arm_interface: Remove ARM11-isms from the CPU interface
This modifies the CPU interface to more accurately match an AArch64-supporting CPU as opposed to an ARM11 one. Two of the methods don't even make sense to keep around for this interface, as Adv Simd is used, rather than the VFP in the primary execution state. This is essentially a modernization change that should have occurred from the get-go.
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a94b623dfb
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b51e7e0288
7 changed files with 88 additions and 101 deletions
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@ -65,9 +65,9 @@ constexpr u32 MSG_WAITALL = 8;
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constexpr u32 LR_REGISTER = 30;
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constexpr u32 SP_REGISTER = 31;
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constexpr u32 PC_REGISTER = 32;
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constexpr u32 CPSR_REGISTER = 33;
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constexpr u32 PSTATE_REGISTER = 33;
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constexpr u32 UC_ARM64_REG_Q0 = 34;
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constexpr u32 FPSCR_REGISTER = 66;
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constexpr u32 FPCR_REGISTER = 66;
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// TODO/WiP - Used while working on support for FPU
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constexpr u32 TODO_DUMMY_REG_997 = 997;
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@ -116,7 +116,7 @@ constexpr char target_xml[] =
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<reg name="pc" bitsize="64" type="code_ptr"/>
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<flags id="cpsr_flags" size="4">
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<flags id="pstate_flags" size="4">
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<field name="SP" start="0" end="0"/>
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<field name="" start="1" end="1"/>
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<field name="EL" start="2" end="3"/>
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@ -135,7 +135,7 @@ constexpr char target_xml[] =
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<field name="Z" start="30" end="30"/>
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<field name="N" start="31" end="31"/>
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</flags>
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<reg name="cpsr" bitsize="32" type="cpsr_flags"/>
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<reg name="pstate" bitsize="32" type="pstate_flags"/>
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</feature>
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<feature name="org.gnu.gdb.aarch64.fpu">
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</feature>
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@ -227,10 +227,10 @@ static u64 RegRead(std::size_t id, Kernel::Thread* thread = nullptr) {
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return thread->context.sp;
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} else if (id == PC_REGISTER) {
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return thread->context.pc;
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} else if (id == CPSR_REGISTER) {
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return thread->context.cpsr;
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} else if (id > CPSR_REGISTER && id < FPSCR_REGISTER) {
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return thread->context.fpu_registers[id - UC_ARM64_REG_Q0][0];
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} else if (id == PSTATE_REGISTER) {
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return thread->context.pstate;
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} else if (id > PSTATE_REGISTER && id < FPCR_REGISTER) {
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return thread->context.vector_registers[id - UC_ARM64_REG_Q0][0];
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} else {
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return 0;
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}
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@ -247,10 +247,10 @@ static void RegWrite(std::size_t id, u64 val, Kernel::Thread* thread = nullptr)
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thread->context.sp = val;
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} else if (id == PC_REGISTER) {
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thread->context.pc = val;
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} else if (id == CPSR_REGISTER) {
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thread->context.cpsr = val;
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} else if (id > CPSR_REGISTER && id < FPSCR_REGISTER) {
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thread->context.fpu_registers[id - (CPSR_REGISTER + 1)][0] = val;
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} else if (id == PSTATE_REGISTER) {
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thread->context.pstate = val;
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} else if (id > PSTATE_REGISTER && id < FPCR_REGISTER) {
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thread->context.vector_registers[id - (PSTATE_REGISTER + 1)][0] = val;
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}
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}
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@ -781,11 +781,11 @@ static void ReadRegister() {
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LongToGdbHex(reply, RegRead(id, current_thread));
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} else if (id == PC_REGISTER) {
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LongToGdbHex(reply, RegRead(id, current_thread));
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} else if (id == CPSR_REGISTER) {
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IntToGdbHex(reply, (u32)RegRead(id, current_thread));
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} else if (id >= UC_ARM64_REG_Q0 && id < FPSCR_REGISTER) {
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} else if (id == PSTATE_REGISTER) {
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IntToGdbHex(reply, static_cast<u32>(RegRead(id, current_thread)));
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} else if (id >= UC_ARM64_REG_Q0 && id < FPCR_REGISTER) {
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LongToGdbHex(reply, RegRead(id, current_thread));
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} else if (id == FPSCR_REGISTER) {
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} else if (id == FPCR_REGISTER) {
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LongToGdbHex(reply, RegRead(TODO_DUMMY_REG_998, current_thread));
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} else {
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LongToGdbHex(reply, RegRead(TODO_DUMMY_REG_997, current_thread));
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@ -811,7 +811,7 @@ static void ReadRegisters() {
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bufptr += 16;
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IntToGdbHex(bufptr, (u32)RegRead(CPSR_REGISTER, current_thread));
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IntToGdbHex(bufptr, static_cast<u32>(RegRead(PSTATE_REGISTER, current_thread)));
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bufptr += 8;
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@ -843,11 +843,11 @@ static void WriteRegister() {
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RegWrite(id, GdbHexToLong(buffer_ptr), current_thread);
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} else if (id == PC_REGISTER) {
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RegWrite(id, GdbHexToLong(buffer_ptr), current_thread);
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} else if (id == CPSR_REGISTER) {
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} else if (id == PSTATE_REGISTER) {
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RegWrite(id, GdbHexToInt(buffer_ptr), current_thread);
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} else if (id >= UC_ARM64_REG_Q0 && id < FPSCR_REGISTER) {
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} else if (id >= UC_ARM64_REG_Q0 && id < FPCR_REGISTER) {
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RegWrite(id, GdbHexToLong(buffer_ptr), current_thread);
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} else if (id == FPSCR_REGISTER) {
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} else if (id == FPCR_REGISTER) {
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RegWrite(TODO_DUMMY_REG_998, GdbHexToLong(buffer_ptr), current_thread);
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} else {
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RegWrite(TODO_DUMMY_REG_997, GdbHexToLong(buffer_ptr), current_thread);
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@ -866,16 +866,16 @@ static void WriteRegisters() {
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if (command_buffer[0] != 'G')
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return SendReply("E01");
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for (u32 i = 0, reg = 0; reg <= FPSCR_REGISTER; i++, reg++) {
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for (u32 i = 0, reg = 0; reg <= FPCR_REGISTER; i++, reg++) {
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if (reg <= SP_REGISTER) {
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RegWrite(reg, GdbHexToLong(buffer_ptr + i * 16), current_thread);
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} else if (reg == PC_REGISTER) {
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RegWrite(PC_REGISTER, GdbHexToLong(buffer_ptr + i * 16), current_thread);
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} else if (reg == CPSR_REGISTER) {
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RegWrite(CPSR_REGISTER, GdbHexToInt(buffer_ptr + i * 16), current_thread);
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} else if (reg >= UC_ARM64_REG_Q0 && reg < FPSCR_REGISTER) {
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} else if (reg == PSTATE_REGISTER) {
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RegWrite(PSTATE_REGISTER, GdbHexToInt(buffer_ptr + i * 16), current_thread);
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} else if (reg >= UC_ARM64_REG_Q0 && reg < FPCR_REGISTER) {
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RegWrite(reg, GdbHexToLong(buffer_ptr + i * 16), current_thread);
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} else if (reg == FPSCR_REGISTER) {
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} else if (reg == FPCR_REGISTER) {
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RegWrite(TODO_DUMMY_REG_998, GdbHexToLong(buffer_ptr + i * 16), current_thread);
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} else {
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UNIMPLEMENTED();
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