xref: /qemu/tests/qtest/fuzz/generic_fuzz.c (revision 1375104370fc80bbcaa55430d2fbc0b1d8fc158b)
1da9bf531SAlexander Bulekov /*
2da9bf531SAlexander Bulekov  * Generic Virtual-Device Fuzzing Target
3da9bf531SAlexander Bulekov  *
4da9bf531SAlexander Bulekov  * Copyright Red Hat Inc., 2020
5da9bf531SAlexander Bulekov  *
6da9bf531SAlexander Bulekov  * Authors:
7da9bf531SAlexander Bulekov  *  Alexander Bulekov   <alxndr@bu.edu>
8da9bf531SAlexander Bulekov  *
9da9bf531SAlexander Bulekov  * This work is licensed under the terms of the GNU GPL, version 2 or later.
10da9bf531SAlexander Bulekov  * See the COPYING file in the top-level directory.
11da9bf531SAlexander Bulekov  */
12da9bf531SAlexander Bulekov 
13da9bf531SAlexander Bulekov #include "qemu/osdep.h"
14da9bf531SAlexander Bulekov 
15da9bf531SAlexander Bulekov #include <wordexp.h>
16da9bf531SAlexander Bulekov 
17da9bf531SAlexander Bulekov #include "hw/core/cpu.h"
18907b5105SMarc-André Lureau #include "tests/qtest/libqtest.h"
19b677001dSAlexander Bulekov #include "tests/qtest/libqos/pci-pc.h"
20da9bf531SAlexander Bulekov #include "fuzz.h"
21da9bf531SAlexander Bulekov #include "string.h"
22da9bf531SAlexander Bulekov #include "exec/memory.h"
23da9bf531SAlexander Bulekov #include "exec/ramblock.h"
24da9bf531SAlexander Bulekov #include "hw/qdev-core.h"
2505efbf24SAlexander Bulekov #include "hw/pci/pci.h"
26edf5ca5dSMarkus Armbruster #include "hw/pci/pci_device.h"
2720f5a302SAlexander Bulekov #include "hw/boards.h"
287fdb5053SAlexander Bulekov #include "generic_fuzz_configs.h"
2925d309fbSAlexander Bulekov #include "hw/mem/sparse-mem.h"
30da9bf531SAlexander Bulekov 
31*13751043SAlexander Bulekov static void pci_enum(gpointer pcidev, gpointer bus);
32*13751043SAlexander Bulekov 
33da9bf531SAlexander Bulekov /*
34da9bf531SAlexander Bulekov  * SEPARATOR is used to separate "operations" in the fuzz input
35da9bf531SAlexander Bulekov  */
36da9bf531SAlexander Bulekov #define SEPARATOR "FUZZ"
37da9bf531SAlexander Bulekov 
38da9bf531SAlexander Bulekov enum cmds {
39da9bf531SAlexander Bulekov     OP_IN,
40da9bf531SAlexander Bulekov     OP_OUT,
41da9bf531SAlexander Bulekov     OP_READ,
42da9bf531SAlexander Bulekov     OP_WRITE,
4305efbf24SAlexander Bulekov     OP_PCI_READ,
4405efbf24SAlexander Bulekov     OP_PCI_WRITE,
45ccbd4bc8SAlexander Bulekov     OP_DISABLE_PCI,
4620f5a302SAlexander Bulekov     OP_ADD_DMA_PATTERN,
4720f5a302SAlexander Bulekov     OP_CLEAR_DMA_PATTERNS,
48da9bf531SAlexander Bulekov     OP_CLOCK_STEP,
49da9bf531SAlexander Bulekov };
50da9bf531SAlexander Bulekov 
51da9bf531SAlexander Bulekov #define USEC_IN_SEC 1000000000
52da9bf531SAlexander Bulekov 
5320f5a302SAlexander Bulekov #define MAX_DMA_FILL_SIZE 0x10000
5420f5a302SAlexander Bulekov 
5505efbf24SAlexander Bulekov #define PCI_HOST_BRIDGE_CFG 0xcf8
5605efbf24SAlexander Bulekov #define PCI_HOST_BRIDGE_DATA 0xcfc
5705efbf24SAlexander Bulekov 
58da9bf531SAlexander Bulekov typedef struct {
59da9bf531SAlexander Bulekov     ram_addr_t addr;
60da9bf531SAlexander Bulekov     ram_addr_t size; /* The number of bytes until the end of the I/O region */
61da9bf531SAlexander Bulekov } address_range;
62da9bf531SAlexander Bulekov 
63da9bf531SAlexander Bulekov static bool qtest_log_enabled;
64da9bf531SAlexander Bulekov 
6525d309fbSAlexander Bulekov MemoryRegion *sparse_mem_mr;
6625d309fbSAlexander Bulekov 
67da9bf531SAlexander Bulekov /*
6820f5a302SAlexander Bulekov  * A pattern used to populate a DMA region or perform a memwrite. This is
6920f5a302SAlexander Bulekov  * useful for e.g. populating tables of unique addresses.
7020f5a302SAlexander Bulekov  * Example {.index = 1; .stride = 2; .len = 3; .data = "\x00\x01\x02"}
7120f5a302SAlexander Bulekov  * Renders as: 00 01 02   00 03 02   00 05 02   00 07 02 ...
7220f5a302SAlexander Bulekov  */
7320f5a302SAlexander Bulekov typedef struct {
7420f5a302SAlexander Bulekov     uint8_t index;      /* Index of a byte to increment by stride */
7520f5a302SAlexander Bulekov     uint8_t stride;     /* Increment each index'th byte by this amount */
7620f5a302SAlexander Bulekov     size_t len;
7720f5a302SAlexander Bulekov     const uint8_t *data;
7820f5a302SAlexander Bulekov } pattern;
7920f5a302SAlexander Bulekov 
8020f5a302SAlexander Bulekov /* Avoid filling the same DMA region between MMIO/PIO commands ? */
8120f5a302SAlexander Bulekov static bool avoid_double_fetches;
8220f5a302SAlexander Bulekov 
8320f5a302SAlexander Bulekov static QTestState *qts_global; /* Need a global for the DMA callback */
8420f5a302SAlexander Bulekov 
8520f5a302SAlexander Bulekov /*
86da9bf531SAlexander Bulekov  * List of memory regions that are children of QOM objects specified by the
87da9bf531SAlexander Bulekov  * user for fuzzing.
88da9bf531SAlexander Bulekov  */
89da9bf531SAlexander Bulekov static GHashTable *fuzzable_memoryregions;
9005efbf24SAlexander Bulekov static GPtrArray *fuzzable_pci_devices;
91da9bf531SAlexander Bulekov 
92da9bf531SAlexander Bulekov struct get_io_cb_info {
93da9bf531SAlexander Bulekov     int index;
94da9bf531SAlexander Bulekov     int found;
95da9bf531SAlexander Bulekov     address_range result;
96da9bf531SAlexander Bulekov };
97da9bf531SAlexander Bulekov 
98d1e8cf77SPeter Maydell static bool get_io_address_cb(Int128 start, Int128 size,
99b3566001SPeter Maydell                               const MemoryRegion *mr,
100b3566001SPeter Maydell                               hwaddr offset_in_region,
101b3566001SPeter Maydell                               void *opaque)
102b3566001SPeter Maydell {
103da9bf531SAlexander Bulekov     struct get_io_cb_info *info = opaque;
104da9bf531SAlexander Bulekov     if (g_hash_table_lookup(fuzzable_memoryregions, mr)) {
105da9bf531SAlexander Bulekov         if (info->index == 0) {
106da9bf531SAlexander Bulekov             info->result.addr = (ram_addr_t)start;
107da9bf531SAlexander Bulekov             info->result.size = (ram_addr_t)size;
108da9bf531SAlexander Bulekov             info->found = 1;
109d1e8cf77SPeter Maydell             return true;
110da9bf531SAlexander Bulekov         }
111da9bf531SAlexander Bulekov         info->index--;
112da9bf531SAlexander Bulekov     }
113d1e8cf77SPeter Maydell     return false;
114da9bf531SAlexander Bulekov }
115da9bf531SAlexander Bulekov 
116da9bf531SAlexander Bulekov /*
11720f5a302SAlexander Bulekov  * List of dma regions populated since the last fuzzing command. Used to ensure
11820f5a302SAlexander Bulekov  * that we only write to each DMA address once, to avoid race conditions when
11920f5a302SAlexander Bulekov  * building reproducers.
12020f5a302SAlexander Bulekov  */
12120f5a302SAlexander Bulekov static GArray *dma_regions;
12220f5a302SAlexander Bulekov 
12320f5a302SAlexander Bulekov static GArray *dma_patterns;
12420f5a302SAlexander Bulekov static int dma_pattern_index;
125ccbd4bc8SAlexander Bulekov static bool pci_disabled;
12620f5a302SAlexander Bulekov 
12720f5a302SAlexander Bulekov /*
12820f5a302SAlexander Bulekov  * Allocate a block of memory and populate it with a pattern.
12920f5a302SAlexander Bulekov  */
13020f5a302SAlexander Bulekov static void *pattern_alloc(pattern p, size_t len)
13120f5a302SAlexander Bulekov {
13220f5a302SAlexander Bulekov     int i;
13320f5a302SAlexander Bulekov     uint8_t *buf = g_malloc(len);
13420f5a302SAlexander Bulekov     uint8_t sum = 0;
13520f5a302SAlexander Bulekov 
13620f5a302SAlexander Bulekov     for (i = 0; i < len; ++i) {
13720f5a302SAlexander Bulekov         buf[i] = p.data[i % p.len];
13820f5a302SAlexander Bulekov         if ((i % p.len) == p.index) {
13920f5a302SAlexander Bulekov             buf[i] += sum;
14020f5a302SAlexander Bulekov             sum += p.stride;
14120f5a302SAlexander Bulekov         }
14220f5a302SAlexander Bulekov     }
14320f5a302SAlexander Bulekov     return buf;
14420f5a302SAlexander Bulekov }
14520f5a302SAlexander Bulekov 
1463123f93dSJagannathan Raman static int fuzz_memory_access_size(MemoryRegion *mr, unsigned l, hwaddr addr)
14720f5a302SAlexander Bulekov {
14820f5a302SAlexander Bulekov     unsigned access_size_max = mr->ops->valid.max_access_size;
14920f5a302SAlexander Bulekov 
15020f5a302SAlexander Bulekov     /*
15120f5a302SAlexander Bulekov      * Regions are assumed to support 1-4 byte accesses unless
15220f5a302SAlexander Bulekov      * otherwise specified.
15320f5a302SAlexander Bulekov      */
15420f5a302SAlexander Bulekov     if (access_size_max == 0) {
15520f5a302SAlexander Bulekov         access_size_max = 4;
15620f5a302SAlexander Bulekov     }
15720f5a302SAlexander Bulekov 
15820f5a302SAlexander Bulekov     /* Bound the maximum access by the alignment of the address.  */
15920f5a302SAlexander Bulekov     if (!mr->ops->impl.unaligned) {
16020f5a302SAlexander Bulekov         unsigned align_size_max = addr & -addr;
16120f5a302SAlexander Bulekov         if (align_size_max != 0 && align_size_max < access_size_max) {
16220f5a302SAlexander Bulekov             access_size_max = align_size_max;
16320f5a302SAlexander Bulekov         }
16420f5a302SAlexander Bulekov     }
16520f5a302SAlexander Bulekov 
16620f5a302SAlexander Bulekov     /* Don't attempt accesses larger than the maximum.  */
16720f5a302SAlexander Bulekov     if (l > access_size_max) {
16820f5a302SAlexander Bulekov         l = access_size_max;
16920f5a302SAlexander Bulekov     }
17020f5a302SAlexander Bulekov     l = pow2floor(l);
17120f5a302SAlexander Bulekov 
17220f5a302SAlexander Bulekov     return l;
17320f5a302SAlexander Bulekov }
17420f5a302SAlexander Bulekov 
17520f5a302SAlexander Bulekov /*
17620f5a302SAlexander Bulekov  * Call-back for functions that perform DMA reads from guest memory. Confirm
17720f5a302SAlexander Bulekov  * that the region has not already been populated since the last loop in
17820f5a302SAlexander Bulekov  * generic_fuzz(), avoiding potential race-conditions, which we don't have
17920f5a302SAlexander Bulekov  * a good way for reproducing right now.
18020f5a302SAlexander Bulekov  */
181fc1c8344SAlexander Bulekov void fuzz_dma_read_cb(size_t addr, size_t len, MemoryRegion *mr)
18220f5a302SAlexander Bulekov {
18320f5a302SAlexander Bulekov     /* Are we in the generic-fuzzer or are we using another fuzz-target? */
18420f5a302SAlexander Bulekov     if (!qts_global) {
18520f5a302SAlexander Bulekov         return;
18620f5a302SAlexander Bulekov     }
18720f5a302SAlexander Bulekov 
18820f5a302SAlexander Bulekov     /*
18920f5a302SAlexander Bulekov      * Return immediately if:
19020f5a302SAlexander Bulekov      * - We have no DMA patterns defined
19120f5a302SAlexander Bulekov      * - The length of the DMA read request is zero
19220f5a302SAlexander Bulekov      * - The DMA read is hitting an MR other than the machine's main RAM
19320f5a302SAlexander Bulekov      * - The DMA request hits past the bounds of our RAM
19420f5a302SAlexander Bulekov      */
19520f5a302SAlexander Bulekov     if (dma_patterns->len == 0
19620f5a302SAlexander Bulekov         || len == 0
19725d309fbSAlexander Bulekov         || (mr != current_machine->ram && mr != sparse_mem_mr)) {
19820f5a302SAlexander Bulekov         return;
19920f5a302SAlexander Bulekov     }
20020f5a302SAlexander Bulekov 
20120f5a302SAlexander Bulekov     /*
20220f5a302SAlexander Bulekov      * If we overlap with any existing dma_regions, split the range and only
20320f5a302SAlexander Bulekov      * populate the non-overlapping parts.
20420f5a302SAlexander Bulekov      */
20520f5a302SAlexander Bulekov     address_range region;
20620f5a302SAlexander Bulekov     bool double_fetch = false;
20720f5a302SAlexander Bulekov     for (int i = 0;
20820f5a302SAlexander Bulekov          i < dma_regions->len && (avoid_double_fetches || qtest_log_enabled);
20920f5a302SAlexander Bulekov          ++i) {
21020f5a302SAlexander Bulekov         region = g_array_index(dma_regions, address_range, i);
21120f5a302SAlexander Bulekov         if (addr < region.addr + region.size && addr + len > region.addr) {
21220f5a302SAlexander Bulekov             double_fetch = true;
21320f5a302SAlexander Bulekov             if (addr < region.addr
21420f5a302SAlexander Bulekov                 && avoid_double_fetches) {
215fc1c8344SAlexander Bulekov                 fuzz_dma_read_cb(addr, region.addr - addr, mr);
21620f5a302SAlexander Bulekov             }
21720f5a302SAlexander Bulekov             if (addr + len > region.addr + region.size
21820f5a302SAlexander Bulekov                 && avoid_double_fetches) {
21920f5a302SAlexander Bulekov                 fuzz_dma_read_cb(region.addr + region.size,
220fc1c8344SAlexander Bulekov                         addr + len - (region.addr + region.size), mr);
22120f5a302SAlexander Bulekov             }
22220f5a302SAlexander Bulekov             return;
22320f5a302SAlexander Bulekov         }
22420f5a302SAlexander Bulekov     }
22520f5a302SAlexander Bulekov 
22620f5a302SAlexander Bulekov     /* Cap the length of the DMA access to something reasonable */
22720f5a302SAlexander Bulekov     len = MIN(len, MAX_DMA_FILL_SIZE);
22820f5a302SAlexander Bulekov 
22920f5a302SAlexander Bulekov     address_range ar = {addr, len};
23020f5a302SAlexander Bulekov     g_array_append_val(dma_regions, ar);
23120f5a302SAlexander Bulekov     pattern p = g_array_index(dma_patterns, pattern, dma_pattern_index);
232a9f67c1dSAlexander Bulekov     void *buf_base = pattern_alloc(p, ar.size);
233a9f67c1dSAlexander Bulekov     void *buf = buf_base;
23420f5a302SAlexander Bulekov     hwaddr l, addr1;
23520f5a302SAlexander Bulekov     MemoryRegion *mr1;
23620f5a302SAlexander Bulekov     while (len > 0) {
23720f5a302SAlexander Bulekov         l = len;
23820f5a302SAlexander Bulekov         mr1 = address_space_translate(first_cpu->as,
23920f5a302SAlexander Bulekov                                       addr, &addr1, &l, true,
24020f5a302SAlexander Bulekov                                       MEMTXATTRS_UNSPECIFIED);
24120f5a302SAlexander Bulekov 
242af16990aSAlexander Bulekov         /*
243af16990aSAlexander Bulekov          *  If mr1 isn't RAM, address_space_translate doesn't update l. Use
2443123f93dSJagannathan Raman          *  fuzz_memory_access_size to identify the number of bytes that it
2453123f93dSJagannathan Raman          *  is safe to write without accidentally writing to another
2463123f93dSJagannathan Raman          *  MemoryRegion.
247af16990aSAlexander Bulekov          */
248af16990aSAlexander Bulekov         if (!memory_region_is_ram(mr1)) {
2493123f93dSJagannathan Raman             l = fuzz_memory_access_size(mr1, l, addr1);
250af16990aSAlexander Bulekov         }
251af16990aSAlexander Bulekov         if (memory_region_is_ram(mr1) ||
252af16990aSAlexander Bulekov             memory_region_is_romd(mr1) ||
253af16990aSAlexander Bulekov             mr1 == sparse_mem_mr) {
25420f5a302SAlexander Bulekov             /* ROM/RAM case */
25520f5a302SAlexander Bulekov             if (qtest_log_enabled) {
25620f5a302SAlexander Bulekov                 /*
25720f5a302SAlexander Bulekov                 * With QTEST_LOG, use a normal, slow QTest memwrite. Prefix the log
25820f5a302SAlexander Bulekov                 * that will be written by qtest.c with a DMA tag, so we can reorder
25920f5a302SAlexander Bulekov                 * the resulting QTest trace so the DMA fills precede the last PIO/MMIO
26020f5a302SAlexander Bulekov                 * command.
26120f5a302SAlexander Bulekov                 */
26220f5a302SAlexander Bulekov                 fprintf(stderr, "[DMA] ");
26320f5a302SAlexander Bulekov                 if (double_fetch) {
26420f5a302SAlexander Bulekov                     fprintf(stderr, "[DOUBLE-FETCH] ");
26520f5a302SAlexander Bulekov                 }
26620f5a302SAlexander Bulekov                 fflush(stderr);
26720f5a302SAlexander Bulekov             }
268a9f67c1dSAlexander Bulekov             qtest_memwrite(qts_global, addr, buf, l);
269a9f67c1dSAlexander Bulekov         }
270a9f67c1dSAlexander Bulekov         len -= l;
271a9f67c1dSAlexander Bulekov         buf += l;
272a9f67c1dSAlexander Bulekov         addr += l;
273a9f67c1dSAlexander Bulekov 
274a9f67c1dSAlexander Bulekov     }
275a9f67c1dSAlexander Bulekov     g_free(buf_base);
27620f5a302SAlexander Bulekov 
27720f5a302SAlexander Bulekov     /* Increment the index of the pattern for the next DMA access */
27820f5a302SAlexander Bulekov     dma_pattern_index = (dma_pattern_index + 1) % dma_patterns->len;
27920f5a302SAlexander Bulekov }
28020f5a302SAlexander Bulekov 
28120f5a302SAlexander Bulekov /*
282da9bf531SAlexander Bulekov  * Here we want to convert a fuzzer-provided [io-region-index, offset] to
283da9bf531SAlexander Bulekov  * a physical address. To do this, we iterate over all of the matched
284da9bf531SAlexander Bulekov  * MemoryRegions. Check whether each region exists within the particular io
285da9bf531SAlexander Bulekov  * space. Return the absolute address of the offset within the index'th region
286da9bf531SAlexander Bulekov  * that is a subregion of the io_space and the distance until the end of the
287da9bf531SAlexander Bulekov  * memory region.
288da9bf531SAlexander Bulekov  */
289da9bf531SAlexander Bulekov static bool get_io_address(address_range *result, AddressSpace *as,
290da9bf531SAlexander Bulekov                             uint8_t index,
291da9bf531SAlexander Bulekov                             uint32_t offset) {
292da9bf531SAlexander Bulekov     FlatView *view;
293da9bf531SAlexander Bulekov     view = as->current_map;
294da9bf531SAlexander Bulekov     g_assert(view);
295da9bf531SAlexander Bulekov     struct get_io_cb_info cb_info = {};
296da9bf531SAlexander Bulekov 
297da9bf531SAlexander Bulekov     cb_info.index = index;
298da9bf531SAlexander Bulekov 
299da9bf531SAlexander Bulekov     /*
300da9bf531SAlexander Bulekov      * Loop around the FlatView until we match "index" number of
301da9bf531SAlexander Bulekov      * fuzzable_memoryregions, or until we know that there are no matching
302da9bf531SAlexander Bulekov      * memory_regions.
303da9bf531SAlexander Bulekov      */
304da9bf531SAlexander Bulekov     do {
305da9bf531SAlexander Bulekov         flatview_for_each_range(view, get_io_address_cb , &cb_info);
306da9bf531SAlexander Bulekov     } while (cb_info.index != index && !cb_info.found);
307da9bf531SAlexander Bulekov 
308da9bf531SAlexander Bulekov     *result = cb_info.result;
309953e6d7cSAlexander Bulekov     if (result->size) {
310953e6d7cSAlexander Bulekov         offset = offset % result->size;
311953e6d7cSAlexander Bulekov         result->addr += offset;
312953e6d7cSAlexander Bulekov         result->size -= offset;
313953e6d7cSAlexander Bulekov     }
314da9bf531SAlexander Bulekov     return cb_info.found;
315da9bf531SAlexander Bulekov }
316da9bf531SAlexander Bulekov 
317da9bf531SAlexander Bulekov static bool get_pio_address(address_range *result,
318da9bf531SAlexander Bulekov                             uint8_t index, uint16_t offset)
319da9bf531SAlexander Bulekov {
320da9bf531SAlexander Bulekov     /*
321da9bf531SAlexander Bulekov      * PIO BARs can be set past the maximum port address (0xFFFF). Thus, result
322da9bf531SAlexander Bulekov      * can contain an addr that extends past the PIO space. When we pass this
323da9bf531SAlexander Bulekov      * address to qtest_in/qtest_out, it is cast to a uint16_t, so we might end
324da9bf531SAlexander Bulekov      * up fuzzing a completely different MemoryRegion/Device. Therefore, check
325da9bf531SAlexander Bulekov      * that the address here is within the PIO space limits.
326da9bf531SAlexander Bulekov      */
327da9bf531SAlexander Bulekov     bool found = get_io_address(result, &address_space_io, index, offset);
328da9bf531SAlexander Bulekov     return result->addr <= 0xFFFF ? found : false;
329da9bf531SAlexander Bulekov }
330da9bf531SAlexander Bulekov 
331da9bf531SAlexander Bulekov static bool get_mmio_address(address_range *result,
332da9bf531SAlexander Bulekov                              uint8_t index, uint32_t offset)
333da9bf531SAlexander Bulekov {
334da9bf531SAlexander Bulekov     return get_io_address(result, &address_space_memory, index, offset);
335da9bf531SAlexander Bulekov }
336da9bf531SAlexander Bulekov 
337da9bf531SAlexander Bulekov static void op_in(QTestState *s, const unsigned char * data, size_t len)
338da9bf531SAlexander Bulekov {
339da9bf531SAlexander Bulekov     enum Sizes {Byte, Word, Long, end_sizes};
340da9bf531SAlexander Bulekov     struct {
341da9bf531SAlexander Bulekov         uint8_t size;
342da9bf531SAlexander Bulekov         uint8_t base;
343da9bf531SAlexander Bulekov         uint16_t offset;
344da9bf531SAlexander Bulekov     } a;
345da9bf531SAlexander Bulekov     address_range abs;
346da9bf531SAlexander Bulekov 
347da9bf531SAlexander Bulekov     if (len < sizeof(a)) {
348da9bf531SAlexander Bulekov         return;
349da9bf531SAlexander Bulekov     }
350da9bf531SAlexander Bulekov     memcpy(&a, data, sizeof(a));
351da9bf531SAlexander Bulekov     if (get_pio_address(&abs, a.base, a.offset) == 0) {
352da9bf531SAlexander Bulekov         return;
353da9bf531SAlexander Bulekov     }
354da9bf531SAlexander Bulekov 
355da9bf531SAlexander Bulekov     switch (a.size %= end_sizes) {
356da9bf531SAlexander Bulekov     case Byte:
357da9bf531SAlexander Bulekov         qtest_inb(s, abs.addr);
358da9bf531SAlexander Bulekov         break;
359da9bf531SAlexander Bulekov     case Word:
360da9bf531SAlexander Bulekov         if (abs.size >= 2) {
361da9bf531SAlexander Bulekov             qtest_inw(s, abs.addr);
362da9bf531SAlexander Bulekov         }
363da9bf531SAlexander Bulekov         break;
364da9bf531SAlexander Bulekov     case Long:
365da9bf531SAlexander Bulekov         if (abs.size >= 4) {
366da9bf531SAlexander Bulekov             qtest_inl(s, abs.addr);
367da9bf531SAlexander Bulekov         }
368da9bf531SAlexander Bulekov         break;
369da9bf531SAlexander Bulekov     }
370da9bf531SAlexander Bulekov }
371da9bf531SAlexander Bulekov 
372da9bf531SAlexander Bulekov static void op_out(QTestState *s, const unsigned char * data, size_t len)
373da9bf531SAlexander Bulekov {
374da9bf531SAlexander Bulekov     enum Sizes {Byte, Word, Long, end_sizes};
375da9bf531SAlexander Bulekov     struct {
376da9bf531SAlexander Bulekov         uint8_t size;
377da9bf531SAlexander Bulekov         uint8_t base;
378da9bf531SAlexander Bulekov         uint16_t offset;
379da9bf531SAlexander Bulekov         uint32_t value;
380da9bf531SAlexander Bulekov     } a;
381da9bf531SAlexander Bulekov     address_range abs;
382da9bf531SAlexander Bulekov 
383da9bf531SAlexander Bulekov     if (len < sizeof(a)) {
384da9bf531SAlexander Bulekov         return;
385da9bf531SAlexander Bulekov     }
386da9bf531SAlexander Bulekov     memcpy(&a, data, sizeof(a));
387da9bf531SAlexander Bulekov 
388da9bf531SAlexander Bulekov     if (get_pio_address(&abs, a.base, a.offset) == 0) {
389da9bf531SAlexander Bulekov         return;
390da9bf531SAlexander Bulekov     }
391da9bf531SAlexander Bulekov 
392da9bf531SAlexander Bulekov     switch (a.size %= end_sizes) {
393da9bf531SAlexander Bulekov     case Byte:
394da9bf531SAlexander Bulekov         qtest_outb(s, abs.addr, a.value & 0xFF);
395da9bf531SAlexander Bulekov         break;
396da9bf531SAlexander Bulekov     case Word:
397da9bf531SAlexander Bulekov         if (abs.size >= 2) {
398da9bf531SAlexander Bulekov             qtest_outw(s, abs.addr, a.value & 0xFFFF);
399da9bf531SAlexander Bulekov         }
400da9bf531SAlexander Bulekov         break;
401da9bf531SAlexander Bulekov     case Long:
402da9bf531SAlexander Bulekov         if (abs.size >= 4) {
403da9bf531SAlexander Bulekov             qtest_outl(s, abs.addr, a.value);
404da9bf531SAlexander Bulekov         }
405da9bf531SAlexander Bulekov         break;
406da9bf531SAlexander Bulekov     }
407da9bf531SAlexander Bulekov }
408da9bf531SAlexander Bulekov 
409da9bf531SAlexander Bulekov static void op_read(QTestState *s, const unsigned char * data, size_t len)
410da9bf531SAlexander Bulekov {
411da9bf531SAlexander Bulekov     enum Sizes {Byte, Word, Long, Quad, end_sizes};
412da9bf531SAlexander Bulekov     struct {
413da9bf531SAlexander Bulekov         uint8_t size;
414da9bf531SAlexander Bulekov         uint8_t base;
415da9bf531SAlexander Bulekov         uint32_t offset;
416da9bf531SAlexander Bulekov     } a;
417da9bf531SAlexander Bulekov     address_range abs;
418da9bf531SAlexander Bulekov 
419da9bf531SAlexander Bulekov     if (len < sizeof(a)) {
420da9bf531SAlexander Bulekov         return;
421da9bf531SAlexander Bulekov     }
422da9bf531SAlexander Bulekov     memcpy(&a, data, sizeof(a));
423da9bf531SAlexander Bulekov 
424da9bf531SAlexander Bulekov     if (get_mmio_address(&abs, a.base, a.offset) == 0) {
425da9bf531SAlexander Bulekov         return;
426da9bf531SAlexander Bulekov     }
427da9bf531SAlexander Bulekov 
428da9bf531SAlexander Bulekov     switch (a.size %= end_sizes) {
429da9bf531SAlexander Bulekov     case Byte:
430da9bf531SAlexander Bulekov         qtest_readb(s, abs.addr);
431da9bf531SAlexander Bulekov         break;
432da9bf531SAlexander Bulekov     case Word:
433da9bf531SAlexander Bulekov         if (abs.size >= 2) {
434da9bf531SAlexander Bulekov             qtest_readw(s, abs.addr);
435da9bf531SAlexander Bulekov         }
436da9bf531SAlexander Bulekov         break;
437da9bf531SAlexander Bulekov     case Long:
438da9bf531SAlexander Bulekov         if (abs.size >= 4) {
439da9bf531SAlexander Bulekov             qtest_readl(s, abs.addr);
440da9bf531SAlexander Bulekov         }
441da9bf531SAlexander Bulekov         break;
442da9bf531SAlexander Bulekov     case Quad:
443da9bf531SAlexander Bulekov         if (abs.size >= 8) {
444da9bf531SAlexander Bulekov             qtest_readq(s, abs.addr);
445da9bf531SAlexander Bulekov         }
446da9bf531SAlexander Bulekov         break;
447da9bf531SAlexander Bulekov     }
448da9bf531SAlexander Bulekov }
449da9bf531SAlexander Bulekov 
450da9bf531SAlexander Bulekov static void op_write(QTestState *s, const unsigned char * data, size_t len)
451da9bf531SAlexander Bulekov {
452da9bf531SAlexander Bulekov     enum Sizes {Byte, Word, Long, Quad, end_sizes};
453da9bf531SAlexander Bulekov     struct {
454da9bf531SAlexander Bulekov         uint8_t size;
455da9bf531SAlexander Bulekov         uint8_t base;
456da9bf531SAlexander Bulekov         uint32_t offset;
457da9bf531SAlexander Bulekov         uint64_t value;
458da9bf531SAlexander Bulekov     } a;
459da9bf531SAlexander Bulekov     address_range abs;
460da9bf531SAlexander Bulekov 
461da9bf531SAlexander Bulekov     if (len < sizeof(a)) {
462da9bf531SAlexander Bulekov         return;
463da9bf531SAlexander Bulekov     }
464da9bf531SAlexander Bulekov     memcpy(&a, data, sizeof(a));
465da9bf531SAlexander Bulekov 
466da9bf531SAlexander Bulekov     if (get_mmio_address(&abs, a.base, a.offset) == 0) {
467da9bf531SAlexander Bulekov         return;
468da9bf531SAlexander Bulekov     }
469da9bf531SAlexander Bulekov 
470da9bf531SAlexander Bulekov     switch (a.size %= end_sizes) {
471da9bf531SAlexander Bulekov     case Byte:
472da9bf531SAlexander Bulekov             qtest_writeb(s, abs.addr, a.value & 0xFF);
473da9bf531SAlexander Bulekov         break;
474da9bf531SAlexander Bulekov     case Word:
475da9bf531SAlexander Bulekov         if (abs.size >= 2) {
476da9bf531SAlexander Bulekov             qtest_writew(s, abs.addr, a.value & 0xFFFF);
477da9bf531SAlexander Bulekov         }
478da9bf531SAlexander Bulekov         break;
479da9bf531SAlexander Bulekov     case Long:
480da9bf531SAlexander Bulekov         if (abs.size >= 4) {
481da9bf531SAlexander Bulekov             qtest_writel(s, abs.addr, a.value & 0xFFFFFFFF);
482da9bf531SAlexander Bulekov         }
483da9bf531SAlexander Bulekov         break;
484da9bf531SAlexander Bulekov     case Quad:
485da9bf531SAlexander Bulekov         if (abs.size >= 8) {
486da9bf531SAlexander Bulekov             qtest_writeq(s, abs.addr, a.value);
487da9bf531SAlexander Bulekov         }
488da9bf531SAlexander Bulekov         break;
489da9bf531SAlexander Bulekov     }
490da9bf531SAlexander Bulekov }
491da9bf531SAlexander Bulekov 
49205efbf24SAlexander Bulekov static void op_pci_read(QTestState *s, const unsigned char * data, size_t len)
49305efbf24SAlexander Bulekov {
49405efbf24SAlexander Bulekov     enum Sizes {Byte, Word, Long, end_sizes};
49505efbf24SAlexander Bulekov     struct {
49605efbf24SAlexander Bulekov         uint8_t size;
49705efbf24SAlexander Bulekov         uint8_t base;
49805efbf24SAlexander Bulekov         uint8_t offset;
49905efbf24SAlexander Bulekov     } a;
500ccbd4bc8SAlexander Bulekov     if (len < sizeof(a) || fuzzable_pci_devices->len == 0 || pci_disabled) {
50105efbf24SAlexander Bulekov         return;
50205efbf24SAlexander Bulekov     }
50305efbf24SAlexander Bulekov     memcpy(&a, data, sizeof(a));
50405efbf24SAlexander Bulekov     PCIDevice *dev = g_ptr_array_index(fuzzable_pci_devices,
50505efbf24SAlexander Bulekov                                   a.base % fuzzable_pci_devices->len);
50605efbf24SAlexander Bulekov     int devfn = dev->devfn;
50705efbf24SAlexander Bulekov     qtest_outl(s, PCI_HOST_BRIDGE_CFG, (1U << 31) | (devfn << 8) | a.offset);
50805efbf24SAlexander Bulekov     switch (a.size %= end_sizes) {
50905efbf24SAlexander Bulekov     case Byte:
51005efbf24SAlexander Bulekov         qtest_inb(s, PCI_HOST_BRIDGE_DATA);
51105efbf24SAlexander Bulekov         break;
51205efbf24SAlexander Bulekov     case Word:
51305efbf24SAlexander Bulekov         qtest_inw(s, PCI_HOST_BRIDGE_DATA);
51405efbf24SAlexander Bulekov         break;
51505efbf24SAlexander Bulekov     case Long:
51605efbf24SAlexander Bulekov         qtest_inl(s, PCI_HOST_BRIDGE_DATA);
51705efbf24SAlexander Bulekov         break;
51805efbf24SAlexander Bulekov     }
51905efbf24SAlexander Bulekov }
52005efbf24SAlexander Bulekov 
52105efbf24SAlexander Bulekov static void op_pci_write(QTestState *s, const unsigned char * data, size_t len)
52205efbf24SAlexander Bulekov {
52305efbf24SAlexander Bulekov     enum Sizes {Byte, Word, Long, end_sizes};
52405efbf24SAlexander Bulekov     struct {
52505efbf24SAlexander Bulekov         uint8_t size;
52605efbf24SAlexander Bulekov         uint8_t base;
52705efbf24SAlexander Bulekov         uint8_t offset;
52805efbf24SAlexander Bulekov         uint32_t value;
52905efbf24SAlexander Bulekov     } a;
530ccbd4bc8SAlexander Bulekov     if (len < sizeof(a) || fuzzable_pci_devices->len == 0 || pci_disabled) {
53105efbf24SAlexander Bulekov         return;
53205efbf24SAlexander Bulekov     }
53305efbf24SAlexander Bulekov     memcpy(&a, data, sizeof(a));
53405efbf24SAlexander Bulekov     PCIDevice *dev = g_ptr_array_index(fuzzable_pci_devices,
53505efbf24SAlexander Bulekov                                   a.base % fuzzable_pci_devices->len);
53605efbf24SAlexander Bulekov     int devfn = dev->devfn;
53705efbf24SAlexander Bulekov     qtest_outl(s, PCI_HOST_BRIDGE_CFG, (1U << 31) | (devfn << 8) | a.offset);
53805efbf24SAlexander Bulekov     switch (a.size %= end_sizes) {
53905efbf24SAlexander Bulekov     case Byte:
54005efbf24SAlexander Bulekov         qtest_outb(s, PCI_HOST_BRIDGE_DATA, a.value & 0xFF);
54105efbf24SAlexander Bulekov         break;
54205efbf24SAlexander Bulekov     case Word:
54305efbf24SAlexander Bulekov         qtest_outw(s, PCI_HOST_BRIDGE_DATA, a.value & 0xFFFF);
54405efbf24SAlexander Bulekov         break;
54505efbf24SAlexander Bulekov     case Long:
54605efbf24SAlexander Bulekov         qtest_outl(s, PCI_HOST_BRIDGE_DATA, a.value & 0xFFFFFFFF);
54705efbf24SAlexander Bulekov         break;
54805efbf24SAlexander Bulekov     }
54905efbf24SAlexander Bulekov }
55005efbf24SAlexander Bulekov 
55120f5a302SAlexander Bulekov static void op_add_dma_pattern(QTestState *s,
55220f5a302SAlexander Bulekov                                const unsigned char *data, size_t len)
55320f5a302SAlexander Bulekov {
55420f5a302SAlexander Bulekov     struct {
55520f5a302SAlexander Bulekov         /*
55620f5a302SAlexander Bulekov          * index and stride can be used to increment the index-th byte of the
55720f5a302SAlexander Bulekov          * pattern by the value stride, for each loop of the pattern.
55820f5a302SAlexander Bulekov          */
55920f5a302SAlexander Bulekov         uint8_t index;
56020f5a302SAlexander Bulekov         uint8_t stride;
56120f5a302SAlexander Bulekov     } a;
56220f5a302SAlexander Bulekov 
56320f5a302SAlexander Bulekov     if (len < sizeof(a) + 1) {
56420f5a302SAlexander Bulekov         return;
56520f5a302SAlexander Bulekov     }
56620f5a302SAlexander Bulekov     memcpy(&a, data, sizeof(a));
56720f5a302SAlexander Bulekov     pattern p = {a.index, a.stride, len - sizeof(a), data + sizeof(a)};
56820f5a302SAlexander Bulekov     p.index = a.index % p.len;
56920f5a302SAlexander Bulekov     g_array_append_val(dma_patterns, p);
57020f5a302SAlexander Bulekov     return;
57120f5a302SAlexander Bulekov }
57220f5a302SAlexander Bulekov 
57320f5a302SAlexander Bulekov static void op_clear_dma_patterns(QTestState *s,
57420f5a302SAlexander Bulekov                                   const unsigned char *data, size_t len)
57520f5a302SAlexander Bulekov {
57620f5a302SAlexander Bulekov     g_array_set_size(dma_patterns, 0);
57720f5a302SAlexander Bulekov     dma_pattern_index = 0;
57820f5a302SAlexander Bulekov }
57920f5a302SAlexander Bulekov 
580da9bf531SAlexander Bulekov static void op_clock_step(QTestState *s, const unsigned char *data, size_t len)
581da9bf531SAlexander Bulekov {
582da9bf531SAlexander Bulekov     qtest_clock_step_next(s);
583da9bf531SAlexander Bulekov }
584da9bf531SAlexander Bulekov 
585ccbd4bc8SAlexander Bulekov static void op_disable_pci(QTestState *s, const unsigned char *data, size_t len)
586ccbd4bc8SAlexander Bulekov {
587ccbd4bc8SAlexander Bulekov     pci_disabled = true;
588ccbd4bc8SAlexander Bulekov }
589ccbd4bc8SAlexander Bulekov 
590da9bf531SAlexander Bulekov /*
591da9bf531SAlexander Bulekov  * Here, we interpret random bytes from the fuzzer, as a sequence of commands.
592da9bf531SAlexander Bulekov  * Some commands can be variable-width, so we use a separator, SEPARATOR, to
593da9bf531SAlexander Bulekov  * specify the boundaries between commands. SEPARATOR is used to separate
594da9bf531SAlexander Bulekov  * "operations" in the fuzz input. Why use a separator, instead of just using
595da9bf531SAlexander Bulekov  * the operations' length to identify operation boundaries?
596da9bf531SAlexander Bulekov  *   1. This is a simple way to support variable-length operations
597da9bf531SAlexander Bulekov  *   2. This adds "stability" to the input.
598da9bf531SAlexander Bulekov  *      For example take the input "AbBcgDefg", where there is no separator and
599da9bf531SAlexander Bulekov  *      Opcodes are capitalized.
600da9bf531SAlexander Bulekov  *      Simply, by removing the first byte, we end up with a very different
601da9bf531SAlexander Bulekov  *      sequence:
602da9bf531SAlexander Bulekov  *      BbcGdefg...
603da9bf531SAlexander Bulekov  *      By adding a separator, we avoid this problem:
604da9bf531SAlexander Bulekov  *      Ab SEP Bcg SEP Defg -> B SEP Bcg SEP Defg
605da9bf531SAlexander Bulekov  *      Since B uses two additional bytes as operands, the first "B" will be
606da9bf531SAlexander Bulekov  *      ignored. The fuzzer actively tries to reduce inputs, so such unused
607da9bf531SAlexander Bulekov  *      bytes are likely to be pruned, eventually.
608da9bf531SAlexander Bulekov  *
609da9bf531SAlexander Bulekov  *  SEPARATOR is trivial for the fuzzer to discover when using ASan. Optionally,
610da9bf531SAlexander Bulekov  *  SEPARATOR can be manually specified as a dictionary value (see libfuzzer's
611da9bf531SAlexander Bulekov  *  -dict), though this should not be necessary.
612da9bf531SAlexander Bulekov  *
613da9bf531SAlexander Bulekov  * As a result, the stream of bytes is converted into a sequence of commands.
614da9bf531SAlexander Bulekov  * In a simplified example where SEPARATOR is 0xFF:
615da9bf531SAlexander Bulekov  * 00 01 02 FF 03 04 05 06 FF 01 FF ...
616da9bf531SAlexander Bulekov  * becomes this sequence of commands:
617da9bf531SAlexander Bulekov  * 00 01 02    -> op00 (0102)   -> in (0102, 2)
618da9bf531SAlexander Bulekov  * 03 04 05 06 -> op03 (040506) -> write (040506, 3)
619da9bf531SAlexander Bulekov  * 01          -> op01 (-,0)    -> out (-,0)
620da9bf531SAlexander Bulekov  * ...
621da9bf531SAlexander Bulekov  *
622da9bf531SAlexander Bulekov  * Note here that it is the job of the individual opcode functions to check
623da9bf531SAlexander Bulekov  * that enough data was provided. I.e. in the last command out (,0), out needs
624da9bf531SAlexander Bulekov  * to check that there is not enough data provided to select an address/value
625da9bf531SAlexander Bulekov  * for the operation.
626da9bf531SAlexander Bulekov  */
627da9bf531SAlexander Bulekov static void generic_fuzz(QTestState *s, const unsigned char *Data, size_t Size)
628da9bf531SAlexander Bulekov {
629da9bf531SAlexander Bulekov     void (*ops[]) (QTestState *s, const unsigned char* , size_t) = {
630da9bf531SAlexander Bulekov         [OP_IN]                 = op_in,
631da9bf531SAlexander Bulekov         [OP_OUT]                = op_out,
632da9bf531SAlexander Bulekov         [OP_READ]               = op_read,
633da9bf531SAlexander Bulekov         [OP_WRITE]              = op_write,
63405efbf24SAlexander Bulekov         [OP_PCI_READ]           = op_pci_read,
63505efbf24SAlexander Bulekov         [OP_PCI_WRITE]          = op_pci_write,
636ccbd4bc8SAlexander Bulekov         [OP_DISABLE_PCI]        = op_disable_pci,
63720f5a302SAlexander Bulekov         [OP_ADD_DMA_PATTERN]    = op_add_dma_pattern,
63820f5a302SAlexander Bulekov         [OP_CLEAR_DMA_PATTERNS] = op_clear_dma_patterns,
639da9bf531SAlexander Bulekov         [OP_CLOCK_STEP]         = op_clock_step,
640da9bf531SAlexander Bulekov     };
641da9bf531SAlexander Bulekov     const unsigned char *cmd = Data;
642da9bf531SAlexander Bulekov     const unsigned char *nextcmd;
643da9bf531SAlexander Bulekov     size_t cmd_len;
644da9bf531SAlexander Bulekov     uint8_t op;
645da9bf531SAlexander Bulekov 
64620f5a302SAlexander Bulekov     op_clear_dma_patterns(s, NULL, 0);
647ccbd4bc8SAlexander Bulekov     pci_disabled = false;
64820f5a302SAlexander Bulekov 
649*13751043SAlexander Bulekov     QPCIBus *pcibus = qpci_new_pc(s, NULL);
650*13751043SAlexander Bulekov     g_ptr_array_foreach(fuzzable_pci_devices, pci_enum, pcibus);
651*13751043SAlexander Bulekov     qpci_free_pc(pcibus);
652993f52f4SAlexander Bulekov 
653*13751043SAlexander Bulekov     while (cmd && Size) {
654da9bf531SAlexander Bulekov         /* Get the length until the next command or end of input */
655da9bf531SAlexander Bulekov         nextcmd = memmem(cmd, Size, SEPARATOR, strlen(SEPARATOR));
656da9bf531SAlexander Bulekov         cmd_len = nextcmd ? nextcmd - cmd : Size;
657da9bf531SAlexander Bulekov 
658da9bf531SAlexander Bulekov         if (cmd_len > 0) {
659da9bf531SAlexander Bulekov             /* Interpret the first byte of the command as an opcode */
660da9bf531SAlexander Bulekov             op = *cmd % (sizeof(ops) / sizeof((ops)[0]));
661da9bf531SAlexander Bulekov             ops[op](s, cmd + 1, cmd_len - 1);
662da9bf531SAlexander Bulekov 
663da9bf531SAlexander Bulekov             /* Run the main loop */
664da9bf531SAlexander Bulekov             flush_events(s);
665da9bf531SAlexander Bulekov         }
666da9bf531SAlexander Bulekov         /* Advance to the next command */
667da9bf531SAlexander Bulekov         cmd = nextcmd ? nextcmd + sizeof(SEPARATOR) - 1 : nextcmd;
668da9bf531SAlexander Bulekov         Size = Size - (cmd_len + sizeof(SEPARATOR) - 1);
66920f5a302SAlexander Bulekov         g_array_set_size(dma_regions, 0);
670da9bf531SAlexander Bulekov     }
671*13751043SAlexander Bulekov     fuzz_reset(s);
672da9bf531SAlexander Bulekov }
673da9bf531SAlexander Bulekov 
674da9bf531SAlexander Bulekov static void usage(void)
675da9bf531SAlexander Bulekov {
676da9bf531SAlexander Bulekov     printf("Please specify the following environment variables:\n");
677da9bf531SAlexander Bulekov     printf("QEMU_FUZZ_ARGS= the command line arguments passed to qemu\n");
678da9bf531SAlexander Bulekov     printf("QEMU_FUZZ_OBJECTS= "
679da9bf531SAlexander Bulekov             "a space separated list of QOM type names for objects to fuzz\n");
68020f5a302SAlexander Bulekov     printf("Optionally: QEMU_AVOID_DOUBLE_FETCH= "
68120f5a302SAlexander Bulekov             "Try to avoid racy DMA double fetch bugs? %d by default\n",
68220f5a302SAlexander Bulekov             avoid_double_fetches);
683da9bf531SAlexander Bulekov     exit(0);
684da9bf531SAlexander Bulekov }
685da9bf531SAlexander Bulekov 
686da9bf531SAlexander Bulekov static int locate_fuzz_memory_regions(Object *child, void *opaque)
687da9bf531SAlexander Bulekov {
688da9bf531SAlexander Bulekov     MemoryRegion *mr;
689da9bf531SAlexander Bulekov     if (object_dynamic_cast(child, TYPE_MEMORY_REGION)) {
690da9bf531SAlexander Bulekov         mr = MEMORY_REGION(child);
691da9bf531SAlexander Bulekov         if ((memory_region_is_ram(mr) ||
692da9bf531SAlexander Bulekov             memory_region_is_ram_device(mr) ||
693da9bf531SAlexander Bulekov             memory_region_is_rom(mr)) == false) {
694da9bf531SAlexander Bulekov             /*
695da9bf531SAlexander Bulekov              * We don't want duplicate pointers to the same MemoryRegion, so
696da9bf531SAlexander Bulekov              * try to remove copies of the pointer, before adding it.
697da9bf531SAlexander Bulekov              */
698da9bf531SAlexander Bulekov             g_hash_table_insert(fuzzable_memoryregions, mr, (gpointer)true);
699da9bf531SAlexander Bulekov         }
700da9bf531SAlexander Bulekov     }
701da9bf531SAlexander Bulekov     return 0;
702da9bf531SAlexander Bulekov }
703da9bf531SAlexander Bulekov 
704da9bf531SAlexander Bulekov static int locate_fuzz_objects(Object *child, void *opaque)
705da9bf531SAlexander Bulekov {
706f2e8b87aSAlexander Bulekov     GString *type_name;
707f2e8b87aSAlexander Bulekov     GString *path_name;
708da9bf531SAlexander Bulekov     char *pattern = opaque;
709f2e8b87aSAlexander Bulekov 
710f2e8b87aSAlexander Bulekov     type_name = g_string_new(object_get_typename(child));
711f2e8b87aSAlexander Bulekov     g_string_ascii_down(type_name);
712f2e8b87aSAlexander Bulekov     if (g_pattern_match_simple(pattern, type_name->str)) {
713da9bf531SAlexander Bulekov         /* Find and save ptrs to any child MemoryRegions */
714da9bf531SAlexander Bulekov         object_child_foreach_recursive(child, locate_fuzz_memory_regions, NULL);
715da9bf531SAlexander Bulekov 
71605efbf24SAlexander Bulekov         /*
71705efbf24SAlexander Bulekov          * We matched an object. If its a PCI device, store a pointer to it so
71805efbf24SAlexander Bulekov          * we can map BARs and fuzz its config space.
71905efbf24SAlexander Bulekov          */
72005efbf24SAlexander Bulekov         if (object_dynamic_cast(OBJECT(child), TYPE_PCI_DEVICE)) {
72105efbf24SAlexander Bulekov             /*
72205efbf24SAlexander Bulekov              * Don't want duplicate pointers to the same PCIDevice, so remove
72305efbf24SAlexander Bulekov              * copies of the pointer, before adding it.
72405efbf24SAlexander Bulekov              */
72505efbf24SAlexander Bulekov             g_ptr_array_remove_fast(fuzzable_pci_devices, PCI_DEVICE(child));
72605efbf24SAlexander Bulekov             g_ptr_array_add(fuzzable_pci_devices, PCI_DEVICE(child));
72705efbf24SAlexander Bulekov         }
728da9bf531SAlexander Bulekov     } else if (object_dynamic_cast(OBJECT(child), TYPE_MEMORY_REGION)) {
729f2e8b87aSAlexander Bulekov         path_name = g_string_new(object_get_canonical_path_component(child));
730f2e8b87aSAlexander Bulekov         g_string_ascii_down(path_name);
731f2e8b87aSAlexander Bulekov         if (g_pattern_match_simple(pattern, path_name->str)) {
732da9bf531SAlexander Bulekov             MemoryRegion *mr;
733da9bf531SAlexander Bulekov             mr = MEMORY_REGION(child);
734da9bf531SAlexander Bulekov             if ((memory_region_is_ram(mr) ||
735da9bf531SAlexander Bulekov                  memory_region_is_ram_device(mr) ||
736da9bf531SAlexander Bulekov                  memory_region_is_rom(mr)) == false) {
737da9bf531SAlexander Bulekov                 g_hash_table_insert(fuzzable_memoryregions, mr, (gpointer)true);
738da9bf531SAlexander Bulekov             }
739da9bf531SAlexander Bulekov         }
740f2e8b87aSAlexander Bulekov         g_string_free(path_name, true);
741da9bf531SAlexander Bulekov     }
742f2e8b87aSAlexander Bulekov     g_string_free(type_name, true);
743da9bf531SAlexander Bulekov     return 0;
744da9bf531SAlexander Bulekov }
745da9bf531SAlexander Bulekov 
746b677001dSAlexander Bulekov 
747b677001dSAlexander Bulekov static void pci_enum(gpointer pcidev, gpointer bus)
748b677001dSAlexander Bulekov {
749b677001dSAlexander Bulekov     PCIDevice *dev = pcidev;
750b677001dSAlexander Bulekov     QPCIDevice *qdev;
751b677001dSAlexander Bulekov     int i;
752b677001dSAlexander Bulekov 
753b677001dSAlexander Bulekov     qdev = qpci_device_find(bus, dev->devfn);
754b677001dSAlexander Bulekov     g_assert(qdev != NULL);
755b677001dSAlexander Bulekov     for (i = 0; i < 6; i++) {
756b677001dSAlexander Bulekov         if (dev->io_regions[i].size) {
757b677001dSAlexander Bulekov             qpci_iomap(qdev, i, NULL);
758b677001dSAlexander Bulekov         }
759b677001dSAlexander Bulekov     }
760b677001dSAlexander Bulekov     qpci_device_enable(qdev);
761b677001dSAlexander Bulekov     g_free(qdev);
762b677001dSAlexander Bulekov }
763b677001dSAlexander Bulekov 
764da9bf531SAlexander Bulekov static void generic_pre_fuzz(QTestState *s)
765da9bf531SAlexander Bulekov {
766da9bf531SAlexander Bulekov     GHashTableIter iter;
767da9bf531SAlexander Bulekov     MemoryRegion *mr;
768da9bf531SAlexander Bulekov     char **result;
769f2e8b87aSAlexander Bulekov     GString *name_pattern;
770da9bf531SAlexander Bulekov 
771da9bf531SAlexander Bulekov     if (!getenv("QEMU_FUZZ_OBJECTS")) {
772da9bf531SAlexander Bulekov         usage();
773da9bf531SAlexander Bulekov     }
774da9bf531SAlexander Bulekov     if (getenv("QTEST_LOG")) {
775da9bf531SAlexander Bulekov         qtest_log_enabled = 1;
776da9bf531SAlexander Bulekov     }
77720f5a302SAlexander Bulekov     if (getenv("QEMU_AVOID_DOUBLE_FETCH")) {
77820f5a302SAlexander Bulekov         avoid_double_fetches = 1;
77920f5a302SAlexander Bulekov     }
78020f5a302SAlexander Bulekov     qts_global = s;
78120f5a302SAlexander Bulekov 
78225d309fbSAlexander Bulekov     /*
78325d309fbSAlexander Bulekov      * Create a special device that we can use to back DMA buffers at very
78425d309fbSAlexander Bulekov      * high memory addresses
78525d309fbSAlexander Bulekov      */
78625d309fbSAlexander Bulekov     sparse_mem_mr = sparse_mem_init(0, UINT64_MAX);
78725d309fbSAlexander Bulekov 
78820f5a302SAlexander Bulekov     dma_regions = g_array_new(false, false, sizeof(address_range));
78920f5a302SAlexander Bulekov     dma_patterns = g_array_new(false, false, sizeof(pattern));
790da9bf531SAlexander Bulekov 
791da9bf531SAlexander Bulekov     fuzzable_memoryregions = g_hash_table_new(NULL, NULL);
79205efbf24SAlexander Bulekov     fuzzable_pci_devices   = g_ptr_array_new();
793da9bf531SAlexander Bulekov 
794da9bf531SAlexander Bulekov     result = g_strsplit(getenv("QEMU_FUZZ_OBJECTS"), " ", -1);
795da9bf531SAlexander Bulekov     for (int i = 0; result[i] != NULL; i++) {
796f2e8b87aSAlexander Bulekov         name_pattern = g_string_new(result[i]);
797f2e8b87aSAlexander Bulekov         /*
798f2e8b87aSAlexander Bulekov          * Make the pattern lowercase. We do the same for all the MemoryRegion
799f2e8b87aSAlexander Bulekov          * and Type names so the configs are case-insensitive.
800f2e8b87aSAlexander Bulekov          */
801f2e8b87aSAlexander Bulekov         g_string_ascii_down(name_pattern);
802da9bf531SAlexander Bulekov         printf("Matching objects by name %s\n", result[i]);
803da9bf531SAlexander Bulekov         object_child_foreach_recursive(qdev_get_machine(),
804da9bf531SAlexander Bulekov                                     locate_fuzz_objects,
805f2e8b87aSAlexander Bulekov                                     name_pattern->str);
806f2e8b87aSAlexander Bulekov         g_string_free(name_pattern, true);
807da9bf531SAlexander Bulekov     }
808da9bf531SAlexander Bulekov     g_strfreev(result);
809da9bf531SAlexander Bulekov     printf("This process will try to fuzz the following MemoryRegions:\n");
810da9bf531SAlexander Bulekov 
811da9bf531SAlexander Bulekov     g_hash_table_iter_init(&iter, fuzzable_memoryregions);
812da9bf531SAlexander Bulekov     while (g_hash_table_iter_next(&iter, (gpointer)&mr, NULL)) {
813a8fbec7eSPhilippe Mathieu-Daudé         printf("  * %s (size 0x%" PRIx64 ")\n",
814da9bf531SAlexander Bulekov                object_get_canonical_path_component(&(mr->parent_obj)),
815a8fbec7eSPhilippe Mathieu-Daudé                memory_region_size(mr));
816da9bf531SAlexander Bulekov     }
817da9bf531SAlexander Bulekov 
818da9bf531SAlexander Bulekov     if (!g_hash_table_size(fuzzable_memoryregions)) {
819da9bf531SAlexander Bulekov         printf("No fuzzable memory regions found...\n");
820da9bf531SAlexander Bulekov         exit(1);
821da9bf531SAlexander Bulekov     }
822da9bf531SAlexander Bulekov }
823da9bf531SAlexander Bulekov 
824a2539322SAlexander Bulekov /*
825a2539322SAlexander Bulekov  * When libfuzzer gives us two inputs to combine, return a new input with the
826a2539322SAlexander Bulekov  * following structure:
827a2539322SAlexander Bulekov  *
828a2539322SAlexander Bulekov  * Input 1 (data1)
829a2539322SAlexander Bulekov  * SEPARATOR
830a2539322SAlexander Bulekov  * Clear out the DMA Patterns
831a2539322SAlexander Bulekov  * SEPARATOR
832a2539322SAlexander Bulekov  * Disable the pci_read/write instructions
833a2539322SAlexander Bulekov  * SEPARATOR
834a2539322SAlexander Bulekov  * Input 2 (data2)
835a2539322SAlexander Bulekov  *
836a2539322SAlexander Bulekov  * The idea is to collate the core behaviors of the two inputs.
837a2539322SAlexander Bulekov  * For example:
838a2539322SAlexander Bulekov  * Input 1: maps a device's BARs, sets up three DMA patterns, and triggers
839a2539322SAlexander Bulekov  *          device functionality A
840a2539322SAlexander Bulekov  * Input 2: maps a device's BARs, sets up one DMA pattern, and triggers device
841a2539322SAlexander Bulekov  *          functionality B
842a2539322SAlexander Bulekov  *
843a2539322SAlexander Bulekov  * This function attempts to produce an input that:
844a2539322SAlexander Bulekov  * Ouptut: maps a device's BARs, set up three DMA patterns, triggers
845a2539322SAlexander Bulekov  *          functionality A device, replaces the DMA patterns with a single
846a2539322SAlexander Bulekov  *          patten, and triggers device functionality B.
847a2539322SAlexander Bulekov  */
848a2539322SAlexander Bulekov static size_t generic_fuzz_crossover(const uint8_t *data1, size_t size1, const
849a2539322SAlexander Bulekov                                      uint8_t *data2, size_t size2, uint8_t *out,
850a2539322SAlexander Bulekov                                      size_t max_out_size, unsigned int seed)
851a2539322SAlexander Bulekov {
852a2539322SAlexander Bulekov     size_t copy_len = 0, size = 0;
853a2539322SAlexander Bulekov 
854a2539322SAlexander Bulekov     /* Check that we have enough space for data1 and at least part of data2 */
855a2539322SAlexander Bulekov     if (max_out_size <= size1 + strlen(SEPARATOR) * 3 + 2) {
856a2539322SAlexander Bulekov         return 0;
857a2539322SAlexander Bulekov     }
858a2539322SAlexander Bulekov 
859a2539322SAlexander Bulekov     /* Copy_Len in the first input */
860a2539322SAlexander Bulekov     copy_len = size1;
861a2539322SAlexander Bulekov     memcpy(out + size, data1, copy_len);
862a2539322SAlexander Bulekov     size += copy_len;
863a2539322SAlexander Bulekov     max_out_size -= copy_len;
864a2539322SAlexander Bulekov 
865a2539322SAlexander Bulekov     /* Append a separator */
866a2539322SAlexander Bulekov     copy_len = strlen(SEPARATOR);
867a2539322SAlexander Bulekov     memcpy(out + size, SEPARATOR, copy_len);
868a2539322SAlexander Bulekov     size += copy_len;
869a2539322SAlexander Bulekov     max_out_size -= copy_len;
870a2539322SAlexander Bulekov 
871a2539322SAlexander Bulekov     /* Clear out the DMA Patterns */
872a2539322SAlexander Bulekov     copy_len = 1;
873a2539322SAlexander Bulekov     if (copy_len) {
874a2539322SAlexander Bulekov         out[size] = OP_CLEAR_DMA_PATTERNS;
875a2539322SAlexander Bulekov     }
876a2539322SAlexander Bulekov     size += copy_len;
877a2539322SAlexander Bulekov     max_out_size -= copy_len;
878a2539322SAlexander Bulekov 
879a2539322SAlexander Bulekov     /* Append a separator */
880a2539322SAlexander Bulekov     copy_len = strlen(SEPARATOR);
881a2539322SAlexander Bulekov     memcpy(out + size, SEPARATOR, copy_len);
882a2539322SAlexander Bulekov     size += copy_len;
883a2539322SAlexander Bulekov     max_out_size -= copy_len;
884a2539322SAlexander Bulekov 
885a2539322SAlexander Bulekov     /* Disable PCI ops. Assume data1 took care of setting up PCI */
886a2539322SAlexander Bulekov     copy_len = 1;
887a2539322SAlexander Bulekov     if (copy_len) {
888a2539322SAlexander Bulekov         out[size] = OP_DISABLE_PCI;
889a2539322SAlexander Bulekov     }
890a2539322SAlexander Bulekov     size += copy_len;
891a2539322SAlexander Bulekov     max_out_size -= copy_len;
892a2539322SAlexander Bulekov 
893a2539322SAlexander Bulekov     /* Append a separator */
894a2539322SAlexander Bulekov     copy_len = strlen(SEPARATOR);
895a2539322SAlexander Bulekov     memcpy(out + size, SEPARATOR, copy_len);
896a2539322SAlexander Bulekov     size += copy_len;
897a2539322SAlexander Bulekov     max_out_size -= copy_len;
898a2539322SAlexander Bulekov 
899a2539322SAlexander Bulekov     /* Copy_Len over the second input */
900a2539322SAlexander Bulekov     copy_len = MIN(size2, max_out_size);
901a2539322SAlexander Bulekov     memcpy(out + size, data2, copy_len);
902a2539322SAlexander Bulekov     size += copy_len;
903a2539322SAlexander Bulekov     max_out_size -= copy_len;
904a2539322SAlexander Bulekov 
905a2539322SAlexander Bulekov     return  size;
906a2539322SAlexander Bulekov }
907a2539322SAlexander Bulekov 
908a2539322SAlexander Bulekov 
909da9bf531SAlexander Bulekov static GString *generic_fuzz_cmdline(FuzzTarget *t)
910da9bf531SAlexander Bulekov {
911da9bf531SAlexander Bulekov     GString *cmd_line = g_string_new(TARGET_NAME);
912da9bf531SAlexander Bulekov     if (!getenv("QEMU_FUZZ_ARGS")) {
913da9bf531SAlexander Bulekov         usage();
914da9bf531SAlexander Bulekov     }
915da9bf531SAlexander Bulekov     g_string_append_printf(cmd_line, " -display none \
916da9bf531SAlexander Bulekov                                       -machine accel=qtest, \
917da9bf531SAlexander Bulekov                                       -m 512M %s ", getenv("QEMU_FUZZ_ARGS"));
918da9bf531SAlexander Bulekov     return cmd_line;
919da9bf531SAlexander Bulekov }
920da9bf531SAlexander Bulekov 
9217fdb5053SAlexander Bulekov static GString *generic_fuzz_predefined_config_cmdline(FuzzTarget *t)
9227fdb5053SAlexander Bulekov {
9238630b43fSAlexander Bulekov     gchar *args;
9247fdb5053SAlexander Bulekov     const generic_fuzz_config *config;
9257fdb5053SAlexander Bulekov     g_assert(t->opaque);
9267fdb5053SAlexander Bulekov 
9277fdb5053SAlexander Bulekov     config = t->opaque;
928a47ea61dSBin Meng     g_setenv("QEMU_AVOID_DOUBLE_FETCH", "1", 1);
9298630b43fSAlexander Bulekov     if (config->argfunc) {
9308630b43fSAlexander Bulekov         args = config->argfunc();
931a47ea61dSBin Meng         g_setenv("QEMU_FUZZ_ARGS", args, 1);
9328630b43fSAlexander Bulekov         g_free(args);
9338630b43fSAlexander Bulekov     } else {
9348630b43fSAlexander Bulekov         g_assert_nonnull(config->args);
935a47ea61dSBin Meng         g_setenv("QEMU_FUZZ_ARGS", config->args, 1);
9368630b43fSAlexander Bulekov     }
937a47ea61dSBin Meng     g_setenv("QEMU_FUZZ_OBJECTS", config->objects, 1);
9387fdb5053SAlexander Bulekov     return generic_fuzz_cmdline(t);
9397fdb5053SAlexander Bulekov }
9407fdb5053SAlexander Bulekov 
941da9bf531SAlexander Bulekov static void register_generic_fuzz_targets(void)
942da9bf531SAlexander Bulekov {
943da9bf531SAlexander Bulekov     fuzz_add_target(&(FuzzTarget){
944da9bf531SAlexander Bulekov             .name = "generic-fuzz",
945da9bf531SAlexander Bulekov             .description = "Fuzz based on any qemu command-line args. ",
946da9bf531SAlexander Bulekov             .get_init_cmdline = generic_fuzz_cmdline,
947da9bf531SAlexander Bulekov             .pre_fuzz = generic_pre_fuzz,
948da9bf531SAlexander Bulekov             .fuzz = generic_fuzz,
949a2539322SAlexander Bulekov             .crossover = generic_fuzz_crossover
950da9bf531SAlexander Bulekov     });
9517fdb5053SAlexander Bulekov 
9527fdb5053SAlexander Bulekov     GString *name;
9537fdb5053SAlexander Bulekov     const generic_fuzz_config *config;
9547fdb5053SAlexander Bulekov 
9557fdb5053SAlexander Bulekov     for (int i = 0;
9567fdb5053SAlexander Bulekov          i < sizeof(predefined_configs) / sizeof(generic_fuzz_config);
9577fdb5053SAlexander Bulekov          i++) {
9587fdb5053SAlexander Bulekov         config = predefined_configs + i;
9597fdb5053SAlexander Bulekov         name = g_string_new("generic-fuzz");
9607fdb5053SAlexander Bulekov         g_string_append_printf(name, "-%s", config->name);
9617fdb5053SAlexander Bulekov         fuzz_add_target(&(FuzzTarget){
9627fdb5053SAlexander Bulekov                 .name = name->str,
9637fdb5053SAlexander Bulekov                 .description = "Predefined generic-fuzz config.",
9647fdb5053SAlexander Bulekov                 .get_init_cmdline = generic_fuzz_predefined_config_cmdline,
9657fdb5053SAlexander Bulekov                 .pre_fuzz = generic_pre_fuzz,
9667fdb5053SAlexander Bulekov                 .fuzz = generic_fuzz,
9677fdb5053SAlexander Bulekov                 .crossover = generic_fuzz_crossover,
9687fdb5053SAlexander Bulekov                 .opaque = (void *)config
9697fdb5053SAlexander Bulekov         });
9707fdb5053SAlexander Bulekov     }
971da9bf531SAlexander Bulekov }
972da9bf531SAlexander Bulekov 
973da9bf531SAlexander Bulekov fuzz_target_init(register_generic_fuzz_targets);
974