Cleanup
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4da0708b51
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@ -341,32 +341,28 @@ void patchArm11SvcAccessChecks(u32 *arm11SvcHandler)
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//It's mainly Subv's code here:
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void patchK11ModuleChecks(u8 *pos, u32 size, u8 **freeK11Space)
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{
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// We have to detour a function in the ARM11 kernel because builtin modules
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// are compressed in memory and are only decompressed at runtime.
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//We have to detour a function in the ARM11 kernel because builtin modules
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//are compressed in memory and are only decompressed at runtime.
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u8 *freeSpace = *freeK11Space;
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(*freeK11Space) += k11modules_size;
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// Inject our code into the free space
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memcpy(freeSpace, k11modules, k11modules_size);
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// Find the code that decompresses the .code section of the builtin modules and detour it with a jump to our code
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//Find the code that decompresses the .code section of the builtin modules and detour it with a jump to our code
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const u8 pattern[] = { 0x00, 0x00, 0x94, 0xE5, 0x18, 0x10, 0x90, 0xE5, 0x28, 0x20,
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0x90, 0xE5, 0x48, 0x00, 0x9D, 0xE5 };
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u8 *off = memsearch(pos, pattern, size, 16);
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u32 *off = (u32 *)memsearch(pos, pattern, size, 16);
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// We couldn't find the code that decompresses the module
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if (off == NULL)
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return;
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//We couldn't find the code that decompresses the module
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if(off == NULL) return;
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// Inject a jump instruction to our code at the offset we found
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// Construct a jump (BL) instruction to our code
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u32 offset = ((((u32)freeSpace) - ((u32)off + 8)) >> 2) & 0xFFFFFF;
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u32 instruction = offset | (1 << 24) | (0x5 << 25) | (0xE << 28);
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//Inject our code into the free space
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memcpy(*freeK11Space, k11modules, k11modules_size);
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// Write our jump
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memcpy(off, &instruction, 4);
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//Inject a jump instruction to our code at the offset we found
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//Construct a jump (BL) instruction to our code
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u32 offset = ((((u32)*freeK11Space) - ((u32)off + 8)) >> 2) & 0xFFFFFF;
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*off = offset | (1 << 24) | (0x5 << 25) | (0xE << 28);
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(*freeK11Space) += k11modules_size;
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}
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void patchP9AccessChecks(u8 *pos, u32 size)
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