sched/preempt, powerpc: Disable preemption in enable_kernel_altivec() explicitly
enable_kernel_altivec() has to be called with disabled preemption. Let's make this explicit, to prepare for pagefault_disable() not touching preemption anymore. Reviewed-and-tested-by: Thomas Gleixner <tglx@linutronix.de> Signed-off-by: David Hildenbrand <dahi@linux.vnet.ibm.com> Signed-off-by: Peter Zijlstra (Intel) <peterz@infradead.org> Acked-by: Benjamin Herrenschmidt <benh@kernel.crashing.org> Cc: David.Laight@ACULAB.COM Cc: Linus Torvalds <torvalds@linux-foundation.org> Cc: Peter Zijlstra <peterz@infradead.org> Cc: Thomas Gleixner <tglx@linutronix.de> Cc: airlied@linux.ie Cc: akpm@linux-foundation.org Cc: bigeasy@linutronix.de Cc: borntraeger@de.ibm.com Cc: daniel.vetter@intel.com Cc: heiko.carstens@de.ibm.com Cc: herbert@gondor.apana.org.au Cc: hocko@suse.cz Cc: hughd@google.com Cc: mst@redhat.com Cc: paulus@samba.org Cc: ralf@linux-mips.org Cc: schwidefsky@de.ibm.com Cc: yang.shi@windriver.com Link: http://lkml.kernel.org/r/1431359540-32227-14-git-send-email-dahi@linux.vnet.ibm.com Signed-off-by: Ingo Molnar <mingo@kernel.org>
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@ -27,11 +27,11 @@ int enter_vmx_usercopy(void)
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if (in_interrupt())
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return 0;
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/* This acts as preempt_disable() as well and will make
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* enable_kernel_altivec(). We need to disable page faults
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* as they can call schedule and thus make us lose the VMX
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* context. So on page faults, we just fail which will cause
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* a fallback to the normal non-vmx copy.
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preempt_disable();
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/*
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* We need to disable page faults as they can call schedule and
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* thus make us lose the VMX context. So on page faults, we just
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* fail which will cause a fallback to the normal non-vmx copy.
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*/
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pagefault_disable();
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@ -47,6 +47,7 @@ int enter_vmx_usercopy(void)
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int exit_vmx_usercopy(void)
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{
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pagefault_enable();
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preempt_enable();
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return 0;
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}
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@ -78,11 +78,13 @@ static int p8_aes_setkey(struct crypto_tfm *tfm, const u8 *key,
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int ret;
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struct p8_aes_ctx *ctx = crypto_tfm_ctx(tfm);
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preempt_disable();
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pagefault_disable();
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enable_kernel_altivec();
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ret = aes_p8_set_encrypt_key(key, keylen * 8, &ctx->enc_key);
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ret += aes_p8_set_decrypt_key(key, keylen * 8, &ctx->dec_key);
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pagefault_enable();
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preempt_enable();
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ret += crypto_cipher_setkey(ctx->fallback, key, keylen);
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return ret;
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@ -95,10 +97,12 @@ static void p8_aes_encrypt(struct crypto_tfm *tfm, u8 *dst, const u8 *src)
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if (in_interrupt()) {
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crypto_cipher_encrypt_one(ctx->fallback, dst, src);
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} else {
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preempt_disable();
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pagefault_disable();
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enable_kernel_altivec();
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aes_p8_encrypt(src, dst, &ctx->enc_key);
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pagefault_enable();
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preempt_enable();
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}
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}
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@ -109,10 +113,12 @@ static void p8_aes_decrypt(struct crypto_tfm *tfm, u8 *dst, const u8 *src)
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if (in_interrupt()) {
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crypto_cipher_decrypt_one(ctx->fallback, dst, src);
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} else {
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preempt_disable();
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pagefault_disable();
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enable_kernel_altivec();
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aes_p8_decrypt(src, dst, &ctx->dec_key);
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pagefault_enable();
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preempt_enable();
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}
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}
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@ -79,11 +79,13 @@ static int p8_aes_cbc_setkey(struct crypto_tfm *tfm, const u8 *key,
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int ret;
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struct p8_aes_cbc_ctx *ctx = crypto_tfm_ctx(tfm);
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preempt_disable();
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pagefault_disable();
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enable_kernel_altivec();
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ret = aes_p8_set_encrypt_key(key, keylen * 8, &ctx->enc_key);
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ret += aes_p8_set_decrypt_key(key, keylen * 8, &ctx->dec_key);
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pagefault_enable();
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preempt_enable();
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ret += crypto_blkcipher_setkey(ctx->fallback, key, keylen);
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return ret;
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@ -106,6 +108,7 @@ static int p8_aes_cbc_encrypt(struct blkcipher_desc *desc,
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if (in_interrupt()) {
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ret = crypto_blkcipher_encrypt(&fallback_desc, dst, src, nbytes);
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} else {
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preempt_disable();
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pagefault_disable();
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enable_kernel_altivec();
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@ -119,6 +122,7 @@ static int p8_aes_cbc_encrypt(struct blkcipher_desc *desc,
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}
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pagefault_enable();
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preempt_enable();
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}
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return ret;
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@ -141,6 +145,7 @@ static int p8_aes_cbc_decrypt(struct blkcipher_desc *desc,
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if (in_interrupt()) {
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ret = crypto_blkcipher_decrypt(&fallback_desc, dst, src, nbytes);
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} else {
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preempt_disable();
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pagefault_disable();
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enable_kernel_altivec();
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@ -154,6 +159,7 @@ static int p8_aes_cbc_decrypt(struct blkcipher_desc *desc,
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}
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pagefault_enable();
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preempt_enable();
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}
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return ret;
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@ -114,11 +114,13 @@ static int p8_ghash_setkey(struct crypto_shash *tfm, const u8 *key,
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if (keylen != GHASH_KEY_LEN)
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return -EINVAL;
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preempt_disable();
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pagefault_disable();
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enable_kernel_altivec();
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enable_kernel_fp();
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gcm_init_p8(ctx->htable, (const u64 *) key);
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pagefault_enable();
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preempt_enable();
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return crypto_shash_setkey(ctx->fallback, key, keylen);
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}
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@ -140,23 +142,27 @@ static int p8_ghash_update(struct shash_desc *desc,
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}
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memcpy(dctx->buffer + dctx->bytes, src,
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GHASH_DIGEST_SIZE - dctx->bytes);
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preempt_disable();
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pagefault_disable();
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enable_kernel_altivec();
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enable_kernel_fp();
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gcm_ghash_p8(dctx->shash, ctx->htable, dctx->buffer,
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GHASH_DIGEST_SIZE);
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pagefault_enable();
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preempt_enable();
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src += GHASH_DIGEST_SIZE - dctx->bytes;
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srclen -= GHASH_DIGEST_SIZE - dctx->bytes;
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dctx->bytes = 0;
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}
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len = srclen & ~(GHASH_DIGEST_SIZE - 1);
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if (len) {
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preempt_disable();
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pagefault_disable();
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enable_kernel_altivec();
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enable_kernel_fp();
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gcm_ghash_p8(dctx->shash, ctx->htable, src, len);
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pagefault_enable();
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preempt_enable();
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src += len;
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srclen -= len;
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}
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@ -180,12 +186,14 @@ static int p8_ghash_final(struct shash_desc *desc, u8 *out)
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if (dctx->bytes) {
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for (i = dctx->bytes; i < GHASH_DIGEST_SIZE; i++)
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dctx->buffer[i] = 0;
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preempt_disable();
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pagefault_disable();
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enable_kernel_altivec();
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enable_kernel_fp();
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gcm_ghash_p8(dctx->shash, ctx->htable, dctx->buffer,
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GHASH_DIGEST_SIZE);
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pagefault_enable();
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preempt_enable();
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dctx->bytes = 0;
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}
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memcpy(out, dctx->shash, GHASH_DIGEST_SIZE);
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