SYM * symbolPtr[1000000]; // Symbol pointers table
static long unused; // For supressing 'write' warnings
char buffer[256]; // Scratch buffer for messages
+int largestAlign[3] = { 2, 2, 2 }; // Largest alignment value seen per section
// Function prototypes
int d_unimpl(void);
int d_prgflags(void);
int d_opt(void);
int d_dsp(void);
+void SetLargestAlignment(int);
// Directive handler table
int (*dirtab[])() = {
};
+//
+// Set the largest alignment seen in the current section
+//
+void SetLargestAlignment(int size)
+{
+ if ((scattr & TEXT) && (largestAlign[0] < size))
+ largestAlign[0] = size;
+ else if ((scattr & DATA) && (largestAlign[1] < size))
+ largestAlign[1] = size;
+ else if ((scattr & BSS) && (largestAlign[2] < size))
+ largestAlign[2] = size;
+}
+
+
//
// .error - Abort compilation, printing an error message
//
//
int d_org(void)
{
- VALUE address;
+ uint32_t address;
if (!rgpu && !rdsp && !m6502)
return error(".org permitted only in gpu/dsp and 6502 sections");
int wordlong = 0; // WORD = 0, LONG = 1
int outtype = 0; // 0:hex, 1:decimal, 2:unsigned
- VALUE eval; // Expression value
+ uint32_t eval; // Expression value
WORD eattr; // Expression attributes
SYM * esym; // External symbol involved in expr.
TOKEN r_expr[EXPRSIZE];
unsigned lower2Bits = (rgpu || rdsp ? orgaddr : sloc) & 0x03;
unsigned bytesToSkip = (0x04 - lower2Bits) & 0x03;
SkipBytes(bytesToSkip);
+ SetLargestAlignment(4);
return 0;
}
unsigned lower3Bits = (rgpu || rdsp ? orgaddr : sloc) & 0x07;
unsigned bytesToSkip = (0x08 - lower3Bits) & 0x07;
SkipBytes(bytesToSkip);
+ SetLargestAlignment(8);
return 0;
}
unsigned lower4Bits = (rgpu || rdsp ? orgaddr : sloc) & 0x0F;
unsigned bytesToSkip = (0x10 - lower4Bits) & 0x0F;
SkipBytes(bytesToSkip);
+ SetLargestAlignment(16);
return 0;
}
unsigned lower5Bits = (rgpu || rdsp ? orgaddr : sloc) & 0x1F;
unsigned bytesToSkip = (0x20 - lower5Bits) & 0x1F;
SkipBytes(bytesToSkip);
+ SetLargestAlignment(32);
return 0;
}
//
// Return absolute (not TDB) and defined expression or return an error
//
-int abs_expr(VALUE * a_eval)
+int abs_expr(uint32_t * a_eval)
{
WORD eattr;
int d_assert(void)
{
WORD eattr;
- VALUE eval;
+ uint32_t eval;
for(; expr(exprbuf, &eval, &eattr, NULL)==OK; ++tok)
{
//
int d_prgflags(void)
{
- VALUE eval;
+ uint32_t eval;
if (*tok == EOL)
return error("PRGFLAGS requires value");
//
int d_abs(void)
{
- VALUE eval;
+ uint32_t eval;
if (m6502)
return error(in_6502mode);
{
DEBUG { printf("Directive: .ds.[size] = %u, sloc = $%X\n", siz, sloc); }
- VALUE eval;
+ uint32_t eval;
if (cursect != M6502)
{
// Check to see if the value being passed in is negative (who the hell does
// that?--nobody does; it's the code gremlins, or rum, that does it)
- // N.B.: Since VALUE is of type uint32_t, if it goes negative, it will have
+ // N.B.: Since 'eval' is of type uint32_t, if it goes negative, it will have
// its high bit set.
if (eval & 0x80000000)
return error("negative sizes not allowed");
}
else
{
- dep_block(eval, siz, (VALUE)0, (WORD)(DEFINED | ABS), NULL);
+ dep_block(eval, siz, 0, (WORD)(DEFINED | ABS), NULL);
}
at_eol();
int d_dc(WORD siz)
{
WORD eattr;
- VALUE eval;
+ uint32_t eval;
uint8_t * p;
if ((scattr & SBSS) != 0)
//
int d_dcb(WORD siz)
{
- VALUE evalc, eval;
+ uint32_t evalc, eval;
WORD eattr;
DEBUG { printf("dcb: section is %s%s%s (scattr=$%X)\n", (cursect & TEXT ? "TEXT" : ""), (cursect & DATA ? " DATA" : ""), (cursect & BSS ? "BSS" : ""), scattr); }
//
int d_init(WORD def_siz)
{
- VALUE count;
- VALUE eval;
+ uint32_t count;
+ uint32_t eval;
WORD eattr;
WORD siz;
//
// Deposit 'count' values of size 'siz' in the current (non-BSS) segment
//
-int dep_block(VALUE count, WORD siz, VALUE eval, WORD eattr, TOKEN * exprbuf)
+int dep_block(uint32_t count, WORD siz, uint32_t eval, WORD eattr, TOKEN * exprbuf)
{
WORD tdb;
WORD defined;
{
SYM * sym;
char * p;
- VALUE eval;
+ uint32_t eval;
if (m6502)
return error(in_6502mode);
//
int d_cargs(void)
{
- VALUE eval = 4; // Default to 4 if no offset specified (to account for
+ uint32_t eval = 4; // Default to 4 if no offset specified (to account for
// return address)
WORD rlist;
SYM * symbol;
//
int d_cstruct(void)
{
- VALUE eval = 0; // Default, if no offset specified, is zero
+ uint32_t eval = 0; // Default, if no offset specified, is zero
WORD rlist;
SYM * symbol;
char * symbolName;
int d_if(void)
{
WORD eattr;
- VALUE eval;
+ uint32_t eval;
SYM * esym;
IFENT * rif = f_ifent;