plugins: Expose physical addresses instead of device offsets
This allows plugins to query for full virtual-to-physical address translation for a given `qemu_plugin_hwaddr` and stops exposing the offset within the device itself. As this change breaks the API, QEMU_PLUGIN_VERSION is incremented. Signed-off-by: Aaron Lindsay <aaron@os.amperecomputing.com> Signed-off-by: Alex Bennée <alex.bennee@linaro.org> Message-Id: <20210309202802.211756-1-aaron@os.amperecomputing.com> Message-Id: <20210312172821.31647-3-alex.bennee@linaro.org>
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@ -122,7 +122,7 @@ static void vcpu_haddr(unsigned int cpu_index, qemu_plugin_meminfo_t meminfo,
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}
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} else {
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if (hwaddr && !qemu_plugin_hwaddr_is_io(hwaddr)) {
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page = (uint64_t) qemu_plugin_hwaddr_device_offset(hwaddr);
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page = (uint64_t) qemu_plugin_hwaddr_phys_addr(hwaddr);
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} else {
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page = vaddr;
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}
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@ -201,7 +201,7 @@ static void vcpu_haddr(unsigned int cpu_index, qemu_plugin_meminfo_t meminfo,
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return;
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} else {
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const char *name = qemu_plugin_hwaddr_device_name(hwaddr);
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uint64_t off = qemu_plugin_hwaddr_device_offset(hwaddr);
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uint64_t off = qemu_plugin_hwaddr_phys_addr(hwaddr);
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bool is_write = qemu_plugin_mem_is_store(meminfo);
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DeviceCounts *counts;
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@ -47,7 +47,7 @@ typedef uint64_t qemu_plugin_id_t;
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extern QEMU_PLUGIN_EXPORT int qemu_plugin_version;
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#define QEMU_PLUGIN_VERSION 0
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#define QEMU_PLUGIN_VERSION 1
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typedef struct {
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/* string describing architecture */
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@ -307,8 +307,8 @@ bool qemu_plugin_mem_is_sign_extended(qemu_plugin_meminfo_t info);
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bool qemu_plugin_mem_is_big_endian(qemu_plugin_meminfo_t info);
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bool qemu_plugin_mem_is_store(qemu_plugin_meminfo_t info);
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/*
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* qemu_plugin_get_hwaddr():
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/**
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* qemu_plugin_get_hwaddr() - return handle for memory operation
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* @vaddr: the virtual address of the memory operation
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*
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* For system emulation returns a qemu_plugin_hwaddr handle to query
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@ -323,12 +323,30 @@ struct qemu_plugin_hwaddr *qemu_plugin_get_hwaddr(qemu_plugin_meminfo_t info,
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uint64_t vaddr);
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/*
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* The following additional queries can be run on the hwaddr structure
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* to return information about it. For non-IO accesses the device
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* offset will be into the appropriate block of RAM.
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* The following additional queries can be run on the hwaddr structure to
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* return information about it - namely whether it is for an IO access and the
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* physical address associated with the access.
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*/
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/**
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* qemu_plugin_hwaddr_is_io() - query whether memory operation is IO
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* @haddr: address handle from qemu_plugin_get_hwaddr()
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*
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* Returns true if the handle's memory operation is to memory-mapped IO, or
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* false if it is to RAM
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*/
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bool qemu_plugin_hwaddr_is_io(const struct qemu_plugin_hwaddr *haddr);
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uint64_t qemu_plugin_hwaddr_device_offset(const struct qemu_plugin_hwaddr *haddr);
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/**
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* qemu_plugin_hwaddr_phys_addr() - query physical address for memory operation
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* @haddr: address handle from qemu_plugin_get_hwaddr()
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*
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* Returns the physical address associated with the memory operation
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*
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* Note that the returned physical address may not be unique if you are dealing
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* with multiple address spaces.
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*/
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uint64_t qemu_plugin_hwaddr_phys_addr(const struct qemu_plugin_hwaddr *haddr);
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/*
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* Returns a string representing the device. The string is valid for
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@ -40,6 +40,7 @@
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#include "sysemu/sysemu.h"
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#include "tcg/tcg.h"
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#include "exec/exec-all.h"
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#include "exec/ram_addr.h"
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#include "disas/disas.h"
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#include "plugin.h"
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#ifndef CONFIG_USER_ONLY
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@ -298,19 +299,25 @@ bool qemu_plugin_hwaddr_is_io(const struct qemu_plugin_hwaddr *haddr)
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#endif
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}
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uint64_t qemu_plugin_hwaddr_device_offset(const struct qemu_plugin_hwaddr *haddr)
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uint64_t qemu_plugin_hwaddr_phys_addr(const struct qemu_plugin_hwaddr *haddr)
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{
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#ifdef CONFIG_SOFTMMU
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if (haddr) {
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if (!haddr->is_io) {
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ram_addr_t ram_addr = qemu_ram_addr_from_host((void *) haddr->v.ram.hostaddr);
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if (ram_addr == RAM_ADDR_INVALID) {
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RAMBlock *block;
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ram_addr_t offset;
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void *hostaddr = (void *) haddr->v.ram.hostaddr;
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block = qemu_ram_block_from_host(hostaddr, false, &offset);
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if (!block) {
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error_report("Bad ram pointer %"PRIx64"", haddr->v.ram.hostaddr);
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abort();
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}
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return ram_addr;
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return block->offset + offset + block->mr->addr;
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} else {
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return haddr->v.io.offset;
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MemoryRegionSection *mrs = haddr->v.io.section;
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return haddr->v.io.offset + mrs->mr->addr;
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}
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}
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#endif
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