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ARM: Add caller information to ioremap
This allows the procfs vmallocinfo file to show who created the ioremap regions. Note: __builtin_return_address(0) doesn't do what's expected if its used in an inline function, so we leave __arm_ioremap callers in such places alone. Signed-off-by: Russell King <rmk+kernel@arm.linux.org.uk>
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7284ce6c9f
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@ -69,9 +69,16 @@ extern void __raw_readsl(const void __iomem *addr, void *data, int longlen);
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/*
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* __arm_ioremap takes CPU physical address.
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* __arm_ioremap_pfn takes a Page Frame Number and an offset into that page
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* The _caller variety takes a __builtin_return_address(0) value for
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* /proc/vmalloc to use - and should only be used in non-inline functions.
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*/
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extern void __iomem * __arm_ioremap_pfn(unsigned long, unsigned long, size_t, unsigned int);
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extern void __iomem * __arm_ioremap(unsigned long, size_t, unsigned int);
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extern void __iomem *__arm_ioremap_pfn_caller(unsigned long, unsigned long,
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size_t, unsigned int, void *);
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extern void __iomem *__arm_ioremap_caller(unsigned long, size_t, unsigned int,
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void *);
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extern void __iomem *__arm_ioremap_pfn(unsigned long, unsigned long, size_t, unsigned int);
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extern void __iomem *__arm_ioremap(unsigned long, size_t, unsigned int);
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extern void __iounmap(volatile void __iomem *addr);
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/*
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@ -24,7 +24,7 @@ void __iomem *davinci_ioremap(unsigned long p, size_t size, unsigned int type)
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if (BETWEEN(p, IO_PHYS, IO_SIZE))
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return XLATE(p, IO_PHYS, IO_VIRT);
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return __arm_ioremap(p, size, type);
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return __arm_ioremap_caller(p, size, type, __builtin_return_address(0));
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}
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EXPORT_SYMBOL(davinci_ioremap);
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@ -61,9 +61,9 @@ void * __iomem __iop13xx_ioremap(unsigned long cookie, size_t size,
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(cookie - IOP13XX_PCIE_LOWER_MEM_RA));
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break;
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case IOP13XX_PBI_LOWER_MEM_RA ... IOP13XX_PBI_UPPER_MEM_RA:
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retval = __arm_ioremap(IOP13XX_PBI_LOWER_MEM_PA +
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retval = __arm_ioremap_caller(IOP13XX_PBI_LOWER_MEM_PA +
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(cookie - IOP13XX_PBI_LOWER_MEM_RA),
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size, mtype);
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size, mtype, __builtin_return_address(0));
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break;
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case IOP13XX_PCIE_LOWER_IO_PA ... IOP13XX_PCIE_UPPER_IO_PA:
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retval = (void *) IOP13XX_PCIE_IO_PHYS_TO_VIRT(cookie);
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@ -75,7 +75,8 @@ void * __iomem __iop13xx_ioremap(unsigned long cookie, size_t size,
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retval = (void *) IOP13XX_PMMR_PHYS_TO_VIRT(cookie);
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break;
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default:
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retval = __arm_ioremap(cookie, size, mtype);
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retval = __arm_ioremap_caller(cookie, size, mtype,
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__builtin_return_address(0));
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}
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return retval;
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@ -76,5 +76,6 @@ __msm_ioremap(unsigned long phys_addr, size_t size, unsigned int mtype)
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mtype = MT_DEVICE_NONSHARED;
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}
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return __arm_ioremap(phys_addr, size, mtype);
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return __arm_ioremap_caller(phys_addr, size, mtype,
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__builtin_return_address(0));
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}
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@ -139,8 +139,8 @@ void __check_kvm_seq(struct mm_struct *mm)
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* which requires the new ioremap'd region to be referenced, the CPU will
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* reference the _old_ region.
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*
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* Note that get_vm_area() allocates a guard 4K page, so we need to mask
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* the size back to 1MB aligned or we will overflow in the loop below.
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* Note that get_vm_area_caller() allocates a guard 4K page, so we need to
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* mask the size back to 1MB aligned or we will overflow in the loop below.
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*/
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static void unmap_area_sections(unsigned long virt, unsigned long size)
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{
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@ -254,22 +254,8 @@ remap_area_supersections(unsigned long virt, unsigned long pfn,
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}
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#endif
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/*
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* Remap an arbitrary physical address space into the kernel virtual
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* address space. Needed when the kernel wants to access high addresses
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* directly.
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*
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* NOTE! We need to allow non-page-aligned mappings too: we will obviously
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* have to convert them into an offset in a page-aligned mapping, but the
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* caller shouldn't need to know that small detail.
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*
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* 'flags' are the extra L_PTE_ flags that you want to specify for this
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* mapping. See <asm/pgtable.h> for more information.
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*/
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void __iomem *
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__arm_ioremap_pfn(unsigned long pfn, unsigned long offset, size_t size,
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unsigned int mtype)
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void __iomem * __arm_ioremap_pfn_caller(unsigned long pfn,
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unsigned long offset, size_t size, unsigned int mtype, void *caller)
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{
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const struct mem_type *type;
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int err;
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@ -291,7 +277,7 @@ __arm_ioremap_pfn(unsigned long pfn, unsigned long offset, size_t size,
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*/
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size = PAGE_ALIGN(offset + size);
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area = get_vm_area(size, VM_IOREMAP);
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area = get_vm_area_caller(size, VM_IOREMAP, caller);
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if (!area)
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return NULL;
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addr = (unsigned long)area->addr;
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@ -318,10 +304,9 @@ __arm_ioremap_pfn(unsigned long pfn, unsigned long offset, size_t size,
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flush_cache_vmap(addr, addr + size);
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return (void __iomem *) (offset + addr);
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}
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EXPORT_SYMBOL(__arm_ioremap_pfn);
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void __iomem *
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__arm_ioremap(unsigned long phys_addr, size_t size, unsigned int mtype)
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void __iomem *__arm_ioremap_caller(unsigned long phys_addr, size_t size,
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unsigned int mtype, void *caller)
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{
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unsigned long last_addr;
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unsigned long offset = phys_addr & ~PAGE_MASK;
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@ -334,7 +319,33 @@ __arm_ioremap(unsigned long phys_addr, size_t size, unsigned int mtype)
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if (!size || last_addr < phys_addr)
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return NULL;
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return __arm_ioremap_pfn(pfn, offset, size, mtype);
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return __arm_ioremap_pfn_caller(pfn, offset, size, mtype,
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caller);
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}
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/*
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* Remap an arbitrary physical address space into the kernel virtual
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* address space. Needed when the kernel wants to access high addresses
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* directly.
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*
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* NOTE! We need to allow non-page-aligned mappings too: we will obviously
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* have to convert them into an offset in a page-aligned mapping, but the
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* caller shouldn't need to know that small detail.
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*/
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void __iomem *
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__arm_ioremap_pfn(unsigned long pfn, unsigned long offset, size_t size,
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unsigned int mtype)
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{
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return __arm_ioremap_pfn_caller(pfn, offset, size, mtype,
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__builtin_return_address(0));
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}
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EXPORT_SYMBOL(__arm_ioremap_pfn);
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void __iomem *
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__arm_ioremap(unsigned long phys_addr, size_t size, unsigned int mtype)
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{
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return __arm_ioremap_caller(phys_addr, size, mtype,
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__builtin_return_address(0));
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}
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EXPORT_SYMBOL(__arm_ioremap);
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@ -74,6 +74,12 @@ void __iomem *__arm_ioremap_pfn(unsigned long pfn, unsigned long offset,
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}
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EXPORT_SYMBOL(__arm_ioremap_pfn);
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void __iomem *__arm_ioremap_pfn_caller(unsigned long pfn, unsigned long offset,
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size_t size, unsigned int mtype, void *caller)
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{
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return __arm_ioremap_pfn(pfn, offset, size, mtype);
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}
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void __iomem *__arm_ioremap(unsigned long phys_addr, size_t size,
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unsigned int mtype)
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{
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@ -81,6 +87,12 @@ void __iomem *__arm_ioremap(unsigned long phys_addr, size_t size,
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}
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EXPORT_SYMBOL(__arm_ioremap);
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void __iomem *__arm_ioremap(unsigned long phys_addr, size_t size,
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unsigned int mtype, void *caller)
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{
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return __arm_ioremap(phys_addr, size, mtype);
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}
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void __iounmap(volatile void __iomem *addr)
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{
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}
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@ -34,7 +34,8 @@ void * __iomem __iop3xx_ioremap(unsigned long cookie, size_t size,
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retval = (void *) IOP3XX_PMMR_PHYS_TO_VIRT(cookie);
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break;
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default:
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retval = __arm_ioremap(cookie, size, mtype);
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retval = __arm_ioremap_caller(cookie, size, mtype,
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__builtin_return_address(0));
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}
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return retval;
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@ -128,7 +128,7 @@ void __iomem *omap_ioremap(unsigned long p, size_t size, unsigned int type)
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return XLATE(p, L4_EMU_44XX_PHYS, L4_EMU_44XX_VIRT);
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}
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#endif
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return __arm_ioremap(p, size, type);
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return __arm_ioremap_caller(p, size, type, __builtin_return_address(0));
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}
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EXPORT_SYMBOL(omap_ioremap);
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