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GP-0: Fixing the remainder of the "psuedo" spellings (#4601)
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@ -147,7 +147,7 @@ public class GBinaryReader {
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/**
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* Sets the current index to the specified value.
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* The pointer index will allow the reader
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* to operate as a psuedo-iterator.
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* to operate as a pseudo-iterator.
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*
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* @param index the byte provider index value
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*/
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@ -235,7 +235,7 @@
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<BLOCKQUOTE>
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<P>Some processors have "modes" or state information that affects how they will interpret and
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execute the bytes that make up an instruction. To support this, Ghidra creates a psuedo
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execute the bytes that make up an instruction. To support this, Ghidra creates a pseudo
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register called the "contextRegister" that contains bits corresponding to the different modes
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or options of the processor. The language specifies a default for these modes, but the
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user can effectively change the defaults using the <B>Processor Options</B> dialog.<BR>
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@ -245,7 +245,7 @@ public class InsertBytesWidget extends DialogComponentProvider implements KeyLis
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}
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// Everything looks good, so take the input and convert it to a Byte list, which we'll
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// need for the PsuedoDisassembler.
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// need for the PseudoDisassembler.
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List<Byte> allBytes = InstructionSearchUtils.toByteArray(input);
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// Now we have a valid byte string so we can start disassembling. To do this, we pass
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@ -204,7 +204,7 @@ public class BinaryReader {
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/**
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* Sets the current index to the specified value.
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* The pointer index will allow the reader
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* to operate as a psuedo-iterator.
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* to operate as a pseudo-iterator.
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*
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* @param index the byte provider index value
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*/
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@ -252,7 +252,7 @@ public class PseudoDisassembler {
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*
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* @param addr location to get a PseudoData item for
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* @param dt the data type to be applied
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* @return PsuedoData that acts like Data
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* @return {@link PseudoData} that acts like Data
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*/
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public PseudoData applyDataType(Address addr, DataType dt) {
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@ -718,7 +718,7 @@ public class Disassembler implements DisassemblerConflictHandler {
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}
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/**
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* Perform a psuedo-disassembly of an single instruction block only following fall-throughs.
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* Perform a pseudo-disassembly of an single instruction block only following fall-throughs.
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* WARNING! This method should not be used in conjunction with other disassembly methods
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* on the this Disassembler instance. Disassembler must be instantiated with a Program object.
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* @param addr start of block
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@ -738,7 +738,7 @@ public class Disassembler implements DisassemblerConflictHandler {
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}
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/**
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* Perform a psuedo-disassembly of an single instruction block only following fall-throughs.
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* Perform a pseudo-disassembly of an single instruction block only following fall-throughs.
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* WARNING! This method should not be used in conjunction with other disassembly methods
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* on the this Disassembler instance.
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* @param blockMemBuffer block memory buffer
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@ -78,7 +78,7 @@ attach names xpp [ P4 P5 P6 P7 ];
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################################################################
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# Psuedo Instructions
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# Pseudo Instructions
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################################################################
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define pcodeop nop;
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@ -58,7 +58,7 @@ attach variables [ sRegPair4_2 dRegPair4_2 ] [ BC DE HL SP ];
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attach variables [ qRegPair4_2 ] [ BC DE HL AF ];
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################################################################
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# Psuedo Instructions
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# Pseudo Instructions
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################################################################
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define pcodeop BCDadjust;
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@ -29,7 +29,7 @@ define token data (16)
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imm16 = (0,15)
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;
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################################################################
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# Psuedo Instructions
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# Pseudo Instructions
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################################################################
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define pcodeop readIRQ;
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@ -1936,7 +1936,7 @@ with : phase = 2 {
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# The pdf manual is very confusing for this instruction. The final conclusion is that the .B
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# is really a psuedo instruction and that everything is actually encoded as a word with the
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# is really a pseudo instruction and that everything is actually encoded as a word with the
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# 'f' bits being left shifted by 1
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:bclr.w f12_t,bit4_t is OP_23_20=0xA & OP_19_16=0x9 & bit4_t & f12_t {
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@ -78,7 +78,7 @@ attach variables [ qRegPair4_2 ] [ BC DE HL AF ];
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attach variables [ pRegPair4_2 ] [ BC DE IX SP ];
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attach variables [ rRegPair4_2 ] [ BC DE IY SP ];
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################################################################
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# Psuedo Instructions
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# Pseudo Instructions
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################################################################
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define pcodeop segment; # Define special pcodeop that calculates the RAM address
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# given the segment selector and offset as input
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