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d66e6737d4
Pull crypto update from Herbert Xu: - Optimised AES/SHA1 for ARM. - IPsec ESN support in talitos and caam. - x86_64/avx implementation of cast5/cast6. - Add/use multi-algorithm registration helpers where possible. - Added IBM Power7+ in-Nest support. - Misc fixes. Fix up trivial conflicts in crypto/Kconfig due to the sparc64 crypto config options being added next to the new ARM ones. [ Side note: cut-and-paste duplicate help texts make those conflicts harder to read than necessary, thanks to git being smart about minimizing conflicts and maximizing the common parts... ] * git://git.kernel.org/pub/scm/linux/kernel/git/herbert/crypto-2.6: (71 commits) crypto: x86/glue_helper - fix storing of new IV in CBC encryption crypto: cast5/avx - fix storing of new IV in CBC encryption crypto: tcrypt - add missing tests for camellia and ghash crypto: testmgr - make test_aead also test 'dst != src' code paths crypto: testmgr - make test_skcipher also test 'dst != src' code paths crypto: testmgr - add test vectors for CTR mode IV increasement crypto: testmgr - add test vectors for partial ctr(cast5) and ctr(cast6) crypto: testmgr - allow non-multi page and multi page skcipher tests from same test template crypto: caam - increase TRNG clocks per sample crypto, tcrypt: remove local_bh_disable/enable() around local_irq_disable/enable() crypto: tegra-aes - fix error return code crypto: crypto4xx - fix error return code crypto: hifn_795x - fix error return code crypto: ux500 - fix error return code crypto: caam - fix error IDs for SEC v5.x RNG4 hwrng: mxc-rnga - Access data via structure hwrng: mxc-rnga - Adapt clocks to new i.mx clock framework crypto: caam - add IPsec ESN support crypto: 842 - remove .cra_list initialization Revert "[CRYPTO] cast6: inline bloat--" ...
128 lines
3.3 KiB
C
128 lines
3.3 KiB
C
/*
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* CAAM/SEC 4.x functions for handling key-generation jobs
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*
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* Copyright 2008-2011 Freescale Semiconductor, Inc.
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*
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*/
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#include "compat.h"
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#include "jr.h"
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#include "error.h"
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#include "desc_constr.h"
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#include "key_gen.h"
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void split_key_done(struct device *dev, u32 *desc, u32 err,
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void *context)
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{
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struct split_key_result *res = context;
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#ifdef DEBUG
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dev_err(dev, "%s %d: err 0x%x\n", __func__, __LINE__, err);
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#endif
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if (err) {
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char tmp[CAAM_ERROR_STR_MAX];
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dev_err(dev, "%08x: %s\n", err, caam_jr_strstatus(tmp, err));
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}
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res->err = err;
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complete(&res->completion);
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}
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EXPORT_SYMBOL(split_key_done);
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/*
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get a split ipad/opad key
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Split key generation-----------------------------------------------
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[00] 0xb0810008 jobdesc: stidx=1 share=never len=8
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[01] 0x04000014 key: class2->keyreg len=20
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@0xffe01000
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[03] 0x84410014 operation: cls2-op sha1 hmac init dec
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[04] 0x24940000 fifold: class2 msgdata-last2 len=0 imm
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[05] 0xa4000001 jump: class2 local all ->1 [06]
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[06] 0x64260028 fifostr: class2 mdsplit-jdk len=40
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@0xffe04000
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*/
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u32 gen_split_key(struct device *jrdev, u8 *key_out, int split_key_len,
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int split_key_pad_len, const u8 *key_in, u32 keylen,
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u32 alg_op)
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{
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u32 *desc;
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struct split_key_result result;
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dma_addr_t dma_addr_in, dma_addr_out;
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int ret = 0;
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desc = kmalloc(CAAM_CMD_SZ * 6 + CAAM_PTR_SZ * 2, GFP_KERNEL | GFP_DMA);
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if (!desc) {
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dev_err(jrdev, "unable to allocate key input memory\n");
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return -ENOMEM;
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}
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init_job_desc(desc, 0);
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dma_addr_in = dma_map_single(jrdev, (void *)key_in, keylen,
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DMA_TO_DEVICE);
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if (dma_mapping_error(jrdev, dma_addr_in)) {
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dev_err(jrdev, "unable to map key input memory\n");
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kfree(desc);
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return -ENOMEM;
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}
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append_key(desc, dma_addr_in, keylen, CLASS_2 | KEY_DEST_CLASS_REG);
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/* Sets MDHA up into an HMAC-INIT */
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append_operation(desc, alg_op | OP_ALG_DECRYPT | OP_ALG_AS_INIT);
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/*
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* do a FIFO_LOAD of zero, this will trigger the internal key expansion
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* into both pads inside MDHA
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*/
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append_fifo_load_as_imm(desc, NULL, 0, LDST_CLASS_2_CCB |
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FIFOLD_TYPE_MSG | FIFOLD_TYPE_LAST2);
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/*
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* FIFO_STORE with the explicit split-key content store
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* (0x26 output type)
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*/
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dma_addr_out = dma_map_single(jrdev, key_out, split_key_pad_len,
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DMA_FROM_DEVICE);
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if (dma_mapping_error(jrdev, dma_addr_out)) {
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dev_err(jrdev, "unable to map key output memory\n");
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kfree(desc);
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return -ENOMEM;
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}
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append_fifo_store(desc, dma_addr_out, split_key_len,
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LDST_CLASS_2_CCB | FIFOST_TYPE_SPLIT_KEK);
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#ifdef DEBUG
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print_hex_dump(KERN_ERR, "ctx.key@"xstr(__LINE__)": ",
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DUMP_PREFIX_ADDRESS, 16, 4, key_in, keylen, 1);
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print_hex_dump(KERN_ERR, "jobdesc@"xstr(__LINE__)": ",
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DUMP_PREFIX_ADDRESS, 16, 4, desc, desc_bytes(desc), 1);
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#endif
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result.err = 0;
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init_completion(&result.completion);
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ret = caam_jr_enqueue(jrdev, desc, split_key_done, &result);
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if (!ret) {
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/* in progress */
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wait_for_completion_interruptible(&result.completion);
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ret = result.err;
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#ifdef DEBUG
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print_hex_dump(KERN_ERR, "ctx.key@"xstr(__LINE__)": ",
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DUMP_PREFIX_ADDRESS, 16, 4, key_out,
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split_key_pad_len, 1);
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#endif
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}
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dma_unmap_single(jrdev, dma_addr_out, split_key_pad_len,
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DMA_FROM_DEVICE);
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dma_unmap_single(jrdev, dma_addr_in, keylen, DMA_TO_DEVICE);
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kfree(desc);
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return ret;
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}
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EXPORT_SYMBOL(gen_split_key);
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