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	llvm-mc: Symbols in a relocatable expression of the (a - b + cst) form are
allowed to be undefined when the expression is seen, we cannot enforce the same-section requirement until the entire assembly file has been seen. git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@74565 91177308-0d34-0410-b5e6-96231b3b80d8
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		| @@ -26,7 +26,8 @@ class MCSymbol; | ||||
| /// relocations of this general form, but we need to represent this anyway. | ||||
| /// | ||||
| /// In the general form, SymbolB can only be defined if SymbolA is, and both | ||||
| /// must be in the same (non-external) section. | ||||
| /// must be in the same (non-external) section. The latter constraint is not | ||||
| /// enforced, since a symbol's section may not be known at construction. | ||||
| /// | ||||
| /// Note that this class must remain a simple POD value class, because we need | ||||
| /// it to live in unions etc. | ||||
| @@ -52,9 +53,7 @@ public: | ||||
|  | ||||
|   static MCValue get(MCSymbol *SymA, MCSymbol *SymB = 0, int64_t Val = 0) { | ||||
|     MCValue R; | ||||
|     assert((!SymB || (SymA && SymA->getSection() &&  | ||||
|                       SymA->getSection() == SymB->getSection())) && | ||||
|            "Invalid relocatable MCValue!"); | ||||
|     assert((!SymB || SymA) && "Invalid relocatable MCValue!"); | ||||
|     R.Cst = Val; | ||||
|     R.SymA = SymA; | ||||
|     R.SymB = SymB; | ||||
|   | ||||
| @@ -52,4 +52,11 @@ k: | ||||
|         i = (j + 10) - (k + 2) | ||||
|         .long i | ||||
|          | ||||
|         l = m - n + 4 | ||||
|          | ||||
|         .text | ||||
| m: | ||||
| n: | ||||
|         nop | ||||
|          | ||||
|          | ||||
| @@ -37,12 +37,11 @@ static bool EvaluateSymbolicAdd(const MCValue &LHS, MCSymbol *RHS_A, | ||||
|   MCSymbol *A = LHS.getSymA() ? LHS.getSymA() : RHS_A; | ||||
|   MCSymbol *B = LHS.getSymB() ? LHS.getSymB() : RHS_B; | ||||
|   if (B) { | ||||
|     // If we have a negated symbol, then we must have also have a | ||||
|     // non-negated symbol, and both symbols must be in the same | ||||
|     // non-external section. We can do this check later to permit | ||||
|     // expressions which eventually fold to a representable form -- such | ||||
|     // If we have a negated symbol, then we must have also have a non-negated | ||||
|     // symbol in order to encode the expression. We can do this check later to | ||||
|     // permit expressions which eventually fold to a representable form -- such | ||||
|     // as (a + (0 - b)) -- if necessary. | ||||
|     if (!A || !A->getSection() || A->getSection() != B->getSection()) | ||||
|     if (!A) | ||||
|       return false; | ||||
|   } | ||||
|   Res = MCValue::get(A, B, LHS.getConstant() + RHS_Cst); | ||||
|   | ||||
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