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1 Commits
| Author | SHA1 | Date | |
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3028a4eb11
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+12
-12
@@ -93,18 +93,18 @@ vmie_win32* vmie_win32_open(const char* ram_path, uint64_t low);
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vmie_win32* vmie_win32_open_fd(int fd, uint64_t low);
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/* Open a READ-ONLY context over the RAM backing file `fd`, for a consumer that
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* only reads. Unlike vmie_win32_open_fd this does NOT bootstrap (the magic-
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* signature handshake needs RW): the caller supplies the address space by passing
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* a cr3 to each read call. Every read API that takes a cr3 works - the section /
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* function / import / export / callgraph / hook surfaces, gva_read_text, and the
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* generic gva_* and scanner surfaces via vmie_win32_mem(); writes (gva_write) -1
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* because the mapping is PROT_READ. proc_list/proc_modules are NOT available here:
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* they need the bootstrap-recovered profile, which a read-only context does not
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* carry. `fd` is BORROWED (dup()'d internally; the caller's fd stays valid after
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* this call AND after vmie_win32_close()); an O_RDONLY fd is accepted. `low` is
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* the below-4G split, as in vmie_win32_open_fd. Returns a new context, or NULL on
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* dup/fstat/mmap failure. Free with vmie_win32_close(). */
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vmie_win32* vmie_win32_open_ro_fd(int fd, uint64_t low);
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* only reads. It takes a caller-supplied `kcr3` (kernel cr3 / System DirectoryTableBase)
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* and builds the struct-offset profile read-only from the image (no bootstrap
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* handshake - beacon and ACK are not used). The result has the FULL read
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* capability: proc_list/proc_modules AND the section / function / import / export
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* / callgraph / hook surfaces, gva_read_text, and the generic gva_* and scanner
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* surfaces via vmie_win32_mem(). Any write (gva_write) returns -1 because the
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* mapping is PROT_READ. `fd` is BORROWED (dup()'d internally; the caller's fd
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* stays valid after this call AND after vmie_win32_close()); an O_RDONLY fd is
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* accepted. `low` is the below-4G split, as in vmie_win32_open_fd. Returns a new
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* context, or NULL if `kcr3` does not resolve a kernel (ntoskrnl not found under
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* it) or on dup/fstat/mmap failure. Free with vmie_win32_close(). */
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vmie_win32* vmie_win32_open_ro_fd(int fd, uint64_t low, uint64_t kcr3);
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/* Unmap, close, and free a context. Safe on NULL. After this, every pointer
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* into guest memory obtained through this context is invalid. */
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+40
-25
@@ -6,6 +6,9 @@
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#define MZ 0x5A4Du
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__attribute__((cold))
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static int host_profile_from_cr3(vmie_win32* v, uintptr_t cr3);
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/* ---- lifecycle (cold) ---------------------------------------------------- */
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__attribute__((cold))
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@@ -34,10 +37,12 @@ vmie_win32* vmie_win32_open_fd(int fd, uint64_t low) {
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return v;
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}
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/* Read-only context: no bootstrap, the cr3 is supplied per read call. The mem is
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* mapped PROT_READ (gpa_from_ro_fd), so every write through it returns -1. */
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/* Read-only consumer context: maps the backing file PROT_READ and builds the
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* struct-offset profile from the image under the caller-supplied kcr3 (no
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* beacon, no cr3 recovery, no ACK write). All read APIs work, incl.
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* proc_list/proc_modules; writes return -1. */
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__attribute__((cold))
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vmie_win32* vmie_win32_open_ro_fd(int fd, uint64_t low) {
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vmie_win32* vmie_win32_open_ro_fd(int fd, uint64_t low, uint64_t kcr3) {
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vmie_win32* v = calloc(1, sizeof *v);
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if (!v) {
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return NULL;
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@@ -46,6 +51,10 @@ vmie_win32* vmie_win32_open_ro_fd(int fd, uint64_t low) {
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free(v);
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return NULL;
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}
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if (host_profile_from_cr3(v, (uintptr_t)kcr3)) {
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vmie_win32_close(v);
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return NULL;
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}
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return v;
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}
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@@ -181,6 +190,31 @@ static uint32_t ko_export_rva(vmie_mem* m, uintptr_t cr3, uint64_t kbase, const
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return 0;
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}
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__attribute__((cold))
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static int host_profile_from_cr3(vmie_win32* v, uintptr_t cr3) {
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vmie_mem* m = &v->mem;
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uint8_t guid[16];
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uint32_t age, rva;
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uint64_t sys_ep, dtb;
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if (find_ntoskrnl(m, cr3, &v->kbase, guid, &age)) {
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return -3;
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}
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rva = ko_export_rva(m, cr3, v->kbase, "PsInitialSystemProcess");
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if (!rva || gva_read(m, cr3, v->kbase + rva, &sys_ep, 8)) {
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return -4;
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}
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if (profile_build(v, cr3, sys_ep, guid, age)) {
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return -5;
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}
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if (gva_read(m, cr3, sys_ep + v->prof.ep_dtb, &dtb, 8)) {
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return -6;
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}
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v->kcr3 = dtb & PFN_MASK;
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v->sysproc = sys_ep;
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return 0;
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}
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static void beacon_ack(vmie_mem* m, uint64_t anchor_pa) {
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uint64_t ack = CONTRACT_MAGIC_R;
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gpa_write(m, anchor_pa + offsetof(contract, ack), &ack, 8);
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@@ -195,10 +229,6 @@ int host_bootstrap(vmie_win32* v) {
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vmie_mem* m = &v->mem;
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uint64_t anchor_pa, va_self;
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uintptr_t cr3boot;
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uint32_t rva;
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uint8_t guid[16];
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uint32_t age;
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uint64_t sys_ep;
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if (beacon_find(m, &anchor_pa, &va_self)) {
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return -1;
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@@ -208,26 +238,11 @@ int host_bootstrap(vmie_win32* v) {
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return -2;
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}
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if (find_ntoskrnl(m, cr3boot, &v->kbase, guid, &age)) {
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return -3;
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const int rc = host_profile_from_cr3(v, cr3boot);
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if (rc) {
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return rc;
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}
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rva = ko_export_rva(m, cr3boot, v->kbase, "PsInitialSystemProcess");
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if (!rva || gva_read(m, cr3boot, v->kbase + rva, &sys_ep, 8)) {
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return -4;
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}
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if (profile_build(v, cr3boot, sys_ep, guid, age)) {
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return -5;
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}
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uint64_t dtb;
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if (gva_read(m, cr3boot, sys_ep + v->prof.ep_dtb, &dtb, 8)) {
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return -6;
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}
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v->kcr3 = dtb & PFN_MASK;
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v->sysproc = sys_ep;
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beacon_ack(m, anchor_pa);
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return 0;
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}
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