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Stefan Monnier authored
* lisp/emacs-lisp/byte-opt.el (byte-optimize-form-code-walker): Optimize under `condition-case' and `catch' if byte-compile--use-old-handlers is nil. (disassemble-offset): Handle new bytecodes. * lisp/emacs-lisp/bytecomp.el (byte-pushcatch, byte-pushconditioncase) (byte-pophandler): New byte codes. (byte-goto-ops): Adjust accordingly. (byte-compile--use-old-handlers): New var. (byte-compile-catch): Use new byte codes depending on byte-compile--use-old-handlers. (byte-compile-condition-case--old): Rename from byte-compile-condition-case. (byte-compile-condition-case--new): New function. (byte-compile-condition-case): New function that dispatches depending on byte-compile--use-old-handlers. (byte-compile-unwind-protect): Pass a function to byte-unwind-protect when we can. * lisp/emacs-lisp/cconv.el (cconv-convert, cconv-analyse-form): Adjust for the new compilation scheme using the new byte-codes. * src/alloc.c (Fgarbage_collect): Merge scans of handlerlist and catchlist, and make them unconditional now that they're heap-allocated. * src/bytecode.c (BYTE_CODES): Add Bpushcatch, Bpushconditioncase and Bpophandler. (bcall0): New function. (exec_byte_code): Add corresponding cases. Improve error message when encountering an invalid byte-code. Let Bunwind_protect accept a function (rather than a list of expressions) as argument. * src/eval.c (catchlist): Remove (merge with handlerlist). (handlerlist, lisp_eval_depth): Not static any more. (internal_catch, internal_condition_case, internal_condition_case_1) (internal_condition_case_2, internal_condition_case_n): Use PUSH_HANDLER. (unwind_to_catch, Fthrow, Fsignal): Adjust to merged handlerlist/catchlist. (internal_lisp_condition_case): Use PUSH_HANDLER. Adjust to new handlerlist which can only handle a single condition-case handler at a time. (find_handler_clause): Simplify since we only a single branch here any more. * src/lisp.h (struct handler): Merge struct handler and struct catchtag. (PUSH_HANDLER): New macro. (catchlist): Remove. (handlerlist): Always declare.
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