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Add VM opcodes NOP, LANG, and SANG
- To simplify code generation genericizing, add three new opcodes * NOP: No-Operation * LANG: Load Angle - load a BAM angle into a float reg as degrees * SANG: Save Angle - store a float reg into a BEM angle, converting from degrees
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3 changed files with 32 additions and 0 deletions
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@ -1,6 +1,8 @@
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#include "vm.h"
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#include "vm.h"
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#include "c_console.h"
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#include "c_console.h"
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#define NOP MODE_AUNUSED | MODE_BUNUSED | MODE_CUNUSED
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#define LI MODE_AI | MODE_BCJOINT | MODE_BCIMMS
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#define LI MODE_AI | MODE_BCJOINT | MODE_BCIMMS
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#define LKI MODE_AI | MODE_BCJOINT | MODE_BCKI
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#define LKI MODE_AI | MODE_BCJOINT | MODE_BCKI
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#define LKF MODE_AF | MODE_BCJOINT | MODE_BCKF
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#define LKF MODE_AF | MODE_BCJOINT | MODE_BCKF
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@ -220,6 +220,16 @@ begin:
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GETADDR(PB,RC,X_READ_NIL);
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GETADDR(PB,RC,X_READ_NIL);
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reg.f[a] = *(VM_SWORD *)ptr / 65536.0;
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reg.f[a] = *(VM_SWORD *)ptr / 65536.0;
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NEXTOP;
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NEXTOP;
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OP(LANG):
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ASSERTF(a); ASSERTA(B); ASSERTKD(C);
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GETADDR(PB,KC,X_READ_NIL);
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reg.f[a] = (*(VM_UWORD *)ptr >> 1) * (180.0 / 0x40000000); // BAM -> deg
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NEXTOP;
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OP(LANG_R):
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ASSERTF(a); ASSERTA(B); ASSERTD(C);
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GETADDR(PB,RC,X_READ_NIL);
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reg.f[a] = (*(VM_UWORD *)ptr >> 1) * (180.0 / 0x40000000);
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NEXTOP;
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OP(LBIT):
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OP(LBIT):
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ASSERTD(a); ASSERTA(B);
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ASSERTD(a); ASSERTA(B);
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GETADDR(PB,0,X_READ_NIL);
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GETADDR(PB,0,X_READ_NIL);
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@ -326,6 +336,17 @@ begin:
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GETADDR(PA,RC,X_WRITE_NIL);
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GETADDR(PA,RC,X_WRITE_NIL);
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*(VM_SWORD *)ptr = (VM_SWORD)(reg.f[B] * 65536.0);
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*(VM_SWORD *)ptr = (VM_SWORD)(reg.f[B] * 65536.0);
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NEXTOP;
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NEXTOP;
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OP(SANG):
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ASSERTA(a); ASSERTF(B); ASSERTKD(C);
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GETADDR(PA,KC,X_WRITE_NIL);
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*(VM_UWORD *)ptr = (VM_UWORD)(reg.f[B] * ((1<<30) / 180.0)) << 1; // deg -> BAM
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NEXTOP;
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OP(SANG_R):
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ASSERTA(a); ASSERTF(B); ASSERTD(C);
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GETADDR(PA,RC,X_WRITE_NIL);
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*(VM_UWORD *)ptr = (VM_UWORD)(reg.f[B] * ((1<<30) / 180.0)) << 1;
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NEXTOP;
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OP(SBIT):
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OP(SBIT):
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ASSERTA(a); ASSERTD(B);
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ASSERTA(a); ASSERTD(B);
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GETADDR(PA,0,X_WRITE_NIL);
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GETADDR(PA,0,X_WRITE_NIL);
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@ -1301,6 +1322,9 @@ begin:
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ASSERTA(B); ASSERTKA(C);
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ASSERTA(B); ASSERTKA(C);
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CMPJMP(reg.a[B] == konsta[C].v);
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CMPJMP(reg.a[B] == konsta[C].v);
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NEXTOP;
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NEXTOP;
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OP(NOP):
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NEXTOP;
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}
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}
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}
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}
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catch(VMException *exception)
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catch(VMException *exception)
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@ -2,6 +2,8 @@
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#define xx(op, name, mode) OP_##op
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#define xx(op, name, mode) OP_##op
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#endif
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#endif
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xx(NOP, nop, NOP), // no operation
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// Load constants.
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// Load constants.
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xx(LI, li, LI), // load immediate signed 16-bit constant
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xx(LI, li, LI), // load immediate signed 16-bit constant
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xx(LK, lk, LKI), // load integer constant
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xx(LK, lk, LKI), // load integer constant
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@ -35,6 +37,8 @@ xx(LV, lv, RVRPKI), // load vector
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xx(LV_R, lv, RVRPRI),
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xx(LV_R, lv, RVRPRI),
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xx(LX, lx, RFRPKI), // load fixed point
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xx(LX, lx, RFRPKI), // load fixed point
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xx(LX_R, lx, RFRPRI),
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xx(LX_R, lx, RFRPRI),
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xx(LANG, lang, RFRPKI), // load angle
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xx(LANG_R, lang, RFRPRI),
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xx(LBIT, lbit, RIRPI8), // rA = !!(*rB & C) -- *rB is a byte
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xx(LBIT, lbit, RIRPI8), // rA = !!(*rB & C) -- *rB is a byte
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@ -57,6 +61,8 @@ xx(SV, sv, RPRVKI), // store vector
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xx(SV_R, sv, RPRVRI),
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xx(SV_R, sv, RPRVRI),
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xx(SX, sx, RPRFKI), // store fixed point
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xx(SX, sx, RPRFKI), // store fixed point
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xx(SX_R, sx, RPRFRI),
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xx(SX_R, sx, RPRFRI),
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xx(SANG, sang, RPRFKI), // store angle
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xx(SANG_R, sang, RPRFRI),
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xx(SBIT, sbit, RPRII8), // *rA |= C if rB is true, *rA &= ~C otherwise
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xx(SBIT, sbit, RPRII8), // *rA |= C if rB is true, *rA &= ~C otherwise
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