined;
1009 var x12: u64 = undefined;
1010 p256MulxU64(&x11, &x12, x4, 0x3);
1011 var x13: u64 = undefined;
1012 var x14: u1 = undefined;
1013 p256AddcarryxU64(&x13, &x14, 0x0, x12, x9);
1014 var x15: u64 = undefined;
1015 var x16: u1 = undefined;
1016 p256AddcarryxU64(&x15, &x16, x14, x10, x7);
1017 var x17: u64 = undefined;
1018 var x18: u1 = undefined;
1019 p256AddcarryxU64(&x17, &x18, x16, x8, x5);
1020 var x19: u64 = undefined;
1021 var x20: u64 = undefined;
1022 p256MulxU64(&x19, &x20, x11, 0xffffffff00000001);
1023 var x21: u64 = undefined;
1024 var x22: u64 = undefined;
1025 p256MulxU64(&x21, &x22, x11, 0xffffffff);
1026 var x23: u64 = undefined;
1027 var x24: u64 = undefined;
1028 p256MulxU64(&x23, &x24, x11, 0xffffffffffffffff);
1029 var x25: u64 = undefined;
1030 var x26: u1 = undefined;
1031 p256AddcarryxU64(&x25, &x26, 0x0, x24, x21);
1032 var x27: u64 = undefined;
1033 var x28: u1 = undefined;
1034 p256AddcarryxU64(&x27, &x28, 0x0, x11, x23);
1035 var x29: u64 = undefined;
1036 var x30: u1 = undefined;
1037 p256AddcarryxU64(&x29, &x30, x28, x13, x25);
1038 var x31: u64 = undefined;
1039 var x32: u1 = undefined;
1040 p256AddcarryxU64(&x31, &x32, x30, x15, (@intCast(u64, x26) + x22));
1041 var x33: u64 = undefined;
1042 var x34: u1 = undefined;
1043 p256AddcarryxU64(&x33, &x34, x32, x17, x19);
1044 var x35: u64 = undefined;
1045 var x36: u1 = undefined;
1046 p256AddcarryxU64(&x35, &x36, x34, (@intCast(u64, x18) + x6), x20);
1047 var x37: u64 = undefined;
1048 var x38: u64 = undefined;
1049 p256MulxU64(&x37, &x38, x1, 0x4fffffffd);
1050 var x39: u64 = undefined;
1051 var x40: u64 = undefined;
1052 p256MulxU64(&x39, &x40, x1, 0xfffffffffffffffe);
1053 var x41: u64 = undefined;
1054 var x42: u64 = undefined;
1055 p256MulxU64(&x41, &x42, x1, 0xfffffffbffffffff);
1056 var x43: u64 = undefined;
1057 var x44: u64 = undefined;
1058 p256MulxU64(&x43, &x44, x1, 0x3);
1059 var x45: u64 = undefined;
1060 var x46: u1 = undefined;
1061 p256AddcarryxU64(&x45, &x46, 0x0, x44, x41);
1062 var x47: u64 = undefined;
1063 var x48: u1 = undefined;
1064 p256AddcarryxU64(&x47, &x48, x46, x42, x39);
1065 var x49: u64 = undefined;
1066 var x50: u1 = undefined;
1067 p256AddcarryxU64(&x49, &x50, x48, x40, x37);
1068 var x51: u64 = undefined;
1069 var x52: u1 = undefined;
1070 p256AddcarryxU64(&x51, &x52, 0x0, x29, x43);
1071 var x53: u64 = undefined;
1072 var x54: u1 = undefined;
1073 p256AddcarryxU64(&x53, &x54, x52, x31, x45);
1074 var x55: u64 = undefined;
1075 var x56: u1 = undefined;
1076 p256AddcarryxU64(&x55, &x56, x54, x33, x47);
1077 var x57: u64 = undefined;
1078 var x58: u1 = undefined;
1079 p256AddcarryxU64(&x57, &x58, x56, x35, x49);
1080 var x59: u64 = undefined;
1081 var x60: u64 = undefined;
1082 p256MulxU64(&x59, &x60, x51, 0xffffffff00000001);
1083 var x61: u64 = undefined;
1084 var x62: u64 = undefined;
1085 p256MulxU64(&x61, &x62, x51, 0xffffffff);
1086 var x63: u64 = undefined;
1087 var x64: u64 = undefined;
1088 p256MulxU64(&x63, &x64, x51, 0xffffffffffffffff);
1089 var x65: u64 = undefined;
1090 var x66: u1 = undefined;
1091 p256AddcarryxU64(&x65, &x66, 0x0, x64, x61);
1092 var x67: u64 = undefined;
1093 var x68: u1 = undefined;
1094 p256AddcarryxU64(&x67, &x68, 0x0, x51, x63);
1095 var x69: u64 = undefined;
1096 var x70: u1 = undefined;
1097 p256AddcarryxU64(&x69, &x70, x68, x53, x65);
1098 var x71: u64 = undefined;
1099 var x72: u1 = undefined;
1100 p256AddcarryxU64(&x71, &x72, x70, x55, (@intCast(u64, x66) + x62));
1101 var x73: u64 = undefined;
1102 var x74: u1 = undefined;
1103 p256AddcarryxU64(&x73, &x74, x72, x57, x59);
1104 var x75: u64 = undefined;
1105 var x76: u1 = undefined;
1106 p256AddcarryxU64(&x75, &x76, x74, ((@intCast(u64, x58) + @intCast(u64, x36)) + (@intCast(u64, x50) + x38)), x60);
1107 var x77: u64 = undefined;
1108 var x78: u64 = undefined;
1109 p256MulxU64(&x77, &x78, x2, 0x4fffffffd);
1110 var x79: u64 = undefined;
1111 var x80: u64 = undefined;
1112 p256MulxU64(&x79, &x80, x2, 0xfffffffffffffffe);
1113 var x81: u64 = undefined;
1114 var x82: u64 = undefined;
1115 p256MulxU64(&x81, &x82, x2, 0xfffffffbffffffff);
1116 var x83: u64 = undefined;
1117 var x84: u64 = undefined;
1118 p256MulxU64(&x83, &x84, x2, 0x3);
1119 var x85: u64 = undefined;
1120 var x86: u1 = undefined;
1121 p256AddcarryxU64(&x85, &x86, 0x0, x84, x81);
1122 var x87: u64 = undefined;
1123 var x88: u1 = undefined;
1124 p256AddcarryxU64(&x87, &x88, x86, x82, x79);
1125 var x89: u64 = undefined;
1126 var x90: u1 = undefined;
1127 p256AddcarryxU64(&x89, &x90, x88, x80, x77);
1128 var x91: u64 = undefined;
1129 var x92: u1 = undefined;
1130 p256AddcarryxU64(&x91, &x92, 0x0, x69, x83);
1131 var x93: u64 = undefined;
1132 var x94: u1 = undefined;
1133 p256AddcarryxU64(&x93, &x94, x92, x71, x85);
1134 var x95: u64 = undefined;
1135 var x96: u1 = undefined;
1136 p256AddcarryxU64(&x95, &x96, x94, x73, x87);
1137 var x97: u64 = undefined;
1138 var x98: u1 = undefined;
1139 p256AddcarryxU64(&x97, &x98, x96, x75, x89);
1140 var x99: u64 = undefined;
1141 var x100: u64 = undefined;
1142 p256MulxU64(&x99, &x100, x91, 0xffffffff00000001);
1143 var x101: u64 = undefined;
1144 var x102: u64 = undefined;
1145 p256MulxU64(&x101, &x102, x91, 0xffffffff);
1146 var x103: u64 = undefined;
1147 var x104: u64 = undefined;
1148 p256MulxU64(&x103, &x104, x91, 0xffffffffffffffff);
1149 var x105: u64 = undefined;
1150 var x106: u1 = undefined;
1151 p256AddcarryxU64(&x105, &x106, 0x0, x104, x101);
1152 var x107: u64 = undefined;
1153 var x108: u1 = undefined;
1154 p256AddcarryxU64(&x107, &x108, 0x0, x91, x103);
1155 var x109: u64 = undefined;
1156 var x110: u1 = undefined;
1157 p256AddcarryxU64(&x109, &x110, x108, x93, x105);
1158 var x111: u64 = undefined;
1159 var x112: u1 = undefined;
1160 p256AddcarryxU64(&x111, &x112, x110, x95, (@intCast(u64, x106) + x102));
1161 var x113: u64 = undefined;
1162 var x114: u1 = undefined;
1163 p256AddcarryxU64(&x113, &x114, x112, x97, x99);
1164 var x115: u64 = undefined;
1165 var x116: u1 = undefined;
1166 p256AddcarryxU64(&x115, &x116, x114, ((@intCast(u64, x98) + @intCast(u64, x76)) + (@intCast(u64, x90) + x78)), x100);
1167 var x117: u64 = undefined;
1168 var x118: u64 = undefined;
1169 p256MulxU64(&x117, &x118, x3, 0x4fffffffd);
1170 var x119: u64 = undefined;
1171 var x120: u64 = undefined;
1172 p256MulxU64(&x119, &x120, x3, 0xfffffffffffffffe);
1173 var x121: u64 = undefined;
1174 var x122: u64 = undefined;
1175 p256MulxU64(&x121, &x122, x3, 0xfffffffbffffffff);
1176 var x123: u64 = undefined;
1177 var x124: u64 = undefined;
1178 p256MulxU64(&x123, &x124, x3, 0x3);
1179 var x125: u64 = undefined;
1180 var x126: u1 = undefined;
1181 p256AddcarryxU64(&x125, &x126, 0x0, x124, x121);
1182 var x127: u64 = undefined;
1183 var x128: u1 = undefined;
1184 p256AddcarryxU64(&x127, &x128, x126, x122, x119);
1185 var x129: u64 = undefined;
1186 var x130: u1 = undefined;
1187 p256AddcarryxU64(&x129, &x130, x128, x120, x117);
1188 var x131: u64 = undefined;
1189 var x132: u1 = undefined;
1190 p256AddcarryxU64(&x131, &x132, 0x0, x109, x123);
1191 var x133: u64 = undefined;
1192 var x134: u1 = undefined;
1193 p256AddcarryxU64(&x133, &x134, x132, x111, x125);
1194 var x135: u64 = undefined;
1195 var x136: u1 = undefined;
1196 p256AddcarryxU64(&x135, &x136, x134, x113, x127);
1197 var x137: u64 = undefined;
1198 var x138: u1 = undefined;
1199 p256AddcarryxU64(&x137, &x138, x136, x115, x129);
1200 var x139: u64 = undefined;
1201 var x140: u64 = undefined;
1202 p256MulxU64(&x139, &x140, x131, 0xffffffff00000001);
1203 var x141: u64 = undefined;
1204 var x142: u64 = undefined;
1205 p256MulxU64(&x141, &x142, x131, 0xffffffff);
1206 var x143: u64 = undefined;
1207 var x144: u64 = undefined;
1208 p256MulxU64(&x143, &x144, x131, 0xffffffffffffffff);
1209 var x145: u64 = undefined;
1210 var x146: u1 = undefined;
1211 p256AddcarryxU64(&x145, &x146, 0x0, x144, x141);
1212 var x147: u64 = undefined;
1213 var x148: u1 = undefined;
1214 p256AddcarryxU64(&x147, &x148, 0x0, x131, x143);
1215 var x149: u64 = undefined;
1216 var x150: u1 = undefined;
1217 p256AddcarryxU64(&x149, &x150, x148, x133, x145);
1218 var x151: u64 = undefined;
1219 var x152: u1 = undefined;
1220 p256AddcarryxU64(&x151, &x152, x150, x135, (@intCast(u64, x146) + x142));
1221 var x153: u64 = undefined;
1222 var x154: u1 = undefined;
1223 p256AddcarryxU64(&x153, &x154, x152, x137, x139);
1224 var x155: u64 = undefined;
1225 var x156: u1 = undefined;
1226 p256AddcarryxU64(&x155, &x156, x154, ((@intCast(u64, x138) + @intCast(u64, x116)) + (@intCast(u64, x130) + x118)), x140);
1227 var x157: u64 = undefined;
1228 var x158: u1 = undefined;
1229 p256SubborrowxU64(&x157, &x158, 0x0, x149, 0xffffffffffffffff);
1230 var x159: u64 = undefined;
1231 var x160: u1 = undefined;
1232 p256SubborrowxU64(&x159, &x160, x158, x151, 0xffffffff);
1233 var x161: u64 = undefined;
1234 var x162: u1 = undefined;
1235 p256SubborrowxU64(&x161, &x162, x160, x153, @intCast(u64, 0x0));
1236 var x163: u64 = undefined;
1237 var x164: u1 = undefined;
1238 p256SubborrowxU64(&x163, &x164, x162, x155, 0xffffffff00000001);
1239 var x165: u64 = undefined;
1240 var x166: u1 = undefined;
1241 p256SubborrowxU64(&x165, &x166, x164, @intCast(u64, x156), @intCast(u64, 0x0));
1242 var x167: u64 = undefined;
1243 p256CmovznzU64(&x167, x166, x157, x149);
1244 var x168: u64 = undefined;
1245 p256CmovznzU64(&x168, x166, x159, x151);
1246 var x169: u64 = undefined;
1247 p256CmovznzU64(&x169, x166, x161, x153);
1248 var x170: u64 = undefined;
1249 p256CmovznzU64(&x170, x166, x163, x155);
1250 out1[0] = x167;
1251 out1[1] = x168;
1252 out1[2] = x169;
1253 out1[3] = x170;
1254}
1255
1256/// The function p256Nonzero outputs a single non-zero word if the input is non-zero and zero otherwise.
1257/// Preconditions:
1258/// 0 ≤ eval arg1 < m
1259/// Postconditions:
1260/// out1 = 0 ↔ eval (from_montgomery arg1) mod m = 0
1261///
1262/// Input Bounds:
1263/// arg1: [[0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff]]
1264/// Output Bounds:
1265/// out1: [0x0 ~> 0xffffffffffffffff]
1266pub fn p256Nonzero(out1: *u64, arg1: Limbs) void {
1267 const x1: u64 = ((arg1[0]) | ((arg1[1]) | ((arg1[2]) | (arg1[3]))));
1268 out1.* = x1;
1269}
1270
1271/// The function p256Selectznz is a multi-limb conditional select.
1272/// Postconditions:
1273/// eval out1 = (if arg1 = 0 then eval arg2 else eval arg3)
1274///
1275/// Input Bounds:
1276/// arg1: [0x0 ~> 0x1]
1277/// arg2: [[0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff]]
1278/// arg3: [[0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff]]
1279/// Output Bounds:
1280/// out1: [[0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff]]
1281pub fn p256Selectznz(out1: *Limbs, arg1: u1, arg2: Limbs, arg3: Limbs) void {
1282 var x1: u64 = undefined;
1283 p256CmovznzU64(&x1, arg1, (arg2[0]), (arg3[0]));
1284 var x2: u64 = undefined;
1285 p256CmovznzU64(&x2, arg1, (arg2[1]), (arg3[1]));
1286 var x3: u64 = undefined;
1287 p256CmovznzU64(&x3, arg1, (arg2[2]), (arg3[2]));
1288 var x4: u64 = undefined;
1289 p256CmovznzU64(&x4, arg1, (arg2[3]), (arg3[3]));
1290 out1[0] = x1;
1291 out1[1] = x2;
1292 out1[2] = x3;
1293 out1[3] = x4;
1294}
1295
1296/// The function p256ToBytes serializes a field element NOT in the Montgomery domain to bytes in little-endian order.
1297/// Preconditions:
1298/// 0 ≤ eval arg1 < m
1299/// Postconditions:
1300/// out1 = map (λ x, ⌊((eval arg1 mod m) mod 2^(8 * (x + 1))) / 2^(8 * x)⌋) [0..31]
1301///
1302/// Input Bounds:
1303/// arg1: [[0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff]]
1304/// Output Bounds:
1305/// out1: [[0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff]]
1306pub fn p256ToBytes(out1: *[32]u8, arg1: Limbs) void {
1307 const x1: u64 = (arg1[3]);
1308 const x2: u64 = (arg1[2]);
1309 const x3: u64 = (arg1[1]);
1310 const x4: u64 = (arg1[0]);
1311 const x5: u8 = @intCast(u8, (x4 & @intCast(u64, 0xff)));
1312 const x6: u64 = (x4 >> 8);
1313 const x7: u8 = @intCast(u8, (x6 & @intCast(u64, 0xff)));
1314 const x8: u64 = (x6 >> 8);
1315 const x9: u8 = @intCast(u8, (x8 & @intCast(u64, 0xff)));
1316 const x10: u64 = (x8 >> 8);
1317 const x11: u8 = @intCast(u8, (x10 & @intCast(u64, 0xff)));
1318 const x12: u64 = (x10 >> 8);
1319 const x13: u8 = @intCast(u8, (x12 & @intCast(u64, 0xff)));
1320 const x14: u64 = (x12 >> 8);
1321 const x15: u8 = @intCast(u8, (x14 & @intCast(u64, 0xff)));
1322 const x16: u64 = (x14 >> 8);
1323 const x17: u8 = @intCast(u8, (x16 & @intCast(u64, 0xff)));
1324 const x18: u8 = @intCast(u8, (x16 >> 8));
1325 const x19: u8 = @intCast(u8, (x3 & @intCast(u64, 0xff)));
1326 const x20: u64 = (x3 >> 8);
1327 const x21: u8 = @intCast(u8, (x20 & @intCast(u64, 0xff)));
1328 const x22: u64 = (x20 >> 8);
1329 const x23: u8 = @intCast(u8, (x22 & @intCast(u64, 0xff)));
1330 const x24: u64 = (x22 >> 8);
1331 const x25: u8 = @intCast(u8, (x24 & @intCast(u64, 0xff)));
1332 const x26: u64 = (x24 >> 8);
1333 const x27: u8 = @intCast(u8, (x26 & @intCast(u64, 0xff)));
1334 const x28: u64 = (x26 >> 8);
1335 const x29: u8 = @intCast(u8, (x28 & @intCast(u64, 0xff)));
1336 const x30: u64 = (x28 >> 8);
1337 const x31: u8 = @intCast(u8, (x30 & @intCast(u64, 0xff)));
1338 const x32: u8 = @intCast(u8, (x30 >> 8));
1339 const x33: u8 = @intCast(u8, (x2 & @intCast(u64, 0xff)));
1340 const x34: u64 = (x2 >> 8);
1341 const x35: u8 = @intCast(u8, (x34 & @intCast(u64, 0xff)));
1342 const x36: u64 = (x34 >> 8);
1343 const x37: u8 = @intCast(u8, (x36 & @intCast(u64, 0xff)));
1344 const x38: u64 = (x36 >> 8);
1345 const x39: u8 = @intCast(u8, (x38 & @intCast(u64, 0xff)));
1346 const x40: u64 = (x38 >> 8);
1347 const x41: u8 = @intCast(u8, (x40 & @intCast(u64, 0xff)));
1348 const x42: u64 = (x40 >> 8);
1349 const x43: u8 = @intCast(u8, (x42 & @intCast(u64, 0xff)));
1350 const x44: u64 = (x42 >> 8);
1351 const x45: u8 = @intCast(u8, (x44 & @intCast(u64, 0xff)));
1352 const x46: u8 = @intCast(u8, (x44 >> 8));
1353 const x47: u8 = @intCast(u8, (x1 & @intCast(u64, 0xff)));
1354 const x48: u64 = (x1 >> 8);
1355 const x49: u8 = @intCast(u8, (x48 & @intCast(u64, 0xff)));
1356 const x50: u64 = (x48 >> 8);
1357 const x51: u8 = @intCast(u8, (x50 & @intCast(u64, 0xff)));
1358 const x52: u64 = (x50 >> 8);
1359 const x53: u8 = @intCast(u8, (x52 & @intCast(u64, 0xff)));
1360 const x54: u64 = (x52 >> 8);
1361 const x55: u8 = @intCast(u8, (x54 & @intCast(u64, 0xff)));
1362 const x56: u64 = (x54 >> 8);
1363 const x57: u8 = @intCast(u8, (x56 & @intCast(u64, 0xff)));
1364 const x58: u64 = (x56 >> 8);
1365 const x59: u8 = @intCast(u8, (x58 & @intCast(u64, 0xff)));
1366 const x60: u8 = @intCast(u8, (x58 >> 8));
1367 out1[0] = x5;
1368 out1[1] = x7;
1369 out1[2] = x9;
1370 out1[3] = x11;
1371 out1[4] = x13;
1372 out1[5] = x15;
1373 out1[6] = x17;
1374 out1[7] = x18;
1375 out1[8] = x19;
1376 out1[9] = x21;
1377 out1[10] = x23;
1378 out1[11] = x25;
1379 out1[12] = x27;
1380 out1[13] = x29;
1381 out1[14] = x31;
1382 out1[15] = x32;
1383 out1[16] = x33;
1384 out1[17] = x35;
1385 out1[18] = x37;
1386 out1[19] = x39;
1387 out1[20] = x41;
1388 out1[21] = x43;
1389 out1[22] = x45;
1390 out1[23] = x46;
1391 out1[24] = x47;
1392 out1[25] = x49;
1393 out1[26] = x51;
1394 out1[27] = x53;
1395 out1[28] = x55;
1396 out1[29] = x57;
1397 out1[30] = x59;
1398 out1[31] = x60;
1399}
1400
1401/// The function p256FromBytes deserializes a field element NOT in the Montgomery domain from bytes in little-endian order.
1402/// Preconditions:
1403/// 0 ≤ bytes_eval arg1 < m
1404/// Postconditions:
1405/// eval out1 mod m = bytes_eval arg1 mod m
1406/// 0 ≤ eval out1 < m
1407///
1408/// Input Bounds:
1409/// arg1: [[0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff], [0x0 ~> 0xff]]
1410/// Output Bounds:
1411/// out1: [[0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff]]
1412pub fn p256FromBytes(out1: *Limbs, arg1: [32]u8) void {
1413 const x1: u64 = (@intCast(u64, (arg1[31])) << 56);
1414 const x2: u64 = (@intCast(u64, (arg1[30])) << 48);
1415 const x3: u64 = (@intCast(u64, (arg1[29])) << 40);
1416 const x4: u64 = (@intCast(u64, (arg1[28])) << 32);
1417 const x5: u64 = (@intCast(u64, (arg1[27])) << 24);
1418 const x6: u64 = (@intCast(u64, (arg1[26])) << 16);
1419 const x7: u64 = (@intCast(u64, (arg1[25])) << 8);
1420 const x8: u8 = (arg1[24]);
1421 const x9: u64 = (@intCast(u64, (arg1[23])) << 56);
1422 const x10: u64 = (@intCast(u64, (arg1[22])) << 48);
1423 const x11: u64 = (@intCast(u64, (arg1[21])) << 40);
1424 const x12: u64 = (@intCast(u64, (arg1[20])) << 32);
1425 const x13: u64 = (@intCast(u64, (arg1[19])) << 24);
1426 const x14: u64 = (@intCast(u64, (arg1[18])) << 16);
1427 const x15: u64 = (@intCast(u64, (arg1[17])) << 8);
1428 const x16: u8 = (arg1[16]);
1429 const x17: u64 = (@intCast(u64, (arg1[15])) << 56);
1430 const x18: u64 = (@intCast(u64, (arg1[14])) << 48);
1431 const x19: u64 = (@intCast(u64, (arg1[13])) << 40);
1432 const x20: u64 = (@intCast(u64, (arg1[12])) << 32);
1433 const x21: u64 = (@intCast(u64, (arg1[11])) << 24);
1434 const x22: u64 = (@intCast(u64, (arg1[10])) << 16);
1435 const x23: u64 = (@intCast(u64, (arg1[9])) << 8);
1436 const x24: u8 = (arg1[8]);
1437 const x25: u64 = (@intCast(u64, (arg1[7])) << 56);
1438 const x26: u64 = (@intCast(u64, (arg1[6])) << 48);
1439 const x27: u64 = (@intCast(u64, (arg1[5])) << 40);
1440 const x28: u64 = (@intCast(u64, (arg1[4])) << 32);
1441 const x29: u64 = (@intCast(u64, (arg1[3])) << 24);
1442 const x30: u64 = (@intCast(u64, (arg1[2])) << 16);
1443 const x31: u64 = (@intCast(u64, (arg1[1])) << 8);
1444 const x32: u8 = (arg1[0]);
1445 const x33: u64 = (x31 + @intCast(u64, x32));
1446 const x34: u64 = (x30 + x33);
1447 const x35: u64 = (x29 + x34);
1448 const x36: u64 = (x28 + x35);
1449 const x37: u64 = (x27 + x36);
1450 const x38: u64 = (x26 + x37);
1451 const x39: u64 = (x25 + x38);
1452 const x40: u64 = (x23 + @intCast(u64, x24));
1453 const x41: u64 = (x22 + x40);
1454 const x42: u64 = (x21 + x41);
1455 const x43: u64 = (x20 + x42);
1456 const x44: u64 = (x19 + x43);
1457 const x45: u64 = (x18 + x44);
1458 const x46: u64 = (x17 + x45);
1459 const x47: u64 = (x15 + @intCast(u64, x16));
1460 const x48: u64 = (x14 + x47);
1461 const x49: u64 = (x13 + x48);
1462 const x50: u64 = (x12 + x49);
1463 const x51: u64 = (x11 + x50);
1464 const x52: u64 = (x10 + x51);
1465 const x53: u64 = (x9 + x52);
1466 const x54: u64 = (x7 + @intCast(u64, x8));
1467 const x55: u64 = (x6 + x54);
1468 const x56: u64 = (x5 + x55);
1469 const x57: u64 = (x4 + x56);
1470 const x58: u64 = (x3 + x57);
1471 const x59: u64 = (x2 + x58);
1472 const x60: u64 = (x1 + x59);
1473 out1[0] = x39;
1474 out1[1] = x46;
1475 out1[2] = x53;
1476 out1[3] = x60;
1477}
1478
1479/// The function p256SetOne returns the field element one in the Montgomery domain.
1480/// Postconditions:
1481/// eval (from_montgomery out1) mod m = 1 mod m
1482/// 0 ≤ eval out1 < m
1483///
1484/// Input Bounds:
1485/// Output Bounds:
1486/// out1: [[0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff]]
1487pub fn p256SetOne(out1: *Limbs) void {
1488 out1[0] = @intCast(u64, 0x1);
1489 out1[1] = 0xffffffff00000000;
1490 out1[2] = 0xffffffffffffffff;
1491 out1[3] = 0xfffffffe;
1492}
1493
1494/// The function p256Msat returns the saturated representation of the prime modulus.
1495/// Postconditions:
1496/// twos_complement_eval out1 = m
1497/// 0 ≤ eval out1 < m
1498///
1499/// Input Bounds:
1500/// Output Bounds:
1501/// out1: [[0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff]]
1502pub fn p256Msat(out1: *[5]u64) void {
1503 out1[0] = 0xffffffffffffffff;
1504 out1[1] = 0xffffffff;
1505 out1[2] = @intCast(u64, 0x0);
1506 out1[3] = 0xffffffff00000001;
1507 out1[4] = @intCast(u64, 0x0);
1508}
1509
1510/// The function p256Divstep computes a divstep.
1511/// Preconditions:
1512/// 0 ≤ eval arg4 < m
1513/// 0 ≤ eval arg5 < m
1514/// Postconditions:
1515/// out1 = (if 0 < arg1 ∧ (twos_complement_eval arg3) is odd then 1 - arg1 else 1 + arg1)
1516/// twos_complement_eval out2 = (if 0 < arg1 ∧ (twos_complement_eval arg3) is odd then twos_complement_eval arg3 else twos_complement_eval arg2)
1517/// twos_complement_eval out3 = (if 0 < arg1 ∧ (twos_complement_eval arg3) is odd then ⌊(twos_complement_eval arg3 - twos_complement_eval arg2) / 2⌋ else ⌊(twos_complement_eval arg3 + (twos_complement_eval arg3 mod 2) * twos_complement_eval arg2) / 2⌋)
1518/// eval (from_montgomery out4) mod m = (if 0 < arg1 ∧ (twos_complement_eval arg3) is odd then (2 * eval (from_montgomery arg5)) mod m else (2 * eval (from_montgomery arg4)) mod m)
1519/// eval (from_montgomery out5) mod m = (if 0 < arg1 ∧ (twos_complement_eval arg3) is odd then (eval (from_montgomery arg4) - eval (from_montgomery arg4)) mod m else (eval (from_montgomery arg5) + (twos_complement_eval arg3 mod 2) * eval (from_montgomery arg4)) mod m)
1520/// 0 ≤ eval out5 < m
1521/// 0 ≤ eval out5 < m
1522/// 0 ≤ eval out2 < m
1523/// 0 ≤ eval out3 < m
1524///
1525/// Input Bounds:
1526/// arg1: [0x0 ~> 0xffffffffffffffff]
1527/// arg2: [[0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff]]
1528/// arg3: [[0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff]]
1529/// arg4: [[0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff]]
1530/// arg5: [[0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff]]
1531/// Output Bounds:
1532/// out1: [0x0 ~> 0xffffffffffffffff]
1533/// out2: [[0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff]]
1534/// out3: [[0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff]]
1535/// out4: [[0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff]]
1536/// out5: [[0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff]]
1537pub fn p256Divstep(out1: *u64, out2: *[5]u64, out3: *[5]u64, out4: *Limbs, out5: *Limbs, arg1: u64, arg2: [5]u64, arg3: [5]u64, arg4: Limbs, arg5: Limbs) void {
1538 var x1: u64 = undefined;
1539 var x2: u1 = undefined;
1540 p256AddcarryxU64(&x1, &x2, 0x0, (~arg1), @intCast(u64, 0x1));
1541 const x3: u1 = (@intCast(u1, (x1 >> 63)) & @intCast(u1, ((arg3[0]) & @intCast(u64, 0x1))));
1542 var x4: u64 = undefined;
1543 var x5: u1 = undefined;
1544 p256AddcarryxU64(&x4, &x5, 0x0, (~arg1), @intCast(u64, 0x1));
1545 var x6: u64 = undefined;
1546 p256CmovznzU64(&x6, x3, arg1, x4);
1547 var x7: u64 = undefined;
1548 p256CmovznzU64(&x7, x3, (arg2[0]), (arg3[0]));
1549 var x8: u64 = undefined;
1550 p256CmovznzU64(&x8, x3, (arg2[1]), (arg3[1]));
1551 var x9: u64 = undefined;
1552 p256CmovznzU64(&x9, x3, (arg2[2]), (arg3[2]));
1553 var x10: u64 = undefined;
1554 p256CmovznzU64(&x10, x3, (arg2[3]), (arg3[3]));
1555 var x11: u64 = undefined;
1556 p256CmovznzU64(&x11, x3, (arg2[4]), (arg3[4]));
1557 var x12: u64 = undefined;
1558 var x13: u1 = undefined;
1559 p256AddcarryxU64(&x12, &x13, 0x0, @intCast(u64, 0x1), (~(arg2[0])));
1560 var x14: u64 = undefined;
1561 var x15: u1 = undefined;
1562 p256AddcarryxU64(&x14, &x15, x13, @intCast(u64, 0x0), (~(arg2[1])));
1563 var x16: u64 = undefined;
1564 var x17: u1 = undefined;
1565 p256AddcarryxU64(&x16, &x17, x15, @intCast(u64, 0x0), (~(arg2[2])));
1566 var x18: u64 = undefined;
1567 var x19: u1 = undefined;
1568 p256AddcarryxU64(&x18, &x19, x17, @intCast(u64, 0x0), (~(arg2[3])));
1569 var x20: u64 = undefined;
1570 var x21: u1 = undefined;
1571 p256AddcarryxU64(&x20, &x21, x19, @intCast(u64, 0x0), (~(arg2[4])));
1572 var x22: u64 = undefined;
1573 p256CmovznzU64(&x22, x3, (arg3[0]), x12);
1574 var x23: u64 = undefined;
1575 p256CmovznzU64(&x23, x3, (arg3[1]), x14);
1576 var x24: u64 = undefined;
1577 p256CmovznzU64(&x24, x3, (arg3[2]), x16);
1578 var x25: u64 = undefined;
1579 p256CmovznzU64(&x25, x3, (arg3[3]), x18);
1580 var x26: u64 = undefined;
1581 p256CmovznzU64(&x26, x3, (arg3[4]), x20);
1582 var x27: u64 = undefined;
1583 p256CmovznzU64(&x27, x3, (arg4[0]), (arg5[0]));
1584 var x28: u64 = undefined;
1585 p256CmovznzU64(&x28, x3, (arg4[1]), (arg5[1]));
1586 var x29: u64 = undefined;
1587 p256CmovznzU64(&x29, x3, (arg4[2]), (arg5[2]));
1588 var x30: u64 = undefined;
1589 p256CmovznzU64(&x30, x3, (arg4[3]), (arg5[3]));
1590 var x31: u64 = undefined;
1591 var x32: u1 = undefined;
1592 p256AddcarryxU64(&x31, &x32, 0x0, x27, x27);
1593 var x33: u64 = undefined;
1594 var x34: u1 = undefined;
1595 p256AddcarryxU64(&x33, &x34, x32, x28, x28);
1596 var x35: u64 = undefined;
1597 var x36: u1 = undefined;
1598 p256AddcarryxU64(&x35, &x36, x34, x29, x29);
1599 var x37: u64 = undefined;
1600 var x38: u1 = undefined;
1601 p256AddcarryxU64(&x37, &x38, x36, x30, x30);
1602 var x39: u64 = undefined;
1603 var x40: u1 = undefined;
1604 p256SubborrowxU64(&x39, &x40, 0x0, x31, 0xffffffffffffffff);
1605 var x41: u64 = undefined;
1606 var x42: u1 = undefined;
1607 p256SubborrowxU64(&x41, &x42, x40, x33, 0xffffffff);
1608 var x43: u64 = undefined;
1609 var x44: u1 = undefined;
1610 p256SubborrowxU64(&x43, &x44, x42, x35, @intCast(u64, 0x0));
1611 var x45: u64 = undefined;
1612 var x46: u1 = undefined;
1613 p256SubborrowxU64(&x45, &x46, x44, x37, 0xffffffff00000001);
1614 var x47: u64 = undefined;
1615 var x48: u1 = undefined;
1616 p256SubborrowxU64(&x47, &x48, x46, @intCast(u64, x38), @intCast(u64, 0x0));
1617 const x49: u64 = (arg4[3]);
1618 const x50: u64 = (arg4[2]);
1619 const x51: u64 = (arg4[1]);
1620 const x52: u64 = (arg4[0]);
1621 var x53: u64 = undefined;
1622 var x54: u1 = undefined;
1623 p256SubborrowxU64(&x53, &x54, 0x0, @intCast(u64, 0x0), x52);
1624 var x55: u64 = undefined;
1625 var x56: u1 = undefined;
1626 p256SubborrowxU64(&x55, &x56, x54, @intCast(u64, 0x0), x51);
1627 var x57: u64 = undefined;
1628 var x58: u1 = undefined;
1629 p256SubborrowxU64(&x57, &x58, x56, @intCast(u64, 0x0), x50);
1630 var x59: u64 = undefined;
1631 var x60: u1 = undefined;
1632 p256SubborrowxU64(&x59, &x60, x58, @intCast(u64, 0x0), x49);
1633 var x61: u64 = undefined;
1634 p256CmovznzU64(&x61, x60, @intCast(u64, 0x0), 0xffffffffffffffff);
1635 var x62: u64 = undefined;
1636 var x63: u1 = undefined;
1637 p256AddcarryxU64(&x62, &x63, 0x0, x53, x61);
1638 var x64: u64 = undefined;
1639 var x65: u1 = undefined;
1640 p256AddcarryxU64(&x64, &x65, x63, x55, (x61 & 0xffffffff));
1641 var x66: u64 = undefined;
1642 var x67: u1 = undefined;
1643 p256AddcarryxU64(&x66, &x67, x65, x57, @intCast(u64, 0x0));
1644 var x68: u64 = undefined;
1645 var x69: u1 = undefined;
1646 p256AddcarryxU64(&x68, &x69, x67, x59, (x61 & 0xffffffff00000001));
1647 var x70: u64 = undefined;
1648 p256CmovznzU64(&x70, x3, (arg5[0]), x62);
1649 var x71: u64 = undefined;
1650 p256CmovznzU64(&x71, x3, (arg5[1]), x64);
1651 var x72: u64 = undefined;
1652 p256CmovznzU64(&x72, x3, (arg5[2]), x66);
1653 var x73: u64 = undefined;
1654 p256CmovznzU64(&x73, x3, (arg5[3]), x68);
1655 const x74: u1 = @intCast(u1, (x22 & @intCast(u64, 0x1)));
1656 var x75: u64 = undefined;
1657 p256CmovznzU64(&x75, x74, @intCast(u64, 0x0), x7);
1658 var x76: u64 = undefined;
1659 p256CmovznzU64(&x76, x74, @intCast(u64, 0x0), x8);
1660 var x77: u64 = undefined;
1661 p256CmovznzU64(&x77, x74, @intCast(u64, 0x0), x9);
1662 var x78: u64 = undefined;
1663 p256CmovznzU64(&x78, x74, @intCast(u64, 0x0), x10);
1664 var x79: u64 = undefined;
1665 p256CmovznzU64(&x79, x74, @intCast(u64, 0x0), x11);
1666 var x80: u64 = undefined;
1667 var x81: u1 = undefined;
1668 p256AddcarryxU64(&x80, &x81, 0x0, x22, x75);
1669 var x82: u64 = undefined;
1670 var x83: u1 = undefined;
1671 p256AddcarryxU64(&x82, &x83, x81, x23, x76);
1672 var x84: u64 = undefined;
1673 var x85: u1 = undefined;
1674 p256AddcarryxU64(&x84, &x85, x83, x24, x77);
1675 var x86: u64 = undefined;
1676 var x87: u1 = undefined;
1677 p256AddcarryxU64(&x86, &x87, x85, x25, x78);
1678 var x88: u64 = undefined;
1679 var x89: u1 = undefined;
1680 p256AddcarryxU64(&x88, &x89, x87, x26, x79);
1681 var x90: u64 = undefined;
1682 p256CmovznzU64(&x90, x74, @intCast(u64, 0x0), x27);
1683 var x91: u64 = undefined;
1684 p256CmovznzU64(&x91, x74, @intCast(u64, 0x0), x28);
1685 var x92: u64 = undefined;
1686 p256CmovznzU64(&x92, x74, @intCast(u64, 0x0), x29);
1687 var x93: u64 = undefined;
1688 p256CmovznzU64(&x93, x74, @intCast(u64, 0x0), x30);
1689 var x94: u64 = undefined;
1690 var x95: u1 = undefined;
1691 p256AddcarryxU64(&x94, &x95, 0x0, x70, x90);
1692 var x96: u64 = undefined;
1693 var x97: u1 = undefined;
1694 p256AddcarryxU64(&x96, &x97, x95, x71, x91);
1695 var x98: u64 = undefined;
1696 var x99: u1 = undefined;
1697 p256AddcarryxU64(&x98, &x99, x97, x72, x92);
1698 var x100: u64 = undefined;
1699 var x101: u1 = undefined;
1700 p256AddcarryxU64(&x100, &x101, x99, x73, x93);
1701 var x102: u64 = undefined;
1702 var x103: u1 = undefined;
1703 p256SubborrowxU64(&x102, &x103, 0x0, x94, 0xffffffffffffffff);
1704 var x104: u64 = undefined;
1705 var x105: u1 = undefined;
1706 p256SubborrowxU64(&x104, &x105, x103, x96, 0xffffffff);
1707 var x106: u64 = undefined;
1708 var x107: u1 = undefined;
1709 p256SubborrowxU64(&x106, &x107, x105, x98, @intCast(u64, 0x0));
1710 var x108: u64 = undefined;
1711 var x109: u1 = undefined;
1712 p256SubborrowxU64(&x108, &x109, x107, x100, 0xffffffff00000001);
1713 var x110: u64 = undefined;
1714 var x111: u1 = undefined;
1715 p256SubborrowxU64(&x110, &x111, x109, @intCast(u64, x101), @intCast(u64, 0x0));
1716 var x112: u64 = undefined;
1717 var x113: u1 = undefined;
1718 p256AddcarryxU64(&x112, &x113, 0x0, x6, @intCast(u64, 0x1));
1719 const x114: u64 = ((x80 >> 1) | ((x82 << 63) & 0xffffffffffffffff));
1720 const x115: u64 = ((x82 >> 1) | ((x84 << 63) & 0xffffffffffffffff));
1721 const x116: u64 = ((x84 >> 1) | ((x86 << 63) & 0xffffffffffffffff));
1722 const x117: u64 = ((x86 >> 1) | ((x88 << 63) & 0xffffffffffffffff));
1723 const x118: u64 = ((x88 & 0x8000000000000000) | (x88 >> 1));
1724 var x119: u64 = undefined;
1725 p256CmovznzU64(&x119, x48, x39, x31);
1726 var x120: u64 = undefined;
1727 p256CmovznzU64(&x120, x48, x41, x33);
1728 var x121: u64 = undefined;
1729 p256CmovznzU64(&x121, x48, x43, x35);
1730 var x122: u64 = undefined;
1731 p256CmovznzU64(&x122, x48, x45, x37);
1732 var x123: u64 = undefined;
1733 p256CmovznzU64(&x123, x111, x102, x94);
1734 var x124: u64 = undefined;
1735 p256CmovznzU64(&x124, x111, x104, x96);
1736 var x125: u64 = undefined;
1737 p256CmovznzU64(&x125, x111, x106, x98);
1738 var x126: u64 = undefined;
1739 p256CmovznzU64(&x126, x111, x108, x100);
1740 out1.* = x112;
1741 out2[0] = x7;
1742 out2[1] = x8;
1743 out2[2] = x9;
1744 out2[3] = x10;
1745 out2[4] = x11;
1746 out3[0] = x114;
1747 out3[1] = x115;
1748 out3[2] = x116;
1749 out3[3] = x117;
1750 out3[4] = x118;
1751 out4[0] = x119;
1752 out4[1] = x120;
1753 out4[2] = x121;
1754 out4[3] = x122;
1755 out5[0] = x123;
1756 out5[1] = x124;
1757 out5[2] = x125;
1758 out5[3] = x126;
1759}
1760
1761/// The function p256DivstepPrecomp returns the precomputed value for Bernstein-Yang-inversion (in montgomery form).
1762/// Postconditions:
1763/// eval (from_montgomery out1) = ⌊(m - 1) / 2⌋^(if (log2 m) + 1 < 46 then ⌊(49 * ((log2 m) + 1) + 80) / 17⌋ else ⌊(49 * ((log2 m) + 1) + 57) / 17⌋)
1764/// 0 ≤ eval out1 < m
1765///
1766/// Input Bounds:
1767/// Output Bounds:
1768/// out1: [[0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff], [0x0 ~> 0xffffffffffffffff]]
1769pub fn p256DivstepPrecomp(out1: *Limbs) void {
1770 out1[0] = 0x67ffffffb8000000;
1771 out1[1] = 0xc000000038000000;
1772 out1[2] = 0xd80000007fffffff;
1773 out1[3] = 0x2fffffffffffffff;
1774}
lib/std/crypto/pcurves/p256/scalar.zig created+219
......@@ -0,0 +1,219 @@
1// SPDX-License-Identifier: MIT
2// Copyright (c) 2015-2021 Zig Contributors
3// This file is part of [zig](https://ziglang.org/), which is MIT licensed.
4// The MIT license requires this copyright notice to be included in all copies
5// and substantial portions of the software.
6
7const std = @import("std");
8const builtin = std.builtin;
9const crypto = std.crypto;
10const debug = std.debug;
11const math = std.math;
12const mem = std.mem;
13
14const Fe = @import("field.zig").Fe;
15
16const NonCanonicalError = std.crypto.errors.NonCanonicalError;
17const NotSquareError = std.crypto.errors.NotSquareError;
18
19/// A compressed scalar, in canonical form.
20pub const CompressedScalar = [32]u8;
21
22/// Reject a scalar whose encoding is not canonical.
23pub fn rejectNonCanonical(s: CompressedScalar) NonCanonicalError!void {
24 return Fe.rejectNonCanonical(s);
25}
26
27/// Reduce a 48-bytes scalar to the field size.
28pub fn reduce48(s: [48]u8) CompressedScalar {
29 return Scalar.fromBytes48(s).toBytes();
30}
31
32/// Reduce a 64-bytes scalar to the field size.
33pub fn reduce64(s: [64]u8) CompressedScalar {
34 return ScalarDouble.fromBytes64(s).toBytes();
35}
36
37/// Return a*b (mod L)
38pub fn mul(a: CompressedScalar, b: CompressedScalar, endian: builtin.Endian) NonCanonicalError!CompressedScalar {
39 return (try Scalar.fromBytes(a, endian)).mul(try Scalar.fromBytes(b, endian)).toBytes(endian);
40}
41
42/// Return a*b+c (mod L)
43pub fn mulAdd(a: CompressedScalar, b: CompressedScalar, c: CompressedScalar, endian: builtin.Endian) NonCanonicalError!CompressedScalar {
44 return (try Scalar.fromBytes(a, endian)).mul(try Scalar.fromBytes(b, endian)).add(try Scalar.fromBytes(c, endian)).toBytes(endian);
45}
46
47/// Return a+b (mod L)
48pub fn add(a: CompressedScalar, b: CompressedScalar, endian: builtin.Endian) NonCanonicalError!CompressedScalar {
49 return (try Scalar.fromBytes(a, endian)).add(try Scalar.fromBytes(b, endian)).toBytes(endian);
50}
51
52/// Return -s (mod L)
53pub fn neg(s: CompressedScalar, endian: builtin.Endian) NonCanonicalError!CompressedScalar {
54 return (try Scalar.fromBytes(a, endian)).neg().toBytes(endian);
55}
56
57/// Return (a-b) (mod L)
58pub fn sub(a: CompressedScalar, b: CompressedScalar, endian: builtin.Endian) NonCanonicalError!CompressedScalar {
59 return (try Scalar.fromBytes(a, endian)).sub(try Scalar.fromBytes(b.endian)).toBytes(endian);
60}
61
62/// Return a random scalar
63pub fn random(endian: builtin.Endian) CompressedScalar {
64 return Scalar.random().toBytes(endian);
65}
66
67/// A scalar in unpacked representation.
68pub const Scalar = struct {
69 fe: Fe,
70
71 /// Zero.
72 pub const zero = Scalar{ .fe = Fe.zero };
73
74 /// One.
75 pub const one = Scalar{ .fe = Fe.one };
76
77 /// Unpack a serialized representation of a scalar.
78 pub fn fromBytes(s: CompressedScalar, endian: builtin.Endian) NonCanonicalError!Scalar {
79 return Scalar{ .fe = try Fe.fromBytes(s, endian) };
80 }
81
82 /// Reduce a 384 bit input to the field size.
83 pub fn fromBytes48(s: [48]u8, endian: builtin.Endian) Scalar {
84 const t = ScalarDouble.fromBytes(384, s, endian);
85 return t.reduce(384);
86 }
87
88 /// Reduce a 512 bit input to the field size.
89 pub fn fromBytes64(s: [64]u8, endian: builtin.Endian) Scalar {
90 const t = ScalarDouble.fromBytes(512, s, endian);
91 return t.reduce(512);
92 }
93
94 /// Pack a scalar into bytes.
95 pub fn toBytes(n: Scalar, endian: builtin.Endian) CompressedScalar {
96 return n.fe.toBytes(endian);
97 }
98
99 /// Return true if the scalar is zero..
100 pub fn isZero(n: Scalar) bool {
101 return n.fe.isZero();
102 }
103
104 /// Return true if a and b are equivalent.
105 pub fn equivalent(a: Scalar, b: Scalar) bool {
106 return a.fe.equivalent(b.fe);
107 }
108
109 /// Compute x+y (mod L)
110 pub fn add(x: Scalar, y: Scalar) Scalar {
111 return Scalar{ .fe = x.fe().add(y.fe) };
112 }
113
114 /// Compute x-y (mod L)
115 pub fn sub(x: Scalar, y: Scalar) Scalar {
116 return Scalar{ .fe = x.fe().sub(y.fe) };
117 }
118
119 /// Compute 2n (mod L)
120 pub fn dbl(n: Scalar) Scalar {
121 return Scalar{ .fe = n.fe.dbl() };
122 }
123
124 /// Compute x*y (mod L)
125 pub fn mul(x: Scalar, y: Scalar) Scalar {
126 return Scalar{ .fe = x.fe().mul(y.fe) };
127 }
128
129 /// Compute x^2 (mod L)
130 pub fn sq(n: Scalar) Scalar {
131 return Scalar{ .fe = n.fe.sq() };
132 }
133
134 /// Compute x^n (mod L)
135 pub fn pow(a: Scalar, comptime T: type, comptime n: T) Scalar {
136 return Scalar{ .fe = a.fe.pow(n) };
137 }
138
139 /// Compute -x (mod L)
140 pub fn neg(n: Scalar) Scalar {
141 return Scalar{ .fe = n.fe.neg() };
142 }
143
144 /// Compute x^-1 (mod L)
145 pub fn invert(n: Scalar) Scalar {
146 return Scalar{ .fe = n.fe.invert() };
147 }
148
149 /// Return true if n is a quadratic residue mod L.
150 pub fn isSquare(n: Scalar) Scalar {
151 return n.fe.isSquare();
152 }
153
154 /// Return the square root of L, or NotSquare if there isn't any solutions.
155 pub fn sqrt(n: Scalar) NotSquareError!Scalar {
156 return Scalar{ .fe = try n.fe.sqrt() };
157 }
158
159 /// Return a random scalar < L.
160 pub fn random() Scalar {
161 var s: [48]u8 = undefined;
162 while (true) {
163 crypto.random.bytes(&s);
164 const n = Scalar.fromBytes48(s, .Little);
165 if (!n.isZero()) {
166 return n;
167 }
168 }
169 }
170};
171
172const ScalarDouble = struct {
173 x1: Fe,
174 x2: Fe,
175 x3: Fe,
176
177 fn fromBytes(comptime bits: usize, s_: [bits / 8]u8, endian: builtin.Endian) ScalarDouble {
178 debug.assert(bits > 0 and bits <= 512 and bits >= Fe.saturated_bits and bits <= Fe.saturated_bits * 3);
179
180 var s = s_;
181 if (endian == .Big) {
182 for (s_) |x, i| s[s.len - 1 - i] = x;
183 }
184 var t = ScalarDouble{ .x1 = undefined, .x2 = Fe.zero, .x3 = Fe.zero };
185 {
186 var b = [_]u8{0} ** 32;
187 const len = math.min(s.len, 24);
188 mem.copy(u8, b[0..len], s[0..len]);
189 t.x1 = Fe.fromBytes(b, .Little) catch unreachable;
190 }
191 if (s_.len >= 24) {
192 var b = [_]u8{0} ** 32;
193 const len = math.min(s.len - 24, 24);
194 mem.copy(u8, b[0..len], s[24..][0..len]);
195 t.x2 = Fe.fromBytes(b, .Little) catch unreachable;
196 }
197 if (s_.len >= 48) {
198 var b = [_]u8{0} ** 32;
199 const len = s.len - 48;
200 mem.copy(u8, b[0..len], s[48..][0..len]);
201 t.x3 = Fe.fromBytes(b, .Little) catch unreachable;
202 }
203 return t;
204 }
205
206 fn reduce(expanded: ScalarDouble, comptime bits: usize) Scalar {
207 debug.assert(bits > 0 and bits <= Fe.saturated_bits * 3 and bits <= 512);
208 var fe = expanded.x1;
209 if (bits >= 192) {
210 const st1 = Fe.fromInt(1 << 192) catch unreachable;
211 fe = fe.add(expanded.x2.mul(st1));
212 if (bits >= 384) {
213 const st2 = st1.sq();
214 fe = fe.add(expanded.x3.mul(st2));
215 }
216 }
217 return Scalar{ .fe = fe };
218 }
219};
lib/std/crypto/pcurves/tests.zig created+103
......@@ -0,0 +1,103 @@
1// SPDX-License-Identifier: MIT
2// Copyright (c) 2015-2021 Zig Contributors
3// This file is part of [zig](https://ziglang.org/), which is MIT licensed.
4// The MIT license requires this copyright notice to be included in all copies
5// and substantial portions of the software.
6
7const std = @import("std");
8const fmt = std.fmt;
9const testing = std.testing;
10
11const P256 = @import("p256.zig").P256;
12
13test "p256 ECDH key exchange" {
14 const dha = P256.scalar.random(.Little);
15 const dhb = P256.scalar.random(.Little);
16 const dhA = try P256.basePoint.mul(dha, .Little);
17 const dhB = try P256.basePoint.mul(dhb, .Little);
18 const shareda = try dhA.mul(dhb, .Little);
19 const sharedb = try dhB.mul(dha, .Little);
20 testing.expect(shareda.equivalent(sharedb));
21}
22
23test "p256 point from affine coordinates" {
24 const xh = "6B17D1F2E12C4247F8BCE6E563A440F277037D812DEB33A0F4A13945D898C296";
25 const yh = "4FE342E2FE1A7F9B8EE7EB4A7C0F9E162BCE33576B315ECECBB6406837BF51F5";
26 var xs: [32]u8 = undefined;
27 _ = try fmt.hexToBytes(&xs, xh);
28 var ys: [32]u8 = undefined;
29 _ = try fmt.hexToBytes(&ys, yh);
30 var p = try P256.fromSerializedAffineCoordinates(xs, ys, .Big);
31 testing.expect(p.equivalent(P256.basePoint));
32}
33
34test "p256 test vectors" {
35 const expected = [_][]const u8{
36 "0000000000000000000000000000000000000000000000000000000000000000",
37 "6b17d1f2e12c4247f8bce6e563a440f277037d812deb33a0f4a13945d898c296",
38 "7cf27b188d034f7e8a52380304b51ac3c08969e277f21b35a60b48fc47669978",
39 "5ecbe4d1a6330a44c8f7ef951d4bf165e6c6b721efada985fb41661bc6e7fd6c",
40 "e2534a3532d08fbba02dde659ee62bd0031fe2db785596ef509302446b030852",
41 "51590b7a515140d2d784c85608668fdfef8c82fd1f5be52421554a0dc3d033ed",
42 "b01a172a76a4602c92d3242cb897dde3024c740debb215b4c6b0aae93c2291a9",
43 "8e533b6fa0bf7b4625bb30667c01fb607ef9f8b8a80fef5b300628703187b2a3",
44 "62d9779dbee9b0534042742d3ab54cadc1d238980fce97dbb4dd9dc1db6fb393",
45 "ea68d7b6fedf0b71878938d51d71f8729e0acb8c2c6df8b3d79e8a4b90949ee0",
46 };
47 var p = P256.identityElement;
48 for (expected) |xh| {
49 const x = p.affineCoordinates().x;
50 p = p.add(P256.basePoint);
51 var xs: [32]u8 = undefined;
52 _ = try fmt.hexToBytes(&xs, xh);
53 testing.expectEqualSlices(u8, &x.toBytes(.Big), &xs);
54 }
55}
56
57test "p256 test vectors - doubling" {
58 const expected = [_][]const u8{
59 "6b17d1f2e12c4247f8bce6e563a440f277037d812deb33a0f4a13945d898c296",
60 "7cf27b188d034f7e8a52380304b51ac3c08969e277f21b35a60b48fc47669978",
61 "e2534a3532d08fbba02dde659ee62bd0031fe2db785596ef509302446b030852",
62 "62d9779dbee9b0534042742d3ab54cadc1d238980fce97dbb4dd9dc1db6fb393",
63 };
64 var p = P256.basePoint;
65 for (expected) |xh| {
66 const x = p.affineCoordinates().x;
67 p = p.dbl();
68 var xs: [32]u8 = undefined;
69 _ = try fmt.hexToBytes(&xs, xh);
70 testing.expectEqualSlices(u8, &x.toBytes(.Big), &xs);
71 }
72}
73
74test "p256 compressed sec1 encoding/decoding" {
75 const p = P256.random();
76 const s = p.toCompressedSec1();
77 const q = try P256.fromSec1(&s);
78 testing.expect(p.equivalent(q));
79}
80
81test "p256 uncompressed sec1 encoding/decoding" {
82 const p = P256.random();
83 const s = p.toUncompressedSec1();
84 const q = try P256.fromSec1(&s);
85 testing.expect(p.equivalent(q));
86}
87
88test "p256 public key is the neutral element" {
89 const n = P256.scalar.Scalar.zero.toBytes(.Little);
90 const p = P256.random();
91 testing.expectError(error.IdentityElement, p.mul(n, .Little));
92}
93
94test "p256 public key is the neutral element (public verification)" {
95 const n = P256.scalar.Scalar.zero.toBytes(.Little);
96 const p = P256.random();
97 testing.expectError(error.IdentityElement, p.mulPublic(n, .Little));
98}
99
100test "p256 field element non-canonical encoding" {
101 const s = [_]u8{0xff} ** 32;
102 testing.expectError(error.NonCanonical, P256.Fe.fromBytes(s, .Little));
103}