support for server verification of clients that do not pass x-amz-content-sha256
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@ -167,31 +167,45 @@ pub fn signRequest(allocator: std.mem.Allocator, request: base.Request, config:
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var additional_header_count: u3 = 3;
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if (config.credentials.session_token != null)
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additional_header_count += 1;
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if (config.signed_body_header == .none)
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additional_header_count -= 1;
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const newheaders = try allocator.alloc(base.Header, rc.headers.len + additional_header_count);
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errdefer allocator.free(newheaders);
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const oldheaders = rc.headers;
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if (config.credentials.session_token) |t| {
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newheaders[newheaders.len - 4] = base.Header{
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newheaders[newheaders.len - additional_header_count] = base.Header{
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.name = "X-Amz-Security-Token",
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.value = try allocator.dupe(u8, t),
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};
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additional_header_count -= 1;
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}
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errdefer freeSignedRequest(allocator, &rc, config);
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std.mem.copy(base.Header, newheaders, oldheaders);
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newheaders[newheaders.len - 3] = base.Header{
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newheaders[newheaders.len - additional_header_count] = base.Header{
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.name = "X-Amz-Date",
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.value = signing_iso8601,
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};
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additional_header_count -= 1;
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// We always need the sha256 of the payload for the signature,
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// regardless of whether we're sticking the header on the request
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std.debug.assert(config.signed_body_header == .none or
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config.signed_body_header == .sha256);
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const payload_hash = try hash(allocator, request.body, .sha256);
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if (config.signed_body_header == .sha256) {
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// From the AWS nitro enclaves SDK, it appears that there is no reason
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// to avoid *ALWAYS* adding the x-amz-content-sha256 header
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// https://github.com/aws/aws-nitro-enclaves-sdk-c/blob/9ecb83d07fe953636e3c0b861d6dac0a15d00f82/source/rest.c#L464
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const payload_hash = try hash(allocator, request.body, config.signed_body_header);
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// However, for signature verification, we need to accomodate clients that
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// may not add this header
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// This will be freed in freeSignedRequest
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// defer allocator.free(payload_hash);
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newheaders[newheaders.len - 2] = base.Header{
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newheaders[newheaders.len - additional_header_count] = base.Header{
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.name = "x-amz-content-sha256",
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.value = payload_hash,
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};
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additional_header_count -= 1;
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}
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rc.headers = newheaders[0 .. newheaders.len - 1];
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log.debug("Signing with access key: {s}", .{config.credentials.access_key});
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@ -301,6 +315,9 @@ pub const UnverifiedRequest = struct {
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};
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pub fn verify(allocator: std.mem.Allocator, request: UnverifiedRequest, request_body_reader: anytype, credentials_fn: credentialsFn) !bool {
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var arena = std.heap.ArenaAllocator.init(allocator);
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defer arena.deinit();
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var aa = arena.allocator();
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// Authorization: AWS4-HMAC-SHA256 Credential=ACCESS/20230908/us-west-2/s3/aws4_request, SignedHeaders=accept;content-length;content-type;host;x-amz-content-sha256;x-amz-date;x-amz-storage-class, Signature=fcc43ce73a34c9bd1ddf17e8a435f46a859812822f944f9eeb2aabcd64b03523
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const auth_header_or_null = request.headers.getFirstValue("Authorization");
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const auth_header = if (auth_header_or_null) |a| a else return error.AuthorizationHeaderMissing;
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@ -328,7 +345,7 @@ pub fn verify(allocator: std.mem.Allocator, request: UnverifiedRequest, request_
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if (signed_headers == null) return error.AuthorizationHeaderMissingSignedHeaders;
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if (signature == null) return error.AuthorizationHeaderMissingSignature;
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return verifyParsedAuthorization(
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allocator,
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aa,
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request,
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request_body_reader,
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credential.?,
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@ -364,13 +381,13 @@ fn verifyParsedAuthorization(
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const service = credential_iterator.next().?;
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const aws4_request = credential_iterator.next().?;
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if (!std.mem.eql(u8, aws4_request, "aws4_request")) return error.UnexpectedCredentialValue;
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const config = Config{
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var config = Config{
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.service = service,
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.credentials = credentials,
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.region = region,
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.algorithm = .v4,
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.signature_type = .headers,
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.signed_body_header = .sha256,
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.signed_body_header = .none,
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.expiration_in_seconds = 0,
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.signing_time = try date.dateTimeToTimestamp(try date.parseIso8601ToDateTime(normalized_iso_date)),
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};
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@ -380,6 +397,8 @@ fn verifyParsedAuthorization(
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var signed_headers_iterator = std.mem.splitSequence(u8, signed_headers, ";");
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var inx: usize = 0;
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while (signed_headers_iterator.next()) |signed_header| {
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if (std.ascii.eqlIgnoreCase(signed_header, "x-amz-content-sha256"))
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config.signed_body_header = .sha256;
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var is_forbidden = false;
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inline for (forbidden_headers) |forbidden| {
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if (std.ascii.eqlIgnoreCase(forbidden.name, signed_header)) {
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@ -427,6 +446,11 @@ fn verifySignedRequest(signed_request: base.Request, signature: []const u8) !boo
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}
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break :blk null;
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};
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log.debug(
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\\Signature Verification
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\\Request Signature: {s}
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\\Calculated Signat: {s}
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, .{ signature, calculated_signature.? });
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return std.mem.eql(u8, signature, calculated_signature.?);
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}
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@ -463,7 +487,6 @@ fn getSigningKey(allocator: std.mem.Allocator, signing_date: []const u8, config:
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}
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fn validateConfig(config: Config) SigningError!void {
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if (config.signature_type != .headers or
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config.signed_body_header != .sha256 or
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config.expiration_in_seconds != 0 or
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config.algorithm != .v4)
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return SigningError.NotImplemented;
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@ -519,7 +542,7 @@ fn createCanonicalRequest(allocator: std.mem.Allocator, request: base.Request, p
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});
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errdefer allocator.free(canonical_request);
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log.debug("Canonical_request (just calculated):\n{s}", .{canonical_request});
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const hashed = try hash(allocator, canonical_request, config.signed_body_header);
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const hashed = try hash(allocator, canonical_request, .sha256);
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return Hashed{
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.arr = canonical_request,
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.hash = hashed,
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@ -1091,3 +1114,96 @@ test "can verify server request" {
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}
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}.getCreds));
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}
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test "can verify server request without x-amz-content-sha256" {
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const allocator = std.testing.allocator;
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const access_key = try allocator.dupe(u8, "ACCESS");
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const secret_key = try allocator.dupe(u8, "SECRET");
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test_credential = Credentials.init(allocator, access_key, secret_key, null);
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defer test_credential.?.deinit();
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var headers = std.http.Headers.init(allocator);
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defer headers.deinit();
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try headers.append("Connection", "keep-alive");
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try headers.append("Accept-Encoding", "gzip, deflate, zstd");
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try headers.append("TE", "gzip, deflate, trailers");
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try headers.append("Accept", "application/json");
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try headers.append("X-Amz-Target", "DynamoDB_20120810.CreateTable");
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try headers.append("Host", "dynamodb.us-west-2.amazonaws.com");
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try headers.append("User-Agent", "zig-aws 1.0");
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try headers.append("Content-Type", "application/x-amz-json-1.0");
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try headers.append("Content-Length", "403");
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try headers.append("X-Amz-Date", "20240224T154944Z");
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try headers.append("x-amz-content-sha256", "fcde2b2edba56bf408601fb721fe9b5c338d10ee429ea04fae5511b68fbf8fb9");
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try headers.append("Authorization", "AWS4-HMAC-SHA256 Credential=ACCESS/20240224/us-west-2/dynamodb/aws4_request, SignedHeaders=content-type;host;x-amz-date;x-amz-target, Signature=8fd23dc7dbcb36c4aa54207a7118f8b9fcd680da73a0590b498e9577ff68ec33");
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const body =
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\\{"AttributeDefinitions": [{"AttributeName": "Artist", "AttributeType": "S"}, {"AttributeName": "SongTitle", "AttributeType": "S"}], "TableName": "MusicCollection", "KeySchema": [{"AttributeName": "Artist", "KeyType": "HASH"}, {"AttributeName": "SongTitle", "KeyType": "RANGE"}], "ProvisionedThroughput": {"ReadCapacityUnits": 5, "WriteCapacityUnits": 5}, "Tags": [{"Key": "Owner", "Value": "blueTeam"}]}
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;
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{
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var h = try std.ArrayList(base.Header).initCapacity(allocator, headers.list.items.len);
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defer h.deinit();
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const signed_headers = &[_][]const u8{ "content-type", "host", "x-amz-date", "x-amz-target" };
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for (headers.list.items) |source| {
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var match = false;
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for (signed_headers) |s| {
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match = std.ascii.eqlIgnoreCase(s, source.name);
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if (match) break;
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}
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if (match) h.appendAssumeCapacity(.{ .name = source.name, .value = source.value });
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}
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const req = base.Request{
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.path = "/",
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.method = "POST",
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.headers = h.items,
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};
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const body_hash = try hash(allocator, body, .sha256);
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defer allocator.free(body_hash);
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try std.testing.expectEqualStrings("ebc5118b053c75178df0aa1f10d0443f5efb527a5589df943635834016c9b3bc", body_hash);
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const canonical_request = try createCanonicalRequest(allocator, req, body_hash, .{
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.region = "us-west-2",
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.service = "dynamodb", // service
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.credentials = test_credential.?,
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.signing_time = 1708789784, // 20240224T154944Z (https://www.unixtimestamp.com)
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});
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defer allocator.free(canonical_request.arr);
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defer allocator.free(canonical_request.hash);
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defer allocator.free(canonical_request.headers.str);
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defer allocator.free(canonical_request.headers.signed_headers);
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// Canonical request:
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const expected =
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\\POST
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\\/
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\\
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\\content-type:application/x-amz-json-1.0
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\\host:dynamodb.us-west-2.amazonaws.com
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\\x-amz-date:20240224T154944Z
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\\x-amz-target:DynamoDB_20120810.CreateTable
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\\
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\\content-type;host;x-amz-date;x-amz-target
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\\ebc5118b053c75178df0aa1f10d0443f5efb527a5589df943635834016c9b3bc
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;
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try std.testing.expectEqualStrings(expected, canonical_request.arr);
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}
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{ // verification
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var fis = std.io.fixedBufferStream(body[0..]);
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const request = std.http.Server.Request{
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.method = std.http.Method.POST,
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.target = "/",
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.version = .@"HTTP/1.1",
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.content_length = 403,
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.headers = headers,
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.parser = std.http.protocol.HeadersParser.initDynamic(std.math.maxInt(usize)),
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};
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try std.testing.expect(try verifyServerRequest(allocator, request, fis.reader(), struct {
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cred: Credentials,
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const Self = @This();
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fn getCreds(access: []const u8) ?Credentials {
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if (std.mem.eql(u8, access, "ACCESS")) return test_credential.?;
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return null;
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}
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}.getCreds));
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}
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}
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