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FpML-AWG FW: BOUNCE awg@xxxxxxxx: Non-member submission from ["Matthew Rawlings" <matthew@xxxxxxxxxxxxxxx>]



Title: BOUNCE awg@xxxxxxxx: Non-member submission from ["Matthew Rawlings" <matthew@xxxxxxxxxxxxxxx>]
See below e-mail from Matthew. Matthew, can you resend any attachment that you had in the e-mail? the e-mail got blocked since your stickledown email address is not subscribed to awg. Let me know if you want the email address to be added. thanks.


FpML needs a consistent set of Core Data Types. There is a gap today where
this part of the standard is left unspecified and it is causing us problems
with implementing FpML. There is incompatability between market participants
on data types, no agreement on field sizes, and efficiency problems in the
implementation.

Here is a proposal for FpML Core Data Types. This is based on the lessons in
the large implementations of ISO15000 and ISO20022. This is a custom
solution consistent with the architecture of FpML, but harmonious and
convergent with the ISO standards.

Please can we review the proposal at the next AWG meeting to consider
adoption.

- Matthew

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<DIV><FONT face=3DArial size=3D2><SPAN class=3D578194318-15022007>FpML =
needs a=20
consistent set of Core Data Types. There is a gap today where this part =
of the=20
standard is left unspecified and it is causing us problems with =
implementing=20
FpML. There is incompatability between market participants on data ="">types, no=20
agreement on field sizes, and efficiency problems in the=20
implementation.</SPAN></FONT></DIV>
<DIV><FONT face=3DArial size=3D2><SPAN=20
class=3D578194318-15022007></SPAN></FONT>&nbsp;</DIV>
<DIV><FONT face=3DArial size=3D2><SPAN class=3D578194318-15022007>Here =
is a proposal=20
for FpML Core Data Types. This is based on the lessons in the large=20
implementations of ISO15000 and ISO20022. This is a custom solution =
consistent=20
with the architecture of&nbsp;FpML, but harmonious and convergent with =
the ISO=20
standards.</SPAN></FONT></DIV>
<DIV><FONT face=3DArial size=3D2><SPAN=20
class=3D578194318-15022007></SPAN></FONT>&nbsp;</DIV>
<DIV><FONT face=3DArial size=3D2><SPAN class=3D578194318-15022007>Please =
can we review=20
the proposal at the next AWG meeting to consider =
adoption.</SPAN></FONT></DIV>
<DIV><FONT face=3DArial size=3D2><SPAN=20
class=3D578194318-15022007></SPAN></FONT>&nbsp;</DIV>
<DIV><FONT face=3DArial size=3D2><SPAN class=3D578194318-15022007>-=20
Matthew</SPAN></FONT></DIV></BODY></HTML>

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Content-Type: text/xml;
        name="fpml-core-data-types.xsd"
Content-Transfer-Encoding: quoted-printable
Content-Disposition: attachment;
        filename="fpml-core-data-types.xsd"

<?xml version=3D"1.0" encoding=3D"UTF-8"?>
<!--=20
=3D=3D Copyright (c) 2002-2006. All rights reserved.=20
=3D=3D Financial Products Markup Language is subject to the FpML public =
license.=20
=3D=3D A copy of this license is available at =
http://www.fpml.org/documents/license.html
-->
<xsd:schema xmlns:xsd=3D"http://www.w3.org/2001/XMLSchema" =
xmlns=3D"http://www.fpml.org/2007/FpML-4-3" =
xmlns:fpml=3D"http://www.fpml.org/2007/FpML-4-3" =
xmlns:ecore=3D"http://www.eclipse.org/emf/2002/Ecore" =
targetNamespace=3D"http://www.fpml.org/2007/FpML-4-3" =
elementFormDefault=3D"qualified" attributeFormDefault=3D"unqualified" =
version=3D"$Revision: 1072 $" ecore:nsPrefix=3D"fpml" =
ecore:package=3D"org.fpml" ecore:documentRoot=3D"FpML">
        <xsd:simpleType name=3D"BasisPointDataType">
                <xsd:annotation>
                        <xsd:documentation>A basis point is 1/10,000th or 1% of 1%. The Basis =
Point Type could be used for the following business relevant =
representations:
=E2=80=A2 The percentage of goods or services completed for this =
contract.
=E2=80=A2 A basis point measurement of one object as part of another =
object for this specific metric or set of metrics
=E2=80=A2 A basis point of the total estimated price that constitutes =
the minimum threshold price.</xsd:documentation>
                </xsd:annotation>
                <xsd:restriction base=3D"NumericDataType"/>
        </xsd:simpleType>
        <xsd:simpleType name=3D"CodeDataType">
                <xsd:annotation>
                        <xsd:documentation>A character string of letters, numbers, special =
characters (except escape sequences), and symbols. It represents a =
definitive value, a method, or a property description in an abbreviated =
or language-independent form. This is frequently used in enumerations.
The content of CodeDataType is based on xsd:token.
The CodeDataType could be used for the following representations:
=E2=80=A2 A code specifying the reason for an allowance charge.
=E2=80=A2 A code specifying a classification of the business in a =
profile.
=E2=80=A2 A code specifying a type of contract such as a fixed price =
contract or a time and materials based contract.</xsd:documentation>
                </xsd:annotation>
                <xsd:restriction base=3D"xsd:token">
                        <xsd:minLength value=3D"1"/>
                        <xsd:maxLength value=3D"30"/>
                        <xsd:whiteSpace value=3D"collapse"/>
                </xsd:restriction>
        </xsd:simpleType>
        <xsd:simpleType name=3D"DateDataType">
                <xsd:annotation>
                        <xsd:documentation>This Data Type is the specification of an exact =
day in the Gregorian calendar. The content component uses the W3C =
built-in data type xsd:date. This is structured according to the =
extended representation of ISO 8601 (see =
http://www.w3.org/TR/NOTE-datetime).=20
The date is used to represent points in time or time stamps in which the =
day must be exact, for example:
=E2=80=A2 The date value specified as a year for the completed work.
=E2=80=A2 The date on which this contract starts.
=E2=80=A2 The date of expiry up to which the financial card is =
valid.</xsd:documentation>
                </xsd:annotation>
                <xsd:restriction base=3D"xsd:date">
                        <xsd:pattern value=3D".*Z"/>
                </xsd:restriction>
        </xsd:simpleType>
        <xsd:simpleType name=3D"DateTimeDataType">
                <xsd:annotation>
                        <xsd:documentation>This Data Type is the accurate-to-the-second =
time-point of a calendar day. The definition follows the W3C built-in =
data type xsd:dateTime. This is structured according to the extended =
representation of ISO 8601 (see http://www.w3.org/TR/NOTE-datetime). =
Datetimes MUST be supplied with a time offset, and preferably should be =
in Zulu time.
</xsd:documentation>
                </xsd:annotation>
                <xsd:restriction base=3D"xsd:dateTime">
                        <xsd:pattern value=3D".*Z"/>
                </xsd:restriction>
        </xsd:simpleType>
        <xsd:simpleType name=3D"DurationDataType">
                <xsd:annotation>
                        <xsd:documentation>A Duration. Type is a period of time of a =
particular length without a fixed start or end time. This period of time =
is expressed in years, months, days, hours, minutes, seconds, and =
fractions of a second.
The content component of =E2=80=9CDuration. Type=E2=80=9D is based on =
the =E2=80=9Cbuilt-in data type=E2=80=9D of W3C xsd:duration. This is =
structured according to the extended representation of ISO 8601 (see =
http://www.w3.org/TR/xmlschema-2/#isoformats ). The representation is as =
follows:
PnYnMnDTnHnMnS
Example:
P12Y12M2DT4H12M40S
Duration describes a time period with a particular length of an event or =
process. For instance:
=E2=80=A2 working time,
=E2=80=A2 duration of stay, or
=E2=80=A2 processing time.
However, it is not dependent on a fixed point in =
time.</xsd:documentation>
                </xsd:annotation>
                <xsd:restriction base=3D"xsd:duration">
                        <xsd:pattern value=3D".*Z"/>
                </xsd:restriction>
        </xsd:simpleType>
        <xsd:simpleType name=3D"IndicatorDataType">
                <xsd:annotation>
                        <xsd:documentation>This is the representation of a situation that has =
exactly two mutually exclusive Boolean values.
This data type can have the following values:
=E2=80=A2 true =E2=80=93 Positive indicator value
=E2=80=A2 false =E2=80=93 Negative indicator value
=E2=80=9CIndicator. Type=E2=80=9D can be used for example:
=E2=80=A2 An indication of whether or not the allowance charge is =
prepaid.
=E2=80=A2 An indication of whether or not the examination results in =
approval.
=E2=80=A2 The indication of whether or not a requirement exists for ="">these instructions</xsd:documentation>
                </xsd:annotation>
                <xsd:restriction base=3D"xsd:boolean">
                        <xsd:whiteSpace value=3D"collapse"/>
                </xsd:restriction>
        </xsd:simpleType>
        <xsd:simpleType name=3D"NameDataType">
                <xsd:annotation>
                        <xsd:documentation>This Data Type is a word or combination of words =
used to name or define an object.
                        The =E2=80=9CName. Type=E2=80=9D could be used for the following =
reasons:
=E2=80=A2 The name of a contact person.
=E2=80=A2 The account name of a financial account.
=E2=80=A2 The name of an organization.</xsd:documentation>
                </xsd:annotation>
                <xsd:restriction base=3D"xsd:normalizedString">
                        <xsd:maxLength value=3D"60"/>
                        <xsd:minLength value=3D"0"/>
                        <xsd:whiteSpace value=3D"collapse"/>
                </xsd:restriction>
        </xsd:simpleType>
        <xsd:simpleType name=3D"NumericDataType">
                <xsd:annotation>
                        <xsd:documentation>A Numeric is a decimal value for the =
representation of only numerical information that can not show as a =
percent, ratio or value. Only the content component of Numeric is =
relevant, and it could be represented as positive and negative numeric =
values. It can be realized be by using the built-in data type =
xsd:decimal.</xsd:documentation>
                </xsd:annotation>
                <xsd:restriction base=3D"xsd:decimal">
                        <xsd:totalDigits value=3D"60"/>
                        <xsd:fractionDigits value=3D"30"/>
                        <xsd:whiteSpace value=3D"collapse"/>
                </xsd:restriction>
        </xsd:simpleType>
        <xsd:simpleType name=3D"PerCentDataType">
                <xsd:annotation>
                        <xsd:documentation>The Percent Type could be used for the following =
business relevant representations:
=E2=80=A2 The percentage of goods or services completed for this =
contract.
=E2=80=A2 A percentage measurement of one object as part of another =
object for this specific metric or set of metrics
=E2=80=A2 A percentage of the total estimated price that constitutes the =
minimum threshold price.</xsd:documentation>
                </xsd:annotation>
                <xsd:restriction base=3D"NumericDataType"/>
        </xsd:simpleType>
        <xsd:simpleType name=3D"RatioDataType">
                <xsd:annotation>
                        <xsd:documentation>A Ratio is the relationship between two =
quantities, which is expressed as the quotient of the division of =
numerator by denominator. Ratio Type is derived from Numeric. The =
representation from content component is als based on =
xsd:decimal,</xsd:documentation>
                </xsd:annotation>
                <xsd:restriction base=3D"NumericDataType"/>
        </xsd:simpleType>
        <xsd:simpleType name=3D"TextDataType">
                <xsd:annotation>
                        <xsd:documentation>This Data Type is a character string that retains =
formatting.=20
This Data Type could be used for:
=E2=80=A2 A description that is a representation of the properties of an =
object in natural language
=E2=80=A2 A note that is a natural-language comment on a situation or =
subject
=E2=80=A2 The purpose, expressed in text, of this document. It is highly =
recommended the xml:lang attribute is used.</xsd:documentation>
                </xsd:annotation>
                <xsd:restriction base=3D"xsd:string">
                        <xsd:whiteSpace value=3D"preserve"/>
                        <xsd:minLength value=3D"0"/>
                        <xsd:maxLength value=3D"1048576"/>
                </xsd:restriction>
        </xsd:simpleType>
        <xsd:simpleType name=3D"TimeDataType">
                <xsd:annotation>
                        <xsd:documentation>A Time. Type since begin of day in a 24 hour =
day.</xsd:documentation>
                </xsd:annotation>
                <xsd:restriction base=3D"xsd:time">
                        <xsd:pattern value=3D".*Z"/>
                </xsd:restriction>
        </xsd:simpleType>
        <xsd:simpleType name=3D"ValueDataType">
                <xsd:annotation>
                        <xsd:documentation>This expresses the concept of numeric worth in =
general.
Value is derived from Numeric. Therefore, the representation from =
content component is exactly the same.
The Value could be used for the following business relevant =
representations:
=E2=80=A2 A value of the allocation base used in an assessment or =
distribution.
=E2=80=A2 A value-based specification of a priority.
=E2=80=A2 A value of a check digit for a bank account =
number.</xsd:documentation>
                </xsd:annotation>
                <xsd:restriction base=3D"NumericDataType"/>
        </xsd:simpleType>
        <xsd:complexType name=3D"BinaryDataType" abstract=3D"false" =
mixed=3D"false">
                <xsd:annotation>
                        <xsd:documentation>This data type is a finite data stream of any =
number of characters in binary notation (octets). This enables any =
binary data to be rep-resented using base64 encoding. This is done using =
the base64 Content-Transfer-Encoding procedure.</xsd:documentation>
                </xsd:annotation>
                <xsd:sequence>
                        <xsd:element name=3D"content">
                                <xsd:annotation>
                                        <xsd:documentation>The base64 encoded content. By default the =
maximum length is 1Gb of content.</xsd:documentation>
                                </xsd:annotation>
                                <xsd:simpleType>
                                        <xsd:restriction base=3D"xsd:base64Binary">
                                                <xsd:minLength value=3D"0"/>
                                                <xsd:whiteSpace value=3D"collapse"/>
                                                <xsd:maxLength value=3D"1073741824"/>
                                        </xsd:restriction>
                                </xsd:simpleType>
                        </xsd:element>
                        <xsd:element name=3D"MIMEContentType" type=3D"IdentifierDataType" =
minOccurs=3D"0">
                                <xsd:annotation>
                                        <xsd:documentation>The sub-part of MIME that is known as the =
"Content Type", or colloquially as the "MIME type". This identifies the =
medium type (image, audio, video, application) of the binary content =
according to the MIME type definition in IETF RFC 2046 and the =
corresponding MIME type recommendations..</xsd:documentation>
                                </xsd:annotation>
                        </xsd:element>
                </xsd:sequence>
        </xsd:complexType>
        <xsd:complexType name=3D"IdentifierDataType" abstract=3D"false" =
mixed=3D"false">
                <xsd:annotation>
                        <xsd:documentation>This is a unique identification of an object =
within an identification scheme that is managed by an issuing authority. =

This Data Type could be used for the following business relevant =
representations:
=E2=80=A2 An identifier identifying uniquely objects, assets, or =
products
=E2=80=A2 An identifier identifying uniquely transactions
=E2=80=A2 An identifier identifying uniquely events
=E2=80=A2 An identifier referencing to other =
identifiers</xsd:documentation>
                </xsd:annotation>
                <xsd:simpleContent>
                        <xsd:extension base=3D"CodeDataType">
                                <xsd:attribute name=3D"scheme" use=3D"required">
                                        <xsd:annotation>
                                                <xsd:documentation>Identifies an identification scheme that =
represents a numbering system to identify uniquely an object within this =
scheme. A scheme is a concept connecting the fields of a number theory =
that includes rules of a numbering system, number ranges, and =
structuring. Identifier values of a scheme could be concatenated from =
several numbering parts that guarantees the uniqueness of an identifier =
within the defined scheme. Every identification scheme differs =
significantly according the requirements of each responsible agency that =
wants to identify objects uniquely with it.</xsd:documentation>
                                        </xsd:annotation>
                                        <xsd:simpleType>
                                                <xsd:restriction base=3D"xsd:anyURI">
                                                        <xsd:minLength value=3D"1"/>
                                                        <xsd:maxLength value=3D"128"/>
                                                        <xsd:whiteSpace value=3D"collapse"/>
                                                </xsd:restriction>
                                        </xsd:simpleType>
                                </xsd:attribute>
                        </xsd:extension>
                </xsd:simpleContent>
        </xsd:complexType>
        <xsd:complexType name=3D"IdentifiersDataType" abstract=3D"false" =
mixed=3D"false">
                <xsd:annotation>
                        <xsd:documentation>Uniquely identifies an object by the provision of =
multiple Idenitfiers. Each identifier must be from a different scheme =
and refer to the same object.</xsd:documentation>
                </xsd:annotation>
                <xsd:sequence>
                        <xsd:element name=3D"Identifier" type=3D"IdentifierDataType" =
maxOccurs=3D"unbounded"/>
                </xsd:sequence>
        </xsd:complexType>
        <xsd:complexType name=3D"MoneyDataType" abstract=3D"false" =
mixed=3D"false">
                <xsd:annotation>
                        <xsd:documentation xml:lang=3D"en">A type defining a currency amount.
                        This Data Type could be used for the following business relevant =
representations:
=E2=80=A2 The monetary value that is the basis on which the allowance or =
charge is calculated.
=E2=80=A2 A monetary value of a price of this contract.
=E2=80=A2 The monetary amount of liability for this guarantee.
=E2=80=A2 A monetary value of the funds or securities to be paid by this =
means of payment.</xsd:documentation>
                </xsd:annotation>
                <xsd:sequence>
                        <xsd:element name=3D"currencyId" type=3D"IdentifierDataType">
                                <xsd:annotation>
                                        <xsd:documentation xml:lang=3D"en">The currency in which an amount =
is denominated.</xsd:documentation>
                                </xsd:annotation>
                        </xsd:element>
                        <xsd:element name=3D"amount">
                                <xsd:annotation>
                                        <xsd:documentation xml:lang=3D"en">The monetary quantity in =
currency units.</xsd:documentation>
                                </xsd:annotation>
                                <xsd:simpleType>
                                        <xsd:restriction base=3D"ValueDataType">
                                                <xsd:minExclusive value=3D"0"/>
                                        </xsd:restriction>
                                </xsd:simpleType>
                        </xsd:element>
                </xsd:sequence>
        </xsd:complexType>
        <xsd:complexType name=3D"QuantityDataType" abstract=3D"false" =
mixed=3D"false">
                <xsd:annotation>
                        <xsd:documentation>This is the non-monetary numerical specification =
of an amount in an unit of measurement. A quantity is the result of the =
numerical comparison of the number, amount, or size of a given item or =
attribute and a standard number, amount, or size. Depending on the item =
or attribute to be qualified and the business context, the comparison =
can be made by physically measuring or counting.
This could be used for the following business relevant representations:
=E2=80=A2 The quantity on which the allowance or charge is based.
=E2=80=A2 A number of employees for this business profile.
=E2=80=A2 A quantity for a specific item in this =
contract.</xsd:documentation>
                </xsd:annotation>
                <xsd:sequence>
                        <xsd:element name=3D"content">
                                <xsd:simpleType>
                                        <xsd:restriction base=3D"NumericDataType">
                                                <xsd:totalDigits value=3D"20"/>
                                                <xsd:fractionDigits value=3D"6"/>
                                        </xsd:restriction>
                                </xsd:simpleType>
                        </xsd:element>
                        <xsd:element name=3D"unit" type=3D"CodeDataType"/>
                </xsd:sequence>
        </xsd:complexType>
</xsd:schema>

------=_NextPart_000_001A_01C75132.12ED1350--

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