mirror of
https://github.com/Atmosphere-NX/Atmosphere
synced 2024-11-15 09:36:35 +00:00
thermosphere: rewrite gdb/reg
This commit is contained in:
parent
97c4595a3a
commit
30a4a0d4c1
6 changed files with 170 additions and 105 deletions
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@ -135,7 +135,7 @@ static inline void writeFrameRegisterZ(ExceptionStackFrame *frame, u32 id, u64 v
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}
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}
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}
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}
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static inline uintptr_t exceptionGetSp(const ExceptionStackFrame *frame)
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static inline u64 *exceptionGetSpPtr(ExceptionStackFrame *frame)
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{
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{
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// Note: the return value is more or less meaningless if we took an exception from A32...
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// Note: the return value is more or less meaningless if we took an exception from A32...
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// We try our best to reflect which privilege level the exception was took from, nonetheless
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// We try our best to reflect which privilege level the exception was took from, nonetheless
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@ -149,7 +149,7 @@ static inline uintptr_t exceptionGetSp(const ExceptionStackFrame *frame)
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spEl0 = el == 2 || el == 0 || (m & 1) == 0; // note: frame->sp_el2 is aliased to frame->sp_el0
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spEl0 = el == 2 || el == 0 || (m & 1) == 0; // note: frame->sp_el2 is aliased to frame->sp_el0
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}
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}
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return spEl0 ? frame->sp_el0 : frame->sp_el1;
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return spEl0 ? &frame->sp_el0 : &frame->sp_el1;
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}
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}
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bool spsrEvaluateConditionCode(u64 spsr, u32 conditionCode);
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bool spsrEvaluateConditionCode(u64 spsr, u32 conditionCode);
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@ -173,7 +173,7 @@ static int GDB_ParseExceptionFrame(char *out, const DebugEventInfo *info, int si
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n += sprintf(
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n += sprintf(
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out + n,
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out + n,
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"1f:%016lx;20:%016lx;21:%08x",
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"1f:%016lx;20:%016lx;21:%08x",
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__builtin_bswap64(exceptionGetSp(frame)),
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__builtin_bswap64(*exceptionGetSpPtr(frame)),
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__builitin_bswap32((u32)frame->spsr_el2)
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__builitin_bswap32((u32)frame->spsr_el2)
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);
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);
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@ -23,7 +23,7 @@ u8 GDB_ComputeChecksum(const char *packetData, size_t len)
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return (u8)cksum;
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return (u8)cksum;
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}
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}
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void GDB_EncodeHex(char *dst, const void *src, size_t len)
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size_t GDB_EncodeHex(char *dst, const void *src, size_t len)
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{
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{
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static const char *alphabet = "0123456789abcdef";
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static const char *alphabet = "0123456789abcdef";
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const u8 *src8 = (const u8 *)src;
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const u8 *src8 = (const u8 *)src;
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@ -32,6 +32,8 @@ void GDB_EncodeHex(char *dst, const void *src, size_t len)
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dst[2 * i] = alphabet[(src8[i] & 0xf0) >> 4];
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dst[2 * i] = alphabet[(src8[i] & 0xf0) >> 4];
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dst[2 * i + 1] = alphabet[src8[i] & 0x0f];
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dst[2 * i + 1] = alphabet[src8[i] & 0x0f];
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}
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}
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return 2 * len;
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}
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}
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static inline u32 GDB_DecodeHexDigit(char src, bool *ok)
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static inline u32 GDB_DecodeHexDigit(char src, bool *ok)
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@ -12,7 +12,7 @@
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#include <errno.h>
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#include <errno.h>
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u8 GDB_ComputeChecksum(const char *packetData, size_t len);
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u8 GDB_ComputeChecksum(const char *packetData, size_t len);
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void GDB_EncodeHex(char *dst, const void *src, size_t len);
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size_t GDB_EncodeHex(char *dst, const void *src, size_t len);
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size_t GDB_DecodeHex(void *dst, const char *src, size_t len);
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size_t GDB_DecodeHex(void *dst, const char *src, size_t len);
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size_t GDB_EscapeBinaryData(size_t *encodedCount, void *dst, const void *src, size_t len, size_t maxLen);
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size_t GDB_EscapeBinaryData(size_t *encodedCount, void *dst, const void *src, size_t len, size_t maxLen);
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size_t GDB_UnescapeBinaryData(void *dst, const void *src, size_t len);
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size_t GDB_UnescapeBinaryData(void *dst, const void *src, size_t len);
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@ -5,149 +5,212 @@
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* SPDX-License-Identifier: (MIT OR GPL-2.0-or-later)
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* SPDX-License-Identifier: (MIT OR GPL-2.0-or-later)
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*/
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*/
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#include "gdb/regs.h"
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#include <string.h>
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#include "gdb/net.h"
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#include <assert.h>
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#include "../exceptions.h"
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#include "../fpu.h"
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#include "regs.h"
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#include "net.h"
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// GDB treats cpsr, fpsr, fpcr as 32-bit integers...
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GDB_DECLARE_HANDLER(ReadRegisters)
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GDB_DECLARE_HANDLER(ReadRegisters)
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{
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{
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if(ctx->selectedThreadId == 0)
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ENSURE(ctx->selectedThreadId == currentCoreCtx->coreId);
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ctx->selectedThreadId = ctx->currentThreadId;
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ThreadContext regs;
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const ExceptionStackFrame *frame = currentCoreCtx->guestFrame;
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Result r = svcGetDebugThreadContext(®s, ctx->debug, ctx->selectedThreadId, THREADCONTEXT_CONTROL_ALL);
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const FpuRegisterCache *fpuRegCache = fpuReadRegisters();
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if(R_FAILED(r))
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char *buf = ctx->buffer + 1;
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return GDB_ReplyErrno(ctx, EPERM);
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size_t n = 0;
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return GDB_SendHexPacket(ctx, ®s, sizeof(ThreadContext));
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struct PACKED ALIGN(4) {
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u64 sp;
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u64 pc;
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u32 cpsr;
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} cpuSprs = {
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.sp = *exceptionGetSpPtr(frame),
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.pc = frame->elr_el2,
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.cpsr = (u32)frame->spsr_el2,
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};
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static_assert(sizeof(cpuSprs) == 12, "sizeof(cpuSprs) != 12");
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u32 fpuSprs[2] = {
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(u32)fpuRegCache->fpsr,
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(u32)fpuRegCache->fpcr,
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};
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n += GDB_EncodeHex(buf + n, frame->x, sizeof(frame->x));
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n += GDB_EncodeHex(buf + n, &cpuSprs, sizeof(cpuSprs));
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n += GDB_EncodeHex(buf + n, fpuRegCache->q, sizeof(fpuRegCache->q));
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n += GDB_EncodeHex(buf + n, fpuSprs, sizeof(fpuSprs));
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return GDB_SendPacket(ctx, buf, n);
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}
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}
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GDB_DECLARE_HANDLER(WriteRegisters)
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GDB_DECLARE_HANDLER(WriteRegisters)
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{
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{
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if(ctx->selectedThreadId == 0)
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ENSURE(ctx->selectedThreadId == currentCoreCtx->coreId);
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ctx->selectedThreadId = ctx->currentThreadId;
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ThreadContext regs;
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ExceptionStackFrame *frame = currentCoreCtx->guestFrame;
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FpuRegisterCache *fpuRegCache = fpuGetRegisterCache();
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if(GDB_DecodeHex(®s, ctx->commandData, sizeof(ThreadContext)) != sizeof(ThreadContext))
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char *buf = ctx->commandData;
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return GDB_ReplyErrno(ctx, EPERM);
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char *tmp = ctx->workBuffer;
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Result r = svcSetDebugThreadContext(ctx->debug, ctx->selectedThreadId, ®s, THREADCONTEXT_CONTROL_ALL);
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size_t n = 0;
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if(R_FAILED(r))
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size_t m = 0;
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return GDB_ReplyErrno(ctx, EPERM);
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else
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struct PACKED ALIGN(4) {
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return GDB_ReplyOk(ctx);
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u64 sp;
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u64 pc;
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u32 cpsr;
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} cpuSprs;
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static_assert(sizeof(cpuSprs) == 12, "sizeof(cpuSprs) != 12");
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u32 fpuSprs[2];
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struct {
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void *dst;
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size_t sz;
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} info[4] = {
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{ frame->x, sizeof(frame->x) },
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{ &cpuSprs, sizeof(cpuSprs) },
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{ fpuRegCache->q, sizeof(fpuRegCache->q) },
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{ fpuSprs, sizeof(fpuSprs) },
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};
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// Parse & return on error
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for (u32 i = 0; i < 4; i++) {
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if (GDB_DecodeHex(tmp + m, buf + n, info[i].sz) != info[i].sz) {
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return GDB_ReplyErrno(ctx, EPERM);
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}
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n += 2 * info[i].sz;
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m += info[i].sz;
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}
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// Copy. Note: we don't check if cpsr (spsr_el2) was modified to return to EL2...
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m = 0;
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for (u32 i = 0; i < 4; i++) {
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memcpy(info[i].dst, tmp + m, info[i].sz);
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m += info[i].sz;
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}
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*exceptionGetSpPtr(frame) = cpuSprs.sp;
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frame->elr_el2 = cpuSprs.pc;
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frame->spsr_el2 = cpuSprs.cpsr;
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fpuRegCache->fpsr = fpuSprs[0];
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fpuRegCache->fpcr = fpuSprs[1];
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fpuCommitRegisters();
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return GDB_ReplyOk(ctx);
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}
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}
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static u32 GDB_ConvertRegisterNumber(ThreadContextControlFlags *flags, u32 gdbNum)
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static void GDB_GetRegisterPointerAndSize(size_t *outSz, void **outPtr, unsigned long id, ExceptionStackFrame *frame, FpuRegisterCache *fpuRegCache)
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{
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{
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if(gdbNum <= 15)
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switch (id) {
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{
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case 0 ... 30:
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*flags = (gdbNum >= 13) ? THREADCONTEXT_CONTROL_CPU_SPRS : THREADCONTEXT_CONTROL_CPU_GPRS;
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*outPtr = &frame->x[id];
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return gdbNum;
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*outSz = 8;
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}
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break;
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else if(gdbNum == 25)
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case 31:
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{
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*outPtr = exceptionGetSpPtr(frame);
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*flags = THREADCONTEXT_CONTROL_CPU_SPRS;
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*outSz = 8;
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return 16;
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break;
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}
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case 32:
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else if(gdbNum >= 26 && gdbNum <= 41)
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*outPtr = &frame->spsr_el2;
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{
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*outSz = 4;
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*flags = THREADCONTEXT_CONTROL_FPU_GPRS;
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break;
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return gdbNum - 26;
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case 33 ... 64:
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}
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*outPtr = &fpuRegCache->q[id - 33];
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else if(gdbNum == 42 || gdbNum == 43)
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*outSz = 16;
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{
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case 65:
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*flags = THREADCONTEXT_CONTROL_FPU_SPRS;
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*outPtr = &fpuRegCache->fpsr;
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return gdbNum - 42;
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*outSz = 4;
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}
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case 66:
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else
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*outPtr = &fpuRegCache->fpcr;
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{
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*outSz = 4;
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*flags = (ThreadContextControlFlags)0;
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default:
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return 0;
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__builtin_unreachable();
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return;
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}
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}
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}
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}
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GDB_DECLARE_HANDLER(ReadRegister)
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GDB_DECLARE_HANDLER(ReadRegister)
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{
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{
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if(ctx->selectedThreadId == 0)
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ENSURE(ctx->selectedThreadId == currentCoreCtx->coreId);
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ctx->selectedThreadId = ctx->currentThreadId;
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ThreadContext regs;
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const ExceptionStackFrame *frame = currentCoreCtx->guestFrame;
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ThreadContextControlFlags flags;
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const FpuRegisterCache *fpuRegCache = NULL;
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u32 gdbRegNum;
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if(GDB_ParseHexIntegerList(&gdbRegNum, ctx->commandData, 1, 0) == NULL)
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char *buf = ctx->buffer + 1;
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unsigned long gdbRegNum;
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if (GDB_ParseHexIntegerList(&gdbRegNum, ctx->commandData, 1, 0) == NULL) {
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return GDB_ReplyErrno(ctx, EILSEQ);
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return GDB_ReplyErrno(ctx, EILSEQ);
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}
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u32 n = GDB_ConvertRegisterNumber(&flags, gdbRegNum);
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// Check the register number
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if(!flags)
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if (gdbRegNum >= 31 + 3 + 32 + 2) {
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return GDB_ReplyErrno(ctx, EINVAL);
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return GDB_ReplyErrno(ctx, EINVAL);
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}
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Result r = svcGetDebugThreadContext(®s, ctx->debug, ctx->selectedThreadId, flags);
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if (gdbRegNum > 31 + 3) {
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// FPU register -- must read the FPU registers first
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fpuRegCache = fpuReadRegisters();
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}
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if(R_FAILED(r))
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size_t sz;
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return GDB_ReplyErrno(ctx, EPERM);
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void *regPtr;
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GDB_GetRegisterPointerAndSize(&sz, ®Ptr, gdbRegNum, frame, fpuRegCache);
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if(flags & THREADCONTEXT_CONTROL_CPU_GPRS)
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return GDB_SendHexPacket(ctx, regPtr, sz);
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return GDB_SendHexPacket(ctx, ®s.cpu_registers.r[n], 4);
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else if(flags & THREADCONTEXT_CONTROL_CPU_SPRS)
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return GDB_SendHexPacket(ctx, ®s.cpu_registers.sp + (n - 13), 4); // hacky
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else if(flags & THREADCONTEXT_CONTROL_FPU_GPRS)
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return GDB_SendHexPacket(ctx, ®s.fpu_registers.d[n], 8);
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else
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return GDB_SendHexPacket(ctx, ®s.fpu_registers.fpscr + n, 4); // hacky
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}
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}
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GDB_DECLARE_HANDLER(WriteRegister)
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GDB_DECLARE_HANDLER(WriteRegister)
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{
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{
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if(ctx->selectedThreadId == 0)
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ENSURE(ctx->selectedThreadId == currentCoreCtx->coreId);
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ctx->selectedThreadId = ctx->currentThreadId;
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ThreadContext regs;
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ExceptionStackFrame *frame = currentCoreCtx->guestFrame;
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ThreadContextControlFlags flags;
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FpuRegisterCache *fpuRegCache = fpuGetRegisterCache();
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u32 gdbRegNum;
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char *tmp = ctx->workBuffer;
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unsigned long gdbRegNum;
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const char *valueStart = GDB_ParseHexIntegerList(&gdbRegNum, ctx->commandData, 1, '=');
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const char *valueStart = GDB_ParseHexIntegerList(&gdbRegNum, ctx->commandData, 1, '=');
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if(valueStart == NULL || *valueStart != '=')
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if(valueStart == NULL || *valueStart != '=') {
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return GDB_ReplyErrno(ctx, EILSEQ);
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return GDB_ReplyErrno(ctx, EILSEQ);
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}
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valueStart++;
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valueStart++;
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u32 n = GDB_ConvertRegisterNumber(&flags, gdbRegNum);
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// Check the register number
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u32 value;
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if (gdbRegNum >= 31 + 3 + 32 + 2) {
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u64 value64;
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if(flags & THREADCONTEXT_CONTROL_FPU_GPRS)
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{
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if(GDB_DecodeHex(&value64, valueStart, 8) != 8 || valueStart[16] != 0)
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return GDB_ReplyErrno(ctx, EINVAL);
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}
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else if(flags)
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{
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if(GDB_DecodeHex(&value, valueStart, 4) != 4 || valueStart[8] != 0)
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return GDB_ReplyErrno(ctx, EINVAL);
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}
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else
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return GDB_ReplyErrno(ctx, EINVAL);
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return GDB_ReplyErrno(ctx, EINVAL);
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}
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Result r = svcGetDebugThreadContext(®s, ctx->debug, ctx->selectedThreadId, flags);
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size_t sz;
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void *regPtr;
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GDB_GetRegisterPointerAndSize(&sz, ®Ptr, gdbRegNum, frame, fpuRegCache);
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if(R_FAILED(r))
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// Check if we got 2 hex digits per byte
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return GDB_ReplyErrno(ctx, EPERM);
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if (strlen(valueStart) != 2 * sz) {
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return GDB_ReplyErrno(ctx, EILSEQ);
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}
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if(flags & THREADCONTEXT_CONTROL_CPU_GPRS)
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// Decode, check for errors
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regs.cpu_registers.r[n] = value;
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if (GDB_DecodeHex(tmp, valueStart, sz) != sz) {
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else if(flags & THREADCONTEXT_CONTROL_CPU_SPRS)
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return GDB_ReplyErrno(ctx, EILSEQ);
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*(®s.cpu_registers.sp + (n - 13)) = value; // hacky
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}
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else if(flags & THREADCONTEXT_CONTROL_FPU_GPRS)
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memcpy(®s.fpu_registers.d[n], &value64, 8);
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memcpy(regPtr, tmp, sz);
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else
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*(®s.fpu_registers.fpscr + n) = value; // hacky
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if (gdbRegNum > 31 + 3) {
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// FPU register -- must commit the FPU registers
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fpuCommitRegisters();
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}
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r = svcSetDebugThreadContext(ctx->debug, ctx->selectedThreadId, ®s, flags);
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if(R_FAILED(r))
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return GDB_ReplyErrno(ctx, EPERM);
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else
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else
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return GDB_ReplyOk(ctx);
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return GDB_ReplyOk(ctx);
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}
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}
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@ -7,7 +7,7 @@
|
||||||
|
|
||||||
#pragma once
|
#pragma once
|
||||||
|
|
||||||
#include "gdb.h"
|
#include "../gdb.h"
|
||||||
|
|
||||||
GDB_DECLARE_HANDLER(ReadRegisters);
|
GDB_DECLARE_HANDLER(ReadRegisters);
|
||||||
GDB_DECLARE_HANDLER(WriteRegisters);
|
GDB_DECLARE_HANDLER(WriteRegisters);
|
||||||
|
|
Loading…
Reference in a new issue