Add an iterator over the sections of a flattened address space. Signed-off-by: Steve Sistare <steven.sist...@oracle.com> --- include/exec/memory.h | 31 +++++++++++++++++++++++++++++++ softmmu/memory.c | 20 ++++++++++++++++++++ 2 files changed, 51 insertions(+)
diff --git a/include/exec/memory.h b/include/exec/memory.h index 137f5f3..9660475 100644 --- a/include/exec/memory.h +++ b/include/exec/memory.h @@ -2338,6 +2338,37 @@ void memory_region_set_ram_discard_manager(MemoryRegion *mr, RamDiscardManager *rdm); /** + * memory_region_section_cb: callback for address_space_flat_for_each_section() + * + * @s: MemoryRegionSection of the range + * @opaque: data pointer passed to address_space_flat_for_each_section() + * @errp: error message, returned to the address_space_flat_for_each_section + * caller. + * + * Returns: non-zero to stop the iteration, and 0 to continue. The same + * non-zero value is returned to the address_space_flat_for_each_section caller. + */ + +typedef int (*memory_region_section_cb)(MemoryRegionSection *s, + void *opaque, + Error **errp); + +/** + * address_space_flat_for_each_section: walk the ranges in the address space + * flat view and call @func for each. Return 0 on success, else return non-zero + * with a message in @errp. + * + * @as: target address space + * @func: callback function + * @opaque: passed to @func + * @errp: passed to @func + */ +int address_space_flat_for_each_section(AddressSpace *as, + memory_region_section_cb func, + void *opaque, + Error **errp); + +/** * memory_region_find: translate an address/size relative to a * MemoryRegion into a #MemoryRegionSection. * diff --git a/softmmu/memory.c b/softmmu/memory.c index 30b2f68..40f3522 100644 --- a/softmmu/memory.c +++ b/softmmu/memory.c @@ -2663,6 +2663,26 @@ bool memory_region_is_mapped(MemoryRegion *mr) return mr->container ? true : false; } +int address_space_flat_for_each_section(AddressSpace *as, + memory_region_section_cb func, + void *opaque, + Error **errp) +{ + FlatView *view = address_space_get_flatview(as); + FlatRange *fr; + int ret; + + FOR_EACH_FLAT_RANGE(fr, view) { + MemoryRegionSection section = section_from_flat_range(fr, view); + ret = func(§ion, opaque, errp); + if (ret) { + return ret; + } + } + + return 0; +} + /* Same as memory_region_find, but it does not add a reference to the * returned region. It must be called from an RCU critical section. */ -- 1.8.3.1