macroop.isa revision 4567:5c7b9832235d
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2
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56// Authors: Gabe Black
57
58//////////////////////////////////////////////////////////////////////////////
59//
60//  Architecture independent
61//
62
63// Execute method for macroops.
64def template MacroExecPanic {{
65        Fault execute(%(CPU_exec_context)s *, Trace::InstRecord *) const
66        {
67            panic("Tried to execute macroop directly!");
68            return NoFault;
69        }
70}};
71
72output header {{
73
74        // Base class for combinationally generated macroops
75        class Macroop : public StaticInst
76        {
77          protected:
78            const uint32_t numMicroops;
79
80            //Constructor.
81            Macroop(const char *mnem, ExtMachInst _machInst,
82                    uint32_t _numMicroops)
83                        : StaticInst(mnem, _machInst, No_OpClass),
84                        numMicroops(_numMicroops)
85            {
86                assert(numMicroops);
87                microops = new StaticInstPtr[numMicroops];
88                flags[IsMacroop] = true;
89            }
90
91            ~Macroop()
92            {
93                delete [] microops;
94            }
95
96            StaticInstPtr * microops;
97
98            StaticInstPtr fetchMicroop(MicroPC microPC)
99            {
100                assert(microPC < numMicroops);
101                return microops[microPC];
102            }
103
104            std::string generateDisassembly(Addr pc,
105                    const SymbolTable *symtab) const
106            {
107                return mnemonic;
108            }
109
110            %(MacroExecPanic)s
111        };
112}};
113
114// Basic instruction class declaration template.
115def template MacroDeclare {{
116        namespace X86Macroop
117        {
118            /**
119             * Static instruction class for "%(mnemonic)s".
120             */
121            class %(class_name)s : public %(base_class)s
122            {
123              public:
124                // Constructor.
125                %(class_name)s(ExtMachInst machInst, EmulEnv env);
126            };
127        };
128}};
129
130// Basic instruction class constructor template.
131def template MacroConstructor {{
132        inline X86Macroop::%(class_name)s::%(class_name)s(ExtMachInst machInst, EmulEnv env)
133            : %(base_class)s("%(mnemonic)s", machInst, %(num_microops)s)
134        {
135            %(adjust_env)s;
136            %(constructor)s;
137            //alloc_microops is the code that sets up the microops
138            //array in the parent class.
139            %(alloc_microops)s;
140        }
141}};
142
143//////////////////////////////////////////////////////////////////////////////
144//
145//  X86 specific
146//
147
148let {{
149    from micro_asm import Combinational_Macroop, Rom_Macroop
150    class X86Macroop(Combinational_Macroop):
151        def setAdjustEnv(self, val):
152            self.adjust_env = val
153        def __init__(self, name):
154            super(X86Macroop, self).__init__(name)
155            self.directives = {
156                "adjust_env" : self.setAdjustEnv
157            }
158            self.declared = False
159            self.adjust_env = ""
160        def getAllocator(self, env):
161            return "new X86Macroop::%s(machInst, %s)" % (self.name, env.getAllocator())
162        def getDeclaration(self):
163            #FIXME This first parameter should be the mnemonic. I need to
164            #write some code which pulls that out
165            iop = InstObjParams(self.name, self.name, "Macroop", {"code" : ""})
166            return MacroDeclare.subst(iop);
167        def getDefinition(self):
168            #FIXME This first parameter should be the mnemonic. I need to
169            #write some code which pulls that out
170            numMicroops = len(self.microops)
171            allocMicroops = ''
172            micropc = 0
173            for op in self.microops:
174                allocMicroops += \
175                    "microops[%d] = %s;\n" % \
176                    (micropc, op.getAllocator(True, False,
177                                              micropc == 0,
178                                              micropc == numMicroops - 1))
179                micropc += 1
180            iop = InstObjParams(self.name, self.name, "Macroop",
181                                {"code" : "", "num_microops" : numMicroops,
182                                 "alloc_microops" : allocMicroops,
183                                 "adjust_env" : self.adjust_env})
184            return MacroConstructor.subst(iop);
185}};
186
187output header {{
188    struct EmulEnv
189    {
190        X86ISA::RegIndex reg;
191        X86ISA::RegIndex regm;
192        uint64_t immediate;
193        uint64_t displacement;
194        int addressSize;
195        int dataSize;
196
197        EmulEnv(X86ISA::RegIndex _reg, X86ISA::RegIndex _regm,
198                uint64_t _immediate, uint64_t _displacement,
199                int _addressSize, int _dataSize) :
200            reg(_reg), regm(_regm),
201            immediate(_immediate), displacement(_displacement),
202            addressSize(_addressSize), dataSize(_dataSize)
203        {;}
204    };
205}};
206
207let {{
208    class EmulEnv(object):
209        def __init__(self):
210            self.reg = "0"
211            self.regUsed = False
212            self.regm = "0"
213            self.regmUsed = False
214            self.immediate = "IMMEDIATE"
215            self.displacement = "DISPLACEMENT"
216            self.addressSize = "ADDRSIZE"
217            self.dataSize = "OPSIZE"
218        def getAllocator(self):
219            return '''EmulEnv(%(reg)s,
220                              %(regm)s,
221                              %(immediate)s,
222                              %(displacement)s,
223                              %(addressSize)s,
224                              %(dataSize)s)''' % \
225                self.__dict__
226        def addReg(self, reg):
227            if not self.regUsed:
228                self.reg = reg
229                self.regUsed = True
230            elif not self.regmUsed:
231                self.regm = reg
232                self.regmUsed = True
233            else:
234                raise Exception, "EmulEnv is out of register specialization spots."
235}};
236
237let {{
238    def genMacroop(Name, env):
239        blocks = OutputBlocks()
240        if not macroopDict.has_key(Name):
241            raise Exception, "Unrecognized instruction: %s" % Name
242        macroop = macroopDict[Name]
243        if not macroop.declared:
244            blocks.header_output = macroop.getDeclaration()
245            blocks.decoder_output = macroop.getDefinition()
246            macroop.declared = True
247        blocks.decode_block = "return %s;\n" % macroop.getAllocator(env)
248        return blocks
249}};
250