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Restructured TODO
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@ -8,30 +8,32 @@ Known Problems
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- (inline-asm-param.kc) Inline ASM does not attempt to handle parameters (variables).
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- (inline-asm-param.kc) Inline ASM does not attempt to handle parameters (variables).
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Features
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Features
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- Move the main code into a main() function, and disallow code outside functions. The main function per default has no parameters and exits with RTS.
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- Improve locality of block sequence for if(cond) { stmt1; } else { stmt2; } to if(!cond) goto @else stmt1; jmp @end; @else: stmt2; @end:
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- Improve locality of block sequence for if(cond) { stmt1; } else { stmt2; } to if(!cond) goto @else stmt1; jmp @end; @else: stmt2; @end:
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- Optimize if/else by swapping if & else if cond is easier to evaluate than !cond.
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- Optimize if/else by swapping if & else if cond is easier to evaluate than !cond.
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- Add signed bytes / words
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- Let { stmt } and for() {} introduce a new anonymous scope. (But not when optimizing)
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- Add Fixed Point number types fixed[8.8], fixed[16.8] - maybe even fixed[24.4]
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- Add imports
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- Add structs
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- Let { stmt } introduce a new anonymous scope. (But not when optimizing)
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- Add preprocessing / find a way to allow some functions to run at compile time
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- Add preprocessing / find a way to allow some functions to run at compile time
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- Implement inline compilation of functions (and a mechanism for choosing which methods / calls to inline)
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- Implement inline compilation of functions (and a mechanism for choosing which methods / calls to inline)
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- Add ability to call ASM code from KC.
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- Add ability to call KC code from ASM. (Maybe declare some functions external to ensure their interface is well defined. Maybe generate ASM call stubs.)
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- Add an export keyword ensuring that a function is generated even if it is never called. Maybe export can be handled by generating a call that can be used as stub.
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- Handle long branches
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- Handle long branches
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- Optimize loops by unrolling them somewhat
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- Optimize loops by unrolling them somewhat
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- Optimize loops with Strength reduction (https://en.wikipedia.org/wiki/Strength_reduction)
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- Optimize loops with Strength reduction (https://en.wikipedia.org/wiki/Strength_reduction)
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- Remove unused functions.
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- Support calculated pointers eg. *(ptr+i)
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- Support calculated pointers eg. *(ptr+i)
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- Add syntax for encoded chars (eg. PETSCII instead of SCREEN)
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- Add syntax for encoded chars (eg. PETSCII instead of SCREEN)
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- Add support for casting. Specifically casting a byte* to a word and the other way (eg. to enable calculating D018-value from pointer to bitmap & screen.) - *D018 = (byte*)((word)SCREEN/$40)|((word)BITMAP/$400);
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- Consider whether autocasting word & byte* is possible ?
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Syntax Checking
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- Add UpliftRemains support for attempting to uplift potentials to ALU (requires modifying two registers: 1. the ALU potential to ALU - the one added to the ALU potential to A.)
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- Disallow code outside functions.
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- Syntax for composing a word from two bytes. word w = { lo, hi } --> ICL: w = lo _word_ hi;
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- Check that declared constants are never assigned.
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- A syntax for supporting custom ASM fragments? Allowing the adding of a new operator / function call that is compiled into custom written ASM-fragments. Currently there seems to be a quite short way when adding a new expression operator - maybe give the progrmmer the same freedom.
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- Graceful error when using undeclared variable.
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- Graceful error when using uninitialized variable.
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New language Features
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- Add signed bytes / words
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- Add Fixed Point number types fixed[8.8], fixed[16.8] - maybe even fixed[24.4]
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- Add structs
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Imports
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- Add imports
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- Remove unused functions.
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- Add an export keyword ensuring that a function is generated even if it is never called. Maybe export can be handled by generating a call that can be used as stub.
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Constants
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Constants
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- Do not create multiple versions & phi-statements for declared constants.
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- Do not create multiple versions & phi-statements for declared constants.
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@ -40,11 +42,14 @@ Constants
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- When an assignment is encountered create a new version.
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- When an assignment is encountered create a new version.
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- Backtrack the necessary new phi-blocks and changes into the code?
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- Backtrack the necessary new phi-blocks and changes into the code?
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Word Math
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Word Operations / Math
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- Syntax for composing a word from two bytes. word w = { lo, hi } --> ICL: w = lo _word_ hi;
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- Support Word table lookup (through 2 byte-tables)
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- Support Word table lookup (through 2 byte-tables)
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- Support word math operations (addition, subtraction)
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- Support word math operations (addition, subtraction)
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- Implement a word-ALU
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- Implement a word-ALU
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- Usage: word[] plotter_x; word[] plotter_y; byte* plotter = plotter_x[x] + plotter_y[y]; -> lda plotter_x_lo,x; clc; adc plotter_y_lo,y; sta plotter; lda plotter_x_hi,x; adc plotter_y_hi,y; sta plotter+1
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- Usage: word[] plotter_x; word[] plotter_y; byte* plotter = plotter_x[x] + plotter_y[y]; -> lda plotter_x_lo,x; clc; adc plotter_y_lo,y; sta plotter; lda plotter_x_hi,x; adc plotter_y_hi,y; sta plotter+1
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- Add support for casting. Specifically casting a byte* to a word and the other way (eg. to enable calculating D018-value from pointer to bitmap & screen.) - *D018 = (byte*)((word)SCREEN/$40)|((word)BITMAP/$400);
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- Consider whether autocasting word & byte* is possible ?
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Arrays / Strings / Inline data
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Arrays / Strings / Inline data
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- New semantic: Arrays are always allocated inline (and must therefore have a size). Pointers are never.
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- New semantic: Arrays are always allocated inline (and must therefore have a size). Pointers are never.
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@ -59,11 +64,14 @@ Arrays / Strings / Inline data
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- Support syntax for initializing the address of a byte-array. byte[] plot_x = { addr=$1000 }; -- current syntax as a short hand byte[] plot_x = $1000;
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- Support syntax for initializing the address of a byte-array. byte[] plot_x = { addr=$1000 }; -- current syntax as a short hand byte[] plot_x = $1000;
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- Syntax for accessing the low/high byte-array that underlies the word-array. word[$100] plot_x; byte* plot_x_lo = plot_x.lo; plot_x_lo[0] = 0;
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- Syntax for accessing the low/high byte-array that underlies the word-array. word[$100] plot_x; byte* plot_x_lo = plot_x.lo; plot_x_lo[0] = 0;
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- Inline ASM
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ASM Integration / Inline ASM
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- Allow inline ASM parameter expansion - eg lda line (where line is a variable)
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- Allow inline ASM parameter expansion - eg lda line (where line is a variable)
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- Allow lda <var> or sta <var> to just perform a register copy if possible.
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- Allow lda <var> or sta <var> to just perform a register copy if possible.
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- Add syntax for ensuring specific values are in A/X/Y when entering ASM - eg. asm( A: i, X: bits+1 ) { sta {SCREEN},x };
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- Add syntax for ensuring specific values are in A/X/Y when entering ASM - eg. asm( A: i, X: bits+1 ) { sta {SCREEN},x };
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- Add syntax for specifying that ASM does not clobber specific registers (if the values are used but preserved through pha/pla) - eg. asm( A: noclob, X: i ) { pha lda #0 sta {SCREEN},x pla};
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- Add syntax for specifying that ASM does not clobber specific registers (if the values are used but preserved through pha/pla) - eg. asm( A: noclob, X: i ) { pha lda #0 sta {SCREEN},x pla};
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- Add ability to call external ASM code from KC.
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- Add ability to call KC code from ASM. (Maybe declare some functions external to ensure their interface is well defined. Maybe generate ASM call stubs.)
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- A syntax for supporting custom ASM fragments? Allowing the adding of a new operator / function call that is compiled into custom written ASM-fragments. Currently there seems to be a quite short way when adding a new expression operator - maybe give the programmer the same freedom.
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Assembler Improvements
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Assembler Improvements
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- Relabel blocks eliminating long labels such as b3_from_b11
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- Relabel blocks eliminating long labels such as b3_from_b11
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@ -98,9 +106,11 @@ Register Allocation
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- Generate ASM & examine clobber. If the potential register allocation results in clobber - the branch is dead.
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- Generate ASM & examine clobber. If the potential register allocation results in clobber - the branch is dead.
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- Handle each remaining allocation possibility in order of their score - highest score first.
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- Handle each remaining allocation possibility in order of their score - highest score first.
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- Assign the variable to the selected register & Recurse down to the next variable.
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- Assign the variable to the selected register & Recurse down to the next variable.
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- Add UpliftRemains support for attempting to uplift potentials to ALU (requires modifying two registers: 1. the ALU potential to ALU - the one added to the ALU potential to A.)
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- Add ability to store/restore registers to free up registers for allocation in outer scopes. Requires marking registers as non-clobbered in certain cases.
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Process/Code Structure Improvement
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Process/Code Structure Improvement
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- Eliminate copy visitor
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- Eliminate copy visitor (using ListIterator option for adding elements)
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- Refactor Expression Operator Implementation & Evaluation into one class per operator
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- Refactor Expression Operator Implementation & Evaluation into one class per operator
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- Improve error messages to give better context
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- Improve error messages to give better context
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- Offer to compile resulting ASM with KickAssembler
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- Offer to compile resulting ASM with KickAssembler
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@ -184,3 +194,4 @@ Done
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+ Syntax: asm { asm... } - using real ASM syntax inline!
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+ Syntax: asm { asm... } - using real ASM syntax inline!
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+ Support ASM syntax check etc.
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+ Support ASM syntax check etc.
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+ Also perform ASM clobber analysis when assigning registers.
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+ Also perform ASM clobber analysis when assigning registers.
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+ Move the main code into a main() function. The main function per default has no parameters and exits with RTS.
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