Commit 6a81bdfe authored by Sergey Senozhatsky's avatar Sergey Senozhatsky Committed by Andrew Morton

zram: introduce zcomp_ctx structure

Keep run-time driver data (scratch buffers, etc.) in zcomp_ctx structure. 
This structure is allocated per-CPU because drivers (backends) need to
modify its content during requests execution.

We will split mutable and immutable driver data, this is a preparation
path.

Link: https://lkml.kernel.org/r/20240902105656.1383858-19-senozhatsky@chromium.orgSigned-off-by: default avatarSergey Senozhatsky <senozhatsky@chromium.org>
Cc: Minchan Kim <minchan@kernel.org>
Cc: Nick Terrell <terrelln@fb.com>
Signed-off-by: default avatarAndrew Morton <akpm@linux-foundation.org>
parent 52c7b4e2
......@@ -7,51 +7,32 @@
#include "backend_842.h"
struct sw842_ctx {
void *mem;
};
static void destroy_842(void *ctx)
static void destroy_842(struct zcomp_ctx *ctx)
{
struct sw842_ctx *zctx = ctx;
kfree(zctx->mem);
kfree(zctx);
kfree(ctx->context);
}
static void *create_842(struct zcomp_params *params)
static int create_842(struct zcomp_params *params, struct zcomp_ctx *ctx)
{
struct sw842_ctx *ctx;
ctx = kzalloc(sizeof(*ctx), GFP_KERNEL);
if (!ctx)
return NULL;
ctx->mem = kmalloc(SW842_MEM_COMPRESS, GFP_KERNEL);
if (!ctx->mem)
goto error;
return ctx;
error:
destroy_842(ctx);
return NULL;
ctx->context = kmalloc(SW842_MEM_COMPRESS, GFP_KERNEL);
if (!ctx->context)
return -ENOMEM;
return 0;
}
static int compress_842(void *ctx, struct zcomp_req *req)
static int compress_842(struct zcomp_ctx *ctx, struct zcomp_req *req)
{
struct sw842_ctx *zctx = ctx;
unsigned int dlen = req->dst_len;
int ret;
ret = sw842_compress(req->src, req->src_len, req->dst, &dlen,
zctx->mem);
ctx->context);
if (ret == 0)
req->dst_len = dlen;
return ret;
}
static int decompress_842(void *ctx, struct zcomp_req *req)
static int decompress_842(struct zcomp_ctx *ctx, struct zcomp_req *req)
{
unsigned int dlen = req->dst_len;
......
......@@ -17,9 +17,12 @@ struct deflate_ctx {
s32 level;
};
static void deflate_destroy(void *ctx)
static void deflate_destroy(struct zcomp_ctx *ctx)
{
struct deflate_ctx *zctx = ctx;
struct deflate_ctx *zctx = ctx->context;
if (!zctx)
return;
if (zctx->cctx.workspace) {
zlib_deflateEnd(&zctx->cctx);
......@@ -32,51 +35,52 @@ static void deflate_destroy(void *ctx)
kfree(zctx);
}
static void *deflate_create(struct zcomp_params *params)
static int deflate_create(struct zcomp_params *params, struct zcomp_ctx *ctx)
{
struct deflate_ctx *ctx;
struct deflate_ctx *zctx;
size_t sz;
int ret;
ctx = kzalloc(sizeof(*ctx), GFP_KERNEL);
if (!ctx)
return NULL;
zctx = kzalloc(sizeof(*zctx), GFP_KERNEL);
if (!zctx)
return -ENOMEM;
ctx->context = zctx;
if (params->level != ZCOMP_PARAM_NO_LEVEL)
ctx->level = params->level;
zctx->level = params->level;
else
ctx->level = Z_DEFAULT_COMPRESSION;
zctx->level = Z_DEFAULT_COMPRESSION;
sz = zlib_deflate_workspacesize(-DEFLATE_DEF_WINBITS, MAX_MEM_LEVEL);
ctx->cctx.workspace = vzalloc(sz);
if (!ctx->cctx.workspace)
zctx->cctx.workspace = vzalloc(sz);
if (!zctx->cctx.workspace)
goto error;
ret = zlib_deflateInit2(&ctx->cctx, ctx->level, Z_DEFLATED,
ret = zlib_deflateInit2(&zctx->cctx, zctx->level, Z_DEFLATED,
-DEFLATE_DEF_WINBITS, DEFLATE_DEF_MEMLEVEL,
Z_DEFAULT_STRATEGY);
if (ret != Z_OK)
goto error;
sz = zlib_inflate_workspacesize();
ctx->dctx.workspace = vzalloc(sz);
if (!ctx->dctx.workspace)
zctx->dctx.workspace = vzalloc(sz);
if (!zctx->dctx.workspace)
goto error;
ret = zlib_inflateInit2(&ctx->dctx, -DEFLATE_DEF_WINBITS);
ret = zlib_inflateInit2(&zctx->dctx, -DEFLATE_DEF_WINBITS);
if (ret != Z_OK)
goto error;
return ctx;
return 0;
error:
deflate_destroy(ctx);
return NULL;
return -EINVAL;
}
static int deflate_compress(void *ctx, struct zcomp_req *req)
static int deflate_compress(struct zcomp_ctx *ctx, struct zcomp_req *req)
{
struct deflate_ctx *zctx = ctx;
struct deflate_ctx *zctx = ctx->context;
struct z_stream_s *deflate;
int ret;
......@@ -98,9 +102,9 @@ static int deflate_compress(void *ctx, struct zcomp_req *req)
return 0;
}
static int deflate_decompress(void *ctx, struct zcomp_req *req)
static int deflate_decompress(struct zcomp_ctx *ctx, struct zcomp_req *req)
{
struct deflate_ctx *zctx = ctx;
struct deflate_ctx *zctx = ctx->context;
struct z_stream_s *inflate;
int ret;
......
......@@ -10,40 +10,44 @@ struct lz4_ctx {
s32 level;
};
static void lz4_destroy(void *ctx)
static void lz4_destroy(struct zcomp_ctx *ctx)
{
struct lz4_ctx *zctx = ctx;
struct lz4_ctx *zctx = ctx->context;
if (!zctx)
return;
vfree(zctx->mem);
kfree(zctx);
}
static void *lz4_create(struct zcomp_params *params)
static int lz4_create(struct zcomp_params *params, struct zcomp_ctx *ctx)
{
struct lz4_ctx *ctx;
struct lz4_ctx *zctx;
ctx = kzalloc(sizeof(*ctx), GFP_KERNEL);
if (!ctx)
return NULL;
zctx = kzalloc(sizeof(*zctx), GFP_KERNEL);
if (!zctx)
return -ENOMEM;
ctx->context = zctx;
if (params->level != ZCOMP_PARAM_NO_LEVEL)
ctx->level = params->level;
zctx->level = params->level;
else
ctx->level = LZ4_ACCELERATION_DEFAULT;
zctx->level = LZ4_ACCELERATION_DEFAULT;
ctx->mem = vmalloc(LZ4_MEM_COMPRESS);
if (!ctx->mem)
zctx->mem = vmalloc(LZ4_MEM_COMPRESS);
if (!zctx->mem)
goto error;
return ctx;
return 0;
error:
lz4_destroy(ctx);
return NULL;
return -EINVAL;
}
static int lz4_compress(void *ctx, struct zcomp_req *req)
static int lz4_compress(struct zcomp_ctx *ctx, struct zcomp_req *req)
{
struct lz4_ctx *zctx = ctx;
struct lz4_ctx *zctx = ctx->context;
int ret;
ret = LZ4_compress_fast(req->src, req->dst, req->src_len,
......@@ -54,7 +58,7 @@ static int lz4_compress(void *ctx, struct zcomp_req *req)
return 0;
}
static int lz4_decompress(void *ctx, struct zcomp_req *req)
static int lz4_decompress(struct zcomp_ctx *ctx, struct zcomp_req *req)
{
int ret;
......
......@@ -10,40 +10,44 @@ struct lz4hc_ctx {
s32 level;
};
static void lz4hc_destroy(void *ctx)
static void lz4hc_destroy(struct zcomp_ctx *ctx)
{
struct lz4hc_ctx *zctx = ctx;
struct lz4hc_ctx *zctx = ctx->context;
if (!zctx)
return;
vfree(zctx->mem);
kfree(zctx);
}
static void *lz4hc_create(struct zcomp_params *params)
static int lz4hc_create(struct zcomp_params *params, struct zcomp_ctx *ctx)
{
struct lz4hc_ctx *ctx;
struct lz4hc_ctx *zctx;
ctx = kzalloc(sizeof(*ctx), GFP_KERNEL);
if (!ctx)
return NULL;
zctx = kzalloc(sizeof(*zctx), GFP_KERNEL);
if (!zctx)
return -ENOMEM;
ctx->context = zctx;
if (params->level != ZCOMP_PARAM_NO_LEVEL)
ctx->level = params->level;
zctx->level = params->level;
else
ctx->level = LZ4HC_DEFAULT_CLEVEL;
zctx->level = LZ4HC_DEFAULT_CLEVEL;
ctx->mem = vmalloc(LZ4HC_MEM_COMPRESS);
if (!ctx->mem)
zctx->mem = vmalloc(LZ4HC_MEM_COMPRESS);
if (!zctx->mem)
goto error;
return ctx;
return 0;
error:
lz4hc_destroy(ctx);
return NULL;
return -EINVAL;
}
static int lz4hc_compress(void *ctx, struct zcomp_req *req)
static int lz4hc_compress(struct zcomp_ctx *ctx, struct zcomp_req *req)
{
struct lz4hc_ctx *zctx = ctx;
struct lz4hc_ctx *zctx = ctx->context;
int ret;
ret = LZ4_compress_HC(req->src, req->dst, req->src_len, req->dst_len,
......@@ -54,7 +58,7 @@ static int lz4hc_compress(void *ctx, struct zcomp_req *req)
return 0;
}
static int lz4hc_decompress(void *ctx, struct zcomp_req *req)
static int lz4hc_decompress(struct zcomp_ctx *ctx, struct zcomp_req *req)
{
int ret;
......
......@@ -6,26 +6,29 @@
#include "backend_lzo.h"
static void *lzo_create(struct zcomp_params *params)
static int lzo_create(struct zcomp_params *params, struct zcomp_ctx *ctx)
{
return kzalloc(LZO1X_MEM_COMPRESS, GFP_KERNEL);
ctx->context = kzalloc(LZO1X_MEM_COMPRESS, GFP_KERNEL);
if (!ctx->context)
return -ENOMEM;
return 0;
}
static void lzo_destroy(void *ctx)
static void lzo_destroy(struct zcomp_ctx *ctx)
{
kfree(ctx);
kfree(ctx->context);
}
static int lzo_compress(void *ctx, struct zcomp_req *req)
static int lzo_compress(struct zcomp_ctx *ctx, struct zcomp_req *req)
{
int ret;
ret = lzo1x_1_compress(req->src, req->src_len, req->dst,
&req->dst_len, ctx);
&req->dst_len, ctx->context);
return ret == LZO_E_OK ? 0 : ret;
}
static int lzo_decompress(void *ctx, struct zcomp_req *req)
static int lzo_decompress(struct zcomp_ctx *ctx, struct zcomp_req *req)
{
int ret;
......
......@@ -6,26 +6,29 @@
#include "backend_lzorle.h"
static void *lzorle_create(struct zcomp_params *params)
static int lzorle_create(struct zcomp_params *params, struct zcomp_ctx *ctx)
{
return kzalloc(LZO1X_MEM_COMPRESS, GFP_KERNEL);
ctx->context = kzalloc(LZO1X_MEM_COMPRESS, GFP_KERNEL);
if (!ctx->context)
return -ENOMEM;
return 0;
}
static void lzorle_destroy(void *ctx)
static void lzorle_destroy(struct zcomp_ctx *ctx)
{
kfree(ctx);
kfree(ctx->context);
}
static int lzorle_compress(void *ctx, struct zcomp_req *req)
static int lzorle_compress(struct zcomp_ctx *ctx, struct zcomp_req *req)
{
int ret;
ret = lzorle1x_1_compress(req->src, req->src_len, req->dst,
&req->dst_len, ctx);
&req->dst_len, ctx->context);
return ret == LZO_E_OK ? 0 : ret;
}
static int lzorle_decompress(void *ctx, struct zcomp_req *req)
static int lzorle_decompress(struct zcomp_ctx *ctx, struct zcomp_req *req)
{
int ret;
......
......@@ -16,60 +16,64 @@ struct zstd_ctx {
s32 level;
};
static void zstd_destroy(void *ctx)
static void zstd_destroy(struct zcomp_ctx *ctx)
{
struct zstd_ctx *zctx = ctx;
struct zstd_ctx *zctx = ctx->context;
if (!zctx)
return;
vfree(zctx->cctx_mem);
vfree(zctx->dctx_mem);
kfree(zctx);
}
static void *zstd_create(struct zcomp_params *params)
static int zstd_create(struct zcomp_params *params, struct zcomp_ctx *ctx)
{
struct zstd_ctx *zctx;
zstd_parameters prm;
struct zstd_ctx *ctx;
size_t sz;
ctx = kzalloc(sizeof(*ctx), GFP_KERNEL);
if (!ctx)
return NULL;
zctx = kzalloc(sizeof(*zctx), GFP_KERNEL);
if (!zctx)
return -ENOMEM;
ctx->context = zctx;
if (params->level != ZCOMP_PARAM_NO_LEVEL)
ctx->level = params->level;
zctx->level = params->level;
else
ctx->level = zstd_default_clevel();
zctx->level = zstd_default_clevel();
prm = zstd_get_params(ctx->level, PAGE_SIZE);
ctx->cprm = zstd_get_params(ctx->level, PAGE_SIZE);
prm = zstd_get_params(zctx->level, PAGE_SIZE);
zctx->cprm = zstd_get_params(zctx->level, PAGE_SIZE);
sz = zstd_cctx_workspace_bound(&prm.cParams);
ctx->cctx_mem = vzalloc(sz);
if (!ctx->cctx_mem)
zctx->cctx_mem = vzalloc(sz);
if (!zctx->cctx_mem)
goto error;
ctx->cctx = zstd_init_cctx(ctx->cctx_mem, sz);
if (!ctx->cctx)
zctx->cctx = zstd_init_cctx(zctx->cctx_mem, sz);
if (!zctx->cctx)
goto error;
sz = zstd_dctx_workspace_bound();
ctx->dctx_mem = vzalloc(sz);
if (!ctx->dctx_mem)
zctx->dctx_mem = vzalloc(sz);
if (!zctx->dctx_mem)
goto error;
ctx->dctx = zstd_init_dctx(ctx->dctx_mem, sz);
if (!ctx->dctx)
zctx->dctx = zstd_init_dctx(zctx->dctx_mem, sz);
if (!zctx->dctx)
goto error;
return ctx;
return 0;
error:
zstd_destroy(ctx);
return NULL;
return -EINVAL;
}
static int zstd_compress(void *ctx, struct zcomp_req *req)
static int zstd_compress(struct zcomp_ctx *ctx, struct zcomp_req *req)
{
struct zstd_ctx *zctx = ctx;
struct zstd_ctx *zctx = ctx->context;
size_t ret;
ret = zstd_compress_cctx(zctx->cctx, req->dst, req->dst_len,
......@@ -80,9 +84,9 @@ static int zstd_compress(void *ctx, struct zcomp_req *req)
return 0;
}
static int zstd_decompress(void *ctx, struct zcomp_req *req)
static int zstd_decompress(struct zcomp_ctx *ctx, struct zcomp_req *req)
{
struct zstd_ctx *zctx = ctx;
struct zstd_ctx *zctx = ctx->context;
size_t ret;
ret = zstd_decompress_dctx(zctx->dctx, req->dst, req->dst_len,
......
......@@ -45,23 +45,25 @@ static const struct zcomp_ops *backends[] = {
static void zcomp_strm_free(struct zcomp *comp, struct zcomp_strm *zstrm)
{
if (zstrm->ctx)
comp->ops->destroy_ctx(zstrm->ctx);
comp->ops->destroy_ctx(&zstrm->ctx);
vfree(zstrm->buffer);
zstrm->ctx = NULL;
zstrm->buffer = NULL;
}
static int zcomp_strm_init(struct zcomp *comp, struct zcomp_strm *zstrm)
{
zstrm->ctx = comp->ops->create_ctx(comp->params);
int ret;
ret = comp->ops->create_ctx(comp->params, &zstrm->ctx);
if (ret)
return ret;
/*
* allocate 2 pages. 1 for compressed data, plus 1 extra for the
* case when compressed size is larger than the original one
*/
zstrm->buffer = vzalloc(2 * PAGE_SIZE);
if (!zstrm->ctx || !zstrm->buffer) {
if (!zstrm->buffer) {
zcomp_strm_free(comp, zstrm);
return -ENOMEM;
}
......@@ -127,7 +129,7 @@ int zcomp_compress(struct zcomp *comp, struct zcomp_strm *zstrm,
};
int ret;
ret = comp->ops->compress(zstrm->ctx, &req);
ret = comp->ops->compress(&zstrm->ctx, &req);
if (!ret)
*dst_len = req.dst_len;
return ret;
......@@ -143,7 +145,7 @@ int zcomp_decompress(struct zcomp *comp, struct zcomp_strm *zstrm,
.dst_len = PAGE_SIZE,
};
return comp->ops->decompress(zstrm->ctx, &req);
return comp->ops->decompress(&zstrm->ctx, &req);
}
int zcomp_cpu_up_prepare(unsigned int cpu, struct hlist_node *node)
......
......@@ -13,12 +13,20 @@ struct zcomp_params {
s32 level;
};
/*
* Run-time driver context - scratch buffers, etc. It is modified during
* request execution (compression/decompression), cannot be shared, so
* it's in per-CPU area.
*/
struct zcomp_ctx {
void *context;
};
struct zcomp_strm {
/* The members ->buffer and ->tfm are protected by ->lock. */
local_lock_t lock;
/* compression/decompression buffer */
/* compression buffer */
void *buffer;
void *ctx;
struct zcomp_ctx ctx;
};
struct zcomp_req {
......@@ -30,11 +38,12 @@ struct zcomp_req {
};
struct zcomp_ops {
int (*compress)(void *ctx, struct zcomp_req *req);
int (*decompress)(void *ctx, struct zcomp_req *req);
int (*compress)(struct zcomp_ctx *ctx, struct zcomp_req *req);
int (*decompress)(struct zcomp_ctx *ctx, struct zcomp_req *req);
void *(*create_ctx)(struct zcomp_params *params);
void (*destroy_ctx)(void *ctx);
int (*create_ctx)(struct zcomp_params *params,
struct zcomp_ctx *ctx);
void (*destroy_ctx)(struct zcomp_ctx *ctx);
const char *name;
};
......
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