177 |
|
|
178 |
|
// Make sure the SIGSEGV handler can access CPU registers |
179 |
|
friend sigsegv_return_t sigsegv_handler(sigsegv_address_t, sigsegv_address_t); |
180 |
– |
|
181 |
– |
// Memory allocator returning areas aligned on 16-byte boundaries |
182 |
– |
void *operator new(size_t size); |
183 |
– |
void operator delete(void *p); |
180 |
|
}; |
181 |
|
|
186 |
– |
// Memory allocator returning sheepshaver_cpu objects aligned on 16-byte boundaries |
187 |
– |
// FORMAT: [ alignment ] magic identifier, offset to malloc'ed data, sheepshaver_cpu data |
188 |
– |
void *sheepshaver_cpu::operator new(size_t size) |
189 |
– |
{ |
190 |
– |
const int ALIGN = 16; |
191 |
– |
|
192 |
– |
// Allocate enough space for sheepshaver_cpu data + signature + align pad |
193 |
– |
uint8 *ptr = (uint8 *)malloc(size + ALIGN * 2); |
194 |
– |
if (ptr == NULL) |
195 |
– |
throw std::bad_alloc(); |
196 |
– |
|
197 |
– |
// Align memory |
198 |
– |
int ofs = 0; |
199 |
– |
while ((((uintptr)ptr) % ALIGN) != 0) |
200 |
– |
ofs++, ptr++; |
201 |
– |
|
202 |
– |
// Insert signature and offset |
203 |
– |
struct aligned_block_t { |
204 |
– |
uint32 pad[(ALIGN - 8) / 4]; |
205 |
– |
uint32 signature; |
206 |
– |
uint32 offset; |
207 |
– |
uint8 data[sizeof(sheepshaver_cpu)]; |
208 |
– |
}; |
209 |
– |
aligned_block_t *blk = (aligned_block_t *)ptr; |
210 |
– |
blk->signature = FOURCC('S','C','P','U'); |
211 |
– |
blk->offset = ofs + (&blk->data[0] - (uint8 *)blk); |
212 |
– |
assert((((uintptr)&blk->data) % ALIGN) == 0); |
213 |
– |
return &blk->data[0]; |
214 |
– |
} |
215 |
– |
|
216 |
– |
void sheepshaver_cpu::operator delete(void *p) |
217 |
– |
{ |
218 |
– |
uint32 *blk = (uint32 *)p; |
219 |
– |
assert(blk[-2] == FOURCC('S','C','P','U')); |
220 |
– |
void *ptr = (void *)(((uintptr)p) - blk[-1]); |
221 |
– |
free(ptr); |
222 |
– |
} |
223 |
– |
|
182 |
|
sheepshaver_cpu::sheepshaver_cpu() |
183 |
|
: powerpc_cpu(enable_jit_p()) |
184 |
|
{ |
826 |
|
#endif |
827 |
|
|
828 |
|
delete ppc_cpu; |
829 |
+ |
ppc_cpu = NULL; |
830 |
|
} |
831 |
|
|
832 |
|
#if PPC_ENABLE_JIT && PPC_REENTRANT_JIT |
874 |
|
|
875 |
|
void TriggerInterrupt(void) |
876 |
|
{ |
877 |
+ |
idle_resume(); |
878 |
|
#if 0 |
879 |
|
WriteMacInt32(0x16a, ReadMacInt32(0x16a) + 1); |
880 |
|
#else |
998 |
|
case NATIVE_VIDEO_DO_DRIVER_IO: |
999 |
|
gpr(3) = (int32)(int16)VideoDoDriverIO(gpr(3), gpr(4), gpr(5), gpr(6), gpr(7)); |
1000 |
|
break; |
1001 |
+ |
case NATIVE_ETHER_AO_GET_HWADDR: |
1002 |
+ |
AO_get_ethernet_address(gpr(3)); |
1003 |
+ |
break; |
1004 |
+ |
case NATIVE_ETHER_AO_ADD_MULTI: |
1005 |
+ |
AO_enable_multicast(gpr(3)); |
1006 |
+ |
break; |
1007 |
+ |
case NATIVE_ETHER_AO_DEL_MULTI: |
1008 |
+ |
AO_disable_multicast(gpr(3)); |
1009 |
+ |
break; |
1010 |
+ |
case NATIVE_ETHER_AO_SEND_PACKET: |
1011 |
+ |
AO_transmit_packet(gpr(3)); |
1012 |
+ |
break; |
1013 |
|
case NATIVE_ETHER_IRQ: |
1014 |
|
EtherIRQ(); |
1015 |
|
break; |