Merge branch 'for-linus' of git://git.kernel.org/pub/scm/linux/kernel/git/s390/linux
Pull s390 fixes from Martin Schwidefsky: "Four bug fixes, two of them for stable: - avoid initrd corruptions in the kernel decompressor - prevent inconsistent dumps if the boot CPU does not have address zero - fix the new pkey interface added with the merge window for 4.11 - a fix for a fix, another issue with user copy zero padding" * 'for-linus' of git://git.kernel.org/pub/scm/linux/kernel/git/s390/linux: s390/uaccess: get_user() should zero on failure (again) s390/pkey: Fix wrong handling of secure key with old MKVP s390/smp: fix ipl from cpu with non-zero address s390/decompressor: fix initrd corruption caused by bss clear
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4ad72555b8
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@ -141,31 +141,34 @@ static void check_ipl_parmblock(void *start, unsigned long size)
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unsigned long decompress_kernel(void)
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{
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unsigned long output_addr;
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unsigned char *output;
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void *output, *kernel_end;
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output_addr = ((unsigned long) &_end + HEAP_SIZE + 4095UL) & -4096UL;
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check_ipl_parmblock((void *) 0, output_addr + SZ__bss_start);
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memset(&_bss, 0, &_ebss - &_bss);
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free_mem_ptr = (unsigned long)&_end;
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free_mem_end_ptr = free_mem_ptr + HEAP_SIZE;
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output = (unsigned char *) output_addr;
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output = (void *) ALIGN((unsigned long) &_end + HEAP_SIZE, PAGE_SIZE);
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kernel_end = output + SZ__bss_start;
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check_ipl_parmblock((void *) 0, (unsigned long) kernel_end);
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#ifdef CONFIG_BLK_DEV_INITRD
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/*
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* Move the initrd right behind the end of the decompressed
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* kernel image.
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* kernel image. This also prevents initrd corruption caused by
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* bss clearing since kernel_end will always be located behind the
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* current bss section..
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*/
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if (INITRD_START && INITRD_SIZE &&
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INITRD_START < (unsigned long) output + SZ__bss_start) {
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check_ipl_parmblock(output + SZ__bss_start,
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INITRD_START + INITRD_SIZE);
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memmove(output + SZ__bss_start,
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(void *) INITRD_START, INITRD_SIZE);
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INITRD_START = (unsigned long) output + SZ__bss_start;
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if (INITRD_START && INITRD_SIZE && kernel_end > (void *) INITRD_START) {
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check_ipl_parmblock(kernel_end, INITRD_SIZE);
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memmove(kernel_end, (void *) INITRD_START, INITRD_SIZE);
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INITRD_START = (unsigned long) kernel_end;
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}
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#endif
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/*
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* Clear bss section. free_mem_ptr and free_mem_end_ptr need to be
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* initialized afterwards since they reside in bss.
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*/
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memset(&_bss, 0, &_ebss - &_bss);
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free_mem_ptr = (unsigned long) &_end;
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free_mem_end_ptr = free_mem_ptr + HEAP_SIZE;
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puts("Uncompressing Linux... ");
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__decompress(input_data, input_len, NULL, NULL, output, 0, NULL, error);
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puts("Ok, booting the kernel.\n");
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@ -147,7 +147,7 @@ unsigned long __must_check __copy_to_user(void __user *to, const void *from,
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" jg 2b\n" \
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".popsection\n" \
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EX_TABLE(0b,3b) EX_TABLE(1b,3b) \
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: "=d" (__rc), "=Q" (*(to)) \
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: "=d" (__rc), "+Q" (*(to)) \
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: "d" (size), "Q" (*(from)), \
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"d" (__reg0), "K" (-EFAULT) \
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: "cc"); \
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@ -909,13 +909,11 @@ void __init smp_prepare_boot_cpu(void)
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{
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struct pcpu *pcpu = pcpu_devices;
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WARN_ON(!cpu_present(0) || !cpu_online(0));
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pcpu->state = CPU_STATE_CONFIGURED;
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pcpu->address = stap();
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pcpu->lowcore = (struct lowcore *)(unsigned long) store_prefix();
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S390_lowcore.percpu_offset = __per_cpu_offset[0];
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smp_cpu_set_polarization(0, POLARIZATION_UNKNOWN);
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set_cpu_present(0, true);
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set_cpu_online(0, true);
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}
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void __init smp_cpus_done(unsigned int max_cpus)
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@ -924,6 +922,7 @@ void __init smp_cpus_done(unsigned int max_cpus)
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void __init smp_setup_processor_id(void)
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{
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pcpu_devices[0].address = stap();
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S390_lowcore.cpu_nr = 0;
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S390_lowcore.spinlock_lockval = arch_spin_lockval(0);
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}
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@ -572,6 +572,12 @@ int pkey_sec2protkey(u16 cardnr, u16 domain,
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rc = -EIO;
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goto out;
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}
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if (prepcblk->ccp_rscode != 0) {
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DEBUG_WARN(
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"pkey_sec2protkey unwrap secure key warning, card response %d/%d\n",
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(int) prepcblk->ccp_rtcode,
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(int) prepcblk->ccp_rscode);
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}
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/* process response cprb param block */
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prepcblk->rpl_parmb = ((u8 *) prepcblk) + sizeof(struct CPRBX);
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@ -761,9 +767,10 @@ out:
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}
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/*
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* Fetch just the mkvp value via query_crypto_facility from adapter.
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* Fetch the current and old mkvp values via
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* query_crypto_facility from adapter.
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*/
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static int fetch_mkvp(u16 cardnr, u16 domain, u64 *mkvp)
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static int fetch_mkvp(u16 cardnr, u16 domain, u64 mkvp[2])
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{
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int rc, found = 0;
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size_t rlen, vlen;
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@ -779,9 +786,10 @@ static int fetch_mkvp(u16 cardnr, u16 domain, u64 *mkvp)
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rc = query_crypto_facility(cardnr, domain, "STATICSA",
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rarray, &rlen, varray, &vlen);
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if (rc == 0 && rlen > 8*8 && vlen > 184+8) {
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if (rarray[64] == '2') {
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if (rarray[8*8] == '2') {
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/* current master key state is valid */
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*mkvp = *((u64 *)(varray + 184));
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mkvp[0] = *((u64 *)(varray + 184));
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mkvp[1] = *((u64 *)(varray + 172));
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found = 1;
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}
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}
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@ -796,14 +804,14 @@ struct mkvp_info {
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struct list_head list;
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u16 cardnr;
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u16 domain;
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u64 mkvp;
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u64 mkvp[2];
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};
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/* a list with mkvp_info entries */
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static LIST_HEAD(mkvp_list);
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static DEFINE_SPINLOCK(mkvp_list_lock);
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static int mkvp_cache_fetch(u16 cardnr, u16 domain, u64 *mkvp)
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static int mkvp_cache_fetch(u16 cardnr, u16 domain, u64 mkvp[2])
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{
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int rc = -ENOENT;
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struct mkvp_info *ptr;
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@ -812,7 +820,7 @@ static int mkvp_cache_fetch(u16 cardnr, u16 domain, u64 *mkvp)
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list_for_each_entry(ptr, &mkvp_list, list) {
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if (ptr->cardnr == cardnr &&
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ptr->domain == domain) {
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*mkvp = ptr->mkvp;
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memcpy(mkvp, ptr->mkvp, 2 * sizeof(u64));
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rc = 0;
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break;
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}
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@ -822,7 +830,7 @@ static int mkvp_cache_fetch(u16 cardnr, u16 domain, u64 *mkvp)
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return rc;
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}
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static void mkvp_cache_update(u16 cardnr, u16 domain, u64 mkvp)
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static void mkvp_cache_update(u16 cardnr, u16 domain, u64 mkvp[2])
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{
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int found = 0;
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struct mkvp_info *ptr;
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@ -831,7 +839,7 @@ static void mkvp_cache_update(u16 cardnr, u16 domain, u64 mkvp)
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list_for_each_entry(ptr, &mkvp_list, list) {
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if (ptr->cardnr == cardnr &&
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ptr->domain == domain) {
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ptr->mkvp = mkvp;
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memcpy(ptr->mkvp, mkvp, 2 * sizeof(u64));
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found = 1;
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break;
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}
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}
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ptr->cardnr = cardnr;
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ptr->domain = domain;
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ptr->mkvp = mkvp;
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memcpy(ptr->mkvp, mkvp, 2 * sizeof(u64));
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list_add(&ptr->list, &mkvp_list);
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}
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spin_unlock_bh(&mkvp_list_lock);
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@ -888,8 +896,8 @@ int pkey_findcard(const struct pkey_seckey *seckey,
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struct secaeskeytoken *t = (struct secaeskeytoken *) seckey;
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struct zcrypt_device_matrix *device_matrix;
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u16 card, dom;
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u64 mkvp;
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int i, rc;
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u64 mkvp[2];
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int i, rc, oi = -1;
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/* mkvp must not be zero */
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if (t->mkvp == 0)
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device_matrix->device[i].functions & 0x04) {
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/* an enabled CCA Coprocessor card */
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/* try cached mkvp */
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if (mkvp_cache_fetch(card, dom, &mkvp) == 0 &&
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t->mkvp == mkvp) {
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if (mkvp_cache_fetch(card, dom, mkvp) == 0 &&
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t->mkvp == mkvp[0]) {
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if (!verify)
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break;
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/* verify: fetch mkvp from adapter */
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if (fetch_mkvp(card, dom, &mkvp) == 0) {
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if (fetch_mkvp(card, dom, mkvp) == 0) {
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mkvp_cache_update(card, dom, mkvp);
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if (t->mkvp == mkvp)
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if (t->mkvp == mkvp[0])
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break;
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}
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}
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card = AP_QID_CARD(device_matrix->device[i].qid);
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dom = AP_QID_QUEUE(device_matrix->device[i].qid);
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/* fresh fetch mkvp from adapter */
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if (fetch_mkvp(card, dom, &mkvp) == 0) {
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if (fetch_mkvp(card, dom, mkvp) == 0) {
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mkvp_cache_update(card, dom, mkvp);
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if (t->mkvp == mkvp)
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if (t->mkvp == mkvp[0])
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break;
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if (t->mkvp == mkvp[1] && oi < 0)
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oi = i;
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}
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}
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if (i >= MAX_ZDEV_ENTRIES && oi >= 0) {
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/* old mkvp matched, use this card then */
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card = AP_QID_CARD(device_matrix->device[oi].qid);
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dom = AP_QID_QUEUE(device_matrix->device[oi].qid);
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}
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}
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if (i < MAX_ZDEV_ENTRIES) {
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if (i < MAX_ZDEV_ENTRIES || oi >= 0) {
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if (pcardnr)
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*pcardnr = card;
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if (pdomain)
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