Semantics of the instructions with the
Function:
(defun exec64-branch (funct rs1 rs2 imm pc stat) (declare (xargs :guard (and (branch-funct-p funct) (ubyte5p rs1) (ubyte5p rs2) (ubyte12p imm) (ubyte64p pc) (state64p stat)))) (let ((__function__ 'exec64-branch)) (declare (ignorable __function__)) (branch-funct-case funct :beq (exec64-beq rs1 rs2 imm pc stat) :bne (exec64-bne rs1 rs2 imm pc stat) :blt (exec64-blt rs1 rs2 imm pc stat) :bltu (exec64-bltu rs1 rs2 imm pc stat) :bge (exec64-bge rs1 rs2 imm pc stat) :bgeu (exec64-bgeu rs1 rs2 imm pc stat))))
Theorem:
(defthm state64p-of-exec64-branch (b* ((new-stat (exec64-branch funct rs1 rs2 imm pc stat))) (state64p new-stat)) :rule-classes :rewrite)
Theorem:
(defthm exec64-branch-of-branch-funct-fix-funct (equal (exec64-branch (branch-funct-fix funct) rs1 rs2 imm pc stat) (exec64-branch funct rs1 rs2 imm pc stat)))
Theorem:
(defthm exec64-branch-branch-funct-equiv-congruence-on-funct (implies (branch-funct-equiv funct funct-equiv) (equal (exec64-branch funct rs1 rs2 imm pc stat) (exec64-branch funct-equiv rs1 rs2 imm pc stat))) :rule-classes :congruence)
Theorem:
(defthm exec64-branch-of-ubyte5-fix-rs1 (equal (exec64-branch funct (ubyte5-fix rs1) rs2 imm pc stat) (exec64-branch funct rs1 rs2 imm pc stat)))
Theorem:
(defthm exec64-branch-ubyte5-equiv-congruence-on-rs1 (implies (ubyte5-equiv rs1 rs1-equiv) (equal (exec64-branch funct rs1 rs2 imm pc stat) (exec64-branch funct rs1-equiv rs2 imm pc stat))) :rule-classes :congruence)
Theorem:
(defthm exec64-branch-of-ubyte5-fix-rs2 (equal (exec64-branch funct rs1 (ubyte5-fix rs2) imm pc stat) (exec64-branch funct rs1 rs2 imm pc stat)))
Theorem:
(defthm exec64-branch-ubyte5-equiv-congruence-on-rs2 (implies (ubyte5-equiv rs2 rs2-equiv) (equal (exec64-branch funct rs1 rs2 imm pc stat) (exec64-branch funct rs1 rs2-equiv imm pc stat))) :rule-classes :congruence)
Theorem:
(defthm exec64-branch-of-ubyte12-fix-imm (equal (exec64-branch funct rs1 rs2 (ubyte12-fix imm) pc stat) (exec64-branch funct rs1 rs2 imm pc stat)))
Theorem:
(defthm exec64-branch-ubyte12-equiv-congruence-on-imm (implies (acl2::ubyte12-equiv imm imm-equiv) (equal (exec64-branch funct rs1 rs2 imm pc stat) (exec64-branch funct rs1 rs2 imm-equiv pc stat))) :rule-classes :congruence)
Theorem:
(defthm exec64-branch-of-ubyte64-fix-pc (equal (exec64-branch funct rs1 rs2 imm (ubyte64-fix pc) stat) (exec64-branch funct rs1 rs2 imm pc stat)))
Theorem:
(defthm exec64-branch-ubyte64-equiv-congruence-on-pc (implies (acl2::ubyte64-equiv pc pc-equiv) (equal (exec64-branch funct rs1 rs2 imm pc stat) (exec64-branch funct rs1 rs2 imm pc-equiv stat))) :rule-classes :congruence)
Theorem:
(defthm exec64-branch-of-state64-fix-stat (equal (exec64-branch funct rs1 rs2 imm pc (state64-fix stat)) (exec64-branch funct rs1 rs2 imm pc stat)))
Theorem:
(defthm exec64-branch-state64-equiv-congruence-on-stat (implies (state64-equiv stat stat-equiv) (equal (exec64-branch funct rs1 rs2 imm pc stat) (exec64-branch funct rs1 rs2 imm pc stat-equiv))) :rule-classes :congruence)