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-rw-r--r--kviewshell/plugins/djvu/libdjvu/JB2Image.h8
1 files changed, 4 insertions, 4 deletions
diff --git a/kviewshell/plugins/djvu/libdjvu/JB2Image.h b/kviewshell/plugins/djvu/libdjvu/JB2Image.h
index 6733e9f5..a8ea8aae 100644
--- a/kviewshell/plugins/djvu/libdjvu/JB2Image.h
+++ b/kviewshell/plugins/djvu/libdjvu/JB2Image.h
@@ -501,7 +501,7 @@ JB2Image::get_blit(int blitno) const
These extensions are described below by reference to the ICFDD
proposal dated August 1999. Both extension make use of the unused
record type value #9# (cf. ICFDD page 24) which has been renamed
- #RETQUIRED_DICT_OR_RESET#.
+ #REQUIRED_DICT_OR_RESET#.
{\bf Shared Shape Dictionaries} --- This extension provides
support for sharing symbol definitions between the pages of a
@@ -515,7 +515,7 @@ JB2Image::get_blit(int blitno) const
by the following records. The first record usually is a ``Start
Of Image'' record describing the size of the image.
- Starting with version 21, a #RETQUIRED_DICT_OR_RESET# (9) record
+ Starting with version 21, a #REQUIRED_DICT_OR_RESET# (9) record
type can appear {\em before} the #START_OF_DATA# (0) record. The
record type field is followed by a single number arithmetically
encoded (cf. ICFDD page 26) using a sixteenth context (cf. ICFDD
@@ -548,7 +548,7 @@ JB2Image::get_blit(int blitno) const
contexts. These contexts are normally allocated when they are used
for the first time (cf. ICFDD informative note, page 27).
- Starting with version 21, a #RETQUIRED_DICT_OR_RESET# (9) record
+ Starting with version 21, a #REQUIRED_DICT_OR_RESET# (9) record
type can appear {\em after} the #START_OF_DATA# (0) record. The
decoder should proceed with the next record after {\em clearing
all binary contexts used for coding numbers}. This operation
@@ -556,7 +556,7 @@ JB2Image::get_blit(int blitno) const
numbers can be deallocated.
Starting with version 21, the JB2 encoder should insert a
- #RETQUIRED_DICT_OR_RESET# record type whenever the number of these
+ #REQUIRED_DICT_OR_RESET# record type whenever the number of these
allocated binary contexts exceeds #20000#. Only very large
documents ever reach such a large number of allocated binary
contexts (e.g large maps). Hardware implementation however can