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2024-09-11improved file name autocompletionRobin Haberkorn1-1/+1
* pressing ^W in FG now deletes the entire directory component as in EB * commands without glob patterns (eg. EW) can now autocomplete file names containing glob patterns * When the autocompletion contains a glob character in commands accepting glob patterns like EB or EN, we now escape the glob pattern. This already helps if the remaining file name can be autocompleted in one go. Unfortunately, this is still insufficient if we can only partially complete and the partial completion contains glob characters. For instance, if there are 2 files: `file?.txt` and `file?.foo`, completing after `f` will insert `ile[?].`. The second try to press Tab will already do nothing. To fully support these cases, we need a version of teco_file_auto_complete() accepting glob patterns. Perhaps we can simply append `*` to the given glob pattern.
2024-09-09added raw ANSI mode to facilitate 8-bit clean editing (refs #5)Robin Haberkorn1-1/+1
* When enabled with bit 2 in the ED flags (0,4ED), all registers and buffers will get the raw ANSI encoding (as if 0EE had been called on them). You can still manually change the encoding, eg. by calling 65001EE afterwards. * Also the ANSI mode sets up character representations for all bytes >= 0x80. This is currently done only depending on the ED flag, not when setting 0EE. * Since setting 16,4ED for 8-bit clean editing in a macro can be tricky - the default unnamed buffer will still be at UTF-8 and at least a bunch of environment registers as well - we added the command line option `--8bit` (short `-8`) which configures the ED flags very early on. As another advantage you can mung the profile in 8-bit mode as well when using SciTECO as a sort of interactive hex editor. * Disable UTF-8 checks in 8-bit clean mode (sample.teco_ini).
2024-09-09Xq and ]q inherit the document encoding from the source document (refs #5)Robin Haberkorn1-2/+4
* ^Uq however always sets an UTF8 register as the source is supposed to be a SciTECO macro which is always UTF-8. * :^Uq preserves the register's encoding * teco_doc_set_string() now also sets the encoding * instead of trying to restore the encoding in teco_doc_undo_set_string(), we now swap out the document in a teco_doc_t and pass it to an undo token. * The get_codepage() Q-Reg method has been removed as the same can now be done with teco_doc_get_string() and the get_string() method.
2024-09-09glob patterns fully support Unicode now (refs #5)Robin Haberkorn1-13/+16
* The ASCII compiler would try to escape ("\") all bytes of a multibyte UTF-8 glyph. * The new implementation escapes only metacharacters and passes down all non-ANSI glyphs unchanged. On the downside, this will work only with PCREs.
2024-01-21updated copyright to 2024Robin Haberkorn1-1/+1
2023-04-05updated copyright to 2023Robin Haberkorn1-1/+1
2022-11-28fixed a number of crashes due to empty string arguments or uninitialized ↵Robin Haberkorn1-0/+6
registers * An empty but valid teco_string_t can contain NULL pointers. More precisely, a state's done_cb() can be invoked with such empty strings in case of empty string arguments. Also a registers get_string() can return the NULL pointer for existing registers with uninitialized string parts. * In all of these cases, the language should treat "uninitialized" strings exactly like empty strings. * Not doing so, resulted in a number of vulnerabilities. * EN$$ crashed if "_" was uninitialized * The ^E@q and ^ENq string building constructs would crash for existing but uninitialized registers q. * ?$ would crash * ESSETILEXER$$ would crash * This is now fixed. Test cases have been added. * I cannot guarantee that I have found all such cases. Generally, it might be wise to change our definitions and make sure that every teco_string_t must have an associated heap object to be valid. All functions returning pointer+length pairs should consequently also never return NULL pointers.
2022-06-21updated copyright to 2022 and updated TODORobin Haberkorn1-1/+1
2021-10-11optimized caret scrolling: this is a costly operation and is now done only ↵Robin Haberkorn1-2/+0
once per keypress * Esp. costly since Scintilla 5. * We now avoid any Scintilla message that automatically scrolls the caret (makes the caret visible) and instead call SCI_SCROLLCARET only once after every keypress in the interface implementation. * From nowon, use * SCI_SETEMPTYSELECTION instead of SCI_GOTOPOS * SCI_SETEMPTYSELECTION(SCI_POSITIONFROMLINE(...)) instead of SCI_GOTOLINE * SCI_SETSELECTIONSTART and SCI_SETSELECTIONEND instead of SCI_SETSEL * With these optimizations we are significantly faster than before the Scintilla upgrade (6e67f5a682ff46d69888fec61b94bf45cec46721). It is now even safe to execute the Gtk test suite during CI.
2021-05-30THE GREAT CEEIFICATION EVENTRobin Haberkorn1-0/+573
This is a total conversion of SciTECO to plain C (GNU C11). The chance was taken to improve a lot of internal datastructures, fix fundamental bugs and lay the foundations of future features. The GTK user interface is now in an useable state! All changes have been squashed together. The language itself has almost not changed at all, except for: * Detection of string terminators (usually Escape) now takes the string building characters into account. A string is only terminated outside of string building characters. In other words, you can now for instance write I^EQ[Hello$world]$ This removes one of the last bits of shellisms which is out of place in SciTECO where no tokenization/lexing is performed. Consequently, the current termination character can also be escaped using ^Q/^R. This is used by auto completions to make sure that strings are inserted verbatim and without unwanted sideeffects. * All strings can now safely contain null-characters (see also: 8-bit cleanliness). The null-character itself (^@) is not (yet) a valid SciTECO command, though. An incomplete list of changes: * We got rid of the BSD headers for RB trees and lists/queues. The problem with them was that they used a form of metaprogramming only to gain a bit of type safety. It also resulted in less readble code. This was a C++ desease. The new code avoids metaprogramming only to gain type safety. The BSD tree.h has been replaced by rb3ptr by Jens Stimpfle (https://github.com/jstimpfle/rb3ptr). This implementation is also more memory efficient than BSD's. The BSD list.h and queue.h has been replaced with a custom src/list.h. * Fixed crashes, performance issues and compatibility issues with the Gtk 3 User Interface. It is now more or less ready for general use. The GDK lock is no longer used to avoid using deprecated functions. On the downside, the new implementation (driving the Gtk event loop stepwise) is even slower than the old one. A few glitches remain (see TODO), but it is hoped that they will be resolved by the Scintilla update which will be performed soon. * A lot of program units have been split up, so they are shorter and easier to maintain: core-commands.c, qreg-commands.c, goto-commands.c, file-utils.h. * Parser states are simply structs of callbacks now. They still use a kind of polymorphy using a preprocessor trick. TECO_DEFINE_STATE() takes an initializer list that will be merged with the default list of field initializers. To "subclass" states, you can simply define new macros that add initializers to existing macros. * Parsers no longer have a "transitions" table but the input_cb() may use switch-case statements. There are also teco_machine_main_transition_t now which can be used to implement simple transitions. Additionally, you can specify functions to execute during transitions. This largely avoids long switch-case-statements. * Parsers are embeddable/reusable now, at least in parse-only mode. This does not currently bring any advantages but may later be used to write a Scintilla lexer for TECO syntax highlighting. Once parsers are fully embeddable, it will also be possible to run TECO macros in a kind of coroutine which would allow them to process string arguments in real time. * undo.[ch] still uses metaprogramming extensively but via the C preprocessor of course. On the downside, most undo token generators must be initiated explicitly (theoretically we could have used embedded functions / trampolines to instantiate automatically but this has turned out to be dangereous). There is a TECO_DEFINE_UNDO_CALL() to generate closures for arbitrary functions now (ie. to call an arbitrary function at undo-time). This simplified a lot of code and is much shorter than manually pushing undo tokens in many cases. * Instead of the ridiculous C++ Curiously Recurring Template Pattern to achieve static polymorphy for user interface implementations, we now simply declare all functions to implement in interface.h and link in the implementations. This is possible since we no longer hace to define interface subclasses (all state is static variables in the interface's *.c files). * Headers are now significantly shorter than in C++ since we can often hide more of our "class" implementations. * Memory counting is based on dlmalloc for most platforms now. Unfortunately, there is no malloc implementation that provides an efficient constant-time memory counter that is guaranteed to decrease when freeing memory. But since we use a defined malloc implementation now, malloc_usable_size() can be used safely for tracking memory use. malloc() replacement is very tricky on Windows, so we use a poll thread on Windows. This can also be enabled on other supported platforms using --disable-malloc-replacement. All in all, I'm still not pleased with the state of memory limiting. It is a mess. * Error handling uses GError now. This has the advantage that the GError codes can be reused once we support error catching in the SciTECO language. * Added a few more test suite cases. * Haiku is no longer supported as builds are instable and I did not manage to debug them - quite possibly Haiku bugs were responsible. * Glib v2.44 or later are now required. The GTK UI requires Gtk+ v3.12 or later now. The GtkFlowBox fallback and sciteco-wrapper workaround are no longer required. * We now extensively use the GCC/Clang-specific g_auto feature (automatic deallocations when leaving the current code block). * Updated copyright to 2021. SciTECO has been in continuous development, even though there have been no commits since 2018. * Since these changes are so significant, the target release has been set to v2.0. It is planned that beginning with v3.0, the language will be kept stable.