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Added a specialized callirq routine
git-svn-id: svn://svn.cc65.org/cc65/trunk@2968 b7a2c559-68d2-44c3-8de9-860c34a00d81
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@ -41,6 +41,7 @@ OBJS = add.o \
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bneg.o \
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bneg.o \
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bpushbsp.o \
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bpushbsp.o \
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call.o \
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call.o \
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callirq.o \
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callmain.o \
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callmain.o \
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compl.o \
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compl.o \
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condes.o \
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condes.o \
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53
libsrc/runtime/callirq.s
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53
libsrc/runtime/callirq.s
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@ -0,0 +1,53 @@
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;
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; Ullrich von Bassewitz, 2004-04-04
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;
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; CC65 runtime: Support for calling special irq routines declared as condes
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; type 2.
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;
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; There are two reasons, why this is a separate routine, and the generic
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; condes routine in condes.s is not used:
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;
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; 1. Speed. Having several things hardcoded makes it faster. This is
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; important if it is called in each interrupt.
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;
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; 2. Reentrancy. The condes routines must use self modyfiying code, which
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; means it is not reentrant. An IRQ using condes, that interrupts
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; another use of condes will cause unpredicatble behaviour. The current
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; code avoids this by using locking mechanisms, but it's complex and
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; has a size and performance penalty.
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;
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; As the normal condes routine, this one has the limitation of 127 table
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; entries.
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;
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.export callirq
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.import __IRQFUNC_TABLE__, __IRQFUNC_COUNT__
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.code
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; --------------------------------------------------------------------------
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; Call all IRQ routines. The function needs to use self modifying code and
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; is thereforce placed in the data segment.
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; NOTE: The routine must not be called if the table is empty!
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.data
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.proc callirq
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ldy #.lobyte(__IRQFUNC_COUNT__)
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loop: dey
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lda __IRQFUNC_TABLE__+1,y
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sta jmpvec+2 ; Modify code below
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dey
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lda __IRQFUNC_TABLE__+0,y
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sta jmpvec+1 ; Modify code below
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sty index+1 ; Modify code below
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jmpvec: jsr $FFFF ; Patched at runtime
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index: ldy #$FF ; Patched at runtime
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bne loop
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rts
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.endproc
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@ -52,9 +52,8 @@ exit: rts
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; --------------------------------------------------------------------------
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; --------------------------------------------------------------------------
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; Generic table call handler. Since the routine is also used to call a table
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; Generic table call handler. The code uses self modifying code and goes
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; of interrupt handlers, it uses heavily self modifying code for performance
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; into the data segment for this reason.
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; reasons. It will go into the data segment for this reason ...
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; NOTE: The routine must not be called if the table is empty!
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; NOTE: The routine must not be called if the table is empty!
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.data
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.data
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