Publication Date: 2021-02-04

Approval Date: 2020-11-26

Posted Date: 2020-08-19

Reference number of this document: OGC 18-066r1

Reference URL for this document: http://www.opengis.net/doc/NOTE/18-066r1

Category: Release Notes

Editor: Jeff Yutzler

Title: Release Notes for GeoPackage v1.3.0


Revision Notes

COPYRIGHT

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Preface

This document provides the set of revision notes for the existing GeoPackage version 1.3.0 (OGC 12-128r17) and does not modify that standard.

This document was approved by the OGC membership on 2020-11-26. As a result of the OGC Standards Working Group (SWG) process, there were a number of edits and enhancements made to this standard. This document provides the details of those edits, deficiency corrections, and enhancements. It also documents those items that have been deprecated. Finally, this document provides implementations details related to issues of backwards compatibility.

Keywords

ogcdoc, geopackage, sqlite, raster, tiles, vector, feature, data, storage, exchange, mobile, smartphone, tablet

1. Introduction

1.1. Scope

GeoPackage is an open, standards-based, platform-independent, portable, self-describing, compact format for transferring geospatial information.

From the period of 2018 to 2020, the GeoPackage Standards Working Group (SWG) made a number of changes to the GeoPackage Encoding Standard Version 1.2.1 (OGC 12-128r15). These changes have been aggregated into version 1.3.0 of the GeoPackage Encoding Standard (12-128r16). This document describes those changes.

GeoPackage 1.3.0 is a minor revision to version 1.2.1. The minor revision designation is being used because of a number of substantive changes that alter conformance requirements. However, all of these changes were carefully considered for impact on existing implementations. Changes that were considered to have a significant impact were rejected or recast in order to limit their impact.

All changes were all managed via the GeoPackage GitHub repository. All substantive issues and most administrative issues were raised in the GitHub Issue Tracker and discussed by the SWG. Once the issue was resolved, a pull request was generated and merged into the repository. Some administrative issues such as typos were corrected directly through a commit on the master branch.

1.2. Document contributor contact points

All questions regarding this document should be directed to the editor or the contributors:

Table 1. Contacts
Name Organization

Jeff Yutzler

Image Matters

1.3. Future Work

No future work is planned to this document.

1.4. Foreword

Attention is drawn to the possibility that some of the elements of this document may be the subject of patent rights. The Open Geospatial Consortium shall not be held responsible for identifying any or all such patent rights.

Recipients of this document are requested to submit, with their comments, notification of any relevant patent claims or other intellectual property rights of which they may be aware that might be infringed by any implementation of the standard set forth in this document, and to provide supporting documentation.

2. References

The following normative documents are referenced in this document.

NOTE: Only normative standards are referenced here, e.g. OGC, ISO or other SDO standards. All other references are listed in the bibliography.
  • OGC 12-128r16, OGC® GeoPackage Encoding Standard, version 1.3.0

3. Terms and definitions

For the purposes of this report, the definitions specified in Clause 4 of the OWS Common Implementation Standard [OGC 06-121r9] and in OGC® Abstract Specification Topic TBD: TBD shall apply. In addition, the following terms and definitions apply.

3.1. administrative change

An administrative change is a change that does not alter the abstract tests for any requirements. It includes typographical errors, changes in wording to improve clarity or consistency, and perfunctory changes like changes in version numbers.

3.2. critical Change

A critical change is a change that alters requirements in a way that is known to cause reverse compatibility issues.

3.3. substantive change

A substantive change is a change that alters requirements in a way that is not deemed to have a high risk for causing reverse compatibility issues.

3.4. Abbreviated terms

  • CDB Common Database

  • CITE Compliance, Interoperability, Testing, and Experimentation

  • CRS Coordinate Reference System

  • DDL Database Definition Language

  • GPKG GeoPackage

  • LOD Levels of Detail

  • SQL Structured Query Language

  • SWG Standards Working Group

  • WKT Well Known Text

4. Change Log

4.1. KEY

  • Issue#: Issue in GitHub

  • PR#: Pull Request in GitHub (or commit number if no PR was made)

  • Type:

    • A=Administrative

    • S=Substantive

    • C=Critical

See Description of Critical Changes for more information on critical changes and Description of Substantive Changes for more information on substantive changes.

  • Section: Section number in the updated document

  • Description: Brief text describing the change

  • Purpose: the reason for the change, such as:

    • Clarity

    • Consistency

    • Interoperability

    • Perfunctory

    • Readability

    • Usability

4.2. Change Table

Table 2. Change Log
Issue# PR# Type Section Description Purpose

444

447

S

2.1.5.1.2, 2.2.6.1.2

Enforce alignment of SRS IDs between tables

Consistency

381, 554

479, 560

A

1.1.1.1.2.

Mention new media type

Informational

445

448, 549

A

2.1.6.1.2., A

Eliminate misleading "assignable" language

Clarity

446 and 498

449, 494, and 534

S

2.1.6.1.1, 2.2.8.1.1, 2.4.3.1.1

Clarify use of views in user-defined tables

Consistency

453

454

S

F.9

Relax R104 to allow use with attributes and extensions

Extensibility

455

477

A

multiple

Update table and figure styles

Readability

N/A

463

A

F.8

Fix typo in trigger definition SQL

Correctness

464 and 480

481

A

2.2.8.1.1

Add warning regarding need for indexing on large tiles tables

Performance

N/A

483

A

1.1.1.1.1

Bump version number

Perfunctory

438 and 442

484 and 486

A

F.3

Added note to state intent of bounding indexes since R78 was removed; Remove test for R78;

Correctness

N/A

488

A

F.12

Adding link to Related Tables Extension

Perfunctory

N/A

489

A

2.3.2.1.2

Correcting typo: scope was "write_only" and should be "write-only"

Correctness

495 and 512

496 and 513

S

F.8

Allow metadata scopes to be extended

Extensibility

498

528

A

multiple

Clarify use of AUTOINCREMENT for integer primary keys

Clarity

499

507

A

I, #34

Update normative reference for WKT2

Perfunctory

501, 539

542

A

1

Refine wording on preferred identifier names

Clarity

502

506

S

2.1.3.1.1

Create new R152 to describe empty geometries

Clarity

509

510

A

F.10 ATS

Fix typo in ATS

Correctness

N/A

510

A

Tables 4, 24, 25

Use "UK" or "Jointly Unique" throughout

Consistency

517

515

A

Multiple

Be consistent in table definition SQL for integer primary keys

Consistency

519

528

A

Multiple

Change version numbers to 1.3.0, update references to change log

Perfunctory

524

528

A

2.1.6.1.2

Clarify use of triggers in Annex D

Clarity

525

528

A

2.1.6.1.2

Clarify use of GEOMETRY geometry type name

Clarity

529, 532, and 535

518 and 537

A

F.3

Clarify rounding errors for spatial indexes and update spatial function names for consistency

Clarity, Consistency

531, 541

536, 544

A

Annex I

Update normative references to current state

Perfunctory

533

538

A

1.1.2.1

Clarify role of srs_id as different from organization_coordsys_id in gpkg_spatial_ref_sys

Clarity

540

545

A

2.1.3.1.1

Clarify WKB axis order

Clarity

548

559

A

2.1.3.1.1

Clarify "byte order" flag

Clarity

5. Description of Critical Changes

There are no critical changes in this release.

6. Description of Substantive Changes

6.1. Clarify use of views in user-defined tables (2.1.6.1.1, 2.2.8.1.1, and 2.4.3.1.1)

In previous GeoPackage versions, how to encode a user-defined view was unclear. In response, two changes were made to the requirements for user-defined content. First, Requirements 29, 54, and 119 were rewritten to specifically describe the rules for user defined features, tiles, and attributes tables, respectively. Second, Requirements 150, 153, and 151 were added to specifically describe the rules for user defined features, tiles, and attributes views, respectively.

There is no substantive difference to how user-defined tables are encoded, but the revised wording does clarify that such tables SHALL have primary key columns of type INTEGER and that the column SHALL act as a ROWID alias. However, the concept of primary keys does not exist in SQLite for views. In lieu of primary keys, user-defined views SHALL have an INTEGER "primary-key-like" (i.e., with unique values) column as their first column.

In addition, notes were added to the sample table definitions to clarify the use of the AUTOINCREMENT keyword and the fact that the "Null" flag is ignored by SQLite for primary key columns that are backed by a ROWID.

There are few interoperability risks to this change. These new requirements establish a new option for GeoPackage producers. Read-only GeoPackage clients will be able to use views in the same way they used tables. Read-write GeoPackage clients should be aware of the possibility that a GeoPackage contains user-defined views and react accordingly.

Note

While it is theoretically possible to implement an updateable view in SQLite through a series of triggers, the process for doing so is outside of the scope of GeoPackage 1.3.0.

6.2. Enforce alignment of SRS IDs between tables (2.1.5.1.2 and 2.2.6.1.2)

This change creates two new requirements, R146 and R147, that require SRS IDs to be consistent between gpkg_contents and the two dependent tables, gpkg_geometry_columns and gpkg_tile_matrix_set. In previous versions, this was unspecified. This ambiguity creates a potential interoperability issue because client software could confuse the values if they are different. This change also includes an explanatory note in section 1.1.3.1.2 and new abstract tests in Annex A.

There are no known interoperability risks to this change.

6.3. Allow Metadata Scopes to be extended (Annex F.8)

This change does the following three things:

  1. Eliminates Requirement 94. This requirement made it impossible to extend the list of metadata scopes beyond those listed in Table 21, even though there was no normative reason to do so. The rigidity imposed by this requirement is a clear violation of Requirement 25 of the OGC’s Standard for Modular Specifications that governs this SWG. Eliminating these triggers would allow logically-valid extension of the metadata scope list as called for by Requirement 25.

  2. Eliminates the Trigger Definition SQL from the Metadata Extension. As long as those triggers are there, it is not possible to add new scopes to a GeoPackage. Trigger constraints were eliminated from the rest of the encoding standard before reaching v1.0. Why these particular trigger constraints remained is unclear. This change eliminates both the metadata scope and reference scope triggers.

  3. Adds a new metadata scope for "style". The list of metadata scopes that is currently in Table 21 is arbitrary and is clearly not limited to the scopes from ISO19115. Since OGC Testbed-15 identified a need for a new scope, it has been added.

Since there are no semantics involved with metadata scopes, eliminating this requirement poses no interoperability risks on viewing. The only potential interoperability risk would be if all of the following were true:

  • a GeoPackage client that was not aware of this change attempted to copy gpkg_metadata rows from one GeoPackage to another,

  • the source GeoPackage contains metadata scopes that were not in the original list of metadata scope (this list did not change from GeoPackage 1.0 to GeoPackage 1.2.1), and

  • Requirement 94 is being strictly enforced, either through code in the GeoPackage client or triggers in the destination GeoPackage.

The impact of this risk is very low. Simply deleting the offending metadata entry or modifying the offending metadata scope value would resolve the problem.

6.4. Allow Schemas to be used with Attributes and Extensions (Annex F.9)

The original Schema Extension stated that schemas are for features layers. This change loosens the restriction so that a schema may apply to attributes or extensions. This required a change to Requirement 104 which originally specified that the "table_name" from gpkg_data_columns must have a corresponding row in gpkg_contents. Since some extension tables are described in gpkg_extensions, the requirement was loosened so that the corresponding row must be in either table.

The only potential interoperability risk would be if all of the following were true:

  • a GeoPackage client that was not aware of this change attempted to copy gpkg_data_columns rows from one GeoPackage to another,

  • the source GeoPackage contains schema rows for extension tables, and

  • Requirement 104 is being strictly enforced through code in the GeoPackage client.

The impact of this risk is very low. Simply deleting the offending schema entry would resolve the problem.

6.5. Create new R152 to describe empty geometries (2.1.3.1.1)

Previous versions of GeoPackage underspecified the requirements for encoding empty geometries. Proper encoding of empty geometries allows features to be properly excluded from spatial queries. Failing to properly encode empty geometries can lead to false negatives (unexpectedly empty geometries) which would cause unnecessary parsing of WKB blocks. This issue also has the potential to cause problems in clients that do not expect empty geometries in features returned by spatial queries.

This change corrects this oversight starting with this version of the standard. Now when the geometry is empty, the following are mandated:

  • setting the "empty geometry" flag to true;

  • setting the "envelope contents" indicator to "0" indicating no envelope; and

  • if the geometry is a Point, setting each coordinate value set to an IEEE-754 quiet NaN value.

There are no known interoperability risks to this change.

7. Migration

GeoPackage 1.2.1 and 1.3.0 are almost identical. To migrate a 1.2.1 (or 1.2.0) GeoPackage to 1.3.0, execute the following SQLite commands:

pragma user_version=10300;
drop trigger gpkg_metadata_md_scope_insert;
drop trigger gpkg_metadata_md_scope_update;
drop trigger gpkg_metadata_reference_reference_scope_insert;
drop trigger gpkg_metadata_reference_reference_scope_update;
drop trigger gpkg_metadata_reference_column_name_insert;
drop trigger gpkg_metadata_reference_column_name_update;
drop trigger gpkg_metadata_reference_row_id_value_insert;
drop trigger gpkg_metadata_reference_row_id_value_update;
drop trigger gpkg_metadata_reference_timestamp_insert;
drop trigger gpkg_metadata_reference_timestamp_update;

The first command updates the internal version identifier of the GeoPackage to 1.3.0. The drop commands will drop the Metadata Extension triggers that were removed. Note that these triggers will not be present unless the Metadata Extension is in use.

8. Future Work

There is no future work for this document being planned at this time. However, the GeoPackage SWG may wish to produce another version of the GeoPackage Encoding Standard if warranted. The GeoPackage SWG may also recharter as a precursor to standardization of one or more new GeoPackage extensions.

Appendix A: Revision History

Table 3. Revision History
Date Release Editor Primary clauses modified Descriptions

June 29, 2018

J. Yutzler

.1

all

initial version

May 6, 2019

J. Yutzler

.2

all

release candidate #1

August 9, 2019

J. Yutzler

.3

all

results of SWG electronic vote

December 10, 2019

J. Yutzler

.4

4, 6

release candidate #2

February 18, 2020

J. Yutzler

.5

4, 6

release candidate #3

March 10, 2020

J. Yutzler

.9

4, 6, 7

release to OAB

May 5, 2020

J. Yutzler

.91

3, 4, 6

SWG review #1

July 20, 2020

J. Yutzler

.92

4, 6

SWG review #2

September 25, 2020

J. Yutzler

.93

7

TC review

October 7, 2020

J. Yutzler

.94

4

SWG review #3

January 7, 2021

J. Yutzler

.95

1

SWG review #3