Finishing viewRead()/viewWrite()
This commit is contained in:
parent
cc25345960
commit
952605a8a4
20
makefile
20
makefile
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@ -10,7 +10,7 @@ default:
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@echo
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@echo "Planet Virtual Boy Emulator"
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@echo " https://www.planetvb.com/"
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@echo " August 3, 2020"
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@echo " August 4, 2020"
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@echo
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@echo "Intended build environment: Debian i386 or amd64"
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@echo " gcc-multilib"
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@ -20,12 +20,12 @@ default:
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@echo "Usage: make <recipe>"
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@echo " Package recipes:"
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@echo " build Compiles the native modules and desktop application"
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@echo " bundle Produces a .jar and deletes all intermediate files"
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@echo " clean Deletes all output files"
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@echo " core Check the native core library for style errors"
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@echo " desktop Compiles the Java desktop application"
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@echo " native Builds all native modules"
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@echo " pack Bundles everything in a .jar file"
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@echo " release Produces a .jar and deletes all intermediate files"
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@echo " Native recipes:"
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@echo " lin32 Builds native module linux_x86"
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@echo " lin64 Builds native module linux_x86-64"
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@ -46,14 +46,6 @@ build:
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@make -s desktop
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@make -s native
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# Performs a full build and packages it into a .jar
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.PHONY: bundle
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bundle:
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@make -s build
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@make -s pack
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@echo " Removing temporary files"
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@make -s clean_most
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# Delete all output files
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.PHONY: clean
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clean: clean_most
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@ -95,6 +87,14 @@ pack:
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@jar -cfe $(jarname) Main *.class \
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app images locale native src util vue makefile license.txt
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# Performs a full build and packages it into a .jar
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.PHONY: release
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release:
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@make -s build
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@make -s pack
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@echo " Removing temporary files"
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@make -s clean_most
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# Delete only Java .class files
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.PHONY: clean_desktop
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clean_desktop:
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147
src/core/bus.c
147
src/core/bus.c
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@ -1,47 +1,134 @@
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/* This file is included through vue.c and cannot be built directly. */
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#ifdef VUEAPI
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/* Read a value directly from host memory */
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static int32_t busReadMemory(uint8_t *data, int type) {
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/* Read bytes from host memory */
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static void busReadBytes(uint8_t *src, uint8_t *dest, uint32_t address,
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uint32_t size, uint32_t length) {
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/* Host memory is little-endian */
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#ifndef VUE_BIGENDIAN
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switch (type) {
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case VUE_S8 : return *(int8_t *)data;
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case VUE_U8 : return *(uint8_t *)data;
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case VUE_S16: return *(int16_t *)data;
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case VUE_U16: return *(uint16_t *)data;
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case VUE_S32: return *(int32_t *)data;
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}
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/* There is no source data */
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if (src == NULL)
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while (length-- > 0)
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*dest++ = 0;
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/* Copy bytes from the source as a circular buffer */
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else for (size--; length-- > 0;)
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*dest++ = src[address++ & size];
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}
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/* Read a value directly from host memory */
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static int32_t busReadMemory(uint8_t *data, uint32_t offset, int type) {
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int32_t value; /* Value read */
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/* There is no source data */
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if (data == NULL)
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return 0;
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/* Locate the value */
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data = &data[offset];
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/* Read the value */
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switch (type) {
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case VUE_S8 : value = *(int8_t *)data; break;
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case VUE_U8 : value = *(uint8_t *)data; break;
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case VUE_S16: value = *(int16_t *)data; break;
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case VUE_U16: value = *(uint16_t *)data; break;
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case VUE_S32: value = *(int32_t *)data; break;
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}
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/* Host memory is big-endian */
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#else
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#ifdef VUE_BIGENDIAN
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switch (type) {
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case VUE_S8 : return (int8_t ) data[0];
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case VUE_U8 : return (uint8_t ) data[0];
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case VUE_S16: return (int16_t ) data[0] << 8 | data[1];
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case VUE_U16: return (uint16_t) data[0] << 8 | data[1];
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case VUE_S32: return (int32_t )
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data[0] << 24 | data[1] << 16 | data[2] << 8 | data[3];
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case VUE_S32:
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value = (value >> 16 & 0x0000FFFF) | value << 16;
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/* Fallthrough */
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case VUE_S16:
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case VUE_U16:
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value = (value >> 8 & 0x00FF00FF) | (value << 8 & 0xFF00FF00);
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break;
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}
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#endif
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return 0; /* Unreachable, but the compiler doesn't know that */
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return value;
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}
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/* Perform a read operation */
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static int32_t busReadValue(VUE *vue, uint32_t address, int type, vbool debug){
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address &= ~TYPE_SIZES[type] + 1;
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/* Read a value from the CPU bus */
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static int32_t busReadValue(VUE *vue, uint32_t address, int type) {
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address &= -TYPE_SIZES[type];
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switch (address >> 24 & 7) {
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case 3: /* Unmapped */
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case 4: return 0; /* Cartridge expansion */
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case 5: return busReadMemory(&vue->wram[address & 8191], type);
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case 6: return vue->sram == NULL ? 0 :
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busReadMemory(&vue->sram[address & (vue->sram_size - 1)], type);
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case 7: return vue->rom == NULL ? 0 :
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busReadMemory(&vue->rom [address & (vue->rom_size - 1)], type);
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case 1: /* Fallthrough */ /* VSU (write-only) */
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case 3: /* Fallthrough */ /* Unmapped */
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case 4: /* Cartridge expansion (not supported) */
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return 0;
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case 5: return /* System WRAM */
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busReadMemory(vue->wram, address & 0xFFFF , type);
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case 6: return /* Cartridge RAM */
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busReadMemory(vue->sram, address & (vue->sram_size - 1), type);
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case 7: return /* Cartridge ROM */
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busReadMemory(vue->rom , address & (vue->rom_size - 1), type);
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}
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return 0; /* Unreachable */
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}
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/* Write bytes to host memory */
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static void busWriteBytes(uint8_t *dest, uint8_t *src, uint32_t address,
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uint32_t size, uint32_t length) {
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if (dest != NULL)
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for (size--; length-- > 0;)
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dest[address++ & size] = *src++;
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}
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/* Write a value directly to host memory */
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static void busWriteMemory(uint8_t *data, uint32_t offset, int type,
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int32_t value) {
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/* There is no destination data */
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if (data == NULL)
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return;
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/* Locate the value */
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data = &data[offset];
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/* Host memory is big-endian */
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#ifdef VUE_BIGENDIAN
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switch (type) {
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case VUE_S32:
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value = (value >> 16 & 0x0000FFFF) | value << 16;
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/* Fallthrough */
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case VUE_S16:
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case VUE_U16:
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value = (value >> 8 & 0x00FF00FF) | (value << 8 & 0xFF00FF00);
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break;
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}
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#endif
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/* Write the value */
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switch (type) {
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case VUE_S8 : /* Fallthrough */
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case VUE_U8 : *(uint8_t *)data = (uint8_t) value; break;
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case VUE_S16: /* Fallthrough */
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case VUE_U16: *(uint16_t *)data = (int16_t) value; break;
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case VUE_S32: *(int32_t *)data = (int32_t) value; break;
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}
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}
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/* Write a value to the CPU bus */
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static void busWriteValue(VUE *vue, uint32_t address, int type, int32_t value){
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address &= -TYPE_SIZES[type];
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switch (address >> 24 & 7) {
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case 5: /* System WRAM */
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busWriteMemory(vue->wram,
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address & 0xFFFF , type, value);
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break;
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case 6: /* Cartridge RAM */
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busWriteMemory(vue->sram,
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address & (vue->sram_size - 1), type, value);
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break;
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case 7: /* Cartridge ROM */
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busWriteMemory(vue->rom ,
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address & (vue->rom_size - 1), type, value);
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break;
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}
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return debug * 0; /* Unreachable */
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}
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#endif /* VUEAPI */
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@ -55,8 +55,9 @@ typedef struct {
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*****************************************************************************/
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VUEAPI void vueInitialize(VUE *vue);
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VUEAPI vbool vueRead (VUE *vue, uint32_t address, uint8_t *data, uint32_t length);
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VUEAPI vbool vueRead (VUE *vue, uint32_t address, uint8_t *dest, uint32_t length);
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VUEAPI vbool vueSetROM (VUE *vue, uint8_t *rom, uint32_t size);
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VUEAPI vbool vueWrite (VUE *vue, uint32_t address, uint8_t *src, uint32_t length);
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@ -30,19 +30,16 @@ void vueInitialize(VUE *vue) {
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vue->sram = NULL;
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}
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/* Perform a read operation */
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vbool vueRead(VUE *vue, uint32_t address, uint8_t *data, uint32_t length) {
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/* Read bytes from the CPU bus */
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vbool vueRead(VUE *vue, uint32_t address, uint8_t *dest, uint32_t length) {
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uint32_t count; /* Bytes to read in one iteration */
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/* Error checking */
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if (
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vue == NULL ||
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data == NULL ||
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length > 0x01000000
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) return VUE_FALSE;
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if (vue == NULL || dest == NULL)
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return VUE_FALSE;
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/* Perform the operation */
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for (; length > 0; address += count, length -= count, data += count) {
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for (; length > 0; address += count, length -= count, dest += count) {
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/* Determine the maximum number of bytes to process at once */
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count = 0x01000000 - (address & 0x00FFFFFF);
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@ -51,7 +48,20 @@ vbool vueRead(VUE *vue, uint32_t address, uint8_t *data, uint32_t length) {
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/* Process by component */
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switch (address >> 24 & 7) {
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/* case 7: ROM, etc */
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case 1: /* Fallthrough */ /* VSU (write-only) */
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case 3: /* Fallthrough */ /* Unmapped */
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case 4: /* Cartridge expansion (not supported) */
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busReadBytes(NULL , dest, address, 0 , count);
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break;
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case 5: /* System WRAM */
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busReadBytes(vue->wram, dest, address, 0x10000 , count);
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break;
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case 6: /* Cartridge RAM */
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busReadBytes(vue->sram, dest, address, vue->sram_size, count);
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break;
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case 7: /* Cartridge ROM */
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busReadBytes(vue->rom , dest, address, vue->rom_size , count);
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break;
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}
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};
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@ -74,3 +84,36 @@ vbool vueSetROM(VUE *vue, uint8_t *rom, uint32_t size) {
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vue->rom_size = size;
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return VUE_TRUE;
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}
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/* Write bytes to the CPU bus */
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vbool vueWrite(VUE *vue, uint32_t address, uint8_t *src, uint32_t length) {
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uint32_t count; /* Bytes to write in one iteration */
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/* Error checking */
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if (vue == NULL || src == NULL)
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return VUE_FALSE;
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/* Perform the operation */
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for (; length > 0; address += count, length -= count, src += count) {
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/* Determine the maximum number of bytes to process at once */
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count = 0x01000000 - (address & 0x00FFFFFF);
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if (count > length)
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count = length;
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/* Process by component */
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switch (address >> 24 & 7) {
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case 5: /* System WRAM */
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busWriteBytes(vue->wram, src, address, 0x10000 , count);
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break;
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case 6: /* Cartridge RAM */
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busWriteBytes(vue->sram, src, address, vue->sram_size, count);
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break;
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case 7: /* Cartridge ROM */
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busWriteBytes(vue->rom , src, address, vue->rom_size , count);
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break;
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}
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};
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return VUE_TRUE;
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}
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@ -96,7 +96,7 @@ JNIEXPORT jboolean JNICALL Java_vue_NativeVUE_isNative
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return JNI_TRUE;
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}
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// Perform a read access
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// Read bytes from the CPU bus
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JNIEXPORT jboolean JNICALL Java_vue_NativeVUE_read
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(JNIEnv *env, jobject vue, jint address, jbyteArray data, jint offset,
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jint length) {
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@ -106,7 +106,6 @@ JNIEXPORT jboolean JNICALL Java_vue_NativeVUE_read
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data == NULL ||
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offset < 0 ||
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length < 0 ||
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length < 0 || length > 0x01000000 ||
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offset + length > (*env)->GetArrayLength(env, data)
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) return JNI_FALSE;
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@ -143,3 +142,24 @@ JNIEXPORT jboolean JNICALL Java_vue_NativeVUE_setROM
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vueSetROM(&core->vue, rom, length);
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return JNI_TRUE;
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}
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/* Write bytes to the CPU bus */
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JNIEXPORT jboolean JNICALL Java_vue_NativeVUE_write
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(JNIEnv *env, jobject vue, jint address, jbyteArray data, jint offset,
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jint length) {
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// Error checking
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if (
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data == NULL ||
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offset < 0 ||
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length < 0 ||
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offset + length > (*env)->GetArrayLength(env, data)
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) return JNI_FALSE;
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// Perform the operation
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CORE *core = GetCore(env, vue);
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jbyte *elems = (*env)->GetByteArrayElements(env, data, NULL);
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vueWrite(&core->vue, address, &elems[offset], length);
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(*env)->ReleaseByteArrayElements(env, data, elems, 0);
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return JNI_TRUE;
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}
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@ -0,0 +1,143 @@
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package vue;
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// Java imports
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import java.util.*;
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// Simulation of the CPU bus
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class Bus {
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// Instance fields
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private JavaVUE vue; // Emulation state
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///////////////////////////////////////////////////////////////////////////
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// Constructors //
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///////////////////////////////////////////////////////////////////////////
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// Default constructor
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Bus(JavaVUE vue) {
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this.vue = vue;
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}
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// Read bytes from host memory
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void readBytes(byte[] src,byte[] dest,int address,int offset,int length) {
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// There is no source data
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if (src == null) {
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Arrays.fill(dest, offset, offset + length, (byte) 0);
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return;
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}
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||||
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// Copy bytes from the source as a circular buffer
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int count = 0; // Bytes to process in one iteration
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for (; length > 0; address += count, length -= count, offset += count){
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int from = address & src.length - 1;
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count = Math.min(length, src.length - from);
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System.arraycopy(src, from, dest, offset, count);
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}
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}
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// Read a value directly from host memory
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int readMemory(byte[] data, int offset, int type) {
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// There is no source data
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||||
if (data == null)
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return 0;
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||||
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// Processing by type
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switch (type) {
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case VUE.S8 : return data[offset];
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case VUE.U8 : return data[offset] & 0xFF;
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case VUE.S16: return
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data[offset+1] << 8 | data[offset ] & 0xFF;
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case VUE.U16: return
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(data[offset+1] & 0xFF) << 8 | data[offset ] & 0xFF;
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case VUE.S32: return
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data[offset+3] << 24 | (data[offset+2] & 0xFF) << 16 |
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(data[offset+1] & 0xFF) << 8 | (data[offset ] & 0xFF);
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}
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return 0; // Unreachable
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||||
}
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||||
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||||
// Read a value from the CPU bus
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||||
int readValue(int address, int type) {
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||||
address &= ~JavaVUE.TYPE_SIZES[type] + 1;
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switch (address >> 24 & 7) {
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case 1: // Fallthrough, VSU (write-only)
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||||
case 3: // Fallthrough, unmapped
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||||
case 4: // Cartridge expansion (not supported)
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||||
return 0;
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||||
case 5: return
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||||
readMemory(vue.wram, address & 0xFFFF , type);
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||||
case 6: return
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readMemory(vue.sram, address & vue.sram.length - 1, type);
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||||
case 7: return
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readMemory(vue.rom , address & vue.rom .length - 1, type);
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||||
}
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||||
return 0; // Unreachable
|
||||
}
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||||
|
||||
// Write bytes to host memory
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||||
void writeBytes(byte[] dest,byte[] src,int address,int offset,int length) {
|
||||
|
||||
// There is no destination data
|
||||
if (dest != null)
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||||
return;
|
||||
|
||||
// Copy bytes to the destination as a circular buffer
|
||||
int count = 0; // Bytes to process in one iteration
|
||||
for (; length > 0; address += count, length -= count, offset += count){
|
||||
int to = address & dest.length - 1;
|
||||
count = Math.min(length, dest.length - to);
|
||||
System.arraycopy(src, offset, dest, to, count);
|
||||
}
|
||||
|
||||
}
|
||||
|
||||
// Write a value directly to host memory
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||||
void writeMemory(byte[] data, int offset, int type, int value) {
|
||||
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||||
// There is no source data
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||||
if (data == null)
|
||||
return;
|
||||
|
||||
// Processing by type
|
||||
switch (type) {
|
||||
case VUE.S32:
|
||||
data[offset + 3] = (byte) (value >> 24);
|
||||
data[offset + 2] = (byte) (value >> 16);
|
||||
// Fallthrough
|
||||
case VUE.S16: // Fallthrough
|
||||
case VUE.U16:
|
||||
data[offset + 1] = (byte) (value >> 8);
|
||||
// Fallthrough
|
||||
case VUE.S8 : // Fallthrough
|
||||
case VUE.U8 :
|
||||
data[offset ] = (byte) value ;
|
||||
}
|
||||
|
||||
}
|
||||
|
||||
// Write a value to the CPU bus
|
||||
void writeValue(int address, int type, int value) {
|
||||
address &= ~JavaVUE.TYPE_SIZES[type] + 1;
|
||||
switch (address >> 24 & 7) {
|
||||
case 5:
|
||||
writeMemory(vue.wram,
|
||||
address & 0xFFFF , type, value);
|
||||
break;
|
||||
case 6:
|
||||
writeMemory(vue.sram,
|
||||
address & vue.sram.length - 1, type, value);
|
||||
break;
|
||||
case 7:
|
||||
writeMemory(vue.rom ,
|
||||
address & vue.rom .length - 1, type, value);
|
||||
break;
|
||||
}
|
||||
}
|
||||
|
||||
}
|
|
@ -4,8 +4,12 @@ package vue;
|
|||
class JavaVUE extends VUE {
|
||||
|
||||
// Instance fields
|
||||
private byte[] rom; // Cartridge ROM
|
||||
private byte[] sram; // Cartridge SRAM
|
||||
byte[] rom; // Cartridge ROM
|
||||
byte[] sram; // Cartridge SRAM
|
||||
byte[] wram; // System WRAM
|
||||
|
||||
// Components
|
||||
Bus bus; // Memory bus
|
||||
|
||||
|
||||
|
||||
|
@ -14,7 +18,7 @@ class JavaVUE extends VUE {
|
|||
///////////////////////////////////////////////////////////////////////////
|
||||
|
||||
// Memory access type sizes
|
||||
private static final int[] TYPE_SIZES = { 1, 1, 2, 2, 4 };
|
||||
static final int[] TYPE_SIZES = { 1, 1, 2, 2, 4 };
|
||||
|
||||
|
||||
|
||||
|
@ -24,6 +28,8 @@ class JavaVUE extends VUE {
|
|||
|
||||
// Default constructor
|
||||
JavaVUE() {
|
||||
bus = new Bus(this);
|
||||
wram = new byte[0x10000];
|
||||
}
|
||||
|
||||
|
||||
|
@ -47,19 +53,46 @@ class JavaVUE extends VUE {
|
|||
return false;
|
||||
}
|
||||
|
||||
// Perform a read operation
|
||||
public boolean read(int address, byte[] data, int offset, int length) {
|
||||
// Read bytes from the CPU bus
|
||||
public boolean read(int address, byte[] dest, int offset, int length) {
|
||||
int count = 0; // Bytes to read in one iteration
|
||||
|
||||
// Error checking
|
||||
if (data == null ||
|
||||
if (
|
||||
dest == null ||
|
||||
offset < 0 ||
|
||||
length < 0 ||
|
||||
length < 0 || length > 0x01000000 ||
|
||||
offset + length > data.length
|
||||
offset + length > dest.length
|
||||
) return false;
|
||||
|
||||
// Perform the operation
|
||||
for (; length > 0; address += count, length -= count, offset += count){
|
||||
|
||||
// Determine the maximum number of bytes to process at once
|
||||
count = Math.min(length, 0x01000000 - (address & 0x00FFFFFF));
|
||||
|
||||
// Process by component
|
||||
switch (address >> 24 & 7) {
|
||||
case 1: // VSU
|
||||
// Will support debug reads
|
||||
bus.readBytes(null, dest, address, 0 , count);
|
||||
break;
|
||||
case 3: // Fallthrough, unmapped
|
||||
case 4: // Cartridge expansion (not supported)
|
||||
bus.readBytes(null, dest, address, 0 , count);
|
||||
break;
|
||||
case 5: /* System WRAM */
|
||||
bus.readBytes(wram, dest, address, offset, count);
|
||||
break;
|
||||
case 6: /* Cartridge RAM */
|
||||
bus.readBytes(sram, dest, address, offset, count);
|
||||
break;
|
||||
case 7: /* Cartridge ROM */
|
||||
bus.readBytes(rom , dest, address, offset, count);
|
||||
break;
|
||||
}
|
||||
|
||||
};
|
||||
return true;
|
||||
}
|
||||
|
||||
|
@ -81,4 +114,39 @@ class JavaVUE extends VUE {
|
|||
return true;
|
||||
}
|
||||
|
||||
// Write bytes to the CPU bus
|
||||
public boolean write(int address, byte[] src, int offset, int length) {
|
||||
int count = 0; // Bytes to process in one iteration
|
||||
|
||||
// Error checking
|
||||
if (
|
||||
src == null ||
|
||||
offset < 0 ||
|
||||
length < 0 ||
|
||||
offset + length > src.length
|
||||
) return false;
|
||||
|
||||
// Perform the operation
|
||||
for (; length > 0; address += count, length -= count, offset += count){
|
||||
|
||||
// Determine the maximum number of bytes to process at once
|
||||
count = Math.min(length, 0x01000000 - (address & 0x00FFFFFF));
|
||||
|
||||
// Process by component
|
||||
switch (address >> 24 & 7) {
|
||||
case 5: /* System WRAM */
|
||||
bus.writeBytes(wram, src, address, offset, count);
|
||||
break;
|
||||
case 6: /* Cartridge RAM */
|
||||
bus.writeBytes(sram, src, address, offset, count);
|
||||
break;
|
||||
case 7: /* Cartridge ROM */
|
||||
bus.writeBytes(rom , src, address, offset, count);
|
||||
break;
|
||||
}
|
||||
|
||||
};
|
||||
return true;
|
||||
}
|
||||
|
||||
}
|
||||
|
|
|
@ -32,13 +32,17 @@ class NativeVUE extends VUE {
|
|||
// Determine whether the context is native-backed
|
||||
public native boolean isNative();
|
||||
|
||||
// Perform a read operation
|
||||
public native boolean read(int address, byte[] data, int offset,
|
||||
// Read bytes from the CPU bus
|
||||
public native boolean read(int address, byte[] dest, int offset,
|
||||
int length);
|
||||
|
||||
// Provide new ROM data
|
||||
public native boolean setROM(byte[] data, int offset, int length);
|
||||
|
||||
// Write bytes to the CPU bus
|
||||
public native boolean write(int address, byte[] src, int offset,
|
||||
int length);
|
||||
|
||||
|
||||
|
||||
///////////////////////////////////////////////////////////////////////////
|
||||
|
|
|
@ -61,11 +61,15 @@ public abstract class VUE {
|
|||
// Determine whether the context is native-backed
|
||||
public abstract boolean isNative();
|
||||
|
||||
// Perform a read operation
|
||||
public abstract boolean read(int address, byte[] data, int offset,
|
||||
// Read bytes from the CPU bus
|
||||
public abstract boolean read(int address, byte[] dest, int offset,
|
||||
int length);
|
||||
|
||||
// Provide new ROM data
|
||||
public abstract boolean setROM(byte[] data, int offset, int length);
|
||||
|
||||
// Write bytes to the CPU bus
|
||||
public abstract boolean write(int address, byte[] src, int offset,
|
||||
int length);
|
||||
|
||||
}
|
||||
|
|
Loading…
Reference in New Issue