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dev:crosscompiler:backend_arm:register_allocation [2018/12/20 17:15] – [Register Usage] ursgraf | dev:crosscompiler:backend_arm:register_allocation [2019/10/03 10:22] (current) – [Parameter Passing] ursgraf | ||
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| R15 | dedicated | PC | | | R15 | dedicated | PC | | ||
| D0 | dedicated| scratch register | | | D0 | dedicated| scratch register | | ||
- | | D1 | volatile | + | | D1 | dedicated| scratch register, return value | |
- | | D2-D6 | volatile | further | + | | D2-D6 | volatile | parameters, local variables | |
| D7-D10 | volatile | local variables | | | D7-D10 | volatile | local variables | | ||
| D11-D31 | nonvolatile | local variables | | | D11-D31 | nonvolatile | local variables | | ||
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For the translation of certain SSA instructions (e.g. of type long) further auxiliary registers are needed. They are assigned and reserved by the register allocator as well. | For the translation of certain SSA instructions (e.g. of type long) further auxiliary registers are needed. They are assigned and reserved by the register allocator as well. | ||
- | ==== Parameter Passing ==== | + | ===== Parameter Passing |
- | Parameters are passed in R0..R5 and D1..D6.\\ | + | Parameters are passed in R0..R5 and D2..D6.\\ |
- | In the interface // | + | In the interface // |
+ | |S0|S1|S2|S3|S4|S5|S6|S7|S8|S9|S10|S11| | ||
+ | | D0 || D1 || D2 || D3 || D4 || D5 || | ||
+ | | ^| ^^a| ^ b ^^c| ^ d ^^ | ||
- | ==== Locals on the Stack ==== | + | If the parameters do not fit into the parameter register, they will be passed on the stack in a special parameter block. Note that the block is filled with parameters of type integer (offset increases with parameter number) first. After this parameters of type float and double are pushed into this block. Parameters of type float and double both occupy 8 bytes. |
+ | |||
+ | ===== Locals on the Stack ===== | ||
Most SSA instruction have 2 operands and a result. Each of them can reside on the stack. Operands must be fetched into a free register, the result must be stored onto the stack. A single SSA instruction '' | Most SSA instruction have 2 operands and a result. Each of them can reside on the stack. Operands must be fetched into a free register, the result must be stored onto the stack. A single SSA instruction '' | ||
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+ | When dividing numbers of type long, a large number of auxiliary registers are necessary. For these cases the register allocation is run with a reduced register set with the same reserved registers as above given above. |