ldr r2, [fp, #last_count-dynarec_local]
str r0, [fp, #pcaddr-dynarec_local]
add r2, r2, r10
- str r2, [fp, #cycle-dynarec_local] /* PCSX cycle counter */
adr lr, pcsx_return
+ str r2, [fp, #cycle-dynarec_local] /* PCSX cycle counter */
bx r1
.size jump_hlecall, .-jump_hlecall
+ .align 2
+ .global jump_intcall
+ .type jump_intcall, %function
+jump_intcall:
+ ldr r2, [fp, #last_count-dynarec_local]
+ str r0, [fp, #pcaddr-dynarec_local]
+ add r2, r2, r10
+ adr lr, pcsx_return
+ str r2, [fp, #cycle-dynarec_local] /* PCSX cycle counter */
+ b execI
+ .size jump_hlecall, .-jump_hlecall
+
new_dyna_leave:
.align 2
.global new_dyna_leave
ari_read_ram_mirror (3<<11), ldr
/* invalidation is already taken care of by the caller */
-.macro ari_write_ram bic_const var op
+.macro ari_write_ram bic_const var pf
ldr r0, [fp, #address-dynarec_local]
- ldr r1, [fp, #\var-dynarec_local]
+ ldr\pf r1, [fp, #\var-dynarec_local]
.if \bic_const
bic r0, r0, #\bic_const
.endif
- \op r1, [r0]
+ str\pf r1, [r0]
mov pc, lr
.endm
ari_write_ram8:
- ari_write_ram 0, byte, strb
+ ari_write_ram 0, byte, b
ari_write_ram16:
- ari_write_ram 1, hword, strh
+ ari_write_ram 1, hword, h
ari_write_ram32:
- ari_write_ram 3, word, str
+ ari_write_ram 3, word,
-.macro ari_write_ram_mirror mvn_const var op
+.macro ari_write_ram_mirror mvn_const var pf
ldr r0, [fp, #address-dynarec_local]
mvn r3, #\mvn_const
- ldr r1, [fp, #\var-dynarec_local]
+ ldr\pf r1, [fp, #\var-dynarec_local]
and r0, r3, lsr #11
ldr r2, [fp, #invc_ptr-dynarec_local]
orr r0, r0, #1<<31
ldrb r2, [r2, r0, lsr #12]
- \op r1, [r0]
+ str\pf r1, [r0]
tst r2, r2
movne pc, lr
lsr r0, r0, #12
.endm
ari_write_ram_mirror8:
- ari_write_ram_mirror 0, byte, strb
+ ari_write_ram_mirror 0, byte, b
ari_write_ram_mirror16:
- ari_write_ram_mirror (1<<11), hword, strh
+ ari_write_ram_mirror (1<<11), hword, h
ari_write_ram_mirror32:
- ari_write_ram_mirror (3<<11), word, str
+ ari_write_ram_mirror (3<<11), word,
.macro ari_read_bios_mirror bic_const op
.endif
.endm
-.macro ari_write_io opvl opst var mem_tab tab_shift
+.macro ari_write_io pf var mem_tab tab_shift
ldr r0, [fp, #address-dynarec_local]
- \opvl r1, [fp, #\var-dynarec_local]
+ ldr\pf r1, [fp, #\var-dynarec_local]
.if \tab_shift == 0
bic r0, r0, #3
.endif
bxne r12
0:
ldr r3, [fp, #psxH_ptr-dynarec_local]
- \opst r1, [r2, r3]
+ str\pf r1, [r2, r3]
mov pc, lr
1:
.if \tab_shift == 1 @ write16
mov pc, lr
ari_write_io16:
- ari_write_io ldrh, strh, hword, tab_write16, 1
+ ari_write_io h, hword, tab_write16, 1
ari_write_io32:
- ari_write_io ldr, str, word, tab_write32, 0
+ ari_write_io , word, tab_write32, 0
@ vim:filetype=armasm
#define GETLEs32(X) ((int16_t)GETLE32((uint16_t *)X))
#define GETLE16(X) LE2HOST16(*(uint16_t *)X)
-#define GETLE32(X) LE2HOST32(*(uint32_t *)X)
+#define GETLE32_(X) LE2HOST32(*(uint32_t *)X)
#define GETLE16D(X) ({uint32_t val = GETLE32(X); (val<<16 | val >> 16);})
#define PUTLE16(X, Y) do{*((uint16_t *)X)=HOST2LE16((uint16_t)Y);}while(0)
-#define PUTLE32(X, Y) do{*((uint32_t *)X)=HOST2LE16((uint32_t)Y);}while(0)
+#define PUTLE32_(X, Y) do{*((uint32_t *)X)=HOST2LE16((uint32_t)Y);}while(0)
+#ifdef __arm__
+#define GETLE32(X) (*(uint16_t *)X|(((uint16_t *)X)[1]<<16))
+#define PUTLE32(X, Y) do{*((uint16_t *)X)=(uint32_t)Y;((uint16_t *)X)[1]=(uint32_t)(Y)>>16;}while(0)
+#else
+#define GETLE32 GETLE32_
+#define PUTLE32 PUTLE32_
+#endif
/////////////////////////////////////////////////////////////////////////////