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131 Commits
Author SHA1 Message Date
Kilian Schüttler 3173610be5 Merge branch 'CLARI-003' into 'main'
CLARI-003: add treeId to StructureObject

See merge request fforesight/layout-parser!176
2024-07-02 11:37:22 +02:00
Kilian Schuettler e920eb5a78 CLARI-003: add treeId to StructureObject 2024-07-01 13:56:16 +02:00
Kilian Schüttler 7e4baea7e5 Merge branch 'RED-9353' into 'main'
RED-9353: use azure ocr service

See merge request fforesight/layout-parser!175
2024-07-01 11:13:27 +02:00
Kilian Schüttler 66d3433e04 RED-9353: use azure ocr service 2024-07-01 11:13:26 +02:00
Yannik Hampe a2f559af51 Merge branch 'RED-3813' into 'main'
RED-3813: Recategorize same image as experimental feature

See merge request fforesight/layout-parser!155
2024-06-26 13:42:42 +02:00
Yannik Hampe 39f527a57c Merge branch 'main' into 'RED-3813'
# Conflicts:
#   layoutparser-service/layoutparser-service-processor/src/main/java/com/knecon/fforesight/service/layoutparser/processor/LayoutParsingPipeline.java
2024-06-26 09:10:59 +02:00
yhampe 5c2844fe31 RED-3813: Recategorize same image as experimental feature
fixed failing test
2024-06-26 09:08:37 +02:00
Kilian Schüttler b216f02e15 Merge branch 'RED-9194' into 'main'
RED-9194: roll back single digit headline change

See merge request fforesight/layout-parser!171
2024-06-21 15:13:40 +02:00
Kilian Schuettler 2e2f30ba35 RED-9194: roll back single digit headline change 2024-06-21 14:42:30 +02:00
Kilian Schuettler 9f7ed974ec RED-9194: roll back single digit headline change 2024-06-21 14:41:30 +02:00
Kilian Schuettler 570a348a77 RED-9194: roll back single digit headline change 2024-06-21 14:39:47 +02:00
Maverick Studer 859dba2ecf Merge branch 'RED-9374' into 'main'
hotfix for table/paragraph section creation on document start before first headline

See merge request fforesight/layout-parser!170
2024-06-18 17:36:04 +02:00
Maverick Studer 1c5d755111 hotfix for table/paragraph section creation on document start before first headline 2024-06-18 17:36:04 +02:00
Maverick Studer 133e06460f Merge branch 'RED-9374' into 'main'
RED-9374: Ner Entities are at wrong locations

See merge request fforesight/layout-parser!169
2024-06-18 16:31:24 +02:00
Maverick Studer da91fcff97 RED-9374: Ner Entities are at wrong locations 2024-06-18 16:31:24 +02:00
Kilian Schüttler 79795e408a Merge branch 'RED-9194' into 'main'
RED-9194: allow single digit headline identifiers

See merge request fforesight/layout-parser!168
2024-06-07 09:09:25 +02:00
Kilian Schuettler b719db86ab RED-9194: allow single digit headline identifiers 2024-06-06 16:32:05 +02:00
Maverick Studer 797602e373 Merge branch 'thread-safe-hcs-fields' into 'main'
fixed issue with thread-safety of local fields in the HeadlineClassificationService

See merge request fforesight/layout-parser!167
2024-06-06 14:51:24 +02:00
maverickstuder 3d2f66cf10 fixed issue with thread-safety of local fields in the HeadlineClassificationService:
* HeadlineClassificationService is no singleton anymore
* instead initialize it in the ClassificationService and pass it to the classifyMethods as required
2024-06-06 14:39:23 +02:00
Kilian Schüttler e304a9f2d7 Merge branch 'RED-7074-le' into 'main'
RED-7074: Design Subsection section tree structure algorithm

See merge request fforesight/layout-parser!166
2024-06-06 13:22:14 +02:00
Maverick Studer c05f67cf44 RED-7074: Design Subsection section tree structure algorithm 2024-06-06 13:22:14 +02:00
yhampe 9ecf9ca19f RED-3813: Recategorize same image as experimental feature
now writing hash into structure
2024-06-05 14:20:33 +02:00
Corina Olariu 3a2ee903af Merge branch 'RED-9206-2' into 'main'
RED-9206 - Sections are no longer correctly separated from each other in the test file

See merge request fforesight/layout-parser!165
2024-06-05 13:39:15 +02:00
Corina Olariu 072a8aa3da RED-9206 - Sections are no longer correctly separated from each other in the test file
- add REDACT_MANAGER_WITHOUT_DUPLICATE_PARAGRAPH case
2024-06-05 14:26:54 +03:00
Corina Olariu b5cfa7b63d Merge branch 'RED-9206' into 'main'
RED-9206 - Sections are no longer correctly separated from each other in the test file

See merge request fforesight/layout-parser!163
2024-06-05 13:13:45 +02:00
Corina Olariu 5f5a6258c5 Merge branch 'main' into RED-9206 2024-06-05 13:34:14 +03:00
Maverick Studer ac0e83725a Merge branch 'RED-7074-lgs' into 'main'
RED-7074: Design Subsection section tree structure algorithm

See merge request fforesight/layout-parser!164
2024-06-05 12:28:00 +02:00
Maverick Studer 5d33ad570e RED-7074: Design Subsection section tree structure algorithm 2024-06-05 12:28:00 +02:00
Corina Olariu fd698a78fc RED-9206 - Sections are no longer correctly separated from each other in the test file
- introduce new layout parsing type: REDACT_MANAGER_WITHOUT_DUPLICATE_PARAGRAPH to include changes from REDACT_MANAGER apart from duplicate paragraph.
- updated junit tests
-
2024-06-04 20:55:37 +03:00
Maverick Studer c3edeb3c7d Merge branch 'RED-7074-test' into 'main'
RED-7074: Design Subsection section tree structure algorithm

See merge request fforesight/layout-parser!162
2024-06-04 15:07:40 +02:00
Maverick Studer fc06dba2ce RED-7074: Design Subsection section tree structure algorithm 2024-06-04 15:07:40 +02:00
Maverick Studer b6742c1e89 Merge branch 'RED-7074_2' into 'main'
RED-7074: Design Subsection section tree structure algorithm

See merge request fforesight/layout-parser!160
2024-05-28 14:48:21 +02:00
Maverick Studer efb1a748af RED-7074: Design Subsection section tree structure algorithm 2024-05-28 14:48:21 +02:00
yhampe 9be672c728 RED-3813: Recategorize same image as experimental feature
working on pushing properties to persistence service
2024-05-28 13:51:45 +02:00
Maverick Studer 23985b14be Merge branch 'RED-7074_2' into 'main'
RED-7074: Design Subsection section tree structure algorithm

See merge request fforesight/layout-parser!159
2024-05-24 13:30:25 +02:00
Maverick Studer 48b7a22e2b RED-7074: Design Subsection section tree structure algorithm 2024-05-24 13:30:25 +02:00
Corina Olariu 546341ee75 Merge branch 'RED-9177' into 'main'
RED-9177 - Layout parser fails to process file

See merge request fforesight/layout-parser!158
2024-05-22 13:26:10 +02:00
Corina Olariu 0ed1481517 RED-9177 - Layout parser fails to process file
- use originFile as viewerDocumentFile
- return layoutGridOCGName in case the name is found and not check further properties
2024-05-22 13:02:42 +03:00
Andrei Isvoran b2a47f66ae Merge branch 'RED-9149-header' into 'main'
RED-9149 - Remove header detection

See merge request fforesight/layout-parser!157
2024-05-20 14:12:04 +02:00
Andrei Isvoran 3835d03036 RED-9149 - Remove header detection 2024-05-20 14:59:34 +03:00
yhampe a5fcebce30 RED-3813: Recategorize same image as experimental feature
added representation to image and DocumentStructure
2024-05-17 07:34:05 +02:00
Dominique Eifländer b867deb9f9 Merge branch 'CLARI-hotfix' into 'main'
hotifx for clarifynd

See merge request fforesight/layout-parser!154
2024-05-15 14:08:07 +02:00
Kilian Schuettler 8648ed0952 hotifx for clarifynd 2024-05-15 14:02:02 +02:00
Kilian Schüttler 53f786b539 Merge branch 'RED-9149' into 'main'
RED-9149 - Header and footer detection by page-association

See merge request fforesight/layout-parser!150
2024-05-13 14:57:33 +02:00
Andrei Isvoran 40465e8778 RED-9149 - Improvements 2024-05-13 15:13:37 +03:00
Andrei Isvoran a76b2ace3f RED-9149 - Address comments 2024-05-13 13:18:33 +03:00
Andrei Isvoran aeaca2f278 RED-9149 - Header and footer extraction by page-association 2024-05-10 16:04:06 +03:00
Andrei Isvoran f1dbcc24a2 RED-9149 - Header and footer extraction by page-association 2024-05-10 15:49:08 +03:00
Andrei Isvoran fda25852d1 RED-9149 - Header and footer extraction by page-association 2024-05-10 15:17:41 +03:00
Dominique Eifländer 471fadbcca Merge branch 'RED-8933-4.1' into 'main'
RED-8933: Fixed bugs in DocumineClassificationService

See merge request fforesight/layout-parser!148
2024-05-08 13:31:17 +02:00
Dominique Eifländer 87001090d5 RED-8933: Fixed bugs in DocumineClassificationService 2024-05-08 13:01:23 +02:00
Timo Bejan ea355429c2 Merge branch 'RED-8825-fix' into 'main'
RED-8825: minor fixes

See merge request fforesight/layout-parser!146
2024-05-07 17:47:07 +02:00
Kilian Schuettler 6a65d7f9fc RED-8825: minor fixes
* also added overrides via env variables
2024-05-07 17:37:42 +02:00
Kilian Schuettler e935cc7b14 RED-8825: some fixes, and experimental column detector 2024-05-06 14:24:39 +02:00
Kilian Schüttler 07733d0855 Merge branch 'RED-8825' into 'main'
RED-8825: improve layoutparsing

See merge request fforesight/layout-parser!132
2024-05-03 12:03:03 +02:00
Kilian Schuettler abb249e966 RED-8825: general layoutparsing improvements
* fix checkstyle
2024-05-03 00:15:31 +02:00
Kilian Schuettler bcd1eb9afa RED-8825: general layoutparsing improvements
* added test for table line classification
2024-05-03 00:13:48 +02:00
Kilian Schuettler 60acbac53f RED-8825: general layoutparsing improvements
* fixing a bunch of coordinates
2024-05-03 00:06:29 +02:00
Kilian Schuettler a3decd292d RED-8825: general layoutparsing improvements
* fix RulingCleaningService
2024-05-02 23:00:22 +02:00
Kilian Schuettler b6f0a21886 RED-8825: general layoutparsing improvements
* refactor all coordinates
2024-05-02 21:01:25 +02:00
Kilian Schuettler d61cac8b4f RED-8825: general layoutparsing improvements
* fix tests
2024-04-30 16:06:22 +02:00
Kilian Schuettler ae46c5f1ca RED-8825: general layoutparsing improvements
* fix tests
2024-04-30 11:55:18 +02:00
Kilian Schuettler f0a70a5242 RED-8825: general improvements
* some more refactoring
 * fixed text ruling classification for vertical text
 * shrunk min graphics size
2024-04-30 11:09:23 +02:00
Kilian Schuettler 15ea385f4d RED-8825: general improvements
* some more refactoring
 * fixed text ruling classification for vertical text
 * shrunk min graphics size
2024-04-30 10:44:32 +02:00
Kilian Schuettler 08be18db2d RED-8825: general improvements
* some more refactoring
2024-04-29 20:09:53 +02:00
Kilian Schuettler 64209255cb RED-8825: general improvements
* classify rulings as underline/striketrough
* improve performance of CleanRulings.lineBetween
* use lineBetween where possible
* wip, still todo:
 - Header/Footer by Ruling for all rotations
 - actually the ticket, optimizing layoutparsing for documine
2024-04-29 17:24:15 +02:00
Kilian Schuettler 4761d2e1a2 RED-8825: general improvements
* classify rulings as underline/striketrough
* improve performance of CleanRulings.lineBetween
* use lineBetween where possible
* wip, still todo:
 - Header/Footer by Ruling for all rotations
 - actually the ticket, optimizing layoutparsing for documine
2024-04-29 17:22:33 +02:00
Kilian Schuettler 1916e626df RED-8825: general improvements
* classify rulings as underline/striketrough
* improve performance of CleanRulings.lineBetween
* use lineBetween where possible
* wip, still todo:
 - Header/Footer by Ruling for all rotations
 - actually the ticket, optimizing layoutparsing for documine
2024-04-29 17:15:19 +02:00
Kilian Schuettler e4663ac8db RED-8825: added split by ruling into every step of docstrum 2024-04-29 15:54:56 +02:00
Kilian Schuettler 6a691183dc RED-8825: improve layoutparsing
* added improved debugging capabilities to viewer-doc
* refactored coordinates (wip)
* refactored line intersection algorithm
* removed cropbox correction from pdfbox text positions
2024-04-29 15:54:56 +02:00
Kilian Schuettler 3dd215288a RED-8825: improve layoutparsing
* added improved debugging capabilities to viewer-doc
* refactored coordinates (wip)
* refactored line intersection algorithm
* removed cropbox correction from pdfbox text positions
2024-04-29 15:54:53 +02:00
Kilian Schüttler 6fb1a0bef3 Merge branch 'RED-8992' into 'main'
RED-8992 - Enable to add annotation on header with line breaks

See merge request fforesight/layout-parser!143
2024-04-25 13:03:40 +02:00
Corina Olariu 4e7c3f584b RED-8992 - Enable to add annotation on header with line breaks
- don't reorder textblocks classified as headers and footers
- add unit test
2024-04-25 11:23:10 +03:00
Yannik Hampe 84bdb4d1ed Merge branch 'RED-8701' into 'main'
RED-8701 - Move files to customer data repositories

See merge request fforesight/layout-parser!137
2024-04-25 09:06:35 +02:00
Dominique Eifländer 75ab4df592 Merge branch 'RED-8932' into 'main'
RED-8932 Fixed not merged headline with identifier

See merge request fforesight/layout-parser!141
2024-04-24 11:55:01 +02:00
Dominique Eifländer 8442e60055 RED-8932 Fixed not merged headline with identifier 2024-04-24 11:45:38 +02:00
Corina Olariu 0ef67fc07b RED-8701 - Move files to customer data repositories
- update junit tests and syngenta submodule
2024-04-23 14:54:56 +03:00
Corina Olariu ea02f31a84 Merge branch 'main' into RED-8701
# Conflicts:
#	layoutparser-service/layoutparser-service-server/src/test/java/com/knecon/fforesight/service/layoutparser/server/graph/ViewerDocumentTest.java
2024-04-23 14:20:00 +03:00
Dominique Eifländer 58acbab85f Merge branch 'RED-8826' into 'main'
Red 8826

See merge request fforesight/layout-parser!138
2024-04-23 13:12:51 +02:00
Kilian Schüttler d38d023485 Merge branch 'RED-7384' into 'main'
Red 7384

See merge request fforesight/layout-parser!140
2024-04-23 12:13:21 +02:00
Kilian Schüttler c1afe9b11f Red 7384 2024-04-23 12:13:19 +02:00
Corina Olariu bdcb9aeda4 RED-8701 - Move files to customer data repositories
- update junit tests
2024-04-23 11:49:29 +03:00
Corina Olariu 6a86036a78 Merge branch 'main' into RED-8701 2024-04-23 11:46:59 +03:00
Corina Olariu a358d7565e RED-8701 - Move files to customer data repositories
- update junit tests
2024-04-23 11:12:57 +03:00
Corina Olariu 069a6c0b49 RED-8701 - Move files to customer data repositories
- update syngenta submodule
2024-04-23 10:44:23 +03:00
Dominique Eifländer 683f7f1fb8 RED-8826: Do not classify textblocks in graphics as headlines 2024-04-23 09:28:28 +02:00
Corina Olariu 7eab3a4088 RED-8701 - Move files to customer data repositories
- remove customer files from project
2024-04-22 14:57:51 +03:00
Corina Olariu 970fc99ed1 RED-8701 - Move files to customer data repositories
- update junit test
2024-04-22 14:14:47 +03:00
Corina Olariu 48c54f63a0 RED-8701 - Move files to customer data repositories
- update submodules
2024-04-22 13:57:39 +03:00
Corina Olariu 20e4e5ddff RED-8701 - Move files to customer data repositories
- update unit tests with the new path to submodules for customer files
2024-04-22 13:37:27 +03:00
Dominique Eifländer b53930328a RED-8826: Implemented graphics detection 2024-04-19 15:05:17 +02:00
Dominique Eifländer c947d552d2 Merge branch 'RED-8995-fp' into 'main'
RED-8995: unclassified text might be missing from document data

See merge request fforesight/layout-parser!135
2024-04-19 09:21:50 +02:00
Corina Olariu 6b1b5eab84 RED-8701 - Move files to customer data repositories
- add syngenta submodule
2024-04-18 20:33:00 +03:00
Corina Olariu cc9816c8cb RED-8701 - Move files to customer data repositories
- use git lfs to store customer files
2024-04-18 20:31:35 +03:00
Kilian Schuettler f256f9b30f RED-8995: unclassified text might be missing from document data
* treat TablePageBlock.OTHER like PARAGRAPH (no special treatment)
2024-04-18 17:42:34 +02:00
Yannik Hampe 6167e3fb57 Merge branch 'RED-8402' into 'main'
RED-8402: Header and footer are not indexed / searched

See merge request fforesight/layout-parser!134
2024-04-18 15:08:00 +02:00
yhampe a78fb0244a Merge remote-tracking branch 'origin/RED-8402' into RED-8402 2024-04-18 14:39:10 +02:00
yhampe 8099a00bb6 RED-8402: Header and footer are not indexed / searched
added unit test and file
2024-04-18 14:39:01 +02:00
yhampe 9bb0468b2b RED-8402: Header and footer are not indexed / searched
added unit test and file
2024-04-18 14:36:25 +02:00
Kilian Schüttler c4d9c5df02 Merge branch 'RED-8747-fp' into 'main'
RED-8747 - Entities not merged properly - fp

See merge request fforesight/layout-parser!131
2024-04-09 16:30:02 +02:00
Corina Olariu 976f408237 RED-8747 - Entities not merged properly - fp
- rework the extraction of rulings from the table cells
2024-04-09 14:38:48 +03:00
Corina Olariu 319268c53d RED-8747 - Entities not merged properly - fp
- update test
2024-04-09 12:24:19 +03:00
Corina Olariu 014eba9fc3 RED-8747 - Entities not merged properly - fp
- fix typo
- add validate table test
2024-04-09 12:14:57 +03:00
Yannik Hampe 9bd8419770 Merge branch 'RED-8402' into 'main'
RED-8402: Header and footer are not indexed / searched

See merge request fforesight/layout-parser!128
2024-04-08 12:28:06 +02:00
yhampe c13ff7fbf6 RED-8402: Header and footer are not indexed / searched
checkstyle
added review comments
2024-04-08 12:17:49 +02:00
yhampe 5d3826e9b9 Merge remote-tracking branch 'origin/RED-8402' into RED-8402 2024-04-08 12:02:47 +02:00
yhampe 0c3194276a RED-8402: Header and footer are not indexed / searched
added headers and footers to simplifiedtext
2024-04-08 12:02:36 +02:00
yhampe e302d9784e RED-8402: Header and footer are not indexed / searched
added headers and footers to simplifiedtext
2024-04-08 11:59:35 +02:00
Corina Olariu f185b13f2b RED-8747 - Entities not merged properly - fp
- use the rullings from the found tables instead of all rullings as splitting rullings in the blockification service
2024-04-08 09:42:32 +03:00
Dominique Eifländer 990c376ce6 Merge branch 'RED-8873' into 'main'
RED-8773 - Fix images not appearing on specific file

See merge request fforesight/layout-parser!123
2024-04-05 10:11:23 +02:00
Kilian Schüttler bf6a0d770b Merge branch 'RED-8799' into 'main'
RED-8799: LayoutGrid is wrong draw for some tables

See merge request fforesight/layout-parser!126
2024-04-04 15:23:12 +02:00
Kilian Schuettler f18bda1d4e RED-8799: LayoutGrid is wrong draw for some tables 2024-04-04 13:33:22 +02:00
Maverick Studer 0a11992361 Merge branch 'RED-8702' into 'main'
RED-8702: Explore document databases to store entityLog

See merge request fforesight/layout-parser!125
2024-04-03 10:00:38 +02:00
Andrei Isvoran 456b8fe4a1 RED-8773 - Fix images not appearing on specific file 2024-04-03 10:20:46 +03:00
maverickstuder 9778ece992 RED-8702: Explore document databases to store entityLog
* fix for duplicate images in document structure that are linked to multiple sections
2024-04-02 14:19:14 +02:00
Timo Bejan 8bd0de6263 Merge branch 'RED-8827' into 'main'
Red 8827

See merge request fforesight/layout-parser!122
2024-03-22 12:25:36 +01:00
Timo Bejan 5c1708f97f Issue with merging text blocks multiple times 2024-03-22 12:47:05 +02:00
Timo Bejan a35d77be2e ignore mc files 2024-03-22 10:22:00 +02:00
Dominique Eifländer 631160eb22 Merge branch 'RED-8627' into 'main'
RED-8627: Fixed scrambled text after sorting

See merge request fforesight/layout-parser!120
2024-03-19 11:09:48 +01:00
Dominique Eifländer 8e7e588d26 RED-8627: Fixed scrambled text after sorting 2024-03-19 10:58:36 +01:00
Dominique Eifländer ac850c2626 Merge branch 'RED-7141' into 'main'
RED-7141: Fixed more overlap problems

See merge request fforesight/layout-parser!119
2024-03-14 16:46:10 +01:00
Dominique Eifländer 1d765a6baa RED-7141: Fixed more overlap problems 2024-03-14 16:30:52 +01:00
Dominique Eifländer c55984aa67 Merge branch 'RED-7141' into 'main'
RED-7141: Fixed overlapping blocks

See merge request fforesight/layout-parser!118
2024-03-14 09:09:52 +01:00
Dominique Eifländer 27aa418029 RED-7141: Fixed overlapping blocks 2024-03-13 16:14:55 +01:00
Dominique Eifländer c4edff4696 Merge branch 'RED-7141' into 'main'
RED-7141: Readded lost mergeLinesInZones

See merge request fforesight/layout-parser!116
2024-03-12 13:49:09 +01:00
Dominique Eifländer 92fd1a72de RED-7141: Readded lost mergeLinesInZones 2024-03-12 13:42:40 +01:00
Dominique Eifländer 0d3d25e7d7 Merge branch 'RED-7141-hotfix' into 'main'
RED-7141: Align backend text sorting with Webviewer sorting

See merge request fforesight/layout-parser!115
2024-03-12 11:15:41 +01:00
maverickstuder 956fbff872 RED-7141: Align backend text sorting with Webviewer sorting
* hotfix for tables not being detected due to wrong x-y-sorting
2024-03-12 11:06:53 +01:00
Maverick Studer 2488009af1 Merge branch 'RED-8715' into 'main'
RED-8715: Improve NearestNeighbor Algorithm in LayoutParser

See merge request fforesight/layout-parser!114
2024-03-11 15:10:41 +01:00
maverickstuder 16be2467fd RED-8715: Improve NearestNeighbor Algorithm in LayoutParser
* replaced the old algorithm with an algorithm based on a kd-tree
2024-03-11 14:42:28 +01:00
Timo Bejan f4cae8a7dc Merge branch 'Clarifynd' into 'main'
Clarifynd

See merge request fforesight/layout-parser!113
2024-03-11 10:37:05 +01:00
239 changed files with 8154 additions and 25819 deletions
+1
View File
@@ -0,0 +1 @@
*.pdf filter=lfs diff=lfs merge=lfs -text
+2
View File
@@ -42,3 +42,5 @@ gradlew.bat
gradlew
gradle.properties
gradle/
.DS_Store
.DS_Store/
+4
View File
@@ -1,3 +1,7 @@
variables:
# SONAR_PROJECT_KEY: 'fforesight_layout-parser_AYd5quv2mRkBOCG22hvF'
GIT_SUBMODULE_STRATEGY: recursive
GIT_SUBMODULE_FORCE_HTTPS: 'true'
include:
- project: 'gitlab/gitlab'
ref: 'main'
+8
View File
@@ -0,0 +1,8 @@
[submodule "layoutparser-service/layoutparser-service-server/src/test/resources/files/basf"]
path = layoutparser-service/layoutparser-service-server/src/test/resources/files/basf
url = ssh://git@git.knecon.com:22222/fforesight/documents/basf.git
update = merge
[submodule "layoutparser-service/layoutparser-service-server/src/test/resources/files/syngenta"]
path = layoutparser-service/layoutparser-service-server/src/test/resources/files/syngenta
url = ssh://git@git.knecon.com:22222/fforesight/documents/syngenta.git
update = merge
@@ -43,6 +43,8 @@ public class DocumentStructure implements Serializable {
public static final String POSITION = "position";
public static final String ID = "id";
public static final String REPRESENTATION_HASH = "representationHash";
}
@Schema(description = "Object containing the extra field names, a table cell has in its properties field.")
@@ -67,11 +69,25 @@ public class DocumentStructure implements Serializable {
public static Rectangle2D parseRectangle2D(String bBox) {
List<Float> floats = Arrays.stream(bBox.split(RECTANGLE_DELIMITER)).map(Float::parseFloat).toList();
List<Float> floats = Arrays.stream(bBox.split(RECTANGLE_DELIMITER))
.map(Float::parseFloat)
.toList();
return new Rectangle2D.Float(floats.get(0), floats.get(1), floats.get(2), floats.get(3));
}
public static double[] parseRepresentationVector(String representationHash) {
String[] stringArray = representationHash.split("[,\\s]+");
double[] doubleArray = new double[stringArray.length];
for (int i = 0; i < stringArray.length; i++) {
doubleArray[i] = Double.parseDouble(stringArray[i]);
}
return doubleArray;
}
public EntryData get(List<Integer> tocId) {
if (tocId.isEmpty()) {
@@ -87,19 +103,24 @@ public class DocumentStructure implements Serializable {
public Stream<EntryData> streamAllEntries() {
return Stream.concat(Stream.of(root), root.children.stream()).flatMap(DocumentStructure::flatten);
return Stream.concat(Stream.of(root), root.children.stream())
.flatMap(DocumentStructure::flatten);
}
public String toString() {
return String.join("\n", streamAllEntries().map(EntryData::toString).toList());
return String.join("\n",
streamAllEntries().map(EntryData::toString)
.toList());
}
private static Stream<EntryData> flatten(EntryData entry) {
return Stream.concat(Stream.of(entry), entry.children.stream().flatMap(DocumentStructure::flatten));
return Stream.concat(Stream.of(entry),
entry.children.stream()
.flatMap(DocumentStructure::flatten));
}
@@ -2,5 +2,6 @@ package com.knecon.fforesight.service.layoutparser.internal.api.data.redaction;
public enum LayoutEngine {
ALGORITHM,
AI
AI,
OUTLINE
}
@@ -6,6 +6,7 @@ import java.util.Locale;
public enum NodeType implements Serializable {
DOCUMENT,
SECTION,
SUPER_SECTION,
HEADLINE,
PARAGRAPH,
TABLE,
@@ -14,7 +14,7 @@ import lombok.NoArgsConstructor;
public class SimplifiedSectionText {
@Schema(description = "The number of this Section. This is used to map the simplified section text back to the original Section.")
private int sectionNumber;
private String sectionNumber;
@Schema(description = "The text in this Section.")
private String text;
@@ -1,5 +1,7 @@
package com.knecon.fforesight.service.layoutparser.internal.api.data.taas;
import java.util.List;
import io.swagger.v3.oas.annotations.media.Schema;
import lombok.AllArgsConstructor;
import lombok.Builder;
@@ -13,6 +15,8 @@ public class StructureObject {
@Schema(description = "The ID of this StructureObject.")
Integer structureObjectNumber;
@Schema(description = "The Tree ID of this StructureObject.")
List<Integer> treeId;
@Schema(description = "This value indicates the start of the string offsets in this Object, with respect to the reading order.")
int page;
@Schema(description = "This stringOffset indicates the start of the string offsets in this Object, with respect to the reading order of the entire document. It is equal to the previous' StructureObject stringOffset + its length.")
@@ -4,7 +4,9 @@ public enum LayoutParsingType {
REDACT_MANAGER,
REDACT_MANAGER_OLD,
REDACT_MANAGER_PARAGRAPH_DEBUG,
REDACT_MANAGER_WITHOUT_DUPLICATE_PARAGRAPH,
DOCUMINE,
DOCUMINE_OLD,
CLARIFYND,
CLARIFYND_PARAGRAPH_DEBUG
}
@@ -25,4 +25,5 @@ dependencies {
implementation("com.fasterxml.jackson.datatype:jackson-datatype-jsr310:${jacksonVersion}")
implementation("org.springframework.boot:spring-boot-starter-web:3.1.3")
implementation("org.jgrapht:jgrapht-core:1.5.2")
implementation("org.tinspin:tinspin-indexes:2.1.3")
}
@@ -2,6 +2,7 @@ package com.knecon.fforesight.service.layoutparser.processor;
import static java.lang.String.format;
import java.awt.geom.Point2D;
import java.awt.geom.Rectangle2D;
import java.io.File;
import java.io.IOException;
@@ -27,7 +28,13 @@ import com.knecon.fforesight.service.layoutparser.processor.model.AbstractPageBl
import com.knecon.fforesight.service.layoutparser.processor.model.ClassificationDocument;
import com.knecon.fforesight.service.layoutparser.processor.model.ClassificationPage;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.Document;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.ImageType;
import com.knecon.fforesight.service.layoutparser.processor.model.image.ClassifiedImage;
import com.knecon.fforesight.service.layoutparser.processor.model.outline.OutlineExtractorService;
import com.knecon.fforesight.service.layoutparser.processor.model.outline.OutlineObject;
import com.knecon.fforesight.service.layoutparser.processor.model.outline.OutlineValidationService;
import com.knecon.fforesight.service.layoutparser.processor.model.outline.TOCEnrichmentService;
import com.knecon.fforesight.service.layoutparser.processor.model.outline.TableOfContents;
import com.knecon.fforesight.service.layoutparser.processor.model.table.Cell;
import com.knecon.fforesight.service.layoutparser.processor.model.table.CleanRulings;
import com.knecon.fforesight.service.layoutparser.processor.model.text.TextPageBlock;
@@ -44,6 +51,8 @@ import com.knecon.fforesight.service.layoutparser.processor.services.RulingClean
import com.knecon.fforesight.service.layoutparser.processor.services.SectionsBuilderService;
import com.knecon.fforesight.service.layoutparser.processor.services.SimplifiedSectionTextService;
import com.knecon.fforesight.service.layoutparser.processor.services.TableExtractionService;
import com.knecon.fforesight.service.layoutparser.processor.services.TextRulingsClassifier;
import com.knecon.fforesight.service.layoutparser.processor.services.blockification.BlockificationPostprocessingService;
import com.knecon.fforesight.service.layoutparser.processor.services.blockification.DocstrumBlockificationService;
import com.knecon.fforesight.service.layoutparser.processor.services.blockification.DocuMineBlockificationService;
import com.knecon.fforesight.service.layoutparser.processor.services.blockification.RedactManagerBlockificationService;
@@ -51,11 +60,14 @@ import com.knecon.fforesight.service.layoutparser.processor.services.classificat
import com.knecon.fforesight.service.layoutparser.processor.services.classification.DocuMineClassificationService;
import com.knecon.fforesight.service.layoutparser.processor.services.classification.RedactManagerClassificationService;
import com.knecon.fforesight.service.layoutparser.processor.services.factory.DocumentGraphFactory;
import com.knecon.fforesight.service.layoutparser.processor.services.graphics.Box;
import com.knecon.fforesight.service.layoutparser.processor.services.graphics.GraphicExtractorService;
import com.knecon.fforesight.service.layoutparser.processor.services.mapper.DocumentDataMapper;
import com.knecon.fforesight.service.layoutparser.processor.services.mapper.TaasDocumentDataMapper;
import com.knecon.fforesight.service.layoutparser.processor.services.parsing.PDFLinesTextStripper;
import com.knecon.fforesight.service.layoutparser.processor.services.visualization.LayoutGridService;
import com.knecon.fforesight.service.layoutparser.processor.utils.MarkedContentUtils;
import com.knecon.fforesight.service.layoutparser.processor.utils.PageInformation;
import io.micrometer.observation.Observation;
import io.micrometer.observation.ObservationRegistry;
@@ -85,11 +97,17 @@ public class LayoutParsingPipeline {
TableExtractionService tableExtractionService;
DocuMineBlockificationService docuMineBlockificationService;
RedactManagerBlockificationService redactManagerBlockificationService;
BlockificationPostprocessingService blockificationPostprocessingService;
DocstrumBlockificationService docstrumBlockificationService;
LayoutGridService layoutGridService;
ObservationRegistry observationRegistry;
VisualLayoutParsingAdapter visualLayoutParsingAdapter;
ClarifyndClassificationService clarifyndClassificationService;
GraphicExtractorService graphicExtractorService;
OutlineExtractorService outlineExtractorService;
OutlineValidationService outlineValidationService;
TOCEnrichmentService tocEnrichmentService;
LayoutparserSettings settings;
public LayoutParsingFinishedEvent parseLayoutAndSaveFilesToStorage(LayoutParsingRequest layoutParsingRequest) throws IOException {
@@ -98,37 +116,51 @@ public class LayoutParsingPipeline {
log.info("Starting layout parsing for {}", layoutParsingRequest.identifier());
File originFile = layoutParsingStorageService.getOriginFile(layoutParsingRequest.originFileStorageId());
File viewerDocumentFile = layoutParsingStorageService.getViewerDocFile(layoutParsingRequest.viewerDocumentStorageId()).orElse(originFile);
// File viewerDocumentFile = layoutParsingStorageService.getViewerDocFile(layoutParsingRequest.viewerDocumentStorageId()).orElse(originFile);
File viewerDocumentFile = originFile;
VisualLayoutParsingResponse visualLayoutParsingResponse = new VisualLayoutParsingResponse();
if (layoutParsingRequest.visualLayoutParsingFileId().isPresent()) {
visualLayoutParsingResponse = layoutParsingStorageService.getVisualLayoutParsingFile(layoutParsingRequest.visualLayoutParsingFileId().get());
if (layoutParsingRequest.visualLayoutParsingFileId()
.isPresent()) {
visualLayoutParsingResponse = layoutParsingStorageService.getVisualLayoutParsingFile(layoutParsingRequest.visualLayoutParsingFileId()
.get());
}
ImageServiceResponse imageServiceResponse = new ImageServiceResponse();
if (layoutParsingRequest.imagesFileStorageId().isPresent()) {
imageServiceResponse = layoutParsingStorageService.getImagesFile(layoutParsingRequest.imagesFileStorageId().get());
if (layoutParsingRequest.imagesFileStorageId()
.isPresent()) {
imageServiceResponse = layoutParsingStorageService.getImagesFile(layoutParsingRequest.imagesFileStorageId()
.get());
}
TableServiceResponse tableServiceResponse = new TableServiceResponse();
if (layoutParsingRequest.tablesFileStorageId().isPresent()) {
tableServiceResponse = layoutParsingStorageService.getTablesFile(layoutParsingRequest.tablesFileStorageId().get());
if (layoutParsingRequest.tablesFileStorageId()
.isPresent()) {
tableServiceResponse = layoutParsingStorageService.getTablesFile(layoutParsingRequest.tablesFileStorageId()
.get());
}
ClassificationDocument classificationDocument = parseLayout(layoutParsingRequest.layoutParsingType(),
originFile,
imageServiceResponse,
tableServiceResponse,
visualLayoutParsingResponse,
layoutParsingRequest.identifier());
ClassificationDocument classificationDocument = parseLayout(settings.getLayoutParsingTypeOverride() == null //
? layoutParsingRequest.layoutParsingType() : settings.getLayoutParsingTypeOverride(),
originFile,
imageServiceResponse,
tableServiceResponse,
visualLayoutParsingResponse,
layoutParsingRequest.identifier());
log.info("Building document graph for {}", layoutParsingRequest.identifier());
Document documentGraph = observeBuildDocumentGraph(layoutParsingRequest.layoutParsingType(), classificationDocument);
Document documentGraph = observeBuildDocumentGraph(settings.getLayoutParsingTypeOverride() == null //
? layoutParsingRequest.layoutParsingType() : settings.getLayoutParsingTypeOverride(), classificationDocument);
log.info("Creating viewer document for {}", layoutParsingRequest.identifier());
layoutGridService.addLayoutGrid(viewerDocumentFile, documentGraph, viewerDocumentFile, false);
layoutGridService.addLayoutGrid(viewerDocumentFile,
documentGraph,
viewerDocumentFile,
false,
layoutParsingRequest.visualLayoutParsingFileId()
.isPresent());
log.info("Storing resulting files for {}", layoutParsingRequest.identifier());
@@ -136,7 +168,7 @@ public class LayoutParsingPipeline {
layoutParsingStorageService.storeSimplifiedText(layoutParsingRequest, simplifiedSectionTextService.toSimplifiedText(documentGraph));
layoutParsingStorageService.storeViewerDocument(layoutParsingRequest, viewerDocumentFile);
if (layoutParsingRequest.layoutParsingType().equals(LayoutParsingType.CLARIFYND)) {
if (layoutParsingRequest.researchDocumentStorageId() != null) {
log.info("Building research document data for {}", layoutParsingRequest.identifier());
var researchDocumentData = TaasDocumentDataMapper.fromDocument(documentGraph);
layoutParsingStorageService.storeResearchDocumentData(layoutParsingRequest, researchDocumentData);
@@ -152,25 +184,25 @@ public class LayoutParsingPipeline {
.numberOfPages(documentGraph.getNumberOfPages())
.duration(System.currentTimeMillis() - start)
.message(format("""
Layout parsing has finished in %.02f s.
identifiers: %s
%s
Files have been saved with Ids:
Structure: %s
Text: %s
Positions: %s
PageData: %s
Simplified Text: %s
Viewer Doc: %s""",
((float) (System.currentTimeMillis() - start)) / 1000,
layoutParsingRequest.identifier(),
buildSemanticNodeCountMessage(documentGraph.getNumberOfPages(), documentGraph.buildSemanticNodeCounts()),
layoutParsingRequest.structureFileStorageId(),
layoutParsingRequest.textBlockFileStorageId(),
layoutParsingRequest.positionBlockFileStorageId(),
layoutParsingRequest.pageFileStorageId(),
layoutParsingRequest.simplifiedTextStorageId(),
layoutParsingRequest.viewerDocumentStorageId()))
Layout parsing has finished in %.02f s.
identifiers: %s
%s
Files have been saved with Ids:
Structure: %s
Text: %s
Positions: %s
PageData: %s
Simplified Text: %s
Viewer Doc: %s""",
((float) (System.currentTimeMillis() - start)) / 1000,
layoutParsingRequest.identifier(),
buildSemanticNodeCountMessage(documentGraph.getNumberOfPages(), documentGraph.buildSemanticNodeCounts()),
layoutParsingRequest.structureFileStorageId(),
layoutParsingRequest.textBlockFileStorageId(),
layoutParsingRequest.positionBlockFileStorageId(),
layoutParsingRequest.pageFileStorageId(),
layoutParsingRequest.simplifiedTextStorageId(),
layoutParsingRequest.viewerDocumentStorageId()))
.build();
}
@@ -190,15 +222,15 @@ public class LayoutParsingPipeline {
private String buildSemanticNodeCountMessage(int numberOfPages, Map<NodeType, Long> semanticNodeCounts) {
return String.format("%d pages with %d sections, %d headlines, %d paragraphs, %d tables with %d cells, %d headers, and %d footers parsed",
numberOfPages,
semanticNodeCounts.get(NodeType.SECTION) == null ? 0 : semanticNodeCounts.get(NodeType.SECTION),
semanticNodeCounts.get(NodeType.HEADLINE) == null ? 0 : semanticNodeCounts.get(NodeType.HEADLINE),
semanticNodeCounts.get(NodeType.PARAGRAPH) == null ? 0 : semanticNodeCounts.get(NodeType.PARAGRAPH),
semanticNodeCounts.get(NodeType.TABLE) == null ? 0 : semanticNodeCounts.get(NodeType.TABLE),
semanticNodeCounts.get(NodeType.TABLE_CELL) == null ? 0 : semanticNodeCounts.get(NodeType.TABLE_CELL),
semanticNodeCounts.get(NodeType.HEADER) == null ? 0 : semanticNodeCounts.get(NodeType.HEADER),
semanticNodeCounts.get(NodeType.FOOTER) == null ? 0 : semanticNodeCounts.get(NodeType.FOOTER));
return format("%d pages with %d sections, %d headlines, %d paragraphs, %d tables with %d cells, %d headers, and %d footers parsed",
numberOfPages,
semanticNodeCounts.get(NodeType.SECTION) == null ? 0 : semanticNodeCounts.get(NodeType.SECTION),
semanticNodeCounts.get(NodeType.HEADLINE) == null ? 0 : semanticNodeCounts.get(NodeType.HEADLINE),
semanticNodeCounts.get(NodeType.PARAGRAPH) == null ? 0 : semanticNodeCounts.get(NodeType.PARAGRAPH),
semanticNodeCounts.get(NodeType.TABLE) == null ? 0 : semanticNodeCounts.get(NodeType.TABLE),
semanticNodeCounts.get(NodeType.TABLE_CELL) == null ? 0 : semanticNodeCounts.get(NodeType.TABLE_CELL),
semanticNodeCounts.get(NodeType.HEADER) == null ? 0 : semanticNodeCounts.get(NodeType.HEADER),
semanticNodeCounts.get(NodeType.FOOTER) == null ? 0 : semanticNodeCounts.get(NodeType.FOOTER));
}
@@ -213,11 +245,23 @@ public class LayoutParsingPipeline {
PDDocument originDocument = openDocument(originFile);
addNumberOfPagesToTrace(originDocument.getNumberOfPages(), Files.size(originFile.toPath()));
Map<Integer, List<TableCells>> pdfTableCells = cvTableParsingAdapter.buildCvParsedTablesPerPage(tableServiceResponse);
Map<Integer, List<ClassifiedImage>> pdfImages = imageServiceResponseAdapter.buildClassifiedImagesPerPage(imageServiceResponse);
Map<Integer, List<ClassifiedImage>> signatures = visualLayoutParsingAdapter.buildExtractedSignaturesPerPage(visualLayoutParsingResponse);
ClassificationDocument classificationDocument = new ClassificationDocument();
if (settings.isDebug() || identifier.containsKey("debug")) {
classificationDocument.getVisualizations().setActive(true);
}
List<ClassificationPage> classificationPages = new ArrayList<>();
OutlineObject lastProcessedOutlineObject = null;
// parsing the structure elements could be useful as well
if (layoutParsingType != LayoutParsingType.REDACT_MANAGER_OLD && layoutParsingType != LayoutParsingType.DOCUMINE_OLD) {
classificationDocument.setOutlineObjectTree(outlineExtractorService.getOutlineObjectTree(originDocument));
}
long pageCount = originDocument.getNumberOfPages();
@@ -241,10 +285,12 @@ public class LayoutParsingPipeline {
stripper.setStartPage(pageNumber);
stripper.setEndPage(pageNumber);
stripper.setPdpage(pdPage);
if (layoutParsingType.equals(LayoutParsingType.DOCUMINE)) {
if (layoutParsingType.equals(LayoutParsingType.DOCUMINE_OLD)) {
stripper.setSortByPosition(true);
}
stripper.getText(originDocument);
List<TextPositionSequence> words = stripper.getTextPositionSequences();
classificationDocument.getVisualizations().addTextVisualizations(words, pageNumber);
PDRectangle pdr = pdPage.getMediaBox();
@@ -252,16 +298,32 @@ public class LayoutParsingPipeline {
boolean isLandscape = pdr.getWidth() > pdr.getHeight() && (rotation == 0 || rotation == 180) || pdr.getHeight() > pdr.getWidth() && (rotation == 90 || rotation == 270);
PDRectangle cropbox = pdPage.getCropBox();
CleanRulings cleanRulings = rulingCleaningService.getCleanRulings(pdfTableCells.get(pageNumber), stripper.getRulings());
classificationDocument.getVisualizations().addRulingVisualization(stripper.getRulings(), pageNumber);
CleanRulings cleanRulings = rulingCleaningService.deduplicateAndStraightenRulings(pdfTableCells.get(pageNumber), stripper.getRulings());
List<Cell> emptyTableCells = TableExtractionService.findCells(cleanRulings.getHorizontal(), cleanRulings.getVertical());
PageInformation pageInformation = PageInformation.fromPDPage(pageNumber, pdPage);
List<Cell> emptyTableCells = TableExtractionService.findCells(cleanRulings.getHorizontals(), cleanRulings.getVerticals(), pageInformation);
classificationDocument.getVisualizations().addCellVisualizations(emptyTableCells, pageNumber);
TextRulingsClassifier.classifyUnderlinedAndStrikethroughText(words, cleanRulings);
List<Box> graphics = graphicExtractorService.extractPathElementGraphics(originDocument, pdPage, pageNumber, cleanRulings, stripper.getTextPositionSequences(),
false);
pdfImages.computeIfAbsent(pageNumber, x -> new ArrayList<>())
.addAll(graphics.stream()
.map(g -> new ClassifiedImage(new Rectangle2D.Double(g.x1, g.y1, g.width(), g.height()), ImageType.GRAPHIC, false, stripper.getPageNumber(), ""))
.toList());
ClassificationPage classificationPage = switch (layoutParsingType) {
case REDACT_MANAGER_OLD ->
redactManagerBlockificationService.blockify(stripper.getTextPositionSequences(), cleanRulings.getHorizontal(), cleanRulings.getVertical());
case DOCUMINE -> docuMineBlockificationService.blockify(stripper.getTextPositionSequences(), cleanRulings.getHorizontal(), cleanRulings.getVertical());
case REDACT_MANAGER, REDACT_MANAGER_PARAGRAPH_DEBUG -> docstrumBlockificationService.blockify(stripper.getTextPositionSequences(), emptyTableCells, true);
case CLARIFYND, CLARIFYND_PARAGRAPH_DEBUG -> docstrumBlockificationService.blockify(stripper.getTextPositionSequences(), emptyTableCells, false);
redactManagerBlockificationService.blockify(stripper.getTextPositionSequences(), cleanRulings, classificationDocument.getVisualizations());
case DOCUMINE_OLD -> docuMineBlockificationService.blockify(words, cleanRulings);
case DOCUMINE, REDACT_MANAGER, REDACT_MANAGER_PARAGRAPH_DEBUG, REDACT_MANAGER_WITHOUT_DUPLICATE_PARAGRAPH ->
docstrumBlockificationService.blockify(words, cleanRulings, true, classificationDocument.getVisualizations(), layoutParsingType);
case CLARIFYND, CLARIFYND_PARAGRAPH_DEBUG ->
docstrumBlockificationService.blockify(words, cleanRulings, false, classificationDocument.getVisualizations(), layoutParsingType);
};
classificationPage.setCleanRulings(cleanRulings);
@@ -271,17 +333,32 @@ public class LayoutParsingPipeline {
classificationPage.setPageWidth(cropbox.getWidth());
classificationPage.setPageHeight(cropbox.getHeight());
if (layoutParsingType != LayoutParsingType.REDACT_MANAGER_OLD && layoutParsingType != LayoutParsingType.DOCUMINE_OLD) {
List<OutlineObject> outlineObjects = classificationDocument.getOutlineObjectTree().getOutlineObjectsPerPage().getOrDefault(pageNumber - 1, new ArrayList<>());
OutlineObject notFoundOutlineObject = null;
if (lastProcessedOutlineObject != null && !lastProcessedOutlineObject.isFound()) {
lastProcessedOutlineObject.setPoint(new Point2D.Float(0, cropbox.getHeight()));
notFoundOutlineObject = lastProcessedOutlineObject;
}
if (!outlineObjects.isEmpty()) {
classificationPage.setOutlineObjects(outlineObjects);
lastProcessedOutlineObject = blockificationPostprocessingService.sanitizeOutlineBlocks(classificationPage, notFoundOutlineObject);
}
}
classificationDocument.getVisualizations().addMarkedContentVisualizations(stripper.getMarkedContents(), pageNumber);
// MarkedContent needs to be converted at this point, otherwise it leads to GC Problems in Pdfbox.
classificationPage.setMarkedContentBboxPerType(convertMarkedContents(stripper.getMarkedContents()));
// If images is ocr needs to be calculated before textBlocks are moved into tables, otherwise findOcr algorithm needs to be adopted.
if (pdfImages != null && pdfImages.containsKey(pageNumber)) {
if (pdfImages.containsKey(pageNumber)) {
classificationPage.setImages(pdfImages.get(pageNumber));
imageServiceResponseAdapter.findOcr(classificationPage);
}
if (signatures.containsKey(pageNumber)) {
if (classificationPage.getImages() == null || classificationPage.getImages().size() == 0) {
if (classificationPage.getImages() == null || classificationPage.getImages().isEmpty()) {
classificationPage.setImages(signatures.get(pageNumber));
} else {
classificationPage.getImages().addAll(signatures.get(pageNumber));
@@ -290,12 +367,6 @@ public class LayoutParsingPipeline {
tableExtractionService.extractTables(emptyTableCells, classificationPage);
if (layoutParsingType == LayoutParsingType.REDACT_MANAGER) {
docstrumBlockificationService.combineBlocks(classificationPage);
} else if (layoutParsingType == LayoutParsingType.CLARIFYND) {
docstrumBlockificationService.mergeIntersectingBlocks(classificationPage.getTextBlocks(), 0, 6.5f);
}
buildPageStatistics(classificationPage);
increaseDocumentStatistics(classificationPage, classificationDocument);
@@ -306,22 +377,32 @@ public class LayoutParsingPipeline {
log.info("Calculating BodyTextFrame for {}", identifier);
bodyTextFrameService.setBodyTextFrames(classificationDocument, layoutParsingType);
for (ClassificationPage page : classificationDocument.getPages()) {
classificationDocument.getVisualizations().addCleanRulingVisualization(page.getCleanRulings(), page.getPageNumber());
}
log.info("Classify TextBlocks for {}", identifier);
switch (layoutParsingType) {
case REDACT_MANAGER, REDACT_MANAGER_PARAGRAPH_DEBUG, REDACT_MANAGER_OLD, CLARIFYND_PARAGRAPH_DEBUG ->
case REDACT_MANAGER, REDACT_MANAGER_PARAGRAPH_DEBUG, REDACT_MANAGER_OLD, CLARIFYND_PARAGRAPH_DEBUG, REDACT_MANAGER_WITHOUT_DUPLICATE_PARAGRAPH ->
redactManagerClassificationService.classifyDocument(classificationDocument);
case DOCUMINE -> docuMineClassificationService.classifyDocument(classificationDocument);
case DOCUMINE_OLD, DOCUMINE -> docuMineClassificationService.classifyDocument(classificationDocument);
case CLARIFYND -> clarifyndClassificationService.classifyDocument(classificationDocument);
}
List<TextPageBlock> headlines = classificationDocument.getPages()
.stream()
.flatMap(classificationPage -> classificationPage.getTextBlocks()
.stream()
.filter(tb -> tb instanceof TextPageBlock && tb.getClassification() != null && tb.getClassification().isHeadline())
.map(tb -> (TextPageBlock) tb))
.toList();
TableOfContents tableOfContents = outlineValidationService.createToC(headlines);
classificationDocument.setTableOfContents(tableOfContents);
log.info("Building Sections for {}", identifier);
switch (layoutParsingType) {
case CLARIFYND_PARAGRAPH_DEBUG, REDACT_MANAGER_PARAGRAPH_DEBUG -> sectionsBuilderService.buildParagraphDebugSections(classificationDocument);
default -> {
sectionsBuilderService.buildSections(classificationDocument);
sectionsBuilderService.addImagesToSections(classificationDocument);
}
default -> tocEnrichmentService.assignSectionBlocksAndImages(classificationDocument);
}
return classificationDocument;
@@ -5,6 +5,9 @@ import org.springframework.context.annotation.Bean;
import org.springframework.context.annotation.ComponentScan;
import org.springframework.context.annotation.Configuration;
import com.google.common.base.Strings;
import com.knecon.fforesight.service.viewerdoc.service.IViewerDocumentService;
import com.knecon.fforesight.service.viewerdoc.service.pdftron.PDFTronViewerDocumentService;
import com.knecon.fforesight.service.viewerdoc.service.ViewerDocumentService;
import io.micrometer.observation.ObservationRegistry;
@@ -13,12 +16,16 @@ import io.micrometer.observation.ObservationRegistry;
@ComponentScan
public class LayoutParsingServiceProcessorConfiguration {
@Bean
@Autowired
public ViewerDocumentService viewerDocumentService(ObservationRegistry registry) {
public IViewerDocumentService viewerDocumentService(ObservationRegistry registry, LayoutparserSettings settings) {
if (!Strings.isNullOrEmpty(settings.getPdftronLicense())) {
return new PDFTronViewerDocumentService(registry);
} else {
return new ViewerDocumentService(registry);
}
return new ViewerDocumentService(registry);
}
}
@@ -0,0 +1,21 @@
package com.knecon.fforesight.service.layoutparser.processor;
import org.springframework.boot.context.properties.ConfigurationProperties;
import org.springframework.context.annotation.Configuration;
import com.knecon.fforesight.service.layoutparser.internal.api.queue.LayoutParsingType;
import lombok.AccessLevel;
import lombok.Data;
import lombok.experimental.FieldDefaults;
@Data
@Configuration
@ConfigurationProperties("layoutparser")
@FieldDefaults(level = AccessLevel.PRIVATE)
public class LayoutparserSettings {
boolean debug;
LayoutParsingType layoutParsingTypeOverride;
String pdftronLicense;
}
@@ -7,14 +7,18 @@ import java.util.stream.Collectors;
import org.springframework.stereotype.Service;
import com.knecon.fforesight.service.layoutparser.processor.docstrum.model.Character;
import com.knecon.fforesight.service.layoutparser.processor.docstrum.model.Line;
import com.knecon.fforesight.service.layoutparser.processor.docstrum.model.Zone;
import com.knecon.fforesight.service.layoutparser.processor.docstrum.service.LineBuilderService;
import com.knecon.fforesight.service.layoutparser.processor.docstrum.service.NearestNeighbourService;
import com.knecon.fforesight.service.layoutparser.processor.docstrum.service.ReadingOrderService;
import com.knecon.fforesight.service.layoutparser.processor.docstrum.service.SpacingService;
import com.knecon.fforesight.service.layoutparser.processor.docstrum.service.ZoneBuilderService;
import com.knecon.fforesight.service.layoutparser.processor.model.table.CleanRulings;
import com.knecon.fforesight.service.layoutparser.processor.model.text.RedTextPosition;
import com.knecon.fforesight.service.layoutparser.processor.model.text.TextDirection;
import com.knecon.fforesight.service.layoutparser.processor.model.text.TextPositionSequence;
import com.knecon.fforesight.service.layoutparser.processor.visualization.LayoutparsingVisualizations;
import lombok.RequiredArgsConstructor;
@@ -29,31 +33,37 @@ public class DocstrumSegmentationService {
private final ReadingOrderService readingOrderService;
public List<Zone> segmentPage(List<TextPositionSequence> textPositions, boolean xyOrder) {
public List<Zone> segmentPage(List<TextPositionSequence> textPositions, boolean xyOrder, CleanRulings usedRulings, LayoutparsingVisualizations visualizations) {
List<Zone> zones = new ArrayList<>();
zones.addAll(computeZones(textPositions, TextDirection.ZERO));
zones.addAll(computeZones(textPositions, TextDirection.QUARTER_CIRCLE));
zones.addAll(computeZones(textPositions, TextDirection.HALF_CIRCLE));
zones.addAll(computeZones(textPositions, TextDirection.THREE_QUARTER_CIRCLE));
zones.addAll(computeZones(textPositions, usedRulings, visualizations, TextDirection.ZERO));
zones.addAll(computeZones(textPositions, usedRulings, visualizations, TextDirection.QUARTER_CIRCLE));
zones.addAll(computeZones(textPositions, usedRulings, visualizations, TextDirection.HALF_CIRCLE));
zones.addAll(computeZones(textPositions, usedRulings, visualizations, TextDirection.THREE_QUARTER_CIRCLE));
return readingOrderService.resolve(zones, xyOrder);
}
private List<Zone> computeZones(List<TextPositionSequence> textPositions, TextDirection direction) {
private List<Zone> computeZones(List<TextPositionSequence> textPositions, CleanRulings rulings, LayoutparsingVisualizations visualizations, TextDirection direction) {
var positions = textPositions.stream().filter(t -> t.getDir() == direction).map(TextPositionSequence::getTextPositions).flatMap(List::stream).toList();
List<RedTextPosition> positions = textPositions.stream()
.filter(t -> t.getDir() == direction)
.map(TextPositionSequence::getTextPositions)
.flatMap(List::stream)
.toList();
var characters = positions.stream().map(Character::new).collect(Collectors.toList());
List<Character> characters = positions.stream()
.map(Character::new)
.collect(Collectors.toList());
nearestNeighbourService.findNearestNeighbors(characters);
var characterSpacing = spacingService.computeCharacterSpacing(characters);
var lineSpacing = Math.min(spacingService.computeLineSpacing(characters), 20);
double characterSpacing = spacingService.computeCharacterSpacing(characters);
double lineSpacing = Math.min(spacingService.computeLineSpacing(characters), 20);
var lines = lineBuilderService.buildLines(characters, characterSpacing, lineSpacing);
return zoneBuilderService.buildZones(lines, characterSpacing, lineSpacing);
List<Line> lines = lineBuilderService.buildLines(characters, characterSpacing, lineSpacing, rulings);
return zoneBuilderService.buildZones(lines, characterSpacing, lineSpacing, rulings);
}
}
@@ -1,13 +1,27 @@
package com.knecon.fforesight.service.layoutparser.processor.docstrum.model;
import java.awt.geom.Rectangle2D;
import java.util.Comparator;
import java.util.List;
import com.knecon.fforesight.service.layoutparser.processor.utils.RectangleTransformations;
import lombok.Data;
@Data
public abstract class BoundingBox {
private Rectangle2D bBox;
// Java coordinate system: (0, 0) is always upper left, x is increasing left to right and y is increasing from top to bottom.
// should be used when determining reading order or other tasks which require coordinates in a harmonized system.
protected Rectangle2D bBox; // I would not trust this coordinate when comparing rulings and text, due to the text positions being slightly off.
// PDF coordinate system: depends on page rotation, (0, 0) is lower left corner, x is increasing left to right and y from bottom to top.
// This rotates completely in 90 degree steps with page rotation.
// Needs to be used when writing to a PDF.
// Also, these are definitely correct and should be used whenever possible.
protected Rectangle2D bBoxInitialUserSpace;
protected static final float VERTICAL_COMPARISON_THRESHOLD = 0.4f;
public double getX() {
@@ -22,6 +36,42 @@ public abstract class BoundingBox {
}
public double getMinX() {
return bBox.getMinX();
}
public double getMinY() {
return bBox.getMinY();
}
public double getPdfMinX() {
return bBoxInitialUserSpace.getMinX();
}
public double getPdfMaxX() {
return bBoxInitialUserSpace.getMaxX();
}
public double getPdfMinY() {
return bBoxInitialUserSpace.getMinY();
}
public double getPdfMaxY() {
return bBoxInitialUserSpace.getMaxY();
}
public double getWidth() {
return bBox.getWidth();
@@ -34,21 +84,170 @@ public abstract class BoundingBox {
}
public double getMaxX() {
return bBox.getMaxX();
}
public double getMaxY() {
return bBox.getMaxY();
}
public double getArea() {
return (bBox.getHeight() * bBox.getWidth());
}
public boolean contains(Rectangle2D contained, double tolerance) {
public boolean contains(BoundingBox contained) {
return bBox.getX() <= contained.getX() + tolerance && bBox.getY() <= contained.getY() + tolerance && bBox.getX() + bBox.getWidth() >= contained.getX() + contained.getWidth() - tolerance && bBox.getY() + bBox.getHeight() >= contained.getY() + contained.getHeight() - tolerance;
return contains(contained, 0);
}
public boolean contains(BoundingBox contained, double tolerance) {
return getPdfMinX() <= contained.getPdfMinX() + tolerance
&& getPdfMinY() <= contained.getPdfMinY() + tolerance
&& getPdfMaxX() >= contained.getPdfMaxX() - tolerance
&& getPdfMaxY() >= contained.getPdfMaxY() - tolerance;
}
public boolean intersects(BoundingBox other) {
return this.intersectsX(other) && this.intersectsY(other);
}
public boolean intersects(BoundingBox other, float yThreshold, float xThreshold) {
return this.intersectsX(other, xThreshold) && this.intersectsY(other, yThreshold);
}
public boolean intersectsY(BoundingBox other) {
return this.getBBox().getMinY() <= other.getBBox().getMaxY() && this.getBBox().getMaxY() >= other.getBBox().getMinY();
return this.getPdfMinY() <= other.getPdfMaxY() && this.getPdfMaxY() >= other.getPdfMinY();
}
public boolean intersectsYJava(BoundingBox other) {
return this.getY() <= other.getMaxY() && this.getMaxY() >= other.getY();
}
public boolean intersectsY(BoundingBox other, float threshold) {
return this.getPdfMinY() - threshold <= other.getPdfMaxY() && this.getPdfMaxY() + threshold >= other.getPdfMinY();
}
public boolean intersectsX(BoundingBox other) {
return this.getPdfMinX() <= other.getPdfMaxX() && this.getPdfMaxX() >= other.getPdfMinX();
}
public boolean intersectsXJava(BoundingBox other) {
return this.getX() <= other.getMaxX() && this.getMaxX() >= other.getMinX();
}
public boolean intersectsX(BoundingBox other, float threshold) {
return this.getPdfMinX() - threshold <= other.getMaxX() && this.getMaxX() + threshold >= other.getPdfMinX();
}
public void setToBBoxOfComponents(List<? extends BoundingBox> components) {
this.bBox = components.stream()
.map(BoundingBox::getBBox)
.collect(RectangleTransformations.collectBBox());
this.bBoxInitialUserSpace = components.stream()
.map(BoundingBox::getBBoxInitialUserSpace)
.collect(RectangleTransformations.collectBBox());
}
public double verticalOverlap(BoundingBox other) {
return Math.max(0, Math.min(this.getPdfMaxY(), other.getPdfMaxY()) - Math.max(this.getPdfMinY(), other.getPdfMinY()));
}
public static final Comparator<BoundingBox> ILL_DEFINED_ORDER = (o1, o2) -> {
if (o1.equals(o2)) {
return 0;
}
if (o1.verticalOverlap(o2) > VERTICAL_COMPARISON_THRESHOLD * ((o1.getHeight() + o2.getHeight()) / 2)) {
return Double.compare(o1.getPdfMinX(), o2.getPdfMinX());
} else {
return Double.compare(o1.getPdfMaxY(), o2.getPdfMaxY());
}
};
public double horizontalDistance(BoundingBox other) {
Rectangle2D left;
Rectangle2D right;
if (this.leftOf(other)) {
left = this.getBBox();
right = other.getBBox();
} else {
left = other.getBBox();
right = this.getBBox();
}
return Math.max(0, right.getMinX() - left.getMaxX());
}
public double verticalDistance(BoundingBox other) {
Rectangle2D bottom;
Rectangle2D top;
if (this.isAbove(other)) {
top = this.getBBox();
bottom = other.getBBox();
} else {
bottom = this.getBBox();
top = other.getBBox();
}
return Math.max(0, bottom.getMinY() - top.getMaxY());
}
public boolean rightOf(BoundingBox other) {
return this.intersectsYJava(other) && other.getMaxX() <= this.getMinX();
}
public boolean leftOf(BoundingBox other) {
return this.intersectsYJava(other) && other.getMinX() >= this.getMaxX();
}
public boolean isAbove(BoundingBox other) {
return this.intersectsXJava(other) && other.getMinY() >= this.getMaxY();
}
public boolean isBelow(BoundingBox other) {
return this.intersectsXJava(other) && this.getMinY() >= other.getMaxY();
}
}
@@ -27,8 +27,8 @@ public class Character {
public Character(RedTextPosition chunk) {
this.x = chunk.getXDirAdj() + chunk.getWidthDirAdj() / 2;
this.y = chunk.getYDirAdj() + chunk.getHeightDir() / 2;
this.x = chunk.getBBoxDirAdj().getCenterX();
this.y = chunk.getBBoxDirAdj().getCenterY();
this.textPosition = chunk;
}
@@ -0,0 +1,324 @@
package com.knecon.fforesight.service.layoutparser.processor.docstrum.model;
import java.util.ArrayList;
import java.util.Collections;
import java.util.Comparator;
import java.util.HashSet;
import java.util.LinkedList;
import java.util.List;
import java.util.Set;
/*
WIP, mostly working, needs to be tested a bit more
*/
public class ColumnDetector {
public static final double MAX_VALUE_THRESHOLD = 0.5;
final static int bins_num = 512;
final static int globalStartIdx = 0; // ignore outer parts completely, we don't expect columns there
final static int globalEndIdx = bins_num; // i chose 7, since thirds seems a likely split for columns, therefore divided by 6 would eliminate those.
public static final double DERIVATIVE_ZERO_THRESHOLD = 1e-10;
public static final double MINIMUM_THRESHOLD_FOR_COLUMNS = 0.05;
public static final double NEAR_GLOBAL_THRESHOLD = 0.5;
double minY;
double maxY;
double midY;
double[] histogram;
double min;
double max;
double resolution;
double sum;
int N;
public ColumnDetector(double min, double max, double minY, double maxY) {
this.min = min;
this.max = max;
this.minY = minY;
this.maxY = maxY;
this.midY = maxY - minY;
this.resolution = (max - min) / bins_num;
this.histogram = new double[bins_num];
}
public void add(BoundingBox zone) {
N++;
double weight = computeWeight(zone);
int start = (int) ((zone.getMinX() - min) / resolution);
int end = (int) ((zone.getMaxX() - min) / resolution);
for (int i = start; i < end; i++) {
histogram[i] += weight;
sum += histogram[i];
}
}
private double computeWeight(BoundingBox zone) {
double areaWeight = zone.getBBox().getHeight();
double relativeDistance = relativeDistanceToMiddle(zone.getBBox().getCenterY());
double distanceWeight;
if (relativeDistance < 0.6) {
distanceWeight = 1;
} else if (relativeDistance < 0.8) {
distanceWeight = 0.8;
} else {
distanceWeight = 0.1;
}
return areaWeight * distanceWeight;
}
private double relativeDistanceToMiddle(double y) {
double range = (maxY - minY) / 2;
double mid = minY + range;
return Math.abs(y - mid) / range;
}
public double[] computeDerivative() {
int length = histogram.length;
double[] derivative = new double[length];
for (int i = 0; i < length; i++) {
if (i == 0) {
derivative[i] = (histogram[i + 1] - histogram[i]) / resolution;
} else if (i == length - 1) {
derivative[i] = (histogram[i] - histogram[i - 1]) / resolution;
} else {
derivative[i] = (histogram[i + 1] - histogram[i - 1]) / (2 * resolution);
}
}
return derivative;
}
public double calcMean(double[] arr, int start, int end) {
if (start == end) {
return 0;
}
double sum = 0;
for (int i = start; i < end; i++) {
sum += arr[i];
}
return sum / (end - start);
}
/*
Find columns, by finding all local maxima/minima of the derivative. Filtering them for the ones with the biggest values.
For each found minima, we will step to the right until we hit a 0 in the derivative, this indicates a minimum in the main histogram. If this minimum is below a threshold, it is deemed a column divider.
Same goes for maxima, but stepping to the left now, since minima in the function will always be to the left of a maximum in its derivative.
*/
public List<Double> determineColumnsWithDerivative(double[] derivative) {
assert derivative.length == histogram.length;
Set<Integer> columnIndices = new HashSet<>();
double mean = calcMean(histogram, 0, histogram.length);
double maxDvValue = calcMax(derivative);
double minDvValue = calcMin(derivative);
if (maxDvValue - minDvValue < mean * MAX_VALUE_THRESHOLD) {
Collections.emptyList();
}
Extrema derivativeExtrema = calculateNearGlobalExtrema(derivative, maxDvValue, minDvValue);
List<Integer> columnsRightOfMinima = findZerosToTheRightOfMinima(derivative, derivativeExtrema.minima(), mean);
columnIndices.addAll(columnsRightOfMinima);
List<Integer> columnsLeftOfMaxima = findZerosToTheLeftOfMaxima(derivative, derivativeExtrema.maxima(), mean);
columnIndices.addAll(columnsLeftOfMaxima);
return columnIndices.stream()
.sorted(Comparator.naturalOrder())
.map(this::calculateXCoordinateFromIdx)
.toList();
}
private List<Integer> findZerosToTheLeftOfMaxima(double[] derivative, List<Integer> derivativeMaxima, double mean) {
List<Integer> columnsLeftOfMaxima = new ArrayList<>();
for (int i = 0; i < derivativeMaxima.size(); i++) {
List<Integer> consecutiveZeroes = new LinkedList<>();
boolean maximumFound = false;
int maximaIdx = derivativeMaxima.get(i) - 1; // the highest derivative will always be at least one step away from the lowest value.
int endIdx = (int) Math.max(globalStartIdx,
Math.min(maximaIdx - 1,
maximaIdx - 0.1 * bins_num)); // search through 10% of array to the right, but at least one step and at most to the left edge;
for (int j = maximaIdx; j >= endIdx; j--) {
if (derivative[j] < DERIVATIVE_ZERO_THRESHOLD) {
maximumFound = true;
consecutiveZeroes.add(j);
} else if (maximumFound) {
break;
}
}
if (maximumFound) {
int midIdx = consecutiveZeroes.size() / 2;
int middleMinimumIdx = consecutiveZeroes.get(midIdx);
if (histogram[middleMinimumIdx] < mean * MINIMUM_THRESHOLD_FOR_COLUMNS) {
columnsLeftOfMaxima.add(middleMinimumIdx);
}
}
}
return columnsLeftOfMaxima;
}
private List<Integer> findZerosToTheRightOfMinima(double[] derivative, List<Integer> derivativeMinima, double mean) {
List<Integer> columnIndixes = new LinkedList<>();
for (int i = 0; i < derivativeMinima.size(); i++) {
List<Integer> consecutiveZeroes = new LinkedList<>();
boolean minimumFound = false;
int minimaIdx = derivativeMinima.get(i) + 1; // the highest derivative will always be at least one step earlier than the lowest value.
int endIdx = (int) Math.min(globalEndIdx,
Math.max(minimaIdx + 1,
minimaIdx + 0.1 * bins_num)); // search through 10% of array to the right, but at least one step and at most to the right edge;
for (int j = minimaIdx; j < endIdx; j++) {
if (derivative[j] < DERIVATIVE_ZERO_THRESHOLD) {
minimumFound = true;
consecutiveZeroes.add(j);
} else if (minimumFound) {
break;
}
}
if (minimumFound) {
int midIdx = consecutiveZeroes.size() / 2;
int middleMinimumIdx = consecutiveZeroes.get(midIdx);
if (histogram[middleMinimumIdx] < mean * MINIMUM_THRESHOLD_FOR_COLUMNS) {
columnIndixes.add(middleMinimumIdx);
}
}
}
return columnIndixes;
}
private double calcMax(double[] array) {
double max = Double.NEGATIVE_INFINITY;
for (int i = 0; i < array.length; i++) {
if (array[i] > max) {
max = array[i];
}
}
return max;
}
private double calcMin(double[] array) {
double min = Double.POSITIVE_INFINITY;
for (int i = 0; i < array.length; i++) {
if (array[i] < min) {
min = array[i];
}
}
return min;
}
private Extrema calculateNearGlobalExtrema(double[] derivative, double maxDvValue, double minDvValue) {
List<Integer> nearGlobalDvMaximaIdx = new LinkedList<>();
List<Integer> nearGlobalDvMinimaIdx = new LinkedList<>();
for (int i = globalStartIdx; i < globalEndIdx; i++) {
if (derivative[i] <= minDvValue * NEAR_GLOBAL_THRESHOLD) {
nearGlobalDvMinimaIdx.add(i);
}
if (derivative[i] >= maxDvValue * NEAR_GLOBAL_THRESHOLD) {
nearGlobalDvMaximaIdx.add(i);
}
}
nearGlobalDvMinimaIdx = removeConsecutive(nearGlobalDvMinimaIdx);
nearGlobalDvMaximaIdx = removeConsecutive(nearGlobalDvMaximaIdx);
return new Extrema(nearGlobalDvMaximaIdx, nearGlobalDvMinimaIdx);
}
private record Extrema(List<Integer> maxima, List<Integer> minima) {
}
private Double calculateXCoordinateFromIdx(int globalMinIdx) {
return min + ((globalMinIdx + 1) * resolution);
}
public static List<Integer> removeConsecutive(List<Integer> numbers) {
List<Integer> result = new ArrayList<>();
if (numbers == null || numbers.isEmpty()) {
return result;
}
result.add(numbers.get(0)); // Add the first number
for (int i = 1; i < numbers.size(); i++) {
if (numbers.get(i) != numbers.get(i - 1) + 1) {
result.add(numbers.get(i)); // Add non-consecutive numbers
}
}
return result;
}
public void kernelSmooth(double[] kernel) {
double[] newFrequencies = new double[histogram.length];
int shift = (kernel.length - 1) / 2;
for (int i = 0; i < kernel.length; i++) {
int jStart = Math.max(0, i - shift);
int jEnd = Math.min(histogram.length, histogram.length + i - shift);
for (int j = jStart; j < jEnd; j++) {
newFrequencies[j - i + shift] += kernel[i] * histogram[j];
}
}
histogram = newFrequencies;
}
public double[] createGaussianKernel(int length, double stdDeviation) {
int r = length / 2;
int size = 2 * r + 1;
double[] kernel = new double[size];
double sum = 0;
double b = 2 * (stdDeviation) * (stdDeviation);
double a = 1 / Math.sqrt(Math.PI * b);
for (int i = 0; i < size; i++) {
kernel[i] = a * Math.exp(-(i - r) * (i - r) / b);
sum += kernel[i];
}
for (int i = 0; i < size; i++) {
kernel[i] /= sum;
}
return kernel;
}
}
@@ -1,10 +1,10 @@
package com.knecon.fforesight.service.layoutparser.processor.docstrum.model;
import java.awt.geom.Rectangle2D;
import java.util.ArrayList;
import java.util.Arrays;
import java.util.List;
import com.knecon.fforesight.service.layoutparser.processor.docstrum.utils.FastAtan2;
import com.knecon.fforesight.service.layoutparser.processor.model.text.TextPositionSequence;
import lombok.Data;
@@ -72,7 +72,7 @@ public class Line extends BoundingBox {
public double getAngle() {
return Math.atan2(y1 - y0, x1 - x0);
return FastAtan2.fastAtan2(y1 - y0, x1 - x0);
}
@@ -84,7 +84,9 @@ public class Line extends BoundingBox {
private double computeHeight() {
return characters.stream().map(Character::getHeight).reduce(0d, Double::sum) / characters.size();
return characters.stream()
.map(Character::getHeight)
.reduce(0d, Double::sum) / characters.size();
}
@@ -116,7 +118,7 @@ public class Line extends BoundingBox {
double ym = (y0 + y1) / 2;
double yn = (other.y0 + other.y1) / 2;
return Math.abs(ym - yn) / Math.sqrt(1);
return Math.abs(ym - yn);
}
@@ -141,21 +143,9 @@ public class Line extends BoundingBox {
private void buildBBox() {
double minX = Double.POSITIVE_INFINITY;
double minY = Double.POSITIVE_INFINITY;
double maxX = Double.NEGATIVE_INFINITY;
double maxY = Double.NEGATIVE_INFINITY;
for (Character character : characters) {
minX = Math.min(minX, character.getTextPosition().getXDirAdj());
minY = Math.min(minY, character.getTextPosition().getYDirAdj());
maxX = Math.max(maxX, character.getTextPosition().getXDirAdj() + character.getTextPosition().getWidthDirAdj());
maxY = Math.max(maxY, character.getTextPosition().getYDirAdj() + character.getTextPosition().getHeightDir());
}
this.setBBox(new Rectangle2D.Double(minX, minY, maxX - minX, maxY - minY));
this.setToBBoxOfComponents(characters.stream()
.map(Character::getTextPosition)
.toList());
}
@@ -1,9 +1,10 @@
package com.knecon.fforesight.service.layoutparser.processor.docstrum.model;
import java.awt.geom.Rectangle2D;
import java.util.Comparator;
import java.util.List;
import com.knecon.fforesight.service.layoutparser.processor.utils.RectangleTransformations;
import lombok.Data;
@Data
@@ -15,29 +16,9 @@ public class Zone extends BoundingBox {
@SuppressWarnings("PMD.ConstructorCallsOverridableMethod")
public Zone(List<Line> lines) {
lines.sort(Comparator.comparingDouble(Line::getY));
lines.sort(Comparator.comparingDouble(Line::getY0));
this.lines = lines;
buildBBox();
}
public void buildBBox() {
double minX = Double.POSITIVE_INFINITY;
double minY = Double.POSITIVE_INFINITY;
double maxX = Double.NEGATIVE_INFINITY;
double maxY = Double.NEGATIVE_INFINITY;
for (Line line : lines) {
minX = Math.min(minX, line.getX());
minY = Math.min(minY, line.getY());
maxX = Math.max(maxX, line.getX() + line.getWidth());
maxY = Math.max(maxY, line.getY() + line.getHeight());
}
this.setBBox(new Rectangle2D.Double(minX, minY, maxX - minX, maxY - minY));
setToBBoxOfComponents(lines);
}
@@ -1,6 +1,5 @@
package com.knecon.fforesight.service.layoutparser.processor.docstrum.service;
import java.util.ArrayList;
import java.util.Comparator;
import java.util.HashSet;
import java.util.List;
@@ -11,43 +10,49 @@ import com.knecon.fforesight.service.layoutparser.processor.docstrum.model.Angle
import com.knecon.fforesight.service.layoutparser.processor.docstrum.model.Character;
import com.knecon.fforesight.service.layoutparser.processor.docstrum.model.Line;
import com.knecon.fforesight.service.layoutparser.processor.docstrum.model.UnionFind;
import com.knecon.fforesight.service.layoutparser.processor.model.table.CleanRulings;
@Service
public class LineBuilderService {
private static final double CHARACTER_SPACING_DISTANCE_MULTIPLIER = 3.5;
private static final double MAX_VERTICAL_CHARACTER_DISTANCE = 0.67;
private static final double LINE_SPACING_THRESHOLD_MULTIPLIER = 0.67;
private static final double ANGLE_TOLERANCE = Math.PI / 6;
public List<Line> buildLines(List<Character> characters, double characterSpacing, double lineSpacing) {
public List<Line> buildLines(List<Character> characters, double characterSpacing, double lineSpacing, CleanRulings rulings) {
double maxHorizontalDistance = characterSpacing * CHARACTER_SPACING_DISTANCE_MULTIPLIER;
double maxVerticalDistance = lineSpacing * MAX_VERTICAL_CHARACTER_DISTANCE;
double maxVerticalDistance = lineSpacing * LINE_SPACING_THRESHOLD_MULTIPLIER;
UnionFind<Character> unionFind = new UnionFind<>(new HashSet<>(characters));
AngleFilter filter = new AngleFilter(-ANGLE_TOLERANCE, ANGLE_TOLERANCE);
AngleFilter angleFilter = new AngleFilter(-ANGLE_TOLERANCE, ANGLE_TOLERANCE);
characters.forEach(character -> {
character.getNeighbors().forEach(neighbor -> {
double x = neighbor.getHorizontalDistance() / maxHorizontalDistance;
double y = neighbor.getVerticalDistance() / maxVerticalDistance;
if (character.getTextPosition().getDir() == neighbor.getCharacter().getTextPosition().getDir() && filter.matches(neighbor) && Math.pow(x, 2) + Math.pow(y,
2) <= 1) {
unionFind.union(character, neighbor.getCharacter());
}
});
character.getNeighbors()
.forEach(neighbor -> {
double normalizedHorizontalDistance = neighbor.getHorizontalDistance() / maxHorizontalDistance;
double normalizedVerticalDistance = neighbor.getVerticalDistance() / maxVerticalDistance;
if (character.getTextPosition().getDir() != neighbor.getCharacter().getTextPosition().getDir() //
|| !angleFilter.matches(neighbor) //
|| Math.pow(normalizedHorizontalDistance, 2) + Math.pow(normalizedVerticalDistance, 2) > 1 //
|| rulings.lineBetween(character.getTextPosition(), neighbor.getCharacter().getTextPosition())) {
return;
}
unionFind.union(character, neighbor.getCharacter());
});
});
List<Line> lines = new ArrayList<>();
unionFind.getGroups().forEach(group -> {
List<Character> lineCharacters = new ArrayList<>(group);
lineCharacters.sort(Comparator.comparingDouble(Character::getX));
lines.add(new Line(lineCharacters, characterSpacing));
});
return lines;
return unionFind.getGroups()
.stream()
.map(lineCharacters -> lineCharacters.stream()
.sorted(Comparator.comparingDouble(Character::getX))
.toList())
.map(lineCharacters -> new Line(lineCharacters, characterSpacing))
.toList();
}
}
@@ -1,10 +1,10 @@
package com.knecon.fforesight.service.layoutparser.processor.docstrum.service;
import java.util.ArrayList;
import java.util.Comparator;
import java.util.List;
import org.springframework.stereotype.Service;
import org.tinspin.index.Index;
import org.tinspin.index.kdtree.KDTree;
import com.knecon.fforesight.service.layoutparser.processor.docstrum.model.Character;
import com.knecon.fforesight.service.layoutparser.processor.docstrum.model.Neighbor;
@@ -13,115 +13,23 @@ import com.knecon.fforesight.service.layoutparser.processor.docstrum.model.Neigh
public class NearestNeighbourService {
private static final int NUMBER_OF_NEIGHBOURS = 8;
private static final double STEP = 16.0;
public void findNearestNeighbors(List<Character> characters) {
KDTree<Character> kdTree = KDTree.create(2);
characters.forEach(c -> kdTree.insert(new double[]{c.getX(), c.getY()}, c));
if (characters.isEmpty() || characters.size() == 1) {
return;
}
characters.sort(Comparator.comparingDouble(Character::getX));
int maxNeighborCount = NUMBER_OF_NEIGHBOURS;
if (characters.size() <= NUMBER_OF_NEIGHBOURS) {
maxNeighborCount = characters.size() - 1;
}
for (int i = 0; i < characters.size(); i++) {
Neighbor[] candidates = new Neighbor[maxNeighborCount + 1];
int neighborInsertionIndex = 0;
int neighborCount = 0;
int start = i;
int end = i + 1;
double distance = Double.POSITIVE_INFINITY;
for (double searchDistance = 0; searchDistance < distance; ) {
searchDistance += STEP;
boolean newCandidatesFound = false;
while (start > 0 && characters.get(i).getX() - characters.get(start - 1).getX() < searchDistance) {
start--;
candidates[neighborInsertionIndex] = new Neighbor(characters.get(start), characters.get(i));
neighborCount++;
if (neighborCount > maxNeighborCount) {
neighborInsertionIndex = clearMostDistant(candidates);
neighborCount--;
} else {
neighborInsertionIndex++;
}
newCandidatesFound = true;
}
while (end < characters.size() && characters.get(end).getX() - characters.get(i).getX() < searchDistance) {
candidates[neighborInsertionIndex] = new Neighbor(characters.get(end), characters.get(i));
neighborCount++;
if (neighborCount > maxNeighborCount) {
neighborInsertionIndex = clearMostDistant(candidates);
neighborCount--;
} else {
neighborInsertionIndex++;
}
end++;
newCandidatesFound = true;
}
if (newCandidatesFound && neighborCount >= maxNeighborCount) {
distance = maxDistance(candidates);
}
for(Character c : characters) {
Index.PointIteratorKnn<Character> iterator = kdTree.queryKnn(new double[]{c.getX(), c.getY()}, NUMBER_OF_NEIGHBOURS + 1);
// skip the first as this is identity
if(iterator.hasNext()) {
iterator.next();
}
if (neighborCount < maxNeighborCount) {
clearMostDistant(candidates);
}
List<Neighbor> candidatesList = new ArrayList<>(maxNeighborCount);
for (Neighbor candidate : candidates) {
if (candidate != null) {
candidatesList.add(candidate);
}
}
candidatesList.sort(Comparator.comparingDouble(Neighbor::getDistance));
assert candidatesList.size() == maxNeighborCount;
characters.get(i).setNeighbors(candidatesList);
}
}
private double maxDistance(Neighbor[] candidates) {
double maxDistance = 0;
for (Neighbor candidate : candidates) {
if (candidate == null) {
continue;
}
if (candidate.getDistance() > maxDistance) {
maxDistance = candidate.getDistance();
while(iterator.hasNext()) {
c.getNeighbors().add(new Neighbor(iterator.next().value(), c));
}
}
return maxDistance;
}
private int clearMostDistant(Neighbor[] candidates) {
double maxDistance = 0;
int maxIndex = 0;
for (int i = 0; i < candidates.length; i++) {
Neighbor candidate = candidates[i];
if (candidate == null) {
continue;
}
if (candidate.getDistance() > maxDistance) {
maxDistance = candidate.getDistance();
maxIndex = i;
}
}
candidates[maxIndex] = null;
return maxIndex;
}
}
@@ -39,7 +39,10 @@ public class ReadingOrderService {
}
}
if (histogram.values().stream().mapToInt(Integer::intValue).average().orElse(1) < MULTI_COLUMN_DETECTION_THRESHOLD) {
if (histogram.values()
.stream()
.mapToInt(Integer::intValue).average()
.orElse(1) < MULTI_COLUMN_DETECTION_THRESHOLD) {
return resolveSingleColumnReadingOrder(zones);
} else {
@@ -52,7 +55,7 @@ public class ReadingOrderService {
private static List<Zone> resolveSingleColumnReadingOrder(List<Zone> zones) {
zones.sort(Comparator.comparing(BoundingBox::getY, (o1, o2) -> DoubleUtils.compareDouble(o1, o2, THRESHOLD))
.thenComparing(BoundingBox::getX, (o1, o2) -> DoubleUtils.compareDouble(o1, o2, THRESHOLD)));
.thenComparing(BoundingBox::getX, (o1, o2) -> DoubleUtils.compareDouble(o1, o2, THRESHOLD)));
return zones;
}
@@ -90,14 +93,14 @@ public class ReadingOrderService {
}
leftOf.sort(Comparator.comparing(BoundingBox::getY, (o1, o2) -> DoubleUtils.compareDouble(o1, o2, THRESHOLD))
.thenComparing(BoundingBox::getX, (o1, o2) -> DoubleUtils.compareDouble(o1, o2, THRESHOLD)));
.thenComparing(BoundingBox::getX, (o1, o2) -> DoubleUtils.compareDouble(o1, o2, THRESHOLD)));
rightOf.sort(Comparator.comparing(BoundingBox::getY, (o1, o2) -> DoubleUtils.compareDouble(o1, o2, THRESHOLD))
.thenComparing(BoundingBox::getX, (o1, o2) -> DoubleUtils.compareDouble(o1, o2, THRESHOLD)));
.thenComparing(BoundingBox::getX, (o1, o2) -> DoubleUtils.compareDouble(o1, o2, THRESHOLD)));
middle.sort(Comparator.comparing(BoundingBox::getY, (o1, o2) -> DoubleUtils.compareDouble(o1, o2, THRESHOLD))
.thenComparing(BoundingBox::getX, (o1, o2) -> DoubleUtils.compareDouble(o1, o2, THRESHOLD)));
.thenComparing(BoundingBox::getX, (o1, o2) -> DoubleUtils.compareDouble(o1, o2, THRESHOLD)));
/*
List<Zone> leftNotIntersecting = new ArrayList<>();
for (Zone leftZone : leftOf) {
boolean intersects = false;
@@ -139,7 +142,7 @@ public class ReadingOrderService {
middle.addAll(leftNotIntersecting);
middle.addAll(rightNotIntersecting);
*/
List<Zone> sortedZones = new ArrayList<>();
sortedZones.addAll(leftOf);
sortedZones.addAll(rightOf);
@@ -5,6 +5,7 @@ import java.util.Comparator;
import java.util.HashSet;
import java.util.List;
import java.util.Set;
import java.util.stream.Collectors;
import org.springframework.stereotype.Service;
@@ -12,6 +13,7 @@ import com.knecon.fforesight.service.layoutparser.processor.docstrum.model.Chara
import com.knecon.fforesight.service.layoutparser.processor.docstrum.model.Line;
import com.knecon.fforesight.service.layoutparser.processor.docstrum.model.UnionFind;
import com.knecon.fforesight.service.layoutparser.processor.docstrum.model.Zone;
import com.knecon.fforesight.service.layoutparser.processor.model.table.CleanRulings;
@Service
public class ZoneBuilderService {
@@ -29,12 +31,10 @@ public class ZoneBuilderService {
private static final double ANGLE_TOLERANCE = Math.PI / 6;
private static final int MAX_ZONES = 300;
private static final double MAX_VERTICAL_MERGE_DISTANCE = 0.5;
public List<Zone> buildZones(List<Line> lines, double characterSpacing, double lineSpacing) {
public List<Zone> buildZones(List<Line> lines, double characterSpacing, double lineSpacing, CleanRulings rulings) {
double minHorizontalDistance = characterSpacing * MIN_HORIZONTAL_DISTANCE_MULTIPLIER;
double maxVerticalDistance = lineSpacing * MAX_VERTICAL_DISTANCE_MULTIPLIER;
@@ -45,38 +45,39 @@ public class ZoneBuilderService {
double meanHeight = calculateMeanHeight(lines);
lines.forEach(outerLine -> //
lines.forEach(innerLine -> {
lines.forEach(outerLine -> {
lines.forEach(innerLine -> {
double scale = Math.min(outerLine.getHeight(), innerLine.getHeight()) / meanHeight;
scale = Math.max(MIN_LINE_SIZE_SCALE, Math.min(scale, MAX_LINE_SIZE_SCALE));
if (innerLine == outerLine //
|| unionFind.inSameSet(outerLine, innerLine)//
|| outerLine.angularDifference(innerLine) > ANGLE_TOLERANCE) {
return;
}
if (!unionFind.inSameSet(outerLine, innerLine) && outerLine.angularDifference(innerLine) <= ANGLE_TOLERANCE) {
double scale = Math.min(outerLine.getHeight(), innerLine.getHeight()) / meanHeight;
scale = Math.max(MIN_LINE_SIZE_SCALE, Math.min(scale, MAX_LINE_SIZE_SCALE));
double horizontalDistance = outerLine.horizontalDistance(innerLine) / scale;
double verticalDistance = outerLine.verticalDistance(innerLine) / scale;
double horizontalDistance = outerLine.horizontalDistance(innerLine) / scale;
double verticalDistance = outerLine.verticalDistance(innerLine) / scale;
if (minHorizontalDistance <= horizontalDistance && verticalDistance <= maxVerticalDistance //
|| minHorizontalMergeDistance <= horizontalDistance && verticalDistance <= maxVerticalMergeDistance) {
unionFind.union(outerLine, innerLine);
}
}
}));
if ((!(minHorizontalDistance <= horizontalDistance) || !(verticalDistance <= maxVerticalDistance)) //
&& (!(minHorizontalMergeDistance <= horizontalDistance) || !(verticalDistance <= maxVerticalMergeDistance))) {
return;
}
List<Zone> zones = new ArrayList<>();
unionFind.getGroups().forEach(group -> {
zones.add(new Zone(new ArrayList<>(group)));
if (rulings.lineBetween(outerLine, innerLine)) {
return;
}
unionFind.union(outerLine, innerLine);
});
});
if (zones.size() > MAX_ZONES) {
List<Line> oneZoneLines = new ArrayList<>();
for (Zone zone : zones) {
oneZoneLines.addAll(zone.getLines());
}
return List.of(mergeLinesInZone(oneZoneLines, characterSpacing, lineSpacing));
}
return zones;
return unionFind.getGroups()
.stream()
.map(group -> mergeLinesInZone(new ArrayList<>(group), characterSpacing, lineSpacing))
.toList();
}
@@ -103,35 +104,40 @@ public class ZoneBuilderService {
UnionFind<Line> unionFind = new UnionFind<>(new HashSet<>(lines));
lines.forEach(outer -> {
lines.forEach(inner -> {
if (inner != outer) {
if (inner == outer) {
return;
}
double horizontalDistance = outer.horizontalDistance(inner);
double verticalDistance = outer.verticalDistance(inner);
double horizontalDistance = outer.horizontalDistance(inner);
double verticalDistance = outer.verticalDistance(inner);
if (horizontalDistance <= maxHorizontalDistance && minVerticalDistance <= verticalDistance && verticalDistance <= maxVerticalDistance) {
unionFind.union(outer, inner);
} else if (minVerticalDistance <= verticalDistance && verticalDistance <= maxVerticalDistance && Math.abs(horizontalDistance - Math.min(outer.getLength(),
inner.getLength())) < 0.1) {
boolean characterOverlap = false;
int overlappingCount = 0;
for (Character outerCharacter : outer.getCharacters()) {
for (Character innerCharacter : inner.getCharacters()) {
double characterOverlapDistance = outerCharacter.overlappingDistance(innerCharacter);
if (characterOverlapDistance > 2) {
characterOverlap = true;
}
if (characterOverlapDistance > 0) {
overlappingCount++;
}
if (horizontalDistance <= maxHorizontalDistance && minVerticalDistance <= verticalDistance && verticalDistance <= maxVerticalDistance) {
unionFind.union(outer, inner);
} else if (minVerticalDistance <= verticalDistance
&& verticalDistance <= maxVerticalDistance
&& Math.abs(horizontalDistance - Math.min(outer.getLength(), inner.getLength())) < 0.1) {
boolean characterOverlap = false;
int overlappingCount = 0;
for (Character outerCharacter : outer.getCharacters()) {
for (Character innerCharacter : inner.getCharacters()) {
double characterOverlapDistance = outerCharacter.overlappingDistance(innerCharacter);
if (characterOverlapDistance > 2) {
characterOverlap = true;
}
if (characterOverlapDistance > 0) {
overlappingCount++;
}
}
if (!characterOverlap && overlappingCount <= 2) {
unionFind.union(outer, inner);
}
}
if (!characterOverlap && overlappingCount <= 2) {
unionFind.union(outer, inner);
}
}
});
});
@@ -146,7 +152,9 @@ public class ZoneBuilderService {
outputZone.add(new Line(characters, characterSpacing));
}
return new Zone(outputZone);
return new Zone(outputZone.stream()
.sorted(Comparator.comparing(Line::getY0))
.collect(Collectors.toList()));
}
}
@@ -1,7 +1,11 @@
package com.knecon.fforesight.service.layoutparser.processor.model;
import java.util.HashSet;
import java.util.Set;
import com.fasterxml.jackson.annotation.JsonIgnore;
import com.iqser.red.service.persistence.service.v1.api.shared.model.redactionlog.Rectangle;
import com.knecon.fforesight.service.layoutparser.internal.api.data.redaction.LayoutEngine;
import com.knecon.fforesight.service.layoutparser.processor.docstrum.model.BoundingBox;
import com.knecon.fforesight.service.layoutparser.processor.model.text.TextPageBlock;
import lombok.AllArgsConstructor;
@@ -13,18 +17,13 @@ import lombok.NoArgsConstructor;
@AllArgsConstructor
@NoArgsConstructor
@EqualsAndHashCode(callSuper = true)
public abstract class AbstractPageBlock extends Rectangle {
public abstract class AbstractPageBlock extends BoundingBox {
@JsonIgnore
protected float minX;
@JsonIgnore
protected float maxX;
@JsonIgnore
protected float minY;
@JsonIgnore
protected float maxY;
@JsonIgnore
protected PageBlockType classification;
Set<LayoutEngine> engines = new HashSet<>();
@JsonIgnore
protected int page;
@@ -41,63 +40,6 @@ public abstract class AbstractPageBlock extends Rectangle {
}
public boolean containsBlock(TextPageBlock other) {
return this.minX <= other.getPdfMinX() && this.maxX >= other.getPdfMaxX() && this.minY >= other.getPdfMinY() && this.maxY <= other.getPdfMaxY();
}
public boolean contains(AbstractPageBlock other) {
return this.minX <= other.minX && this.maxX >= other.maxX && this.minY >= other.minY && this.maxY <= other.maxY;
}
public boolean contains(Rectangle other) {
return page == other.getPage() && this.minX <= other.getTopLeft().getX() && this.maxX >= other.getTopLeft().getX() + other.getWidth() && this.minY <= other.getTopLeft()
.getY() && this.maxY >= other.getTopLeft().getY() + other.getHeight();
}
@JsonIgnore
public float getHeight() {
return maxY - minY;
}
@JsonIgnore
public float getWidth() {
return maxX - minX;
}
public boolean intersectsY(AbstractPageBlock apb) {
return this.minY <= apb.getMaxY() && this.maxY >= apb.getMinY();
}
public boolean almostIntersects(AbstractPageBlock apb, float yThreshold, float xThreshold) {
return this.almostIntersectsX(apb, xThreshold) && this.almostIntersectsY(apb, yThreshold);
}
private boolean almostIntersectsY(AbstractPageBlock apb, float threshold) {
return this.minY - threshold <= apb.getMaxY() && this.maxY + threshold >= apb.getMinY();
}
private boolean almostIntersectsX(AbstractPageBlock apb, float threshold) {
return this.minX - threshold <= apb.getMaxX() && this.maxX + threshold >= apb.getMinX();
}
public abstract boolean isEmpty();
}
@@ -3,8 +3,11 @@ package com.knecon.fforesight.service.layoutparser.processor.model;
import java.util.ArrayList;
import java.util.List;
import com.knecon.fforesight.service.layoutparser.processor.model.outline.OutlineObjectTree;
import com.knecon.fforesight.service.layoutparser.processor.model.outline.TableOfContents;
import com.knecon.fforesight.service.layoutparser.processor.model.text.StringFrequencyCounter;
import com.knecon.fforesight.service.layoutparser.processor.model.text.UnclassifiedText;
import com.knecon.fforesight.service.layoutparser.processor.visualization.LayoutparsingVisualizations;
import lombok.Data;
import lombok.NoArgsConstructor;
@@ -22,8 +25,12 @@ public class ClassificationDocument {
private FloatFrequencyCounter fontSizeCounter = new FloatFrequencyCounter();
private StringFrequencyCounter fontCounter = new StringFrequencyCounter();
private StringFrequencyCounter fontStyleCounter = new StringFrequencyCounter();
private LayoutparsingVisualizations visualizations = new LayoutparsingVisualizations();
private boolean headlines;
private long rulesVersion;
private OutlineObjectTree outlineObjectTree;
private TableOfContents tableOfContents;
}
@@ -8,13 +8,13 @@ import java.util.Map;
import com.iqser.red.service.persistence.service.v1.api.shared.model.redactionlog.Rectangle;
import com.knecon.fforesight.service.layoutparser.processor.model.image.ClassifiedImage;
import com.knecon.fforesight.service.layoutparser.processor.model.outline.OutlineObject;
import com.knecon.fforesight.service.layoutparser.processor.model.table.CleanRulings;
import com.knecon.fforesight.service.layoutparser.processor.model.text.StringFrequencyCounter;
import lombok.Data;
import lombok.NonNull;
import lombok.RequiredArgsConstructor;
import org.apache.pdfbox.pdmodel.documentinterchange.markedcontent.PDMarkedContent;
@Data
@RequiredArgsConstructor
@@ -23,6 +23,10 @@ public class ClassificationPage {
@NonNull
private List<AbstractPageBlock> textBlocks;
private List<OutlineObject> outlineObjects = new ArrayList<>();
private List<AbstractPageBlock> headlines = new ArrayList<>();
private List<ClassifiedImage> images = new ArrayList<>();
private Rectangle bodyTextFrame;
@@ -12,6 +12,7 @@ import lombok.NoArgsConstructor;
@Data
@NoArgsConstructor
@Deprecated
public class ClassificationSection {
private List<AbstractPageBlock> pageBlocks = new ArrayList<>();
@@ -31,6 +31,19 @@ public enum PageBlockType {
}
public static int getHeadlineNumber(PageBlockType pageBlockType) {
return switch (pageBlockType) {
case H1 -> 1;
case H2 -> 2;
case H3 -> 3;
case H4 -> 4;
case H5 -> 5;
default -> 6;
};
}
public boolean isHeadline() {
return this.equals(H1) || this.equals(H2) || this.equals(H3) || this.equals(H4) || this.equals(H5) || this.equals(H6);
@@ -8,6 +8,7 @@ import java.util.regex.Pattern;
import lombok.AccessLevel;
import lombok.AllArgsConstructor;
import lombok.Getter;
import lombok.experimental.FieldDefaults;
@AllArgsConstructor
@@ -16,13 +17,15 @@ public class SectionIdentifier {
static Pattern numericalIdentifierPattern = Pattern.compile("^[\\s]?(\\d+)[\\s.,;]?(\\d+)?[\\s.,;]?(\\d+)?[\\s.,;]?(\\d+)?");
private enum Format {
public enum Format {
EMPTY,
NUMERICAL,
DOCUMENT
}
@Getter
Format format;
@Getter
String identifierString;
List<Integer> identifiers;
boolean asChild;
@@ -140,8 +140,8 @@ public class DocumentTree {
if (treeId.isEmpty()) {
return root;
}
Entry entry = root.children.get(treeId.get(0));
for (int id : treeId.subList(1, treeId.size())) {
Entry entry = root;
for (int id : treeId) {
entry = entry.children.get(id);
}
return entry;
@@ -0,0 +1,74 @@
package com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes;
import java.awt.geom.Rectangle2D;
import java.util.HashSet;
import java.util.List;
import java.util.Map;
import java.util.Set;
import com.knecon.fforesight.service.layoutparser.internal.api.data.redaction.LayoutEngine;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.DocumentTree;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.entity.RedactionEntity;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.textblock.TextBlock;
import lombok.AccessLevel;
import lombok.AllArgsConstructor;
import lombok.Builder;
import lombok.Data;
import lombok.EqualsAndHashCode;
import lombok.NoArgsConstructor;
import lombok.experimental.FieldDefaults;
import lombok.experimental.SuperBuilder;
import lombok.extern.slf4j.Slf4j;
@Slf4j
@Data
@SuperBuilder
@AllArgsConstructor
@NoArgsConstructor
@FieldDefaults(level = AccessLevel.PRIVATE)
public abstract class AbstractSemanticNode implements GenericSemanticNode {
@Builder.Default
Set<LayoutEngine> engines = new HashSet<>(Set.of(LayoutEngine.ALGORITHM));
List<Integer> treeId;
TextBlock textBlock;
@EqualsAndHashCode.Exclude
DocumentTree documentTree;
@Builder.Default
@EqualsAndHashCode.Exclude
Set<RedactionEntity> entities = new HashSet<>();
@EqualsAndHashCode.Exclude
Map<Page, Rectangle2D> bBoxCache;
@Override
public TextBlock getTextBlock() {
if (textBlock == null) {
textBlock = GenericSemanticNode.super.getTextBlock();
}
return textBlock;
}
@Override
public String toString() {
return treeId.toString() + ": " + getType() + ": " + this.getTextBlock().buildSummary();
}
@Override
public Map<Page, Rectangle2D> getBBox() {
if (bBoxCache == null) {
bBoxCache = GenericSemanticNode.super.getBBox();
}
return bBoxCache;
}
}
@@ -3,42 +3,37 @@ package com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes;
import java.awt.geom.Rectangle2D;
import java.util.Collections;
import java.util.HashMap;
import java.util.HashSet;
import java.util.List;
import java.util.Map;
import java.util.Set;
import java.util.stream.Collectors;
import java.util.stream.Stream;
import com.knecon.fforesight.service.layoutparser.internal.api.data.redaction.LayoutEngine;
import com.knecon.fforesight.service.layoutparser.internal.api.data.redaction.NodeType;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.DocumentTree;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.entity.RedactionEntity;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.textblock.TextBlock;
import com.knecon.fforesight.service.layoutparser.processor.visualization.LayoutparsingVisualizations;
import lombok.AccessLevel;
import lombok.AllArgsConstructor;
import lombok.Builder;
import lombok.Data;
import lombok.EqualsAndHashCode;
import lombok.NoArgsConstructor;
import lombok.experimental.FieldDefaults;
import lombok.experimental.SuperBuilder;
@Data
@Builder
@SuperBuilder
@AllArgsConstructor
@NoArgsConstructor
@EqualsAndHashCode(callSuper = true)
@FieldDefaults(level = AccessLevel.PRIVATE)
public class Document implements GenericSemanticNode {
@Builder.Default
Set<LayoutEngine> engines = new HashSet<>(Set.of(LayoutEngine.ALGORITHM));
public class Document extends AbstractSemanticNode {
Set<Page> pages;
DocumentTree documentTree;
Integer numberOfPages;
TextBlock textBlock;
@Builder.Default
Set<RedactionEntity> entities = new HashSet<>();
LayoutparsingVisualizations visualizations;
@Override
@@ -48,15 +43,27 @@ public class Document implements GenericSemanticNode {
}
public TextBlock getTextBlock() {
/**
* Gets the sections of the document as a list.
*
* @return A list of all sections within the document.
*/
public List<Section> getAllSections() {
if (textBlock == null) {
textBlock = GenericSemanticNode.super.getTextBlock();
}
return textBlock;
return streamAllSubNodesOfType(NodeType.SECTION).map(node -> (Section) node)
.collect(Collectors.toList());
}
/**
* Gets the main sections of the document as a list.
*
* @return A list of main sections within the document
* @deprecated This method is marked for removal.
* Use {@link #streamChildrenOfType(NodeType)} instead,
* or {@link #getChildrenOfTypeSectionOrSuperSection()} which returns children of type SECTION as well as SUPER_SECTION.
*/
@Deprecated(forRemoval = true)
public List<Section> getMainSections() {
return streamChildrenOfType(NodeType.SECTION).map(node -> (Section) node)
@@ -64,9 +71,45 @@ public class Document implements GenericSemanticNode {
}
/**
* Gets the direct children of type SECTION or SUPER_SECTION of the document as a list of SemanticNode objects.
*
* @return A list of all children of type SECTION or SUPER_SECTION.
*/
public List<SemanticNode> getChildrenOfTypeSectionOrSuperSection() {
return streamChildren().filter(semanticNode -> semanticNode.getType().equals(NodeType.SECTION) || semanticNode.getType().equals(NodeType.SUPER_SECTION))
.toList();
}
public List<Header> getHeaders() {
return streamChildrenOfType(NodeType.HEADER).map(node -> (Header) node)
.collect(Collectors.toList());
}
public List<Footer> getFooters() {
return streamChildrenOfType(NodeType.FOOTER).map(node -> (Footer) node)
.collect(Collectors.toList());
}
@Override
public Headline getHeadline() {
return streamAllSubNodesOfType(NodeType.HEADLINE).map(node -> (Headline) node)
.findFirst()
.orElse(Headline.builder().build());
}
public Stream<TextBlock> streamTerminalTextBlocksInOrder() {
return streamAllNodes().filter(SemanticNode::isLeaf).map(SemanticNode::getTextBlock);
return streamAllNodes().filter(SemanticNode::isLeaf)
.map(SemanticNode::getTextBlock);
}
@@ -84,18 +127,9 @@ public class Document implements GenericSemanticNode {
}
@Override
public Headline getHeadline() {
return streamAllSubNodesOfType(NodeType.HEADLINE).map(node -> (Headline) node)
.findFirst()
.orElse(Headline.builder().build());
}
private Stream<SemanticNode> streamAllNodes() {
return documentTree.allEntriesInOrder()
return getDocumentTree().allEntriesInOrder()
.map(DocumentTree.Entry::getNode);
}
@@ -20,7 +20,8 @@ public class DuplicatedParagraph extends Paragraph {
@Override
public TextBlock getTextBlock() {
return Stream.of(leafTextBlock, unsortedLeafTextBlock).collect(new TextBlockCollector());
return Stream.of(super.getLeafTextBlock(), unsortedLeafTextBlock)
.collect(new TextBlockCollector());
}
@@ -1,48 +1,24 @@
package com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes;
import java.awt.geom.Rectangle2D;
import java.util.HashSet;
import java.util.List;
import java.util.Map;
import java.util.Set;
import com.knecon.fforesight.service.layoutparser.internal.api.data.redaction.LayoutEngine;
import com.knecon.fforesight.service.layoutparser.internal.api.data.redaction.NodeType;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.DocumentTree;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.entity.RedactionEntity;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.textblock.TextBlock;
import lombok.AccessLevel;
import lombok.AllArgsConstructor;
import lombok.Builder;
import lombok.Data;
import lombok.EqualsAndHashCode;
import lombok.NoArgsConstructor;
import lombok.experimental.FieldDefaults;
import lombok.experimental.SuperBuilder;
@Data
@Builder
@SuperBuilder
@AllArgsConstructor
@NoArgsConstructor
@EqualsAndHashCode(callSuper = true)
@FieldDefaults(level = AccessLevel.PRIVATE)
public class Footer implements GenericSemanticNode {
public class Footer extends AbstractSemanticNode {
@Builder.Default
Set<LayoutEngine> engines = new HashSet<>(Set.of(LayoutEngine.ALGORITHM));
List<Integer> treeId;
TextBlock leafTextBlock;
@EqualsAndHashCode.Exclude
DocumentTree documentTree;
@Builder.Default
@EqualsAndHashCode.Exclude
Set<RedactionEntity> entities = new HashSet<>();
@EqualsAndHashCode.Exclude
Map<Page, Rectangle2D> bBoxCache;
@Override
public NodeType getType() {
@@ -68,17 +44,7 @@ public class Footer implements GenericSemanticNode {
@Override
public String toString() {
return treeId + ": " + NodeType.FOOTER + ": " + leafTextBlock.buildSummary();
}
@Override
public Map<Page, Rectangle2D> getBBox() {
if (bBoxCache == null) {
bBoxCache = GenericSemanticNode.super.getBBox();
}
return bBoxCache;
return getTreeId() + ": " + NodeType.FOOTER + ": " + leafTextBlock.buildSummary();
}
}
@@ -1,47 +1,24 @@
package com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes;
import java.awt.geom.Rectangle2D;
import java.util.HashSet;
import java.util.List;
import java.util.Map;
import java.util.Set;
import com.knecon.fforesight.service.layoutparser.internal.api.data.redaction.LayoutEngine;
import com.knecon.fforesight.service.layoutparser.internal.api.data.redaction.NodeType;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.DocumentTree;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.entity.RedactionEntity;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.textblock.TextBlock;
import lombok.AccessLevel;
import lombok.AllArgsConstructor;
import lombok.Builder;
import lombok.Data;
import lombok.EqualsAndHashCode;
import lombok.NoArgsConstructor;
import lombok.experimental.FieldDefaults;
import lombok.experimental.SuperBuilder;
@Data
@Builder
@SuperBuilder
@AllArgsConstructor
@NoArgsConstructor
@EqualsAndHashCode(callSuper = true)
@FieldDefaults(level = AccessLevel.PRIVATE)
public class Header implements GenericSemanticNode {
public class Header extends AbstractSemanticNode {
@Builder.Default
Set<LayoutEngine> engines = new HashSet<>(Set.of(LayoutEngine.ALGORITHM));
List<Integer> treeId;
TextBlock leafTextBlock;
@EqualsAndHashCode.Exclude
DocumentTree documentTree;
@Builder.Default
@EqualsAndHashCode.Exclude
Set<RedactionEntity> entities = new HashSet<>();
@EqualsAndHashCode.Exclude
Map<Page, Rectangle2D> bBoxCache;
@Override
public boolean isLeaf() {
@@ -67,17 +44,7 @@ public class Header implements GenericSemanticNode {
@Override
public String toString() {
return treeId + ": " + NodeType.HEADER + ": " + leafTextBlock.buildSummary();
}
@Override
public Map<Page, Rectangle2D> getBBox() {
if (bBoxCache == null) {
bBoxCache = GenericSemanticNode.super.getBBox();
}
return bBoxCache;
return getTreeId() + ": " + NodeType.HEADER + ": " + leafTextBlock.buildSummary();
}
}
@@ -1,47 +1,24 @@
package com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes;
import java.awt.geom.Rectangle2D;
import java.util.HashSet;
import java.util.List;
import java.util.Map;
import java.util.Set;
import com.knecon.fforesight.service.layoutparser.internal.api.data.redaction.LayoutEngine;
import com.knecon.fforesight.service.layoutparser.internal.api.data.redaction.NodeType;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.DocumentTree;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.entity.RedactionEntity;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.textblock.TextBlock;
import lombok.AccessLevel;
import lombok.AllArgsConstructor;
import lombok.Builder;
import lombok.Data;
import lombok.EqualsAndHashCode;
import lombok.NoArgsConstructor;
import lombok.experimental.FieldDefaults;
import lombok.experimental.SuperBuilder;
@Data
@Builder
@SuperBuilder
@AllArgsConstructor
@NoArgsConstructor
@EqualsAndHashCode(callSuper = true)
@FieldDefaults(level = AccessLevel.PRIVATE)
public class Headline implements GenericSemanticNode {
public class Headline extends AbstractSemanticNode {
@Builder.Default
Set<LayoutEngine> engines = new HashSet<>(Set.of(LayoutEngine.ALGORITHM));
List<Integer> treeId;
TextBlock leafTextBlock;
@EqualsAndHashCode.Exclude
DocumentTree documentTree;
@Builder.Default
@EqualsAndHashCode.Exclude
Set<RedactionEntity> entities = new HashSet<>();
@EqualsAndHashCode.Exclude
Map<Page, Rectangle2D> bBoxCache;
@Override
public NodeType getType() {
@@ -67,7 +44,7 @@ public class Headline implements GenericSemanticNode {
@Override
public String toString() {
return treeId + ": " + NodeType.HEADLINE + ": " + leafTextBlock.buildSummary();
return getTreeId() + ": " + NodeType.HEADLINE + ": " + leafTextBlock.buildSummary();
}
@@ -77,14 +54,4 @@ public class Headline implements GenericSemanticNode {
return this;
}
@Override
public Map<Page, Rectangle2D> getBBox() {
if (bBoxCache == null) {
bBoxCache = GenericSemanticNode.super.getBBox();
}
return bBoxCache;
}
}
@@ -3,17 +3,11 @@ package com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes;
import java.awt.geom.Rectangle2D;
import java.util.Collections;
import java.util.HashMap;
import java.util.HashSet;
import java.util.List;
import java.util.Map;
import java.util.Set;
import com.knecon.fforesight.service.layoutparser.internal.api.data.redaction.LayoutEngine;
import com.knecon.fforesight.service.layoutparser.internal.api.data.redaction.NodeType;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.DocumentTree;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.entity.RedactionEntity;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.textblock.TextBlock;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.textblock.TextBlockCollector;
import lombok.AccessLevel;
import lombok.AllArgsConstructor;
@@ -22,24 +16,26 @@ import lombok.Data;
import lombok.EqualsAndHashCode;
import lombok.NoArgsConstructor;
import lombok.experimental.FieldDefaults;
import lombok.experimental.SuperBuilder;
@Data
@Builder
@SuperBuilder
@AllArgsConstructor
@NoArgsConstructor
@EqualsAndHashCode(callSuper = true)
@FieldDefaults(level = AccessLevel.PRIVATE)
public class Image implements GenericSemanticNode {
public class Image extends AbstractSemanticNode {
@Builder.Default
Set<LayoutEngine> engines = new HashSet<>(Set.of(LayoutEngine.ALGORITHM));
List<Integer> treeId;
String id;
String representationHash;
ImageType imageType;
boolean transparent;
Rectangle2D position;
TextBlock leafTextBlock;
boolean redaction;
boolean ignored;
@Builder.Default
@@ -52,13 +48,6 @@ public class Image implements GenericSemanticNode {
@EqualsAndHashCode.Exclude
Page page;
@EqualsAndHashCode.Exclude
DocumentTree documentTree;
@Builder.Default
@EqualsAndHashCode.Exclude
Set<RedactionEntity> entities = new HashSet<>();
@Override
public NodeType getType() {
@@ -70,9 +59,7 @@ public class Image implements GenericSemanticNode {
@Override
public TextBlock getTextBlock() {
return streamAllSubNodes().filter(SemanticNode::isLeaf)
.map(SemanticNode::getLeafTextBlock)
.collect(new TextBlockCollector());
return leafTextBlock;
}
@@ -86,7 +73,7 @@ public class Image implements GenericSemanticNode {
@Override
public String toString() {
return treeId + ": " + NodeType.IMAGE + ": " + imageType.toString() + " " + position;
return getTreeId() + ": " + NodeType.IMAGE + ": " + imageType.toString() + " " + position;
}
@@ -98,4 +85,11 @@ public class Image implements GenericSemanticNode {
return bBoxPerPage;
}
@Override
public boolean isLeaf() {
return true;
}
}
@@ -9,7 +9,8 @@ public enum ImageType {
SIGNATURE_VISUAL,
OTHER,
OCR;
OCR,
GRAPHIC;
public static ImageType fromString(String imageType) {
@@ -19,6 +20,7 @@ public enum ImageType {
case "formula" -> ImageType.FORMULA;
case "signature" -> ImageType.SIGNATURE;
case "ocr" -> ImageType.OCR;
case "graphic" -> ImageType.GRAPHIC;
default -> ImageType.OTHER;
};
}
@@ -1,20 +1,10 @@
package com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes;
import java.awt.geom.Rectangle2D;
import java.util.HashSet;
import java.util.List;
import java.util.Map;
import java.util.Set;
import com.knecon.fforesight.service.layoutparser.internal.api.data.redaction.LayoutEngine;
import com.knecon.fforesight.service.layoutparser.internal.api.data.redaction.NodeType;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.DocumentTree;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.entity.RedactionEntity;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.textblock.TextBlock;
import lombok.AccessLevel;
import lombok.AllArgsConstructor;
import lombok.Builder;
import lombok.Data;
import lombok.EqualsAndHashCode;
import lombok.experimental.FieldDefaults;
@@ -23,25 +13,12 @@ import lombok.experimental.SuperBuilder;
@Data
@SuperBuilder
@AllArgsConstructor
@EqualsAndHashCode(callSuper = true)
@FieldDefaults(level = AccessLevel.PROTECTED)
public class Paragraph implements GenericSemanticNode {
public class Paragraph extends AbstractSemanticNode {
@Builder.Default
Set<LayoutEngine> engines = new HashSet<>(Set.of(LayoutEngine.ALGORITHM));
List<Integer> treeId;
TextBlock leafTextBlock;
@EqualsAndHashCode.Exclude
DocumentTree documentTree;
@Builder.Default
@EqualsAndHashCode.Exclude
Set<RedactionEntity> entities = new HashSet<>();
@EqualsAndHashCode.Exclude
Map<Page, Rectangle2D> bBoxCache;
@Override
public NodeType getType() {
@@ -63,21 +40,4 @@ public class Paragraph implements GenericSemanticNode {
return leafTextBlock;
}
@Override
public String toString() {
return treeId + ": " + NodeType.PARAGRAPH + ": " + leafTextBlock.buildSummary();
}
@Override
public Map<Page, Rectangle2D> getBBox() {
if (bBoxCache == null) {
bBoxCache = GenericSemanticNode.super.getBBox();
}
return bBoxCache;
}
}
@@ -1,47 +1,20 @@
package com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes;
import java.awt.geom.Rectangle2D;
import java.util.HashSet;
import java.util.List;
import java.util.Map;
import java.util.Set;
import com.knecon.fforesight.service.layoutparser.internal.api.data.redaction.LayoutEngine;
import com.knecon.fforesight.service.layoutparser.internal.api.data.redaction.NodeType;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.DocumentTree;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.entity.RedactionEntity;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.textblock.TextBlock;
import lombok.AccessLevel;
import lombok.AllArgsConstructor;
import lombok.Builder;
import lombok.Data;
import lombok.EqualsAndHashCode;
import lombok.experimental.FieldDefaults;
import lombok.extern.slf4j.Slf4j;
import lombok.experimental.SuperBuilder;
@Slf4j
@Data
@Builder
@SuperBuilder
@AllArgsConstructor
@FieldDefaults(level = AccessLevel.PRIVATE)
public class Section implements GenericSemanticNode {
@Builder.Default
Set<LayoutEngine> engines = new HashSet<>(Set.of(LayoutEngine.ALGORITHM));
List<Integer> treeId;
TextBlock textBlock;
@EqualsAndHashCode.Exclude
DocumentTree documentTree;
@Builder.Default
@EqualsAndHashCode.Exclude
Set<RedactionEntity> entities = new HashSet<>();
@EqualsAndHashCode.Exclude
Map<Page, Rectangle2D> bBoxCache;
@EqualsAndHashCode(callSuper = true)
public class Section extends AbstractSemanticNode {
@Override
public NodeType getType() {
@@ -50,6 +23,14 @@ public class Section implements GenericSemanticNode {
}
public Headline getHeadline() {
return streamChildrenOfType(NodeType.HEADLINE).map(node -> (Headline) node)
.findFirst()
.orElseGet(() -> getParent().getHeadline());
}
public boolean hasTables() {
return streamAllSubNodesOfType(NodeType.TABLE).findAny()
@@ -57,39 +38,10 @@ public class Section implements GenericSemanticNode {
}
@Override
public TextBlock getTextBlock() {
if (textBlock == null) {
textBlock = GenericSemanticNode.super.getTextBlock();
}
return textBlock;
}
@Override
public String toString() {
return treeId.toString() + ": " + NodeType.SECTION + ": " + this.getTextBlock().buildSummary();
}
public Headline getHeadline() {
return streamChildrenOfType(NodeType.HEADLINE)//
.map(node -> (Headline) node)//
.findFirst()//
.orElseGet(() -> getParent().getHeadline());
}
@Override
public Map<Page, Rectangle2D> getBBox() {
if (bBoxCache == null) {
bBoxCache = GenericSemanticNode.super.getBBox();
}
return bBoxCache;
return getTreeId() + ": " + NodeType.SECTION + ": " + this.getTextBlock().buildSummary();
}
}
@@ -0,0 +1,40 @@
package com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes;
import com.knecon.fforesight.service.layoutparser.internal.api.data.redaction.NodeType;
import lombok.AccessLevel;
import lombok.AllArgsConstructor;
import lombok.Data;
import lombok.EqualsAndHashCode;
import lombok.experimental.FieldDefaults;
import lombok.experimental.SuperBuilder;
@Data
@SuperBuilder
@AllArgsConstructor
@FieldDefaults(level = AccessLevel.PRIVATE)
@EqualsAndHashCode(callSuper = true)
public class SuperSection extends AbstractSemanticNode {
@Override
public NodeType getType() {
return NodeType.SUPER_SECTION;
}
public Headline getHeadline() {
return streamChildrenOfType(NodeType.HEADLINE).map(node -> (Headline) node)
.findFirst()
.orElseGet(() -> getParent().getHeadline());
}
@Override
public String toString() {
return getTreeId() + ": " + NodeType.SUPER_SECTION + ": " + this.getTextBlock().buildSummary();
}
}
@@ -2,34 +2,26 @@ package com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes;
import java.awt.geom.Rectangle2D;
import java.util.HashMap;
import java.util.HashSet;
import java.util.List;
import java.util.Map;
import java.util.Set;
import com.knecon.fforesight.service.layoutparser.internal.api.data.redaction.LayoutEngine;
import com.knecon.fforesight.service.layoutparser.internal.api.data.redaction.NodeType;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.DocumentTree;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.entity.RedactionEntity;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.textblock.TextBlock;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.textblock.TextBlockCollector;
import lombok.AccessLevel;
import lombok.AllArgsConstructor;
import lombok.Builder;
import lombok.Data;
import lombok.EqualsAndHashCode;
import lombok.experimental.FieldDefaults;
import lombok.experimental.SuperBuilder;
@Data
@Builder
@SuperBuilder
@AllArgsConstructor
@EqualsAndHashCode(callSuper = true)
@FieldDefaults(level = AccessLevel.PRIVATE)
public class TableCell implements GenericSemanticNode {
public class TableCell extends AbstractSemanticNode {
@Builder.Default
Set<LayoutEngine> engines = new HashSet<>(Set.of(LayoutEngine.ALGORITHM));
List<Integer> treeId;
int row;
int col;
boolean header;
@@ -40,13 +32,6 @@ public class TableCell implements GenericSemanticNode {
TextBlock textBlock;
@EqualsAndHashCode.Exclude
DocumentTree documentTree;
@Builder.Default
@EqualsAndHashCode.Exclude
Set<RedactionEntity> entities = new HashSet<>();
@Override
public Map<Page, Rectangle2D> getBBox() {
@@ -96,7 +81,7 @@ public class TableCell implements GenericSemanticNode {
@Override
public String toString() {
return treeId + ": " + NodeType.TABLE_CELL + ": " + this.getTextBlock().buildSummary();
return getTreeId() + ": " + NodeType.TABLE_CELL + ": " + this.getTextBlock().buildSummary();
}
}
@@ -50,14 +50,16 @@ public class ConcatenatedTextBlock implements TextBlock {
public ConcatenatedTextBlock concat(TextBlock textBlock) {
int start = textBlock.getBoundary().start();
int end = textBlock.getBoundary().end();
if (this.atomicTextBlocks.isEmpty()) {
boundary.setStart(textBlock.getBoundary().start());
boundary.setEnd(textBlock.getBoundary().end());
} else if (boundary.end() != textBlock.getBoundary().start()) {
boundary.setStart(start);
boundary.setEnd(end);
} else if (boundary.end() != start) {
throw new UnsupportedOperationException(format("Can only concat consecutive TextBlocks, trying to concat %s and %s", boundary, textBlock.getBoundary()));
}
this.atomicTextBlocks.addAll(textBlock.getAtomicTextBlocks());
boundary.setEnd(textBlock.getBoundary().end());
boundary.setEnd(end);
this.searchText = null;
return this;
}
@@ -24,5 +24,7 @@ public class ClassifiedImage {
private boolean hasTransparency;
@NonNull
private int page;
@NonNull
private String representation;
}
@@ -0,0 +1,209 @@
package com.knecon.fforesight.service.layoutparser.processor.model.outline;
import java.awt.geom.Point2D;
import java.io.IOException;
import java.util.ArrayList;
import java.util.List;
import java.util.Locale;
import java.util.Optional;
import org.apache.pdfbox.cos.COSArray;
import org.apache.pdfbox.cos.COSBase;
import org.apache.pdfbox.cos.COSDictionary;
import org.apache.pdfbox.cos.COSName;
import org.apache.pdfbox.cos.COSString;
import org.apache.pdfbox.pdmodel.PDDestinationNameTreeNode;
import org.apache.pdfbox.pdmodel.PDDocument;
import org.apache.pdfbox.pdmodel.PDDocumentNameDictionary;
import org.apache.pdfbox.pdmodel.PDPage;
import org.apache.pdfbox.pdmodel.interactive.action.PDAction;
import org.apache.pdfbox.pdmodel.interactive.documentnavigation.destination.PDDestination;
import org.apache.pdfbox.pdmodel.interactive.documentnavigation.destination.PDPageFitHeightDestination;
import org.apache.pdfbox.pdmodel.interactive.documentnavigation.destination.PDPageFitRectangleDestination;
import org.apache.pdfbox.pdmodel.interactive.documentnavigation.destination.PDPageFitWidthDestination;
import org.apache.pdfbox.pdmodel.interactive.documentnavigation.destination.PDPageXYZDestination;
import org.apache.pdfbox.pdmodel.interactive.documentnavigation.outline.PDDocumentOutline;
import org.apache.pdfbox.pdmodel.interactive.documentnavigation.outline.PDOutlineItem;
import org.springframework.stereotype.Service;
import lombok.SneakyThrows;
import lombok.extern.slf4j.Slf4j;
@Service
@Slf4j
public class OutlineExtractorService {
private static final String PDDESTINATION_TYPE_FIT = "Fit";
private static final String PDDESTINATION_TYPE_FIT_B = "FitB";
private static final String PDDESTINATION_TYPE_FIT_H = "FitH";
private static final String PDDESTINATION_TYPE_FIT_V = "FitV";
private static final String PDDESTINATION_TYPE_FIT_R = "FitR";
private static final String PDDESTINATION_TYPE_FIT_BH = "FitBH";
private static final String PDDESTINATION_TYPE_FIT_BV = "FitBV";
private static final String PDDESTINATION_TYPE_XYZ = "XYZ";
@SneakyThrows
public OutlineObjectTree getOutlineObjectTree(PDDocument document) {
PDDocumentOutline documentOutline = document.getDocumentCatalog().getDocumentOutline();
List<OutlineObjectTreeNode> rootNodes = new ArrayList<>();
if (documentOutline != null) {
for (PDOutlineItem child : documentOutline.children()) {
Optional<OutlineObjectTreeNode> outlineObjectWithChildren = createOutlineObjectWithChildren(child, document, 1);
outlineObjectWithChildren.ifPresent(rootNodes::add);
}
}
return new OutlineObjectTree(rootNodes);
}
@SneakyThrows
private Optional<OutlineObjectTreeNode> createOutlineObjectWithChildren(PDOutlineItem item, PDDocument document, int depth) {
Optional<OutlineObjectTreeNode> outlineObject = createOutlineObject(item, document, depth);
if (outlineObject.isPresent()) {
for (var child : item.children()) {
Optional<OutlineObjectTreeNode> outlineObjectWithChildren = createOutlineObjectWithChildren(child, document, depth + 1);
outlineObjectWithChildren.ifPresent(outlineObjectTreeNode -> outlineObject.get().addChild(outlineObjectTreeNode));
}
}
return outlineObject;
}
// if the structure elements are processed beforehand, another case can be handled here as well:
// outline objects can reference structure elements (see pdf documentation)
@SneakyThrows
private Optional<OutlineObjectTreeNode> createOutlineObject(PDOutlineItem item, PDDocument document, int depth) {
String title = item.getTitle();
PDPage page = item.findDestinationPage(document);
if (page == null) {
return Optional.empty();
}
int pageNumber = document.getPages().indexOf(page);
Optional<Point2D> outlinePosition = Optional.empty();
try {
PDDocumentNameDictionary names = document.getDocumentCatalog().getNames();
PDDestinationNameTreeNode destinations = null;
if (names != null) {
destinations = names.getDests();
}
PDDestination destination = item.getDestination();
if (destination != null) {
outlinePosition = getLocationFromCOSBase(destinations, destination.getCOSObject());
}
if (outlinePosition.isEmpty()) {
PDAction action = item.getAction();
if (action != null) {
outlinePosition = extractOutlineLocationGoTo(destinations, action.getCOSObject());
}
}
} catch (Exception e) {
log.info(String.format("Error occurred during position resolution for outline item on page %s with title %s: " + e, pageNumber, title));
}
return Optional.of(new OutlineObjectTreeNode(new OutlineObject(title, pageNumber, outlinePosition.orElse(new Point2D.Float(0, 0)), depth)));
}
@SneakyThrows
private static Optional<Point2D> extractOutlineLocationGoTo(PDDestinationNameTreeNode destinations, COSDictionary cosDictionary) {
if (isGoToAction(cosDictionary)) {
COSBase cosBase = cosDictionary.getItem(COSName.D);
return getLocationFromCOSBase(destinations, cosBase);
}
return Optional.empty();
}
private static Optional<Point2D> getLocationFromCOSBase(PDDestinationNameTreeNode destinations, COSBase cosBase) throws IOException {
if (cosBase != null) {
if (cosBase instanceof COSArray cosArray) {
return getLocationFromCosArray(cosArray);
}
if (cosBase instanceof COSString cosString) {
String destinationName = cosString.getString();
COSArray cosArray = destinations.getValue(destinationName).getCOSObject();
return getLocationFromCosArray(cosArray);
}
}
return Optional.empty();
}
private static Optional<Point2D> getLocationFromCosArray(COSArray cosArray) {
boolean located = false;
float x = 0;
float y = 0;
try {
PDDestination destination = PDDestination.create(cosArray);
COSName type = (COSName) cosArray.getObject(1);
String typeString = type.getName();
switch (typeString) {
case PDDESTINATION_TYPE_FIT_V:
case PDDESTINATION_TYPE_FIT_BV:
PDPageFitHeightDestination fitHeightDestination = (PDPageFitHeightDestination) destination;
x = fitHeightDestination.getLeft();
located = true;
break;
case PDDESTINATION_TYPE_FIT_R:
PDPageFitRectangleDestination fitRectangleDestination = (PDPageFitRectangleDestination) destination;
x = fitRectangleDestination.getLeft();
y = fitRectangleDestination.getTop();
located = true;
break;
case PDDESTINATION_TYPE_FIT_H:
case PDDESTINATION_TYPE_FIT_BH:
PDPageFitWidthDestination fitWidthDestination = (PDPageFitWidthDestination) destination;
y = fitWidthDestination.getTop();
located = true;
break;
case PDDESTINATION_TYPE_XYZ:
PDPageXYZDestination xyzDestination = (PDPageXYZDestination) destination;
x = xyzDestination.getLeft();
y = xyzDestination.getTop();
located = true;
break;
case PDDESTINATION_TYPE_FIT:
case PDDESTINATION_TYPE_FIT_B:
default:
}
} catch (IOException e) {
throw new RuntimeException(e);
}
return located ? Optional.of(new Point2D.Float(x, y)) : Optional.empty();
}
private static boolean isGoToAction(COSDictionary cosDictionary) {
return cosDictionary.getNameAsString("S").toLowerCase(Locale.ROOT).equals("goto");
}
}
@@ -0,0 +1,35 @@
package com.knecon.fforesight.service.layoutparser.processor.model.outline;
import java.awt.geom.Point2D;
import lombok.AllArgsConstructor;
import lombok.Data;
import lombok.RequiredArgsConstructor;
@Data
@RequiredArgsConstructor
@AllArgsConstructor
public class OutlineObject {
private final String title;
private final int pageNumber;
private Point2D point;
private final int treeDepth;
private boolean found;
public OutlineObject(String title, int pageNumber, Point2D point2D, int depth) {
this(title, pageNumber, depth);
this.point = point2D;
}
@Override
public String toString() {
return "OutlineObject{" + "title='" + title + '\'' + '}';
}
}
@@ -0,0 +1,42 @@
package com.knecon.fforesight.service.layoutparser.processor.model.outline;
import java.util.ArrayList;
import java.util.HashMap;
import java.util.List;
import java.util.Map;
import lombok.Data;
import lombok.RequiredArgsConstructor;
@Data
@RequiredArgsConstructor
public class OutlineObjectTree {
private List<OutlineObjectTreeNode> rootNodes = new ArrayList<>();
private Map<Integer, List<OutlineObject>> outlineObjectsPerPage = new HashMap<>();
public OutlineObjectTree(List<OutlineObjectTreeNode> rootNodes) {
this.rootNodes = rootNodes;
flattenNodesAndGroupByPage(rootNodes);
}
private void flattenNodesAndGroupByPage(List<OutlineObjectTreeNode> outlineObjectTreeNodes) {
for (OutlineObjectTreeNode node : outlineObjectTreeNodes) {
int pageNumber = node.getOutlineObject().getPageNumber();
if (!this.outlineObjectsPerPage.containsKey(pageNumber)) {
outlineObjectsPerPage.put(pageNumber, new ArrayList<>());
}
outlineObjectsPerPage.get(pageNumber).add(node.getOutlineObject());
if (!node.getChildren().isEmpty()) {
flattenNodesAndGroupByPage(node.getChildren());
}
}
}
}
@@ -0,0 +1,34 @@
package com.knecon.fforesight.service.layoutparser.processor.model.outline;
import java.util.ArrayList;
import java.util.List;
import lombok.Data;
@Data
public class OutlineObjectTreeNode {
private OutlineObject outlineObject;
private List<OutlineObjectTreeNode> children = new ArrayList<>();
public OutlineObjectTreeNode(OutlineObject outlineObject) {
this.outlineObject = outlineObject;
}
public void addChild(OutlineObjectTreeNode outlineObject) {
children.add(outlineObject);
}
@Override
public String toString() {
return "OutlineObjectTreeNode{" + "outlineObject=" + outlineObject + '}';
}
}
@@ -0,0 +1,61 @@
package com.knecon.fforesight.service.layoutparser.processor.model.outline;
import static com.knecon.fforesight.service.layoutparser.processor.model.PageBlockType.getHeadlineNumber;
import java.util.ArrayList;
import java.util.HashMap;
import java.util.List;
import java.util.Map;
import java.util.TreeSet;
import org.springframework.stereotype.Service;
import com.knecon.fforesight.service.layoutparser.processor.model.text.TextPageBlock;
import lombok.extern.slf4j.Slf4j;
@Service
@Slf4j
public class OutlineValidationService {
public TableOfContents createToC(List<TextPageBlock> headlines) {
List<TableOfContentItem> mainSections = new ArrayList<>();
Map<Integer, TableOfContentItem> lastItemsPerDepth = new HashMap<>();
TableOfContentItem last = null;
TreeSet<Integer> depths = new TreeSet<>();
for (TextPageBlock current : headlines) {
int currentDepth = getHeadlineNumber(current.getClassification());
Integer parentDepth = depths.floor(currentDepth - 1);
var tocItem = new TableOfContentItem(current);
if (parentDepth == null) {
mainSections.add(tocItem);
lastItemsPerDepth = new HashMap<>();
depths = new TreeSet<>();
} else {
assert last != null;
int lastDepth = getHeadlineNumber(last.getHeadline().getClassification());
if (lastDepth < parentDepth) {
parentDepth = lastDepth;
} else if (lastDepth == currentDepth && last.getParent() != null) {
parentDepth = getHeadlineNumber(last.getParent().getHeadline().getClassification());
}
TableOfContentItem parent = lastItemsPerDepth.get(parentDepth);
parent.addChild(tocItem);
}
last = tocItem;
lastItemsPerDepth.put(currentDepth, tocItem);
depths.add(currentDepth);
}
return new TableOfContents(mainSections);
}
}
@@ -0,0 +1,259 @@
package com.knecon.fforesight.service.layoutparser.processor.model.outline;
import java.util.ArrayList;
import java.util.Collections;
import java.util.Iterator;
import java.util.List;
import org.springframework.stereotype.Service;
import com.knecon.fforesight.service.layoutparser.processor.model.AbstractPageBlock;
import com.knecon.fforesight.service.layoutparser.processor.model.ClassificationDocument;
import com.knecon.fforesight.service.layoutparser.processor.model.ClassificationFooter;
import com.knecon.fforesight.service.layoutparser.processor.model.ClassificationHeader;
import com.knecon.fforesight.service.layoutparser.processor.model.ClassificationPage;
import com.knecon.fforesight.service.layoutparser.processor.model.PageBlockType;
import com.knecon.fforesight.service.layoutparser.processor.model.image.ClassifiedImage;
import com.knecon.fforesight.service.layoutparser.processor.model.table.Cell;
import com.knecon.fforesight.service.layoutparser.processor.model.table.TablePageBlock;
import com.knecon.fforesight.service.layoutparser.processor.model.text.TextPageBlock;
import lombok.extern.slf4j.Slf4j;
@Slf4j
@Service
public class TOCEnrichmentService {
public void assignSectionBlocksAndImages(ClassificationDocument document) {
TableOfContents toc = document.getTableOfContents();
Iterator<TableOfContentItem> iterator = toc.iterator();
TableOfContentItem currentTOCItem = null;
if (iterator.hasNext()) {
currentTOCItem = iterator.next();
}
List<AbstractPageBlock> startBlocks = new ArrayList<>();
List<ClassifiedImage> startImages = new ArrayList<>();
TableOfContentItem currentSection = null;
boolean foundFirstHeadline = false;
List<ClassificationHeader> headers = new ArrayList<>();
List<ClassificationFooter> footers = new ArrayList<>();
TablePageBlock previousTable = null;
List<TableOfContentItem> lastFoundTOCItems = new ArrayList<>();
for (ClassificationPage page : document.getPages()) {
List<TableOfContentItem> currentPageTOCItems = new ArrayList<>();
List<TextPageBlock> header = new ArrayList<>();
List<TextPageBlock> footer = new ArrayList<>();
for (AbstractPageBlock current : page.getTextBlocks()) {
if (current.getClassification() == null) {
continue;
}
current.setPage(page.getPageNumber());
if (current.getClassification().equals(PageBlockType.HEADER)) {
header.add((TextPageBlock) current);
continue;
}
if (current.getClassification().equals(PageBlockType.FOOTER)) {
footer.add((TextPageBlock) current);
continue;
}
if (current instanceof TablePageBlock table) {
if (previousTable != null) {
mergeTableMetadata(table, previousTable);
}
previousTable = table;
}
if (current instanceof TextPageBlock && currentTOCItem != null && currentTOCItem.getHeadline().getText().equals(current.getText())) {
if (!foundFirstHeadline) {
foundFirstHeadline = true;
}
currentSection = currentTOCItem;
currentTOCItem.getSectionBlocks().add(current);
currentPageTOCItems.add(currentTOCItem);
if (iterator.hasNext()) {
currentTOCItem = iterator.next();
}
} else if (!foundFirstHeadline) {
startBlocks.add(current);
} else {
currentSection.getSectionBlocks().add(current);
}
}
if (!currentPageTOCItems.isEmpty()) {
lastFoundTOCItems = currentPageTOCItems;
}
for (ClassifiedImage image : page.getImages()) {
Double xMin = null;
Double yMin = null;
Double xMax = null;
Double yMax = null;
for (TableOfContentItem tocItem : lastFoundTOCItems) {
var headline = tocItem.getHeadline();
if (headline.getPage() != page.getPageNumber()) {
continue;
}
if (headline.getMinX() < headline.getMaxX()) {
if (xMin == null || headline.getMinX() < xMin) {
xMin = headline.getMinX();
}
if (xMax == null || headline.getMaxX() > xMax) {
xMax = headline.getMaxX();
}
} else {
if (xMin == null || headline.getMaxX() < xMin) {
xMin = headline.getMaxX();
}
if (xMax == null || headline.getMinX() > xMax) {
xMax = headline.getMinX();
}
}
if (headline.getMinY() < headline.getMaxY()) {
if (yMin == null || headline.getMinY() < yMin) {
yMin = headline.getMinY();
}
if (yMax == null || headline.getMaxY() > yMax) {
yMax = headline.getMaxY();
}
} else {
if (yMin == null || headline.getMaxY() < yMin) {
yMin = headline.getMaxY();
}
if (yMax == null || headline.getMinY() > yMax) {
yMax = headline.getMinY();
}
}
log.debug("Image position x: {}, y: {}", image.getPosition().getX(), image.getPosition().getY());
log.debug("Headline position xMin: {}, xMax: {}, yMin: {}, yMax: {}", xMin, xMax, yMin, yMax);
if (image.getPosition().getX() >= xMin && image.getPosition().getX() <= xMax && image.getPosition().getY() >= yMin && image.getPosition().getY() <= yMax) {
tocItem.getImages().add(image);
image.setAppendedToSection(true);
break;
}
}
if (!image.isAppendedToSection()) {
log.debug("Image uses last found section");
if (!lastFoundTOCItems.isEmpty()) {
lastFoundTOCItems.get(lastFoundTOCItems.size() - 1).getImages().add(image);
} else {
startImages.add(image);
}
image.setAppendedToSection(true);
}
}
if (!header.isEmpty()) {
headers.add(new ClassificationHeader(header));
}
if (!footer.isEmpty()) {
footers.add(new ClassificationFooter(footer));
}
}
if (!startBlocks.isEmpty()) {
TableOfContentItem unassigned = new TableOfContentItem(null);
unassigned.setSectionBlocks(startBlocks);
unassigned.setImages(startImages);
document.getTableOfContents().getMainSections().add(0, unassigned);
}
document.setHeaders(headers);
document.setFooters(footers);
}
private void mergeTableMetadata(TablePageBlock currentTable, TablePageBlock previousTable) {
// Distribute header information for subsequent tables
if (previousTable != null && hasInvalidHeaderInformation(currentTable) && hasValidHeaderInformation(previousTable)) {
List<Cell> previousTableNonHeaderRow = getRowWithNonHeaderCells(previousTable);
List<Cell> tableNonHeaderRow = getRowWithNonHeaderCells(currentTable);
// Allow merging of tables if header row is separated from first logical non-header row
if (previousTableNonHeaderRow.isEmpty()
&& previousTable.getRowCount() == 1
&& previousTable.getRows()
.get(0).size() == tableNonHeaderRow.size()) {
previousTableNonHeaderRow = previousTable.getRows()
.get(0)
.stream()
.map(cell -> {
Cell fakeCell = Cell.copy(cell);
fakeCell.setHeaderCells(Collections.singletonList(cell));
return fakeCell;
})
.toList();
}
if (previousTableNonHeaderRow.size() == tableNonHeaderRow.size()) {
for (int i = currentTable.getRowCount() - 1; i >= 0; i--) { // Non header rows are most likely at bottom of table
List<Cell> row = currentTable.getRows()
.get(i);
if (row.size() == tableNonHeaderRow.size() && row.stream()
.allMatch(cell -> cell.getHeaderCells().isEmpty())) {
for (int j = 0; j < row.size(); j++) {
row.get(j).setHeaderCells(previousTableNonHeaderRow.get(j).getHeaderCells());
}
}
}
}
}
}
private boolean hasValidHeaderInformation(TablePageBlock table) {
return !hasInvalidHeaderInformation(table);
}
private boolean hasInvalidHeaderInformation(TablePageBlock table) {
return table.getRows()
.stream()
.flatMap(row -> row.stream()
.filter(cell -> !cell.getHeaderCells().isEmpty()))
.findAny().isEmpty();
}
private List<Cell> getRowWithNonHeaderCells(TablePageBlock table) {
for (int i = table.getRowCount() - 1; i >= 0; i--) { // Non header rows are most likely at bottom of table
List<Cell> row = table.getRows()
.get(i);
if (row.size() == 1) {
continue;
}
boolean allNonHeader = true;
for (Cell cell : row) {
if (cell.isHeaderCell()) {
allNonHeader = false;
break;
}
}
if (allNonHeader) {
return row;
}
}
return Collections.emptyList();
}
}
@@ -0,0 +1,109 @@
package com.knecon.fforesight.service.layoutparser.processor.model.outline;
import java.util.ArrayList;
import java.util.List;
import java.util.stream.Collectors;
import com.knecon.fforesight.service.layoutparser.processor.model.AbstractPageBlock;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.AbstractSemanticNode;
import com.knecon.fforesight.service.layoutparser.processor.model.image.ClassifiedImage;
import com.knecon.fforesight.service.layoutparser.processor.model.text.TextPageBlock;
import lombok.Data;
import lombok.EqualsAndHashCode;
@Data
@EqualsAndHashCode(onlyExplicitlyIncluded = true)
public class TableOfContentItem {
@EqualsAndHashCode.Include
private TextPageBlock headline;
private List<TableOfContentItem> children = new ArrayList<>();
private TableOfContentItem parent;
private List<AbstractPageBlock> sectionBlocks = new ArrayList<>();
private List<ClassifiedImage> images = new ArrayList<>();
private AbstractSemanticNode section;
public TableOfContentItem(TextPageBlock headline) {
this.headline = headline;
}
public void addChild(TableOfContentItem tableOfContentItem) {
children.add(tableOfContentItem);
tableOfContentItem.setParent(this);
}
public TableOfContentItem getSiblingBefore() {
if (parent != null) {
int index = parent.getChildren().indexOf(this);
if (index > 0) {
return parent.getChildren()
.get(index - 1);
}
}
return null;
}
public TableOfContentItem getSiblingAfter() {
if (parent != null) {
int index = parent.getChildren().indexOf(this);
if (index >= 0 && index < parent.getChildren().size() - 1) {
return parent.getChildren()
.get(index + 1);
}
}
return null;
}
public boolean contains(TextPageBlock block) {
if (headline.equals(block)) {
return true;
}
for (TableOfContentItem child : children) {
if (child.contains(block)) {
return true;
}
}
return false;
}
public boolean contains(TableOfContentItem tocItem) {
if (this.equals(tocItem)) {
return true;
}
for (TableOfContentItem child : children) {
if (child.contains(tocItem)) {
return true;
}
}
return false;
}
public List<AbstractPageBlock> getNonEmptySectionBlocks() {
return sectionBlocks.stream().filter(pageBlock -> !pageBlock.isEmpty()).collect(Collectors.toList());
}
@Override
public String toString() {
return "OutlineObjectTreeNode{" + "textPageBlock=" + headline + '}';
}
}
@@ -0,0 +1,136 @@
package com.knecon.fforesight.service.layoutparser.processor.model.outline;
import java.util.ArrayList;
import java.util.Iterator;
import java.util.List;
import java.util.Stack;
import org.springframework.lang.NonNull;
import com.knecon.fforesight.service.layoutparser.processor.model.text.TextPageBlock;
import lombok.Data;
import lombok.RequiredArgsConstructor;
@Data
@RequiredArgsConstructor
public class TableOfContents implements Iterable<TableOfContentItem> {
private List<TableOfContentItem> mainSections = new ArrayList<>();
public TableOfContents(List<TableOfContentItem> mainSections) {
this.mainSections = mainSections;
}
public List<TextPageBlock> getAllTextPageBlocks() {
List<TextPageBlock> allTextPageBlocks = new ArrayList<>();
for (TableOfContentItem item : mainSections) {
collectTextPageBlocks(item, allTextPageBlocks);
}
return allTextPageBlocks;
}
private void collectTextPageBlocks(TableOfContentItem item, List<TextPageBlock> textPageBlocks) {
textPageBlocks.add(item.getHeadline());
for (TableOfContentItem child : item.getChildren()) {
collectTextPageBlocks(child, textPageBlocks);
}
}
public List<TableOfContentItem> getAllTableOfContentItems() {
List<TableOfContentItem> allItems = new ArrayList<>();
for (TableOfContentItem item : mainSections) {
collectTableOfContentItems(item, allItems);
}
return allItems;
}
private void collectTableOfContentItems(TableOfContentItem item, List<TableOfContentItem> allItems) {
allItems.add(item);
for (TableOfContentItem child : item.getChildren()) {
collectTableOfContentItems(child, allItems);
}
}
private boolean containsBlock(TextPageBlock block) {
for (TableOfContentItem existingItem : this.getMainSections()) {
if (existingItem.getHeadline().equals(block) || existingItem.contains(block)) {
return true;
}
}
return false;
}
private boolean containsItem(TableOfContentItem tocItem) {
for (TableOfContentItem existingItem : this.getMainSections()) {
if (existingItem.equals(tocItem) || existingItem.contains(tocItem)) {
return true;
}
}
return false;
}
@Override
public @NonNull Iterator<TableOfContentItem> iterator() {
return new TableOfContentItemIterator(mainSections);
}
private static class TableOfContentItemIterator implements Iterator<TableOfContentItem> {
private final Stack<Iterator<TableOfContentItem>> stack = new Stack<>();
TableOfContentItemIterator(List<TableOfContentItem> mainSections) {
stack.push(mainSections.iterator());
}
@Override
public boolean hasNext() {
ensureStackTopIsCurrent();
return !stack.isEmpty() && stack.peek().hasNext();
}
@Override
public TableOfContentItem next() {
ensureStackTopIsCurrent();
TableOfContentItem currentItem = stack.peek().next();
if (currentItem.getChildren() != null && !currentItem.getChildren().isEmpty()) {
stack.push(currentItem.getChildren()
.iterator());
}
return currentItem;
}
private void ensureStackTopIsCurrent() {
while (!stack.isEmpty() && !stack.peek().hasNext()) {
stack.pop();
}
}
}
}
@@ -1,11 +1,13 @@
package com.knecon.fforesight.service.layoutparser.processor.model.table;
import java.awt.geom.AffineTransform;
import java.awt.geom.Point2D;
import java.awt.geom.Rectangle2D;
import java.util.ArrayList;
import java.util.Iterator;
import java.util.List;
import com.knecon.fforesight.service.layoutparser.processor.docstrum.model.BoundingBox;
import com.knecon.fforesight.service.layoutparser.processor.model.text.TextPageBlock;
import com.knecon.fforesight.service.layoutparser.processor.model.text.TextPositionSequence;
import com.knecon.fforesight.service.layoutparser.processor.utils.TextNormalizationUtilities;
@@ -18,7 +20,7 @@ import lombok.NoArgsConstructor;
@Data
@EqualsAndHashCode(callSuper = true)
@NoArgsConstructor
public class Cell extends Rectangle {
public class Cell extends BoundingBox {
private List<TextPageBlock> textBlocks = new ArrayList<>();
@@ -33,13 +35,24 @@ public class Cell extends Rectangle {
public Cell(Point2D topLeft, Point2D bottomRight) {
super((float) topLeft.getY(), (float) topLeft.getX(), (float) (bottomRight.getX() - topLeft.getX()), (float) (bottomRight.getY() - topLeft.getY()));
this.bBoxInitialUserSpace = new Rectangle2D.Double(topLeft.getX(), topLeft.getY(), (bottomRight.getX() - topLeft.getX()), (bottomRight.getY() - topLeft.getY()));
this.bBox = bBoxInitialUserSpace;
}
public Cell(Rectangle2D r) {
public Cell(Rectangle2D bBoxInitialUserSpace, AffineTransform initialUserSpaceToJava) {
super((float) r.getY(), (float) r.getX(), (float) r.getWidth(), (float) r.getHeight());
this.bBoxInitialUserSpace = bBoxInitialUserSpace;
this.bBox = initialUserSpaceToJava.createTransformedShape(bBoxInitialUserSpace).getBounds2D();
}
public static Cell copy(Cell cell) {
Cell copy = new Cell();
copy.bBoxInitialUserSpace = cell.bBoxInitialUserSpace;
copy.bBox = cell.bBox;
return copy;
}
@@ -1,15 +1,206 @@
package com.knecon.fforesight.service.layoutparser.processor.model.table;
import java.awt.geom.Line2D;
import java.awt.geom.Point2D;
import java.awt.geom.Rectangle2D;
import java.util.ArrayList;
import java.util.Collection;
import java.util.Collections;
import java.util.Comparator;
import java.util.LinkedList;
import java.util.List;
import java.util.stream.Stream;
import lombok.Builder;
import lombok.Data;
import com.knecon.fforesight.service.layoutparser.processor.docstrum.model.BoundingBox;
@Data
@Builder
import lombok.Getter;
@Getter
public class CleanRulings {
List<Ruling> horizontal;
List<Ruling> vertical;
List<Ruling> horizontals; // unmodifiable sorted by Y list
List<Ruling> verticals; // unmodifiable sorted by X list
public CleanRulings(List<Ruling> horizontals, List<Ruling> verticals) {
this.horizontals = horizontals.stream()
.peek(Ruling::assertHorizontal)
.sorted(Comparator.comparing(Line2D.Float::getY1))
.toList();
this.verticals = verticals.stream()
.peek(Ruling::assertVertical)
.sorted(Comparator.comparing(Line2D.Float::getX1))
.toList();
}
public CleanRulings getTableLines() {
return new CleanRulings(horizontals.stream()
.filter(ruling -> ruling.getClassification().equals(Ruling.Classification.TABLE_LINE))
.toList(),
verticals.stream()
.filter(ruling -> ruling.getClassification().equals(Ruling.Classification.TABLE_LINE))
.toList());
}
public CleanRulings withoutTextRulings() {
return new CleanRulings(horizontals.stream()
.filter(ruling -> !(ruling.getClassification().equals(Ruling.Classification.UNDERLINE) || ruling.getClassification()
.equals(Ruling.Classification.STRIKETROUGH)))
.toList(),
verticals.stream()
.filter(ruling -> !(ruling.getClassification().equals(Ruling.Classification.UNDERLINE) || ruling.getClassification()
.equals(Ruling.Classification.STRIKETROUGH)))
.toList());
}
public List<Ruling> buildAll() {
ArrayList<Ruling> rulings = new ArrayList<>(horizontals.size() + verticals.size());
rulings.addAll(horizontals);
rulings.addAll(verticals);
return rulings;
}
public boolean lineBetween(BoundingBox a, BoundingBox b) {
return lineBetween(a.getBBoxInitialUserSpace(), b.getBBoxInitialUserSpace());
}
public boolean lineBetween(Rectangle2D a, Rectangle2D b) {
return lineBetween(new Point2D.Double(a.getCenterX(), a.getCenterY()), new Point2D.Double(b.getCenterX(), b.getCenterY()));
}
public boolean lineBetween(Point2D p1, Point2D p2) {
Ruling ruling = new Ruling(p1, p2);
if (ruling.isHorizontal()) {
return getVerticalsInXInterval(ruling.x1, ruling.x2).stream()
.anyMatch(vertical -> vertical.intersectsLine(ruling));
}
if (ruling.isVertical()) {
return getHorizontalsInYInterval(ruling.y1, ruling.y2).stream()
.anyMatch(horizontal -> horizontal.intersectsLine(ruling));
}
return Stream.of(getVerticalsInXInterval(ruling.x1, ruling.x2), getHorizontalsInYInterval(ruling.y1, ruling.y2))
.flatMap(Collection::stream)
.anyMatch(other -> other.intersectsLine(ruling));
}
public List<Ruling> getHorizontalsInYInterval(float y1, float y2) {
float startY = Math.min(y1, y2);
float endY = Math.max(y1, y2);
if (horizontals.isEmpty() || Float.isNaN(startY) || Float.isNaN(endY)) {
return Collections.emptyList();
}
int firstGreaterThanIdx = findFirstHorizontalRulingIdxAbove(startY);
if (firstGreaterThanIdx == -1) {
return Collections.emptyList();
}
List<Ruling> result = new LinkedList<>();
for (int i = firstGreaterThanIdx; i < horizontals.size(); i++) {
Ruling horizontal = horizontals.get(i);
if (horizontal.y1 > endY) {
break;
}
result.add(horizontal);
}
return result;
}
private int findFirstHorizontalRulingIdxAbove(float y) {
int low = 0;
int high = horizontals.size() - 1;
while (low <= high) {
int mid = low + (high - low) / 2;
Line2D.Float midLine = horizontals.get(mid);
float midY = midLine.y1;
if (midY == y) {
return mid;
} else if (midY > y) {
high = mid - 1;
} else {
low = mid + 1;
}
}
// Return the index of the first element greater than y or -1 if not found
return horizontals.size() > low && horizontals.get(low).y1 > y ? low : -1;
}
public List<Ruling> getVerticalsInXInterval(float x1, float x2) {
float startX = Math.min(x1, x2);
float endX = Math.max(x1, x2);
if (verticals.isEmpty() || Float.isNaN(startX) || Float.isNaN(endX)) {
return Collections.emptyList();
}
int firstGreaterThanIdx = findFirstVerticalRulingIdxRightOf(startX);
if (firstGreaterThanIdx == -1) {
return Collections.emptyList();
}
List<Ruling> result = new LinkedList<>();
for (int i = firstGreaterThanIdx; i < verticals.size(); i++) {
Ruling horizontal = verticals.get(i);
if (horizontal.x1 > endX) {
break;
}
result.add(horizontal);
}
return result;
}
private int findFirstVerticalRulingIdxRightOf(float x) {
int low = 0;
int high = verticals.size() - 1;
while (low <= high) {
int mid = low + (high - low) / 2;
Line2D.Float midLine = verticals.get(mid);
float midX = midLine.x1;
if (midX == x) {
return mid;
} else if (midX > x) {
high = mid - 1;
} else {
low = mid + 1;
}
}
// Return the index of the first element greater than y or -1 if not found
return verticals.size() > low && verticals.get(low).x1 > x ? low : -1;
}
}
@@ -1,218 +0,0 @@
package com.knecon.fforesight.service.layoutparser.processor.model.table;
import java.awt.geom.Point2D;
import java.awt.geom.Rectangle2D;
import java.util.Comparator;
import java.util.List;
@SuppressWarnings("all")
public class Rectangle extends Rectangle2D.Float {
protected static final float VERTICAL_COMPARISON_THRESHOLD = 0.4f;
/**
* Ill-defined comparator, from when Rectangle was Comparable.
* <p>
* see https://github.com/tabulapdf/tabula-java/issues/116
*
* @deprecated with no replacement
*/
@Deprecated
public static final Comparator<Rectangle> ILL_DEFINED_ORDER = new Comparator<Rectangle>() {
@Override
public int compare(Rectangle o1, Rectangle o2) {
if (o1.equals(o2)) {
return 0;
}
if (o1.verticalOverlap(o2) > VERTICAL_COMPARISON_THRESHOLD) {
return o1.isLtrDominant() == -1 && o2.isLtrDominant() == -1 ? -java.lang.Double.compare(o1.getX(), o2.getX()) : java.lang.Double.compare(o1.getX(), o2.getX());
} else {
return java.lang.Float.compare(o1.getBottom(), o2.getBottom());
}
}
};
public Rectangle() {
super();
}
public Rectangle(float top, float left, float width, float height) {
super();
this.setRect(left, top, width, height);
}
/**
* @param rectangles
* @return minimum bounding box that contains all the rectangles
*/
public static Rectangle boundingBoxOf(List<? extends Rectangle> rectangles) {
float minx = java.lang.Float.MAX_VALUE;
float miny = java.lang.Float.MAX_VALUE;
float maxx = java.lang.Float.MIN_VALUE;
float maxy = java.lang.Float.MIN_VALUE;
for (Rectangle r : rectangles) {
minx = (float) Math.min(r.getMinX(), minx);
miny = (float) Math.min(r.getMinY(), miny);
maxx = (float) Math.max(r.getMaxX(), maxx);
maxy = (float) Math.max(r.getMaxY(), maxy);
}
return new Rectangle(miny, minx, maxx - minx, maxy - miny);
}
public int compareTo(Rectangle other) {
return ILL_DEFINED_ORDER.compare(this, other);
}
// I'm bad at Java and need this for fancy sorting in
// technology.tabula.TextChunk.
public int isLtrDominant() {
return 0;
}
public float getArea() {
return this.width * this.height;
}
public float verticalOverlap(Rectangle other) {
return Math.max(0, Math.min(this.getBottom(), other.getBottom()) - Math.max(this.getTop(), other.getTop()));
}
public boolean verticallyOverlaps(Rectangle other) {
return verticalOverlap(other) > 0;
}
public float horizontalOverlap(Rectangle other) {
return Math.max(0, Math.min(this.getRight(), other.getRight()) - Math.max(this.getLeft(), other.getLeft()));
}
public boolean horizontallyOverlaps(Rectangle other) {
return horizontalOverlap(other) > 0;
}
public float verticalOverlapRatio(Rectangle other) {
float rv = 0, delta = Math.min(this.getBottom() - this.getTop(), other.getBottom() - other.getTop());
if (other.getTop() <= this.getTop() && this.getTop() <= other.getBottom() && other.getBottom() <= this.getBottom()) {
rv = (other.getBottom() - this.getTop()) / delta;
} else if (this.getTop() <= other.getTop() && other.getTop() <= this.getBottom() && this.getBottom() <= other.getBottom()) {
rv = (this.getBottom() - other.getTop()) / delta;
} else if (this.getTop() <= other.getTop() && other.getTop() <= other.getBottom() && other.getBottom() <= this.getBottom()) {
rv = (other.getBottom() - other.getTop()) / delta;
} else if (other.getTop() <= this.getTop() && this.getTop() <= this.getBottom() && this.getBottom() <= other.getBottom()) {
rv = (this.getBottom() - this.getTop()) / delta;
}
return rv;
}
public float overlapRatio(Rectangle other) {
double intersectionWidth = Math.max(0, Math.min(this.getRight(), other.getRight()) - Math.max(this.getLeft(), other.getLeft()));
double intersectionHeight = Math.max(0, Math.min(this.getBottom(), other.getBottom()) - Math.max(this.getTop(), other.getTop()));
double intersectionArea = Math.max(0, intersectionWidth * intersectionHeight);
double unionArea = this.getArea() + other.getArea() - intersectionArea;
return (float) (intersectionArea / unionArea);
}
public Rectangle merge(Rectangle other) {
this.setRect(this.createUnion(other));
return this;
}
public float getTop() {
return (float) this.getMinY();
}
public void setTop(float top) {
float deltaHeight = top - this.y;
this.setRect(this.x, top, this.width, this.height - deltaHeight);
}
public float getRight() {
return (float) this.getMaxX();
}
public void setRight(float right) {
this.setRect(this.x, this.y, right - this.x, this.height);
}
public float getLeft() {
return (float) this.getMinX();
}
public void setLeft(float left) {
float deltaWidth = left - this.x;
this.setRect(left, this.y, this.width - deltaWidth, this.height);
}
public float getBottom() {
return (float) this.getMaxY();
}
public void setBottom(float bottom) {
this.setRect(this.x, this.y, this.width, bottom - this.y);
}
public Point2D[] getPoints() {
return new Point2D[]{new Point2D.Float(this.getLeft(), this.getTop()), new Point2D.Float(this.getRight(), this.getTop()), new Point2D.Float(this.getRight(),
this.getBottom()), new Point2D.Float(this.getLeft(), this.getBottom())};
}
@Override
public String toString() {
StringBuilder sb = new StringBuilder();
String s = super.toString();
sb.append(s.substring(0, s.length() - 1));
sb.append(String.format(",bottom=%f,right=%f]", this.getBottom(), this.getRight()));
return sb.toString();
}
}
@@ -4,16 +4,14 @@ import java.awt.geom.Line2D;
import java.awt.geom.Point2D;
import java.awt.geom.Rectangle2D;
import java.util.ArrayList;
import java.util.Collections;
import java.util.Comparator;
import java.util.Formatter;
import java.util.List;
import java.util.Map;
import java.util.TreeMap;
import com.knecon.fforesight.service.layoutparser.processor.utils.CohenSutherlandClipping;
import com.knecon.fforesight.service.layoutparser.processor.utils.DoubleComparisons;
import lombok.Getter;
import lombok.Setter;
import lombok.extern.slf4j.Slf4j;
@Slf4j
@@ -23,10 +21,24 @@ public class Ruling extends Line2D.Float {
public static final int PERPENDICULAR_UNIT_EXPAND_AMOUNT = 2;
public static final int COLINEAR_OR_PARALLEL_UNIT_EXPAND_AMOUNT = 2;
public enum Classification {
TABLE_LINE,
UNDERLINE,
STRIKETROUGH,
HEADER_SEPARATOR,
FOOTER_SEPARATOR,
OTHER
}
@Getter
@Setter
private Classification classification;
public Ruling(Point2D p1, Point2D p2) {
super(p1, p2);
this.classification = Classification.OTHER;
}
@@ -60,126 +72,32 @@ public class Ruling extends Line2D.Float {
}
// log(n) implementation of find_intersections
// based on http://people.csail.mit.edu/indyk/6.838-old/handouts/lec2.pdf
public static Map<Point2D, Ruling[]> findIntersections(List<Ruling> horizontals, List<Ruling> verticals) {
class SortObject {
protected SOType type;
protected float position;
protected Ruling ruling;
public SortObject(SOType type, float position, Ruling ruling) {
this.type = type;
this.position = position;
this.ruling = ruling;
}
public void assertHorizontal() {
if (isHorizontal()) {
return;
}
List<SortObject> sos = new ArrayList<>();
TreeMap<Ruling, Boolean> tree = new TreeMap<>(new Comparator<Ruling>() {
@Override
public int compare(Ruling o1, Ruling o2) {
return java.lang.Double.compare(o1.getTop(), o2.getTop());
}
});
TreeMap<Point2D, Ruling[]> rv = new TreeMap<>(new Comparator<Point2D>() {
@Override
public int compare(Point2D o1, Point2D o2) {
if (o1.getY() > o2.getY()) {
return 1;
}
if (o1.getY() < o2.getY()) {
return -1;
}
if (o1.getX() > o2.getX()) {
return 1;
}
if (o1.getX() < o2.getX()) {
return -1;
}
return 0;
}
});
for (Ruling h : horizontals) {
sos.add(new SortObject(SOType.HLEFT, h.getLeft() - PERPENDICULAR_UNIT_EXPAND_AMOUNT, h));
sos.add(new SortObject(SOType.HRIGHT, h.getRight() + PERPENDICULAR_UNIT_EXPAND_AMOUNT, h));
}
for (Ruling v : verticals) {
sos.add(new SortObject(SOType.VERTICAL, v.getLeft(), v));
}
Collections.sort(sos, new Comparator<SortObject>() {
@Override
public int compare(SortObject a, SortObject b) {
int rv;
if (DoubleComparisons.feq(a.position, b.position)) {
if (a.type == SOType.VERTICAL && b.type == SOType.HLEFT) {
rv = 1;
} else if (a.type == SOType.VERTICAL && b.type == SOType.HRIGHT) {
rv = -1;
} else if (a.type == SOType.HLEFT && b.type == SOType.VERTICAL) {
rv = -1;
} else if (a.type == SOType.HRIGHT && b.type == SOType.VERTICAL) {
rv = 1;
} else {
rv = java.lang.Double.compare(a.position, b.position);
}
} else {
return java.lang.Double.compare(a.position, b.position);
}
return rv;
}
});
for (SortObject so : sos) {
switch (so.type) {
case VERTICAL:
for (Map.Entry<Ruling, Boolean> h : tree.entrySet()) {
try {
Point2D i = h.getKey().intersectionPoint(so.ruling);
if (i == null) {
continue;
}
rv.put(i, new Ruling[]{h.getKey().expand(PERPENDICULAR_UNIT_EXPAND_AMOUNT), so.ruling.expand(PERPENDICULAR_UNIT_EXPAND_AMOUNT)});
} catch (UnsupportedOperationException e) {
log.info("Some line are oblique, ignoring...");
continue;
}
}
break;
case HRIGHT:
tree.remove(so.ruling);
break;
case HLEFT:
tree.put(so.ruling, true);
break;
}
}
return rv;
throw new IllegalArgumentException("Ruling " + this + " is not horizontal");
}
public boolean vertical() {
public void assertVertical() {
if (isVertical()) {
return;
}
throw new IllegalArgumentException("Ruling " + this + " is not vertical");
}
public boolean isVertical() {
return this.length() > 0 && DoubleComparisons.feq(this.x1, this.x2); //diff < ORIENTATION_CHECK_THRESHOLD;
}
public boolean horizontal() {
public boolean isHorizontal() {
return this.length() > 0 && DoubleComparisons.feq(this.y1, this.y2); //diff < ORIENTATION_CHECK_THRESHOLD;
}
@@ -188,36 +106,36 @@ public class Ruling extends Line2D.Float {
// these are used to have a single collapse method (in page, currently)
public boolean oblique() {
public boolean isOblique() {
return !(this.vertical() || this.horizontal());
return !(this.isVertical() || this.isHorizontal());
}
public float getPosition() {
if (this.oblique()) {
if (this.isOblique()) {
throw new UnsupportedOperationException();
}
return this.vertical() ? this.getLeft() : this.getTop();
return this.isVertical() ? this.getLeft() : this.getTop();
}
public float getStart() {
if (this.oblique()) {
if (this.isOblique()) {
throw new UnsupportedOperationException();
}
return this.vertical() ? this.getTop() : this.getLeft();
return this.isVertical() ? this.getTop() : this.getLeft();
}
public void setStart(float v) {
if (this.oblique()) {
if (this.isOblique()) {
throw new UnsupportedOperationException();
}
if (this.vertical()) {
if (this.isVertical()) {
this.setTop(v);
} else {
this.setLeft(v);
@@ -227,19 +145,19 @@ public class Ruling extends Line2D.Float {
public float getEnd() {
if (this.oblique()) {
if (this.isOblique()) {
throw new UnsupportedOperationException();
}
return this.vertical() ? this.getBottom() : this.getRight();
return this.isVertical() ? this.getBottom() : this.getRight();
}
public void setEnd(float v) {
if (this.oblique()) {
if (this.isOblique()) {
throw new UnsupportedOperationException();
}
if (this.vertical()) {
if (this.isVertical()) {
this.setBottom(v);
} else {
this.setRight(v);
@@ -249,10 +167,10 @@ public class Ruling extends Line2D.Float {
public void setStartEnd(float start, float end) {
if (this.oblique()) {
if (this.isOblique()) {
throw new UnsupportedOperationException();
}
if (this.vertical()) {
if (this.isVertical()) {
this.setTop(start);
this.setBottom(end);
} else {
@@ -264,7 +182,7 @@ public class Ruling extends Line2D.Float {
public boolean perpendicularTo(Ruling other) {
return this.vertical() == other.horizontal();
return this.isVertical() == other.isHorizontal();
}
@@ -318,30 +236,6 @@ public class Ruling extends Line2D.Float {
}
public Point2D intersectionPoint(Ruling other) {
Ruling this_l = this.expand(PERPENDICULAR_UNIT_EXPAND_AMOUNT);
Ruling other_l = other.expand(PERPENDICULAR_UNIT_EXPAND_AMOUNT);
Ruling horizontal, vertical;
if (!this_l.intersectsLine(other_l)) {
return null;
}
if (this_l.horizontal() && other_l.vertical()) {
horizontal = this_l;
vertical = other_l;
} else if (this_l.vertical() && other_l.horizontal()) {
vertical = this_l;
horizontal = other_l;
} else {
log.warn("lines must be orthogonal, vertical and horizontal");
return null;
}
return new Point2D.Float(vertical.getLeft(), horizontal.getTop());
}
@Override
public boolean equals(Object other) {
@@ -451,16 +345,9 @@ public class Ruling extends Line2D.Float {
final float TOLERANCE = 1;
return Math.abs(ruling.getX1() - x1) < TOLERANCE &&//
Math.abs(ruling.getY1() - y1) < TOLERANCE &&//
Math.abs(ruling.getX2() - x2) < TOLERANCE &&//
Math.abs(ruling.getY2() - y2) < TOLERANCE;
}
private enum SOType {
VERTICAL,
HRIGHT,
HLEFT
Math.abs(ruling.getY1() - y1) < TOLERANCE &&//
Math.abs(ruling.getX2() - x2) < TOLERANCE &&//
Math.abs(ruling.getY2() - y2) < TOLERANCE;
}
}
@@ -36,14 +36,11 @@ public class TablePageBlock extends AbstractPageBlock {
private List<Cell> cells;
public TablePageBlock(List<Cell> cells, Rectangle area, int rotation) {
public TablePageBlock(List<Cell> cells, int rotation) {
setToBBoxOfComponents(cells);
this.cells = cells;
addCells(cells);
minX = area.getLeft();
minY = area.getBottom();
maxX = area.getRight();
maxY = area.getTop();
classification = PageBlockType.TABLE;
this.rotation = rotation;
}
@@ -230,15 +227,15 @@ public class TablePageBlock extends AbstractPageBlock {
return new ArrayList<>();
}
Set<Float> uniqueX = new HashSet<>();
Set<Float> uniqueY = new HashSet<>();
Set<Double> uniqueX = new HashSet<>();
Set<Double> uniqueY = new HashSet<>();
cells.stream()
.filter(c -> !c.getTextBlocks().isEmpty() || c.getHeight() > 3 && c.getWidth() > 3)
.forEach(c -> {
uniqueX.add(c.getLeft());
uniqueX.add(c.getRight());
uniqueY.add(c.getBottom());
uniqueY.add(c.getTop());
uniqueX.add(c.getPdfMinX());
uniqueX.add(c.getPdfMaxX());
uniqueY.add(c.getPdfMinY());
uniqueY.add(c.getPdfMaxY());
});
var sortedUniqueX = uniqueX.stream()
@@ -250,22 +247,24 @@ public class TablePageBlock extends AbstractPageBlock {
List<List<Cell>> rowsOfCells = new ArrayList<>();
Float prevY = null;
Double prevY = null;
for (Float y : sortedUniqueY) {
for (Double y : sortedUniqueY) {
List<Cell> row = new ArrayList<>();
Float prevX = null;
for (Float x : sortedUniqueX) {
Double prevX = null;
for (Double x : sortedUniqueX) {
if (prevY != null && prevX != null) {
var cellFromGridStructure = new Cell(new Point2D.Float(prevX, prevY), new Point2D.Float(x, y));
var cellFromGridStructure = new Cell(new Point2D.Double(prevX, prevY), new Point2D.Double(x, y));
if (cellFromGridStructure.hasMinimumSize()) {
cells.stream()
.map(originalCell -> new CellWithIntersection(originalCell, RectangleTransformations.calculateIntersectedArea(cellFromGridStructure, originalCell)))
.map(originalCell -> new CellWithIntersection(originalCell,
RectangleTransformations.calculateIntersectedArea(cellFromGridStructure.getBBoxInitialUserSpace(),
originalCell.getBBoxInitialUserSpace())))
.filter(cellWithIntersection -> cellWithIntersection.intersectedArea > 0)
.filter(cellWithIntersection -> cellWithIntersection.originalCell.getArea() > cellWithIntersection.intersectedArea * CELL_AREA_CONTAINED_THRESHOLD)
.max(Comparator.comparing(CellWithIntersection::intersectedArea))
@@ -1,8 +1,12 @@
package com.knecon.fforesight.service.layoutparser.processor.model.text;
import java.awt.geom.AffineTransform;
import java.awt.geom.Rectangle2D;
import org.apache.pdfbox.text.TextPosition;
import com.fasterxml.jackson.annotation.JsonIgnore;
import com.knecon.fforesight.service.layoutparser.processor.docstrum.model.BoundingBox;
import lombok.AllArgsConstructor;
import lombok.Builder;
@@ -14,9 +18,11 @@ import lombok.SneakyThrows;
@Builder
@NoArgsConstructor
@AllArgsConstructor
public class RedTextPosition {
public class RedTextPosition extends BoundingBox {
private float[] position;
public final static int HEIGHT_PADDING = 2;
private Rectangle2D.Float bBoxDirAdj; // adjusted to text rotation
@JsonIgnore
private int rotation;
@@ -58,43 +64,71 @@ public class RedTextPosition {
pos.setFontSizeInPt(textPosition.getFontSizeInPt());
pos.setFontName(textPosition.getFont().getName());
var position = new float[4];
//TODO: There is a mismatch in the java coords of the text and the rulings,
// I guess if we start with the initial user space positions and transform them the same way we do the rulings it would work.
pos.setBBox(new Rectangle2D.Float(textPosition.getX(), textPosition.getY(), textPosition.getWidthDirAdj(), textPosition.getHeight()));
position[0] = textPosition.getXDirAdj();
position[1] = textPosition.getYDirAdj();
position[2] = textPosition.getWidthDirAdj();
position[3] = textPosition.getHeightDir();
float textHeight = textPosition.getHeight() + 2 * HEIGHT_PADDING;
Rectangle2D.Float dirAdjPosition = new Rectangle2D.Float(textPosition.getXDirAdj(),
textPosition.getYDirAdj() - textHeight,
textPosition.getWidthDirAdj(),
textHeight + HEIGHT_PADDING);
pos.setBBoxDirAdj(dirAdjPosition);
AffineTransform affineTransform = getRotationMatrix(TextDirection.fromDegrees(textPosition.getDir()), textPosition.getPageWidth(), textPosition.getPageHeight());
Rectangle2D bBoxInitialUserSpace = affineTransform.createTransformedShape(dirAdjPosition).getBounds2D();
pos.setBBoxInitialUserSpace(bBoxInitialUserSpace); // These are definitely correct
pos.setPosition(position);
return pos;
}
private static AffineTransform getRotationMatrix(TextDirection textDirection, float pageWidth, float pageHeight) {
AffineTransform transform = new AffineTransform();
if (textDirection == TextDirection.ZERO || textDirection == TextDirection.HALF_CIRCLE) {
transform.rotate(textDirection.getRadians(), pageWidth / 2f, pageHeight / 2f);
transform.translate(0f, pageHeight);
} else if (textDirection == TextDirection.QUARTER_CIRCLE) {
transform.rotate(textDirection.getRadians(), pageWidth / 2f, pageWidth / 2f);
transform.translate(0f, pageWidth);
} else {
transform.rotate(textDirection.getRadians(), pageHeight / 2f, pageHeight / 2f);
transform.translate(0f, pageWidth);
}
transform.scale(1., -1.);
return transform;
}
@JsonIgnore
public float getXDirAdj() {
return position[0];
return this.bBoxDirAdj.x;
}
@JsonIgnore
public float getYDirAdj() {
return position[1];
return this.bBoxDirAdj.y;
}
@JsonIgnore
public float getWidthDirAdj() {
return position[2];
return this.bBoxDirAdj.width;
}
@JsonIgnore
public float getHeightDir() {
return position[3];
return this.bBoxDirAdj.height;
}
}
@@ -1,16 +1,13 @@
package com.knecon.fforesight.service.layoutparser.processor.model.text;
import static java.util.stream.Collectors.toSet;
import java.awt.geom.Rectangle2D;
import java.util.ArrayList;
import java.util.Comparator;
import java.util.List;
import com.fasterxml.jackson.annotation.JsonIgnore;
import com.knecon.fforesight.service.layoutparser.processor.model.AbstractPageBlock;
import com.knecon.fforesight.service.layoutparser.processor.model.FloatFrequencyCounter;
import com.knecon.fforesight.service.layoutparser.processor.model.PageBlockType;
import com.knecon.fforesight.service.layoutparser.processor.utils.DoubleComparisons;
import com.knecon.fforesight.service.layoutparser.processor.utils.TextNormalizationUtilities;
import lombok.AllArgsConstructor;
@@ -29,34 +26,31 @@ public class TextPageBlock extends AbstractPageBlock {
@Builder.Default
private List<TextPositionSequence> sequences = new ArrayList<>();
@JsonIgnore
private int rotation;
@JsonIgnore
private String mostPopularWordFont;
@JsonIgnore
private String mostPopularWordStyle;
@JsonIgnore
private float mostPopularWordFontSize;
@JsonIgnore
private float mostPopularWordHeight;
@JsonIgnore
private float mostPopularWordSpaceWidth;
@JsonIgnore
private float highestFontSize;
@JsonIgnore
private PageBlockType classification;
@JsonIgnore
private boolean toDuplicate;
public TextPageBlock(List<TextPositionSequence> sequences) {
this.sequences = sequences;
calculateFrequencyCounters();
calculateBBox();
}
@JsonIgnore
public TextDirection getDir() {
@@ -65,30 +59,59 @@ public class TextPageBlock extends AbstractPageBlock {
@JsonIgnore
private float getPageHeight() {
public float getPageHeight() {
return sequences.get(0).getPageHeight();
}
@JsonIgnore
private float getPageWidth() {
public float getPageWidth() {
return sequences.get(0).getPageWidth();
}
public static TextPageBlock merge(List<TextPageBlock> textBlocksToMerge) {
private void calculateBBox() {
List<TextPositionSequence> sequences = textBlocksToMerge.stream().map(TextPageBlock::getSequences).flatMap(java.util.Collection::stream).toList();
sequences = new ArrayList<>(sequences);
return fromTextPositionSequences(sequences);
if (sequences == null) {
this.bBox = new Rectangle2D.Double();
this.bBoxInitialUserSpace = new Rectangle2D.Double();
return;
}
setToBBoxOfComponents(sequences);
}
public static TextPageBlock fromTextPositionSequences(List<TextPositionSequence> wordBlockList) {
public void recalculateBBox() {
TextPageBlock textBlock = null;
calculateBBox();
}
public static TextPageBlock merge(List<TextPageBlock> textBlocksToMerge) {
if (textBlocksToMerge.isEmpty()) {
throw new IllegalArgumentException("Need to provide at least one TextPageBlock.");
}
if (textBlocksToMerge.stream()
.map(AbstractPageBlock::getPage)
.distinct()
.count() != 1) {
throw new IllegalArgumentException("Cannot merge textBlocks on different pages.");
}
List<TextPositionSequence> sequences = textBlocksToMerge.stream()
.map(TextPageBlock::getSequences)
.flatMap(java.util.Collection::stream)
.toList();
sequences = new ArrayList<>(sequences);
return new TextPageBlock(sequences);
}
private void calculateFrequencyCounters() {
FloatFrequencyCounter lineHeightFrequencyCounter = new FloatFrequencyCounter();
FloatFrequencyCounter fontSizeFrequencyCounter = new FloatFrequencyCounter();
@@ -96,7 +119,7 @@ public class TextPageBlock extends AbstractPageBlock {
StringFrequencyCounter fontFrequencyCounter = new StringFrequencyCounter();
StringFrequencyCounter styleFrequencyCounter = new StringFrequencyCounter();
for (TextPositionSequence wordBlock : wordBlockList) {
for (TextPositionSequence wordBlock : sequences) {
lineHeightFrequencyCounter.add(wordBlock.getTextHeight());
fontSizeFrequencyCounter.add(wordBlock.getFontSize());
@@ -104,160 +127,23 @@ public class TextPageBlock extends AbstractPageBlock {
fontFrequencyCounter.add(wordBlock.getFont());
styleFrequencyCounter.add(wordBlock.getFontStyle());
if (textBlock == null) {
textBlock = new TextPageBlock(wordBlock.getMinXDirAdj(),
wordBlock.getMaxXDirAdj(),
wordBlock.getMinYDirAdj(),
wordBlock.getMaxYDirAdj(),
wordBlockList,
wordBlock.getRotation());
} else {
TextPageBlock spatialEntity = textBlock.union(wordBlock);
textBlock.resize(spatialEntity.getMinX(), spatialEntity.getMinY(), spatialEntity.getWidth(), spatialEntity.getHeight());
}
}
if (textBlock != null) {
textBlock.setMostPopularWordFont(fontFrequencyCounter.getMostPopular());
textBlock.setMostPopularWordStyle(styleFrequencyCounter.getMostPopular());
textBlock.setMostPopularWordFontSize(fontSizeFrequencyCounter.getMostPopular());
textBlock.setMostPopularWordHeight(lineHeightFrequencyCounter.getMostPopular());
textBlock.setMostPopularWordSpaceWidth(spaceFrequencyCounter.getMostPopular());
textBlock.setHighestFontSize(fontSizeFrequencyCounter.getHighest());
}
if (textBlock != null && textBlock.getSequences() != null && textBlock.getSequences()
.stream()
.map(t -> DoubleComparisons.round(t.getMinYDirAdj(), 3))
.collect(toSet())
.size() == 1) {
textBlock.getSequences().sort(Comparator.comparing(TextPositionSequence::getMinXDirAdj));
}
return textBlock;
}
/**
* Returns the minX value in pdf coordinate system.
* Note: This needs to use Pdf Coordinate System where {0,0} rotated with the page rotation.
* 0 -> LowerLeft
* 90 -> UpperLeft
* 180 -> UpperRight
* 270 -> LowerRight
*
* @return the minX value in pdf coordinate system
*/
@JsonIgnore
public float getPdfMinX() {
if (getDir().getDegrees() == 90) {
return minY;
} else if (getDir().getDegrees() == 180) {
return getPageWidth() - maxX;
} else if (getDir().getDegrees() == 270) {
return getPageWidth() - maxY;
} else {
return minX;
}
}
/**
* Returns the maxX value in pdf coordinate system.
* Note: This needs to use Pdf Coordinate System where {0,0} rotated with the page rotation.
* 0 -> LowerLeft
* 90 -> UpperLeft
* 180 -> UpperRight
* 270 -> LowerRight
*
* @return the maxX value in pdf coordinate system
*/
@JsonIgnore
public float getPdfMaxX() {
if (getDir().getDegrees() == 90) {
return maxY;
} else if (getDir().getDegrees() == 180) {
return getPageWidth() - minX;
} else if (getDir().getDegrees() == 270) {
return getPageWidth() - minY;
} else {
return maxX;
}
}
/**
* Returns the minY value in pdf coordinate system.
* Note: This needs to use Pdf Coordinate System where {0,0} rotated with the page rotation.
* 0 -> LowerLeft
* 90 -> UpperLeft
* 180 -> UpperRight
* 270 -> LowerRight
*
* @return the minY value in pdf coordinate system
*/
@JsonIgnore
public float getPdfMinY() {
if (getDir().getDegrees() == 90) {
return minX;
} else if (getDir().getDegrees() == 180) {
return maxY;
} else if (getDir().getDegrees() == 270) {
return getPageHeight() - maxX;
} else {
return getPageHeight() - maxY;
}
}
/**
* Returns the maxY value in pdf coordinate system.
* Note: This needs to use Pdf Coordinate System where {0,0} rotated with the page rotation.
* 0 -> LowerLeft
* 90 -> UpperLeft
* 180 -> UpperRight
* 270 -> LowerRight
*
* @return the maxY value in pdf coordinate system
*/
@JsonIgnore
public float getPdfMaxY() {
if (getDir().getDegrees() == 90) {
return maxX;
} else if (getDir().getDegrees() == 180) {
return minY;
} else if (getDir().getDegrees() == 270) {
return getPageHeight() - minX;
} else {
return getPageHeight() - minY;
}
}
public TextPageBlock(float minX, float maxX, float minY, float maxY, List<TextPositionSequence> sequences, int rotation) {
this.minX = minX;
this.maxX = maxX;
this.minY = minY;
this.maxY = maxY;
this.sequences = sequences;
this.rotation = rotation;
setMostPopularWordFont(fontFrequencyCounter.getMostPopular());
setMostPopularWordStyle(styleFrequencyCounter.getMostPopular());
setMostPopularWordFontSize(fontSizeFrequencyCounter.getMostPopular());
setMostPopularWordHeight(lineHeightFrequencyCounter.getMostPopular());
setMostPopularWordSpaceWidth(spaceFrequencyCounter.getMostPopular());
setHighestFontSize(fontSizeFrequencyCounter.getHighest());
}
public TextPageBlock union(TextPositionSequence r) {
TextPageBlock union = this.copy();
union.add(r);
union.getSequences().add(r);
calculateFrequencyCounters();
calculateBBox();
return union;
}
@@ -265,64 +151,32 @@ public class TextPageBlock extends AbstractPageBlock {
public TextPageBlock union(TextPageBlock r) {
TextPageBlock union = this.copy();
union.add(r);
union.getSequences().addAll(r.getSequences());
calculateFrequencyCounters();
calculateBBox();
return union;
}
public void add(TextPageBlock r) {
if (r.getMinX() < minX) {
minX = r.getMinX();
}
if (r.getMaxX() > maxX) {
maxX = r.getMaxX();
}
if (r.getMinY() < minY) {
minY = r.getMinY();
}
if (r.getMaxY() > maxY) {
maxY = r.getMaxY();
}
sequences.addAll(r.getSequences());
calculateFrequencyCounters();
calculateBBox();
}
public void add(TextPositionSequence r) {
if (r.getMinXDirAdj() < minX) {
minX = r.getMinXDirAdj();
}
if (r.getMaxXDirAdj() > maxX) {
maxX = r.getMaxXDirAdj();
}
if (r.getMinYDirAdj() < minY) {
minY = r.getMinYDirAdj();
}
if (r.getMaxYDirAdj() > maxY) {
maxY = r.getMaxYDirAdj();
}
sequences.add(r);
calculateFrequencyCounters();
calculateBBox();
}
public TextPageBlock copy() {
return new TextPageBlock(minX, maxX, minY, maxY, sequences, rotation);
}
public void resize(float x1, float y1, float width, float height) {
set(x1, y1, x1 + width, y1 + height);
}
public void set(float x1, float y1, float x2, float y2) {
this.minX = Math.min(x1, x2);
this.maxX = Math.max(x1, x2);
this.minY = Math.min(y1, y2);
this.maxY = Math.max(y1, y2);
return new TextPageBlock(new ArrayList<>(sequences));
}
@@ -1,7 +1,6 @@
package com.knecon.fforesight.service.layoutparser.processor.model.text;
import java.awt.geom.AffineTransform;
import java.awt.geom.Point2D;
import java.awt.geom.Rectangle2D;
import java.util.ArrayList;
import java.util.List;
import java.util.Locale;
@@ -9,15 +8,14 @@ import java.util.stream.Collectors;
import org.apache.pdfbox.text.TextPosition;
import com.iqser.red.service.persistence.service.v1.api.shared.model.redactionlog.Point;
import com.iqser.red.service.persistence.service.v1.api.shared.model.redactionlog.Rectangle;
import com.knecon.fforesight.service.layoutparser.processor.docstrum.model.BoundingBox;
import com.knecon.fforesight.service.layoutparser.processor.utils.RectangleTransformations;
import lombok.AllArgsConstructor;
import lombok.Builder;
import lombok.Data;
import lombok.EqualsAndHashCode;
import lombok.NoArgsConstructor;
import lombok.SneakyThrows;
import lombok.extern.slf4j.Slf4j;
@Slf4j
@@ -25,8 +23,8 @@ import lombok.extern.slf4j.Slf4j;
@Builder
@NoArgsConstructor
@AllArgsConstructor
@EqualsAndHashCode(onlyExplicitlyIncluded = true)
public class TextPositionSequence implements CharSequence {
@EqualsAndHashCode(onlyExplicitlyIncluded = true, callSuper = false)
public class TextPositionSequence extends BoundingBox implements CharSequence {
public static final int HEIGHT_PADDING = 2;
@@ -36,29 +34,38 @@ public class TextPositionSequence implements CharSequence {
@EqualsAndHashCode.Include
private List<RedTextPosition> textPositions = new ArrayList<>();
private Rectangle2D bBoxDirAdj;
@EqualsAndHashCode.Include
private TextDirection dir;
private int rotation;
private float pageHeight;
private float pageWidth;
private boolean isParagraphStart;
private boolean strikethrough;
private boolean underline;
public TextPositionSequence(int page) {
public TextPositionSequence(List<TextPosition> textPositions, int pageNumber, boolean isParagraphStart) {
this.page = page;
}
public TextPositionSequence(List<TextPosition> textPositions, int page, boolean isParagraphStart) {
this.textPositions = textPositions.stream().map(RedTextPosition::fromTextPosition).collect(Collectors.toList());
this.page = page;
this.textPositions = textPositions.stream()
.map(RedTextPosition::fromTextPosition)
.collect(Collectors.toList());
this.page = pageNumber;
this.dir = TextDirection.fromDegrees(textPositions.get(0).getDir());
this.rotation = textPositions.get(0).getRotation();
this.pageHeight = textPositions.get(0).getPageHeight();
this.pageWidth = textPositions.get(0).getPageWidth();
this.isParagraphStart = isParagraphStart;
calculateBBox();
}
private void calculateBBox() {
this.bBoxDirAdj = textPositions.stream()
.map(RedTextPosition::getBBoxDirAdj)
.collect(RectangleTransformations.collectBBox());
setToBBoxOfComponents(getTextPositions());
}
@@ -70,6 +77,7 @@ public class TextPositionSequence implements CharSequence {
this.rotation = textPositions.get(0).getRotation();
this.pageHeight = textPositions.get(0).getPageHeight();
this.pageWidth = textPositions.get(0).getPageWidth();
calculateBBox();
}
@@ -107,7 +115,7 @@ public class TextPositionSequence implements CharSequence {
textPositionSequence.rotation = rotation;
textPositionSequence.pageHeight = pageHeight;
textPositionSequence.pageWidth = pageWidth;
textPositionSequence.setToBBoxOfComponents(getTextPositions());
return textPositionSequence;
}
@@ -137,18 +145,18 @@ public class TextPositionSequence implements CharSequence {
this.rotation = textPositionSequence.getRotation();
this.pageHeight = textPositionSequence.getPageHeight();
this.pageWidth = textPositionSequence.getPageWidth();
calculateBBox();
}
public void add(TextPosition textPosition) {
this.textPositions.add(RedTextPosition.fromTextPosition(textPosition));
this.dir = TextDirection.fromDegrees(textPositions.get(0).getDir());
this.rotation = textPositions.get(0).getRotation();
this.pageHeight = textPositions.get(0).getPageHeight();
this.pageWidth = textPositions.get(0).getPageWidth();
calculateBBox();
}
@@ -208,24 +216,18 @@ public class TextPositionSequence implements CharSequence {
}
public float getTextHeightNoPadding() {
return textPositions.get(0).getHeightDir();
}
public float getTextHeight() {
return textPositions.get(0).getHeightDir() + HEIGHT_PADDING;
}
public float getHeight() {
return getMaxYDirAdj() - getMinYDirAdj();
}
public float getWidth() {
return getMaxXDirAdj() - getMinXDirAdj();
}
public String getFont() {
if (textPositions.get(0).getFontName() == null) {
@@ -265,54 +267,5 @@ public class TextPositionSequence implements CharSequence {
return textPositions.get(0).getWidthOfSpace();
}
/**
* This returns the bounding box of the word in Pdf Coordinate System where {0,0} rotated with the page rotation.
* 0 -> LowerLeft
* 90 -> UpperLeft
* 180 -> UpperRight
* 270 -> LowerRight
*
* @return bounding box of the word in Pdf Coordinate System
*/
@SneakyThrows
public Rectangle getRectangle() {
log.debug("Page: '{}', Word: '{}', Rotation: '{}', textRotation {}", page, this, rotation, dir);
float textHeight = getTextHeight();
RedTextPosition firstTextPos = textPositions.get(0);
RedTextPosition lastTextPos = textPositions.get(textPositions.size() - 1);
Point2D bottomLeft = new Point2D.Double(firstTextPos.getXDirAdj(), firstTextPos.getYDirAdj() - HEIGHT_PADDING);
Point2D topRight = new Point2D.Double(lastTextPos.getXDirAdj() + lastTextPos.getWidthDirAdj(), lastTextPos.getYDirAdj() + textHeight + HEIGHT_PADDING);
AffineTransform transform = new AffineTransform();
if (dir == TextDirection.ZERO || dir == TextDirection.HALF_CIRCLE) {
transform.rotate(dir.getRadians(), pageWidth / 2f, pageHeight / 2f);
transform.translate(0f, pageHeight + textHeight);
transform.scale(1., -1.);
} else if (dir == TextDirection.QUARTER_CIRCLE) {
transform.rotate(dir.getRadians(), pageWidth / 2f, pageWidth / 2f);
transform.translate(0f, pageWidth + textHeight);
transform.scale(1., -1.);
} else {
transform.rotate(dir.getRadians(), pageHeight / 2f, pageHeight / 2f);
transform.translate(0f, pageWidth + textHeight);
transform.scale(1., -1.);
}
bottomLeft = transform.transform(bottomLeft, null);
topRight = transform.transform(topRight, null);
return new Rectangle( //
new Point((float) bottomLeft.getX(), (float) bottomLeft.getY()),
(float) (topRight.getX() - bottomLeft.getX()),
(float) (topRight.getY() - bottomLeft.getY()),
page);
}
}
@@ -9,10 +9,11 @@ import java.util.Map;
import org.springframework.stereotype.Service;
import com.knecon.fforesight.service.layoutparser.processor.python_api.model.image.ImageServiceResponse;
import com.knecon.fforesight.service.layoutparser.processor.model.AbstractPageBlock;
import com.knecon.fforesight.service.layoutparser.processor.model.ClassificationPage;
import com.knecon.fforesight.service.layoutparser.processor.model.image.ClassifiedImage;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.ImageType;
import com.knecon.fforesight.service.layoutparser.processor.model.image.ClassifiedImage;
import com.knecon.fforesight.service.layoutparser.processor.python_api.model.image.ImageServiceResponse;
import lombok.RequiredArgsConstructor;
@@ -20,8 +21,7 @@ import lombok.RequiredArgsConstructor;
@RequiredArgsConstructor
public class ImageServiceResponseAdapter {
public Map<Integer, List<ClassifiedImage>> buildClassifiedImagesPerPage(ImageServiceResponse imageServiceResponse ) {
public Map<Integer, List<ClassifiedImage>> buildClassifiedImagesPerPage(ImageServiceResponse imageServiceResponse) {
Map<Integer, List<ClassifiedImage>> images = new HashMap<>();
imageServiceResponse.getData().forEach(imageMetadata -> {
@@ -32,7 +32,7 @@ public class ImageServiceResponseAdapter {
.add(new ClassifiedImage(new Rectangle2D.Double(imageMetadata.getPosition().getX1(),
imageMetadata.getPosition().getY1(),
imageMetadata.getGeometry().getWidth(),
imageMetadata.getGeometry().getHeight()), classification, imageMetadata.isAlpha(), imageMetadata.getPosition().getPageNumber()));
imageMetadata.getGeometry().getHeight()), classification, imageMetadata.isAlpha(), imageMetadata.getPosition().getPageNumber(),imageMetadata.getRepresentation()));
});
// Currently This is a copy but, it will be changed later because i don' t think that we should unclassified images.
@@ -44,7 +44,7 @@ public class ImageServiceResponseAdapter {
.add(new ClassifiedImage(new Rectangle2D.Double(imageMetadata.getPosition().getX1(),
imageMetadata.getPosition().getY1(),
imageMetadata.getGeometry().getWidth(),
imageMetadata.getGeometry().getHeight()), classification, imageMetadata.isAlpha(), imageMetadata.getPosition().getPageNumber()));
imageMetadata.getGeometry().getHeight()), classification, imageMetadata.isAlpha(), imageMetadata.getPosition().getPageNumber(),imageMetadata.getRepresentation()));
});
return images;
@@ -55,11 +55,12 @@ public class ImageServiceResponseAdapter {
classificationPage.getImages().forEach(image -> {
if (image.getImageType().equals(ImageType.OTHER)) {
classificationPage.getTextBlocks().forEach(textblock -> {
if (image.getPosition().contains(textblock.getMinX(), textblock.getMinY(), textblock.getWidth(), textblock.getHeight())) {
for (AbstractPageBlock textblock : classificationPage.getTextBlocks()) {
if (image.getPosition().contains(textblock.getBBoxInitialUserSpace())) {
image.setImageType(ImageType.OCR);
return;
}
});
}
}
});
}
@@ -79,7 +79,7 @@ public class VisualLayoutParsingAdapter {
ClassifiedImage signature = new ClassifiedImage(new Rectangle2D.Float(t.getBox().getX1(),
t.getBox().getY1(),
t.getBox().getX2() - t.getBox().getX1(),
t.getBox().getY2() - t.getBox().getY1()), ImageType.SIGNATURE, true, false, false, pageNumber);
t.getBox().getY2() - t.getBox().getY1()), ImageType.SIGNATURE, true, false, false, pageNumber,"");
signatures.add(signature);
}
@@ -12,6 +12,7 @@ import lombok.NoArgsConstructor;
public class ImageMetadata {
private Classification classification;
private String representation;
private Position position;
private Geometry geometry;
private Filters filters;
@@ -31,8 +31,9 @@ public class BodyTextFrameService {
Rectangle bodyTextFrame = calculateBodyTextFrame(classificationDocument.getPages(), classificationDocument.getFontSizeCounter(), false, layoutParsingType);
Rectangle landscapeBodyTextFrame = calculateBodyTextFrame(classificationDocument.getPages(), classificationDocument.getFontSizeCounter(), true, layoutParsingType);
for (ClassificationPage page : classificationDocument.getPages()) {
// var updatedBodyTextFrame = getBodyTextFrameFromRulings(page, bodyTextFrame, landscapeBodyTextFrame);
var updatedBodyTextFrame = getBodyTextFrameFromRulings(page, bodyTextFrame, landscapeBodyTextFrame);
setBodyTextFrameAdjustedToPage(page, bodyTextFrame, landscapeBodyTextFrame);
classificationDocument.getVisualizations().addMainBodyVisualization(page.isLandscape() ? landscapeBodyTextFrame : bodyTextFrame, page.getPageNumber());
}
}
@@ -58,24 +59,26 @@ public class BodyTextFrameService {
private List<Ruling> getPotentialFooterRulings(ClassificationPage page) {
return page.getCleanRulings()
.getHorizontal()
return page.getCleanRulings().getHorizontals()
.stream()
.filter(ruling -> ruling.getClassification().equals(Ruling.Classification.OTHER))
.filter(ruling -> ruling.getY1() < page.getPageHeight() * RULING_HEIGHT_THRESHOLD)
.filter(ruling -> ruling.getWidth() > RULING_WIDTH_THRESHOLD * page.getPageWidth())
.sorted(Comparator.comparingDouble(Ruling::getTop))
.peek(ruling -> ruling.setClassification(Ruling.Classification.FOOTER_SEPARATOR))
.toList();
}
private List<Ruling> getPotentialHeaderRulings(ClassificationPage page) {
return page.getCleanRulings()
.getHorizontal()
return page.getCleanRulings().getHorizontals()
.stream()
.filter(ruling -> ruling.getClassification().equals(Ruling.Classification.OTHER))
.filter(ruling -> ruling.getY1() > page.getPageHeight() * (1 - RULING_HEIGHT_THRESHOLD))
.filter(ruling -> ruling.getWidth() > RULING_WIDTH_THRESHOLD * page.getPageWidth())
.sorted(Comparator.comparingDouble(Ruling::getBottom).reversed())
.peek(ruling -> ruling.setClassification(Ruling.Classification.HEADER_SEPARATOR))
.toList();
}
@@ -99,16 +102,16 @@ public class BodyTextFrameService {
if (page.getPageWidth() > page.getPageHeight() && page.getRotation() == 270) {
textFrame = new Rectangle(new Point(textFrame.getTopLeft().getY(), page.getPageHeight() - textFrame.getTopLeft().getX() - textFrame.getWidth()),
textFrame.getHeight(),
textFrame.getWidth(),
0);
textFrame.getHeight(),
textFrame.getWidth(),
0);
} else if (page.getPageWidth() > page.getPageHeight() && page.getRotation() != 0) {
textFrame = new Rectangle(new Point(textFrame.getTopLeft().getY(), textFrame.getTopLeft().getX()), textFrame.getHeight(), textFrame.getWidth(), page.getPageNumber());
} else if (page.getRotation() == 180) {
textFrame = new Rectangle(new Point(textFrame.getTopLeft().getX(), page.getPageHeight() - textFrame.getTopLeft().getY() - textFrame.getHeight()),
textFrame.getWidth(),
textFrame.getHeight(),
0);
textFrame.getWidth(),
textFrame.getHeight(),
0);
}
page.setBodyTextFrame(textFrame);
}
@@ -152,14 +155,17 @@ public class BodyTextFrameService {
}
if (MarkedContentUtils.intersects(textBlock, page.getMarkedContentBboxPerType(), MarkedContentUtils.HEADER) || MarkedContentUtils.intersects(textBlock,
page.getMarkedContentBboxPerType(),
MarkedContentUtils.FOOTER)) {
page.getMarkedContentBboxPerType(),
MarkedContentUtils.FOOTER)) {
continue;
}
float approxLineCount = PositionUtils.getApproxLineCount(textBlock);
if (layoutParsingType.equals(LayoutParsingType.DOCUMINE) && approxLineCount < approximateHeaderLineCount && textBlock.getMaxY() >= page.getPageHeight() - (page.getPageHeight() / 10) || !layoutParsingType.equals(
LayoutParsingType.DOCUMINE) && approxLineCount < approximateHeaderLineCount) {
double approxLineCount = PositionUtils.getApproxLineCount(textBlock);
if (layoutParsingType.equals(LayoutParsingType.DOCUMINE_OLD) //
&& approxLineCount < approximateHeaderLineCount //
&& textBlock.getMaxY() >= page.getPageHeight() - (page.getPageHeight() / 10)//
|| !layoutParsingType.equals(LayoutParsingType.DOCUMINE_OLD) //
&& approxLineCount < approximateHeaderLineCount) {
continue;
}
@@ -185,10 +191,10 @@ public class BodyTextFrameService {
}
}
}
return new Rectangle(new Point(expansionsRectangle.minX, expansionsRectangle.minY),
expansionsRectangle.maxX - expansionsRectangle.minX,
expansionsRectangle.maxY - expansionsRectangle.minY,
0);
return new Rectangle(new Point((float) expansionsRectangle.minX, (float) expansionsRectangle.minY),
(float) (expansionsRectangle.maxX - expansionsRectangle.minX),
(float) (expansionsRectangle.maxY - expansionsRectangle.minY),
0);
}
@@ -226,10 +232,10 @@ public class BodyTextFrameService {
private class BodyTextFrameExpansionsRectangle {
float minX = 10000;
float maxX = -100;
float minY = 10000;
float maxY = -100;
double minX = 10000;
double maxX = -100;
double minY = 10000;
double maxY = -100;
}
@@ -44,9 +44,9 @@ public class GapDetectionService {
if (yDifference > avgTextPositionHeight * Y_GAP_FACTOR) {
yGapContext.addGap(mainBodyTextFrame.getMinX(),
previousTextPositionBBox.getMaxY(),
mainBodyTextFrame.getWidth(),
-(previousTextPositionBBox.getMaxY() - currentTextPositionBBox.getMinY()));
previousTextPositionBBox.getMaxY(),
mainBodyTextFrame.getWidth(),
-(previousTextPositionBBox.getMaxY() - currentTextPositionBBox.getMinY()));
}
if (yDifference > avgTextPositionHeight * NEW_LINE_FACTOR) {
@@ -69,32 +69,37 @@ public class GapDetectionService {
private static Rectangle2D toRectangle2D(TextPositionSequence textPosition) {
return mirrorY(RectangleTransformations.toRectangle2D(textPosition.getRectangle()));
return mirrorY(textPosition.getBBox());
}
private static Rectangle2D mirrorY(Rectangle2D rectangle2D) {
return new Rectangle2D.Double(rectangle2D.getX(), Math.min(rectangle2D.getMinY(), rectangle2D.getMaxY()), rectangle2D.getWidth(), Math.abs(rectangle2D.getHeight()));
}
private static void addGapToLine(Rectangle2D currentTextPosition, Rectangle2D previousTextPosition, XGapsContext context) {
context.gapsInCurrentLine.add(new Rectangle2D.Double(previousTextPosition.getMaxX(),
previousTextPosition.getMinY(),
currentTextPosition.getMinX() - previousTextPosition.getMaxX(),
(previousTextPosition.getHeight() + currentTextPosition.getHeight()) / 2));
previousTextPosition.getMinY(),
currentTextPosition.getMinX() - previousTextPosition.getMaxX(),
(previousTextPosition.getHeight() + currentTextPosition.getHeight()) / 2));
}
private static void assertAllTextPositionsHaveSameDir(List<TextPositionSequence> textPositionSequences) {
assert textPositionSequences.stream().map(TextPositionSequence::getDir).allMatch(a -> a.equals(textPositionSequences.get(0).getDir()));
assert textPositionSequences.stream()
.map(TextPositionSequence::getDir)
.allMatch(a -> a.equals(textPositionSequences.get(0).getDir()));
}
private static double getAvgTextPositionHeight(List<TextPositionSequence> textPositionSequences) {
return textPositionSequences.stream().mapToDouble(TextPositionSequence::getHeight).average().orElseThrow();
return textPositionSequences.stream()
.mapToDouble(TextPositionSequence::getHeight).average().orElseThrow();
}
@@ -142,9 +147,9 @@ public class GapDetectionService {
public void addGapToRightEdgeOfMainBody(Rectangle2D textPosition) {
Rectangle2D leftGap = new Rectangle2D.Double(textPosition.getMaxX(),
textPosition.getMinY(),
mainBodyTextFrame.getMaxX() - textPosition.getMaxX(),
textPosition.getHeight());
textPosition.getMinY(),
mainBodyTextFrame.getMaxX() - textPosition.getMaxX(),
textPosition.getHeight());
gapsInCurrentLine.add(leftGap);
}
@@ -152,9 +157,9 @@ public class GapDetectionService {
public void addGapFromLeftEdgeOfMainBody(Rectangle2D textPosition) {
Rectangle2D leftGap = new Rectangle2D.Double(mainBodyTextFrame.getMinX(),
textPosition.getMinY(),
textPosition.getMinX() - mainBodyTextFrame.getMinX(),
textPosition.getHeight());
textPosition.getMinY(),
textPosition.getMinX() - mainBodyTextFrame.getMinX(),
textPosition.getHeight());
gapsInCurrentLine.add(leftGap);
}
@@ -180,7 +180,7 @@ public class LineDetectionService {
private Rectangle2D textPositionBBox(List<TextPositionSequence> textPositionSequences) {
return RectangleTransformations.rectangleBBox(textPositionSequences.stream().map(TextPositionSequence::getRectangle).toList());
return RectangleTransformations.rectangle2DBBox(textPositionSequences.stream().map(TextPositionSequence::getBBox).toList());
}
@@ -3,6 +3,7 @@ package com.knecon.fforesight.service.layoutparser.processor.services;
import static com.knecon.fforesight.service.layoutparser.processor.utils.GeometricComparators.X_FIRST_RULING_COMPARATOR;
import java.awt.geom.Point2D;
import java.awt.geom.Rectangle2D;
import java.util.ArrayList;
import java.util.HashMap;
import java.util.List;
@@ -12,9 +13,9 @@ import java.util.stream.Collectors;
import org.springframework.stereotype.Service;
import com.knecon.fforesight.service.layoutparser.processor.model.table.CleanRulings;
import com.knecon.fforesight.service.layoutparser.processor.model.table.Rectangle;
import com.knecon.fforesight.service.layoutparser.processor.model.table.Ruling;
import com.knecon.fforesight.service.layoutparser.processor.python_api.model.table.TableCells;
import com.knecon.fforesight.service.layoutparser.processor.utils.RectangleTransformations;
import com.knecon.fforesight.service.layoutparser.processor.utils.UnionFind;
import lombok.RequiredArgsConstructor;
@@ -31,7 +32,7 @@ public class RulingCleaningService {
private static final float THRESHOLD_Y_HORIZONTAL = 3;
public CleanRulings getCleanRulings(List<TableCells> tableCells, List<Ruling> rulings) {
public CleanRulings deduplicateAndStraightenRulings(List<TableCells> tableCells, List<Ruling> rulings) {
Rulings verticalAndHorizontalRulingLines;
@@ -45,43 +46,45 @@ public class RulingCleaningService {
verticalAndHorizontalRulingLines.horizontalLines.sort(X_FIRST_RULING_COMPARATOR);
verticalAndHorizontalRulingLines = cleanRulings(verticalAndHorizontalRulingLines);
return CleanRulings.builder().vertical(verticalAndHorizontalRulingLines.verticalLines()).horizontal(verticalAndHorizontalRulingLines.horizontalLines()).build();
return new CleanRulings(verticalAndHorizontalRulingLines.horizontalLines(), verticalAndHorizontalRulingLines.verticalLines());
}
private Rulings cleanRulings(Rulings rulings) {
List<List<Rectangle>> groupedOverlappingVerticalRectangles = groupOverlappingRectangles(rulings.verticalLines.stream()
.map(RulingCleaningService::getOverlapRectangle)
.distinct()
.toList());
List<Ruling> cleanedVerticalRulings = groupedOverlappingVerticalRectangles.stream()
.map(rectList -> getXCenteredRuling(Rectangle.boundingBoxOf(rectList)))
.toList();
List<List<Rectangle>> groupedOverlappingHorizontalRectangles = groupOverlappingRectangles(rulings.horizontalLines.stream()
List<List<Rectangle2D>> groupedOverlappingVerticalRectangles = groupOverlappingRectangles(rulings.verticalLines.stream()
.map(RulingCleaningService::getOverlapRectangle)
.distinct()
.toList());
List<Ruling> cleanedVerticalRulings = groupedOverlappingVerticalRectangles.stream()
.map(rectList -> getXCenteredRuling(RectangleTransformations.rectangle2DBBox(rectList)))
.filter(ruling -> ruling.length() > 0)
.toList();
List<List<Rectangle2D>> groupedOverlappingHorizontalRectangles = groupOverlappingRectangles(rulings.horizontalLines.stream()
.map(RulingCleaningService::getOverlapRectangle)
.distinct()
.toList());
List<Ruling> cleanedHorizontalRulings = groupedOverlappingHorizontalRectangles.stream()
.map(rectList -> getYCenteredRuling(Rectangle.boundingBoxOf(rectList)))
.map(rectList -> getYCenteredRuling(RectangleTransformations.rectangle2DBBox(rectList)))
.filter(ruling -> ruling.length() > 0)
.collect(Collectors.toList());
return new Rulings(cleanedVerticalRulings, cleanedHorizontalRulings);
}
private List<List<Rectangle>> groupOverlappingRectangles(List<Rectangle> rectangles) {
private List<List<Rectangle2D>> groupOverlappingRectangles(List<Rectangle2D> rectangles) {
UnionFind<Rectangle> unionFind = new UnionFind<>();
UnionFind<Rectangle2D> unionFind = new UnionFind<>();
for (int i = 0; i < rectangles.size(); i++) {
for (int j = i + 1; j < rectangles.size(); j++) {
Rectangle rectangle1 = rectangles.get(i);
Rectangle rectangle2 = rectangles.get(j);
Rectangle2D rectangle1 = rectangles.get(i);
Rectangle2D rectangle2 = rectangles.get(j);
// we can stop early when we are too far off because of x-y-sorting
if(rectangle1.getRight() < rectangle2.getLeft() && rectangle1.getBottom() < rectangle2.getTop()) {
if (rectangle1.getMaxX() < rectangle2.getMinX() && rectangle1.getMaxY() < rectangle2.getMinY()) {
break;
}
@@ -91,66 +94,66 @@ public class RulingCleaningService {
}
}
Map<Rectangle, List<Rectangle>> groups = new HashMap<>();
for (Rectangle rectangle : rectangles) {
Rectangle root = unionFind.find(rectangle);
Map<Rectangle2D, List<Rectangle2D>> groups = new HashMap<>();
for (Rectangle2D rectangle : rectangles) {
Rectangle2D root = unionFind.find(rectangle);
groups.computeIfAbsent(root, k -> new ArrayList<>()).add(rectangle);
}
return new ArrayList<>(groups.values());
}
private static Rectangle getOverlapRectangle(Ruling ruling) {
private static Rectangle2D getOverlapRectangle(Ruling ruling) {
float top;
float left;
float y;
float x;
float w;
float h;
if (ruling.x1 < ruling.x2) {
left = ruling.x1;
x = ruling.x1;
w = ruling.x2 - ruling.x1;
} else {
left = ruling.x2;
x = ruling.x2;
w = ruling.x1 - ruling.x2;
}
if (ruling.y1 < ruling.y2) {
top = ruling.y1;
y = ruling.y1;
h = ruling.y2 - ruling.y1;
} else {
top = ruling.y2;
y = ruling.y2;
h = ruling.y1 - ruling.y2;
}
if (ruling.horizontal()) {
return new Rectangle(top - THRESHOLD_Y_HORIZONTAL, left - THRESHOLD_X_HORIZONTAL, w + 2 * THRESHOLD_X_HORIZONTAL, h + 2 * THRESHOLD_Y_HORIZONTAL);
if (ruling.isHorizontal()) {
return new Rectangle2D.Double(x - THRESHOLD_X_HORIZONTAL, y - THRESHOLD_Y_HORIZONTAL, w + 2 * THRESHOLD_X_HORIZONTAL, h + 2 * THRESHOLD_Y_HORIZONTAL);
} else {
return new Rectangle(top - THRESHOLD_Y_VERTICAL, left - THRESHOLD_X_VERTICAL, w + 2 * THRESHOLD_X_VERTICAL, h + 2 * THRESHOLD_Y_VERTICAL);
return new Rectangle2D.Double(x - THRESHOLD_X_VERTICAL, y - THRESHOLD_Y_VERTICAL, w + 2 * THRESHOLD_X_VERTICAL, h + 2 * THRESHOLD_Y_VERTICAL);
}
}
public static Ruling getXCenteredRuling(Rectangle rectangle) {
public static Ruling getXCenteredRuling(Rectangle2D rectangle) {
float x = (float) rectangle.getCenterX();
float y1 = rectangle.getTop();
float y2 = rectangle.getBottom();
double x = rectangle.getCenterX();
double y1 = rectangle.getMinY();
double y2 = rectangle.getMaxY();
Point2D point1 = new Point2D.Float(x, y1 + THRESHOLD_Y_VERTICAL);
Point2D point2 = new Point2D.Float(x, y2 - THRESHOLD_Y_VERTICAL);
Point2D point1 = new Point2D.Double(x, y1 + THRESHOLD_Y_VERTICAL);
Point2D point2 = new Point2D.Double(x, y2 - THRESHOLD_Y_VERTICAL);
return new Ruling(point1, point2);
}
public static Ruling getYCenteredRuling(Rectangle rectangle) {
public static Ruling getYCenteredRuling(Rectangle2D rectangle) {
float x1 = rectangle.getLeft();
float x2 = rectangle.getRight();
float y = (float) rectangle.getCenterY();
double x1 = rectangle.getX();
double x2 = rectangle.getMaxX();
double y = rectangle.getCenterY();
Point2D point1 = new Point2D.Float(x1 + THRESHOLD_X_HORIZONTAL, y);
Point2D point2 = new Point2D.Float(x2 - THRESHOLD_X_HORIZONTAL, y);
Point2D point1 = new Point2D.Double(x1 + THRESHOLD_X_HORIZONTAL, y);
Point2D point2 = new Point2D.Double(x2 - THRESHOLD_X_HORIZONTAL, y);
return new Ruling(point1, point2);
}
@@ -160,14 +163,14 @@ public class RulingCleaningService {
List<Ruling> vrs = new ArrayList<>();
for (Ruling vr : rulings) {
if (vr.vertical()) {
if (vr.isVertical()) {
vrs.add(vr);
}
}
List<Ruling> hrs = new ArrayList<>();
for (Ruling hr : rulings) {
if (hr.horizontal()) {
if (hr.isHorizontal()) {
hrs.add(hr);
}
}
@@ -27,8 +27,10 @@ import lombok.extern.slf4j.Slf4j;
@Slf4j
@Service
@Deprecated
public class SectionsBuilderService {
public void buildSections(ClassificationDocument document) {
List<AbstractPageBlock> chunkWords = new ArrayList<>();
@@ -44,7 +46,6 @@ public class SectionsBuilderService {
for (ClassificationPage page : document.getPages()) {
List<TextPageBlock> header = new ArrayList<>();
List<TextPageBlock> footer = new ArrayList<>();
List<TextPageBlock> unclassifiedText = new ArrayList<>();
for (AbstractPageBlock current : page.getTextBlocks()) {
if (current.getClassification() == null) {
@@ -63,11 +64,6 @@ public class SectionsBuilderService {
continue;
}
if (current.getClassification().equals(PageBlockType.OTHER)) {
unclassifiedText.add((TextPageBlock) current);
continue;
}
if (prev != null && current.getClassification().isHeadline() && !prev.getClassification().isHeadline() || !document.isHeadlines()) {
ClassificationSection chunkBlock = buildTextBlock(chunkWords, lastHeadline);
chunkBlock.setHeadline(lastHeadline);
@@ -77,7 +73,8 @@ public class SectionsBuilderService {
chunkBlockList.add(chunkBlock);
chunkWords = new ArrayList<>();
if (!chunkBlock.getTables().isEmpty()) {
previousTable = chunkBlock.getTables().get(chunkBlock.getTables().size() - 1);
previousTable = chunkBlock.getTables()
.get(chunkBlock.getTables().size() - 1);
}
}
if (current instanceof TablePageBlock table) {
@@ -95,9 +92,6 @@ public class SectionsBuilderService {
if (!footer.isEmpty()) {
footers.add(new ClassificationFooter(footer));
}
if (!unclassifiedText.isEmpty()) {
unclassifiedTexts.add(new UnclassifiedText(unclassifiedText));
}
}
ClassificationSection chunkBlock = buildTextBlock(chunkWords, lastHeadline);
@@ -115,11 +109,12 @@ public class SectionsBuilderService {
List<ClassificationSection> sections = new ArrayList<>();
for (var page : document.getPages()) {
page.getTextBlocks().forEach(block -> {
block.setPage(page.getPageNumber());
var section = buildTextBlock(List.of(block), Strings.EMPTY);
sections.add(section);
});
page.getTextBlocks()
.forEach(block -> {
block.setPage(page.getPageNumber());
var section = buildTextBlock(List.of(block), Strings.EMPTY);
sections.add(section);
});
}
document.setSections(sections);
}
@@ -164,10 +159,10 @@ public class SectionsBuilderService {
}
}
for (ClassificationSection section : sectionsOnPage) {
Float xMin = null;
Float yMin = null;
Float xMax = null;
Float yMax = null;
Double xMin = null;
Double yMin = null;
Double xMax = null;
Double yMax = null;
for (AbstractPageBlock abs : section.getPageBlocks()) {
if (abs.getPage() != page.getPageNumber()) {
@@ -211,10 +206,17 @@ public class SectionsBuilderService {
log.debug("Image position x: {}, y: {}", image.getPosition().getX(), image.getPosition().getY());
log.debug("Paragraph position xMin: {}, xMax: {}, yMin: {}, yMax: {}", xMin, xMax, yMin, yMax);
if (xMin != null && xMax != null && yMin != null && yMax != null && image.getPosition().getX() >= xMin && image.getPosition()
.getX() <= xMax && image.getPosition().getY() >= yMin && image.getPosition().getY() <= yMax) {
if (xMin != null
&& xMax != null
&& yMin != null
&& yMax != null
&& image.getPosition().getX() >= xMin
&& image.getPosition().getX() <= xMax
&& image.getPosition().getY() >= yMin
&& image.getPosition().getY() <= yMax) {
section.getImages().add(image);
image.setAppendedToSection(true);
break;
}
}
if (!image.isAppendedToSection()) {
@@ -234,17 +236,26 @@ public class SectionsBuilderService {
List<Cell> previousTableNonHeaderRow = getRowWithNonHeaderCells(previousTable);
List<Cell> tableNonHeaderRow = getRowWithNonHeaderCells(currentTable);
// Allow merging of tables if header row is separated from first logical non-header row
if (previousTableNonHeaderRow.isEmpty() && previousTable.getRowCount() == 1 && previousTable.getRows().get(0).size() == tableNonHeaderRow.size()) {
previousTableNonHeaderRow = previousTable.getRows().get(0).stream().map(cell -> {
Cell fakeCell = new Cell(cell.getPoints()[0], cell.getPoints()[2]);
fakeCell.setHeaderCells(Collections.singletonList(cell));
return fakeCell;
}).collect(Collectors.toList());
if (previousTableNonHeaderRow.isEmpty()
&& previousTable.getRowCount() == 1
&& previousTable.getRows()
.get(0).size() == tableNonHeaderRow.size()) {
previousTableNonHeaderRow = previousTable.getRows()
.get(0)
.stream()
.map(cell -> {
Cell fakeCell = Cell.copy(cell);
fakeCell.setHeaderCells(Collections.singletonList(cell));
return fakeCell;
})
.collect(Collectors.toList());
}
if (previousTableNonHeaderRow.size() == tableNonHeaderRow.size()) {
for (int i = currentTable.getRowCount() - 1; i >= 0; i--) { // Non header rows are most likely at bottom of table
List<Cell> row = currentTable.getRows().get(i);
if (row.size() == tableNonHeaderRow.size() && row.stream().allMatch(cell -> cell.getHeaderCells().isEmpty())) {
List<Cell> row = currentTable.getRows()
.get(i);
if (row.size() == tableNonHeaderRow.size() && row.stream()
.allMatch(cell -> cell.getHeaderCells().isEmpty())) {
for (int j = 0; j < row.size(); j++) {
row.get(j).setHeaderCells(previousTableNonHeaderRow.get(j).getHeaderCells());
}
@@ -287,7 +298,11 @@ public class SectionsBuilderService {
private boolean hasInvalidHeaderInformation(TablePageBlock table) {
return table.getRows().stream().flatMap(row -> row.stream().filter(cell -> !cell.getHeaderCells().isEmpty())).findAny().isEmpty();
return table.getRows()
.stream()
.flatMap(row -> row.stream()
.filter(cell -> !cell.getHeaderCells().isEmpty()))
.findAny().isEmpty();
}
@@ -295,7 +310,8 @@ public class SectionsBuilderService {
private List<Cell> getRowWithNonHeaderCells(TablePageBlock table) {
for (int i = table.getRowCount() - 1; i >= 0; i--) { // Non header rows are most likely at bottom of table
List<Cell> row = table.getRows().get(i);
List<Cell> row = table.getRows()
.get(i);
if (row.size() == 1) {
continue;
}
@@ -1,26 +1,52 @@
package com.knecon.fforesight.service.layoutparser.processor.services;
import java.util.List;
import java.util.stream.Collectors;
import java.util.stream.Stream;
import org.springframework.stereotype.Service;
import com.knecon.fforesight.service.layoutparser.internal.api.data.redaction.SimplifiedSectionText;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.Document;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.Section;
import com.knecon.fforesight.service.layoutparser.internal.api.data.redaction.SimplifiedText;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.Document;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.SemanticNode;
import lombok.extern.slf4j.Slf4j;
@Service
@Slf4j
public class SimplifiedSectionTextService {
public SimplifiedText toSimplifiedText(Document document) {
List<SimplifiedSectionText> simplifiedSectionTexts = document.getMainSections().stream().map(this::toSimplifiedSectionText).toList();
return SimplifiedText.builder().numberOfPages(document.getNumberOfPages()).sectionTexts(simplifiedSectionTexts).build();
List<SimplifiedSectionText> simplifiedMainSectionsList = document.getAllSections()
.stream()
.map(this::toSimplifiedSectionText)
.toList();
List<SimplifiedSectionText> simplifiedHeadersList = document.getHeaders()
.stream()
.map(this::toSimplifiedSectionText)
.toList();
List<SimplifiedSectionText> simplifiedFootersList = document.getFooters()
.stream()
.map(this::toSimplifiedSectionText)
.toList();
List<SimplifiedSectionText> simplifiedText = Stream.of(simplifiedMainSectionsList, simplifiedHeadersList, simplifiedFootersList)
.flatMap(List::stream)
.collect(Collectors.toList());
return SimplifiedText.builder().numberOfPages(document.getNumberOfPages()).sectionTexts(simplifiedText).build();
}
private SimplifiedSectionText toSimplifiedSectionText(Section section) {
private SimplifiedSectionText toSimplifiedSectionText(SemanticNode section) {
return SimplifiedSectionText.builder().sectionNumber(section.getTreeId().get(0)).text(section.getTextBlock().getSearchText()).build();
return SimplifiedSectionText.builder()
.sectionNumber(section.getTreeId()
.stream()
.map(String::valueOf)
.collect(Collectors.joining(".")))
.text(section.getTextBlock().getSearchText())
.build();
}
}
@@ -3,6 +3,8 @@ package com.knecon.fforesight.service.layoutparser.processor.services;
import static com.knecon.fforesight.service.layoutparser.processor.utils.GeometricComparators.CELL_SIZE_COMPARATOR;
import static com.knecon.fforesight.service.layoutparser.processor.utils.GeometricComparators.RECTANGLE_SIZE_COMPARATOR;
import java.awt.geom.AffineTransform;
import java.awt.geom.Rectangle2D;
import java.util.ArrayList;
import java.util.HashSet;
import java.util.List;
@@ -11,22 +13,26 @@ import java.util.stream.Collectors;
import org.springframework.stereotype.Service;
import com.knecon.fforesight.service.layoutparser.processor.docstrum.model.BoundingBox;
import com.knecon.fforesight.service.layoutparser.processor.model.AbstractPageBlock;
import com.knecon.fforesight.service.layoutparser.processor.model.ClassificationPage;
import com.knecon.fforesight.service.layoutparser.processor.model.table.Cell;
import com.knecon.fforesight.service.layoutparser.processor.model.table.Rectangle;
import com.knecon.fforesight.service.layoutparser.processor.model.table.Ruling;
import com.knecon.fforesight.service.layoutparser.processor.model.table.TablePageBlock;
import com.knecon.fforesight.service.layoutparser.processor.model.text.RedTextPosition;
import com.knecon.fforesight.service.layoutparser.processor.model.text.TextPageBlock;
import com.knecon.fforesight.service.layoutparser.processor.utils.CoordinateTransforms;
import com.knecon.fforesight.service.layoutparser.processor.utils.DoubleComparisons;
import com.knecon.fforesight.service.layoutparser.processor.utils.PageInformation;
import com.knecon.fforesight.service.layoutparser.processor.utils.RectangularIntersectionFinder;
import com.knecon.fforesight.service.layoutparser.processor.utils.SpreadsheetFinder;
import lombok.SneakyThrows;
@Service
public class TableExtractionService {
private static final int MAX_TABLE_CONTAINED_CELLS_WITH_TEXT = 1;
private static final int TEXT_BLOCK_CONTAINMENT_TOLERANCE = 2;
private static final double TABLE_UNIFORMITY_THRESHOLD = 0.7;
@@ -59,29 +65,31 @@ public class TableExtractionService {
}
}
var cells = new ArrayList<>(new HashSet<>(emptyCells));
DoubleComparisons.sort(cells, Rectangle.ILL_DEFINED_ORDER);
List<Cell> cells = new ArrayList<>(new HashSet<>(emptyCells));
DoubleComparisons.sort(cells, BoundingBox.ILL_DEFINED_ORDER);
List<Rectangle> spreadsheetAreas = SpreadsheetFinder.findSpreadsheetsFromCells(cells);
List<Rectangle2D> spreadsheetAreas = SpreadsheetFinder.findSpreadsheetsFromCells(cells);
// sort spreadsheetAreas by size (height * width) ascending so that cells are placed in the smallest tables first
// this way no cell duplication occurs when tables are contained in other tables and only the most inner table contains the cells
spreadsheetAreas.sort(RECTANGLE_SIZE_COMPARATOR);
List<TablePageBlock> tables = new ArrayList<>();
for (Rectangle area : spreadsheetAreas) {
for (Rectangle2D area : spreadsheetAreas) {
List<Cell> containedCells = new ArrayList<>();
for (Cell c : cells) {
if (c.hasMinimumSize() && area.contains(c)) {
if (c.hasMinimumSize() && area.contains(c.getBBoxInitialUserSpace())) {
containedCells.add(c);
}
}
var containedCellsWithText = containedCells.stream().filter(cell -> !cell.getTextBlocks().isEmpty()).toList();
var containedCellsWithText = containedCells.stream()
.filter(cell -> !cell.getTextBlocks().isEmpty())
.toList();
// verify if table would contain fewer cells with text than the threshold allows
if (containedCellsWithText.size() >= MAX_TABLE_CONTAINED_CELLS_WITH_TEXT && checkIfTableCellsAreUniform(containedCells)) {
tables.add(new TablePageBlock(containedCells, area, page.getRotation()));
tables.add(new TablePageBlock(containedCells, page.getRotation()));
cells.removeAll(containedCells);
}
}
@@ -90,14 +98,18 @@ public class TableExtractionService {
int position = -1;
for (AbstractPageBlock pageBlock : page.getTextBlocks()) {
if (pageBlock instanceof TextPageBlock ? table.containsBlock((TextPageBlock) pageBlock) : table.contains(pageBlock) && position == -1) {
if (pageBlock instanceof TextPageBlock ? table.contains(pageBlock) : table.contains(pageBlock) && position == -1) {
position = page.getTextBlocks().indexOf(pageBlock);
}
}
if (position != -1) {
page.getTextBlocks().add(position, table);
var toBeRemoved = table.getCells().stream().map(Cell::getTextBlocks).flatMap(List::stream).toList();
var toBeRemoved = table.getCells()
.stream()
.map(Cell::getTextBlocks)
.flatMap(List::stream)
.toList();
// remove text blocks from the page that were also added with the table (from its contained cells)
page.getTextBlocks().removeAll(toBeRemoved);
}
@@ -112,7 +124,7 @@ public class TableExtractionService {
}
Map<Long, List<Long>> cellsGroupedByRoundedWidth = containedCells.stream()
.map(Rectangle::getWidth)
.map(BoundingBox::getWidth)
.map(size -> Math.round(size / 10.0) * 10)
.collect(Collectors.groupingBy(Long::longValue));
@@ -122,22 +134,26 @@ public class TableExtractionService {
private boolean doesCellContainTextBlock(Cell cell, TextPageBlock textBlock) {
double x = textBlock.getPdfMinX();
double y = textBlock.getPdfMinY();
double w = textBlock.getPdfMaxX() - textBlock.getPdfMinX();
double h = textBlock.getPdfMaxY() - textBlock.getPdfMinY();
if (cell.isEmpty() || w <= 0 || h <= 0) {
return false;
}
double x0 = cell.getX();
double y0 = cell.getY();
return (x >= x0 - TEXT_BLOCK_CONTAINMENT_TOLERANCE && y >= y0 - TEXT_BLOCK_CONTAINMENT_TOLERANCE && (x + w) <= x0 + cell.getWidth() + 2 * TEXT_BLOCK_CONTAINMENT_TOLERANCE && (y + h) <= y0 + cell.getHeight() + 2 * TEXT_BLOCK_CONTAINMENT_TOLERANCE);
return cell.contains(textBlock, RedTextPosition.HEIGHT_PADDING);
}
public static List<Cell> findCells(List<Ruling> horizontalRulingLines, List<Ruling> verticalRulingLines) {
@SneakyThrows
public static List<Cell> findCells(List<Ruling> horizontalRulingLines, List<Ruling> verticalRulingLines, PageInformation pageInformation) {
return RectangularIntersectionFinder.find(horizontalRulingLines, verticalRulingLines).stream().map(Cell::new).collect(Collectors.toList());
AffineTransform affineTransform = CoordinateTransforms.calculateInitialUserSpaceCoordsToImageCoords(pageInformation, 1);
/*
switch (pageInformation.rotationDegrees()) {
case 90 -> affineTransform.translate(RedTextPosition.HEIGHT_PADDING, 0); //although this is wrong, our text coordinates are wrong as well
case 180 -> affineTransform.translate(0, RedTextPosition.HEIGHT_PADDING);
case 270 -> affineTransform.translate(-RedTextPosition.HEIGHT_PADDING, 0);
default -> affineTransform.translate(0, -RedTextPosition.HEIGHT_PADDING);
}
*/
return RectangularIntersectionFinder.find(horizontalRulingLines, verticalRulingLines)
.stream()
.map(rect -> new Cell(rect, affineTransform))
.collect(Collectors.toList());
}
}
@@ -0,0 +1,99 @@
package com.knecon.fforesight.service.layoutparser.processor.services;
import java.util.List;
import com.knecon.fforesight.service.layoutparser.processor.model.table.CleanRulings;
import com.knecon.fforesight.service.layoutparser.processor.model.table.Ruling;
import com.knecon.fforesight.service.layoutparser.processor.model.text.TextDirection;
import com.knecon.fforesight.service.layoutparser.processor.model.text.TextPositionSequence;
import lombok.experimental.UtilityClass;
@UtilityClass
public class TextRulingsClassifier {
private final static double STRIKETHROUGH_ZONE = 0.5; // multiplied with text height, determines height of intersection interval for strikethrough lines.
private final static double UNDERLINE_ZONE = 0.2; // multiplied with text height, determines height of intersection interval of underline lines.
private final static double TEXT_BBOX_THRESHOLD_FACTOR = 0.15; // multiplied with text width then subtracted from word width. If ruling covers this width, it is considered as strikethrough/underline.
public static void classifyUnderlinedAndStrikethroughText(List<TextPositionSequence> words, CleanRulings cleanRulings) {
for (TextPositionSequence word : words) {
if (word.getDir().equals(TextDirection.ZERO) || word.getDir().equals(TextDirection.HALF_CIRCLE)) {
handleHorizontalText(cleanRulings, word);
} else {
handleVerticalText(cleanRulings, word);
}
}
}
private static void handleVerticalText(CleanRulings cleanRulings, TextPositionSequence word) {
float lowerY = (float) (word.getBBoxInitialUserSpace().getMinY() + TEXT_BBOX_THRESHOLD_FACTOR * word.getWidth());
float upperY = (float) (word.getBBoxInitialUserSpace().getMaxY() - TEXT_BBOX_THRESHOLD_FACTOR * word.getWidth());
float strikethroughCenterX = (float) word.getBBoxInitialUserSpace().getCenterX();
float strikethroughBoxHeight = (float) ((word.getBBoxDirAdj().getHeight() * STRIKETHROUGH_ZONE) / 2);
float underlineCenterX = (float) (word.getDir().equals(TextDirection.QUARTER_CIRCLE) ? word.getBBoxInitialUserSpace().getMaxX() : word.getBBoxInitialUserSpace().getMinX());
float underlineBoxHeight = (float) ((word.getBBoxDirAdj().getHeight() * UNDERLINE_ZONE) / 2);
float leftX = Math.min(underlineCenterX - underlineBoxHeight, strikethroughCenterX - strikethroughBoxHeight);
float rightX = Math.max(underlineCenterX + underlineBoxHeight, strikethroughCenterX + strikethroughBoxHeight);
List<Ruling> rulingsIntersectingWord = cleanRulings.getVerticalsInXInterval(leftX, rightX)
.stream()
.filter(ruling -> ruling.getClassification().equals(Ruling.Classification.OTHER))
.filter(ruling -> ruling.y1 <= lowerY && upperY <= ruling.y2)
.toList();
for (Ruling ruling : rulingsIntersectingWord) {
if (strikethroughCenterX - strikethroughBoxHeight < ruling.x1 && ruling.x1 < strikethroughCenterX + strikethroughBoxHeight) {
ruling.setClassification(Ruling.Classification.STRIKETROUGH);
word.setStrikethrough(true);
}
if (underlineCenterX - underlineBoxHeight < ruling.x1 && ruling.x1 < underlineCenterX + underlineBoxHeight) {
ruling.setClassification(Ruling.Classification.UNDERLINE);
word.setUnderline(true);
}
}
}
private static void handleHorizontalText(CleanRulings cleanRulings, TextPositionSequence word) {
float leftX = (float) (word.getBBoxInitialUserSpace().getMinX() + TEXT_BBOX_THRESHOLD_FACTOR * word.getWidth());
float rightX = (float) (word.getBBoxInitialUserSpace().getMaxX() - TEXT_BBOX_THRESHOLD_FACTOR * word.getWidth());
float strikethroughCenterY = (float) word.getBBoxInitialUserSpace().getCenterY();
float strikethroughBoxHeight = (float) ((word.getBBoxDirAdj().getHeight() * STRIKETHROUGH_ZONE) / 2);
float underlineCenterY = (float) (word.getDir().equals(TextDirection.ZERO) ? word.getBBoxInitialUserSpace().getMinY() : word.getBBoxInitialUserSpace().getMaxY());
float underlineBoxHeight = (float) ((word.getBBoxDirAdj().getHeight() * UNDERLINE_ZONE) / 2);
float lowerY = Math.min(underlineCenterY - underlineBoxHeight, strikethroughCenterY - strikethroughBoxHeight);
float upperY = Math.max(underlineCenterY + underlineBoxHeight, strikethroughCenterY + strikethroughBoxHeight);
List<Ruling> rulingsIntersectingWord = cleanRulings.getHorizontalsInYInterval(lowerY, upperY)
.stream()
.filter(ruling -> ruling.getClassification().equals(Ruling.Classification.OTHER))
.filter(ruling -> ruling.x1 <= leftX && rightX <= ruling.x2)
.toList();
for (Ruling ruling : rulingsIntersectingWord) {
if (strikethroughCenterY - strikethroughBoxHeight < ruling.y1 && ruling.y1 < strikethroughCenterY + strikethroughBoxHeight) {
ruling.setClassification(Ruling.Classification.STRIKETROUGH);
word.setStrikethrough(true);
}
if (underlineCenterY - underlineBoxHeight < ruling.y1 && ruling.y1 < underlineCenterY + underlineBoxHeight) {
ruling.setClassification(Ruling.Classification.UNDERLINE);
word.setUnderline(true);
}
}
}
}
@@ -0,0 +1,533 @@
package com.knecon.fforesight.service.layoutparser.processor.services.blockification;
import static com.knecon.fforesight.service.layoutparser.processor.services.blockification.DocstrumBlockificationService.buildTextBlock;
import java.awt.geom.Rectangle2D;
import java.util.ArrayList;
import java.util.List;
import java.util.ListIterator;
import java.util.Locale;
import java.util.function.Function;
import org.apache.commons.lang3.StringUtils;
import org.springframework.stereotype.Service;
import com.knecon.fforesight.service.layoutparser.internal.api.data.redaction.LayoutEngine;
import com.knecon.fforesight.service.layoutparser.processor.model.ClassificationPage;
import com.knecon.fforesight.service.layoutparser.processor.model.PageBlockType;
import com.knecon.fforesight.service.layoutparser.processor.model.SectionIdentifier;
import com.knecon.fforesight.service.layoutparser.processor.model.outline.OutlineObject;
import com.knecon.fforesight.service.layoutparser.processor.model.text.TextPageBlock;
import com.knecon.fforesight.service.layoutparser.processor.model.text.TextPositionSequence;
import com.knecon.fforesight.service.layoutparser.processor.services.factory.SearchTextWithTextPositionFactory;
import com.knecon.fforesight.service.layoutparser.processor.utils.RectangleTransformations;
import lombok.Data;
@Service
public class BlockificationPostprocessingService {
private static final float BLOCK_TO_OUTLINE_DISTANCE_THRESHOLD = 5.0f;
private static final Function<TextPageBlock, Rectangle2D> blockToBoundingBox = (abstractPageBlock) -> abstractPageBlock.getSequences()
.stream()
.map(textPositionSequence -> textPositionSequence.getTextPositions()
.stream()
.map(tp -> SearchTextWithTextPositionFactory.mapRedTextPositionToInitialUserSpace(tp, textPositionSequence))
.collect(RectangleTransformations.collectBBox()))
.collect(RectangleTransformations.collectBBox());
public OutlineObject sanitizeOutlineBlocks(ClassificationPage classificationPage, OutlineObject notFoundOutlineObject) {
List<OutlineObject> outlineObjects = classificationPage.getOutlineObjects();
if (getTextPageBlocks(classificationPage).isEmpty() || outlineObjects.isEmpty()) {
return null;
}
float pageHeight = classificationPage.getPageHeight();
ListIterator<OutlineObject> outlineObjectListIterator = outlineObjects.listIterator();
if (notFoundOutlineObject != null) {
OutlineProcessionContext notFoundOutlineObjectProcessionContext = new OutlineProcessionContext(notFoundOutlineObject);
processTextBlocks(getTextPageBlocks(classificationPage), pageHeight, notFoundOutlineObjectProcessionContext);
OutlineObject firstOutlineObject = null;
OutlineProcessionContext firstOutlineObjectProcessionContext = null;
if (outlineObjectListIterator.hasNext()) {
firstOutlineObject = outlineObjectListIterator.next();
firstOutlineObjectProcessionContext = new OutlineProcessionContext(firstOutlineObject);
processTextBlocks(getTextPageBlocks(classificationPage), pageHeight, firstOutlineObjectProcessionContext);
}
if (!contextsOverlap(notFoundOutlineObjectProcessionContext, firstOutlineObjectProcessionContext)) {
notFoundOutlineObject.setFound(selectMatch(classificationPage, notFoundOutlineObjectProcessionContext));
}
if (firstOutlineObject != null) {
// re-create the context for the updated blocks
firstOutlineObjectProcessionContext = new OutlineProcessionContext(firstOutlineObject);
processTextBlocks(getTextPageBlocks(classificationPage), pageHeight, firstOutlineObjectProcessionContext);
firstOutlineObject.setFound(selectMatch(classificationPage, firstOutlineObjectProcessionContext));
}
}
outlineObjectListIterator.forEachRemaining(outlineObject -> {
OutlineProcessionContext outlineObjectProcessionContext = new OutlineProcessionContext(outlineObject);
processTextBlocks(getTextPageBlocks(classificationPage), pageHeight, outlineObjectProcessionContext);
outlineObject.setFound(selectMatch(classificationPage, outlineObjectProcessionContext));
});
if (!outlineObjects.isEmpty()) {
return outlineObjects.get(outlineObjects.size() - 1);
} else {
return notFoundOutlineObject;
}
}
private static List<TextPageBlock> getTextPageBlocks(ClassificationPage classificationPage) {
return classificationPage.getTextBlocks()
.stream()
.filter(block -> block instanceof TextPageBlock)
.map(block -> (TextPageBlock) block)
.toList();
}
private boolean contextsOverlap(OutlineProcessionContext notFoundOutlineObjectProcessionContext, OutlineProcessionContext firstOutlineObjectProcessionContext) {
if (firstOutlineObjectProcessionContext == null) {
return false;
}
String notFoundTitle = notFoundOutlineObjectProcessionContext.getOutlineObject().getTitle();
String firstTitle = firstOutlineObjectProcessionContext.getOutlineObject().getTitle();
if (!firstTitle.startsWith(notFoundTitle)) {
return false;
}
var blocksOfNotFoundOutline = getAllMatchingBlocks(notFoundOutlineObjectProcessionContext);
var blocksOfFirstOutline = getAllMatchingBlocks(firstOutlineObjectProcessionContext);
double maxYFirst = blocksOfFirstOutline.stream()
.mapToDouble(TextPageBlock::getPdfMaxY)
.max()
.orElse(Double.NEGATIVE_INFINITY);
return blocksOfNotFoundOutline.stream()
.mapToDouble(TextPageBlock::getPdfMaxY)
.anyMatch(y -> y >= maxYFirst);
}
private List<TextPageBlock> getAllMatchingBlocks(OutlineProcessionContext context) {
List<TextPageBlock> blocks = new ArrayList<>();
if (context.getDirectMatch() != null) {
blocks.add(context.getDirectMatch());
}
if (context.getSplitCandidate() != null) {
blocks.add(context.getSplitCandidate());
}
blocks.addAll(context.getMergeCandidates());
return blocks;
}
private void processTextBlocks(List<TextPageBlock> textBlocks, float pageHeight, OutlineProcessionContext context) {
OutlineObject outlineObject = context.getOutlineObject();
ListIterator<TextPageBlock> iterator = textBlocks.listIterator();
while (iterator.hasNext()) {
TextPageBlock pageBlock = iterator.next();
if (pageHeight - outlineObject.getPoint().getY() - BLOCK_TO_OUTLINE_DISTANCE_THRESHOLD <= pageBlock.getMaxY()) {
break;
}
}
if (iterator.hasPrevious()) {
iterator.previous();
}
boolean earlyStop = false;
while (iterator.hasNext() && !earlyStop) {
TextPageBlock pageBlock = iterator.next();
earlyStop = processOutlineForTextBlock(pageBlock, context);
}
}
private boolean selectMatch(ClassificationPage classificationPage, OutlineProcessionContext context) {
OutlineObject outlineObject = context.outlineObject;
TextPageBlock directMatch = context.directMatch;
List<TextPageBlock> mergeCandidates = context.mergeCandidates;
TextPageBlock splitCandidate = context.splitCandidate;
PageBlockType headlineType = PageBlockType.getHeadlineType(outlineObject.getTreeDepth());
double distanceToDirectMatch = directMatch != null ? calculateDistance(outlineObject, directMatch) : Double.MAX_VALUE;
double distanceToSplitCandidate = splitCandidate != null ? calculateDistance(outlineObject, splitCandidate) : Double.MAX_VALUE;
double distanceToBestMergeCandidates = Double.MAX_VALUE;
List<TextPageBlock> bestMergeCandidateCombination = new ArrayList<>();
if (!mergeCandidates.isEmpty()) {
// with this code adjacent blocks to the first and last merge candidate get added, this could be useful for some edge cases:
//List<TextPageBlock> allMergeCandidates = new ArrayList<>(mergeCandidates);
//addNeighborsOfCandidate(kdTree, mergeCandidates.get(0), allMergeCandidates);
//if (mergeCandidates.size() > 1) {
// addNeighborsOfCandidate(kdTree, mergeCandidates.get(mergeCandidates.size() - 1), allMergeCandidates);
//}
//allMergeCandidates = allMergeCandidates.stream()
// .distinct()
// .toList();
List<List<TextPageBlock>> combinations = findCombinations(outlineObject.getTitle(), mergeCandidates);
for (List<TextPageBlock> combination : combinations) {
double averageDistance = combination.stream()
.map(block -> calculateDistance(outlineObject, block))
.mapToDouble(Double::doubleValue).average()
.orElse(Double.MAX_VALUE);
if (distanceToBestMergeCandidates > averageDistance) {
distanceToBestMergeCandidates = averageDistance;
bestMergeCandidateCombination = combination;
}
}
}
double minDistance = Math.min(distanceToDirectMatch, Math.min(distanceToSplitCandidate, distanceToBestMergeCandidates));
if (minDistance == Double.MAX_VALUE) {
return false;
}
if (minDistance == distanceToDirectMatch) {
setClassificationAndAddOutlineEngine(directMatch, headlineType);
} else if (minDistance == distanceToSplitCandidate) {
SplitBlockResult splitBlockResult = splitBlock(classificationPage, splitCandidate, context.sectionIdentifier, outlineObject.getTitle());
if (splitBlockResult.modifiedBlockToSplit) {
setClassificationAndAddOutlineEngine(splitCandidate, headlineType);
}
splitBlockResult.otherBlocks.forEach(other -> other.setClassification(null));
} else {
var merged = mergeBlocks(classificationPage, bestMergeCandidateCombination);
setClassificationAndAddOutlineEngine(merged, headlineType);
}
return true;
}
private static void setClassificationAndAddOutlineEngine(TextPageBlock block, PageBlockType headlineType) {
block.setClassification(headlineType);
block.getEngines().add(LayoutEngine.OUTLINE);
}
private SplitBlockResult splitBlock(ClassificationPage classificationPage, TextPageBlock blockToSplit, SectionIdentifier sectionIdentifier, String title) {
List<TextPageBlock> otherBlocks = new ArrayList<>();
int blockToSplitIdx = classificationPage.getTextBlocks().indexOf(blockToSplit);
String headline = title;
if (!sectionIdentifier.getFormat().equals(SectionIdentifier.Format.EMPTY) && !title.startsWith(sectionIdentifier.getIdentifierString())) {
headline = sectionIdentifier + headline;
}
WordSequenceResult wordSequenceResult = findWordSequence(blockToSplit.getSequences(), headline);
if (wordSequenceResult.inSequence.isEmpty() && !headline.equals(title)) {
wordSequenceResult = findWordSequence(blockToSplit.getSequences(), title);
}
boolean modifiedBlockToSplit = false;
if (!wordSequenceResult.inSequence.isEmpty()) {
blockToSplit.setSequences(wordSequenceResult.inSequence);
blockToSplit.recalculateBBox();
modifiedBlockToSplit = true;
}
if (!wordSequenceResult.preSequence.isEmpty()) {
TextPageBlock block = buildTextBlock(wordSequenceResult.preSequence, 0);
classificationPage.getTextBlocks().add(blockToSplitIdx, block);
otherBlocks.add(block);
blockToSplitIdx++;
}
if (!wordSequenceResult.postSequence.isEmpty()) {
TextPageBlock block = buildTextBlock(wordSequenceResult.postSequence, 0);
classificationPage.getTextBlocks().add(blockToSplitIdx + 1, block);
otherBlocks.add(block);
}
return new SplitBlockResult(modifiedBlockToSplit, otherBlocks);
}
private static WordSequenceResult findWordSequence(List<TextPositionSequence> textPositionSequences, String text) {
String target = sanitizeString(text);
List<TextPositionSequence> inSequence = new ArrayList<>();
List<TextPositionSequence> preSequence = new ArrayList<>();
List<TextPositionSequence> postSequence = new ArrayList<>();
StringBuilder currentSequence = new StringBuilder();
for (TextPositionSequence sequence : textPositionSequences) {
currentSequence.append(sanitizeString(sequence.toString()));
inSequence.add(sequence);
if (currentSequence.length() >= target.length()) {
if (currentSequence.toString().endsWith(target)) {
int index = 0;
String toRemove = currentSequence.substring(0, currentSequence.length() - target.length());
TextPositionSequence next = inSequence.get(index);
while (currentSequence.length() - next.length() >= target.length()) {
TextPositionSequence removed = inSequence.remove(index);
currentSequence.delete(0, removed.toString().length());
preSequence.add(removed);
next = inSequence.get(index);
toRemove = toRemove.substring(removed.length());
}
if (!toRemove.isEmpty()) {
SplitSequenceResult splitSequenceResult = splitSequence(inSequence.remove(index), toRemove);
currentSequence.delete(0, splitSequenceResult.out.length());
preSequence.add(splitSequenceResult.out);
inSequence.add(index, splitSequenceResult.in);
}
} else if (currentSequence.toString().startsWith(target)) {
int index = inSequence.size() - 1;
String toRemove = currentSequence.substring(target.length());
SplitSequenceResult splitSequenceResult = splitSequence(inSequence.remove(index), toRemove);
currentSequence.delete(currentSequence.length() - splitSequenceResult.out.length(), currentSequence.length());
inSequence.add(index, splitSequenceResult.in);
postSequence.add(splitSequenceResult.out);
}
if (currentSequence.toString().equals(target)) {
postSequence.addAll(textPositionSequences.subList(textPositionSequences.indexOf(sequence) + 1, textPositionSequences.size()));
return new WordSequenceResult(inSequence, preSequence, postSequence);
}
}
}
return new WordSequenceResult();
}
private static SplitSequenceResult splitSequence(TextPositionSequence sequence, String toRemove) {
TextPositionSequence in = null;
TextPositionSequence out;
String currentSequence = sequence.toString();
int index = currentSequence.indexOf(toRemove);
int endIndex = index + toRemove.length();
out = createSubSequence(sequence, index, endIndex);
if (index > 0) {
in = createSubSequence(sequence, 0, index);
} else if (endIndex < sequence.getTextPositions().size()) {
in = createSubSequence(sequence, endIndex, sequence.getTextPositions().size());
}
return new SplitSequenceResult(in, out);
}
private static TextPositionSequence createSubSequence(TextPositionSequence sequence, int start, int end) {
TextPositionSequence newSeq = new TextPositionSequence(new ArrayList<>(sequence.getTextPositions().subList(start, end)), sequence.getPage());
newSeq.setParagraphStart(sequence.isParagraphStart());
return newSeq;
}
private TextPageBlock mergeBlocks(ClassificationPage classificationPage, List<TextPageBlock> blocksToMerge) {
TextPageBlock firstBlock = blocksToMerge.get(0);
if (blocksToMerge.size() > 1) {
List<TextPageBlock> mergedBlocks = new ArrayList<>();
for (TextPageBlock textPageBlock : blocksToMerge.subList(1, blocksToMerge.size())) {
if (firstBlock != null && !firstBlock.getSequences().isEmpty()) {
if (textPageBlock.getDir() == firstBlock.getDir()) {
firstBlock.getSequences().addAll(textPageBlock.getSequences());
mergedBlocks.add(textPageBlock);
}
}
}
assert firstBlock != null;
firstBlock.setToDuplicate(false);
firstBlock.recalculateBBox();
classificationPage.getTextBlocks().removeAll(mergedBlocks);
}
return firstBlock;
}
private static List<List<TextPageBlock>> findCombinations(String title, List<TextPageBlock> blocks) {
List<List<TextPageBlock>> combinations = new ArrayList<>();
findCombinations(title, blocks, new ArrayList<>(), combinations);
return combinations;
}
private static void findCombinations(String title, List<TextPageBlock> blocks, List<TextPageBlock> current, List<List<TextPageBlock>> combinations) {
String target = sanitizeString(title);
if (target.isEmpty()) {
combinations.add(new ArrayList<>(current));
return;
}
List<TextPageBlock> remaining = blocks.stream()
.filter(block -> !current.contains(block))
.toList();
for (TextPageBlock block : remaining) {
String prefix = sanitizeString(block.getText());
if (target.startsWith(prefix)) {
current.add(block);
findCombinations(target.substring(prefix.length()), blocks.subList(blocks.indexOf(block) + 1, blocks.size()), current, combinations);
current.remove(current.size() - 1);
}
}
}
private double calculateDistance(OutlineObject outlineObject, TextPageBlock pageBlock) {
double deltaX = outlineObject.getPoint().getX() - pageBlock.getMinX();
double deltaY = pageBlock.getPageHeight() - outlineObject.getPoint().getY() - pageBlock.getMinY();
return Math.sqrt(deltaX * deltaX + deltaY * deltaY);
}
// currently only three cases are handled here:
// 1. equality
// 2. outline title contains block text
// 3. block text contains outline title
// another possible case is an intersection, meaning a title is split up between two different blocks
// this should not happen with how docstrum creates the blocks
// if it is indeed necessary, a splitting has to be done with a follow-up merge
private boolean processOutlineForTextBlock(TextPageBlock pageBlock, OutlineProcessionContext context) {
OutlineObject outlineObject = context.getOutlineObject();
String blockText = sanitizeString(pageBlock.getText());
String outlineTitle = sanitizeString(outlineObject.getTitle());
boolean blockTextContainsOutlineTitle = blockText.contains(outlineTitle);
boolean outlineTitleContainsBlockText = outlineTitle.contains(blockText);
if (!blockTextContainsOutlineTitle && !outlineTitleContainsBlockText) {
return false;
}
if (blockText.equals(outlineTitle) && context.directMatch == null) {
context.directMatch = pageBlock;
return true;
}
if (outlineTitleContainsBlockText) {
context.mergeCandidates.add(pageBlock);
}
if (blockTextContainsOutlineTitle) {
SectionIdentifier sectionIdentifier = SectionIdentifier.fromSearchText(blockText);
if (sectionIdentifier.getFormat() != SectionIdentifier.Format.EMPTY && !outlineTitle.startsWith(sectionIdentifier.getIdentifierString())) {
if (blockText.startsWith(sectionIdentifier.getIdentifierString()) && blockText.endsWith(outlineTitle) && context.directMatch == null) {
context.directMatch = pageBlock;
return true;
} else if (context.splitCandidate == null) {
context.sectionIdentifier = sectionIdentifier;
}
}
if (context.splitCandidate == null) {
context.splitCandidate = pageBlock;
}
}
return false;
}
private static String sanitizeString(String text) {
return StringUtils.deleteWhitespace(text).toLowerCase(Locale.ROOT);
}
@Data
private static class OutlineProcessionContext {
private TextPageBlock directMatch;
private OutlineObject outlineObject;
private List<TextPageBlock> mergeCandidates;
private TextPageBlock splitCandidate;
private SectionIdentifier sectionIdentifier;
OutlineProcessionContext(OutlineObject outlineObject) {
this.outlineObject = outlineObject;
this.directMatch = null;
this.mergeCandidates = new ArrayList<>();
this.splitCandidate = null;
this.sectionIdentifier = SectionIdentifier.empty();
}
}
public static class WordSequenceResult {
public List<TextPositionSequence> inSequence;
public List<TextPositionSequence> preSequence;
public List<TextPositionSequence> postSequence;
public WordSequenceResult(List<TextPositionSequence> inSequence, List<TextPositionSequence> preSequence, List<TextPositionSequence> postSequence) {
this.inSequence = inSequence;
this.preSequence = preSequence;
this.postSequence = postSequence;
}
public WordSequenceResult() {
this.inSequence = new ArrayList<>();
this.preSequence = new ArrayList<>();
this.postSequence = new ArrayList<>();
}
}
public record SplitBlockResult(boolean modifiedBlockToSplit, List<TextPageBlock> otherBlocks) {
}
public record SplitSequenceResult(TextPositionSequence in, TextPositionSequence out) {
}
}
@@ -1,31 +1,23 @@
package com.knecon.fforesight.service.layoutparser.processor.services.blockification;
import static java.util.stream.Collectors.toSet;
import java.awt.geom.Point2D;
import java.util.ArrayList;
import java.util.Comparator;
import java.util.HashSet;
import java.util.List;
import java.util.ListIterator;
import java.util.Set;
import org.springframework.stereotype.Service;
import com.knecon.fforesight.service.layoutparser.internal.api.queue.LayoutParsingType;
import com.knecon.fforesight.service.layoutparser.processor.docstrum.DocstrumSegmentationService;
import com.knecon.fforesight.service.layoutparser.processor.docstrum.model.Zone;
import com.knecon.fforesight.service.layoutparser.processor.docstrum.utils.DoubleUtils;
import com.knecon.fforesight.service.layoutparser.processor.model.AbstractPageBlock;
import com.knecon.fforesight.service.layoutparser.processor.model.ClassificationPage;
import com.knecon.fforesight.service.layoutparser.processor.model.FloatFrequencyCounter;
import com.knecon.fforesight.service.layoutparser.processor.model.table.Cell;
import com.knecon.fforesight.service.layoutparser.processor.model.table.Ruling;
import com.knecon.fforesight.service.layoutparser.processor.model.table.CleanRulings;
import com.knecon.fforesight.service.layoutparser.processor.model.table.TablePageBlock;
import com.knecon.fforesight.service.layoutparser.processor.model.text.StringFrequencyCounter;
import com.knecon.fforesight.service.layoutparser.processor.model.text.TextPageBlock;
import com.knecon.fforesight.service.layoutparser.processor.model.text.TextPositionSequence;
import com.knecon.fforesight.service.layoutparser.processor.utils.QuickSort;
import com.knecon.fforesight.service.layoutparser.processor.utils.RulingTextDirAdjustUtil;
import com.knecon.fforesight.service.layoutparser.processor.utils.TextPositionSequenceComparator;
import com.knecon.fforesight.service.layoutparser.processor.visualization.LayoutparsingVisualizations;
import lombok.RequiredArgsConstructor;
@@ -34,88 +26,137 @@ import lombok.RequiredArgsConstructor;
@RequiredArgsConstructor
public class DocstrumBlockificationService {
public static final float Y_THRESHOLD = 5f;
private final DocstrumSegmentationService docstrumSegmentationService;
static final float THRESHOLD = 1f;
public ClassificationPage blockify(List<TextPositionSequence> textPositions, List<Cell> cells, boolean xyOrder) {
public ClassificationPage blockify(List<TextPositionSequence> textPositions,
CleanRulings rulings,
boolean xyOrder,
LayoutparsingVisualizations visualizations,
LayoutParsingType layoutParsingType) {
// Underlined or strikethrough are also in rulings but we dont want to split blocks with them so we use cells.
List<Ruling> usedHorizonalRulings = new ArrayList<>();
List<Ruling> usedVerticalRulings = new ArrayList<>();
CleanRulings usedRulings = rulings.withoutTextRulings();
cells.forEach(cell -> {
usedHorizonalRulings.add(new Ruling(new Point2D.Float(cell.x, cell.y), new Point2D.Float(cell.x + cell.width, cell.y)));
usedHorizonalRulings.add(new Ruling(new Point2D.Float(cell.x, cell.y + cell.height), new Point2D.Float(cell.x + cell.width, cell.y + cell.height)));
usedVerticalRulings.add(new Ruling(new Point2D.Float(cell.x, cell.y), new Point2D.Float(cell.x, cell.y + cell.height)));
usedVerticalRulings.add(new Ruling(new Point2D.Float(cell.x + cell.width, cell.y), new Point2D.Float(cell.x + cell.width, cell.y + cell.height)));
});
var zones = docstrumSegmentationService.segmentPage(textPositions, xyOrder, usedRulings, visualizations);
var zones = docstrumSegmentationService.segmentPage(textPositions, xyOrder);
var pageBlocks = toAbstractPageBlocks(zones, usedHorizonalRulings, usedVerticalRulings);
if (!textPositions.isEmpty()) {
visualizations.addZoneVisualizations(zones, textPositions.get(0).getPage());
visualizations.addLineVisualizationsFromZones(zones, textPositions.get(0).getPage());
visualizations.addCharactersWithNeighbours(zones, textPositions.get(0).getPage());
}
return new ClassificationPage(pageBlocks);
var pageBlocks = toAbstractPageBlocks(zones, xyOrder, usedRulings);
if (xyOrder) {
sortPageBlocksXThenY(pageBlocks);
}
var classificationPage = new ClassificationPage(pageBlocks);
classificationPage.setCleanRulings(rulings);
mergeIntersectingBlocks(classificationPage, usedRulings, 0, 0);
if (layoutParsingType == LayoutParsingType.DOCUMINE
|| layoutParsingType == LayoutParsingType.REDACT_MANAGER
|| layoutParsingType == LayoutParsingType.REDACT_MANAGER_WITHOUT_DUPLICATE_PARAGRAPH) {
combineBlocks(classificationPage, layoutParsingType);
}
if (layoutParsingType == LayoutParsingType.CLARIFYND) {
mergeIntersectingBlocks(classificationPage, usedRulings, 0, 0);
}
return classificationPage;
}
private List<AbstractPageBlock> toAbstractPageBlocks(List<Zone> zones, List<Ruling> horizontalRulings, List<Ruling> verticalRulings) {
private static void sortPageBlocksXThenY(List<AbstractPageBlock> pageBlocks) {
pageBlocks.sort(Comparator.comparing(AbstractPageBlock::getMinY, (o1, o2) -> DoubleUtils.compareDouble(o1, o2, THRESHOLD))
.thenComparing(AbstractPageBlock::getMinX, (o1, o2) -> DoubleUtils.compareDouble(o1, o2, THRESHOLD)));
pageBlocks.sort(new Comparator<AbstractPageBlock>() {
@Override
public int compare(AbstractPageBlock o1, AbstractPageBlock o2) {
return Math.abs(o1.getMinY() - o2.getMinY()) < 5 && o1.getMinX() < o2.getMinX() == true ? -1 : 0;
}
});
}
private List<AbstractPageBlock> toAbstractPageBlocks(List<Zone> zones, boolean xyOrder, CleanRulings usedRulings) {
List<AbstractPageBlock> abstractPageBlocks = new ArrayList<>();
zones.forEach(zone -> {
List<TextPositionSequence> textPositionSequences = new ArrayList<>();
zone.getLines().forEach(line -> {
line.getWords().forEach(word -> {
textPositionSequences.add(new TextPositionSequence(word.getTextPositions(), word.getPage()));
});
});
zone.getLines()
.forEach(line -> {
line.getWords()
.forEach(word -> {
textPositionSequences.add(new TextPositionSequence(word.getTextPositions(), word.getPage()));
});
});
abstractPageBlocks.addAll(splitZonesAtRulings(textPositionSequences, horizontalRulings, verticalRulings));
abstractPageBlocks.add(buildTextBlock(textPositionSequences, 0));
});
return abstractPageBlocks;
}
public void combineBlocks(ClassificationPage page) {
mergeIntersectingBlocks(page.getTextBlocks(), 0, 0);
public void combineBlocks(ClassificationPage page, LayoutParsingType layoutParsingType) {
TextPageBlock previous = new TextPageBlock();
ListIterator<AbstractPageBlock> itty = page.getTextBlocks().listIterator();
CleanRulings usedRulings = page.getCleanRulings().withoutTextRulings();
while (itty.hasNext()) {
AbstractPageBlock block = itty.next();
if (block instanceof TablePageBlock) {
previous = new TextPageBlock();
continue;
}
TextPageBlock current = (TextPageBlock) block;
if (previous != null && !previous.getSequences().isEmpty()) {
if (current.getDir() != previous.getDir()) {
if (current.getDir() != previous.getDir() || usedRulings.lineBetween(current, previous)) {
previous = current;
continue;
}
if (areTheOnlyTwoBlocksOnHeightsWithBothMoreThanTwoLines(previous, current, page)) {
combineBlocksAndResetIterator(previous, current, itty, true);
if (current.isHeadline() || previous.isHeadline()) {
if (intersectsYWithPreviousHavingMaxOneLine(previous, current, page)) {
previous = combineBlocksAndResetIterator(previous, current, itty, false);
} else {
previous = current;
}
continue;
}
if (previous.almostIntersects(current, 0, 0)) {
combineBlocksAndResetIterator(previous, current, itty, previous.isToDuplicate());
if (areTheOnlyTwoBlocksOnHeightsWithBothMoreThanTwoLines(previous, current, page)) {
// previous = combineBlocksAndResetIterator(previous, current, itty, true);
previous = combineBlocksAndResetIterator(previous, current, itty, layoutParsingType != LayoutParsingType.REDACT_MANAGER_WITHOUT_DUPLICATE_PARAGRAPH);
continue;
}
if (previous.intersects(current)) {
previous = combineBlocksAndResetIterator(previous, current, itty, previous.isToDuplicate());
continue;
}
if (isSameTopOrBottomWithPreviousHavingMaxTwoLinesAndCurrentThanOneAndMax4OtherBlocksOnHeight(previous, current, page)) {
combineBlocksAndResetIterator(previous, current, itty, false);
previous = combineBlocksAndResetIterator(previous, current, itty, previous.isToDuplicate());
continue;
}
if (isOnlyIntersectingYAndOnelineOrPrevoiusTwoLines(previous, current, page)) {
combineBlocksAndResetIterator(previous, current, itty, false);
previous = combineBlocksAndResetIterator(previous, current, itty, previous.isToDuplicate());
continue;
}
@@ -123,15 +164,15 @@ public class DocstrumBlockificationService {
previous = current;
}
mergeIntersectingBlocks(page.getTextBlocks(), 0, 0);
mergeIntersectingBlocks(page, usedRulings, 0, Y_THRESHOLD);
}
private boolean isOnlyIntersectingYAndOnelineOrPrevoiusTwoLines(TextPageBlock previous, TextPageBlock current, ClassificationPage page) {
return current.intersectsY(previous) //
&& (previous.getNumberOfLines() == 1 && current.getNumberOfLines() >= 1 || previous.getNumberOfLines() == 2 && current.getNumberOfLines() == 1) //
&& numberOfYIntersectionsOfSmallerBlocksWithOtherBlocks(current, previous, page.getTextBlocks()) <= 0;
&& (previous.getNumberOfLines() == 1 && current.getNumberOfLines() >= 1 || previous.getNumberOfLines() == 2 && current.getNumberOfLines() == 1) //
&& numberOfYIntersectionsOfSmallerBlocksWithOtherBlocks(current, previous, page.getTextBlocks()) <= 0;
}
@@ -140,28 +181,38 @@ public class DocstrumBlockificationService {
ClassificationPage page) {
return (Math.abs(previous.getMaxY() - current.getMaxY()) < THRESHOLD || Math.abs(previous.getMinY() - current.getMinY()) < THRESHOLD) //
&& (previous.getNumberOfLines() == 1 && current.getNumberOfLines() >= 1 || previous.getNumberOfLines() == 2 && current.getNumberOfLines() == 1) //
&& !hasBetween(current, previous, page.getTextBlocks()) && numberOfYIntersectionsOfSmallerBlocksWithOtherBlocks(current, previous, page.getTextBlocks()) <= 4;
&& (previous.getNumberOfLines() == 1 && current.getNumberOfLines() >= 1 || previous.getNumberOfLines() >= 2 && current.getNumberOfLines() == 1) //
&& !hasBetween(current, previous, page.getTextBlocks()) && numberOfYIntersectionsOfSmallerBlocksWithOtherBlocks(current, previous, page.getTextBlocks()) <= 4;
}
private boolean intersectsYWithPreviousHavingMaxOneLine(TextPageBlock previous, TextPageBlock current, ClassificationPage page) {
return previous.intersectsY(current) && (previous.getNumberOfLines() == 1 && current.getNumberOfLines() >= 1);
}
private boolean areTheOnlyTwoBlocksOnHeightsWithBothMoreThanTwoLines(TextPageBlock previous, TextPageBlock current, ClassificationPage page) {
return previous.getNumberOfLines() >= 2 && current.getNumberOfLines() >= 2 //
&& previous.intersectsY(current) //
&& numberOfYIntersectionsOfSmallerBlocksWithOtherBlocks(current, previous, page.getTextBlocks()) == 0;
&& previous.intersectsY(current) //
&& numberOfYIntersectionsOfSmallerBlocksWithOtherBlocks(current, previous, page.getTextBlocks()) == 0;
}
private void combineBlocksAndResetIterator(TextPageBlock previous, TextPageBlock current, ListIterator<AbstractPageBlock> itty, boolean toDuplicate) {
private TextPageBlock combineBlocksAndResetIterator(TextPageBlock previous, TextPageBlock current, ListIterator<AbstractPageBlock> itty, boolean toDuplicate) {
previous.getSequences().addAll(current.getSequences());
previous = buildTextBlock(previous.getSequences(), 0);
previous.setToDuplicate(toDuplicate);
if (current.getClassification() != null && previous.getClassification() == null) {
previous.setClassification(current.getClassification());
}
itty.remove();
itty.previous();
itty.set(previous);
itty.next();
return previous;
}
@@ -203,221 +254,72 @@ public class DocstrumBlockificationService {
}
public void mergeIntersectingBlocks(List<AbstractPageBlock> blocks, float xThreshold, float yThreshold) {
public void mergeIntersectingBlocks(ClassificationPage page, CleanRulings usedRulings, float xThreshold, float yThreshold) {
var blocks = page.getTextBlocks();
ListIterator<AbstractPageBlock> itty = blocks.listIterator();
Set<AbstractPageBlock> toRemove = new HashSet<>();
while (itty.hasNext()) {
AbstractPageBlock block = itty.next();
if (block == null) {
continue;
}
if (block instanceof TablePageBlock) {
continue;
}
if (block.getClassification() != null && block.getClassification().isHeadline()) {
continue;
}
TextPageBlock current = (TextPageBlock) block;
if (current.isToDuplicate()) {
continue;
}
for (int i = 0; i < blocks.size(); i++) {
if (toRemove.contains(blocks.get(i))) {
AbstractPageBlock abstractPageBlock = blocks.get(i);
if (abstractPageBlock == null) {
continue;
}
if (blocks.get(i) == current) {
if (abstractPageBlock == current) {
continue;
}
if (blocks.get(i) instanceof TablePageBlock) {
if (abstractPageBlock instanceof TablePageBlock) {
continue;
}
TextPageBlock inner = (TextPageBlock) blocks.get(i);
if (inner.isToDuplicate()) {
if (abstractPageBlock.getClassification() != null && abstractPageBlock.getClassification().isHeadline()) {
continue;
}
if (current.getDir() == inner.getDir() && current.almostIntersects(inner, yThreshold, xThreshold)) {
TextPageBlock inner = (TextPageBlock) abstractPageBlock;
if (usedRulings.lineBetween(current, blocks.get(i))) {
continue;
}
if (current.getDir() == inner.getDir() && current.intersects(inner, yThreshold, xThreshold)) {
boolean toDuplicate = current.isToDuplicate() || inner.isToDuplicate();
current.getSequences().addAll(inner.getSequences());
QuickSort.sort(current.getSequences(), new TextPositionSequenceComparator());
current = buildTextBlock(current.getSequences(), 0);
toRemove.add(inner);
current.setToDuplicate(toDuplicate);
blocks.set(i, null);
itty.set(current);
}
}
}
blocks.removeAll(toRemove);
var blocksIterator = blocks.iterator();
while (blocksIterator.hasNext()) {
if (blocksIterator.next() == null) {
blocksIterator.remove();
}
}
}
public List<AbstractPageBlock> splitZonesAtRulings(List<TextPositionSequence> textPositions, List<Ruling> horizontalRulingLines, List<Ruling> verticalRulingLines) {
public static TextPageBlock buildTextBlock(List<TextPositionSequence> wordBlockList, int indexOnPage) {
int indexOnPage = 0;
List<TextPositionSequence> chunkWords = new ArrayList<>();
List<AbstractPageBlock> chunkBlockList = new ArrayList<>();
float minX = 1000, maxX = 0, minY = 1000, maxY = 0;
TextPositionSequence prev = null;
for (TextPositionSequence word : textPositions) {
boolean isSplitByRuling = isSplitByRuling(minX, minY, maxX, maxY, word, horizontalRulingLines, verticalRulingLines);
boolean splitByDir = prev != null && !prev.getDir().equals(word.getDir());
if (prev != null && (splitByDir || isSplitByRuling)) {
TextPageBlock cb1 = buildTextBlock(chunkWords, indexOnPage);
indexOnPage++;
chunkBlockList.add(cb1);
chunkWords = new ArrayList<>();
minX = 1000;
maxX = 0;
minY = 1000;
maxY = 0;
prev = null;
}
chunkWords.add(word);
prev = word;
if (word.getMinXDirAdj() < minX) {
minX = word.getMinXDirAdj();
}
if (word.getMaxXDirAdj() > maxX) {
maxX = word.getMaxXDirAdj();
}
if (word.getMinYDirAdj() < minY) {
minY = word.getMinYDirAdj();
}
if (word.getMaxYDirAdj() > maxY) {
maxY = word.getMaxYDirAdj();
}
}
TextPageBlock cb1 = buildTextBlock(chunkWords, indexOnPage);
if (cb1 != null) {
chunkBlockList.add(cb1);
}
return chunkBlockList;
}
private boolean equalsWithThreshold(float f1, float f2) {
return Math.abs(f1 - f2) < THRESHOLD;
}
private TextPageBlock buildTextBlock(List<TextPositionSequence> wordBlockList, int indexOnPage) {
TextPageBlock textBlock = null;
FloatFrequencyCounter lineHeightFrequencyCounter = new FloatFrequencyCounter();
FloatFrequencyCounter fontSizeFrequencyCounter = new FloatFrequencyCounter();
FloatFrequencyCounter spaceFrequencyCounter = new FloatFrequencyCounter();
StringFrequencyCounter fontFrequencyCounter = new StringFrequencyCounter();
StringFrequencyCounter styleFrequencyCounter = new StringFrequencyCounter();
for (TextPositionSequence wordBlock : wordBlockList) {
lineHeightFrequencyCounter.add(wordBlock.getTextHeight());
fontSizeFrequencyCounter.add(wordBlock.getFontSize());
spaceFrequencyCounter.add(wordBlock.getSpaceWidth());
fontFrequencyCounter.add(wordBlock.getFont());
styleFrequencyCounter.add(wordBlock.getFontStyle());
if (textBlock == null) {
textBlock = new TextPageBlock(wordBlock.getMinXDirAdj(),
wordBlock.getMaxXDirAdj(),
wordBlock.getMinYDirAdj(),
wordBlock.getMaxYDirAdj(),
wordBlockList,
wordBlock.getRotation());
} else {
TextPageBlock spatialEntity = textBlock.union(wordBlock);
textBlock.resize(spatialEntity.getMinX(), spatialEntity.getMinY(), spatialEntity.getWidth(), spatialEntity.getHeight());
}
}
if (textBlock != null) {
textBlock.setMostPopularWordFont(fontFrequencyCounter.getMostPopular());
textBlock.setMostPopularWordStyle(styleFrequencyCounter.getMostPopular());
textBlock.setMostPopularWordFontSize(fontSizeFrequencyCounter.getMostPopular());
textBlock.setMostPopularWordHeight(lineHeightFrequencyCounter.getMostPopular());
textBlock.setMostPopularWordSpaceWidth(spaceFrequencyCounter.getMostPopular());
textBlock.setHighestFontSize(fontSizeFrequencyCounter.getHighest());
}
if (textBlock != null && textBlock.getSequences() != null && textBlock.getSequences().stream().map(t -> round(t.getMinYDirAdj(), 3)).collect(toSet()).size() == 1) {
textBlock.getSequences().sort(Comparator.comparing(TextPositionSequence::getMinXDirAdj));
}
return textBlock;
}
private boolean isSplitByRuling(float minX,
float minY,
float maxX,
float maxY,
TextPositionSequence word,
List<Ruling> horizontalRulingLines,
List<Ruling> verticalRulingLines) {
return isSplitByRuling(maxX,
minY,
word.getMinXDirAdj(),
word.getMinYDirAdj(),
verticalRulingLines,
word.getDir().getDegrees(),
word.getPageWidth(),
word.getPageHeight()) //
|| isSplitByRuling(minX,
minY,
word.getMinXDirAdj(),
word.getMaxYDirAdj(),
horizontalRulingLines,
word.getDir().getDegrees(),
word.getPageWidth(),
word.getPageHeight()) //
|| isSplitByRuling(maxX,
minY,
word.getMinXDirAdj(),
word.getMinYDirAdj(),
horizontalRulingLines,
word.getDir().getDegrees(),
word.getPageWidth(),
word.getPageHeight()) //
|| isSplitByRuling(minX,
minY,
word.getMinXDirAdj(),
word.getMaxYDirAdj(),
verticalRulingLines,
word.getDir().getDegrees(),
word.getPageWidth(),
word.getPageHeight());
}
private boolean isSplitByRuling(float previousX2, float previousY1, float currentX1, float currentY1, List<Ruling> rulingLines, float dir, float pageWidth, float pageHeight) {
for (Ruling ruling : rulingLines) {
var line = RulingTextDirAdjustUtil.convertToDirAdj(ruling, dir, pageWidth, pageHeight);
if (line.intersectsLine(previousX2, previousY1, currentX1, currentY1)) {
return true;
}
}
return false;
}
private double round(float value, int decimalPoints) {
var d = Math.pow(10, decimalPoints);
return Math.round(value * d) / d;
return new TextPageBlock(wordBlockList);
}
}
@@ -15,11 +15,10 @@ import com.knecon.fforesight.service.layoutparser.processor.model.AbstractPageBl
import com.knecon.fforesight.service.layoutparser.processor.model.ClassificationPage;
import com.knecon.fforesight.service.layoutparser.processor.model.FloatFrequencyCounter;
import com.knecon.fforesight.service.layoutparser.processor.model.Orientation;
import com.knecon.fforesight.service.layoutparser.processor.model.table.Ruling;
import com.knecon.fforesight.service.layoutparser.processor.model.table.CleanRulings;
import com.knecon.fforesight.service.layoutparser.processor.model.text.StringFrequencyCounter;
import com.knecon.fforesight.service.layoutparser.processor.model.text.TextPageBlock;
import com.knecon.fforesight.service.layoutparser.processor.model.text.TextPositionSequence;
import com.knecon.fforesight.service.layoutparser.processor.utils.RulingTextDirAdjustUtil;
@Service
public class DocuMineBlockificationService {
@@ -34,15 +33,16 @@ public class DocuMineBlockificationService {
* This method must use text direction adjusted postions (DirAdj). Where {0,0} is on the upper left. Never try to change this!
* Rulings (Table lines) must be adjusted to the text directions as well, when checking if a block is split by a ruling.
*
* @param textPositions The words of a page.
* @param horizontalRulingLines Horizontal table lines.
* @param verticalRulingLines Vertical table lines.
* @param textPositions The textPositions of a page.
* @param cleanRulings All rulings on a page
* @return Page object that contains the Textblock and text statistics.
*/
public ClassificationPage blockify(List<TextPositionSequence> textPositions, List<Ruling> horizontalRulingLines, List<Ruling> verticalRulingLines) {
public ClassificationPage blockify(List<TextPositionSequence> textPositions, CleanRulings cleanRulings) {
List<TextPositionSequence> chunkWords = new ArrayList<>();
List<AbstractPageBlock> chunkBlockList1 = new ArrayList<>();
List<AbstractPageBlock> textPageBlocks = new ArrayList<>();
CleanRulings usedRulings = cleanRulings.withoutTextRulings();
float minX = 1000;
float maxX = 0;
@@ -59,23 +59,26 @@ public class DocuMineBlockificationService {
boolean splitByX = prev != null && maxX + 50 < word.getMinXDirAdj() && prev.getMinYDirAdj() == word.getMinYDirAdj();
boolean negativeXGap = prev != null && word.getMinXDirAdj() - minX < -5;
boolean newLineAfterSplit = prev != null && word.getMinYDirAdj() != prev.getMinYDirAdj() && wasSplitted && splitX1 != word.getMinXDirAdj();
boolean isSplitByRuling = isSplitByRuling(minX, minY, maxX, maxY, word, horizontalRulingLines, verticalRulingLines);
boolean isSplitByRuling = prev != null && usedRulings.lineBetween(prev, word);
boolean splitByDir = prev != null && !prev.getDir().equals(word.getDir());
boolean splitByOtherFontAndOtherY = prev != null && prev.getMaxYDirAdj() != word.getMaxYDirAdj() && (word.getFontStyle().contains("bold") && !prev.getFontStyle()
boolean splitByOtherFontAndOtherY = prev != null && Math.abs(prev.getMaxYDirAdj() - word.getMaxYDirAdj()) > word.getTextHeight() * 0.2 && (word.getFontStyle()
.contains("bold")
&& !prev.getFontStyle()
.contains("bold") || prev.getFontStyle().contains("bold") && !word.getFontStyle().contains("bold"));
Matcher matcher = pattern.matcher(chunkWords.stream().collect(Collectors.joining(" ")).toString());
Matcher matcher = pattern.matcher(chunkWords.stream()
.collect(Collectors.joining(" ")).toString());
boolean startsOnSameX = Math.abs(minX - word.getMinXDirAdj()) < 5 && matcher.matches();
if (prev != null && (lineSeparation || startFromTop || splitByDir || isSplitByRuling || splitByOtherFontAndOtherY || negativeXGap || startsOnSameX)) {
Orientation prevOrientation = null;
if (!chunkBlockList1.isEmpty()) {
prevOrientation = chunkBlockList1.get(chunkBlockList1.size() - 1).getOrientation();
if (!textPageBlocks.isEmpty()) {
prevOrientation = textPageBlocks.get(textPageBlocks.size() - 1).getOrientation();
}
TextPageBlock cb1 = buildTextBlock(chunkWords);
chunkBlockList1.add(cb1);
TextPageBlock cb1 = new TextPageBlock(chunkWords);
textPageBlocks.add(cb1);
chunkWords = new ArrayList<>();
if (splitByX && !isSplitByRuling) {
@@ -86,7 +89,11 @@ public class DocuMineBlockificationService {
wasSplitted = false;
cb1.setOrientation(Orientation.RIGHT);
splitX1 = null;
} else if (prevOrientation != null && prevOrientation.equals(Orientation.RIGHT) && (lineSeparation || !startFromTop || !splitByX || !newLineAfterSplit || !isSplitByRuling)) {
} else if (prevOrientation != null && prevOrientation.equals(Orientation.RIGHT) && (lineSeparation
|| !startFromTop
|| !splitByX
|| !newLineAfterSplit
|| !isSplitByRuling)) {
cb1.setOrientation(Orientation.LEFT);
}
@@ -114,128 +121,12 @@ public class DocuMineBlockificationService {
}
}
TextPageBlock cb1 = buildTextBlock(chunkWords);
if (cb1 != null) {
chunkBlockList1.add(cb1);
}
textPageBlocks.add(new TextPageBlock(chunkWords));
return new ClassificationPage(chunkBlockList1);
return new ClassificationPage(textPageBlocks);
}
private boolean equalsWithThreshold(float f1, float f2) {
return Math.abs(f1 - f2) < THRESHOLD;
}
private TextPageBlock buildTextBlock(List<TextPositionSequence> wordBlockList) {
TextPageBlock textBlock = null;
FloatFrequencyCounter lineHeightFrequencyCounter = new FloatFrequencyCounter();
FloatFrequencyCounter fontSizeFrequencyCounter = new FloatFrequencyCounter();
FloatFrequencyCounter spaceFrequencyCounter = new FloatFrequencyCounter();
StringFrequencyCounter fontFrequencyCounter = new StringFrequencyCounter();
StringFrequencyCounter styleFrequencyCounter = new StringFrequencyCounter();
for (TextPositionSequence wordBlock : wordBlockList) {
lineHeightFrequencyCounter.add(wordBlock.getTextHeight());
fontSizeFrequencyCounter.add(wordBlock.getFontSize());
spaceFrequencyCounter.add(wordBlock.getSpaceWidth());
fontFrequencyCounter.add(wordBlock.getFont());
styleFrequencyCounter.add(wordBlock.getFontStyle());
if (textBlock == null) {
textBlock = new TextPageBlock(wordBlock.getMinXDirAdj(),
wordBlock.getMaxXDirAdj(),
wordBlock.getMinYDirAdj(),
wordBlock.getMaxYDirAdj(),
wordBlockList,
wordBlock.getRotation());
} else {
TextPageBlock spatialEntity = textBlock.union(wordBlock);
textBlock.resize(spatialEntity.getMinX(), spatialEntity.getMinY(), spatialEntity.getWidth(), spatialEntity.getHeight());
}
}
if (textBlock != null) {
textBlock.setMostPopularWordFont(fontFrequencyCounter.getMostPopular());
textBlock.setMostPopularWordStyle(styleFrequencyCounter.getMostPopular());
textBlock.setMostPopularWordFontSize(fontSizeFrequencyCounter.getMostPopular());
textBlock.setMostPopularWordHeight(lineHeightFrequencyCounter.getMostPopular());
textBlock.setMostPopularWordSpaceWidth(spaceFrequencyCounter.getMostPopular());
textBlock.setHighestFontSize(fontSizeFrequencyCounter.getHighest());
}
if (textBlock != null && textBlock.getSequences() != null && textBlock.getSequences().stream().map(t -> round(t.getMinYDirAdj(), 3)).collect(toSet()).size() == 1) {
textBlock.getSequences().sort(Comparator.comparing(TextPositionSequence::getMinXDirAdj));
}
return textBlock;
}
private boolean isSplitByRuling(float minX,
float minY,
float maxX,
float maxY,
TextPositionSequence word,
List<Ruling> horizontalRulingLines,
List<Ruling> verticalRulingLines) {
return isSplitByRuling(maxX,
minY,
word.getMinXDirAdj(),
word.getMinYDirAdj(),
verticalRulingLines,
word.getDir().getDegrees(),
word.getPageWidth(),
word.getPageHeight()) //
|| isSplitByRuling(minX,
minY,
word.getMinXDirAdj(),
word.getMaxYDirAdj(),
horizontalRulingLines,
word.getDir().getDegrees(),
word.getPageWidth(),
word.getPageHeight()) //
|| isSplitByRuling(maxX,
minY,
word.getMinXDirAdj(),
word.getMinYDirAdj(),
horizontalRulingLines,
word.getDir().getDegrees(),
word.getPageWidth(),
word.getPageHeight()) //
|| isSplitByRuling(minX,
minY,
word.getMinXDirAdj(),
word.getMaxYDirAdj(),
verticalRulingLines,
word.getDir().getDegrees(),
word.getPageWidth(),
word.getPageHeight()); //
}
private boolean isSplitByRuling(float previousX2, float previousY1, float currentX1, float currentY1, List<Ruling> rulingLines, float dir, float pageWidth, float pageHeight) {
for (Ruling ruling : rulingLines) {
var line = RulingTextDirAdjustUtil.convertToDirAdj(ruling, dir, pageWidth, pageHeight);
if (line.intersectsLine(previousX2, previousY1, currentX1, currentY1)) {
return true;
}
}
return false;
}
private double round(float value, int decimalPoints) {
var d = Math.pow(10, decimalPoints);
return Math.round(value * d) / d;
}
}
@@ -13,11 +13,11 @@ import com.knecon.fforesight.service.layoutparser.processor.model.AbstractPageBl
import com.knecon.fforesight.service.layoutparser.processor.model.ClassificationPage;
import com.knecon.fforesight.service.layoutparser.processor.model.FloatFrequencyCounter;
import com.knecon.fforesight.service.layoutparser.processor.model.Orientation;
import com.knecon.fforesight.service.layoutparser.processor.model.table.Ruling;
import com.knecon.fforesight.service.layoutparser.processor.model.table.CleanRulings;
import com.knecon.fforesight.service.layoutparser.processor.model.text.StringFrequencyCounter;
import com.knecon.fforesight.service.layoutparser.processor.model.text.TextPageBlock;
import com.knecon.fforesight.service.layoutparser.processor.model.text.TextPositionSequence;
import com.knecon.fforesight.service.layoutparser.processor.utils.RulingTextDirAdjustUtil;
import com.knecon.fforesight.service.layoutparser.processor.visualization.LayoutparsingVisualizations;
@SuppressWarnings("all")
@Service
@@ -31,12 +31,13 @@ public class RedactManagerBlockificationService {
* This method must use text direction adjusted postions (DirAdj). Where {0,0} is on the upper left. Never try to change this!
* Rulings (TablePageBlock lines) must be adjusted to the text directions as well, when checking if a block is split by a ruling.
*
* @param textPositions The words of a page.
* @param horizontalRulingLines Horizontal table lines.
* @param verticalRulingLines Vertical table lines.
* @param textPositions The words of a page.
* @param visualizations
* @return Page object that contains the Textblock and text statistics.
*/
public ClassificationPage blockify(List<TextPositionSequence> textPositions, List<Ruling> horizontalRulingLines, List<Ruling> verticalRulingLines) {
public ClassificationPage blockify(List<TextPositionSequence> textPositions, CleanRulings cleanRulings, LayoutparsingVisualizations visualizations) {
CleanRulings usedRulings = cleanRulings.withoutTextRulings();
int indexOnPage = 0;
List<TextPositionSequence> chunkWords = new ArrayList<>();
@@ -54,7 +55,7 @@ public class RedactManagerBlockificationService {
boolean splitByX = prev != null && maxX + 50 < word.getMinXDirAdj() && prev.getMinYDirAdj() == word.getMinYDirAdj();
boolean xIsBeforeFirstX = prev != null && word.getMinXDirAdj() < minX;
boolean newLineAfterSplit = prev != null && word.getMinYDirAdj() != prev.getMinYDirAdj() && wasSplitted && splitX1 != word.getMinXDirAdj();
boolean isSplitByRuling = isSplitByRuling(minX, minY, maxX, maxY, word, horizontalRulingLines, verticalRulingLines);
boolean isSplitByRuling = prev != null && usedRulings.lineBetween(prev, word);
boolean splitByDir = prev != null && !prev.getDir().equals(word.getDir());
if (prev != null && (lineSeparation || startFromTop || splitByX || splitByDir || isSplitByRuling)) {
@@ -64,7 +65,7 @@ public class RedactManagerBlockificationService {
prevOrientation = chunkBlockList.get(chunkBlockList.size() - 1).getOrientation();
}
TextPageBlock cb1 = buildTextBlock(chunkWords, indexOnPage);
TextPageBlock cb1 = new TextPageBlock(chunkWords);
indexOnPage++;
chunkBlockList.add(cb1);
@@ -78,7 +79,11 @@ public class RedactManagerBlockificationService {
wasSplitted = false;
cb1.setOrientation(Orientation.RIGHT);
splitX1 = null;
} else if (prevOrientation != null && prevOrientation.equals(Orientation.RIGHT) && (lineSeparation || !startFromTop || !splitByX || !newLineAfterSplit || !isSplitByRuling)) {
} else if (prevOrientation != null && prevOrientation.equals(Orientation.RIGHT) && (lineSeparation
|| !startFromTop
|| !splitByX
|| !newLineAfterSplit
|| !isSplitByRuling)) {
cb1.setOrientation(Orientation.LEFT);
}
@@ -106,8 +111,8 @@ public class RedactManagerBlockificationService {
}
}
TextPageBlock cb1 = buildTextBlock(chunkWords, indexOnPage);
if (cb1 != null) {
if (!chunkWords.isEmpty()) {
TextPageBlock cb1 = new TextPageBlock(chunkWords);
chunkBlockList.add(cb1);
}
@@ -147,8 +152,11 @@ public class RedactManagerBlockificationService {
TextPageBlock block = (TextPageBlock) itty.next();
if (previous != null && previous.getOrientation().equals(Orientation.LEFT) && block.getOrientation().equals(Orientation.LEFT) && equalsWithThreshold(block.getMaxY(),
previous.getMaxY()) || previous != null && previous.getOrientation().equals(Orientation.LEFT) && block.getOrientation()
.equals(Orientation.RIGHT) && equalsWithThreshold(block.getMaxY(), previous.getMaxY())) {
previous.getMaxY())
|| previous != null
&& previous.getOrientation().equals(Orientation.LEFT)
&& block.getOrientation().equals(Orientation.RIGHT)
&& equalsWithThreshold(block.getMaxY(), previous.getMaxY())) {
previous.add(block);
itty.remove();
continue;
@@ -156,123 +164,19 @@ public class RedactManagerBlockificationService {
previous = block;
}
if (!textPositions.isEmpty()) {
visualizations.addTextBlockVisualizations(chunkBlockList.stream()
.map(tb -> (TextPageBlock) tb)
.toList(), textPositions.get(0).getPage());
}
return new ClassificationPage(chunkBlockList);
}
private boolean equalsWithThreshold(float f1, float f2) {
private boolean equalsWithThreshold(double f1, double f2) {
return Math.abs(f1 - f2) < THRESHOLD;
}
private TextPageBlock buildTextBlock(List<TextPositionSequence> wordBlockList, int indexOnPage) {
TextPageBlock textBlock = null;
FloatFrequencyCounter lineHeightFrequencyCounter = new FloatFrequencyCounter();
FloatFrequencyCounter fontSizeFrequencyCounter = new FloatFrequencyCounter();
FloatFrequencyCounter spaceFrequencyCounter = new FloatFrequencyCounter();
StringFrequencyCounter fontFrequencyCounter = new StringFrequencyCounter();
StringFrequencyCounter styleFrequencyCounter = new StringFrequencyCounter();
for (TextPositionSequence wordBlock : wordBlockList) {
lineHeightFrequencyCounter.add(wordBlock.getTextHeight());
fontSizeFrequencyCounter.add(wordBlock.getFontSize());
spaceFrequencyCounter.add(wordBlock.getSpaceWidth());
fontFrequencyCounter.add(wordBlock.getFont());
styleFrequencyCounter.add(wordBlock.getFontStyle());
if (textBlock == null) {
textBlock = new TextPageBlock(wordBlock.getMinXDirAdj(),
wordBlock.getMaxXDirAdj(),
wordBlock.getMinYDirAdj(),
wordBlock.getMaxYDirAdj(),
wordBlockList,
wordBlock.getRotation());
} else {
TextPageBlock spatialEntity = textBlock.union(wordBlock);
textBlock.resize(spatialEntity.getMinX(), spatialEntity.getMinY(), spatialEntity.getWidth(), spatialEntity.getHeight());
}
}
if (textBlock != null) {
textBlock.setMostPopularWordFont(fontFrequencyCounter.getMostPopular());
textBlock.setMostPopularWordStyle(styleFrequencyCounter.getMostPopular());
textBlock.setMostPopularWordFontSize(fontSizeFrequencyCounter.getMostPopular());
textBlock.setMostPopularWordHeight(lineHeightFrequencyCounter.getMostPopular());
textBlock.setMostPopularWordSpaceWidth(spaceFrequencyCounter.getMostPopular());
textBlock.setHighestFontSize(fontSizeFrequencyCounter.getHighest());
}
if (textBlock != null && textBlock.getSequences() != null && textBlock.getSequences().stream().map(t -> round(t.getMinYDirAdj(), 3)).collect(toSet()).size() == 1) {
textBlock.getSequences().sort(Comparator.comparing(TextPositionSequence::getMinXDirAdj));
}
return textBlock;
}
private boolean isSplitByRuling(float minX,
float minY,
float maxX,
float maxY,
TextPositionSequence word,
List<Ruling> horizontalRulingLines,
List<Ruling> verticalRulingLines) {
return isSplitByRuling(maxX,
minY,
word.getMinXDirAdj(),
word.getMinYDirAdj(),
verticalRulingLines,
word.getDir().getDegrees(),
word.getPageWidth(),
word.getPageHeight()) //
|| isSplitByRuling(minX,
minY,
word.getMinXDirAdj(),
word.getMaxYDirAdj(),
horizontalRulingLines,
word.getDir().getDegrees(),
word.getPageWidth(),
word.getPageHeight()) //
|| isSplitByRuling(maxX,
minY,
word.getMinXDirAdj(),
word.getMinYDirAdj(),
horizontalRulingLines,
word.getDir().getDegrees(),
word.getPageWidth(),
word.getPageHeight()) //
|| isSplitByRuling(minX,
minY,
word.getMinXDirAdj(),
word.getMaxYDirAdj(),
verticalRulingLines,
word.getDir().getDegrees(),
word.getPageWidth(),
word.getPageHeight());
}
private boolean isSplitByRuling(float previousX2, float previousY1, float currentX1, float currentY1, List<Ruling> rulingLines, float dir, float pageWidth, float pageHeight) {
for (Ruling ruling : rulingLines) {
var line = RulingTextDirAdjustUtil.convertToDirAdj(ruling, dir, pageWidth, pageHeight);
if (line.intersectsLine(previousX2, previousY1, currentX1, currentY1)) {
return true;
}
}
return false;
}
private double round(float value, int decimalPoints) {
var d = Math.pow(10, decimalPoints);
return Math.round(value * d) / d;
}
}
@@ -27,26 +27,32 @@ public class ClarifyndClassificationService {
log.debug("Document FontSize counters are: {}", document.getFontSizeCounter().getCountPerValue());
HeadlineClassificationService headlineClassificationService = new HeadlineClassificationService();
for (ClassificationPage page : document.getPages()) {
classifyPage(page, document, headlineFontSizes);
classifyPage(headlineClassificationService, page, document, headlineFontSizes);
}
}
private void classifyPage(ClassificationPage page, ClassificationDocument document, List<Float> headlineFontSizes) {
private void classifyPage(HeadlineClassificationService headlineClassificationService, ClassificationPage page, ClassificationDocument document, List<Float> headlineFontSizes) {
for (AbstractPageBlock textBlock : page.getTextBlocks()) {
if (textBlock instanceof TextPageBlock) {
classifyBlock((TextPageBlock) textBlock, page, document, headlineFontSizes);
classifyBlock(headlineClassificationService, (TextPageBlock) textBlock, page, document, headlineFontSizes);
}
}
}
private void classifyBlock(TextPageBlock textBlock, ClassificationPage page, ClassificationDocument document, List<Float> headlineFontSizes) {
private void classifyBlock(HeadlineClassificationService headlineClassificationService, TextPageBlock textBlock, ClassificationPage page, ClassificationDocument document, List<Float> headlineFontSizes) {
var bodyTextFrame = page.getBodyTextFrame();
if (textBlock.getClassification() != null && textBlock.getClassification().isHeadline()) {
headlineClassificationService.setLastHeadlineFromOutline(textBlock);
return;
}
if (document.getFontSizeCounter().getMostPopular() == null) {
textBlock.setClassification(PageBlockType.PARAGRAPH);
return;
@@ -79,7 +85,8 @@ public class ClarifyndClassificationService {
for (int i = 1; i <= headlineFontSizes.size(); i++) {
if (textBlock.getMostPopularWordFontSize() == headlineFontSizes.get(i - 1)) {
textBlock.setClassification(PageBlockType.getHeadlineType(i));
PageBlockType headlineType = PageBlockType.getHeadlineType(i);
headlineClassificationService.classifyHeadline(textBlock, headlineType);
document.setHeadlines(true);
}
}
@@ -89,7 +96,8 @@ public class ClarifyndClassificationService {
.getTextPositions()
.get(0)
.getFontSizeInPt() >= textBlock.getMostPopularWordFontSize()) {
textBlock.setClassification(PageBlockType.getHeadlineType(headlineFontSizes.size() + 1));
PageBlockType headlineType = PageBlockType.getHeadlineType(headlineFontSizes.size() + 1);
headlineClassificationService.classifyHeadline(textBlock, headlineType);
document.setHeadlines(true);
} else if (PositionUtils.isWithinBodyTextFrame(bodyTextFrame, textBlock) && textBlock.getMostPopularWordFontSize() == document.getFontSizeCounter()
.getMostPopular() && textBlock.getMostPopularWordStyle().equals("bold") && !document.getFontStyleCounter().getMostPopular().equals("bold")) {
@@ -5,7 +5,6 @@ import java.util.Locale;
import java.util.regex.Matcher;
import java.util.regex.Pattern;
import com.knecon.fforesight.service.layoutparser.processor.utils.MarkedContentUtils;
import org.springframework.stereotype.Service;
import com.knecon.fforesight.service.layoutparser.processor.model.AbstractPageBlock;
@@ -13,6 +12,8 @@ import com.knecon.fforesight.service.layoutparser.processor.model.Classification
import com.knecon.fforesight.service.layoutparser.processor.model.ClassificationPage;
import com.knecon.fforesight.service.layoutparser.processor.model.PageBlockType;
import com.knecon.fforesight.service.layoutparser.processor.model.text.TextPageBlock;
import com.knecon.fforesight.service.layoutparser.processor.utils.HeaderFooterDetection;
import com.knecon.fforesight.service.layoutparser.processor.utils.MarkedContentUtils;
import com.knecon.fforesight.service.layoutparser.processor.utils.PositionUtils;
import lombok.RequiredArgsConstructor;
@@ -23,9 +24,9 @@ import lombok.extern.slf4j.Slf4j;
@RequiredArgsConstructor
public class DocuMineClassificationService {
private static final Pattern pattern = Pattern.compile("^(\\d{1,2}\\.){1,3}\\d{1,2}\\.?\\s[0-9A-Za-z \\[\\]]{2,50}", Pattern.CASE_INSENSITIVE);
private static final Pattern pattern2 = Pattern.compile("\\p{L}{3,}", Pattern.CASE_INSENSITIVE);
private static final Pattern pattern3 = Pattern.compile("^(\\d{1,1}\\.){1,3}\\d{1,2}\\.?\\s[a-z]{1,2}\\/[a-z]{1,2}.*");
private static final Pattern HEADLINE_WITH_IDENTIFER_PATTERN = Pattern.compile("^([1-9]\\d?\\.){1,3}\\d{1,2}\\.?\\s[0-9A-Za-z \\[\\]]{2,50}", Pattern.CASE_INSENSITIVE);
private static final Pattern AT_LEAST_3_PATTERN = Pattern.compile("\\p{L}{3,}", Pattern.CASE_INSENSITIVE);
private static final Pattern HEADLINE_PATTTERN_WITH_SLASHES = Pattern.compile("^(\\d{1,1}\\.){1,3}\\d{1,2}\\.?\\s[a-z]{1,2}\\/[a-z]{1,2}.*");
public void classifyDocument(ClassificationDocument document) {
@@ -34,76 +35,112 @@ public class DocuMineClassificationService {
log.debug("Document FontSize counters are: {}", document.getFontSizeCounter().getCountPerValue());
HeadlineClassificationService headlineClassificationService = new HeadlineClassificationService();
for (ClassificationPage page : document.getPages()) {
classifyPage(page, document, headlineFontSizes);
classifyPage(headlineClassificationService, page, document, headlineFontSizes);
}
}
private void classifyPage(ClassificationPage page, ClassificationDocument document, List<Float> headlineFontSizes) {
private void classifyPage(HeadlineClassificationService headlineClassificationService,
ClassificationPage page,
ClassificationDocument document,
List<Float> headlineFontSizes) {
for (AbstractPageBlock textBlock : page.getTextBlocks()) {
if (textBlock instanceof TextPageBlock) {
classifyBlock((TextPageBlock) textBlock, page, document, headlineFontSizes);
classifyBlock(headlineClassificationService, (TextPageBlock) textBlock, page, document, headlineFontSizes);
}
}
}
private void classifyBlock(TextPageBlock textBlock, ClassificationPage page, ClassificationDocument document, List<Float> headlineFontSizes) {
private void classifyBlock(HeadlineClassificationService headlineClassificationService,
TextPageBlock textBlock,
ClassificationPage page,
ClassificationDocument document,
List<Float> headlineFontSizes) {
log.debug("headlineFontSizes: {}", headlineFontSizes);
var bodyTextFrame = page.getBodyTextFrame();
Matcher matcher = pattern.matcher(textBlock.toString());
Matcher matcher2 = pattern2.matcher(textBlock.toString());
Matcher matcher3 = pattern3.matcher(textBlock.toString());
Matcher headlineWithIdentifierMatcher = HEADLINE_WITH_IDENTIFER_PATTERN.matcher(textBlock.toString());
Matcher atLeast3Matcher = AT_LEAST_3_PATTERN.matcher(textBlock.toString());
Matcher headlineWithSlashesMatcher = HEADLINE_PATTTERN_WITH_SLASHES.matcher(textBlock.toString());
if (textBlock.getClassification() != null && textBlock.getClassification().isHeadline()) {
headlineClassificationService.setLastHeadlineFromOutline(textBlock);
return;
}
if (document.getFontSizeCounter().getMostPopular() == null) {
textBlock.setClassification(PageBlockType.OTHER);
return;
}
if (MarkedContentUtils.intersects(textBlock, page.getMarkedContentBboxPerType(), MarkedContentUtils.HEADER)
|| PositionUtils.isOverBodyTextFrame(bodyTextFrame, textBlock, page.getRotation()) && (document.getFontSizeCounter()
.getMostPopular() == null || textBlock.getHighestFontSize() <= document.getFontSizeCounter().getMostPopular())
) {
if (MarkedContentUtils.intersects(textBlock, page.getMarkedContentBboxPerType(), MarkedContentUtils.HEADER) //
|| (PositionUtils.isOverBodyTextFrame(bodyTextFrame, textBlock, page.getRotation()) //
&& (document.getFontSizeCounter().getMostPopular() == null //
|| textBlock.getHighestFontSize() <= document.getFontSizeCounter().getMostPopular()))) {
textBlock.setClassification(PageBlockType.HEADER);
} else if (MarkedContentUtils.intersects(textBlock, page.getMarkedContentBboxPerType(), MarkedContentUtils.FOOTER)
|| PositionUtils.isUnderBodyTextFrame(bodyTextFrame, textBlock, page.getRotation()) && (document.getFontSizeCounter()
.getMostPopular() == null || textBlock.getHighestFontSize() <= document.getFontSizeCounter().getMostPopular())
) {
|| (PositionUtils.isUnderBodyTextFrame(bodyTextFrame,
textBlock,
page.getRotation())
&& (document.getFontSizeCounter().getMostPopular()
== null
|| textBlock.getHighestFontSize()
<= document.getFontSizeCounter()
.getMostPopular()))
|| HeaderFooterDetection.isLikelyFooter(textBlock, document, page)) {
textBlock.setClassification(PageBlockType.FOOTER);
} else if (page.getPageNumber() == 1 && (PositionUtils.getHeightDifferenceBetweenChunkWordAndDocumentWord(textBlock,
document.getTextHeightCounter().getMostPopular()) > 2.5 && textBlock.getHighestFontSize() > document.getFontSizeCounter().getMostPopular() || page.getTextBlocks()
.size() == 1)) {
} else if (page.getPageNumber() == 1 && (PositionUtils.getHeightDifferenceBetweenChunkWordAndDocumentWord(textBlock, document.getTextHeightCounter().getMostPopular()) > 2.5
&& textBlock.getHighestFontSize() > document.getFontSizeCounter().getMostPopular() || page.getTextBlocks().size() == 1)) {
if (!Pattern.matches("[0-9]+", textBlock.toString())) {
textBlock.setClassification(PageBlockType.TITLE);
}
} else if (textBlock.getText().length() > 5 && (textBlock.getMostPopularWordHeight() > document.getTextHeightCounter()
.getMostPopular() || textBlock.getMostPopularWordFontSize() > document.getFontSizeCounter().getMostPopular()) && PositionUtils.getApproxLineCount(textBlock) < 5.9
} else if (textBlock.getText().length() > 5
&& (textBlock.getMostPopularWordHeight() > document.getTextHeightCounter().getMostPopular()
|| textBlock.getMostPopularWordFontSize() > document.getFontSizeCounter().getMostPopular())
&& PositionUtils.getApproxLineCount(textBlock) < 5.9
&& (textBlock.getMostPopularWordStyle().contains("bold") && Character.isDigit(textBlock.toString().charAt(0)) && !matcher2.matches() && !textBlock.toString()
.contains(":") || textBlock.toString().equals(textBlock.toString().toUpperCase(Locale.ROOT)) && !matcher2.matches() && !textBlock.toString()
.contains(":") || textBlock.toString().startsWith("APPENDIX") || textBlock.toString().startsWith("FIGURE") || textBlock.toString()
.startsWith("TABLE")) && !textBlock.toString().endsWith(":") && matcher2.find()) {
textBlock.setClassification(PageBlockType.getHeadlineType(1));
&& (textBlock.getMostPopularWordStyle().contains("bold")
&& Character.isDigit(textBlock.toString().charAt(0))
&& atLeast3Matcher.reset().find()
&& !textBlock.toString().contains(":") //
|| textBlock.toString().equals(textBlock.toString().toUpperCase(Locale.ROOT)) && atLeast3Matcher.reset().find() && !textBlock.toString().contains(":") //
|| textBlock.toString().startsWith("APPENDIX") //
|| textBlock.toString().startsWith("FIGURE") //
|| textBlock.toString().startsWith("Continued TABLE") //
|| textBlock.toString().startsWith("TABLE"))
&& !textBlock.toString().endsWith(":")
&& atLeast3Matcher.reset().find()) {
PageBlockType headlineType = PageBlockType.getHeadlineType(1);
headlineClassificationService.classifyHeadline(textBlock, headlineType);
document.setHeadlines(true);
} else if (matcher.find() && PositionUtils.getApproxLineCount(textBlock) < 2.9 && matcher2.find() && !matcher3.matches()) {
textBlock.setClassification(PageBlockType.getHeadlineType(2));
} else if (headlineWithIdentifierMatcher.reset().find()
&& PositionUtils.getApproxLineCount(textBlock) < 2.9
&& atLeast3Matcher.reset().find()
&& !headlineWithSlashesMatcher.reset().matches()) {
PageBlockType headlineType = PageBlockType.getHeadlineType(2);
headlineClassificationService.classifyHeadline(textBlock, headlineType);
document.setHeadlines(true);
} else if (PositionUtils.isWithinBodyTextFrame(bodyTextFrame, textBlock) && textBlock.getMostPopularWordFontSize() == document.getFontSizeCounter()
.getMostPopular() && textBlock.getMostPopularWordStyle().equals("bold") && !document.getFontStyleCounter().getMostPopular().equals("bold")) {
} else if (PositionUtils.isWithinBodyTextFrame(bodyTextFrame, textBlock)
&& textBlock.getMostPopularWordFontSize() == document.getFontSizeCounter().getMostPopular()
&& textBlock.getMostPopularWordStyle().equals("bold")
&& !document.getFontStyleCounter().getMostPopular().equals("bold")) {
textBlock.setClassification(PageBlockType.PARAGRAPH_BOLD);
} else if (PositionUtils.isWithinBodyTextFrame(bodyTextFrame, textBlock) && textBlock.getMostPopularWordFont()
.equals(document.getFontCounter().getMostPopular()) && textBlock.getMostPopularWordStyle()
.equals(document.getFontStyleCounter().getMostPopular()) && textBlock.getMostPopularWordFontSize() == document.getFontSizeCounter().getMostPopular()) {
} else if (PositionUtils.isWithinBodyTextFrame(bodyTextFrame, textBlock)
&& textBlock.getMostPopularWordFont().equals(document.getFontCounter().getMostPopular())
&& textBlock.getMostPopularWordStyle().equals(document.getFontStyleCounter().getMostPopular())
&& textBlock.getMostPopularWordFontSize() == document.getFontSizeCounter().getMostPopular()) {
textBlock.setClassification(PageBlockType.PARAGRAPH);
} else if (PositionUtils.isWithinBodyTextFrame(bodyTextFrame, textBlock) && textBlock.getMostPopularWordFontSize() == document.getFontSizeCounter()
.getMostPopular() && textBlock.getMostPopularWordStyle().equals("italic") && !document.getFontStyleCounter()
.getMostPopular()
.equals("italic") && PositionUtils.getApproxLineCount(textBlock) < 2.9) {
} else if (PositionUtils.isWithinBodyTextFrame(bodyTextFrame, textBlock)
&& textBlock.getMostPopularWordFontSize() == document.getFontSizeCounter().getMostPopular()
&& textBlock.getMostPopularWordStyle().equals("italic")
&& !document.getFontStyleCounter().getMostPopular().equals("italic")
&& PositionUtils.getApproxLineCount(textBlock) < 2.9) {
textBlock.setClassification(PageBlockType.PARAGRAPH_ITALIC);
} else if (PositionUtils.isWithinBodyTextFrame(bodyTextFrame, textBlock)) {
textBlock.setClassification(PageBlockType.PARAGRAPH_UNKNOWN);
@@ -0,0 +1,52 @@
package com.knecon.fforesight.service.layoutparser.processor.services.classification;
import static com.knecon.fforesight.service.layoutparser.processor.model.PageBlockType.getHeadlineNumber;
import com.knecon.fforesight.service.layoutparser.processor.model.PageBlockType;
import com.knecon.fforesight.service.layoutparser.processor.model.text.TextPageBlock;
import lombok.Getter;
import lombok.Setter;
@Getter
@Setter
public class HeadlineClassificationService {
TextPageBlock lastHeadline;
PageBlockType originalClassifiedBlockType;
TextPageBlock lastHeadlineFromOutline;
public void setLastHeadlineFromOutline(TextPageBlock lastHeadlineFromOutline) {
this.lastHeadlineFromOutline = lastHeadlineFromOutline;
this.setLastHeadline(lastHeadlineFromOutline);
}
public void classifyHeadline(TextPageBlock textBlock, PageBlockType initialHeadlineType) {
TextPageBlock lastHeadline = getLastHeadline();
TextPageBlock lastHeadlineFromOutline = getLastHeadlineFromOutline();
PageBlockType originalClassifiedBlockType = getOriginalClassifiedBlockType();
PageBlockType finalHeadlineType = initialHeadlineType;
if (lastHeadline != null) {
if (lastHeadline.equals(lastHeadlineFromOutline)) {
finalHeadlineType = PageBlockType.getHeadlineType(getHeadlineNumber(lastHeadline.getClassification()) + 1);
} else if (originalClassifiedBlockType != null && lastHeadline.getClassification() != originalClassifiedBlockType) {
PageBlockType lastHeadlineType = lastHeadline.getClassification();
int difference = getHeadlineNumber(originalClassifiedBlockType) - getHeadlineNumber(lastHeadlineType);
finalHeadlineType = PageBlockType.getHeadlineType(getHeadlineNumber(initialHeadlineType) - difference);
}
}
setOriginalClassifiedBlockType(initialHeadlineType);
textBlock.setClassification(finalHeadlineType);
setLastHeadline(textBlock);
}
}
@@ -3,14 +3,15 @@ package com.knecon.fforesight.service.layoutparser.processor.services.classifica
import java.util.List;
import java.util.regex.Pattern;
import com.knecon.fforesight.service.layoutparser.processor.utils.MarkedContentUtils;
import org.springframework.stereotype.Service;
import com.knecon.fforesight.service.layoutparser.processor.model.AbstractPageBlock;
import com.knecon.fforesight.service.layoutparser.processor.model.ClassificationDocument;
import com.knecon.fforesight.service.layoutparser.processor.model.ClassificationPage;
import com.knecon.fforesight.service.layoutparser.processor.model.PageBlockType;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.ImageType;
import com.knecon.fforesight.service.layoutparser.processor.model.text.TextPageBlock;
import com.knecon.fforesight.service.layoutparser.processor.utils.MarkedContentUtils;
import com.knecon.fforesight.service.layoutparser.processor.utils.PositionUtils;
import lombok.RequiredArgsConstructor;
@@ -28,79 +29,102 @@ public class RedactManagerClassificationService {
log.debug("Document FontSize counters are: {}", document.getFontSizeCounter().getCountPerValue());
HeadlineClassificationService headlineClassificationService = new HeadlineClassificationService();
for (ClassificationPage page : document.getPages()) {
classifyPage(page, document, headlineFontSizes);
classifyPage(headlineClassificationService, page, document, headlineFontSizes);
}
}
private void classifyPage(ClassificationPage page, ClassificationDocument document, List<Float> headlineFontSizes) {
private void classifyPage(HeadlineClassificationService headlineClassificationService, ClassificationPage page, ClassificationDocument document, List<Float> headlineFontSizes) {
for (AbstractPageBlock textBlock : page.getTextBlocks()) {
if (textBlock instanceof TextPageBlock) {
classifyBlock((TextPageBlock) textBlock, page, document, headlineFontSizes);
classifyBlock(headlineClassificationService, (TextPageBlock) textBlock, page, document, headlineFontSizes);
}
}
}
private void classifyBlock(TextPageBlock textBlock, ClassificationPage page, ClassificationDocument document, List<Float> headlineFontSizes) {
private void classifyBlock(HeadlineClassificationService headlineClassificationService, TextPageBlock textBlock, ClassificationPage page, ClassificationDocument document, List<Float> headlineFontSizes) {
var bodyTextFrame = page.getBodyTextFrame();
if (textBlock.getClassification() != null && textBlock.getClassification().isHeadline()) {
headlineClassificationService.setLastHeadlineFromOutline(textBlock);
return;
}
if (document.getFontSizeCounter().getMostPopular() == null) {
textBlock.setClassification(PageBlockType.OTHER);
return;
}
if (page.getImages()
.stream()
.filter(image -> image.getImageType().equals(ImageType.GRAPHIC))
.anyMatch(graphic -> graphic.getPosition().intersects(textBlock.getPdfMinX(), textBlock.getPdfMinY(), textBlock.getWidth(), textBlock.getHeight()))) {
textBlock.setClassification(PageBlockType.PARAGRAPH);
return;
}
if (MarkedContentUtils.intersects(textBlock, page.getMarkedContentBboxPerType(), MarkedContentUtils.HEADER)
|| PositionUtils.isOverBodyTextFrame(bodyTextFrame, textBlock, page.getRotation()) && (document.getFontSizeCounter()
.getMostPopular() == null || textBlock.getHighestFontSize() <= document.getFontSizeCounter().getMostPopular())) {
|| PositionUtils.isOverBodyTextFrame(bodyTextFrame, textBlock, page.getRotation()) && (document.getFontSizeCounter().getMostPopular() == null
|| textBlock.getHighestFontSize() <= document.getFontSizeCounter()
.getMostPopular())) {
textBlock.setClassification(PageBlockType.HEADER);
} else if (MarkedContentUtils.intersects(textBlock, page.getMarkedContentBboxPerType(), MarkedContentUtils.FOOTER)
|| PositionUtils.isUnderBodyTextFrame(bodyTextFrame, textBlock, page.getRotation()) && (document.getFontSizeCounter()
.getMostPopular() == null || textBlock.getHighestFontSize() <= document.getFontSizeCounter().getMostPopular())) {
|| PositionUtils.isUnderBodyTextFrame(bodyTextFrame, textBlock, page.getRotation()) && (document.getFontSizeCounter().getMostPopular() == null
|| textBlock.getHighestFontSize() <= document.getFontSizeCounter()
.getMostPopular())) {
textBlock.setClassification(PageBlockType.FOOTER);
} else if (page.getPageNumber() == 1 && (PositionUtils.getHeightDifferenceBetweenChunkWordAndDocumentWord(textBlock,
document.getTextHeightCounter().getMostPopular()) > 2.5 && textBlock.getHighestFontSize() > document.getFontSizeCounter().getMostPopular() || page.getTextBlocks()
.size() == 1)) {
} else if (page.getPageNumber() == 1 && (PositionUtils.getHeightDifferenceBetweenChunkWordAndDocumentWord(textBlock, document.getTextHeightCounter().getMostPopular()) > 2.5
&& textBlock.getHighestFontSize() > document.getFontSizeCounter().getMostPopular() || page.getTextBlocks().size() == 1)) {
if (!Pattern.matches("[0-9]+", textBlock.toString())) {
textBlock.setClassification(PageBlockType.TITLE);
}
} else if (textBlock.getMostPopularWordFontSize() > document.getFontSizeCounter()
.getMostPopular() && PositionUtils.getApproxLineCount(textBlock) < 4.9 && (textBlock.getMostPopularWordStyle().equals("bold") || !document.getFontStyleCounter()
.getCountPerValue()
.containsKey("bold") && textBlock.getMostPopularWordFontSize() > document.getFontSizeCounter().getMostPopular() + 1) && textBlock.getSequences()
.get(0)
.getTextPositions()
.get(0)
.getFontSizeInPt() >= textBlock.getMostPopularWordFontSize()) {
} else if (textBlock.getMostPopularWordFontSize() > document.getFontSizeCounter().getMostPopular()
&& PositionUtils.getApproxLineCount(textBlock) < 4.9
&& (textBlock.getMostPopularWordStyle().equals("bold")
|| !document.getFontStyleCounter().getCountPerValue().containsKey("bold")
&& textBlock.getMostPopularWordFontSize() > document.getFontSizeCounter().getMostPopular() + 1)
&& textBlock.getSequences()
.get(0).getTextPositions()
.get(0).getFontSizeInPt() >= textBlock.getMostPopularWordFontSize()) {
for (int i = 1; i <= headlineFontSizes.size(); i++) {
if (textBlock.getMostPopularWordFontSize() == headlineFontSizes.get(i - 1)) {
textBlock.setClassification(PageBlockType.getHeadlineType(i));
PageBlockType headlineType = PageBlockType.getHeadlineType(i);
headlineClassificationService.classifyHeadline(textBlock, headlineType);
document.setHeadlines(true);
}
}
} else if (!textBlock.getText().startsWith("Figure ") && PositionUtils.isWithinBodyTextFrame(bodyTextFrame, textBlock) && textBlock.getMostPopularWordStyle()
.equals("bold") && !document.getFontStyleCounter().getMostPopular().equals("bold") && PositionUtils.getApproxLineCount(textBlock) < 2.9 && textBlock.getSequences()
.get(0)
.getTextPositions()
.get(0)
.getFontSizeInPt() >= textBlock.getMostPopularWordFontSize()) {
textBlock.setClassification(PageBlockType.getHeadlineType(headlineFontSizes.size() + 1));
} else if (!textBlock.getText().startsWith("Figure ")
&& PositionUtils.isWithinBodyTextFrame(bodyTextFrame, textBlock)
&& textBlock.getMostPopularWordStyle().equals("bold")
&& !document.getFontStyleCounter().getMostPopular().equals("bold")
&& PositionUtils.getApproxLineCount(textBlock) < 2.9
&& textBlock.getSequences()
.get(0).getTextPositions()
.get(0).getFontSizeInPt() >= textBlock.getMostPopularWordFontSize()) {
PageBlockType headlineType = PageBlockType.getHeadlineType(headlineFontSizes.size() + 1);
headlineClassificationService.classifyHeadline(textBlock, headlineType);
document.setHeadlines(true);
} else if (PositionUtils.isWithinBodyTextFrame(bodyTextFrame, textBlock) && textBlock.getMostPopularWordFontSize() == document.getFontSizeCounter()
.getMostPopular() && textBlock.getMostPopularWordStyle().equals("bold") && !document.getFontStyleCounter().getMostPopular().equals("bold")) {
} else if (PositionUtils.isWithinBodyTextFrame(bodyTextFrame, textBlock)
&& textBlock.getMostPopularWordFontSize() == document.getFontSizeCounter().getMostPopular()
&& textBlock.getMostPopularWordStyle().equals("bold")
&& !document.getFontStyleCounter().getMostPopular().equals("bold")) {
textBlock.setClassification(PageBlockType.PARAGRAPH_BOLD);
} else if (PositionUtils.isWithinBodyTextFrame(bodyTextFrame, textBlock) && textBlock.getMostPopularWordFont()
.equals(document.getFontCounter().getMostPopular()) && textBlock.getMostPopularWordStyle()
.equals(document.getFontStyleCounter().getMostPopular()) && textBlock.getMostPopularWordFontSize() == document.getFontSizeCounter().getMostPopular()) {
} else if (PositionUtils.isWithinBodyTextFrame(bodyTextFrame, textBlock)
&& textBlock.getMostPopularWordFont().equals(document.getFontCounter().getMostPopular())
&& textBlock.getMostPopularWordStyle().equals(document.getFontStyleCounter().getMostPopular())
&& textBlock.getMostPopularWordFontSize() == document.getFontSizeCounter().getMostPopular()) {
textBlock.setClassification(PageBlockType.PARAGRAPH);
} else if (PositionUtils.isWithinBodyTextFrame(bodyTextFrame, textBlock) && textBlock.getMostPopularWordFontSize() == document.getFontSizeCounter()
.getMostPopular() && textBlock.getMostPopularWordStyle().equals("italic") && !document.getFontStyleCounter()
.getMostPopular()
.equals("italic") && PositionUtils.getApproxLineCount(textBlock) < 2.9) {
} else if (PositionUtils.isWithinBodyTextFrame(bodyTextFrame, textBlock)
&& textBlock.getMostPopularWordFontSize() == document.getFontSizeCounter().getMostPopular()
&& textBlock.getMostPopularWordStyle().equals("italic")
&& !document.getFontStyleCounter().getMostPopular().equals("italic")
&& PositionUtils.getApproxLineCount(textBlock) < 2.9) {
textBlock.setClassification(PageBlockType.PARAGRAPH_ITALIC);
} else if (PositionUtils.isWithinBodyTextFrame(bodyTextFrame, textBlock)) {
textBlock.setClassification(PageBlockType.PARAGRAPH_UNKNOWN);
@@ -7,15 +7,14 @@ import static java.util.stream.Collectors.toList;
import java.awt.geom.Rectangle2D;
import java.util.ArrayList;
import java.util.HashMap;
import java.util.HashSet;
import java.util.LinkedList;
import java.util.List;
import java.util.Map;
import java.util.NoSuchElementException;
import java.util.Optional;
import java.util.Set;
import java.util.stream.Collectors;
import com.knecon.fforesight.service.layoutparser.internal.api.data.redaction.LayoutEngine;
import com.knecon.fforesight.service.layoutparser.internal.api.queue.LayoutParsingType;
import com.knecon.fforesight.service.layoutparser.processor.model.AbstractPageBlock;
import com.knecon.fforesight.service.layoutparser.processor.model.ClassificationDocument;
@@ -32,9 +31,10 @@ import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.He
import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.Image;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.Page;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.Paragraph;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.Section;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.AbstractSemanticNode;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.textblock.AtomicTextBlock;
import com.knecon.fforesight.service.layoutparser.processor.model.image.ClassifiedImage;
import com.knecon.fforesight.service.layoutparser.processor.model.outline.TableOfContentItem;
import com.knecon.fforesight.service.layoutparser.processor.model.text.TextPageBlock;
import com.knecon.fforesight.service.layoutparser.processor.utils.IdBuilder;
import com.knecon.fforesight.service.layoutparser.processor.utils.TextPositionOperations;
@@ -45,18 +45,23 @@ import lombok.Builder;
import lombok.Getter;
import lombok.experimental.FieldDefaults;
import lombok.experimental.UtilityClass;
import lombok.extern.slf4j.Slf4j;
@UtilityClass
@Slf4j
public class DocumentGraphFactory {
public Document buildDocumentGraph(LayoutParsingType layoutParsingType, ClassificationDocument document) {
Document documentGraph = new Document();
documentGraph.setVisualizations(document.getVisualizations());
Context context = new Context(documentGraph);
document.getPages().forEach(context::buildAndAddPageWithCounter);
document.getSections().stream().flatMap(section -> section.getImages().stream()).forEach(image -> context.getImages().add(image));
addSections(layoutParsingType, document, context);
document.getPages()
.forEach(context::buildAndAddPageWithCounter);
addSections(layoutParsingType, document, context, documentGraph);
addHeaderAndFooterToEachPage(document, context);
documentGraph.setNumberOfPages(context.pages.size());
@@ -67,20 +72,34 @@ public class DocumentGraphFactory {
}
private void addSections(LayoutParsingType layoutParsingType, ClassificationDocument document, Context context) {
private void addSections(LayoutParsingType layoutParsingType, ClassificationDocument classificationDocument, Context context, Document document) {
document.getSections().forEach(section -> SectionNodeFactory.addSection(layoutParsingType, null, section.getNonEmptyPageBlocks(), section.getImages(), context));
for (TableOfContentItem tocItem : classificationDocument.getTableOfContents()) {
var parent = tocItem.getParent() == null ? null : tocItem.getParent().getSection();
Optional<AbstractSemanticNode> section = SectionNodeFactory.addSection(layoutParsingType,
parent,
tocItem.getChildren().isEmpty(),
tocItem.getNonEmptySectionBlocks(),
tocItem.getImages(),
context,
document);
tocItem.setSection(section.orElse(null));
}
}
public void addParagraphOrHeadline(GenericSemanticNode parentNode, TextPageBlock originalTextBlock, Context context, List<TextPageBlock> textBlocksToMerge) {
public void addParagraphOrHeadline(GenericSemanticNode parentNode,
TextPageBlock originalTextBlock,
Context context,
List<TextPageBlock> textBlocksToMerge,
LayoutParsingType layoutParsingType) {
Page page = context.getPage(originalTextBlock.getPage());
GenericSemanticNode node;
if (originalTextBlock.isHeadline()) {
node = Headline.builder().documentTree(context.getDocumentTree()).build();
} else if (originalTextBlock.isToDuplicate()) {
} else if (originalTextBlock.isToDuplicate() && layoutParsingType.equals(LayoutParsingType.REDACT_MANAGER)) {
node = DuplicatedParagraph.builder().documentTree(context.getDocumentTree()).build();
} else {
node = Paragraph.builder().documentTree(context.getDocumentTree()).build();
@@ -96,36 +115,43 @@ public class DocumentGraphFactory {
if (node instanceof DuplicatedParagraph duplicatedParagraph) {
AtomicTextBlock unsortedTextBlock = context.textBlockFactory.buildAtomicTextBlock(textBlocks.stream()
.flatMap(tb -> tb.getSequences().stream())
.collect(Collectors.toList()), node, context, page);
.flatMap(tb -> tb.getSequences()
.stream())
.collect(Collectors.toList()), node, context, page);
duplicatedParagraph.setUnsortedLeafTextBlock(unsortedTextBlock);
}
List<Integer> treeId = context.documentTree.createNewChildEntryAndReturnId(parentNode, node);
node.setLeafTextBlock(textBlock);
node.setTreeId(treeId);
node.getEngines().addAll(originalTextBlock.getEngines());
}
public void addImage(Section section, ClassifiedImage image, Context context) {
public void addImage(GenericSemanticNode parent, ClassifiedImage image, Context context) {
Image imageNode = createImage(image, context);
List<Integer> treeId = context.getDocumentTree().createNewChildEntryAndReturnId(parent, imageNode);
imageNode.setTreeId(treeId);
imageNode.setLeafTextBlock(context.textBlockFactory.emptyTextBlock(parent, context, context.getPage(image.getPage())));
}
private Image createImage(ClassifiedImage image, Context context) {
Rectangle2D position = image.getPosition();
Page page = context.getPage(image.getPage());
var imageBuilder = Image.builder()
Image imageNode = Image.builder()
.id(IdBuilder.buildId(Set.of(page), List.of(position)))
.imageType(image.getImageType())
.position(position)
.transparent(image.isHasTransparency())
.page(page)
.documentTree(context.getDocumentTree());
if (image.isSourceByAi()) {
imageBuilder.engines(new HashSet<>(Set.of(LayoutEngine.AI)));
}
Image imageNode = imageBuilder.build();
.representationHash(image.getRepresentation())
.documentTree(context.getDocumentTree())
.build();
page.getMainBody().add(imageNode);
List<Integer> treeId = context.getDocumentTree().createNewChildEntryAndReturnId(section, imageNode);
imageNode.setTreeId(treeId);
return imageNode;
}
@@ -165,10 +191,7 @@ public class DocumentGraphFactory {
Page page = context.getPage(textBlocks.get(0).getPage());
Footer footer = Footer.builder().documentTree(context.getDocumentTree()).build();
AtomicTextBlock textBlock = context.textBlockFactory.buildAtomicTextBlock(TextPositionOperations.mergeAndSortTextPositionSequenceByYThenX(textBlocks),
footer,
context,
page);
AtomicTextBlock textBlock = context.textBlockFactory.buildAtomicTextBlock(TextPositionOperations.mergeTextPositionSequence(textBlocks), footer, context, page);
List<Integer> tocId = context.getDocumentTree().createNewMainEntryAndReturnId(footer);
footer.setTreeId(tocId);
footer.setLeafTextBlock(textBlock);
@@ -180,7 +203,7 @@ public class DocumentGraphFactory {
Page page = context.getPage(textBlocks.get(0).getPage());
Header header = Header.builder().documentTree(context.getDocumentTree()).build();
AtomicTextBlock textBlock = context.textBlockFactory.buildAtomicTextBlock(TextPositionOperations.mergeAndSortTextPositionSequenceByYThenX(textBlocks), header, 0, page);
AtomicTextBlock textBlock = context.textBlockFactory.buildAtomicTextBlock(TextPositionOperations.mergeTextPositionSequence(textBlocks), header, 0, page);
List<Integer> tocId = context.getDocumentTree().createNewMainEntryAndReturnId(header);
header.setTreeId(tocId);
header.setLeafTextBlock(textBlock);
@@ -220,7 +243,7 @@ public class DocumentGraphFactory {
DocumentTree documentTree;
Map<Page, Integer> pages;
List<Section> sections;
List<AbstractSemanticNode> sections;
List<ClassifiedImage> images;
TextBlockFactory textBlockFactory;
@@ -257,8 +280,7 @@ public class DocumentGraphFactory {
return pages.keySet()
.stream()
.filter(page -> page.getNumber() == pageIndex)
.findFirst()
.orElseThrow(() -> new NoSuchElementException(format("ClassificationPage with number %d not found", pageIndex)));
.findFirst().orElseThrow(() -> new NoSuchElementException(format("ClassificationPage with number %d not found", pageIndex)));
}
}
@@ -2,16 +2,17 @@ package com.knecon.fforesight.service.layoutparser.processor.services.factory;
import java.awt.geom.AffineTransform;
import java.awt.geom.Rectangle2D;
import java.util.Collection;
import java.util.Collections;
import java.util.LinkedList;
import java.util.List;
import java.util.Locale;
import java.util.Objects;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.Boundary;
import com.knecon.fforesight.service.layoutparser.processor.model.text.RedTextPosition;
import com.knecon.fforesight.service.layoutparser.processor.model.text.TextDirection;
import com.knecon.fforesight.service.layoutparser.processor.model.text.TextPositionSequence;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.Boundary;
import lombok.experimental.UtilityClass;
@@ -29,19 +30,22 @@ public class SearchTextWithTextPositionFactory {
public SearchTextWithTextPositionDto buildSearchTextToTextPositionDto(List<TextPositionSequence> sequences) {
if (sequences.isEmpty() || sequences.stream().allMatch(sequence -> sequence.getTextPositions().isEmpty())) {
if (sequences.isEmpty() || sequences.stream()
.allMatch(sequence -> sequence.getTextPositions().isEmpty())) {
return SearchTextWithTextPositionDto.empty();
}
Context context = new Context();
RedTextPosition currentTextPosition = sequences.get(0).getTextPositions().get(0);
RedTextPosition previousTextPosition = RedTextPosition.builder().unicode(" ").position(currentTextPosition.getPosition()).build();
RedTextPosition currentTextPosition = sequences.get(0).getTextPositions()
.get(0);
RedTextPosition previousTextPosition = RedTextPosition.builder().unicode(" ").bBoxDirAdj(currentTextPosition.getBBoxDirAdj()).build();
for (TextPositionSequence word : sequences) {
for (int i = 0; i < word.getTextPositions().size(); ++i) {
currentTextPosition = word.getTextPositions().get(i);
currentTextPosition = word.getTextPositions()
.get(i);
if (isLineBreak(currentTextPosition, previousTextPosition)) {
removeHyphenLinebreaks(context);
context.lineBreaksStringIdx.add(context.stringIdx);
@@ -57,18 +61,21 @@ public class SearchTextWithTextPositionFactory {
++context.positionIdx;
}
previousTextPosition = RedTextPosition.builder().unicode(" ").position(previousTextPosition.getPosition()).build();
previousTextPosition = RedTextPosition.builder().unicode(" ").bBoxDirAdj(previousTextPosition.getBBoxDirAdj()).build();
context.stringBuilder.append(" ");
context.stringIdxToPositionIdx.add(context.positionIdx);
++context.stringIdx;
}
assert context.stringBuilder.length() == context.stringIdxToPositionIdx.size();
List<Rectangle2D> positions = sequences.stream()
.flatMap(sequence -> sequence.getTextPositions().stream().map(textPosition -> mapRedTextPositionToInitialUserSpace(textPosition, sequence)))
.map(TextPositionSequence::getTextPositions)
.flatMap(Collection::stream)
.map(RedTextPosition::getBBoxInitialUserSpace)
.toList();
assert context.stringBuilder.length() == context.stringIdxToPositionIdx.size();
return SearchTextWithTextPositionDto.builder()
.searchText(context.stringBuilder.toString())
.lineBreaks(context.lineBreaksStringIdx)
@@ -110,6 +117,7 @@ public class SearchTextWithTextPositionFactory {
return context.stringIdx - context.lastHyphenIdx < MAX_HYPHEN_LINEBREAK_DISTANCE;
}
private static List<Boundary> mergeToBoundaries(List<Integer> integers) {
if (integers.isEmpty()) {
@@ -125,8 +133,9 @@ public class SearchTextWithTextPositionFactory {
}
end = current + 1;
}
if (boundaries.isEmpty())
if (boundaries.isEmpty()) {
boundaries.add(new Boundary(start, end));
}
return boundaries;
}
@@ -138,6 +147,7 @@ public class SearchTextWithTextPositionFactory {
}
}
private boolean isLineBreak(RedTextPosition currentTextPosition, RedTextPosition previousTextPosition) {
return Objects.equals(currentTextPosition.getUnicode(), "\n") || isDeltaYLargerThanTextHeight(currentTextPosition, previousTextPosition);
@@ -150,7 +160,7 @@ public class SearchTextWithTextPositionFactory {
return false;
}
float deltaY = Math.abs(currentPosition.getYDirAdj() - previousPosition.getYDirAdj());
double deltaY = Math.abs(currentPosition.getYDirAdj() - previousPosition.getYDirAdj());
return deltaY >= currentPosition.getHeightDir();
}
@@ -164,20 +174,20 @@ public class SearchTextWithTextPositionFactory {
private boolean isHyphen(String unicodeCharacter) {
return Objects.equals(unicodeCharacter, "-") || //
Objects.equals(unicodeCharacter, "~") || //
Objects.equals(unicodeCharacter, "‐") || //
Objects.equals(unicodeCharacter, "‒") || //
Objects.equals(unicodeCharacter, "⁻") || //
Objects.equals(unicodeCharacter, "−") || //
Objects.equals(unicodeCharacter, "﹣") || //
Objects.equals(unicodeCharacter, "゠") || //
Objects.equals(unicodeCharacter, "⁓") || //
Objects.equals(unicodeCharacter, "‑") || //
Objects.equals(unicodeCharacter, "\u00AD");
Objects.equals(unicodeCharacter, "~") || //
Objects.equals(unicodeCharacter, "‐") || //
Objects.equals(unicodeCharacter, "‒") || //
Objects.equals(unicodeCharacter, "⁻") || //
Objects.equals(unicodeCharacter, "−") || //
Objects.equals(unicodeCharacter, "﹣") || //
Objects.equals(unicodeCharacter, "゠") || //
Objects.equals(unicodeCharacter, "⁓") || //
Objects.equals(unicodeCharacter, "‑") || //
Objects.equals(unicodeCharacter, "\u00AD");
}
private Rectangle2D mapRedTextPositionToInitialUserSpace(RedTextPosition textPosition, TextPositionSequence sequence) {
public Rectangle2D mapRedTextPositionToInitialUserSpace(RedTextPosition textPosition, TextPositionSequence sequence) {
float textHeight = sequence.getTextHeight() + HEIGHT_PADDING;
Rectangle2D rectangle2D = new Rectangle2D.Double(textPosition.getXDirAdj(),
@@ -9,13 +9,17 @@ import java.util.HashSet;
import java.util.LinkedList;
import java.util.List;
import java.util.Map;
import java.util.Optional;
import java.util.Set;
import com.knecon.fforesight.service.layoutparser.internal.api.queue.LayoutParsingType;
import com.knecon.fforesight.service.layoutparser.processor.model.AbstractPageBlock;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.AbstractSemanticNode;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.Document;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.GenericSemanticNode;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.Page;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.Section;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.SuperSection;
import com.knecon.fforesight.service.layoutparser.processor.model.image.ClassifiedImage;
import com.knecon.fforesight.service.layoutparser.processor.model.table.TablePageBlock;
import com.knecon.fforesight.service.layoutparser.processor.model.text.TextPageBlock;
@@ -26,35 +30,68 @@ import lombok.experimental.UtilityClass;
@UtilityClass
public class SectionNodeFactory {
public void addSection(LayoutParsingType layoutParsingType,
GenericSemanticNode parentNode,
List<AbstractPageBlock> pageBlocks,
List<ClassifiedImage> images,
DocumentGraphFactory.Context context) {
public Optional<AbstractSemanticNode> addSection(LayoutParsingType layoutParsingType,
GenericSemanticNode parentNode,
boolean isLeaf,
List<AbstractPageBlock> pageBlocks,
List<ClassifiedImage> images,
DocumentGraphFactory.Context context,
Document document) {
// This is for the case where we have images on a page without any text/footer/header.
// The pageBlocks list is empty, but we still need to add those images to the document.
if (!images.isEmpty() && pageBlocks.isEmpty()) {
images.stream()
.distinct()
.forEach(image -> DocumentGraphFactory.addImage(document, image, context));
return Optional.empty();
}
if (pageBlocks.isEmpty()) {
return;
return Optional.empty();
}
Map<Integer, List<AbstractPageBlock>> blocksPerPage = pageBlocks.stream()
.collect(groupingBy(AbstractPageBlock::getPage));
AbstractSemanticNode section;
boolean containsTablesAndTextBlocks = containsTablesAndTextBlocks(pageBlocks);
if (isLeaf && !containsTablesAndTextBlocks) {
section = Section.builder().documentTree(context.getDocumentTree()).build();
} else {
section = SuperSection.builder().documentTree(context.getDocumentTree()).build();
}
Map<Integer, List<AbstractPageBlock>> blocksPerPage = pageBlocks.stream().collect(groupingBy(AbstractPageBlock::getPage));
Section section = Section.builder().documentTree(context.getDocumentTree()).build();
context.getSections().add(section);
blocksPerPage.keySet().forEach(pageNumber -> addSectionNodeToPageNode(context, section, pageNumber));
blocksPerPage.keySet()
.forEach(pageNumber -> addSectionNodeToPageNode(context, section, pageNumber));
section.setTreeId(getTreeId(parentNode, context, section));
addFirstHeadlineDirectlyToSection(layoutParsingType, pageBlocks, context, section);
if (containsTablesAndTextBlocks(pageBlocks)) {
splitPageBlocksIntoSubSections(pageBlocks).forEach(subSectionPageBlocks -> addSection(layoutParsingType, section, subSectionPageBlocks, emptyList(), context));
addFirstHeadlineDirectlyToSection(layoutParsingType, pageBlocks, context, section, document);
if (containsTablesAndTextBlocks) {
splitPageBlocksIntoSubSections(pageBlocks).forEach(subSectionPageBlocks -> addSection(layoutParsingType,
section,
true,
subSectionPageBlocks,
emptyList(),
context,
document));
} else if (!isLeaf) {
addSection(layoutParsingType, section, true, pageBlocks, emptyList(), context, document);
} else {
addTablesAndParagraphsAndHeadlinesToSection(layoutParsingType, pageBlocks, context, section);
addTablesAndParagraphsAndHeadlinesToSection(layoutParsingType, pageBlocks, context, section, document);
}
images.stream().distinct().forEach(image -> DocumentGraphFactory.addImage(section, image, context));
images.stream()
.distinct()
.forEach(image -> DocumentGraphFactory.addImage(section, image, context));
return Optional.of(section);
}
private List<Integer> getTreeId(GenericSemanticNode parentNode, DocumentGraphFactory.Context context, Section section) {
private List<Integer> getTreeId(GenericSemanticNode parentNode, DocumentGraphFactory.Context context, AbstractSemanticNode section) {
if (parentNode == null) {
return context.getDocumentTree().createNewMainEntryAndReturnId(section);
@@ -64,10 +101,14 @@ public class SectionNodeFactory {
}
private void addFirstHeadlineDirectlyToSection(LayoutParsingType layoutParsingType, List<AbstractPageBlock> pageBlocks, DocumentGraphFactory.Context context, Section section) {
private void addFirstHeadlineDirectlyToSection(LayoutParsingType layoutParsingType,
List<AbstractPageBlock> pageBlocks,
DocumentGraphFactory.Context context,
AbstractSemanticNode section,
Document document) {
if (pageBlocks.get(0).isHeadline()) {
addTablesAndParagraphsAndHeadlinesToSection(layoutParsingType, List.of(pageBlocks.get(0)), context, section);
addTablesAndParagraphsAndHeadlinesToSection(layoutParsingType, List.of(pageBlocks.get(0)), context, section, document);
pageBlocks.remove(0);
}
}
@@ -76,7 +117,8 @@ public class SectionNodeFactory {
private void addTablesAndParagraphsAndHeadlinesToSection(LayoutParsingType layoutParsingType,
List<AbstractPageBlock> pageBlocks,
DocumentGraphFactory.Context context,
Section section) {
AbstractSemanticNode section,
Document document) {
Set<AbstractPageBlock> alreadyMerged = new HashSet<>();
List<AbstractPageBlock> remainingBlocks = new LinkedList<>(pageBlocks);
@@ -91,21 +133,21 @@ public class SectionNodeFactory {
if (abstractPageBlock instanceof TextPageBlock) {
switch (layoutParsingType) {
case CLARIFYND, CLARIFYND_PARAGRAPH_DEBUG -> {
case REDACT_MANAGER, DOCUMINE, CLARIFYND, CLARIFYND_PARAGRAPH_DEBUG, REDACT_MANAGER_WITHOUT_DUPLICATE_PARAGRAPH -> {
alreadyMerged.add(abstractPageBlock);
remainingBlocks.remove(abstractPageBlock);
DocumentGraphFactory.addParagraphOrHeadline(section, (TextPageBlock) abstractPageBlock, context, new ArrayList<>());
DocumentGraphFactory.addParagraphOrHeadline(section, (TextPageBlock) abstractPageBlock, context, new ArrayList<>(), layoutParsingType);
}
default -> {
List<TextPageBlock> textBlocks = findTextBlocksWithSameClassificationAndAlignsY((TextPageBlock) abstractPageBlock, remainingBlocks);
alreadyMerged.addAll(textBlocks);
DocumentGraphFactory.addParagraphOrHeadline(section, (TextPageBlock) abstractPageBlock, context, textBlocks);
DocumentGraphFactory.addParagraphOrHeadline(section, (TextPageBlock) abstractPageBlock, context, textBlocks, layoutParsingType);
}
}
} else if (abstractPageBlock instanceof TablePageBlock tablePageBlock) {
List<TablePageBlock> tablesToMerge = TableMergingUtility.findConsecutiveTablesWithSameColCountAndSameHeaders(tablePageBlock, remainingBlocks);
alreadyMerged.addAll(tablesToMerge);
TableNodeFactory.addTable(layoutParsingType, section, tablesToMerge, context);
TableNodeFactory.addTable(layoutParsingType, section, tablesToMerge, context, document);
} else {
throw new RuntimeException(format("Unhandled AbstractPageBlockType %s!", abstractPageBlock.getClass()));
}
@@ -115,7 +157,9 @@ public class SectionNodeFactory {
private boolean containsTablesAndTextBlocks(List<AbstractPageBlock> pageBlocks) {
return pageBlocks.stream().anyMatch(pageBlock -> pageBlock instanceof TablePageBlock) && pageBlocks.stream().anyMatch(pageBlock -> pageBlock instanceof TextPageBlock);
return pageBlocks.stream()
.anyMatch(pageBlock -> pageBlock instanceof TablePageBlock) && pageBlocks.stream()
.anyMatch(pageBlock -> pageBlock instanceof TextPageBlock);
}
@@ -131,7 +175,9 @@ public class SectionNodeFactory {
List<List<AbstractPageBlock>> splitList = splitIntoCoherentList(pageBlocks);
movePrecedingHeadlineToTableList(splitList);
return splitList.stream().filter(list -> !list.isEmpty()).toList();
return splitList.stream()
.filter(list -> !list.isEmpty())
.toList();
}
@@ -152,7 +198,8 @@ public class SectionNodeFactory {
private boolean listIsTablesOnly(List<AbstractPageBlock> abstractPageBlocks) {
return abstractPageBlocks.stream().allMatch(abstractPageBlock -> abstractPageBlock instanceof TablePageBlock);
return abstractPageBlocks.stream()
.allMatch(abstractPageBlock -> abstractPageBlock instanceof TablePageBlock);
}
@@ -195,7 +242,7 @@ public class SectionNodeFactory {
}
private void addSectionNodeToPageNode(DocumentGraphFactory.Context context, Section section, Integer pageNumber) {
private void addSectionNodeToPageNode(DocumentGraphFactory.Context context, AbstractSemanticNode section, Integer pageNumber) {
Page page = context.getPage(pageNumber);
page.getMainBody().add(section);
@@ -9,6 +9,7 @@ import java.util.stream.Collectors;
import com.knecon.fforesight.service.layoutparser.internal.api.queue.LayoutParsingType;
import com.knecon.fforesight.service.layoutparser.processor.model.AbstractPageBlock;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.Document;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.GenericSemanticNode;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.Page;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.SemanticNode;
@@ -28,11 +29,21 @@ public class TableNodeFactory {
public final double TABLE_CELL_MERGE_CONTENTS_SIZE_THRESHOLD = 0.05;
public void addTable(LayoutParsingType layoutParsingType, GenericSemanticNode parentNode, List<TablePageBlock> tablesToMerge, DocumentGraphFactory.Context context) {
public void addTable(LayoutParsingType layoutParsingType,
GenericSemanticNode parentNode,
List<TablePageBlock> tablesToMerge,
DocumentGraphFactory.Context context,
Document document) {
setPageNumberInCells(tablesToMerge);
Set<Page> pages = tablesToMerge.stream().map(AbstractPageBlock::getPage).map(context::getPage).collect(Collectors.toSet());
List<List<Cell>> mergedRows = tablesToMerge.stream().map(TablePageBlock::getRows).flatMap(Collection::stream).toList();
Set<Page> pages = tablesToMerge.stream()
.map(AbstractPageBlock::getPage)
.map(context::getPage)
.collect(Collectors.toSet());
List<List<Cell>> mergedRows = tablesToMerge.stream()
.map(TablePageBlock::getRows)
.flatMap(Collection::stream)
.toList();
Table table = Table.builder()
.documentTree(context.getDocumentTree())
@@ -44,7 +55,7 @@ public class TableNodeFactory {
List<Integer> treeId = context.getDocumentTree().createNewChildEntryAndReturnId(parentNode, table);
table.setTreeId(treeId);
addTableCells(layoutParsingType, mergedRows, table, context);
addTableCells(layoutParsingType, mergedRows, table, context, document);
ifTableHasNoHeadersSetFirstRowAsHeaders(table);
}
@@ -64,7 +75,8 @@ public class TableNodeFactory {
private void setPageNumberInTextBlocksWithPageNumberSetTo0(TablePageBlock table, Cell cell) {
cell.getTextBlocks().stream()//
cell.getTextBlocks()
.stream()//
.filter(tb -> tb.getPage() == 0)//
.forEach(tb -> tb.setPage(table.getPage()));
}
@@ -83,28 +95,49 @@ public class TableNodeFactory {
private void ifTableHasNoHeadersSetFirstRowAsHeaders(Table table) {
if (table.streamHeaders().findAny().isEmpty()) {
table.streamRow(0).forEach(tableCellNode -> tableCellNode.setHeader(true));
if (table.streamHeaders()
.findAny().isEmpty()) {
table.streamRow(0)
.forEach(tableCellNode -> tableCellNode.setHeader(true));
}
}
private void addTableCells(LayoutParsingType layoutParsingType, List<List<Cell>> rows, Table table, DocumentGraphFactory.Context context) {
private void addTableCells(LayoutParsingType layoutParsingType, List<List<Cell>> rows, Table table, DocumentGraphFactory.Context context, Document document) {
for (int rowIndex = 0; rowIndex < rows.size(); rowIndex++) {
for (int colIndex = 0; colIndex < rows.get(rowIndex).size(); colIndex++) {
addTableCell(layoutParsingType, rows.get(rowIndex).get(colIndex), rowIndex, colIndex, table, context);
addTableCell(layoutParsingType,
rows.get(rowIndex)
.get(colIndex),
rowIndex,
colIndex,
table,
context,
document);
}
}
}
@SuppressWarnings("PMD.UnusedPrivateMethod") // PMD actually flags this wrong
private void addTableCell(LayoutParsingType layoutParsingType, Cell cell, int rowIndex, int colIndex, Table tableNode, DocumentGraphFactory.Context context) {
private void addTableCell(LayoutParsingType layoutParsingType,
Cell cell,
int rowIndex,
int colIndex,
Table tableNode,
DocumentGraphFactory.Context context,
Document document) {
Page page = context.getPage(cell.getPageNumber());
TableCell tableCell = TableCell.builder().documentTree(context.getDocumentTree()).row(rowIndex).col(colIndex).header(cell.isHeaderCell()).bBox(cell.getBounds2D()).build();
TableCell tableCell = TableCell.builder()
.documentTree(context.getDocumentTree())
.row(rowIndex)
.col(colIndex)
.header(cell.isHeaderCell())
.bBox(cell.getBBoxInitialUserSpace())
.build();
page.getMainBody().add(tableCell);
List<Integer> treeId = context.getDocumentTree().createNewTableChildEntryAndReturnId(tableNode, tableCell);
@@ -114,16 +147,28 @@ public class TableNodeFactory {
if (cell.getTextBlocks().isEmpty()) {
tableCell.setLeafTextBlock(context.getTextBlockFactory().emptyTextBlock(tableNode, context, page));
} else if (cell.getTextBlocks().size() == 1) {
textBlock = context.getTextBlockFactory().buildAtomicTextBlock(cell.getTextBlocks().get(0).getSequences(), tableCell, context, page);
textBlock = context.getTextBlockFactory()
.buildAtomicTextBlock(cell.getTextBlocks()
.get(0).getSequences(), tableCell, context, page);
tableCell.setLeafTextBlock(textBlock);
} else if (firstTextBlockIsHeadline(cell)) {
SectionNodeFactory.addSection(layoutParsingType, tableCell, cell.getTextBlocks().stream().map(tb -> (AbstractPageBlock) tb).toList(), emptyList(), context);
SectionNodeFactory.addSection(layoutParsingType,
tableCell,
true,
cell.getTextBlocks()
.stream()
.map(tb -> (AbstractPageBlock) tb)
.collect(Collectors.toList()),
emptyList(),
context,
document);
} else if (cellAreaIsSmallerThanPageAreaTimesThreshold(cell, page)) {
List<TextPositionSequence> sequences = TextPositionOperations.mergeAndSortTextPositionSequenceByYThenX(cell.getTextBlocks());
textBlock = context.getTextBlockFactory().buildAtomicTextBlock(sequences, tableCell, context, page);
tableCell.setLeafTextBlock(textBlock);
} else {
cell.getTextBlocks().forEach(tb -> DocumentGraphFactory.addParagraphOrHeadline(tableCell, tb, context, emptyList()));
cell.getTextBlocks()
.forEach(tb -> DocumentGraphFactory.addParagraphOrHeadline(tableCell, tb, context, emptyList(), layoutParsingType));
}
}
@@ -136,7 +181,8 @@ public class TableNodeFactory {
private boolean firstTextBlockIsHeadline(Cell cell) {
return cell.getTextBlocks().get(0).isHeadline();
return cell.getTextBlocks()
.get(0).isHeadline();
}
}
@@ -0,0 +1,162 @@
package com.knecon.fforesight.service.layoutparser.processor.services.graphics;
import java.awt.geom.AffineTransform;
import java.awt.geom.Point2D;
import java.awt.geom.Rectangle2D;
import java.util.List;
import java.util.Optional;
public class Box {
public double x1;
public double y1;
public double x2;
public double y2;
public Box(double x1, double y1, double x2, double y2) {
this.x1 = x1;
this.y1 = y1;
this.x2 = x2;
this.y2 = y2;
}
public Box(Rectangle2D rectangle2D) {
this.x1 = rectangle2D.getMinX();
this.y1 = rectangle2D.getMinY();
this.x2 = rectangle2D.getMaxX();
this.y2 = rectangle2D.getMaxY();
}
public double width() {
return x2 - x1;
}
public double height() {
return y2 - y1;
}
public double xCenter() {
return (x2 + x1) / 2;
}
public double yCenter() {
return (y2 + y1) / 2;
}
public double area() {
return width() * height();
}
public Box scale(double scale) {
return new Box(x1 * scale, y1 * scale, x2 * scale, y2 * scale);
}
public boolean horizontallyAligned(Box other, double tol) {
return !(other.x1 - tol > x2 || other.x2 + tol < x1);
}
public double yDistanceTo(Box other) {
return Math.min(Math.abs(other.y1 - y2), Math.abs(y2 - other.y1));
}
public boolean intersects(Box other, double tol) {
return !((x2 < other.x1 - tol) || (x1 > other.x2 + tol) || (y2 < other.y1 - tol) || (y1 > other.y2 + tol));
}
public boolean intersectsAndOver(Box other, double tol) {
return (!((x2 < other.x1 - tol) || (x1 > other.x2 + tol) || (y2 < other.y1 - tol) || (y1 > other.y2 + tol))) && other.y1 > y1;
}
public boolean intersectsCenter(Box other, double tol) {
return !((x2 < other.xCenter() - tol) || (x1 > other.xCenter() + tol) || (y2 < other.yCenter() - tol) || (y1 > other.yCenter() + tol));
}
public Optional<Box> intersectRegion(Box other, double tol) {
if (!intersects(other, tol)) {
return Optional.empty();
} else {
var overlapX1 = Math.max(x1, other.x1);
var overlapY1 = Math.max(y1, other.y1);
var overlapX2 = Math.min(x2, other.x2);
var overlapY2 = Math.min(y2, other.y2);
return Optional.of(new Box(overlapX1, overlapY1, overlapX2, overlapY2));
}
}
public double intersectArea(Box other, double tol) {
return intersectRegion(other, tol).map(Box::area).orElse(0d);
}
public boolean intersectsAny(List<Box> others, double tol) {
return others.stream().anyMatch(other -> intersects(other, tol));
}
public boolean intersectsAnyAndOver(List<Box> others, double tol) {
return others.stream().anyMatch(other -> intersectsAndOver(other, tol));
}
public boolean intersectsCenter(List<Box> others, double tol) {
return others.stream().anyMatch(other -> intersectsCenter(other, tol));
}
public boolean contains(Box other, double tol) {
return (x1 <= other.x1 + tol) && (y1 <= other.y1 + tol) && (x2 >= other.x2 - tol) && (y2 >= other.y2 - tol);
}
public Box container(Box other) {
var minX = Math.min(x1, other.x1);
var minY = Math.min(y1, other.y1);
var maxX = Math.max(x2, other.x2);
var maxY = Math.max(y2, other.y2);
return new Box(minX, minY, maxX, maxY);
}
public Box transform(AffineTransform affineTransform) {
Point2D point = affineTransform.transform(new Point2D.Double(x1, y1), null);
Point2D point2 = affineTransform.transform(new Point2D.Double(x2, y2), null);
return new Box(Math.min(point.getX(), point2.getX()), Math.min(point.getY(), point2.getY()), Math.max(point.getX(), point2.getX()), Math.max(point.getY(), point2.getY()));
}
}
@@ -0,0 +1,51 @@
package com.knecon.fforesight.service.layoutparser.processor.services.graphics;
import java.util.HashSet;
import java.util.LinkedList;
import java.util.Queue;
import java.util.Set;
public class DistinctQueue<T> {
private Queue<T> queue;
private Set<T> set;
public DistinctQueue() {
queue = new LinkedList<>();
set = new HashSet<>();
}
public void enqueue(T element) {
if (!set.contains(element)) {
queue.add(element);
set.add(element);
}
}
public T dequeue() {
T element = queue.poll();
if (element != null) {
set.remove(element);
}
return element;
}
public boolean isEmpty() {
return queue.isEmpty();
}
public int size() {
return queue.size();
}
// Other methods as needed
}
@@ -0,0 +1,137 @@
package com.knecon.fforesight.service.layoutparser.processor.services.graphics;
import java.awt.geom.AffineTransform;
import java.awt.geom.Rectangle2D;
import java.awt.image.BufferedImage;
import java.awt.image.DataBufferByte;
import java.util.ArrayList;
import java.util.List;
import java.util.stream.Collectors;
import org.apache.pdfbox.pdmodel.PDDocument;
import org.apache.pdfbox.rendering.ImageType;
import org.apache.pdfbox.rendering.PDFRenderer;
import org.springframework.stereotype.Service;
import com.knecon.fforesight.service.layoutparser.processor.utils.CoordinateTransforms;
import com.knecon.fforesight.service.layoutparser.processor.utils.PageInformation;
import lombok.SneakyThrows;
@Service
public class FindGraphicsRaster {
// Pixels that are lighter then this threshold are ignored
private final static int THRESHOLD = 240;
// DPI to render the image at, in practice sub-72 seems to risk pixels being lost
private final static int DPI = 72;
@SneakyThrows
public List<Box> findCCBoundingBoxes(PDDocument doc, List<Rectangle2D> remove, PageInformation pageInformation) {
var renderer = new PDFRenderer(doc);
var img = renderer.renderImageWithDPI(pageInformation.number() - 1, DPI, ImageType.GRAY);
var imageCtm = CoordinateTransforms.calculateImageCoordsToInitialUserSpaceCoords(pageInformation, CoordinateTransforms.calculateScalingFactor(pageInformation, img.getWidth()));
return findCCBoundingBoxes(img, remove, THRESHOLD, DPI / 72, imageCtm);
}
@SneakyThrows
private List<Box> findCCBoundingBoxes(BufferedImage image, List<Rectangle2D> remove, int grayScaleTresh, int rescale, AffineTransform imageCTM) {
var inverseCTM = imageCTM.createInverse();
var h = image.getHeight();
var w = image.getWidth();
var pixels = new int[w * h];
image.getRaster().getPixels(0, 0, w, h, pixels);
remove.stream().map(rect -> inverseCTM.createTransformedShape(rect).getBounds2D()).forEach(box -> {
for (int y = (int) Math.floor(box.getMinY() / rescale); y <= (int) Math.min(Math.ceil(box.getMaxY() / rescale), h); y++) {
for (int x = (int) Math.floor(box.getMinX() / rescale); x <= (int) Math.min(Math.ceil(box.getMaxX() / rescale), w); x++) {
pixels[w * y + x] = grayScaleTresh;
}
}
});
// var image2 = createImageFromMatrix(pixels, w, h);
return findCCBoundingBoxes(pixels, w, h, grayScaleTresh, rescale, imageCTM);
}
public static BufferedImage createImageFromMatrix(int[] matrix, int width, int height) {
BufferedImage image = new BufferedImage(width, height, BufferedImage.TYPE_BYTE_GRAY);
byte[] pixelData = ((DataBufferByte) image.getRaster().getDataBuffer()).getData();
for (int y = 0; y < height; y++) {
for (int x = 0; x < width; x++) {
int index = y * width + x;
int pixel = matrix[index]; // Assuming each element in the matrix represents a pixel color
pixelData[index] = (byte) pixel;
}
}
return image;
}
private List<Box> findCCBoundingBoxes(int[] pixels, int w, int h, int pixThreshold, int rescale, AffineTransform imageCTM) {
DistinctQueue<Integer> pixelsToExplore = new DistinctQueue<>();
var boundingBoxes = new ArrayList<Box>();
for (int y = 0; y < h; y++) {
for (int x = 0; x < w; x++) {
var pixelIndex = x + y * w;
if (pixels[pixelIndex] < pixThreshold) {
var minX = x;
var maxX = x;
var minY = y;
var maxY = y;
pixelsToExplore.enqueue(pixelIndex);
while (!pixelsToExplore.isEmpty()) {
var currentPixel = pixelsToExplore.dequeue();
if (currentPixel > w) {
var lowerPixel = currentPixel - w;
if (pixels[lowerPixel] < pixThreshold) {
pixelsToExplore.enqueue(currentPixel - w);
minY = Math.min(minY, lowerPixel / w);
}
}
if (currentPixel < pixels.length - w) {
var upperPixel = currentPixel + w;
if (pixels[upperPixel] < pixThreshold) {
pixelsToExplore.enqueue(upperPixel);
maxY = Math.max(maxY, upperPixel / w);
}
}
if (currentPixel % w != 0) {
var leftPixel = currentPixel - 1;
if (pixels[leftPixel] < pixThreshold) {
pixelsToExplore.enqueue(leftPixel);
minX = Math.min(minX, leftPixel % w);
}
}
if ((currentPixel + 1) % w != 0) {
var rightPixel = currentPixel + 1;
if (pixels[rightPixel] < pixThreshold) {
pixelsToExplore.enqueue(rightPixel + 1);
maxX = Math.max(maxX, rightPixel % w);
}
}
// Set the current pixel to white so we don't visit it again.
pixels[currentPixel] = pixThreshold;
}
boundingBoxes.add(new Box(minX * rescale, minY * rescale, maxX * rescale, maxY * rescale));
}
}
}
return boundingBoxes.stream().filter(box -> box.area() > 0).map(box -> box.transform(imageCTM)).collect(Collectors.toList());
}
}
@@ -0,0 +1,247 @@
package com.knecon.fforesight.service.layoutparser.processor.services.graphics;
import java.awt.Rectangle;
import java.awt.color.CMMException;
import java.awt.geom.GeneralPath;
import java.awt.geom.Point2D;
import java.io.IOException;
import java.util.ArrayList;
import java.util.List;
import java.util.stream.Collectors;
import org.apache.pdfbox.contentstream.PDFGraphicsStreamEngine;
import org.apache.pdfbox.contentstream.PDFStreamEngine;
import org.apache.pdfbox.contentstream.operator.Operator;
import org.apache.pdfbox.contentstream.operator.OperatorProcessor;
import org.apache.pdfbox.cos.COSBase;
import org.apache.pdfbox.cos.COSName;
import org.apache.pdfbox.pdmodel.PDPage;
import org.apache.pdfbox.pdmodel.graphics.color.PDColor;
import org.apache.pdfbox.pdmodel.graphics.image.PDImage;
import lombok.SneakyThrows;
import lombok.extern.slf4j.Slf4j;
@Slf4j
public class GraphicBBDetector extends PDFGraphicsStreamEngine {
private int clipWindingRule = -1;
private final GeneralPath linePath = new GeneralPath();
private final List<Rectangle> bounds = new ArrayList<>();
private final PDColor emptyPattern = new PDColor(new float[3], null);
public GraphicBBDetector(PDPage page, boolean ignoreWhite) {
super(page);
if (!ignoreWhite) {
addOperator(new NullOp("d", this));
addOperator(new NullOp("k", this));
addOperator(new NullOp("K", this));
addOperator(new NullOp("g", this));
addOperator(new NullOp("G", this));
addOperator(new NullOp("CS", this));
addOperator(new NullOp("cs", this));
addOperator(new NullOp("RG", this));
addOperator(new NullOp("rg", this));
addOperator(new NullOp("sc", this));
addOperator(new NullOp("SC", this));
addOperator(new NullOp("scn", this));
addOperator(new NullOp("SCN", this));
}
// Ignore text and font ops:
addOperator(new NullOp("Tf", this));
addOperator(new NullOp("Tj", this));
addOperator(new NullOp("TJ", this));
addOperator(new NullOp("T*", this));
addOperator(new NullOp("'", this));
addOperator(new NullOp("\"", this));
}
public List<Box> findGraphicBB() throws IOException {
processPage(getPage());
return bounds.stream().map(r -> new Box(r.x, r.y, r.x + r.width, r.y + r.height)).filter(box -> box.area() > 0).collect(Collectors.toList());
}
@Override
public void appendRectangle(Point2D p0, Point2D p1, Point2D p2, Point2D p3) {
linePath.moveTo((float) p0.getX(), (float) p0.getY());
linePath.lineTo((float) p1.getX(), (float) p1.getY());
linePath.lineTo((float) p2.getX(), (float) p2.getY());
linePath.lineTo((float) p3.getX(), (float) p3.getY());
linePath.closePath();
}
@Override
public void drawImage(PDImage pdImage) {
// Do nothing
}
@Override
public void clip(int windingRule) {
clipWindingRule = windingRule;
}
@Override
public void moveTo(float x, float y) {
linePath.moveTo(x, y);
}
@Override
public void lineTo(float x, float y) {
linePath.lineTo(x, y);
}
@Override
public void curveTo(float x1, float y1, float x2, float y2, float x3, float y3) {
linePath.curveTo(x1, y1, x2, y2, x3, y3);
}
@Override
public Point2D getCurrentPoint() {
return linePath.getCurrentPoint();
}
@Override
public void closePath() {
linePath.closePath();
}
@Override
public void endPath() {
if (clipWindingRule != -1) {
linePath.setWindingRule(clipWindingRule);
getGraphicsState().intersectClippingPath(linePath);
clipWindingRule = -1;
}
linePath.reset();
}
@Override
public void strokePath() throws IOException {
addLinePath(true, false);
linePath.reset();
}
@Override
public void fillPath(int windingRule) throws IOException {
linePath.setWindingRule(windingRule);
addLinePath(false, true);
linePath.reset();
}
@Override
public void fillAndStrokePath(int windingRule) throws IOException {
linePath.setWindingRule(windingRule);
addLinePath(true, true);
linePath.reset();
}
@Override
public void shadingFill(COSName shadingName) {
var newBound = getGraphicsState().getCurrentClippingPath().getBounds();
if (newBound.getWidth() > 0 && newBound.getHeight() > 0) {
bounds.add(newBound);
}
}
private void addLinePath(boolean stroke, boolean fill) throws IOException {
var newBound = getGraphicsState().getCurrentClippingPath().getBounds().intersection(linePath.getBounds());
if (newBound.getWidth() > 0 && newBound.getHeight() > 0) {
if (stroke && !getGraphicsState().getStrokingColor().isPattern() && isBlack(getGraphicsState().getStrokingColor()) || //
!stroke && !getGraphicsState().getNonStrokingColor().isPattern() && isBlack(getGraphicsState().getNonStrokingColor())) {
bounds.add(newBound);
}
// var skipWhiteGraphic = ignoreWhite && (!stroke || isWhite(getGraphicsState().getStrokingColor())) && (!fill || isWhite(getGraphicsState().getNonStrokingColor()));
// if (!skipWhiteGraphic) {
// bounds.add(newBound);
// }
}
}
@SneakyThrows
private boolean isBlack(PDColor color) {
try {
return color.toRGB() == 0;
} catch (CMMException e) {
// see https://github.com/haraldk/TwelveMonkeys/issues/124 or https://issues.apache.org/jira/browse/PDFBOX-3531
// This is a quick and dirt hack
// Happens for file 216.pdf
log.debug(e.getMessage());
var result = true;
for (var component : color.getComponents()) {
result = result && component == 0;
}
return result;
}
}
private boolean isWhite(PDColor color) throws IOException {
return !color.isPattern() && color.toRGB() == 16777215 || color.equals(emptyPattern);
}
private final class NullOp extends OperatorProcessor {
private final String name;
private NullOp(String name, PDFStreamEngine context) {
super(context);
this.name = name;
}
@Override
public void process(Operator operator, List<COSBase> operands) {
// Do nothing.
}
@Override
public String getName() {
return name;
}
}
}
@@ -0,0 +1,88 @@
package com.knecon.fforesight.service.layoutparser.processor.services.graphics;
import java.awt.geom.Rectangle2D;
import java.util.List;
import java.util.stream.Collectors;
import org.apache.pdfbox.pdmodel.PDDocument;
import org.apache.pdfbox.pdmodel.PDPage;
import org.springframework.stereotype.Service;
import com.knecon.fforesight.service.layoutparser.processor.model.table.CleanRulings;
import com.knecon.fforesight.service.layoutparser.processor.model.table.Ruling;
import com.knecon.fforesight.service.layoutparser.processor.model.text.TextPositionSequence;
import com.knecon.fforesight.service.layoutparser.processor.services.factory.SearchTextWithTextPositionFactory;
import com.knecon.fforesight.service.layoutparser.processor.utils.PageInformation;
import com.knecon.fforesight.service.layoutparser.processor.utils.RectangleTransformations;
import lombok.RequiredArgsConstructor;
import lombok.SneakyThrows;
@Service
@RequiredArgsConstructor
public class GraphicExtractorService {
private static final int MIN_GRAPHICS_SIDE_LENGTH = 30;
private static final int MIN_GRAPHICS_AREA = 500;
private final GraphicsClusteringService graphicsClusteringService;
private final FindGraphicsRaster findGraphicsRaster;
@SneakyThrows
public List<Box> extractPathElementGraphics(PDDocument pdDocument,
PDPage pdPage,
int pageNumber,
CleanRulings cleanRulings,
List<TextPositionSequence> textPositionSequences,
boolean graphicsRaster) {
List<Box> characterBBoxes = getCharacterBBoxes(textPositionSequences);
List<Box> classifiedRulingsBoxes = getLineBBoxesOfAllClassifiedRulings(cleanRulings);
GraphicBBDetector graphicBBDetector = new GraphicBBDetector(pdPage, true);
List<Box> graphicBBoxes = graphicBBDetector.findGraphicBB();
if (graphicsRaster) {
// This should only be used if ocr was performed, it is currently in an early stage and needs to be improved.
graphicBBoxes.addAll(findGraphicsRaster.findCCBoundingBoxes(pdDocument,
characterBBoxes.stream()
.map(box -> new Rectangle2D.Double(box.x1 - 2, box.y1 - 2, box.width() + 4, box.height() + 4))
.collect(Collectors.toList()),
PageInformation.fromPDPage(pageNumber, pdPage)));
}
List<Box> filteredGraphicBBoxes = graphicBBoxes.stream()
.filter(box -> !box.intersectsAny(classifiedRulingsBoxes, 4))
.collect(Collectors.toList());
List<Box> clusters = graphicsClusteringService.getClusters(filteredGraphicBBoxes, 14);
return clusters.stream()
.filter(box -> box.area() > MIN_GRAPHICS_AREA && box.height() > MIN_GRAPHICS_SIDE_LENGTH && box.width() > MIN_GRAPHICS_SIDE_LENGTH)
.toList();
}
private List<Box> getCharacterBBoxes(List<TextPositionSequence> textPositionSequences) {
return textPositionSequences.stream()
.map(pos -> pos.getTextPositions()
.stream()
.map(tp -> SearchTextWithTextPositionFactory.mapRedTextPositionToInitialUserSpace(tp, pos))
.collect(RectangleTransformations.collectBBox()))
.map(Box::new)
.collect(Collectors.toList());
}
private List<Box> getLineBBoxesOfAllClassifiedRulings(CleanRulings cleanRulings) {
return cleanRulings.buildAll()
.stream()
.filter(ruling -> !ruling.getClassification().equals(Ruling.Classification.OTHER))
.map(h -> new Box(h.x1, h.y1, h.x2, h.y2))
.collect(Collectors.toList());
}
}
@@ -0,0 +1,83 @@
package com.knecon.fforesight.service.layoutparser.processor.services.graphics;
import java.util.ArrayList;
import java.util.List;
import org.springframework.stereotype.Service;
@Service
public class GraphicsClusteringService {
public List<Box> getClusters(List<Box> boxes, double tol) {
if (boxes.isEmpty()) {
return boxes;
} else {
// We iteratively pick a Box that intersects at least one other box and replace the
// intersecting box with a Box containing them
var currentBoxes = boxes;
var foundIntersectingBoxes = true;
while (foundIntersectingBoxes) {
foundIntersectingBoxes = false;
// The box we are going to check to see if there are any intersecting boxes, followed by
// any boxes that we have already check
var checked = List.of(currentBoxes.get(0));
var unchecked = currentBoxes.subList(1, currentBoxes.size());
while (!foundIntersectingBoxes && !unchecked.isEmpty()) {
List<Box> intersects = new ArrayList<>();
List<Box> nonIntersects = new ArrayList<>();
for (Box uncheck : unchecked) {
if (uncheck.intersects(checked.get(0), tol)) {
intersects.add(uncheck);
} else {
nonIntersects.add(uncheck);
}
}
if (!intersects.isEmpty()) {
List<Box> combinedIntersecting = new ArrayList<>();
combinedIntersecting.add(checked.get(0));
combinedIntersecting.addAll(intersects);
var newBox = merge(combinedIntersecting);
List<Box> newCurrentBoxes = new ArrayList<>();
newCurrentBoxes.add(newBox);
newCurrentBoxes.addAll(checked.subList(1, checked.size()));
newCurrentBoxes.addAll(nonIntersects);
currentBoxes = newCurrentBoxes;
foundIntersectingBoxes = true; // Exit this loop and re-enter the outer loop
} else {
List<Box> newChecked = new ArrayList<>();
newChecked.add(unchecked.get(0));
newChecked.addAll(checked);
checked = newChecked;
unchecked = unchecked.subList(1, unchecked.size());
}
}
}
return currentBoxes;
}
}
public Box merge(List<Box> boxes) {
double minX = Double.POSITIVE_INFINITY;
double minY = Double.POSITIVE_INFINITY;
double maxX = Double.NEGATIVE_INFINITY;
double maxY = Double.NEGATIVE_INFINITY;
for (Box box : boxes) {
minX = Math.min(minX, box.x1);
minY = Math.min(minY, box.y1);
maxX = Math.max(maxX, box.x2);
maxY = Math.max(maxY, box.y2);
}
return new Box(minX, minY, maxX, maxY);
}
}
@@ -23,6 +23,7 @@ import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.Pa
import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.Paragraph;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.Section;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.SemanticNode;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.SuperSection;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.Table;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.TableCell;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.textblock.AtomicTextBlock;
@@ -62,6 +63,7 @@ public class DocumentGraphMapper {
SemanticNode node = switch (entryData.getType()) {
case SECTION -> buildSection(context);
case SUPER_SECTION -> buildSuperSection(context);
case PARAGRAPH -> buildParagraph(context, entryData.getProperties());
case HEADLINE -> buildHeadline(context);
case HEADER -> buildHeader(context);
@@ -109,7 +111,7 @@ public class DocumentGraphMapper {
private TableCell buildTableCell(Context context, Map<String, String> properties) {
TableCell.TableCellBuilder builder = TableCell.builder();
TableCell.TableCellBuilder<?, ?> builder = TableCell.builder();
PropertiesMapper.parseTableCellProperties(properties, builder);
return builder.documentTree(context.documentTree).build();
}
@@ -140,6 +142,11 @@ public class DocumentGraphMapper {
return Section.builder().documentTree(context.documentTree).build();
}
private SuperSection buildSuperSection(Context context) {
return SuperSection.builder().documentTree(context.documentTree).build();
}
private Paragraph buildParagraph(Context context, Map<String, String> properties) {
@@ -24,6 +24,7 @@ public class PropertiesMapper {
properties.put(DocumentStructure.ImageProperties.TRANSPARENT, String.valueOf(image.isTransparent()));
properties.put(DocumentStructure.ImageProperties.POSITION, toString(image.getPosition()));
properties.put(DocumentStructure.ImageProperties.ID, image.getId());
properties.put(DocumentStructure.ImageProperties.REPRESENTATION_HASH, image.getRepresentationHash());
return properties;
}
@@ -99,6 +99,7 @@ public class TaasDocumentDataMapper {
Page page = semanticNode.getFirstPage();
Rectangle2D bBox = semanticNode.getBBox().get(page);
return StructureObject.builder()
.treeId(semanticNode.getTreeId())
.structureObjectNumber(structureObjectNumber)
.boundingBox(toFloatArray(bBox))
.stringOffset(semanticNode.getBoundary().start())
@@ -114,6 +115,7 @@ public class TaasDocumentDataMapper {
Page page = table.getFirstPage();
Rectangle2D bBox = table.getBBox().get(page);
return StructureObject.builder()
.treeId(table.getTreeId())
.structureObjectNumber(structureObjectNumber)
.boundingBox(toFloatArray(bBox))
.stringOffset(table.getBoundary().start())
@@ -82,7 +82,6 @@ public class LegacyPDFStreamEngine extends PDFStreamEngine {
private int pageRotation;
private PDRectangle pageSize;
private Matrix translateMatrix;
private final GlyphList glyphList;
private final Map<COSDictionary, Float> fontHeightMap = new WeakHashMap<COSDictionary, Float>();
@@ -134,12 +133,6 @@ public class LegacyPDFStreamEngine extends PDFStreamEngine {
this.pageRotation = page.getRotation();
this.pageSize = page.getCropBox();
if (pageSize.getLowerLeftX() == 0 && pageSize.getLowerLeftY() == 0) {
translateMatrix = null;
} else {
// translation matrix for cropbox
translateMatrix = Matrix.getTranslateInstance(-pageSize.getLowerLeftX(), -pageSize.getLowerLeftY());
}
super.processPage(page);
}
@@ -265,62 +258,52 @@ public class LegacyPDFStreamEngine extends PDFStreamEngine {
}
}
// adjust for cropbox if needed
Matrix translatedTextRenderingMatrix;
if (translateMatrix == null) {
translatedTextRenderingMatrix = textRenderingMatrix;
} else {
translatedTextRenderingMatrix = Matrix.concatenate(translateMatrix, textRenderingMatrix);
nextX -= pageSize.getLowerLeftX();
nextY -= pageSize.getLowerLeftY();
}
// This is a hack for unicode letter with 2 chars e.g. RA see unicodeProblem.pdf
if (unicodeMapping.length() == 2) {
processTextPosition(new TextPosition(pageRotation,
pageSize.getWidth(),
pageSize.getHeight(),
translatedTextRenderingMatrix,
nextX,
nextY,
Math.abs(dyDisplay),
dxDisplay,
Math.abs(spaceWidthDisplay),
Character.toString(unicodeMapping.charAt(0)),
new int[]{code},
font,
fontSize,
(int) (fontSize * textMatrix.getScalingFactorX())));
pageSize.getWidth(),
pageSize.getHeight(),
textRenderingMatrix,
nextX,
nextY,
Math.abs(dyDisplay),
dxDisplay,
Math.abs(spaceWidthDisplay),
Character.toString(unicodeMapping.charAt(0)),
new int[]{code},
font,
fontSize,
(int) (fontSize * textMatrix.getScalingFactorX())));
processTextPosition(new TextPosition(pageRotation,
pageSize.getWidth(),
pageSize.getHeight(),
translatedTextRenderingMatrix,
nextX,
nextY,
Math.abs(dyDisplay),
dxDisplay,
Math.abs(spaceWidthDisplay),
Character.toString(unicodeMapping.charAt(1)),
new int[]{code},
font,
fontSize,
(int) (fontSize * textMatrix.getScalingFactorX())));
pageSize.getWidth(),
pageSize.getHeight(),
textRenderingMatrix,
nextX,
nextY,
Math.abs(dyDisplay),
dxDisplay,
Math.abs(spaceWidthDisplay),
Character.toString(unicodeMapping.charAt(1)),
new int[]{code},
font,
fontSize,
(int) (fontSize * textMatrix.getScalingFactorX())));
} else {
processTextPosition(new TextPosition(pageRotation,
pageSize.getWidth(),
pageSize.getHeight(),
translatedTextRenderingMatrix,
nextX,
nextY,
Math.abs(dyDisplay),
dxDisplay,
Math.abs(spaceWidthDisplay),
unicodeMapping,
new int[]{code},
font,
fontSize,
(int) (fontSize * textMatrix.getScalingFactorX())));
pageSize.getWidth(),
pageSize.getHeight(),
textRenderingMatrix,
nextX,
nextY,
Math.abs(dyDisplay),
dxDisplay,
Math.abs(spaceWidthDisplay),
unicodeMapping,
new int[]{code},
font,
fontSize,
(int) (fontSize * textMatrix.getScalingFactorX())));
}
}
@@ -1007,7 +1007,7 @@ public class PDFTextStripper extends LegacyPDFStreamEngine {
/**
* Set the desired word separator for output text. The PDFBox text extraction algorithm will output a space
* character if there is enough space between two words. By default a space character is used. If you need and
* character if there is enough space between two textPositions. By default a space character is used. If you need and
* accurate count of characters that are found in a PDF document then you might want to set the word separator to
* the empty string.
*
@@ -1703,7 +1703,7 @@ public class PDFTextStripper extends LegacyPDFStreamEngine {
/**
* Write a list of string containing a whole line of a document.
*
* @param line a list with the words of the given line
* @param line a list with the textPositions of the given line
* @throws IOException if something went wrong
*/
private void writeLine(List<WordWithTextPositions> line, boolean isParagraphEnd) throws IOException {
@@ -1744,9 +1744,9 @@ public class PDFTextStripper extends LegacyPDFStreamEngine {
/**
* Handles the LTR and RTL direction of the given words. The whole implementation stands and falls with the given
* word. If the word is a full line, the results will be the best. If the word contains of single words or
* characters, the order of the characters in a word or words in a line may wrong, due to RTL and LTR marks and
* Handles the LTR and RTL direction of the given textPositions. The whole implementation stands and falls with the given
* word. If the word is a full line, the results will be the best. If the word contains of single textPositions or
* characters, the order of the characters in a word or textPositions in a line may wrong, due to RTL and LTR marks and
* characters!
* <p>
* Based on http://www.nesterovsky-bros.com/weblog/2013/07/28/VisualToLogicalConversionInJava.aspx
@@ -9,6 +9,7 @@ import java.io.File;
import java.util.ArrayList;
import java.util.Collections;
import java.util.Comparator;
import java.util.HashMap;
import java.util.List;
import java.util.Map;
import java.util.Optional;
@@ -23,6 +24,7 @@ import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.Do
import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.DuplicatedParagraph;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.Page;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.SemanticNode;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.SuperSection;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.Table;
import com.knecon.fforesight.service.layoutparser.processor.model.graph.nodes.TableCell;
import com.knecon.fforesight.service.layoutparser.processor.utils.RectangleTransformations;
@@ -33,7 +35,7 @@ import com.knecon.fforesight.service.viewerdoc.model.LayoutGrid;
import com.knecon.fforesight.service.viewerdoc.model.PlacedText;
import com.knecon.fforesight.service.viewerdoc.model.Standard14EmbeddableFont;
import com.knecon.fforesight.service.viewerdoc.model.Visualizations;
import com.knecon.fforesight.service.viewerdoc.service.ViewerDocumentService;
import com.knecon.fforesight.service.viewerdoc.service.IViewerDocumentService;
import io.micrometer.observation.annotation.Observed;
import lombok.AccessLevel;
@@ -46,7 +48,7 @@ import lombok.experimental.FieldDefaults;
@FieldDefaults(level = AccessLevel.PRIVATE, makeFinal = true)
public class LayoutGridService {
ViewerDocumentService viewerDocumentService;
IViewerDocumentService viewerDocumentService;
static float FONT_SIZE = 10f;
static float LINE_WIDTH = 1f;
@@ -62,15 +64,29 @@ public class LayoutGridService {
static Color HEADER_COLOR = new Color(171, 131, 6);
static Color IMAGE_COLOR = new Color(253, 63, 146);
private record RectangleIdentifier(List<Integer> treeId, Integer pageNumber) {
}
HashMap<RectangleIdentifier, Rectangle2D> rectangleMap = new HashMap<>();
@SneakyThrows
@Observed(name = "ViewerDocumentService", contextualName = "create-viewer-document")
public void addLayoutGrid(File originFile, Document document, File destinationFile, boolean layerVisibilityDefaultValue) {
public void addLayoutGrid(File originFile, Document document, File destinationFile, boolean layerVisibilityDefaultValue, boolean writeVisualLayoutParsingGrid) {
List<Visualizations> allVisualizations;
Visualizations layoutGrid = this.addLayoutGrid(document, layerVisibilityDefaultValue, false);
Visualizations visualLayoutGrid = this.addLayoutGrid(document, layerVisibilityDefaultValue, true);
if (writeVisualLayoutParsingGrid) {
Visualizations visualLayoutGrid = this.addLayoutGrid(document, layerVisibilityDefaultValue, true);
allVisualizations = Stream.concat(Stream.of(layoutGrid, visualLayoutGrid), document.getVisualizations().streamAll())
.toList();
} else {
allVisualizations = Stream.concat(Stream.of(layoutGrid), document.getVisualizations().streamAll())
.toList();
}
viewerDocumentService.addVisualizationsOnPage(originFile, destinationFile, List.of(layoutGrid, visualLayoutGrid));
viewerDocumentService.addVisualizationsOnPage(originFile, destinationFile, allVisualizations);
}
@@ -97,7 +113,7 @@ public class LayoutGridService {
Color color = switch (semanticNode.getType()) {
case PARAGRAPH -> PARAGRAPH_COLOR;
case TABLE -> TABLE_COLOR;
case SECTION -> SECTION_COLOR;
case SECTION, SUPER_SECTION -> SECTION_COLOR;
case HEADLINE -> HEADLINE_COLOR;
case HEADER, FOOTER -> HEADER_COLOR;
case IMAGE -> IMAGE_COLOR;
@@ -111,7 +127,7 @@ public class LayoutGridService {
if (isNotSectionOrTableCellOrDocument(semanticNode)) {
addAsRectangle(semanticNode, layoutGrid, color);
}
if (semanticNode.getType().equals(NodeType.SECTION)) {
if (semanticNode.getType().equals(NodeType.SECTION) || semanticNode.getType().equals(NodeType.SUPER_SECTION)) {
addSection(semanticNode, layoutGrid, color);
}
if (semanticNode.getType().equals(NodeType.TABLE)) {
@@ -129,11 +145,16 @@ public class LayoutGridService {
return;
}
for (Page page : table.getPages()) {
Optional<Integer> optionalFirstRowOnPage = table.streamCol(0).filter(tableCell -> tableCell.isOnPage(page.getNumber())).map(TableCell::getRow).findFirst();
Optional<Integer> optionalFirstRowOnPage = table.streamCol(0)
.filter(tableCell -> tableCell.isOnPage(page.getNumber()))
.map(TableCell::getRow)
.findFirst();
if (optionalFirstRowOnPage.isEmpty()) {
continue;
}
int firstRowOnPage = optionalFirstRowOnPage.get();
Stream<Double> xStream = switch (page.getRotation()) {
case 90 -> streamBBoxOfCellsOnPage(table.streamCol(0), page).map(RectangularShape::getMinX);
case 180 -> streamBBoxOfCellsOnPage(table.streamRow(firstRowOnPage), page).map(RectangularShape::getMaxX);
@@ -142,6 +163,7 @@ public class LayoutGridService {
};
List<Double> xs = xStream.collect(Collectors.toList());
xs.remove(0);
Stream<Double> yStream = switch (page.getRotation()) {
case 90 -> streamBBoxOfCellsOnPage(table.streamRow(firstRowOnPage), page).map(RectangularShape::getMinY);
case 180 -> streamBBoxOfCellsOnPage(table.streamCol(0), page).map(RectangularShape::getMinY);
@@ -151,8 +173,10 @@ public class LayoutGridService {
List<Double> ys = yStream.collect(Collectors.toList());
ys.remove(0);
Rectangle2D tableBBox = table.getBBox().get(table.getFirstPage());
List<ColoredLine> coloredLines = layoutGrid.getVisualizationsPerPages().get(page.getNumber() - 1).getColoredLines();
Rectangle2D tableBBox = table.getBBox()
.get(page);
List<ColoredLine> coloredLines = layoutGrid.getVisualizationsPerPages()
.get(page.getNumber() - 1).getColoredLines();
xs.forEach(x -> {
Line2D line = new Line2D.Double(new Point2D.Double(x, tableBBox.getMaxY()), new Point2D.Double(x, tableBBox.getMinY()));
coloredLines.add(new ColoredLine(line, INNER_LINES_COLOR, LINE_WIDTH));
@@ -167,130 +191,239 @@ public class LayoutGridService {
private static Stream<Rectangle2D> streamBBoxOfCellsOnPage(Stream<TableCell> table, Page page) {
return table.filter(tableCell -> tableCell.isOnPage(page.getNumber())).map(TableCell::getBBox).map(bBoxMap -> bBoxMap.get(page));
return table.filter(tableCell -> tableCell.isOnPage(page.getNumber()))
.map(TableCell::getBBox)
.map(bBoxMap -> bBoxMap.get(page));
}
private void addSection(SemanticNode semanticNode, LayoutGrid layoutGrid, Color color) {
Map<Page, Rectangle2D> bBoxMap = semanticNode.getBBox();
List<SemanticNode> subSections = semanticNode.streamAllSubNodesOfType(NodeType.SECTION).toList();
List<SemanticNode> subSections = semanticNode.streamAllSubNodesOfType(NodeType.SECTION)
.toList();
Integer maxChildDepth = subSections.stream()
.map(node -> node.getTreeId().size())
.max(Integer::compareTo)
.orElse(semanticNode.getTreeId().size());
int ownDepth = semanticNode.getTreeId().size();
Page firstPage = semanticNode.getFirstPage();
if (!subSections.isEmpty()) {
addPlacedText(firstPage, bBoxMap.get(firstPage), buildTreeIdString(semanticNode), layoutGrid);
} else {
bBoxMap.forEach(((page, textBBox) -> addPlacedText(page, textBBox, buildTreeIdString(semanticNode), layoutGrid)));
}
String treeIdString = buildTreeIdString(semanticNode);
if (bBoxMap.values().size() == 1) {
Rectangle2D r = RectangleTransformations.pad(bBoxMap.get(firstPage), LINE_WIDTH, LINE_WIDTH);
List<ColoredLine> coloredLines = layoutGrid.getVisualizationsPerPages().get(firstPage.getNumber() - 1).getColoredLines();
List<Line2D> lines = createLinesFromRectangle(r, firstPage.getRotation());
// add string to top line
var firstLine = lines.remove(0);
coloredLines.add(new ColoredLine(firstLine, color, LINE_WIDTH));
for (Line2D line : lines) {
coloredLines.add(new ColoredLine(line, color, LINE_WIDTH));
}
handleSinglePage(semanticNode, layoutGrid, color, firstPage, bBoxMap.get(firstPage), treeIdString, maxChildDepth, ownDepth);
return;
}
List<Page> pagesInOrder = bBoxMap.keySet().stream().sorted(Comparator.comparingInt(Page::getNumber)).collect(Collectors.toList());
List<Page> pagesInOrder = bBoxMap.keySet()
.stream()
.sorted(Comparator.comparingInt(Page::getNumber))
.collect(Collectors.toList());
pagesInOrder.remove(0);
addLinesForFirstPageOfSection(semanticNode, color, firstPage, layoutGrid);
var lastPage = pagesInOrder.remove(pagesInOrder.size() - 1);
addLinesForLastPageOfSection(semanticNode, color, lastPage, layoutGrid);
for (Page middlePage : pagesInOrder) {
addLinesForMiddlePageOfSection(semanticNode, color, middlePage, layoutGrid);
handleFirstPageOfSection(semanticNode, color, firstPage, bBoxMap.get(firstPage), treeIdString, layoutGrid, maxChildDepth, ownDepth);
if (semanticNode instanceof SuperSection) {
return;
}
for (Page middlePage : pagesInOrder.subList(0, pagesInOrder.size() - 1)) {
handleForMiddlePageOfSection(semanticNode, color, middlePage, bBoxMap.get(middlePage), treeIdString, layoutGrid, maxChildDepth, ownDepth);
}
var lastPage = pagesInOrder.remove(pagesInOrder.size() - 1);
handleLastPageOfSection(semanticNode, color, lastPage, bBoxMap.get(lastPage), treeIdString, layoutGrid, maxChildDepth, ownDepth);
}
@SneakyThrows
private void addPlacedText(Page page, Rectangle2D textBBox, String s, LayoutGrid layoutGrid) {
private void addPlacedText(Page page, Rectangle2D textBBox, Rectangle2D highestParentRect, String s, LayoutGrid layoutGrid, Integer maxChildDepth) {
// translates text, such that its right edge is a bit to the left of the drawn box
float translationAmount = ((FONT.getStringWidth(s) / 1000) * FONT_SIZE + (2 * LINE_WIDTH) + 4);
float translationAmount = ((FONT.getStringWidth(s) / 1000) * FONT_SIZE + LINE_WIDTH + 2 * maxChildDepth);
Point2D upperLeftCorner;
Point2D translationVector;
switch (page.getRotation()) {
case 90 -> {
upperLeftCorner = new Point2D.Double(textBBox.getMinX(), textBBox.getMinY());
if (highestParentRect != null) {
upperLeftCorner = new Point2D.Double(highestParentRect.getMinX(), textBBox.getMinY());
} else {
upperLeftCorner = new Point2D.Double(textBBox.getMinX(), textBBox.getMinY());
}
translationVector = new Point2D.Double(FONT_SIZE, -translationAmount);
}
case 180 -> {
upperLeftCorner = new Point2D.Double(textBBox.getMaxX(), textBBox.getMinY());
if (highestParentRect != null) {
upperLeftCorner = new Point2D.Double(highestParentRect.getMaxX(), textBBox.getMinY());
} else {
upperLeftCorner = new Point2D.Double(textBBox.getMaxX(), textBBox.getMinY());
}
translationVector = new Point2D.Double(translationAmount, FONT_SIZE);
}
case 270 -> {
upperLeftCorner = new Point2D.Double(textBBox.getMaxX(), textBBox.getMaxY());
if (highestParentRect != null) {
upperLeftCorner = new Point2D.Double(highestParentRect.getMaxX(), textBBox.getMaxY());
} else {
upperLeftCorner = new Point2D.Double(textBBox.getMaxX(), textBBox.getMaxY());
}
translationVector = new Point2D.Double(-FONT_SIZE, translationAmount);
}
default -> {
upperLeftCorner = new Point2D.Double(textBBox.getMinX(), textBBox.getMaxY());
if (highestParentRect != null) {
upperLeftCorner = new Point2D.Double(highestParentRect.getMinX(), textBBox.getMaxY());
} else {
upperLeftCorner = new Point2D.Double(textBBox.getMinX(), textBBox.getMaxY());
}
translationVector = new Point2D.Double(-translationAmount, -FONT_SIZE);
}
}
upperLeftCorner = add(upperLeftCorner, translationVector);
var placedTexts = layoutGrid.getVisualizationsPerPages().get(page.getNumber() - 1).getPlacedTexts();
placedTexts.add(PlacedText.textFacingUp(s, upperLeftCorner, FONT_SIZE, Color.BLACK, FONT));
}
List<PlacedText> placedTexts = layoutGrid.getVisualizationsPerPages()
.get(page.getNumber() - 1).getPlacedTexts();
PlacedText newText = PlacedText.textFacingUp(s, upperLeftCorner, FONT_SIZE, Color.BLACK, FONT);
private void addLinesForMiddlePageOfSection(SemanticNode semanticNode, Color color, Page middlePage, LayoutGrid layoutGrid) {
Optional<PlacedText> conflictingText = placedTexts.stream()
.filter(pt -> Math.abs(pt.lineStart().getY() - newText.lineStart().getY()) <= FONT_SIZE)
.findFirst();
List<ColoredLine> coloredLines = layoutGrid.getVisualizationsPerPages().get(middlePage.getNumber() - 1).getColoredLines();
Rectangle2D r = RectangleTransformations.pad(semanticNode.getBBox().get(middlePage), LINE_WIDTH, LINE_WIDTH);
var midPageLines = createLinesFromRectangle(r, middlePage.getRotation());
// remove top line
midPageLines.remove(0);
// remove top line
midPageLines.remove(1);
// add string to left line
var leftLine = midPageLines.remove(1);
coloredLines.add(new ColoredLine(leftLine, color, LINE_WIDTH));
for (Line2D line : midPageLines) {
coloredLines.add(new ColoredLine(line, color, LINE_WIDTH));
if (conflictingText.isPresent()) {
PlacedText existingText = conflictingText.get();
if (newText.text().length() > existingText.text().length()) {
placedTexts.remove(existingText);
placedTexts.add(newText);
}
} else {
placedTexts.add(newText);
}
}
private void addLinesForLastPageOfSection(SemanticNode semanticNode, Color color, Page lastPage, LayoutGrid layoutGrid) {
private void handleSinglePage(SemanticNode semanticNode,
LayoutGrid layoutGrid,
Color color,
Page page,
Rectangle2D rectangle2D,
String treeIdString,
Integer maxChildDepth,
Integer ownDepth) {
List<ColoredLine> coloredLines = layoutGrid.getVisualizationsPerPages().get(lastPage.getNumber() - 1).getColoredLines();
Rectangle2D r = RectangleTransformations.pad(semanticNode.getBBox().get(lastPage), LINE_WIDTH, LINE_WIDTH);
var lastPageLines = createLinesFromRectangle(r, lastPage.getRotation());
// remove top line
lastPageLines.remove(0);
// add string to left line
var leftLine = lastPageLines.remove(2);
coloredLines.add(new ColoredLine(leftLine, color, LINE_WIDTH));
for (Line2D line : lastPageLines) {
coloredLines.add(new ColoredLine(line, color, LINE_WIDTH));
}
}
private void addLinesForFirstPageOfSection(SemanticNode semanticNode, Color color, Page firstPage, LayoutGrid layoutGrid) {
List<ColoredLine> coloredLines = layoutGrid.getVisualizationsPerPages().get(firstPage.getNumber() - 1).getColoredLines();
Rectangle2D r = RectangleTransformations.pad(semanticNode.getBBox().get(firstPage), LINE_WIDTH, LINE_WIDTH);
var firstPageLines = createLinesFromRectangle(r, firstPage.getRotation());
// remove bottom line
firstPageLines.remove(2);
RectangleAndLinesResult result = createLinesAndPlaceText(semanticNode, page, rectangle2D, treeIdString, layoutGrid, maxChildDepth, ownDepth);
// add string to top line
var firstLine = firstPageLines.remove(0);
coloredLines.add(new ColoredLine(firstLine, color, LINE_WIDTH));
for (Line2D line : firstPageLines) {
coloredLines.add(new ColoredLine(line, color, LINE_WIDTH));
var firstLine = result.pageLines().remove(0);
result.coloredLines().add(new ColoredLine(firstLine, color, LINE_WIDTH));
for (Line2D line : result.pageLines()) {
result.coloredLines().add(new ColoredLine(line, color, LINE_WIDTH));
}
}
private void handleFirstPageOfSection(SemanticNode semanticNode,
Color color,
Page firstPage,
Rectangle2D rectangle2D,
String treeIdString,
LayoutGrid layoutGrid,
Integer maxChildDepth,
Integer ownDepth) {
RectangleAndLinesResult result = createLinesAndPlaceText(semanticNode, firstPage, rectangle2D, treeIdString, layoutGrid, maxChildDepth, ownDepth);
// remove bottom line
result.pageLines().remove(2);
// add string to top line
var firstLine = result.pageLines().remove(0);
result.coloredLines().add(new ColoredLine(firstLine, color, LINE_WIDTH));
for (Line2D line : result.pageLines()) {
result.coloredLines().add(new ColoredLine(line, color, LINE_WIDTH));
}
}
private void handleForMiddlePageOfSection(SemanticNode semanticNode,
Color color,
Page middlePage,
Rectangle2D rectangle2D,
String treeIdString,
LayoutGrid layoutGrid,
Integer maxChildDepth,
Integer ownDepth) {
RectangleAndLinesResult result = createLinesAndPlaceText(semanticNode, middlePage, rectangle2D, treeIdString, layoutGrid, maxChildDepth, ownDepth);
// remove top line
result.pageLines().remove(0);
// remove bottom line
result.pageLines().remove(1);
// add string to left line
var leftLine = result.pageLines().remove(1);
result.coloredLines().add(new ColoredLine(leftLine, color, LINE_WIDTH));
for (Line2D line : result.pageLines()) {
result.coloredLines().add(new ColoredLine(line, color, LINE_WIDTH));
}
}
private void handleLastPageOfSection(SemanticNode semanticNode,
Color color,
Page lastPage,
Rectangle2D rectangle2D,
String treeIdString,
LayoutGrid layoutGrid,
Integer maxChildDepth,
Integer ownDepth) {
RectangleAndLinesResult result = createLinesAndPlaceText(semanticNode, lastPage, rectangle2D, treeIdString, layoutGrid, maxChildDepth, ownDepth);
// remove top line
result.pageLines().remove(0);
// add string to left line
var leftLine = result.pageLines().remove(2);
result.coloredLines().add(new ColoredLine(leftLine, color, LINE_WIDTH));
for (Line2D line : result.pageLines()) {
result.coloredLines().add(new ColoredLine(line, color, LINE_WIDTH));
}
}
private RectangleAndLinesResult createLinesAndPlaceText(SemanticNode semanticNode,
Page page,
Rectangle2D rectangle2D,
String treeIdString,
LayoutGrid layoutGrid,
Integer maxChildDepth,
Integer ownDepth) {
List<ColoredLine> coloredLines = layoutGrid.getVisualizationsPerPages()
.get(page.getNumber() - 1).getColoredLines();
int lineWidthModifier = maxChildDepth - ownDepth;
Rectangle2D r = RectangleTransformations.pad(semanticNode.getBBox()
.get(page), LINE_WIDTH * (1 + lineWidthModifier), LINE_WIDTH * (1 + lineWidthModifier));
var lastPageLines = createLinesFromRectangle(r, page.getRotation());
SemanticNode highestParent = semanticNode.getHighestParent();
Rectangle2D highestParentRect = rectangleMap.get(new RectangleIdentifier(highestParent.getTreeId(), page.getNumber()));
addPlacedText(page, rectangle2D, highestParentRect, treeIdString, layoutGrid, maxChildDepth);
if (semanticNode instanceof SuperSection) {
rectangleMap.put(new RectangleIdentifier(semanticNode.getTreeId(), page.getNumber()), r);
}
return new RectangleAndLinesResult(coloredLines, r, lastPageLines);
}
private record RectangleAndLinesResult(List<ColoredLine> coloredLines, Rectangle2D rectangle, List<Line2D> pageLines) {
}
private String buildTreeIdString(SemanticNode semanticNode) {
return semanticNode.getTreeId().stream().map(Object::toString).collect(Collectors.joining("."));
return semanticNode.getTreeId()
.stream()
.map(Object::toString)
.collect(Collectors.joining("."));
}
@@ -342,7 +475,10 @@ public class LayoutGridService {
private static boolean isNotSectionOrTableCellOrDocument(SemanticNode semanticNode) {
return !(semanticNode.getType().equals(NodeType.DOCUMENT) || semanticNode.getType().equals(NodeType.SECTION) || semanticNode.getType().equals(NodeType.TABLE_CELL));
return !(semanticNode.getType().equals(NodeType.DOCUMENT)
|| semanticNode.getType().equals(NodeType.SECTION)
|| semanticNode.getType().equals(NodeType.SUPER_SECTION)
|| semanticNode.getType().equals(NodeType.TABLE_CELL));
}
@@ -350,9 +486,7 @@ public class LayoutGridService {
semanticNode.getBBox()
.forEach((page, textBBox) -> layoutGrid.getVisualizationsPerPages()
.get(page.getNumber() - 1)
.getColoredRectangles()
.add(new ColoredRectangle(textBBox, color, LINE_WIDTH)));
.get(page.getNumber() - 1).getColoredRectangles().add(new ColoredRectangle(textBBox, color, LINE_WIDTH)));
}
@@ -0,0 +1,56 @@
package com.knecon.fforesight.service.layoutparser.processor.utils;
import java.awt.geom.AffineTransform;
import lombok.SneakyThrows;
import lombok.experimental.UtilityClass;
@UtilityClass
public class CoordinateTransforms {
public AffineTransform calculateImageCoordsToInitialUserSpaceCoords(PageInformation pageInformation, double scalingFactor) {
AffineTransform imageToCropBoxScaling = new AffineTransform(scalingFactor, 0, 0, scalingFactor, -pageInformation.minX(), -pageInformation.minY());
AffineTransform mirrorMatrix = new AffineTransform(1, 0, 0, -1, 0, pageInformation.height());
AffineTransform rotationMatrix = switch (pageInformation.rotationDegrees()) {
case 90 -> new AffineTransform(0, 1, -1, 0, pageInformation.height(), 0);
case 180 -> new AffineTransform(-1, 0, 0, -1, pageInformation.width(), pageInformation.height());
case 270 -> new AffineTransform(0, -1, 1, 0, pageInformation.width() - pageInformation.height(), pageInformation.height()); // results from 90 + 180 rotations
default -> new AffineTransform();
};
// matrix multiplication is performed from right to left, so the order is reversed.
// scaling -> mirror -> rotation
AffineTransform resultMatrix = new AffineTransform();
resultMatrix.concatenate(rotationMatrix);
resultMatrix.concatenate(mirrorMatrix);
resultMatrix.concatenate(imageToCropBoxScaling);
return resultMatrix;
}
@SneakyThrows
public AffineTransform calculateInitialUserSpaceCoordsToImageCoords(PageInformation pageInformation, double scalingFactor) {
return calculateImageCoordsToInitialUserSpaceCoords(pageInformation, scalingFactor).createInverse();
}
public double calculateScalingFactor(PageInformation pageInformation, double imageWidth) {
// PDFBox always returns page height and width based on rotation
double pageWidth;
if (pageInformation.rotationDegrees() == 90 || pageInformation.rotationDegrees() == 270) {
pageWidth = pageInformation.height();
} else {
pageWidth = pageInformation.width();
}
return pageWidth / imageWidth;
}
}
@@ -1,10 +1,10 @@
package com.knecon.fforesight.service.layoutparser.processor.utils;
import java.awt.geom.Point2D;
import java.awt.geom.Rectangle2D;
import java.util.Comparator;
import com.knecon.fforesight.service.layoutparser.processor.model.table.Cell;
import com.knecon.fforesight.service.layoutparser.processor.model.table.Rectangle;
import com.knecon.fforesight.service.layoutparser.processor.model.table.Ruling;
public class GeometricComparators {
@@ -58,7 +58,7 @@ public class GeometricComparators {
return cell1Size.compareTo(cell2Size);
};
public static final Comparator<Rectangle> RECTANGLE_SIZE_COMPARATOR = (rect1, rect2) -> {
public static final Comparator<Rectangle2D> RECTANGLE_SIZE_COMPARATOR = (rect1, rect2) -> {
Double rect1Size = rect1.getHeight() * rect1.getWidth();
Double rect2Size = rect2.getHeight() * rect2.getWidth();
@@ -0,0 +1,223 @@
package com.knecon.fforesight.service.layoutparser.processor.utils;
import java.util.ArrayList;
import java.util.HashMap;
import java.util.List;
import java.util.Map;
import java.util.stream.Collectors;
import com.knecon.fforesight.service.layoutparser.processor.model.AbstractPageBlock;
import com.knecon.fforesight.service.layoutparser.processor.model.ClassificationDocument;
import com.knecon.fforesight.service.layoutparser.processor.model.ClassificationPage;
import com.knecon.fforesight.service.layoutparser.processor.model.text.TextPageBlock;
import lombok.experimental.UtilityClass;
@UtilityClass
public class HeaderFooterDetection {
private final Map<Integer, ClassificationPage> pagesCache = new HashMap<>();
private static final double THRESHOLD = 0.5;
// Weight will go from 1.0 to 0.5 because the first element is the most likely to be the header on the page.
private static final double[] headerWeights = {1.0, 0.75, 0.5};
// Weight will go from 0.5 to 1.0 because the last element is the most likely to be the footer on the page.
private static final double[] footerWeights = {0.5, 0.75, 1.0};
public boolean isLikelyFooter(TextPageBlock textPageBlock, ClassificationDocument document, ClassificationPage classificationPage) {
int numberOfPages = document.getPages().size();
if (numberOfPages < 3) {
// If the document has 1 or 2 pages this may lead to more false positives than actual findings.
return false;
}
int window = Math.min(numberOfPages, 8);
List<ClassificationPage> nearestPages = findNearestPages(classificationPage, document.getPages(), window);
List<List<AbstractPageBlock>> footerCandidates = getFooterCandidates(nearestPages);
return detectHeadersOrFootersByPageAssociation(textPageBlock.getText(), footerCandidates, window, footerWeights);
}
public boolean isLikelyHeader(TextPageBlock textPageBlock, ClassificationDocument document, ClassificationPage classificationPage) {
int numberOfPages = document.getPages().size();
if (numberOfPages < 3) {
// If the document has 1 or 2 pages this may lead to more false positives than actual findings.
return false;
}
int window = Math.min(numberOfPages, 8);
List<ClassificationPage> nearestPages = findNearestPages(classificationPage, document.getPages(), window);
List<List<AbstractPageBlock>> headerCandidates = getHeaderCandidates(nearestPages);
return detectHeadersOrFootersByPageAssociation(textPageBlock.getText(), headerCandidates, window, headerWeights);
}
private boolean detectHeadersOrFootersByPageAssociation(String testString, List<List<AbstractPageBlock>> candidates, int window, double[] weights) {
double highestScore = 0.0;
for (int i = 0; i < candidates.size(); i++) {
List<List<String>> candidateStrings = new ArrayList<>();
for (int k = Math.max(i - window, 0); k < Math.min(i + window, candidates.size()); k++) {
candidateStrings.add(candidates.get(k)
.stream()
.map(AbstractPageBlock::getText)
.collect(Collectors.toList()));
}
int maxLen = candidateStrings.stream()
.mapToInt(List::size)
.max()
.orElse(0);
for (List<String> sublist : candidateStrings) {
while (sublist.size() < maxLen) {
sublist.add(0, "");
}
}
// Compare the testString against each candidate in the window
for (int j = 0; j < maxLen; j++) {
double score = 0.0;
int finalJ = j;
List<String> paddedCandidateStrings = candidateStrings.stream()
.map(sublist -> sublist.size() > finalJ ? sublist.get(finalJ) : "")
.toList();
for (String paddedString : paddedCandidateStrings) {
if ((testString.length() >= 5 && paddedString.length() >= 5) && (testString.length() > 2 * paddedString.length()
|| paddedString.length() > 2 * testString.length())) {
// If both strings are at least 5 characters long and one string is more than twice as long as the other,
// skip the distance calculation as it's time-consuming, and we can assume they are not similar enough
continue;
}
int distance = calculateHammingDistanceWithPreprocessing(testString, paddedString);
double normalizedScore = 1 - (double) distance / Math.max(testString.length(), paddedString.length());
score += normalizedScore * (j < weights.length ? weights[j] : 1);
}
score /= paddedCandidateStrings.size();
highestScore = Math.max(highestScore, score);
// Early stop
if (highestScore > THRESHOLD) {
return true;
}
}
}
return false;
}
/**
* Find the nearest n pages for a given page.
* For example: nearest 8 pages for page 4 are: 1, 2, 3, 5, 6, 7, 8, 9.
*
* @param currentPage Current page to find the nearest ones.
* @param allPages All pages in the document.
* @param numNeighbors Number of neighbouring pages to find.
* @return The nearest pages.
*/
private List<ClassificationPage> findNearestPages(ClassificationPage currentPage, List<ClassificationPage> allPages, int numNeighbors) {
int totalPages = allPages.size();
List<ClassificationPage> nearestPages = new ArrayList<>();
int currentPageIndex = currentPage.getPageNumber() - 1;
int halfWin = numNeighbors / 2;
int start = Math.max(0, currentPageIndex - halfWin);
int end = Math.min(totalPages - 1, currentPageIndex + halfWin);
for (int i = start; i <= end; i++) {
if (i != currentPageIndex) {
nearestPages.add(pagesCache.computeIfAbsent(i, allPages::get));
}
}
pagesCache.keySet().removeIf(key -> key < start || key > end);
return nearestPages;
}
// Get the last 3 TextBlocks on the page as they are likely to be a footer
private List<List<AbstractPageBlock>> getFooterCandidates(List<ClassificationPage> pages) {
List<List<AbstractPageBlock>> footerCandidates = new ArrayList<>();
for (ClassificationPage page : pages) {
List<AbstractPageBlock> textBlocks = page.getTextBlocks();
List<TextPageBlock> textPageBlocks = textBlocks.stream()
.filter(textBlock -> textBlock instanceof TextPageBlock)
.map(textBlock -> (TextPageBlock) textBlock)
.toList();
int blockCount = textPageBlocks.size();
if (blockCount > 0) {
int start = Math.max(0, blockCount - 3);
footerCandidates.add(new ArrayList<>(textPageBlocks.subList(start, blockCount)));
}
}
return footerCandidates;
}
// Get the first 3 TextBlocks on the page as they are likely to be a header
private List<List<AbstractPageBlock>> getHeaderCandidates(List<ClassificationPage> pages) {
List<List<AbstractPageBlock>> headerCandidates = new ArrayList<>();
for (ClassificationPage page : pages) {
List<AbstractPageBlock> textBlocks = page.getTextBlocks();
List<TextPageBlock> textPageBlocks = textBlocks.stream()
.filter(textBlock -> textBlock instanceof TextPageBlock)
.map(textBlock -> (TextPageBlock) textBlock)
.toList();
int count = Math.min(3, textPageBlocks.size());
headerCandidates.add(new ArrayList<>(textPageBlocks.subList(0, count)));
}
return headerCandidates;
}
/**
* Calculate the Hamming distance between two strings after preprocessing to make them the same length
* and replacing all digits with a special character '@' since they are a common occurrence in headers/footers.
*
* @param firstCandidate First string
* @param secondCandidate Second string
* @return The Hamming distance between the two preprocessed strings.
*/
private int calculateHammingDistanceWithPreprocessing(String firstCandidate, String secondCandidate) {
int maxLength = Math.max(firstCandidate.length(), secondCandidate.length());
String cleanFirstCandidate = padString(firstCandidate, maxLength, '\0').replaceAll("\\d", "@");
String cleanSecondCandidate = padString(secondCandidate, maxLength, '\0').replaceAll("\\d", "@");
int distance = 0;
for (int i = 0; i < maxLength; i++) {
if (cleanFirstCandidate.charAt(i) != cleanSecondCandidate.charAt(i)) {
distance++;
}
}
return distance;
}
private String padString(String input, int length, char padChar) {
if (input.length() >= length) {
return input;
}
StringBuilder sb = new StringBuilder(input);
while (sb.length() < length) {
sb.append(padChar);
}
return sb.toString();
}
}
@@ -1,12 +1,5 @@
package com.knecon.fforesight.service.layoutparser.processor.utils;
import com.knecon.fforesight.service.layoutparser.processor.model.text.TextPageBlock;
import com.knecon.fforesight.service.layoutparser.processor.model.text.TextPositionSequence;
import lombok.experimental.UtilityClass;
import org.apache.pdfbox.cos.COSName;
import org.apache.pdfbox.pdmodel.documentinterchange.markedcontent.PDMarkedContent;
import org.apache.pdfbox.text.TextPosition;
import java.awt.geom.Rectangle2D;
import java.util.Collection;
import java.util.Collections;
@@ -14,12 +7,23 @@ import java.util.List;
import java.util.Map;
import java.util.stream.Collectors;
import org.apache.pdfbox.cos.COSName;
import org.apache.pdfbox.pdmodel.documentinterchange.markedcontent.PDMarkedContent;
import org.apache.pdfbox.text.TextPosition;
import com.knecon.fforesight.service.layoutparser.processor.docstrum.model.BoundingBox;
import com.knecon.fforesight.service.layoutparser.processor.model.text.TextPageBlock;
import com.knecon.fforesight.service.layoutparser.processor.model.text.TextPositionSequence;
import lombok.experimental.UtilityClass;
@UtilityClass
public class MarkedContentUtils {
public static final String HEADER = "Header";
public static final String FOOTER = "Footer";
public List<Rectangle2D> getMarkedContentBboxPerLine(List<PDMarkedContent> markedContents, String subtype) {
if (markedContents == null) {
@@ -31,7 +35,8 @@ public class MarkedContentUtils {
.filter(m -> m.getProperties() != null)
.filter(m -> m.getProperties().getItem("Subtype") != null)
.filter(m -> ((COSName) m.getProperties().getItem("Subtype")).getName().equals(subtype))
.map(PDMarkedContent::getContents).flatMap(Collection::stream)
.map(PDMarkedContent::getContents)
.flatMap(Collection::stream)
.filter(t -> t instanceof TextPosition)
.map(t -> (TextPosition) t)
.filter(t -> !t.getUnicode().equals(" "))
@@ -41,16 +46,77 @@ public class MarkedContentUtils {
return Collections.emptyList();
}
return markedContentByYPosition.values().stream()
.map(textPositions -> new TextPositionSequence(textPositions.stream()
.toList(), 0, true)
.getRectangle())
.map(t -> new Rectangle2D.Float(t.getTopLeft().getX(), t.getTopLeft().getY() - Math.abs(t.getHeight()), t.getWidth(), Math.abs(t.getHeight()))).collect(Collectors.toList());
return markedContentByYPosition.values()
.stream()
.map(textPositions -> new TextPositionSequence(textPositions, 0, true).getBBoxInitialUserSpace())
.map(t -> new Rectangle2D.Double(t.getX(), t.getY() - Math.abs(t.getHeight()), t.getWidth(), Math.abs(t.getHeight())))
.collect(Collectors.toList());
}
public List<MarkedContentPosition> getMarkedContentPositions(List<PDMarkedContent> markedContents) {
if (markedContents == null) {
return Collections.emptyList();
}
return markedContents.stream()
.filter(m -> !m.getContents().isEmpty())
.map(MarkedContentPosition::fromPDMarkedContent)
.toList();
}
public boolean intersects(TextPageBlock textBlock, Map<String, List<Rectangle2D>> markedContentBboxPerType, String type) {
return markedContentBboxPerType.get(type) != null && markedContentBboxPerType.get(type).stream().anyMatch(rectangle -> rectangle.intersects(textBlock.getPdfMinX(), textBlock.getPdfMinY(), textBlock.getWidth(), textBlock.getHeight()));
return markedContentBboxPerType.get(type) != null && markedContentBboxPerType.get(type)
.stream()
.anyMatch(rectangle -> rectangle.intersects(textBlock.getPdfMinX(), textBlock.getPdfMinY(), textBlock.getWidth(), textBlock.getHeight()));
}
public record MarkedContentPosition(String type, String subType, List<Rectangle2D> textPositions) {
public static MarkedContentPosition fromPDMarkedContent(PDMarkedContent markedContent) {
return new MarkedContentPosition(markedContent.getTag(), parseSubType(markedContent), parseTextPositions(markedContent.getContents()));
}
private static List<Rectangle2D> parseTextPositions(List<Object> contents) {
return contents.stream()
.filter(content -> content instanceof TextPosition)
.map(content -> (TextPosition) content)
.filter(content -> !content.getUnicode().equals(" "))
.map(textPositions -> new TextPositionSequence(List.of(textPositions), 0, true))
.map(BoundingBox::getBBoxInitialUserSpace)
.collect(Collectors.toList());
}
private static String parseSubType(PDMarkedContent markedContent) {
if (markedContent == null || markedContent.getProperties() == null || markedContent.getProperties().getItem("Subtype") == null) {
return null;
}
return ((COSName) markedContent.getProperties().getItem("Subtype")).getName();
}
public String formattedType() {
if (subType == null || subType.isEmpty()) {
return type;
}
if (type.equals("Artifact")) {
return subType;
}
return String.format("%s-%s", type, subType);
}
}
}

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